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the_stack_data/72012977.c
#include <stdio.h> // Finds out which date is earlier int main(void) { int day1, day2, month1, month2, year1, year2; printf("Enter a date in format D/M/YYYY: "); scanf_s("%d/%d/%d", &day1, &month1, &year1); printf("Enter another date in format D/M/YYYY: "); scanf_s("%d/%d/%d", &day2, &month2, &year2); if (day1 < 0 || day1 > 31 || day2 < 0 || day2 > 31 || month1 < 0 || month1 > 12 || month2 < 0 || month2 > 12) { printf("Invalid date, try format D/M/YYYY: "); return 1; } if (year1 < year2) { printf("%d/%d/%d is earlier than %d/%d/%d", day1, month1, year1, day2, month2, year2); } else if (year2 < year1) { printf("%d/%d/%d is earlier than %d/%d/%d", day2, month2, year2, day1, month1, year1); } else if (year2 == year1) { if (month1 < month2) { printf("%d/%d/%d is earlier than %d/%d/%d", day1, month1, year1, day2, month2, year2); } else if (month2 < month1) { printf("%d/%d/%d is earlier than %d/%d/%d", day2, month2, year2, day1, month1, year1); } else if (month1 == month2) { if (day1 < day2) { printf("%d/%d/%d is earlier than %d/%d/%d", day1, month1, year1, day2, month2, year2); } else if (day2 < day1) { printf("%d/%d/%d is earlier than %d/%d/%d", day2, month2, year2, day1, month1, year1); } } } return 0; }
the_stack_data/12420.c
/* * MIT License * * Copyright (c) 2021 Yago Fontoura do Rosário <[email protected]> * * 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, sublicense, 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 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 NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS 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. * */ char uuids[1000][37] = { "182acfda-4407-45b1-9214-12285ac5ce32", "820643db-f44a-4380-ad84-6ee94976103a", "b9721a8e-491b-4a1a-b28b-0071312e01ea", "ca621da3-b60f-49ab-b23f-ce56cb54258d", "8b060223-71a5-4572-ad66-a9b48eab5bfa", "13b055c6-f996-4425-b9a0-27d38450d6f9", "aba097a3-9261-425a-bfe6-6a6ce2498246", "f4c30944-bbe7-43f2-9301-24b300ee5d7b", "62bc0d63-cbef-4f50-ae0c-4e0c737170bd", "98247b72-a3f7-47f8-b556-1c7c611fbfe0", "864cd39a-5de8-47a8-ba93-06590eebeb55", "030beb72-e70e-4b0e-84f8-6db11fa157d8", "45a254ae-8b83-4a09-b2e3-95b5e481ea3c", "312dbd97-4e13-407e-aa10-b35844f6bac4", "65bc2290-3537-427e-a65b-c2e00855bf30", "336e2538-fa06-4e88-9b51-371517e4c9e4", "7a90b317-43c8-48ed-8dcf-81f08849f9cf", 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"48fcb341-6353-4e39-b066-88031178bd2b", "ed15aaf6-5a67-44ad-909e-4e60ef8b242c", "805f8a58-b862-4661-a7ed-a4c88f06ecfc", "e7d2b372-bd6d-4daa-ade1-00634f839dbb", "3fed88c4-c006-4c54-abb4-3905df50dc89", "03feeec1-98c7-4d43-adbc-5914cc7700f7", "fed28630-09d8-48ff-b9ec-269b53e7ffba", "6bad54c9-33fa-4341-9b78-7e1f4cd3de83", };
the_stack_data/35366.c
#include <linux/kernel.h> #include <sys/syscall.h> #include <unistd.h> #include <stdio.h> int main(void) { long retval = syscall(398); return 0; }
the_stack_data/159515045.c
#include <sys/types.h> #include <sys/stat.h> #include <fcntl.h> #include <stdio.h> int main(void) { int fd; char *file = "/home/jonah/linux_sys_prog/test.txt"; /*fd = open(file, O_WRONLY | O_CREAT | O_TRUNC, S_IWUSR | S_IRUSR | S_IWGRP | S_IRGRP | S_IROTH);*/ fd = open(file, O_WRONLY | O_CREAT | O_TRUNC, 0664); if (fd == -1) { printf("wuh-oh\n"); } else { printf("no wuh-oh!\n"); } }
the_stack_data/5823.c
#include <stdio.h> #include <stdlib.h> #include <string.h> #include <CL/cl.h> unsigned char *read_buffer(char *file_name, size_t *size_ptr) { FILE *f; unsigned char *buf; size_t size; /* Open file */ f = fopen(file_name, "rb"); if (!f) return NULL; /* Obtain file size */ fseek(f, 0, SEEK_END); size = ftell(f); fseek(f, 0, SEEK_SET); /* Allocate and read buffer */ buf = malloc(size + 1); fread(buf, 1, size, f); buf[size] = '\0'; /* Return size of buffer */ if (size_ptr) *size_ptr = size; /* Return buffer */ return buf; } void write_buffer(char *file_name, const char *buffer, size_t buffer_size) { FILE *f; /* Open file */ f = fopen(file_name, "w+"); /* Write buffer */ if(buffer) fwrite(buffer, 1, buffer_size, f); /* Close file */ fclose(f); } int main(int argc, char const *argv[]) { /* Get platform */ cl_platform_id platform; cl_uint num_platforms; cl_int ret = clGetPlatformIDs(1, &platform, &num_platforms); if (ret != CL_SUCCESS) { printf("error: call to 'clGetPlatformIDs' failed\n"); exit(1); } printf("Number of platforms: %d\n", num_platforms); printf("platform=%p\n", platform); /* Get platform name */ char platform_name[100]; ret = clGetPlatformInfo(platform, CL_PLATFORM_NAME, sizeof(platform_name), platform_name, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clGetPlatformInfo' failed\n"); exit(1); } printf("platform.name='%s'\n\n", platform_name); /* Get device */ cl_device_id device; cl_uint num_devices; ret = clGetDeviceIDs(platform, CL_DEVICE_TYPE_GPU, 1, &device, &num_devices); if (ret != CL_SUCCESS) { printf("error: call to 'clGetDeviceIDs' failed\n"); exit(1); } printf("Number of devices: %d\n", num_devices); printf("device=%p\n", device); /* Get device name */ char device_name[100]; ret = clGetDeviceInfo(device, CL_DEVICE_NAME, sizeof(device_name), device_name, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clGetDeviceInfo' failed\n"); exit(1); } printf("device.name='%s'\n", device_name); printf("\n"); /* Create a Context Object */ cl_context context; context = clCreateContext(NULL, 1, &device, NULL, NULL, &ret); if (ret != CL_SUCCESS) { printf("error: call to 'clCreateContext' failed\n"); exit(1); } printf("context=%p\n", context); /* Create a Command Queue Object*/ cl_command_queue command_queue; command_queue = clCreateCommandQueue(context, device, 0, &ret); if (ret != CL_SUCCESS) { printf("error: call to 'clCreateCommandQueue' failed\n"); exit(1); } printf("command_queue=%p\n", command_queue); printf("\n"); /* Program source */ unsigned char *source_code; size_t source_length; /* Read program from 'mul_hi_short4short4.cl' */ source_code = read_buffer("mul_hi_short4short4.cl", &source_length); /* Create a program */ cl_program program; program = clCreateProgramWithSource(context, 1, (const char **)&source_code, &source_length, &ret); if (ret != CL_SUCCESS) { printf("error: call to 'clCreateProgramWithSource' failed\n"); exit(1); } printf("program=%p\n", program); /* Build program */ ret = clBuildProgram(program, 1, &device, NULL, NULL, NULL); if (ret != CL_SUCCESS ) { size_t size; char *log; /* Get log size */ clGetProgramBuildInfo(program, device, CL_PROGRAM_BUILD_LOG,0, NULL, &size); /* Allocate log and print */ log = malloc(size); clGetProgramBuildInfo(program, device, CL_PROGRAM_BUILD_LOG,size, log, NULL); printf("error: call to 'clBuildProgram' failed:\n%s\n", log); /* Free log and exit */ free(log); exit(1); } printf("program built\n"); printf("\n"); /* Create a Kernel Object */ cl_kernel kernel; kernel = clCreateKernel(program, "mul_hi_short4short4", &ret); if (ret != CL_SUCCESS) { printf("error: call to 'clCreateKernel' failed\n"); exit(1); } /* Create and allocate host buffers */ size_t num_elem = 10; /* Create and init host side src buffer 0 */ cl_short4 *src_0_host_buffer; src_0_host_buffer = malloc(num_elem * sizeof(cl_short4)); for (int i = 0; i < num_elem; i++) src_0_host_buffer[i] = (cl_short4){{2, 2, 2, 2}}; /* Create and init device side src buffer 0 */ cl_mem src_0_device_buffer; src_0_device_buffer = clCreateBuffer(context, CL_MEM_READ_ONLY, num_elem * sizeof(cl_short4), NULL, &ret); if (ret != CL_SUCCESS) { printf("error: could not create source buffer\n"); exit(1); } ret = clEnqueueWriteBuffer(command_queue, src_0_device_buffer, CL_TRUE, 0, num_elem * sizeof(cl_short4), src_0_host_buffer, 0, NULL, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clEnqueueWriteBuffer' failed\n"); exit(1); } /* Create and init host side src buffer 1 */ cl_short4 *src_1_host_buffer; src_1_host_buffer = malloc(num_elem * sizeof(cl_short4)); for (int i = 0; i < num_elem; i++) src_1_host_buffer[i] = (cl_short4){{2, 2, 2, 2}}; /* Create and init device side src buffer 1 */ cl_mem src_1_device_buffer; src_1_device_buffer = clCreateBuffer(context, CL_MEM_READ_ONLY, num_elem * sizeof(cl_short4), NULL, &ret); if (ret != CL_SUCCESS) { printf("error: could not create source buffer\n"); exit(1); } ret = clEnqueueWriteBuffer(command_queue, src_1_device_buffer, CL_TRUE, 0, num_elem * sizeof(cl_short4), src_1_host_buffer, 0, NULL, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clEnqueueWriteBuffer' failed\n"); exit(1); } /* Create host dst buffer */ cl_short4 *dst_host_buffer; dst_host_buffer = malloc(num_elem * sizeof(cl_short4)); memset((void *)dst_host_buffer, 1, num_elem * sizeof(cl_short4)); /* Create device dst buffer */ cl_mem dst_device_buffer; dst_device_buffer = clCreateBuffer(context, CL_MEM_WRITE_ONLY, num_elem *sizeof(cl_short4), NULL, &ret); if (ret != CL_SUCCESS) { printf("error: could not create dst buffer\n"); exit(1); } /* Set kernel arguments */ ret = CL_SUCCESS; ret |= clSetKernelArg(kernel, 0, sizeof(cl_mem), &src_0_device_buffer); ret |= clSetKernelArg(kernel, 1, sizeof(cl_mem), &src_1_device_buffer); ret |= clSetKernelArg(kernel, 2, sizeof(cl_mem), &dst_device_buffer); if (ret != CL_SUCCESS) { printf("error: call to 'clSetKernelArg' failed\n"); exit(1); } /* Launch the kernel */ size_t global_work_size = num_elem; size_t local_work_size = num_elem; ret = clEnqueueNDRangeKernel(command_queue, kernel, 1, NULL, &global_work_size, &local_work_size, 0, NULL, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clEnqueueNDRangeKernel' failed\n"); exit(1); } /* Wait for it to finish */ clFinish(command_queue); /* Read results from GPU */ ret = clEnqueueReadBuffer(command_queue, dst_device_buffer, CL_TRUE,0, num_elem * sizeof(cl_short4), dst_host_buffer, 0, NULL, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clEnqueueReadBuffer' failed\n"); exit(1); } /* Dump dst buffer to file */ char dump_file[100]; sprintf((char *)&dump_file, "%s.result", argv[0]); write_buffer(dump_file, (const char *)dst_host_buffer, num_elem * sizeof(cl_short4)); printf("Result dumped to %s\n", dump_file); /* Free host dst buffer */ free(dst_host_buffer); /* Free device dst buffer */ ret = clReleaseMemObject(dst_device_buffer); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseMemObject' failed\n"); exit(1); } /* Free host side src buffer 0 */ free(src_0_host_buffer); /* Free device side src buffer 0 */ ret = clReleaseMemObject(src_0_device_buffer); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseMemObject' failed\n"); exit(1); } /* Free host side src buffer 1 */ free(src_1_host_buffer); /* Free device side src buffer 1 */ ret = clReleaseMemObject(src_1_device_buffer); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseMemObject' failed\n"); exit(1); } /* Release kernel */ ret = clReleaseKernel(kernel); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseKernel' failed\n"); exit(1); } /* Release program */ ret = clReleaseProgram(program); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseProgram' failed\n"); exit(1); } /* Release command queue */ ret = clReleaseCommandQueue(command_queue); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseCommandQueue' failed\n"); exit(1); } /* Release context */ ret = clReleaseContext(context); if (ret != CL_SUCCESS) { printf("error: call to 'clReleaseContext' failed\n"); exit(1); } return 0; }
the_stack_data/87638703.c
#ifndef IN_GENERATED_CCODE #define IN_GENERATED_CCODE #define U_DISABLE_RENAMING 1 #include "unicode/umachine.h" #endif U_CDECL_BEGIN const struct { double bogus; uint8_t bytes[102112]; } icudt57l_ibm_5067_P100_1995_cnv={ 0.0, { 128,0,218,39,20,0,0,0,0,0,2,0,99,110,118,116, 6,2,0,0,57,1,0,0,32,67,111,112,121,114,105,103, 104,116,32,40,67,41,32,50,48,49,54,44,32,73,110,116, 101,114,110,97,116,105,111,110,97,108,32,66,117,115,105,110, 101,115,115,32,77,97,99,104,105,110,101,115,32,67,111,114, 112,111,114,97,116,105,111,110,32,97,110,100,32,111,116,104, 101,114,115,46,32,65,108,108,32,82,105,103,104,116,115,32, 82,101,115,101,114,118,101,100,46,32,0,0,0,0,0,0, 100,0,0,0,105,98,109,45,53,48,54,55,95,80,49,48, 48,45,49,57,57,53,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 203,19,0,0,0,2,2,2,47,126,0,0,2,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,4,4,215,0,3,0,0,0,0,0,0,0, 32,12,0,0,40,81,0,0,220,121,0,0,1,0,0,0, 96,13,1,0,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,2,0,0,0,2, 0,0,0,2,0,0,0,2,0,0,0,1,94,0,0,1, 188,0,0,1,26,1,0,1,120,1,0,1,214,1,0,1, 52,2,0,1,146,2,0,1,240,2,0,1,78,3,0,1, 172,3,0,1,10,4,0,1,104,4,0,1,198,4,0,1, 36,5,0,1,130,5,0,1,224,5,0,1,62,6,0,1, 156,6,0,1,250,6,0,1,88,7,0,1,182,7,0,1, 20,8,0,1,114,8,0,1,208,8,0,1,46,9,0,1, 140,9,0,1,234,9,0,1,72,10,0,1,166,10,0,1, 4,11,0,1,98,11,0,1,192,11,0,1,30,12,0,1, 124,12,0,1,218,12,0,1,56,13,0,1,150,13,0,1, 244,13,0,1,82,14,0,1,176,14,0,1,14,15,0,1, 108,15,0,1,202,15,0,1,40,16,0,1,134,16,0,1, 228,16,0,1,66,17,0,1,160,17,0,1,254,17,0,1, 92,18,0,1,186,18,0,1,24,19,0,1,118,19,0,1, 212,19,0,1,50,20,0,1,144,20,0,1,238,20,0,1, 76,21,0,1,170,21,0,1,8,22,0,1,102,22,0,1, 196,22,0,1,34,23,0,1,128,23,0,1,222,23,0,1, 60,24,0,1,154,24,0,1,248,24,0,1,86,25,0,1, 180,25,0,1,18,26,0,1,112,26,0,1,206,26,0,1, 44,27,0,1,138,27,0,1,232,27,0,1,70,28,0,1, 164,28,0,1,2,29,0,1,96,29,0,1,190,29,0,1, 28,30,0,1,122,30,0,1,216,30,0,1,54,31,0,1, 148,31,0,1,242,31,0,1,80,32,0,1,174,32,0,1, 12,33,0,1,106,33,0,1,200,33,0,1,38,34,0,1, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,132,34,0,2,132,34,0,2,132,34,0,2, 132,34,0,2,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,0,0,64,128,1,0,64,128, 2,0,64,128,3,0,64,128,4,0,64,128,5,0,64,128, 6,0,64,128,7,0,64,128,8,0,64,128,9,0,64,128, 10,0,64,128,11,0,64,128,12,0,64,128,13,0,64,128, 14,0,64,128,15,0,64,128,16,0,64,128,17,0,64,128, 18,0,64,128,19,0,64,128,20,0,64,128,21,0,64,128, 22,0,64,128,23,0,64,128,24,0,64,128,25,0,64,128, 26,0,64,128,27,0,64,128,28,0,64,128,29,0,64,128, 30,0,64,128,31,0,64,128,32,0,64,128,33,0,64,128, 34,0,64,128,35,0,64,128,36,0,64,128,37,0,64,128, 38,0,64,128,39,0,64,128,40,0,64,128,41,0,64,128, 42,0,64,128,43,0,64,128,44,0,64,128,45,0,64,128, 46,0,64,128,47,0,64,128,48,0,64,128,49,0,64,128, 50,0,64,128,51,0,64,128,52,0,64,128,53,0,64,128, 54,0,64,128,55,0,64,128,56,0,64,128,57,0,64,128, 58,0,64,128,59,0,64,128,60,0,64,128,61,0,64,128, 62,0,64,128,63,0,64,128,64,0,64,128,65,0,64,128, 66,0,64,128,67,0,64,128,68,0,64,128,69,0,64,128, 70,0,64,128,71,0,64,128,72,0,64,128,73,0,64,128, 74,0,64,128,75,0,64,128,76,0,64,128,77,0,64,128, 78,0,64,128,79,0,64,128,80,0,64,128,81,0,64,128, 82,0,64,128,83,0,64,128,84,0,64,128,85,0,64,128, 86,0,64,128,87,0,64,128,88,0,64,128,89,0,64,128, 90,0,64,128,91,0,64,128,92,0,64,128,93,0,64,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,255,255,112,128,255,255,112,128,255,255,112,128, 255,255,112,128,0,48,1,48,2,48,251,48,37,32,38,32, 168,0,3,48,16,32,20,32,37,34,60,255,28,48,24,32, 25,32,28,32,29,32,20,48,21,48,8,48,9,48,10,48, 11,48,12,48,13,48,14,48,15,48,16,48,17,48,177,0, 215,0,247,0,96,34,100,34,101,34,30,34,52,34,176,0, 50,32,51,32,3,33,43,33,224,255,225,255,229,255,66,38, 64,38,32,34,165,34,18,35,2,34,7,34,97,34,82,34, 167,0,59,32,6,38,5,38,203,37,207,37,206,37,199,37, 198,37,161,37,160,37,179,37,178,37,189,37,188,37,146,33, 144,33,145,33,147,33,148,33,19,48,106,34,107,34,26,34, 61,34,29,34,53,34,43,34,44,34,8,34,11,34,134,34, 135,34,130,34,131,34,42,34,41,34,39,34,40,34,226,255, 210,33,212,33,0,34,3,34,180,0,220,2,199,2,216,2, 221,2,218,2,217,2,184,0,219,2,161,0,191,0,208,2, 46,34,17,34,15,34,164,0,9,33,48,32,193,37,192,37, 183,37,182,37,100,38,96,38,97,38,101,38,103,38,99,38, 201,37,200,37,163,37,208,37,209,37,146,37,164,37,165,37, 168,37,167,37,166,37,169,37,104,38,15,38,14,38,28,38, 30,38,182,0,32,32,33,32,149,33,151,33,153,33,150,33, 152,33,109,38,105,38,106,38,108,38,127,50,28,50,22,33, 199,51,34,33,194,51,216,51,33,33,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,1,255,2,255, 3,255,4,255,5,255,6,255,7,255,8,255,9,255,10,255, 11,255,12,255,13,255,14,255,15,255,16,255,17,255,18,255, 19,255,20,255,21,255,22,255,23,255,24,255,25,255,26,255, 27,255,28,255,29,255,30,255,31,255,32,255,33,255,34,255, 35,255,36,255,37,255,38,255,39,255,40,255,41,255,42,255, 43,255,44,255,45,255,46,255,47,255,48,255,49,255,50,255, 51,255,52,255,53,255,54,255,55,255,56,255,57,255,58,255, 59,255,230,255,61,255,62,255,63,255,64,255,65,255,66,255, 67,255,68,255,69,255,70,255,71,255,72,255,73,255,74,255, 75,255,76,255,77,255,78,255,79,255,80,255,81,255,82,255, 83,255,84,255,85,255,86,255,87,255,88,255,89,255,90,255, 91,255,92,255,93,255,227,255,49,49,50,49,51,49,52,49, 53,49,54,49,55,49,56,49,57,49,58,49,59,49,60,49, 61,49,62,49,63,49,64,49,65,49,66,49,67,49,68,49, 69,49,70,49,71,49,72,49,73,49,74,49,75,49,76,49, 77,49,78,49,79,49,80,49,81,49,82,49,83,49,84,49, 85,49,86,49,87,49,88,49,89,49,90,49,91,49,92,49, 93,49,94,49,95,49,96,49,97,49,98,49,99,49,100,49, 101,49,102,49,103,49,104,49,105,49,106,49,107,49,108,49, 109,49,110,49,111,49,112,49,113,49,114,49,115,49,116,49, 117,49,118,49,119,49,120,49,121,49,122,49,123,49,124,49, 125,49,126,49,127,49,128,49,129,49,130,49,131,49,132,49, 133,49,134,49,135,49,136,49,137,49,138,49,139,49,140,49, 141,49,142,49,112,33,113,33,114,33,115,33,116,33,117,33, 118,33,119,33,120,33,121,33,254,255,254,255,254,255,254,255, 254,255,96,33,97,33,98,33,99,33,100,33,101,33,102,33, 103,33,104,33,105,33,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,145,3,146,3,147,3,148,3,149,3,150,3, 151,3,152,3,153,3,154,3,155,3,156,3,157,3,158,3, 159,3,160,3,161,3,163,3,164,3,165,3,166,3,167,3, 168,3,169,3,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,177,3,178,3,179,3,180,3,181,3,182,3, 183,3,184,3,185,3,186,3,187,3,188,3,189,3,190,3, 191,3,192,3,193,3,195,3,196,3,197,3,198,3,199,3, 200,3,201,3,254,255,254,255,254,255,254,255,254,255,254,255, 0,37,2,37,12,37,16,37,24,37,20,37,28,37,44,37, 36,37,52,37,60,37,1,37,3,37,15,37,19,37,27,37, 23,37,35,37,51,37,43,37,59,37,75,37,32,37,47,37, 40,37,55,37,63,37,29,37,48,37,37,37,56,37,66,37, 18,37,17,37,26,37,25,37,22,37,21,37,14,37,13,37, 30,37,31,37,33,37,34,37,38,37,39,37,41,37,42,37, 45,37,46,37,49,37,50,37,53,37,54,37,57,37,58,37, 61,37,62,37,64,37,65,37,67,37,68,37,69,37,70,37, 71,37,72,37,73,37,74,37,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,149,51,150,51, 151,51,19,33,152,51,196,51,163,51,164,51,165,51,166,51, 153,51,154,51,155,51,156,51,157,51,158,51,159,51,160,51, 161,51,162,51,202,51,141,51,142,51,143,51,207,51,136,51, 137,51,200,51,167,51,168,51,176,51,177,51,178,51,179,51, 180,51,181,51,182,51,183,51,184,51,185,51,128,51,129,51, 130,51,131,51,132,51,186,51,187,51,188,51,189,51,190,51, 191,51,144,51,145,51,146,51,147,51,148,51,38,33,192,51, 193,51,138,51,139,51,140,51,214,51,197,51,173,51,174,51, 175,51,219,51,169,51,170,51,171,51,172,51,221,51,208,51, 211,51,195,51,201,51,220,51,198,51,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,198,0,208,0,170,0,38,1, 254,255,50,1,254,255,63,1,65,1,216,0,82,1,186,0, 222,0,102,1,74,1,254,255,96,50,97,50,98,50,99,50, 100,50,101,50,102,50,103,50,104,50,105,50,106,50,107,50, 108,50,109,50,110,50,111,50,112,50,113,50,114,50,115,50, 116,50,117,50,118,50,119,50,120,50,121,50,122,50,123,50, 208,36,209,36,210,36,211,36,212,36,213,36,214,36,215,36, 216,36,217,36,218,36,219,36,220,36,221,36,222,36,223,36, 224,36,225,36,226,36,227,36,228,36,229,36,230,36,231,36, 232,36,233,36,96,36,97,36,98,36,99,36,100,36,101,36, 102,36,103,36,104,36,105,36,106,36,107,36,108,36,109,36, 110,36,189,0,83,33,84,33,188,0,190,0,91,33,92,33, 93,33,94,33,230,0,17,1,240,0,39,1,49,1,51,1, 56,1,64,1,66,1,248,0,83,1,223,0,254,0,103,1, 75,1,73,1,0,50,1,50,2,50,3,50,4,50,5,50, 6,50,7,50,8,50,9,50,10,50,11,50,12,50,13,50, 14,50,15,50,16,50,17,50,18,50,19,50,20,50,21,50, 22,50,23,50,24,50,25,50,26,50,27,50,156,36,157,36, 158,36,159,36,160,36,161,36,162,36,163,36,164,36,165,36, 166,36,167,36,168,36,169,36,170,36,171,36,172,36,173,36, 174,36,175,36,176,36,177,36,178,36,179,36,180,36,181,36, 116,36,117,36,118,36,119,36,120,36,121,36,122,36,123,36, 124,36,125,36,126,36,127,36,128,36,129,36,130,36,185,0, 178,0,179,0,116,32,127,32,129,32,130,32,131,32,132,32, 65,48,66,48,67,48,68,48,69,48,70,48,71,48,72,48, 73,48,74,48,75,48,76,48,77,48,78,48,79,48,80,48, 81,48,82,48,83,48,84,48,85,48,86,48,87,48,88,48, 89,48,90,48,91,48,92,48,93,48,94,48,95,48,96,48, 97,48,98,48,99,48,100,48,101,48,102,48,103,48,104,48, 105,48,106,48,107,48,108,48,109,48,110,48,111,48,112,48, 113,48,114,48,115,48,116,48,117,48,118,48,119,48,120,48, 121,48,122,48,123,48,124,48,125,48,126,48,127,48,128,48, 129,48,130,48,131,48,132,48,133,48,134,48,135,48,136,48, 137,48,138,48,139,48,140,48,141,48,142,48,143,48,144,48, 145,48,146,48,147,48,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,161,48,162,48, 163,48,164,48,165,48,166,48,167,48,168,48,169,48,170,48, 171,48,172,48,173,48,174,48,175,48,176,48,177,48,178,48, 179,48,180,48,181,48,182,48,183,48,184,48,185,48,186,48, 187,48,188,48,189,48,190,48,191,48,192,48,193,48,194,48, 195,48,196,48,197,48,198,48,199,48,200,48,201,48,202,48, 203,48,204,48,205,48,206,48,207,48,208,48,209,48,210,48, 211,48,212,48,213,48,214,48,215,48,216,48,217,48,218,48, 219,48,220,48,221,48,222,48,223,48,224,48,225,48,226,48, 227,48,228,48,229,48,230,48,231,48,232,48,233,48,234,48, 235,48,236,48,237,48,238,48,239,48,240,48,241,48,242,48, 243,48,244,48,245,48,246,48,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,16,4,17,4,18,4,19,4, 20,4,21,4,1,4,22,4,23,4,24,4,25,4,26,4, 27,4,28,4,29,4,30,4,31,4,32,4,33,4,34,4, 35,4,36,4,37,4,38,4,39,4,40,4,41,4,42,4, 43,4,44,4,45,4,46,4,47,4,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,48,4,49,4,50,4,51,4, 52,4,53,4,81,4,54,4,55,4,56,4,57,4,58,4, 59,4,60,4,61,4,62,4,63,4,64,4,65,4,66,4, 67,4,68,4,69,4,70,4,71,4,72,4,73,4,74,4, 75,4,76,4,77,4,78,4,79,4,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,254,255,254,255,254,255,254,255, 254,255,254,255,254,255,254,255,0,172,1,172,4,172,7,172, 8,172,9,172,10,172,16,172,17,172,18,172,19,172,20,172, 21,172,22,172,23,172,25,172,26,172,27,172,28,172,29,172, 32,172,36,172,44,172,45,172,47,172,48,172,49,172,56,172, 57,172,60,172,64,172,75,172,77,172,84,172,88,172,92,172, 112,172,113,172,116,172,119,172,120,172,122,172,128,172,129,172, 131,172,132,172,133,172,134,172,137,172,138,172,139,172,140,172, 144,172,148,172,156,172,157,172,159,172,160,172,161,172,168,172, 169,172,170,172,172,172,175,172,176,172,184,172,185,172,187,172, 188,172,189,172,193,172,196,172,200,172,204,172,213,172,215,172, 224,172,225,172,228,172,231,172,232,172,234,172,236,172,239,172, 240,172,241,172,243,172,245,172,246,172,252,172,253,172,0,173, 4,173,6,173,12,173,13,173,15,173,17,173,24,173,28,173, 32,173,41,173,44,173,45,173,52,173,53,173,56,173,60,173, 68,173,69,173,71,173,73,173,80,173,84,173,88,173,97,173, 99,173,108,173,109,173,112,173,115,173,116,173,117,173,118,173, 123,173,124,173,125,173,127,173,129,173,130,173,136,173,137,173, 140,173,144,173,156,173,157,173,164,173,183,173,192,173,193,173, 196,173,200,173,208,173,209,173,211,173,220,173,224,173,228,173, 248,173,249,173,252,173,255,173,0,174,1,174,8,174,9,174, 11,174,13,174,20,174,48,174,49,174,52,174,55,174,56,174, 58,174,64,174,65,174,67,174,69,174,70,174,74,174,76,174, 77,174,78,174,80,174,84,174,86,174,92,174,93,174,95,174, 96,174,97,174,101,174,104,174,105,174,108,174,112,174,120,174, 121,174,123,174,124,174,125,174,132,174,133,174,140,174,188,174, 189,174,190,174,192,174,196,174,204,174,205,174,207,174,208,174, 209,174,216,174,217,174,220,174,232,174,235,174,237,174,244,174, 248,174,252,174,7,175,8,175,13,175,16,175,44,175,45,175, 48,175,50,175,52,175,60,175,61,175,63,175,65,175,66,175, 67,175,72,175,73,175,80,175,92,175,93,175,100,175,101,175, 121,175,128,175,132,175,136,175,144,175,145,175,149,175,156,175, 184,175,185,175,188,175,192,175,199,175,200,175,201,175,203,175, 205,175,206,175,212,175,220,175,232,175,233,175,240,175,241,175, 244,175,248,175,0,176,1,176,4,176,12,176,16,176,20,176, 28,176,29,176,40,176,68,176,69,176,72,176,74,176,76,176, 78,176,83,176,84,176,85,176,87,176,89,176,93,176,124,176, 125,176,128,176,132,176,140,176,141,176,143,176,145,176,152,176, 153,176,154,176,156,176,159,176,160,176,161,176,162,176,168,176, 169,176,171,176,172,176,173,176,174,176,175,176,177,176,179,176, 180,176,181,176,184,176,188,176,196,176,197,176,199,176,200,176, 201,176,208,176,209,176,212,176,216,176,224,176,229,176,8,177, 9,177,11,177,12,177,16,177,18,177,19,177,24,177,25,177, 27,177,28,177,29,177,35,177,36,177,37,177,40,177,44,177, 52,177,53,177,55,177,56,177,57,177,64,177,65,177,68,177, 72,177,80,177,81,177,84,177,85,177,88,177,92,177,96,177, 120,177,121,177,124,177,128,177,130,177,136,177,137,177,139,177, 141,177,146,177,147,177,148,177,152,177,156,177,168,177,204,177, 208,177,212,177,220,177,221,177,223,177,232,177,233,177,236,177, 240,177,249,177,251,177,253,177,4,178,5,178,8,178,11,178, 12,178,20,178,21,178,23,178,25,178,32,178,52,178,60,178, 88,178,92,178,96,178,104,178,105,178,116,178,117,178,124,178, 132,178,133,178,137,178,144,178,145,178,148,178,152,178,153,178, 154,178,160,178,161,178,163,178,165,178,166,178,170,178,172,178, 176,178,180,178,200,178,201,178,204,178,208,178,210,178,216,178, 217,178,219,178,221,178,226,178,228,178,229,178,230,178,232,178, 235,178,236,178,237,178,238,178,239,178,243,178,244,178,245,178, 247,178,248,178,249,178,250,178,251,178,255,178,0,179,1,179, 4,179,8,179,16,179,17,179,19,179,20,179,21,179,28,179, 84,179,85,179,86,179,88,179,91,179,92,179,94,179,95,179, 100,179,101,179,103,179,105,179,107,179,110,179,112,179,113,179, 116,179,120,179,128,179,129,179,131,179,132,179,133,179,140,179, 144,179,148,179,160,179,161,179,168,179,172,179,196,179,197,179, 200,179,203,179,204,179,206,179,208,179,212,179,213,179,215,179, 217,179,219,179,221,179,224,179,228,179,232,179,252,179,16,180, 24,180,28,180,32,180,40,180,41,180,43,180,52,180,80,180, 81,180,84,180,88,180,96,180,97,180,99,180,101,180,108,180, 128,180,136,180,157,180,164,180,168,180,172,180,181,180,183,180, 185,180,192,180,196,180,200,180,208,180,213,180,220,180,221,180, 224,180,227,180,228,180,230,180,236,180,237,180,239,180,241,180, 248,180,20,181,21,181,24,181,27,181,28,181,36,181,37,181, 39,181,40,181,41,181,42,181,48,181,49,181,52,181,56,181, 64,181,65,181,67,181,68,181,69,181,75,181,76,181,77,181, 80,181,84,181,92,181,93,181,95,181,96,181,97,181,160,181, 161,181,164,181,168,181,170,181,171,181,176,181,177,181,179,181, 180,181,181,181,187,181,188,181,189,181,192,181,196,181,204,181, 205,181,207,181,208,181,209,181,216,181,236,181,16,182,17,182, 20,182,24,182,37,182,44,182,52,182,72,182,100,182,104,182, 156,182,157,182,160,182,164,182,171,182,172,182,177,182,212,182, 240,182,244,182,248,182,0,183,1,183,5,183,40,183,41,183, 44,183,47,183,48,183,56,183,57,183,59,183,68,183,72,183, 76,183,84,183,85,183,96,183,100,183,104,183,112,183,113,183, 115,183,117,183,124,183,125,183,128,183,132,183,140,183,141,183, 143,183,144,183,145,183,146,183,150,183,151,183,152,183,153,183, 156,183,160,183,168,183,169,183,171,183,172,183,173,183,180,183, 181,183,184,183,199,183,201,183,236,183,237,183,240,183,244,183, 252,183,253,183,255,183,0,184,1,184,7,184,8,184,9,184, 12,184,16,184,24,184,25,184,27,184,29,184,36,184,37,184, 40,184,44,184,52,184,53,184,55,184,56,184,57,184,64,184, 68,184,81,184,83,184,92,184,93,184,96,184,100,184,108,184, 109,184,111,184,113,184,120,184,124,184,141,184,168,184,176,184, 180,184,184,184,192,184,193,184,195,184,197,184,204,184,208,184, 212,184,221,184,223,184,225,184,232,184,233,184,236,184,240,184, 248,184,249,184,251,184,253,184,4,185,24,185,32,185,60,185, 61,185,64,185,68,185,76,185,79,185,81,185,88,185,89,185, 92,185,96,185,104,185,105,185,107,185,109,185,116,185,117,185, 120,185,124,185,132,185,133,185,135,185,137,185,138,185,141,185, 142,185,172,185,173,185,176,185,180,185,188,185,189,185,191,185, 193,185,200,185,201,185,204,185,206,185,207,185,208,185,209,185, 210,185,216,185,217,185,219,185,221,185,222,185,225,185,227,185, 228,185,229,185,232,185,236,185,244,185,245,185,247,185,248,185, 249,185,250,185,0,186,1,186,8,186,21,186,56,186,57,186, 60,186,64,186,66,186,72,186,73,186,75,186,77,186,78,186, 83,186,84,186,85,186,88,186,92,186,100,186,101,186,103,186, 104,186,105,186,112,186,113,186,116,186,120,186,131,186,132,186, 133,186,135,186,140,186,168,186,169,186,171,186,172,186,176,186, 178,186,184,186,185,186,187,186,189,186,196,186,200,186,216,186, 217,186,252,186,0,187,4,187,13,187,15,187,17,187,24,187, 28,187,32,187,41,187,43,187,52,187,53,187,54,187,56,187, 59,187,60,187,61,187,62,187,68,187,69,187,71,187,73,187, 77,187,79,187,80,187,84,187,88,187,97,187,99,187,108,187, 136,187,140,187,144,187,164,187,168,187,172,187,180,187,183,187, 192,187,196,187,200,187,208,187,211,187,248,187,249,187,252,187, 255,187,0,188,2,188,8,188,9,188,11,188,12,188,13,188, 15,188,17,188,20,188,21,188,22,188,23,188,24,188,27,188, 28,188,29,188,30,188,31,188,36,188,37,188,39,188,41,188, 45,188,48,188,49,188,52,188,56,188,64,188,65,188,67,188, 68,188,69,188,73,188,76,188,77,188,80,188,93,188,132,188, 133,188,136,188,139,188,140,188,142,188,148,188,149,188,151,188, 153,188,154,188,160,188,161,188,164,188,167,188,168,188,176,188, 177,188,179,188,180,188,181,188,188,188,189,188,192,188,196,188, 205,188,207,188,208,188,209,188,213,188,216,188,220,188,244,188, 245,188,246,188,248,188,252,188,4,189,5,189,7,189,9,189, 16,189,20,189,36,189,44,189,64,189,72,189,73,189,76,189, 80,189,88,189,89,189,100,189,104,189,128,189,129,189,132,189, 135,189,136,189,137,189,138,189,144,189,145,189,147,189,149,189, 153,189,154,189,156,189,164,189,176,189,184,189,212,189,213,189, 216,189,220,189,233,189,240,189,244,189,248,189,0,190,3,190, 5,190,12,190,13,190,16,190,20,190,28,190,29,190,31,190, 68,190,69,190,72,190,76,190,78,190,84,190,85,190,87,190, 89,190,90,190,91,190,96,190,97,190,100,190,104,190,106,190, 112,190,113,190,115,190,116,190,117,190,123,190,124,190,125,190, 128,190,132,190,140,190,141,190,143,190,144,190,145,190,152,190, 153,190,168,190,208,190,209,190,212,190,215,190,216,190,224,190, 227,190,228,190,229,190,236,190,1,191,8,191,9,191,24,191, 25,191,27,191,28,191,29,191,64,191,65,191,68,191,72,191, 80,191,81,191,85,191,148,191,176,191,197,191,204,191,205,191, 208,191,212,191,220,191,223,191,225,191,60,192,81,192,88,192, 92,192,96,192,104,192,105,192,144,192,145,192,148,192,152,192, 160,192,161,192,163,192,165,192,172,192,173,192,175,192,176,192, 179,192,180,192,181,192,182,192,188,192,189,192,191,192,192,192, 193,192,197,192,200,192,201,192,204,192,208,192,216,192,217,192, 219,192,220,192,221,192,228,192,229,192,232,192,236,192,244,192, 245,192,247,192,249,192,0,193,4,193,8,193,16,193,21,193, 28,193,29,193,30,193,31,193,32,193,35,193,36,193,38,193, 39,193,44,193,45,193,47,193,48,193,49,193,54,193,56,193, 57,193,60,193,64,193,72,193,73,193,75,193,76,193,77,193, 84,193,85,193,88,193,92,193,100,193,101,193,103,193,104,193, 105,193,112,193,116,193,120,193,133,193,140,193,141,193,142,193, 144,193,148,193,150,193,156,193,157,193,159,193,161,193,165,193, 168,193,169,193,172,193,176,193,189,193,196,193,200,193,204,193, 212,193,215,193,216,193,224,193,228,193,232,193,240,193,241,193, 243,193,252,193,253,193,0,194,4,194,12,194,13,194,15,194, 17,194,24,194,25,194,28,194,31,194,32,194,40,194,41,194, 43,194,45,194,47,194,49,194,50,194,52,194,72,194,80,194, 81,194,84,194,88,194,96,194,101,194,108,194,109,194,112,194, 116,194,124,194,125,194,127,194,129,194,136,194,137,194,144,194, 152,194,155,194,157,194,164,194,165,194,168,194,172,194,173,194, 180,194,181,194,183,194,185,194,220,194,221,194,224,194,227,194, 228,194,235,194,236,194,237,194,239,194,241,194,246,194,248,194, 249,194,251,194,252,194,0,195,8,195,9,195,12,195,13,195, 19,195,20,195,21,195,24,195,28,195,36,195,37,195,40,195, 41,195,69,195,104,195,105,195,108,195,112,195,114,195,120,195, 121,195,124,195,125,195,132,195,136,195,140,195,192,195,216,195, 217,195,220,195,223,195,224,195,226,195,232,195,233,195,237,195, 244,195,245,195,248,195,8,196,16,196,36,196,44,196,48,196, 52,196,60,196,61,196,72,196,100,196,101,196,104,196,108,196, 116,196,117,196,121,196,128,196,148,196,156,196,184,196,188,196, 233,196,240,196,241,196,244,196,248,196,250,196,255,196,0,197, 1,197,12,197,16,197,20,197,28,197,40,197,41,197,44,197, 48,197,56,197,57,197,59,197,61,197,68,197,69,197,72,197, 73,197,74,197,76,197,77,197,78,197,83,197,84,197,85,197, 87,197,88,197,89,197,93,197,94,197,96,197,97,197,100,197, 104,197,112,197,113,197,115,197,116,197,117,197,124,197,125,197, 128,197,132,197,135,197,140,197,141,197,143,197,145,197,149,197, 151,197,152,197,156,197,160,197,169,197,180,197,181,197,184,197, 185,197,187,197,188,197,189,197,190,197,196,197,197,197,198,197, 199,197,200,197,201,197,202,197,204,197,206,197,208,197,209,197, 212,197,216,197,224,197,225,197,227,197,229,197,236,197,237,197, 238,197,240,197,244,197,246,197,247,197,252,197,253,197,254,197, 255,197,0,198,1,198,5,198,6,198,7,198,8,198,12,198, 16,198,24,198,25,198,27,198,28,198,36,198,37,198,40,198, 44,198,45,198,46,198,48,198,51,198,52,198,53,198,55,198, 57,198,59,198,64,198,65,198,68,198,72,198,80,198,81,198, 83,198,84,198,85,198,92,198,93,198,96,198,108,198,111,198, 113,198,120,198,121,198,124,198,128,198,136,198,137,198,139,198, 141,198,148,198,149,198,152,198,156,198,164,198,165,198,167,198, 169,198,176,198,177,198,180,198,184,198,185,198,186,198,192,198, 193,198,195,198,197,198,204,198,205,198,208,198,212,198,220,198, 221,198,224,198,225,198,232,198,233,198,236,198,240,198,248,198, 249,198,253,198,4,199,5,199,8,199,12,199,20,199,21,199, 23,199,25,199,32,199,33,199,36,199,40,199,48,199,49,199, 51,199,53,199,55,199,60,199,61,199,64,199,68,199,74,199, 76,199,77,199,79,199,81,199,82,199,83,199,84,199,85,199, 86,199,87,199,88,199,92,199,96,199,104,199,107,199,116,199, 117,199,120,199,124,199,125,199,126,199,131,199,132,199,133,199, 135,199,136,199,137,199,138,199,142,199,144,199,145,199,148,199, 150,199,151,199,152,199,154,199,160,199,161,199,163,199,164,199, 165,199,166,199,172,199,173,199,176,199,180,199,188,199,189,199, 191,199,192,199,193,199,200,199,201,199,204,199,206,199,208,199, 216,199,221,199,228,199,232,199,236,199,0,200,1,200,4,200, 8,200,10,200,16,200,17,200,19,200,21,200,22,200,28,200, 29,200,32,200,36,200,44,200,45,200,47,200,49,200,56,200, 60,200,64,200,72,200,73,200,76,200,77,200,84,200,112,200, 113,200,116,200,120,200,122,200,128,200,129,200,131,200,133,200, 134,200,135,200,139,200,140,200,141,200,148,200,157,200,159,200, 161,200,168,200,188,200,189,200,196,200,200,200,204,200,212,200, 213,200,215,200,217,200,224,200,225,200,228,200,245,200,252,200, 253,200,0,201,4,201,5,201,6,201,12,201,13,201,15,201, 17,201,24,201,44,201,52,201,80,201,81,201,84,201,88,201, 96,201,97,201,99,201,108,201,112,201,116,201,124,201,136,201, 137,201,140,201,144,201,152,201,153,201,155,201,157,201,192,201, 193,201,196,201,199,201,200,201,202,201,208,201,209,201,211,201, 213,201,214,201,217,201,218,201,220,201,221,201,224,201,226,201, 228,201,231,201,236,201,237,201,239,201,240,201,241,201,248,201, 249,201,252,201,0,202,8,202,9,202,11,202,12,202,13,202, 20,202,24,202,41,202,76,202,77,202,80,202,84,202,92,202, 93,202,95,202,96,202,97,202,104,202,125,202,132,202,152,202, 188,202,189,202,192,202,196,202,204,202,205,202,207,202,209,202, 211,202,216,202,217,202,224,202,236,202,244,202,8,203,16,203, 20,203,24,203,32,203,33,203,65,203,72,203,73,203,76,203, 80,203,88,203,89,203,93,203,100,203,120,203,121,203,156,203, 184,203,212,203,228,203,231,203,233,203,12,204,13,204,16,204, 20,204,28,204,29,204,33,204,34,204,39,204,40,204,41,204, 44,204,46,204,48,204,56,204,57,204,59,204,60,204,61,204, 62,204,68,204,69,204,72,204,76,204,84,204,85,204,87,204, 88,204,89,204,96,204,100,204,102,204,104,204,112,204,117,204, 152,204,153,204,156,204,160,204,168,204,169,204,171,204,172,204, 173,204,180,204,181,204,184,204,188,204,196,204,197,204,199,204, 201,204,208,204,212,204,228,204,236,204,240,204,1,205,8,205, 9,205,12,205,16,205,24,205,25,205,27,205,29,205,36,205, 40,205,44,205,57,205,92,205,96,205,100,205,108,205,109,205, 111,205,113,205,120,205,136,205,148,205,149,205,152,205,156,205, 164,205,165,205,167,205,169,205,176,205,196,205,204,205,208,205, 232,205,236,205,240,205,248,205,249,205,251,205,253,205,4,206, 8,206,12,206,20,206,25,206,32,206,33,206,36,206,40,206, 48,206,49,206,51,206,53,206,88,206,89,206,92,206,95,206, 96,206,97,206,104,206,105,206,107,206,109,206,116,206,117,206, 120,206,124,206,132,206,133,206,135,206,137,206,144,206,145,206, 148,206,152,206,160,206,161,206,163,206,164,206,165,206,172,206, 173,206,193,206,228,206,229,206,232,206,235,206,236,206,244,206, 245,206,247,206,248,206,249,206,0,207,1,207,4,207,8,207, 16,207,17,207,19,207,21,207,28,207,32,207,36,207,44,207, 45,207,47,207,48,207,49,207,56,207,84,207,85,207,88,207, 92,207,100,207,101,207,103,207,105,207,112,207,113,207,116,207, 120,207,128,207,133,207,140,207,161,207,168,207,176,207,196,207, 224,207,225,207,228,207,232,207,240,207,241,207,243,207,245,207, 252,207,0,208,4,208,17,208,24,208,45,208,52,208,53,208, 56,208,60,208,68,208,69,208,71,208,73,208,80,208,84,208, 88,208,96,208,108,208,109,208,112,208,116,208,124,208,125,208, 129,208,164,208,165,208,168,208,172,208,180,208,181,208,183,208, 185,208,192,208,193,208,196,208,200,208,201,208,208,208,209,208, 211,208,212,208,213,208,220,208,221,208,224,208,228,208,236,208, 237,208,239,208,240,208,241,208,248,208,13,209,48,209,49,209, 52,209,56,209,58,209,64,209,65,209,67,209,68,209,69,209, 76,209,77,209,80,209,84,209,92,209,93,209,95,209,97,209, 104,209,108,209,124,209,132,209,136,209,160,209,161,209,164,209, 168,209,176,209,177,209,179,209,181,209,186,209,188,209,192,209, 216,209,244,209,248,209,7,210,9,210,16,210,44,210,45,210, 48,210,52,210,60,210,61,210,63,210,65,210,72,210,92,210, 100,210,128,210,129,210,132,210,136,210,144,210,145,210,149,210, 156,210,160,210,164,210,172,210,177,210,184,210,185,210,188,210, 191,210,192,210,194,210,200,210,201,210,203,210,212,210,216,210, 220,210,228,210,229,210,240,210,241,210,244,210,248,210,0,211, 1,211,3,211,5,211,12,211,13,211,14,211,16,211,20,211, 22,211,28,211,29,211,31,211,32,211,33,211,37,211,40,211, 41,211,44,211,48,211,56,211,57,211,59,211,60,211,61,211, 68,211,69,211,124,211,125,211,128,211,132,211,140,211,141,211, 143,211,144,211,145,211,152,211,153,211,156,211,160,211,168,211, 169,211,171,211,173,211,180,211,184,211,188,211,196,211,197,211, 200,211,201,211,208,211,216,211,225,211,227,211,236,211,237,211, 240,211,244,211,252,211,253,211,255,211,1,212,8,212,29,212, 64,212,68,212,92,212,96,212,100,212,109,212,111,212,120,212, 121,212,124,212,127,212,128,212,130,212,136,212,137,212,139,212, 141,212,148,212,169,212,204,212,208,212,212,212,220,212,223,212, 232,212,236,212,240,212,248,212,251,212,253,212,4,213,8,213, 12,213,20,213,21,213,23,213,60,213,61,213,64,213,68,213, 76,213,77,213,79,213,81,213,88,213,89,213,92,213,96,213, 101,213,104,213,105,213,107,213,109,213,116,213,117,213,120,213, 124,213,132,213,133,213,135,213,136,213,137,213,144,213,165,213, 200,213,201,213,204,213,208,213,210,213,216,213,217,213,219,213, 221,213,228,213,229,213,232,213,236,213,244,213,245,213,247,213, 249,213,0,214,1,214,4,214,8,214,16,214,17,214,19,214, 20,214,21,214,28,214,32,214,36,214,45,214,56,214,57,214, 60,214,64,214,69,214,72,214,73,214,75,214,77,214,81,214, 84,214,85,214,88,214,92,214,103,214,105,214,112,214,113,214, 116,214,131,214,133,214,140,214,141,214,144,214,148,214,157,214, 159,214,161,214,168,214,172,214,176,214,185,214,187,214,196,214, 197,214,200,214,204,214,209,214,212,214,215,214,217,214,224,214, 228,214,232,214,240,214,245,214,252,214,253,214,0,215,4,215, 17,215,24,215,25,215,28,215,32,215,40,215,41,215,43,215, 45,215,52,215,53,215,56,215,60,215,68,215,71,215,73,215, 80,215,81,215,84,215,86,215,87,215,88,215,89,215,96,215, 97,215,99,215,101,215,105,215,108,215,112,215,116,215,124,215, 125,215,129,215,136,215,137,215,140,215,144,215,152,215,153,215, 155,215,157,215,0,224,1,224,2,224,3,224,4,224,5,224, 6,224,7,224,8,224,9,224,10,224,11,224,12,224,13,224, 14,224,15,224,16,224,17,224,18,224,19,224,20,224,21,224, 22,224,23,224,24,224,25,224,26,224,27,224,28,224,29,224, 30,224,31,224,32,224,33,224,34,224,35,224,36,224,37,224, 38,224,39,224,40,224,41,224,42,224,43,224,44,224,45,224, 46,224,47,224,48,224,49,224,50,224,51,224,52,224,53,224, 54,224,55,224,56,224,57,224,58,224,59,224,60,224,61,224, 62,224,63,224,64,224,65,224,66,224,67,224,68,224,69,224, 70,224,71,224,72,224,73,224,74,224,75,224,76,224,77,224, 78,224,79,224,80,224,81,224,82,224,83,224,84,224,85,224, 86,224,87,224,88,224,89,224,90,224,91,224,92,224,93,224, 61,79,115,79,71,80,249,80,160,82,239,83,117,84,229,84, 9,86,193,90,182,91,135,102,182,103,183,103,239,103,76,107, 194,115,194,117,60,122,219,130,4,131,87,136,136,136,54,138, 200,140,207,141,251,142,230,143,213,153,59,82,116,83,4,84, 106,96,100,97,188,107,207,115,26,129,186,137,210,137,163,149, 131,79,10,82,190,88,120,89,230,89,114,94,121,94,199,97, 192,99,70,103,236,103,127,104,151,111,78,118,11,119,245,120, 8,122,255,122,33,124,157,128,110,130,113,130,235,138,147,149, 107,78,157,85,247,102,52,110,163,120,237,122,91,132,16,137, 78,135,168,151,216,82,78,87,42,88,76,93,31,97,190,97, 33,98,98,101,209,103,68,106,27,110,24,117,179,117,227,118, 176,119,58,125,175,144,81,148,82,148,149,159,35,83,172,92, 50,117,219,128,64,146,152,149,91,82,8,88,220,89,161,92, 23,93,183,94,58,95,74,95,119,97,95,108,122,117,134,117, 224,124,115,125,177,125,140,127,84,129,33,130,145,133,65,137, 27,139,252,146,77,150,71,156,203,78,247,78,11,80,241,81, 79,88,55,97,62,97,104,97,57,101,234,105,17,111,165,117, 134,118,214,118,135,123,165,130,203,132,0,249,167,147,139,149, 128,85,162,91,81,87,1,249,179,124,185,127,181,145,40,80, 187,83,69,92,232,93,210,98,110,99,218,100,231,100,32,110, 172,112,91,121,221,141,30,142,2,249,125,144,69,146,248,146, 126,78,246,78,101,80,254,93,250,94,6,97,87,105,113,129, 84,134,71,142,117,147,43,154,94,78,145,80,112,103,64,104, 9,81,141,82,146,82,162,106,188,119,16,146,212,158,171,82, 47,96,242,143,72,80,169,97,237,99,202,100,60,104,132,106, 192,111,136,129,161,137,148,150,5,88,125,114,172,114,4,117, 121,125,109,126,169,128,139,137,116,139,99,144,81,157,137,98, 122,108,84,111,80,125,58,127,35,138,124,81,74,97,157,123, 25,139,87,146,140,147,172,78,211,79,30,80,190,80,6,81, 193,82,205,82,127,83,112,87,131,88,154,94,145,95,118,97, 172,97,206,100,108,101,111,102,187,102,244,102,151,104,135,109, 133,112,241,112,159,116,165,116,202,116,217,117,108,120,236,120, 223,122,246,122,69,125,147,125,21,128,63,128,27,129,150,131, 102,139,21,143,21,144,225,147,3,152,56,152,90,154,232,155, 194,79,83,85,58,88,81,89,99,91,70,92,184,96,18,98, 66,104,176,104,232,104,170,110,76,117,120,118,206,120,61,122, 251,124,107,126,124,126,8,138,161,138,63,140,142,150,196,157, 228,83,233,83,74,84,113,84,250,86,209,89,100,91,59,92, 171,94,247,98,55,101,69,101,114,101,160,102,175,103,193,105, 189,108,252,117,144,118,126,119,63,122,148,127,3,128,161,128, 143,129,230,130,253,130,240,131,193,133,49,136,180,136,165,138, 3,249,156,143,46,147,199,150,103,152,216,154,19,159,237,84, 155,101,242,102,143,104,64,122,55,140,96,157,240,86,100,87, 17,93,6,102,177,104,205,104,254,110,40,116,158,136,228,155, 104,108,4,249,168,154,155,79,108,81,113,81,159,82,84,91, 229,93,80,96,109,96,241,98,167,99,59,101,217,115,122,122, 163,134,162,140,143,151,50,78,225,91,8,98,156,103,220,116, 209,121,211,131,135,138,178,138,232,141,78,144,75,147,70,152, 211,94,232,105,255,133,237,144,5,249,160,81,152,91,236,91, 99,97,250,104,62,107,76,112,47,116,216,116,161,123,80,127, 197,131,192,137,171,140,220,149,40,153,46,82,93,96,236,98, 2,144,138,79,73,81,33,83,217,88,227,94,224,102,56,109, 154,112,194,114,214,115,80,123,241,128,91,148,102,83,155,99, 107,127,86,78,128,80,74,88,222,88,42,96,39,97,208,98, 208,105,65,155,143,91,24,125,177,128,95,143,164,78,209,80, 172,84,172,85,12,91,160,93,231,93,42,101,78,101,33,104, 75,106,225,114,142,118,239,119,94,125,249,127,160,129,78,133, 223,134,3,143,78,143,202,144,3,153,85,154,171,155,24,78, 69,78,93,78,199,78,241,79,119,81,254,82,64,83,227,83, 229,83,142,84,20,86,117,87,162,87,199,91,135,93,208,94, 252,97,216,98,81,101,184,103,233,103,203,105,80,107,198,107, 236,107,66,108,157,110,120,112,215,114,150,115,3,116,191,119, 233,119,118,122,127,125,9,128,252,129,5,130,10,130,223,130, 98,136,51,139,252,140,192,142,17,144,177,144,100,146,182,146, 210,153,69,154,233,156,215,157,156,159,11,87,64,92,202,131, 160,151,171,151,180,158,27,84,152,122,164,127,217,136,205,142, 225,144,0,88,72,92,152,99,159,122,174,91,19,95,121,122, 174,122,142,130,172,142,38,80,56,82,248,82,119,83,8,87, 243,98,114,99,10,107,195,109,55,119,165,83,87,115,104,133, 118,142,213,149,58,103,195,106,112,111,109,138,204,142,75,153, 6,249,119,102,120,107,180,140,60,155,7,249,235,83,45,87, 78,89,198,99,251,105,234,115,69,120,186,122,197,122,254,124, 117,132,143,137,115,141,53,144,168,149,251,82,71,87,71,117, 96,123,204,131,30,146,8,249,88,106,75,81,75,82,135,82, 31,98,216,104,117,105,153,150,197,80,164,82,228,82,195,97, 164,101,57,104,255,105,126,116,75,123,185,130,235,131,178,137, 57,139,209,143,73,153,9,249,202,78,151,89,210,100,17,102, 142,106,52,116,129,121,189,121,169,130,126,136,127,136,95,137, 10,249,38,147,11,79,202,83,37,96,113,98,114,108,26,125, 102,125,152,78,98,81,220,119,175,128,1,79,14,79,118,81, 128,81,220,85,104,86,59,87,250,87,252,87,20,89,71,89, 147,89,196,91,144,92,14,93,241,93,126,94,204,95,128,98, 215,101,227,101,30,103,31,103,94,103,203,104,196,104,95,106, 58,107,35,108,125,108,130,108,199,109,152,115,38,116,42,116, 130,116,163,116,120,117,127,117,129,120,239,120,65,121,71,121, 72,121,122,121,149,123,0,125,186,125,136,127,6,128,45,128, 140,128,24,138,79,139,72,140,119,141,33,147,36,147,226,152, 81,153,14,154,15,154,101,154,146,158,202,125,118,79,9,84, 238,98,84,104,209,145,171,85,58,81,11,249,12,249,28,90, 230,97,13,249,207,98,255,98,14,249,15,249,16,249,17,249, 18,249,19,249,163,144,20,249,21,249,22,249,23,249,24,249, 254,138,25,249,26,249,27,249,28,249,150,102,29,249,86,113, 30,249,31,249,227,150,32,249,79,99,122,99,87,83,33,249, 143,103,96,105,115,110,34,249,55,117,35,249,36,249,37,249, 13,125,38,249,39,249,114,136,202,86,24,90,40,249,41,249, 42,249,43,249,44,249,67,78,45,249,103,81,72,89,240,103, 16,128,46,249,115,89,116,94,154,100,202,121,245,95,108,96, 200,98,123,99,231,91,215,91,170,82,47,249,116,89,41,95, 18,96,48,249,49,249,50,249,89,116,51,249,52,249,53,249, 54,249,55,249,56,249,209,153,57,249,58,249,59,249,60,249, 61,249,62,249,63,249,64,249,65,249,66,249,67,249,195,111, 68,249,69,249,191,129,178,143,241,96,70,249,71,249,102,129, 72,249,73,249,63,92,74,249,75,249,76,249,77,249,78,249, 79,249,80,249,81,249,233,90,37,138,123,103,16,125,82,249, 83,249,84,249,85,249,86,249,87,249,253,128,88,249,89,249, 60,92,229,108,63,83,186,110,26,89,54,131,57,78,182,78, 70,79,174,85,24,87,199,88,86,95,183,101,230,101,128,106, 181,107,77,110,237,119,239,122,30,124,222,125,203,134,146,136, 50,145,91,147,187,100,190,111,122,115,184,117,84,144,86,85, 77,87,186,97,212,100,199,102,225,109,91,110,109,111,185,111, 240,117,67,128,189,129,65,133,131,137,199,138,90,139,31,147, 147,108,83,117,84,123,15,142,93,144,16,85,2,88,88,88, 98,94,7,98,158,100,224,104,118,117,214,124,179,135,232,158, 227,78,136,87,110,87,39,89,13,92,177,92,54,94,133,95, 52,98,225,100,179,115,250,129,139,136,184,140,138,150,219,158, 133,91,183,95,179,96,18,80,0,82,48,82,22,87,53,88, 87,88,14,92,96,92,246,92,139,93,166,94,146,95,188,96, 17,99,137,99,23,100,67,104,249,104,194,106,216,109,33,110, 212,110,228,111,254,113,220,118,121,119,177,121,59,122,4,132, 169,137,237,140,243,141,72,142,3,144,20,144,83,144,253,144, 77,147,118,150,220,151,210,107,6,112,88,114,162,114,104,115, 99,119,191,121,228,123,155,126,128,139,169,88,199,96,102,101, 253,101,190,102,140,108,30,113,201,113,90,140,19,152,109,78, 129,122,221,78,172,81,205,81,213,82,12,84,167,97,113,103, 80,104,223,104,30,109,124,111,188,117,179,119,229,122,244,128, 99,132,133,146,92,81,151,101,92,103,147,103,216,117,199,122, 115,131,90,249,70,140,23,144,45,152,111,92,192,129,154,130, 65,144,111,144,13,146,151,95,157,93,89,106,200,113,123,118, 73,123,228,133,4,139,39,145,48,154,135,85,246,97,91,249, 105,118,133,127,63,134,186,135,248,136,143,144,92,249,27,109, 217,112,222,115,97,125,61,132,93,249,106,145,241,153,94,249, 130,78,117,83,4,107,18,107,62,112,27,114,45,134,30,158, 76,82,163,143,80,93,229,100,44,101,22,107,235,111,67,124, 156,126,205,133,100,137,189,137,201,98,216,129,31,136,202,94, 23,103,106,109,252,114,5,116,111,116,130,135,222,144,134,79, 13,93,160,95,10,132,183,81,160,99,101,117,174,78,6,80, 105,81,201,81,129,104,17,106,174,124,177,124,231,124,111,130, 210,138,27,143,207,145,182,79,55,81,245,82,66,84,236,94, 110,97,62,98,197,101,218,106,254,111,42,121,220,133,35,136, 173,149,98,154,106,154,151,158,206,158,155,82,198,102,119,107, 29,112,43,121,98,143,66,151,144,97,0,98,35,101,35,111, 73,113,137,116,244,125,111,128,238,132,38,143,35,144,74,147, 189,81,23,82,163,82,12,109,200,112,194,136,201,94,130,101, 174,107,194,111,62,124,117,115,228,78,54,79,249,86,95,249, 186,92,186,93,28,96,178,115,45,123,154,127,206,127,70,128, 30,144,52,146,246,150,72,151,24,152,97,159,139,79,167,111, 174,121,180,145,183,150,222,82,96,249,136,100,196,100,211,106, 94,111,24,112,16,114,231,118,1,128,6,134,92,134,239,141, 5,143,50,151,111,155,250,157,117,158,140,120,127,121,160,125, 201,131,4,147,127,158,147,158,214,138,223,88,4,95,39,103, 39,112,207,116,96,124,126,128,33,81,40,112,98,114,202,120, 194,140,218,140,244,140,247,150,134,78,218,80,238,91,214,94, 153,101,206,113,66,118,173,119,74,128,252,132,124,144,39,155, 141,159,216,88,65,90,98,92,19,106,218,109,15,111,59,118, 47,125,55,126,30,133,56,137,228,147,75,150,137,82,210,101, 243,103,180,105,65,109,156,110,15,112,9,116,96,116,89,117, 36,118,107,120,44,139,94,152,109,81,46,98,120,150,150,79, 43,80,25,93,234,109,184,125,42,143,139,95,68,97,23,104, 97,249,134,150,210,82,139,128,220,81,204,81,94,105,28,122, 190,125,241,131,117,150,218,79,41,82,152,83,15,84,14,85, 101,92,167,96,78,103,168,104,108,109,129,114,248,114,6,116, 131,116,98,249,226,117,108,124,121,127,184,127,137,131,207,136, 225,136,204,145,208,145,226,150,201,155,29,84,126,111,208,113, 152,116,250,133,170,142,163,150,87,156,159,158,151,103,203,109, 51,116,232,129,22,151,44,120,203,122,32,123,146,124,105,100, 106,116,242,117,188,120,232,120,172,153,84,155,187,158,222,91, 85,94,32,111,156,129,171,131,136,144,7,78,77,83,41,90, 210,93,78,95,98,97,61,99,105,102,252,102,255,110,43,111, 99,112,158,119,44,132,19,133,59,136,19,143,69,153,59,156, 28,85,185,98,43,103,171,108,9,131,106,137,122,151,161,78, 132,89,216,95,217,95,27,103,178,125,84,127,146,130,43,131, 189,131,30,143,153,144,203,87,185,89,146,90,208,91,39,102, 154,103,133,104,207,107,100,113,117,127,183,140,227,140,129,144, 69,155,8,129,138,140,76,150,64,154,165,158,95,91,19,108, 27,115,242,118,223,118,12,132,170,81,147,137,77,81,149,81, 201,82,201,104,148,108,4,119,32,119,191,125,236,125,98,151, 181,158,197,110,17,133,165,81,13,84,125,84,14,102,157,102, 39,105,159,110,191,118,145,119,23,131,194,132,159,135,105,145, 152,146,244,156,130,136,174,79,146,81,223,82,198,89,61,94, 85,97,120,100,121,100,174,102,208,103,33,106,205,107,219,107, 95,114,97,114,65,116,56,119,219,119,23,128,188,130,5,131, 0,139,40,139,140,140,40,103,144,108,103,114,238,118,102,119, 70,122,169,157,127,107,146,108,34,89,38,103,153,132,111,83, 147,88,153,89,223,94,207,99,52,102,115,103,58,110,43,115, 215,122,215,130,40,147,217,82,235,93,174,97,203,97,10,98, 199,98,171,100,224,101,89,105,102,107,203,107,33,113,247,115, 93,117,70,126,30,130,2,131,106,133,163,138,191,140,39,151, 97,157,168,88,216,158,17,80,14,82,59,84,79,85,135,101, 118,108,10,125,11,125,94,128,138,134,128,149,239,150,255,82, 149,108,105,114,115,84,154,90,62,92,75,93,76,95,174,95, 42,103,182,104,99,105,60,110,68,110,9,119,115,124,142,127, 135,133,14,139,247,143,97,151,244,158,183,92,182,96,13,97, 171,97,79,101,251,101,252,101,17,108,239,108,159,115,201,115, 225,125,148,149,198,91,28,135,16,139,93,82,90,83,205,98, 15,100,178,100,52,103,56,106,202,108,192,115,158,116,148,123, 149,124,27,126,138,129,54,130,132,133,235,143,249,150,193,153, 52,79,74,83,205,83,219,83,204,98,44,100,0,101,145,101, 195,105,238,108,88,111,237,115,84,117,34,118,228,118,252,118, 208,120,251,120,44,121,70,125,44,130,224,135,212,143,18,152, 239,152,195,82,212,98,165,100,36,110,81,111,124,118,203,141, 177,145,98,146,238,154,67,155,35,80,141,80,74,87,168,89, 40,92,71,94,119,95,63,98,62,101,185,101,193,101,9,102, 139,103,156,105,194,110,197,120,33,125,170,128,128,129,43,130, 179,130,161,132,140,134,42,138,23,139,166,144,50,150,144,159, 13,80,243,79,99,249,249,87,152,95,220,98,146,99,111,103, 67,110,25,113,195,118,204,128,218,128,244,136,245,136,25,137, 224,140,41,143,77,145,106,150,47,79,112,79,27,94,207,103, 34,104,125,118,126,118,68,155,97,94,10,106,105,113,212,113, 106,117,100,249,65,126,67,133,233,133,220,152,16,79,79,123, 112,127,165,149,225,81,6,94,181,104,62,108,78,108,219,108, 175,114,196,123,3,131,213,108,58,116,251,80,136,82,193,88, 216,100,151,106,167,116,86,118,167,120,23,134,226,149,57,151, 101,249,94,83,1,95,138,139,168,143,175,143,138,144,37,82, 165,119,73,156,8,159,25,78,2,80,117,81,91,92,119,94, 30,102,58,102,196,103,197,104,179,112,1,117,197,117,201,121, 221,122,39,143,32,153,8,154,221,79,33,88,49,88,246,91, 110,102,101,107,17,109,122,110,125,111,228,115,43,117,233,131, 220,136,19,137,92,139,20,143,15,79,213,80,16,83,92,83, 147,91,169,95,13,103,143,121,121,129,47,131,20,133,7,137, 134,137,57,143,59,143,165,153,18,156,44,103,118,78,248,79, 73,89,1,92,239,92,240,92,103,99,210,104,253,112,162,113, 43,116,43,126,236,132,2,135,34,144,210,146,243,156,13,78, 216,78,239,79,133,80,86,82,111,82,38,84,144,84,224,87, 43,89,102,90,90,91,117,91,204,91,156,94,102,249,118,98, 119,101,167,101,110,109,165,110,54,114,38,123,63,124,54,127, 80,129,81,129,154,129,64,130,153,130,169,131,3,138,160,140, 230,140,251,140,116,141,186,141,232,144,220,145,28,150,68,150, 217,153,231,156,23,83,6,82,41,84,116,86,179,88,84,89, 110,89,255,95,164,97,110,98,16,102,126,108,26,113,198,118, 137,124,222,124,27,125,172,130,193,140,240,150,103,249,91,79, 23,95,127,95,194,98,41,93,11,103,218,104,124,120,67,126, 108,157,21,78,153,80,21,83,42,83,81,83,131,89,98,90, 135,94,178,96,138,97,73,98,121,98,144,101,135,103,167,105, 212,107,214,107,215,107,216,107,184,108,104,249,53,116,250,117, 18,120,145,120,213,121,216,121,131,124,203,125,225,127,165,128, 62,129,194,129,242,131,26,135,232,136,185,138,108,139,187,140, 25,145,94,151,219,152,59,159,172,86,42,91,108,95,140,101, 179,106,175,107,92,109,241,111,21,112,93,114,173,115,167,140, 211,140,59,152,145,97,55,108,88,128,1,154,77,78,139,78, 155,78,213,78,58,79,60,79,127,79,223,79,255,80,242,83, 248,83,6,85,227,85,219,86,235,88,98,89,17,90,235,91, 250,91,4,92,243,93,43,94,153,95,29,96,104,99,156,101, 175,101,246,103,251,103,173,104,123,107,153,108,215,108,35,110, 9,112,69,115,2,120,62,121,64,121,96,121,193,121,233,123, 23,125,114,125,134,128,13,130,142,131,209,132,199,134,223,136, 80,138,94,138,29,139,220,140,102,141,173,143,170,144,252,152, 223,153,157,158,74,82,105,249,20,103,106,249,152,80,42,82, 113,92,99,101,85,108,202,115,35,117,157,117,151,123,156,132, 120,145,48,151,119,78,146,100,186,107,94,113,169,133,9,78, 107,249,73,103,238,104,23,110,159,130,24,133,107,136,247,99, 129,111,18,146,175,152,10,78,183,80,207,80,31,81,70,85, 170,85,23,86,64,91,25,92,224,92,56,94,138,94,160,94, 194,94,243,96,81,104,97,106,88,110,61,114,64,114,192,114, 248,118,101,121,177,123,212,127,243,136,244,137,115,138,97,140, 222,140,28,151,94,88,189,116,253,140,199,85,108,249,97,122, 34,125,114,130,114,114,31,117,37,117,109,249,25,123,133,88, 251,88,188,93,143,94,182,94,144,95,85,96,146,98,127,99, 77,101,145,102,217,102,248,102,22,104,242,104,128,114,94,116, 110,123,110,125,214,125,114,127,229,128,18,130,175,133,127,137, 147,138,29,144,228,146,205,158,32,159,21,89,109,89,45,94, 220,96,20,102,115,102,144,103,80,108,197,109,95,111,243,119, 169,120,198,132,203,145,43,147,217,78,202,80,72,81,132,85, 11,91,163,91,71,98,126,101,203,101,50,110,125,113,1,116, 68,116,135,116,191,116,108,118,170,121,218,125,85,126,168,127, 122,129,179,129,57,130,26,134,236,135,117,138,227,141,120,144, 145,146,37,148,77,153,174,155,104,83,81,92,84,105,196,108, 41,109,43,110,12,130,155,133,59,137,45,138,170,138,234,150, 103,159,97,82,185,102,178,107,150,126,254,135,13,141,131,149, 93,150,29,101,137,109,238,113,110,249,206,87,211,89,172,91, 39,96,250,96,16,98,31,102,95,102,41,115,249,115,219,118, 1,119,108,123,86,128,114,128,101,129,160,138,146,145,22,78, 226,82,114,107,23,109,5,122,57,123,48,125,111,249,176,140, 236,83,47,86,81,88,181,91,15,92,17,92,226,93,64,98, 131,99,20,100,45,102,179,104,188,108,136,109,175,110,31,112, 164,112,210,113,38,117,143,117,142,117,25,118,17,123,224,123, 43,124,32,125,57,125,44,133,109,133,7,134,52,138,13,144, 97,144,181,144,183,146,246,151,55,154,215,79,108,92,95,103, 145,109,159,124,140,126,22,139,22,141,31,144,107,91,253,93, 13,100,192,132,92,144,225,152,135,115,139,91,154,96,126,103, 222,109,31,138,166,138,1,144,12,152,55,82,112,249,81,112, 142,120,150,147,112,136,215,145,238,79,215,83,253,85,218,86, 130,87,253,88,194,90,136,91,171,92,192,92,37,94,1,97, 13,98,75,98,136,99,28,100,54,101,120,101,57,106,138,107, 52,108,25,109,49,111,231,113,233,114,120,115,7,116,178,116, 38,118,97,119,192,121,87,122,234,122,185,124,143,125,172,125, 97,126,158,127,41,129,49,131,144,132,218,132,234,133,150,136, 176,138,144,139,56,143,66,144,131,144,108,145,150,146,185,146, 139,150,167,150,168,150,214,150,0,151,8,152,150,153,211,154, 26,155,212,83,126,88,25,89,112,91,191,91,209,109,90,111, 159,113,33,116,185,116,133,128,253,131,225,93,135,95,170,95, 66,96,236,101,18,104,111,105,83,106,137,107,53,109,243,109, 227,115,254,118,172,119,77,123,20,125,35,129,28,130,64,131, 244,132,99,133,98,138,196,138,135,145,30,147,6,152,180,153, 12,98,83,136,240,143,101,146,7,93,39,93,105,93,95,116, 157,129,104,135,213,111,254,98,210,127,54,137,114,137,30,78, 88,78,231,80,221,82,71,83,127,98,7,102,105,126,5,136, 94,150,141,79,25,83,54,86,203,89,164,90,56,92,78,92, 77,92,2,94,17,95,67,96,189,101,47,102,66,102,190,103, 244,103,28,115,226,119,58,121,197,127,148,132,205,132,150,137, 102,138,105,138,225,138,85,140,122,140,244,87,212,91,15,95, 111,96,237,98,13,105,150,107,92,110,132,113,210,123,85,135, 88,139,254,142,223,152,254,152,56,79,129,79,225,79,123,84, 32,90,184,91,60,97,176,101,104,102,252,113,51,117,94,121, 51,125,78,129,227,129,152,131,170,133,206,133,3,135,10,138, 171,142,155,143,113,249,197,143,49,89,164,91,230,91,137,96, 233,91,11,92,195,95,129,108,114,249,241,109,11,112,26,117, 175,130,246,138,192,78,65,83,115,249,217,150,15,108,158,78, 196,79,82,81,94,85,37,90,232,92,17,98,89,114,189,130, 170,131,254,134,89,136,29,138,63,150,197,150,19,153,9,157, 93,157,10,88,179,92,189,93,68,94,225,96,21,97,225,99, 2,106,37,110,2,145,84,147,78,152,16,156,119,159,137,91, 184,92,9,99,79,102,72,104,60,119,193,150,141,151,84,152, 159,155,161,101,1,139,203,142,188,149,53,85,169,92,214,93, 181,94,151,102,76,118,244,131,199,149,211,88,188,98,206,114, 40,157,240,78,46,89,15,96,59,102,131,107,231,121,38,157, 147,83,192,84,195,87,22,93,27,97,214,102,175,109,141,120, 126,130,152,150,68,151,132,83,124,98,150,99,178,109,10,126, 75,129,77,152,251,106,76,127,175,157,26,158,95,78,59,80, 182,81,28,89,249,96,246,99,48,105,58,114,54,128,116,249, 206,145,49,95,117,249,118,249,4,125,229,130,111,132,187,132, 229,133,141,142,119,249,111,79,120,249,121,249,228,88,67,91, 89,96,218,99,24,101,109,101,152,102,122,249,74,105,35,106, 11,109,1,112,108,113,210,117,13,118,179,121,112,122,123,249, 138,127,124,249,68,137,125,249,147,139,192,145,125,150,126,249, 10,153,4,87,161,95,188,101,1,111,0,118,166,121,158,138, 173,153,90,155,108,159,4,81,182,97,145,98,141,106,198,129, 67,80,48,88,102,95,9,113,0,138,250,138,124,91,22,134, 250,79,60,81,180,86,68,89,169,99,249,109,170,93,109,105, 134,81,136,78,89,79,127,249,128,249,129,249,130,89,130,249, 131,249,95,107,93,108,132,249,181,116,22,121,133,249,7,130, 69,130,57,131,63,143,93,143,134,249,24,153,135,249,136,249, 137,249,166,78,138,249,223,87,121,95,19,102,139,249,140,249, 171,117,121,126,111,139,141,249,6,144,91,154,165,86,39,88, 248,89,31,90,180,91,142,249,246,94,143,249,144,249,80,99, 59,99,145,249,61,105,135,108,191,108,142,109,147,109,245,109, 20,111,146,249,223,112,54,113,89,113,147,249,195,113,213,113, 148,249,79,120,111,120,149,249,117,123,227,125,150,249,47,126, 151,249,77,136,223,142,152,249,153,249,154,249,91,146,155,249, 246,156,156,249,157,249,158,249,133,96,133,109,159,249,177,113, 160,249,161,249,177,149,173,83,162,249,163,249,164,249,211,103, 165,249,142,112,48,113,48,116,118,130,210,130,166,249,187,149, 229,154,125,158,196,102,167,249,193,113,73,132,168,249,169,249, 75,88,170,249,171,249,184,93,113,95,172,249,32,102,142,102, 121,105,174,105,56,108,243,108,54,110,65,111,218,111,27,112, 47,112,80,113,223,113,112,115,173,249,91,116,174,249,212,116, 200,118,78,122,147,126,175,249,176,249,241,130,96,138,206,143, 177,249,72,147,178,249,25,151,179,249,180,249,66,78,42,80, 181,249,8,82,225,83,243,102,109,108,202,111,10,115,127,119, 98,122,174,130,221,133,2,134,182,249,212,136,99,138,125,139, 107,140,183,249,179,146,184,249,19,151,16,152,148,78,13,79, 201,79,178,80,72,83,62,84,51,84,218,85,98,88,186,88, 103,89,27,90,228,91,159,96,185,249,202,97,86,101,255,101, 100,102,167,104,90,108,179,111,207,112,172,113,82,115,125,123, 8,135,164,138,50,156,7,159,75,92,131,108,68,115,137,115, 58,146,171,110,101,116,31,118,105,122,21,126,10,134,64,81, 197,88,193,100,238,116,21,117,112,118,193,127,149,144,205,150, 84,153,38,110,230,116,169,122,170,122,229,129,217,134,120,135, 27,138,73,90,140,91,155,91,161,104,0,105,99,109,169,115, 19,116,44,116,151,120,233,125,235,127,24,129,85,129,158,131, 76,140,46,150,17,152,240,102,128,95,250,101,137,103,106,108, 139,115,45,80,3,90,106,107,238,119,22,89,108,93,205,93, 37,115,79,117,186,249,187,249,229,80,249,81,47,88,45,89, 150,89,218,89,229,91,188,249,189,249,162,93,215,98,22,100, 147,100,254,100,190,249,220,102,191,249,72,106,192,249,255,113, 100,116,193,249,136,122,175,122,71,126,94,126,0,128,112,129, 194,249,239,135,129,137,32,139,89,144,195,249,128,144,82,153, 126,97,50,107,116,109,31,126,37,137,177,143,209,79,173,80, 151,81,199,82,199,87,137,88,185,91,184,94,66,97,149,105, 140,109,103,110,182,110,148,113,98,116,40,117,44,117,115,128, 56,131,201,132,10,142,148,147,222,147,196,249,142,78,81,79, 118,80,42,81,200,83,203,83,243,83,135,91,211,91,36,92, 26,97,130,97,244,101,91,114,151,115,64,116,194,118,80,121, 145,121,185,121,6,125,189,127,139,130,213,133,94,134,194,143, 71,144,245,144,234,145,133,150,232,150,233,150,214,82,103,95, 237,101,49,102,47,104,92,113,54,122,193,144,10,152,145,78, 197,249,82,106,158,107,144,111,137,113,24,128,184,130,83,133, 75,144,149,150,242,150,251,151,26,133,49,155,144,78,138,113, 196,150,67,81,159,83,225,84,19,87,18,87,163,87,155,90, 196,90,195,91,40,96,63,97,244,99,133,108,57,109,114,110, 144,110,48,114,63,115,87,116,209,130,129,136,69,143,96,144, 198,249,98,150,88,152,27,157,8,103,138,141,94,146,77,79, 73,80,222,80,113,83,13,87,212,89,1,90,9,92,112,97, 144,102,45,110,50,114,75,116,239,125,195,128,14,132,102,132, 63,133,95,135,91,136,24,137,2,139,85,144,203,151,79,155, 115,78,145,79,18,81,106,81,199,249,47,85,169,85,122,91, 165,91,124,94,125,94,190,94,160,96,223,96,8,97,9,97, 196,99,56,101,9,103,200,249,212,103,218,103,201,249,97,105, 98,105,185,108,39,109,202,249,56,110,203,249,225,111,54,115, 55,115,204,249,92,116,49,117,205,249,82,118,206,249,207,249, 173,125,254,129,56,132,213,136,152,138,219,138,237,138,48,142, 66,142,74,144,62,144,122,144,73,145,201,145,110,147,208,249, 209,249,9,88,210,249,211,107,137,128,178,128,211,249,212,249, 65,81,107,89,57,92,213,249,214,249,100,111,167,115,228,128, 7,141,215,249,23,146,143,149,216,249,217,249,218,249,219,249, 127,128,14,98,28,112,104,125,141,135,220,249,160,87,105,96, 71,97,183,107,190,138,128,146,177,150,89,78,31,84,235,109, 45,133,112,150,243,151,238,152,214,99,227,108,145,144,221,81, 201,97,186,129,249,157,157,79,26,80,0,81,156,91,15,97, 255,97,236,100,5,105,197,107,145,117,227,119,169,127,100,130, 143,133,251,135,99,136,188,138,112,139,171,145,140,78,229,78, 10,79,221,249,222,249,55,89,232,89,223,249,242,93,27,95, 91,95,33,96,224,249,225,249,226,249,227,249,62,114,229,115, 228,249,112,117,205,117,229,249,251,121,230,249,12,128,51,128, 132,128,225,130,81,131,231,249,232,249,189,140,179,140,135,144, 233,249,234,249,244,152,12,153,235,249,236,249,55,112,202,118, 202,127,204,127,252,127,26,139,186,78,193,78,3,82,112,83, 237,249,189,84,224,86,251,89,197,91,21,95,205,95,110,110, 238,249,239,249,106,125,53,131,240,249,147,134,141,138,241,249, 109,151,119,151,242,249,243,249,0,78,90,79,126,79,249,88, 229,101,162,110,56,144,176,147,185,153,251,78,236,88,138,89, 217,89,65,96,244,249,245,249,20,122,246,249,79,131,195,140, 101,81,68,83,247,249,248,249,249,249,205,78,105,82,85,91, 191,130,212,78,58,82,168,84,201,89,255,89,80,91,87,91, 92,91,99,96,72,97,203,110,153,112,110,113,134,115,247,116, 181,117,193,120,43,125,5,128,234,129,40,131,23,133,201,133, 238,138,199,140,204,150,92,79,250,82,188,86,171,101,40,102, 124,112,184,112,53,114,189,125,141,130,76,145,192,150,114,157, 113,91,231,104,152,107,122,111,222,118,145,92,171,102,91,111, 180,123,42,124,54,136,220,150,8,78,215,78,32,83,52,88, 187,88,239,88,108,89,7,92,51,94,132,94,53,95,140,99, 178,102,86,103,31,106,163,106,12,107,63,111,70,114,250,249, 80,115,139,116,224,122,167,124,120,129,223,129,231,129,138,131, 108,132,35,133,148,133,207,133,221,136,19,141,172,145,119,149, 156,150,141,81,201,84,40,87,176,91,77,98,80,103,61,104, 147,104,61,110,211,110,125,112,33,126,193,136,161,140,9,143, 75,159,78,159,45,114,143,123,205,138,26,147,71,79,78,79, 50,81,128,84,208,89,149,94,181,98,117,103,110,105,23,106, 174,108,26,110,217,114,42,115,189,117,184,123,53,125,231,130, 249,131,87,132,247,133,91,138,175,140,135,142,25,144,184,144, 206,150,95,159,227,82,10,84,225,90,194,91,88,100,117,101, 244,110,196,114,251,249,132,118,77,122,27,123,77,124,62,126, 223,127,123,131,43,139,202,140,100,141,225,141,95,142,234,143, 249,143,105,144,209,147,67,79,122,79,179,80,104,81,120,81, 77,82,106,82,97,88,124,88,96,89,8,92,85,92,219,94, 155,96,48,98,19,104,191,107,8,108,177,111,78,113,32,116, 48,117,56,117,81,117,114,118,76,123,139,123,173,123,198,123, 143,126,110,138,62,143,73,143,63,146,147,146,34,147,43,148, 251,150,90,152,107,152,30,153,7,82,42,98,152,98,89,109, 100,118,202,122,192,123,118,125,96,83,190,92,151,94,56,111, 185,112,152,124,17,151,142,155,222,158,165,99,122,100,118,135, 1,78,149,78,173,78,92,80,117,80,72,84,195,89,154,91, 64,94,173,94,247,94,129,95,197,96,58,99,63,101,116,101, 204,101,118,102,120,102,254,103,104,105,137,106,99,107,64,108, 192,109,232,109,31,110,94,110,30,112,161,112,142,115,253,115, 58,117,91,119,135,120,142,121,11,122,125,122,190,124,142,125, 71,130,2,138,234,138,158,140,45,145,74,145,216,145,102,146, 204,146,32,147,6,151,86,151,92,151,2,152,14,159,54,82, 145,82,124,85,36,88,29,94,31,95,140,96,208,99,175,104, 223,111,109,121,44,123,205,129,186,133,253,136,248,138,68,142, 141,145,100,150,155,150,61,151,76,152,74,159,206,79,70,81, 203,81,169,82,50,86,20,95,107,95,170,99,205,100,233,101, 65,102,250,102,249,102,29,103,157,104,215,104,253,105,21,111, 110,111,103,113,229,113,42,114,170,116,58,119,86,121,90,121, 223,121,32,122,149,122,151,124,223,124,68,125,112,126,135,128, 251,133,164,134,84,138,191,138,153,141,129,142,32,144,109,144, 227,145,59,150,213,150,229,156,207,101,7,124,179,141,195,147, 88,91,10,92,82,83,217,98,29,115,39,80,151,91,158,95, 176,96,107,97,213,104,217,109,46,116,46,122,66,125,156,125, 49,126,107,129,42,142,53,142,126,147,24,148,80,79,80,87, 230,93,167,94,43,99,106,127,59,78,79,79,143,79,90,80, 221,89,196,128,106,84,104,84,254,85,79,89,153,91,222,93, 218,94,93,102,49,103,241,103,42,104,232,108,50,109,74,110, 141,111,183,112,224,115,135,117,76,124,2,125,44,125,162,125, 31,130,219,134,59,138,133,138,112,141,138,142,51,143,49,144, 78,145,82,145,68,148,208,153,249,122,165,124,202,79,1,81, 198,81,200,87,239,91,251,92,89,102,61,106,90,109,150,110, 236,111,12,113,111,117,227,122,34,136,33,144,117,144,203,150, 255,153,1,131,45,78,242,78,70,136,205,145,125,83,219,106, 107,105,65,108,122,132,158,88,142,97,254,102,239,98,221,112, 17,117,199,117,82,126,184,132,73,139,8,141,75,78,234,83, 171,84,48,87,64,87,215,95,1,99,7,99,111,100,47,101, 232,101,122,102,157,103,179,103,98,107,96,108,154,108,44,111, 229,119,37,120,73,121,87,121,25,125,162,128,2,129,243,129, 157,130,183,130,24,135,140,138,252,249,4,141,190,141,114,144, 244,118,25,122,55,122,84,126,119,128,7,85,212,85,117,88, 47,99,34,100,73,102,75,102,109,104,155,105,132,107,37,109, 177,110,205,115,104,116,161,116,91,117,185,117,225,118,30,119, 139,119,230,121,9,126,29,126,251,129,47,133,151,136,58,138, 209,140,235,142,176,143,50,144,173,147,99,150,115,150,7,151, 132,79,241,83,234,89,201,90,25,94,78,104,198,116,190,117, 233,121,146,122,163,129,237,134,234,140,204,141,237,143,159,101, 21,103,253,249,247,87,87,111,221,125,47,143,246,147,198,150, 181,95,242,97,132,111,20,78,152,79,31,80,201,83,223,85, 111,93,238,93,33,107,100,107,203,120,154,123,254,249,73,142, 202,142,110,144,73,99,62,100,64,119,132,122,47,147,127,148, 106,159,176,100,175,111,230,113,168,116,218,116,196,122,18,124, 130,126,178,124,152,126,154,139,10,141,125,148,16,153,76,153, 57,82,223,91,230,100,45,103,46,125,237,80,195,83,121,88, 88,97,89,97,250,97,172,101,217,122,146,139,150,139,9,80, 33,80,117,82,49,85,60,90,224,94,112,95,52,97,94,101, 12,102,54,102,162,102,205,105,196,110,50,111,22,115,33,118, 147,122,57,129,89,130,214,131,188,132,181,80,240,87,192,91, 232,91,105,95,161,99,38,120,181,125,220,131,33,133,199,145, 245,145,138,81,245,103,86,123,172,140,196,81,187,89,189,96, 85,134,28,80,255,249,84,82,58,92,125,97,26,98,211,98, 242,100,165,101,204,110,32,118,10,129,96,142,95,150,187,150, 223,78,67,83,152,85,41,89,221,93,197,100,201,108,250,109, 148,115,127,122,27,130,166,133,228,140,16,142,119,144,231,145, 225,149,33,150,198,151,248,81,242,84,134,85,185,95,164,100, 136,111,180,125,31,143,77,143,53,148,201,80,22,92,190,108, 251,109,27,117,187,119,61,124,100,124,121,138,194,138,30,88, 190,89,22,94,119,99,82,114,138,117,107,119,220,138,188,140, 18,143,243,94,116,102,248,109,125,128,193,131,203,138,81,151, 214,155,0,250,67,82,255,102,149,109,239,110,224,125,230,138, 46,144,94,144,212,154,29,82,127,82,232,84,148,97,132,98, 219,98,162,104,18,105,90,105,53,106,146,112,38,113,93,120, 1,121,14,121,210,121,13,122,150,128,120,130,213,130,73,131, 73,133,130,140,133,141,98,145,139,145,174,145,195,79,209,86, 237,113,215,119,0,135,248,137,248,91,214,95,81,103,168,144, 226,83,90,88,245,91,164,96,129,97,96,100,61,126,112,128, 37,133,131,146,174,100,172,80,20,93,0,103,156,88,189,98, 168,99,14,105,120,105,30,106,107,110,186,118,203,121,187,130, 41,132,207,138,168,141,253,143,18,145,75,145,156,145,16,147, 24,147,154,147,219,150,54,154,13,156,17,78,92,117,93,121, 250,122,81,123,201,123,46,126,196,132,89,142,116,142,248,142, 16,144,37,102,63,105,67,116,250,81,46,103,220,158,69,81, 224,95,150,108,242,135,93,136,119,136,180,96,181,129,3,132, 5,141,214,83,57,84,52,86,54,90,49,92,138,112,224,127, 90,128,6,129,237,129,163,141,137,145,95,154,242,157,116,80, 196,78,160,83,251,96,44,110,100,92,136,79,36,80,228,85, 217,92,95,94,101,96,148,104,187,108,196,109,190,113,212,117, 244,117,97,118,26,122,73,122,199,125,251,125,110,127,244,129, 169,134,28,143,201,150,179,153,82,159,71,82,197,82,237,152, 170,137,3,78,210,103,6,111,181,79,226,91,149,103,136,108, 120,109,27,116,39,120,221,145,124,147,196,135,228,121,49,122, 235,95,214,78,164,84,62,85,174,88,165,89,240,96,83,98, 214,98,54,103,85,105,53,130,64,150,177,153,221,153,44,80, 83,83,68,85,124,87,1,250,88,98,2,250,226,100,107,102, 221,103,193,111,239,111,34,116,56,116,23,138,56,148,81,84, 6,86,102,87,72,95,154,97,78,107,88,112,173,112,187,125, 149,138,106,89,43,129,162,99,8,119,61,128,170,140,84,88, 45,100,187,105,149,91,17,94,111,110,3,250,105,133,76,81, 240,83,42,89,32,96,75,97,134,107,112,108,240,108,30,123, 206,128,212,130,198,141,176,144,177,152,4,250,199,100,164,111, 145,100,4,101,78,81,16,84,31,87,14,138,95,97,118,104, 5,250,219,117,82,123,113,125,26,144,6,88,204,105,127,129, 42,137,0,144,57,152,120,80,87,89,172,89,149,98,15,144, 42,155,93,97,121,114,214,149,97,87,70,90,244,93,138,98, 173,100,250,100,119,103,226,108,62,109,44,114,54,116,52,120, 119,127,173,130,219,141,23,152,36,82,66,87,127,103,72,114, 227,116,169,140,166,143,17,146,42,150,107,81,237,83,76,99, 105,79,4,85,150,96,87,101,155,108,127,109,76,114,253,114, 23,122,135,137,157,140,109,95,142,111,249,112,168,129,14,97, 191,79,79,80,65,98,71,114,199,123,232,125,233,127,77,144, 173,151,25,154,182,140,106,87,115,94,176,103,13,132,85,138, 32,84,22,91,99,94,226,94,10,95,131,101,186,128,61,133, 137,149,91,150,72,79,5,83,13,83,15,83,134,84,250,84, 3,87,3,94,22,96,155,98,177,98,85,99,6,250,225,108, 102,109,177,117,50,120,222,128,47,129,222,130,97,132,178,132, 141,136,18,137,11,144,234,146,253,152,145,155,69,94,180,102, 221,102,17,112,6,114,7,250,245,79,125,82,106,95,83,97, 83,103,25,106,2,111,226,116,104,121,104,136,121,140,199,152, 196,152,67,154,193,84,31,122,83,105,247,138,74,140,168,152, 174,153,124,95,171,98,178,117,174,118,171,136,127,144,66,150, 57,83,60,95,197,95,204,108,204,115,98,117,139,117,70,123, 254,130,157,153,79,78,60,144,11,78,85,79,166,83,15,89, 200,94,48,102,179,108,85,116,119,131,102,135,192,140,80,144, 30,151,21,156,209,88,120,91,80,134,20,139,180,157,210,91, 104,96,141,96,241,101,87,108,34,111,163,111,26,112,85,127, 240,127,145,149,146,149,80,150,211,151,114,82,68,143,253,81, 43,84,184,84,99,85,138,85,187,106,181,109,216,125,102,130, 156,146,119,150,121,158,8,84,200,84,210,118,228,134,164,149, 212,149,92,150,162,78,9,79,238,89,230,90,247,93,82,96, 151,98,109,103,65,104,134,108,47,110,56,127,155,128,42,130, 8,250,9,250,5,152,165,78,85,80,179,84,147,87,90,89, 105,91,179,91,200,97,119,105,119,109,35,112,249,135,227,137, 114,138,231,138,130,144,237,153,184,154,190,82,56,104,22,80, 120,94,79,103,71,131,76,136,171,78,17,84,174,86,230,115, 21,145,255,151,9,153,87,153,153,153,83,86,159,88,91,134, 49,138,178,97,246,106,123,115,210,142,71,107,170,150,87,154, 85,89,0,114,107,141,105,151,212,79,244,92,38,95,248,97, 91,102,235,108,171,112,132,115,185,115,254,115,41,119,77,119, 67,125,98,125,35,126,55,130,82,136,10,250,226,140,73,146, 111,152,81,91,116,122,64,136,1,152,204,90,224,79,84,83, 62,89,253,92,62,99,121,109,249,114,5,129,7,129,162,131, 207,146,48,152,168,78,68,81,17,82,139,87,98,95,194,108, 206,110,5,112,80,112,175,112,146,113,233,115,105,116,74,131, 162,135,97,136,8,144,162,144,163,147,168,153,110,81,87,95, 224,96,103,97,179,102,89,133,74,142,175,145,139,151,78,78, 146,78,124,84,213,88,250,88,125,89,181,92,39,95,54,98, 72,98,10,102,103,102,235,107,105,109,207,109,86,110,248,110, 148,111,224,111,233,111,93,112,208,114,37,116,90,116,224,116, 147,118,92,121,202,124,30,126,225,128,166,130,107,132,191,132, 78,134,95,134,116,135,119,139,106,140,172,147,0,152,101,152, 209,96,22,98,119,145,90,90,15,102,247,109,62,110,63,116, 66,155,253,95,218,96,15,123,196,84,24,95,94,108,211,108, 42,109,216,112,5,125,121,134,12,138,59,157,22,83,140,84, 5,91,58,106,107,112,117,117,141,121,190,121,177,130,239,131, 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29,1,16,148,30,1,24,0,31,1,0,96,32,1,64,2, 33,1,144,0,34,1,0,128,35,1,84,0,36,1,0,0, 37,1,8,0,38,1,0,9,39,1,16,0,40,1,64,0, 41,1,0,0,42,1,32,80,43,1,16,16,44,1,0,36, 45,1,2,76,46,1,1,0,47,1,1,6,48,1,24,41, 49,1,76,129,50,1,0,33,51,1,1,8,52,1,133,100, 53,1,3,0,54,1,82,68,55,1,33,16,56,1,4,9, 57,1,8,0,58,1,13,0,59,1,0,0,60,1,136,73, 61,1,0,128,62,1,1,0,63,1,145,22,64,1,101,7, 65,1,0,64,66,1,146,132,67,1,51,4,68,1,0,140, 69,1,146,69,70,1,22,0,71,1,32,82,72,1,40,2, 73,1,8,208,74,1,0,67,75,1,8,76,76,1,162,64, 77,1,42,195,78,1,16,152,79,1,0,46,80,1,0,128, 81,1,112,22,82,1,132,110,83,1,130,64,84,1,144,195, 85,1,179,4,86,1,133,124,87,1,24,33,88,1,28,4, 89,1,200,2,90,1,32,17,91,1,0,74,92,1,72,10, 93,1,27,54,94,1,64,85,95,1,0,137,96,1,10,0, 97,1,2,153,98,1,33,2,99,1,64,16,100,1,66,2, 101,1,0,4,102,1,68,0,103,1,0,0,103,1,0,0, 104,1,4,12,105,1,16,0,106,1,0,0,107,1,22,18, 108,1,0,0,109,1,66,2,110,1,0,0,111,1,32,26, 112,1,64,0,113,1,0,4,114,1,0,0,115,1,9,0, 116,1,179,181,117,1,24,10,118,1,35,21,119,1,160,155, 120,1,232,31,121,1,124,80,122,1,121,131,123,1,253,16, 124,1,157,192,125,1,246,219,126,1,96,5,127,1,146,239, 128,1,66,2,129,1,16,1,130,1,2,223,131,1,97,105, 132,1,34,8,133,1,53,144,134,1,2,2,135,1,0,0, 136,1,3,0,137,1,2,26,138,1,170,69,139,1,1,0, 140,1,0,2,141,1,1,129,142,1,81,40,143,1,128,96, 144,1,210,2,145,1,128,2,146,1,0,0,147,1,0,24, 148,1,1,0,149,1,0,146,150,1,0,0,151,1,128,8, 152,1,0,32,153,1,5,4,154,1,0,53,155,1,0,32, 156,1,68,96,157,1,230,73,158,1,158,96,159,1,76,16, 160,1,66,42,161,1,32,40,162,1,72,161,163,1,177,16, 164,1,32,128,165,1,14,0,166,1,156,123,167,1,144,132, 168,1,160,20,169,1,193,40,170,1,224,65,171,1,4,7, 172,1,73,140,173,1,13,16,174,1,200,12,175,1,18,132, 176,1,186,137,177,1,192,2,178,1,34,20,179,1,0,85, 180,1,192,10,181,1,196,62,182,1,131,146,183,1,163,28, 184,1,135,67,185,1,3,71,186,1,160,34,187,1,40,48, 188,1,192,3,189,1,1,8,190,1,32,160,191,1,0,128, 192,1,68,48,193,1,163,133,194,1,0,0,195,1,14,32, 196,1,37,34,197,1,60,183,198,1,1,0,199,1,32,50, 200,1,80,140,201,1,153,0,202,1,93,49,203,1,160,0, 204,1,2,148,205,1,3,0,206,1,75,14,207,1,66,227, 208,1,32,140,209,1,128,0,210,1,145,208,211,1,148,29, 212,1,40,163,213,1,156,73,214,1,193,96,215,1,6,68, 216,1,19,7,217,1,144,90,218,1,68,68,219,1,136,15, 220,1,0,0,221,1,64,0,222,1,196,149,223,1,129,117, 224,1,71,132,225,1,2,68,226,1,83,192,227,1,131,43, 228,1,8,1,229,1,0,64,230,1,66,146,231,1,17,6, 232,1,166,9,233,1,0,8,234,1,34,50,235,1,132,179, 236,1,221,27,237,1,0,240,238,1,138,192,239,1,130,2, 240,1,2,0,241,1,0,136,242,1,0,108,243,1,0,146, 244,1,33,0,245,1,128,65,246,1,132,140,247,1,8,19, 248,1,68,9,249,1,167,7,250,1,0,0,251,1,81,128, 252,1,65,12,253,1,2,96,254,1,208,0,255,1,0,160, 0,2,208,16,1,2,4,48,2,2,0,68,3,2,0,0, 4,2,0,1,5,2,1,130,6,2,0,7,7,2,0,1, 8,2,14,68,9,2,48,104,10,2,5,8,11,2,178,100, 12,2,20,5,13,2,230,16,14,2,20,68,15,2,17,0, 16,2,0,33,17,2,8,156,18,2,192,203,19,2,32,225, 20,2,194,64,21,2,76,48,22,2,180,65,23,2,172,16, 24,2,131,154,25,2,178,152,26,2,129,50,27,2,34,152, 28,2,132,0,29,2,105,51,30,2,18,188,31,2,192,214, 32,2,59,192,33,2,161,161,34,2,83,12,35,2,30,138, 36,2,0,234,37,2,240,203,38,2,216,5,39,2,144,67, 40,2,195,33,41,2,5,72,42,2,28,74,43,2,208,2, 44,2,64,50,45,2,65,0,46,2,157,215,47,2,9,43, 48,2,176,232,49,2,192,125,50,2,82,36,51,2,64,194, 52,2,75,208,53,2,0,160,54,2,171,200,55,2,128,138, 56,2,169,52,57,2,0,128,58,2,201,65,59,2,16,128, 60,2,31,36,61,2,0,146,62,2,123,72,63,2,0,0, 64,2,204,0,65,2,6,132,66,2,0,51,67,2,15,65, 68,2,27,0,69,2,0,32,70,2,64,128,71,2,34,128, 72,2,152,160,73,2,134,161,74,2,107,0,75,2,48,42, 76,2,164,133,77,2,129,65,78,2,4,6,79,2,33,96, 80,2,4,0,81,2,128,0,82,2,1,160,83,2,0,4, 84,2,184,70,85,2,15,233,86,2,160,3,87,2,0,0, 88,2,32,24,89,2,160,64,90,2,16,8,91,2,10,56, 92,2,1,0,93,2,0,5,94,2,0,168,95,2,4,4, 96,2,138,194,97,2,10,0,98,2,32,39,99,2,16,9, 100,2,12,131,101,2,2,8,102,2,0,0,103,2,17,98, 104,2,128,16,105,2,12,0,106,2,8,8,107,2,12,0, 108,2,8,12,109,2,0,0,110,2,64,8,111,2,16,20, 112,2,68,0,113,2,11,0,114,2,4,100,115,2,192,80, 116,2,1,128,117,2,126,4,118,2,132,137,119,2,88,6, 120,2,64,65,121,2,0,192,122,2,164,148,123,2,98,168, 124,2,220,9,125,2,0,24,126,2,0,0,127,2,0,129, 128,2,10,0,129,2,8,0,130,2,144,65,131,2,7,64, 132,2,161,228,133,2,1,37,134,2,69,100,135,2,238,17, 136,2,125,14,137,2,0,72,138,2,8,251,139,2,22,22, 140,2,168,8,141,2,46,201,142,2,9,0,143,2,0,24, 144,2,130,74,145,2,160,6,146,2,100,107,147,2,2,0, 148,2,0,22,149,2,72,86,150,2,144,131,151,2,160,115, 152,2,42,0,153,2,0,128,154,2,36,0,155,2,249,136, 156,2,2,71,157,2,2,77,158,2,170,15,159,2,0,0, 160,2,128,142,161,2,123,184,162,2,84,117,163,2,24,36, 164,2,64,217,165,2,128,200,166,2,12,4,167,2,0,0, 168,2,65,176,169,2,36,140,170,2,66,4,171,2,52,90, 172,2,26,0,173,2,0,128,174,2,16,193,175,2,70,128, 176,2,50,0,177,2,13,24,178,2,6,129,179,2,2,0, 180,2,146,205,181,2,20,96,182,2,1,116,183,2,18,97, 184,2,145,0,185,2,152,192,186,2,10,66,187,2,15,4, 188,2,32,132,189,2,19,154,190,2,2,64,191,2,98,138, 192,2,34,253,193,2,136,129,194,2,128,64,195,2,0,16, 196,2,3,33,197,2,8,8,198,2,1,49,199,2,32,68, 200,2,4,7,201,2,18,184,202,2,136,3,203,2,0,137, 204,2,0,163,205,2,0,0,206,2,2,34,207,2,16,18, 208,2,0,70,209,2,66,0,210,2,65,0,211,2,128,86, 212,2,65,82,213,2,240,82,214,2,0,32,215,2,16,134, 216,2,20,130,217,2,4,16,218,2,2,70,219,2,10,67, 220,2,53,128,221,2,224,96,222,2,0,216,223,2,65,0, 224,2,1,8,225,2,0,52,226,2,101,108,227,2,193,17, 228,2,4,171,229,2,134,2,230,2,4,34,231,2,3,0, 232,2,0,0,233,2,132,144,234,2,0,0,235,2,21,64, 236,2,129,2,237,2,2,2,238,2,0,51,239,2,0,4, 240,2,64,56,241,2,32,14,242,2,192,192,243,2,48,0, 244,2,133,0,245,2,0,5,246,2,37,13,247,2,208,74, 248,2,208,129,249,2,128,34,250,2,12,2,251,2,5,182, 252,2,64,98,253,2,121,38,254,2,128,98,255,2,234,2, 0,3,8,8,1,3,103,221,2,3,121,133,3,3,27,8, 4,3,160,222,5,3,53,135,6,3,0,64,7,3,140,10, 8,3,0,209,9,3,170,5,10,3,37,162,11,3,64,132, 12,3,16,21,13,3,77,64,14,3,128,0,15,3,18,0, 16,3,34,141,17,3,104,25,18,3,143,5,19,3,128,144, 20,3,26,58,21,3,100,132,22,3,97,133,23,3,192,204, 24,3,2,32,25,3,32,8,26,3,46,115,27,3,164,32, 28,3,52,11,29,3,4,0,30,3,21,20,31,3,1,32, 32,3,0,130,33,3,87,0,34,3,0,8,35,3,4,80, 36,3,68,0,37,3,18,18,38,3,5,121,39,3,208,64, 40,3,9,0,41,3,0,64,42,3,0,132,43,3,76,5, 44,3,68,216,45,3,154,64,46,3,20,81,47,3,18,11, 48,3,0,64,49,3,1,2,50,3,128,21,51,3,1,32, 52,3,0,8,53,3,74,8,54,3,0,194,55,3,0,8, 56,3,2,64,57,3,32,48,58,3,9,152,59,3,0,0, 60,3,128,24,61,3,44,226,62,3,8,0,63,3,4,0, 64,3,4,0,65,3,224,16,66,3,20,0,67,3,32,128, 68,3,0,32,69,3,0,152,70,3,0,16,71,3,130,112, 72,3,130,0,73,3,136,2,74,3,0,28,75,3,34,76, 76,3,1,0,77,3,0,145,78,3,32,8,79,3,2,64, 80,3,64,0,81,3,0,28,82,3,0,68,83,3,131,3, 84,3,193,124,85,3,33,33,86,3,0,132,87,3,2,224, 88,3,2,0,89,3,192,68,90,3,10,226,91,3,3,14, 92,3,38,129,93,3,208,2,94,3,0,8,95,3,33,41, 96,3,144,150,97,3,1,64,98,3,194,184,99,3,65,98, 100,3,128,0,101,3,6,10,102,3,81,166,103,3,18,1, 104,3,44,129,105,3,0,198,106,3,0,4,107,3,176,12, 108,3,128,162,109,3,41,164,110,3,64,134,111,3,0,128, 112,3,2,74,113,3,65,48,114,3,0,2,115,3,64,186, 116,3,87,0,117,3,1,80,118,3,32,32,119,3,128,136, 120,3,176,36,121,3,2,32,122,3,18,1,123,3,211,2, 124,3,4,0,125,3,17,2,126,3,0,0,127,3,128,0, 128,3,4,64,129,3,130,12,130,3,0,224,131,3,8,48, 132,3,0,0,133,3,17,16,134,3,8,0,135,3,8,2, 136,3,164,129,137,3,160,64,138,3,14,66,139,3,0,4, 140,3,64,192,141,3,129,0,142,3,0,72,143,3,245,45, 144,3,145,15,145,3,7,216,146,3,41,6,147,3,124,0, 148,3,1,64,149,3,70,69,150,3,78,130,151,3,0,192, 152,3,8,16,153,3,5,48,154,3,54,237,155,3,128,12, 156,3,64,101,157,3,11,147,158,3,16,8,159,3,0,6, 160,3,32,232,161,3,10,200,162,3,130,96,163,3,202,0, 164,3,52,64,165,3,2,46,166,3,1,18,167,3,4,144, 168,3,72,25,169,3,0,0,170,3,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,169,3,0,0, 170,3,0,0,171,3,0,0,172,3,64,5,173,3,0,16, 174,3,49,0,175,3,0,76,176,3,165,2,177,3,32,85, 178,3,16,68,179,3,16,3,180,3,4,35,181,3,34,84, 182,3,52,128,183,3,3,10,184,3,1,18,185,3,107,18, 186,3,161,1,187,3,0,32,188,3,72,160,189,3,72,4, 190,3,64,69,191,3,0,128,192,3,141,224,193,3,240,26, 194,3,64,40,195,3,38,134,196,3,22,4,197,3,24,80, 198,3,0,76,199,3,50,0,200,3,18,33,201,3,228,5, 202,3,0,13,203,3,8,138,204,3,0,66,205,3,0,72, 206,3,51,0,207,3,96,8,208,3,3,135,209,3,1,133, 210,3,0,52,211,3,9,1,212,3,40,228,213,3,69,32, 214,3,0,129,215,3,168,37,216,3,24,92,217,3,160,53, 218,3,4,216,219,3,2,28,220,3,224,2,221,3,161,0, 222,3,0,2,223,3,80,192,224,3,70,65,225,3,0,104, 226,3,4,166,227,3,96,242,228,3,138,187,229,3,0,0, 230,3,182,200,231,3,226,0,232,3,2,96,233,3,62,2, 234,3,128,0,235,3,0,137,236,3,114,3,237,3,129,134, 238,3,6,0,239,3,0,0,240,3,136,8,241,3,0,70, 242,3,64,65,243,3,4,14,244,3,0,32,245,3,34,22, 246,3,72,16,247,3,0,138,248,3,23,34,249,3,24,116, 250,3,0,0,251,3,0,18,252,3,2,33,253,3,0,2, 254,3,128,8,255,3,74,152,0,4,32,4,1,4,0,0, 2,4,17,18,3,4,2,0,4,4,4,153,5,4,85,42, 6,4,2,4,7,4,0,80,8,4,16,16,9,4,0,0, 10,4,154,69,11,4,42,176,12,4,0,160,13,4,10,66, 14,4,8,2,15,4,8,39,16,4,0,0,17,4,144,128, 18,4,18,8,19,4,64,135,20,4,1,4,21,4,2,226, 22,4,32,48,23,4,48,6,24,4,128,140,25,4,196,4, 26,4,192,4,27,4,0,32,28,4,0,128,29,4,0,64, 30,4,49,216,31,4,128,0,32,4,0,2,33,4,0,20, 34,4,8,0,35,4,24,2,36,4,0,0,37,4,128,8, 38,4,16,138,39,4,16,32,40,4,0,64,41,4,13,1, 42,4,0,21,43,4,0,0,44,4,0,0,45,4,0,64, 46,4,160,128,47,4,64,1,48,4,80,1,49,4,4,32, 50,4,0,128,51,4,4,0,52,4,8,4,53,4,16,0, 54,4,0,0,55,4,1,144,56,4,4,74,57,4,32,0, 58,4,0,128,59,4,12,0,60,4,66,8,61,4,65,48, 62,4,140,42,63,4,14,9,64,4,133,192,65,4,6,41, 66,4,196,64,67,4,0,8,68,4,16,0,69,4,6,128, 70,4,48,178,71,4,2,1,72,4,56,33,73,4,128,0, 74,4,13,3,75,4,32,4,76,4,64,9,77,4,18,0, 78,4,0,128,79,4,16,4,80,4,4,128,81,4,202,136, 82,4,72,0,83,4,2,6,84,4,4,36,85,4,1,0, 86,4,4,0,87,4,8,0,88,4,16,1,89,4,13,85, 90,4,200,169,91,4,40,36,92,4,82,12,93,4,0,0, 94,4,49,72,95,4,77,98,96,4,47,2,97,4,160,48, 98,4,40,65,99,4,123,5,100,4,5,210,101,4,148,168, 102,4,68,24,103,4,194,108,104,4,194,69,105,4,23,64, 106,4,209,46,107,4,1,25,108,4,8,2,109,4,2,194, 110,4,0,21,111,4,64,144,112,4,145,32,113,4,1,4, 114,4,77,4,115,4,0,0,116,4,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,115,4,0,0, 116,4,0,0,117,4,0,0,118,4,128,128,119,4,66,21, 120,4,32,4,121,4,2,12,122,4,0,6,123,4,4,20, 124,4,0,96,125,4,135,159,126,4,217,185,127,4,159,5, 128,4,10,84,129,4,93,36,130,4,16,56,131,4,176,37, 132,4,72,0,133,4,0,0,134,4,0,0,133,4,0,0, 134,4,0,0,135,4,80,8,136,4,153,0,137,4,32,4, 138,4,0,2,139,4,8,1,140,4,8,68,141,4,64,152, 142,4,0,40,143,4,10,129,144,4,8,0,145,4,0,132, 146,4,1,64,147,4,0,4,148,4,33,0,149,4,148,7, 150,4,0,130,151,4,1,0,152,4,80,0,153,4,130,36, 154,4,0,0,155,4,0,28,156,4,0,0,157,4,1,60, 158,4,4,128,159,4,0,8,160,4,0,73,161,4,40,2, 162,4,60,248,163,4,192,134,164,4,8,203,165,4,48,98, 166,4,0,160,167,4,4,0,168,4,0,0,168,4,0,0, 169,4,0,24,170,4,72,161,171,4,7,0,172,4,36,64, 173,4,18,0,174,4,64,44,175,4,133,34,176,4,111,169, 177,4,179,230,178,4,15,64,179,4,38,81,180,4,134,108, 181,4,59,114,182,4,11,226,183,4,164,181,184,4,159,133, 185,4,34,2,186,4,76,133,187,4,35,1,188,4,2,4, 189,4,0,64,190,4,2,33,191,4,32,32,192,4,4,0, 193,4,36,2,194,4,128,32,195,4,4,0,196,4,0,126, 197,4,4,0,198,4,4,22,199,4,160,1,200,4,128,42, 201,4,4,16,202,4,0,216,203,4,50,0,204,4,129,250, 205,4,131,49,206,4,136,4,207,4,32,0,208,4,0,32, 209,4,135,64,210,4,0,0,211,4,16,132,212,4,33,2, 213,4,128,72,214,4,116,0,215,4,0,0,216,4,41,0, 217,4,74,17,218,4,0,0,219,4,200,2,220,4,0,144, 221,4,4,0,222,4,16,4,223,4,0,17,224,4,16,0, 225,4,1,197,226,4,87,201,227,4,0,0,228,4,0,45, 229,4,16,8,230,4,0,64,231,4,32,80,232,4,0,16, 233,4,80,4,234,4,136,48,235,4,1,0,236,4,8,0, 237,4,2,64,238,4,18,0,239,4,64,0,240,4,16,0, 241,4,0,1,242,4,32,8,243,4,32,1,244,4,16,0, 245,4,6,8,246,4,0,0,247,4,0,160,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,248,4,0,0, 249,4,0,0,250,4,0,0,251,4,128,0,252,4,9,138, 253,4,30,1,254,4,56,33,255,4,2,24,0,5,128,4, 1,5,112,16,2,5,6,0,3,5,0,0,3,5,0,0, 4,5,0,16,5,5,2,68,6,5,4,136,7,5,21,56, 8,5,1,248,9,5,28,4,10,5,233,33,11,5,96,108, 12,5,48,27,13,5,136,5,14,5,130,8,15,5,243,122, 16,5,96,26,17,5,12,135,18,5,197,10,19,5,193,0, 20,5,74,82,21,5,128,0,22,5,5,34,23,5,20,1, 24,5,66,80,25,5,6,34,26,5,144,4,27,5,0,168, 28,5,0,0,29,5,1,41,30,5,0,0,31,5,64,8, 32,5,8,16,33,5,0,0,34,5,72,136,35,5,111,21, 36,5,143,1,37,5,0,32,38,5,1,11,39,5,64,112, 40,5,16,69,41,5,160,136,42,5,0,0,42,5,0,0, 43,5,0,0,44,5,0,129,45,5,2,0,46,5,144,0, 47,5,0,152,48,5,6,224,49,5,16,112,50,5,8,22, 51,5,9,65,52,5,1,1,53,5,0,0,54,5,32,58, 55,5,150,0,56,5,0,0,57,5,0,0,57,5,0,0, 58,5,64,34,59,5,32,113,60,5,26,2,61,5,2,0, 62,5,39,162,63,5,0,32,64,5,2,128,65,5,2,193, 66,5,0,2,67,5,0,8,68,5,193,0,69,5,41,32, 70,5,160,140,71,5,36,6,72,5,0,0,72,5,0,0, 73,5,0,0,74,5,0,1,75,5,0,1,76,5,0,0, 77,5,24,1,78,5,32,64,79,5,0,0,79,5,0,0, 80,5,0,4,81,5,128,4,82,5,2,16,83,5,62,128, 84,5,16,4,85,5,0,128,86,5,0,0,87,5,0,64, 88,5,2,128,89,5,0,72,90,5,0,0,91,5,0,2, 92,5,64,0,93,5,16,1,94,5,0,0,95,5,0,32, 96,5,37,0,97,5,32,0,98,5,4,8,99,5,128,2, 100,5,128,0,101,5,0,0,102,5,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,101,5,0,0, 102,5,0,0,103,5,160,2,104,5,88,0,105,5,0,2, 106,5,0,8,107,5,64,1,108,5,0,8,109,5,0,0, 110,5,2,32,111,5,3,16,112,5,4,0,113,5,0,0, 114,5,0,0,115,5,0,130,116,5,16,0,117,5,16,0, 118,5,128,0,119,5,0,0,120,5,4,7,121,5,0,0, 122,5,0,68,123,5,0,0,124,5,0,0,123,5,0,0, 124,5,0,0,125,5,0,0,126,5,32,162,127,5,0,0, 128,5,140,160,129,5,32,0,130,5,48,72,131,5,8,96, 132,5,18,89,133,5,0,1,134,5,16,0,135,5,128,65, 136,5,8,0,137,5,1,0,138,5,0,8,139,5,0,76, 140,5,4,128,141,5,130,20,142,5,128,0,143,5,0,32, 144,5,33,16,145,5,0,0,146,5,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,147,5,147,7, 148,5,255,62,149,5,17,176,150,5,3,19,151,5,1,40, 152,5,16,17,153,5,0,0,154,5,147,5,155,5,123,30, 156,5,17,176,157,5,3,151,158,5,1,59,159,5,18,17, 160,5,160,0,161,5,147,149,162,5,107,48,163,5,81,176, 164,5,2,17,165,5,1,50,166,5,48,17,167,5,176,2, 168,5,17,1,169,5,10,48,170,5,121,184,171,5,6,19, 172,5,1,48,173,5,16,0,174,5,128,0,175,5,19,1, 176,5,11,16,177,5,17,0,178,5,0,147,179,5,3,43, 180,5,16,0,181,5,0,0,182,5,147,5,183,5,107,116, 184,5,81,176,185,5,35,19,186,5,1,59,187,5,48,16, 188,5,0,0,189,5,0,0,190,5,0,112,191,5,17,176, 192,5,3,19,193,5,0,41,194,5,16,17,195,5,128,33, 196,5,1,0,197,5,0,48,198,5,21,176,199,5,14,3, 200,5,1,48,201,5,48,0,202,5,0,2,203,5,17,1, 204,5,35,16,205,5,0,0,206,5,0,19,207,5,129,107, 208,5,16,16,209,5,0,3,210,5,19,1,211,5,19,16, 212,5,17,48,213,5,0,1,214,5,0,0,215,5,48,85, 216,5,184,34,217,5,0,0,218,5,0,48,219,5,17,176, 220,5,2,151,221,5,7,251,222,5,58,17,223,5,176,3, 224,5,19,1,225,5,33,0,226,5,0,0,227,5,0,27, 228,5,13,59,229,5,56,17,230,5,176,3,231,5,19,1, 232,5,51,17,233,5,1,0,234,5,0,19,235,5,5,43, 236,5,28,17,237,5,0,1,238,5,0,0,239,5,0,16, 240,5,17,176,241,5,0,19,242,5,1,42,243,5,48,25, 244,5,176,2,245,5,1,0,246,5,16,16,247,5,0,0, 248,5,0,17,249,5,1,3,250,5,48,16,251,5,48,2, 252,5,19,7,253,5,107,20,254,5,17,0,255,5,0,19, 0,6,5,43,1,6,116,249,2,6,184,143,3,6,19,1, 4,6,59,16,5,6,0,0,6,6,0,0,6,6,0,0, 7,6,112,217,8,6,176,74,9,6,19,1,10,6,59,16, 11,6,17,0,12,6,3,17,13,6,0,0,14,6,48,89, 15,6,177,42,16,6,17,1,17,6,0,16,18,6,0,0, 19,6,1,17,20,6,1,11,21,6,16,0,22,6,0,0, 23,6,19,1,24,6,43,16,25,6,0,0,26,6,1,1, 27,6,0,32,28,6,16,17,29,6,160,2,30,6,17,1, 31,6,33,48,32,6,89,176,33,6,2,1,34,6,0,0, 35,6,48,25,36,6,176,7,37,6,19,1,38,6,59,56, 39,6,17,176,40,6,3,0,41,6,0,0,41,6,0,0, 42,6,0,0,43,6,19,13,44,6,59,56,45,6,17,176, 46,6,3,1,47,6,0,16,48,6,0,0,48,6,0,0, 49,6,19,1,50,6,32,16,51,6,16,0,52,6,0,1, 53,6,0,0,54,6,16,1,55,6,0,0,55,6,0,0, 56,6,0,48,57,6,17,24,58,6,2,0,59,6,0,0, 60,6,16,0,61,6,0,0,62,6,17,1,63,6,35,0, 64,6,0,0,65,6,0,147,66,6,1,11,67,6,16,17, 68,6,48,0,69,6,17,1,70,6,43,48,71,6,17,176, 72,6,199,19,73,6,1,59,74,6,48,1,75,6,128,2, 76,6,0,0,77,6,0,48,78,6,17,176,79,6,131,19, 80,6,1,43,81,6,48,17,82,6,176,3,83,6,17,0, 84,6,10,48,85,6,17,176,86,6,2,17,87,6,0,32, 88,6,0,0,89,6,0,1,90,6,17,1,91,6,43,16, 92,6,17,160,93,6,2,19,94,6,1,43,95,6,16,0, 96,6,0,1,97,6,1,0,98,6,0,48,99,6,17,144, 100,6,2,19,101,6,1,43,102,6,48,17,103,6,176,102, 104,6,0,0,105,6,0,48,106,6,17,176,107,6,2,211, 108,6,7,107,109,6,58,17,110,6,176,7,111,6,3,1, 112,6,32,0,113,6,0,0,114,6,0,19,115,6,5,107, 116,6,56,17,117,6,176,3,118,6,19,1,119,6,184,16, 120,6,0,0,121,6,0,27,122,6,5,43,123,6,16,1, 124,6,0,3,125,6,0,0,126,6,0,16,127,6,17,160, 128,6,2,17,129,6,1,10,130,6,112,121,131,6,176,162, 132,6,17,1,133,6,10,16,134,6,0,0,135,6,0,17, 136,6,1,0,137,6,16,17,138,6,144,0,139,6,17,1, 140,6,9,0,141,6,0,0,142,6,0,147,143,6,5,187, 144,6,242,249,145,6,176,34,146,6,19,1,147,6,59,50, 148,6,1,32,149,6,0,0,150,6,0,0,151,6,48,89, 152,6,176,6,153,6,147,1,154,6,59,48,155,6,17,160, 156,6,35,17,157,6,0,0,158,6,112,17,159,6,176,2, 160,6,17,0,161,6,16,16,162,6,0,0,163,6,1,19, 164,6,1,3,165,6,16,1,166,6,0,0,167,6,147,7, 168,6,43,22,169,6,16,0,170,6,1,1,171,6,0,0, 172,6,48,17,173,6,0,2,174,6,17,1,175,6,41,48, 176,6,17,176,177,6,0,0,178,6,0,0,179,6,48,81, 180,6,176,14,181,6,19,5,182,6,59,56,183,6,17,176, 184,6,3,3,185,6,0,1,186,6,0,0,186,6,0,0, 187,6,147,1,188,6,57,16,189,6,0,0,190,6,2,3, 191,6,0,59,192,6,0,0,193,6,0,0,194,6,19,1, 195,6,35,0,196,6,0,0,197,6,0,0,197,6,0,0, 198,6,16,0,199,6,0,0,200,6,1,0,201,6,32,48, 202,6,17,144,203,6,2,0,204,6,0,0,204,6,0,0, 205,6,0,0,206,6,0,0,207,6,0,16,208,6,0,0, 209,6,2,17,210,6,1,3,211,6,0,0,211,6,0,0, 212,6,19,1,213,6,43,176,214,6,121,176,215,6,35,19, 216,6,1,59,217,6,48,17,218,6,176,2,219,6,17,1, 220,6,33,240,221,6,217,176,222,6,67,19,223,6,1,59, 224,6,48,17,225,6,176,3,226,6,17,1,227,6,32,112, 228,6,81,176,229,6,34,19,230,6,1,32,231,6,16,17, 232,6,144,1,233,6,17,1,234,6,11,48,235,6,17,176, 236,6,2,147,237,6,1,171,238,6,22,0,239,6,0,1, 240,6,19,1,241,6,33,48,242,6,17,176,243,6,2,3, 244,6,1,41,245,6,48,49,246,6,176,2,247,6,0,0, 248,6,0,48,249,6,25,184,250,6,66,27,251,6,1,51, 252,6,56,17,253,6,48,3,254,6,0,0,255,6,32,0, 0,7,0,0,1,7,0,19,2,7,5,51,3,7,16,17, 4,7,0,0,5,7,0,0,6,7,0,0,7,7,1,0, 8,7,0,147,9,7,5,35,10,7,48,1,11,7,0,1, 12,7,1,0,13,7,16,16,14,7,17,48,15,7,0,1, 16,7,0,0,17,7,48,17,18,7,48,2,19,7,1,0, 20,7,16,16,21,7,0,0,22,7,0,17,23,7,0,0, 24,7,0,0,25,7,0,2,26,7,19,133,27,7,3,16, 28,7,17,16,29,7,0,19,30,7,1,43,31,7,48,119, 32,7,184,99,33,7,19,1,34,7,59,48,35,7,145,176, 36,7,162,17,37,7,1,2,38,7,48,123,39,7,240,87, 40,7,19,1,41,7,43,112,42,7,209,240,43,7,227,17, 44,7,1,27,45,7,48,113,46,7,185,10,47,7,19,1, 48,7,59,48,49,7,1,144,50,7,2,19,51,7,1,43, 52,7,48,17,53,7,176,2,54,7,19,7,55,7,43,48, 56,7,17,48,57,7,3,19,58,7,1,35,59,7,48,17, 60,7,176,2,61,7,19,1,62,7,171,48,63,7,17,180, 64,7,254,17,65,7,1,9,66,7,48,113,67,7,184,71, 68,7,211,5,69,7,123,48,70,7,17,176,71,7,3,83, 72,7,1,33,73,7,16,17,74,7,0,0,75,7,19,5, 76,7,107,48,77,7,17,176,78,7,2,17,79,7,1,51, 80,7,16,0,81,7,0,0,82,7,19,5,83,7,235,56, 84,7,16,160,85,7,2,1,86,7,0,48,87,7,16,17, 88,7,176,2,89,7,19,0,90,7,32,48,91,7,113,176, 92,7,2,1,93,7,0,16,94,7,16,0,95,7,0,0, 96,7,19,1,97,7,11,16,98,7,17,16,99,7,0,19, 100,7,1,43,101,7,0,0,102,7,0,0,103,7,147,5, 104,7,107,54,105,7,149,176,106,7,3,19,107,7,1,59, 108,7,16,1,109,7,0,2,110,7,0,0,111,7,0,48, 112,7,17,176,113,7,3,1,114,7,0,32,115,7,16,0, 116,7,0,1,117,7,0,0,118,7,0,48,119,7,17,176, 120,7,10,3,121,7,1,16,122,7,16,0,123,7,0,1, 124,7,17,1,125,7,3,0,126,7,0,0,127,7,2,19, 128,7,1,35,129,7,16,0,130,7,0,3,131,7,0,0, 132,7,0,16,133,7,0,0,134,7,0,1,135,7,0,0, 136,7,16,0,137,7,144,2,138,7,0,0,139,7,0,48, 140,7,17,48,141,7,134,83,142,7,1,123,143,7,48,17, 144,7,176,3,145,7,81,1,146,7,33,0,147,7,0,0, 148,7,0,19,149,7,1,59,150,7,48,17,151,7,176,2, 152,7,17,0,153,7,16,16,154,7,1,0,155,7,2,19, 156,7,1,43,157,7,16,17,158,7,0,2,159,7,0,0, 160,7,0,16,161,7,17,176,162,7,2,1,163,7,0,1, 164,7,48,17,165,7,176,2,166,7,1,0,167,7,16,16, 168,7,1,0,169,7,0,17,170,7,1,43,171,7,16,17, 172,7,16,2,173,7,19,1,174,7,43,0,175,7,0,0, 176,7,0,147,177,7,3,43,178,7,48,17,179,7,176,2, 180,7,19,1,181,7,59,48,182,7,0,0,183,7,2,0, 184,7,0,0,185,7,48,25,186,7,176,3,187,7,19,1, 188,7,43,16,189,7,17,176,190,7,3,1,191,7,0,0, 192,7,48,17,193,7,176,2,194,7,19,1,195,7,33,16, 196,7,0,0,197,7,2,1,198,7,1,0,199,7,16,0, 200,7,0,0,201,7,19,1,202,7,43,16,203,7,17,0, 204,7,2,1,205,7,0,32,206,7,48,17,207,7,176,2, 208,7,17,1,209,7,1,48,210,7,17,48,211,7,2,0, 212,7,0,0,213,7,48,17,214,7,176,2,215,7,19,3, 216,7,59,48,217,7,17,176,218,7,3,1,219,7,0,32, 220,7,0,0,221,7,0,0,222,7,19,5,223,7,59,48, 224,7,17,176,225,7,2,17,226,7,0,16,227,7,16,1, 228,7,0,0,229,7,19,1,230,7,43,20,231,7,1,0, 232,7,0,1,233,7,0,0,234,7,16,1,235,7,128,2, 236,7,1,0,237,7,0,48,238,7,17,176,239,7,2,1, 240,7,0,16,241,7,16,0,242,7,0,0,243,7,19,1, 244,7,35,16,245,7,17,16,246,7,2,147,247,7,5,11, 248,7,16,17,249,7,48,0,250,7,19,1,251,7,43,112, 252,7,81,176,253,7,35,19,254,7,1,59,255,7,48,0, 0,8,0,0,1,8,0,0,2,8,0,48,3,8,17,176, 4,8,3,19,5,8,1,43,6,8,16,17,7,8,48,3, 8,8,1,1,9,8,10,48,10,8,17,176,11,8,2,1, 12,8,0,32,13,8,0,0,14,8,0,0,15,8,17,0, 16,8,0,16,17,8,17,160,18,8,0,147,19,8,5,43, 20,8,16,0,21,8,0,2,22,8,0,0,23,8,0,16, 24,8,17,144,25,8,0,17,26,8,1,41,27,8,16,17, 28,8,176,0,29,8,0,0,30,8,0,48,31,8,17,176, 32,8,2,19,33,8,33,43,34,8,48,17,35,8,176,3, 36,8,1,0,37,8,32,0,38,8,0,0,39,8,0,19, 40,8,5,43,41,8,48,17,42,8,176,2,43,8,19,1, 44,8,59,16,45,8,17,32,46,8,0,19,47,8,33,43, 48,8,50,17,49,8,128,2,50,8,19,0,51,8,40,48, 52,8,17,160,53,8,2,17,54,8,1,10,55,8,48,17, 56,8,146,2,57,8,17,1,58,8,33,48,59,8,17,0, 60,8,2,19,61,8,1,43,62,8,48,17,63,8,144,2, 64,8,211,3,65,8,43,18,66,8,17,48,67,8,2,19, 68,8,1,43,69,8,0,0,70,8,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,71,8,255,255, 72,8,255,255,73,8,255,255,74,8,255,255,75,8,255,255, 76,8,255,255,77,8,255,255,78,8,255,255,79,8,255,255, 80,8,255,255,81,8,255,255,82,8,255,15,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,83,8,255,255, 84,8,255,255,85,8,255,255,86,8,255,255,87,8,255,255, 88,8,255,255,89,8,255,255,90,8,255,255,91,8,255,255, 92,8,255,255,93,8,255,255,94,8,255,255,95,8,255,255, 96,8,255,255,97,8,255,255,98,8,255,255,99,8,255,15, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 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89,41,90,41,91,41,92,41,93,41,94,41,95,41,96,41, 97,41,98,41,99,41,100,41,101,41,102,41,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 77,40,78,40,79,40,80,40,81,40,82,40,83,40,84,40, 85,40,86,40,87,40,88,40,89,40,90,40,91,40,92,40, 93,40,94,40,95,40,96,40,97,40,98,40,99,40,100,40, 101,40,102,40,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 33,38,44,38,34,38,45,38,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,35,38,72,38,71,38,46,38, 36,38,66,38,65,38,47,38,38,38,70,38,69,38,49,38, 37,38,68,38,67,38,48,38,39,38,60,38,73,38,74,38, 55,38,75,38,76,38,50,38,41,38,62,38,77,38,78,38, 57,38,79,38,80,38,52,38,40,38,81,38,82,38,56,38, 61,38,83,38,84,38,51,38,42,38,85,38,86,38,58,38, 63,38,87,38,88,38,53,38,43,38,89,38,90,38,59,38, 91,38,92,38,64,38,93,38,94,38,95,38,96,38,97,38, 98,38,99,38,100,38,54,38,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 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104,42,105,42,106,42,107,42,108,42,109,42,110,42,111,42, 112,42,113,42,114,42,115,42,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,33,43,34,43,35,43,36,43,37,43,38,43,39,43, 40,43,41,43,42,43,43,43,44,43,45,43,46,43,47,43, 48,43,49,43,50,43,51,43,52,43,53,43,54,43,55,43, 56,43,57,43,58,43,59,43,60,43,61,43,62,43,63,43, 64,43,65,43,66,43,67,43,68,43,69,43,70,43,71,43, 72,43,73,43,74,43,75,43,76,43,77,43,78,43,79,43, 80,43,81,43,82,43,83,43,84,43,85,43,86,43,87,43, 88,43,89,43,90,43,91,43,92,43,93,43,94,43,95,43, 96,43,97,43,98,43,99,43,100,43,101,43,102,43,103,43, 104,43,105,43,106,43,107,43,108,43,109,43,110,43,111,43, 112,43,113,43,114,43,115,43,116,43,117,43,118,43,0,0, 0,0,0,0,0,0,36,33,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,33,36,34,36,35,36,36,36,37,36,38,36,39,36, 40,36,41,36,42,36,43,36,44,36,45,36,46,36,47,36, 48,36,49,36,50,36,51,36,52,36,53,36,54,36,55,36, 56,36,57,36,58,36,59,36,60,36,61,36,62,36,63,36, 64,36,65,36,66,36,67,36,68,36,69,36,70,36,71,36, 72,36,73,36,74,36,75,36,76,36,77,36,78,36,79,36, 80,36,81,36,82,36,83,36,84,36,85,36,86,36,87,36, 88,36,89,36,90,36,91,36,92,36,93,36,94,36,95,36, 96,36,97,36,98,36,99,36,100,36,101,36,102,36,103,36, 104,36,105,36,106,36,107,36,108,36,109,36,110,36,111,36, 112,36,113,36,114,36,115,36,116,36,117,36,118,36,119,36, 120,36,121,36,122,36,123,36,124,36,125,36,126,36,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 49,41,50,41,51,41,52,41,53,41,54,41,55,41,56,41, 57,41,58,41,59,41,60,41,61,41,62,41,63,41,64,41, 65,41,66,41,67,41,68,41,69,41,70,41,71,41,72,41, 73,41,74,41,75,41,76,41,95,34,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 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105,108,75,111,0,0,82,118,0,0,0,0,0,0,50,88, 91,109,50,95,62,95,59,121,0,0,116,92,0,0,0,0, 0,0,100,117,0,0,0,0,38,115,96,93,38,97,0,0, 120,78,48,92,0,0,0,0,0,0,0,0,42,99,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,105,113,0,0,0,0, 0,0,0,0,122,77,0,0,0,0,0,0,0,0,0,0, 47,124,33,83,0,0,43,113,0,0,0,0,0,0,0,0, 0,0,0,0,81,103,44,82,0,0,121,78,0,0,0,0, 0,0,0,0,0,0,125,113,0,0,63,94,58,123,57,121, 0,0,0,0,0,0,0,0,0,0,0,0,82,78,0,0, 43,99,96,107,0,0,0,0,0,0,122,78,119,75,37,101, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,97,74,0,0,76,84,0,0,0,0, 0,0,0,0,0,0,97,106,0,0,0,0,99,92,45,95, 0,0,0,0,0,0,0,0,0,0,0,0,107,75,0,0, 0,0,0,0,47,85,0,0,0,0,0,0,117,86,0,0, 120,101,0,0,0,0,64,94,35,108,0,0,77,105,0,0, 39,106,118,105,59,123,0,0,105,103,76,111,0,0,0,0, 102,80,0,0,0,0,65,94,0,0,0,0,44,100,0,0, 0,0,76,88,113,121,0,0,95,78,36,122,50,102,0,0, 123,122,0,0,0,0,61,122,72,76,77,111,85,85,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,34,83,0,0, 0,0,0,0,81,108,0,0,0,0,0,0,0,0,0,0, 39,100,82,108,0,0,0,0,49,118,0,0,0,0,123,78, 0,0,0,0,81,80,63,75,0,0,36,109,0,0,0,0, 0,0,0,0,0,0,0,0,40,109,66,94,98,118,92,109, 117,92,57,96,0,0,0,0,0,0,78,84,0,0,53,116, 0,0,0,0,0,0,91,83,53,86,36,108,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 102,100,0,0,106,113,0,0,0,0,0,0,108,75,64,75, 0,0,0,0,0,0,114,108,0,0,0,0,0,0,0,0, 0,0,106,80,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,114,121,37,108,95,80,0,0,106,103,107,80,81,92, 105,91,76,125,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,87,91, 0,0,0,0,0,0,0,0,97,90,0,0,54,86,0,0, 95,99,0,0,67,94,0,0,68,94,33,74,0,0,0,0, 0,0,0,0,0,0,108,110,0,0,0,0,35,83,55,110, 79,120,0,0,0,0,0,0,0,0,72,106,56,110,44,113, 37,113,78,105,0,0,0,0,0,0,60,121,0,0,0,0, 0,0,121,101,106,108,86,93,66,109,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,37,120,0,0,0,0,0,0,0,0,0,0,58,101, 88,91,0,0,0,0,34,74,0,0,0,0,77,81,0,0, 0,0,0,0,109,110,0,0,0,0,0,0,107,108,69,94, 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79,72,0,0,0,0,0,0,0,0,80,72,0,0,0,0, 0,0,0,0,0,0,0,0,81,72,82,72,0,0,0,0, 83,72,0,0,0,0,0,0,84,72,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,85,72,0,0,0,0,0,0,0,0,0,0,0,0, 86,72,87,72,0,0,0,0,88,72,0,0,0,0,0,0, 89,72,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 90,72,91,72,0,0,92,72,0,0,93,72,0,0,0,0, 0,0,0,0,0,0,0,0,94,72,95,72,0,0,0,0, 96,72,0,0,0,0,0,0,97,72,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,98,72,0,0,0,0,99,72, 0,0,100,72,0,0,0,0,0,0,0,0,0,0,0,0, 101,72,102,72,0,0,0,0,103,72,0,0,104,72,105,72, 106,72,107,72,0,0,0,0,0,0,0,0,0,0,0,0, 108,72,109,72,0,0,110,72,0,0,111,72,0,0,0,0, 0,0,112,72,0,0,0,0,113,72,0,0,0,0,0,0, 114,72,0,0,0,0,0,0,115,72,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,116,72,117,72,0,0,0,0, 0,0,118,72,0,0,0,0,0,0,0,0,0,0,0,0, 119,72,120,72,0,0,0,0,121,72,0,0,0,0,0,0, 122,72,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 123,72,124,72,0,0,125,72,0,0,126,72,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 33,73,34,73,35,73,36,73,37,73,38,73,39,73,40,73, 41,73,42,73,43,73,44,73,45,73,46,73,47,73,48,73, 49,73,50,73,51,73,52,73,53,73,54,73,55,73,56,73, 57,73,58,73,59,73,60,73,61,73,62,73,63,73,64,73, 65,73,66,73,67,73,68,73,69,73,70,73,71,73,72,73, 73,73,74,73,75,73,76,73,77,73,78,73,79,73,80,73, 81,73,82,73,83,73,84,73,85,73,86,73,87,73,88,73, 89,73,90,73,91,73,92,73,93,73,94,73,95,73,96,73, 97,73,98,73,99,73,100,73,101,73,102,73,103,73,104,73, 105,73,106,73,107,73,108,73,109,73,110,73,111,73,112,73, 113,73,114,73,115,73,116,73,117,73,118,73,119,73,120,73, 121,73,122,73,123,73,124,73,125,73,126,73,33,126,34,126, 35,126,36,126,37,126,38,126,39,126,40,126,41,126,42,126, 43,126,44,126,45,126,46,126,47,126,48,126,49,126,50,126, 51,126,52,126,53,126,54,126,55,126,56,126,57,126,58,126, 59,126,60,126,61,126,62,126,63,126,64,126,65,126,66,126, 67,126,68,126,69,126,70,126,71,126,72,126,73,126,74,126, 75,126,76,126,77,126,78,126,79,126,80,126,81,126,82,126, 83,126,84,126,85,126,86,126,87,126,88,126,89,126,90,126, 91,126,92,126,93,126,94,126,95,126,96,126,97,126,98,126, 99,126,100,126,101,126,102,126,103,126,104,126,105,126,106,126, 107,126,108,126,109,126,110,126,111,126,112,126,113,126,114,126, 115,126,116,126,117,126,118,126,119,126,120,126,121,126,122,126, 123,126,124,126,125,126,126,126,0,0,0,0,0,0,0,0, 80,75,86,75,103,75,79,77,104,77,45,78,123,79,34,80, 56,80,80,80,93,80,84,81,85,81,88,81,91,81,92,81, 93,81,94,81,95,81,96,81,98,81,99,81,100,81,101,81, 102,81,104,81,105,81,106,81,107,81,109,81,111,81,112,81, 114,81,118,81,122,81,124,81,125,81,126,81,34,82,35,82, 39,82,40,82,41,82,42,82,43,82,45,82,50,82,62,82, 66,82,67,82,68,82,70,82,71,82,72,82,73,82,74,82, 75,82,77,82,78,82,79,82,80,82,81,82,82,82,83,82, 84,82,85,82,86,82,87,82,89,82,90,82,94,82,95,82, 97,82,98,82,100,82,101,82,102,82,103,82,104,82,105,82, 106,82,107,82,112,82,113,82,114,82,115,82,116,82,117,82, 119,82,120,82,102,84,124,84,37,85,43,85,46,85,56,86, 77,86,75,87,100,87,69,91,100,91,37,92,37,93,85,93, 116,93,124,94,126,94,51,95,97,95,104,95,113,96,45,97, 109,97,117,99,33,100,41,100,46,101,49,101,50,101,57,101, 59,101,60,101,68,101,78,101,80,101,82,101,86,101,122,101, 123,101,124,101,126,101,33,102,36,102,39,102,45,102,47,102, 48,102,49,102,51,102,55,102,56,102,60,102,68,102,70,102, 71,102,74,102,82,102,86,102,89,102,92,102,95,102,97,102, 100,102,101,102,102,102,104,102,106,102,107,102,108,102,111,102, 113,102,114,102,117,102,118,102,119,102,121,102,33,103,38,103, 41,103,42,103,44,103,45,103,48,103,63,103,65,103,70,103, 71,103,75,103,77,103,79,103,80,103,83,103,95,103,100,103, 102,103,119,103,103,104,104,104,112,104,113,104,119,104,121,104, 123,104,126,104,39,105,44,105,76,105,119,105,65,106,101,106, 116,106,119,106,124,106,126,106,36,107,39,107,41,107,42,107, 58,107,59,107,61,107,65,107,66,107,70,107,71,107,76,107, 79,107,80,107,81,107,82,107,88,107,38,108,39,108,42,108, 47,108,48,108,49,108,50,108,53,108,56,108,58,108,64,108, 65,108,69,108,70,108,73,108,74,108,85,108,93,108,94,108, 97,108,100,108,103,108,104,108,119,108,120,108,122,108,33,109, 34,109,35,109,110,109,91,110,61,114,122,114,49,115,39,116, 110,116,116,118,118,118,56,119,72,119,83,119,91,120,112,120, 33,122,34,122,102,122,41,124,0,0,0,0,0,0,0,0, 0,0,33,35,34,35,35,35,36,35,37,35,38,35,39,35, 40,35,41,35,42,35,43,35,44,35,45,35,46,35,47,35, 48,35,49,35,50,35,51,35,52,35,53,35,54,35,55,35, 56,35,57,35,58,35,59,35,60,35,61,35,62,35,63,35, 64,35,65,35,66,35,67,35,68,35,69,35,70,35,71,35, 72,35,73,35,74,35,75,35,76,35,77,35,78,35,79,35, 80,35,81,35,82,35,83,35,84,35,85,35,86,35,87,35, 88,35,89,35,90,35,91,35,44,33,93,35,94,35,95,35, 96,35,97,35,98,35,99,35,100,35,101,35,102,35,103,35, 104,35,105,35,106,35,107,35,108,35,109,35,110,35,111,35, 112,35,113,35,114,35,115,35,116,35,117,35,118,35,119,35, 120,35,121,35,122,35,123,35,124,35,125,35,0,0,0,0, 75,33,76,33,126,33,126,35,0,0,77,33,92,35,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 64,0,128,0,160,0,224,0,32,1,96,1,0,0,0,0, 0,0,0,0,0,0,160,1,0,0,0,0,208,1,16,2, 80,2,144,2,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 192,2,0,3,64,3,0,0,128,3,176,3,240,3,32,4, 96,4,160,4,224,4,0,0,16,5,0,0,0,0,0,0, 0,0,48,5,112,5,176,5,240,5,48,6,96,6,160,6, 224,6,32,7,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 96,7,160,7,224,7,32,8,96,8,160,8,224,8,0,0, 32,9,64,9,0,0,0,0,0,0,0,0,128,9,192,9, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,10,64,10,128,10,192,10,0,11,64,11,128,11,192,11, 0,12,64,12,128,12,192,12,0,13,64,13,128,13,192,13, 0,14,64,14,128,14,192,14,0,15,64,15,128,15,192,15, 0,16,64,16,128,16,192,16,0,17,64,17,128,17,192,17, 0,18,64,18,128,18,192,18,0,19,64,19,128,19,192,19, 0,20,64,20,128,20,192,20,0,21,64,21,128,21,192,21, 0,22,64,22,112,22,176,22,240,22,48,23,112,23,176,23, 240,23,48,24,112,24,176,24,240,24,48,25,112,25,176,25, 240,25,48,26,112,26,176,26,240,26,48,27,112,27,176,27, 240,27,48,28,112,28,176,28,240,28,48,29,112,29,176,29, 240,29,48,30,112,30,176,30,240,30,48,31,112,31,176,31, 240,31,48,32,112,32,176,32,240,32,48,33,112,33,176,33, 240,33,48,34,112,34,176,34,240,34,48,35,112,35,176,35, 240,35,48,36,112,36,176,36,240,36,48,37,112,37,176,37, 240,37,48,38,112,38,176,38,240,38,48,39,112,39,176,39, 240,39,48,40,112,40,176,40,240,40,48,41,112,41,176,41, 240,41,48,42,112,42,176,42,240,42,48,43,112,43,176,43, 240,43,48,44,112,44,176,44,240,44,48,45,112,45,176,45, 240,45,48,46,112,46,176,46,240,46,48,47,112,47,176,47, 240,47,48,48,112,48,176,48,240,48,48,49,112,49,176,49, 240,49,48,50,112,50,176,50,240,50,48,51,112,51,176,51, 240,51,48,52,112,52,176,52,240,52,48,53,112,53,176,53, 240,53,48,54,112,54,176,54,240,54,48,55,112,55,176,55, 240,55,48,56,112,56,176,56,240,56,48,57,112,57,176,57, 240,57,48,58,112,58,0,0,144,58,208,58,16,59,80,59, 144,59,208,59,16,60,80,60,144,60,208,60,16,61,80,61, 144,61,208,61,16,62,80,62,144,62,208,62,16,63,80,63, 144,63,208,63,16,64,80,64,144,64,208,64,16,65,80,65, 144,65,208,65,16,66,80,66,144,66,208,66,16,67,80,67, 144,67,208,67,16,68,80,68,144,68,208,68,16,69,80,69, 144,69,208,69,16,70,80,70,144,70,208,70,16,71,0,0, 48,71,112,71,176,71,240,71,48,72,80,72,144,72,208,72, 16,73,80,73,144,73,208,73,16,74,80,74,128,74,192,74, 0,75,64,75,128,75,192,75,0,76,64,76,128,76,192,76, 0,77,64,77,128,77,192,77,0,78,64,78,128,78,192,78, 0,79,64,79,0,0,0,0,0,0,128,79,192,79,0,80, 48,80,112,80,176,80,240,80,48,81,112,81,176,81,240,81, 48,82,112,82,160,82,224,82,32,83,96,83,144,83,208,83, 16,84,80,84,128,84,192,84,240,84,48,85,112,85,176,85, 240,85,48,86,0,0,80,86,144,86,208,86,16,87,80,87, 144,87,176,87,240,87,48,88,112,88,176,88,240,88,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, 48,89,112,89,176,89,240,89,48,90,112,90,176,90,240,90, 48,91,112,91,176,91,240,91,48,92,112,92,176,92,240,92, 48,93,112,93,176,93,240,93,48,94,112,94,176,94,240,94, 48,95,112,95,176,95,240,95,48,96,96,96,160,96,224,96, 32,97,96,97,160,97,224,97,32,98,96,98,144,98,208,98, 0,99,64,99,112,99,176,99,240,99,48,100,112,100,176,100, 240,100,48,101,112,101,176,101,240,101,48,102,112,102,176,102, 240,102,48,103,112,103,176,103,240,103,48,104,112,104,176,104, 240,104,48,105,112,105,176,105,240,105,48,106,112,106,176,106, 240,106,48,107,112,107,160,107,224,107,32,108,80,108,144,108, 192,108,0,109,48,109,112,109,176,109,240,109,48,110,112,110, 176,110,240,110,48,111,112,111,176,111,240,111,48,112,112,112, 176,112,240,112,48,113,112,113,176,113,240,113,48,114,112,114, 176,114,240,114,48,115,112,115,176,115,240,115,48,116,112,116, 176,116,240,116,48,117,112,117,176,117,240,117,48,118,112,118, 176,118,240,118,48,119,112,119,176,119,240,119,48,120,112,120, 176,120,240,120,48,121,112,121,176,121,240,121,48,122,112,122, 176,122,240,122,48,123,112,123,176,123,240,123,48,124,112,124, 176,124,240,124,48,125,112,125,176,125,240,125,48,126,112,126, 176,126,240,126,48,127,112,127,176,127,240,127,48,128,112,128, 176,128,240,128,48,129,112,129,176,129,240,129,48,130,112,130, 176,130,240,130,48,131,112,131,176,131,240,131,48,132,0,0 } }; U_CDECL_END
the_stack_data/6387573.c
#include <stdbool.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #include <time.h> #include <unistd.h> #if defined(__WIN32__) #include <conio.h> #include <windows.h> #endif #define MAX 100 void test1() { while (1) { int key; if (kbhit()) { key = getch(); do { key = getch(); } while (key == 224); switch (key) { case 113: printf("quit"); exit(0); break; case 72: printf("up"); break; case 75: printf("left"); break; case 77: printf("right"); break; case 80: printf("down"); break; } printf("%d\n", key); } } } void test2() { char c; printf( "Ce programme indique les codes des touches du clavier " "generes par la commande getch()\n" "Un appui sur la touche 'Q' termine le programme\n"); do { printf("Appuyez sur une touche du clavier: "); /* On récupère le code de la touche genere par getch() */ c = getch(); /* Si c'est une touche "classique" */ if (c != 0 && c != -32) printf("code : %i\n", c); /* Dans le cas d'une touche spéciale */ else { printf("Touche speciale : %i\t", c); /* On rappelle getch() pour récupérer le code de la touche */ c = getch(); printf("code : %i\n", c); } } while (c != 'Q'); } int main() { test2(); return 0; }
the_stack_data/200143039.c
#include <stdio.h> int main() { printf("Hello World"); }
the_stack_data/134366.c
#include "stdlib.h" /* returns the length of the character string str, not including the null-terminator */ unsigned strlen(const char *str) { int result = 0; while (*(str++) != 0) result++; return result; }
the_stack_data/113420.c
/** ****************************************************************************** * @file stm32f2xx_ll_spi.c * @author MCD Application Team * @brief SPI LL module driver. ****************************************************************************** * @attention * * <h2><center>&copy; Copyright (c) 2016 STMicroelectronics. * All rights reserved.</center></h2> * * This software component is licensed by ST under BSD 3-Clause license, * the "License"; You may not use this file except in compliance with the * License. You may obtain a copy of the License at: * opensource.org/licenses/BSD-3-Clause * ****************************************************************************** */ #if defined(USE_FULL_LL_DRIVER) /* Includes ------------------------------------------------------------------*/ #include "stm32f2xx_ll_spi.h" #include "stm32f2xx_ll_bus.h" #include "stm32f2xx_ll_rcc.h" #ifdef USE_FULL_ASSERT #include "stm32_assert.h" #else #define assert_param(expr) ((void)0U) #endif /** @addtogroup STM32F2xx_LL_Driver * @{ */ #if defined (SPI1) || defined (SPI2) || defined (SPI3) /** @addtogroup SPI_LL * @{ */ /* Private types -------------------------------------------------------------*/ /* Private variables ---------------------------------------------------------*/ /* Private constants ---------------------------------------------------------*/ /** @defgroup SPI_LL_Private_Constants SPI Private Constants * @{ */ /* SPI registers Masks */ #define SPI_CR1_CLEAR_MASK (SPI_CR1_CPHA | SPI_CR1_CPOL | SPI_CR1_MSTR | \ SPI_CR1_BR | SPI_CR1_LSBFIRST | SPI_CR1_SSI | \ SPI_CR1_SSM | SPI_CR1_RXONLY | SPI_CR1_DFF | \ SPI_CR1_CRCNEXT | SPI_CR1_CRCEN | SPI_CR1_BIDIOE | \ SPI_CR1_BIDIMODE) /** * @} */ /* Private macros ------------------------------------------------------------*/ /** @defgroup SPI_LL_Private_Macros SPI Private Macros * @{ */ #define IS_LL_SPI_TRANSFER_DIRECTION(__VALUE__) (((__VALUE__) == LL_SPI_FULL_DUPLEX) \ || ((__VALUE__) == LL_SPI_SIMPLEX_RX) \ || ((__VALUE__) == LL_SPI_HALF_DUPLEX_RX) \ || ((__VALUE__) == LL_SPI_HALF_DUPLEX_TX)) #define IS_LL_SPI_MODE(__VALUE__) (((__VALUE__) == LL_SPI_MODE_MASTER) \ || ((__VALUE__) == LL_SPI_MODE_SLAVE)) #define IS_LL_SPI_DATAWIDTH(__VALUE__) (((__VALUE__) == LL_SPI_DATAWIDTH_8BIT) \ || ((__VALUE__) == LL_SPI_DATAWIDTH_16BIT)) #define IS_LL_SPI_POLARITY(__VALUE__) (((__VALUE__) == LL_SPI_POLARITY_LOW) \ || ((__VALUE__) == LL_SPI_POLARITY_HIGH)) #define IS_LL_SPI_PHASE(__VALUE__) (((__VALUE__) == LL_SPI_PHASE_1EDGE) \ || ((__VALUE__) == LL_SPI_PHASE_2EDGE)) #define IS_LL_SPI_NSS(__VALUE__) (((__VALUE__) == LL_SPI_NSS_SOFT) \ || ((__VALUE__) == LL_SPI_NSS_HARD_INPUT) \ || ((__VALUE__) == LL_SPI_NSS_HARD_OUTPUT)) #define IS_LL_SPI_BAUDRATE(__VALUE__) (((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV2) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV4) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV8) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV16) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV32) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV64) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV128) \ || ((__VALUE__) == LL_SPI_BAUDRATEPRESCALER_DIV256)) #define IS_LL_SPI_BITORDER(__VALUE__) (((__VALUE__) == LL_SPI_LSB_FIRST) \ || ((__VALUE__) == LL_SPI_MSB_FIRST)) #define IS_LL_SPI_CRCCALCULATION(__VALUE__) (((__VALUE__) == LL_SPI_CRCCALCULATION_ENABLE) \ || ((__VALUE__) == LL_SPI_CRCCALCULATION_DISABLE)) #define IS_LL_SPI_CRC_POLYNOMIAL(__VALUE__) ((__VALUE__) >= 0x1U) /** * @} */ /* Private function prototypes -----------------------------------------------*/ /* Exported functions --------------------------------------------------------*/ /** @addtogroup SPI_LL_Exported_Functions * @{ */ /** @addtogroup SPI_LL_EF_Init * @{ */ /** * @brief De-initialize the SPI registers to their default reset values. * @param SPIx SPI Instance * @retval An ErrorStatus enumeration value: * - SUCCESS: SPI registers are de-initialized * - ERROR: SPI registers are not de-initialized */ ErrorStatus LL_SPI_DeInit(SPI_TypeDef *SPIx) { ErrorStatus status = ERROR; /* Check the parameters */ assert_param(IS_SPI_ALL_INSTANCE(SPIx)); #if defined(SPI1) if (SPIx == SPI1) { /* Force reset of SPI clock */ LL_APB2_GRP1_ForceReset(LL_APB2_GRP1_PERIPH_SPI1); /* Release reset of SPI clock */ LL_APB2_GRP1_ReleaseReset(LL_APB2_GRP1_PERIPH_SPI1); status = SUCCESS; } #endif /* SPI1 */ #if defined(SPI2) if (SPIx == SPI2) { /* Force reset of SPI clock */ LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_SPI2); /* Release reset of SPI clock */ LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_SPI2); status = SUCCESS; } #endif /* SPI2 */ #if defined(SPI3) if (SPIx == SPI3) { /* Force reset of SPI clock */ LL_APB1_GRP1_ForceReset(LL_APB1_GRP1_PERIPH_SPI3); /* Release reset of SPI clock */ LL_APB1_GRP1_ReleaseReset(LL_APB1_GRP1_PERIPH_SPI3); status = SUCCESS; } #endif /* SPI3 */ return status; } /** * @brief Initialize the SPI registers according to the specified parameters in SPI_InitStruct. * @note As some bits in SPI configuration registers can only be written when the SPI is disabled (SPI_CR1_SPE bit =0), * SPI peripheral should be in disabled state prior calling this function. Otherwise, ERROR result will be returned. * @param SPIx SPI Instance * @param SPI_InitStruct pointer to a @ref LL_SPI_InitTypeDef structure * @retval An ErrorStatus enumeration value. (Return always SUCCESS) */ ErrorStatus LL_SPI_Init(SPI_TypeDef *SPIx, LL_SPI_InitTypeDef *SPI_InitStruct) { ErrorStatus status = ERROR; /* Check the SPI Instance SPIx*/ assert_param(IS_SPI_ALL_INSTANCE(SPIx)); /* Check the SPI parameters from SPI_InitStruct*/ assert_param(IS_LL_SPI_TRANSFER_DIRECTION(SPI_InitStruct->TransferDirection)); assert_param(IS_LL_SPI_MODE(SPI_InitStruct->Mode)); assert_param(IS_LL_SPI_DATAWIDTH(SPI_InitStruct->DataWidth)); assert_param(IS_LL_SPI_POLARITY(SPI_InitStruct->ClockPolarity)); assert_param(IS_LL_SPI_PHASE(SPI_InitStruct->ClockPhase)); assert_param(IS_LL_SPI_NSS(SPI_InitStruct->NSS)); assert_param(IS_LL_SPI_BAUDRATE(SPI_InitStruct->BaudRate)); assert_param(IS_LL_SPI_BITORDER(SPI_InitStruct->BitOrder)); assert_param(IS_LL_SPI_CRCCALCULATION(SPI_InitStruct->CRCCalculation)); if (LL_SPI_IsEnabled(SPIx) == 0x00000000U) { /*---------------------------- SPIx CR1 Configuration ------------------------ * Configure SPIx CR1 with parameters: * - TransferDirection: SPI_CR1_BIDIMODE, SPI_CR1_BIDIOE and SPI_CR1_RXONLY bits * - Master/Slave Mode: SPI_CR1_MSTR bit * - DataWidth: SPI_CR1_DFF bit * - ClockPolarity: SPI_CR1_CPOL bit * - ClockPhase: SPI_CR1_CPHA bit * - NSS management: SPI_CR1_SSM bit * - BaudRate prescaler: SPI_CR1_BR[2:0] bits * - BitOrder: SPI_CR1_LSBFIRST bit * - CRCCalculation: SPI_CR1_CRCEN bit */ MODIFY_REG(SPIx->CR1, SPI_CR1_CLEAR_MASK, SPI_InitStruct->TransferDirection | SPI_InitStruct->Mode | SPI_InitStruct->DataWidth | SPI_InitStruct->ClockPolarity | SPI_InitStruct->ClockPhase | SPI_InitStruct->NSS | SPI_InitStruct->BaudRate | SPI_InitStruct->BitOrder | SPI_InitStruct->CRCCalculation); /*---------------------------- SPIx CR2 Configuration ------------------------ * Configure SPIx CR2 with parameters: * - NSS management: SSOE bit */ MODIFY_REG(SPIx->CR2, SPI_CR2_SSOE, (SPI_InitStruct->NSS >> 16U)); /*---------------------------- SPIx CRCPR Configuration ---------------------- * Configure SPIx CRCPR with parameters: * - CRCPoly: CRCPOLY[15:0] bits */ if (SPI_InitStruct->CRCCalculation == LL_SPI_CRCCALCULATION_ENABLE) { assert_param(IS_LL_SPI_CRC_POLYNOMIAL(SPI_InitStruct->CRCPoly)); LL_SPI_SetCRCPolynomial(SPIx, SPI_InitStruct->CRCPoly); } status = SUCCESS; } /* Activate the SPI mode (Reset I2SMOD bit in I2SCFGR register) */ CLEAR_BIT(SPIx->I2SCFGR, SPI_I2SCFGR_I2SMOD); return status; } /** * @brief Set each @ref LL_SPI_InitTypeDef field to default value. * @param SPI_InitStruct pointer to a @ref LL_SPI_InitTypeDef structure * whose fields will be set to default values. * @retval None */ void LL_SPI_StructInit(LL_SPI_InitTypeDef *SPI_InitStruct) { /* Set SPI_InitStruct fields to default values */ SPI_InitStruct->TransferDirection = LL_SPI_FULL_DUPLEX; SPI_InitStruct->Mode = LL_SPI_MODE_SLAVE; SPI_InitStruct->DataWidth = LL_SPI_DATAWIDTH_8BIT; SPI_InitStruct->ClockPolarity = LL_SPI_POLARITY_LOW; SPI_InitStruct->ClockPhase = LL_SPI_PHASE_1EDGE; SPI_InitStruct->NSS = LL_SPI_NSS_HARD_INPUT; SPI_InitStruct->BaudRate = LL_SPI_BAUDRATEPRESCALER_DIV2; SPI_InitStruct->BitOrder = LL_SPI_MSB_FIRST; SPI_InitStruct->CRCCalculation = LL_SPI_CRCCALCULATION_DISABLE; SPI_InitStruct->CRCPoly = 7U; } /** * @} */ /** * @} */ /** * @} */ /** @addtogroup I2S_LL * @{ */ /* Private types -------------------------------------------------------------*/ /* Private variables ---------------------------------------------------------*/ /* Private constants ---------------------------------------------------------*/ /** @defgroup I2S_LL_Private_Constants I2S Private Constants * @{ */ /* I2S registers Masks */ #define I2S_I2SCFGR_CLEAR_MASK (SPI_I2SCFGR_CHLEN | SPI_I2SCFGR_DATLEN | \ SPI_I2SCFGR_CKPOL | SPI_I2SCFGR_I2SSTD | \ SPI_I2SCFGR_I2SCFG | SPI_I2SCFGR_I2SMOD ) #define I2S_I2SPR_CLEAR_MASK 0x0002U /** * @} */ /* Private macros ------------------------------------------------------------*/ /** @defgroup I2S_LL_Private_Macros I2S Private Macros * @{ */ #define IS_LL_I2S_DATAFORMAT(__VALUE__) (((__VALUE__) == LL_I2S_DATAFORMAT_16B) \ || ((__VALUE__) == LL_I2S_DATAFORMAT_16B_EXTENDED) \ || ((__VALUE__) == LL_I2S_DATAFORMAT_24B) \ || ((__VALUE__) == LL_I2S_DATAFORMAT_32B)) #define IS_LL_I2S_CPOL(__VALUE__) (((__VALUE__) == LL_I2S_POLARITY_LOW) \ || ((__VALUE__) == LL_I2S_POLARITY_HIGH)) #define IS_LL_I2S_STANDARD(__VALUE__) (((__VALUE__) == LL_I2S_STANDARD_PHILIPS) \ || ((__VALUE__) == LL_I2S_STANDARD_MSB) \ || ((__VALUE__) == LL_I2S_STANDARD_LSB) \ || ((__VALUE__) == LL_I2S_STANDARD_PCM_SHORT) \ || ((__VALUE__) == LL_I2S_STANDARD_PCM_LONG)) #define IS_LL_I2S_MODE(__VALUE__) (((__VALUE__) == LL_I2S_MODE_SLAVE_TX) \ || ((__VALUE__) == LL_I2S_MODE_SLAVE_RX) \ || ((__VALUE__) == LL_I2S_MODE_MASTER_TX) \ || ((__VALUE__) == LL_I2S_MODE_MASTER_RX)) #define IS_LL_I2S_MCLK_OUTPUT(__VALUE__) (((__VALUE__) == LL_I2S_MCLK_OUTPUT_ENABLE) \ || ((__VALUE__) == LL_I2S_MCLK_OUTPUT_DISABLE)) #define IS_LL_I2S_AUDIO_FREQ(__VALUE__) ((((__VALUE__) >= LL_I2S_AUDIOFREQ_8K) \ && ((__VALUE__) <= LL_I2S_AUDIOFREQ_192K)) \ || ((__VALUE__) == LL_I2S_AUDIOFREQ_DEFAULT)) #define IS_LL_I2S_PRESCALER_LINEAR(__VALUE__) ((__VALUE__) >= 0x2U) #define IS_LL_I2S_PRESCALER_PARITY(__VALUE__) (((__VALUE__) == LL_I2S_PRESCALER_PARITY_EVEN) \ || ((__VALUE__) == LL_I2S_PRESCALER_PARITY_ODD)) /** * @} */ /* Private function prototypes -----------------------------------------------*/ /* Exported functions --------------------------------------------------------*/ /** @addtogroup I2S_LL_Exported_Functions * @{ */ /** @addtogroup I2S_LL_EF_Init * @{ */ /** * @brief De-initialize the SPI/I2S registers to their default reset values. * @param SPIx SPI Instance * @retval An ErrorStatus enumeration value: * - SUCCESS: SPI registers are de-initialized * - ERROR: SPI registers are not de-initialized */ ErrorStatus LL_I2S_DeInit(SPI_TypeDef *SPIx) { return LL_SPI_DeInit(SPIx); } /** * @brief Initializes the SPI/I2S registers according to the specified parameters in I2S_InitStruct. * @note As some bits in SPI configuration registers can only be written when the SPI is disabled (SPI_CR1_SPE bit =0), * SPI peripheral should be in disabled state prior calling this function. Otherwise, ERROR result will be returned. * @param SPIx SPI Instance * @param I2S_InitStruct pointer to a @ref LL_I2S_InitTypeDef structure * @retval An ErrorStatus enumeration value: * - SUCCESS: SPI registers are Initialized * - ERROR: SPI registers are not Initialized */ ErrorStatus LL_I2S_Init(SPI_TypeDef *SPIx, LL_I2S_InitTypeDef *I2S_InitStruct) { uint32_t i2sdiv = 2U; uint32_t i2sodd = 0U; uint32_t packetlength = 1U; uint32_t tmp; uint32_t sourceclock; ErrorStatus status = ERROR; /* Check the I2S parameters */ assert_param(IS_I2S_ALL_INSTANCE(SPIx)); assert_param(IS_LL_I2S_MODE(I2S_InitStruct->Mode)); assert_param(IS_LL_I2S_STANDARD(I2S_InitStruct->Standard)); assert_param(IS_LL_I2S_DATAFORMAT(I2S_InitStruct->DataFormat)); assert_param(IS_LL_I2S_MCLK_OUTPUT(I2S_InitStruct->MCLKOutput)); assert_param(IS_LL_I2S_AUDIO_FREQ(I2S_InitStruct->AudioFreq)); assert_param(IS_LL_I2S_CPOL(I2S_InitStruct->ClockPolarity)); if (LL_I2S_IsEnabled(SPIx) == 0x00000000U) { /*---------------------------- SPIx I2SCFGR Configuration -------------------- * Configure SPIx I2SCFGR with parameters: * - Mode: SPI_I2SCFGR_I2SCFG[1:0] bit * - Standard: SPI_I2SCFGR_I2SSTD[1:0] and SPI_I2SCFGR_PCMSYNC bits * - DataFormat: SPI_I2SCFGR_CHLEN and SPI_I2SCFGR_DATLEN bits * - ClockPolarity: SPI_I2SCFGR_CKPOL bit */ /* Write to SPIx I2SCFGR */ MODIFY_REG(SPIx->I2SCFGR, I2S_I2SCFGR_CLEAR_MASK, I2S_InitStruct->Mode | I2S_InitStruct->Standard | I2S_InitStruct->DataFormat | I2S_InitStruct->ClockPolarity | SPI_I2SCFGR_I2SMOD); /*---------------------------- SPIx I2SPR Configuration ---------------------- * Configure SPIx I2SPR with parameters: * - MCLKOutput: SPI_I2SPR_MCKOE bit * - AudioFreq: SPI_I2SPR_I2SDIV[7:0] and SPI_I2SPR_ODD bits */ /* If the requested audio frequency is not the default, compute the prescaler (i2sodd, i2sdiv) * else, default values are used: i2sodd = 0U, i2sdiv = 2U. */ if (I2S_InitStruct->AudioFreq != LL_I2S_AUDIOFREQ_DEFAULT) { /* Check the frame length (For the Prescaler computing) * Default value: LL_I2S_DATAFORMAT_16B (packetlength = 1U). */ if (I2S_InitStruct->DataFormat != LL_I2S_DATAFORMAT_16B) { /* Packet length is 32 bits */ packetlength = 2U; } /* If an external I2S clock has to be used, the specific define should be set in the project configuration or in the stm32f2xx_ll_rcc.h file */ /* Get the I2S source clock value */ sourceclock = LL_RCC_GetI2SClockFreq(LL_RCC_I2S1_CLKSOURCE); /* Compute the Real divider depending on the MCLK output state with a floating point */ if (I2S_InitStruct->MCLKOutput == LL_I2S_MCLK_OUTPUT_ENABLE) { /* MCLK output is enabled */ tmp = (((((sourceclock / 256U) * 10U) / I2S_InitStruct->AudioFreq)) + 5U); } else { /* MCLK output is disabled */ tmp = (((((sourceclock / (32U * packetlength)) * 10U) / I2S_InitStruct->AudioFreq)) + 5U); } /* Remove the floating point */ tmp = tmp / 10U; /* Check the parity of the divider */ i2sodd = (tmp & (uint16_t)0x0001U); /* Compute the i2sdiv prescaler */ i2sdiv = ((tmp - i2sodd) / 2U); /* Get the Mask for the Odd bit (SPI_I2SPR[8]) register */ i2sodd = (i2sodd << 8U); } /* Test if the divider is 1 or 0 or greater than 0xFF */ if ((i2sdiv < 2U) || (i2sdiv > 0xFFU)) { /* Set the default values */ i2sdiv = 2U; i2sodd = 0U; } /* Write to SPIx I2SPR register the computed value */ WRITE_REG(SPIx->I2SPR, i2sdiv | i2sodd | I2S_InitStruct->MCLKOutput); status = SUCCESS; } return status; } /** * @brief Set each @ref LL_I2S_InitTypeDef field to default value. * @param I2S_InitStruct pointer to a @ref LL_I2S_InitTypeDef structure * whose fields will be set to default values. * @retval None */ void LL_I2S_StructInit(LL_I2S_InitTypeDef *I2S_InitStruct) { /*--------------- Reset I2S init structure parameters values -----------------*/ I2S_InitStruct->Mode = LL_I2S_MODE_SLAVE_TX; I2S_InitStruct->Standard = LL_I2S_STANDARD_PHILIPS; I2S_InitStruct->DataFormat = LL_I2S_DATAFORMAT_16B; I2S_InitStruct->MCLKOutput = LL_I2S_MCLK_OUTPUT_DISABLE; I2S_InitStruct->AudioFreq = LL_I2S_AUDIOFREQ_DEFAULT; I2S_InitStruct->ClockPolarity = LL_I2S_POLARITY_LOW; } /** * @brief Set linear and parity prescaler. * @note To calculate value of PrescalerLinear(I2SDIV[7:0] bits) and PrescalerParity(ODD bit)\n * Check Audio frequency table and formulas inside Reference Manual (SPI/I2S). * @param SPIx SPI Instance * @param PrescalerLinear value Min_Data=0x02 and Max_Data=0xFF. * @param PrescalerParity This parameter can be one of the following values: * @arg @ref LL_I2S_PRESCALER_PARITY_EVEN * @arg @ref LL_I2S_PRESCALER_PARITY_ODD * @retval None */ void LL_I2S_ConfigPrescaler(SPI_TypeDef *SPIx, uint32_t PrescalerLinear, uint32_t PrescalerParity) { /* Check the I2S parameters */ assert_param(IS_I2S_ALL_INSTANCE(SPIx)); assert_param(IS_LL_I2S_PRESCALER_LINEAR(PrescalerLinear)); assert_param(IS_LL_I2S_PRESCALER_PARITY(PrescalerParity)); /* Write to SPIx I2SPR */ MODIFY_REG(SPIx->I2SPR, SPI_I2SPR_I2SDIV | SPI_I2SPR_ODD, PrescalerLinear | (PrescalerParity << 8U)); } /** * @} */ /** * @} */ /** * @} */ #endif /* defined (SPI1) || defined (SPI2) || defined (SPI3) */ /** * @} */ #endif /* USE_FULL_LL_DRIVER */ /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
the_stack_data/554284.c
/* * refclock_acts - clock driver for the NIST/PTB Automated Computer Time * Service aka Amalgamated Containerized Trash Service (ACTS) */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #if defined(REFCLOCK) && (defined(CLOCK_ACTS) || defined(CLOCK_PTBACTS)) #include "ntpd.h" #include "ntp_io.h" #include "ntp_unixtime.h" #include "ntp_refclock.h" #include "ntp_stdlib.h" #include "ntp_control.h" #include <stdio.h> #include <ctype.h> #ifdef HAVE_SYS_IOCTL_H # include <sys/ioctl.h> #endif /* HAVE_SYS_IOCTL_H */ /* MUST BE AFTER LAST #include <config.h> !!! */ #if defined(CLOCK_ACTS) && defined(CLOCK_PTBACTS) # if defined(KEEPPTBACTS) # undef CLOCK_ACTS # else /* not KEEPPTBACTS */ # undef CLOCK_PTBACTS # endif /* not KEEPPTBACTS */ #endif /* CLOCK_ACTS && CLOCK_PTBACTS */ /* * This driver supports the NIST Automated Computer Time Service (ACTS). * It periodically dials a prespecified telephone number, receives the * NIST timecode data and calculates the local clock correction. It is * designed primarily for use as a backup when neither a radio clock nor * connectivity to Internet time servers is available. For the best * accuracy, the individual telephone line/modem delay needs to be * calibrated using outside sources. * * The ACTS is located at NIST Boulder, CO, telephone 303 494 4774. A * toll call from a residence telephone in Newark, DE, costs between 14 * and 27 cents, depending on time of day, and from a campus telephone * between 3 and 4 cents, although it is not clear what carrier and time * of day discounts apply in this case. The modem dial string will * differ depending on local telephone configuration, etc., and is * specified by the phone command in the configuration file. The * argument to this command is an AT command for a Hayes compatible * modem. * * The accuracy produced by this driver should be in the range of a * millisecond or two, but may need correction due to the delay * characteristics of the individual modem involved. For undetermined * reasons, some modems work with the ACTS echo-delay measurement scheme * and some don't. This driver tries to do the best it can with what it * gets. Initial experiments with a Practical Peripherals 9600SA modem * here in Delaware suggest an accuracy of a millisecond or two can be * achieved without the scheme by using a fudge time1 value of 65.0 ms. * In either case, the dispersion for a single call involving ten * samples is about 1.3 ms. * * The driver can operate in either of three modes, as determined by * the mode parameter in the server configuration command. In mode 0 * (automatic) the driver operates continuously at intervals depending * on the prediction error, as measured by the driver, usually in the * order of several hours. In mode 1 (backup) the driver is enabled in * automatic mode only when no other source of synchronization is * available and when more than MAXOUTAGE (3600 s) have elapsed since * last synchronized by other sources. In mode 2 (manual) the driver * operates only when enabled using a fudge flags switch, as described * below. * * For reliable call management, this driver requires a 1200-bps modem * with a Hayes-compatible command set and control over the modem data * terminal ready (DTR) control line. Present restrictions require the * use of a POSIX-compatible programming interface, although other * interfaces may work as well. The modem setup string is hard-coded in * the driver and may require changes for nonstandard modems or special * circumstances. * * Further information can be found in the README.refclock file in the * ntp - Version 3 distribution. * * Fudge Factors * * Ordinarily, the propagation time correction is computed automatically * by ACTS and the driver. When this is not possible or erratic due to * individual modem characteristics, the fudge flag2 switch should be * set to disable the ACTS echo-delay scheme. In any case, the fudge * time1 parameter can be used to adjust the propagation delay as * required. * * The ACTS call interval is determined in one of three ways. In manual * mode a call is initiated by setting fudge flag1 using ntpdc, either * manually or via a cron job. In AUTO mode this flag is set by the peer * timer, which is controlled by the sys_poll variable in response to * measured errors. In backup mode the driver is ordinarily asleep, but * awakes (in auto mode) if all other synchronization sources are lost. * In either auto or backup modes, the call interval increases as long * as the measured errors do not exceed the value of the fudge time2 * parameter. * * When the fudge flag1 is set, the ACTS calling program is activated. * This program dials each number listed in the phones command of the * configuration file in turn. If a call attempt fails, the next number * in the list is dialed. The fudge flag1 and counter are reset and the * calling program terminated if (a) a valid clock update has been * determined, (b) no more numbers remain in the list, (c) a device * fault or timeout occurs or (d) fudge flag1 is reset manually using * ntpdc. * * In automatic and backup modes, the driver determines the call * interval using a procedure depending on the measured prediction * error and the fudge time2 parameter. If the error exceeds time2 for a * number of times depending on the current interval, the interval is * decreased, but not less than about 1000 s. If the error is less than * time2 for some number of times, the interval is increased, but not * more than about 18 h. With the default value of zero for fudge time2, * the interval will increase from 1000 s to the 4000-8000-s range, in * which the expected accuracy should be in the 1-2-ms range. Setting * fudge time2 to a large value, like 0.1 s, may result in errors of * that order, but increase the call interval to the maximum. The exact * value for each configuration will depend on the modem and operating * system involved, so some experimentation may be necessary. */ /* * DESCRIPTION OF THE AUTOMATED COMPUTER TELEPHONE SERVICE (ACTS) * (reformatted from ACTS on-line computer help information) * * The following is transmitted (at 1200 baud) following completion of * the telephone connection. * * National Institute of Standards and Technology * Telephone Time Service, Generator 3B * Enter question mark "?" for HELP * D L D * MJD YR MO DA H M S ST S UT1 msADV <OTM> * 47999 90-04-18 21:39:15 50 0 +.1 045.0 UTC(NIST) * * 47999 90-04-18 21:39:16 50 0 +.1 045.0 UTC(NIST) * * 47999 90-04-18 21:39:17 50 0 +.1 045.0 UTC(NIST) * * 47999 90-04-18 21:39:18 50 0 +.1 045.0 UTC(NIST) * * 47999 90-04-18 21:39:19 50 0 +.1 037.6 UTC(NIST) # * 47999 90-04-18 21:39:20 50 0 +.1 037.6 UTC(NIST) # * etc..etc...etc....... * * UTC = Universal Time Coordinated, the official world time referred to * the zero meridian. * * DST Daylight savings time characters, valid for the continental * U.S., are set as follows: * * 00 We are on standard time (ST). * 01-49 Now on DST, go to ST when your local time is 2:00 am and * the count is 01. The count is decremented daily at 00 * (UTC). * 50 We are on DST. * 51-99 Now on ST, go to DST when your local time is 2:00 am and * the count is 51. The count is decremented daily at 00 * (UTC). * * The two DST characters provide up to 48 days advance notice of a * change in time. The count remains at 00 or 50 at other times. * * LS Leap second flag is set to "1" to indicate that a leap second is * to be added as 23:59:60 (UTC) on the last day of the current UTC * month. The LS flag will be reset to "0" starting with 23:59:60 * (UTC). The flag will remain on for the entire month before the * second is added. Leap seconds are added as needed at the end of * any month. Usually June and/or December are chosen. * * The leap second flag will be set to a "2" to indicate that a * leap second is to be deleted at 23:59:58--00:00:00 on the last * day of the current month. (This latter provision is included per * international recommendation, however it is not likely to be * required in the near future.) * * DUT1 Approximate difference between earth rotation time (UT1) and * UTC, in steps of 0.1 second: DUT1 = UT1 - UTC. * * MJD Modified Julian Date, often used to tag certain scientific data. * * The full time format is sent at 1200 baud, 8 bit, 1 stop, no parity. * The format at 300 Baud is also 8 bit, 1 stop, no parity. At 300 Baud * the MJD and DUT1 values are deleted and the time is transmitted only * on even seconds. * * Maximum on line time will be 56 seconds. If all lines are busy at any * time, the oldest call will be terminated if it has been on line more * than 28 seconds, otherwise, the call that first reaches 28 seconds * will be terminated. * * Current time is valid at the "on-time" marker (OTM), either "*" or * "#". The nominal on-time marker (*) will be transmitted 45 ms early * to account for the 8 ms required to send 1 character at 1200 Baud, * plus an additional 7 ms for delay from NIST to the user, and * approximately 30 ms "scrambler" delay inherent in 1200 Baud modems. * If the caller echoes all characters, NIST will measure the round trip * delay and advance the on-time marker so that the midpoint of the stop * bit arrives at the user on time. The amount of msADV will reflect the * actual required advance in milliseconds and the OTM will be a "#". * * (The NIST system requires 4 or 5 consecutive delay measurements which * are consistent before switching from "*" to "#". If the user has a * 1200 Baud modem with the same internal delay as that used by NIST, * then the "#" OTM should arrive at the user within +-2 ms of the * correct time. * * However, NIST has studied different brands of 1200 Baud modems and * found internal delays from 24 ms to 40 ms and offsets of the "#" OTM * of +-10 ms. For many computer users, +-10 ms accuracy should be more * than adequate since many computer internal clocks can only be set * with granularity of 20 to 50 ms. In any case, the repeatability of * the offset for the "#" OTM should be within +-2 ms, if the dial-up * path is reciprocal and the user doesn't change the brand or model of * modem used. * * This should be true even if the dial-up path on one day is a land- * line of less than 40 ms (one way) and on the next day is a satellite * link of 260 to 300 ms. In the rare event that the path is one way by * satellite and the other way by land line with a round trip * measurement in the range of 90 to 260 ms, the OTM will remain a "*" * indicating 45 ms advance. * * For user comments write: * NIST-ACTS * Time and Frequency Division * Mail Stop 847 * 325 Broadway * Boulder, CO 80303 * * Software for setting (PC)DOS compatable machines is available on a * 360-kbyte diskette for $35.00 from: NIST Office of Standard Reference * Materials B311-Chemistry Bldg, NIST, Gaithersburg, MD, 20899, (301) * 975-6776 * * PTB timecode service (+49 531 512038) * The Physikalisch-Technische Bundesanstalt (Germany) * also supports a modem time service * as the data formats are very similar this driver can also be compiled for * utilizing the PTB time code service. * * Data format * 0000000000111111111122222222223333333333444444444455555555556666666666777777777 7 * 0123456789012345678901234567890123456789012345678901234567890123456789012345678 9 * 1995-01-23 20:58:51 MEZ 10402303260219950123195849740+40000500 * * A B C D EF G H IJ K L M N O P Q R S T U V W XY Z<CR><LF> * * A year * B month * C day * D hour * E : normally * A for DST to ST switch first hour * B for DST to ST switch second hour if not marked in H * F minute * G second * H timezone * I day of week * J week of year * K day of year * L month for next ST/DST changes * M day * N hour * O UTC year * P UTC month * Q UTC day * R UTC hour * S UTC minute * T modified julian day (MJD) * U DUT1 * V direction and month if leap second * W signal delay (assumed/measured) * X sequence number for additional text line in Y * Y additional text * Z on time marker (* - assumed delay / # measured delay) * <CR>!<LF> ! is second change ! * * This format is also used by the National Physical Laboratory (NPL)'s * TRUETIME service in the UK. In this case the timezone field is * UTC+0 or UTC+1 for standard and daylight saving time. The phone * number for this service (a premium rate number) is 0891 516 333. * It is not clear whether the echo check is implemented. * * For more detail, see http://www.npl.co.uk/npl/cetm/taf/truetime.html. */ /* * Interface definitions */ #define SPEED232 B1200 /* uart speed (1200 cowardly baud) */ #define PRECISION (-10) /* precision assumed (about 1 ms) */ #ifdef CLOCK_ACTS # define REFID "ACTS" /* reference ID */ # define DESCRIPTION "NIST Automated Computer Time Service" /* WRU */ # define LENCODE 50 /* length of valid timecode string */ # define DEVICE "/dev/acts%d" /* device name and unit */ # define REF_ENTRY refclock_acts #else /* not CLOCK_ACTS */ # define REFID "TPTB" /* reference ID */ # define DESCRIPTION "PTB Automated Computer Time Service" # define LENCODE 78 /* length of valid timecode string */ # define DEVICE "/dev/ptb%d" /* device name and unit */ # define REF_ENTRY refclock_ptb #endif /* not CLOCK_ACTS */ #define MODE_AUTO 0 /* automatic mode */ #define MODE_BACKUP 1 /* backup mode */ #define MODE_MANUAL 2 /* manual mode */ #define MSGCNT 10 /* we need this many ACTS messages */ #define SMAX 80 /* max token string length */ #define ACTS_MINPOLL 10 /* log2 min poll interval (1024 s) */ #define ACTS_MAXPOLL 18 /* log2 max poll interval (16384 s) */ #define MAXOUTAGE 3600 /* max before ACTS kicks in (s) */ /* * Modem control strings. These may have to be changed for some modems. * * AT command prefix * B1 initiate call negotiation using Bell 212A * &C1 enable carrier detect * &D2 hang up and return to command mode on DTR transition * E0 modem command echo disabled * l1 set modem speaker volume to low level * M1 speaker enabled untill carrier detect * Q0 return result codes * V1 return result codes as English words */ #define MODEM_SETUP "ATB1&C1&D2E0L1M1Q0V1" /* modem setup */ #define MODEM_HANGUP "ATH" /* modem disconnect */ /* * Timeouts */ #define IDLE 60 /* idle timeout (s) */ #define WAIT 2 /* wait timeout (s) */ #define ANSWER 30 /* answer timeout (s) */ #define CONNECT 10 /* connect timeout (s) */ #define TIMECODE 15 /* timecode timeout (s) */ /* * Tables to compute the ddd of year form icky dd/mm timecode. Viva la * leap. */ static int day1tab[] = {31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}; static int day2tab[] = {31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}; /* * Unit control structure */ struct actsunit { int pollcnt; /* poll message counter */ int state; /* the first one was Delaware */ int run; /* call program run switch */ int msgcnt; /* count of ACTS messages received */ long redial; /* interval to next automatic call */ double msADV; /* millisecond advance of last message */ }; /* * Function prototypes */ static int acts_start P((int, struct peer *)); static void acts_shutdown P((int, struct peer *)); static void acts_receive P((struct recvbuf *)); static void acts_poll P((int, struct peer *)); static void acts_timeout P((struct peer *)); static void acts_disc P((struct peer *)); static int acts_write P((struct peer *, const char *)); /* * Transfer vector (conditional structure name) */ struct refclock REF_ENTRY = { acts_start, /* start up driver */ acts_shutdown, /* shut down driver */ acts_poll, /* transmit poll message */ noentry, /* not used (old acts_control) */ noentry, /* not used (old acts_init) */ noentry, /* not used (old acts_buginfo) */ NOFLAGS /* not used */ }; /* * acts_start - open the devices and initialize data for processing */ static int acts_start ( int unit, struct peer *peer ) { register struct actsunit *up; struct refclockproc *pp; int fd; char device[20]; int dtr = TIOCM_DTR; /* * Open serial port. Use ACTS line discipline, if available. It * pumps a timestamp into the data stream at every on-time * character '*' found. Note: the port must have modem control * or deep pockets for the phone bill. HP-UX 9.03 users should * have very deep pockets. */ (void)sprintf(device, DEVICE, unit); if (!(fd = refclock_open(device, SPEED232, LDISC_ACTS))) return (0); if (ioctl(fd, TIOCMBIS, (char *)&dtr) < 0) { msyslog(LOG_ERR, "clock %s ACTS no modem control", ntoa(&peer->srcadr)); return (0); } /* * Allocate and initialize unit structure */ if (!(up = (struct actsunit *) emalloc(sizeof(struct actsunit)))) { (void) close(fd); return (0); } memset((char *)up, 0, sizeof(struct actsunit)); pp = peer->procptr; pp->io.clock_recv = acts_receive; pp->io.srcclock = (caddr_t)peer; pp->io.datalen = 0; pp->io.fd = fd; if (!io_addclock(&pp->io)) { (void) close(fd); free(up); return (0); } pp->unitptr = (caddr_t)up; /* * Initialize miscellaneous variables */ peer->precision = PRECISION; pp->clockdesc = DESCRIPTION; memcpy((char *)&pp->refid, REFID, 4); peer->minpoll = ACTS_MINPOLL; peer->maxpoll = ACTS_MAXPOLL; peer->sstclktype = CTL_SST_TS_TELEPHONE; /* * Initialize modem and kill DTR. We skedaddle if this comes * bum. */ if (!acts_write(peer, MODEM_SETUP)) { (void) close(fd); free(up); return (0); } /* * Set up the driver timeout */ peer->nextdate = current_time + WAIT; return (1); } /* * acts_shutdown - shut down the clock */ static void acts_shutdown ( int unit, struct peer *peer ) { register struct actsunit *up; struct refclockproc *pp; pp = peer->procptr; up = (struct actsunit *)pp->unitptr; io_closeclock(&pp->io); free(up); } /* * acts_receive - receive data from the serial interface */ static void acts_receive ( struct recvbuf *rbufp ) { register struct actsunit *up; struct refclockproc *pp; struct peer *peer; char str[SMAX]; int i; char hangup = '%'; /* ACTS hangup */ int day; /* day of the month */ int month; /* month of the year */ u_long mjd; /* Modified Julian Day */ double dut1; /* DUT adjustment */ double msADV; /* ACTS transmit advance (ms) */ char flag; /* calibration flag */ #ifndef CLOCK_PTBACTS char utc[10]; /* this is NIST and you're not */ u_int dst; /* daylight/standard time indicator */ u_int leap; /* leap-second indicator */ #else char leapdir; /* leap direction */ u_int leapmonth; /* month of leap */ #endif /* * Initialize pointers and read the timecode and timestamp. If * the OK modem status code, leave it where folks can find it. */ peer = (struct peer *)rbufp->recv_srcclock; pp = peer->procptr; up = (struct actsunit *)pp->unitptr; pp->lencode = refclock_gtlin(rbufp, pp->a_lastcode, BMAX, &pp->lastrec); if (pp->lencode == 0) { if (strcmp(pp->a_lastcode, "OK") == 0) pp->lencode = 2; return; } #ifdef DEBUG if (debug) printf("acts: state %d timecode %d %*s\n", up->state, pp->lencode, pp->lencode, pp->a_lastcode); #endif switch (up->state) { case 0: /* * State 0. We are not expecting anything. Probably * modem disconnect noise. Go back to sleep. */ return; case 1: /* * State 1. We are waiting for the call to be answered. * All we care about here is CONNECT as the first token * in the string. If the modem signals BUSY, ERROR, NO * ANSWER, NO CARRIER or NO DIALTONE, we immediately * hang up the phone. If CONNECT doesn't happen after * ANSWER seconds, hang up the phone. If everything is * okay, start the connect timeout and slide into state * 2. */ if( strcmp(pp->a_lastcode, " ") == 0) { acts_disc(peer); return; } if( strcmp(sys_phone[0],"DIRECT") != 0 ) { (void)strncpy(str, strtok(pp->a_lastcode, " "), SMAX); if (strcmp(str, "BUSY") == 0 || strcmp(str, "ERROR") == 0 || strcmp(str, "NO") == 0) { NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS modem status %s", ntoa(&peer->srcadr), pp->a_lastcode); acts_disc(peer); } else if (strcmp(str, "CONNECT") == 0) { peer->nextdate = current_time + CONNECT; up->msgcnt = 0; up->state++; } } else { (void) strncpy(str,"CONNECT",7); peer->nextdate = current_time + CONNECT; up->msgcnt = 0; up->state++; } return; case 2: /* * State 2. The call has been answered and we are * waiting for the first ACTS message. If this doesn't * happen within the timecode timeout, hang up the * phone. We probably got a wrong number or ACTS is * down. */ peer->nextdate = current_time + TIMECODE; up->state++; } /* * Real yucky things here. Ignore everything except timecode * messages, as determined by the message length. We told the * terminal routines to end the line with '*' and the line * discipline to strike a timestamp on that character. However, * when the ACTS echo-delay scheme works, the '*' eventually * becomes a '#'. In this case the message is ended by the <CR> * that comes about 200 ms after the '#' and the '#' cannot be * echoed at the proper time. But, this may not be a lose, since * we already have good data from prior messages and only need * the millisecond advance calculated by ACTS. So, if the * message is long enough and has an on-time character at the * right place, we consider the message (but not neccesarily the * timestmap) to be valid. */ if (pp->lencode != LENCODE) return; #ifndef CLOCK_PTBACTS /* * We apparently have a valid timecode message, so dismember it * with sscan(). This routine does a good job in spotting syntax * errors without becoming overly pedantic. * * D L D * MJD YR MO DA H M S ST S UT1 msADV OTM * 47222 88-03-02 21:39:15 83 0 +.3 045.0 UTC(NBS) * */ if (sscanf(pp->a_lastcode, "%5ld %2d-%2d-%2d %2d:%2d:%2d %2d %1d %3lf %5lf %s %c", &mjd, &pp->year, &month, &day, &pp->hour, &pp->minute, &pp->second, &dst, &leap, &dut1, &msADV, utc, &flag) != 13) { refclock_report(peer, CEVNT_BADREPLY); return; } #else /* * Data format * 0000000000111111111122222222223333333333444444444455555555556666666666777777777 7 * 0123456789012345678901234567890123456789012345678901234567890123456789012345678 9 * 1995-01-23 20:58:51 MEZ 10402303260219950123195849740+40000500 * */ if (sscanf(pp->a_lastcode, "%*4d-%*2d-%*2d %*2d:%*2d:%2d %*5c%*12c%4d%2d%2d%2d%2d%5ld%2lf%c%2d%3lf%*15c%c", &pp->second, &pp->year, &month, &day, &pp->hour, &pp->minute, &mjd, &dut1, &leapdir, &leapmonth, &msADV, &flag) != 12) { refclock_report(peer, CEVNT_BADREPLY); return; } #endif /* * Some modems can't be trusted (the Practical Peripherals * 9600SA comes to mind) and, even if they manage to unstick * ACTS, the millisecond advance is wrong, so we use CLK_FLAG2 * to disable echoes, if neccessary. */ if ((flag == '*' || flag == '#') && !(pp->sloppyclockflag & CLK_FLAG2)) (void)write(pp->io.fd, &flag, 1); /* * The ACTS timecode format croaks in 2000. Life is short. * Would only the timecode mavens resist the urge to express months * of the year and days of the month in favor of days of the year. */ if (month < 1 || month > 12 || day < 1) { refclock_report(peer, CEVNT_BADTIME); return; } /* * Depending on the driver, at this point we have a two-digit year * or a four-digit year. Make sure we have a four-digit year. */ if ( pp->year < YEAR_PIVOT ) pp->year += 100; /* Y2KFixes */ if ( pp->year < YEAR_BREAK ) pp->year += 1900; /* Y2KFixes */ if ( !isleap_4(pp->year) ) { /* Y2KFixes */ if (day > day1tab[month - 1]) { refclock_report(peer, CEVNT_BADTIME); return; } for (i = 0; i < month - 1; i++) day += day1tab[i]; } else { if (day > day2tab[month - 1]) { refclock_report(peer, CEVNT_BADTIME); return; } for (i = 0; i < month - 1; i++) day += day2tab[i]; } pp->day = day; #ifndef CLOCK_PTBACTS if (leap == 1) pp->leap = LEAP_ADDSECOND; else if (pp->leap == 2) pp->leap = LEAP_DELSECOND; #else if (leapmonth == month) { if (leapdir == '+') pp->leap = LEAP_ADDSECOND; else if (leapdir == '-') pp->leap = LEAP_DELSECOND; } #endif /* * Colossal hack here. We process each sample in a trimmed-mean * filter and determine the reference clock offset and * dispersion. The fudge time1 value is added to each sample as * received. If we collect MSGCNT samples before the '#' on-time * character, we use the results of the filter as is. If the '#' * is found before that, the adjusted msADV is used to correct * the propagation delay. */ up->msgcnt++; if (flag == '#') { pp->offset += (msADV - up->msADV) * 1000 * 1e-6; } else { up->msADV = msADV; if (!refclock_process(pp)) { refclock_report(peer, CEVNT_BADTIME); return; } else if (up->msgcnt < MSGCNT) return; } /* * We have a filtered sample offset ready for peer processing. * We use lastrec as both the reference time and receive time in * order to avoid being cute, like setting the reference time * later than the receive time, which may cause a paranoid * protocol module to chuck out the data. Finaly, we unhook the * timeout, arm for the next call, fold the tent and go home. * The little dance with the '%' character is an undocumented * ACTS feature that hangs up the phone real quick without * waiting for carrier loss or long-space disconnect, but we do * these clumsy things anyway. */ pp->lastref = pp->lastrec; refclock_receive(peer); record_clock_stats(&peer->srcadr, pp->a_lastcode); pp->sloppyclockflag &= ~CLK_FLAG1; up->pollcnt = 0; (void)write(pp->io.fd, &hangup, 1); up->state = 0; acts_disc(peer); } /* * acts_poll - called by the transmit routine */ static void acts_poll ( int unit, struct peer *peer ) { register struct actsunit *up; struct refclockproc *pp; /* * If the driver is running, we set the enable flag (fudge * flag1), which causes the driver timeout routine to initiate a * call to ACTS. If not, the enable flag can be set using * ntpdc. If this is the sustem peer, then follow the system * poll interval. */ pp = peer->procptr; up = (struct actsunit *)pp->unitptr; if (up->run) { pp->sloppyclockflag |= CLK_FLAG1; if (peer == sys_peer) peer->hpoll = sys_poll; else peer->hpoll = peer->minpoll; } acts_timeout (peer); return; } /* * acts_timeout - called by the timer interrupt */ static void acts_timeout ( struct peer *peer ) { register struct actsunit *up; struct refclockproc *pp; int dtr = TIOCM_DTR; /* * If a timeout occurs in other than state 0, the call has * failed. If in state 0, we just see if there is other work to * do. */ pp = peer->procptr; up = (struct actsunit *)pp->unitptr; if (up->state) { acts_disc(peer); return; } switch (peer->ttl) { /* * In manual mode the ACTS calling program is activated * by the ntpdc program using the enable flag (fudge * flag1), either manually or by a cron job. */ case MODE_MANUAL: up->run = 0; break; /* * In automatic mode the ACTS calling program runs * continuously at intervals determined by the sys_poll * variable. */ case MODE_AUTO: if (!up->run) pp->sloppyclockflag |= CLK_FLAG1; up->run = 1; break; /* * In backup mode the ACTS calling program is disabled, * unless no system peer has been selected for MAXOUTAGE * (3600 s). Once enabled, it runs until some other NTP * peer shows up. */ case MODE_BACKUP: if (!up->run && sys_peer == 0) { if (current_time - last_time > MAXOUTAGE) { up->run = 1; peer->hpoll = peer->minpoll; NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS backup started ", ntoa(&peer->srcadr)); } } else if (up->run && sys_peer->sstclktype != CTL_SST_TS_TELEPHONE) { peer->hpoll = peer->minpoll; up->run = 0; NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS backup stopped", ntoa(&peer->srcadr)); } break; default: msyslog(LOG_ERR, "clock %s ACTS invalid mode", ntoa(&peer->srcadr)); } /* * The fudge flag1 is used as an enable/disable; if set either * by the code or via ntpdc, the ACTS calling program is * started; if reset, the phones stop ringing. */ if (!(pp->sloppyclockflag & CLK_FLAG1)) { up->pollcnt = 0; peer->nextdate = current_time + IDLE; return; } /* * Initiate a call to the ACTS service. If we wind up here in * other than state 0, a successful call could not be completed * within minpoll seconds. We advance to the next modem dial * string. If none are left, we log a notice and clear the * enable flag. For future enhancement: call the site RP and * leave an obscene message in his voicemail. */ if (sys_phone[up->pollcnt][0] == '\0') { refclock_report(peer, CEVNT_TIMEOUT); NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS calling program terminated", ntoa(&peer->srcadr)); pp->sloppyclockflag &= ~CLK_FLAG1; #ifdef DEBUG if (debug) printf("acts: calling program terminated\n"); #endif up->pollcnt = 0; peer->nextdate = current_time + IDLE; return; } /* * Raise DTR, call ACTS and start the answer timeout. We think * it strange if the OK status has not been received from the * modem, but plow ahead anyway. */ if (strcmp(pp->a_lastcode, "OK") != 0) NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS no modem status", ntoa(&peer->srcadr)); (void)ioctl(pp->io.fd, TIOCMBIS, (char *)&dtr); (void)acts_write(peer, sys_phone[up->pollcnt]); NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS calling %s\n", ntoa(&peer->srcadr), sys_phone[up->pollcnt]); up->state = 1; up->pollcnt++; pp->polls++; peer->nextdate = current_time + ANSWER; return; } /* * acts_disc - disconnect the call and wait for the ruckus to cool */ static void acts_disc ( struct peer *peer ) { register struct actsunit *up; struct refclockproc *pp; int dtr = TIOCM_DTR; /* * We should never get here other than in state 0, unless a call * has timed out. We drop DTR, which will reliably get the modem * off the air, even while ACTS is hammering away full tilt. */ pp = peer->procptr; up = (struct actsunit *)pp->unitptr; (void)ioctl(pp->io.fd, TIOCMBIC, (char *)&dtr); if (up->state > 0) { NLOG(NLOG_CLOCKINFO) /* conditional if clause for conditional syslog */ msyslog(LOG_NOTICE, "clock %s ACTS call failed %d", ntoa(&peer->srcadr), up->state); #ifdef DEBUG if (debug) printf("acts: call failed %d\n", up->state); #endif up->state = 0; } peer->nextdate = current_time + WAIT; } /* * acts_write - write a message to the serial port */ static int acts_write ( struct peer *peer, const char *str ) { register struct actsunit *up; struct refclockproc *pp; int len; int code; char cr = '\r'; /* * Not much to do here, other than send the message, handle * debug and report faults. */ pp = peer->procptr; up = (struct actsunit *)pp->unitptr; len = strlen(str); #ifdef DEBUG if (debug) printf("acts: state %d send %d %s\n", up->state, len, str); #endif code = write(pp->io.fd, str, (unsigned)len) == len; code &= write(pp->io.fd, &cr, 1) == 1; if (!code) refclock_report(peer, CEVNT_FAULT); return (code); } #else int refclock_acts_bs; #endif /* REFCLOCK */
the_stack_data/45449081.c
#include<stdio.h> #include<stdlib.h> typedef struct linkedlist{//double linked list char name[20]; int id; struct linkedlist *flink;//forward link struct linkedlist *blink;//backward link }node; node * head=NULL; /*create before : *step1:create a new memory using malloc and point to new address returned by malloc *step2:+if it is first node to be created then *point to new address returned by malloc using head pointer as start reference. *store "NULL" to the 'forwardlink' of new mem block and, store "value" to data memeber 'id'. +if it is not the first node to be created/if alread n blocks with start reference exists then *store "head/start reference" to the 'forwardlink' of new mem block and, store "value" to data memeber 'id'. *now point to new address using head pointer has the start reference. *step3:return if necessary * */ void create_before(int value){//todo: use blink also node *new=(node*)malloc(sizeof(node)); new->id=value; if(NULL==head){ new->flink=NULL; head=new; } else{ new->flink=head; head=new; } } /*create after : *step1:create a new memory using malloc and point to new address returned by malloc. *step3:store "value" to data memeber 'id' *step2:+if it is first node to be created then *point to new address returned by malloc using head pointer as start reference. *store "NULL" to the 'forwardlink' of new mem block and, store "value" to data memeber 'id'. +if it is not the first node to be created/if alread 'n' blocks with start reference exists then *store "head/start reference" to 'temp' pointer for traverese to the last. *traverse to the end the list. *store "new memory refernce(new poinetr)" to the 'forwardlink' of 'last/temp' mem block . *now point to forward/next link to "NULL" has the end of the list. *step3:return if necessary * */ void create_after(int value){ node *temp=NULL; node *new=(node*)malloc(sizeof(node)); new->id=value; if(NULL==head){ new->flink=NULL; head=new; } else{ temp=head; while(temp->flink!=NULL) temp=temp->flink; temp->flink=new; new->flink=NULL; } } /*create at : *step0:take two new pointers 'current' and 'previous' and varible for count:(w). *step1:create a new memory using malloc and point to new address returned by malloc. *step3:store "value" to data memeber 'id' *step4:+if it is first node to be created then *point to new address returned by malloc using head pointer as start reference. *store "NULL" to the 'forwardlink' of new mem block and, store "value" to data memeber 'id'. +if it is not the first node to be created/if alread 'n' blocks with start reference exists then *store "head/start reference" to 'curr' pointer for traveresing to the position. *traverse to the position using 'flink' and also point to "curr pointer" using 'pre' pointer. *store "new memory refernce(new poinetr)" to the 'previouslink' of 'last/temp' mem block . *now point to forward/next link to "curr poinetr addr" has the next/end of the list. *step3:return if necessary * */ void create_at(int value,int pos){ node *curr=NULL; node *pre=NULL; int w=0; printf("pos=%d value=%d\n",pos,value); node *new=(node*)malloc(sizeof(node)); new->id=value; if(NULL==head){ new->flink=NULL; head=new; } else{ curr=head; while(w!=pos){ pre=curr; curr=curr->flink; w++; } pre->flink=new; new->flink=curr; } } void print_list(){ int i=0; node* temp=head; while(temp!=NULL){ printf("i am %d node with value %d\n",++i,temp->id); temp=temp->flink; } } void delete(int value){ node *curr=head; node *pre=NULL; while(value!=(curr->id)){ pre=curr; curr=curr->flink; } if(curr==head) head=head->flink; else pre->flink=curr->flink; free(curr); } void exit_fun(){ printf("thankyou\n"); exit(0); } void main(){ int value,choice; while(1){ printf("enter the choice\n1)create_before\n2)createafter\n3)create_at\n4)printlist\n5)delete\n6)exit\n"); scanf("%d",&choice); switch(choice) { case 1: printf("enter the value\n"); scanf("%d",&value); create_before(value);// code to be executed if n = 1; print_list(); break; case 2: printf("enter the value\n"); scanf("%d",&value); create_after(value);// code to be executed if n = 2; print_list(); break; case 3: printf("enter the value\n"); int pos=0; scanf("%d",&value); printf("enter the position\n"); scanf("%d",&pos); //printf("2\n"); create_at(value,pos);// code to be executed if n = 3; print_list(); break; case 4: print_list();// code to be executed if n = 4 break; case 5: printf("enter the value and position\n"); scanf("%d",&value); delete(value);// code to be executed if n = 5 print_list(); break; case 6: exit_fun();// code to be executed if n is 6 break; default: printf("kindly enter a valid option\n"); } } }
the_stack_data/198581054.c
enum a { b }; long c, d, e, f; g; h() { enum a i = j(); switch (i) case 6: case 138: { if (i == 137) g = ""; g = ""; if (g) if (i == 137) f = d; else if (i == 6) f = e; else f = c; } }
the_stack_data/15762933.c
#include <stdio.h> #include <stdlib.h> int main() { //max ot 3 float float1,float2,float3; scanf("%f",&float1); scanf("%f",&float2); scanf("%f",&float3); float max; if(float1>float2){ if(float1>float3) max = float1; else max = float3; } else if(float2>float1){ if(float2>float3) max=float2; else max=float3; } printf("%.1f",max); }
the_stack_data/179829852.c
float foo(void); float foo(void) { float f = 3.14 - 1.21; return f; }
the_stack_data/1173535.c
// RUN: rm -rf %t* // RUN: 3c -base-dir=%S -alltypes -addcr %s -- | FileCheck -match-full-lines -check-prefixes="CHECK_ALL","CHECK" %s // RUN: 3c -base-dir=%S -addcr %s -- | FileCheck -match-full-lines -check-prefixes="CHECK_NOALL","CHECK" %s // RUN: 3c -base-dir=%S -alltypes -addcr %s -- | %clang -c -fcheckedc-extension -x c -o /dev/null - // RUN: 3c -base-dir=%S -alltypes -output-dir=%t.checked %s -- // RUN: 3c -base-dir=%t.checked -alltypes %t.checked/macro_end_of_decl.c -- | diff %t.checked/macro_end_of_decl.c - // Tests for fix of issue 429. Macros occuring at the end of a rewritten source // range caused an assertion failure. // Original example of the bug found in zlib #define OF(args) args typedef void(*alloc_func) OF((int, int, int)); alloc_func zalloc; //CHECK: typedef _Ptr<void (int, int, int)> alloc_func; //CHECK: alloc_func zalloc = ((void *)0); // Some more contrived examples demonstrating the same issue. #define ARGS () typedef int(*a) ARGS; a b; int(*c) ARGS; //CHECK: typedef _Ptr<int (void)> a; //CHECK: a b = ((void *)0); //CHECK: _Ptr<int (void)> c = ((void *)0); #define SIZE [1] int d SIZE; int e SIZE[1]; //CHECK_NOALL: int d SIZE; //CHECK_NOALL: int e SIZE[1]; //CHECK_ALL: int d _Checked SIZE; //CHECK_ALL: int e _Checked SIZE _Checked[1]; #define EQ = int *f EQ 0; //CHECK: _Ptr<int> f = 0; int(*g0) ARGS, g1 SIZE, *g2 EQ 0; //CHECK: _Ptr<int (void)> g0 = ((void *)0); //CHECK_NOALL: int g1[1]; //CHECK_ALL: int g1 _Checked SIZE; //CHECK: _Ptr<int> g2 = 0; #define RPAREN ) int * h ( int *a RPAREN { //CHECK: _Ptr<int> h(_Ptr<int> a) _Checked { return 0; } // This test case is a little different. Instead of failing an assert, 3C // silently skipped rewriting the cast. This caused a compiler error from // CheckedC's clang. #define STAR * void foo(int *a) { int *b = (int STAR)a; int *c = (int STAR){a}; } //CHECK: void foo(_Ptr<int> a) { //CHECK: _Ptr<int> b = (_Ptr<int>)a; //CHECK: _Ptr<int> c = (_Ptr<int>){a}; //CHECK: }
the_stack_data/181392097.c
#include <stdio.h> #include <stdlib.h> #include <ctype.h> #include <string.h> #define SIZE 100 char stack[SIZE]; int top = -1; void push(char item) { if (top >= SIZE - 1) { printf("\nStack Overflow."); } else { top = top + 1; stack[top] = item; } } char pop() { char item; if (top < 0) { printf("stack under flow: invalid infix expression"); getchar(); exit(1); } else { item = stack[top]; top = top - 1; return (item); } } int is_operator(char symbol) { if (symbol == '^' || symbol == '*' || symbol == '/' || symbol == '+' || symbol == '-') { return 1; } else { return 0; } } int precedence(char symbol) { if (symbol == '^') { return (3); } else if (symbol == '*' || symbol == '/') { return (2); } else if (symbol == '+' || symbol == '-') { return (1); } else { return (0); } } void InfixToPostfix(char infix_exp[], char postfix_exp[]) { int i, j; char item; char x; push('('); strcat(infix_exp, ")"); i = 0; j = 0; item = infix_exp[i]; while (item != '\0') { if (item == '(') { push(item); } else if (isdigit(item) || isalpha(item)) { postfix_exp[j] = item; j++; } else if (is_operator(item) == 1) { x = pop(); while (is_operator(x) == 1 && precedence(x) >= precedence(item)) { postfix_exp[j] = x; j++; x = pop(); } push(x); push(item); } else if (item == ')') { x = pop(); while (x != '(') { postfix_exp[j] = x; j++; x = pop(); } } else { printf("\nInvalid infix Expression.\n"); getchar(); exit(1); } i++; item = infix_exp[i]; } if (top > 0) { printf("\nInvalid infix Expression.\n"); getchar(); exit(1); } if (top > 0) { printf("\nInvalid infix Expression.\n"); getchar(); exit(1); } postfix_exp[j] = '\0'; } int main() { char infix[SIZE], postfix[SIZE]; printf("\nEnter Infix expression : "); gets(infix); InfixToPostfix(infix, postfix); printf("Postfix Expression: "); puts(postfix); return 0; }
the_stack_data/762850.c
/* * Mach Operating System * Copyright (c) 1991 Carnegie Mellon University * All Rights Reserved. * * Permission to use, copy, modify and distribute this software and its * documentation is hereby granted, provided that both the copyright * notice and this permission notice appear in all copies of the * software, derivative works or modified versions, and any portions * thereof, and that both notices appear in supporting documentation. * * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS" * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE. * * Carnegie Mellon requests users of this software to return to * * Software Distribution Coordinator or [email protected] * School of Computer Science * Carnegie Mellon University * Pittsburgh PA 15213-3890 * * any improvements or extensions that they make and grant Carnegie Mellon * the rights to redistribute these changes. */ /* * Copyright 1988, 1989, 1990, 1991 by Intel Corporation, * Santa Clara, California. * * All Rights Reserved * * Permission to use, copy, modify, and distribute this software and its * documentation for any purpose and without fee is hereby granted, * provided that the above copyright notice appears in all copies and that * both the copyright notice and this permission notice appear in * supporting documentation, and that the name of Intel not be used in * advertising or publicity pertaining to distribution of the software * without specific, written prior permission. * * INTEL DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING * ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT * SHALL INTEL BE LIABLE FOR ANY SPECIAL, INDIRECT, OR CONSEQUENTIAL * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR * PROFITS, WHETHER IN ACTION OF CONTRACT, NEGLIGENCE, OR OTHER TORTIOUS * ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF * THIS SOFTWARE. */ /* * HISTORY * $Log: md.c,v $ * Revision 2.4 93/01/14 17:32:08 danner * Proper spl typing. * [92/12/10 17:54:13 af] * * Revision 2.3 92/02/23 22:43:18 elf * Added md_get_status(). * [92/02/22 19:56:15 af] * * Revision 2.2 91/12/10 16:29:59 jsb * New files from Intel * [91/12/10 16:11:01 jsb] * */ /* * from prp, SSD Intel */ #ifdef MACH_KERNEL #include <sys/types.h> #include <vm/vm_kern.h> #include <device/buf.h> #include <device/errno.h> #include <md.h> #define READ_ONLY 0 #define SECSIZE 512 unsigned char *md_address; unsigned long md_size = 0; #define DEBUG 0 #define dprintf if (DEBUG) printf int mdstrategy(); mdopen(dev, flags) int dev; int flags; { unsigned char n; int errcode = 0; char c; dprintf("mdopen md address 0x%08X size 0x%08X\n", md_address, md_size); if (md_size == 0) errcode = ENXIO; return(errcode); } mdclose(dev) { dprintf("mdclose\n"); return; } /* * No need to limit IO size to 4096 bytes. */ mdread(dev, ior) dev_t dev; io_req_t ior; { dprintf("mdread\n"); return(block_io(mdstrategy, minphys, ior)); } mdwrite(dev, ior) dev_t dev; io_req_t ior; { dprintf("mdwrite\n"); return(block_io(mdstrategy, minphys, ior)); } mdstrategy(bp) struct buf *bp; { struct buf *ptr; spl_t old_priority; unsigned int blkaddr; dprintf("mdstrategy %c blk %d len %d buf 0x%08X\n", (bp->b_flags & B_READ)? 'R' : 'W', bp->b_blkno, bp->b_bcount, bp->b_un.b_addr); if (bp->b_bcount == 0) { biodone(bp); return; } if ( !(bp->b_flags & B_READ) && (READ_ONLY) ) { bp->b_flags = B_ERROR; bp->b_error = ENXIO; biodone(bp); return; } /* if request is off the end or trying to write last block on out */ blkaddr = SECSIZE*bp->b_blkno; if ( (blkaddr > md_size) || (blkaddr == md_size & !(bp->b_flags & B_READ))) { bp->b_flags = B_ERROR; bp->b_error = ENXIO; biodone(bp); return; } if (blkaddr == md_size) { /* indicate (read) EOF by setting b_resid to b_bcount on last block */ bp->b_resid = bp->b_bcount; biodone(bp); return; } old_priority = spl5(); if (bp->b_flags & B_READ) { bcopy( md_address + blkaddr, bp->b_un.b_addr, bp->b_bcount); } else { bcopy( bp->b_un.b_addr, md_address + blkaddr, bp->b_bcount); } bp->b_resid = 0; biodone(bp); splx(old_priority); } mdsize() { printf("mdsize() -- not implemented\n"); } mddump() { printf("mddump() -- not implemented\n"); } md_get_status(dev, flavor, status, count) dev_t dev; int *status, *count; { if (flavor == DEV_GET_SIZE) { status[DEV_GET_SIZE_DEVICE_SIZE] = md_size * SECSIZE; status[DEV_GET_SIZE_RECORD_SIZE] = SECSIZE; *count = DEV_GET_SIZE_COUNT; return D_SUCCESS; } else return D_INVALID_OPERATION; } #endif MACH_KERNEL
the_stack_data/999949.c
#include <stddef.h> #include <grp.h> extern int _getpw(int *, char **, char **); extern char **_grpmems(char *); static struct group holdgroup; struct group * getgrnam(const char *name) { int num; char *nam, *mem; num = 0; nam = name; mem = 0; if(_getpw(&num, &nam, &mem)){ holdgroup.gr_name = nam; holdgroup.gr_gid = num; holdgroup.gr_mem = _grpmems(mem); return &holdgroup; } return NULL; }
the_stack_data/22413.c
float ran4(long *idum) { void psdes(unsigned long *lword, unsigned long *irword); unsigned long irword,itemp,lword; static long idums = 0; #if defined(vax) || defined(_vax_) || defined(__vax__) || defined(VAX) static unsigned long jflone = 0x00004080; static unsigned long jflmsk = 0xffff007f; #else static unsigned long jflone = 0x3f800000; static unsigned long jflmsk = 0x007fffff; #endif if (*idum < 0) { idums = -(*idum); *idum=1; } irword=(*idum); lword=idums; psdes(&lword,&irword); itemp=jflone | (jflmsk & irword); ++(*idum); return (*(float *)&itemp)-1.0; }
the_stack_data/92329248.c
#include <stdio.h> #include <math.h> #include <limits.h> #include <time.h> int main() { long long i; long long n; scanf("%lld", &n); for (i = 1; i < n/2; i++){ if (n%i == 0) printf("%lld, %lld, ", i, n/i); if (i * i >= n) break; } printf("\n%lf\n", clock()/CLOCKS_PER_SEC); return 0; }
the_stack_data/143868.c
// KASAN: use-after-free Write in pipe_release // https://syzkaller.appspot.com/bug?id=04754da9d40778c6dfb3 // status:0 // autogenerated by syzkaller (https://github.com/google/syzkaller) #define _GNU_SOURCE #include <arpa/inet.h> #include <dirent.h> #include <endian.h> #include <errno.h> #include <fcntl.h> #include <net/if.h> #include <net/if_arp.h> #include <netinet/in.h> #include <pthread.h> #include <sched.h> #include <setjmp.h> #include <signal.h> #include <stdarg.h> #include <stdbool.h> #include <stdint.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #include <sys/ioctl.h> #include <sys/mount.h> #include <sys/prctl.h> #include <sys/resource.h> #include <sys/socket.h> #include <sys/stat.h> #include <sys/syscall.h> #include <sys/time.h> #include <sys/types.h> #include <sys/uio.h> #include <sys/wait.h> #include <time.h> #include <unistd.h> #include <linux/capability.h> #include <linux/futex.h> #include <linux/genetlink.h> #include <linux/if_addr.h> #include <linux/if_ether.h> #include <linux/if_link.h> #include <linux/if_tun.h> #include <linux/in6.h> #include <linux/ip.h> #include <linux/neighbour.h> #include <linux/net.h> #include <linux/netlink.h> #include <linux/rtnetlink.h> #include <linux/tcp.h> #include <linux/veth.h> static unsigned long long procid; static __thread int skip_segv; static __thread jmp_buf segv_env; static void segv_handler(int sig, siginfo_t* info, void* ctx) { uintptr_t addr = (uintptr_t)info->si_addr; const uintptr_t prog_start = 1 << 20; const uintptr_t prog_end = 100 << 20; int skip = __atomic_load_n(&skip_segv, __ATOMIC_RELAXED) != 0; int valid = addr < prog_start || addr > prog_end; if (skip && valid) { _longjmp(segv_env, 1); } exit(sig); } static void install_segv_handler(void) { struct sigaction sa; memset(&sa, 0, sizeof(sa)); sa.sa_handler = SIG_IGN; syscall(SYS_rt_sigaction, 0x20, &sa, NULL, 8); syscall(SYS_rt_sigaction, 0x21, &sa, NULL, 8); memset(&sa, 0, sizeof(sa)); sa.sa_sigaction = segv_handler; sa.sa_flags = SA_NODEFER | SA_SIGINFO; sigaction(SIGSEGV, &sa, NULL); sigaction(SIGBUS, &sa, NULL); } #define NONFAILING(...) \ { \ __atomic_fetch_add(&skip_segv, 1, __ATOMIC_SEQ_CST); \ if (_setjmp(segv_env) == 0) { \ __VA_ARGS__; \ } \ __atomic_fetch_sub(&skip_segv, 1, __ATOMIC_SEQ_CST); \ } static void sleep_ms(uint64_t ms) { usleep(ms * 1000); } static uint64_t current_time_ms(void) { struct timespec ts; if (clock_gettime(CLOCK_MONOTONIC, &ts)) exit(1); return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000; } static void use_temporary_dir(void) { char tmpdir_template[] = "./syzkaller.XXXXXX"; char* tmpdir = mkdtemp(tmpdir_template); if (!tmpdir) exit(1); if (chmod(tmpdir, 0777)) exit(1); if (chdir(tmpdir)) exit(1); } static void thread_start(void* (*fn)(void*), void* arg) { pthread_t th; pthread_attr_t attr; pthread_attr_init(&attr); pthread_attr_setstacksize(&attr, 128 << 10); int i = 0; for (; i < 100; i++) { if (pthread_create(&th, &attr, fn, arg) == 0) { pthread_attr_destroy(&attr); return; } if (errno == EAGAIN) { usleep(50); continue; } break; } exit(1); } typedef struct { int state; } event_t; static void event_init(event_t* ev) { ev->state = 0; } static void event_reset(event_t* ev) { ev->state = 0; } static void event_set(event_t* ev) { if (ev->state) exit(1); __atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE); syscall(SYS_futex, &ev->state, FUTEX_WAKE | FUTEX_PRIVATE_FLAG, 1000000); } static void event_wait(event_t* ev) { while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE)) syscall(SYS_futex, &ev->state, FUTEX_WAIT | FUTEX_PRIVATE_FLAG, 0, 0); } static int event_isset(event_t* ev) { return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE); } static int event_timedwait(event_t* ev, uint64_t timeout) { uint64_t start = current_time_ms(); uint64_t now = start; for (;;) { uint64_t remain = timeout - (now - start); struct timespec ts; ts.tv_sec = remain / 1000; ts.tv_nsec = (remain % 1000) * 1000 * 1000; syscall(SYS_futex, &ev->state, FUTEX_WAIT | FUTEX_PRIVATE_FLAG, 0, &ts); if (__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE)) return 1; now = current_time_ms(); if (now - start > timeout) return 0; } } static bool write_file(const char* file, const char* what, ...) { char buf[1024]; va_list args; va_start(args, what); vsnprintf(buf, sizeof(buf), what, args); va_end(args); buf[sizeof(buf) - 1] = 0; int len = strlen(buf); int fd = open(file, O_WRONLY | O_CLOEXEC); if (fd == -1) return false; if (write(fd, buf, len) != len) { int err = errno; close(fd); errno = err; return false; } close(fd); return true; } struct nlmsg { char* pos; int nesting; struct nlattr* nested[8]; char buf[1024]; }; static struct nlmsg nlmsg; static void netlink_init(struct nlmsg* nlmsg, int typ, int flags, const void* data, int size) { memset(nlmsg, 0, sizeof(*nlmsg)); struct nlmsghdr* hdr = (struct nlmsghdr*)nlmsg->buf; hdr->nlmsg_type = typ; hdr->nlmsg_flags = NLM_F_REQUEST | NLM_F_ACK | flags; memcpy(hdr + 1, data, size); nlmsg->pos = (char*)(hdr + 1) + NLMSG_ALIGN(size); } static void netlink_attr(struct nlmsg* nlmsg, int typ, const void* data, int size) { struct nlattr* attr = (struct nlattr*)nlmsg->pos; attr->nla_len = sizeof(*attr) + size; attr->nla_type = typ; memcpy(attr + 1, data, size); nlmsg->pos += NLMSG_ALIGN(attr->nla_len); } static void netlink_nest(struct nlmsg* nlmsg, int typ) { struct nlattr* attr = (struct nlattr*)nlmsg->pos; attr->nla_type = typ; nlmsg->pos += sizeof(*attr); nlmsg->nested[nlmsg->nesting++] = attr; } static void netlink_done(struct nlmsg* nlmsg) { struct nlattr* attr = nlmsg->nested[--nlmsg->nesting]; attr->nla_len = nlmsg->pos - (char*)attr; } static int netlink_send_ext(struct nlmsg* nlmsg, int sock, uint16_t reply_type, int* reply_len) { if (nlmsg->pos > nlmsg->buf + sizeof(nlmsg->buf) || nlmsg->nesting) exit(1); struct nlmsghdr* hdr = (struct nlmsghdr*)nlmsg->buf; hdr->nlmsg_len = nlmsg->pos - nlmsg->buf; struct sockaddr_nl addr; memset(&addr, 0, sizeof(addr)); addr.nl_family = AF_NETLINK; unsigned n = sendto(sock, nlmsg->buf, hdr->nlmsg_len, 0, (struct sockaddr*)&addr, sizeof(addr)); if (n != hdr->nlmsg_len) exit(1); n = recv(sock, nlmsg->buf, sizeof(nlmsg->buf), 0); if (reply_len) *reply_len = 0; if (hdr->nlmsg_type == NLMSG_DONE) return 0; if (n < sizeof(struct nlmsghdr)) exit(1); if (reply_len && hdr->nlmsg_type == reply_type) { *reply_len = n; return 0; } if (n < sizeof(struct nlmsghdr) + sizeof(struct nlmsgerr)) exit(1); if (hdr->nlmsg_type != NLMSG_ERROR) exit(1); return -((struct nlmsgerr*)(hdr + 1))->error; } static int netlink_send(struct nlmsg* nlmsg, int sock) { return netlink_send_ext(nlmsg, sock, 0, NULL); } static int netlink_next_msg(struct nlmsg* nlmsg, unsigned int offset, unsigned int total_len) { struct nlmsghdr* hdr = (struct nlmsghdr*)(nlmsg->buf + offset); if (offset == total_len || offset + hdr->nlmsg_len > total_len) return -1; return hdr->nlmsg_len; } static void netlink_add_device_impl(struct nlmsg* nlmsg, const char* type, const char* name) { struct ifinfomsg hdr; memset(&hdr, 0, sizeof(hdr)); netlink_init(nlmsg, RTM_NEWLINK, NLM_F_EXCL | NLM_F_CREATE, &hdr, sizeof(hdr)); if (name) netlink_attr(nlmsg, IFLA_IFNAME, name, strlen(name)); netlink_nest(nlmsg, IFLA_LINKINFO); netlink_attr(nlmsg, IFLA_INFO_KIND, type, strlen(type)); } static void netlink_add_device(struct nlmsg* nlmsg, int sock, const char* type, const char* name) { netlink_add_device_impl(nlmsg, type, name); netlink_done(nlmsg); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_veth(struct nlmsg* nlmsg, int sock, const char* name, const char* peer) { netlink_add_device_impl(nlmsg, "veth", name); netlink_nest(nlmsg, IFLA_INFO_DATA); netlink_nest(nlmsg, VETH_INFO_PEER); nlmsg->pos += sizeof(struct ifinfomsg); netlink_attr(nlmsg, IFLA_IFNAME, peer, strlen(peer)); netlink_done(nlmsg); netlink_done(nlmsg); netlink_done(nlmsg); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_hsr(struct nlmsg* nlmsg, int sock, const char* name, const char* slave1, const char* slave2) { netlink_add_device_impl(nlmsg, "hsr", name); netlink_nest(nlmsg, IFLA_INFO_DATA); int ifindex1 = if_nametoindex(slave1); netlink_attr(nlmsg, IFLA_HSR_SLAVE1, &ifindex1, sizeof(ifindex1)); int ifindex2 = if_nametoindex(slave2); netlink_attr(nlmsg, IFLA_HSR_SLAVE2, &ifindex2, sizeof(ifindex2)); netlink_done(nlmsg); netlink_done(nlmsg); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_linked(struct nlmsg* nlmsg, int sock, const char* type, const char* name, const char* link) { netlink_add_device_impl(nlmsg, type, name); netlink_done(nlmsg); int ifindex = if_nametoindex(link); netlink_attr(nlmsg, IFLA_LINK, &ifindex, sizeof(ifindex)); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_vlan(struct nlmsg* nlmsg, int sock, const char* name, const char* link, uint16_t id, uint16_t proto) { netlink_add_device_impl(nlmsg, "vlan", name); netlink_nest(nlmsg, IFLA_INFO_DATA); netlink_attr(nlmsg, IFLA_VLAN_ID, &id, sizeof(id)); netlink_attr(nlmsg, IFLA_VLAN_PROTOCOL, &proto, sizeof(proto)); netlink_done(nlmsg); netlink_done(nlmsg); int ifindex = if_nametoindex(link); netlink_attr(nlmsg, IFLA_LINK, &ifindex, sizeof(ifindex)); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_macvlan(struct nlmsg* nlmsg, int sock, const char* name, const char* link) { netlink_add_device_impl(nlmsg, "macvlan", name); netlink_nest(nlmsg, IFLA_INFO_DATA); uint32_t mode = MACVLAN_MODE_BRIDGE; netlink_attr(nlmsg, IFLA_MACVLAN_MODE, &mode, sizeof(mode)); netlink_done(nlmsg); netlink_done(nlmsg); int ifindex = if_nametoindex(link); netlink_attr(nlmsg, IFLA_LINK, &ifindex, sizeof(ifindex)); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_add_geneve(struct nlmsg* nlmsg, int sock, const char* name, uint32_t vni, struct in_addr* addr4, struct in6_addr* addr6) { netlink_add_device_impl(nlmsg, "geneve", name); netlink_nest(nlmsg, IFLA_INFO_DATA); netlink_attr(nlmsg, IFLA_GENEVE_ID, &vni, sizeof(vni)); if (addr4) netlink_attr(nlmsg, IFLA_GENEVE_REMOTE, addr4, sizeof(*addr4)); if (addr6) netlink_attr(nlmsg, IFLA_GENEVE_REMOTE6, addr6, sizeof(*addr6)); netlink_done(nlmsg); netlink_done(nlmsg); int err = netlink_send(nlmsg, sock); (void)err; } #define IFLA_IPVLAN_FLAGS 2 #define IPVLAN_MODE_L3S 2 #undef IPVLAN_F_VEPA #define IPVLAN_F_VEPA 2 static void netlink_add_ipvlan(struct nlmsg* nlmsg, int sock, const char* name, const char* link, uint16_t mode, uint16_t flags) { netlink_add_device_impl(nlmsg, "ipvlan", name); netlink_nest(nlmsg, IFLA_INFO_DATA); netlink_attr(nlmsg, IFLA_IPVLAN_MODE, &mode, sizeof(mode)); netlink_attr(nlmsg, IFLA_IPVLAN_FLAGS, &flags, sizeof(flags)); netlink_done(nlmsg); netlink_done(nlmsg); int ifindex = if_nametoindex(link); netlink_attr(nlmsg, IFLA_LINK, &ifindex, sizeof(ifindex)); int err = netlink_send(nlmsg, sock); (void)err; } static void netlink_device_change(struct nlmsg* nlmsg, int sock, const char* name, bool up, const char* master, const void* mac, int macsize, const char* new_name) { struct ifinfomsg hdr; memset(&hdr, 0, sizeof(hdr)); if (up) hdr.ifi_flags = hdr.ifi_change = IFF_UP; hdr.ifi_index = if_nametoindex(name); netlink_init(nlmsg, RTM_NEWLINK, 0, &hdr, sizeof(hdr)); if (new_name) netlink_attr(nlmsg, IFLA_IFNAME, new_name, strlen(new_name)); if (master) { int ifindex = if_nametoindex(master); netlink_attr(nlmsg, IFLA_MASTER, &ifindex, sizeof(ifindex)); } if (macsize) netlink_attr(nlmsg, IFLA_ADDRESS, mac, macsize); int err = netlink_send(nlmsg, sock); (void)err; } static int netlink_add_addr(struct nlmsg* nlmsg, int sock, const char* dev, const void* addr, int addrsize) { struct ifaddrmsg hdr; memset(&hdr, 0, sizeof(hdr)); hdr.ifa_family = addrsize == 4 ? AF_INET : AF_INET6; hdr.ifa_prefixlen = addrsize == 4 ? 24 : 120; hdr.ifa_scope = RT_SCOPE_UNIVERSE; hdr.ifa_index = if_nametoindex(dev); netlink_init(nlmsg, RTM_NEWADDR, NLM_F_CREATE | NLM_F_REPLACE, &hdr, sizeof(hdr)); netlink_attr(nlmsg, IFA_LOCAL, addr, addrsize); netlink_attr(nlmsg, IFA_ADDRESS, addr, addrsize); return netlink_send(nlmsg, sock); } static void netlink_add_addr4(struct nlmsg* nlmsg, int sock, const char* dev, const char* addr) { struct in_addr in_addr; inet_pton(AF_INET, addr, &in_addr); int err = netlink_add_addr(nlmsg, sock, dev, &in_addr, sizeof(in_addr)); (void)err; } static void netlink_add_addr6(struct nlmsg* nlmsg, int sock, const char* dev, const char* addr) { struct in6_addr in6_addr; inet_pton(AF_INET6, addr, &in6_addr); int err = netlink_add_addr(nlmsg, sock, dev, &in6_addr, sizeof(in6_addr)); (void)err; } static void netlink_add_neigh(struct nlmsg* nlmsg, int sock, const char* name, const void* addr, int addrsize, const void* mac, int macsize) { struct ndmsg hdr; memset(&hdr, 0, sizeof(hdr)); hdr.ndm_family = addrsize == 4 ? AF_INET : AF_INET6; hdr.ndm_ifindex = if_nametoindex(name); hdr.ndm_state = NUD_PERMANENT; netlink_init(nlmsg, RTM_NEWNEIGH, NLM_F_EXCL | NLM_F_CREATE, &hdr, sizeof(hdr)); netlink_attr(nlmsg, NDA_DST, addr, addrsize); netlink_attr(nlmsg, NDA_LLADDR, mac, macsize); int err = netlink_send(nlmsg, sock); (void)err; } static int tunfd = -1; #define TUN_IFACE "syz_tun" #define LOCAL_MAC 0xaaaaaaaaaaaa #define REMOTE_MAC 0xaaaaaaaaaabb #define LOCAL_IPV4 "172.20.20.170" #define REMOTE_IPV4 "172.20.20.187" #define LOCAL_IPV6 "fe80::aa" #define REMOTE_IPV6 "fe80::bb" #define IFF_NAPI 0x0010 static void initialize_tun(void) { tunfd = open("/dev/net/tun", O_RDWR | O_NONBLOCK); if (tunfd == -1) { printf("tun: can't open /dev/net/tun: please enable CONFIG_TUN=y\n"); printf("otherwise fuzzing or reproducing might not work as intended\n"); return; } const int kTunFd = 240; if (dup2(tunfd, kTunFd) < 0) exit(1); close(tunfd); tunfd = kTunFd; struct ifreq ifr; memset(&ifr, 0, sizeof(ifr)); strncpy(ifr.ifr_name, TUN_IFACE, IFNAMSIZ); ifr.ifr_flags = IFF_TAP | IFF_NO_PI; if (ioctl(tunfd, TUNSETIFF, (void*)&ifr) < 0) { exit(1); } char sysctl[64]; sprintf(sysctl, "/proc/sys/net/ipv6/conf/%s/accept_dad", TUN_IFACE); write_file(sysctl, "0"); sprintf(sysctl, "/proc/sys/net/ipv6/conf/%s/router_solicitations", TUN_IFACE); write_file(sysctl, "0"); int sock = socket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE); if (sock == -1) exit(1); netlink_add_addr4(&nlmsg, sock, TUN_IFACE, LOCAL_IPV4); netlink_add_addr6(&nlmsg, sock, TUN_IFACE, LOCAL_IPV6); uint64_t macaddr = REMOTE_MAC; struct in_addr in_addr; inet_pton(AF_INET, REMOTE_IPV4, &in_addr); netlink_add_neigh(&nlmsg, sock, TUN_IFACE, &in_addr, sizeof(in_addr), &macaddr, ETH_ALEN); struct in6_addr in6_addr; inet_pton(AF_INET6, REMOTE_IPV6, &in6_addr); netlink_add_neigh(&nlmsg, sock, TUN_IFACE, &in6_addr, sizeof(in6_addr), &macaddr, ETH_ALEN); macaddr = LOCAL_MAC; netlink_device_change(&nlmsg, sock, TUN_IFACE, true, 0, &macaddr, ETH_ALEN, NULL); close(sock); } #define DEVLINK_FAMILY_NAME "devlink" #define DEVLINK_CMD_PORT_GET 5 #define DEVLINK_ATTR_BUS_NAME 1 #define DEVLINK_ATTR_DEV_NAME 2 #define DEVLINK_ATTR_NETDEV_NAME 7 static int netlink_devlink_id_get(struct nlmsg* nlmsg, int sock) { struct genlmsghdr genlhdr; memset(&genlhdr, 0, sizeof(genlhdr)); genlhdr.cmd = CTRL_CMD_GETFAMILY; netlink_init(nlmsg, GENL_ID_CTRL, 0, &genlhdr, sizeof(genlhdr)); netlink_attr(nlmsg, CTRL_ATTR_FAMILY_NAME, DEVLINK_FAMILY_NAME, strlen(DEVLINK_FAMILY_NAME) + 1); int n = 0; int err = netlink_send_ext(nlmsg, sock, GENL_ID_CTRL, &n); if (err) { return -1; } uint16_t id = 0; struct nlattr* attr = (struct nlattr*)(nlmsg->buf + NLMSG_HDRLEN + NLMSG_ALIGN(sizeof(genlhdr))); for (; (char*)attr < nlmsg->buf + n; attr = (struct nlattr*)((char*)attr + NLMSG_ALIGN(attr->nla_len))) { if (attr->nla_type == CTRL_ATTR_FAMILY_ID) { id = *(uint16_t*)(attr + 1); break; } } if (!id) { return -1; } recv(sock, nlmsg->buf, sizeof(nlmsg->buf), 0); return id; } static struct nlmsg nlmsg2; static void initialize_devlink_ports(const char* bus_name, const char* dev_name, const char* netdev_prefix) { struct genlmsghdr genlhdr; int len, total_len, id, err, offset; uint16_t netdev_index; int sock = socket(AF_NETLINK, SOCK_RAW, NETLINK_GENERIC); if (sock == -1) exit(1); int rtsock = socket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE); if (rtsock == -1) exit(1); id = netlink_devlink_id_get(&nlmsg, sock); if (id == -1) goto error; memset(&genlhdr, 0, sizeof(genlhdr)); genlhdr.cmd = DEVLINK_CMD_PORT_GET; netlink_init(&nlmsg, id, NLM_F_DUMP, &genlhdr, sizeof(genlhdr)); netlink_attr(&nlmsg, DEVLINK_ATTR_BUS_NAME, bus_name, strlen(bus_name) + 1); netlink_attr(&nlmsg, DEVLINK_ATTR_DEV_NAME, dev_name, strlen(dev_name) + 1); err = netlink_send_ext(&nlmsg, sock, id, &total_len); if (err) { goto error; } offset = 0; netdev_index = 0; while ((len = netlink_next_msg(&nlmsg, offset, total_len)) != -1) { struct nlattr* attr = (struct nlattr*)(nlmsg.buf + offset + NLMSG_HDRLEN + NLMSG_ALIGN(sizeof(genlhdr))); for (; (char*)attr < nlmsg.buf + offset + len; attr = (struct nlattr*)((char*)attr + NLMSG_ALIGN(attr->nla_len))) { if (attr->nla_type == DEVLINK_ATTR_NETDEV_NAME) { char* port_name; char netdev_name[IFNAMSIZ]; port_name = (char*)(attr + 1); snprintf(netdev_name, sizeof(netdev_name), "%s%d", netdev_prefix, netdev_index); netlink_device_change(&nlmsg2, rtsock, port_name, true, 0, 0, 0, netdev_name); break; } } offset += len; netdev_index++; } error: close(rtsock); close(sock); } #define DEV_IPV4 "172.20.20.%d" #define DEV_IPV6 "fe80::%02x" #define DEV_MAC 0x00aaaaaaaaaa static void netdevsim_add(unsigned int addr, unsigned int port_count) { char buf[16]; sprintf(buf, "%u %u", addr, port_count); if (write_file("/sys/bus/netdevsim/new_device", buf)) { snprintf(buf, sizeof(buf), "netdevsim%d", addr); initialize_devlink_ports("netdevsim", buf, "netdevsim"); } } #define WG_GENL_NAME "wireguard" enum wg_cmd { WG_CMD_GET_DEVICE, WG_CMD_SET_DEVICE, }; enum wgdevice_attribute { WGDEVICE_A_UNSPEC, WGDEVICE_A_IFINDEX, WGDEVICE_A_IFNAME, WGDEVICE_A_PRIVATE_KEY, WGDEVICE_A_PUBLIC_KEY, WGDEVICE_A_FLAGS, WGDEVICE_A_LISTEN_PORT, WGDEVICE_A_FWMARK, WGDEVICE_A_PEERS, }; enum wgpeer_attribute { WGPEER_A_UNSPEC, WGPEER_A_PUBLIC_KEY, WGPEER_A_PRESHARED_KEY, WGPEER_A_FLAGS, WGPEER_A_ENDPOINT, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, WGPEER_A_LAST_HANDSHAKE_TIME, WGPEER_A_RX_BYTES, WGPEER_A_TX_BYTES, WGPEER_A_ALLOWEDIPS, WGPEER_A_PROTOCOL_VERSION, }; enum wgallowedip_attribute { WGALLOWEDIP_A_UNSPEC, WGALLOWEDIP_A_FAMILY, WGALLOWEDIP_A_IPADDR, WGALLOWEDIP_A_CIDR_MASK, }; static int netlink_wireguard_id_get(struct nlmsg* nlmsg, int sock) { struct genlmsghdr genlhdr; memset(&genlhdr, 0, sizeof(genlhdr)); genlhdr.cmd = CTRL_CMD_GETFAMILY; netlink_init(nlmsg, GENL_ID_CTRL, 0, &genlhdr, sizeof(genlhdr)); netlink_attr(nlmsg, CTRL_ATTR_FAMILY_NAME, WG_GENL_NAME, strlen(WG_GENL_NAME) + 1); int n = 0; int err = netlink_send_ext(nlmsg, sock, GENL_ID_CTRL, &n); if (err) { return -1; } uint16_t id = 0; struct nlattr* attr = (struct nlattr*)(nlmsg->buf + NLMSG_HDRLEN + NLMSG_ALIGN(sizeof(genlhdr))); for (; (char*)attr < nlmsg->buf + n; attr = (struct nlattr*)((char*)attr + NLMSG_ALIGN(attr->nla_len))) { if (attr->nla_type == CTRL_ATTR_FAMILY_ID) { id = *(uint16_t*)(attr + 1); break; } } if (!id) { return -1; } recv(sock, nlmsg->buf, sizeof(nlmsg->buf), 0); return id; } static void netlink_wireguard_setup(void) { const char ifname_a[] = "wg0"; const char ifname_b[] = "wg1"; const char ifname_c[] = "wg2"; const char private_a[] = "\xa0\x5c\xa8\x4f\x6c\x9c\x8e\x38\x53\xe2\xfd\x7a\x70\xae\x0f\xb2\x0f\xa1" "\x52\x60\x0c\xb0\x08\x45\x17\x4f\x08\x07\x6f\x8d\x78\x43"; const char private_b[] = "\xb0\x80\x73\xe8\xd4\x4e\x91\xe3\xda\x92\x2c\x22\x43\x82\x44\xbb\x88\x5c" "\x69\xe2\x69\xc8\xe9\xd8\x35\xb1\x14\x29\x3a\x4d\xdc\x6e"; const char private_c[] = "\xa0\xcb\x87\x9a\x47\xf5\xbc\x64\x4c\x0e\x69\x3f\xa6\xd0\x31\xc7\x4a\x15" "\x53\xb6\xe9\x01\xb9\xff\x2f\x51\x8c\x78\x04\x2f\xb5\x42"; const char public_a[] = "\x97\x5c\x9d\x81\xc9\x83\xc8\x20\x9e\xe7\x81\x25\x4b\x89\x9f\x8e\xd9\x25" "\xae\x9f\x09\x23\xc2\x3c\x62\xf5\x3c\x57\xcd\xbf\x69\x1c"; const char public_b[] = "\xd1\x73\x28\x99\xf6\x11\xcd\x89\x94\x03\x4d\x7f\x41\x3d\xc9\x57\x63\x0e" "\x54\x93\xc2\x85\xac\xa4\x00\x65\xcb\x63\x11\xbe\x69\x6b"; const char public_c[] = "\xf4\x4d\xa3\x67\xa8\x8e\xe6\x56\x4f\x02\x02\x11\x45\x67\x27\x08\x2f\x5c" "\xeb\xee\x8b\x1b\xf5\xeb\x73\x37\x34\x1b\x45\x9b\x39\x22"; const uint16_t listen_a = 20001; const uint16_t listen_b = 20002; const uint16_t listen_c = 20003; const uint16_t af_inet = AF_INET; const uint16_t af_inet6 = AF_INET6; const struct sockaddr_in endpoint_b_v4 = { .sin_family = AF_INET, .sin_port = htons(listen_b), .sin_addr = {htonl(INADDR_LOOPBACK)}}; const struct sockaddr_in endpoint_c_v4 = { .sin_family = AF_INET, .sin_port = htons(listen_c), .sin_addr = {htonl(INADDR_LOOPBACK)}}; struct sockaddr_in6 endpoint_a_v6 = {.sin6_family = AF_INET6, .sin6_port = htons(listen_a)}; endpoint_a_v6.sin6_addr = in6addr_loopback; struct sockaddr_in6 endpoint_c_v6 = {.sin6_family = AF_INET6, .sin6_port = htons(listen_c)}; endpoint_c_v6.sin6_addr = in6addr_loopback; const struct in_addr first_half_v4 = {0}; const struct in_addr second_half_v4 = {(uint32_t)htonl(128 << 24)}; const struct in6_addr first_half_v6 = {{{0}}}; const struct in6_addr second_half_v6 = {{{0x80}}}; const uint8_t half_cidr = 1; const uint16_t persistent_keepalives[] = {1, 3, 7, 9, 14, 19}; struct genlmsghdr genlhdr = {.cmd = WG_CMD_SET_DEVICE, .version = 1}; int sock; int id, err; sock = socket(AF_NETLINK, SOCK_RAW, NETLINK_GENERIC); if (sock == -1) { return; } id = netlink_wireguard_id_get(&nlmsg, sock); if (id == -1) goto error; netlink_init(&nlmsg, id, 0, &genlhdr, sizeof(genlhdr)); netlink_attr(&nlmsg, WGDEVICE_A_IFNAME, ifname_a, strlen(ifname_a) + 1); netlink_attr(&nlmsg, WGDEVICE_A_PRIVATE_KEY, private_a, 32); netlink_attr(&nlmsg, WGDEVICE_A_LISTEN_PORT, &listen_a, 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGDEVICE_A_PEERS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_b, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_b_v4, sizeof(endpoint_b_v4)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[0], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v4, sizeof(first_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v6, sizeof(first_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_c, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_c_v6, sizeof(endpoint_c_v6)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[1], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v4, sizeof(second_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v6, sizeof(second_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); err = netlink_send(&nlmsg, sock); if (err) { } netlink_init(&nlmsg, id, 0, &genlhdr, sizeof(genlhdr)); netlink_attr(&nlmsg, WGDEVICE_A_IFNAME, ifname_b, strlen(ifname_b) + 1); netlink_attr(&nlmsg, WGDEVICE_A_PRIVATE_KEY, private_b, 32); netlink_attr(&nlmsg, WGDEVICE_A_LISTEN_PORT, &listen_b, 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGDEVICE_A_PEERS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_a, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_a_v6, sizeof(endpoint_a_v6)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[2], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v4, sizeof(first_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v6, sizeof(first_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_c, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_c_v4, sizeof(endpoint_c_v4)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[3], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v4, sizeof(second_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v6, sizeof(second_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); err = netlink_send(&nlmsg, sock); if (err) { } netlink_init(&nlmsg, id, 0, &genlhdr, sizeof(genlhdr)); netlink_attr(&nlmsg, WGDEVICE_A_IFNAME, ifname_c, strlen(ifname_c) + 1); netlink_attr(&nlmsg, WGDEVICE_A_PRIVATE_KEY, private_c, 32); netlink_attr(&nlmsg, WGDEVICE_A_LISTEN_PORT, &listen_c, 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGDEVICE_A_PEERS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_a, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_a_v6, sizeof(endpoint_a_v6)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[4], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v4, sizeof(first_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &first_half_v6, sizeof(first_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGPEER_A_PUBLIC_KEY, public_b, 32); netlink_attr(&nlmsg, WGPEER_A_ENDPOINT, &endpoint_b_v4, sizeof(endpoint_b_v4)); netlink_attr(&nlmsg, WGPEER_A_PERSISTENT_KEEPALIVE_INTERVAL, &persistent_keepalives[5], 2); netlink_nest(&nlmsg, NLA_F_NESTED | WGPEER_A_ALLOWEDIPS); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v4, sizeof(second_half_v4)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_nest(&nlmsg, NLA_F_NESTED | 0); netlink_attr(&nlmsg, WGALLOWEDIP_A_FAMILY, &af_inet6, 2); netlink_attr(&nlmsg, WGALLOWEDIP_A_IPADDR, &second_half_v6, sizeof(second_half_v6)); netlink_attr(&nlmsg, WGALLOWEDIP_A_CIDR_MASK, &half_cidr, 1); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); netlink_done(&nlmsg); err = netlink_send(&nlmsg, sock); if (err) { } error: close(sock); } static void initialize_netdevices(void) { char netdevsim[16]; sprintf(netdevsim, "netdevsim%d", (int)procid); struct { const char* type; const char* dev; } devtypes[] = { {"ip6gretap", "ip6gretap0"}, {"bridge", "bridge0"}, {"vcan", "vcan0"}, {"bond", "bond0"}, {"team", "team0"}, {"dummy", "dummy0"}, {"nlmon", "nlmon0"}, {"caif", "caif0"}, {"batadv", "batadv0"}, {"vxcan", "vxcan1"}, {"netdevsim", netdevsim}, {"veth", 0}, {"xfrm", "xfrm0"}, {"wireguard", "wg0"}, {"wireguard", "wg1"}, {"wireguard", "wg2"}, }; const char* devmasters[] = {"bridge", "bond", "team", "batadv"}; struct { const char* name; int macsize; bool noipv6; } devices[] = { {"lo", ETH_ALEN}, {"sit0", 0}, {"bridge0", ETH_ALEN}, {"vcan0", 0, true}, {"tunl0", 0}, {"gre0", 0}, {"gretap0", ETH_ALEN}, {"ip_vti0", 0}, {"ip6_vti0", 0}, {"ip6tnl0", 0}, {"ip6gre0", 0}, {"ip6gretap0", ETH_ALEN}, {"erspan0", ETH_ALEN}, {"bond0", ETH_ALEN}, {"veth0", ETH_ALEN}, {"veth1", ETH_ALEN}, {"team0", ETH_ALEN}, {"veth0_to_bridge", ETH_ALEN}, {"veth1_to_bridge", ETH_ALEN}, {"veth0_to_bond", ETH_ALEN}, {"veth1_to_bond", ETH_ALEN}, {"veth0_to_team", ETH_ALEN}, {"veth1_to_team", ETH_ALEN}, {"veth0_to_hsr", ETH_ALEN}, {"veth1_to_hsr", ETH_ALEN}, {"hsr0", 0}, {"dummy0", ETH_ALEN}, {"nlmon0", 0}, {"vxcan0", 0, true}, {"vxcan1", 0, true}, {"caif0", ETH_ALEN}, {"batadv0", ETH_ALEN}, {netdevsim, ETH_ALEN}, {"xfrm0", ETH_ALEN}, {"veth0_virt_wifi", ETH_ALEN}, {"veth1_virt_wifi", ETH_ALEN}, {"virt_wifi0", ETH_ALEN}, {"veth0_vlan", ETH_ALEN}, {"veth1_vlan", ETH_ALEN}, {"vlan0", ETH_ALEN}, {"vlan1", ETH_ALEN}, {"macvlan0", ETH_ALEN}, {"macvlan1", ETH_ALEN}, {"ipvlan0", ETH_ALEN}, {"ipvlan1", ETH_ALEN}, {"veth0_macvtap", ETH_ALEN}, {"veth1_macvtap", ETH_ALEN}, {"macvtap0", ETH_ALEN}, {"macsec0", ETH_ALEN}, {"veth0_to_batadv", ETH_ALEN}, {"veth1_to_batadv", ETH_ALEN}, {"batadv_slave_0", ETH_ALEN}, {"batadv_slave_1", ETH_ALEN}, {"geneve0", ETH_ALEN}, {"geneve1", ETH_ALEN}, {"wg0", 0}, {"wg1", 0}, {"wg2", 0}, }; int sock = socket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE); if (sock == -1) exit(1); unsigned i; for (i = 0; i < sizeof(devtypes) / sizeof(devtypes[0]); i++) netlink_add_device(&nlmsg, sock, devtypes[i].type, devtypes[i].dev); for (i = 0; i < sizeof(devmasters) / (sizeof(devmasters[0])); i++) { char master[32], slave0[32], veth0[32], slave1[32], veth1[32]; sprintf(slave0, "%s_slave_0", devmasters[i]); sprintf(veth0, "veth0_to_%s", devmasters[i]); netlink_add_veth(&nlmsg, sock, slave0, veth0); sprintf(slave1, "%s_slave_1", devmasters[i]); sprintf(veth1, "veth1_to_%s", devmasters[i]); netlink_add_veth(&nlmsg, sock, slave1, veth1); sprintf(master, "%s0", devmasters[i]); netlink_device_change(&nlmsg, sock, slave0, false, master, 0, 0, NULL); netlink_device_change(&nlmsg, sock, slave1, false, master, 0, 0, NULL); } netlink_device_change(&nlmsg, sock, "bridge_slave_0", true, 0, 0, 0, NULL); netlink_device_change(&nlmsg, sock, "bridge_slave_1", true, 0, 0, 0, NULL); netlink_add_veth(&nlmsg, sock, "hsr_slave_0", "veth0_to_hsr"); netlink_add_veth(&nlmsg, sock, "hsr_slave_1", "veth1_to_hsr"); netlink_add_hsr(&nlmsg, sock, "hsr0", "hsr_slave_0", "hsr_slave_1"); netlink_device_change(&nlmsg, sock, "hsr_slave_0", true, 0, 0, 0, NULL); netlink_device_change(&nlmsg, sock, "hsr_slave_1", true, 0, 0, 0, NULL); netlink_add_veth(&nlmsg, sock, "veth0_virt_wifi", "veth1_virt_wifi"); netlink_add_linked(&nlmsg, sock, "virt_wifi", "virt_wifi0", "veth1_virt_wifi"); netlink_add_veth(&nlmsg, sock, "veth0_vlan", "veth1_vlan"); netlink_add_vlan(&nlmsg, sock, "vlan0", "veth0_vlan", 0, htons(ETH_P_8021Q)); netlink_add_vlan(&nlmsg, sock, "vlan1", "veth0_vlan", 1, htons(ETH_P_8021AD)); netlink_add_macvlan(&nlmsg, sock, "macvlan0", "veth1_vlan"); netlink_add_macvlan(&nlmsg, sock, "macvlan1", "veth1_vlan"); netlink_add_ipvlan(&nlmsg, sock, "ipvlan0", "veth0_vlan", IPVLAN_MODE_L2, 0); netlink_add_ipvlan(&nlmsg, sock, "ipvlan1", "veth0_vlan", IPVLAN_MODE_L3S, IPVLAN_F_VEPA); netlink_add_veth(&nlmsg, sock, "veth0_macvtap", "veth1_macvtap"); netlink_add_linked(&nlmsg, sock, "macvtap", "macvtap0", "veth0_macvtap"); netlink_add_linked(&nlmsg, sock, "macsec", "macsec0", "veth1_macvtap"); char addr[32]; sprintf(addr, DEV_IPV4, 14 + 10); struct in_addr geneve_addr4; if (inet_pton(AF_INET, addr, &geneve_addr4) <= 0) exit(1); struct in6_addr geneve_addr6; if (inet_pton(AF_INET6, "fc00::01", &geneve_addr6) <= 0) exit(1); netlink_add_geneve(&nlmsg, sock, "geneve0", 0, &geneve_addr4, 0); netlink_add_geneve(&nlmsg, sock, "geneve1", 1, 0, &geneve_addr6); netdevsim_add((int)procid, 4); netlink_wireguard_setup(); for (i = 0; i < sizeof(devices) / (sizeof(devices[0])); i++) { char addr[32]; sprintf(addr, DEV_IPV4, i + 10); netlink_add_addr4(&nlmsg, sock, devices[i].name, addr); if (!devices[i].noipv6) { sprintf(addr, DEV_IPV6, i + 10); netlink_add_addr6(&nlmsg, sock, devices[i].name, addr); } uint64_t macaddr = DEV_MAC + ((i + 10ull) << 40); netlink_device_change(&nlmsg, sock, devices[i].name, true, 0, &macaddr, devices[i].macsize, NULL); } close(sock); } static void initialize_netdevices_init(void) { int sock = socket(AF_NETLINK, SOCK_RAW, NETLINK_ROUTE); if (sock == -1) exit(1); struct { const char* type; int macsize; bool noipv6; bool noup; } devtypes[] = { {"nr", 7, true}, {"rose", 5, true, true}, }; unsigned i; for (i = 0; i < sizeof(devtypes) / sizeof(devtypes[0]); i++) { char dev[32], addr[32]; sprintf(dev, "%s%d", devtypes[i].type, (int)procid); sprintf(addr, "172.30.%d.%d", i, (int)procid + 1); netlink_add_addr4(&nlmsg, sock, dev, addr); if (!devtypes[i].noipv6) { sprintf(addr, "fe88::%02x:%02x", i, (int)procid + 1); netlink_add_addr6(&nlmsg, sock, dev, addr); } int macsize = devtypes[i].macsize; uint64_t macaddr = 0xbbbbbb + ((unsigned long long)i << (8 * (macsize - 2))) + (procid << (8 * (macsize - 1))); netlink_device_change(&nlmsg, sock, dev, !devtypes[i].noup, 0, &macaddr, macsize, NULL); } close(sock); } static int read_tun(char* data, int size) { if (tunfd < 0) return -1; int rv = read(tunfd, data, size); if (rv < 0) { if (errno == EAGAIN || errno == EBADFD) return -1; exit(1); } return rv; } static void flush_tun() { char data[1000]; while (read_tun(&data[0], sizeof(data)) != -1) { } } #define MAX_FDS 30 #define XT_TABLE_SIZE 1536 #define XT_MAX_ENTRIES 10 struct xt_counters { uint64_t pcnt, bcnt; }; struct ipt_getinfo { char name[32]; unsigned int valid_hooks; unsigned int hook_entry[5]; unsigned int underflow[5]; unsigned int num_entries; unsigned int size; }; struct ipt_get_entries { char name[32]; unsigned int size; void* entrytable[XT_TABLE_SIZE / sizeof(void*)]; }; struct ipt_replace { char name[32]; unsigned int valid_hooks; unsigned int num_entries; unsigned int size; unsigned int hook_entry[5]; unsigned int underflow[5]; unsigned int num_counters; struct xt_counters* counters; char entrytable[XT_TABLE_SIZE]; }; struct ipt_table_desc { const char* name; struct ipt_getinfo info; struct ipt_replace replace; }; static struct ipt_table_desc ipv4_tables[] = { {.name = "filter"}, {.name = "nat"}, {.name = "mangle"}, {.name = "raw"}, {.name = "security"}, }; static struct ipt_table_desc ipv6_tables[] = { {.name = "filter"}, {.name = "nat"}, {.name = "mangle"}, {.name = "raw"}, {.name = "security"}, }; #define IPT_BASE_CTL 64 #define IPT_SO_SET_REPLACE (IPT_BASE_CTL) #define IPT_SO_GET_INFO (IPT_BASE_CTL) #define IPT_SO_GET_ENTRIES (IPT_BASE_CTL + 1) struct arpt_getinfo { char name[32]; unsigned int valid_hooks; unsigned int hook_entry[3]; unsigned int underflow[3]; unsigned int num_entries; unsigned int size; }; struct arpt_get_entries { char name[32]; unsigned int size; void* entrytable[XT_TABLE_SIZE / sizeof(void*)]; }; struct arpt_replace { char name[32]; unsigned int valid_hooks; unsigned int num_entries; unsigned int size; unsigned int hook_entry[3]; unsigned int underflow[3]; unsigned int num_counters; struct xt_counters* counters; char entrytable[XT_TABLE_SIZE]; }; struct arpt_table_desc { const char* name; struct arpt_getinfo info; struct arpt_replace replace; }; static struct arpt_table_desc arpt_tables[] = { {.name = "filter"}, }; #define ARPT_BASE_CTL 96 #define ARPT_SO_SET_REPLACE (ARPT_BASE_CTL) #define ARPT_SO_GET_INFO (ARPT_BASE_CTL) #define ARPT_SO_GET_ENTRIES (ARPT_BASE_CTL + 1) static void checkpoint_iptables(struct ipt_table_desc* tables, int num_tables, int family, int level) { int fd = socket(family, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (int i = 0; i < num_tables; i++) { struct ipt_table_desc* table = &tables[i]; strcpy(table->info.name, table->name); strcpy(table->replace.name, table->name); socklen_t optlen = sizeof(table->info); if (getsockopt(fd, level, IPT_SO_GET_INFO, &table->info, &optlen)) { switch (errno) { case EPERM: case ENOENT: case ENOPROTOOPT: continue; } exit(1); } if (table->info.size > sizeof(table->replace.entrytable)) exit(1); if (table->info.num_entries > XT_MAX_ENTRIES) exit(1); struct ipt_get_entries entries; memset(&entries, 0, sizeof(entries)); strcpy(entries.name, table->name); entries.size = table->info.size; optlen = sizeof(entries) - sizeof(entries.entrytable) + table->info.size; if (getsockopt(fd, level, IPT_SO_GET_ENTRIES, &entries, &optlen)) exit(1); table->replace.valid_hooks = table->info.valid_hooks; table->replace.num_entries = table->info.num_entries; table->replace.size = table->info.size; memcpy(table->replace.hook_entry, table->info.hook_entry, sizeof(table->replace.hook_entry)); memcpy(table->replace.underflow, table->info.underflow, sizeof(table->replace.underflow)); memcpy(table->replace.entrytable, entries.entrytable, table->info.size); } close(fd); } static void reset_iptables(struct ipt_table_desc* tables, int num_tables, int family, int level) { int fd = socket(family, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (int i = 0; i < num_tables; i++) { struct ipt_table_desc* table = &tables[i]; if (table->info.valid_hooks == 0) continue; struct ipt_getinfo info; memset(&info, 0, sizeof(info)); strcpy(info.name, table->name); socklen_t optlen = sizeof(info); if (getsockopt(fd, level, IPT_SO_GET_INFO, &info, &optlen)) exit(1); if (memcmp(&table->info, &info, sizeof(table->info)) == 0) { struct ipt_get_entries entries; memset(&entries, 0, sizeof(entries)); strcpy(entries.name, table->name); entries.size = table->info.size; optlen = sizeof(entries) - sizeof(entries.entrytable) + entries.size; if (getsockopt(fd, level, IPT_SO_GET_ENTRIES, &entries, &optlen)) exit(1); if (memcmp(table->replace.entrytable, entries.entrytable, table->info.size) == 0) continue; } struct xt_counters counters[XT_MAX_ENTRIES]; table->replace.num_counters = info.num_entries; table->replace.counters = counters; optlen = sizeof(table->replace) - sizeof(table->replace.entrytable) + table->replace.size; if (setsockopt(fd, level, IPT_SO_SET_REPLACE, &table->replace, optlen)) exit(1); } close(fd); } static void checkpoint_arptables(void) { int fd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (unsigned i = 0; i < sizeof(arpt_tables) / sizeof(arpt_tables[0]); i++) { struct arpt_table_desc* table = &arpt_tables[i]; strcpy(table->info.name, table->name); strcpy(table->replace.name, table->name); socklen_t optlen = sizeof(table->info); if (getsockopt(fd, SOL_IP, ARPT_SO_GET_INFO, &table->info, &optlen)) { switch (errno) { case EPERM: case ENOENT: case ENOPROTOOPT: continue; } exit(1); } if (table->info.size > sizeof(table->replace.entrytable)) exit(1); if (table->info.num_entries > XT_MAX_ENTRIES) exit(1); struct arpt_get_entries entries; memset(&entries, 0, sizeof(entries)); strcpy(entries.name, table->name); entries.size = table->info.size; optlen = sizeof(entries) - sizeof(entries.entrytable) + table->info.size; if (getsockopt(fd, SOL_IP, ARPT_SO_GET_ENTRIES, &entries, &optlen)) exit(1); table->replace.valid_hooks = table->info.valid_hooks; table->replace.num_entries = table->info.num_entries; table->replace.size = table->info.size; memcpy(table->replace.hook_entry, table->info.hook_entry, sizeof(table->replace.hook_entry)); memcpy(table->replace.underflow, table->info.underflow, sizeof(table->replace.underflow)); memcpy(table->replace.entrytable, entries.entrytable, table->info.size); } close(fd); } static void reset_arptables() { int fd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (unsigned i = 0; i < sizeof(arpt_tables) / sizeof(arpt_tables[0]); i++) { struct arpt_table_desc* table = &arpt_tables[i]; if (table->info.valid_hooks == 0) continue; struct arpt_getinfo info; memset(&info, 0, sizeof(info)); strcpy(info.name, table->name); socklen_t optlen = sizeof(info); if (getsockopt(fd, SOL_IP, ARPT_SO_GET_INFO, &info, &optlen)) exit(1); if (memcmp(&table->info, &info, sizeof(table->info)) == 0) { struct arpt_get_entries entries; memset(&entries, 0, sizeof(entries)); strcpy(entries.name, table->name); entries.size = table->info.size; optlen = sizeof(entries) - sizeof(entries.entrytable) + entries.size; if (getsockopt(fd, SOL_IP, ARPT_SO_GET_ENTRIES, &entries, &optlen)) exit(1); if (memcmp(table->replace.entrytable, entries.entrytable, table->info.size) == 0) continue; } else { } struct xt_counters counters[XT_MAX_ENTRIES]; table->replace.num_counters = info.num_entries; table->replace.counters = counters; optlen = sizeof(table->replace) - sizeof(table->replace.entrytable) + table->replace.size; if (setsockopt(fd, SOL_IP, ARPT_SO_SET_REPLACE, &table->replace, optlen)) exit(1); } close(fd); } #define NF_BR_NUMHOOKS 6 #define EBT_TABLE_MAXNAMELEN 32 #define EBT_CHAIN_MAXNAMELEN 32 #define EBT_BASE_CTL 128 #define EBT_SO_SET_ENTRIES (EBT_BASE_CTL) #define EBT_SO_GET_INFO (EBT_BASE_CTL) #define EBT_SO_GET_ENTRIES (EBT_SO_GET_INFO + 1) #define EBT_SO_GET_INIT_INFO (EBT_SO_GET_ENTRIES + 1) #define EBT_SO_GET_INIT_ENTRIES (EBT_SO_GET_INIT_INFO + 1) struct ebt_replace { char name[EBT_TABLE_MAXNAMELEN]; unsigned int valid_hooks; unsigned int nentries; unsigned int entries_size; struct ebt_entries* hook_entry[NF_BR_NUMHOOKS]; unsigned int num_counters; struct ebt_counter* counters; char* entries; }; struct ebt_entries { unsigned int distinguisher; char name[EBT_CHAIN_MAXNAMELEN]; unsigned int counter_offset; int policy; unsigned int nentries; char data[0] __attribute__((aligned(__alignof__(struct ebt_replace)))); }; struct ebt_table_desc { const char* name; struct ebt_replace replace; char entrytable[XT_TABLE_SIZE]; }; static struct ebt_table_desc ebt_tables[] = { {.name = "filter"}, {.name = "nat"}, {.name = "broute"}, }; static void checkpoint_ebtables(void) { int fd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (size_t i = 0; i < sizeof(ebt_tables) / sizeof(ebt_tables[0]); i++) { struct ebt_table_desc* table = &ebt_tables[i]; strcpy(table->replace.name, table->name); socklen_t optlen = sizeof(table->replace); if (getsockopt(fd, SOL_IP, EBT_SO_GET_INIT_INFO, &table->replace, &optlen)) { switch (errno) { case EPERM: case ENOENT: case ENOPROTOOPT: continue; } exit(1); } if (table->replace.entries_size > sizeof(table->entrytable)) exit(1); table->replace.num_counters = 0; table->replace.entries = table->entrytable; optlen = sizeof(table->replace) + table->replace.entries_size; if (getsockopt(fd, SOL_IP, EBT_SO_GET_INIT_ENTRIES, &table->replace, &optlen)) exit(1); } close(fd); } static void reset_ebtables() { int fd = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP); if (fd == -1) { switch (errno) { case EAFNOSUPPORT: case ENOPROTOOPT: return; } exit(1); } for (unsigned i = 0; i < sizeof(ebt_tables) / sizeof(ebt_tables[0]); i++) { struct ebt_table_desc* table = &ebt_tables[i]; if (table->replace.valid_hooks == 0) continue; struct ebt_replace replace; memset(&replace, 0, sizeof(replace)); strcpy(replace.name, table->name); socklen_t optlen = sizeof(replace); if (getsockopt(fd, SOL_IP, EBT_SO_GET_INFO, &replace, &optlen)) exit(1); replace.num_counters = 0; table->replace.entries = 0; for (unsigned h = 0; h < NF_BR_NUMHOOKS; h++) table->replace.hook_entry[h] = 0; if (memcmp(&table->replace, &replace, sizeof(table->replace)) == 0) { char entrytable[XT_TABLE_SIZE]; memset(&entrytable, 0, sizeof(entrytable)); replace.entries = entrytable; optlen = sizeof(replace) + replace.entries_size; if (getsockopt(fd, SOL_IP, EBT_SO_GET_ENTRIES, &replace, &optlen)) exit(1); if (memcmp(table->entrytable, entrytable, replace.entries_size) == 0) continue; } for (unsigned j = 0, h = 0; h < NF_BR_NUMHOOKS; h++) { if (table->replace.valid_hooks & (1 << h)) { table->replace.hook_entry[h] = (struct ebt_entries*)table->entrytable + j; j++; } } table->replace.entries = table->entrytable; optlen = sizeof(table->replace) + table->replace.entries_size; if (setsockopt(fd, SOL_IP, EBT_SO_SET_ENTRIES, &table->replace, optlen)) exit(1); } close(fd); } static void checkpoint_net_namespace(void) { checkpoint_ebtables(); checkpoint_arptables(); checkpoint_iptables(ipv4_tables, sizeof(ipv4_tables) / sizeof(ipv4_tables[0]), AF_INET, SOL_IP); checkpoint_iptables(ipv6_tables, sizeof(ipv6_tables) / sizeof(ipv6_tables[0]), AF_INET6, SOL_IPV6); } static void reset_net_namespace(void) { reset_ebtables(); reset_arptables(); reset_iptables(ipv4_tables, sizeof(ipv4_tables) / sizeof(ipv4_tables[0]), AF_INET, SOL_IP); reset_iptables(ipv6_tables, sizeof(ipv6_tables) / sizeof(ipv6_tables[0]), AF_INET6, SOL_IPV6); } static void setup_cgroups() { if (mkdir("/syzcgroup", 0777)) { } if (mkdir("/syzcgroup/unified", 0777)) { } if (mount("none", "/syzcgroup/unified", "cgroup2", 0, NULL)) { } if (chmod("/syzcgroup/unified", 0777)) { } write_file("/syzcgroup/unified/cgroup.subtree_control", "+cpu +memory +io +pids +rdma"); if (mkdir("/syzcgroup/cpu", 0777)) { } if (mount("none", "/syzcgroup/cpu", "cgroup", 0, "cpuset,cpuacct,perf_event,hugetlb")) { } write_file("/syzcgroup/cpu/cgroup.clone_children", "1"); write_file("/syzcgroup/cpu/cpuset.memory_pressure_enabled", "1"); if (chmod("/syzcgroup/cpu", 0777)) { } if (mkdir("/syzcgroup/net", 0777)) { } if (mount("none", "/syzcgroup/net", "cgroup", 0, "net_cls,net_prio,devices,freezer")) { } if (chmod("/syzcgroup/net", 0777)) { } } static void setup_cgroups_loop() { int pid = getpid(); char file[128]; char cgroupdir[64]; snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/unified/syz%llu", procid); if (mkdir(cgroupdir, 0777)) { } snprintf(file, sizeof(file), "%s/pids.max", cgroupdir); write_file(file, "32"); snprintf(file, sizeof(file), "%s/memory.low", cgroupdir); write_file(file, "%d", 298 << 20); snprintf(file, sizeof(file), "%s/memory.high", cgroupdir); write_file(file, "%d", 299 << 20); snprintf(file, sizeof(file), "%s/memory.max", cgroupdir); write_file(file, "%d", 300 << 20); snprintf(file, sizeof(file), "%s/cgroup.procs", cgroupdir); write_file(file, "%d", pid); snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/cpu/syz%llu", procid); if (mkdir(cgroupdir, 0777)) { } snprintf(file, sizeof(file), "%s/cgroup.procs", cgroupdir); write_file(file, "%d", pid); snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/net/syz%llu", procid); if (mkdir(cgroupdir, 0777)) { } snprintf(file, sizeof(file), "%s/cgroup.procs", cgroupdir); write_file(file, "%d", pid); } static void setup_cgroups_test() { char cgroupdir[64]; snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/unified/syz%llu", procid); if (symlink(cgroupdir, "./cgroup")) { } snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/cpu/syz%llu", procid); if (symlink(cgroupdir, "./cgroup.cpu")) { } snprintf(cgroupdir, sizeof(cgroupdir), "/syzcgroup/net/syz%llu", procid); if (symlink(cgroupdir, "./cgroup.net")) { } } static void setup_common() { if (mount(0, "/sys/fs/fuse/connections", "fusectl", 0, 0)) { } setup_cgroups(); } static void loop(); static void sandbox_common() { prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0); setpgrp(); setsid(); struct rlimit rlim; rlim.rlim_cur = rlim.rlim_max = (200 << 20); setrlimit(RLIMIT_AS, &rlim); rlim.rlim_cur = rlim.rlim_max = 32 << 20; setrlimit(RLIMIT_MEMLOCK, &rlim); rlim.rlim_cur = rlim.rlim_max = 136 << 20; setrlimit(RLIMIT_FSIZE, &rlim); rlim.rlim_cur = rlim.rlim_max = 1 << 20; setrlimit(RLIMIT_STACK, &rlim); rlim.rlim_cur = rlim.rlim_max = 0; setrlimit(RLIMIT_CORE, &rlim); rlim.rlim_cur = rlim.rlim_max = 256; setrlimit(RLIMIT_NOFILE, &rlim); if (unshare(CLONE_NEWNS)) { } if (mount(NULL, "/", NULL, MS_REC | MS_PRIVATE, NULL)) { } if (unshare(CLONE_NEWIPC)) { } if (unshare(0x02000000)) { } if (unshare(CLONE_NEWUTS)) { } if (unshare(CLONE_SYSVSEM)) { } typedef struct { const char* name; const char* value; } sysctl_t; static const sysctl_t sysctls[] = { {"/proc/sys/kernel/shmmax", "16777216"}, {"/proc/sys/kernel/shmall", "536870912"}, {"/proc/sys/kernel/shmmni", "1024"}, {"/proc/sys/kernel/msgmax", "8192"}, {"/proc/sys/kernel/msgmni", "1024"}, {"/proc/sys/kernel/msgmnb", "1024"}, {"/proc/sys/kernel/sem", "1024 1048576 500 1024"}, }; unsigned i; for (i = 0; i < sizeof(sysctls) / sizeof(sysctls[0]); i++) write_file(sysctls[i].name, sysctls[i].value); } static int wait_for_loop(int pid) { if (pid < 0) exit(1); int status = 0; while (waitpid(-1, &status, __WALL) != pid) { } return WEXITSTATUS(status); } static void drop_caps(void) { struct __user_cap_header_struct cap_hdr = {}; struct __user_cap_data_struct cap_data[2] = {}; cap_hdr.version = _LINUX_CAPABILITY_VERSION_3; cap_hdr.pid = getpid(); if (syscall(SYS_capget, &cap_hdr, &cap_data)) exit(1); const int drop = (1 << CAP_SYS_PTRACE) | (1 << CAP_SYS_NICE); cap_data[0].effective &= ~drop; cap_data[0].permitted &= ~drop; cap_data[0].inheritable &= ~drop; if (syscall(SYS_capset, &cap_hdr, &cap_data)) exit(1); } static int do_sandbox_none(void) { if (unshare(CLONE_NEWPID)) { } int pid = fork(); if (pid != 0) return wait_for_loop(pid); setup_common(); sandbox_common(); drop_caps(); initialize_netdevices_init(); if (unshare(CLONE_NEWNET)) { } initialize_tun(); initialize_netdevices(); loop(); exit(1); } #define FS_IOC_SETFLAGS _IOW('f', 2, long) static void remove_dir(const char* dir) { int iter = 0; DIR* dp = 0; retry: while (umount2(dir, MNT_DETACH) == 0) { } dp = opendir(dir); if (dp == NULL) { if (errno == EMFILE) { exit(1); } exit(1); } struct dirent* ep = 0; while ((ep = readdir(dp))) { if (strcmp(ep->d_name, ".") == 0 || strcmp(ep->d_name, "..") == 0) continue; char filename[FILENAME_MAX]; snprintf(filename, sizeof(filename), "%s/%s", dir, ep->d_name); while (umount2(filename, MNT_DETACH) == 0) { } struct stat st; if (lstat(filename, &st)) exit(1); if (S_ISDIR(st.st_mode)) { remove_dir(filename); continue; } int i; for (i = 0;; i++) { if (unlink(filename) == 0) break; if (errno == EPERM) { int fd = open(filename, O_RDONLY); if (fd != -1) { long flags = 0; if (ioctl(fd, FS_IOC_SETFLAGS, &flags) == 0) { } close(fd); continue; } } if (errno == EROFS) { break; } if (errno != EBUSY || i > 100) exit(1); if (umount2(filename, MNT_DETACH)) exit(1); } } closedir(dp); for (int i = 0;; i++) { if (rmdir(dir) == 0) break; if (i < 100) { if (errno == EPERM) { int fd = open(dir, O_RDONLY); if (fd != -1) { long flags = 0; if (ioctl(fd, FS_IOC_SETFLAGS, &flags) == 0) { } close(fd); continue; } } if (errno == EROFS) { break; } if (errno == EBUSY) { if (umount2(dir, MNT_DETACH)) exit(1); continue; } if (errno == ENOTEMPTY) { if (iter < 100) { iter++; goto retry; } } } exit(1); } } static void kill_and_wait(int pid, int* status) { kill(-pid, SIGKILL); kill(pid, SIGKILL); for (int i = 0; i < 100; i++) { if (waitpid(-1, status, WNOHANG | __WALL) == pid) return; usleep(1000); } DIR* dir = opendir("/sys/fs/fuse/connections"); if (dir) { for (;;) { struct dirent* ent = readdir(dir); if (!ent) break; if (strcmp(ent->d_name, ".") == 0 || strcmp(ent->d_name, "..") == 0) continue; char abort[300]; snprintf(abort, sizeof(abort), "/sys/fs/fuse/connections/%s/abort", ent->d_name); int fd = open(abort, O_WRONLY); if (fd == -1) { continue; } if (write(fd, abort, 1) < 0) { } close(fd); } closedir(dir); } else { } while (waitpid(-1, status, __WALL) != pid) { } } static void setup_loop() { setup_cgroups_loop(); checkpoint_net_namespace(); } static void reset_loop() { reset_net_namespace(); } static void setup_test() { prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0); setpgrp(); setup_cgroups_test(); write_file("/proc/self/oom_score_adj", "1000"); flush_tun(); } static void close_fds() { for (int fd = 3; fd < MAX_FDS; fd++) close(fd); } static void setup_binfmt_misc() { if (mount(0, "/proc/sys/fs/binfmt_misc", "binfmt_misc", 0, 0)) { } write_file("/proc/sys/fs/binfmt_misc/register", ":syz0:M:0:\x01::./file0:"); write_file("/proc/sys/fs/binfmt_misc/register", ":syz1:M:1:\x02::./file0:POC"); } struct thread_t { int created, call; event_t ready, done; }; static struct thread_t threads[16]; static void execute_call(int call); static int running; static void* thr(void* arg) { struct thread_t* th = (struct thread_t*)arg; for (;;) { event_wait(&th->ready); event_reset(&th->ready); execute_call(th->call); __atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED); event_set(&th->done); } return 0; } static void execute_one(void) { int i, call, thread; int collide = 0; again: for (call = 0; call < 8; call++) { for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) { struct thread_t* th = &threads[thread]; if (!th->created) { th->created = 1; event_init(&th->ready); event_init(&th->done); event_set(&th->done); thread_start(thr, th); } if (!event_isset(&th->done)) continue; event_reset(&th->done); th->call = call; __atomic_fetch_add(&running, 1, __ATOMIC_RELAXED); event_set(&th->ready); if (collide && (call % 2) == 0) break; event_timedwait(&th->done, 45); break; } } for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++) sleep_ms(1); close_fds(); if (!collide) { collide = 1; goto again; } } static void execute_one(void); #define WAIT_FLAGS __WALL static void loop(void) { setup_loop(); int iter = 0; for (;; iter++) { char cwdbuf[32]; sprintf(cwdbuf, "./%d", iter); if (mkdir(cwdbuf, 0777)) exit(1); reset_loop(); int pid = fork(); if (pid < 0) exit(1); if (pid == 0) { if (chdir(cwdbuf)) exit(1); setup_test(); execute_one(); exit(0); } int status = 0; uint64_t start = current_time_ms(); for (;;) { if (waitpid(-1, &status, WNOHANG | WAIT_FLAGS) == pid) break; sleep_ms(1); if (current_time_ms() - start < 5 * 1000) continue; kill_and_wait(pid, &status); break; } remove_dir(cwdbuf); } } #ifndef __NR_bpf #define __NR_bpf 321 #endif #ifndef __NR_io_uring_setup #define __NR_io_uring_setup 425 #endif uint64_t r[3] = {0xffffffffffffffff, 0xffffffffffffffff, 0xffffffffffffffff}; void execute_call(int call) { intptr_t res = 0; switch (call) { case 0: res = syscall(__NR_pipe2, 0x20000040ul, 0ul); if (res != -1) NONFAILING(r[0] = *(uint32_t*)0x20000040); break; case 1: syscall(__NR_bpf, 6ul, 0ul, 0ul); break; case 2: res = syscall(__NR_epoll_create1, 0ul); if (res != -1) r[1] = res; break; case 3: res = syscall(__NR_epoll_create, 8); if (res != -1) r[2] = res; break; case 4: syscall(__NR_epoll_ctl, r[2], 1ul, r[0], 0ul); break; case 5: syscall(__NR_io_uring_setup, 0x2cb5, 0ul); break; case 6: NONFAILING(*(uint32_t*)0x20000000 = 0); NONFAILING(*(uint64_t*)0x20000004 = 0); syscall(__NR_epoll_ctl, r[1], 1ul, r[0], 0x20000000ul); break; case 7: NONFAILING(*(uint32_t*)0x20000180 = 0); NONFAILING(*(uint64_t*)0x20000184 = 0); syscall(__NR_epoll_ctl, r[2], 1ul, r[1], 0x20000180ul); break; } } int main(void) { syscall(__NR_mmap, 0x1ffff000ul, 0x1000ul, 0ul, 0x32ul, -1, 0ul); syscall(__NR_mmap, 0x20000000ul, 0x1000000ul, 7ul, 0x32ul, -1, 0ul); syscall(__NR_mmap, 0x21000000ul, 0x1000ul, 0ul, 0x32ul, -1, 0ul); setup_binfmt_misc(); install_segv_handler(); use_temporary_dir(); do_sandbox_none(); return 0; }
the_stack_data/151705907.c
#include <stdio.h> void test1() { printf("test1: target called - failure\n"); } void test2_internal() { printf("test2: target called - failure\n"); } void test2() { test2_internal(); } void test3_internal() { printf("test2: target called - failure\n"); } void test3() { test3_internal(); }
the_stack_data/48302.c
long z[7992],W,H,*t=z,j,k,*T=z,n,b; #include<X11/Xlib.h> Window*E,D,s,w[999],*e=w; Display*d; Pixmap p; m(w,h,x,y,u,v){ #define C XCreateSimpleWindow(d, XSetWindowBackgroundPixmap(d,s=C*e=C #define l(n)t[n]=T[n]+ D,l(0)x,l(1)y,t[2]=w,t[3]=h,1,b,0),l(6)-x,l(7)-y,W,H,0,0,0),p); l(4)u; l(5)v; #define M XMapRaised(d, M s); M*e++); t+=8; } main(c,g)char**g; { XSetWindowAttributes a; XGCValues v; n=DefaultScreen(d=XOpenDisplay(0)); p=XCreatePixmap(d,D=RootWindow(d,n),W=DisplayWidth(d,n),H=DisplayHeight(d,n),DefaultDepth(d,n)); v.subwindow_mode=IncludeInferiors; XCopyArea(d,D,p,XCreateGC(d,D,GCSubwindowMode,&v),0,0,W,H,0,0); a.override_redirect=True; XChangeWindowAttributes(d,D=C D,0,0,W,H,0,0,b=BlackPixel(d,n)),CWOverrideRedirect,&a); M D); m(W,H,0,0,3,3); for(c=c^1?atoi(g[1]):9; ; )for(T=z,n=e-(E=w); n--; T+=8,++E){ XMoveWindow(d,*E,*T+=T[4]*c,T[1]+=T[5]*c); j=0; #define F(n,o,s)o+T[n-4]s-0&&++j&&T[n]s!1&&(T[n]=0-T[n])|| if((F(4,0,<)F(4,T[2]-W,>)F(5,0,<)F(5,T[3]-H,>)1)&&j&&(j=T[2]/2)&&(k=T[3]/2)&&e-w<997&&rand()%32768<=T[2]*T[3]*(T[4]*T[4]+T[5]*T[5])/999){ m(T[2]-j,T[3]-k,j,k,2,2); m(j,T[3]-k,0,k,-2,-2); m(T[2]-j,k,j,0,2,-2); T[7]-=2; XResizeWindow(d,*E,T[2]=j,T[3]=k); T[6]-=2; } } }
the_stack_data/22013042.c
/** ****************************************************************************** * @file stm32l1xx_ll_exti.c * @author MCD Application Team * @brief EXTI LL module driver. ****************************************************************************** * @attention * * <h2><center>&copy; Copyright (c) 2017 STMicroelectronics. * All rights reserved.</center></h2> * * This software component is licensed by ST under BSD 3-Clause license, * the "License"; You may not use this file except in compliance with the * License. You may obtain a copy of the License at: * opensource.org/licenses/BSD-3-Clause * ****************************************************************************** */ #if defined(USE_FULL_LL_DRIVER) /* Includes ------------------------------------------------------------------*/ #include "stm32l1xx_ll_exti.h" #ifdef USE_FULL_ASSERT #include "stm32_assert.h" #else #define assert_param(expr) ((void)0U) #endif /** @addtogroup STM32L1xx_LL_Driver * @{ */ #if defined (EXTI) /** @defgroup EXTI_LL EXTI * @{ */ /* Private types -------------------------------------------------------------*/ /* Private variables ---------------------------------------------------------*/ /* Private constants ---------------------------------------------------------*/ /* Private macros ------------------------------------------------------------*/ /** @addtogroup EXTI_LL_Private_Macros * @{ */ #define IS_LL_EXTI_LINE_0_31(__VALUE__) (((__VALUE__) & ~LL_EXTI_LINE_ALL_0_31) == 0x00000000U) #define IS_LL_EXTI_MODE(__VALUE__) (((__VALUE__) == LL_EXTI_MODE_IT) \ || ((__VALUE__) == LL_EXTI_MODE_EVENT) \ || ((__VALUE__) == LL_EXTI_MODE_IT_EVENT)) #define IS_LL_EXTI_TRIGGER(__VALUE__) (((__VALUE__) == LL_EXTI_TRIGGER_NONE) \ || ((__VALUE__) == LL_EXTI_TRIGGER_RISING) \ || ((__VALUE__) == LL_EXTI_TRIGGER_FALLING) \ || ((__VALUE__) == LL_EXTI_TRIGGER_RISING_FALLING)) /** * @} */ /* Private function prototypes -----------------------------------------------*/ /* Exported functions --------------------------------------------------------*/ /** @addtogroup EXTI_LL_Exported_Functions * @{ */ /** @addtogroup EXTI_LL_EF_Init * @{ */ /** * @brief De-initialize the EXTI registers to their default reset values. * @retval An ErrorStatus enumeration value: * - SUCCESS: EXTI registers are de-initialized * - ERROR: not applicable */ uint32_t LL_EXTI_DeInit(void) { /* Interrupt mask register set to default reset values */ LL_EXTI_WriteReg(IMR, 0x00000000U); /* Event mask register set to default reset values */ LL_EXTI_WriteReg(EMR, 0x00000000U); /* Rising Trigger selection register set to default reset values */ LL_EXTI_WriteReg(RTSR, 0x00000000U); /* Falling Trigger selection register set to default reset values */ LL_EXTI_WriteReg(FTSR, 0x00000000U); /* Software interrupt event register set to default reset values */ LL_EXTI_WriteReg(SWIER, 0x00000000U); /* Pending register clear */ LL_EXTI_WriteReg(PR, 0x00FFFFFFU); return SUCCESS; } /** * @brief Initialize the EXTI registers according to the specified parameters in EXTI_InitStruct. * @param EXTI_InitStruct pointer to a @ref LL_EXTI_InitTypeDef structure. * @retval An ErrorStatus enumeration value: * - SUCCESS: EXTI registers are initialized * - ERROR: not applicable */ uint32_t LL_EXTI_Init(LL_EXTI_InitTypeDef *EXTI_InitStruct) { ErrorStatus status = SUCCESS; /* Check the parameters */ assert_param(IS_LL_EXTI_LINE_0_31(EXTI_InitStruct->Line_0_31)); assert_param(IS_FUNCTIONAL_STATE(EXTI_InitStruct->LineCommand)); assert_param(IS_LL_EXTI_MODE(EXTI_InitStruct->Mode)); /* ENABLE LineCommand */ if (EXTI_InitStruct->LineCommand != DISABLE) { assert_param(IS_LL_EXTI_TRIGGER(EXTI_InitStruct->Trigger)); /* Configure EXTI Lines in range from 0 to 31 */ if (EXTI_InitStruct->Line_0_31 != LL_EXTI_LINE_NONE) { switch (EXTI_InitStruct->Mode) { case LL_EXTI_MODE_IT: /* First Disable Event on provided Lines */ LL_EXTI_DisableEvent_0_31(EXTI_InitStruct->Line_0_31); /* Then Enable IT on provided Lines */ LL_EXTI_EnableIT_0_31(EXTI_InitStruct->Line_0_31); break; case LL_EXTI_MODE_EVENT: /* First Disable IT on provided Lines */ LL_EXTI_DisableIT_0_31(EXTI_InitStruct->Line_0_31); /* Then Enable Event on provided Lines */ LL_EXTI_EnableEvent_0_31(EXTI_InitStruct->Line_0_31); break; case LL_EXTI_MODE_IT_EVENT: /* Directly Enable IT & Event on provided Lines */ LL_EXTI_EnableIT_0_31(EXTI_InitStruct->Line_0_31); LL_EXTI_EnableEvent_0_31(EXTI_InitStruct->Line_0_31); break; default: status = ERROR; break; } if (EXTI_InitStruct->Trigger != LL_EXTI_TRIGGER_NONE) { switch (EXTI_InitStruct->Trigger) { case LL_EXTI_TRIGGER_RISING: /* First Disable Falling Trigger on provided Lines */ LL_EXTI_DisableFallingTrig_0_31(EXTI_InitStruct->Line_0_31); /* Then Enable Rising Trigger on provided Lines */ LL_EXTI_EnableRisingTrig_0_31(EXTI_InitStruct->Line_0_31); break; case LL_EXTI_TRIGGER_FALLING: /* First Disable Rising Trigger on provided Lines */ LL_EXTI_DisableRisingTrig_0_31(EXTI_InitStruct->Line_0_31); /* Then Enable Falling Trigger on provided Lines */ LL_EXTI_EnableFallingTrig_0_31(EXTI_InitStruct->Line_0_31); break; case LL_EXTI_TRIGGER_RISING_FALLING: LL_EXTI_EnableRisingTrig_0_31(EXTI_InitStruct->Line_0_31); LL_EXTI_EnableFallingTrig_0_31(EXTI_InitStruct->Line_0_31); break; default: status = ERROR; break; } } } } /* DISABLE LineCommand */ else { /* De-configure EXTI Lines in range from 0 to 31 */ LL_EXTI_DisableIT_0_31(EXTI_InitStruct->Line_0_31); LL_EXTI_DisableEvent_0_31(EXTI_InitStruct->Line_0_31); } return status; } /** * @brief Set each @ref LL_EXTI_InitTypeDef field to default value. * @param EXTI_InitStruct Pointer to a @ref LL_EXTI_InitTypeDef structure. * @retval None */ void LL_EXTI_StructInit(LL_EXTI_InitTypeDef *EXTI_InitStruct) { EXTI_InitStruct->Line_0_31 = LL_EXTI_LINE_NONE; EXTI_InitStruct->LineCommand = DISABLE; EXTI_InitStruct->Mode = LL_EXTI_MODE_IT; EXTI_InitStruct->Trigger = LL_EXTI_TRIGGER_FALLING; } /** * @} */ /** * @} */ /** * @} */ #endif /* defined (EXTI) */ /** * @} */ #endif /* USE_FULL_LL_DRIVER */ /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
the_stack_data/148576826.c
/* readperm(): Read the Permissions file, looking for the entry that matches * our system. Continue reading and concatenating until we * hit EOF or the next MACHINE line. */ #include <stdio.h> #include <string.h> #include <ctype.h> #define MAX 175 #define PERMISSIONS "/usr/lib/uucp/Permissions" /* fields needed for our sys file entry: */ extern char request[]; /* REQUEST files from Permissions */ extern char transfer[]; /* SEND files from Permissions */ extern char readpath[]; /* READ from Permissions */ extern char no_readpath[]; /* NOREAD from Permissions */ extern char writepath[]; /* WRITE from Permissions */ extern char no_writepath[]; /* NOWRITE from Permissions */ extern char commands[]; /* COMMANDS from Permissions */ extern char myname[]; /* MYNAME from Permissions */ extern char parseline[]; /* this will be our concatenated Permissions */ extern int getrest(); /* complete concatenating Permissions string */ extern int parseperm(); /* parse a field out of Permissions string */ extern int cvnowritwe(); /* convert NOREAD and NOWRITE to useable format */ readperm(sys) char *sys; { FILE *infp; char rdline[MAX]; /* line read from Permissions */ char chksys[15]; /* used to look for MACHINE= */ char chkmch[8]; /* holds MACHINE */ char *endname; /* Points to end of parsed name */ if( (infp = fopen(PERMISSIONS,"r")) == NULL){ printf("Error opening %s!\n",PERMISSIONS); exit(1); } /* initialize our stuff */ strcpy(parseline,""); strcpy(request,""); strcpy(transfer,""); strcpy(readpath,""); strcpy(no_readpath,""); strcpy(writepath,""); strcpy(no_writepath,""); strcpy(commands,""); strcpy(myname,""); /* Read Permissions one line at a time until we find a * line that has MACHINE="SYSTEM". */ strcpy(chkmch,"MACHINE="); sprintf(chksys,"%s%s",chkmch,sys); while(fgets(rdline,MAX,infp)!= NULL){ if((endname = strstr(rdline, chksys)) != NULL && (isspace(endname[strlen(chksys)]) || endname == '\0') ){ /* matched MACHINE=sys */ strcpy(parseline, rdline); getrest(infp); /* get rest of Permissions entrry */ break; } } fclose(infp); if(parseline[0] == '\0'){ /* no line found */ printf("No Permissions entry for system %s found!\n",sys); printf("Default settings will be assigned to this site.\n"); return; } /* we will now call parseperm(), giving it a pointer to the Permissions * line, pointer to the Permissions field to find and pointer to * sys field to fill. We pray that NOREAD and NOWRITE follow * READ= and WRITE=, or we will not correctly parse this entry. */ parseperm(parseline, "MYNAME",myname); parseperm(parseline, "COMMANDS", commands); parseperm(parseline, "READ",readpath); parseperm(parseline, "NOREAD",no_readpath); parseperm(parseline, "WRITE",writepath); parseperm(parseline, "NOWRITE",no_writepath); parseperm(parseline, "REQUEST",request); parseperm(parseline, "SENDFILES",transfer); if(no_readpath[0] != '\0') cvnowrite(no_readpath); if(no_writepath[0] != '\0') cvnowrite(no_writepath); #ifdef DEBUG printf("myname is {%s} ",myname); printf("commands are {%s}\n",commands); printf("read paths are {%s} {%s}\n",readpath, no_readpath); printf("write paths are {%s} {%s}\n",writepath, no_writepath); printf("transfer {%s} request {%s}\n",transfer, request); #endif } /* getrest(): get the rest of the Permissions entry for the current * system. We will stop concatenating when we find the * next MACHINE line. */ getrest(infp) FILE *infp; { char rdline[MAX]; while((fgets(rdline, MAX, infp))!= NULL){ if(strstr(rdline,"MACHINE") == NULL){ strcat(parseline, rdline); }else{ return; } } } /* parseperm(): given a Permissions line, field to look for and field * to fill, find the field in the line and fill it for sys */ parseperm(line, srchname, fillname) char *line; /* master permissions entry */ char *srchname; /* Permissions field we are looking for */ char *fillname; /* sys field to fill with Permissions data */ { char *fldptr; /* point to field we will fill. */ char *lineptr; /* point to master Permissions line */ /* set pointer to field to fill for sys file */ fldptr = fillname; *fldptr = '\0'; if((lineptr = strstr(line,srchname)) == NULL){ #ifdef DEBUG printf("No %s entry found.\n", srchname); #endif /* DEBUG */ return; }else{ /* Check to make sure it's not a NOxxxxx variation */ if(!isspace(*(lineptr - 1)) && srchname[0] != 'N') { if((lineptr = strstr(lineptr + strlen(srchname) , srchname)) == NULL) return; } lineptr += strlen(srchname); while(isspace(*lineptr)) lineptr++; if(*lineptr == '=') lineptr++; while(isspace(*lineptr)) lineptr++; while(!isspace(*lineptr) && *lineptr != EOF){ if(*lineptr == ':'){ /* convert colon to space */ *lineptr = ' '; } *fldptr++ = *lineptr++; } *fldptr = '\0'; } return; } /* cvnowrite(): convert the NOWRITE and NOREAD strings to something * useable in the sys file. In this instance, we are * going to walk down the string and convert SPACES * to SPACE! ( !) */ cvnowrite(line) char *line; { char *ptrline; char *ptrnew; char newline[MAX]; ptrline = line; ptrnew = newline; *ptrnew++='!'; /* set up our string to begin with '!' */ while(*ptrline != '\0'){ if(*ptrline == ' '){ *ptrnew++ = ' '; *ptrnew++ = '!'; *ptrline++; }else{ *ptrnew++ = *ptrline++; } } *ptrnew = '\0'; strcpy(line, newline); /* copy new line over old one */ }
the_stack_data/20940.c
/* This testcase is part of GDB, the GNU debugger. Copyright 2012-2021 Free Software Foundation, Inc. This program 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 3 of the License, or (at your option) any later version. This program 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 program. If not, see <http://www.gnu.org/licenses/>. */ #include <signal.h> static int debugdata_function (void) { return raise (SIGSEGV) + 1; } int main (void) { return debugdata_function () + 1; }
the_stack_data/11076287.c
/* @author: Samuel G [email protected] Modification Log: Date Author Modification ----------------------------------------------------------------- 12-Nov-2018 Samuel G Created the FILE 19-Mar-2019 Samuel G Adapted for file abstraction layer ==================================================================*/ #include <stdio.h> #include <stdlib.h> #include <linux/i2c-dev.h> #include <sys/ioctl.h> #include <fcntl.h> #include <unistd.h> //Register and other configuration values: #define ADS1015_ADDRESS (char)0x49 #define ADS1015_POINTER_CONFIG (char)0x01 #define ADS1015_POINTER_CONVERSION (char)0x00 #define ADS1015_CONFIG_OS_CONTINUOUS (char)0x00 #define ADS1015_CONFIG_CHANNEL_0 (char)0x40 #define ADS1015_CONFIG_CHANNEL_1 (char)0x50 #define ADS1015_CONFIG_CHANNEL_2 (char)0x60 #define ADS1015_CONFIG_CHANNEL_3 (char)0x70 #define ADS1015_CONFIG_GAIN_2_OVER_3 (char)0x00 #define ADS1015_CONFIG_GAIN_1 (char)0x02 #define ADS1015_CONFIG_GAIN_2 (char)0x04 #define ADS1015_CONFIG_GAIN_4 (char)0x06 #define ADS1015_CONFIG_GAIN_8 (char)0x08 #define ADS1015_CONFIG_GAIN_16 (char)0x0A #define ADS1015_CONFIG_MODE_CONTINUOUS (char)0x00 #define ADS1015_CONFIG_DR_1600 (char)0x80 #define ADS1015_CONFIG_COMP_PARAM (char)0x03 int ADS1015_open (int channel, float gain) { char *bus = "/dev/i2c-1"; int fd = open(bus, O_RDWR); if(fd < 0) { printf("Adafruit_ADS1015: Failed to open bus"); return -1; } ioctl(fd, I2C_SLAVE, ADS1015_ADDRESS); char config[3]; config[0] = ADS1015_POINTER_CONFIG; config[1] = ADS1015_CONFIG_OS_CONTINUOUS; switch(channel) { case 0: config[1] = config[1] | ADS1015_CONFIG_CHANNEL_0; break; case 1: config[1] = config[1] | ADS1015_CONFIG_CHANNEL_1; break; case 2: config[1] = config[1] | ADS1015_CONFIG_CHANNEL_2; break; case 3: config[1] = config[1] | ADS1015_CONFIG_CHANNEL_3; break; default: printf("Adafruit_ADS1015: Invalid channel number"); return -1; } if (gain == 2.0f/3.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_2_OVER_3; else if (gain == 1.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_1; else if (gain == 2.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_2; else if (gain == 4.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_4; else if (gain == 8.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_8; else if (gain == 16.0f) config[1] = config[1] | ADS1015_CONFIG_GAIN_16; else { printf("Adafruit_ADS1015: Invalid gain"); return -1; } config[2] = ADS1015_CONFIG_MODE_CONTINUOUS | ADS1015_CONFIG_COMP_PARAM | ADS1015_CONFIG_DR_1600; write(fd, config, 3); return fd; } int read_adc(int fd, int *data) { char buf[2] = {0}; if(read(fd, buf, 2) != 2) { printf("Adafruit_ADS1015: Failed to read data"); return -1; } *data = ((int)buf[0])<<4 | ((int)buf[1])>>4; if ((*data & 0x800) != 0) *data = (*data || 0x7FF); return 0; }
the_stack_data/199677.c
#include<stdio.h> int fib(int n[100] ,int *call); int main(void){ int X[100],N,*call,ncont,resultado,i; call = &ncont; *call = 1; scanf("%d", &N); for(i=0;i<N;i++) { scanf("%d", &X[i]); resultado = fib(X, call); printf("fib(%d) = %d calls = %d\n",X, ncont, resultado); *call = 1; } return 0; } int fib(int n[100], int *call){ if (n<3){ *call +=1; return 1; } else *call+=2; return fib(n-1,call) + fib(n-2,call); }
the_stack_data/111973.c
int problem1(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_2(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_2(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_3(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_3(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_4(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_4(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_5(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_5(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_6(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_6(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_7(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_7(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_8(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_8(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_9(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_9(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_10(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_10(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_11(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_11(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_12(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_12(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_13(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_13(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_14(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_14(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_15(void) { int t = 0; int sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_15(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; } int problem1_16(void) { int t = 0; float sum = 0; while (t) { t = t - 1; int p = 0; int sum = 0; int N = 1000; p = (N - 1) / 3; sum = ((3 * p * (p + 1)) / 2); p = (N - 1) / 5; sum = sum + ((5 * p * (p + 1)) / 2); p = (N - 1) / 15; sum = sum - ((15 * p * (p + 1)) / 2); } return sum; } int problem2_16(void) { int n = 0; int sum = 0; int i = 1; int j = 2; int temp = 0; while (j <= n) { if (j == 0) { sum = j + 1; } temp = i; i = j; j = temp + i; } return sum; }
the_stack_data/70508.c
#include <stdio.h> int main(int argc, char *argv[] ) { fprintf(stdout, "Hello world!\n"); return 0; }
the_stack_data/103265917.c
extern void abort(void); void reach_error(){} void __VERIFIER_assert(int cond) { if (!(cond)) { ERROR: {reach_error();abort();} } return; } int __VERIFIER_nondet_int(); int main() { unsigned int SIZE=1; unsigned int j,k; int array[SIZE], menor; menor = __VERIFIER_nondet_int(); for(j=0;j<SIZE;j++) { array[j] = __VERIFIER_nondet_int(); if(array[j]<=menor) menor = array[j]; } __VERIFIER_assert(array[0]>=menor); return 0; }
the_stack_data/206393180.c
/* $Id: jfdctint.c,v 1.2 2005/04/04 11:34:58 csg Exp $ */ /*************************************************************************/ /* */ /* SNU-RT Benchmark Suite for Worst Case Timing Analysis */ /* ===================================================== */ /* Collected and Modified by S.-S. Lim */ /* [email protected] */ /* Real-Time Research Group */ /* Seoul National University */ /* */ /* */ /* < Features > - restrictions for our experimental environment */ /* */ /* 1. Completely structured. */ /* - There are no unconditional jumps. */ /* - There are no exit from loop bodies. */ /* (There are no 'break' or 'return' in loop bodies) */ /* 2. No 'switch' statements. */ /* 3. No 'do..while' statements. */ /* 4. Expressions are restricted. */ /* - There are no multiple expressions joined by 'or', */ /* 'and' operations. */ /* 5. No library calls. */ /* - All the functions needed are implemented in the */ /* source file. */ /* */ /* */ /*************************************************************************/ /* */ /* FILE: jfdctint.c */ /* SOURCE : Thomas G. Lane, Public domain JPEG source code. */ /* Modified by Steven Li at Princeton University. */ /* */ /* DESCRIPTION : */ /* */ /* JPEG slow-but-accurate integer implementation of the forward */ /* DCT (Discrete Cosine Transform). */ /* */ /* REMARK : */ /* */ /* EXECUTION TIME : */ /* */ /* */ /*************************************************************************/ /********************************************************************** Functions to be timed ***********************************************************************/ /* This definitions are added by Steven Li so as to bypass the header files. */ #define DCT_ISLOW_SUPPORTED #define DCTSIZE 8 #define BITS_IN_JSAMPLE 8 #define MULTIPLY16C16(var,const) ((var) * (const)) #define DCTELEM int #define INT32 int #define GLOBAL #define RIGHT_SHIFT(x,shft) ((x) >> (shft)) #define ONE ((INT32) 1) #define DESCALE(x,n) RIGHT_SHIFT((x) + (ONE << ((n)-1)), n) #define SHIFT_TEMPS /* * jfdctint.c * * Copyright (C) 1991-1994, Thomas G. Lane. * This file is part of the Independent JPEG Group's software. * For conditions of distribution and use, see the accompanying README file. * * This file contains a slow-but-accurate integer implementation of the * forward DCT (Discrete Cosine Transform). * * A 2-D DCT can be done by 1-D DCT on each row followed by 1-D DCT * on each column. Direct algorithms are also available, but they are * much more complex and seem not to be any faster when reduced to code. * * This implementation is based on an algorithm described in * C. Loeffler, A. Ligtenberg and G. Moschytz, "Practical Fast 1-D DCT * Algorithms with 11 Multiplications", Proc. Int'l. Conf. on Acoustics, * Speech, and Signal Processing 1989 (ICASSP '89), pp. 988-991. * The primary algorithm described there uses 11 multiplies and 29 adds. * We use their alternate method with 12 multiplies and 32 adds. * The advantage of this method is that no data path contains more than one * multiplication; this allows a very simple and accurate implementation in * scaled fixed-point arithmetic, with a minimal number of shifts. */ #define JPEG_INTERNALS #ifdef DCT_ISLOW_SUPPORTED /* * This module is specialized to the case DCTSIZE = 8. */ #if DCTSIZE != 8 Sorry, this code only copes with 8x8 DCTs. /* deliberate syntax err */ #endif /* * The poop on this scaling stuff is as follows: * * Each 1-D DCT step produces outputs which are a factor of sqrt(N) * larger than the true DCT outputs. The final outputs are therefore * a factor of N larger than desired; since N=8 this can be cured by * a simple right shift at the end of the algorithm. The advantage of * this arrangement is that we save two multiplications per 1-D DCT, * because the y0 and y4 outputs need not be divided by sqrt(N). * In the IJG code, this factor of 8 is removed by the quantization step * (in jcdctmgr.c), NOT in this module. * * We have to do addition and subtraction of the integer inputs, which * is no problem, and multiplication by fractional constants, which is * a problem to do in integer arithmetic. We multiply all the constants * by CONST_SCALE and convert them to integer constants (thus retaining * CONST_BITS bits of precision in the constants). After doing a * multiplication we have to divide the product by CONST_SCALE, with proper * rounding, to produce the correct output. This division can be done * cheaply as a right shift of CONST_BITS bits. We postpone shifting * as long as possible so that partial sums can be added together with * full fractional precision. * * The outputs of the first pass are scaled up by PASS1_BITS bits so that * they are represented to better-than-integral precision. These outputs * require BITS_IN_JSAMPLE + PASS1_BITS + 3 bits; this fits in a 16-bit word * with the recommended scaling. (For 12-bit sample data, the intermediate * array is INT32 anyway.) * * To avoid overflow of the 32-bit intermediate results in pass 2, we must * have BITS_IN_JSAMPLE + CONST_BITS + PASS1_BITS <= 26. Error analysis * shows that the values given below are the most effective. */ #if BITS_IN_JSAMPLE == 8 #define CONST_BITS 13 #define PASS1_BITS 2 #else #define CONST_BITS 13 #define PASS1_BITS 1 /* lose a little precision to avoid overflow */ #endif /* Some C compilers fail to reduce "FIX(constant)" at compile time, thus * causing a lot of useless floating-point operations at run time. * To get around this we use the following pre-calculated constants. * If you change CONST_BITS you may want to add appropriate values. * (With a reasonable C compiler, you can just rely on the FIX() macro...) */ #if CONST_BITS == 13 #define FIX_0_298631336 ((INT32) 2446) /* FIX(0.298631336) */ #define FIX_0_390180644 ((INT32) 3196) /* FIX(0.390180644) */ #define FIX_0_541196100 ((INT32) 4433) /* FIX(0.541196100) */ #define FIX_0_765366865 ((INT32) 6270) /* FIX(0.765366865) */ #define FIX_0_899976223 ((INT32) 7373) /* FIX(0.899976223) */ #define FIX_1_175875602 ((INT32) 9633) /* FIX(1.175875602) */ #define FIX_1_501321110 ((INT32) 12299) /* FIX(1.501321110) */ #define FIX_1_847759065 ((INT32) 15137) /* FIX(1.847759065) */ #define FIX_1_961570560 ((INT32) 16069) /* FIX(1.961570560) */ #define FIX_2_053119869 ((INT32) 16819) /* FIX(2.053119869) */ #define FIX_2_562915447 ((INT32) 20995) /* FIX(2.562915447) */ #define FIX_3_072711026 ((INT32) 25172) /* FIX(3.072711026) */ #else #define FIX_0_298631336 FIX(0.298631336) #define FIX_0_390180644 FIX(0.390180644) #define FIX_0_541196100 FIX(0.541196100) #define FIX_0_765366865 FIX(0.765366865) #define FIX_0_899976223 FIX(0.899976223) #define FIX_1_175875602 FIX(1.175875602) #define FIX_1_501321110 FIX(1.501321110) #define FIX_1_847759065 FIX(1.847759065) #define FIX_1_961570560 FIX(1.961570560) #define FIX_2_053119869 FIX(2.053119869) #define FIX_2_562915447 FIX(2.562915447) #define FIX_3_072711026 FIX(3.072711026) #endif /* Multiply an INT32 variable by an INT32 constant to yield an INT32 result. * For 8-bit samples with the recommended scaling, all the variable * and constant values involved are no more than 16 bits wide, so a * 16x16->32 bit multiply can be used instead of a full 32x32 multiply. * For 12-bit samples, a full 32-bit multiplication will be needed. */ #if BITS_IN_JSAMPLE == 8 #define MULTIPLY(var,const) MULTIPLY16C16(var,const) #else #define MULTIPLY(var,const) ((var) * (const)) #endif DCTELEM data[64]; /* * Perform the forward DCT on one block of samples. */ GLOBAL void jpeg_fdct_islow () { INT32 tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7; INT32 tmp10, tmp11, tmp12, tmp13; INT32 z1, z2, z3, z4, z5; DCTELEM *dataptr; int ctr; SHIFT_TEMPS /* Pass 1: process rows. */ /* Note results are scaled up by sqrt(8) compared to a true DCT; */ /* furthermore, we scale the results by 2**PASS1_BITS. */ dataptr = data; for (ctr = DCTSIZE-1; ctr >= 0; ctr--) { tmp0 = dataptr[0] + dataptr[7]; tmp7 = dataptr[0] - dataptr[7]; tmp1 = dataptr[1] + dataptr[6]; tmp6 = dataptr[1] - dataptr[6]; tmp2 = dataptr[2] + dataptr[5]; tmp5 = dataptr[2] - dataptr[5]; tmp3 = dataptr[3] + dataptr[4]; tmp4 = dataptr[3] - dataptr[4]; /* Even part per LL&M figure 1 --- note that published figure is faulty; * rotator "sqrt(2)*c1" should be "sqrt(2)*c6". */ tmp10 = tmp0 + tmp3; tmp13 = tmp0 - tmp3; tmp11 = tmp1 + tmp2; tmp12 = tmp1 - tmp2; dataptr[0] = (DCTELEM) ((tmp10 + tmp11) << PASS1_BITS); dataptr[4] = (DCTELEM) ((tmp10 - tmp11) << PASS1_BITS); z1 = MULTIPLY(tmp12 + tmp13, FIX_0_541196100); dataptr[2] = (DCTELEM) DESCALE(z1 + MULTIPLY(tmp13, FIX_0_765366865), CONST_BITS-PASS1_BITS); dataptr[6] = (DCTELEM) DESCALE(z1 + MULTIPLY(tmp12, - FIX_1_847759065), CONST_BITS-PASS1_BITS); /* Odd part per figure 8 --- note paper omits factor of sqrt(2). * cK represents cos(K*pi/16). * i0..i3 in the paper are tmp4..tmp7 here. */ z1 = tmp4 + tmp7; z2 = tmp5 + tmp6; z3 = tmp4 + tmp6; z4 = tmp5 + tmp7; z5 = MULTIPLY(z3 + z4, FIX_1_175875602); /* sqrt(2) * c3 */ tmp4 = MULTIPLY(tmp4, FIX_0_298631336); /* sqrt(2) * (-c1+c3+c5-c7) */ tmp5 = MULTIPLY(tmp5, FIX_2_053119869); /* sqrt(2) * ( c1+c3-c5+c7) */ tmp6 = MULTIPLY(tmp6, FIX_3_072711026); /* sqrt(2) * ( c1+c3+c5-c7) */ tmp7 = MULTIPLY(tmp7, FIX_1_501321110); /* sqrt(2) * ( c1+c3-c5-c7) */ z1 = MULTIPLY(z1, - FIX_0_899976223); /* sqrt(2) * (c7-c3) */ z2 = MULTIPLY(z2, - FIX_2_562915447); /* sqrt(2) * (-c1-c3) */ z3 = MULTIPLY(z3, - FIX_1_961570560); /* sqrt(2) * (-c3-c5) */ z4 = MULTIPLY(z4, - FIX_0_390180644); /* sqrt(2) * (c5-c3) */ z3 += z5; z4 += z5; dataptr[7] = (DCTELEM) DESCALE(tmp4 + z1 + z3, CONST_BITS-PASS1_BITS); dataptr[5] = (DCTELEM) DESCALE(tmp5 + z2 + z4, CONST_BITS-PASS1_BITS); dataptr[3] = (DCTELEM) DESCALE(tmp6 + z2 + z3, CONST_BITS-PASS1_BITS); dataptr[1] = (DCTELEM) DESCALE(tmp7 + z1 + z4, CONST_BITS-PASS1_BITS); dataptr += DCTSIZE; /* advance pointer to next row */ } /* Pass 2: process columns. * We remove the PASS1_BITS scaling, but leave the results scaled up * by an overall factor of 8. */ dataptr = data; for (ctr = DCTSIZE-1; ctr >= 0; ctr--) { tmp0 = dataptr[DCTSIZE*0] + dataptr[DCTSIZE*7]; tmp7 = dataptr[DCTSIZE*0] - dataptr[DCTSIZE*7]; tmp1 = dataptr[DCTSIZE*1] + dataptr[DCTSIZE*6]; tmp6 = dataptr[DCTSIZE*1] - dataptr[DCTSIZE*6]; tmp2 = dataptr[DCTSIZE*2] + dataptr[DCTSIZE*5]; tmp5 = dataptr[DCTSIZE*2] - dataptr[DCTSIZE*5]; tmp3 = dataptr[DCTSIZE*3] + dataptr[DCTSIZE*4]; tmp4 = dataptr[DCTSIZE*3] - dataptr[DCTSIZE*4]; /* Even part per LL&M figure 1 --- note that published figure is faulty; * rotator "sqrt(2)*c1" should be "sqrt(2)*c6". */ tmp10 = tmp0 + tmp3; tmp13 = tmp0 - tmp3; tmp11 = tmp1 + tmp2; tmp12 = tmp1 - tmp2; dataptr[DCTSIZE*0] = (DCTELEM) DESCALE(tmp10 + tmp11, PASS1_BITS); dataptr[DCTSIZE*4] = (DCTELEM) DESCALE(tmp10 - tmp11, PASS1_BITS); z1 = MULTIPLY(tmp12 + tmp13, FIX_0_541196100); dataptr[DCTSIZE*2] = (DCTELEM) DESCALE(z1 + MULTIPLY(tmp13, FIX_0_765366865), CONST_BITS+PASS1_BITS); dataptr[DCTSIZE*6] = (DCTELEM) DESCALE(z1 + MULTIPLY(tmp12, - FIX_1_847759065), CONST_BITS+PASS1_BITS); /* Odd part per figure 8 --- note paper omits factor of sqrt(2). * cK represents cos(K*pi/16). * i0..i3 in the paper are tmp4..tmp7 here. */ z1 = tmp4 + tmp7; z2 = tmp5 + tmp6; z3 = tmp4 + tmp6; z4 = tmp5 + tmp7; z5 = MULTIPLY(z3 + z4, FIX_1_175875602); /* sqrt(2) * c3 */ tmp4 = MULTIPLY(tmp4, FIX_0_298631336); /* sqrt(2) * (-c1+c3+c5-c7) */ tmp5 = MULTIPLY(tmp5, FIX_2_053119869); /* sqrt(2) * ( c1+c3-c5+c7) */ tmp6 = MULTIPLY(tmp6, FIX_3_072711026); /* sqrt(2) * ( c1+c3+c5-c7) */ tmp7 = MULTIPLY(tmp7, FIX_1_501321110); /* sqrt(2) * ( c1+c3-c5-c7) */ z1 = MULTIPLY(z1, - FIX_0_899976223); /* sqrt(2) * (c7-c3) */ z2 = MULTIPLY(z2, - FIX_2_562915447); /* sqrt(2) * (-c1-c3) */ z3 = MULTIPLY(z3, - FIX_1_961570560); /* sqrt(2) * (-c3-c5) */ z4 = MULTIPLY(z4, - FIX_0_390180644); /* sqrt(2) * (c5-c3) */ z3 += z5; z4 += z5; dataptr[DCTSIZE*7] = (DCTELEM) DESCALE(tmp4 + z1 + z3, CONST_BITS+PASS1_BITS); dataptr[DCTSIZE*5] = (DCTELEM) DESCALE(tmp5 + z2 + z4, CONST_BITS+PASS1_BITS); dataptr[DCTSIZE*3] = (DCTELEM) DESCALE(tmp6 + z2 + z3, CONST_BITS+PASS1_BITS); dataptr[DCTSIZE*1] = (DCTELEM) DESCALE(tmp7 + z1 + z4, CONST_BITS+PASS1_BITS); dataptr++; /* advance pointer to next column */ } } #endif /* DCT_ISLOW_SUPPORTED */ /* Main function Time to function execution time using logic analyzer, which measures the OFF time of a LED on board. The switching latency, including the function call/return time, is measured to be equal to 1.1us (22 clock cycles). */ void main(void) { int i, seed; /* Worst case settings */ /* Set array to random values */ seed = 1; for (i = 0; i < 64; i++) { seed = ((seed * 133) + 81) % 65535; data[i] = seed; } jpeg_fdct_islow(); }
the_stack_data/28262878.c
/*Write a C program to perform two dimensional array operations. Get the row and column size from the user and create two dimensional array. Checks the compatibility of two matrices to be added, subtraction and multiplication and perform the operations for two matrices. Get the input from the user.*/ #include<stdio.h> int main() { int a[10][10], b[10][10], i, j, m, n, p, q; printf("Enter the number of rows for the first matrix: "); scanf("%d", &m); printf("Enter the number of columns for first matrix: "); scanf("%d", &n); printf("Enter the number of rows for second matrix: "); scanf("%d", &p); printf("Enter the number of columns for the second matrix: "); scanf("%d", &q); if((m==p)&&(n==p)) { printf("Enter the values for first matrix: "); for(i=0;i<m;i++) { for(j=0;j<n;j++) { scanf("%d", &a[i][j]); } } printf("Enter the values for second matrix: "); for(i=0;i<p;i++) { for(j=0;j<q;j++) { scanf("%d", &b[i][j]); } } printf("Addition of two matrices is: \n"); for(i=0;i<m;i++) { for(j=0;j<n;j++) { printf("%d\t", a[i][j]+b[i][j]); } printf("\n"); } printf("Subtraction of two matrices is: \n"); for(i=0;i<m;i++) { for(j=0;j<n;j++) { printf("%d\t", a[i][j]-b[i][j]); } printf("\n"); } } else { printf("Matrix addition and subtraction are impossibe.\n"); } if(n==p) { printf("Multiplication of two matrices is: \n"); for(i=0;i<m;i++) { for(j=0;j<n;j++) { printf("%d\t", a[i][j]*b[i][j]); } printf("\n"); } } else { printf("Matrix multiplication is impossible!!\n"); } }
the_stack_data/18888501.c
#include<stdio.h> int digit(int n) { int m,r,arr[4]={0}; m=n; int p=0; int i=0; while(m!=0) { r=m%10; m=m/10; arr[i]=r; i++; } arr[i]='\0'; int j,k; for(j=0;j<4;j++) { for(k=j+1;k<4;k++) if(arr[j]==arr[k]) { p=1; break; } } return p; } int main() { int n,i; scanf("%d",&n); for(i=n+1;i<=9000;i++) { int c=digit(i); if(c==0) { printf("%d",i); break; } } }
the_stack_data/71680.c
#include <stdio.h> #include <stdlib.h> int main(int argc, char const *argv[]) { //SWITCH CASE COM CARACTERES char opcao; printf("\n[ A ] - Cadastrar Produto\n[ B ] - Vender Produto\n[ C ] - Buscar Produto\n[ D ] - Imprimir\n[ Z ] - Sair\n"); scanf("%c", &opcao); switch (opcao){ case 'A': //Quando a variavel é char, é necessario colocar a opcao entre '' simples printf("\nCadastrando novo Produto\n"); break; case 'B': printf("\nProduto vendido\n"); break; case 'C': printf("\nBuscando Produto\n"); break; case 'D': printf("\nImprimindo relatorio\n"); break; case 'Z': printf("\nSaindo do programa...\n"); break; default: printf("Opcao invalida"); } printf("\n\nFIM DO PROGRAMA\n"); return 0; }
the_stack_data/339163.c
#include <stdio.h> #define kNumLeonardoNumbers 44 #define inputSize 13 #define treeSizes 8 //1 + log(inputSize) int size[treeSizes], sizeN = 0; const int kLeonardoNumbers[kNumLeonardoNumbers] = { 1u, 1u, 3u, 5u, 9u, 15u, 25u, 41u, 67u, 109u, 177u, 287u, 465u, 753u, 1219u, 1973u, 3193u, 5167u, 8361u, 13529u, 21891u, 35421u, 57313u, 92735u, 150049u, 242785u, 392835u, 635621u, 1028457u, 1664079u, 2692537u, 4356617u, 7049155u, 11405773u, 18454929u, 29860703u, 48315633u, 78176337u, 126491971u, 204668309u, 331160281u, 535828591u, 866988873u, 1402817465u, }; void heapify(int arr[], int root, int start, int order) { if(order > 1) { int left = start + kLeonardoNumbers[order - 1] - 1, right = root - 1, largest = root, temp; if (arr[root] < arr[left]) largest = left; if (arr[largest] < arr[right]) largest = right; if (largest == left) { temp = arr[largest]; arr[largest] = arr[root]; arr[root] = temp; heapify(arr, left, start, order - 1); } else if (largest == right) { temp = arr[largest]; arr[largest] = arr[root]; arr[root] = temp; heapify(arr, right, start + kLeonardoNumbers[order - 1], order - 2); } } } void startHeapify(int *arr, const int i) { int start = 0, loopI; for (loopI = 0; loopI < sizeN && (start + kLeonardoNumbers[size[loopI]] - 1) != i; start += kLeonardoNumbers[size[loopI++]]); heapify(arr, i, start, size[loopI]); } void balanceHeap(int arr[], int i, int sizeN) { if (sizeN < 2 && size[sizeN - 1] < 2) // only singleton return; int sizeI = sizeN - 1, next = i, root = next - kLeonardoNumbers[size[sizeI]]; while (size[sizeI] < 2 && root >= 0) { // singleton at end if (arr[root] > arr[next]) { int temp = arr[root]; arr[root] = arr[next]; arr[next] = temp; next = root; root -= kLeonardoNumbers[size[--sizeI]]; } else return; } while (root >= 0) { // no singletons if (arr[root] > arr[next] && arr[root] > arr[next - 1] && arr[root] > arr[root + kLeonardoNumbers[size[sizeI] - 1]]) { int temp = arr[root]; arr[root] = arr[next]; arr[next] = temp; next = root; root -= size[--sizeI]; } else break; } startHeapify(arr, next); } void addToHeap(int arr[], int i) { if (sizeN == 0) { size[sizeN++] = 1; } else if (sizeN > 1 && size[sizeN - 1] + 1 == size[sizeN - 2]) { size[--sizeN - 1]++; } else if (size[sizeN - 1] == 1) { size[sizeN++] = 0; } else { size[sizeN++] = 1; } balanceHeap(arr, i, sizeN); } void makeLeonardoHeap(int arr[], int n) { int i; for (i = 0; i < n; i++) addToHeap(arr, i); } void removeFromHeap(int arr[], int *n) { (*n)--; if (size[sizeN - 1] > 1) { size[sizeN] = size[sizeN - 1] - 2; size[sizeN++ - 1]--; if (size[sizeN - 2] == 1) balanceHeap(arr, (*n) - 2, sizeN - 1); balanceHeap(arr, (*n) - 1, sizeN); } else { sizeN--; } } void smoothSort(int arr[], int n) { makeLeonardoHeap(arr, n); while (n > 1) { removeFromHeap(arr, &n); } } int main() { int arr[inputSize] = {13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1}; smoothSort(arr, inputSize); int i; for (i = 0; i < inputSize; i++) printf("%d ", arr[i]); return 0; }
the_stack_data/20449472.c
#include <ctype.h> #include <math.h> #include <stdio.h> #include <stdlib.h> #include <string.h> /* * Exercise 10 * Page: 79 * An alternate organization uses getline * to read an entire input line; * this makes getch and ungetch unnecessary. * Revise the calculator to use this approach. * */ #define MAXLEN 1000 #define NUMBER '0' #define MAXOP 100 #define COMPLEX '1' #define ANS 27 static int getop(/*@out@*/ char s[]); static void push(double num); static double pop(void); static double peek(void); static void duplicate(void); static void swap_stack(); static void clear_stack(); static double complex_op(char s[]); static unsigned int variables_check[28]; static double variables_val[28]; static int i_line = 0; static char line[MAXLEN]; static int get_line(char line[], int lim); int main(void) { int type, lastop; double op2; char s[MAXOP]; lastop = (int)'0'; while (get_line(line, MAXLEN) > 0) { while (i_line < (int)strlen(line)) { type = getop(s); switch (type) { case NUMBER: push(atof(s)); break; case COMPLEX: push(complex_op(s)); break; case '+': push(pop() + pop()); break; case '*': push(pop() * pop()); break; case '-': op2 = pop(); push(pop() - op2); break; case '/': op2 = pop(); if (op2 > 0 || op2 < 0) { push(pop() / op2); } else { printf("error: Zero Divisor\n"); } break; case '%': op2 = pop(); if (op2 > 0 || op2 < 0) { push((double)((int)pop() % (int)op2)); } else { printf("error: Zero ModDivisor\n"); } break; case '?': printf("top of stack: %.7g\n", peek()); break; case '\\': printf("saving answer\n"); duplicate(); break; case ',': printf("swaping stack top\n"); swap_stack(); break; case '!': clear_stack(); break; case '\n': if (lastop != (int)'?' && lastop != (int)',') { variables_val[ANS] = pop(); printf("\t%.7g\n", variables_val[ANS]); } break; default: if (islower(type)) { if (variables_check[type - (int)'a'] == 1) { push(variables_val[type - (int)'a']); } else { push((double)type); } } else { printf("error: Unknown Command\n"); } break; } } i_line = 0; } return 0; } static double complex_op(char s[]) { if (strcmp(s, "sqrt") == 0) { return sqrt(pop()); } if (strcmp(s, "sin") == 0) { return sin(pop()); } if (strcmp(s, "cos") == 0) { return cos(pop()); } if (strcmp(s, "asin") == 0) { return asin(pop()); } if (strcmp(s, "ans") == 0) { return variables_val[ANS]; } if (strcmp(s, "set") == 0) { double x = pop(); char var = (char)pop(); if (islower(var)) { variables_check[(int)var - (int)'a'] = 1; variables_val[(int)var - (int)'a'] = x; return x; } else { printf("Not Valid Variable Name\n"); } } printf("Unknown complex command\n"); return pop(); } static int get_line(char s[], int lim) { int c, i; for (i = 0; (c = getchar()) != EOF && c != (int)'\n'; ++i) { if ((i < lim - 1)) s[i] = (char)c; } if (c == (int)'\n' && (i < lim - 1)) { s[i] = (char)c; i++; } if ((i < lim - 1)) { s[i] = '\0'; } else { s[lim - 1] = '\0'; s[lim - 2] = '\n'; } return i; } #define MAXVAL 100 static int sp = 0; static double val[MAXVAL]; void push(double f) { if (sp < MAXVAL) val[sp++] = f; else printf("error: stack full, can't push %f\n", f); } double pop(void) { if (sp > 0) return val[--sp]; else { printf("error: stack empty\n"); return 0.0; } } double peek(void) { if (sp > 0) return val[sp - 1]; else { printf("error: stack empty\n"); return 0.0; } } void clear_stack(void) { sp = 0; } void duplicate(void) { if (sp < MAXVAL) { val[sp] = val[sp - 1]; sp++; } else { printf("error: stack full, can't duplicate"); } } void swap_stack(void) { if (sp > 1) { double temp; temp = val[sp - 1]; val[sp - 1] = val[sp - 2]; val[sp - 2] = temp; } else { printf("stack too small to swap"); } } #include <ctype.h> int getop(char s[]) { int i = 0; while (isspace(s[i] = line[i_line]) && line[i_line] != '\n') { i_line++; } s[i + 1] = '\0'; if (!isdigit(line[i_line]) && line[i_line] != '.') { if (isalpha(line[i_line]) || line[i_line] == '-') { if (isspace(line[i_line + 1])) { return (int)line[i_line++]; } } else { return(int) line[i_line++]; } } int return_type = (int)NUMBER; if (isdigit(s[i])) { while (isdigit(s[i] = line[i_line])) { i++; i_line++; } if (s[i] == '.') { i++; i_line++; while (isdigit(s[i] = line[i_line])) { i++; i_line++; } } } else if (isalpha(s[i])) { while (isalpha(s[i] = line[i_line])) { i++; i_line++; } return_type =(int) COMPLEX; } s[i] = '\0'; return return_type; }
the_stack_data/14200824.c
#include <stdio.h> #include <stdlib.h> #include <math.h> char key(int value) { char T[4]; int i; char result; for(i=0; i<4; i++) { T[i] = value%10; value /= 10; } T[3] *= 3; T[2] *= 7; T[1] *= 11; T[0] *= 13; result = ((T[0]+T[1]+T[2]+T[3])%26)+65; return result; } int main(int argc, char** argv){ if (2 != argc) { printf("Nombre de parametres insuffisants\n"); return 1; } int input = atoi(argv[1]); if(input > 9999) { printf("incorrect\n"); return 1; } printf("cle : %c", key(input)); return 0; }
the_stack_data/206392208.c
/* libmain - flex run-time support library "main" function */ /* $Header: /src/kona.cvs/netbsd/usr.bin/lex/libmain.c,v 1.1.1.2 1997/12/22 22:18:30 cgd Exp $ */ #include <sys/cdefs.h> int yylex __P((void)); int main __P((int, char **, char **)); int main( argc, argv, envp ) int argc; char *argv[]; char *envp[]; { while ( yylex() != 0 ) ; return 0; }
the_stack_data/125140380.c
// // Created by j on 19-1-3. // /* pizza.c -- 在这个批萨饼的例子中使用定义常量 */ #include <stdio.h> #include <limits.h> // 系统定义整型常量 #include <float.h> // 系统定义浮点型常量 #define PI 3.14159 int main(void){ float area, circum, radius; printf("What is the radius of your pizza?\n"); scanf("%f",&radius); area = PI * radius * radius; circum = 2.0 * PI * radius; printf("Your basic pizza parameters are as follows: \n"); printf("circumference = %1.2f, area = %1.2f\n", circum, area); printf("Maximum int value on this system = %d\n",INT_MAX); printf("这个系统的float类型最少有效位数: %d\n",FLT_DIG); // defines.c -- 使用 limit.h 和 float.h 中定义的常量 printf("Some number limits for this system: \n"); printf("Biggest int: %d\n", INT_MAX); printf("Smallest unsigned long: %lld\n", LLONG_MIN); printf("One byte = %d bits on this system.\n", CHAR_BIT); printf("Largest double: %e\n",DBL_MAX); printf("Smallest normal float: %e\n", FLT_MIN); printf("float precision = %d digits\n", FLT_DIG); printf("float epsilon = %e\n", FLT_EPSILON); return 0; }
the_stack_data/336175.c
/* origin: FreeBSD /usr/src/lib/msun/src/e_log.c */ /* * ==================================================== * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. * * Developed at SunSoft, a Sun Microsystems, Inc. business. * Permission to use, copy, modify, and distribute this * software is freely granted, provided that this notice * is preserved. * ==================================================== */ /* log(x) * Return the logarithm of x * * Method : * 1. Argument Reduction: find k and f such that * x = 2^k * (1+f), * where sqrt(2)/2 < 1+f < sqrt(2) . * * 2. Approximation of log(1+f). * Let s = f/(2+f) ; based on log(1+f) = log(1+s) - log(1-s) * = 2s + 2/3 s**3 + 2/5 s**5 + ....., * = 2s + s*R * We use a special Remez algorithm on [0,0.1716] to generate * a polynomial of degree 14 to approximate R The maximum error * of this polynomial approximation is bounded by 2**-58.45. In * other words, * 2 4 6 8 10 12 14 * R(z) ~ Lg1*s +Lg2*s +Lg3*s +Lg4*s +Lg5*s +Lg6*s +Lg7*s * (the values of Lg1 to Lg7 are listed in the program) * and * | 2 14 | -58.45 * | Lg1*s +...+Lg7*s - R(z) | <= 2 * | | * Note that 2s = f - s*f = f - hfsq + s*hfsq, where hfsq = f*f/2. * In order to guarantee error in log below 1ulp, we compute log * by * log(1+f) = f - s*(f - R) (if f is not too large) * log(1+f) = f - (hfsq - s*(hfsq+R)). (better accuracy) * * 3. Finally, log(x) = k*ln2 + log(1+f). * = k*ln2_hi+(f-(hfsq-(s*(hfsq+R)+k*ln2_lo))) * Here ln2 is split into two floating point number: * ln2_hi + ln2_lo, * where n*ln2_hi is always exact for |n| < 2000. * * Special cases: * log(x) is NaN with signal if x < 0 (including -INF) ; * log(+INF) is +INF; log(0) is -INF with signal; * log(NaN) is that NaN with no signal. * * Accuracy: * according to an error analysis, the error is always less than * 1 ulp (unit in the last place). * * Constants: * The hexadecimal values are the intended ones for the following * constants. The decimal values may be used, provided that the * compiler will convert from decimal to binary accurately enough * to produce the hexadecimal values shown. */ #include <math.h> #include <stdint.h> static const double ln2_hi = 6.93147180369123816490e-01, /* 3fe62e42 fee00000 */ ln2_lo = 1.90821492927058770002e-10, /* 3dea39ef 35793c76 */ Lg1 = 6.666666666666735130e-01, /* 3FE55555 55555593 */ Lg2 = 3.999999999940941908e-01, /* 3FD99999 9997FA04 */ Lg3 = 2.857142874366239149e-01, /* 3FD24924 94229359 */ Lg4 = 2.222219843214978396e-01, /* 3FCC71C5 1D8E78AF */ Lg5 = 1.818357216161805012e-01, /* 3FC74664 96CB03DE */ Lg6 = 1.531383769920937332e-01, /* 3FC39A09 D078C69F */ Lg7 = 1.479819860511658591e-01; /* 3FC2F112 DF3E5244 */ double log(double x) { union { double f; uint64_t i; } u = {x}; double_t hfsq, f, s, z, R, w, t1, t2, dk; uint32_t hx; int k; hx = u.i >> 32; k = 0; if (hx < 0x00100000 || hx >> 31) { if (u.i << 1 == 0) return -1 / (x * x); /* log(+-0)=-inf */ if (hx >> 31) return (x - x) / 0.0; /* log(-#) = NaN */ /* subnormal number, scale x up */ k -= 54; x *= 0x1p54; u.f = x; hx = u.i >> 32; } else if (hx >= 0x7ff00000) { return x; } else if (hx == 0x3ff00000 && u.i << 32 == 0) return 0; /* reduce x into [sqrt(2)/2, sqrt(2)] */ hx += 0x3ff00000 - 0x3fe6a09e; k += (int)(hx >> 20) - 0x3ff; hx = (hx & 0x000fffff) + 0x3fe6a09e; u.i = (uint64_t)hx << 32 | (u.i & 0xffffffff); x = u.f; f = x - 1.0; hfsq = 0.5 * f * f; s = f / (2.0 + f); z = s * s; w = z * z; t1 = w * (Lg2 + w * (Lg4 + w * Lg6)); t2 = z * (Lg1 + w * (Lg3 + w * (Lg5 + w * Lg7))); R = t2 + t1; dk = k; return s * (hfsq + R) + dk * ln2_lo - hfsq + f + dk * ln2_hi; }
the_stack_data/151461.c
//counts the number of inactive bits (with the value 0) in a number x. int count_bits_zero(int x){ //get binary number int c; int k; int count=0; for (c = 31; c >= 0; c--) { k = x >> c; if (k & 1){ } else{ count++; } } return count; }
the_stack_data/29826582.c
#include <stdio.h> #include <stdlib.h> struct ITEM { int valor; struct ITEM* prox; }; typedef struct ITEM ITEM; struct LISTA { ITEM* inicio; ITEM* ultimo; }; typedef struct LISTA LISTA; ITEM* criarITEM(int valor){ ITEM* item = (ITEM*)malloc(sizeof(ITEM)); item->valor = valor; item->prox = NULL; return item; } LISTA criarLista(){ LISTA lista; lista.inicio = criarITEM(-1); lista.ultimo = lista.inicio; return lista; } void listar(ITEM* inicio){ ITEM* atual = inicio->prox; while(atual != NULL){ printf("->(%d)", atual->valor); atual = atual->prox; } printf("\n"); } ITEM* buscar(ITEM* inicio, int valor){ ITEM* atual = inicio->prox; while(atual != NULL){ if(atual->valor == valor){ return atual; } atual = atual->prox; } return NULL; } void remover(ITEM* inicio, int valor){ ITEM* atual = inicio->prox; ITEM* anterior = inicio; while(atual != NULL){ if(atual->valor == valor){ anterior->prox = atual->prox; free(atual); return; } anterior = atual; atual = atual->prox; } } ITEM* inserir(LISTA* lista, ITEM* novo){ novo->prox = lista->ultimo->prox; lista->ultimo->prox = novo; lista->ultimo = novo; return novo; } int main(){ LISTA lista = criarLista(); int valor; int opcao; //0 - sair, 1 - inserir, 2 - buscar e 3 - remover while(1){ printf("\n0 - sair, 1 - inserir, 2 - buscar e 3 - remover, 4 - listar:"); scanf("%d", &opcao); if(opcao == 0){ break; }else if(opcao == 1){ printf("Digite o valor a inserir:"); scanf("%d", &valor); inserir(&lista, criarITEM(valor)); }else if(opcao == 2){ printf("Digite o valor a buscar:"); scanf("%d", &valor); if(buscar(lista.inicio, valor) != NULL){ printf("O valor existe!"); } }else if(opcao == 3){ printf("Digite o valor a remover:"); scanf("%d", &valor); remover(lista.inicio, valor); }else { listar(lista.inicio); } } return 0; }
the_stack_data/76700764.c
#include <stdio.h> char get_choice(void); char get_first(void); int get_int(void); void count(void); int main(void) { int choice; void count(void); while ((choice = get_choice()) != 'q') { switch (choice) { case 'a' : printf("Buy low, sell high.\n"); break; case 'b' : putchar('\a'); /* ANSI */ break; case 'c' : count(); break; default : printf("Program error!\n"); break; } } printf("Bye.\n"); return 0; } void count(void) { int n,i; printf("Count how far? Enter an integer:\n"); n = get_int(); for (i = 1; i <= n; i++) printf("%d\n", i); while (getchar() != '\n') continue; } char get_choice(void) { int ch; printf("Enter the letter of your choice:\n"); printf("a. advice b. bell\n"); printf("c. count q. quit\n"); ch = get_first(); while ((ch < 'a' || ch > 'c') && ch != 'q') { printf("Please respond with a, b, c, or q.\n"); ch = get_first(); } return ch; } char get_first(void) { int ch; ch = getchar(); while (getchar() != '\n') continue; return ch; } int get_int(void) { int input; char ch; while (scanf("%d", &input) != 1) { while ((ch = getchar()) != '\n') putchar(ch); // dispose of bad input printf(" is not an integer.\nPlease enter an "); printf("integer value, such as 25, -178, or 3: "); } return input; }
the_stack_data/58258.c
#include <stdio.h> #include <string.h> #include <stdlib.h> /********* char *p1 = (char *) malloc(len); char *p2 = p1 + 1; 只有 alloc 系列函数分配的地址空间 开头保存有这块空间的大小, 可通过 free(p1) 来释放这块空间。 这片空间上的任何其他位置 都没有这块空间的信息,不能通过free(p2)来释放这块空间 * *********/ void main() { unsigned int len = 32; char *p1 = (char *) malloc(len); strcpy(p1,"0123456789abcdefghijklmn"); printf("p1 : %s\n", p1); char *p2 = p1 + 1; printf("p2 : %s\n", p2); free(p2); // error }
the_stack_data/125141008.c
#include <stdio.h> #include <limits.h> int min(int a,int b) { if(a<b) { return a; } else { return b; } } int main() { int n,m; // n-> Number of Vertices, m-> Number of unidirectional Edges scanf("%d %d",&n,&m); int AdjList[n][n]; // Adjlist-> Adjacency list for(int i=0;i<n;i++) { for(int j=0;j<n;j++) { if(i!=j) { AdjList[i][j]=(INT_MAX/10); } else { AdjList[i][i]=0; } } } for(int i=0;i<m;i++) { int u,v,x; scanf("%d %d %d",&u,&v,&x); // edge from u to v (0 based indexing) with edge cost x; AdjList[u][v]=x; } // Floyd-Warshall Algorithm for(int k=0;k<n;k++) { for(int i=0;i<n;i++) { for(int j=0;j<n;j++) { AdjList[i][j]=min((AdjList[i][k]+AdjList[k][j]),AdjList[i][j]); } } } for(int i=0;i<n;i++) { for(int j=0;j<n;j++) { if(AdjList[i][j]!=(INT_MAX/10)) { printf("%d ",AdjList[i][j]); } else { printf("-1 "); } } printf("\n"); } }
the_stack_data/54826488.c
#include<math.h> #include<stdio.h> int main() { int prime(int); int n; scanf("%d",&n); n+=1; while(prime(n)) { n+=1; } printf("%d",n); return 0; } int prime(int a) { int b=a-1; while(a%b!=0) { b-=1; } if(b==1) return 0; return 1; }
the_stack_data/18887517.c
double function() { int a = 4; if (a) return 1; else return 0; }
the_stack_data/845735.c
// Lab 8 #include<stdio.h> #include<stdlib.h> /* return value is 0 for success, -1 for error */ /* the use of < or lt() will result in a descending sort, and a max heap */ /* the use of > or gt() will result in an ascending sort, and a min heap */ typedef struct { int *store; unsigned int size; unsigned int end; int (*compare)(int x,int y); } intHeap_T; /* function prototypes */ int store(intHeap_T* heap,int value); int helper_store(int index,int* store_heap,intHeap_T* heap); int retrieve(intHeap_T* heap,int *rvalue); int helper_retrieve(int index,int* store_heap,int root,intHeap_T* heap); int lt(int x,int y); int gt(int x,int y); int hs(int *x,int size,int (*compare)(int x,int y)); int store(intHeap_T* heap,int value) { if (heap == NULL) {return -1;} if (heap->end == heap->size) {return -1;} (heap->store)[heap->end] = value; helper_store(heap->end,heap->store,heap); (heap->end) = (heap->end)+1; return 0; } /* Recall: if val(node)>val(node's predecessor), swap node and predecessor */ int helper_store(int index, int* store_heap, intHeap_T* heap) { int parent = 0; int temp_var = 0; if (store_heap == NULL) {return -1;} if (index > 0) { parent = (index-1)/2; if ((*(heap->compare))(store_heap[parent],store_heap[index]) == 1) { temp_var = store_heap[parent]; store_heap[parent] = store_heap[index]; store_heap[index] = temp_var; helper_store(parent,store_heap,heap); } } return 0; } /* stores the root value in rvalue */ int retrieve(intHeap_T* heap,int *rvalue) { if (heap == NULL) {return -1;} if (rvalue == NULL) {return -1;} if ((heap->end) == 0) {return -1;} *rvalue = (heap->store)[0]; (heap->end)=(heap->end)-1; heap->store[0] = heap->store[heap->end]; helper_retrieve(heap->end,heap->store,0,heap); return 0; } int helper_retrieve(int index,int* store_heap,int root,intHeap_T* heap) { int temp = 0; int left_child = 0; int right_child = 0; int max_child = 0; if (store_heap == NULL) {return -1;} left_child = 2*root+1; right_child = 2*root+2; if (left_child>=index) { return 0; } else if (right_child>=index) { if ((*(heap->compare))(store_heap[root],store_heap[left_child]) == 1) { temp = store_heap[root]; store_heap[root] = store_heap[left_child]; store_heap[left_child] = temp; } } else if (((*(heap->compare))(store_heap[root],store_heap[right_child]) == 1) && ((*(heap->compare))(store_heap[root],store_heap[left_child]) == 1)) { if ((*(heap->compare))(store_heap[left_child],store_heap[right_child]) == 1) { max_child = right_child; } else { max_child = left_child; } temp = store_heap[root]; store_heap[root] = store_heap[max_child]; store_heap[max_child] = temp; helper_retrieve(index,store_heap, max_child,heap); } else if ((*(heap->compare))(store_heap[root],store_heap[right_child]) == 1) { temp = store_heap[root]; store_heap[root] = store_heap[right_child]; store_heap[right_child] = temp; helper_retrieve(index,store_heap,right_child,heap); } else if ((*(heap->compare))(store_heap[root],store_heap[left_child]) == 1) { temp = store_heap[root]; store_heap[root] = store_heap[left_child]; store_heap[left_child] = temp; helper_retrieve(index,store_heap,left_child,heap); } return 0; } int lt(int x,int y) { if (x <= y) {return 1;} else {return 0;} } int gt(int x,int y){ if (x >= y) {return 1;} else {return 0;} } /* control the type of sort (ascending or descending) by passing an appropriate compare function */ int hs(int *x,int size,int (*compare)(int x,int y)) { intHeap_T heap; heap.store = (int*)malloc(1000*sizeof(int)); heap.size = 1000; heap.end = 0; heap.compare = compare; if (x == NULL) {return -1;} for (int i=0;i<size;i++) { store(&heap,x[i]); } int i = 0; while (i<size) { retrieve(&heap,&(x[i])); i = i+1; } return 0; } int main(void) { int x[] = {6,2,1,7,3,4,5}; int size = 7; printf("Initial Array: "); printf("%d %d %d %d %d %d %d\n",x[0],x[1],x[2],x[3],x[4],x[5],x[6]); hs(x,size,gt); printf("Sorted Array: "); printf("%d %d %d %d %d %d %d\n",x[0],x[1],x[2],x[3],x[4],x[5],x[6]); return 0; }
the_stack_data/80114.c
// RUN: %clang_cc1 -w -fblocks -triple i386-pc-linux-gnu -emit-llvm -o %t %s // RUN: FileCheck < %t %s // CHECK: define void @f56( // CHECK: i8 signext %a0, %struct.s56_0* byval %a1, // CHECK: x86_mmx %a2.coerce, %struct.s56_1* byval align 4, // CHECK: <1 x double> %a4, %struct.s56_2* byval align 4, // CHECK: <4 x i32> %a6, %struct.s56_3* byval align 4, // CHECK: <2 x double> %a8, %struct.s56_4* byval align 4, // CHECK: <8 x i32> %a10, %struct.s56_5* byval align 4, // CHECK: <4 x double> %a12, %struct.s56_6* byval align 4) // CHECK: call void (i32, ...)* @f56_0(i32 1, // CHECK: i32 %{{.*}}, %struct.s56_0* byval %{{[^ ]*}}, // CHECK: x86_mmx %{{[^ ]*}}, %struct.s56_1* byval align 4 %{{[^ ]*}}, // CHECK: <1 x double> %{{[^ ]*}}, %struct.s56_2* byval align 4 %{{[^ ]*}}, // CHECK: <4 x i32> %{{[^ ]*}}, %struct.s56_3* byval align 4 %{{[^ ]*}}, // CHECK: <2 x double> %{{[^ ]*}}, %struct.s56_4* byval align 4 %{{[^ ]*}}, // CHECK: <8 x i32> %{{[^ ]*}}, %struct.s56_5* byval align 4 %{{[^ ]*}}, // CHECK: <4 x double> %{{[^ ]*}}, %struct.s56_6* byval align 4 %{{[^ ]*}}) // CHECK: } // // <rdar://problem/7964854> [i386] clang misaligns long double in structures // when passed byval // <rdar://problem/8431367> clang misaligns parameters on stack typedef int __attribute__((vector_size (8))) t56_v2i; typedef double __attribute__((vector_size (8))) t56_v1d; typedef int __attribute__((vector_size (16))) t56_v4i; typedef double __attribute__((vector_size (16))) t56_v2d; typedef int __attribute__((vector_size (32))) t56_v8i; typedef double __attribute__((vector_size (32))) t56_v4d; struct s56_0 { char a; }; struct s56_1 { t56_v2i a; }; struct s56_2 { t56_v1d a; }; struct s56_3 { t56_v4i a; }; struct s56_4 { t56_v2d a; }; struct s56_5 { t56_v8i a; }; struct s56_6 { t56_v4d a; }; void f56(char a0, struct s56_0 a1, t56_v2i a2, struct s56_1 a3, t56_v1d a4, struct s56_2 a5, t56_v4i a6, struct s56_3 a7, t56_v2d a8, struct s56_4 a9, t56_v8i a10, struct s56_5 a11, t56_v4d a12, struct s56_6 a13) { extern void f56_0(int x, ...); f56_0(1, a0, a1, a2, a3, a4, a5, a6, a7, a8, a9, a10, a11, a12, a13); }
the_stack_data/126703479.c
/** * ppjC je programski jezik podskup jezika C definiran u dokumentu * https://github.com/fer-ppj/ppj-labosi/raw/master/upute/ppj-labos-upute.pdf * * ova skripta poziva ppjC kompajler (za sada samo analizator) pritiskom * na tipku [Ctrl+S], [Shift+Enter] ili [Alt+3] i prikazuje rezultat analize. * * ne garantiram tocnost leksera, sintaksnog niti semantickog analizatora koji * se ovdje pokrece. * * URL skripte prati verzije izvornog programa, tako da je moguca razmjena * izvornih programa u timu putem URL-ova. */ int f(void); int main(void) { return f(); } int f(void){ return 0; }
the_stack_data/249986.c
#include <stdio.h> #include <stdlib.h> int main() { int n; scanf("%d",&n); printf("%d\n",n*n); printf("%d",n*n*n); return 0; }
the_stack_data/211081642.c
#include <ctype.h> #include <errno.h> #include <limits.h> #include <stdlib.h> /* * Convert a string to a long long. * * Ignores 'locale' stuff. Assumes that the upper and lower case * alphabets and digits are each contiguous. */ long long strtoll(const char * nptr, char ** endptr, int base) { const char * s; long long acc, cutoff; int c; int neg, any, cutlim; /* * Skip white space and pick up leading +/- sign if any. * If base is 0, allow 0x for hex and 0 for octal, else * assume decimal; if base is already 16, allow 0x. */ s = nptr; do { c = (unsigned char) *s++; } while (isspace(c)); if (c == '-') { neg = 1; c = *s++; } else { neg = 0; if (c == '+') c = *s++; } if ((base == 0 || base == 16) && c == '0' && (*s == 'x' || *s == 'X')) { c = s[1]; s += 2; base = 16; } if (base == 0) base = c == '0' ? 8 : 10; /* * Compute the cutoff value between legal numbers and illegal * numbers. That is the largest legal value, divided by the * base. An input number that is greater than this value, if * followed by a legal input character, is too big. One that * is equal to this value may be valid or not; the limit * between valid and invalid numbers is then based on the last * digit. For instance, if the range for long long is * [-9223372036854775808..9223372036854775807] and the input base * is 10, cutoff will be set to 922337203685477580 and cutlim to * either 7 (neg==0) or 8 (neg==1), meaning that if we have * accumulated a value > 922337203685477580, or equal but the * next digit is > 7 (or 8), the number is too big, and we will * return a range error. * * Set any if any 'digits' consumed; make it negative to indicate * overflow. */ switch (base) { case 4: if (neg) { cutlim = LLONG_MIN % 4; cutoff = LLONG_MIN / 4; } else { cutlim = LLONG_MAX % 4; cutoff = LLONG_MAX / 4; } break; case 8: if (neg) { cutlim = LLONG_MIN % 8; cutoff = LLONG_MIN / 8; } else { cutlim = LLONG_MAX % 8; cutoff = LLONG_MAX / 8; } break; case 10: if (neg) { cutlim = LLONG_MIN % 10; cutoff = LLONG_MIN / 10; } else { cutlim = LLONG_MAX % 10; cutoff = LLONG_MAX / 10; } break; case 16: if (neg) { cutlim = LLONG_MIN % 16; cutoff = LLONG_MIN / 16; } else { cutlim = LLONG_MAX % 16; cutoff = LLONG_MAX / 16; } break; default: cutoff = neg ? LLONG_MIN : LLONG_MAX; cutlim = cutoff % base; cutoff /= base; break; } if (neg) { if (cutlim > 0) { cutlim -= base; cutoff += 1; } cutlim = -cutlim; } for (acc = 0, any = 0;; c = (unsigned char) *s++) { if (isdigit(c)) c -= '0'; else if (isalpha(c)) c -= isupper(c) ? 'A' - 10 : 'a' - 10; else break; if (c >= base) break; if (any < 0) continue; if (neg) { if (acc < cutoff || (acc == cutoff && c > cutlim)) { any = -1; acc = LLONG_MIN; errno = ERANGE; } else { any = 1; acc *= base; acc -= c; } } else { if (acc > cutoff || (acc == cutoff && c > cutlim)) { any = -1; acc = LLONG_MAX; errno = ERANGE; } else { any = 1; acc *= base; acc += c; } } } if (endptr != 0) *endptr = (char *) (any ? s - 1 : nptr); return (acc); }
the_stack_data/154831486.c
void func_1v(float* in, float* out, unsigned n){ unsigned i; #pragma omp target teams distribute parallel for map(to: in[0:n]) map(from: out[0:n]) for(i=0; i<n; ++i){ out[i]=2*in[i]; } }
the_stack_data/47314.c
/* Copyright (C) 1995, 1996, 1999 Free Software Foundation, Inc. This file is part of the GNU C Library. The GNU C Library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. The GNU C 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 Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with the GNU C Library; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA. */ #include <wchar.h> /* Find the first occurrence of WC in WCS. */ wchar_t * wcschr (wcs, wc) register const wchar_t *wcs; register const wchar_t wc; { do if (*wcs == wc) return (wchar_t *) wcs; while (*wcs++ != L'\0'); return NULL; }
the_stack_data/187642633.c
/* * POK header * * The following file is a part of the POK project. Any modification should * made according to the POK licence. You CANNOT use this file or a part of * this file is this part of a file for your own project * * For more information on the POK licence, please see our LICENCE FILE * * Please follow the coding guidelines described in doc/CODING_GUIDELINES * * Copyright (c) 2007-2009 POK team * * Created by julien on Fri Jan 30 14:41:34 2009 */ /* e_hypotf.c -- float version of e_hypot.c. * Conversion to float by Ian Lance Taylor, Cygnus Support, [email protected]. */ /* * ==================================================== * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved. * * Developed at SunPro, a Sun Microsystems, Inc. business. * Permission to use, copy, modify, and distribute this * software is freely granted, provided that this notice * is preserved. * ==================================================== */ #ifdef POK_NEEDS_LIBMATH #include "math_private.h" float __ieee754_hypotf(float x, float y) { float a = x, b = y, t1, t2, yy1, y2, w; int32_t j, k, ha, hb; GET_FLOAT_WORD(ha, x); ha &= 0x7fffffff; GET_FLOAT_WORD(hb, y); hb &= 0x7fffffff; if (hb > ha) { a = y; b = x; j = ha; ha = hb; hb = j; } else { a = x; b = y; } SET_FLOAT_WORD(a, ha); /* a <- |a| */ SET_FLOAT_WORD(b, hb); /* b <- |b| */ if ((ha - hb) > 0xf000000) { return a + b; } /* x/y > 2**30 */ k = 0; if (ha > 0x58800000) { /* a>2**50 */ if (ha >= 0x7f800000) { /* Inf or NaN */ w = a + b; /* for sNaN */ if (ha == 0x7f800000) w = a; if (hb == 0x7f800000) w = b; return w; } /* scale a and b by 2**-60 */ ha -= 0x5d800000; hb -= 0x5d800000; k += 60; SET_FLOAT_WORD(a, ha); SET_FLOAT_WORD(b, hb); } if (hb < 0x26800000) { /* b < 2**-50 */ if (hb <= 0x007fffff) { /* subnormal b or 0 */ if (hb == 0) return a; SET_FLOAT_WORD(t1, 0x3f000000); /* t1=2^126 */ b *= t1; a *= t1; k -= 126; } else { /* scale a and b by 2^60 */ ha += 0x5d800000; /* a *= 2^60 */ hb += 0x5d800000; /* b *= 2^60 */ k -= 60; SET_FLOAT_WORD(a, ha); SET_FLOAT_WORD(b, hb); } } /* medium size a and b */ w = a - b; if (w > b) { SET_FLOAT_WORD(t1, ha & 0xfffff000); t2 = a - t1; w = __ieee754_sqrtf(t1 * t1 - (b * (-b) - t2 * (a + t1))); } else { a = a + a; SET_FLOAT_WORD(yy1, hb & 0xfffff000); y2 = b - yy1; SET_FLOAT_WORD(t1, ha + 0x00800000); t2 = a - t1; w = __ieee754_sqrtf(t1 * yy1 - (w * (-w) - (t1 * y2 + t2 * b))); } if (k != 0) { SET_FLOAT_WORD(t1, 0x3f800000 + (k << 23)); return t1 * w; } else return w; } #endif
the_stack_data/60452.c
int mDNSIsFileAndPrintSharingEnabled(int *ignored) { (void)ignored; return 0; } int mDNSAddToFirewall(const char* ignored, const char* also_ignored) { (void)ignored; (void)also_ignored; return 0; }
the_stack_data/101829.c
/* Taxonomy Classification: 0000000000000053000100 */ /* * WRITE/READ 0 write * WHICH BOUND 0 upper * DATA TYPE 0 char * MEMORY LOCATION 0 stack * SCOPE 0 same * CONTAINER 0 no * POINTER 0 no * INDEX COMPLEXITY 0 constant * ADDRESS COMPLEXITY 0 constant * LENGTH COMPLEXITY 0 N/A * ADDRESS ALIAS 0 none * INDEX ALIAS 0 none * LOCAL CONTROL FLOW 0 none * SECONDARY CONTROL FLOW 0 none * LOOP STRUCTURE 5 non-standard do-while * LOOP COMPLEXITY 3 two * ASYNCHRONY 0 no * TAINT 0 no * RUNTIME ENV. DEPENDENCE 0 no * MAGNITUDE 1 1 byte * CONTINUOUS/DISCRETE 0 discrete * SIGNEDNESS 0 no */ /* Copyright 2005 Massachusetts Institute of Technology All rights reserved. Redistribution and use of software in source and binary forms, with or without modification, are permitted provided that the following conditions are met. - Redistributions of source code must retain the above copyright notice, this set of conditions and the disclaimer below. - Redistributions in binary form must reproduce the copyright notice, this set of conditions, and the disclaimer below in the documentation and/or other materials provided with the distribution. - Neither the name of the Massachusetts Institute of Technology nor the names of its contributors may 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". 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. */ int main(int argc, char *argv[]) { int init_value; int inc_value; int loop_counter; char buf[10]; init_value = 0; inc_value = 10 - (10 - 1); loop_counter = init_value; do { /* BAD */ buf[10] = 'A'; } while((loop_counter += inc_value) && (loop_counter <= 10)); return 0; }
the_stack_data/232956881.c
/* * memset.c */ #include <string.h> #include <stdint.h> void *memset(void *dst, int c, size_t n) { char *q = dst; while (n--) { *q++ = c; } return dst; }
the_stack_data/720811.c
#include <stdio.h> #include <stdlib.h> #include <stdint.h> #define LV_ATTRIBUTE_MEM_ALIGN #define LV_ATTRIBUTE_IMG_ALARM_16PX #define LV_COLOR_DEPTH 32 //#define LV_COLOR_DEPTH 16 #define LV_IMG_PX_SIZE_ALPHA_BYTE 4 /* for 32 bit color */ //#define LV_IMG_PX_SIZE_ALPHA_BYTE 3 /* for 16 bit color */ #define LV_IMG_CF_TRUE_COLOR_ALPHA 5 /* for 32 bit color */ // #define LV_IMG_CF_TRUE_COLOR_ALPHA 3 /* for 16 bit color */ // #define LV_COLOR_16_SWAP 1 /** Image header it is compatible with * the result from image converter utility*/ typedef struct { uint32_t cf : 5; /* Color format: See `lv_img_color_format_t`*/ uint32_t always_zero : 3; /*It the upper bits of the first byte. Always zero to look like a non-printable character*/ uint32_t reserved : 2; /*Reserved to be used later*/ uint32_t w : 11; /*Width of the image map*/ uint32_t h : 11; /*Height of the image map*/ } lv_img_header_t; typedef struct { lv_img_header_t header; uint32_t data_size; const uint8_t * data; } lv_img_dsc_t; #ifndef LV_ATTRIBUTE_MEM_ALIGN #define LV_ATTRIBUTE_MEM_ALIGN #endif #ifndef LV_ATTRIBUTE_IMG_OWM_04D_64PX #define LV_ATTRIBUTE_IMG_OWM_04D_64PX #endif const LV_ATTRIBUTE_MEM_ALIGN LV_ATTRIBUTE_IMG_OWM_04D_64PX uint8_t owm_04d_64px_map[] = { #if LV_COLOR_DEPTH == 1 || LV_COLOR_DEPTH == 8 /*Pixel format: Alpha 8 bit, Red: 3 bit, Green: 3 bit, Blue: 2 bit*/ 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, #endif }; const lv_img_dsc_t owm_04d_64px = { .header.always_zero = 0, .header.w = 64, .header.h = 64, .data_size = 4096 * LV_IMG_PX_SIZE_ALPHA_BYTE, .header.cf = LV_IMG_CF_TRUE_COLOR_ALPHA, .data = owm_04d_64px_map, }; /* * writing the pixel map */ int main(int argc, char **argv) { FILE *fp; char *binFile; binFile="owm_04d_64px_argb8888.bin"; /* 32 bit color */ fp = fopen(binFile, "wb"); fwrite(owm_04d_64px_map,owm_04d_64px.data_size,1,fp); fclose(fp); }
the_stack_data/115765867.c
#include<stdio.h> #define N 15 int main(){ int i,j,k,t,t1,bt[N]={0},at[N]={0},tat[N]={0},wt[N]={0},ct[N]={0}; int totalProcess,tBT=0,time=0, temp; float tTAT=0,tWT=0; printf("\n\t\t\tSJF\n\n"); printf("Enter total process: "); scanf("%d",&totalProcess); for(i=0;i<totalProcess;i++){ printf("\nEnter Arrival time and Burst Time for process %d (Comma Seperated): ",i+1); scanf("%d,%d",&at[i],&bt[i]); } //Swapping if user has not entered arrival time in ascending order for(i=0;i<totalProcess;i++){ for(j=i+1; j<totalProcess; j++){ if(at[i] > at[j]){ t = at[i]; t1 = bt[i]; at[i] = at[j]; bt[i] = bt[j]; at[j] = t; bt[j] = t1; } } } k=1; //sort using burst time for(j=0;j<totalProcess;j++){ time = time + bt[j]; t = bt[k]; for(i=k;i<totalProcess;i++){ if(time>=at[i] && bt[i]<t){ temp = at[k]; at[k] = at[i]; at[i] = temp; temp = bt[k]; bt[k] = bt[i]; bt[i] = temp; } } k++; } tBT = at[0]; for( j=0;j<totalProcess;j++){ tBT+=bt[j]; ct[j]+=tBT; } //calculate turnaround time and waiting times for(k=0;k<totalProcess;k++){ tat[k]=ct[k]-at[k]; wt[k]=tat[k]-bt[k]; tTAT+=tat[k]; tWT+=wt[k]; } //Printing Table printf("\n\n\t\t\t\t\tANSWER\n\n\tArrival Time\t\tBurst Time\t\tCompletion Time\t\tTurn Around Time\t\tWaiting Time\t\n\n"); for(i=0;i<totalProcess;i++){ printf("P%d\t%d\t\t\t%d\t\t\t%d\t\t\t%d\t\t\t\t%d\n",i+1,at[i],bt[i],ct[i],tat[i],wt[i]); } printf("----------------------------------------------------------------------------------------------------------------"); printf("\nTotal\t\t\t\t\t\t\t\t\t\t%.2f\t\t\t\t%.2f\n",tTAT,tWT); printf("\n\nAverage Turnaround Time = %f\n",tTAT/totalProcess); printf("Average WT = %f\n\n",tWT/totalProcess); }
the_stack_data/73574094.c
#include <stdio.h> #include <stdlib.h> int triple(int nombre) { return 3 * nombre; } int main(int argc, char *argv[]) { int nombreEntre = 0, nombreTriple = 0; printf("Entrez un nombre: "); scanf("%d", &nombreEntre); nombreTriple = triple(nombreEntre); printf("Le triple de ce nombre est %d\n", nombreTriple); return 0; }
the_stack_data/64199441.c
#include <stdio.h> #include <stdlib.h> #include <time.h> double timeExec(char* program) { struct timespec tstart={0,0}, tend={0,0}; clock_gettime(CLOCK_MONOTONIC, &tstart); if (system(program) != 0) { fprintf(stderr, "Failed to run: '%s'\n", program); exit(1); return -1; } clock_gettime(CLOCK_MONOTONIC, &tend); return ( ((double)tend.tv_sec + 1.0e-9*tend.tv_nsec) - ((double)tstart.tv_sec + 1.0e-9*tstart.tv_nsec) ); } int main(int argc, char* argv[]) { if (argc != 3) { fprintf(stderr, "usage: %s <requests> <command>", argv[0]); return -1; } int requests = atoi(argv[1]); char* program = argv[2]; double totalTime = 0.0; for (int i = 0; i < requests; i++) { totalTime += timeExec(program); } printf("~%.2fs\n", totalTime / requests); return 0; }
the_stack_data/51700500.c
int game(int* guess, int guessSize, int* answer, int answerSize){ int r = 0; for(int i=0; i<guessSize; i++) { if(guess[i] == answer[i]) { r ++; } } return r; }
the_stack_data/1075556.c
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the_stack_data/1212042.c
#include<stdio.h> #include<stdlib.h> #include<curses.h> #include<string.h> int m,n,qsn; int *avail; int **max; int **alloc; int **need; int *seq; int *wrk; int **req; int *ord; int *prch; int *res,*tot; int *oavail; int *oalloc; int *oneed; int pr; bool *check; void input(); void disp(); bool safestate(); int request(int i1,int i2); int main() { printf("Enter No of Processes : "); scanf("%d",&m); printf("Enter No of Resources : "); scanf("%d",&n); int i=0; max=(int**)calloc(m+1,sizeof(int)); max[0] = (int *)calloc(n+1 , sizeof(int)); for (i=1; i<=m; i++){ max[i] = (int *)calloc(n+1 , sizeof(int)); for(int j=1;j<=n;j++) { max[i][j]=i; } } alloc=(int**)calloc(m+1,sizeof(int)); alloc[0] = (int *)calloc(n+1 , sizeof(int)); for (i=1; i<=m; i++){ alloc[i] = (int *)calloc(n+1 , sizeof(int)); for(int j=1;j<=n;j++) { alloc[i][j]=i; } } need=(int**)calloc(m+1,sizeof(int)); need[0] = (int *)calloc(n+1 , sizeof(int)); for (i=1; i<=m; i++){ need[i] = (int *)calloc(n+1 , sizeof(int)); for(int j=1;j<=n;j++) { need[i][j]=i; } } avail=(int*)calloc(n+1,sizeof(int)); seq=(int*)calloc(m+1,sizeof(int)); check=(bool*)calloc(n+1,sizeof(bool)); wrk=(int*)calloc(n,sizeof(int)); input(); disp(); printf("\n\n"); bool val=safestate(); if(val==true) { printf("\t\tSystem is in Safe State\n\tSafe Sequence: "); for(int i=1;i<=m-1;i++) printf("P%d --> ",seq[i]); printf("P%d\n",seq[m]); } else{ printf("\t\tSystem is not in Safe State\n\n"); return 0; } printf("\n\n"); int temp; printf("Continue with Resource Requesting?(Yes-1/No-0): "); scanf("%d",&temp); if(temp==1){ printf("Enter Number of Processes requesting resources: "); scanf("%d",&pr); ord=(int*)malloc(pr+1*sizeof(int)); prch=(int*)malloc(pr+1*sizeof(int)); for(i=1;i<=pr;i++) { printf("Enter Process number requesting resources: "); scanf("%d",&ord[i]); prch[i]=0; } req=(int**)calloc(pr+1,sizeof(int)); req[0]=(int*)calloc(n+1,sizeof(int)); for(i=1;i<=pr;i++) { req[i]=(int*)calloc(n+1,sizeof(int)); for(int j=1;j<=n;j++){ printf("\nEnter Requested Instances for Resource %c: of P%d: ",(char)j+64,ord[i]); scanf("%d",&req[i][j]); } } int l=0; i=1; oavail=(int*)calloc(n+1,sizeof(int)); oalloc=(int*)calloc(n+1,sizeof(int)); oneed=(int*)calloc(n+1,sizeof(int)); while(l<pr) { if(i>pr) i=1; if(prch[i]==-2 || prch[i]==-1) { i++; continue; } int val=request(i,ord[i]); //printf("\ni=%d,val=%d\n",i-1,val); if(val==0) { printf("\nRequest for P%d cannot be Processed since exceeded Maximum Claim.....\n",ord[i-1]); prch[i]=-1; l++; } else if(val==1) { printf("\nRequest for P%d cannot be Processed with Available Resources....Request carried to later processing....\n",ord[i-1]); prch[i]+=1; } else if(val==2) { disp(); printf("\nRequest for P%d is Successfully Processed and System in Safe State....\n",i-1); printf("\t\tSystem is in Safe State\n\tNew Safe Sequence: "); for(int j=1;j<=m-1;j++) printf("P%d --> ",seq[j]); printf("P%d\n",seq[m]); //printf("Continuing with other Requests"); prch[i]=-2; l++; } else { printf("\nRequest for P%d is not Successfully Processed as System goes into Un-Safe State....\n",i-1); prch[i]=-2; l++; } if(prch[i]>pr-l) { printf("Requests cannot be processed for all remaining Processes...."); l=pr+1; } else if(l<pr) printf("\nContinuing with other Requests....\n"); i++; } printf("\nDone with Given Requests...\n"); } int t; printf("Exit Process? (Yes -1/Return Main Menu - 0): "); scanf("%d",&t); system("clear"); if(t==0) main(); } void input() { res=(int*)calloc(n+1,sizeof(int)); tot=(int*)calloc(n+1,sizeof(int)); int i=0,j=0; for(i=1;i<=n;i++) { printf("\nEnter Total Number of Instances for Resource %c: ",(char)i+64); scanf("%d",&res[i]); } for(i=1;i<=m;i++) { for(j=1;j<=n;j++) { printf("\nEnter Maximum Number of Instances of Resource %c For Process P%d: ",(char)j+64,i-1); scanf("%d",&max[i][j]); } for(j=1;j<=n;j++) { printf("\nEnter Allocated Number of Instances of Resource %c For Process P%d: ",(char)j+64,i-1); scanf("%d",&alloc[i][j]); tot[j]+=alloc[i][j]; need[i][j]=max[i][j]-alloc[i][j]; } } for(j=1;j<=n;j++) { avail[j]=res[j]-tot[j]; //printf("%d ",avail[j]); } //printf("%d %d\n%d %d",&alloc[0][0],&need[0][0],&max[4][0],&alloc[4][0]); } void disp() { int i,j; system("clear"); printf("\t\tDisplaying Details Entered In Tabular Format\n"); printf("\nEnter Total Number of Instances:\n"); for(i=1;i<=n;i++) { printf("%c = ",(char)i+64); printf("%d\n",res[i]); } if(n>=4) printf("\n\nProcesses\t\tAllocated\t\tMaximum\t\t\tNeed\t\t\tAvailable\n\t\t\t"); else printf("\n\nProcesses\t\tAllocated\tMaximum\t\tNeed\t\tAvailable\n\t\t\t"); for(j=1;j<=4;j++){ for(i=1;i<=n;i++) { printf("%c ",(char)i+64); } printf("\t\t"); } for(i=1;i<=m;i++) { printf("\nP%d\t\t\t",i-1); for(j=1;j<=n;j++) { printf("%d ",alloc[i][j]); } printf("\t\t"); for(j=1;j<=n;j++) { printf("%d ",max[i][j]); } printf("\t\t"); for(j=1;j<=n;j++) { printf("%d ",need[i][j]); } if(i==1) { printf("\t\t"); for(j=1;j<=n;j++) { //avail[j]=res[j]-tot[j]; //wrk[j]=avail[j]; printf("%d ",avail[j]); } } } } bool safestate() { int i=1,flag=1,x=0,c=0,lc=1,ct=0,cc=0; for(i=1;i<=n;i++){ wrk[i]=avail[i]; } for(i=1;i<=m;i++){ check[i]=false; } i=1; while(flag==1) { if(i>m){ i=1; continue; } if(lc>=m+1) { flag=0; break; } if(check[i]==false) c=1; else{ c=0; //continue; } if(c==1) { for(x=1;x<=n;x++) { if(need[i][x]<=wrk[x]) c=1; else { c=0; x=m+1; } } } //printf("i:%d,lc:%d,c:%d,cc:%d--",i,lc,c,cc); if(c==1) { check[i]=true; for(x=1;x<=n;x++) { wrk[x]+=alloc[i][x]; //printf("%d ",wrk[x]); } seq[lc]=i-1; //printf("\nP%d -->",i-1); lc++; i++; /*if(i>m) i=1; continue;*/ } else{ cc++; c=0; i+=1; } //printf("c=%d,cc=%d,i=%d",c,cc,i-1); if(cc>=m) break; } if(flag==0) return true; else if(flag==1) return false; } int request(int i1,int i2) { i2++; int fl=0,i=0; for(i=1;i<=n;i++) { if(req[i1][i]<=need[i2][i]){ fl=1; } else{ fl=0; //printf("i1:%d i2:%d i:%d need:%d\n",i1,i2,i,need[i2][i]); break; } } if(fl==0) return 0; else { for(i=1;i<=n;i++) { if(req[i1][i]<=avail[i]){ fl=1; } else{ fl=0; break; } } if(fl==0) return 1; else { for(i=1;i<=n;i++) { //printf("(%d)",i); oavail[i]=avail[i]; avail[i]-=req[i1][i]; oalloc[i]=alloc[i2][i]; alloc[i2][i]+=req[i1][i]; oneed[i]=need[i2][i]; need[i2][i]-=req[i1][i]; //printf("%d %d %d\n",avail[i],alloc[i2][i],need[i2][i]); } bool val; val=safestate(); if(val==true){ return 2; } else { for(i=1;i<=n;i++) { avail[i]=oavail[i]; alloc[i2][i]=oalloc[i]; need[i2][i]=oneed[i]; } return 3; } } } }
the_stack_data/1235704.c
#include <stdio.h> int a = 1; // memory allocated int main() { extern int a; // declaration, no memory allocation, goes outside of scope to // find "a" printf("%d", a); return 0; }
the_stack_data/90763722.c
#include <stdio.h> #include <string.h> #define memCard pd[i][energia] #define naoCome dp(pd, food, i + 1, energia) #define come dp(pd, food, i + 1, energia + food[i]) + food[i] int comidas; int max(int a, int b) { return(a > b ? a : b); } int dp(int pd[][481], int food[], int i, int energia) { if (i == comidas) return(0); if (memCard == -1) { memCard = naoCome; if (energia + food[i] <= 480) memCard = max(memCard, come); } return(memCard); } int main() { int tests; scanf("%d", &tests); while (tests > 0) { scanf("%d", &comidas); int comida[comidas], i, DP[comidas][481]; for (i = 0; i < comidas; i ++) { scanf("%d", &comida[i]); memset(DP[i], -1, 481 * sizeof(int)); } int ans = dp(DP, comida, 0, 0); printf("%d\n", ans); tests --; } return(0); }
the_stack_data/62901.c
#include <stdio.h> double swap_diff(int *r, int *c){ if(*r < *c){ int tmp = *c; *c = *r; *r = tmp; } int r_ = *r; int c_ = *c; return ((double)r_)/c_; } int main() { int s[] = {2,2,2,2, 2,2,2,2, 3,3,3, 23}; // 2^8 x 3^3 x 23 = 24 x 23 x 24 x 2 x 3 x 2 double min = 10000000; for(int i=0;i<12;i++){ int R = s[i]; int C = 1; for(int j=0;j<12;j++) if(i != j) C *= s[j]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } for(int i=0;i<12;i++){ for(int j=i+1;j<12;j++){ int R = s[i] * s[j]; int C = 1; for(int k=0;k<12;k++) if(i != k && j != k) C *= s[k]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } } for(int i=0;i<12;i++){ for(int j=i+1;j<12;j++){ for(int k=j+1;k<12;k++){ int R = s[i] * s[j] * s[k]; int C = 1; for(int m=0;m<12;m++) if(i != m && j != m && k != m) C *= s[m]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } } } for(int i=0;i<12;i++){ for(int j=i+1;j<12;j++){ for(int k=j+1;k<12;k++){ for(int m=k+1;m<12;m++){ int R = s[i] * s[j] * s[k] * s[m]; int C = 1; for(int n=0;n<12;n++) if(i != n && j != n && k != n && m != n) C *= s[n]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } } } } for(int i=0;i<12;i++){ for(int j=i+1;j<12;j++){ for(int k=j+1;k<12;k++){ for(int m=k+1;m<12;m++){ for(int n=m+1;n<12;n++){ int R = s[i] * s[j] * s[k] * s[m] * s[n]; int C = 1; for(int p=0;p<12;p++) if(i != p && j != p && k != p && m != p && n != p) C *= s[p]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } } } } } for(int i=0;i<12;i++){ for(int j=i+1;j<12;j++){ for(int k=j+1;k<12;k++){ for(int m=k+1;m<12;m++){ for(int n=m+1;n<12;n++){ for(int p=n+1;p<12;p++){ int R = s[i] * s[j] * s[k] * s[m] * s[n] * s[p]; int C = 1; for(int q=0;q<12;q++) if(i != q && j != q && k != q && m != q && n != q && p != q) C *= s[q]; double diff = swap_diff(&R, &C); if(diff < min){ min = diff; printf("diff = %.2f, R x C = %d x %d\n", diff, R, C); } } } } } } } return 0; }
the_stack_data/75137548.c
#include <stdio.h> #include <stdlib.h> #include <string.h> typedef struct stringt { char* val; int size; } stringt; void strt_make(stringt* strt, char* str){ /* Makes string given stringt pointer and string Given: - stringt* strt - char* str Sets strt to stringt(val=str, size=length of str) */ strt->val = str; strt->size = strlen(str); } void strt_info(stringt strt){ /* Prints contents of stringt Given: - stringt strt */ printf("string(val=<%s>, size=%d)\n", strt.val, strt.size); } void strt_append(stringt* strtA, stringt* strtB){ /* Appends the second stringt pointer to the first Given: - stringt* strtA, strtB Sets strtA to stringt(val=strtA.val+strtB.val, size=strtA.size+strtB.size) */ //update size strtA->size = strtA->size+strtB->size; //malloc and make new string char* tmp_val = strtA->val; strtA->val = malloc(strtA->size); strcpy(strtA->val, tmp_val); strcat(strtA->val, strtB->val); } void strt_substr(stringt* strtA, stringt* strtB, int start, int end){ /* Gets substring from start to end of the second stringt pointer and sets it to first stringt pointer Given: - stringt* strtA, strtB = int start, end Sets strtA to stringt(val=strtB[start:end], size=end-start) Sets strtA to empty stringt if start/end is invalid */ //if invalid substr set to empty str if(start > end || start < 0 || end < 0 || end > strtB->size){ strtA->size = 0; strtA->val = malloc(0); strtA->val = ""; } else{ //get substr char* tmp = strtB->val; strtA->size = end-start; strtA->val = malloc(strtA->size); for(int i = 0; i < strtA->size; i++){ strtA->val[i] = tmp[start+i]; } } } int strt_occurances(stringt strtA, char* str){ /* Finds total occurances of substring str in stringt strtA Given: - stringt strtA - char* str Returns # occurances of str in strtA */ if(strlen(str) > strtA.size){ return 0; } int occs = 0; stringt findstr; for(int i = 0; i < strtA.size-strlen(str)+1; i++){ strt_substr(&findstr, &strtA, i, i+strlen(str)); if(strcmp(findstr.val, str)==0){ occs++; } } return occs; } int strt_indexOf(stringt strtA, char chr){ /* Gets index of first occurance of char in stringt Given: - stringt strtA - char chr Returns index of first occ. of chr in strtA, if not found, returns -1 */ for(int i = 0; i < strtA.size; i++){ if(strtA.val[i]==chr){ return i; } } return -1; } int strt_split(stringt** strtlist, stringt strt, char split){ /* Makes a list of stringts, split by char split of the stringt strt. Given: - stringt** strtlist - stringt strt - char split Ex: strt = "Hello world!", char = 'l' Sets strtlist to {"He", "o wor", "d!"} in stringt form Returns length of strtlist */ //allocate maximum possible size (realloc to index later on) int strtlist_len = strt.size; int strtlist_index = 0; *strtlist = realloc(*strtlist, strtlist_len*sizeof(**strtlist)); stringt* tmp = *strtlist; int split_index = strt_indexOf(strt, split); //loop until no more possible splits while(split_index!=-1){ //gets substring from split start to end if(split_index!=0){ strt_substr(&tmp[strtlist_index++], &strt, 0, split_index); } strt_substr(&strt, &strt, split_index+1, strt.size); split_index = strt_indexOf(strt, split); } //possible leftover if(strt.size!=0){ strt_substr(&tmp[strtlist_index++], &strt, 0, strt.size); } //realloc to correct size *strtlist = realloc(*strtlist, strtlist_index*sizeof(**strtlist)); return strtlist_index; } void strt_filter(stringt* strt, char filter){ /* Removes occurances of char filter from strt Given: - stringt* strt - char filter Ex: "Test|123|ABC", '|' => "Test123ABC" */ char* tmp = (char*)malloc(strt->size); int tmp_indx = 0; for(int i = 0; i < strt->size; i++){ if(strt->val[i]!=filter){ tmp[tmp_indx++] = strt->val[i]; } } tmp = (char *)realloc(tmp, tmp_indx); strt_make(strt, tmp); } void strt_replace(stringt* strt, char find, char replace){ /* Replaces occurances of char find with char replace in strt Given: - stringt* strt - char find, replace Ex: "Test|123|ABC", '|', '^' => "Test^123^ABC" */ char tmp[strt->size]; int tmp_indx = 0; for(int i = 0; i < strt->size; i++){ tmp[tmp_indx++] = (strt->val[i]==find) ? replace : strt->val[i]; } strt_make(strt, tmp); } char* strt_uniqueChars(stringt strt){ char* charlist = (char*)malloc(strt.size); int charlist_index = 0; charlist[charlist_index++] = strt.val[0]; while(strt.size>1){ strt_filter(&strt, strt.val[0]); charlist[charlist_index++] = strt.val[0]; } charlist = (char *)realloc(charlist, charlist_index); return charlist; } void caesar_cipher(stringt* strt, int n){ /* Does caesar cipher on stringt given an n shift */ char* tmp = strt->val; char* res = (char*)malloc(strt->size); for(int i = 0; i < strt->size; i++){ res[i] = tmp[i]+n; } strt_make(strt, res); } int main(int argc, char argv[]){ stringt strA; strt_make(&strA, "Hello"); return 0; }
the_stack_data/193892907.c
/* Taxonomy Classification: 0000300607130000000310 */ /* * WRITE/READ 0 write * WHICH BOUND 0 upper * DATA TYPE 0 char * MEMORY LOCATION 0 stack * SCOPE 3 inter-file/inter-proc * CONTAINER 0 no * POINTER 0 no * INDEX COMPLEXITY 6 N/A * ADDRESS COMPLEXITY 0 constant * LENGTH COMPLEXITY 7 array contents * ADDRESS ALIAS 1 yes, one level * INDEX ALIAS 3 N/A * LOCAL CONTROL FLOW 0 none * SECONDARY CONTROL FLOW 0 none * LOOP STRUCTURE 0 no * LOOP COMPLEXITY 0 N/A * ASYNCHRONY 0 no * TAINT 0 no * RUNTIME ENV. DEPENDENCE 0 no * MAGNITUDE 3 4096 bytes * CONTINUOUS/DISCRETE 1 continuous * SIGNEDNESS 0 no */ /* Copyright 2004 M.I.T. Permission is hereby granted, without written agreement or royalty fee, to use, copy, modify, and distribute this software and its documentation for any purpose, provided that the above copyright notice and the following three paragraphs appear in all copies of this software. IN NO EVENT SHALL M.I.T. BE LIABLE TO ANY PARTY FOR DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE USE OF THIS SOFTWARE AND ITS DOCUMENTATION, EVEN IF M.I.T. HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMANGE. M.I.T. SPECIFICALLY DISCLAIMS ANY WARRANTIES INCLUDING, BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, AND NON-INFRINGEMENT. THE SOFTWARE IS PROVIDED ON AN "AS-IS" BASIS AND M.I.T. HAS NO OBLIGATION TO PROVIDE MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS. */ #include <string.h> int main(int argc, char *argv[]) { int index_array[5]; char src[4106]; char buf[10]; memset(src, 'A', 4106); src[4106 - 1] = '\0'; index_array[0] = 4106; /* BAD */ strncpy(buf, src, index_array[0]); return 0; }
the_stack_data/153932.c
/* * selectdemo.c: watch for input on two devices * * usage: ./selectdemo dev1 dev2 timeout * * action: reports on input from each file, and reports timeouts */ #include <stdio.h> #include <stdlib.h> #include <sys/select.h> #include <time.h> #include <sys/types.h> #include <unistd.h> #include <fcntl.h> void show_data(char *, int); #define oops(m, x) {perror(m); exit(x);} int main(int ac, char * av[]) { if (ac != 4) { fprintf(stderr, "usage: ./selectdemo file1 file2 timeout"); exit(1); } int fd1 = open(av[1], O_RDONLY); if (fd1 == -1) { oops(av[1], 2); } int fd2 = open(av[2], O_RDONLY); if (fd2 == -1) { oops(av[2], 3); } int max_fd = 1 + (fd1 > fd2 ? fd1 : fd2); fd_set read_fds; struct timeval timeout; int ret_val = -1; while (1) { // make a list of file descriptors to watch FD_ZERO(&read_fds); FD_SET(fd1, &read_fds); FD_SET(fd2, &read_fds); // set timeout value // NOTE: the `select` syscall will modify `timeout`, this is why we reset it in every loop timeout.tv_sec = (long)atoi(av[3]); timeout.tv_usec = 0; // wait for input ret_val = select(max_fd, &read_fds, NULL, NULL, &timeout); if (ret_val == -1) { oops("select", 4); } // when we have message(s) if (ret_val > 0) { if (FD_ISSET(fd1, &read_fds)) { show_data(av[1], fd1); } if (FD_ISSET(fd2, &read_fds)) { show_data(av[2], fd2); } } else { printf("no input after %d seconds\n", atoi(av[3])); } } } void show_data(char * file_name, int fd) { char buf[BUFSIZ]; printf("%s: ", file_name); fflush(stdout); int n = read(fd, buf, BUFSIZ); if (n == -1) { oops(file_name, 5); } write(1, buf, n); write(1, "\n", 1); }
the_stack_data/32549.c
#include<stdio.h> #include<malloc.h> void *bufs[5]; int main(){ printf("efore malloc()s.\n"); getchar(); bufs[0] = malloc(1024 * 8); bufs[1] = malloc(1024 * 8); bufs[2] = malloc(1024 * 8); bufs[3] = malloc(1024 * 8); bufs[4] = malloc(1024 * 8); printf("After 5 malloc()s.\n"); getchar(); free(bufs[1]); bufs[1] = NULL; free(bufs[3]); bufs[3] = NULL; printf("After 2 free()s.\n"); getchar(); for( int i = 0 ; i < 5 ; i++ ){ if( bufs[i] ){ free(bufs[i]); } } return 0; }
the_stack_data/89200044.c
void fp(int x) { void (*f)(int)=fp; //void (*f)(int); void (*g)(int y) = f; //f = fp; g(x); }
the_stack_data/34513132.c
#include <stdio.h> #include <stdlib.h> #include <time.h> #include <string.h> #define MAX_PLAYERS 9 #define POS_SIZE 3 #define MAX_STR_LEN 25 typedef struct Player_{ char name[MAX_STR_LEN]; int number_of_hits; int number_of_outs; struct Player_ *next; }Player; int batting(Player *player); int pitch_result(void); Player* add_player(Player *first_player, const char *name); Player* pull_player(Player *first_player); void destroy_team(Player *first_player,Player* next); void display_lineup(Player* first, Player* next); void readFile(Player** lineup, const char* file); void update_player_stats(Player *lineup, Player *target); void display_player_stats(Player* first); int main (int argc, char *argv[]) { if (argc < 2){ exit(1); } srand(time(NULL)); int outs = 0; int hits = 0; Player *lineup = NULL; readFile(&lineup,argv[1]); printf("\nLine up for this team is: "); display_lineup(lineup,lineup); for (; outs < 27; ) { Player * player = pull_player(lineup); int result = batting(player); if (result) { player->number_of_hits++; ++hits; } else player->number_of_outs++; ++outs; update_player_stats(lineup,player); //REQUIRED FOR BONUS free(player); } display_player_stats(lineup); printf("\nScore of game was: %d \n", hits/4); destroy_team(lineup,lineup); return 0; } /*BONUS PART*/ void update_player_stats(Player *lineup, Player *target) { Player* current = lineup; while (current->next != lineup) { if (strcmp(target->name,current->name) == 0) { current->number_of_outs = target->number_of_outs; current->number_of_hits = target->number_of_hits; } current = current->next; } } void display_player_stats(Player* first) { Player* curr = first; for (; curr->next != first; curr = curr->next) { printf("\n%s went %d/%d with a OBP of %.3f",curr->name, curr->number_of_hits,curr->number_of_outs+curr->number_of_hits,(float)curr->number_of_hits/(curr->number_of_outs+curr->number_of_hits)); } printf("\n"); } void readFile(Player** lineup, const char* file) { FILE* fp = fopen(file,"r"); char buffer[MAX_STR_LEN] = {0}; int i = 0; for ( ;i < MAX_PLAYERS; ++i) { fscanf(fp,"%s", buffer); *lineup = add_player(*lineup,buffer); } fclose(fp); } void display_lineup(Player* first,Player* next) { if(next->next != first) { printf("\n%s", next->name); display_lineup(first,next->next); } else { return; //printf("\n%s\n", next->name); } } int batting(Player *player) { printf("\n%s is now batting\n",player->name); int strikes = 0; int result = 0; int walks = 0; for ( ;strikes < 3;) { result = pitch_result(); if (result == 0) ++strikes; else if (result == 2) { return 1; } else if (result == 1 && walks == 3){ printf("Walked!\n"); return 1; } else if (result == 1) { ++walks; } } return 0; } int pitch_result(void) { int result = rand() % 4; if (result >= 2){ printf("Strike!\n"); return 0; } else if (result >= 1) { printf("Ball!\n"); return 1; } printf("hit!\n"); return 2; } // ENQUEUE PLAYER Player* add_player(Player *first_player, const char *player_name){ Player* new_node = malloc(sizeof(Player)); strcpy(new_node->name,player_name); new_node->number_of_hits = 0; new_node->number_of_outs = 0; new_node->next = new_node; if (first_player == NULL) { return new_node; } new_node->next = first_player; Player *current = first_player; while (current->next != first_player){ current = current->next; } current->next = new_node; return first_player; } //front PLAYER Player* pull_player(Player *first_player){ Player* curr = first_player; static int on_deck = 0; int i = 0; for(;i < on_deck; ++i) { curr = curr->next; } Player* batting = malloc(sizeof(Player)); memcpy(batting,curr,sizeof(Player)); on_deck++; return batting; } // FREE PLAYERS void destroy_team(Player *first, Player* next) { if(next->next == first) { free(next); return; } else { destroy_team(first, next->next); free(next); } }
the_stack_data/192331250.c
#include <stdio.h> typedef struct Batter batter; struct Batter{ char firstname[32]; char lastname[32]; int runs; }; int main(int argc, char *argv[]) { batter batmans[10]; for(int i = 0; i < 10; i++){ scanf("%s %s %d", batmans[i].firstname, batmans[i].lastname, &batmans[i].runs); } for(int i = 0; i < 10; i++){ printf("%d. %c. %s: ", i+1, batmans[i].firstname[0], batmans[i].lastname); if(batmans[i].runs){ printf("%d\n", batmans[i].runs); } else { printf("Duck\n") ; } } return 0; }
the_stack_data/14187.c
// Check passing PowerPC ABI options to the backend. // RUN: %clang -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv1 %s // RUN: %clang -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv1 | FileCheck -check-prefix=CHECK-ELFv1 %s // RUN: %clang -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv2 | FileCheck -check-prefix=CHECK-ELFv2-BE %s // RUN: %clang -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv2 %s // RUN: %clang -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv1 | FileCheck -check-prefix=CHECK-ELFv1-LE %s // RUN: %clang -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv2 | FileCheck -check-prefix=CHECK-ELFv2 %s // RUN: %clang -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=altivec | FileCheck -check-prefix=CHECK-ELFv2 %s // RUN: %clang -target powerpc64-unknown-freebsd11 %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv1 %s // RUN: %clang -target powerpc64-unknown-freebsd12 %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv1 %s // RUN: %clang -target powerpc64-unknown-freebsd13 %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv2-BE %s // RUN: %clang -target powerpc64-unknown-freebsd14 %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv2-BE %s // RUN: %clang -target powerpc64le-unknown-freebsd13 %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv2 %s // RUN: %clang -target powerpc64-unknown-openbsd %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv2-BE-PIE %s // RUN: %clang -target powerpc64-linux-musl %s -### 2>&1 | FileCheck --check-prefix=CHECK-ELFv2-BE-PIE %s // CHECK-ELFv1: "-target-abi" "elfv1" // CHECK-ELFv1-LE: "-target-abi" "elfv1" // CHECK-ELFv2: "-target-abi" "elfv2" // CHECK-ELFv2-BE: "-target-abi" "elfv2" // CHECK-ELFv2-BE-PIE: "-mrelocation-model" "pic" "-pic-level" "2" "-pic-is-pie" // CHECK-ELFv2-BE-PIE: "-target-abi" "elfv2" // RUN: %clang -fPIC -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv1-PIC %s // RUN: %clang -fPIC -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv1 | FileCheck -check-prefix=CHECK-ELFv1-PIC %s // RUN: %clang -fPIC -target powerpc64-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv2 | FileCheck -check-prefix=CHECK-ELFv2-PIC %s // RUN: %clang -fPIC -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv2-PIC %s // RUN: %clang -fPIC -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv1 | FileCheck -check-prefix=CHECK-ELFv1-PIC %s // RUN: %clang -fPIC -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=elfv2 | FileCheck -check-prefix=CHECK-ELFv2-PIC %s // RUN: %clang -fPIC -target powerpc64le-unknown-linux-gnu %s -### -o %t.o 2>&1 \ // RUN: -mabi=altivec | FileCheck -check-prefix=CHECK-ELFv2-PIC %s // CHECK-ELFv1-PIC: "-mrelocation-model" "pic" "-pic-level" "2" // CHECK-ELFv1-PIC: "-target-abi" "elfv1" // CHECK-ELFv2-PIC: "-mrelocation-model" "pic" "-pic-level" "2" // CHECK-ELFv2-PIC: "-target-abi" "elfv2" // Check -mabi=ieeelongdouble is passed through but it does not change -target-abi. // RUN: %clang -target powerpc64le-linux-gnu %s -mabi=ieeelongdouble -mabi=elfv1 -### 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv1-IEEE %s // RUN: %clang -target powerpc64le-linux-gnu %s -mabi=elfv1 -mabi=ieeelongdouble -### 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv1-IEEE %s // RUN: %clang -target powerpc64le-linux-gnu %s -mabi=elfv2 -mabi=elfv1 -mabi=ibmlongdouble -mabi=ieeelongdouble -### 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv1-IEEE %s // CHECK-ELFv1-IEEE: "-mabi=ieeelongdouble" // CHECK-ELFv1-IEEE: "-target-abi" "elfv1" // RUN: %clang -target powerpc64le-linux-gnu %s -mabi=ibmlongdouble -### 2>&1 \ // RUN: | FileCheck -check-prefix=CHECK-ELFv2-IBM128 %s // CHECK-ELFv2-IBM128-NOT: "-mabi=ieeelongdouble" // CHECK-ELFv2-IBM128: "-target-abi" "elfv2"
the_stack_data/58313.c
/* Fundamental RayPlus Type */ typedef struct { // Hitbox Info float height; float width; float x; float y; // Velocity (obtional) float velocity; }Node2D;
the_stack_data/125141143.c
#ifdef UMM_INFO /* ---------------------------------------------------------------------------- * One of the coolest things about this little library is that it's VERY * easy to get debug information about the memory heap by simply iterating * through all of the memory blocks. * * As you go through all the blocks, you can check to see if it's a free * block by looking at the high order bit of the next block index. You can * also see how big the block is by subtracting the next block index from * the current block number. * * The umm_info function does all of that and makes the results available * in the ummHeapInfo structure. * ---------------------------------------------------------------------------- */ UMM_HEAP_INFO ummHeapInfo; void *umm_info(umm_heap_t *heap, void *ptr, int force) { unsigned short int blockNo = 0; if ((!heap) || (!ptr)) { return 0; // Invalid parameters } /* Protect the critical section... */ UMM_CRITICAL_ENTRY(); /* * Clear out all of the entries in the ummHeapInfo structure before doing * any calculations.. */ memset( &ummHeapInfo, 0, sizeof( ummHeapInfo ) ); DBGLOG_FORCE( force, "+----------+-------+--------+--------+-------+--------+--------+\n" ); DBGLOG_FORCE( force, "|0x%016llx|B %5i|NB %5i|PB %5i|Z %5i|NF %5i|PF %5i|\n", (unsigned __int64)(&UMM_BLOCK(heap, blockNo)), blockNo, UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK, UMM_PBLOCK(heap, blockNo), (UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK )-blockNo, UMM_NFREE(heap, blockNo), UMM_PFREE(heap, blockNo) ); /* * Now loop through the block lists, and keep track of the number and size * of used and free blocks. The terminating condition is an nb pointer with * a value of zero... */ blockNo = UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK; while( UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK ) { unsigned __int64 curBlocks = (UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK )-blockNo; ++ummHeapInfo.totalEntries; ummHeapInfo.totalBlocks += (unsigned short)curBlocks; /* Is this a free block? */ if( UMM_NBLOCK(heap, blockNo) & UMM_FREELIST_MASK ) { ++ummHeapInfo.freeEntries; ummHeapInfo.freeBlocks += (unsigned short)curBlocks; if (ummHeapInfo.maxFreeContiguousBlocks < curBlocks) { ummHeapInfo.maxFreeContiguousBlocks = (unsigned short)curBlocks; } DBGLOG_FORCE( force, "|0x%016llx|B %5i|NB %5i|PB %5i|Z %5u|NF %5i|PF %5i|\n", (unsigned __int64)(&UMM_BLOCK(heap, blockNo)), blockNo, UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK, UMM_PBLOCK(heap, blockNo), (unsigned int)curBlocks, UMM_NFREE(heap, blockNo), UMM_PFREE(heap, blockNo) ); /* Does this block address match the ptr we may be trying to free? */ if( ptr == &UMM_BLOCK(heap, blockNo) ) { /* Release the critical section... */ UMM_CRITICAL_EXIT(); return( ptr ); } } else { ++ummHeapInfo.usedEntries; ummHeapInfo.usedBlocks += (unsigned short)curBlocks; DBGLOG_FORCE( force, "|0x%016llx|B %5i|NB %5i|PB %5i|Z %5u|\n", (unsigned __int64)(&UMM_BLOCK(heap, blockNo)), blockNo, UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK, UMM_PBLOCK(heap, blockNo), (unsigned int)curBlocks ); } blockNo = UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK; } /* * Update the accounting totals with information from the last block, the * rest must be free! */ { unsigned __int64 curBlocks = UMM_NUMBLOCKS(heap)-blockNo; ummHeapInfo.freeBlocks += (unsigned short)curBlocks; ummHeapInfo.totalBlocks += (unsigned short)curBlocks; if (ummHeapInfo.maxFreeContiguousBlocks < curBlocks) { ummHeapInfo.maxFreeContiguousBlocks = (unsigned short)curBlocks; } } DBGLOG_FORCE( force, "|0x%016llx|B %5i|NB %5i|PB %5i|Z %5i|NF %5i|PF %5i|\n", (unsigned __int64)(&UMM_BLOCK(heap, blockNo)), blockNo, UMM_NBLOCK(heap, blockNo) & UMM_BLOCKNO_MASK, UMM_PBLOCK(heap, blockNo), UMM_NUMBLOCKS(heap)-blockNo, UMM_NFREE(heap, blockNo), UMM_PFREE(heap, blockNo) ); DBGLOG_FORCE( force, "+----------+-------+--------+--------+-------+--------+--------+\n" ); DBGLOG_FORCE( force, "Total Entries %5i Used Entries %5i Free Entries %5i\n", ummHeapInfo.totalEntries, ummHeapInfo.usedEntries, ummHeapInfo.freeEntries ); DBGLOG_FORCE( force, "Total Blocks %5i Used Blocks %5i Free Blocks %5i\n", ummHeapInfo.totalBlocks, ummHeapInfo.usedBlocks, ummHeapInfo.freeBlocks ); DBGLOG_FORCE( force, "+--------------------------------------------------------------+\n" ); /* Release the critical section... */ UMM_CRITICAL_EXIT(); return 0; } /* ------------------------------------------------------------------------ */ unsigned __int64 umm_free_heap_size( umm_heap_t *heap ) { if (!heap) { return 0; } umm_info(heap, 0, 0); return (unsigned __int64)ummHeapInfo.freeBlocks * sizeof(umm_block_t); } /* ------------------------------------------------------------------------ */ #endif
the_stack_data/757254.c
#include<stdio.h> #include <stdlib.h> #include <time.h> typedef char TimeStr[24]; typedef char DayStr[5]; double CLOCKS_PER_MS = CLOCKS_PER_SEC / 1000.0; double nowms() { return (((double) clock()) / CLOCKS_PER_MS); //return ((double) clock() /); } double elap(const char *msg, double start, double stop) { double tmp = stop - start; printf ("%s elap = %9.2f\n", msg, tmp); } char * copyNext(char *dest, char *src, char delim) { while ((*src != 0) && (*src != delim)) { *dest = *src; dest++; src++; } *dest = 0; if (*src != 0) src++; return src; } double avg(double *nptr, int numCnt) { double total = 0.0; for (int ndx=0; ndx < numCnt; ndx++) { total += nptr[ndx]; } return total / numCnt; } int main() { double startRun = nowms(); FILE *ptr_file; char buf[1000]; char bbuf[50003]; ptr_file =fopen("2014.M1.csv","r"); if (!ptr_file) return 1; double startCount = nowms(); int bcnt = 0; int numRec = 0; while (1) { int numRead = fread(bbuf,1, 50000, ptr_file); if (numRead == 0) break; bbuf[numRead+1] = 0; char *ptr = (char *) &bbuf; for (; *ptr != 0; ptr++) { if (*ptr == '\n') numRec++; } bcnt++; } numRec--; // take one away for header. double stopCount = nowms(); int lca = numRec + 1; double startAlloc = nowms(); TimeStr *vtimes = (TimeStr *) malloc(sizeof(TimeStr) * lca); DayStr *vdays = (DayStr *) malloc(sizeof(DayStr) * lca); double *vopen = (double *) malloc(sizeof(double) * lca); double *vclose =(double *) malloc(sizeof(double) * lca); double *vhigh = (double *) malloc(sizeof(double) * lca); double *vlow = (double *) malloc(sizeof(double) * lca); int *vvolume = (int *) malloc(sizeof(int) * lca); double stopAlloc = nowms(); double startBuild = nowms(); fseek(ptr_file, 0, SEEK_SET); int lc = 0; char * tkn; char tkbuf[80]; fgets(buf,1000, ptr_file); // read first line while (fgets(buf,1000, ptr_file)!=NULL) { double tnum; tkn = (char *) &buf; tkn = copyNext(vtimes[lc], tkn, ','); // dateTime tkn = copyNext(vdays[lc], tkn, ','); // day tkn = copyNext(tkbuf, tkn, ','); // open vopen[lc] = atof((char *) &tkbuf); tkn = copyNext(tkbuf, tkn, ','); // close vclose[lc] = atof((char *) &tkbuf); tkn = copyNext(tkbuf, tkn, ','); // high vhigh[lc] = atof((char *) &tkbuf); tkn = copyNext(tkbuf, tkn, ','); // low vlow[lc] = atof((char *) &tkbuf); tkn = copyNext(tkbuf, tkn, ','); // volume vvolume[lc] = atol((char *) &tkbuf); lc++; } lc--; // one to high at end. double stopBuild = nowms(); double stopRun = stopBuild; double startAvg = nowms(); double tavg = avg(vclose, lc); double stopAvg = nowms(); double start100Avg = nowms(); for (int x=0; x<=100; x++) tavg = avg(vclose, lc); double stop100Avg = nowms(); double startCleanup = nowms(); free(vopen); free(vclose); free(vhigh); free(vlow); fclose(ptr_file); double stopCleanup = nowms(); elap("Read in 50K blocks", startCount, stopCount); printf("Read %d of 50k blocks\n", bcnt); printf("Read %d lines\n", numRec); elap("allocate vector array", startAlloc, stopAlloc); elap("build Recs", startBuild, stopBuild); printf("Read %d numRec\n", lc); elap("Total Load ", startRun, stopRun); elap("calc average", startAvg, stopAvg); double telap = stop100Avg - start100Avg; printf("calc average 100 times %11.2f each=%11.2f\n", telap, (telap / 100)); elap("cleanup", startCleanup, stopCleanup); return 0; }
the_stack_data/30951.c
/*P10.25 Program to convert integer and float values to strings using sprintf() function*/ #include<stdio.h> int main(void) { char str1[10]; char str2[10]; int x=1348; float y=234.56; sprintf(str1,"%d",x); sprintf(str2,"%.2f",y); printf("str1=%s, str2=%s\n",str1,str2); return 0; }
the_stack_data/211080481.c
// Check to make sure clang is somewhat picky about -g options. // rdar://10383444 // Linux. // RUN: %clang -### -c -g %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_GDB %s // RUN: %clang -### -c -g2 %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_GDB %s // RUN: %clang -### -c -g3 %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_GDB %s // RUN: %clang -### -c -ggdb %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_GDB %s // RUN: %clang -### -c -ggdb1 %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY -check-prefix=G_GDB %s // RUN: %clang -### -c -ggdb3 %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_GDB %s // RUN: %clang -### -c -glldb %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE -check-prefix=G_LLDB %s // RUN: %clang -### -c -gsce %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_SCE %s // RUN: %clang -### -c -gdbx %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_DBX %s // Android. // Android should always generate DWARF4. // RUN: %clang -### -c -g %s -target arm-linux-androideabi 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_DWARF4 %s // Darwin. // RUN: %clang -### -c -g %s -target x86_64-apple-darwin14 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF2 \ // RUN: -check-prefix=G_LLDB %s // RUN: %clang -### -c -g %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 \ // RUN: -check-prefix=G_LLDB %s // RUN: %clang -### -c -g2 %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g3 %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -ggdb %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 \ // RUN: -check-prefix=G_GDB %s // RUN: %clang -### -c -ggdb1 %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -ggdb3 %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target x86_64-apple-macosx10.11 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target x86_64-apple-macosx10.10 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -g %s -target armv7-apple-ios9.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target armv7-apple-ios8.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -g %s -target armv7k-apple-watchos 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target arm64-apple-tvos9.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target x86_64-apple-driverkit19.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE \ // RUN: -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -fsave-optimization-record %s \ // RUN: -target x86_64-apple-darwin 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -g -fsave-optimization-record %s \ // RUN: -target x86_64-apple-darwin 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE %s // FreeBSD. // RUN: %clang -### -c -g %s -target x86_64-pc-freebsd11.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_GDB \ // RUN: -check-prefix=G_DWARF2 %s // RUN: %clang -### -c -g %s -target x86_64-pc-freebsd12.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_GDB \ // RUN: -check-prefix=G_DWARF4 %s // Windows. // RUN: %clang -### -c -g %s -target x86_64-w64-windows-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_GDB %s // RUN: %clang -### -c -g %s -target x86_64-windows-msvc 2>&1 \ // RUN: | FileCheck -check-prefix=G_NOTUNING %s // RUN: %clang_cl -### -c -Z7 -target x86_64-windows-msvc -- %s 2>&1 \ // RUN: | FileCheck -check-prefix=G_NOTUNING %s // On the PS4/PS5, -g defaults to -gno-column-info, and we always generate the // arange section. // RUN: %clang -### -c %s -target x86_64-scei-ps4 2>&1 \ // RUN: | FileCheck -check-prefix=NOG_PS %s // RUN: %clang -### -c %s -target x86_64-sie-ps5 2>&1 \ // RUN: | FileCheck -check-prefix=NOG_PS %s /// PS4 will stay on v4 even if the generic default version changes. // RUN: %clang -### -c %s -g -target x86_64-scei-ps4 2>&1 \ // RUN: | FileCheck -check-prefixes=G_DWARF4,GARANGE,G_SCE,NOCI,FWD_TMPL_PARAMS %s // RUN: %clang -### -c %s -g -target x86_64-sie-ps5 2>&1 \ // RUN: | FileCheck -check-prefixes=G_DWARF5,GARANGE,G_SCE,NOCI,FWD_TMPL_PARAMS %s // RUN: %clang -### -c %s -g -gcolumn-info -target x86_64-scei-ps4 2>&1 \ // RUN: | FileCheck -check-prefix=CI %s // RUN: %clang -### -c %s -gsce -target x86_64-unknown-linux 2>&1 \ // RUN: | FileCheck -check-prefix=NOCI %s // On the AIX, -g defaults to -gdbx and limited debug info. // RUN: %clang -### -c -g %s -target powerpc-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_DBX %s // RUN: %clang -### -c -g %s -target powerpc64-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=G_LIMITED -check-prefix=G_DBX %s // For DBX, -g defaults to -gstrict-dwarf. // RUN: %clang -### -c -g %s -target powerpc-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=STRICT %s // RUN: %clang -### -c -g %s -target powerpc64-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=STRICT %s // RUN: %clang -### -c -g -gno-strict-dwarf %s -target powerpc-ibm-aix-xcoff \ // RUN: 2>&1 | FileCheck -check-prefix=NOSTRICT %s // RUN: %clang -### -c -g %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=NOSTRICT %s // RUN: %clang -### -c -g -ggdb %s -target powerpc-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=NOSTRICT %s // On the AIX, -g defaults to -gno-column-info. // RUN: %clang -### -c -g %s -target powerpc-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=NOCI %s // RUN: %clang -### -c -g %s -target powerpc64-ibm-aix-xcoff 2>&1 \ // RUN: | FileCheck -check-prefix=NOCI %s // RUN: %clang -### -c -g %s -target powerpc-ibm-aix-xcoff -gcolumn-info 2>&1 \ // RUN: | FileCheck -check-prefix=CI %s // RUN: %clang -### -c -g %s -target powerpc64-ibm-aix-xcoff -gcolumn-info \ // RUN: 2>&1 | FileCheck -check-prefix=CI %s // WebAssembly. // WebAssembly should default to DWARF4. // RUN: %clang -### -c -g %s -target wasm32 2>&1 \ // RUN: | FileCheck -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -g %s -target wasm64 2>&1 \ // RUN: | FileCheck -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -gdwarf-2 %s 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // // RUN: not %clang -### -c -gfoo %s 2>&1 | FileCheck -check-prefix=G_ERR %s // RUN: %clang -### -c -g -g0 %s 2>&1 | FileCheck -check-prefix=G_NO %s // RUN: %clang -### -c -ggdb0 %s 2>&1 | FileCheck -check-prefix=G_NO %s // RUN: %clang -### -c -glldb -g0 %s 2>&1 | FileCheck -check-prefix=G_NO %s // RUN: %clang -### -c -glldb -g1 %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY -check-prefix=G_LLDB %s // // PS4 defaults to sce; -ggdb0 changes tuning but turns off debug info, // then -g turns it back on without affecting tuning. // RUN: %clang -### -c -ggdb0 -g -target x86_64-scei-ps4 %s 2>&1 \ // RUN: | FileCheck -check-prefix=G_GDB %s // // RUN: %clang -### -c -g1 %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -gmlt %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -gline-tables-only %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -gline-tables-only %s -target x86_64-apple-darwin 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // RUN: %clang -### -c -gline-tables-only %s -target i686-pc-openbsd 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-tables-only %s -target x86_64-pc-freebsd10.0 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-tables-only -g %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY %s // RUN: %clang -### -c -gline-tables-only -g %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -gline-tables-only -g %s -target i686-pc-openbsd 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-tables-only -g %s -target x86_64-pc-freebsd10.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-tables-only -g %s -target i386-pc-solaris 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-tables-only -g0 %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_NO %s // // RUN: %clang -### -c -gline-directives-only %s -target x86_64-apple-darwin 2>&1 \ // RUN: | FileCheck -check-prefix=GLIO_ONLY %s // RUN: %clang -### -c -gline-directives-only %s -target i686-pc-openbsd 2>&1 \ // RUN: | FileCheck -check-prefix=GLIO_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-directives-only %s -target x86_64-pc-freebsd10.0 2>&1 \ // RUN: | FileCheck -check-prefix=GLIO_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-directives-only -g %s -target x86_64-linux-gnu 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY %s // RUN: %clang -### -c -gline-directives-only -g %s -target x86_64-apple-darwin16 2>&1 \ // RUN: | FileCheck -check-prefix=G_STANDALONE -check-prefix=G_DWARF4 %s // RUN: %clang -### -c -gline-directives-only -g %s -target i686-pc-openbsd 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-directives-only -g %s -target x86_64-pc-freebsd10.0 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-directives-only -g %s -target i386-pc-solaris 2>&1 \ // RUN: | FileCheck -check-prefix=G_ONLY_DWARF2 %s // RUN: %clang -### -c -gline-directives-only -g0 %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLIO_NO %s // // RUN: %clang -### -c -grecord-gcc-switches %s 2>&1 \ // | FileCheck -check-prefix=GRECORD %s // RUN: %clang -### -c -gno-record-gcc-switches %s 2>&1 \ // | FileCheck -check-prefix=GNO_RECORD %s // RUN: %clang -### -c -grecord-gcc-switches -gno-record-gcc-switches %s 2>&1 \ // | FileCheck -check-prefix=GNO_RECORD %s/ // RUN: %clang -### -c -grecord-gcc-switches -o - %s 2>&1 \ // | FileCheck -check-prefix=GRECORD_O %s // RUN: %clang -### -c -O3 -ffunction-sections -grecord-gcc-switches %s 2>&1 \ // | FileCheck -check-prefix=GRECORD_OPT %s // // RUN: %clang -### -c -grecord-command-line %s 2>&1 \ // | FileCheck -check-prefix=GRECORD %s // RUN: %clang -### -c -gno-record-command-line %s 2>&1 \ // | FileCheck -check-prefix=GNO_RECORD %s // RUN: %clang -### -c -grecord-command-line -gno-record-command-line %s 2>&1 \ // | FileCheck -check-prefix=GNO_RECORD %s/ // RUN: %clang -### -c -grecord-command-line -o - %s 2>&1 \ // | FileCheck -check-prefix=GRECORD_O %s // RUN: %clang -### -c -O3 -ffunction-sections -grecord-command-line %s 2>&1 \ // | FileCheck -check-prefix=GRECORD_OPT %s // // RUN: %clang -### -c -gstrict-dwarf -gno-strict-dwarf %s 2>&1 \ // RUN: | FileCheck -check-prefix=GIGNORE %s // // RUN: %clang -### -c -ggnu-pubnames %s 2>&1 | FileCheck -check-prefix=GPUB %s // RUN: %clang -### -c -ggdb %s 2>&1 | FileCheck -check-prefix=NOPUB %s // RUN: %clang -### -c -ggnu-pubnames -gno-gnu-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // RUN: %clang -### -c -ggnu-pubnames -gno-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // // RUN: %clang -### -c -gpubnames %s 2>&1 | FileCheck -check-prefix=PUB %s // RUN: %clang -### -c -ggdb %s 2>&1 | FileCheck -check-prefix=NOPUB %s // RUN: %clang -### -c -gpubnames -gno-gnu-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // RUN: %clang -### -c -gpubnames -gno-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // // RUN: %clang -### -c -gsplit-dwarf -g -gno-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // // RUN: %clang -### -c -fdebug-ranges-base-address %s 2>&1 | FileCheck -check-prefix=RNGBSE %s // RUN: %clang -### -c %s 2>&1 | FileCheck -check-prefix=NORNGBSE %s // RUN: %clang -### -c -fdebug-ranges-base-address -fno-debug-ranges-base-address %s 2>&1 | FileCheck -check-prefix=NORNGBSE %s // // RUN: %clang -### -c -glldb %s 2>&1 | FileCheck -check-prefix=NOPUB %s // RUN: %clang -### -c -glldb -gno-pubnames %s 2>&1 | FileCheck -check-prefix=NOPUB %s // // RUN: %clang -### -c -gdwarf-aranges %s 2>&1 | FileCheck -check-prefix=GARANGE %s // // RUN: %clang -### -fdebug-types-section -target x86_64-unknown-linux %s 2>&1 \ // RUN: | FileCheck -check-prefix=FDTS %s // // RUN: %clang -### -fdebug-types-section -fno-debug-types-section -target x86_64-unknown-linux %s 2>&1 \ // RUN: | FileCheck -check-prefix=NOFDTS %s // // RUN: %clang -### -fdebug-types-section -target wasm32-unknown-unknown %s 2>&1 \ // RUN: | FileCheck -check-prefix=FDTS %s // // RUN: %clang -### -fdebug-types-section -target x86_64-apple-darwin %s 2>&1 \ // RUN: | FileCheck -check-prefix=FDTSE %s // // RUN: %clang -### -fdebug-types-section -fno-debug-types-section -target x86_64-apple-darwin %s 2>&1 \ // RUN: | FileCheck -check-prefix=NOFDTSE %s // // RUN: %clang -### -g -gno-column-info %s 2>&1 \ // RUN: | FileCheck -check-prefix=NOCI %s // // RUN: %clang -### -g -target x86_64-unknown-unknown %s 2>&1 \ // | FileCheck -check-prefix=CI %s // // RUN: %clang -### -gmodules %s 2>&1 \ // RUN: | FileCheck -check-prefix=GEXTREFS %s // // RUN: %clang -### -gmodules -g %s 2>&1 \ // RUN: | FileCheck -check-prefix=GEXTREFS %s // // RUN: %clang -### -gline-tables-only -gmodules %s 2>&1 \ // RUN: | FileCheck -check-prefix=GEXTREFS %s // // RUN: %clang -### -gmodules -gline-tables-only %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLTO_ONLY %s // // RUN: %clang -### -target %itanium_abi_triple -gmodules -gline-directives-only %s 2>&1 \ // RUN: | FileCheck -check-prefix=GLIO_ONLY %s // // NOG_PS: "-cc1" // NOG_PS-NOT: "-dwarf-version= // NOG_PS: "-generate-arange-section" // NOG_PS-NOT: "-dwarf-version= // // G_ERR: error: unknown argument: // // G_NO: "-cc1" // G_NO-NOT: -debug-info-kind= // // GLTO_ONLY: "-cc1" // GLTO_ONLY-NOT: "-dwarf-ext-refs" // GLTO_ONLY: "-debug-info-kind=line-tables-only" // GLTO_ONLY-NOT: "-dwarf-ext-refs" // // GLTO_ONLY_DWARF2: "-cc1" // GLTO_ONLY_DWARF2: "-debug-info-kind=line-tables-only" // GLTO_ONLY_DWARF2: "-dwarf-version=2" // // GLIO_ONLY: "-cc1" // GLIO_ONLY-NOT: "-dwarf-ext-refs" // GLIO_ONLY: "-debug-info-kind=line-directives-only" // GLIO_ONLY-NOT: "-dwarf-ext-refs" // // GLIO_ONLY_DWARF2: "-cc1" // GLIO_ONLY_DWARF2: "-debug-info-kind=line-directives-only" // GLIO_ONLY_DWARF2: "-dwarf-version=2" // // G_ONLY: "-cc1" // G_ONLY: "-debug-info-kind=constructor" // // These tests assert that "-gline-tables-only" "-g" uses the latter, // but otherwise not caring about the DebugInfoKind. // G_ONLY_DWARF2: "-cc1" // G_ONLY_DWARF2: "-debug-info-kind={{standalone|constructor}}" // G_ONLY_DWARF2: "-dwarf-version=2" // // G_STANDALONE: "-cc1" // G_STANDALONE: "-debug-info-kind=standalone" // G_LIMITED: "-cc1" // G_LIMITED: "-debug-info-kind=constructor" // G_DWARF2: "-dwarf-version=2" // G_DWARF4-DAG: "-dwarf-version=4" // G_DWARF5-DAG: "-dwarf-version=5" // // G_GDB: "-debugger-tuning=gdb" // G_LLDB: "-debugger-tuning=lldb" // G_SCE-DAG: "-debugger-tuning=sce" // G_DBX: "-debugger-tuning=dbx" // // STRICT: "-gstrict-dwarf" // NOSTRICT-NOT: "-gstrict-dwarf" // // G_NOTUNING: "-cc1" // G_NOTUNING-NOT: "-debugger-tuning=" // // This tests asserts that "-gline-tables-only" "-g0" disables debug info. // GLTO_NO: "-cc1" // GLTO_NO-NOT: -debug-info-kind= // // This tests asserts that "-gline-directives-only" "-g0" disables debug info. // GLIO_NO: "-cc1" // GLIO_NO-NOT: -debug-info-kind= // // GRECORD: "-dwarf-debug-flags" // GRECORD: -### -c -grecord-gcc-switches // // GNO_RECORD-NOT: "-dwarf-debug-flags" // GNO_RECORD-NOT: -### -c -grecord-gcc-switches // // GRECORD_O: "-dwarf-debug-flags" // GRECORD_O: -### -c -grecord-gcc-switches -o - // // GRECORD_OPT: -### -c -O3 -ffunction-sections -grecord-gcc-switches // // GIGNORE-NOT: "argument unused during compilation" // // GPUB: -ggnu-pubnames // NOPUB-NOT: -ggnu-pubnames // NOPUB-NOT: -gpubnames // // PUB: -gpubnames // // RNGBSE: -fdebug-ranges-base-address // NORNGBSE-NOT: -fdebug-ranges-base-address // // GARANGE-DAG: -generate-arange-section // // FDTS: "-mllvm" "-generate-type-units" // FDTSE: error: unsupported option '-fdebug-types-section' for target 'x86_64-apple-darwin' // // NOFDTS-NOT: "-mllvm" "-generate-type-units" // NOFDTSE-NOT: error: unsupported option '-fdebug-types-section' for target 'x86_64-apple-darwin' // // CI-NOT: "-gno-column-info" // // NOCI-DAG: "-gno-column-info" // // GEXTREFS: "-dwarf-ext-refs" "-fmodule-format=obj" // GEXTREFS: "-debug-info-kind={{standalone|constructor}}" // RUN: not %clang -cc1 -debug-info-kind=watkind 2>&1 | FileCheck -check-prefix=BADSTRING1 %s // BADSTRING1: error: invalid value 'watkind' in '-debug-info-kind=watkind' // RUN: not %clang -cc1 -debugger-tuning=gmodal 2>&1 | FileCheck -check-prefix=BADSTRING2 %s // BADSTRING2: error: invalid value 'gmodal' in '-debugger-tuning=gmodal' // RUN: %clang -### -fdebug-macro %s 2>&1 | FileCheck -check-prefix=MACRO %s // RUN: %clang -### -fno-debug-macro %s 2>&1 | FileCheck -check-prefix=NOMACRO %s // RUN: %clang -### %s 2>&1 | FileCheck -check-prefix=NOMACRO %s // MACRO: "-debug-info-macro" // NOMACRO-NOT: "-debug-info-macro" // // RUN: %clang -### -gdwarf-5 -gembed-source %s 2>&1 | FileCheck -check-prefix=GEMBED_5 %s // RUN: %clang -### -gdwarf-2 -gembed-source %s 2>&1 | FileCheck -check-prefix=GEMBED_2 %s // RUN: %clang -### -gdwarf-5 -gno-embed-source %s 2>&1 | FileCheck -check-prefix=NOGEMBED_5 %s // RUN: %clang -### -gdwarf-2 -gno-embed-source %s 2>&1 | FileCheck -check-prefix=NOGEMBED_2 %s // // GEMBED_5: "-gembed-source" // GEMBED_2: error: invalid argument '-gembed-source' only allowed with '-gdwarf-5' // NOGEMBED_5-NOT: "-gembed-source" // NOGEMBED_2-NOT: error: invalid argument '-gembed-source' only allowed with '-gdwarf-5' // // RUN: %clang -### -g -fno-eliminate-unused-debug-types -c %s 2>&1 \ // RUN: | FileCheck -check-prefix=DEBUG_UNUSED_TYPES %s // DEBUG_UNUSED_TYPES: "-debug-info-kind=unused-types" // DEBUG_UNUSED_TYPES-NOT: "-debug-info-kind=limited" // RUN: %clang -### -g -feliminate-unused-debug-types -c %s 2>&1 \ // RUN: | FileCheck -check-prefix=NO_DEBUG_UNUSED_TYPES %s // RUN: %clang -### -fno-eliminate-unused-debug-types -g1 -c %s 2>&1 \ // RUN: | FileCheck -check-prefix=NO_DEBUG_UNUSED_TYPES %s // NO_DEBUG_UNUSED_TYPES: "-debug-info-kind={{constructor|line-tables-only|standalone}}" // NO_DEBUG_UNUSED_TYPES-NOT: "-debug-info-kind=unused-types" // // RUN: %clang -### -c -gdwarf-5 -gdwarf64 -target x86_64 %s 2>&1 | FileCheck -check-prefix=GDWARF64_ON %s // RUN: %clang -### -c -gdwarf-4 -gdwarf64 -target x86_64 %s 2>&1 | FileCheck -check-prefix=GDWARF64_ON %s // RUN: %clang -### -c -gdwarf-3 -gdwarf64 -target x86_64 %s 2>&1 | FileCheck -check-prefix=GDWARF64_ON %s // RUN: %clang -### -c -gdwarf-2 -gdwarf64 -target x86_64 %s 2>&1 | FileCheck -check-prefix=GDWARF64_VER %s // RUN: %clang -### -c -gdwarf-4 -gdwarf64 -target x86_64 -target x86_64 %s 2>&1 \ // RUN: | FileCheck -check-prefix=GDWARF64_ON %s // RUN: %clang -### -c -gdwarf-4 -gdwarf64 -target i386-linux-gnu %s 2>&1 \ // RUN: | FileCheck -check-prefix=GDWARF64_32ARCH %s // RUN: %clang -### -c -gdwarf-4 -gdwarf64 -target x86_64-apple-darwin %s 2>&1 \ // RUN: | FileCheck -check-prefix=GDWARF64_ELF %s // // GDWARF64_ON: "-gdwarf64" // GDWARF64_VER: error: invalid argument '-gdwarf64' only allowed with 'DWARFv3 or greater' // GDWARF64_32ARCH: error: invalid argument '-gdwarf64' only allowed with '64 bit architecture' // GDWARF64_ELF: error: invalid argument '-gdwarf64' only allowed with 'ELF platforms' /// Default to -fno-dwarf-directory-asm for -fno-integrated-as before DWARF v5. // RUN: %clang -### -target x86_64 -c -gdwarf-2 %s 2>&1 | FileCheck --check-prefix=DIRECTORY %s // RUN: %clang -### -target x86_64 -c -gdwarf-5 %s 2>&1 | FileCheck --check-prefix=DIRECTORY %s // RUN: %clang -### -target x86_64 -c -gdwarf-4 -fno-integrated-as %s 2>&1 | FileCheck --check-prefix=NODIRECTORY %s // RUN: %clang -### -target x86_64 -c -gdwarf-5 -fno-integrated-as %s 2>&1 | FileCheck --check-prefix=DIRECTORY %s // RUN: %clang -### -target x86_64 -c -gdwarf-4 -fno-dwarf-directory-asm %s 2>&1 | FileCheck --check-prefix=NODIRECTORY %s // DIRECTORY-NOT: "-fno-dwarf-directory-asm" // NODIRECTORY: "-fno-dwarf-directory-asm" // RUN: %clang -### -target x86_64 -c -g -gsimple-template-names %s 2>&1 | FileCheck --check-prefixes=SIMPLE_TMPL_NAMES,FWD_TMPL_PARAMS %s // SIMPLE_TMPL_NAMES: -gsimple-template-names=simple // FWD_TMPL_PARAMS-DAG: -debug-forward-template-params // RUN: not %clang -### -target x86_64 -c -g -gsimple-template-names=mangled %s 2>&1 | FileCheck --check-prefix=MANGLED_TEMP_NAMES %s // MANGLED_TEMP_NAMES: error: unknown argument: '-gsimple-template-names=mangled' // RUN: %clang -### -target x86_64 -c -g %s 2>&1 | FileCheck --check-prefix=FULL_TEMP_NAMES --implicit-check-not=debug-forward-template-params %s // FULL_TEMP_NAMES-NOT: -gsimple-template-names
the_stack_data/154830645.c
//Write a C program for an array of record contains information of managers and workers of a company. //Print all the data of managers and workers in separate file. #include <stdio.h> #include <stdlib.h> void m_input(int m) //manager data input { FILE *fptr; int i, empno; float bpay, allow, ded; char name[10]; fptr = fopen("manager.txt", "w"); for(i = 0; i < m; i++) { printf("\nEnter the manager number : "); scanf("%d", &empno); printf("\nEnter the name : "); scanf("%s", name); printf("\nEnter the basic pay, allowances & deductions : "); scanf("%f %f %f", &bpay, &allow, &ded); fprintf(fptr, "%d %s %f %f %f \n", empno,name,bpay,allow,ded); } fclose(fptr); } void w_input(int w) //workers data input { FILE *fptr; int i, empno; float bpay, allow, ded; char name[10]; fptr = fopen("workers.txt", "w"); for(i = 0; i < w; i++) { printf("\nEnter the worker number : "); scanf("%d", &empno); printf("\nEnter the name : "); scanf("%s", name); printf("\nEnter the basic pay, allowances & deductions : "); scanf("%f %f %f", &bpay, &allow, &ded); fprintf(fptr, "%d %s %f %f %f \n", empno,name,bpay,allow,ded); } fclose(fptr); } void m_print(int m) //print manager input { FILE *fptr; int i, empno; float bpay, allow, ded; char name[10]; fptr = fopen("manager.txt", "r"); printf("\nmanager No.\tName\t Bpay\t\t Allow\t\t Ded\t\t Npay\n\n"); for(i = 0; i < m; i++) { fscanf(fptr,"%d%s%f%f%f\n", &empno,name,&bpay,&allow,&ded); printf("%d \t\t %s \t %.2f \t %.2f \t %.2f \t %.2f \n", empno, name, bpay, allow, ded, bpay + allow - ded); } fclose(fptr); } void w_print(int w) //print worker input { FILE *fptr; int i, empno; float bpay, allow, ded; char name[10]; fptr = fopen("workers.txt", "r"); printf("\nworker No.\tName\t Bpay\t\t Allow\t\t Ded\t\t Npay\n\n"); for(i = 0; i < w; i++) { fscanf(fptr,"%d%s%f%f%f\n", &empno,name,&bpay,&allow,&ded); printf("%d \t\t %s \t %.2f \t %.2f \t %.2f \t %.2f \n", empno, name, bpay, allow, ded, bpay + allow - ded); } fclose(fptr); } int main() { int ch,ans,a,m,w; do { printf("---------------------MENU---------------------"); printf("\n To enter a record of: "); printf("\n 1. Manager"); printf("\n 2. Worker"); printf("\n Choose between 1 and 2. Else press any key to exit. \n Enter your choice: "); scanf("%d",&ch); switch(ch) { case 1 : printf("\nEnter the number of managers : "); scanf("%d", &m); m_input(m); break; case 2 : printf("\nEnter the number of workers : "); scanf("%d", &w); w_input(w); break; default: printf("\n Enter a valid input."); break; } printf("\nTo enter another record press 1 or to exit press 0."); printf("\nEnter your choice : "); scanf("%d",&ans); }while(ans == 1); do { printf("---------------------MENU---------------------"); printf("\n To print the record of: "); printf("\n 1. Manager"); printf("\n 2. Worker"); printf("\n Choose between 1 and 2. Else press any key to exit. \n Enter your choice: "); scanf("%d",&ch); switch(ch) { case 1 : m_print(m); break; case 2 : w_print(w); break; default: printf("\n Enter a valid input."); break; } printf("\nTo continue press 1 else press 0 to exit."); printf("\nEnter your choice : "); scanf("%d",&a); }while(a == 1); return 0; }
the_stack_data/93887511.c
//@ ltl invariant negative: (<> (AP(x_6 - x_11 >= -4) R (X AP(x_3 - x_20 > -18)))); float x_0; float x_1; float x_2; float x_3; float x_4; float x_5; float x_6; float x_7; float x_8; float x_9; float x_10; float x_11; float x_12; float x_13; float x_14; float x_15; float x_16; float x_17; float x_18; float x_19; float x_20; float x_21; float x_22; float x_23; float x_24; float x_25; float x_26; float x_27; float x_28; float x_29; float x_30; float x_31; int main() { float x_0_; float x_1_; float x_2_; float x_3_; float x_4_; float x_5_; float x_6_; float x_7_; float x_8_; float x_9_; float x_10_; float x_11_; float x_12_; float x_13_; float x_14_; float x_15_; float x_16_; float x_17_; float x_18_; float x_19_; float x_20_; float x_21_; float x_22_; float x_23_; float x_24_; float x_25_; float x_26_; float x_27_; float x_28_; float x_29_; float x_30_; float x_31_; while(1) { x_0_ = (((((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) > ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))? ((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) : ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))) > (((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) > ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13))? ((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) : ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13)))? (((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) > ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))? ((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) : ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))) : (((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) > ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13))? ((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) : ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13)))) > ((((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) > ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))? ((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) : ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))) > (((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) > ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))? ((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) : ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29)))? (((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) > ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))? ((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) : ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))) : (((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) > ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))? ((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) : ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))))? ((((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) > ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))? ((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) : ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))) > (((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) > ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13))? ((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) : ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13)))? (((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) > ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))? ((15.0 + x_0) > (9.0 + x_1)? (15.0 + x_0) : (9.0 + x_1)) : ((20.0 + x_2) > (7.0 + x_4)? (20.0 + x_2) : (7.0 + x_4))) : (((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) > ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13))? ((10.0 + x_6) > (9.0 + x_9)? (10.0 + x_6) : (9.0 + x_9)) : ((10.0 + x_12) > (10.0 + x_13)? (10.0 + x_12) : (10.0 + x_13)))) : ((((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) > ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))? ((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) : ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))) > (((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) > ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))? ((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) : ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29)))? (((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) > ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))? ((8.0 + x_14) > (8.0 + x_20)? (8.0 + x_14) : (8.0 + x_20)) : ((11.0 + x_23) > (18.0 + x_24)? (11.0 + x_23) : (18.0 + x_24))) : (((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) > ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))? ((12.0 + x_26) > (4.0 + x_27)? (12.0 + x_26) : (4.0 + x_27)) : ((20.0 + x_28) > (15.0 + x_29)? (20.0 + x_28) : (15.0 + x_29))))); x_1_ = (((((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) > ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))? ((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) : ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))) > (((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) > ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16))? ((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) : ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16)))? (((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) > ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))? ((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) : ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))) : (((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) > ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16))? ((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) : ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16)))) > ((((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) > ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))? ((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) : ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))) > (((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) > ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))? ((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) : ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31)))? (((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) > ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))? ((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) : ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))) : (((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) > ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))? ((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) : ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))))? ((((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) > ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))? ((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) : ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))) > (((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) > ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16))? ((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) : ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16)))? (((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) > ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))? ((20.0 + x_0) > (6.0 + x_3)? (20.0 + x_0) : (6.0 + x_3)) : ((13.0 + x_5) > (11.0 + x_6)? (13.0 + x_5) : (11.0 + x_6))) : (((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) > ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16))? ((8.0 + x_9) > (10.0 + x_10)? (8.0 + x_9) : (10.0 + x_10)) : ((5.0 + x_13) > (9.0 + x_16)? (5.0 + x_13) : (9.0 + x_16)))) : ((((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) > ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))? ((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) : ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))) > (((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) > ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))? ((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) : ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31)))? (((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) > ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))? ((7.0 + x_19) > (14.0 + x_22)? (7.0 + x_19) : (14.0 + x_22)) : ((18.0 + x_23) > (6.0 + x_27)? (18.0 + x_23) : (6.0 + x_27))) : (((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) > ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))? ((10.0 + x_28) > (16.0 + x_29)? (10.0 + x_28) : (16.0 + x_29)) : ((8.0 + x_30) > (10.0 + x_31)? (8.0 + x_30) : (10.0 + x_31))))); x_2_ = (((((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))? ((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))) > (((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) > ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13))? ((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) : ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13)))? (((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))? ((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))) : (((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) > ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13))? ((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) : ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13)))) > ((((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) > ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))? ((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) : ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))) > (((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31)))? (((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) > ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))? ((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) : ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))) : (((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))))? ((((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))? ((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))) > (((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) > ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13))? ((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) : ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13)))? (((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))? ((9.0 + x_0) > (17.0 + x_1)? (9.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (15.0 + x_7)? (6.0 + x_3) : (15.0 + x_7))) : (((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) > ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13))? ((8.0 + x_9) > (10.0 + x_11)? (8.0 + x_9) : (10.0 + x_11)) : ((4.0 + x_12) > (2.0 + x_13)? (4.0 + x_12) : (2.0 + x_13)))) : ((((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) > ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))? ((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) : ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))) > (((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31)))? (((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) > ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))? ((10.0 + x_16) > (11.0 + x_17)? (10.0 + x_16) : (11.0 + x_17)) : ((5.0 + x_19) > (9.0 + x_21)? (5.0 + x_19) : (9.0 + x_21))) : (((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((3.0 + x_25) > (5.0 + x_28)? (3.0 + x_25) : (5.0 + x_28)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))))); x_3_ = (((((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) > ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))? ((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) : ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))) > (((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) > ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12))? ((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) : ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12)))? (((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) > ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))? ((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) : ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))) : (((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) > ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12))? ((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) : ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12)))) > ((((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) > ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))? ((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) : ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))) > (((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) > ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))? ((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) : ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31)))? (((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) > ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))? ((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) : ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))) : (((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) > ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))? ((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) : ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))))? ((((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) > ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))? ((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) : ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))) > (((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) > ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12))? ((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) : ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12)))? (((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) > ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))? ((4.0 + x_0) > (12.0 + x_2)? (4.0 + x_0) : (12.0 + x_2)) : ((19.0 + x_5) > (11.0 + x_7)? (19.0 + x_5) : (11.0 + x_7))) : (((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) > ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12))? ((16.0 + x_9) > (15.0 + x_10)? (16.0 + x_9) : (15.0 + x_10)) : ((19.0 + x_11) > (11.0 + x_12)? (19.0 + x_11) : (11.0 + x_12)))) : ((((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) > ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))? ((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) : ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))) > (((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) > ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))? ((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) : ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31)))? (((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) > ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))? ((19.0 + x_13) > (18.0 + x_14)? (19.0 + x_13) : (18.0 + x_14)) : ((4.0 + x_17) > (17.0 + x_21)? (4.0 + x_17) : (17.0 + x_21))) : (((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) > ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))? ((3.0 + x_27) > (12.0 + x_28)? (3.0 + x_27) : (12.0 + x_28)) : ((18.0 + x_30) > (19.0 + x_31)? (18.0 + x_30) : (19.0 + x_31))))); x_4_ = (((((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) > ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))? ((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) : ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))) > (((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) > ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16))? ((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) : ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16)))? (((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) > ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))? ((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) : ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))) : (((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) > ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16))? ((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) : ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16)))) > ((((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) > ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))? ((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) : ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))) > (((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) > ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))? ((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) : ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31)))? (((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) > ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))? ((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) : ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))) : (((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) > ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))? ((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) : ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))))? ((((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) > ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))? ((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) : ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))) > (((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) > ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16))? ((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) : ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16)))? (((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) > ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))? ((8.0 + x_2) > (19.0 + x_3)? (8.0 + x_2) : (19.0 + x_3)) : ((9.0 + x_4) > (11.0 + x_8)? (9.0 + x_4) : (11.0 + x_8))) : (((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) > ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16))? ((9.0 + x_9) > (20.0 + x_10)? (9.0 + x_9) : (20.0 + x_10)) : ((19.0 + x_13) > (4.0 + x_16)? (19.0 + x_13) : (4.0 + x_16)))) : ((((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) > ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))? ((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) : ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))) > (((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) > ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))? ((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) : ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31)))? (((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) > ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))? ((14.0 + x_17) > (1.0 + x_20)? (14.0 + x_17) : (1.0 + x_20)) : ((11.0 + x_21) > (14.0 + x_23)? (11.0 + x_21) : (14.0 + x_23))) : (((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) > ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))? ((5.0 + x_25) > (10.0 + x_26)? (5.0 + x_25) : (10.0 + x_26)) : ((3.0 + x_30) > (5.0 + x_31)? (3.0 + x_30) : (5.0 + x_31))))); x_5_ = (((((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) > ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))? ((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) : ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))) > (((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) > ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15))? ((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) : ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15)))? (((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) > ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))? ((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) : ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))) : (((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) > ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15))? ((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) : ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15)))) > ((((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) > ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))? ((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) : ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))) > (((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31)))? (((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) > ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))? ((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) : ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))) : (((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))))? ((((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) > ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))? ((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) : ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))) > (((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) > ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15))? ((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) : ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15)))? (((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) > ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))? ((20.0 + x_1) > (9.0 + x_3)? (20.0 + x_1) : (9.0 + x_3)) : ((19.0 + x_5) > (3.0 + x_7)? (19.0 + x_5) : (3.0 + x_7))) : (((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) > ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15))? ((5.0 + x_12) > (20.0 + x_13)? (5.0 + x_12) : (20.0 + x_13)) : ((8.0 + x_14) > (10.0 + x_15)? (8.0 + x_14) : (10.0 + x_15)))) : ((((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) > ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))? ((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) : ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))) > (((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31)))? (((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) > ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))? ((13.0 + x_20) > (3.0 + x_22)? (13.0 + x_20) : (3.0 + x_22)) : ((8.0 + x_25) > (15.0 + x_27)? (8.0 + x_25) : (15.0 + x_27))) : (((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) > ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))? ((20.0 + x_28) > (16.0 + x_29)? (20.0 + x_28) : (16.0 + x_29)) : ((9.0 + x_30) > (16.0 + x_31)? (9.0 + x_30) : (16.0 + x_31))))); x_6_ = (((((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) > ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))? ((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) : ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))) > (((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) > ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16))? ((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) : ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16)))? (((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) > ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))? ((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) : ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))) : (((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) > ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16))? ((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) : ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16)))) > ((((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) > ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))? ((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) : ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))) > (((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) > ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))? ((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) : ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30)))? (((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) > ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))? ((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) : ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))) : (((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) > ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))? ((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) : ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))))? ((((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) > ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))? ((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) : ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))) > (((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) > ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16))? ((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) : ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16)))? (((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) > ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))? ((8.0 + x_0) > (17.0 + x_2)? (8.0 + x_0) : (17.0 + x_2)) : ((12.0 + x_6) > (3.0 + x_8)? (12.0 + x_6) : (3.0 + x_8))) : (((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) > ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16))? ((7.0 + x_11) > (19.0 + x_13)? (7.0 + x_11) : (19.0 + x_13)) : ((4.0 + x_15) > (13.0 + x_16)? (4.0 + x_15) : (13.0 + x_16)))) : ((((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) > ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))? ((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) : ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))) > (((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) > ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))? ((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) : ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30)))? (((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) > ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))? ((16.0 + x_17) > (9.0 + x_22)? (16.0 + x_17) : (9.0 + x_22)) : ((8.0 + x_23) > (4.0 + x_24)? (8.0 + x_23) : (4.0 + x_24))) : (((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) > ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))? ((9.0 + x_26) > (17.0 + x_27)? (9.0 + x_26) : (17.0 + x_27)) : ((7.0 + x_28) > (12.0 + x_30)? (7.0 + x_28) : (12.0 + x_30))))); x_7_ = (((((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) > ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))? ((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) : ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))) > (((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) > ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17))? ((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) : ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17)))? (((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) > ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))? ((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) : ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))) : (((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) > ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17))? ((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) : ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17)))) > ((((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) > ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))? ((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) : ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))) > (((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) > ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))? ((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) : ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31)))? (((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) > ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))? ((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) : ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))) : (((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) > ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))? ((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) : ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))))? ((((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) > ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))? ((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) : ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))) > (((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) > ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17))? ((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) : ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17)))? (((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) > ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))? ((5.0 + x_5) > (19.0 + x_6)? (5.0 + x_5) : (19.0 + x_6)) : ((11.0 + x_7) > (16.0 + x_9)? (11.0 + x_7) : (16.0 + x_9))) : (((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) > ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17))? ((16.0 + x_10) > (3.0 + x_11)? (16.0 + x_10) : (3.0 + x_11)) : ((10.0 + x_16) > (4.0 + x_17)? (10.0 + x_16) : (4.0 + x_17)))) : ((((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) > ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))? ((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) : ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))) > (((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) > ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))? ((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) : ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31)))? (((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) > ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))? ((10.0 + x_18) > (14.0 + x_19)? (10.0 + x_18) : (14.0 + x_19)) : ((8.0 + x_20) > (9.0 + x_21)? (8.0 + x_20) : (9.0 + x_21))) : (((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) > ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))? ((2.0 + x_23) > (9.0 + x_27)? (2.0 + x_23) : (9.0 + x_27)) : ((17.0 + x_29) > (1.0 + x_31)? (17.0 + x_29) : (1.0 + x_31))))); x_8_ = (((((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))? ((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))) > (((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) > ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19))? ((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) : ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19)))? (((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))? ((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))) : (((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) > ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19))? ((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) : ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19)))) > ((((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) > ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))? ((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) : ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))) > (((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) > ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))? ((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) : ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31)))? (((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) > ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))? ((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) : ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))) : (((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) > ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))? ((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) : ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))))? ((((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))? ((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))) > (((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) > ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19))? ((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) : ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19)))? (((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) > ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))? ((19.0 + x_0) > (17.0 + x_1)? (19.0 + x_0) : (17.0 + x_1)) : ((6.0 + x_3) > (16.0 + x_5)? (6.0 + x_3) : (16.0 + x_5))) : (((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) > ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19))? ((4.0 + x_8) > (18.0 + x_17)? (4.0 + x_8) : (18.0 + x_17)) : ((7.0 + x_18) > (14.0 + x_19)? (7.0 + x_18) : (14.0 + x_19)))) : ((((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) > ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))? ((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) : ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))) > (((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) > ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))? ((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) : ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31)))? (((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) > ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))? ((16.0 + x_21) > (5.0 + x_24)? (16.0 + x_21) : (5.0 + x_24)) : ((8.0 + x_25) > (17.0 + x_26)? (8.0 + x_25) : (17.0 + x_26))) : (((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) > ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))? ((18.0 + x_27) > (20.0 + x_28)? (18.0 + x_27) : (20.0 + x_28)) : ((18.0 + x_29) > (6.0 + x_31)? (18.0 + x_29) : (6.0 + x_31))))); x_9_ = (((((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) > ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))? ((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) : ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))) > (((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? ((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? (((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) > ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))? ((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) : ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))) : (((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? ((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))) > ((((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) > ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))? ((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) : ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))) > (((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) > ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))? ((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) : ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31)))? (((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) > ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))? ((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) : ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))) : (((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) > ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))? ((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) : ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))))? ((((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) > ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))? ((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) : ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))) > (((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? ((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? (((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) > ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))? ((1.0 + x_6) > (17.0 + x_8)? (1.0 + x_6) : (17.0 + x_8)) : ((2.0 + x_9) > (6.0 + x_10)? (2.0 + x_9) : (6.0 + x_10))) : (((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? ((2.0 + x_11) > (11.0 + x_12)? (2.0 + x_11) : (11.0 + x_12)) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))) : ((((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) > ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))? ((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) : ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))) > (((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) > ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))? ((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) : ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31)))? (((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) > ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))? ((11.0 + x_15) > (2.0 + x_17)? (11.0 + x_15) : (2.0 + x_17)) : ((15.0 + x_19) > (9.0 + x_21)? (15.0 + x_19) : (9.0 + x_21))) : (((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) > ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))? ((4.0 + x_22) > (13.0 + x_26)? (4.0 + x_22) : (13.0 + x_26)) : ((2.0 + x_30) > (2.0 + x_31)? (2.0 + x_30) : (2.0 + x_31))))); x_10_ = (((((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) > ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))? ((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) : ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))) > (((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) > ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16))? ((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) : ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16)))? (((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) > ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))? ((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) : ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))) : (((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) > ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16))? ((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) : ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16)))) > ((((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) > ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))? ((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) : ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))) > (((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) > ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))? ((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) : ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31)))? (((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) > ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))? ((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) : ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))) : (((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) > ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))? ((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) : ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))))? ((((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) > ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))? ((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) : ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))) > (((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) > ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16))? ((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) : ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16)))? (((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) > ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))? ((11.0 + x_1) > (15.0 + x_6)? (11.0 + x_1) : (15.0 + x_6)) : ((1.0 + x_7) > (12.0 + x_8)? (1.0 + x_7) : (12.0 + x_8))) : (((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) > ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16))? ((7.0 + x_11) > (11.0 + x_12)? (7.0 + x_11) : (11.0 + x_12)) : ((12.0 + x_14) > (13.0 + x_16)? (12.0 + x_14) : (13.0 + x_16)))) : ((((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) > ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))? ((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) : ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))) > (((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) > ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))? ((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) : ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31)))? (((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) > ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))? ((15.0 + x_17) > (5.0 + x_18)? (15.0 + x_17) : (5.0 + x_18)) : ((1.0 + x_21) > (7.0 + x_22)? (1.0 + x_21) : (7.0 + x_22))) : (((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) > ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))? ((3.0 + x_24) > (8.0 + x_27)? (3.0 + x_24) : (8.0 + x_27)) : ((14.0 + x_30) > (18.0 + x_31)? (14.0 + x_30) : (18.0 + x_31))))); x_11_ = (((((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) > ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))? ((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) : ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))) > (((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) > ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11))? ((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) : ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11)))? (((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) > ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))? ((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) : ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))) : (((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) > ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11))? ((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) : ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11)))) > ((((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) > ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))? ((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) : ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))) > (((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) > ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))? ((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) : ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29)))? (((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) > ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))? ((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) : ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))) : (((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) > ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))? ((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) : ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))))? ((((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) > ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))? ((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) : ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))) > (((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) > ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11))? ((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) : ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11)))? (((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) > ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))? ((11.0 + x_0) > (5.0 + x_1)? (11.0 + x_0) : (5.0 + x_1)) : ((8.0 + x_2) > (17.0 + x_3)? (8.0 + x_2) : (17.0 + x_3))) : (((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) > ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11))? ((11.0 + x_5) > (20.0 + x_9)? (11.0 + x_5) : (20.0 + x_9)) : ((10.0 + x_10) > (11.0 + x_11)? (10.0 + x_10) : (11.0 + x_11)))) : ((((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) > ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))? ((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) : ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))) > (((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) > ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))? ((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) : ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29)))? (((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) > ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))? ((17.0 + x_12) > (12.0 + x_16)? (17.0 + x_12) : (12.0 + x_16)) : ((11.0 + x_17) > (5.0 + x_21)? (11.0 + x_17) : (5.0 + x_21))) : (((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) > ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))? ((11.0 + x_24) > (10.0 + x_25)? (11.0 + x_24) : (10.0 + x_25)) : ((6.0 + x_26) > (14.0 + x_29)? (6.0 + x_26) : (14.0 + x_29))))); x_12_ = (((((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) > ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))? ((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) : ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))) > (((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) > ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12))? ((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) : ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12)))? (((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) > ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))? ((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) : ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))) : (((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) > ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12))? ((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) : ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12)))) > ((((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) > ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))? ((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) : ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))) > (((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) > ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))? ((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) : ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29)))? (((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) > ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))? ((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) : ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))) : (((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) > ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))? ((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) : ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))))? ((((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) > ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))? ((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) : ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))) > (((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) > ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12))? ((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) : ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12)))? (((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) > ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))? ((3.0 + x_1) > (10.0 + x_2)? (3.0 + x_1) : (10.0 + x_2)) : ((4.0 + x_6) > (3.0 + x_7)? (4.0 + x_6) : (3.0 + x_7))) : (((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) > ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12))? ((19.0 + x_8) > (19.0 + x_9)? (19.0 + x_8) : (19.0 + x_9)) : ((7.0 + x_10) > (12.0 + x_12)? (7.0 + x_10) : (12.0 + x_12)))) : ((((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) > ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))? ((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) : ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))) > (((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) > ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))? ((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) : ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29)))? (((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) > ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))? ((13.0 + x_14) > (13.0 + x_15)? (13.0 + x_14) : (13.0 + x_15)) : ((1.0 + x_16) > (2.0 + x_18)? (1.0 + x_16) : (2.0 + x_18))) : (((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) > ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))? ((10.0 + x_19) > (6.0 + x_27)? (10.0 + x_19) : (6.0 + x_27)) : ((9.0 + x_28) > (17.0 + x_29)? (9.0 + x_28) : (17.0 + x_29))))); x_13_ = (((((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) > ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))? ((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) : ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))) > (((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) > ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12))? ((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) : ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12)))? (((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) > ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))? ((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) : ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))) : (((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) > ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12))? ((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) : ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12)))) > ((((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) > ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))? ((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) : ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))) > (((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) > ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))? ((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) : ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27)))? (((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) > ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))? ((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) : ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))) : (((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) > ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))? ((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) : ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))))? ((((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) > ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))? ((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) : ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))) > (((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) > ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12))? ((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) : ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12)))? (((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) > ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))? ((9.0 + x_0) > (1.0 + x_1)? (9.0 + x_0) : (1.0 + x_1)) : ((14.0 + x_3) > (4.0 + x_4)? (14.0 + x_3) : (4.0 + x_4))) : (((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) > ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12))? ((19.0 + x_5) > (16.0 + x_8)? (19.0 + x_5) : (16.0 + x_8)) : ((9.0 + x_9) > (2.0 + x_12)? (9.0 + x_9) : (2.0 + x_12)))) : ((((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) > ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))? ((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) : ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))) > (((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) > ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))? ((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) : ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27)))? (((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) > ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))? ((1.0 + x_14) > (6.0 + x_20)? (1.0 + x_14) : (6.0 + x_20)) : ((9.0 + x_21) > (4.0 + x_22)? (9.0 + x_21) : (4.0 + x_22))) : (((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) > ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))? ((15.0 + x_23) > (20.0 + x_24)? (15.0 + x_23) : (20.0 + x_24)) : ((2.0 + x_25) > (20.0 + x_27)? (2.0 + x_25) : (20.0 + x_27))))); x_14_ = (((((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) > ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))? ((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) : ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))) > (((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) > ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15))? ((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) : ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15)))? (((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) > ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))? ((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) : ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))) : (((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) > ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15))? ((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) : ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15)))) > ((((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) > ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))? ((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) : ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))) > (((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) > ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))? ((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) : ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30)))? (((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) > ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))? ((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) : ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))) : (((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) > ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))? ((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) : ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))))? ((((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) > ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))? ((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) : ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))) > (((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) > ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15))? ((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) : ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15)))? (((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) > ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))? ((15.0 + x_0) > (13.0 + x_2)? (15.0 + x_0) : (13.0 + x_2)) : ((13.0 + x_5) > (3.0 + x_6)? (13.0 + x_5) : (3.0 + x_6))) : (((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) > ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15))? ((16.0 + x_9) > (1.0 + x_10)? (16.0 + x_9) : (1.0 + x_10)) : ((19.0 + x_11) > (19.0 + x_15)? (19.0 + x_11) : (19.0 + x_15)))) : ((((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) > ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))? ((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) : ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))) > (((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) > ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))? ((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) : ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30)))? (((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) > ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))? ((6.0 + x_17) > (18.0 + x_19)? (6.0 + x_17) : (18.0 + x_19)) : ((11.0 + x_20) > (1.0 + x_23)? (11.0 + x_20) : (1.0 + x_23))) : (((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) > ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))? ((20.0 + x_25) > (20.0 + x_28)? (20.0 + x_25) : (20.0 + x_28)) : ((17.0 + x_29) > (16.0 + x_30)? (17.0 + x_29) : (16.0 + x_30))))); x_15_ = (((((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) > ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))? ((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) : ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))) > (((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) > ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19))? ((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) : ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19)))? (((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) > ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))? ((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) : ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))) : (((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) > ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19))? ((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) : ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19)))) > ((((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) > ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))? ((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) : ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))) > (((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) > ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))? ((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) : ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30)))? (((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) > ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))? ((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) : ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))) : (((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) > ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))? ((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) : ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))))? ((((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) > ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))? ((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) : ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))) > (((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) > ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19))? ((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) : ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19)))? (((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) > ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))? ((11.0 + x_0) > (10.0 + x_5)? (11.0 + x_0) : (10.0 + x_5)) : ((14.0 + x_7) > (13.0 + x_8)? (14.0 + x_7) : (13.0 + x_8))) : (((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) > ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19))? ((6.0 + x_9) > (10.0 + x_11)? (6.0 + x_9) : (10.0 + x_11)) : ((3.0 + x_14) > (9.0 + x_19)? (3.0 + x_14) : (9.0 + x_19)))) : ((((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) > ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))? ((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) : ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))) > (((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) > ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))? ((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) : ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30)))? (((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) > ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))? ((20.0 + x_20) > (12.0 + x_23)? (20.0 + x_20) : (12.0 + x_23)) : ((12.0 + x_24) > (6.0 + x_25)? (12.0 + x_24) : (6.0 + x_25))) : (((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) > ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))? ((13.0 + x_26) > (14.0 + x_27)? (13.0 + x_26) : (14.0 + x_27)) : ((10.0 + x_28) > (4.0 + x_30)? (10.0 + x_28) : (4.0 + x_30))))); x_16_ = (((((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) > ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))? ((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) : ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))) > (((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) > ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12))? ((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) : ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12)))? (((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) > ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))? ((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) : ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))) : (((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) > ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12))? ((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) : ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12)))) > ((((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) > ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))? ((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) : ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))) > (((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) > ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))? ((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) : ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30)))? (((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) > ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))? ((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) : ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))) : (((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) > ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))? ((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) : ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))))? ((((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) > ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))? ((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) : ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))) > (((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) > ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12))? ((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) : ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12)))? (((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) > ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))? ((6.0 + x_0) > (15.0 + x_4)? (6.0 + x_0) : (15.0 + x_4)) : ((3.0 + x_5) > (8.0 + x_6)? (3.0 + x_5) : (8.0 + x_6))) : (((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) > ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12))? ((18.0 + x_7) > (7.0 + x_8)? (18.0 + x_7) : (7.0 + x_8)) : ((5.0 + x_9) > (10.0 + x_12)? (5.0 + x_9) : (10.0 + x_12)))) : ((((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) > ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))? ((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) : ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))) > (((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) > ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))? ((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) : ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30)))? (((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) > ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))? ((15.0 + x_13) > (6.0 + x_15)? (15.0 + x_13) : (6.0 + x_15)) : ((12.0 + x_18) > (3.0 + x_20)? (12.0 + x_18) : (3.0 + x_20))) : (((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) > ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))? ((17.0 + x_22) > (1.0 + x_26)? (17.0 + x_22) : (1.0 + x_26)) : ((4.0 + x_27) > (14.0 + x_30)? (4.0 + x_27) : (14.0 + x_30))))); x_17_ = (((((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) > ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))? ((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) : ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))) > (((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) > ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14))? ((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) : ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14)))? (((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) > ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))? ((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) : ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))) : (((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) > ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14))? ((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) : ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14)))) > ((((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) > ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))? ((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) : ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))) > (((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) > ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))? ((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) : ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31)))? (((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) > ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))? ((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) : ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))) : (((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) > ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))? ((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) : ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))))? ((((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) > ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))? ((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) : ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))) > (((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) > ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14))? ((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) : ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14)))? (((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) > ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))? ((16.0 + x_0) > (17.0 + x_2)? (16.0 + x_0) : (17.0 + x_2)) : ((8.0 + x_4) > (1.0 + x_6)? (8.0 + x_4) : (1.0 + x_6))) : (((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) > ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14))? ((9.0 + x_11) > (5.0 + x_12)? (9.0 + x_11) : (5.0 + x_12)) : ((20.0 + x_13) > (19.0 + x_14)? (20.0 + x_13) : (19.0 + x_14)))) : ((((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) > ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))? ((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) : ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))) > (((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) > ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))? ((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) : ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31)))? (((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) > ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))? ((16.0 + x_15) > (13.0 + x_19)? (16.0 + x_15) : (13.0 + x_19)) : ((3.0 + x_20) > (8.0 + x_26)? (3.0 + x_20) : (8.0 + x_26))) : (((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) > ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))? ((11.0 + x_27) > (1.0 + x_28)? (11.0 + x_27) : (1.0 + x_28)) : ((16.0 + x_29) > (18.0 + x_31)? (16.0 + x_29) : (18.0 + x_31))))); x_18_ = (((((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) > ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))? ((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) : ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))) > (((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) > ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19))? ((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) : ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19)))? (((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) > ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))? ((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) : ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))) : (((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) > ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19))? ((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) : ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19)))) > ((((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) > ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))? ((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) : ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))) > (((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) > ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))? ((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) : ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29)))? (((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) > ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))? ((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) : ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))) : (((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) > ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))? ((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) : ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))))? ((((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) > ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))? ((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) : ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))) > (((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) > ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19))? ((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) : ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19)))? (((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) > ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))? ((8.0 + x_0) > (19.0 + x_1)? (8.0 + x_0) : (19.0 + x_1)) : ((18.0 + x_5) > (7.0 + x_8)? (18.0 + x_5) : (7.0 + x_8))) : (((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) > ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19))? ((14.0 + x_11) > (16.0 + x_13)? (14.0 + x_11) : (16.0 + x_13)) : ((6.0 + x_14) > (3.0 + x_19)? (6.0 + x_14) : (3.0 + x_19)))) : ((((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) > ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))? ((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) : ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))) > (((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) > ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))? ((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) : ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29)))? (((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) > ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))? ((19.0 + x_21) > (15.0 + x_22)? (19.0 + x_21) : (15.0 + x_22)) : ((13.0 + x_23) > (2.0 + x_24)? (13.0 + x_23) : (2.0 + x_24))) : (((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) > ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))? ((5.0 + x_25) > (14.0 + x_26)? (5.0 + x_25) : (14.0 + x_26)) : ((19.0 + x_28) > (7.0 + x_29)? (19.0 + x_28) : (7.0 + x_29))))); x_19_ = (((((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) > ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))? ((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) : ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))) > (((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) > ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15))? ((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) : ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15)))? (((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) > ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))? ((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) : ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))) : (((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) > ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15))? ((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) : ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15)))) > ((((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) > ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))? ((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) : ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))) > (((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) > ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))? ((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) : ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30)))? (((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) > ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))? ((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) : ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))) : (((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) > ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))? ((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) : ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))))? ((((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) > ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))? ((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) : ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))) > (((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) > ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15))? ((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) : ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15)))? (((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) > ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))? ((8.0 + x_0) > (15.0 + x_2)? (8.0 + x_0) : (15.0 + x_2)) : ((12.0 + x_5) > (13.0 + x_8)? (12.0 + x_5) : (13.0 + x_8))) : (((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) > ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15))? ((4.0 + x_11) > (11.0 + x_12)? (4.0 + x_11) : (11.0 + x_12)) : ((9.0 + x_13) > (15.0 + x_15)? (9.0 + x_13) : (15.0 + x_15)))) : ((((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) > ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))? ((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) : ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))) > (((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) > ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))? ((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) : ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30)))? (((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) > ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))? ((8.0 + x_17) > (6.0 + x_18)? (8.0 + x_17) : (6.0 + x_18)) : ((15.0 + x_19) > (6.0 + x_20)? (15.0 + x_19) : (6.0 + x_20))) : (((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) > ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))? ((12.0 + x_22) > (3.0 + x_26)? (12.0 + x_22) : (3.0 + x_26)) : ((6.0 + x_28) > (18.0 + x_30)? (6.0 + x_28) : (18.0 + x_30))))); x_20_ = (((((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) > ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))? ((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) : ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))) > (((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) > ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13))? ((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) : ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13)))? (((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) > ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))? ((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) : ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))) : (((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) > ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13))? ((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) : ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13)))) > ((((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) > ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))? ((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) : ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))) > (((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) > ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))? ((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) : ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30)))? (((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) > ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))? ((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) : ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))) : (((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) > ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))? ((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) : ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))))? ((((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) > ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))? ((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) : ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))) > (((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) > ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13))? ((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) : ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13)))? (((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) > ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))? ((15.0 + x_0) > (16.0 + x_1)? (15.0 + x_0) : (16.0 + x_1)) : ((16.0 + x_2) > (19.0 + x_3)? (16.0 + x_2) : (19.0 + x_3))) : (((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) > ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13))? ((16.0 + x_9) > (7.0 + x_11)? (16.0 + x_9) : (7.0 + x_11)) : ((5.0 + x_12) > (10.0 + x_13)? (5.0 + x_12) : (10.0 + x_13)))) : ((((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) > ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))? ((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) : ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))) > (((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) > ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))? ((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) : ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30)))? (((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) > ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))? ((6.0 + x_14) > (19.0 + x_16)? (6.0 + x_14) : (19.0 + x_16)) : ((1.0 + x_17) > (12.0 + x_18)? (1.0 + x_17) : (12.0 + x_18))) : (((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) > ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))? ((14.0 + x_19) > (1.0 + x_21)? (14.0 + x_19) : (1.0 + x_21)) : ((3.0 + x_27) > (12.0 + x_30)? (3.0 + x_27) : (12.0 + x_30))))); x_21_ = (((((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) > ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))? ((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) : ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))) > (((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) > ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13))? ((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) : ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13)))? (((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) > ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))? ((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) : ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))) : (((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) > ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13))? ((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) : ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13)))) > ((((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) > ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))? ((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) : ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))) > (((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) > ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))? ((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) : ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29)))? (((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) > ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))? ((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) : ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))) : (((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) > ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))? ((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) : ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))))? ((((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) > ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))? ((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) : ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))) > (((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) > ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13))? ((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) : ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13)))? (((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) > ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))? ((5.0 + x_1) > (19.0 + x_2)? (5.0 + x_1) : (19.0 + x_2)) : ((19.0 + x_4) > (1.0 + x_5)? (19.0 + x_4) : (1.0 + x_5))) : (((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) > ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13))? ((20.0 + x_6) > (14.0 + x_9)? (20.0 + x_6) : (14.0 + x_9)) : ((8.0 + x_10) > (7.0 + x_13)? (8.0 + x_10) : (7.0 + x_13)))) : ((((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) > ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))? ((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) : ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))) > (((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) > ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))? ((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) : ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29)))? (((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) > ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))? ((1.0 + x_14) > (14.0 + x_15)? (1.0 + x_14) : (14.0 + x_15)) : ((8.0 + x_16) > (9.0 + x_21)? (8.0 + x_16) : (9.0 + x_21))) : (((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) > ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))? ((10.0 + x_22) > (5.0 + x_25)? (10.0 + x_22) : (5.0 + x_25)) : ((10.0 + x_27) > (19.0 + x_29)? (10.0 + x_27) : (19.0 + x_29))))); x_22_ = (((((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) > ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))? ((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) : ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))) > (((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) > ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16))? ((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) : ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16)))? (((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) > ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))? ((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) : ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))) : (((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) > ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16))? ((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) : ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16)))) > ((((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) > ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))? ((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) : ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))) > (((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) > ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))? ((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) : ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30)))? (((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) > ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))? ((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) : ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))) : (((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) > ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))? ((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) : ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))))? ((((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) > ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))? ((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) : ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))) > (((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) > ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16))? ((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) : ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16)))? (((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) > ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))? ((13.0 + x_2) > (17.0 + x_4)? (13.0 + x_2) : (17.0 + x_4)) : ((5.0 + x_5) > (17.0 + x_8)? (5.0 + x_5) : (17.0 + x_8))) : (((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) > ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16))? ((18.0 + x_10) > (17.0 + x_14)? (18.0 + x_10) : (17.0 + x_14)) : ((19.0 + x_15) > (1.0 + x_16)? (19.0 + x_15) : (1.0 + x_16)))) : ((((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) > ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))? ((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) : ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))) > (((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) > ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))? ((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) : ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30)))? (((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) > ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))? ((18.0 + x_18) > (11.0 + x_20)? (18.0 + x_18) : (11.0 + x_20)) : ((17.0 + x_22) > (12.0 + x_23)? (17.0 + x_22) : (12.0 + x_23))) : (((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) > ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))? ((19.0 + x_24) > (16.0 + x_27)? (19.0 + x_24) : (16.0 + x_27)) : ((15.0 + x_28) > (2.0 + x_30)? (15.0 + x_28) : (2.0 + x_30))))); x_23_ = (((((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) > ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))? ((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) : ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))) > (((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) > ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14))? ((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) : ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14)))? (((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) > ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))? ((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) : ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))) : (((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) > ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14))? ((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) : ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14)))) > ((((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) > ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))? ((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) : ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))) > (((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) > ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))? ((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) : ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31)))? (((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) > ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))? ((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) : ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))) : (((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) > ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))? ((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) : ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))))? ((((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) > ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))? ((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) : ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))) > (((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) > ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14))? ((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) : ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14)))? (((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) > ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))? ((7.0 + x_2) > (6.0 + x_3)? (7.0 + x_2) : (6.0 + x_3)) : ((5.0 + x_4) > (17.0 + x_8)? (5.0 + x_4) : (17.0 + x_8))) : (((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) > ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14))? ((17.0 + x_9) > (9.0 + x_11)? (17.0 + x_9) : (9.0 + x_11)) : ((10.0 + x_13) > (2.0 + x_14)? (10.0 + x_13) : (2.0 + x_14)))) : ((((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) > ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))? ((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) : ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))) > (((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) > ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))? ((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) : ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31)))? (((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) > ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))? ((8.0 + x_15) > (6.0 + x_21)? (8.0 + x_15) : (6.0 + x_21)) : ((16.0 + x_22) > (10.0 + x_23)? (16.0 + x_22) : (10.0 + x_23))) : (((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) > ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))? ((17.0 + x_26) > (14.0 + x_29)? (17.0 + x_26) : (14.0 + x_29)) : ((20.0 + x_30) > (3.0 + x_31)? (20.0 + x_30) : (3.0 + x_31))))); x_24_ = (((((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) > ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))? ((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) : ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))) > (((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) > ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14))? ((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) : ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14)))? (((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) > ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))? ((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) : ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))) : (((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) > ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14))? ((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) : ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14)))) > ((((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) > ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))? ((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) : ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))) > (((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) > ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))? ((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) : ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30)))? (((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) > ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))? ((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) : ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))) : (((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) > ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))? ((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) : ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))))? ((((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) > ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))? ((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) : ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))) > (((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) > ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14))? ((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) : ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14)))? (((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) > ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))? ((5.0 + x_2) > (4.0 + x_5)? (5.0 + x_2) : (4.0 + x_5)) : ((7.0 + x_7) > (2.0 + x_9)? (7.0 + x_7) : (2.0 + x_9))) : (((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) > ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14))? ((6.0 + x_10) > (12.0 + x_11)? (6.0 + x_10) : (12.0 + x_11)) : ((7.0 + x_12) > (3.0 + x_14)? (7.0 + x_12) : (3.0 + x_14)))) : ((((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) > ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))? ((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) : ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))) > (((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) > ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))? ((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) : ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30)))? (((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) > ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))? ((11.0 + x_19) > (4.0 + x_20)? (11.0 + x_19) : (4.0 + x_20)) : ((3.0 + x_22) > (14.0 + x_24)? (3.0 + x_22) : (14.0 + x_24))) : (((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) > ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))? ((6.0 + x_25) > (8.0 + x_26)? (6.0 + x_25) : (8.0 + x_26)) : ((17.0 + x_27) > (12.0 + x_30)? (17.0 + x_27) : (12.0 + x_30))))); x_25_ = (((((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) > ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))? ((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) : ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))) > (((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) > ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17))? ((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) : ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17)))? (((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) > ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))? ((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) : ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))) : (((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) > ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17))? ((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) : ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17)))) > ((((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) > ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))? ((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) : ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))) > (((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) > ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))? ((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) : ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31)))? (((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) > ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))? ((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) : ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))) : (((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) > ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))? ((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) : ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))))? ((((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) > ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))? ((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) : ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))) > (((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) > ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17))? ((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) : ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17)))? (((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) > ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))? ((13.0 + x_0) > (2.0 + x_1)? (13.0 + x_0) : (2.0 + x_1)) : ((17.0 + x_4) > (15.0 + x_7)? (17.0 + x_4) : (15.0 + x_7))) : (((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) > ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17))? ((18.0 + x_9) > (14.0 + x_13)? (18.0 + x_9) : (14.0 + x_13)) : ((12.0 + x_14) > (5.0 + x_17)? (12.0 + x_14) : (5.0 + x_17)))) : ((((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) > ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))? ((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) : ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))) > (((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) > ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))? ((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) : ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31)))? (((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) > ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))? ((6.0 + x_18) > (6.0 + x_19)? (6.0 + x_18) : (6.0 + x_19)) : ((6.0 + x_23) > (12.0 + x_24)? (6.0 + x_23) : (12.0 + x_24))) : (((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) > ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))? ((16.0 + x_26) > (12.0 + x_27)? (16.0 + x_26) : (12.0 + x_27)) : ((13.0 + x_29) > (11.0 + x_31)? (13.0 + x_29) : (11.0 + x_31))))); x_26_ = (((((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) > ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))? ((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) : ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))) > (((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) > ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17))? ((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) : ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17)))? (((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) > ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))? ((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) : ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))) : (((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) > ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17))? ((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) : ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17)))) > ((((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) > ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))? ((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) : ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))) > (((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) > ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))? ((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) : ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31)))? (((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) > ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))? ((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) : ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))) : (((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) > ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))? ((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) : ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))))? ((((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) > ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))? ((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) : ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))) > (((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) > ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17))? ((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) : ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17)))? (((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) > ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))? ((10.0 + x_1) > (5.0 + x_3)? (10.0 + x_1) : (5.0 + x_3)) : ((3.0 + x_8) > (11.0 + x_10)? (3.0 + x_8) : (11.0 + x_10))) : (((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) > ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17))? ((6.0 + x_12) > (12.0 + x_13)? (6.0 + x_12) : (12.0 + x_13)) : ((2.0 + x_16) > (1.0 + x_17)? (2.0 + x_16) : (1.0 + x_17)))) : ((((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) > ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))? ((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) : ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))) > (((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) > ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))? ((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) : ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31)))? (((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) > ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))? ((1.0 + x_19) > (4.0 + x_23)? (1.0 + x_19) : (4.0 + x_23)) : ((10.0 + x_24) > (2.0 + x_25)? (10.0 + x_24) : (2.0 + x_25))) : (((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) > ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))? ((20.0 + x_26) > (8.0 + x_28)? (20.0 + x_26) : (8.0 + x_28)) : ((14.0 + x_29) > (1.0 + x_31)? (14.0 + x_29) : (1.0 + x_31))))); x_27_ = (((((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) > ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))? ((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) : ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))) > (((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) > ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12))? ((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) : ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12)))? (((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) > ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))? ((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) : ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))) : (((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) > ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12))? ((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) : ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12)))) > ((((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) > ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))? ((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) : ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))) > (((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) > ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))? ((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) : ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31)))? (((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) > ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))? ((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) : ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))) : (((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) > ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))? ((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) : ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))))? ((((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) > ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))? ((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) : ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))) > (((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) > ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12))? ((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) : ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12)))? (((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) > ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))? ((16.0 + x_1) > (8.0 + x_2)? (16.0 + x_1) : (8.0 + x_2)) : ((4.0 + x_4) > (18.0 + x_5)? (4.0 + x_4) : (18.0 + x_5))) : (((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) > ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12))? ((1.0 + x_7) > (5.0 + x_8)? (1.0 + x_7) : (5.0 + x_8)) : ((13.0 + x_11) > (16.0 + x_12)? (13.0 + x_11) : (16.0 + x_12)))) : ((((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) > ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))? ((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) : ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))) > (((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) > ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))? ((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) : ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31)))? (((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) > ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))? ((16.0 + x_19) > (20.0 + x_20)? (16.0 + x_19) : (20.0 + x_20)) : ((15.0 + x_21) > (20.0 + x_26)? (15.0 + x_21) : (20.0 + x_26))) : (((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) > ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))? ((11.0 + x_27) > (19.0 + x_28)? (11.0 + x_27) : (19.0 + x_28)) : ((3.0 + x_30) > (13.0 + x_31)? (3.0 + x_30) : (13.0 + x_31))))); x_28_ = (((((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) > ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))? ((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) : ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))) > (((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? ((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? (((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) > ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))? ((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) : ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))) : (((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? ((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))) > ((((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) > ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))? ((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) : ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))) > (((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) > ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))? ((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) : ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28)))? (((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) > ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))? ((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) : ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))) : (((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) > ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))? ((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) : ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))))? ((((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) > ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))? ((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) : ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))) > (((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? ((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? (((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) > ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))? ((5.0 + x_1) > (9.0 + x_3)? (5.0 + x_1) : (9.0 + x_3)) : ((20.0 + x_4) > (8.0 + x_9)? (20.0 + x_4) : (8.0 + x_9))) : (((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? ((2.0 + x_12) > (11.0 + x_13)? (2.0 + x_12) : (11.0 + x_13)) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))) : ((((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) > ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))? ((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) : ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))) > (((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) > ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))? ((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) : ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28)))? (((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) > ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))? ((13.0 + x_16) > (10.0 + x_17)? (13.0 + x_16) : (10.0 + x_17)) : ((17.0 + x_19) > (8.0 + x_21)? (17.0 + x_19) : (8.0 + x_21))) : (((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) > ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))? ((1.0 + x_23) > (7.0 + x_24)? (1.0 + x_23) : (7.0 + x_24)) : ((5.0 + x_26) > (4.0 + x_28)? (5.0 + x_26) : (4.0 + x_28))))); x_29_ = (((((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) > ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))? ((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) : ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))) > (((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) > ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14))? ((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) : ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14)))? (((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) > ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))? ((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) : ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))) : (((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) > ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14))? ((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) : ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14)))) > ((((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) > ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))? ((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) : ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))) > (((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) > ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))? ((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) : ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30)))? (((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) > ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))? ((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) : ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))) : (((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) > ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))? ((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) : ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))))? ((((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) > ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))? ((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) : ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))) > (((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) > ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14))? ((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) : ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14)))? (((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) > ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))? ((12.0 + x_0) > (11.0 + x_2)? (12.0 + x_0) : (11.0 + x_2)) : ((12.0 + x_3) > (19.0 + x_4)? (12.0 + x_3) : (19.0 + x_4))) : (((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) > ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14))? ((11.0 + x_9) > (6.0 + x_10)? (11.0 + x_9) : (6.0 + x_10)) : ((11.0 + x_11) > (8.0 + x_14)? (11.0 + x_11) : (8.0 + x_14)))) : ((((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) > ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))? ((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) : ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))) > (((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) > ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))? ((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) : ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30)))? (((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) > ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))? ((18.0 + x_17) > (16.0 + x_20)? (18.0 + x_17) : (16.0 + x_20)) : ((16.0 + x_21) > (20.0 + x_24)? (16.0 + x_21) : (20.0 + x_24))) : (((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) > ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))? ((2.0 + x_25) > (4.0 + x_28)? (2.0 + x_25) : (4.0 + x_28)) : ((8.0 + x_29) > (1.0 + x_30)? (8.0 + x_29) : (1.0 + x_30))))); x_30_ = (((((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) > ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))? ((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) : ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))) > (((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) > ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13))? ((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) : ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13)))? (((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) > ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))? ((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) : ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))) : (((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) > ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13))? ((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) : ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13)))) > ((((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) > ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))? ((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) : ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))) > (((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) > ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))? ((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) : ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28)))? (((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) > ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))? ((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) : ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))) : (((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) > ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))? ((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) : ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))))? ((((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) > ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))? ((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) : ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))) > (((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) > ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13))? ((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) : ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13)))? (((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) > ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))? ((18.0 + x_1) > (19.0 + x_3)? (18.0 + x_1) : (19.0 + x_3)) : ((7.0 + x_6) > (18.0 + x_7)? (7.0 + x_6) : (18.0 + x_7))) : (((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) > ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13))? ((13.0 + x_9) > (6.0 + x_11)? (13.0 + x_9) : (6.0 + x_11)) : ((12.0 + x_12) > (8.0 + x_13)? (12.0 + x_12) : (8.0 + x_13)))) : ((((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) > ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))? ((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) : ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))) > (((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) > ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))? ((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) : ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28)))? (((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) > ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))? ((19.0 + x_17) > (6.0 + x_18)? (19.0 + x_17) : (6.0 + x_18)) : ((12.0 + x_20) > (17.0 + x_21)? (12.0 + x_20) : (17.0 + x_21))) : (((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) > ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))? ((15.0 + x_22) > (12.0 + x_26)? (15.0 + x_22) : (12.0 + x_26)) : ((15.0 + x_27) > (14.0 + x_28)? (15.0 + x_27) : (14.0 + x_28))))); x_31_ = (((((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) > ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))? ((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) : ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))) > (((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) > ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13))? ((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) : ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13)))? (((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) > ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))? ((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) : ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))) : (((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) > ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13))? ((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) : ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13)))) > ((((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) > ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))? ((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) : ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))) > (((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) > ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))? ((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) : ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29)))? (((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) > ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))? ((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) : ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))) : (((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) > ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))? ((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) : ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))))? ((((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) > ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))? ((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) : ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))) > (((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) > ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13))? ((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) : ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13)))? (((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) > ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))? ((19.0 + x_0) > (13.0 + x_2)? (19.0 + x_0) : (13.0 + x_2)) : ((18.0 + x_5) > (15.0 + x_6)? (18.0 + x_5) : (15.0 + x_6))) : (((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) > ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13))? ((11.0 + x_8) > (6.0 + x_10)? (11.0 + x_8) : (6.0 + x_10)) : ((1.0 + x_11) > (9.0 + x_13)? (1.0 + x_11) : (9.0 + x_13)))) : ((((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) > ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))? ((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) : ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))) > (((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) > ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))? ((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) : ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29)))? (((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) > ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))? ((11.0 + x_16) > (5.0 + x_20)? (11.0 + x_16) : (5.0 + x_20)) : ((3.0 + x_21) > (8.0 + x_24)? (3.0 + x_21) : (8.0 + x_24))) : (((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) > ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))? ((19.0 + x_25) > (2.0 + x_27)? (19.0 + x_25) : (2.0 + x_27)) : ((10.0 + x_28) > (15.0 + x_29)? (10.0 + x_28) : (15.0 + x_29))))); x_0 = x_0_; x_1 = x_1_; x_2 = x_2_; x_3 = x_3_; x_4 = x_4_; x_5 = x_5_; x_6 = x_6_; x_7 = x_7_; x_8 = x_8_; x_9 = x_9_; x_10 = x_10_; x_11 = x_11_; x_12 = x_12_; x_13 = x_13_; x_14 = x_14_; x_15 = x_15_; x_16 = x_16_; x_17 = x_17_; x_18 = x_18_; x_19 = x_19_; x_20 = x_20_; x_21 = x_21_; x_22 = x_22_; x_23 = x_23_; x_24 = x_24_; x_25 = x_25_; x_26 = x_26_; x_27 = x_27_; x_28 = x_28_; x_29 = x_29_; x_30 = x_30_; x_31 = x_31_; } return 0; }
the_stack_data/60519.c
int foo(){ return 91; } int main(){ int x = 0, y; #pragma spf transform inline { x += foo(); y = 2 * foo(); } return 0; } //CHECK:
the_stack_data/187642778.c
//gen_assort_matrix q #include <stdio.h> void gen_assort_matrix_bi(int l, int m, int n, int frac_low) { int assort_matrix[100][100], temp ; int i = 0, j = 0 , total = 1, nl = 0, nm = 0; int sum_deg_l = 0 , sum_deg_m = 0 , total_edges = 0;; for(i = 1 ; i < m+1 ; i=i+1) { for(j = 1 ; j<i+1 ; j=j+1) assort_matrix[i][j] = 0 ; } nl = frac_low* n; nm = n - nl ; sum_deg_l = l*nl; sum_deg_m = m*nm; total_edges = (sum_deg_l + sum_deg_m ) /2 ; if(sum_deg_l > sum_deg_m) { //temp = ((sum_deg_m*100/total_edges)/2)/100 ; temp = ((sum_deg_m*100/total_edges)*2)*100 ; assort_matrix[m][m] = temp; assort_matrix[l][m] = sum_deg_m*1 /total_edges - 2*assort_matrix[m][m] ; assort_matrix[m][l] = sum_deg_m*1 /total_edges - 2*assort_matrix[m][m] ; assort_matrix[l][l] = assort_matrix[m][m] + (sum_deg_l - sum_deg_m)/(2*total_edges); } else { //temp = ((sum_deg_l*100/total_edges)/2)/100 ; temp = ((sum_deg_l*100/total_edges)*2)*100 ; assort_matrix[l][l] = temp; assort_matrix[l][m] = sum_deg_l*1 /total_edges - 2*assort_matrix[l][l] ; assort_matrix[m][l] = sum_deg_l*1 /total_edges - 2*assort_matrix[l][l] ; assort_matrix[m][m] = assort_matrix[l][l] + (sum_deg_m - sum_deg_l)/(2*total_edges); } return; } /* int main(){ gen_assort_matrix_bi(0,0,0,0); }*/
the_stack_data/101962.c
int main(void) { double d; d = 4.4; printf("%f\n", d); return 0; }
the_stack_data/93886699.c
// /////////////////////// // // // // // File Attributes // // // // // /////////////////////// // Filename: woodman.png // Pixel Width: 160px // Pixel Height: 144px // ///////////////// // // // // // Constants // // // // // ///////////////// const int woodman_tile_map_size = 0x0168; const int woodman_tile_map_width = 0x14; const int woodman_tile_map_height = 0x12; const int woodman_tile_data_size = 0x0B50; const int woodman_tile_count = 0xB5; // //////////////// // // // // // Map Data // // // // // //////////////// const unsigned char woodman_map_data[] ={ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x02,0x03,0x04,0x05, 0x06,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x07,0x08, 0x09,0x0A,0x0B,0x0C,0x0D,0x0E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, 0x00,0x0F,0x10,0x11,0x12,0x13,0x14,0x15,0x16,0x17,0x18,0x00,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x19,0x1A,0x1B,0x1C,0x1D,0x1E,0x1F,0x20,0x21,0x22,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x23,0x24,0x25,0x26,0x27,0x28,0x29, 0x2A,0x2B,0x2C,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x2D,0x2E,0x2F,0x30, 0x31,0x32,0x33,0x34,0x35,0x36,0x37,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, 0x38,0x39,0x3A,0x3B,0x3C,0x3D,0x3B,0x3B,0x3B,0x3E,0x3F,0x00,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x40,0x41,0x42,0x3B,0x43,0x44,0x45,0x3B,0x46,0x47,0x48,0x00, 0x49,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x4A,0x4B,0x4C,0x4D,0x4E,0x4F,0x50, 0x51,0x52,0x53,0x00,0x54,0x55,0x00,0x00,0x00,0x00,0x00,0x00,0x56,0x57,0x58,0x59, 0x5A,0x5B,0x5C,0x5D,0x5E,0x5F,0x60,0x61,0x62,0x63,0x64,0x00,0x00,0x00,0x00,0x00, 0x65,0x66,0x67,0x68,0x69,0x0B,0x6A,0x6B,0x6C,0x6D,0x6E,0x6F,0x0B,0x70,0x71,0x72, 0x00,0x00,0x00,0x00,0x73,0x74,0x75,0x76,0x77,0x78,0x79,0x3B,0x7A,0x7B,0x7C,0x0B, 0x0B,0x7D,0x3B,0x7E,0x00,0x00,0x00,0x00,0x7F,0x80,0x81,0x82,0x3B,0x83,0x3B,0x3B, 0x84,0x85,0x86,0x0B,0x87,0x88,0x3B,0x3B,0x00,0x00,0x89,0x8A,0x8B,0x0B,0x0B,0x8C, 0x3B,0x8D,0x3B,0x3B,0x8E,0x8F,0x0B,0x90,0x91,0x3B,0x3B,0x3B,0x92,0x93,0x94,0x95, 0x0B,0x0B,0x0B,0x96,0x97,0x3B,0x3B,0x98,0x99,0x9A,0x9B,0x9C,0x3B,0x3B,0x3B,0x3B, 0x9D,0x9E,0x0B,0x9F,0xA0,0xA1,0xA2,0xA3,0xA4,0x3B,0x3B,0xA5,0x0B,0x85,0xA6,0xA7, 0xA8,0xA9,0x3B,0x3B,0xAA,0x0B,0x0B,0x0B,0x0B,0xAB,0x0B,0xAC,0xAD,0xAE,0xAF,0xB0, 0x0B,0xB1,0xB2,0x0B,0x0B,0xB3,0xB4,0x3B }; // ///////////////// // // // // // Tile Data // // // // // ///////////////// const unsigned char woodman_tile_data[] ={ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x03,0x03,0x0E,0x0F, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x7F,0x7F,0xF0,0xFF,0x00,0xFF, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xFF,0xFF,0x00,0xFF,0x00,0xFF,0x00,0xFF, 0x00,0x00,0x00,0x00,0x00,0x00,0x1C,0x1C,0xE7,0xFF,0x00,0xFF,0x00,0xFF,0x00,0xFF, 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the_stack_data/211081709.c
int f(void) { return 1; } int main(void) { int x[124]; int y[54]; x [ 1+ 2+3+ f() + 23 ] = 1; return 0; }
the_stack_data/386930.c
#include <stdio.h> #include <string.h> int main() { char a[5]; scanf("%s", a); printf("%s", a); }
the_stack_data/126703532.c
#include <stdio.h> #include <error.h> #define BUFLEN 1024 static char buf[BUFLEN]; char *readline(const char *prompt) { int i, c, echoing; if (prompt != NULL) cprintf("%s", prompt); i = 0; echoing = iscons(0); while (1) { c = getchar(); if (c < 0) { cprintf("read error: %e\n", c); return NULL; } else if ((c == '\b' || c == '\x7f') && i > 0) { if (echoing) cputchar('\b'); i--; } else if (c >= ' ' && i < BUFLEN-1) { if (echoing) cputchar(c); buf[i++] = c; } else if (c == '\n' || c == '\r') { if (echoing) cputchar('\n'); buf[i] = 0; return buf; } } }
the_stack_data/61691.c
#include <stdio.h> int main() { char a[30] = "Bangla", b[30] = "desh"; int i, j, length = 0; for (i = 0; a[i] != '\0'; i++){ length += 1; } for (i = length, j = 0; b[j] != '\0'; i ++, j++){ a[i] = b[j]; } a[i] = '\0'; printf("%s\n", a); return 0; }
the_stack_data/975389.c
#include <stdio.h> // [opt] 0 1 // [out] <auto> int main(int argc, char* argv[]) { int x, y; printf("a =\n"); scanf("%i", &x); // [in] -172 printf("b =\n"); scanf("%i", &y); // [in] 82 printf("\n"); char a = (char)x; char b = (char)y; unsigned char c = (unsigned char)a; unsigned char d = (unsigned char)b; printf("a ^ b = %i\n", (int)(char)(a ^ b)); printf("a | b = %i\n", (int)(char)(a | b)); printf("a & b = %i\n", (int)(char)(a & b)); printf("a << 2 = %i\n", (int)(char)(a << 2)); printf("a << 5 = %i\n", (int)(char)(a << 5)); printf("Signed: a >> 2 = %i\n", (int)(char)(a >> 2)); printf("Signed: a >> 5 = %i\n", (int)(char)(a >> 5)); printf("Unsigned: a >> 2 = %i\n", (int)(unsigned char)(c >> 2)); printf("Unsigned: a >> 5 = %i\n", (int)(unsigned char)(c >> 5)); printf("(a & b) ^ (a | b) = %i\n", (int)(char)((a & b) ^ (a | b))); return 0; }
the_stack_data/124377.c
/* $Id$ */ /* Get a unique id for C_insertpart, etc. */ int C_getid() { static int id = 0; return ++id; }
the_stack_data/232954499.c
#include <stdio.h> #include <stdlib.h> #include <stdbool.h> #define N 9 #define EMPTY 10 // Read sudoku 9x9 txt file and turn it into a nested list bool findEmpty(int sudoku[N][N], int row, int col); bool isValid(int sudoku[N][N], int row, int col, int num); bool solve(int sudoku[N][N]) { int row, col; // check if Sudoku is full if (!findEmpty(sudoku, row, col)) return true; for (int num = 1; num <= 9; num++) { if (isValid(sudoku, row, col, num)) { sudoku[row][col] = num; if (solve(sudoku)) return true; sudoku[row][col] = EMPTY; } } return false; } /* find if EMPTY or not*/ bool findEmpty(int sudoku[N][N], int row, int col) { for (row = 0; row < N; row++) for (col = 0; col < N; col++) if (sudoku[row][col] == EMPTY) return true; return false; } /* return bool if valid in row */ bool inRow(int sudoku[N][N], int row, int num) { for (int col = 0; col < N; col++) if (sudoku[row][col] == num) return true; return false; } /* return bool if valid in col */ bool inCol(int sudoku[N][N], int col, int num) { for (int row = 0; row < N; row++) if (sudoku[row][col] == num) return true; return false; } /* return bool if valid in 3x3 grid */ bool inGrid(int sudoku[N][N], int boxStartRow, int boxStartCol, int num) { for (int row = 0; row < 3; row++) for (int col = 0; col < 3; col++) if (sudoku[row+boxStartRow][col+boxStartCol] == num) return true; return false; } /* return bool whether its okay to put a number there*/ bool isValid(int sudoku[N][N], int row, int col, int num) { return !inRow(sudoku, row, num) && !inCol(sudoku, col, num) && !inGrid(sudoku, row - row%3 , col - col%3, num); } /* print */ void printSudoku(int sudoku[N][N]) { for (int row = 0; row < N; row++) { for (int col = 0; col < N; col++) printf("%2d", sudoku[row][col]); printf("\n"); } } int main() { FILE *sudokuTxt; char line[1000]; sudokuTxt = fopen("sudoku001.txt", "r"); int num, sudoku[N][N], index = 8; while (fgets(line, 1000, sudokuTxt)!=NULL) { num = atoi(line); for(int i = 8; i>=0; i--) sudoku[i][index] = num%10; num = (num-num%10)/10; index--; fclose(sudokuTxt); } if (solve(sudoku) == true) printSudoku(sudoku); else printf("No solution"); return 0; }
the_stack_data/90763669.c
/* * COPYRIGHT * * goertzel - A Goertzel algorithm implementation that calculates the Fourier * transform over a specified frequency range at a specified resolution. * by Stefan Hollos, stefan[AT]exstrom DOT com * and Richard Hollos, richard[AT]exstrom DOT com * Copyright (C) 2006 Exstrom Laboratories LLC * * This program 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 of the License, or * (at your option) any later version. * * This program 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. * * A copy of the GNU General Public License is available on the internet at: * * http://www.gnu.org/copyleft/gpl.html * * or you can write to: * * The Free Software Foundation, Inc. * 675 Mass Ave * Cambridge, MA 02139, USA * * You can contact Exstrom Laboratories LLC via Email at: * * info[AT]exstrom DOT com * * or you can write to: * * Exstrom Laboratories LLC * 662 Nelson Park Dr. * Longmont, CO 80503, USA * */ #include <stdlib.h> #include <stdio.h> #include <string.h> #include <math.h> #define MAXLINESIZE 128 /* Calculates the Fourier transform, by use of the Goertzel algorithm, over Nf points from frequency f1 to frequency f2, of N (N>1) samples of a signal taken at sps samples per second. */ void goertzel( int N, double *q, double theta, double *Qr, double *Qi ) { int n; double u0, u1, u2; /* variable of the difference eq: u(k) = f(k) + 2cos(theta)u(k-1) - u(k-2) */ double C0, S0; /* cos(theta) & sin(theta) */ double C02; /* 2*cos(theta) */ double CN, SN; /* cos((N-1)*theta) & sin((N-1)*theta) */ double yr, yi; /* real and imaginary parts of yN */ C0 = cos(theta); C02 = 2.0*C0; S0 = sin(theta); CN = cos((N-1)*theta); SN = sin((N-1)*theta); u0 = 0.0; u1 = 0.0; for( n = 0; n < N; ++n ) { u2 = q[n] + C02*u1 - u0; u0 = u1; u1 = u2; } /* end for n */ /* Calculate yN = yr + iyi */ yr = u2 - C0*u0; yi = S0*u0; /* Calculate F(theta) = yN*e^(-i(N-1)*theta) */ *Qr = yr*CN + yi*SN; *Qi = yi*CN - yr*SN; } /* end function goertzel */ /*******************************************************************/ int main( int argc, char *argv[] ) { double f1, f2; /* starting frequency f1, and ending frequency f2 [Hz] */ int Nf; /* number of frequency points at which the FT is calculated */ double df; /* frequency step size */ int N; /* number of samples read from the input file, N>1 */ int i, n; /* index */ double sps; /* samples per second */ double theta; /* theta = 2*Pi*f/sps */ double dtheta; /* theta step size */ FILE *fp; /* file pointer */ char linebuff[MAXLINESIZE]; double *q; /* array where samples are stored */ double Qr, Qi; /* real & imaginary parts of FT */ if( argc != 8 ) { printf( "\ngoertzel calculates the Fourier transform at Nf equally\n"); printf( "spaced points in the frequency interval [f1,f2]\n"); printf( "usage: goertzel f1 f2 Nf N sps infile outfile\n"); printf( " f1 = starting frequency [Hz]\n"); printf( " f2 = ending frequency [Hz]\n"); printf( " Nf = number of frequency points to calculate FT\n"); printf( " N = number of samples to read from the input file\n"); printf( " sps = samples per second\n"); printf( " infile = input file\n"); printf( " outfile = output file\n"); exit( -1 ); } f1 = atof( argv[1] ); f2 = atof( argv[2] ); Nf = atoi( argv[3] ); N = atoi( argv[4] ); sps = atof( argv[5] ); if( N < 2 ) { printf( "N must be greater than 1\n" ); exit( -1 ); } /* open file to read */ if( ( fp = fopen( argv[6], "r" ) ) == NULL ) { perror( "Error opening input file" ); exit( -1 ); } printf( "Reading data file: %s\n\n", argv[6] ); /* Any line at the beginning of a data file that */ /* begins with a "#" is skipped */ for( n = 0; n < N; ++n ) { fgets( linebuff, MAXLINESIZE, fp ); if( linebuff[0] != '#' ) break; printf( "%s", linebuff ); } /* allocate a double array of size N */ q = (double *)malloc( N * sizeof(double) ); /* get the first number that's already in linebuff */ sscanf( linebuff, "%lf", &(q[0]) ); /* read the rest of the sample data */ for( n = 1; n < N; ++n ) { fscanf( fp, "%lf", &(q[n]) ); } fclose( fp ); /* close input file */ if( ( fp = fopen( argv[7], "w" ) ) == NULL ) { perror("Error opening output file" ); exit( -1 ); } printf( "Opening output file: %s\n", argv[7] ); df = (f2-f1)/((double)(Nf-1)); /* write the header of the output file */ fprintf( fp, "# This file produced by program goertzel\n" ); fprintf( fp, "# %20f :f1, starting frequency [Hz]\n", f1 ); fprintf( fp, "# %20f :f2, ending frequency [Hz]\n", f2 ); fprintf( fp, "# %20f :df, frequency step size [Hz]\n", df ); fprintf( fp, "# %20d :Nf, number of frequency points at which FT was calculated\n", Nf ); fprintf( fp, "# %20d :N, number of samples read from the input file, N>1\n", N ); fprintf( fp, "# %20f :sps, samples per second\n", sps ); fprintf( fp, "# %s :input file name\n", argv[6] ); fprintf( fp, "# Left column: real part of FT, Right column: imaginary part\n" ); theta = 2.0 * M_PI * f1 / sps; dtheta = 2.0 * M_PI * df / sps; for( i = 0; i < Nf; ++i ) { goertzel( N, q, theta, &Qr, &Qi ); fprintf( fp, "%lf %lf\n", Qr, Qi ); theta += dtheta; } /* end for i */ fclose( fp ); free( q ); return( 0 ); }
the_stack_data/103431.c
// comes from https://stackoverflow.com/questions/11813271/embed-resources-eg-shader-code-images-into-executable-library-with-cmake #include <stdlib.h> #include <stdio.h> FILE* open_or_exit(const char* fname, const char* mode) { FILE* f = fopen(fname, mode); if (f == NULL) { perror(fname); exit(EXIT_FAILURE); } return f; } int main(int argc, char** argv) { if (argc < 3) { printf("USAGE: %s {file} {sym} {rsrc}\n\n" " Creates file from the contents of {rsrc}\n", argv[0]); return EXIT_FAILURE; } const char *outfile = argv[1]; const char* sym = argv[2]; FILE* in = open_or_exit(argv[3], "r"); FILE* out = open_or_exit(outfile,"w"); fprintf(out, "inline const char %s[] = {\n", sym); unsigned char buf[256]; size_t nread = 0; size_t linecount = 0; do { nread = fread(buf, 1, sizeof(buf), in); size_t i; for (i=0; i < nread; i++) { if(linecount == 0) fprintf(out, " "); fprintf(out, "0x%02x, ", buf[i]); if (++linecount == 10) { fprintf(out, "\n"); linecount = 0; } } } while (nread > 0); if (linecount > 0) fprintf(out, "\n"); fprintf(out, "};\n"); fclose(in); fclose(out); return EXIT_SUCCESS; }
the_stack_data/162642377.c
/* $NetBSD: unzcrash.c,v 1.1.1.3 2019/07/21 11:35:30 maya Exp $ */ /* A test program written to test robustness to decompression of corrupted data. Usage is unzcrash filename and the program will read the specified file, compress it (in memory), and then repeatedly decompress it, each time with a different bit of the compressed data inverted, so as to test all possible one-bit errors. This should not cause any invalid memory accesses. If it does, I want to know about it! PS. As you can see from the above description, the process is incredibly slow. A file of size eg 5KB will cause it to run for many hours. */ /* ------------------------------------------------------------------ This file is part of bzip2/libbzip2, a program and library for lossless, block-sorting data compression. bzip2/libbzip2 version 1.0.8 of 13 July 2019 Copyright (C) 1996-2019 Julian Seward <[email protected]> Please read the WARNING, DISCLAIMER and PATENTS sections in the README file. This program is released under the terms of the license contained in the file LICENSE. ------------------------------------------------------------------ */ #include <stdio.h> #include <assert.h> #include "bzlib.h" #define M_BLOCK 1000000 typedef unsigned char uchar; #define M_BLOCK_OUT (M_BLOCK + 1000000) uchar inbuf[M_BLOCK]; uchar outbuf[M_BLOCK_OUT]; uchar zbuf[M_BLOCK + 600 + (M_BLOCK / 100)]; int nIn, nOut, nZ; static char *bzerrorstrings[] = { "OK" ,"SEQUENCE_ERROR" ,"PARAM_ERROR" ,"MEM_ERROR" ,"DATA_ERROR" ,"DATA_ERROR_MAGIC" ,"IO_ERROR" ,"UNEXPECTED_EOF" ,"OUTBUFF_FULL" ,"???" /* for future */ ,"???" /* for future */ ,"???" /* for future */ ,"???" /* for future */ ,"???" /* for future */ ,"???" /* for future */ }; void flip_bit ( int bit ) { int byteno = bit / 8; int bitno = bit % 8; uchar mask = 1 << bitno; //fprintf ( stderr, "(byte %d bit %d mask %d)", // byteno, bitno, (int)mask ); zbuf[byteno] ^= mask; } int main ( int argc, char** argv ) { FILE* f; int r; int bit; int i; if (argc != 2) { fprintf ( stderr, "usage: unzcrash filename\n" ); return 1; } f = fopen ( argv[1], "r" ); if (!f) { fprintf ( stderr, "unzcrash: can't open %s\n", argv[1] ); return 1; } nIn = fread ( inbuf, 1, M_BLOCK, f ); fprintf ( stderr, "%d bytes read\n", nIn ); nZ = M_BLOCK; r = BZ2_bzBuffToBuffCompress ( zbuf, &nZ, inbuf, nIn, 9, 0, 30 ); assert (r == BZ_OK); fprintf ( stderr, "%d after compression\n", nZ ); for (bit = 0; bit < nZ*8; bit++) { fprintf ( stderr, "bit %d ", bit ); flip_bit ( bit ); nOut = M_BLOCK_OUT; r = BZ2_bzBuffToBuffDecompress ( outbuf, &nOut, zbuf, nZ, 0, 0 ); fprintf ( stderr, " %d %s ", r, bzerrorstrings[-r] ); if (r != BZ_OK) { fprintf ( stderr, "\n" ); } else { if (nOut != nIn) { fprintf(stderr, "nIn/nOut mismatch %d %d\n", nIn, nOut ); return 1; } else { for (i = 0; i < nOut; i++) if (inbuf[i] != outbuf[i]) { fprintf(stderr, "mismatch at %d\n", i ); return 1; } if (i == nOut) fprintf(stderr, "really ok!\n" ); } } flip_bit ( bit ); } #if 0 assert (nOut == nIn); for (i = 0; i < nOut; i++) { if (inbuf[i] != outbuf[i]) { fprintf ( stderr, "difference at %d !\n", i ); return 1; } } #endif fprintf ( stderr, "all ok\n" ); return 0; }
the_stack_data/73575257.c
/* bcci.c -- Brainfuck Component Competition interpreter :) Version 1.2, 12/19/04 Daniel B Cristofani email cristofdathevanetdotcom http://www.hevanet.com/cristofd/brainfuck/ */ /*Make any use you like of this software. I can't stop you anyway. :)*/ /* This interpreter uses byte cells, and gives an error on overflow or underflow, or if the pointer is moved out of the array (whose size is defined in ARRAYSIZE). It translates newlines, and leaves cell values unchanged on end-of-file. It also reports the pointer's final location and the final values of all cells visited during execution, plus the number of brainfuck commands in the program, the number of commands executed (using Faase's [] semantics), and the amount of memory used, plus a composite score which is the product of these last three numbers. The pseudo-command '#' will zero all three numbers; this is to avoid scoring any framework which is needed to set things up before the execution of the component being tested, in the competition. */ #include <stdio.h> #include <float.h> #include <math.h> #define ARRAYSIZE 65536 #define CODESIZE 65536 unsigned long stackp=CODESIZE, targets[CODESIZE]; unsigned char array[ARRAYSIZE], code[CODESIZE]; long p=0, q=0, length, c, max; unsigned long census[256]; char *filename=""; FILE *prog; double count=0, maxcount; void err(char *s){ fprintf(stderr, "Error detected at byte %d of %s: %s!\n", q,filename,s); exit(1); } int main(int argc, char **argv){ if (argc > 2) err("Too many arguments"); if (argc < 2) err("I need a program filename"); if(!(prog = fopen(argv[1], "r"))) err("Can't open that file"); filename=argv[1]; length = fread(code, 1, CODESIZE, prog); fclose(prog); maxcount=pow(FLT_RADIX, DBL_MANT_DIG); for(q=0; q<length; q++){ ++census[code[q]]; if (code[q]=='[') targets[--stackp]=q; if (code[q]==']'){ if(stackp<CODESIZE) targets[targets[q]=targets[stackp++]]=q; else err("Unmatched ']'"); } if (code[q]=='#') for (p='+'; p<=']'; p++) census[p]=0; } if(stackp<CODESIZE) q=targets[stackp], err("Unmatched '['"); for(q=0,p=0;q<length;q++){ switch(code[q]){ case '+': if(array[p]++>=255) err("Overflow"); break; case '-': if(array[p]--<=0) err("Underflow"); break; case '<': p--; if(p<0) err("Too far left"); break; case '>': if(++p>max)max=p;if(p>=ARRAYSIZE)err("Too far right"); break; #if '\n' == 10 case ',': if((c=getchar())!= EOF) array[p]=c; break; case '.': putchar(array[p]); break; #else case ',': if((c=getchar())!=EOF) array[p]=c=='\n'?10:c; break; case '.': putchar(array[p]==10?'\n':array[p]); break; #endif case '[': if(!array[p]) q=targets[q]; break; case ']': if(array[p]) q=targets[q]; break; case '#': count=-1; max=0; break; default: count--; } if(count++>=maxcount) err("Command count overflow"); } printf("Pointer: %ld\nFinal memory state:\n", p); for (p=0; p<=max;++p) printf(" %3d", array[p]); printf("\n\n"); length=census['+']+census['-']+census['<']+census['>']; length+=census[',']+census['.']+census['[']+census[']']; printf("Program length: %ld.\nCommands executed: %.0f.\n", length,count); printf("Memory used: %ld.\nScore: %.0f.\n", max+1, length*count*(max+1)); exit(0); }