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the_stack_data/45451644.c
float f[1], e; int j; void main() { e = 5 * f[j]; print("e 0.000000"); printid(e); }
the_stack_data/67324805.c
#include <stdio.h> #include <stdlib.h> #include <string.h> #include <ctype.h> char* num_low[] = {"tret","jan", "feb", "mar", "apr", "may", "jun", "jly", "aug", "sep", "oct", "nov", "dec"}; char* num_high[] = {"tret","tam", "hel", "maa", "huh", "tou", "kes", "hei", "elo", "syy", "lok", "mer", "jou"}; int main(void) { int N; scanf("%d ", &N); for (int i = 0; i < N; i++) { char in[10]; fgets(in, 20, stdin); if (isdigit(in[0])) { // 地球数字转换为火星文 int number = atoi(in); int h = number / 13; int l = number % 13; if (h != 0 && l != 0) printf("%s %s\n", num_high[h],num_low[l]); else if(h != 0 && l ==0) printf("%s\n", num_high[h]); else printf("%s\n", num_low[l]); } else { //火星文转换为地球数字 char high[4]; char low[5]; int number = 0; if (in[3] == ' ') { //两位火星数字 sscanf(in, "%s", high); sscanf(in+4,"%s", low); for (int i = 0; i < 13; i++) { if (strcmp(num_high[i], high) == 0) number = number + 13 * i; if (strcmp(num_low[i], low) == 0) number = number + i; } } else { sscanf(in, "%s", high); for(int i = 1; i < 13; i++) { if (strcmp(num_low[i], high) == 0) number = i; if (strcmp(num_high[i], high) == 0) number = i * 13; } } printf("%d\n", number); } } }
the_stack_data/237643647.c
/* * Modified by Dhiru Kholia <dhiru at openwall.com> for Keychain format. * * This software is Copyright (c) 2012 Lukas Odzioba <[email protected]> * and it is hereby released to the general public under the following terms: * Redistribution and use in source and binary forms, with or without * modification, are permitted. */ #ifdef HAVE_OPENCL #if FMT_EXTERNS_H extern struct fmt_main fmt_opencl_sxc; #elif FMT_REGISTERS_H john_register_one(&fmt_opencl_sxc); #else #include <string.h> #include <stdint.h> #include <openssl/blowfish.h> #ifdef _OPENMP #include <omp.h> #endif #include "arch.h" #include "sha.h" #include "aes.h" #include "formats.h" #include "common.h" #include "misc.h" #include "options.h" #include "common.h" #include "formats.h" #include "common-opencl.h" #define FORMAT_LABEL "sxc-opencl" #define FORMAT_NAME "StarOffice .sxc" #define FORMAT_TAG "$sxc$*" #define FORMAT_TAG_LEN (sizeof(FORMAT_TAG)-1) #define ALGORITHM_NAME "PBKDF2-SHA1 OpenCL Blowfish" #define BENCHMARK_COMMENT "" #define BENCHMARK_LENGTH -1 #define MIN_KEYS_PER_CRYPT 1 #define MAX_KEYS_PER_CRYPT 1 #define BINARY_SIZE 20 #define PLAINTEXT_LENGTH 64 #define SALT_SIZE sizeof(sxc_cpu_salt) #define BINARY_ALIGN MEM_ALIGN_WORD #define SALT_ALIGN 4 typedef struct { uint32_t length; uint8_t v[20]; // hash of password } sxc_password; typedef struct { uint32_t v[16/4]; } sxc_hash; typedef struct { uint32_t iterations; uint32_t outlen; uint32_t skip_bytes; uint8_t length; uint8_t salt[64]; } sxc_salt; static char (*saved_key)[PLAINTEXT_LENGTH + 1]; static uint32_t (*crypt_out)[32 / sizeof(uint32_t)]; typedef struct { int cipher_type; int checksum_type; int iterations; int key_size; int iv_length; int salt_length; int original_length; int length; unsigned char iv[16]; unsigned char salt[32]; unsigned char content[1024]; } sxc_cpu_salt; static sxc_cpu_salt *cur_salt; static struct fmt_tests sxc_tests[] = { {"$sxc$*0*0*1024*16*4448359828281a1e6842c31453473abfeae584fb*8*dc0248bea0c7508c*16*1d53770002fe9d8016064e5ef9423174*860*864*f00399ab17b9899cd517758ecf918d4da78099ccd3557aef5e22e137fd5b81f732fc7c167c4de0cf263b4f82b50e3d6abc65da613a36b0025d89e1a09adeb4106da28040d1019bb4b36630fc8bc94fe5b515504bf8a92ea630bb95ace074868e7c10743ec970c89895f44b975a30b6ca032354f3e73ec86b2cc7a4f7a185884026d971b37b1e0e650376a2552e27ba955c700f8903a82a6df11f6cc2ecf63290f02ffdd278f890d1db75f9e8bd0f437c4ec613d3c6dcb421bbd1067be633593ba9bd58f77ef08e0cca64c732f892567d20de8d4c444fa9c1c1adc5e4657ef9740cb69ce55c8f9e6b1cfed0739ef002f1e1c1e54a5df50a759d92354f78eb90a9d9378f36df7d1edd8002ea0d637604fcd2408494c2d42b1771e2a2a20b55044836f76db4ed71e8a53f55a04f9437946603e7246c2d2d70caf6be0de82e8977fab4de84ca3783baedac041195d8b51166b502ff80c17db78f63d3632df1d5ef5b14d8d5553fc40b072030f9e3374c93e929a490c6cfb170f04433fc46f43b9c7d27f3f8c4ed759d4a20c2e53a0701b7c3d9201390a9b5597ce8ba35bd765b662e2242b9821bbb63b6be502d2150fff37e4b7f2a6b592fd0e319a7349df320e7fe7da600a2a05628dc00e04d480c085417f676bd0518bc39d9a9be34fc0cb192d5fa5e0c657cdf7c1ad265a2e81b90ac8b28d326f98b8f33c123df83edc964d2c17a904d0df8bd9ecbf629929d6e48cadc97f49a8941ada3d219e8c0f04f37cecc9a50cc5307fd2a488c34829b05cd1615ae0d1ef0ce450529aa755f9ae38332187ffe4144990de3265afaacb9f0f0fb9c67f6210369f7a0cc5bb346412db08e0f4732f91aa8d4b32fe6eece4fba118f118f6df2fb6c53fa9bc164c9ab7a9d414d33281eb0c3cd02abe0a4dd1c170e41c1c960a8f12a48a7b5e1f748c08e1b150a4e389c110ea3368bc6c6ef2bee98dc92c6825cbf6aee20e690e116c0e6cf48d49b38035f6a9b0cd6053b9f5b9f8360024c9c608cbba3fe5e7966b656fa08dec3e3ce3178a0c0007b7d177c7c44e6a68f4c7325cb98264b1e0f391c75a6a8fd3691581fb68ef459458830f2138d0fd743631efd92b742dfeb62c5ea8502515eb65af414bf805992f9272a7b1b745970fd54e128751f8f6c0a4d5bc7872bc09c04037e1e91dc7192d68f780cdb0f7ef6b282ea883be462ffeffb7b396e30303030", "openwall"}, {"$sxc$*0*0*1024*16*64983af0b26a6ee614e6c65b32c1d906f70c6397*8*259cafe530bd09f8*16*8f53ea878d0795cfe05dcc65fb272c20*1024*1024*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", "Ghe+t0Blaster"}, {"$sxc$*0*0*1024*16*64983af0b26a6ee614e6c65b32c1d906f70c6397*8*9bb755c8a4fe8c34*16*112b9d41098c8677615755361da473a6*1024*1024*b95f0f2e0e1c7b4ee61168b646804d4b70b615f3c978cec65c9a7ab515417c79625d104373fd5012c3da6b356f8408a3a75edcc8b2aad0aa38bb33edd8933bdadbffde35a350ade73ccb9df29c2996082f5e94e324496835f8dfebe15ca38950e0f435d711ef964aa09915d58287967b5e321ca195a7f90253157afe82329da9a496c97292419b9a94cdb92f919e6d54700466aff61c200c5a355905b5a37c12d77b0e4ffd23f0204cfa664f4c0545f233db8d35af5fe337b459135da398fd23101becb194db305496474ba4179a7355285a9ec935044e1831f290f5f87ed3e00925e7fb4fc6bc38d9f0cfe9abf72560400490d2fd398d2d49516b618f99168602f323dd1786bcca394830341dfbeb377f9b7ef161dc1470f5e92b6152fa7a4f428e8ae40100791491a9e1c9385298522320488f00535866ac6e08354a75b8b2fd293066da7eb6b4ad7f3e13c8dc98cd815b2393f147fdac6279f76fdac9abd0a94131fa84fe4e99634a362a56d60ce588f6e0b66d6f8b6d411511272ffe32181d20e7d2c3d4b680764607afb2c29dcb94a845b920e96f6c27575534f8b7f9ddd93bdcef0d717d0a899fa937e7d2eeeb6d5b0338757f6e69dac72524d4b6f74edce1f937008eb3653bcc31a88712af940cf47ec3f3efd83e4da89d1a6cb7da6cf8d7d41430bc81a4b5d7bb46cad687f2f505e3379143ae274eed6201c3b17c1e05e516a14cbf2351ccf9fdd46e1309afb170bd01eb8f6a1d8e12441525199455fb550e3fc689b1801332b2d985e336b158f846fcbca18fbe6ea21438cf1fb5fdbce8d6350e65d6468342880845675ec721af2fb9df917a3968b4a1a477fc4c74ee38a71a230d77c2a7cf66ae6b83804488cbd25213ebc470cd845a2691b16161a640ebb385aa2381dc91f692f6c4ca2709b5a7e94dfb4548000a29b56f1da08701945d6209fabbd1621b28849fc27810775f1a0e0204d3ae9040a8cfb1386499a39d87149cfc1579de7d059662ad25a67abd42b30bb3608f09142ca030351c3a1e921e4c7bbc11aab846ef42eb5d1418c15ada77539aca096e0678439cd1b60950d2aa0cc4d2004b1ac48dc6a454c5a8e9ea7e910047c7c83895fd614fd9dfd961631eb23757646143c2aeb03c1a6476e78fc4ccf0f02cc1f88ec1b0080a170ac6871dc183939f7a4376965b0dfa7922012582eec4846ee621edc5547a2b9c4893e7f67f76541a4bd4a91827a57b3db5cdea29a2a3cc20238d89c8145c14b037360ad27f54f87317ef70472d6b1fd9f1168bcf8aba6071257b3adebab8d4e115188ed4af3fc3574fdccb4bc7eeb00a6a442f1b96a989b735f5e6059ec72c1677b77f437dcb93066f8591a11071799c3a0ec3b48f6160976aff1928c375358837e1ef02e20397b2e9d8d9c4bff23172c9b4c0b941cb1b49b5bc070f72a14cd384", "M1racl33"}, {"$sxc$*0*0*1024*16*64983af0b26a6ee614e6c65b32c1d906f70c6397*8*ceb1edb1e3cb72fd*16*f7104c9b2789540f5fd4beef009c0139*1024*1024*709130b940a9663d0a5687133c6f78535d05a72936faed8c2f3c1b4e29423baaabcee4f0d7d57e3ad8d8c090486f974c4d0ce4be5b29ef8e1b02c01b4af1959ed0b277146a45aec35a48997b584b82697803193644eefd88a7eefcae8819839e13702f887278a597dd954babd82bf71bf8ca8559af0e5537be0264e358d36b4f5067960edf608de731e04d117de953386aadee71849edbc494fac3e6b14567a9e9c545a06d402acd3158441829f25478ed0f9086dabd2d3913b123b43c27176f8f08f30312d84e82d47654097a2bce95554357db3ce3d45a7441472067f55e4ea6244a3dedc23db4bea8f549109ffac382cf5b652c5b1ee431bcab1051567c263a9d668c5d6a15a6f8da754914746c1d3c7eb6347bdd8d6a3ac82e4c742fcf8721913c111dfd5398f2698db00f7220d2a3562e02f7f7a6505af3ba1ee10b46f2ab5b5d2f52d288fd12814c6edbcb8d50b6e8716fba0d5962747b971689fe75e94fa36ec39598ea30e15ab2b9c9f22ca04b890a13b18fb3c7a962050426bb2da08c8b993608b9c1ffd0a21e0c74e993242ead8eb30f86d7d2dcdbd4774d85c2e06adbe4b40050ff0ac1a8afe8fbc2175ec4da4676a691b1fce38421175734c20f07a604fea5287e1c33b420aa9db4de9bd97382c161b4ec0818add675e52ebf036aad779f24b824be4b2b013c470ff66cbf44f5800e128a3b328e80a5fd6295b9b3a94e915f9add6710cb9444432751a7a31c3a3422f48a5eabc26d9a52571b8447bdd0a5977ff7153d95337cef7ff2ec29774332fbeed6ee5eed5e12288cc13e14ba9d5ff3dd052e28ba96715f5b95d7ea214ebcd9e60b26308eb11370b824b5cff2644dd2117985b3c25ba8076d4025cf3a3a62da62d5e11d44422a142048e8cd00c7de6a0a55fd5dc09a3ed01dfe35b88268f351b6ff289fee8e52ac29fe32d9990e0d6d87f39727b6a762bac9d509c6ea235fc8bedc3bec2143eae9fd2cb831b798ef8261d72785002638b940947de0aad64f791f9a27e5b091e55adf4aee0649f6785bdd37e0248fedd1759d771aeacacb3ff6e7cf2d045f791428ab61710b54e869213393caf1b6bc99066678351deafc290cecc1f6b40b5532adbbab9a70408c61a437d4483b6a75cb61a55b20881efc0d849e0f60c1887f0fa091672179a145c4ab1b6487a0e939e0123d5aaffa3aec66ab593f9c25d27f22f4a73a999a4ab45e8bc7d71a85e2d40afadad1a1dc0b8389f96f91614293fa205583ef1c3440e3df50e8aa5f1a13e5929b72cd003461ff03d44d8c84bdada176b24459021d398b2b91b61a9c0b553a8714c703d32452c691a33f1581e98c2439514ca3e7deeef90850f8d6d89bf1d3a5762a56ef769ea588f5c1705bfb7b944cfbbb0632718ee3722f4e1929b35706d6413a315a11bc16349af109a7e675df2ab1eebe93", "excel123"}, {NULL} }; static cl_int cl_error; static sxc_password *inbuffer; static sxc_hash *outbuffer; static sxc_salt currentsalt; static cl_mem mem_in, mem_out, mem_setting; static struct fmt_main *self; static size_t insize, outsize, settingsize; #define STEP 0 #define SEED 256 // This file contains auto-tuning routine(s). Has to be included after formats definitions. #include "opencl_autotune.h" #include "memdbg.h" static const char * warn[] = { "xfer: ", ", crypt: ", ", xfer: " }; /* ------- Helper functions ------- */ static size_t get_task_max_work_group_size() { return autotune_get_task_max_work_group_size(FALSE, 0, crypt_kernel); } static void create_clobj(size_t gws, struct fmt_main *self) { insize = sizeof(sxc_password) * gws; outsize = sizeof(sxc_hash) * gws; settingsize = sizeof(sxc_salt); inbuffer = mem_calloc(1, insize); outbuffer = mem_alloc(outsize); saved_key = mem_calloc(gws, sizeof(*saved_key)); crypt_out = mem_calloc(gws, sizeof(*crypt_out)); /// Allocate memory mem_in = clCreateBuffer(context[gpu_id], CL_MEM_READ_ONLY, insize, NULL, &cl_error); HANDLE_CLERROR(cl_error, "Error allocating mem in"); mem_setting = clCreateBuffer(context[gpu_id], CL_MEM_READ_ONLY, settingsize, NULL, &cl_error); HANDLE_CLERROR(cl_error, "Error allocating mem setting"); mem_out = clCreateBuffer(context[gpu_id], CL_MEM_WRITE_ONLY, outsize, NULL, &cl_error); HANDLE_CLERROR(cl_error, "Error allocating mem out"); HANDLE_CLERROR(clSetKernelArg(crypt_kernel, 0, sizeof(mem_in), &mem_in), "Error while setting mem_in kernel argument"); HANDLE_CLERROR(clSetKernelArg(crypt_kernel, 1, sizeof(mem_out), &mem_out), "Error while setting mem_out kernel argument"); HANDLE_CLERROR(clSetKernelArg(crypt_kernel, 2, sizeof(mem_setting), &mem_setting), "Error while setting mem_salt kernel argument"); } static void release_clobj(void) { if (crypt_out) { HANDLE_CLERROR(clReleaseMemObject(mem_in), "Release mem in"); HANDLE_CLERROR(clReleaseMemObject(mem_setting), "Release mem setting"); HANDLE_CLERROR(clReleaseMemObject(mem_out), "Release mem out"); MEM_FREE(inbuffer); MEM_FREE(outbuffer); MEM_FREE(saved_key); MEM_FREE(crypt_out); } } static void done(void) { if (autotuned) { release_clobj(); HANDLE_CLERROR(clReleaseKernel(crypt_kernel), "Release kernel"); HANDLE_CLERROR(clReleaseProgram(program[gpu_id]), "Release Program"); autotuned--; } } static void init(struct fmt_main *_self) { self = _self; opencl_prepare_dev(gpu_id); } static void reset(struct db_main *db) { if (!autotuned) { char build_opts[64]; snprintf(build_opts, sizeof(build_opts), "-DKEYLEN=%d -DSALTLEN=%d -DOUTLEN=%d", (int)sizeof(inbuffer->v), (int)sizeof(currentsalt.salt), (int)sizeof(outbuffer->v)); opencl_init("$JOHN/kernels/pbkdf2_hmac_sha1_unsplit_kernel.cl", gpu_id, build_opts); crypt_kernel = clCreateKernel(program[gpu_id], "derive_key", &cl_error); HANDLE_CLERROR(cl_error, "Error creating kernel"); // Initialize openCL tuning (library) for this format. opencl_init_auto_setup(SEED, 0, NULL, warn, 1, self, create_clobj, release_clobj, sizeof(sxc_password), 0, db); // Auto tune execution from shared/included code. autotune_run(self, 1, 0, 1000); } } static int valid(char *ciphertext, struct fmt_main *self) { char *ctcopy; char *keeptr; char *p; int res, extra; if (strncmp(ciphertext, FORMAT_TAG, FORMAT_TAG_LEN)) return 0; ctcopy = strdup(ciphertext); keeptr = ctcopy; ctcopy += FORMAT_TAG_LEN; if ((p = strtokm(ctcopy, "*")) == NULL) /* cipher type */ goto err; res = atoi(p); if (res != 0 && res != 1) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* checksum type */ goto err; res = atoi(p); if (res != 0 && res != 1) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* iterations */ goto err; res = atoi(p); if (res <= 0) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* key size */ goto err; res = atoi(p); if (res != 16 && res != 32) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* checksum field (skipped) */ goto err; if (hexlenl(p, &extra) != BINARY_SIZE * 2 || extra) goto err; if (!ishex(p)) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* iv length */ goto err; res = atoi(p); if (res <= 0 || res > 16) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* iv */ goto err; if (hexlenl(p, &extra) != res * 2 || extra) goto err; if (!ishex(p)) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* salt length */ goto err; res = atoi(p); if (res <= 0 || res > 32) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* salt */ goto err; if (hexlenl(p, &extra) != res * 2 || extra) goto err; if (!ishex(p)) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* original length */ goto err; res = atoi(p); if (res <= 0 || res > 1024) /* 1024 because of "unsigned char output[1024];" in crypt_all */ goto err; if ((p = strtokm(NULL, "*")) == NULL) /* length */ goto err; res = atoi(p); if (res <= 0 || res > 1024) goto err; if ((p = strtokm(NULL, "*")) == NULL) /* content */ goto err; if (hexlenl(p, &extra) != res * 2 || extra) goto err; if (strtokm(NULL, "*") != NULL) /* the end */ goto err; MEM_FREE(keeptr); return 1; err: MEM_FREE(keeptr); return 0; } static void *get_salt(char *ciphertext) { char *ctcopy = strdup(ciphertext); char *keeptr = ctcopy; int i; char *p; static sxc_cpu_salt cs; memset(&cs, 0, sizeof(cs)); ctcopy += 6; /* skip over "$sxc$*" */ p = strtokm(ctcopy, "*"); cs.cipher_type = atoi(p); p = strtokm(NULL, "*"); cs.checksum_type = atoi(p); p = strtokm(NULL, "*"); cs.iterations = atoi(p); p = strtokm(NULL, "*"); cs.key_size = atoi(p); strtokm(NULL, "*"); /* skip checksum field */ p = strtokm(NULL, "*"); cs.iv_length = atoi(p); p = strtokm(NULL, "*"); for (i = 0; i < cs.iv_length; i++) cs.iv[i] = atoi16[ARCH_INDEX(p[i * 2])] * 16 + atoi16[ARCH_INDEX(p[i * 2 + 1])]; p = strtokm(NULL, "*"); cs.salt_length = atoi(p); p = strtokm(NULL, "*"); for (i = 0; i < cs.salt_length; i++) cs.salt[i] = atoi16[ARCH_INDEX(p[i * 2])] * 16 + atoi16[ARCH_INDEX(p[i * 2 + 1])]; p = strtokm(NULL, "*"); cs.original_length = atoi(p); p = strtokm(NULL, "*"); cs.length = atoi(p); p = strtokm(NULL, "*"); for (i = 0; i < cs.length; i++) cs.content[i] = atoi16[ARCH_INDEX(p[i * 2])] * 16 + atoi16[ARCH_INDEX(p[i * 2 + 1])]; MEM_FREE(keeptr); return (void *)&cs; } static void *get_binary(char *ciphertext) { static union { unsigned char c[BINARY_SIZE+1]; ARCH_WORD dummy; } buf; unsigned char *out = buf.c; char *p; int i; char *ctcopy = strdup(ciphertext); char *keeptr = ctcopy; ctcopy += FORMAT_TAG_LEN; /* skip over "$sxc$*" */ strtokm(ctcopy, "*"); strtokm(NULL, "*"); strtokm(NULL, "*"); strtokm(NULL, "*"); p = strtokm(NULL, "*"); for (i = 0; i < BINARY_SIZE; i++) { out[i] = (atoi16[ARCH_INDEX(*p)] << 4) | atoi16[ARCH_INDEX(p[1])]; p += 2; } MEM_FREE(keeptr); return out; } static void set_salt(void *salt) { cur_salt = (sxc_cpu_salt*)salt; memcpy((char*)currentsalt.salt, cur_salt->salt, cur_salt->salt_length); currentsalt.length = cur_salt->salt_length; currentsalt.iterations = cur_salt->iterations; currentsalt.outlen = cur_salt->key_size; currentsalt.skip_bytes = 0; HANDLE_CLERROR(clEnqueueWriteBuffer(queue[gpu_id], mem_setting, CL_FALSE, 0, settingsize, &currentsalt, 0, NULL, NULL), "Copy salt to gpu"); } #undef set_key static void set_key(char *key, int index) { strnzcpy(saved_key[index], key, sizeof(*saved_key)); } static char *get_key(int index) { return saved_key[index]; } static int crypt_all(int *pcount, struct db_salt *salt) { const int count = *pcount; int index; size_t *lws = local_work_size ? &local_work_size : NULL; global_work_size = GET_MULTIPLE_OR_BIGGER(count, local_work_size); #ifdef _OPENMP #pragma omp parallel for #endif for (index = 0; index < count; index++) { unsigned char hash[20]; SHA_CTX ctx; SHA1_Init(&ctx); SHA1_Update(&ctx, (unsigned char *)saved_key[index], strlen(saved_key[index])); SHA1_Final((unsigned char *)hash, &ctx); memcpy(inbuffer[index].v, hash, 20); inbuffer[index].length = 20; } /// Copy data to gpu BENCH_CLERROR(clEnqueueWriteBuffer(queue[gpu_id], mem_in, CL_FALSE, 0, insize, inbuffer, 0, NULL, multi_profilingEvent[0]), "Copy data to gpu"); /// Run kernel BENCH_CLERROR(clEnqueueNDRangeKernel(queue[gpu_id], crypt_kernel, 1, NULL, &global_work_size, lws, 0, NULL, multi_profilingEvent[1]), "Run kernel"); /// Read the result back BENCH_CLERROR(clEnqueueReadBuffer(queue[gpu_id], mem_out, CL_TRUE, 0, outsize, outbuffer, 0, NULL, multi_profilingEvent[2]), "Copy result back"); if (ocl_autotune_running) return count; #ifdef _OPENMP #pragma omp parallel for #endif for (index = 0; index < count; index++) { BF_KEY bf_key; SHA_CTX ctx; int bf_ivec_pos; unsigned char ivec[8]; unsigned char output[1024]; bf_ivec_pos = 0; memcpy(ivec, cur_salt->iv, 8); BF_set_key(&bf_key, cur_salt->key_size, (const unsigned char*)outbuffer[index].v); BF_cfb64_encrypt(cur_salt->content, output, cur_salt->length, &bf_key, ivec, &bf_ivec_pos, 0); SHA1_Init(&ctx); SHA1_Update(&ctx, output, cur_salt->original_length); SHA1_Final((unsigned char*)crypt_out[index], &ctx); } return count; } static int cmp_all(void *binary, int count) { int index = 0; for (; index < count; index++) if (!memcmp(binary, crypt_out[index], ARCH_SIZE)) return 1; return 0; } static int cmp_one(void *binary, int index) { return !memcmp(binary, crypt_out[index], BINARY_SIZE); } static int cmp_exact(char *source, int index) { return 1; } static unsigned int iteration_count(void *salt) { sxc_salt *my_salt; my_salt = salt; return (unsigned int) my_salt->iterations; } struct fmt_main fmt_opencl_sxc = { { FORMAT_LABEL, FORMAT_NAME, ALGORITHM_NAME, BENCHMARK_COMMENT, BENCHMARK_LENGTH, 0, PLAINTEXT_LENGTH, BINARY_SIZE, BINARY_ALIGN, SALT_SIZE, SALT_ALIGN, MIN_KEYS_PER_CRYPT, MAX_KEYS_PER_CRYPT, FMT_CASE | FMT_8_BIT | FMT_OMP | FMT_HUGE_INPUT, { "iteration count", }, { FORMAT_TAG }, sxc_tests }, { init, done, reset, fmt_default_prepare, valid, fmt_default_split, get_binary, get_salt, { iteration_count, }, fmt_default_source, { fmt_default_binary_hash }, fmt_default_salt_hash, NULL, set_salt, set_key, get_key, fmt_default_clear_keys, crypt_all, { fmt_default_get_hash }, cmp_all, cmp_one, cmp_exact } }; #endif /* plugin stanza */ #endif /* HAVE_OPENCL */
the_stack_data/175143640.c
#include <stdio.h> #include <stdlib.h> int main(int argc, char** argv) { printf("Hello, World!"); return(0); }
the_stack_data/89503.c
struct { };
the_stack_data/61074545.c
#define _GNU_SOURCE #include <sys/types.h> #include <stdio.h> #include <stdarg.h> #include <time.h> #include <errno.h> #include <unistd.h> #include <signal.h> #include <stdlib.h> #include <stdint.h> #include <string.h> #include <sys/socket.h> #include <sys/fcntl.h> #include <sys/stat.h> #include <netdb.h> #include <sys/select.h> #include <arpa/inet.h> #include <netinet/tcp.h> #include <pthread.h> #if defined(__APPLE__) && defined(__MACH__) #define SOL_TCP IPPROTO_TCP #endif #define BUFSIZE 65536 #define IPSIZE 4 #define ARRAY_SIZE(x) (sizeof(x) / sizeof(x[0])) #define ARRAY_INIT {0} unsigned short int port = 1080; int daemon_mode = 0; int auth_type; char *arg_username; char *arg_password; FILE *log_file; pthread_mutex_t lock; enum socks { RESERVED = 0x00, VERSION4 = 0x04, VERSION5 = 0x05 }; enum socks_auth_methods { NOAUTH = 0x00, USERPASS = 0x02, NOMETHOD = 0xff }; enum socks_auth_userpass { AUTH_OK = 0x00, AUTH_VERSION = 0x01, AUTH_FAIL = 0xff }; enum socks_command { CONNECT = 0x01 }; enum socks_command_type { IP = 0x01, DOMAIN = 0x03 }; enum socks_status { OK = 0x00, FAILED = 0x05 }; void log_message(const char *message, ...) { if (daemon_mode) { return; } char vbuffer[255]; va_list args; va_start(args, message); vsnprintf(vbuffer, ARRAY_SIZE(vbuffer), message, args); va_end(args); time_t now; time(&now); char *date = ctime(&now); date[strlen(date) - 1] = '\0'; pthread_t self = pthread_self(); if (errno != 0) { pthread_mutex_lock(&lock); fprintf(log_file, "[%s][%lu] Critical: %s - %s\n", date, self, vbuffer, strerror(errno)); errno = 0; pthread_mutex_unlock(&lock); } else { fprintf(log_file, "[%s][%lu] Info: %s\n", date, self, vbuffer); } fflush(log_file); } int readn(int fd, void *buf, int n) { int nread, left = n; while (left > 0) { if ((nread = read(fd, buf, left)) == -1) { if (errno == EINTR || errno == EAGAIN) { continue; } } else { if (nread == 0) { return 0; } else { left -= nread; buf += nread; } } } return n; } int writen(int fd, void *buf, int n) { int nwrite, left = n; while (left > 0) { if ((nwrite = write(fd, buf, left)) == -1) { if (errno == EINTR || errno == EAGAIN) { continue; } } else { if (nwrite == n) { return 0; } else { left -= nwrite; buf += nwrite; } } } return n; } void app_thread_exit(int ret, int fd) { close(fd); pthread_exit((void *)&ret); } int app_connect(int type, void *buf, unsigned short int portnum) { int fd; struct sockaddr_in remote; char address[16]; memset(address, 0, ARRAY_SIZE(address)); if (type == IP) { char *ip = (char *)buf; snprintf(address, ARRAY_SIZE(address), "%hhu.%hhu.%hhu.%hhu", ip[0], ip[1], ip[2], ip[3]); memset(&remote, 0, sizeof(remote)); remote.sin_family = AF_INET; remote.sin_addr.s_addr = inet_addr(address); remote.sin_port = htons(portnum); fd = socket(AF_INET, SOCK_STREAM, 0); if (connect(fd, (struct sockaddr *)&remote, sizeof(remote)) < 0) { log_message("connect() in app_connect"); close(fd); return -1; } return fd; } else if (type == DOMAIN) { char portaddr[6]; struct addrinfo *res; snprintf(portaddr, ARRAY_SIZE(portaddr), "%d", portnum); log_message("getaddrinfo: %s %s", (char *)buf, portaddr); int ret = getaddrinfo((char *)buf, portaddr, NULL, &res); if (ret == EAI_NODATA) { return -1; } else if (ret == 0) { struct addrinfo *r; for (r = res; r != NULL; r = r->ai_next) { fd = socket(AF_INET, SOCK_STREAM, 0); ret = connect(fd, r->ai_addr, r->ai_addrlen); if (ret == 0) { freeaddrinfo(res); return fd; } else { close(fd); } } } freeaddrinfo(res); return -1; } return -1; } int socks_invitation(int fd, int *version) { char init[2]; int nread = readn(fd, (void *)init, ARRAY_SIZE(init)); if (nread == 2 && init[0] != VERSION5 && init[0] != VERSION4) { log_message("They send us %hhX %hhX", init[0], init[1]); log_message("Incompatible version!"); app_thread_exit(0, fd); } log_message("Initial %hhX %hhX", init[0], init[1]); *version = init[0]; return init[1]; } char *socks5_auth_get_user(int fd) { unsigned char size; readn(fd, (void *)&size, sizeof(size)); char *user = (char *)malloc(sizeof(char) * size + 1); readn(fd, (void *)user, (int)size); user[size] = 0; return user; } char *socks5_auth_get_pass(int fd) { unsigned char size; readn(fd, (void *)&size, sizeof(size)); char *pass = (char *)malloc(sizeof(char) * size + 1); readn(fd, (void *)pass, (int)size); pass[size] = 0; return pass; } int socks5_auth_userpass(int fd) { char answer[2] = { VERSION5, USERPASS }; writen(fd, (void *)answer, ARRAY_SIZE(answer)); char resp; readn(fd, (void *)&resp, sizeof(resp)); log_message("auth %hhX", resp); char *username = socks5_auth_get_user(fd); char *password = socks5_auth_get_pass(fd); log_message("l: %s p: %s", username, password); if (strcmp(arg_username, username) == 0 && strcmp(arg_password, password) == 0) { char answer[2] = { AUTH_VERSION, AUTH_OK }; writen(fd, (void *)answer, ARRAY_SIZE(answer)); free(username); free(password); return 0; } else { char answer[2] = { AUTH_VERSION, AUTH_FAIL }; writen(fd, (void *)answer, ARRAY_SIZE(answer)); free(username); free(password); return 1; } } int socks5_auth_noauth(int fd) { char answer[2] = { VERSION5, NOAUTH }; writen(fd, (void *)answer, ARRAY_SIZE(answer)); return 0; } void socks5_auth_notsupported(int fd) { char answer[2] = { VERSION5, NOMETHOD }; writen(fd, (void *)answer, ARRAY_SIZE(answer)); } void socks5_auth(int fd, int methods_count) { int supported = 0; int num = methods_count; for (int i = 0; i < num; i++) { char type; readn(fd, (void *)&type, 1); log_message("Method AUTH %hhX", type); if (type == auth_type) { supported = 1; } } if (supported == 0) { socks5_auth_notsupported(fd); app_thread_exit(1, fd); } int ret = 0; switch (auth_type) { case NOAUTH: ret = socks5_auth_noauth(fd); break; case USERPASS: ret = socks5_auth_userpass(fd); break; } if (ret == 0) { return; } else { app_thread_exit(1, fd); } } int socks5_command(int fd) { char command[4]; readn(fd, (void *)command, ARRAY_SIZE(command)); log_message("Command %hhX %hhX %hhX %hhX", command[0], command[1], command[2], command[3]); return command[3]; } unsigned short int socks_read_port(int fd) { unsigned short int p; readn(fd, (void *)&p, sizeof(p)); log_message("Port %hu", ntohs(p)); return p; } char *socks_ip_read(int fd) { char *ip = (char *)malloc(sizeof(char) * IPSIZE); readn(fd, (void *)ip, IPSIZE); log_message("IP %hhu.%hhu.%hhu.%hhu", ip[0], ip[1], ip[2], ip[3]); return ip; } void socks5_ip_send_response(int fd, char *ip, unsigned short int port) { char response[4] = { VERSION5, OK, RESERVED, IP }; writen(fd, (void *)response, ARRAY_SIZE(response)); writen(fd, (void *)ip, IPSIZE); writen(fd, (void *)&port, sizeof(port)); } char *socks5_domain_read(int fd, unsigned char *size) { unsigned char s; readn(fd, (void *)&s, sizeof(s)); char *address = (char *)malloc((sizeof(char) * s) + 1); readn(fd, (void *)address, (int)s); address[s] = 0; log_message("Address %s", address); *size = s; return address; } void socks5_domain_send_response(int fd, char *domain, unsigned char size, unsigned short int port) { char response[4] = { VERSION5, OK, RESERVED, DOMAIN }; writen(fd, (void *)response, ARRAY_SIZE(response)); writen(fd, (void *)&size, sizeof(size)); writen(fd, (void *)domain, size * sizeof(char)); writen(fd, (void *)&port, sizeof(port)); } int socks4_is_4a(char *ip) { return (ip[0] == 0 && ip[1] == 0 && ip[2] == 0 && ip[3] != 0); } int socks4_read_nstring(int fd, char *buf, int size) { char sym = 0; int nread = 0; int i = 0; while (i < size) { nread = recv(fd, &sym, sizeof(char), 0); if (nread <= 0) { break; } else { buf[i] = sym; i++; } if (sym == 0) { break; } } return i; } void socks4_send_response(int fd, int status) { char resp[8] = {0x00, (char)status, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}; writen(fd, (void *)resp, ARRAY_SIZE(resp)); } void app_socket_pipe(int fd0, int fd1) { int maxfd, ret; fd_set rd_set; size_t nread; char buffer_r[BUFSIZE]; log_message("Connecting two sockets"); maxfd = (fd0 > fd1) ? fd0 : fd1; while (1) { FD_ZERO(&rd_set); FD_SET(fd0, &rd_set); FD_SET(fd1, &rd_set); ret = select(maxfd + 1, &rd_set, NULL, NULL, NULL); if (ret < 0 && errno == EINTR) { continue; } if (FD_ISSET(fd0, &rd_set)) { nread = recv(fd0, buffer_r, BUFSIZE, 0); if (nread <= 0) break; send(fd1, (const void *)buffer_r, nread, 0); } if (FD_ISSET(fd1, &rd_set)) { nread = recv(fd1, buffer_r, BUFSIZE, 0); if (nread <= 0) break; send(fd0, (const void *)buffer_r, nread, 0); } } } void *app_thread_process(void *fd) { int net_fd = *(int *)fd; int version = 0; int inet_fd = -1; char methods = socks_invitation(net_fd, &version); switch (version) { case VERSION5: { socks5_auth(net_fd, methods); int command = socks5_command(net_fd); if (command == IP) { char *ip = socks_ip_read(net_fd); unsigned short int p = socks_read_port(net_fd); inet_fd = app_connect(IP, (void *)ip, ntohs(p)); if (inet_fd == -1) { app_thread_exit(1, net_fd); } socks5_ip_send_response(net_fd, ip, p); free(ip); break; } else if (command == DOMAIN) { unsigned char size; char *address = socks5_domain_read(net_fd, &size); unsigned short int p = socks_read_port(net_fd); inet_fd = app_connect(DOMAIN, (void *)address, ntohs(p)); if (inet_fd == -1) { app_thread_exit(1, net_fd); } socks5_domain_send_response(net_fd, address, size, p); free(address); break; } else { app_thread_exit(1, net_fd); } } case VERSION4: { if (methods == 1) { char ident[255]; unsigned short int p = socks_read_port(net_fd); char *ip = socks_ip_read(net_fd); socks4_read_nstring(net_fd, ident, sizeof(ident)); if (socks4_is_4a(ip)) { char domain[255]; socks4_read_nstring(net_fd, domain, sizeof(domain)); log_message("Socks4A: ident:%s; domain:%s;", ident, domain); inet_fd = app_connect(DOMAIN, (void *)domain, ntohs(p)); } else { log_message("Socks4: connect by ip & port"); inet_fd = app_connect(IP, (void *)ip, ntohs(p)); } if (inet_fd != -1) { socks4_send_response(net_fd, 0x5a); } else { socks4_send_response(net_fd, 0x5b); free(ip); app_thread_exit(1, net_fd); } free(ip); } else { log_message("Unsupported mode"); } break; } } app_socket_pipe(inet_fd, net_fd); close(inet_fd); app_thread_exit(0, net_fd); return NULL; } int app_loop() { int sock_fd, net_fd; int optval = 1; struct sockaddr_in local, remote; socklen_t remotelen; if ((sock_fd = socket(AF_INET, SOCK_STREAM, 0)) < 0) { log_message("socket()"); exit(1); } if (setsockopt (sock_fd, SOL_SOCKET, SO_REUSEADDR, (char *)&optval, sizeof(optval)) < 0) { log_message("setsockopt()"); exit(1); } memset(&local, 0, sizeof(local)); local.sin_family = AF_INET; local.sin_addr.s_addr = htonl(INADDR_ANY); local.sin_port = htons(port); if (bind(sock_fd, (struct sockaddr *)&local, sizeof(local)) < 0) { log_message("bind()"); exit(1); } if (listen(sock_fd, 25) < 0) { log_message("listen()"); exit(1); } remotelen = sizeof(remote); memset(&remote, 0, sizeof(remote)); log_message("Listening port %d...", port); pthread_t worker; while (1) { if ((net_fd = accept(sock_fd, (struct sockaddr *)&remote, &remotelen)) < 0) { log_message("accept()"); exit(1); } int one = 1; setsockopt(sock_fd, SOL_TCP, TCP_NODELAY, &one, sizeof(one)); if (pthread_create (&worker, NULL, &app_thread_process, (void *)&net_fd) == 0) { pthread_detach(worker); } else { log_message("pthread_create()"); } } } void daemonize() { pid_t pid; int x; pid = fork(); if (pid < 0) { exit(EXIT_FAILURE); } if (pid > 0) { exit(EXIT_SUCCESS); } if (setsid() < 0) { exit(EXIT_FAILURE); } signal(SIGCHLD, SIG_IGN); signal(SIGHUP, SIG_IGN); pid = fork(); if (pid < 0) { exit(EXIT_FAILURE); } if (pid > 0) { exit(EXIT_SUCCESS); } umask(0); chdir("/"); for (x = sysconf(_SC_OPEN_MAX); x >= 0; x--) { close(x); } } void usage(char *app) { printf ("USAGE: %s [-h][-n PORT][-a AUTHTYPE][-u USERNAME][-p PASSWORD][-l LOGFILE]\n", app); printf("AUTHTYPE: 0 for NOAUTH, 2 for USERPASS\n"); printf ("By default: port is 1080, authtype is no auth, logfile is stdout\n"); exit(1); } int main(int argc, char *argv[]) { int ret; log_file = stdout; auth_type = NOAUTH; arg_username = "user"; arg_password = "pass"; pthread_mutex_init(&lock, NULL); signal(SIGPIPE, SIG_IGN); while ((ret = getopt(argc, argv, "n:u:p:l:a:hd")) != -1) { switch (ret) { case 'd':{ daemon_mode = 1; daemonize(); break; } case 'n':{ port = atoi(optarg) & 0xffff; break; } case 'u':{ arg_username = strdup(optarg); break; } case 'p':{ arg_password = strdup(optarg); break; } case 'l':{ freopen(optarg, "wa", log_file); break; } case 'a':{ auth_type = atoi(optarg); break; } case 'h': default: usage(argv[0]); } } log_message("Starting with authtype %X", auth_type); if (auth_type != NOAUTH) { log_message("Username is %s, password is %s", arg_username, arg_password); } app_loop(); return 0; }
the_stack_data/67326556.c
#include <stdio.h> int main() { int n,i,k; scanf("%d", &n); i=0; int masiv[n]; while(i<n) { scanf("%d", &masiv[i]); if(masiv[i]%2!=0) i++; } for(i=0;i<n/2;i++) { k=masiv[i]-masiv[n-1]; printf("\n%d", k); } if(n%2!=0) { printf("\n%d", masiv[n/2]); } return 0; }
the_stack_data/447967.c
#include <stdio.h> double umSobreImpar(int n){ //an= a1+(n-1) . r //3,5,7,9,11 return 3+(n-1)*2; } double somaUmSobreImpar(int n/*Posição do numero*/){ int soma=0,i; n=umSobreImpar(n); i=n; while(i>=3){ soma+=i; i=i-2; } return soma; } void exercicio4(){ int n; printf("Digite o valor de n"); scanf("%d",&n); printf("%lf",somaUmSobreImpar(n)); } int main(void) { exercicio4(); return 0; }
the_stack_data/69045.c
#include<stdio.h> #include<stdlib.h> //struct for node of RBT typedef struct node{ int data; int colour; //0 for black, 1 for red struct node* p; //parent node struct node* l; //left node struct node* r; //right node }node; node* root = NULL, *root1 = NULL; // function to perform BST insertion in RBT node* Insert(node* it, node* temp) { // If the tree is empty, return a new node if (it == NULL) return temp; // Otherwise move down the tree //left branch if (temp->data < it->data) { it->l = Insert(it->l, temp); it->l->p = it; } //right branch else if (temp->data > it->data) { it->r = Insert(it->r, temp); it->r->p = it; } return it; } // Function performing right rotation void Rrotate(node* temp) { node* left = temp->l; temp->l = left->r; if (temp->l) temp->l->p = temp; left->p = temp->p; if (!temp->p) root = left; else if (temp == temp->p->l) temp->p->l = left; else temp->p->r = left; left->r = temp; temp->p = left; } // Function performing left rotation void Lrotate(node* temp) { node* right = temp->r; temp->r = right->l; if (temp->r) temp->r->p = temp; right->p = temp->p; if (!temp->p) root = right; else if (temp == temp->p->l) temp->p->l = right; else temp->p->r = right; right->l = temp; temp->p = right; } // This function maintains RBT balance void maintenance(node* root, node* pt) { node* parent = NULL; node* Gparent = NULL; while ((pt != root) && (pt->colour != 0) && (pt->p->colour == 1)) { parent = pt->p; Gparent = pt->p->p; // Case : A Parent of pt is left child of Grand-parent of pt if (parent == Gparent->l) { node* Uncle = Gparent->r; // Case : 1 The uncle of pt is also red Only Recoloring required if (Uncle != NULL && Uncle->colour == 1) { Gparent->colour = 1; parent->colour = 0; Uncle->colour = 0; pt = Gparent; } else { // Case : 2 pt is right child of its parent Left-rotation required if (pt == parent->r) { Lrotate(parent); pt = parent; parent = pt->p; } // Case : 3 pt is left child of its parent Right-rotation required Rrotate(Gparent); int t = parent->colour; parent->colour = Gparent->colour; Gparent->colour = t; pt = parent; } } // Case : B Parent of pt is right child of Grand-parent of else { node* Uncle = Gparent->l; // Case : 1 The uncle of pt is also red Only Recoloring required if ((Uncle != NULL) && (Uncle->colour == 1)) { Gparent->colour = 1; parent->colour = 0; Uncle->colour = 0; pt = Gparent; } else { // Case : 2 pt is left child of its parent Right-rotation required if (pt == parent->l) { Rrotate(parent); pt = parent; parent = pt->p; } // Case : 3 pt is right child of its parent Left-rotation required Lrotate(Gparent); int t = parent->colour; parent->colour = Gparent->colour; Gparent->colour = t; pt = parent; } } } root->colour = 0; } // Function to print inorder traversal of RBT void Inorder(node* it) { if (it == NULL) return; Inorder(it->l); printf("%d ", it->data); Inorder(it->r); } // driver code int main() { int n; printf("Enter no. of nodes in tree : "); scanf("%d",&n); int Nodes[n]; printf("Enter values : a mid value, some values > mid and some values < mid "); for(int i=0;i<n;i++) { printf("\nNode %d : ",i+1); scanf("%d",&Nodes[i]); } for (int i = 0; i < n; i++) { // allocating memory to the node node* temp = (node*)malloc(sizeof(node)); temp->r = NULL; temp->l = NULL; temp->p = NULL; temp->data = Nodes[i]; //data as i-th value in the array temp->colour = 1; //red color // insertion root = Insert(root, temp); root1 = Insert(root1, temp); // maintaining tree maintenance(root, temp); } printf("\nInorder Traversal of Original Tree (Unbalanced)\n"); Inorder(root1); printf("\n\n"); printf("\nInorder Traversal of Created Tree\n"); Inorder(root); printf("\n\n"); return 0; }
the_stack_data/173577892.c
#include<stdio.h> #include<math.h> void main(){ int ch; float area,r,s,l,b,a,w,c; printf("Enter 1 for circle \n"); printf("Enter 2 for triangle \n"); printf("Enter 3 for rectangele \n"); scanf("%d",&ch); switch(ch){ case 1: printf("Enter the radius of the circle \n"); scanf("%f",&r); area = 3.14*r*r; printf("The area of the circle is : %f",area); case 2: printf("Enter the sides of the triangle \n"); scanf("%f%f%f",&a,&b,&c); s=(a+b+c)/2; area = pow((s*(s-a)*(s-b)*(s-c)),0.5); printf("The area of the triangle is %f",area); case 3: printf("Enter the length and width of the rectangle \n"); scanf("%f%f",&l,&b); area = l*w; printf("The area of the rectangle is : %f",area); } }
the_stack_data/23575807.c
/* * Copyright 2008-2019, Marvell International Ltd. * All Rights Reserved. * * Derived from: * http://www.kernel.org/pub/linux/libs/klibc/ */ /* * strrchr.c */ #include <string.h> char *strrchr(const char *s, int c) { const char *found = NULL; while (*s) { if (*s == (char)c) found = s; s++; } return (char *)found; }
the_stack_data/167331558.c
/* Exercise 8-4. The standard library function int fseek(FILE *fp, long offset, int origin) is identical to lseek except that fp is a file pointer instead of a file descriptor and return value is an int status, not a position. Write fseek . Make sure that your fseek coordinates properly with the buffering done for the other functions of the library. - Based in 8_3 */ #include <stdio.h> #include <stdlib.h> #include <stdarg.h> #include <fcntl.h> #include <unistd.h> #define OPEN_MAX 20 /* max #files open at once */ typedef struct _iobuf { int cnt; /* characters left */ char *ptr; /* next character position */ char *base; /* location of buffer */ int flag; /* mode of file access */ int fd; /* file descriptor */ } MFILE; MFILE _iob[OPEN_MAX]; #define mstdin (&_iob[0]) #define mstdout (&_iob[1]) #define mstderr (&_iob[2]) enum _flags { _READ = 01, /* file open for reading */ _WRITE = 02, /* file open for writing */ _UNBUF = 04, /* file is unbuffered */ _EOF = 010, /* EOF has occurred on this file */ _ERR = 020 /* error occurred on this file */ }; #define mfeof(p) ((p)->flag & _EOF) != 0) #define mferror(p) ((p)->flag & _ERR) != 0) #define mfileno(p) ((p)->fd) #define mgetc(p) (--(p)->cnt >= 0 \ ? (unsigned char) *(p)->ptr++ : _fillbuf(p)) #define mputc(x,p) (--(p)->cnt >= 0 \ ? *(p)->ptr++ = (x) : _flushbuf((x),p)) #define mgetchar() mgetc(mstdin) #define mputchar(x) mputc((x), mstdout) #define PERMS 0666 /* RW for owner, group, others */ MFILE *mfopen(char *, char *); void error(char *, ...); char *prog; /* program name for errors */ int _fillbuf(MFILE *); int _flushbuf(int, MFILE *); int mfflush(MFILE *); int mfclose(MFILE *); int mfseek(MFILE *, long, int); /* play with a file using our new routines */ int main(int argc, char *argv[]) { MFILE _iob[OPEN_MAX] = { /* stdin, stdout, stderr */ { 0, (char *) 0, (char *) 0, _READ, 0 }, { 0, (char *) 0, (char *) 0, _WRITE, 1 }, // { 0, (char *) 0, (char *) 0, _WRITE | _UNBUF, 1 }, { 0, (char *) 0, (char *) 0, _WRITE | _UNBUF, 2 } }; prog = argv[0]; if (argc == 1) { printf("Usage: %s file\n", prog); exit(1); } int c; MFILE *fp; /* append */ if ((fp = mfopen(argv[1], "a")) == NULL) error("can't open %s", argv[1]); // fp->flag |= _UNBUF; /* to test with unbuffered write */ char *toappend = "this is new\n"; while (*toappend) { mputc(*toappend, fp); toappend++; } /* seek to some position and write there */ mfseek(fp, 22, 0); mputc('X', fp); mfclose(fp); /* read */ if ((fp = mfopen(argv[1], "r")) == NULL) error("can't open %s", argv[1]); /* seek to some position and start reading */ mfseek(fp, 14, 0); while ((c = mgetc(fp)) != EOF) mputchar(c); mfclose(fp); mfclose(mstdout); return 0; } /* mfopen: open a file */ MFILE *mfopen(char *name, char *mode) { int fd; MFILE *fp; if (*mode != 'r' && *mode != 'w' && *mode != 'a') return NULL; for (fp = _iob; fp < _iob + OPEN_MAX; fp++) if ((fp->flag & (_READ | _WRITE)) == 0) break; /* found free slot */ if (fp >= _iob + OPEN_MAX) /* no free slots */ return NULL; if (*mode == 'w') fd = creat(name, PERMS); else if (*mode == 'a') { if ((fd = open(name, O_WRONLY, 0)) == -1) fd = creat(name, PERMS); lseek(fd, 0L, 2); } else fd = open(name, O_RDONLY, 0); if (fd == -1) /* couldn't access name */ return NULL; fp->fd = fd; fp->cnt = 0; fp->base = NULL; fp->flag = (*mode == 'r') ? _READ : _WRITE; return fp; } /* _fillbuf: allocate and fill input buffer */ int _fillbuf(MFILE *fp) { int bufsize; if ((fp->flag&(_READ | _EOF | _ERR)) != _READ) return EOF; bufsize = (fp->flag & _UNBUF) ? 1 : BUFSIZ; if (fp->base == NULL) /* no buffer yet */ if ((fp->base = (char *) malloc(bufsize)) == NULL) return EOF; /* can't get buffer */ fp->ptr = fp->base; fp->cnt = read(fp->fd, fp->ptr, bufsize); if (--fp->cnt < 0) { if (fp->cnt == -1) fp->flag |= _EOF; else fp->flag |= _ERR; fp->cnt = 0; return EOF; } return (unsigned char) *fp->ptr++; } /* _flushbuf: allocate and flush buffer */ int _flushbuf(int c, MFILE *fp) { /* fp has to exists, be open for writing and error-free */ if (fp == NULL || ((fp->flag & (_WRITE | _ERR | _EOF)) != _WRITE)) return EOF; int err = 0; /* unbuffered write? */ if (fp->flag & _UNBUF) { if (write(fp->fd, &c, 1) != 1) { err = 1; } else { fp->ptr = fp->base = NULL; fp->cnt = 0; return c; } } /* buffered write */ int bufsize = BUFSIZ - 1; if (fp->base == NULL) { /* buffer still does not exists */ if ((fp->base = (char *) malloc(bufsize)) == NULL) err = 1; /* memory error */ } else { /* buffer exists - flush it */ int nc = fp->ptr - fp->base; if (write(fp->fd, fp->base, nc) != nc) err = 1; } /* error occurred */ if (err) { fp->flag |= _ERR; return EOF; } fp->ptr = fp->base; *fp->ptr++ = (char) c; /* save c in the new buffer */ fp->cnt = BUFSIZ - 1; return c; } /* mfflush: flush the buffer for a file / all streams */ int mfflush(MFILE *fp) { int i; if (fp == NULL) /* flush all output streams */ for (i = 0; i < OPEN_MAX; i++) _flushbuf(EOF, &_iob[i]); else if ((fp->flag & _UNBUF) == 0) /* flush necessary? */ _flushbuf(EOF, fp); return 0; } /* mfcole: free memory and close file */ int mfclose(MFILE *fp) { mfflush(fp); free(fp->base); fp->ptr = fp->base = NULL; fp->cnt = 0; fp->flag = 0; return close(fp->fd); } /* advance to a position in file */ int mfseek(MFILE *fp, long offset, int origin) { /* write mode - first flush the buffer if any */ if ((fp->flag & _WRITE) && (fp->ptr - fp->base)) { _flushbuf(EOF, fp); fp->cnt++; /* clear the EOF */ fp->ptr = fp->base; /* in the buffer */ } else if (!(fp->flag & _READ)) return -1; return lseek(fp->fd, offset, origin); } /* error: print an error message and die */ void error(char *fmt, ...) { va_list args; va_start(args, fmt); fprintf(stderr, "%s error: ", prog); vfprintf(stderr, fmt, args); fprintf(stderr, "\n"); va_end(args); exit(1); }
the_stack_data/158076.c
#include<stdio.h> int main() { //Q9.WAP input a no find out reverse of that no. int a=0,rev=0; printf("Enter a number: "); scanf("%d",&a); for(;a!=0;a/=10)rev = (rev*10)+(a%10); printf("The reversed number = %d",rev); return 0; }
the_stack_data/170453222.c
//@ ltl invariant negative: (<> ([] (AP(x_23 - x_15 > -2) && AP(x_12 - x_14 >= 9)))); 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; float x_32; float x_33; float x_34; float x_35; 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_; float x_32_; float x_33_; float x_34_; float x_35_; while(1) { x_0_ = (((((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) > ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))? ((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) : ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))) > (((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) > ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13)))? ((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) : ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))))? (((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) > ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))? ((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) : ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))) : (((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) > ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13)))? ((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) : ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))))) > ((((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) > ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))? ((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) : ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))) > (((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) > ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))? ((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) : ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))))? (((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) > ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))? ((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) : ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))) : (((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) > ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))? ((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) : ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))))? ((((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) > ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))? ((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) : ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))) > (((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) > ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13)))? ((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) : ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))))? (((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) > ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))? ((17.0 + x_0) > (17.0 + x_3)? (17.0 + x_0) : (17.0 + x_3)) : ((12.0 + x_4) > (17.0 + x_6)? (12.0 + x_4) : (17.0 + x_6))) : (((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) > ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13)))? ((10.0 + x_9) > (3.0 + x_10)? (10.0 + x_9) : (3.0 + x_10)) : ((11.0 + x_11) > ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))? (11.0 + x_11) : ((7.0 + x_12) > (3.0 + x_13)? (7.0 + x_12) : (3.0 + x_13))))) : ((((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) > ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))? ((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) : ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))) > (((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) > ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))? ((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) : ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))))? (((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) > ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))? ((18.0 + x_18) > (4.0 + x_21)? (18.0 + x_18) : (4.0 + x_21)) : ((14.0 + x_23) > (2.0 + x_24)? (14.0 + x_23) : (2.0 + x_24))) : (((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) > ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))? ((5.0 + x_25) > (11.0 + x_29)? (5.0 + x_25) : (11.0 + x_29)) : ((14.0 + x_31) > ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34))? (14.0 + x_31) : ((11.0 + x_33) > (4.0 + x_34)? (11.0 + x_33) : (4.0 + x_34)))))); x_1_ = (((((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) > ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))? ((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) : ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))) > (((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) > ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16)))? ((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) : ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))))? (((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) > ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))? ((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) : ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))) : (((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) > ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16)))? ((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) : ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))))) > ((((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) > ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))? ((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) : ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))) > (((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) > ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))? ((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) : ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))))? (((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) > ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))? ((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) : ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))) : (((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) > ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))? ((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) : ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))))? ((((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) > ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))? ((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) : ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))) > (((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) > ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16)))? ((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) : ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))))? (((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) > ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))? ((2.0 + x_0) > (15.0 + x_3)? (2.0 + x_0) : (15.0 + x_3)) : ((9.0 + x_4) > (7.0 + x_8)? (9.0 + x_4) : (7.0 + x_8))) : (((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) > ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16)))? ((10.0 + x_11) > (8.0 + x_12)? (10.0 + x_11) : (8.0 + x_12)) : ((14.0 + x_13) > ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))? (14.0 + x_13) : ((15.0 + x_15) > (3.0 + x_16)? (15.0 + x_15) : (3.0 + x_16))))) : ((((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) > ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))? ((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) : ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))) > (((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) > ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))? ((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) : ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))))? (((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) > ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))? ((1.0 + x_19) > (5.0 + x_20)? (1.0 + x_19) : (5.0 + x_20)) : ((8.0 + x_23) > (12.0 + x_25)? (8.0 + x_23) : (12.0 + x_25))) : (((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) > ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))? ((20.0 + x_29) > (11.0 + x_32)? (20.0 + x_29) : (11.0 + x_32)) : ((17.0 + x_33) > ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35))? (17.0 + x_33) : ((7.0 + x_34) > (20.0 + x_35)? (7.0 + x_34) : (20.0 + x_35)))))); x_2_ = (((((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))) > (((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) > ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12)))? ((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) : ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))))? (((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))) : (((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) > ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12)))? ((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) : ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))))) > ((((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) > ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))? ((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) : ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))) > (((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) > ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))? ((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) : ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))))? (((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) > ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))? ((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) : ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))) : (((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) > ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))? ((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) : ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))))? ((((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))) > (((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) > ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12)))? ((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) : ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))))? (((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((16.0 + x_5) > (12.0 + x_6)? (16.0 + x_5) : (12.0 + x_6))) : (((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) > ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12)))? ((14.0 + x_7) > (10.0 + x_8)? (14.0 + x_7) : (10.0 + x_8)) : ((10.0 + x_9) > ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))? (10.0 + x_9) : ((19.0 + x_11) > (13.0 + x_12)? (19.0 + x_11) : (13.0 + x_12))))) : ((((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) > ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))? ((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) : ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))) > (((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) > ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))? ((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) : ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))))? (((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) > ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))? ((11.0 + x_15) > (2.0 + x_16)? (11.0 + x_15) : (2.0 + x_16)) : ((4.0 + x_17) > (7.0 + x_21)? (4.0 + x_17) : (7.0 + x_21))) : (((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) > ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))? ((18.0 + x_23) > (2.0 + x_27)? (18.0 + x_23) : (2.0 + x_27)) : ((12.0 + x_32) > ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34))? (12.0 + x_32) : ((5.0 + x_33) > (20.0 + x_34)? (5.0 + x_33) : (20.0 + x_34)))))); x_3_ = (((((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) > ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))? ((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) : ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))) > (((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) > ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17)))? ((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) : ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))))? (((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) > ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))? ((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) : ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))) : (((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) > ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17)))? ((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) : ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))))) > ((((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) > ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))? ((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) : ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))) > (((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) > ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))? ((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) : ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))))? (((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) > ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))? ((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) : ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))) : (((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) > ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))? ((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) : ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))))? ((((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) > ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))? ((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) : ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))) > (((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) > ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17)))? ((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) : ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))))? (((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) > ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))? ((14.0 + x_1) > (2.0 + x_2)? (14.0 + x_1) : (2.0 + x_2)) : ((8.0 + x_4) > (5.0 + x_5)? (8.0 + x_4) : (5.0 + x_5))) : (((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) > ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17)))? ((14.0 + x_6) > (18.0 + x_7)? (14.0 + x_6) : (18.0 + x_7)) : ((10.0 + x_8) > ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))? (10.0 + x_8) : ((7.0 + x_10) > (4.0 + x_17)? (7.0 + x_10) : (4.0 + x_17))))) : ((((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) > ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))? ((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) : ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))) > (((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) > ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))? ((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) : ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))))? (((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) > ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))? ((19.0 + x_19) > (3.0 + x_20)? (19.0 + x_19) : (3.0 + x_20)) : ((17.0 + x_21) > (20.0 + x_23)? (17.0 + x_21) : (20.0 + x_23))) : (((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) > ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))? ((5.0 + x_25) > (17.0 + x_27)? (5.0 + x_25) : (17.0 + x_27)) : ((15.0 + x_29) > ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31))? (15.0 + x_29) : ((10.0 + x_30) > (3.0 + x_31)? (10.0 + x_30) : (3.0 + x_31)))))); x_4_ = (((((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) > ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))? ((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) : ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))) > (((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) > ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19)))? ((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) : ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))))? (((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) > ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))? ((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) : ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))) : (((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) > ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19)))? ((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) : ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))))) > ((((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) > ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))? ((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) : ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))) > (((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) > ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))? ((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) : ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))))? (((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) > ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))? ((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) : ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))) : (((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) > ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))? ((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) : ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))))? ((((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) > ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))? ((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) : ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))) > (((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) > ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19)))? ((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) : ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))))? (((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) > ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))? ((9.0 + x_1) > (8.0 + x_2)? (9.0 + x_1) : (8.0 + x_2)) : ((2.0 + x_4) > (17.0 + x_8)? (2.0 + x_4) : (17.0 + x_8))) : (((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) > ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19)))? ((9.0 + x_9) > (7.0 + x_12)? (9.0 + x_9) : (7.0 + x_12)) : ((2.0 + x_15) > ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))? (2.0 + x_15) : ((7.0 + x_18) > (8.0 + x_19)? (7.0 + x_18) : (8.0 + x_19))))) : ((((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) > ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))? ((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) : ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))) > (((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) > ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))? ((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) : ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))))? (((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) > ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))? ((8.0 + x_20) > (20.0 + x_21)? (8.0 + x_20) : (20.0 + x_21)) : ((9.0 + x_23) > (14.0 + x_25)? (9.0 + x_23) : (14.0 + x_25))) : (((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) > ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))? ((20.0 + x_26) > (15.0 + x_27)? (20.0 + x_26) : (15.0 + x_27)) : ((10.0 + x_28) > ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32))? (10.0 + x_28) : ((14.0 + x_30) > (1.0 + x_32)? (14.0 + x_30) : (1.0 + x_32)))))); x_5_ = (((((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) > ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))? ((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) : ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))) > (((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) > ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22)))? ((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) : ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))))? (((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) > ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))? ((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) : ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))) : (((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) > ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22)))? ((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) : ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))))) > ((((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) > ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))? ((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) : ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))) > (((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) > ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))? ((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) : ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))))? (((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) > ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))? ((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) : ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))) : (((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) > ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))? ((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) : ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))))? ((((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) > ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))? ((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) : ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))) > (((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) > ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22)))? ((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) : ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))))? (((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) > ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))? ((6.0 + x_3) > (4.0 + x_4)? (6.0 + x_3) : (4.0 + x_4)) : ((16.0 + x_11) > (1.0 + x_14)? (16.0 + x_11) : (1.0 + x_14))) : (((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) > ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22)))? ((8.0 + x_15) > (10.0 + x_16)? (8.0 + x_15) : (10.0 + x_16)) : ((5.0 + x_17) > ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))? (5.0 + x_17) : ((18.0 + x_21) > (14.0 + x_22)? (18.0 + x_21) : (14.0 + x_22))))) : ((((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) > ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))? ((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) : ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))) > (((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) > ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))? ((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) : ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))))? (((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) > ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))? ((3.0 + x_23) > (8.0 + x_24)? (3.0 + x_23) : (8.0 + x_24)) : ((13.0 + x_26) > (4.0 + x_27)? (13.0 + x_26) : (4.0 + x_27))) : (((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) > ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))? ((8.0 + x_29) > (7.0 + x_30)? (8.0 + x_29) : (7.0 + x_30)) : ((20.0 + x_31) > ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35))? (20.0 + x_31) : ((20.0 + x_33) > (12.0 + x_35)? (20.0 + x_33) : (12.0 + x_35)))))); x_6_ = (((((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) > ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))? ((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) : ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))) > (((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) > ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18)))? ((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) : ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))))? (((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) > ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))? ((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) : ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))) : (((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) > ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18)))? ((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) : ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))))) > ((((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) > ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))? ((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) : ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))) > (((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) > ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))? ((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) : ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))))? (((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) > ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))? ((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) : ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))) : (((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) > ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))? ((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) : ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))))? ((((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) > ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))? ((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) : ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))) > (((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) > ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18)))? ((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) : ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))))? (((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) > ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))? ((18.0 + x_0) > (13.0 + x_1)? (18.0 + x_0) : (13.0 + x_1)) : ((3.0 + x_2) > (2.0 + x_3)? (3.0 + x_2) : (2.0 + x_3))) : (((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) > ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18)))? ((2.0 + x_4) > (2.0 + x_5)? (2.0 + x_4) : (2.0 + x_5)) : ((20.0 + x_8) > ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))? (20.0 + x_8) : ((9.0 + x_12) > (17.0 + x_18)? (9.0 + x_12) : (17.0 + x_18))))) : ((((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) > ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))? ((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) : ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))) > (((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) > ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))? ((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) : ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))))? (((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) > ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))? ((20.0 + x_21) > (11.0 + x_23)? (20.0 + x_21) : (11.0 + x_23)) : ((9.0 + x_24) > (8.0 + x_25)? (9.0 + x_24) : (8.0 + x_25))) : (((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) > ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))? ((4.0 + x_26) > (18.0 + x_28)? (4.0 + x_26) : (18.0 + x_28)) : ((18.0 + x_29) > ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34))? (18.0 + x_29) : ((6.0 + x_30) > (16.0 + x_34)? (6.0 + x_30) : (16.0 + x_34)))))); x_7_ = (((((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) > ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))? ((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) : ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))) > (((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) > ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16)))? ((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) : ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))))? (((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) > ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))? ((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) : ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))) : (((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) > ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16)))? ((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) : ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))))) > ((((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) > ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))? ((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) : ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))) > (((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) > ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))? ((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) : ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))))? (((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) > ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))? ((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) : ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))) : (((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) > ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))? ((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) : ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))))? ((((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) > ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))? ((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) : ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))) > (((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) > ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16)))? ((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) : ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))))? (((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) > ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))? ((15.0 + x_3) > (10.0 + x_4)? (15.0 + x_3) : (10.0 + x_4)) : ((1.0 + x_6) > (3.0 + x_7)? (1.0 + x_6) : (3.0 + x_7))) : (((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) > ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16)))? ((2.0 + x_8) > (11.0 + x_10)? (2.0 + x_8) : (11.0 + x_10)) : ((14.0 + x_13) > ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))? (14.0 + x_13) : ((10.0 + x_14) > (10.0 + x_16)? (10.0 + x_14) : (10.0 + x_16))))) : ((((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) > ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))? ((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) : ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))) > (((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) > ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))? ((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) : ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))))? (((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) > ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))? ((4.0 + x_17) > (4.0 + x_18)? (4.0 + x_17) : (4.0 + x_18)) : ((12.0 + x_19) > (20.0 + x_20)? (12.0 + x_19) : (20.0 + x_20))) : (((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) > ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))? ((17.0 + x_22) > (20.0 + x_23)? (17.0 + x_22) : (20.0 + x_23)) : ((17.0 + x_29) > ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33))? (17.0 + x_29) : ((6.0 + x_32) > (8.0 + x_33)? (6.0 + x_32) : (8.0 + x_33)))))); x_8_ = (((((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) > ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))? ((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) : ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))) > (((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) > ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17)))? ((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) : ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))))? (((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) > ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))? ((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) : ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))) : (((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) > ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17)))? ((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) : ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))))) > ((((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) > ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))? ((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) : ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))) > (((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) > ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))? ((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) : ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))))? (((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) > ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))? ((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) : ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))) : (((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) > ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))? ((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) : ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))))? ((((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) > ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))? ((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) : ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))) > (((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) > ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17)))? ((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) : ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))))? (((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) > ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))? ((16.0 + x_0) > (7.0 + x_4)? (16.0 + x_0) : (7.0 + x_4)) : ((8.0 + x_7) > (1.0 + x_8)? (8.0 + x_7) : (1.0 + x_8))) : (((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) > ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17)))? ((6.0 + x_11) > (19.0 + x_12)? (6.0 + x_11) : (19.0 + x_12)) : ((16.0 + x_13) > ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))? (16.0 + x_13) : ((15.0 + x_15) > (2.0 + x_17)? (15.0 + x_15) : (2.0 + x_17))))) : ((((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) > ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))? ((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) : ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))) > (((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) > ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))? ((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) : ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))))? (((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) > ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))? ((11.0 + x_18) > (2.0 + x_21)? (11.0 + x_18) : (2.0 + x_21)) : ((8.0 + x_22) > (20.0 + x_25)? (8.0 + x_22) : (20.0 + x_25))) : (((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) > ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))? ((1.0 + x_30) > (17.0 + x_31)? (1.0 + x_30) : (17.0 + x_31)) : ((3.0 + x_32) > ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35))? (3.0 + x_32) : ((14.0 + x_33) > (8.0 + x_35)? (14.0 + x_33) : (8.0 + x_35)))))); x_9_ = (((((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) > ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))? ((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) : ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))) > (((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17)))? ((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))))? (((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) > ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))? ((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) : ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))) : (((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17)))? ((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))))) > ((((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) > ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))? ((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) : ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))) > (((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) > ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))? ((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) : ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))))? (((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) > ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))? ((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) : ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))) : (((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) > ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))? ((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) : ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))))? ((((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) > ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))? ((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) : ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))) > (((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17)))? ((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))))? (((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) > ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))? ((2.0 + x_0) > (11.0 + x_1)? (2.0 + x_0) : (11.0 + x_1)) : ((20.0 + x_4) > (14.0 + x_5)? (20.0 + x_4) : (14.0 + x_5))) : (((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17)))? ((14.0 + x_10) > (16.0 + x_11)? (14.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_14) > ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))? (19.0 + x_14) : ((15.0 + x_15) > (17.0 + x_17)? (15.0 + x_15) : (17.0 + x_17))))) : ((((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) > ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))? ((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) : ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))) > (((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) > ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))? ((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) : ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))))? (((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) > ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))? ((16.0 + x_20) > (11.0 + x_21)? (16.0 + x_20) : (11.0 + x_21)) : ((2.0 + x_22) > (1.0 + x_26)? (2.0 + x_22) : (1.0 + x_26))) : (((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) > ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))? ((9.0 + x_28) > (19.0 + x_31)? (9.0 + x_28) : (19.0 + x_31)) : ((1.0 + x_32) > ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35))? (1.0 + x_32) : ((7.0 + x_33) > (7.0 + x_35)? (7.0 + x_33) : (7.0 + x_35)))))); x_10_ = (((((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) > ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))? ((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) : ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))) > (((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) > ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20)))? ((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) : ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))))? (((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) > ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))? ((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) : ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))) : (((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) > ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20)))? ((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) : ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))))) > ((((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) > ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))? ((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) : ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))) > (((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) > ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))? ((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) : ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))))? (((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) > ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))? ((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) : ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))) : (((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) > ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))? ((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) : ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))))? ((((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) > ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))? ((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) : ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))) > (((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) > ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20)))? ((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) : ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))))? (((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) > ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))? ((14.0 + x_0) > (13.0 + x_3)? (14.0 + x_0) : (13.0 + x_3)) : ((15.0 + x_7) > (6.0 + x_10)? (15.0 + x_7) : (6.0 + x_10))) : (((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) > ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20)))? ((6.0 + x_12) > (1.0 + x_15)? (6.0 + x_12) : (1.0 + x_15)) : ((11.0 + x_16) > ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))? (11.0 + x_16) : ((4.0 + x_17) > (3.0 + x_20)? (4.0 + x_17) : (3.0 + x_20))))) : ((((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) > ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))? ((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) : ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))) > (((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) > ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))? ((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) : ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))))? (((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) > ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))? ((8.0 + x_21) > (15.0 + x_23)? (8.0 + x_21) : (15.0 + x_23)) : ((20.0 + x_24) > (5.0 + x_25)? (20.0 + x_24) : (5.0 + x_25))) : (((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) > ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))? ((5.0 + x_26) > (7.0 + x_30)? (5.0 + x_26) : (7.0 + x_30)) : ((13.0 + x_31) > ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33))? (13.0 + x_31) : ((19.0 + x_32) > (2.0 + x_33)? (19.0 + x_32) : (2.0 + x_33)))))); x_11_ = (((((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) > ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))? ((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) : ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))) > (((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) > ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17)))? ((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) : ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))))? (((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) > ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))? ((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) : ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))) : (((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) > ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17)))? ((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) : ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))))) > ((((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) > ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))? ((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) : ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))) > (((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) > ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))? ((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) : ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))))? (((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) > ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))? ((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) : ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))) : (((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) > ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))? ((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) : ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))))? ((((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) > ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))? ((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) : ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))) > (((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) > ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17)))? ((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) : ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))))? (((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) > ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))? ((18.0 + x_0) > (11.0 + x_1)? (18.0 + x_0) : (11.0 + x_1)) : ((19.0 + x_2) > (8.0 + x_4)? (19.0 + x_2) : (8.0 + x_4))) : (((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) > ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17)))? ((1.0 + x_13) > (14.0 + x_14)? (1.0 + x_13) : (14.0 + x_14)) : ((19.0 + x_15) > ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))? (19.0 + x_15) : ((7.0 + x_16) > (13.0 + x_17)? (7.0 + x_16) : (13.0 + x_17))))) : ((((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) > ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))? ((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) : ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))) > (((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) > ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))? ((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) : ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))))? (((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) > ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))? ((12.0 + x_18) > (4.0 + x_21)? (12.0 + x_18) : (4.0 + x_21)) : ((5.0 + x_22) > (9.0 + x_23)? (5.0 + x_22) : (9.0 + x_23))) : (((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) > ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))? ((6.0 + x_24) > (11.0 + x_27)? (6.0 + x_24) : (11.0 + x_27)) : ((11.0 + x_28) > ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35))? (11.0 + x_28) : ((17.0 + x_33) > (11.0 + x_35)? (17.0 + x_33) : (11.0 + x_35)))))); x_12_ = (((((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) > ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))? ((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) : ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))) > (((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) > ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14)))? ((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) : ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))))? (((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) > ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))? ((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) : ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))) : (((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) > ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14)))? ((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) : ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))))) > ((((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) > ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))? ((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) : ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))) > (((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) > ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))? ((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) : ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))))? (((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) > ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))? ((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) : ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))) : (((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) > ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))? ((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) : ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))))? ((((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) > ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))? ((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) : ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))) > (((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) > ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14)))? ((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) : ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))))? (((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) > ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))? ((8.0 + x_1) > (5.0 + x_2)? (8.0 + x_1) : (5.0 + x_2)) : ((9.0 + x_3) > (11.0 + x_6)? (9.0 + x_3) : (11.0 + x_6))) : (((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) > ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14)))? ((16.0 + x_8) > (11.0 + x_9)? (16.0 + x_8) : (11.0 + x_9)) : ((12.0 + x_11) > ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))? (12.0 + x_11) : ((6.0 + x_12) > (14.0 + x_14)? (6.0 + x_12) : (14.0 + x_14))))) : ((((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) > ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))? ((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) : ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))) > (((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) > ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))? ((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) : ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))))? (((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) > ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))? ((5.0 + x_16) > (16.0 + x_20)? (5.0 + x_16) : (16.0 + x_20)) : ((6.0 + x_21) > (4.0 + x_25)? (6.0 + x_21) : (4.0 + x_25))) : (((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) > ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))? ((10.0 + x_28) > (6.0 + x_30)? (10.0 + x_28) : (6.0 + x_30)) : ((17.0 + x_32) > ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35))? (17.0 + x_32) : ((18.0 + x_33) > (1.0 + x_35)? (18.0 + x_33) : (1.0 + x_35)))))); x_13_ = (((((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) > ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))? ((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) : ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))) > (((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) > ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19)))? ((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) : ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))))? (((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) > ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))? ((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) : ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))) : (((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) > ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19)))? ((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) : ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))))) > ((((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) > ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))? ((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) : ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))) > (((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) > ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))? ((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) : ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))))? (((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) > ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))? ((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) : ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))) : (((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) > ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))? ((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) : ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))))? ((((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) > ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))? ((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) : ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))) > (((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) > ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19)))? ((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) : ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))))? (((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) > ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))? ((18.0 + x_1) > (4.0 + x_2)? (18.0 + x_1) : (4.0 + x_2)) : ((12.0 + x_6) > (8.0 + x_9)? (12.0 + x_6) : (8.0 + x_9))) : (((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) > ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19)))? ((12.0 + x_11) > (16.0 + x_15)? (12.0 + x_11) : (16.0 + x_15)) : ((11.0 + x_16) > ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))? (11.0 + x_16) : ((2.0 + x_18) > (2.0 + x_19)? (2.0 + x_18) : (2.0 + x_19))))) : ((((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) > ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))? ((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) : ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))) > (((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) > ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))? ((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) : ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))))? (((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) > ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))? ((8.0 + x_20) > (14.0 + x_21)? (8.0 + x_20) : (14.0 + x_21)) : ((4.0 + x_27) > (13.0 + x_28)? (4.0 + x_27) : (13.0 + x_28))) : (((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) > ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))? ((17.0 + x_29) > (2.0 + x_30)? (17.0 + x_29) : (2.0 + x_30)) : ((7.0 + x_32) > ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35))? (7.0 + x_32) : ((3.0 + x_33) > (14.0 + x_35)? (3.0 + x_33) : (14.0 + x_35)))))); x_14_ = (((((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) > ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))? ((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) : ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))) > (((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) > ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10)))? ((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) : ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))))? (((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) > ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))? ((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) : ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))) : (((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) > ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10)))? ((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) : ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))))) > ((((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) > ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))? ((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) : ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))) > (((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) > ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))? ((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) : ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))))? (((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) > ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))? ((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) : ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))) : (((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) > ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))? ((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) : ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))))? ((((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) > ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))? ((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) : ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))) > (((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) > ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10)))? ((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) : ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))))? (((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) > ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))? ((13.0 + x_0) > (20.0 + x_1)? (13.0 + x_0) : (20.0 + x_1)) : ((15.0 + x_2) > (7.0 + x_4)? (15.0 + x_2) : (7.0 + x_4))) : (((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) > ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10)))? ((15.0 + x_5) > (1.0 + x_6)? (15.0 + x_5) : (1.0 + x_6)) : ((3.0 + x_7) > ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))? (3.0 + x_7) : ((5.0 + x_9) > (2.0 + x_10)? (5.0 + x_9) : (2.0 + x_10))))) : ((((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) > ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))? ((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) : ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))) > (((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) > ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))? ((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) : ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))))? (((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) > ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))? ((10.0 + x_12) > (16.0 + x_17)? (10.0 + x_12) : (16.0 + x_17)) : ((14.0 + x_18) > (7.0 + x_24)? (14.0 + x_18) : (7.0 + x_24))) : (((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) > ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))? ((4.0 + x_29) > (1.0 + x_30)? (4.0 + x_29) : (1.0 + x_30)) : ((16.0 + x_31) > ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34))? (16.0 + x_31) : ((13.0 + x_32) > (18.0 + x_34)? (13.0 + x_32) : (18.0 + x_34)))))); x_15_ = (((((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) > ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))? ((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) : ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))) > (((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) > ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18)))? ((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) : ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))))? (((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) > ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))? ((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) : ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))) : (((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) > ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18)))? ((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) : ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))))) > ((((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) > ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))? ((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) : ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))) > (((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) > ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))? ((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) : ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))))? (((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) > ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))? ((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) : ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))) : (((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) > ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))? ((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) : ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))))? ((((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) > ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))? ((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) : ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))) > (((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) > ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18)))? ((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) : ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))))? (((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) > ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))? ((14.0 + x_1) > (8.0 + x_2)? (14.0 + x_1) : (8.0 + x_2)) : ((1.0 + x_4) > (15.0 + x_7)? (1.0 + x_4) : (15.0 + x_7))) : (((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) > ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18)))? ((14.0 + x_9) > (13.0 + x_12)? (14.0 + x_9) : (13.0 + x_12)) : ((4.0 + x_15) > ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))? (4.0 + x_15) : ((19.0 + x_16) > (5.0 + x_18)? (19.0 + x_16) : (5.0 + x_18))))) : ((((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) > ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))? ((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) : ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))) > (((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) > ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))? ((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) : ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))))? (((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) > ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))? ((18.0 + x_19) > (9.0 + x_20)? (18.0 + x_19) : (9.0 + x_20)) : ((17.0 + x_21) > (9.0 + x_25)? (17.0 + x_21) : (9.0 + x_25))) : (((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) > ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))? ((20.0 + x_29) > (15.0 + x_30)? (20.0 + x_29) : (15.0 + x_30)) : ((10.0 + x_31) > ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35))? (10.0 + x_31) : ((4.0 + x_32) > (4.0 + x_35)? (4.0 + x_32) : (4.0 + x_35)))))); x_16_ = (((((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) > ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))? ((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) : ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))) > (((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) > ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19)))? ((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) : ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))))? (((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) > ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))? ((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) : ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))) : (((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) > ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19)))? ((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) : ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))))) > ((((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) > ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))? ((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) : ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))) > (((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) > ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))? ((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) : ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))))? (((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) > ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))? ((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) : ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))) : (((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) > ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))? ((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) : ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))))? ((((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) > ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))? ((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) : ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))) > (((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) > ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19)))? ((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) : ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))))? (((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) > ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))? ((19.0 + x_0) > (18.0 + x_8)? (19.0 + x_0) : (18.0 + x_8)) : ((17.0 + x_11) > (14.0 + x_12)? (17.0 + x_11) : (14.0 + x_12))) : (((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) > ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19)))? ((2.0 + x_13) > (6.0 + x_14)? (2.0 + x_13) : (6.0 + x_14)) : ((11.0 + x_15) > ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))? (11.0 + x_15) : ((2.0 + x_16) > (1.0 + x_19)? (2.0 + x_16) : (1.0 + x_19))))) : ((((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) > ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))? ((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) : ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))) > (((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) > ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))? ((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) : ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))))? (((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) > ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))? ((13.0 + x_21) > (11.0 + x_22)? (13.0 + x_21) : (11.0 + x_22)) : ((20.0 + x_24) > (11.0 + x_27)? (20.0 + x_24) : (11.0 + x_27))) : (((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) > ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))? ((12.0 + x_30) > (6.0 + x_31)? (12.0 + x_30) : (6.0 + x_31)) : ((14.0 + x_33) > ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35))? (14.0 + x_33) : ((16.0 + x_34) > (9.0 + x_35)? (16.0 + x_34) : (9.0 + x_35)))))); x_17_ = (((((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) > ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))? ((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) : ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))) > (((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) > ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16)))? ((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) : ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))))? (((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) > ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))? ((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) : ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))) : (((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) > ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16)))? ((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) : ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))))) > ((((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) > ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))? ((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) : ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))) > (((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) > ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))? ((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) : ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))))? (((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) > ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))? ((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) : ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))) : (((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) > ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))? ((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) : ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))))? ((((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) > ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))? ((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) : ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))) > (((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) > ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16)))? ((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) : ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))))? (((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) > ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))? ((8.0 + x_0) > (6.0 + x_1)? (8.0 + x_0) : (6.0 + x_1)) : ((2.0 + x_3) > (1.0 + x_5)? (2.0 + x_3) : (1.0 + x_5))) : (((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) > ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16)))? ((19.0 + x_7) > (9.0 + x_11)? (19.0 + x_7) : (9.0 + x_11)) : ((13.0 + x_14) > ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))? (13.0 + x_14) : ((13.0 + x_15) > (18.0 + x_16)? (13.0 + x_15) : (18.0 + x_16))))) : ((((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) > ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))? ((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) : ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))) > (((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) > ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))? ((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) : ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))))? (((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) > ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))? ((20.0 + x_17) > (17.0 + x_19)? (20.0 + x_17) : (17.0 + x_19)) : ((1.0 + x_22) > (12.0 + x_23)? (1.0 + x_22) : (12.0 + x_23))) : (((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) > ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))? ((18.0 + x_24) > (16.0 + x_25)? (18.0 + x_24) : (16.0 + x_25)) : ((5.0 + x_27) > ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34))? (5.0 + x_27) : ((16.0 + x_29) > (20.0 + x_34)? (16.0 + x_29) : (20.0 + x_34)))))); x_18_ = (((((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) > (((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) > ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19)))? ((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) : ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))))? (((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) : (((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) > ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19)))? ((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) : ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))))) > ((((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) > ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))? ((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) : ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))) > (((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) > ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))? ((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) : ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))))? (((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) > ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))? ((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) : ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))) : (((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) > ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))? ((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) : ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))))? ((((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) > (((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) > ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19)))? ((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) : ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))))? (((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((15.0 + x_0) > (2.0 + x_4)? (15.0 + x_0) : (2.0 + x_4)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) : (((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) > ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19)))? ((14.0 + x_10) > (13.0 + x_11)? (14.0 + x_10) : (13.0 + x_11)) : ((3.0 + x_14) > ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))? (3.0 + x_14) : ((17.0 + x_15) > (12.0 + x_19)? (17.0 + x_15) : (12.0 + x_19))))) : ((((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) > ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))? ((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) : ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))) > (((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) > ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))? ((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) : ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))))? (((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) > ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))? ((3.0 + x_20) > (13.0 + x_21)? (3.0 + x_20) : (13.0 + x_21)) : ((12.0 + x_22) > (3.0 + x_23)? (12.0 + x_22) : (3.0 + x_23))) : (((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) > ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))? ((12.0 + x_24) > (11.0 + x_26)? (12.0 + x_24) : (11.0 + x_26)) : ((9.0 + x_33) > ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35))? (9.0 + x_33) : ((7.0 + x_34) > (2.0 + x_35)? (7.0 + x_34) : (2.0 + x_35)))))); x_19_ = (((((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) > ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))? ((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) : ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))) > (((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) > ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15)))? ((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) : ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))))? (((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) > ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))? ((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) : ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))) : (((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) > ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15)))? ((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) : ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))))) > ((((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) > ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))? ((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) : ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))) > (((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) > ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))? ((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) : ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))))? (((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) > ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))? ((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) : ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))) : (((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) > ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))? ((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) : ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))))? ((((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) > ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))? ((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) : ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))) > (((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) > ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15)))? ((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) : ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))))? (((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) > ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))? ((12.0 + x_1) > (12.0 + x_4)? (12.0 + x_1) : (12.0 + x_4)) : ((14.0 + x_5) > (15.0 + x_7)? (14.0 + x_5) : (15.0 + x_7))) : (((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) > ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15)))? ((20.0 + x_11) > (5.0 + x_12)? (20.0 + x_11) : (5.0 + x_12)) : ((4.0 + x_13) > ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))? (4.0 + x_13) : ((1.0 + x_14) > (18.0 + x_15)? (1.0 + x_14) : (18.0 + x_15))))) : ((((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) > ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))? ((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) : ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))) > (((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) > ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))? ((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) : ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))))? (((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) > ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))? ((9.0 + x_21) > (17.0 + x_22)? (9.0 + x_21) : (17.0 + x_22)) : ((3.0 + x_26) > (10.0 + x_27)? (3.0 + x_26) : (10.0 + x_27))) : (((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) > ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))? ((4.0 + x_28) > (15.0 + x_29)? (4.0 + x_28) : (15.0 + x_29)) : ((17.0 + x_31) > ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35))? (17.0 + x_31) : ((19.0 + x_34) > (19.0 + x_35)? (19.0 + x_34) : (19.0 + x_35)))))); x_20_ = (((((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) > ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))? ((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) : ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))) > (((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) > ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19)))? ((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) : ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))))? (((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) > ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))? ((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) : ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))) : (((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) > ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19)))? ((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) : ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))))) > ((((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) > ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))? ((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) : ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))) > (((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) > ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))? ((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) : ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))))? (((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) > ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))? ((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) : ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))) : (((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) > ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))? ((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) : ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))))? ((((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) > ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))? ((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) : ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))) > (((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) > ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19)))? ((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) : ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))))? (((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) > ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))? ((6.0 + x_6) > (3.0 + x_7)? (6.0 + x_6) : (3.0 + x_7)) : ((6.0 + x_10) > (19.0 + x_13)? (6.0 + x_10) : (19.0 + x_13))) : (((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) > ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19)))? ((17.0 + x_14) > (6.0 + x_15)? (17.0 + x_14) : (6.0 + x_15)) : ((14.0 + x_16) > ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))? (14.0 + x_16) : ((11.0 + x_17) > (20.0 + x_19)? (11.0 + x_17) : (20.0 + x_19))))) : ((((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) > ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))? ((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) : ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))) > (((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) > ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))? ((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) : ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))))? (((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) > ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))? ((7.0 + x_20) > (4.0 + x_23)? (7.0 + x_20) : (4.0 + x_23)) : ((14.0 + x_24) > (15.0 + x_25)? (14.0 + x_24) : (15.0 + x_25))) : (((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) > ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))? ((5.0 + x_26) > (8.0 + x_29)? (5.0 + x_26) : (8.0 + x_29)) : ((20.0 + x_31) > ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35))? (20.0 + x_31) : ((1.0 + x_33) > (2.0 + x_35)? (1.0 + x_33) : (2.0 + x_35)))))); x_21_ = (((((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) > ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))? ((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) : ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))) > (((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) > ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? ((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) : ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))))? (((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) > ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))? ((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) : ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))) : (((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) > ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? ((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) : ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))))) > ((((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) > ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))? ((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) : ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))) > (((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) > ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))? ((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) : ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))))? (((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) > ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))? ((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) : ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))) : (((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) > ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))? ((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) : ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))))? ((((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) > ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))? ((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) : ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))) > (((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) > ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? ((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) : ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))))? (((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) > ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))? ((12.0 + x_3) > (19.0 + x_5)? (12.0 + x_3) : (19.0 + x_5)) : ((15.0 + x_7) > (2.0 + x_8)? (15.0 + x_7) : (2.0 + x_8))) : (((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) > ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14)))? ((15.0 + x_9) > (4.0 + x_11)? (15.0 + x_9) : (4.0 + x_11)) : ((8.0 + x_12) > ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))? (8.0 + x_12) : ((6.0 + x_13) > (4.0 + x_14)? (6.0 + x_13) : (4.0 + x_14))))) : ((((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) > ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))? ((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) : ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))) > (((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) > ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))? ((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) : ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))))? (((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) > ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))? ((4.0 + x_15) > (8.0 + x_16)? (4.0 + x_15) : (8.0 + x_16)) : ((16.0 + x_17) > (4.0 + x_20)? (16.0 + x_17) : (4.0 + x_20))) : (((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) > ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))? ((4.0 + x_21) > (13.0 + x_23)? (4.0 + x_21) : (13.0 + x_23)) : ((8.0 + x_28) > ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30))? (8.0 + x_28) : ((5.0 + x_29) > (17.0 + x_30)? (5.0 + x_29) : (17.0 + x_30)))))); x_22_ = (((((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) > ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))? ((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) : ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))) > (((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) > ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19)))? ((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) : ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))))? (((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) > ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))? ((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) : ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))) : (((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) > ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19)))? ((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) : ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))))) > ((((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) > ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))? ((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) : ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))) > (((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) > ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))? ((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) : ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))))? (((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) > ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))? ((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) : ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))) : (((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) > ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))? ((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) : ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))))? ((((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) > ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))? ((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) : ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))) > (((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) > ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19)))? ((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) : ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))))? (((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) > ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))? ((13.0 + x_2) > (11.0 + x_3)? (13.0 + x_2) : (11.0 + x_3)) : ((3.0 + x_4) > (20.0 + x_7)? (3.0 + x_4) : (20.0 + x_7))) : (((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) > ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19)))? ((18.0 + x_8) > (18.0 + x_12)? (18.0 + x_8) : (18.0 + x_12)) : ((17.0 + x_13) > ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))? (17.0 + x_13) : ((12.0 + x_16) > (5.0 + x_19)? (12.0 + x_16) : (5.0 + x_19))))) : ((((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) > ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))? ((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) : ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))) > (((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) > ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))? ((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) : ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))))? (((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) > ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))? ((7.0 + x_20) > (5.0 + x_21)? (7.0 + x_20) : (5.0 + x_21)) : ((1.0 + x_22) > (19.0 + x_23)? (1.0 + x_22) : (19.0 + x_23))) : (((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) > ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))? ((9.0 + x_25) > (13.0 + x_26)? (9.0 + x_25) : (13.0 + x_26)) : ((4.0 + x_28) > ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31))? (4.0 + x_28) : ((20.0 + x_29) > (16.0 + x_31)? (20.0 + x_29) : (16.0 + x_31)))))); x_23_ = (((((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) > ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))? ((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) : ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))) > (((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) > ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17)))? ((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) : ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))))? (((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) > ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))? ((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) : ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))) : (((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) > ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17)))? ((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) : ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))))) > ((((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) > ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))? ((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) : ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))) > (((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) > ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))? ((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) : ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))))? (((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) > ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))? ((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) : ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))) : (((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) > ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))? ((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) : ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))))? ((((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) > ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))? ((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) : ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))) > (((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) > ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17)))? ((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) : ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))))? (((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) > ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))? ((10.0 + x_0) > (16.0 + x_2)? (10.0 + x_0) : (16.0 + x_2)) : ((20.0 + x_5) > (10.0 + x_7)? (20.0 + x_5) : (10.0 + x_7))) : (((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) > ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17)))? ((2.0 + x_8) > (8.0 + x_11)? (2.0 + x_8) : (8.0 + x_11)) : ((6.0 + x_14) > ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))? (6.0 + x_14) : ((10.0 + x_15) > (15.0 + x_17)? (10.0 + x_15) : (15.0 + x_17))))) : ((((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) > ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))? ((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) : ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))) > (((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) > ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))? ((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) : ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))))? (((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) > ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))? ((11.0 + x_18) > (8.0 + x_19)? (11.0 + x_18) : (8.0 + x_19)) : ((12.0 + x_24) > (4.0 + x_25)? (12.0 + x_24) : (4.0 + x_25))) : (((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) > ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))? ((18.0 + x_27) > (2.0 + x_28)? (18.0 + x_27) : (2.0 + x_28)) : ((19.0 + x_29) > ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34))? (19.0 + x_29) : ((6.0 + x_33) > (15.0 + x_34)? (6.0 + x_33) : (15.0 + x_34)))))); x_24_ = (((((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) > ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))? ((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) : ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))) > (((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) > ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14)))? ((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) : ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))))? (((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) > ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))? ((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) : ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))) : (((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) > ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14)))? ((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) : ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))))) > ((((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) > ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))? ((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) : ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))) > (((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) > ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))? ((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) : ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))))? (((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) > ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))? ((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) : ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))) : (((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) > ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))? ((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) : ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))))? ((((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) > ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))? ((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) : ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))) > (((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) > ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14)))? ((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) : ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))))? (((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) > ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))? ((16.0 + x_0) > (9.0 + x_2)? (16.0 + x_0) : (9.0 + x_2)) : ((2.0 + x_3) > (13.0 + x_4)? (2.0 + x_3) : (13.0 + x_4))) : (((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) > ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14)))? ((14.0 + x_5) > (4.0 + x_8)? (14.0 + x_5) : (4.0 + x_8)) : ((17.0 + x_10) > ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))? (17.0 + x_10) : ((10.0 + x_12) > (6.0 + x_14)? (10.0 + x_12) : (6.0 + x_14))))) : ((((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) > ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))? ((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) : ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))) > (((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) > ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))? ((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) : ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))))? (((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) > ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))? ((12.0 + x_15) > (4.0 + x_16)? (12.0 + x_15) : (4.0 + x_16)) : ((4.0 + x_17) > (9.0 + x_25)? (4.0 + x_17) : (9.0 + x_25))) : (((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) > ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))? ((19.0 + x_27) > (12.0 + x_28)? (19.0 + x_27) : (12.0 + x_28)) : ((13.0 + x_29) > ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33))? (13.0 + x_29) : ((12.0 + x_31) > (14.0 + x_33)? (12.0 + x_31) : (14.0 + x_33)))))); x_25_ = (((((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) > ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))? ((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) : ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))) > (((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) > ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? ((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) : ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))))? (((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) > ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))? ((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) : ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))) : (((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) > ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? ((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) : ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))))) > ((((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) > ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))? ((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) : ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))) > (((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) > ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))? ((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) : ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))))? (((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) > ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))? ((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) : ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))) : (((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) > ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))? ((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) : ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))))? ((((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) > ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))? ((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) : ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))) > (((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) > ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? ((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) : ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))))? (((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) > ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))? ((5.0 + x_0) > (12.0 + x_1)? (5.0 + x_0) : (12.0 + x_1)) : ((10.0 + x_3) > (8.0 + x_8)? (10.0 + x_3) : (8.0 + x_8))) : (((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) > ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15)))? ((9.0 + x_9) > (7.0 + x_10)? (9.0 + x_9) : (7.0 + x_10)) : ((20.0 + x_13) > ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))? (20.0 + x_13) : ((4.0 + x_14) > (11.0 + x_15)? (4.0 + x_14) : (11.0 + x_15))))) : ((((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) > ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))? ((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) : ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))) > (((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) > ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))? ((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) : ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))))? (((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) > ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))? ((7.0 + x_16) > (5.0 + x_18)? (7.0 + x_16) : (5.0 + x_18)) : ((11.0 + x_19) > (7.0 + x_22)? (11.0 + x_19) : (7.0 + x_22))) : (((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) > ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))? ((3.0 + x_24) > (13.0 + x_25)? (3.0 + x_24) : (13.0 + x_25)) : ((19.0 + x_27) > ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31))? (19.0 + x_27) : ((11.0 + x_29) > (10.0 + x_31)? (11.0 + x_29) : (10.0 + x_31)))))); x_26_ = (((((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) > ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))? ((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) : ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))) > (((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) > ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17)))? ((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) : ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))))? (((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) > ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))? ((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) : ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))) : (((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) > ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17)))? ((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) : ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))))) > ((((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) > ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))? ((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) : ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))) > (((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) > ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))? ((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) : ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))))? (((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) > ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))? ((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) : ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))) : (((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) > ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))? ((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) : ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))))? ((((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) > ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))? ((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) : ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))) > (((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) > ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17)))? ((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) : ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))))? (((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) > ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))? ((9.0 + x_2) > (2.0 + x_6)? (9.0 + x_2) : (2.0 + x_6)) : ((3.0 + x_9) > (9.0 + x_11)? (3.0 + x_9) : (9.0 + x_11))) : (((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) > ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17)))? ((6.0 + x_12) > (11.0 + x_13)? (6.0 + x_12) : (11.0 + x_13)) : ((11.0 + x_15) > ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))? (11.0 + x_15) : ((13.0 + x_16) > (18.0 + x_17)? (13.0 + x_16) : (18.0 + x_17))))) : ((((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) > ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))? ((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) : ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))) > (((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) > ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))? ((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) : ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))))? (((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) > ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))? ((9.0 + x_18) > (17.0 + x_19)? (9.0 + x_18) : (17.0 + x_19)) : ((15.0 + x_21) > (16.0 + x_25)? (15.0 + x_21) : (16.0 + x_25))) : (((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) > ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))? ((6.0 + x_28) > (13.0 + x_29)? (6.0 + x_28) : (13.0 + x_29)) : ((3.0 + x_31) > ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35))? (3.0 + x_31) : ((16.0 + x_32) > (4.0 + x_35)? (16.0 + x_32) : (4.0 + x_35)))))); x_27_ = (((((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) > ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))? ((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) : ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))) > (((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) > ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17)))? ((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) : ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))))? (((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) > ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))? ((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) : ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))) : (((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) > ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17)))? ((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) : ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))))) > ((((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) > ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))? ((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) : ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))) > (((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) > ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))? ((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) : ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))))? (((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) > ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))? ((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) : ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))) : (((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) > ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))? ((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) : ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))))? ((((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) > ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))? ((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) : ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))) > (((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) > ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17)))? ((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) : ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))))? (((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) > ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))? ((13.0 + x_0) > (3.0 + x_4)? (13.0 + x_0) : (3.0 + x_4)) : ((4.0 + x_7) > (3.0 + x_10)? (4.0 + x_7) : (3.0 + x_10))) : (((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) > ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17)))? ((4.0 + x_13) > (16.0 + x_14)? (4.0 + x_13) : (16.0 + x_14)) : ((12.0 + x_15) > ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))? (12.0 + x_15) : ((1.0 + x_16) > (1.0 + x_17)? (1.0 + x_16) : (1.0 + x_17))))) : ((((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) > ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))? ((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) : ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))) > (((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) > ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))? ((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) : ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))))? (((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) > ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))? ((13.0 + x_18) > (2.0 + x_20)? (13.0 + x_18) : (2.0 + x_20)) : ((4.0 + x_21) > (19.0 + x_26)? (4.0 + x_21) : (19.0 + x_26))) : (((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) > ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))? ((8.0 + x_27) > (6.0 + x_28)? (8.0 + x_27) : (6.0 + x_28)) : ((16.0 + x_29) > ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34))? (16.0 + x_29) : ((4.0 + x_31) > (11.0 + x_34)? (4.0 + x_31) : (11.0 + x_34)))))); x_28_ = (((((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) > ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))? ((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) : ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))) > (((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) > ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16)))? ((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) : ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))))? (((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) > ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))? ((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) : ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))) : (((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) > ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16)))? ((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) : ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))))) > ((((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) > ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))? ((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) : ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))) > (((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) > ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))? ((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) : ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))))? (((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) > ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))? ((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) : ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))) : (((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) > ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))? ((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) : ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))))? ((((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) > ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))? ((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) : ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))) > (((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) > ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16)))? ((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) : ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))))? (((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) > ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))? ((17.0 + x_2) > (7.0 + x_3)? (17.0 + x_2) : (7.0 + x_3)) : ((4.0 + x_4) > (9.0 + x_6)? (4.0 + x_4) : (9.0 + x_6))) : (((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) > ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16)))? ((20.0 + x_7) > (3.0 + x_9)? (20.0 + x_7) : (3.0 + x_9)) : ((3.0 + x_10) > ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))? (3.0 + x_10) : ((17.0 + x_13) > (6.0 + x_16)? (17.0 + x_13) : (6.0 + x_16))))) : ((((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) > ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))? ((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) : ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))) > (((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) > ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))? ((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) : ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))))? (((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) > ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))? ((11.0 + x_21) > (20.0 + x_22)? (11.0 + x_21) : (20.0 + x_22)) : ((3.0 + x_23) > (1.0 + x_24)? (3.0 + x_23) : (1.0 + x_24))) : (((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) > ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))? ((8.0 + x_25) > (14.0 + x_30)? (8.0 + x_25) : (14.0 + x_30)) : ((10.0 + x_31) > ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33))? (10.0 + x_31) : ((17.0 + x_32) > (16.0 + x_33)? (17.0 + x_32) : (16.0 + x_33)))))); x_29_ = (((((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) > ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))? ((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) : ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))) > (((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) > ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11)))? ((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) : ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))))? (((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) > ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))? ((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) : ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))) : (((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) > ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11)))? ((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) : ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))))) > ((((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) > ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))? ((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) : ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))) > (((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) > ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))? ((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) : ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))))? (((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) > ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))? ((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) : ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))) : (((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) > ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))? ((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) : ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))))? ((((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) > ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))? ((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) : ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))) > (((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) > ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11)))? ((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) : ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))))? (((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) > ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))? ((8.0 + x_1) > (7.0 + x_2)? (8.0 + x_1) : (7.0 + x_2)) : ((7.0 + x_3) > (5.0 + x_4)? (7.0 + x_3) : (5.0 + x_4))) : (((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) > ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11)))? ((17.0 + x_6) > (18.0 + x_7)? (17.0 + x_6) : (18.0 + x_7)) : ((11.0 + x_8) > ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))? (11.0 + x_8) : ((2.0 + x_9) > (16.0 + x_11)? (2.0 + x_9) : (16.0 + x_11))))) : ((((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) > ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))? ((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) : ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))) > (((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) > ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))? ((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) : ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))))? (((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) > ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))? ((5.0 + x_12) > (13.0 + x_13)? (5.0 + x_12) : (13.0 + x_13)) : ((19.0 + x_17) > (9.0 + x_22)? (19.0 + x_17) : (9.0 + x_22))) : (((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) > ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))? ((4.0 + x_28) > (13.0 + x_30)? (4.0 + x_28) : (13.0 + x_30)) : ((8.0 + x_31) > ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35))? (8.0 + x_31) : ((20.0 + x_33) > (7.0 + x_35)? (20.0 + x_33) : (7.0 + x_35)))))); x_30_ = (((((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) > ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))? ((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) : ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))) > (((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) > ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19)))? ((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) : ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))))? (((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) > ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))? ((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) : ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))) : (((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) > ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19)))? ((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) : ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))))) > ((((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) > ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))? ((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) : ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))) > (((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) > ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))? ((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) : ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))))? (((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) > ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))? ((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) : ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))) : (((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) > ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))? ((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) : ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))))? ((((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) > ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))? ((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) : ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))) > (((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) > ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19)))? ((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) : ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))))? (((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) > ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))? ((8.0 + x_0) > (8.0 + x_4)? (8.0 + x_0) : (8.0 + x_4)) : ((16.0 + x_6) > (3.0 + x_7)? (16.0 + x_6) : (3.0 + x_7))) : (((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) > ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19)))? ((17.0 + x_9) > (18.0 + x_12)? (17.0 + x_9) : (18.0 + x_12)) : ((16.0 + x_14) > ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))? (16.0 + x_14) : ((19.0 + x_16) > (15.0 + x_19)? (19.0 + x_16) : (15.0 + x_19))))) : ((((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) > ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))? ((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) : ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))) > (((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) > ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))? ((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) : ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))))? (((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) > ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))? ((10.0 + x_20) > (5.0 + x_21)? (10.0 + x_20) : (5.0 + x_21)) : ((13.0 + x_22) > (16.0 + x_23)? (13.0 + x_22) : (16.0 + x_23))) : (((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) > ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))? ((8.0 + x_24) > (2.0 + x_25)? (8.0 + x_24) : (2.0 + x_25)) : ((5.0 + x_27) > ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30))? (5.0 + x_27) : ((1.0 + x_29) > (17.0 + x_30)? (1.0 + x_29) : (17.0 + x_30)))))); x_31_ = (((((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) > ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))? ((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) : ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))) > (((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) > ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20)))? ((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) : ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))))? (((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) > ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))? ((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) : ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))) : (((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) > ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20)))? ((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) : ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))))) > ((((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) > ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))? ((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) : ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))) > (((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) > ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))? ((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) : ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))))? (((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) > ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))? ((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) : ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))) : (((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) > ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))? ((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) : ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))))? ((((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) > ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))? ((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) : ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))) > (((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) > ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20)))? ((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) : ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))))? (((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) > ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))? ((17.0 + x_0) > (6.0 + x_1)? (17.0 + x_0) : (6.0 + x_1)) : ((13.0 + x_6) > (4.0 + x_7)? (13.0 + x_6) : (4.0 + x_7))) : (((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) > ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20)))? ((16.0 + x_8) > (14.0 + x_9)? (16.0 + x_8) : (14.0 + x_9)) : ((11.0 + x_12) > ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))? (11.0 + x_12) : ((7.0 + x_17) > (7.0 + x_20)? (7.0 + x_17) : (7.0 + x_20))))) : ((((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) > ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))? ((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) : ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))) > (((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) > ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))? ((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) : ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))))? (((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) > ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))? ((3.0 + x_21) > (15.0 + x_22)? (3.0 + x_21) : (15.0 + x_22)) : ((2.0 + x_23) > (5.0 + x_26)? (2.0 + x_23) : (5.0 + x_26))) : (((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) > ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))? ((15.0 + x_27) > (15.0 + x_29)? (15.0 + x_27) : (15.0 + x_29)) : ((4.0 + x_32) > ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35))? (4.0 + x_32) : ((19.0 + x_34) > (9.0 + x_35)? (19.0 + x_34) : (9.0 + x_35)))))); x_32_ = (((((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))) > (((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) > ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16)))? ((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) : ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))))? (((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))) : (((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) > ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16)))? ((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) : ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))))) > ((((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) > ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))? ((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) : ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))) > (((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) > ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))? ((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) : ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))))? (((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) > ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))? ((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) : ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))) : (((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) > ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))? ((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) : ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))))? ((((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))) > (((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) > ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16)))? ((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) : ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))))? (((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) > ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))? ((9.0 + x_1) > (12.0 + x_3)? (9.0 + x_1) : (12.0 + x_3)) : ((2.0 + x_4) > (11.0 + x_6)? (2.0 + x_4) : (11.0 + x_6))) : (((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) > ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16)))? ((15.0 + x_11) > (12.0 + x_12)? (15.0 + x_11) : (12.0 + x_12)) : ((3.0 + x_13) > ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))? (3.0 + x_13) : ((11.0 + x_14) > (15.0 + x_16)? (11.0 + x_14) : (15.0 + x_16))))) : ((((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) > ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))? ((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) : ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))) > (((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) > ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))? ((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) : ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))))? (((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) > ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))? ((16.0 + x_17) > (7.0 + x_19)? (16.0 + x_17) : (7.0 + x_19)) : ((1.0 + x_20) > (19.0 + x_21)? (1.0 + x_20) : (19.0 + x_21))) : (((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) > ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))? ((13.0 + x_28) > (9.0 + x_31)? (13.0 + x_28) : (9.0 + x_31)) : ((20.0 + x_32) > ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34))? (20.0 + x_32) : ((7.0 + x_33) > (16.0 + x_34)? (7.0 + x_33) : (16.0 + x_34)))))); x_33_ = (((((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) > (((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) > ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15)))? ((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) : ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))))? (((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) : (((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) > ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15)))? ((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) : ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))))) > ((((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) > ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))? ((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) : ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))) > (((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) > ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))? ((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) : ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))))? (((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) > ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))? ((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) : ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))) : (((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) > ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))? ((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) : ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))))? ((((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) > (((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) > ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15)))? ((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) : ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))))? (((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) > ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))? ((19.0 + x_1) > (8.0 + x_2)? (19.0 + x_1) : (8.0 + x_2)) : ((13.0 + x_6) > (3.0 + x_8)? (13.0 + x_6) : (3.0 + x_8))) : (((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) > ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15)))? ((7.0 + x_9) > (4.0 + x_10)? (7.0 + x_9) : (4.0 + x_10)) : ((4.0 + x_12) > ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))? (4.0 + x_12) : ((1.0 + x_14) > (5.0 + x_15)? (1.0 + x_14) : (5.0 + x_15))))) : ((((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) > ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))? ((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) : ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))) > (((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) > ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))? ((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) : ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))))? (((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) > ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))? ((13.0 + x_18) > (20.0 + x_19)? (13.0 + x_18) : (20.0 + x_19)) : ((14.0 + x_22) > (10.0 + x_23)? (14.0 + x_22) : (10.0 + x_23))) : (((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) > ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))? ((13.0 + x_24) > (3.0 + x_27)? (13.0 + x_24) : (3.0 + x_27)) : ((2.0 + x_30) > ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33))? (2.0 + x_30) : ((7.0 + x_32) > (20.0 + x_33)? (7.0 + x_32) : (20.0 + x_33)))))); x_34_ = (((((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) > ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))? ((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) : ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))) > (((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15)))? ((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))))? (((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) > ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))? ((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) : ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))) : (((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15)))? ((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))))) > ((((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) > ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))? ((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) : ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))) > (((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) > ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))? ((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) : ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))))? (((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) > ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))? ((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) : ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))) : (((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) > ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))? ((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) : ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))))? ((((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) > ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))? ((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) : ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))) > (((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15)))? ((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))))? (((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) > ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))? ((6.0 + x_0) > (16.0 + x_3)? (6.0 + x_0) : (16.0 + x_3)) : ((4.0 + x_4) > (16.0 + x_9)? (4.0 + x_4) : (16.0 + x_9))) : (((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) > ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15)))? ((10.0 + x_10) > (16.0 + x_11)? (10.0 + x_10) : (16.0 + x_11)) : ((19.0 + x_12) > ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))? (19.0 + x_12) : ((12.0 + x_13) > (3.0 + x_15)? (12.0 + x_13) : (3.0 + x_15))))) : ((((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) > ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))? ((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) : ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))) > (((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) > ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))? ((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) : ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))))? (((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) > ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))? ((7.0 + x_20) > (16.0 + x_24)? (7.0 + x_20) : (16.0 + x_24)) : ((3.0 + x_25) > (8.0 + x_26)? (3.0 + x_25) : (8.0 + x_26))) : (((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) > ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))? ((15.0 + x_28) > (6.0 + x_31)? (15.0 + x_28) : (6.0 + x_31)) : ((4.0 + x_32) > ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35))? (4.0 + x_32) : ((18.0 + x_33) > (6.0 + x_35)? (18.0 + x_33) : (6.0 + x_35)))))); x_35_ = (((((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) > ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))? ((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) : ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))) > (((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) > ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13)))? ((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) : ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))))? (((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) > ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))? ((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) : ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))) : (((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) > ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13)))? ((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) : ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))))) > ((((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) > ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))? ((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) : ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))) > (((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) > ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))? ((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) : ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))))? (((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) > ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))? ((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) : ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))) : (((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) > ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))? ((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) : ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))))? ((((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) > ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))? ((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) : ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))) > (((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) > ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13)))? ((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) : ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))))? (((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) > ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))? ((9.0 + x_2) > (15.0 + x_3)? (9.0 + x_2) : (15.0 + x_3)) : ((3.0 + x_4) > (16.0 + x_5)? (3.0 + x_4) : (16.0 + x_5))) : (((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) > ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13)))? ((19.0 + x_6) > (11.0 + x_7)? (19.0 + x_6) : (11.0 + x_7)) : ((18.0 + x_9) > ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))? (18.0 + x_9) : ((13.0 + x_10) > (5.0 + x_13)? (13.0 + x_10) : (5.0 + x_13))))) : ((((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) > ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))? ((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) : ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))) > (((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) > ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))? ((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) : ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))))? (((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) > ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))? ((12.0 + x_15) > (17.0 + x_16)? (12.0 + x_15) : (17.0 + x_16)) : ((1.0 + x_18) > (14.0 + x_19)? (1.0 + x_18) : (14.0 + x_19))) : (((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) > ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))? ((8.0 + x_22) > (17.0 + x_25)? (8.0 + x_22) : (17.0 + x_25)) : ((17.0 + x_28) > ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34))? (17.0 + x_28) : ((17.0 + x_29) > (11.0 + x_34)? (17.0 + x_29) : (11.0 + x_34)))))); 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_; x_32 = x_32_; x_33 = x_33_; x_34 = x_34_; x_35 = x_35_; } return 0; }
the_stack_data/77281.c
#include <stdio.h> #include <unistd.h> #include <signal.h> // https://piazza.com/class/jw5gjfzlolt5di?cid=26 void print(char *s){ while (*s != 0) { write(1, s, 1); s++; } } void interruptHandler(int sig){ print("got interrupt\n"); } int main(void){ int x = 3; print("hello world\n"); //signal(SIGINT, interruptHandler); //signal(SIGFPE, interruptHandler); //signal(15, interruptHandler); while (1) ; // x = x / 0; }
the_stack_data/430269.c
// Support for this unparsing uses the tests for in: // unparseLanguageIndependentConstructs.C // unparseCxx_expressions.C // and // unparseCxx_statements.C // // Modifications are associated with handling of "__anonymous_0x" // strings and dated (1/22/2014). // DQ (1/22/2014): Look ahead to see if this is a SgVarRefExp of a variable with a generated name. // We can't support this approach. We have to look from the SgDotExp down to see if their is a // variable reference to a variables named "__anonymous_0x" so that we can know to not output the // SgDotExp operator name, and then always in the SgVarRef supress the name when we detect the // "__anonymous_0x" named variables. typedef struct { union { struct { int NameIsString; }; }; } WapiImageResourceDirectoryEntry; void scan_resource_dir () { WapiImageResourceDirectoryEntry swapped_entry; int is_string; is_string = swapped_entry.NameIsString; }
the_stack_data/212642920.c
#include <stdio.h> #include <stdlib.h> int Armstrong (void); int count; int main (void){ count = 0; Armstrong(); printf("%d\n", count); } int Armstrong (void){ int max = 9; int result=0; for(int a=1; a<=max; a++){ for(int b=0; b<=max; b++){ for(int c=0; c<=max; c++){ result = a*a*a + b*b*b + c*c*c; count += 6; if(result == a*100 + b*10 + c) printf("%d %d %d \n", a,b,c); } } } }
the_stack_data/150142927.c
extern void __VERIFIER_error() __attribute__ ((__noreturn__)); /* * Program depicted in Fig.1 of * 2000SPIN - Ball,Rajamani - Bebop: A Symbolic Model Checker for Boolean Programs * * Author: Matthias Heizmann * Date: 2014-07-31 * */ extern int __VERIFIER_nondet_int(void); int g; int A(int a1, int a2) { if (a1) { A(a2,a1); } else { g = a2; } } int main() { int g = __VERIFIER_nondet_int(); int h = !g; A(g,h); A(g,h); if (g) { ERROR: __VERIFIER_error(); } }
the_stack_data/799508.c
#include <math.h> #include <stdio.h> #include <stdlib.h> /* for atof() */ #include <string.h> #define MAXOP 100 /* max size of operand or operator */ #define NUMBER '0' /* signal that a number was found */ #define IDENTIFIER '1' int getop(char []); void push(double); double pop(void); double top(void); void clear(void); void func(char []); /* reverse Polish calculator */ main() { int type; double op1, op2; char s[MAXOP]; while ((type = getop(s)) != EOF) { switch (type) { case NUMBER: push(atof(s)); break; case IDENTIFIER: func(s); break; case '+': push(pop() + pop()); break; case '*': push(pop() * pop()); break; case '-': op2 = pop(); push(pop() - op2); break; case '/': op2 = pop(); if (op2 != 0.0) push(pop() / op2); else printf("error: zero divisor\n"); break; case '%': op2 = pop(); if (op2 != 0.0) push((int)pop() % (int)op2); else printf("error: zero divisor\n"); break; case '?': printf("\t%.8g\n", top()); break; case '#': op2 = pop(); push(op2); push(op2); break; case '~': op1 = pop(); op2 = pop(); push(op1); push(op2); break; case '!': clear(); break; case '\n': printf("\t%.8g\n", pop()); break; default: printf("error: unknown command %s\n", s); break; } } return 0; } #define MAXVAL 100 /* maximum depth of val stack */ int sp = 0; /* next free stack position */ double val[MAXVAL]; /* value stack */ /* push: push f onto value stack */ void push(double f) { if (sp < MAXVAL) val[sp++] = f; else printf("error: stack full, can't push %g\n", f); } /* pop: pop and return top value from stack */ double pop(void) { if (sp > 0) return val[--sp]; else { printf("error: stack empty\n"); return 0.0; } } double top(void) { if (sp > 0) return val[sp - 1]; else { printf("error: stack empty\n"); return 0.0; } } void clear(void) { sp = 0; } void func(char s[]) { double op2; if (strcmp(s, "sin") == 0) push(sin(pop())); else if (strcmp(s, "exp") == 0) push(exp(pop())); else if (strcmp(s, "pow") == 0) { op2 = pop(); push(pow(pop(), op2)); } else printf("error: unknown command %s\n", s); } #include <ctype.h> int getch(void); void ungetch(int); /* getop: get next operator or numeric operand */ int getop(char s[]) { int i, c; while ((s[0] = c = getch()) == ' ' || c == '\t') ; s[1] = '\0'; i = 0; if (islower(c)) { while (islower(s[++i] = c = getch())) ; s[i] = '\0'; if (c != EOF) ungetch(c); return IDENTIFIER; } if (!isdigit(c) && c != '.' && c != '-') return c; /* not a number */ if (c == '-') if (!isdigit(s[++i] = c = getch())) { ungetch(c); return '-'; } if (isdigit(c)) /* collect integer part */ while (isdigit(s[++i] = c = getch())) ; if (c == '.') /* collect fraction part */ while (isdigit(s[++i] = c = getch())) ; s[i] = '\0'; if (c != EOF) ungetch(c); return NUMBER; } #define BUFSIZE 100 char buf[BUFSIZE]; /* buffer for ungetch */ int bufp = 0; /* next free position in buf */ int getch(void) /* get a (possibly pushed back) character */ { return (bufp > 0) ? buf[--bufp] : getchar(); } void ungetch(int c) /* push character back on input */ { if (bufp >= BUFSIZE) printf("ungetch: too many characters\n"); else buf[bufp++] = c; }
the_stack_data/9748.c
extern int nondet_int(); int main() { int x = nondet_int(); __CPROVER_assume(0<=x && x<=1); while(x<10) { int i=-10; for(;i<1;i++); x=x+i; assert(x<6); } }
the_stack_data/76109.c
#include <stdio.h> #include <stdlib.h> #include <string.h> struct node { char *first; char *last; int age; struct node *p; struct node *left; struct node *right; }; typedef struct node *node; struct tree { node root; }; struct tree *T[128]; node Create_Node () { node x = (node) malloc (sizeof (struct node)); x -> p = x -> left = x -> right = NULL; return x; } void Insert (struct tree *T, node x) { node y, z; y = NULL; z = T -> root; while (z != NULL) { y = z; if (x -> age < z -> age) z = z -> left; else z = z -> right; } if (y == NULL) T -> root = x; else if (x -> age < y -> age) y -> left = x; else y -> right = x; x -> p = y; } int Hash (node x) { printf ("Before strlen\n"); //int len = strlen (x -> last); int len = 0; for (int i = 0; x -> last[i] != '\0'; i++) len++; int sum = 0; printf ("After strlen\n"); for (int i = 0; i < len; i++) { sum += (int) x -> last[i]; } return (sum % 128); } void Insert_Data (node x) { int pos = Hash (x); printf ("Before Insert\n"); Insert (T[pos], x); } void main () { char ch; char *first, *last; int age; node x; for (int i = 0; i < 128; i++) { T[i] = (struct tree *) malloc (sizeof (struct tree)); T[i] -> root = NULL; } while (1) { scanf ("%c", &ch); switch (ch) { case 'i': x = Create_Node(); scanf ("%s", x -> first); scanf ("%s", x -> last); scanf ("%d", x -> age); printf ("%s\n%s\n%d\n", x -> first, x -> last, x -> age); Insert_Data(x); break; case 'p': exit(0); } } }
the_stack_data/132952115.c
#include<stdio.h> #include<stdlib.h> struct myArray{ int total_size; int used_size; int *ptr; }; void create_array(struct myArray *array, int Tsize, int Usize){ array->total_size = Tsize; array->used_size = Usize; array->ptr = (int *)malloc(Tsize * sizeof(int)); } void insert_array(struct myArray *array){ int n; for(int i = 0;i<array->used_size;i++){ printf("Enter the Element: "); scanf("%d", &n); (array->ptr)[i] = n; } } void show_array(struct myArray *array){ for(int i=0;i<array->used_size;i++){ printf("%d\n",array->ptr[i]); } } int main() { int tsize, usize; struct myArray marks; printf("Enter the Total size: "); scanf("%d",&tsize); printf("Enter the Used size: "); scanf("%d", &usize); create_array(&marks, tsize,usize); insert_array(&marks); show_array(&marks); return 0; }
the_stack_data/64201076.c
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // ____ ___ __ _ // / __// o |,'_/ .' \ // / _/ / _,'/ /_n / o / _ __ _ ___ _ _ __ // /_/ /_/ |__,'/_n_/ / \,' /.' \ ,' _/,' \ / |/ / // / \,' // o /_\ `./ o // || / // /_/ /_//_n_//___,'|_,'/_/|_/ // //~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ // Author : Wesley Taylor-Rendal (WTR) // Design history : Review git logs. // Description : Write a program that does and displays subtraction // Concepts : Changing the operator from programs 3.4 //~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ #include <stdio.h> int main(void) { // Declared values int sub, value1, value2; // Assignments value1 = 87; value2 = 15; sub = value1 - value2; // Display results printf("The sub of %i and %i is %i\n", value1, value2, sub); return 0; }
the_stack_data/87636470.c
#include <stdio.h> #include <math.h> /** * @brief Esta função calcula a distância entre dois pontos em um plano * cartesiano. * * @param x0 abscissa do primeiro ponto * @param y0 ordenada do primeiro ponto * @param x1 abscissa do segundo ponto * @param y1 ordenada do segundo ponto * * @return Apenas reais iguais ou superiores a zero. */ float DistPontos(int x0, int y0, int x1, int y1){ int catetoX, catetoY; catetoX = x1 - x0; catetoY = y1 - y0; return sqrt(catetoX*catetoX + catetoY*catetoY); } int main(){ int valorC, valorN, xBranca, xDaBola; int yBranca, yDaBola, i, menorDist, nDaMenor; float distPontos; scanf("%d", &valorC); while(valorC--){ scanf("%d %d %d", &valorN, &xBranca, &yBranca); scanf("%d %d", &xDaBola, &yDaBola); menorDist = DistPontos(xBranca, yBranca, xDaBola, yDaBola); nDaMenor = 1; for(i = 2; i <= valorN; i++){ scanf("%d %d", &xDaBola, &yDaBola); distPontos = DistPontos(xBranca, yBranca, xDaBola, yDaBola); if(distPontos < menorDist){ menorDist = distPontos; nDaMenor = i; } } printf("%d\n", nDaMenor); } return 0; }
the_stack_data/1083400.c
#include <stdio.h> #include <pthread.h> #include <ctype.h> #include <stdlib.h> int total_words; pthread_mutex_t counter_lock = PTHREAD_MUTEX_INITIALIZER; int main(int ac, char *av[]) { pthread_t t1, t2; void *count_words(void *); if (ac != 3) { printf("useage: %s file1 file2\n", av[0]); exit(1); } total_words = 0; pthread_create(&t1, NULL, count_words, (void *)av[1]); pthread_create(&t2, NULL, count_words, (void *)av[2]); pthread_join(t1, NULL); pthread_join(t2, NULL); printf("%5d: total words\n", total_words); } void *count_words(void *f) { char *filename = (char *) f; FILE *fp; int c, prevc = '\0'; if ((fp = fopen(filename, "r")) != NULL) { while ((c = getc(fp)) != EOF) { if (! isalnum(c) && isalnum(prevc)) { pthread_mutex_lock(&counter_lock); total_words ++; pthread_mutex_unlock(&counter_lock); } prevc = c; } fclose(fp); } else { perror(filename); } return NULL; }
the_stack_data/826578.c
#include <stdio.h> #include <stdlib.h> #include <string.h> void afisareAltFisier(char *numeFisierCitire, char *numeFisierScriere) { FILE *in, *out; in = fopen(numeFisierCitire, "r"); if (in == NULL) { printf("Fisierul nu a putut fi deschis!"); exit(0); } out = fopen(numeFisierScriere, "w"); int c = fgetc(in); char linie[500]; fgets(linie, 500, in); while (fgets(linie, 500, in) != NULL) { for (int i = 0; i < strlen(linie); i++) { if (linie[i] == c) { strcpy(linie + i, linie + i + 1); i--; } } fputs(linie, out); } fclose(in); fclose(out); } void suprascrieAcelasiFisier(char *numeFisier) { FILE *fisier = fopen(numeFisier, "a+"); if (fisier == NULL) { printf("Fisierul nu a putut fi deschis!"); exit(0); } fseek(fisier, 0, SEEK_END); int finalFisier = ftell(fisier); rewind(fisier); int c = fgetc(fisier); char linie[500]; while (ftell(fisier) < finalFisier) { fgets(linie, 500, fisier); for (int i = 0; i < strlen(linie); i++) { if (linie[i] == c) { strcpy(linie + i, linie + i + 1); i--; } } int poz = ftell(fisier); fseek(fisier, 0, SEEK_END); fputs(linie, fisier); fseek(fisier, poz, SEEK_SET); } fclose(fisier); } int main() { //afisareAltFisier("..//fisierText.txt", "replica.txt"); suprascrieAcelasiFisier("..//fisierText.txt"); }
the_stack_data/59513274.c
/********************************************************************* * Filename: InsertionSort_Int.Array.c * Author: Javier Montenegro (https://javiermontenegro.github.io/) * Copyright: * Details: This code is the implementation of the insertionsort algorithm. *********************************************************************/ #include <stdio.h> #include <time.h> void isort(float arr[], int n); int fm(float arr[], int b, int n); int fm(float arr[], int b, int n) { int f = b; int c; for(c = b + 1; c < n; c++) if(arr[c] < arr[f]) f = c; return f; }//End fm void isort(float arr[], int n) { int s, w; float sm; for(s = 0; s < n - 1; s++) { w = fm(arr, s, n); sm = arr[w]; arr[w] = arr[s]; arr[s] = sm; } }//End isort int main(void) { float arr1[5] = {4.3, 6.7, 2.8, 8.9, 1.0}; float arr2[5] = {4.3, 6.7, 2.8, 8.9, 1.0}; int i = 0; printf("Sorted Array: \n"); printf("-------------\n"); clock_t start = clock(); isort(arr2, 5); printf("\nBefore\tAfter\n"); for(i = 0; i < 5; i++) printf("%.2f\t%.2f\n", arr1[i], arr2[i]); clock_t end = clock(); double time_spent = (double)(end - start) / CLOCKS_PER_SEC; printf("\nTime spent sorting: %f\n", time_spent); return 0; }//End main
the_stack_data/94857.c
#include <stdio.h> #include <stdlib.h> #include <string.h> #include <linux/input.h> #include <sys/time.h> #define KNRM "\x1B[0m" #define KRED "\x1B[31m" #define KGRN "\x1B[32m" #define KYEL "\x1B[33m" #define KBLU "\x1B[34m" #define KMAG "\x1B[35m" #define KCYN "\x1B[36m" #define KWHT "\x1B[37m" int main() { struct input_event event; FILE* file = fopen("/dev/input/event0", "r"); char* type; char* code; char* value; while(1) { fread(&event.time.tv_sec, sizeof(time_t), 1, file); fread(&event.time.tv_usec, sizeof(suseconds_t), 1, file); fread(&event.type, sizeof(unsigned short), 1, file); fread(&event.code, sizeof(unsigned short), 1, file); fread(&event.value, sizeof(unsigned int), 1, file); if(event.type == EV_KEY) { switch(event.code) { case KEY_RESERVED : code = "KEY_RESERVED"; break; case KEY_ESC : code = "KEY_ESC"; break; case KEY_1 : code = "KEY_1"; break; case KEY_2 : code = "KEY_2"; break; case KEY_3 : code = "KEY_3"; break; case KEY_4 : code = "KEY_4"; break; case KEY_5 : code = "KEY_5"; break; case KEY_6 : code = "KEY_6"; break; case KEY_7 : code = "KEY_7"; break; case KEY_8 : code = "KEY_8"; break; case KEY_9 : code = "KEY_9"; break; case KEY_0 : code = "KEY_0"; break; case KEY_MINUS : code = "KEY_MINUS"; break; case KEY_EQUAL : code = "KEY_EQUAL"; break; case KEY_BACKSPACE : code = "KEY_BACKSPACE"; break; case KEY_TAB : code = "KEY_TAB"; break; case KEY_Q : code = "KEY_Q"; break; case KEY_W : code = "KEY_W"; break; case KEY_E : code = "KEY_E"; break; case KEY_R : code = "KEY_R"; break; case KEY_T : code = "KEY_T"; break; case KEY_Y : code = "KEY_Y"; break; case KEY_U : code = "KEY_U"; break; case KEY_I : code = "KEY_I"; break; case KEY_O : code = "KEY_O"; break; case KEY_P : code = "KEY_P"; break; case KEY_LEFTBRACE : code = "KEY_LEFTBRACE"; break; case KEY_RIGHTBRACE : code = "KEY_RIGHTBRACE"; break; case KEY_ENTER : code = "KEY_ENTER"; break; case KEY_LEFTCTRL : code = "KEY_LEFTCTRL"; break; case KEY_A : code = "KEY_A"; break; case KEY_S : code = "KEY_S"; break; case KEY_D : code = "KEY_D"; break; case KEY_F : code = "KEY_F"; break; case KEY_G : code = "KEY_G"; break; case KEY_H : code = "KEY_H"; break; case KEY_J : code = "KEY_J"; break; case KEY_K : code = "KEY_K"; break; case KEY_L : code = "KEY_L"; break; case KEY_SEMICOLON : code = "KEY_SEMICOLON"; break; case KEY_APOSTROPHE : code = "KEY_APOSTROPHE"; break; case KEY_GRAVE : code = "KEY_GRAVE"; break; case KEY_LEFTSHIFT : code = "KEY_LEFTSHIFT"; break; case KEY_BACKSLASH : code = "KEY_BACKSLASH"; break; case KEY_Z : code = "KEY_Z"; break; case KEY_X : code = "KEY_X"; break; case KEY_C : code = "KEY_C"; break; case KEY_V : code = "KEY_V"; break; case KEY_B : code = "KEY_B"; break; case KEY_N : code = "KEY_N"; break; case KEY_M : code = "KEY_M"; break; case KEY_COMMA : code = "KEY_COMMA"; break; case KEY_DOT : code = "KEY_DOT"; break; case KEY_SLASH : code = "KEY_SLASH"; break; case KEY_RIGHTSHIFT : code = "KEY_RIGHTSHIFT"; break; case KEY_KPASTERISK : code = "KEY_KPASTERISK"; break; case KEY_LEFTALT : code = "KEY_LEFTALT"; break; case KEY_SPACE : code = "KEY_SPACE"; break; case KEY_CAPSLOCK : code = "KEY_CAPSLOCK"; break; case KEY_F1 : code = "KEY_F1"; break; case KEY_F2 : code = "KEY_F2"; break; case KEY_F3 : code = "KEY_F3"; break; case KEY_F4 : code = "KEY_F4"; break; case KEY_F5 : code = "KEY_F5"; break; case KEY_F6 : code = "KEY_F6"; break; case KEY_F7 : code = "KEY_F7"; break; case KEY_F8 : code = "KEY_F8"; break; case KEY_F9 : code = "KEY_F9"; break; case KEY_F10 : code = "KEY_F10"; break; case KEY_NUMLOCK : code = "KEY_NUMLOCK"; break; case KEY_SCROLLLOCK : code = "KEY_SCROLLLOCK"; break; case KEY_KP7 : code = "KEY_KP7"; break; case KEY_KP8 : code = "KEY_KP8"; break; case KEY_KP9 : code = "KEY_KP9"; break; case KEY_KPMINUS : code = "KEY_KPMINUS"; break; case KEY_KP4 : code = "KEY_KP4"; break; case KEY_KP5 : code = "KEY_KP5"; break; case KEY_KP6 : code = "KEY_KP6"; break; case KEY_KPPLUS : code = "KEY_KPPLUS"; break; case KEY_KP1 : code = "KEY_KP1"; break; case KEY_KP2 : code = "KEY_KP2"; break; case KEY_KP3 : code = "KEY_KP3"; break; case KEY_KP0 : code = "KEY_KP0"; break; case KEY_KPDOT : code = "KEY_KPDOT"; break; case KEY_ZENKAKUHANKAKU : code = "KEY_ZENKAKUHANKAKU"; break; case KEY_102ND : code = "KEY_102ND"; break; case KEY_F11 : code = "KEY_F11"; break; case KEY_F12 : code = "KEY_F12"; break; case KEY_RO : code = "KEY_R0"; break; case KEY_KATAKANA : code = "KEY_KATAKANA"; break; case KEY_HIRAGANA : code = "KEY_HIRAGANA"; break; case KEY_HENKAN : code = "KEY_HENKAN"; break; case KEY_KATAKANAHIRAGANA : code = "KEY_KATAKANAHIRAGANA"; break; case KEY_MUHENKAN : code = "KEY_MUHENKAN"; break; case KEY_KPJPCOMMA : code = "KEY_KPJPCOMMA"; break; case KEY_KPENTER : code = "KEY_KPENTER"; break; case KEY_RIGHTCTRL : code = "KEY_RIGHTCTRL"; break; case KEY_KPSLASH : code = "KEY_KPSLASH"; break; case KEY_SYSRQ : code = "KEY_SYSRQ"; break; case KEY_RIGHTALT : code = "KEY_RIGHTALT"; break; case KEY_LINEFEED : code = "KEY_LINEFEED"; break; case KEY_HOME : code = "KEY_HOME"; break; case KEY_UP : code = "KEY_UP"; break; case KEY_PAGEUP : code = "KEY_PAGEUP"; break; case KEY_LEFT : code = "KEY_LEFT"; break; case KEY_RIGHT : code = "KEY_RITHGT"; break; case KEY_END : code = "KEY_END"; break; case KEY_DOWN : code = "KEY_DOWN"; break; case KEY_PAGEDOWN : code = "KEY_PAGEDOWN"; break; case KEY_INSERT : code = "KEY_INSERT"; break; case KEY_DELETE : code = "KEY_DELETE"; break; case KEY_MACRO : code = "KEY_MACRO"; break; case KEY_MUTE : code = "KEY_MUTE"; break; case KEY_VOLUMEDOWN : code = "KEY_VOLUMEDOWN"; break; case KEY_VOLUMEUP : code = "KEY_VOLUMEUP"; break; case KEY_POWER : code = "KEY_POWER"; break; case KEY_KPEQUAL : code = "KEY_KPEQUAL"; break; case KEY_KPPLUSMINUS : code = "KEY_KPPLUSMINUS"; break; case KEY_PAUSE : code = "KEY_PAUSE"; break; case KEY_SCALE : code = "KEY_SCALE"; break; case KEY_KPCOMMA : code = "KEY_KPCOMMA"; break; case KEY_HANGEUL : code = "KEY_HANGEUL"; break; case KEY_HANJA : code = "KEY_HANJA"; break; case KEY_YEN : code = "KEY_YEN"; break; case KEY_LEFTMETA : code = "KEY_LEFTMETA"; break; case KEY_RIGHTMETA : code = "KEY_RIGHTMETA"; break; case KEY_COMPOSE : code = "KEY_COMPOSE"; break; case KEY_STOP : code = "KEY_STOP"; break; case KEY_AGAIN : code = "KEY_AGAIN"; break; case KEY_PROPS : code = "KEY_PROPS"; break; case KEY_UNDO : code = "KEY_UNDO"; break; case KEY_FRONT : code = "KEY_FRONT"; break; case KEY_COPY : code = "KEY_COPY"; break; case KEY_OPEN : code = "KEY_OPEN"; break; case KEY_PASTE : code = "KEY_PASTE"; break; case KEY_FIND : code = "KEY_FIND"; break; case KEY_CUT : code = "KEY_CUT"; break; case KEY_HELP : code = "KEY_HELP"; break; case KEY_MENU : code = "KEY_MENU"; break; case KEY_CALC : code = "KEY_CALC"; break; case KEY_SETUP : code = "KEY_SETUP"; break; case KEY_SLEEP : code = "KEY_SLEEP"; break; case KEY_WAKEUP : code = "KEY_WAKEUP"; break; case KEY_FILE : code = "KEY_FILE"; break; case KEY_SENDFILE : code = "KEY_SENDFILE"; break; case KEY_DELETEFILE : code = "KEY_DELETEFILE"; break; case KEY_XFER : code = "KEY_XFER"; break; case KEY_PROG1 : code = "KEY_PROG1"; break; case KEY_PROG2 : code = "KEY_PROG2"; break; case KEY_WWW : code = "KEY_WWW"; break; case KEY_MSDOS : code = "KEY_MSDOS"; break; case KEY_SCREENLOCK : code = "KEY_(SCREENLOCK/COFFEE)"; break; case KEY_DIRECTION : code = "KEY_DIRECTION"; break; case KEY_CYCLEWINDOWS : code = "KEY_CYCLEWINDOWS"; break; case KEY_MAIL : code = "KEY_MAIL"; break; case KEY_BOOKMARKS : code = "KEY_BOOKMARKS"; break; case KEY_COMPUTER : code = "KEY_COMPUTER"; break; case KEY_BACK : code = "KEY_BACK"; break; case KEY_FORWARD : code = "KEY_FORWARD"; break; case KEY_CLOSECD : code = "KEY_CLOSED"; break; case KEY_EJECTCD : code = "KEY_EJECTED"; break; case KEY_EJECTCLOSECD : code = "KEY_EJECTCLOSED"; break; case KEY_NEXTSONG : code = "KEY_NEXTSONG"; break; case KEY_PLAYPAUSE : code = "KEY_PLAYPAUSE"; break; case KEY_PREVIOUSSONG : code = "KEY_PREVIOUSSONG"; break; case KEY_STOPCD : code = "KEY_STOPCD"; break; case KEY_RECORD : code = "KEY_RECORD"; break; case KEY_REWIND : code = "KEY_REWIND"; break; case KEY_PHONE : code = "KEY_PHONE"; break; case KEY_ISO : code = "KEY_ISO"; break; case KEY_CONFIG : code = "KEY_CONFIG"; break; case KEY_HOMEPAGE : code = "KEY_HOMEPAGE"; break; case KEY_REFRESH : code = "KEY_REFRESH"; break; case KEY_EXIT : code = "KEY_EXIT"; break; case KEY_MOVE : code = "KEY_MOVE"; break; case KEY_EDIT : code = "KEY_EDIT"; break; case KEY_SCROLLUP : code = "KEY_SCROLLUP"; break; case KEY_SCROLLDOWN : code = "KEY_SCROLLDOWN"; break; case KEY_KPLEFTPAREN : code = "KEY_KPLEFTPAREN"; break; case KEY_KPRIGHTPAREN : code = "KEY_KPRIGHTPAREN"; break; case KEY_NEW : code = "KEY_NEW"; break; case KEY_REDO : code = "KEY_REDO"; break; case KEY_F13 : code = "KEY_F13"; break; case KEY_F14 : code = "KEY_F14"; break; case KEY_F15 : code = "KEY_F15"; break; case KEY_F16 : code = "KEY_F16"; break; case KEY_F17 : code = "KEY_F17"; break; case KEY_F18 : code = "KEY_F18"; break; case KEY_F19 : code = "KEY_F19"; break; case KEY_F20 : code = "KEY_F20"; break; case KEY_F21 : code = "KEY_F21"; break; case KEY_F22 : code = "KEY_F22"; break; case KEY_F23 : code = "KEY_F23"; break; case KEY_F24 : code = "KEY_F24"; break; case KEY_PLAYCD : code = "KEY_PLAYCD"; break; case KEY_PAUSECD : code = "KEY_PAUSECD"; break; case KEY_PROG3 : code = "KEY_PROG3"; break; case KEY_PROG4 : code = "KEY_PROG4"; break; case KEY_DASHBOARD : code = "KEY_DASHBOARD"; break; case KEY_SUSPEND : code = "KEY_SUSPEND"; break; case KEY_CLOSE : code = "KEY_CLOSE"; break; case KEY_PLAY : code = "KEY_PLAY"; break; case KEY_FASTFORWARD : code = "KEY_FASTFORWARD"; break; case KEY_BASSBOOST : code = "KEY_BASSBOST"; break; case KEY_PRINT : code = "KEY_PRINT"; break; case KEY_HP : code = "KEY_HP"; break; case KEY_CAMERA : code = "KEY_CAMERA"; break; case KEY_SOUND : code = "KEY_SOUND"; break; case KEY_QUESTION : code = "KEY_QUESTION"; break; case KEY_EMAIL : code = "KEY_EMAIL"; break; case KEY_CHAT : code = "KEY_CHAT"; break; case KEY_SEARCH : code = "KEY_SEARCH"; break; case KEY_CONNECT : code = "KEY_CONNECT"; break; case KEY_FINANCE : code = "KEY_FINANCE"; break; case KEY_SPORT : code = "KEY_SPORT"; break; case KEY_SHOP : code = "KEY_SHOP"; break; case KEY_ALTERASE : code = "KEY_ALTERASE"; break; case KEY_CANCEL : code = "KEY_CANCEL"; break; case KEY_BRIGHTNESSDOWN : code = "KEY_BRIGHTNESSDOWN"; break; case KEY_BRIGHTNESSUP : code = "KEY_BRIGHTNESSUP"; break; case KEY_MEDIA : code = "KEY_MEDIA"; break; case KEY_SWITCHVIDEOMODE : code = "KEY_SWITCHVIDEOMODE"; break; case KEY_KBDILLUMTOGGLE : code = "KEY_KBDILLUMTOGGLE"; break; case KEY_KBDILLUMDOWN : code = "KEY_KBDILLUMDOWN"; break; case KEY_KBDILLUMUP : code = "KEY_KBDILLUMUP"; break; case KEY_SEND : code = "KEY_SEND"; break; case KEY_REPLY : code = "KEY_REPLY"; break; case KEY_FORWARDMAIL : code = "KEY_FORWARDMAIL"; break; case KEY_SAVE : code = "KEY_SAVE"; break; case KEY_DOCUMENTS : code = "KEY_DOCUMENTS"; break; case KEY_BATTERY : code = "KEY_BATTERY"; break; case KEY_BLUETOOTH : code = "KEY_BLUETOOTH"; break; case KEY_WLAN : code = "KEY_WLAN"; break; case KEY_UWB : code = "KEY_UWB"; break; case KEY_UNKNOWN : code = "KEY_UNKNOWN"; break; case KEY_VIDEO_NEXT : code = "KEY_VIDEO_NEXT"; break; case KEY_VIDEO_PREV : code = "KEY_VIDEO_PREV"; break; case KEY_BRIGHTNESS_CYCLE : code = "KEY_BRIGHTNESS_CYCLE"; break; case KEY_BRIGHTNESS_AUTO : code = "KEY_BRIGHTNESS_(ZERO/AUTO)"; break; case KEY_DISPLAY_OFF : code = "KEY_DISPLAY_OFF"; break; case KEY_WWAN : code = "KEY_(WWAN/WIMAX)"; break; case KEY_RFKILL : code = "KEY_RFKILL"; break; case KEY_MICMUTE : code = "KEY_MICMUTE"; break; } switch(event.value) { case 0: value = "keyrelease"; break; case 1: value = "keypress"; break; case 2: value = "autorepeat"; break; } if(value != "keyrelease") printf("\n"KCYN"%s"KNRM":"KRED"%s"KNRM"\n", code, value); } } return EXIT_SUCCESS; }
the_stack_data/6388588.c
#include <stdio.h> #include <string.h> #include <stdlib.h> int main() { const char *sysLogSep = ": "; const char *timeMillis = "{\"timeMillis\""; // char buf[BUFSIZ]; // default is 8k char buf[32768]; while (fgets(buf, sizeof buf, stdin)) { int brace = 0; char *posSysLogSep = strstr(buf, sysLogSep); if (posSysLogSep == NULL || posSysLogSep - buf > 80) { printf("%s\n", buf); continue; } for (int i=posSysLogSep-buf; i > 0 != NULL; i--) { if (buf[i] == ' ') { printf("SPLIT AT %d\n", i); break; } } char *posTimeMillis = strstr(buf, timeMillis); if (posTimeMillis != NULL && (posTimeMillis - posSysLogSep) < 3) { printf("%s\n", buf); continue; // TODO: Clear buffer too! } // printf("each 1: %c\n", buf[posSysLogSep-buf]); // printf("each 2: %c\n", buf[posSysLogSep-buf+1]); // printf("each 3: %c\n", buf[posSysLogSep-buf+2]); for (int i=0; buf[posSysLogSep-buf+i] != NULL; i++) { // printf("each : %c\n", buf[posSysLogSep-buf+i]); long posChar = posSysLogSep-buf+i; if (buf[posChar] == '{') { brace++; } else if (buf[posChar] == '}') { brace--; } } printf("Brace balance: %d\n", brace); // size_t bufLen = strlen(buf); // size_t i; // for (i=posSysLogSep; buf[posSysLogSep-buf+i] != NULL; i++) { // printf("each: %c", buf[posSysLogSep-buf+i]); // } } return 0; }
the_stack_data/45450487.c
#include <stdio.h> #include <string.h> int main(void) { char str[] = "hello c language"; char *key = "lan"; char *p = NULL; p = strstr(str, key); printf("%s", p); return 0; }
the_stack_data/24159.c
/* Generated by CIL v. 1.7.0 */ /* print_CIL_Input is false */ struct _IO_FILE; struct timeval; extern void signal(int sig , void *func ) ; extern float strtof(char const *str , char const *endptr ) ; typedef struct _IO_FILE FILE; extern int atoi(char const *s ) ; extern double strtod(char const *str , char const *endptr ) ; extern int fclose(void *stream ) ; extern void *fopen(char const *filename , char const *mode ) ; extern void abort() ; extern void exit(int status ) ; extern int raise(int sig ) ; extern int fprintf(struct _IO_FILE *stream , char const *format , ...) ; extern int strcmp(char const *a , char const *b ) ; extern int rand() ; extern unsigned long strtoul(char const *str , char const *endptr , int base ) ; void RandomFunc(unsigned long input[1] , unsigned long output[1] ) ; extern int strncmp(char const *s1 , char const *s2 , unsigned long maxlen ) ; extern int gettimeofday(struct timeval *tv , void *tz , ...) ; extern int printf(char const *format , ...) ; int main(int argc , char *argv[] ) ; void megaInit(void) ; extern unsigned long strlen(char const *s ) ; extern long strtol(char const *str , char const *endptr , int base ) ; extern unsigned long strnlen(char const *s , unsigned long maxlen ) ; extern void *memcpy(void *s1 , void const *s2 , unsigned long size ) ; struct timeval { long tv_sec ; long tv_usec ; }; extern void *malloc(unsigned long size ) ; extern int scanf(char const *format , ...) ; void megaInit(void) { { } } void RandomFunc(unsigned long input[1] , unsigned long output[1] ) { unsigned long state[1] ; unsigned short copy14 ; { state[0UL] = input[0UL] ^ 700325083UL; if ((state[0UL] >> 4UL) & 1UL) { if ((state[0UL] >> 2UL) & 1UL) { if (state[0UL] & 1UL) { state[0UL] <<= ((state[0UL] >> 3UL) & 7UL) | 1UL; } } else if (state[0UL] & 1UL) { } } else { copy14 = *((unsigned short *)(& state[0UL]) + 3); *((unsigned short *)(& state[0UL]) + 3) = *((unsigned short *)(& state[0UL]) + 0); *((unsigned short *)(& state[0UL]) + 0) = copy14; copy14 = *((unsigned short *)(& state[0UL]) + 0); *((unsigned short *)(& state[0UL]) + 0) = *((unsigned short *)(& state[0UL]) + 3); *((unsigned short *)(& state[0UL]) + 3) = copy14; } output[0UL] = state[0UL] | 595841640UL; } } int main(int argc , char *argv[] ) { unsigned long input[1] ; unsigned long output[1] ; int randomFuns_i5 ; unsigned long randomFuns_value6 ; int randomFuns_main_i7 ; { megaInit(); if (argc != 2) { printf("Call this program with %i arguments\n", 1); exit(-1); } else { } randomFuns_i5 = 0; while (randomFuns_i5 < 1) { randomFuns_value6 = strtoul(argv[randomFuns_i5 + 1], 0, 10); input[randomFuns_i5] = randomFuns_value6; randomFuns_i5 ++; } RandomFunc(input, output); if (output[0] == 734002922UL) { printf("You win!\n"); } else { } randomFuns_main_i7 = 0; while (randomFuns_main_i7 < 1) { printf("%lu\n", output[randomFuns_main_i7]); randomFuns_main_i7 ++; } } }
the_stack_data/61075786.c
/***************************************************************************** ** * ** Name: bt_firmware_image.c * ** * ** Description: Bluetooth Controller Firmware patch * ** * ** Copyright (c) 2015, Broadcom Corp., All Rights Reserved. * ******************************************************************************/ #include <stdint.h> /* FILE-CSTYLED */ const char brcm_patch_version[] = "BCM20703A1_001.001.005.0060.0000_Generic_UART_20MHz_fcbga_BU.hcd"; const uint8_t brcm_patchram_format = 0x01; const uint8_t brcm_patchram_buf[] = { /* Configuration Data Records (Write_RAM) */ 0x4C, 0xFC, 0x8B, 0xF0, 0x04, 0x24, 0x00, 0x01, 0x06, 0x00, 0x69, 0x99, 0x99, 0x42, 0x04, 0x1F, 0xC1, 0x5E, 0x00, 0x00, 0x00, 0x14, 0x22, 0x22, 0x00, 0x00, 0x14, 0x22, 0x22, 0x3B, 0x02, 0x57, 0x02, 0x58, 0x02, 0x58, 0x02, 0x59, 0x02, 0x59, 0x02, 0x5A, 0x02, 0x5A, 0x02, 0x5B, 0x02, 0x5B, 0x02, 0x5C, 0x02, 0x5C, 0x02, 0x5D, 0x02, 0x5D, 0x02, 0x5E, 0x02, 0x5E, 0x02, 0x5F, 0x02, 0x5F, 0x02, 0x60, 0x02, 0x60, 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0xFF, 0xFF, 0xFF, 0xFF, 0x01, 0x00, 0x00, 0x00, 0x8C, 0x00, 0x64, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x01, 0x00, 0x00, 0x00, 0x84, 0x06, 0x64, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x30, 0x00, 0x00, 0x00, 0x8C, 0x06, 0x64, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x01, 0x00, 0x00, 0x00, 0x5C, 0x06, 0x64, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x00, 0x00, 0x00, 0x00, 0x30, 0x28, 0x20, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x32, 0x00, 0xF0, 0x00, 0x00, 0x00, 0x60, 0x00, 0x00, 0x00, 0xC4, 0xF8, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x19, 0x49, 0x00, 0x00, 0xEC, 0xF8, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x0D, 0xC9, 0x00, 0x00, 0xCC, 0xFC, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x1B, 0x45, 0x00, 0x4C, 0xFC, 0xCC, 0x3F, 0x06, 0x24, 0x00, 0x00, 0xD0, 0xFC, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x11, 0xC9, 0x00, 0x00, 0xDC, 0xFC, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x11, 0xC8, 0x00, 0x00, 0xE0, 0xFC, 0x31, 0x00, 0xFF, 0xFF, 0x00, 0x00, 0x1A, 0x47, 0x00, 0x00, 0xE4, 0xFC, 0x31, 0x00, 0xFF, 0xFF, 0x00, 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0x81, 0x00, 0x00, 0xCE, 0x2A, 0x20, 0x00, 0x5C, 0x43, 0x20, 0x00, 0x90, 0x80, 0x0D, 0x00, 0x08, 0x00, 0x03, 0x00, 0x7C, 0x2A, 0x20, 0x00, 0xD0, 0x2A, 0x20, 0x00, 0x08, 0x00, 0x01, 0x00, 0x68, 0x2A, 0x20, 0x00, /* Commit configuration data, reboot firmware (Launch_RAM) */ 0x4E, 0xFC, 0x04, 0xFF, 0xFF, 0xFF, 0xFF }; const int brcm_patch_ram_length = sizeof(brcm_patchram_buf);
the_stack_data/180271.c
/* ************************************************ username : smmehrab fullname : s.m.mehrabul islam email : [email protected] institute : university of dhaka, bangladesh session : 2017-2018 ************************************************ */ #include<stdio.h> int main() { int n,t,i=0,max,min,s[110]; scanf("%d",&n); while(i<n) { scanf("%d",&s[i]); if(i==0) { max=i; min=i; } else{ if(s[max]<s[i]) { max=i; } if(s[min]>=s[i]) { min=i; } } i++; } t=max+(n-1-min); if(max>min) { t--; } printf("%d\n",t); return 0; }
the_stack_data/175142483.c
/* * Copyright (C) 2015 Red Hat, Inc. * * This file is part of GnuTLS. * * GnuTLS 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. * * GnuTLS 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 GnuTLS; if not, write to the Free Software Foundation, * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #include <stdio.h> #include <stdlib.h> #if defined(_WIN32) || !defined(ENABLE_ALPN) int main(int argc, char **argv) { exit(77); } #else #include <string.h> #include <sys/types.h> #include <netinet/in.h> #include <sys/socket.h> #include <sys/wait.h> #include <arpa/inet.h> #include <unistd.h> #include <signal.h> #include <gnutls/gnutls.h> #include <gnutls/dtls.h> #include "utils.h" static void terminate(void); /* This program tests whether the gnutls_prf() works as * expected. */ static void server_log_func(int level, const char *str) { fprintf(stderr, "server|<%d>| %s", level, str); } static void client_log_func(int level, const char *str) { fprintf(stderr, "client|<%d>| %s", level, str); } /* These are global */ static pid_t child; static unsigned char server_cert_pem[] = "-----BEGIN CERTIFICATE-----\n" "MIIDIzCCAgugAwIBAgIMUz8PCR2sdRK56V6OMA0GCSqGSIb3DQEBCwUAMA8xDTAL\n" "BgNVBAMTBENBLTEwIhgPMjAxNDA0MDQxOTU5MDVaGA85OTk5MTIzMTIzNTk1OVow\n" "EzERMA8GA1UEAxMIc2VydmVyLTIwggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAwggEK\n" "AoIBAQDZ3dCzh9gOTOiOb2dtrPu91fYYgC/ey0ACYjQxaru7FZwnuXPhQK9KHsIV\n" "YRIyo49wjKZddkHet2sbpFAAeETZh8UUWLRb/mupyaSJMycaYCNjLZCUJTztvXxJ\n" "CCNfbtgvKC+Vu1mu94KBPatslgvnsamH7AiL5wmwRRqdH/Z93XaEvuRG6Zk0Sh9q\n" "ZMdCboGfjtmGEJ1V+z5CR+IyH4sckzd8WJW6wBSEwgliGaXnc75xKtFWBZV2njNr\n" "8V1TOYOdLEbiF4wduVExL5TKq2ywNkRpUfK2I1BcWS5D9Te/QT7aSdE08rL6ztmZ\n" "IhILSrMOfoLnJ4lzXspz3XLlEuhnAgMBAAGjdzB1MAwGA1UdEwEB/wQCMAAwFAYD\n" "VR0RBA0wC4IJbG9jYWxob3N0MA8GA1UdDwEB/wQFAwMHoAAwHQYDVR0OBBYEFJXR\n" "raRS5MVhEqaRE42A3S2BIj7UMB8GA1UdIwQYMBaAFP6S7AyMRO2RfkANgo8YsCl8\n" "JfJkMA0GCSqGSIb3DQEBCwUAA4IBAQCQ62+skMVZYrGbpab8RI9IG6xH8kEndvFj\n" "J7wBBZCOlcjOj+HQ7a2buF5zGKRwAOSznKcmvZ7l5DPdsd0t5/VT9LKSbQ6+CfGr\n" "Xs5qPaDJnRhZkOILCvXJ9qyO+79WNMsg9pWnxkTK7aWR5OYE+1Qw1jG681HMkWTm\n" "nt7et9bdiNNpvA+L55569XKbdtJLs3hn5gEQFgS7EaEj59aC4vzSTFcidowCoa43\n" "7JmfSfC9YaAIFH2vriyU0QNf2y7cG5Hpkge+U7uMzQrsT77Q3SDB9WkyPAFNSB4Q\n" "B/r+OtZXOnQhLlMV7h4XGlWruFEaOBVjFHSdMGUh+DtaLvd1bVXI\n" "-----END CERTIFICATE-----\n" "-----BEGIN CERTIFICATE-----\n" "MIIDATCCAemgAwIBAgIBATANBgkqhkiG9w0BAQsFADAPMQ0wCwYDVQQDEwRDQS0w\n" "MCIYDzIwMTQwNDA0MTk1OTA1WhgPOTk5OTEyMzEyMzU5NTlaMA8xDTALBgNVBAMT\n" "BENBLTEwggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAwggEKAoIBAQDvhyQfsUm3T0xK\n" "jiBXO3H6Y27b7lmCRYZQCmXCl2sUsGDL7V9biavTt3+sorWtH542/cTGDh5n8591\n" "7rVxAB/VASmN55O3fjZyFGrjusjhXBla0Yxe5rZ/7/Pjrq84T7gc/IXiX9Sums/c\n" "o9AeoykfhsjV2ubhh4h+8uPsHDTcAFTxq3mQaoldwnW2nmjDFzaKLtQdnyFf41o6\n" "nsJCK/J9PtpdCID5Zb+eQfu5Yhk1iUHe8a9TOstCHtgBq61YzufDHUQk3zsT+VZM\n" "20lDvSBnHdWLjxoea587JbkvtH8xRR8ThwABSb98qPnhJ8+A7mpO89QO1wxZM85A\n" "xEweQlMHAgMBAAGjZDBiMA8GA1UdEwEB/wQFMAMBAf8wDwYDVR0PAQH/BAUDAwcE\n" "ADAdBgNVHQ4EFgQU/pLsDIxE7ZF+QA2CjxiwKXwl8mQwHwYDVR0jBBgwFoAUGD0R\n" "Yr2H7kfjQUcBMxSTCDQnhu0wDQYJKoZIhvcNAQELBQADggEBANEXLUV+Z1PGTn7M\n" "3rPT/m/EamcrZJ3vFWrnfN91ws5llyRUKNhx6222HECh3xRSxH9YJONsbv2zY6sd\n" "ztY7lvckL4xOgWAjoCVTx3hqbZjDxpLRsvraw1PlqBHlRQVWLKlEQ55+tId2zgMX\n" "Z+wxM7FlU/6yWVPODIxrqYQd2KqaEp4aLIklw6Hi4HD6DnQJikjsJ6Noe0qyX1Tx\n" "uZ8mgP/G47Fe2d2H29kJ1iJ6hp1XOqyWrVIh/jONcnTvWS8aMqS3MU0EJH2Pb1Qa\n" "KGIvbd/3H9LykFTP/b7Imdv2fZxXIK8jC+jbF1w6rdBCVNA0p30X/jonoC3vynEK\n" "5cK0cgs=\n" "-----END CERTIFICATE-----\n"; const gnutls_datum_t server_cert = { server_cert_pem, sizeof(server_cert_pem) }; static unsigned char server_key_pem[] = "-----BEGIN RSA PRIVATE KEY-----\n" "MIIEpQIBAAKCAQEA2d3Qs4fYDkzojm9nbaz7vdX2GIAv3stAAmI0MWq7uxWcJ7lz\n" "4UCvSh7CFWESMqOPcIymXXZB3rdrG6RQAHhE2YfFFFi0W/5rqcmkiTMnGmAjYy2Q\n" "lCU87b18SQgjX27YLygvlbtZrveCgT2rbJYL57Gph+wIi+cJsEUanR/2fd12hL7k\n" "RumZNEofamTHQm6Bn47ZhhCdVfs+QkfiMh+LHJM3fFiVusAUhMIJYhml53O+cSrR\n" "VgWVdp4za/FdUzmDnSxG4heMHblRMS+UyqtssDZEaVHytiNQXFkuQ/U3v0E+2knR\n" "NPKy+s7ZmSISC0qzDn6C5yeJc17Kc91y5RLoZwIDAQABAoIBAQCRXAu5HPOsZufq\n" "0K2DYZz9BdqSckR+M8HbVUZZiksDAeIUJwoHyi6qF2eK+B86JiK4Bz+gsBw2ys3t\n" "vW2bQqM9N/boIl8D2fZfbCgZWkXGtUonC+mgzk+el4Rq/cEMFVqr6/YDwuKNeJpc\n" "PJc5dcsvpTvlcjgpj9bJAvJEz2SYiIUpvtG4WNMGGapVZZPDvWn4/isY+75T5oDf\n" "1X5jG0lN9uoUjcuGuThN7gxjwlRkcvEOPHjXc6rxfrWIDdiz/91V46PwpqVDpRrg\n" "ig6U7+ckS0Oy2v32x0DaDhwAfDJ2RNc9az6Z+11lmY3LPkjG/p8Klcmgvt4/lwkD\n" "OYRC5QGRAoGBAPFdud6nmVt9h1DL0o4R6snm6P3K81Ds765VWVmpzJkK3+bwe4PQ\n" "GQQ0I0zN4hXkDMwHETS+EVWllqkK/d4dsE3volYtyTti8zthIATlgSEJ81x/ChAQ\n" "vvXxgx+zPUnb1mUwy+X+6urTHe4bxN2ypg6ROIUmT+Hx1ITG40LRRiPTAoGBAOcT\n" "WR8DTrj42xbxAUpz9vxJ15ZMwuIpk3ShE6+CWqvaXHF22Ju4WFwRNlW2zVLH6UMt\n" "nNfOzyDoryoiu0+0mg0wSmgdJbtCSHoI2GeiAnjGn5i8flQlPQ8bdwwmU6g6I/EU\n" "QRbGK/2XLmlrGN52gVy9UX0NsAA5fEOsAJiFj1CdAoGBAN9i3nbq6O2bNVSa/8mL\n" "XaD1vGe/oQgh8gaIaYSpuXlfbjCAG+C4BZ81XgJkfj3CbfGbDNqimsqI0fKsAJ/F\n" "HHpVMgrOn3L+Np2bW5YMj0Fzwy+1SCvsQ8C+gJwjOLMV6syGp/+6udMSB55rRv3k\n" "rPnIf+YDumUke4tTw9wAcgkPAoGASHMkiji7QfuklbjSsslRMyDj21gN8mMevH6U\n" "cX7pduBsA5dDqu9NpPAwnQdHsSDE3i868d8BykuqQAfLut3hPylY6vPYlLHfj4Oe\n" "dj+xjrSX7YeMBE34qvfth32s1R4FjtzO25keyc/Q2XSew4FcZftlxVO5Txi3AXC4\n" "bxnRKXECgYEAva+og7/rK+ZjboJVNxhFrwHp9bXhz4tzrUaWNvJD2vKJ5ZcThHcX\n" "zCig8W7eXHLPLDhi9aWZ3kUZ1RLhrFc/6dujtVtU9z2w1tmn1I+4Zi6D6L4DzKdg\n" "nMRLFoXufs/qoaJTqa8sQvKa+ceJAF04+gGtw617cuaZdZ3SYRLR2dk=\n" "-----END RSA PRIVATE KEY-----\n"; const gnutls_datum_t server_key = { server_key_pem, sizeof(server_key_pem) }; static const gnutls_datum_t hrnd = {(void*)"\x00\x02\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00", 32}; static const gnutls_datum_t hsrnd = {(void*)"\x00\x05\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00", 32}; static void dump(const char *name, const uint8_t *data, unsigned data_size) { unsigned i; fprintf(stderr, "%s", name); for (i=0;i<data_size;i++) fprintf(stderr, "\\x%.2x", (unsigned)data[i]); fprintf(stderr, "\n"); } static gnutls_datum_t master = { (void*)"\x44\x66\x44\xa9\xb6\x29\xed\x6e\xd6\x93\x15\xdb\xf0\x7d\x4b\x2e\x18\xb1\x9d\xed\xff\x6a\x86\x76\xc9\x0e\x16\xab\xc2\x10\xbb\x17\x99\x24\xb1\xd9\xb9\x95\xe7\xea\xea\xea\xea\xea\xff\xaa\xac", 48}; static gnutls_datum_t sess_id = { (void*)"\xd9\xb9\x95\xe7\xea", 5}; #define TRY(label_size, label, extra_size, extra, size, exp) \ { \ ret = gnutls_prf_rfc5705(session, label_size, label, extra_size, extra, size, \ (void*)key_material); \ if (ret < 0) { \ fprintf(stderr, "gnutls_prf_rfc5705: error in %d\n", __LINE__); \ gnutls_perror(ret); \ exit(1); \ } \ if (memcmp(key_material, exp, size) != 0) { \ fprintf(stderr, "gnutls_prf_rfc5705: output doesn't match for '%s'\n", label); \ dump("got ", key_material, size); \ dump("expected ", exp, size); \ exit(1); \ } \ } #define TRY_OLD(label_size, label, extra_size, extra, size, exp) \ { \ ret = gnutls_prf(session, label_size, label, 1, extra_size, extra, size, \ (void*)key_material); \ if (ret < 0) { \ fprintf(stderr, "gnutls_prf: error in %d\n", __LINE__); \ gnutls_perror(ret); \ exit(1); \ } \ if (memcmp(key_material, exp, size) != 0) { \ fprintf(stderr, "gnutls_prf: output doesn't match for '%s'\n", label); \ dump("got ", key_material, size); \ dump("expected ", exp, size); \ exit(1); \ } \ } static void check_prfs(gnutls_session_t session) { unsigned char key_material[512]; unsigned char key_material2[512]; int ret; TRY(13, "key expansion", 0, NULL, 34, (uint8_t*)"\xcf\x3e\x1c\x03\x47\x1a\xdf\x4a\x8e\x74\xc6\xda\xcd\xda\x22\xa4\x8e\xa5\xf7\x62\xef\xd6\x47\xe7\x41\x20\xea\x44\xb8\x5d\x66\x87\x0a\x61"); TRY(6, "hello", 0, NULL, 31, (uint8_t*)"\x83\x6c\xc7\x8e\x1b\x62\xc7\x06\x17\x99\x37\x95\x2e\xb8\x42\x5c\x42\xcd\x75\x65\x2c\xa3\x16\x2b\xab\x0a\xcf\xfc\xc8\x90\x30"); TRY(7, "context", 5, "abcd\xfa", 31, (uint8_t*)"\x5b\xc7\x72\xe9\xda\xe4\x79\x3e\xfe\x9a\xc5\x6f\xf4\x8d\x5a\xfe\x4c\x8d\x16\xa7\xf0\x13\x13\xf1\x93\xdd\x4b\x43\x65\xc1\x94"); TRY(12, "null-context", 0, "", 31, (uint8_t*)"\xd7\xb6\xff\x3d\xf7\xbe\x0e\xf2\xd0\xbf\x55\x0b\x56\xac\xfb\x3c\x1d\x5c\xaa\xa8\x71\x45\xf5\xd5\x71\x35\xa2\x35\x83\xc2\xe0"); TRY_OLD(6, "hello", 0, NULL, 31, (uint8_t*)"\x53\x35\x9b\x1c\xbf\xf2\x50\x85\xa1\xbc\x42\xfb\x45\x92\xc3\xbe\x20\x24\x24\xe2\xeb\x6e\xf7\x4f\xc0\xee\xe3\xaa\x46\x36\xfd"); TRY_OLD(7, "context", 5, "abcd\xfa", 31, (uint8_t*)"\x5f\x75\xb7\x61\x76\x4c\x1e\x86\x4b\x7d\x2e\x6c\x09\x91\xfd\x1e\xe6\xe8\xee\xf9\x86\x6a\x80\xfe\xf3\xbe\x96\xd0\x47\xf5\x9e"); /* check whether gnutls_prf matches gnutls_prf_rfc5705 when no context is given */ ret = gnutls_prf(session, 4, "aaaa", 0, 0, NULL, 64, (void*)key_material); if (ret < 0) { fprintf(stderr, "gnutls_prf: error in %d\n", __LINE__); gnutls_perror(ret); exit(1); } ret = gnutls_prf_rfc5705(session, 4, "aaaa", 0, NULL, 64, (void*)key_material2); if (ret < 0) { fprintf(stderr, "gnutls_prf_rfc5705: error in %d\n", __LINE__); gnutls_perror(ret); exit(1); } if (memcmp(key_material, key_material2, 64) != 0) { fprintf(stderr, "gnutls_prf: output doesn't match in cross-check\n"); dump("got1 ", key_material, 64); dump("got2 ", key_material2, 64); exit(1); } } static void client(int fd) { gnutls_session_t session; int ret; gnutls_certificate_credentials_t clientx509cred; const char *err; /* Need to enable anonymous KX specifically. */ global_init(); if (debug) { gnutls_global_set_log_function(client_log_func); gnutls_global_set_log_level(4711); } gnutls_certificate_allocate_credentials(&clientx509cred); /* Initialize TLS session */ gnutls_init(&session, GNUTLS_CLIENT); ret = gnutls_session_set_premaster(session, GNUTLS_CLIENT, GNUTLS_TLS1_0, GNUTLS_KX_RSA, GNUTLS_CIPHER_AES_128_CBC, GNUTLS_MAC_SHA1, GNUTLS_COMP_NULL, &master, &sess_id); if (ret < 0) { fail("client: gnutls_session_set_premaster failed: %s\n", gnutls_strerror(ret)); exit(1); } /* Use default priorities */ ret = gnutls_priority_set_direct(session, "NONE:+VERS-TLS1.0:+AES-128-CBC:+SHA1:+SIGN-ALL:+COMP-NULL:+RSA", &err); if (ret < 0) { fail("client: priority set failed (%s): %s\n", gnutls_strerror(ret), err); exit(1); } ret = gnutls_credentials_set(session, GNUTLS_CRD_CERTIFICATE, clientx509cred); if (ret < 0) exit(1); gnutls_handshake_set_random(session, &hrnd); gnutls_transport_set_int(session, fd); if (gnutls_prf(session, 4, "aaaa", 0, 0, NULL, sizeof(err), (char *)&err) != GNUTLS_E_INVALID_REQUEST || gnutls_prf_rfc5705(session, 4, "aaaa", 0, NULL, sizeof(err), (char *)&err) != GNUTLS_E_INVALID_REQUEST) { fprintf(stderr, "unexpected prf error code\n"); exit(1); } /* Perform the TLS handshake */ do { ret = gnutls_handshake(session); } while (ret < 0 && gnutls_error_is_fatal(ret) == 0); if (ret < 0) { fail("client: Handshake failed: %s\n", strerror(ret)); exit(1); } else { if (debug) success("client: Handshake was completed\n"); } if (debug) success("client: TLS version is: %s\n", gnutls_protocol_get_name (gnutls_protocol_get_version(session))); ret = gnutls_cipher_get(session); if (ret != GNUTLS_CIPHER_AES_128_CBC) { fprintf(stderr, "negotiated unexpected cipher: %s\n", gnutls_cipher_get_name(ret)); exit(1); } ret = gnutls_mac_get(session); if (ret != GNUTLS_MAC_SHA1) { fprintf(stderr, "negotiated unexpected mac: %s\n", gnutls_mac_get_name(ret)); exit(1); } ret = gnutls_prf_hash_get(session); if (ret != GNUTLS_DIG_MD5_SHA1) { fprintf(stderr, "negotiated unexpected hash: %s\n", gnutls_digest_get_name(ret)); exit(1); } check_prfs(session); gnutls_bye(session, GNUTLS_SHUT_WR); close(fd); gnutls_deinit(session); gnutls_certificate_free_credentials(clientx509cred); gnutls_global_deinit(); } static void terminate(void) { int status = 0; kill(child, SIGTERM); wait(&status); exit(1); } static void server(int fd) { int ret; gnutls_session_t session; gnutls_certificate_credentials_t serverx509cred; /* this must be called once in the program */ global_init(); if (debug) { gnutls_global_set_log_function(server_log_func); gnutls_global_set_log_level(4711); } gnutls_certificate_allocate_credentials(&serverx509cred); gnutls_init(&session, GNUTLS_SERVER); /* avoid calling all the priority functions, since the defaults * are adequate. */ ret = gnutls_priority_set_direct(session, "NORMAL:-KX-ALL:+RSA:%NO_SESSION_HASH", NULL); if (ret < 0) { fail("server: priority set failed (%s)\n\n", gnutls_strerror(ret)); terminate(); } ret = gnutls_session_set_premaster(session, GNUTLS_SERVER, GNUTLS_TLS1_0, GNUTLS_KX_RSA, GNUTLS_CIPHER_AES_128_CBC, GNUTLS_MAC_SHA1, GNUTLS_COMP_NULL, &master, &sess_id); if (ret < 0) { fail("server: gnutls_session_set_premaster failed: %s\n", gnutls_strerror(ret)); exit(1); } gnutls_certificate_set_x509_key_mem(serverx509cred, &server_cert, &server_key, GNUTLS_X509_FMT_PEM); gnutls_credentials_set(session, GNUTLS_CRD_CERTIFICATE, serverx509cred); gnutls_handshake_set_random(session, &hsrnd); gnutls_transport_set_int(session, fd); do { ret = gnutls_handshake(session); } while (ret < 0 && gnutls_error_is_fatal(ret) == 0); if (ret < 0) { close(fd); gnutls_deinit(session); fail("server: Handshake has failed (%s)\n\n", gnutls_strerror(ret)); terminate(); } if (debug) success("server: Handshake was completed\n"); if (debug) success("server: TLS version is: %s\n", gnutls_protocol_get_name (gnutls_protocol_get_version(session))); /* do not wait for the peer to close the connection. */ gnutls_bye(session, GNUTLS_SHUT_WR); close(fd); gnutls_deinit(session); gnutls_certificate_free_credentials(serverx509cred); gnutls_global_deinit(); if (debug) success("server: finished\n"); } static void start(void) { int fd[2]; int ret; signal(SIGPIPE, SIG_IGN); ret = socketpair(AF_UNIX, SOCK_STREAM, 0, fd); if (ret < 0) { perror("socketpair"); exit(1); } child = fork(); if (child < 0) { perror("fork"); fail("fork"); exit(1); } if (child) { int status; /* parent */ server(fd[0]); wait(&status); check_wait_status(status); } else { close(fd[0]); client(fd[1]); exit(0); } } void doit(void) { start(); } #endif /* _WIN32 */
the_stack_data/237642484.c
#include <stdio.h> #include <math.h> #define PI 3.14159265358979323846 int main() { double r,n,a,b,area; while(scanf("%lf %lf",&r,&n)!=EOF) { b=360.0/n; a=sin(b*PI/180.0); area=(((r*r)*n)*a)/2; printf("%.3lf\n",area); } return 0; }
the_stack_data/68286.c
#include<stdio.h> #define N 50 //定义学生类 typedef struct { int ch; int math; int en; }Student; int main(int argc, char const *argv[]) { Student master[2]; for (size_t i = 0; i < 2; i++) { master[i].ch=0,master[i].en=0,master[i].math=0; } Student arr[N]; //定义学生数组 int n=0; //学生数量 //输入人数 scanf("%d",&n); //输入学生成绩信息 for (size_t i = 0; i < n; i++)//学生遍历 { scanf("%d %d %d",&arr[i].ch,&arr[i].math,&arr[i].en); getchar(); } //求和 for (size_t i = 0; i < n; i++) { master[0].ch+=arr[i].ch; master[0].math+=arr[i].math; master[0].en+=arr[i].en; } //求平均值 master[1].ch+=(master[0].ch/n); master[1].math+=(master[0].math/n); master[1].en+=(master[0].en/n); //输出 for (size_t i = 0; i < 2; i++) { printf("%d %d %d",master[i].ch,master[i].math,master[i].en); printf("\n"); } return 0; }
the_stack_data/147071.c
#include <stdio.h> int CelsiusFahrenheit(int t) { int tempF; tempF = (t * 9 / 5) + 32; return tempF; } int FahrenheitCelsius(int t) { return (t - 32) * 5 / 9; } int main(void) { int temp, op; printf("Qual temperatura a converter:\n"); scanf("%d", &temp); printf("1. Celsius para Fahrenheit\n"); printf("2. Fahrenheit para Celsius\n"); scanf("%d", &op); if (op == 1 || op == 2) { if (op == 1) { printf("Temperatura em Fahrenheit %d\n", CelsiusFahrenheit(temp)); } else if (op == 2) { printf("Temperatura em Celsius %d\n", FahrenheitCelsius(temp)); } } else { printf("[%d] Opção invalida-Escolha 1 ou 2\n", op); } return 0; }
the_stack_data/160737.c
// Visual Studio needs to be 2013 onwards #if defined(_MSC_VER) && !defined(__CYGWIN__) && _MSC_VER < 1800 // see http://www.johndcook.com/math_h.html int main() { } #else #include <assert.h> #include <fenv.h> int main() { #ifdef FE_DOWNWARD fesetround(FE_DOWNWARD); assert(fegetround()==FE_DOWNWARD); #endif #ifdef FE_TONEAREST fesetround(FE_TONEAREST); assert(fegetround()==FE_TONEAREST); #endif #ifdef FE_TOWARDZERO fesetround(FE_TOWARDZERO); assert(fegetround()==FE_TOWARDZERO); #endif #ifdef FE_UPWARD fesetround(FE_UPWARD); assert(fegetround()==FE_UPWARD); #endif } #endif
the_stack_data/1138028.c
#include <stdio.h> #include <sys/stat.h> #include <sys/types.h> #include <fcntl.h> #include <unistd.h> #include <string.h> typedef struct { unsigned int key; char fname[16]; char lname[16]; unsigned int age; } person_rec; int open_record_update(char *filename) { int fd; fd = open(filename, O_CREAT | O_RDWR , 0644); //see: man 2 open if(fd == -1) perror("open_record"); return fd; } int open_record(char *filename) { int fd; fd = open(filename, O_CREAT | O_RDWR | O_APPEND, 0644); //see: man 2 open if(fd == -1) perror("open_record"); return fd; } void close_record(int fd) { close(fd); } int insert_record(int fd, person_rec *rec) { int ret; ret = write(fd, rec, sizeof(person_rec)); //see: man 2 write return ret; } int get_record(int fd, person_rec *rec, int key) { int ret; while( (ret = read(fd, rec, sizeof(person_rec))) != -1) //see: man 2 read { if(ret==0) { memset(rec, 0, sizeof(person_rec)); break; return ret; } else if (key == rec->key) return ret; } memset(rec, 0, sizeof(person_rec)); return ret; } int delete_record(int fd, int key) { int ret; person_rec rec; off_t pos; pos = lseek(fd, 0, SEEK_SET); //see: man lseek while( (ret = read(fd, &rec, sizeof(person_rec))) != -1) { if(ret==0) { return ret; } else if (key == rec.key) { lseek(fd, pos, SEEK_SET); rec.key = 0; ret = write(fd, &rec, sizeof(person_rec)); return ret; } pos = lseek(fd, 0, SEEK_CUR); } return ret; } int main(int argc, char *argv[]) { int fd; person_rec rec; //Open a new record //fd = open_record("data1"); if(argc > 1) { /* insert data */ if(argc > 5 && !strcmp(argv[1], "insert")) { fd = open_record("data1"); rec.key = atoi(argv[2]); strcpy(rec.fname, argv[3]); strcpy(rec.lname, argv[4]); rec.age = atoi(argv[5]); insert_record(fd, &rec); } /* delete */ if(argc > 2 && !strcmp(argv[1], "delete")) { fd = open_record_update("data1"); delete_record(fd, atoi(argv[2])); } /* print */ if(argc > 2 && !strcmp(argv[1], "print")) { fd = open_record("data1"); get_record(fd, &rec, atoi(argv[2])); printf("key = %d\n", rec.key); printf("First = %s\n", rec.fname); printf("Last = %s\n", rec.lname); printf("Age = %d\n", rec.age); } } close_record(fd); return 0; }
the_stack_data/89448.c
/* * timeout - run a command for a limited amount of time * * Uses POSIX process groups so that we do the right thing when the controlled * command forks off child processes. * * Author: Wietse Venema; Adapted by Arthur Chargueraud and Mike Rainey */ /* System libraries. */ #include <sys/types.h> #include <signal.h> #include <stdlib.h> #include <unistd.h> #include <stdio.h> extern int optind; /* Application-specific. */ #define perrorexit(s) { perror(s); exit(1); } static int kill_signal = SIGKILL; static char *progname; static void usage() { fprintf(stderr, "usage: %s [-signal] time command...\n", progname); exit(1); } static int killed = 0; static void terminate(int sig) { kill(0, kill_signal); killed = 1; } int main(int argc, char** argv) { int time_to_run; pid_t pid; pid_t child_pid; int status; progname = argv[0]; /* * Parse JCL. */ while (--argc && *++argv && **argv == '-') if ((kill_signal = atoi(*argv + 1)) <= 0) usage(); if (argc < 2 || (time_to_run = atoi(argv[0])) <= 0) usage(); /* * Run the command and its watchdog in a separate process group so that * both can be killed of with one signal. */ setsid(); switch (child_pid = fork()) { case -1: /* error */ perrorexit("timeout: fork"); case 00: /* run controlled command */ execvp(argv[1], argv + 1); perrorexit(argv[1]); default: /* become watchdog */ (void) signal(SIGALRM, terminate); alarm(time_to_run); while ((pid = wait(&status)) != -1 && pid != child_pid) /* void */ ; printf("killed %d\n", (killed) ? 1 : 0); return (pid == child_pid ? status : -1); } }
the_stack_data/20450074.c
/* The z13 stpcpy implementation plays some alignment tricks for good performance. This test tries to make sure it works correctly and does not access bytes beyond the source and destination strings. */ /* { dg-do run } */ /* { dg-require-effective-target s390_vx } */ /* { dg-options "-O3 -mzarch -march=z13" } */ #include <stdio.h> #include <sys/mman.h> #define PAGE_SIZE 4096 struct { char unused[PAGE_SIZE - 32]; char m32[15]; /* page bndry - 32 */ char m17[1]; char m16[1]; char m15[14]; char m1[1]; char next_page[PAGE_SIZE]; } s, d __attribute__((aligned(PAGE_SIZE))); char *__attribute__((noinline)) my_stpcpy(char *dest, const char *src) { return __builtin_stpcpy (dest, src); } void __attribute__ ((noinline)) check (char *dest, char *src, size_t len) { char *result; result = my_stpcpy (dest, src); if (result != dest + len) __builtin_abort (); if (__builtin_memcmp (src, dest, len) != 0) __builtin_abort (); } int main () { char *src[5] = { s.m32, s.m17, s.m16, s.m15, s.m1 }; char *dst[5] = { d.m32, d.m17, d.m16, d.m15, d.m1 }; int len[8] = { 33, 32, 31, 17, 16, 15, 1, 0 }; int i, j, k; char backup; for (i = 0; i < sizeof (s); i++) ((char*)&s)[i] = i % 26 + 97; for (i = 0; i < 5; i++) for (j = 0; j < 5; j++) for (k = 0; k < 8; k++) { backup = src[j][len[k]]; src[j][len[k]] = 0; __builtin_memset (&d, 0, sizeof (d)); check (dst[i], src[j], len[k]); src[j][len[k]] = backup; } /* Make all source strings end before the page boundary. */ backup = s.m1[0]; s.m1[0] = 0; if (mprotect (&s.next_page, PAGE_SIZE, PROT_NONE) == -1) perror ("mprotect src"); for (i = 0; i < 5; i++) for (j = 0; j < 5; j++) check (dst[i], src[j], PAGE_SIZE - ((unsigned long)src[j] & ((1UL << 12) - 1)) - 1); if (mprotect (&s.next_page, PAGE_SIZE, PROT_READ | PROT_WRITE) == -1) perror ("mprotect src"); s.m1[0] = backup; if (mprotect (&d.next_page, PAGE_SIZE, PROT_NONE) == -1) perror ("mprotect dst"); for (i = 0; i < 5; i++) for (j = 0; j < 5; j++) { int len = PAGE_SIZE - ((unsigned long)dst[i] & ((1UL << 12) - 1)) - 1; char backup = src[j][len]; src[j][len] = 0; __builtin_memset (&d, 0, (unsigned long)&d.next_page - (unsigned long)&d); check (dst[i], src[j], len); src[j][len] = backup; } return 0; }
the_stack_data/787687.c
#include <sys/types.h> #include <sys/ipc.h> #include <sys/shm.h> #include <sys/sem.h> #include <stdio.h> #include <stdlib.h> #include <string.h> #define SHMSIZE 1024 #define SHMKEY (key_t)0111 #define SEMKEY (key_t)0111 int CopyRead(); int CopyWrite(); union semun { int val; struct semid_ds *buf; unsigned short int *array; }; static int semid; int main(int argc, char **argv) { FILE* fp; union semun sem_union; struct sembuf mysem_open = {0, -1, SEM_UNDO}; struct sembuf mysem_close = {0, 1, SEM_UNDO}; int sem_num = 0; semid = semget((key_t)234, sem_num, 0660|IPC_CREAT); if (semid == -1) { perror("semget error "); exit(0); } sem_union.val = 1; if ( -1 == semctl( semid, 0, SETVAL, sem_union)) { printf( "semctl()-SETVAL 실행 오류\n"); return -1; } if(semop(semid, &mysem_open, 1) == -1) { perror("semop error "); exit(0); } if ((fp = fopen("a.txt", "r+")) == NULL) { perror("fopen error "); exit(0); } CopyRead(); rewind(fp); sleep(3); CopyWrite(); fclose(fp); semop(semid, &mysem_close, 1); return 1; } int CopyRead() { //parents process (file read) int shmid, len; void *shmaddr; FILE *fp = fopen("a.txt", "r"); int size = strlen((char *)shmaddr); printf("Read Start\n"); if ((shmid = shmget(SHMKEY, SHMSIZE,IPC_CREAT|0666)) == -1) { perror ("shmget failed"); exit (1); } if ((shmaddr = shmat(shmid, NULL, 0)) == (void *)-1) { perror ("shmat failed"); exit (1); } fgets((char *)shmaddr, size, fp); if (shmdt(shmaddr) == -1) { perror ("shmdt failed"); exit (1); } fclose(fp); } int CopyWrite() { //child process (file write) int shmid, len; void *shmaddr; FILE *fp = fopen("b.txt", "w"); if ((shmid = shmget(SHMKEY, SHMSIZE,IPC_CREAT|0666)) == -1) { perror ("shmget failed"); exit (1); } if ((shmaddr=shmat(shmid, NULL, 0)) == (void *)-1) { perror ("shmat failed"); exit (1); } fputs((char *)shmaddr, fp); printf("Copy Success!\n"); if (shmdt(shmaddr) == -1) { perror ("shmdt failed"); exit (1); } if (shmctl(shmid, IPC_RMID, 0) == -1) { perror ("shmctl failed"); exit (1); } fclose(fp); }
the_stack_data/9603.c
/** ****************************************************************************** * @file stm32f0xx_ll_adc.c * @author MCD Application Team * @version V1.5.0 * @date 04-November-2016 * @brief ADC LL module driver ****************************************************************************** * @attention * * <h2><center>&copy; COPYRIGHT(c) 2016 STMicroelectronics</center></h2> * * Redistribution and use in source and binary forms, with or without modification, * are permitted provided that the following conditions are met: * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright notice, * this list of conditions and the following disclaimer in the documentation * and/or other materials provided with the distribution. * 3. Neither the name of STMicroelectronics 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" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER 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. * ****************************************************************************** */ #if defined(USE_FULL_LL_DRIVER) /* Includes ------------------------------------------------------------------*/ #include "stm32f0xx_ll_adc.h" #include "stm32f0xx_ll_bus.h" #ifdef USE_FULL_ASSERT #include "stm32_assert.h" #else #define assert_param(expr) ((void)0U) #endif /** @addtogroup STM32F0xx_LL_Driver * @{ */ #if defined (ADC1) /** @addtogroup ADC_LL ADC * @{ */ /* Private types -------------------------------------------------------------*/ /* Private variables ---------------------------------------------------------*/ /* Private constants ---------------------------------------------------------*/ /** @addtogroup ADC_LL_Private_Constants * @{ */ /* Definitions of ADC hardware constraints delays */ /* Note: Only ADC IP HW delays are defined in ADC LL driver driver, */ /* not timeout values: */ /* Timeout values for ADC operations are dependent to device clock */ /* configuration (system clock versus ADC clock), */ /* and therefore must be defined in user application. */ /* Refer to @ref ADC_LL_EC_HW_DELAYS for description of ADC timeout */ /* values definition. */ /* Note: ADC timeout values are defined here in CPU cycles to be independent */ /* of device clock setting. */ /* In user application, ADC timeout values should be defined with */ /* temporal values, in function of device clock settings. */ /* Highest ratio CPU clock frequency vs ADC clock frequency: */ /* - ADC clock from synchronous clock with AHB prescaler 512, */ /* APB prescaler 16, ADC prescaler 4. */ /* - ADC clock from asynchronous clock (HSI) with prescaler 1, */ /* with highest ratio CPU clock frequency vs HSI clock frequency: */ /* CPU clock frequency max 48MHz, HSI frequency 14MHz: ratio 4. */ /* Unit: CPU cycles. */ #define ADC_CLOCK_RATIO_VS_CPU_HIGHEST ((uint32_t) 512U * 16U * 4U) #define ADC_TIMEOUT_DISABLE_CPU_CYCLES (ADC_CLOCK_RATIO_VS_CPU_HIGHEST * 1U) #define ADC_TIMEOUT_STOP_CONVERSION_CPU_CYCLES (ADC_CLOCK_RATIO_VS_CPU_HIGHEST * 1U) /** * @} */ /* Private macros ------------------------------------------------------------*/ /** @addtogroup ADC_LL_Private_Macros * @{ */ /* Check of parameters for configuration of ADC hierarchical scope: */ /* common to several ADC instances. */ /* Check of parameters for configuration of ADC hierarchical scope: */ /* ADC instance. */ #define IS_LL_ADC_CLOCK(__CLOCK__) \ ( ((__CLOCK__) == LL_ADC_CLOCK_SYNC_PCLK_DIV4) \ || ((__CLOCK__) == LL_ADC_CLOCK_SYNC_PCLK_DIV2) \ || ((__CLOCK__) == LL_ADC_CLOCK_ASYNC) \ ) #define IS_LL_ADC_RESOLUTION(__RESOLUTION__) \ ( ((__RESOLUTION__) == LL_ADC_RESOLUTION_12B) \ || ((__RESOLUTION__) == LL_ADC_RESOLUTION_10B) \ || ((__RESOLUTION__) == LL_ADC_RESOLUTION_8B) \ || ((__RESOLUTION__) == LL_ADC_RESOLUTION_6B) \ ) #define IS_LL_ADC_DATA_ALIGN(__DATA_ALIGN__) \ ( ((__DATA_ALIGN__) == LL_ADC_DATA_ALIGN_RIGHT) \ || ((__DATA_ALIGN__) == LL_ADC_DATA_ALIGN_LEFT) \ ) #define IS_LL_ADC_LOW_POWER(__LOW_POWER__) \ ( ((__LOW_POWER__) == LL_ADC_LP_MODE_NONE) \ || ((__LOW_POWER__) == LL_ADC_LP_AUTOWAIT) \ || ((__LOW_POWER__) == LL_ADC_LP_AUTOPOWEROFF) \ || ((__LOW_POWER__) == LL_ADC_LP_AUTOWAIT_AUTOPOWEROFF) \ ) /* Check of parameters for configuration of ADC hierarchical scope: */ /* ADC group regular */ #define IS_LL_ADC_REG_TRIG_SOURCE(__REG_TRIG_SOURCE__) \ ( ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_SOFTWARE) \ || ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_EXT_TIM1_TRGO) \ || ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_EXT_TIM1_CH4) \ || ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_EXT_TIM2_TRGO) \ || ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_EXT_TIM3_TRGO) \ || ((__REG_TRIG_SOURCE__) == LL_ADC_REG_TRIG_EXT_TIM15_TRGO) \ ) #define IS_LL_ADC_REG_CONTINUOUS_MODE(__REG_CONTINUOUS_MODE__) \ ( ((__REG_CONTINUOUS_MODE__) == LL_ADC_REG_CONV_SINGLE) \ || ((__REG_CONTINUOUS_MODE__) == LL_ADC_REG_CONV_CONTINUOUS) \ ) #define IS_LL_ADC_REG_DMA_TRANSFER(__REG_DMA_TRANSFER__) \ ( ((__REG_DMA_TRANSFER__) == LL_ADC_REG_DMA_TRANSFER_NONE) \ || ((__REG_DMA_TRANSFER__) == LL_ADC_REG_DMA_TRANSFER_LIMITED) \ || ((__REG_DMA_TRANSFER__) == LL_ADC_REG_DMA_TRANSFER_UNLIMITED) \ ) #define IS_LL_ADC_REG_OVR_DATA_BEHAVIOR(__REG_OVR_DATA_BEHAVIOR__) \ ( ((__REG_OVR_DATA_BEHAVIOR__) == LL_ADC_REG_OVR_DATA_PRESERVED) \ || ((__REG_OVR_DATA_BEHAVIOR__) == LL_ADC_REG_OVR_DATA_OVERWRITTEN) \ ) #define IS_LL_ADC_REG_SEQ_SCAN_DISCONT_MODE(__REG_SEQ_DISCONT_MODE__) \ ( ((__REG_SEQ_DISCONT_MODE__) == LL_ADC_REG_SEQ_DISCONT_DISABLE) \ || ((__REG_SEQ_DISCONT_MODE__) == LL_ADC_REG_SEQ_DISCONT_1RANK) \ ) /** * @} */ /* Private function prototypes -----------------------------------------------*/ /* Exported functions --------------------------------------------------------*/ /** @addtogroup ADC_LL_Exported_Functions * @{ */ /** @addtogroup ADC_LL_EF_Init * @{ */ /** * @brief De-initialize registers of all ADC instances belonging to * the same ADC common instance to their default reset values. * @note This function is performing a hard reset, using high level * clock source RCC ADC reset. * @param ADCxy_COMMON ADC common instance * (can be set directly from CMSIS definition or by using helper macro @ref __LL_ADC_COMMON_INSTANCE() ) * @retval An ErrorStatus enumeration value: * - SUCCESS: ADC common registers are de-initialized * - ERROR: not applicable */ ErrorStatus LL_ADC_CommonDeInit(ADC_Common_TypeDef *ADCxy_COMMON) { /* Check the parameters */ assert_param(IS_ADC_COMMON_INSTANCE(ADCxy_COMMON)); /* Force reset of ADC clock (core clock) */ LL_APB1_GRP2_ForceReset(LL_APB1_GRP2_PERIPH_ADC1); /* Release reset of ADC clock (core clock) */ LL_APB1_GRP2_ReleaseReset(LL_APB1_GRP2_PERIPH_ADC1); return SUCCESS; } /** * @brief De-initialize registers of the selected ADC instance * to their default reset values. * @note To reset all ADC instances quickly (perform a hard reset), * use function @ref LL_ADC_CommonDeInit(). * @note If this functions returns error status, it means that ADC instance * is in an unknown state. * In this case, perform a hard reset using high level * clock source RCC ADC reset. * Refer to function @ref LL_ADC_CommonDeInit(). * @param ADCx ADC instance * @retval An ErrorStatus enumeration value: * - SUCCESS: ADC registers are de-initialized * - ERROR: ADC registers are not de-initialized */ ErrorStatus LL_ADC_DeInit(ADC_TypeDef *ADCx) { ErrorStatus status = SUCCESS; __IO uint32_t timeout_cpu_cycles = 0U; /* Check the parameters */ assert_param(IS_ADC_ALL_INSTANCE(ADCx)); /* Disable ADC instance if not already disabled. */ if(LL_ADC_IsEnabled(ADCx) == 1U) { /* Set ADC group regular trigger source to SW start to ensure to not */ /* have an external trigger event occurring during the conversion stop */ /* ADC disable process. */ LL_ADC_REG_SetTriggerSource(ADCx, LL_ADC_REG_TRIG_SOFTWARE); /* Stop potential ADC conversion on going on ADC group regular. */ if(LL_ADC_REG_IsConversionOngoing(ADCx) != 0U) { if(LL_ADC_REG_IsStopConversionOngoing(ADCx) == 0U) { LL_ADC_REG_StopConversion(ADCx); } } /* Wait for ADC conversions are effectively stopped */ timeout_cpu_cycles = ADC_TIMEOUT_STOP_CONVERSION_CPU_CYCLES; while (LL_ADC_REG_IsStopConversionOngoing(ADCx) == 1U) { if(timeout_cpu_cycles-- == 0U) { /* Time-out error */ status = ERROR; } } /* Disable the ADC instance */ LL_ADC_Disable(ADCx); /* Wait for ADC instance is effectively disabled */ timeout_cpu_cycles = ADC_TIMEOUT_DISABLE_CPU_CYCLES; while (LL_ADC_IsDisableOngoing(ADCx) == 1U) { if(timeout_cpu_cycles-- == 0U) { /* Time-out error */ status = ERROR; } } } /* Check whether ADC state is compliant with expected state */ if(READ_BIT(ADCx->CR, ( ADC_CR_ADSTP | ADC_CR_ADSTART | ADC_CR_ADDIS | ADC_CR_ADEN ) ) == 0U) { /* ========== Reset ADC registers ========== */ /* Reset register IER */ CLEAR_BIT(ADCx->IER, ( LL_ADC_IT_ADRDY | LL_ADC_IT_EOC | LL_ADC_IT_EOS | LL_ADC_IT_OVR | LL_ADC_IT_EOSMP | LL_ADC_IT_AWD1 ) ); /* Reset register ISR */ SET_BIT(ADCx->ISR, ( LL_ADC_FLAG_ADRDY | LL_ADC_FLAG_EOC | LL_ADC_FLAG_EOS | LL_ADC_FLAG_OVR | LL_ADC_FLAG_EOSMP | LL_ADC_FLAG_AWD1 ) ); /* Reset register CR */ /* Bits ADC_CR_ADCAL, ADC_CR_ADSTP, ADC_CR_ADSTART are in access mode */ /* "read-set": no direct reset applicable. */ /* No action on register CR */ /* Reset register CFGR1 */ CLEAR_BIT(ADCx->CFGR1, ( ADC_CFGR1_AWDCH | ADC_CFGR1_AWDEN | ADC_CFGR1_AWDSGL | ADC_CFGR1_DISCEN | ADC_CFGR1_AUTOFF | ADC_CFGR1_WAIT | ADC_CFGR1_CONT | ADC_CFGR1_OVRMOD | ADC_CFGR1_EXTEN | ADC_CFGR1_EXTSEL | ADC_CFGR1_ALIGN | ADC_CFGR1_RES | ADC_CFGR1_SCANDIR | ADC_CFGR1_DMACFG | ADC_CFGR1_DMAEN ) ); /* Reset register CFGR2 */ /* Note: Update of ADC clock mode is conditioned to ADC state disabled: */ /* already done above. */ CLEAR_BIT(ADCx->CFGR2, ADC_CFGR2_CKMODE); /* Reset register SMPR */ CLEAR_BIT(ADCx->SMPR, ADC_SMPR_SMP); /* Reset register TR */ MODIFY_REG(ADCx->TR, ADC_TR_HT | ADC_TR_LT, ADC_TR_HT); /* Reset register CHSELR */ #if defined(ADC_CCR_VBATEN) CLEAR_BIT(ADCx->CHSELR, ( ADC_CHSELR_CHSEL18 | ADC_CHSELR_CHSEL17 | ADC_CHSELR_CHSEL16 | ADC_CHSELR_CHSEL15 | ADC_CHSELR_CHSEL14 | ADC_CHSELR_CHSEL13 | ADC_CHSELR_CHSEL12 | ADC_CHSELR_CHSEL11 | ADC_CHSELR_CHSEL10 | ADC_CHSELR_CHSEL9 | ADC_CHSELR_CHSEL8 | ADC_CHSELR_CHSEL7 | ADC_CHSELR_CHSEL6 | ADC_CHSELR_CHSEL5 | ADC_CHSELR_CHSEL4 | ADC_CHSELR_CHSEL3 | ADC_CHSELR_CHSEL2 | ADC_CHSELR_CHSEL1 | ADC_CHSELR_CHSEL0 ) ); #else CLEAR_BIT(ADCx->CHSELR, ( ADC_CHSELR_CHSEL17 | ADC_CHSELR_CHSEL16 | ADC_CHSELR_CHSEL15 | ADC_CHSELR_CHSEL14 | ADC_CHSELR_CHSEL13 | ADC_CHSELR_CHSEL12 | ADC_CHSELR_CHSEL11 | ADC_CHSELR_CHSEL10 | ADC_CHSELR_CHSEL9 | ADC_CHSELR_CHSEL8 | ADC_CHSELR_CHSEL7 | ADC_CHSELR_CHSEL6 | ADC_CHSELR_CHSEL5 | ADC_CHSELR_CHSEL4 | ADC_CHSELR_CHSEL3 | ADC_CHSELR_CHSEL2 | ADC_CHSELR_CHSEL1 | ADC_CHSELR_CHSEL0 ) ); #endif /* Reset register DR */ /* bits in access mode read only, no direct reset applicable */ } else { /* ADC instance is in an unknown state */ /* Need to performing a hard reset of ADC instance, using high level */ /* clock source RCC ADC reset. */ /* Caution: On this STM32 serie, if several ADC instances are available */ /* on the selected device, RCC ADC reset will reset */ /* all ADC instances belonging to the common ADC instance. */ status = ERROR; } return status; } /** * @brief Initialize some features of ADC instance. * @note These parameters have an impact on ADC scope: ADC instance. * Refer to corresponding unitary functions into * @ref ADC_LL_EF_Configuration_ADC_Instance . * @note The setting of these parameters by function @ref LL_ADC_Init() * is conditioned to ADC state: * ADC instance must be disabled. * This condition is applied to all ADC features, for efficiency * and compatibility over all STM32 families. However, the different * features can be set under different ADC state conditions * (setting possible with ADC enabled without conversion on going, * ADC enabled with conversion on going, ...) * Each feature can be updated afterwards with a unitary function * and potentially with ADC in a different state than disabled, * refer to description of each function for setting * conditioned to ADC state. * @note After using this function, some other features must be configured * using LL unitary functions. * The minimum configuration remaining to be done is: * - Set ADC group regular sequencer: * map channel on rank corresponding to channel number. * Refer to function @ref LL_ADC_REG_SetSequencerChannels(); * - Set ADC channel sampling time * Refer to function LL_ADC_SetChannelSamplingTime(); * @param ADCx ADC instance * @param ADC_InitStruct Pointer to a @ref LL_ADC_REG_InitTypeDef structure * @retval An ErrorStatus enumeration value: * - SUCCESS: ADC registers are initialized * - ERROR: ADC registers are not initialized */ ErrorStatus LL_ADC_Init(ADC_TypeDef *ADCx, LL_ADC_InitTypeDef *ADC_InitStruct) { ErrorStatus status = SUCCESS; /* Check the parameters */ assert_param(IS_ADC_ALL_INSTANCE(ADCx)); assert_param(IS_LL_ADC_CLOCK(ADC_InitStruct->Clock)); assert_param(IS_LL_ADC_RESOLUTION(ADC_InitStruct->Resolution)); assert_param(IS_LL_ADC_DATA_ALIGN(ADC_InitStruct->DataAlignment)); assert_param(IS_LL_ADC_LOW_POWER(ADC_InitStruct->LowPowerMode)); /* Note: Hardware constraint (refer to description of this function): */ /* ADC instance must be disabled. */ if(LL_ADC_IsEnabled(ADCx) == 0U) { /* Configuration of ADC hierarchical scope: */ /* - ADC instance */ /* - Set ADC data resolution */ /* - Set ADC conversion data alignment */ /* - Set ADC low power mode */ MODIFY_REG(ADCx->CFGR1, ADC_CFGR1_RES | ADC_CFGR1_ALIGN | ADC_CFGR1_WAIT | ADC_CFGR1_AUTOFF , ADC_InitStruct->Resolution | ADC_InitStruct->DataAlignment | ADC_InitStruct->LowPowerMode ); } else { /* Initialization error: ADC instance is not disabled. */ status = ERROR; } return status; } /** * @brief Set each @ref LL_ADC_InitTypeDef field to default value. * @param ADC_InitStruct Pointer to a @ref LL_ADC_InitTypeDef structure * whose fields will be set to default values. * @retval None */ void LL_ADC_StructInit(LL_ADC_InitTypeDef *ADC_InitStruct) { /* Set ADC_InitStruct fields to default values */ /* Set fields of ADC instance */ ADC_InitStruct->Clock = LL_ADC_CLOCK_SYNC_PCLK_DIV2; ADC_InitStruct->Resolution = LL_ADC_RESOLUTION_12B; ADC_InitStruct->DataAlignment = LL_ADC_DATA_ALIGN_RIGHT; ADC_InitStruct->LowPowerMode = LL_ADC_LP_MODE_NONE; } /** * @brief Initialize some features of ADC group regular. * @note These parameters have an impact on ADC scope: ADC group regular. * Refer to corresponding unitary functions into * @ref ADC_LL_EF_Configuration_ADC_Group_Regular * (functions with prefix "REG"). * @note The setting of these parameters by function @ref LL_ADC_Init() * is conditioned to ADC state: * ADC instance must be disabled. * This condition is applied to all ADC features, for efficiency * and compatibility over all STM32 families. However, the different * features can be set under different ADC state conditions * (setting possible with ADC enabled without conversion on going, * ADC enabled with conversion on going, ...) * Each feature can be updated afterwards with a unitary function * and potentially with ADC in a different state than disabled, * refer to description of each function for setting * conditioned to ADC state. * @note After using this function, other features must be configured * using LL unitary functions. * The minimum configuration remaining to be done is: * - Set ADC group regular sequencer: * map channel on rank corresponding to channel number. * Refer to function @ref LL_ADC_REG_SetSequencerChannels(); * - Set ADC channel sampling time * Refer to function LL_ADC_SetChannelSamplingTime(); * @param ADCx ADC instance * @param ADC_REG_InitStruct Pointer to a @ref LL_ADC_REG_InitTypeDef structure * @retval An ErrorStatus enumeration value: * - SUCCESS: ADC registers are initialized * - ERROR: ADC registers are not initialized */ ErrorStatus LL_ADC_REG_Init(ADC_TypeDef *ADCx, LL_ADC_REG_InitTypeDef *ADC_REG_InitStruct) { ErrorStatus status = SUCCESS; /* Check the parameters */ assert_param(IS_ADC_ALL_INSTANCE(ADCx)); assert_param(IS_LL_ADC_REG_TRIG_SOURCE(ADC_REG_InitStruct->TriggerSource)); assert_param(IS_LL_ADC_REG_SEQ_SCAN_DISCONT_MODE(ADC_REG_InitStruct->SequencerDiscont)); assert_param(IS_LL_ADC_REG_CONTINUOUS_MODE(ADC_REG_InitStruct->ContinuousMode)); assert_param(IS_LL_ADC_REG_DMA_TRANSFER(ADC_REG_InitStruct->DMATransfer)); assert_param(IS_LL_ADC_REG_OVR_DATA_BEHAVIOR(ADC_REG_InitStruct->Overrun)); /* Note: Hardware constraint (refer to description of this function): */ /* ADC instance must be disabled. */ if(LL_ADC_IsEnabled(ADCx) == 0U) { /* Configuration of ADC hierarchical scope: */ /* - ADC group regular */ /* - Set ADC group regular trigger source */ /* - Set ADC group regular sequencer discontinuous mode */ /* - Set ADC group regular continuous mode */ /* - Set ADC group regular conversion data transfer: no transfer or */ /* transfer by DMA, and DMA requests mode */ /* - Set ADC group regular overrun behavior */ /* Note: On this STM32 serie, ADC trigger edge is set to value 0x0 by */ /* setting of trigger source to SW start. */ MODIFY_REG(ADCx->CFGR1, ADC_CFGR1_EXTSEL | ADC_CFGR1_EXTEN | ADC_CFGR1_DISCEN | ADC_CFGR1_CONT | ADC_CFGR1_DMAEN | ADC_CFGR1_DMACFG | ADC_CFGR1_OVRMOD , ADC_REG_InitStruct->TriggerSource | ADC_REG_InitStruct->SequencerDiscont | ADC_REG_InitStruct->ContinuousMode | ADC_REG_InitStruct->DMATransfer | ADC_REG_InitStruct->Overrun ); } else { /* Initialization error: ADC instance is not disabled. */ status = ERROR; } return status; } /** * @brief Set each @ref LL_ADC_REG_InitTypeDef field to default value. * @param ADC_REG_InitStruct Pointer to a @ref LL_ADC_REG_InitTypeDef structure * whose fields will be set to default values. * @retval None */ void LL_ADC_REG_StructInit(LL_ADC_REG_InitTypeDef *ADC_REG_InitStruct) { /* Set ADC_REG_InitStruct fields to default values */ /* Set fields of ADC group regular */ /* Note: On this STM32 serie, ADC trigger edge is set to value 0x0 by */ /* setting of trigger source to SW start. */ ADC_REG_InitStruct->TriggerSource = LL_ADC_REG_TRIG_SOFTWARE; ADC_REG_InitStruct->SequencerDiscont = LL_ADC_REG_SEQ_DISCONT_DISABLE; ADC_REG_InitStruct->ContinuousMode = LL_ADC_REG_CONV_SINGLE; ADC_REG_InitStruct->DMATransfer = LL_ADC_REG_DMA_TRANSFER_NONE; ADC_REG_InitStruct->Overrun = LL_ADC_REG_OVR_DATA_OVERWRITTEN; } /** * @} */ /** * @} */ /** * @} */ #endif /* ADC1 */ /** * @} */ #endif /* USE_FULL_LL_DRIVER */ /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
the_stack_data/51704.c
#include <stdio.h> int main() { int l,w,h,n,i; scanf("%d", &n); for(i=1; i<=n; i++) { scanf("%d %d %d", &l,&w,&h); if(l>20 || w>20 || h>20) { printf("Case %d: bad\n", i); } else { printf("Case %d: good\n", i); } } return 0; }
the_stack_data/179832107.c
// // ITP1-10-C.c // // // Created by n_knuu on 2014/03/18. // // #include <stdio.h> #include <math.h> int main(void) { double x1,y1,x2,y2; scanf("%lf %lf %lf %lf\n",&x1,&y1,&x2,&y2); printf("%.8lf\n",sqrt((x1-x2)*(x1-x2)+(y1-y2)*(y1-y2))); return 0; }
the_stack_data/76042.c
/**************************************************************************** **************************************************************************** * * * Copyright (C) 2018 Genome Research Ltd. * * * * Author: Zemin Ning ([email protected]) * * * * This file is part of Scaff10X pipeline. * * * * Scaff10X is a 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 <math.h> #include <values.h> #include <stdio.h> #include <netinet/in.h> #include <stdlib.h> #include <dirent.h> #include <string.h> #include <ctype.h> #define PADCHAR '-' #define Max_N_NameBase 60 static char **R_Name; static int *hit_rddex,*hit_score,*hit_rcdex,*hit_locus1,*superlength,*hit_matlocu1,*hit_matlocu2,*hit_matindex; static int *ctg_length,*hit_index,*hit_masks,*hit_linkdex1,*hit_linkdex2;; static int *scf_offset,*scf_length,*ctg_index,*ctg_scaffs,*ctg_offset,*ctg_mscore; static int *scf_index,*ctg_gaplen,*ctg_scaffs,*ctg_rcdex,*ctg_offset,*ctg_mscore; /* SSAS default parameters */ static int IMOD=0; static int nContig=0; static int file_flag = 1; static int min_len = 100000; static int max_ctg = 1000000; static int Gap_len = 200; static int read_len = 150; static int n_depth = 60; static float m_score = 400.0; static int i_getindex = 2; int main(int argc, char **argv) { FILE *namef,*namef2; int i,j,k,nSeq,args,idt,rcdex; int n_contig,n_reads,nseq,iscaf1,idd1,offset1; int stopflag; char *st,*ed; char line[2000]={0},tempc1[60],rdname[60]; char **cmatrix(long nrl,long nrh,long ncl,long nch); if(argc < 2) { printf("Usage: %s <Input_10X-alignment> <input_scaff_agp> <Output_10X-alignment>\n",argv[0]); exit(1); } nSeq=0; args=1; for(i=1;i<argc;i++) { if(!strcmp(argv[i],"-mod")) { sscanf(argv[++i],"%d",&IMOD); args=args+2; } else if(!strcmp(argv[i],"-depth")) { sscanf(argv[++i],"%d",&n_depth); args=args+2; } else if(!strcmp(argv[i],"-len")) { sscanf(argv[++i],"%d",&Gap_len); args=args+2; } else if(!strcmp(argv[i],"-score")) { sscanf(argv[++i],"%f",&m_score); args=args+2; } else if(!strcmp(argv[i],"-index")) { sscanf(argv[++i],"%d",&i_getindex); args=args+2; } else if(!strcmp(argv[i],"-file")) { sscanf(argv[++i],"%d",&file_flag); args=args+2; } } fflush(stdout); if(system("ps aux | grep scaff10X_pmatrix; date") == -1) { // printf("System command error:\n); } nseq=0; if((namef = fopen(argv[args],"r")) == NULL) { printf("ERROR main:: args \n"); exit(1); } while(!feof(namef)) { if(fgets(line,2000,namef) == NULL) { // printf("fgets command error:\n); } if(feof(namef)) break; nseq++; } fclose(namef); n_contig=0; if((namef = fopen(argv[args+1],"r")) == NULL) { printf("ERROR main:: args \n"); exit(1); } while(!feof(namef)) { if(fgets(line,2000,namef) == NULL) { // printf("fgets command error:\n); } if(feof(namef)) break; n_contig++; } fclose(namef); if((hit_score = (int *)calloc(nseq,sizeof(int))) == NULL) { printf("fmate: calloc - hit_score\n"); exit(1); } if((hit_locus1 = (int *)calloc(nseq,sizeof(int))) == NULL) { printf("fmate: calloc - hit_locus1\n"); exit(1); } if((superlength = (int *)calloc(nseq,sizeof(int))) == NULL) { printf("fmate: calloc - superlength\n"); exit(1); } if((hit_index = (int *)calloc(nseq,sizeof(int))) == NULL) { printf("fmate: calloc - hit_index\n"); exit(1); } nSeq=nseq; R_Name=cmatrix(0,nseq+10,0,Max_N_NameBase); printf("reads: %d %s\n",nseq,argv[args]); if((namef = fopen(argv[args],"r")) == NULL) { printf("ERROR main:: reads group file \n"); exit(1); } /* read the alignment files */ i=0; max_ctg = 0; while(fscanf(namef,"%s %s %d %d %d",R_Name[i],rdname,&hit_locus1[i],&hit_score[i],&superlength[i])!=EOF) { st = rdname; ed = strrchr(rdname,'_'); idt = atoi(ed+1); hit_index[i] = idt; i++; } fclose(namef); n_reads = i; printf("reads: %d %d %s\n",nseq,n_reads,argv[args]); if((ctg_index = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_index\n"); exit(1); } if((scf_index = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - scf_index\n"); exit(1); } if((scf_length = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - scf_index\n"); exit(1); } if((ctg_offset = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_offset\n"); exit(1); } if((ctg_length = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_offset\n"); exit(1); } if((ctg_gaplen = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_gaplen\n"); exit(1); } if((ctg_rcdex = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_rcdex\n"); exit(1); } if((ctg_mscore = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_mscore\n"); exit(1); } if((ctg_scaffs = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_scaffs\n"); exit(1); } if((scf_offset = (int *)calloc(n_contig,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_scaffs\n"); exit(1); } if((namef = fopen(argv[args+1],"r")) == NULL) { printf("ERROR main:: reads group file \n"); exit(1); } /* read the alignment files */ i=0; while(fscanf(namef,"%s %d %d %d %d %d %d %s",rdname,&ctg_index[i],&ctg_length[i],&ctg_offset[i],&ctg_gaplen[i],&rcdex,&ctg_mscore[i],tempc1)!=EOF) { st = rdname; ed = strrchr(rdname,'_'); idt = atoi(ed+1); scf_index[ctg_index[i]] = idt; scf_length[idt] = scf_length[idt]+ctg_length[i]+ctg_gaplen[i]; scf_offset[ctg_index[i]] = ctg_offset[i]; ctg_scaffs[ctg_index[i]] = idt; ctg_rcdex[ctg_index[i]] = rcdex; i++; } fclose(namef); nseq=0; if((namef = fopen(argv[args+2],"w")) == NULL) { printf("ERROR main:: args \n"); exit(1); } for(i=0;i<(n_reads-1);i++) { stopflag=0; j=i+1; while((j<n_reads)&&(stopflag==0)) { if(strcmp(R_Name[i],R_Name[j])==0) { j++; } else stopflag=1; } if((j-i)>=5) { for(k=i;k<j;k++) { int iscaf = scf_index[hit_index[k]]; int offset = 0; int idd = hit_index[k]; if(ctg_rcdex[idd] == 0) offset = hit_locus1[k]+scf_offset[idd]; else offset = superlength[k] - hit_locus1[k]+scf_offset[idd]-read_len; fprintf(namef,"%s tarseq_%d %d %d %d\n",R_Name[k],iscaf,offset,hit_score[k],scf_length[iscaf]-Gap_len); // printf("%s tarseq_%d %d %d %d\n",R_Name[k],iscaf,offset,hit_score[k],scf_length[iscaf]-Gap_len); } // if((scf_length[iscaf1]-Gap_len) < 0) // printf("%s tarseq_%d %d %d %d %d %d %d %d\n",R_Name[i+1],iscaf1,offset1,ctg_rcdex[idd],ctg_rcdex[idd1],scf_length[iscaf1]-Gap_len,scf_length[iscaf1],hit_locus1[i],scf_offset[idd]); } else { // printf("www: %s %d %d\n",R_Name[i],hit_read2[i],superlength[i]); } i=j-1; } fclose(namef); printf("Job finished for %d reads!\n",n_reads); return EXIT_SUCCESS; } /* end of the main */ /* subroutine to sort out read pairs */ /* =============================== */ void PCRdup_Process(char **argv,int args,int nSeq,int offset1,int offset2) /* =============================== */ { int i,j,k,m,n,n_scaff,n_blocks; int BAR,stopflag,nstep,base,num_steps; float rate; int *heap_list1,*heap_list2,*heap_steps,num_heap1,num_heap2; if((heap_list1 = (int *)calloc(nSeq,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_score2\n"); exit(1); } if((heap_list2 = (int *)calloc(nSeq,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_score2\n"); exit(1); } if((heap_steps = (int *)calloc(nSeq,sizeof(int))) == NULL) { printf("fmate: calloc - ctg_score2\n"); exit(1); } num_heap1 = 0; num_heap2 = 0; BAR = 5000; nstep = 20000; num_steps = 0; // for(k=0;k<nSeq;k++) // printf("kkk: %d %d %d %s\n",k,hit_matlocu1[offset1+k],hit_matlocu1[offset2+k],R_Name[hit_linkdex2[offset2+k]]); for(k=0;k<nSeq;k++) { /* search reads with an index < i */ /* search reads with an index > i */ stopflag=0; j=k+1; base = hit_matlocu1[offset1+k];; while((j<nSeq)&&(stopflag==0)) { if((hit_matlocu1[offset1+j]<(BAR+nstep))&&(hit_matlocu1[offset1+k]>=BAR)) { base = base + hit_matlocu1[offset1+j]; j++; } else stopflag=1; } if((j-k)>1) { rate = (j-k)*100; rate = rate/nSeq; // printf("frequency1:%d %d %f\n",j-k,BAR,rate); BAR = BAR+nstep; heap_list1[num_heap1] = j-k; heap_steps[num_heap1] = k; num_heap1++; num_steps++; } else if((j-k)==1) { rate = 100; rate = rate/nSeq; // printf("frequency11: %d %f\n",BAR,rate); BAR = hit_matlocu1[offset1+k]; num_steps++; } k = j-1; } for(i=0;i<num_heap1;i++) { int rat1,rat2; if(i==0) { if(heap_list1[i+1] == 0) rat1 = 10; else rat1 = 3*heap_list1[i]/heap_list1[i+1]; rat2 = rat1; } else if(i==(num_heap1-1)) { if(heap_list1[i-1] == 0) rat1 = 10; else rat1 = 3*heap_list1[i]/heap_list1[i-1]; rat2 = rat1; } else { rat1 = heap_list1[i]/heap_list1[i-1]; rat2 = heap_list1[i]/heap_list1[i+1]; } if((rat1 >= 3)&&(rat2 >=3)) { int num_dups = heap_list1[i]; int idk = heap_steps[i]; for(j=0;j<num_dups;j++) { int idd = hit_linkdex1[offset1+idk+j]; if((idd%2) == 0) { hit_masks[idd] = 1; hit_masks[idd+1] = 1; } else { hit_masks[idd] = 1; hit_masks[idd-1] = 1; } } } } // printf("hit1: %d %d\n",num_heap1,nSeq); num_heap1 = 0; num_heap2 = 0; BAR = 5000; nstep = 20000; num_steps = 0; base = 0; memset(heap_list1,0,4*nSeq); memset(heap_steps,0,4*nSeq); // for(k=0;k<nSeq;k++) // printf("kkk: %d %d %d %s\n",k,hit_matlocu1[offset1+k],hit_matlocu2[offset2+k],R_Name[hit_linkdex2[offset2+k]]); for(k=0;k<nSeq;k++) { /* search reads with an index < i */ /* search reads with an index > i */ stopflag=0; j=k+1; base = hit_matlocu2[offset2+k];; while((j<nSeq)&&(stopflag==0)) { if((hit_matlocu2[offset2+j]<(BAR+nstep))&&(hit_matlocu2[offset2+k]>=BAR)) { base = base + hit_matlocu2[offset2+j]; j++; } else stopflag=1; } if((j-k)>1) { rate = (j-k)*100; rate = rate/nSeq; // printf("frequency2:%d %d %f\n",j-k,BAR,rate); BAR = BAR+nstep; heap_list1[num_heap1] = j-k; heap_steps[num_heap1] = k; num_heap1++; num_steps++; } else if((j-k)==1) { rate = 100; rate = rate/nSeq; // printf("frequency22: %d %f\n",BAR,rate); BAR = hit_matlocu2[offset2+k]; num_steps++; } k = j-1; } for(i=0;i<num_heap1;i++) { int rat1,rat2; if(i==0) { if(heap_list1[i+1] == 0) rat1 = 10; else rat1 = 3*heap_list1[i]/heap_list1[i+1]; rat2 = rat1; } else if(i==(num_heap1-1)) { if(heap_list1[i-1] == 0) rat1 = 10; else rat1 = 3*heap_list1[i]/heap_list1[i-1]; rat2 = rat1; } else { rat1 = heap_list1[i]/heap_list1[i-1]; rat2 = heap_list1[i]/heap_list1[i+1]; } if((rat1 >= 3)&&(rat2 >=3)) { int num_dups = heap_list1[i]; int idk = heap_steps[i]; for(j=0;j<num_dups;j++) { int idd = hit_linkdex2[offset2+idk+j]; if((idd%2) == 0) { hit_masks[idd] = 1; hit_masks[idd+1] = 1; } else { hit_masks[idd] = 1; hit_masks[idd-1] = 1; } } } } // printf("hit2: %d %d\n",num_heap1,nSeq); } #define SWAP(a,b) temp=(a);(a)=b;(b)=temp; /* Subroutine to sort an array arr[0,...,n-1] into ascending order while making the corresponding reaarangement of the array brr[0,...,n-1] by the use of Quicksort (Sedgwick, R. 1978, Communications o fthe ACM, vol. 21, pp. 847-857) also see Numerical Recipes in C */ /* =============================== */ void ArraySort_Long(int n, long *arr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,NSTACK=50,istack[NSTACK]; long a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; } arr[i+1]=a; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); } i=m+1; j=ir; a=arr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); } arr[m+1]=arr[j]; arr[j]=a; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* =============================== */ void ArraySort_Int(int n, int *arr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,NSTACK=50,istack[NSTACK]; int a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; } arr[i+1]=a; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); } i=m+1; j=ir; a=arr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); } arr[m+1]=arr[j]; arr[j]=a; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* =============================== */ void ArraySort_Mix(int n, long *arr, int *brr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,b,NSTACK=50,istack[NSTACK]; long a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; } arr[i+1]=a; brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* =============================== */ void ArraySort_Int2(int n, int *arr, int *brr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,b,NSTACK=50,istack[NSTACK]; int a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; } arr[i+1]=a; brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* =============================== */ void ArraySort_float(int n, float *arr, int *brr) /* =============================== */ { int i,ir=n-1,j,k,m=0,b,jstack=0,NSTACK=50,istack[NSTACK],MIN=7; float a,temp; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; } arr[i+1]=a; brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* function to sort an array into a decreasing order: a>b>c>.... */ /* =============================== */ void ArraySort2_Int2(int n, int *arr, int *brr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,b,NSTACK=50,istack[NSTACK]; int a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; for(i=j-1;i>=m;i--) { if(arr[i]>=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; } arr[i+1]=a; brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); if(arr[m]<arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); } if(arr[m+1]<arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); } if(arr[m]<arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; for(;;) { do i++; while (arr[i]>a); do j--; while (arr[j]<a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* function to sort an array into a decreasing order: a>b>c>.... */ /* =============================== */ void ArraySort_float2(int n, float *arr, int *brr) /* =============================== */ { int i,ir=n-1,j,k,m=0,b,jstack=0,NSTACK=50,istack[NSTACK],MIN=7; float a,temp; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; for(i=j-1;i>=m;i--) { if(arr[i]>=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; } arr[i+1]=a; brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); if(arr[m]<arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); } if(arr[m+1]<arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); } if(arr[m]<arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; for(;;) { do i++; while (arr[i]>a); do j--; while (arr[j]<a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* =============================== */ void ArraySort_Mix3(int n, long *arr, int *brr, int *crr) /* =============================== */ { int i,ir=n-1,j,k,m=0,jstack=0,b,c,NSTACK=50,istack[NSTACK]; long a,temp,MIN=7; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { a=arr[j]; b=brr[j]; c=crr[j]; for(i=j-1;i>=m;i--) { if(arr[i]<=a) break; arr[i+1]=arr[i]; brr[i+1]=brr[i]; crr[i+1]=crr[i]; } arr[i+1]=a; brr[i+1]=b; crr[i+1]=c; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; SWAP(arr[k],arr[m+1]); SWAP(brr[k],brr[m+1]); SWAP(crr[k],crr[m+1]); if(arr[m]>arr[ir]) { SWAP(arr[m],arr[ir]); SWAP(brr[m],brr[ir]); SWAP(crr[m],crr[ir]); } if(arr[m+1]>arr[ir]) { SWAP(arr[m+1],arr[ir]); SWAP(brr[m+1],brr[ir]); SWAP(crr[m+1],crr[ir]); } if(arr[m]>arr[m+1]) { SWAP(arr[m],arr[m+1]); SWAP(brr[m],brr[m+1]); SWAP(crr[m],crr[m+1]); } i=m+1; j=ir; a=arr[m+1]; b=brr[m+1]; c=crr[m+1]; for(;;) { do i++; while (arr[i]<a); do j--; while (arr[j]>a); if(j<i) break; SWAP(arr[i],arr[j]); SWAP(brr[i],brr[j]); SWAP(crr[i],crr[j]); } arr[m+1]=arr[j]; arr[j]=a; brr[m+1]=brr[j]; brr[j]=b; crr[m+1]=crr[j]; crr[j]=c; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* to swap the string arrays */ /* ============================================= */ void s_swap(char **Pair_Name, int i, int j) /* ============================================= */ { char temp[Max_N_NameBase]; strcpy(temp,Pair_Name[i]); strcpy(Pair_Name[i],Pair_Name[j]); strcpy(Pair_Name[j],temp); } /* to sort the string array in order */ /* ============================================= */ void ArraySort_String(int n, char **Pair_Name, int *brr) /* ============================================= */ { int i,ir=n-1,j,k,m=0,jstack=0,b,NSTACK=50,istack[NSTACK]; int temp,MIN=7; char p[Max_N_NameBase]; for(;;) { /* Insertion sort when subarray is small enough */ if(ir-m<MIN) { for(j=m+1;j<=ir;j++) { strcpy(p,Pair_Name[j]); b=brr[j]; for(i=j-1;i>=m;i--) { if(strcmp(Pair_Name[i],p)<=0) break; strcpy(Pair_Name[i+1],Pair_Name[i]); brr[i+1]=brr[i]; } strcpy(Pair_Name[i+1],p); brr[i+1]=b; } if(!jstack) return; ir=istack[jstack--]; m=istack[jstack--]; } else { k=(m+ir)>>1; s_swap(Pair_Name,k,m+1); SWAP(brr[k],brr[m+1]); if(strcmp(Pair_Name[m],Pair_Name[ir])>0) { s_swap(Pair_Name,m,ir); SWAP(brr[m],brr[ir]); } if(strcmp(Pair_Name[m+1],Pair_Name[ir])>0) { s_swap(Pair_Name,m+1,ir); SWAP(brr[m+1],brr[ir]); } if(strcmp(Pair_Name[m],Pair_Name[m+1])>0) { s_swap(Pair_Name,m,m+1); SWAP(brr[m],brr[m+1]); } i=m+1; j=ir; strcpy(p,Pair_Name[m+1]); b=brr[m+1]; for(;;) { do i++; while (strcmp(Pair_Name[i],p)<0); do j--; while (strcmp(Pair_Name[j],p)>0); if(j<i) break; s_swap(Pair_Name,i,j); SWAP(brr[i],brr[j]); } strcpy(Pair_Name[m+1],Pair_Name[j]); strcpy(Pair_Name[j],p); brr[m+1]=brr[j]; brr[j]=b; jstack+=2; /* Push pointers to larger subarray on stack */ /* process smaller subarray immediately */ if(jstack>NSTACK) { printf("Stack error: NSTACK too small\n"); exit(0); } if(ir-i+1>=j-m) { istack[jstack]=ir; istack[jstack-1]=i; ir=j-1; } else { istack[jstack]=j-1; istack[jstack-1]=m; m=i; } } } } /* creat an int matrix with subscript ange m[nrl...nrh][ncl...nch] */ int **imatrix(long nrl,long nrh,long ncl,long nch) { long i, nrow=nrh-nrl+1,ncol=nch-ncl+1; int **m; /* allocate pointers to rows */ if((m=(int **)calloc(nrow,sizeof(int*)))==NULL) { printf("error imatrix: calloc error No. 1 \n"); return(NULL); } m+=0; m-=nrl; /* allocate rows and set pointers to them */ if((m[nrl]=(int *)calloc(nrow*ncol,sizeof(int)))==NULL) { printf("error imatrix: calloc error No. 2 \n"); return(NULL); } m[nrl]+=0; m[nrl]-=nrl; for(i=nrl+1;i<=nrh;i++) m[i]=m[i-1]+ncol; /* return pointer to array of pointers to rows */ return m; } /* creat char matrix with subscript ange cm[nrl...nrh][ncl...nch] */ char **cmatrix(long nrl,long nrh,long ncl,long nch) { long i, nrow=nrh-nrl+1,ncol=nch-ncl+1; char **cm; /* allocate pointers to rows */ if((cm=(char **)calloc(nrow,sizeof(char*)))==NULL) { printf("error cmatrix: calloc error No. 1 \n"); return(NULL); } cm+=0; cm-=nrl; /* allocate rows and set pointers to them */ if((cm[nrl]=(char *)calloc(nrow*ncol,sizeof(char)))==NULL) { printf("error cmatrix: calloc error No. 2 \n"); return(NULL); } cm[nrl]+=0; cm[nrl]-=nrl; for(i=nrl+1;i<=nrh;i++) cm[i]=cm[i-1]+ncol; /* return pointer to array of pointers to rows */ return cm; } /* creat char matrix with subscript ange fm[nrl...nrh][ncl...nch] */ float **fmatrix(long nrl,long nrh,long ncl,long nch) { long i, nrow=nrh-nrl+1,ncol=nch-ncl+1; float **fm; /* allocate pointers to rows */ if((fm=(float **)calloc(nrow,sizeof(float*)))==NULL) { printf("error fmatrix: calloc error No. 1 \n"); return(NULL); } fm+=0; fm-=nrl; /* allocate rows and set pointers to them */ if((fm[nrl]=(float *)calloc(nrow*ncol,sizeof(float)))==NULL) { printf("error fmatrix: calloc error No. 2 \n"); return(NULL); } fm[nrl]+=0; fm[nrl]-=nrl; for(i=nrl+1;i<=nrh;i++) fm[i]=fm[i-1]+ncol; /* return pointer to array of pointers to rows */ return fm; }
the_stack_data/170453369.c
/* * Oracle Linux DTrace. * Copyright (c) 2006, 2020, Oracle and/or its affiliates. All rights reserved. * Licensed under the Universal Permissive License v 1.0 as shown at * http://oss.oracle.com/licenses/upl. */ #include <unistd.h> #include <signal.h> #include <stdlib.h> #include <sys/ioctl.h> static void handle(int sig) { exit(0); } int main(int argc, char **argv) { struct sigaction sa; sa.sa_handler = handle; sigemptyset(&sa.sa_mask); sa.sa_flags = 0; sigaction(SIGINT, &sa, NULL); for (;;) ioctl(-1, -1, NULL); }
the_stack_data/220456325.c
int main() { int i; for(i=0; i<10; i++) { const int a=i; } int array[10]; for(i=0; i<10; i++) { const int a; array[i]=a; } // these should all be allowed to be different assert(array[0]==array[1]); }
the_stack_data/1188926.c
/* crypto/asn1/x_spki.c */ /* Copyright (C) 1995-1998 Eric Young ([email protected]) * All rights reserved. * * This package is an SSL implementation written * by Eric Young ([email protected]). * The implementation was written so as to conform with Netscapes SSL. * * This library is free for commercial and non-commercial use as long as * the following conditions are aheared to. The following conditions * apply to all code found in this distribution, be it the RC4, RSA, * lhash, DES, etc., code; not just the SSL code. The SSL documentation * included with this distribution is covered by the same copyright terms * except that the holder is Tim Hudson ([email protected]). * * Copyright remains Eric Young's, and as such any Copyright notices in * the code are not to be removed. * If this package is used in a product, Eric Young should be given attribution * as the author of the parts of the library used. * This can be in the form of a textual message at program startup or * in documentation (online or textual) provided with the package. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * 3. All advertising materials mentioning features or use of this software * must display the following acknowledgement: * "This product includes cryptographic software written by * Eric Young ([email protected])" * The word 'cryptographic' can be left out if the rouines from the library * being used are not cryptographic related :-). * 4. If you include any Windows specific code (or a derivative thereof) from * the apps directory (application code) you must include an acknowledgement: * "This product includes software written by Tim Hudson ([email protected])" * * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR 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. * * The licence and distribution terms for any publically available version or * derivative of this code cannot be changed. i.e. this code cannot simply be * copied and put under another distribution licence * [including the GNU Public Licence.] */ /* * This module was send to me my Pat Richards <[email protected]> who wrote it. * It is under my Copyright with his permission. */ #include "openssl/x509.h" #include "openssl/asn1t.h" ASN1_SEQUENCE(NETSCAPE_SPKAC) = { ASN1_SIMPLE(NETSCAPE_SPKAC, pubkey, X509_PUBKEY), ASN1_SIMPLE(NETSCAPE_SPKAC, challenge, ASN1_IA5STRING) } ASN1_SEQUENCE_END(NETSCAPE_SPKAC) IMPLEMENT_ASN1_FUNCTIONS(NETSCAPE_SPKAC) ASN1_SEQUENCE(NETSCAPE_SPKI) = { ASN1_SIMPLE(NETSCAPE_SPKI, spkac, NETSCAPE_SPKAC), ASN1_SIMPLE(NETSCAPE_SPKI, sig_algor, X509_ALGOR), ASN1_SIMPLE(NETSCAPE_SPKI, signature, ASN1_BIT_STRING) } ASN1_SEQUENCE_END(NETSCAPE_SPKI) IMPLEMENT_ASN1_FUNCTIONS(NETSCAPE_SPKI)
the_stack_data/96504.c
/*BEGIN_LEGAL Intel Open Source License Copyright (c) 2002-2016 Intel Corporation. All rights reserved. Redistribution and use 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 list of conditions and the following disclaimer. Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. Neither the name of the Intel Corporation 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'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE INTEL OR ITS 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. END_LEGAL */ #include <unistd.h> #include <assert.h> /* Description: * This test checks that Pin does not crash when it runs with an illegal envp array. * The expected format of the envp array is an array of strings, each of the form * "KEY=VALUE", and the array should be terminated with a NULL pointer. * We expect Pin to ignore any illegal entries (i.e. not of the above mentioned form) * and to let the application handle these errors by itself. This test checks two * forms of illegal entries: one that holds only a KEY and an entry which holds an * empty string. We expect Pin to ignore the illegal entries and the test application * to run properly despite the illegal environment. */ /* Usage: * We assume that a copying test application is passed along with "from" and "to" * parameters. We will then use execve to run the test application with an illegal * environment to see if Pin crashes or ignores the environment. */ int main(int argc, char* argv[], char* envp[]) { int res; char* badEnvp[] = { "KEY", "", NULL }; /* Make sure that we got at least the 3 arguments mentioned in the usage note.*/ assert(argc >= 4); return execve(argv[1], &argv[1], badEnvp); }
the_stack_data/154827096.c
// Exercise 5-5. // Write versions of the library functions strncpy, strncat, and strncmp, // which operate on at most the first n characters of their argument strings. // For example, strncpy(s,t,n) copies at most n characters of t to s. Full // descriptions are in Appendix B. #include <stdio.h> int main() { fprintf(stderr, "not yet done\n"); return 1; }
the_stack_data/539357.c
#include <stdlib.h> #include <stdio.h> #include <fcntl.h> #include <unistd.h> int g_pty_fd = -1;
the_stack_data/167331413.c
int main(void) { int a = 5; *(&a - (-1)); return 0; }
the_stack_data/99512.c
// Copyright (c) 2015 RV-Match Team. All Rights Reserved. // kcc-assert-error(00001) int f(){ } int main(void){ return f(); }
the_stack_data/242331971.c
#include <stdio.h> #include <stdlib.h> #define MAX_VERTICES 50 typedef struct GraphType { int n; // 정점의 개수 int adj_mat[MAX_VERTICES][MAX_VERTICES]; } GraphType; void init(GraphType* g) { int r, c; g->n = 0; for (r = 0; r < MAX_VERTICES; r++) { for (c = 0; c < MAX_VERTICES; c++) { g->adj_mat[r][c] = 0; } } } void insertVertex(GraphType* g, int v) { if (((g->n) + 1) > MAX_VERTICES) { printf("그래프: 정점의 개수 초과"); return; } g->n++; } void insertEdge(GraphType* g, int start, int end) { if (start >= g->n || end >= g->n) { printf("그래프: 정점 번호 오류"); return; } g->adj_mat[start][end] = 1; g->adj_mat[end][start] = 1; } void printAdjMat(GraphType* g) { for (int i = 0; i < g->n; i++) { for (int j = 0; j < g->n; j++) { printf("%2d ", g->adj_mat[i][j]); } printf("\n"); } } int main(void) { GraphType* g; g = (GraphType*)malloc(sizeof(GraphType)); init(g); for (int i = 0; i < 4; i++) { insertVertex(g, i); } insertEdge(g, 0, 1); insertEdge(g, 0, 2); insertEdge(g, 0, 3); insertEdge(g, 1, 2); insertEdge(g, 2, 3); printAdjMat(g); free(g); return 0; }
the_stack_data/72011741.c
#include <stdio.h> int main() { int i,j; scanf("%d",&j); for (i=0; i<=j; i++) { printf("%d\n",i); } }
the_stack_data/1261355.c
#include <stdio.h> int main() { int i=1, j; while (i <= 5) { j =1; while(j <= i) { printf("%d", j); j++; } printf("\n"); i++; } return 0; }
the_stack_data/154828080.c
/* Copyright (C) 2003-2020 Free Software Foundation, Inc. This file is part of the GNU C Library. Contributed by Jakub Jelinek <[email protected]>, 2003. 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, see <https://www.gnu.org/licenses/>. */ #include <errno.h> #include <error.h> #include <signal.h> #include <stdlib.h> #include <stdio.h> volatile int count; void sh (int sig) { ++count; } int main (void) { struct sigaction sa; sa.sa_handler = sh; sigemptyset (&sa.sa_mask); sa.sa_flags = 0; if (sigaction (SIGUSR1, &sa, NULL) < 0) { printf ("sigaction failed: %m\n"); exit (1); } if (raise (SIGUSR1) < 0) { printf ("first raise failed: %m\n"); exit (1); } if (raise (SIGUSR1) < 0) { printf ("second raise failed: %m\n"); exit (1); } if (count != 2) { printf ("signal handler not called 2 times\n"); exit (1); } exit (0); }
the_stack_data/79054.c
/* Only 2 arthimatic operations allowed on pointer address - Substraction of two pointers - Substraction of pointer from number - Addition of pointer to number None of the other operations allowed on pointers like division, multiplication, addition, modulus etc int *ptr1 = &var; int *ptr2 = &var1; ptr1+ptr2? --> NOT OK ptr1/ptr2? --> NOT OK ptr1*ptr2? --> NOT OK ptr1%ptr2? --> NOT OK Most of the arthimatic operations restricted on pointers due to address might go outside the range Increment & Decrement on the pointers allowed Increment -- > Base address + sizeof(data_type) Decrement -- > Base address - sizeof(data_type) */ #include <stdio.h> #include <stdlib.h> int main(int argc, char *argv[]) { int var=10; int *ptr = &var; printf("ptr is pointing @ 0x%x\n", ptr); ptr++; printf("ptr is pointing @ 0x%x\n", ptr); system("PAUSE"); return 0; }
the_stack_data/62639069.c
/* { dg-do run } */ /* { dg-require-effective-target sync_char_short } */ /* { dg-options "-Wsync-nand" } */ /* { dg-options "-Wsync-nand -march=i486" { target { { i?86-*-* x86_64-*-* } && ia32 } } } */ /* { dg-options "-Wsync-nand -mcpu=v9" { target sparc*-*-* } } */ extern void abort (void); int main (void) { short xLoc; short xIn, xOut, xExpect, i = 1; xLoc = xIn = ~ (1 << i); xExpect = ~ (xIn & 0x7F); xOut = __sync_nand_and_fetch (&xLoc, 0x7F); /* { dg-message "note: '__sync_nand_and_fetch' changed semantics in GCC 4.4" "" } */ if (xOut != xExpect) abort (); return 0; }
the_stack_data/6615.c
// // Kevin Nash (kjn33) // proj4d.c // 2017-04-28 // server for CANVAS // #include <stdlib.h> #include <stdio.h> #include <unistd.h> #include <time.h> #include <string.h> #include <netdb.h> #include <sys/socket.h> #include <arpa/inet.h> #define EXIT_SUCCESS 0 #define EXIT_FAILURE 1 #define REQUIRED_ARGC 2 #define MAX_CMD_ARGS 4 #define MARK_ARGS 4 #define ERAS_ARGS 3 #define PRNT_ARGS 1 #define TIME_ARGS 1 #define CMD_CHARS 4 #define BUFLEN 2048 #define BLK "\x1B[30m█\x1B[0m" #define RED "\x1B[31m█\x1B[0m" #define GRN "\x1B[32m█\x1B[0m" #define YEL "\x1B[33m█\x1B[0m" #define BLU "\x1B[34m█\x1B[0m" #define MAG "\x1B[35m█\x1B[0m" #define CYN "\x1B[36m█\x1B[0m" #define WHT "\x1B[37m█\x1B[0m" #define COLS 32 #define ROWS 20 char *pic[ROWS][COLS] = { { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, }, { BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK, BLK } }; char *testpic[ROWS][COLS] = { { BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, }, { BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, }, { BLU, BLU, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, BLU, BLU, BLU, BLU, BLU, WHT, WHT, WHT, WHT, WHT, BLU, BLU, BLU, WHT, WHT, WHT, WHT, WHT, BLU, BLU, BLU, }, { WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, BLU, BLU, WHT, WHT, WHT, WHT, BLU, BLU, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, }, { WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, }, { WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, WHT, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, WHT, WHT, WHT, WHT, WHT, }, { WHT, WHT, WHT, WHT, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, YEL, YEL, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, WHT, WHT, WHT, }, { BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, YEL, YEL, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, }, { BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, }, { WHT, WHT, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, WHT, WHT, }, { WHT, WHT, WHT, WHT, WHT, CYN, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, CYN, WHT, WHT, WHT, WHT, WHT, }, { CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, BLU, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, }, { CYN, CYN, CYN, CYN, WHT, WHT, WHT, CYN, CYN, CYN, CYN, CYN, CYN, CYN, BLU, BLU, BLU, BLU, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, }, { CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, CYN, }, { GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, }, { GRN, GRN, RED, GRN, GRN, GRN, GRN, GRN, RED, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, RED, GRN, MAG, GRN, GRN, RED, GRN, }, { GRN, GRN, GRN, GRN, GRN, GRN, MAG, GRN, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, }, { GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, GRN, RED, GRN, GRN, GRN, }, { GRN, GRN, GRN, GRN, GRN, RED, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, }, { GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, YEL, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN, GRN } }; char *rowjoin(char *row[], int lim); char *get_color(char *color) { if (0 == strcmp(color, "RED")) { return RED; } if (0 == strcmp(color, "GRN")) { return GRN; } if (0 == strcmp(color, "YEL")) { return YEL; } if (0 == strcmp(color, "BLU")) { return BLU; } if (0 == strcmp(color, "MAG")) { return MAG; } if (0 == strcmp(color, "CYN")) { return CYN; } if (0 == strcmp(color, "WHT")) { return WHT; } return NULL; } char *respond(char **args, int len) { if (MAX_CMD_ARGS < len) { return "Bad Request"; } if (0 == strcmp(args[0], "MARK") && MARK_ARGS == len) { int x = atoi(args[1]); int y = atoi(args[2]); if (0 <= x && x < COLS && 0 <= y && y < ROWS) { char *color = get_color(args[3]); if (NULL != color) { pic[x][y] = color; return "MARK OK"; } return "MARK Bad Color"; } return "MARK Bad Coordinates"; } if (0 == strcmp(args[0], "ERAS") && ERAS_ARGS == len) { int x = atoi(args[1]); int y = atoi(args[2]); if (0 <= x && x < COLS && 0 <= y && y < ROWS) { pic[x][y] = " "; return "ERAS OK"; } return "ERAS Bad Coordinates"; } if (0 == strcmp(args[0], "TIME") && TIME_ARGS == len) {; time_t t = time(NULL); char *out = asctime(localtime(&t)); out[strlen(out) - 1] = 0; return out; } return "Request Failed"; } char *rowjoin(char *row[], int lim) { char *str = NULL; size_t joinlen = 0; size_t len = 0; int i; for (i = 0; i < lim; i++) { joinlen += strlen(row[i]); if (row[i][strlen(row[i]) - 1] != '\n') { joinlen++; } } joinlen++; str = (char*)malloc(joinlen); str[0] = '\0'; for (i = 0; i < lim; i++) { strcat(str, row[i]); len = strlen(str); if (str[len - 1] != '\n') { str[len + 1] = '\0'; } } return str; } int main (int argc, char **argv) { int i; struct sockaddr_in srvaddr; struct sockaddr_in clntaddr; socklen_t addrlen = sizeof(srvaddr); int recvlen; int sd; char buffer[BUFLEN]; if (argc != REQUIRED_ARGC) { fprintf (stderr, "usage: %s port\n", argv[0]); exit(EXIT_FAILURE); } if ((sd = socket(AF_INET, SOCK_DGRAM, 0)) < 0) { perror("socket creation failed\n"); exit(EXIT_FAILURE); } memset((char *)&srvaddr, 0, sizeof(srvaddr)); srvaddr.sin_family = AF_INET; srvaddr.sin_addr.s_addr = htonl(INADDR_ANY); srvaddr.sin_port = htons((u_short)atoi(argv[1])); if (srvaddr.sin_port < 1 || 65535 < atoi(argv[1])) { fprintf(stderr, "invalid port: %d\n", atoi(argv[1])); exit(EXIT_FAILURE); } if (bind(sd, (struct sockaddr *)&srvaddr, sizeof(srvaddr)) < 0) { perror("bind failed"); exit(EXIT_FAILURE); } printf("listening on port %hu\n", ntohs(srvaddr.sin_port)); // begin listener loop for (;;) { recvlen = recvfrom(sd, buffer, BUFLEN, 0, (struct sockaddr *)&clntaddr, &addrlen); if (recvlen > 0) { buffer[recvlen] = 0; printf("client: %s\n", buffer); char *arg; char *args[MAX_CMD_ARGS]; int len = 0; arg = strtok(buffer, " "); while (NULL != arg && len < MAX_CMD_ARGS) { args[len++] = arg; arg = strtok(NULL, " "); } int prnt_request = (0 == strcmp(args[0], "PRNT")); int test_request = (0 == strcmp(args[0], "TEST")); if (prnt_request || test_request) { for (i = 0; i < ROWS; i++) { char *response; if (test_request) { response = rowjoin(testpic[i], COLS); } else { response = rowjoin(pic[i], COLS); } sprintf(buffer, "%s", response); if (sendto(sd, buffer, strlen(buffer), 0, (struct sockaddr *)&clntaddr, addrlen) < 0) { perror("sendto"); } else { printf("server: %s\n", buffer); } } } else { char *response = respond(args, len); sprintf(buffer, "%s", response); if (sendto(sd, buffer, strlen(buffer), 0, (struct sockaddr *)&clntaddr, addrlen) < 0) { perror("sendto"); } else { printf("server: %s\n", buffer); } } } else { fprintf(stderr, "listener error\n"); } } // Merely here for robustness, unreachable close (sd); exit(EXIT_SUCCESS); }
the_stack_data/3262305.c
#include <stdio.h> int main() { //code int n; scanf("%d",&n); int a[n]; for(int i=0;i<n;i++){ scanf("%d",&a[i]); } for(int i=0;i<n-1;i++){ for(int j=0;j<n-1-i;j++){ if(a[j+1]<a[j]){ int temp=a[j+1]; a[j+1]=a[j]; a[j]=temp; } } } for(int i=0;i<n;i++){ printf("%d ",a[i]); } return 0; }
the_stack_data/154829308.c
#ifdef STM32F0xx #include "stm32f0xx_hal_smartcard.c" #endif #ifdef STM32F1xx #include "stm32f1xx_hal_smartcard.c" #endif #ifdef STM32F2xx #include "stm32f2xx_hal_smartcard.c" #endif #ifdef STM32F3xx #include "stm32f3xx_hal_smartcard.c" #endif #ifdef STM32F4xx #include "stm32f4xx_hal_smartcard.c" #endif #ifdef STM32F7xx #include "stm32f7xx_hal_smartcard.c" #endif #ifdef STM32L0xx #include "stm32l0xx_hal_smartcard.c" #endif #ifdef STM32L1xx #include "stm32l1xx_hal_smartcard.c" #endif #ifdef STM32L4xx #include "stm32l4xx_hal_smartcard.c" #endif
the_stack_data/796455.c
#include <stdio.h> #include <stdlib.h> #include <string.h> #include <ctype.h> #include <openssl/crypto.h> #include <openssl/e_os2.h> #include <openssl/buffer.h> int main(int argc, char *argv[]) { char *p, *q = 0, *program; p = strrchr(argv[0], '/'); if (!p) p = strrchr(argv[0], '\\'); #ifdef OPENSSL_SYS_VMS if (!p) p = strrchr(argv[0], ']'); if (p) q = strrchr(p, '>'); if (q) p = q; if (!p) p = strrchr(argv[0], ':'); q = 0; #endif if (p) p++; if (!p) p = argv[0]; if (p) q = strchr(p, '.'); if (p && !q) q = p + strlen(p); if (!p) program = BUF_strdup("(unknown)"); else { program = OPENSSL_malloc((q - p) + 1); strncpy(program, p, q - p); program[q - p] = '\0'; } for (p = program; *p; p++) if (islower((unsigned char)(*p))) *p = toupper((unsigned char)(*p)); q = strstr(program, "TEST"); if (q > p && q[-1] == '_') q--; *q = '\0'; printf("No %s support\n", program); OPENSSL_free(program); return (0); }
the_stack_data/243892226.c
/* * ttt -- 3-dimensional tic-tac-toe. */ #include <stdio.h> #define EMPTY 0 #define MAN 1 #define BEAST 5 /* * This is a table of all winning * combinations. * I stole it out of Kilobaud, April * 78. * You can look there to see how it * is ordered. */ char w[] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 0, 4, 8, 12, 1, 5, 9, 13, 2, 6, 10, 14, 3, 7, 11, 15, 0, 5, 10, 15, 3, 6, 9, 12, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 16, 20, 24, 28, 17, 21, 25, 29, 18, 22, 26, 30, 19, 23, 27, 31, 16, 21, 26, 31, 19, 22, 25, 28, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 32, 36, 40, 44, 33, 37, 41, 45, 34, 38, 42, 46, 35, 39, 43, 47, 32, 37, 42, 47, 35, 38, 41, 44, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 48, 52, 56, 60, 49, 53, 57, 61, 50, 54, 58, 62, 51, 55, 59, 63, 48, 53, 58, 63, 51, 54, 57, 60, 0, 16, 32, 48, 1, 17, 33, 49, 2, 18, 34, 50, 3, 19, 35, 51, 4, 20, 36, 52, 5, 21, 37, 53, 6, 22, 38, 54, 7, 23, 39, 55, 8, 24, 40, 56, 9, 25, 41, 57, 10, 26, 42, 58, 11, 27, 43, 59, 13, 29, 45, 61, 12, 28, 44, 60, 14, 30, 46, 62, 15, 31, 47, 63, 0, 21, 42, 63, 4, 21, 38, 55, 8, 25, 42, 59, 12, 25, 38, 51, 1, 21, 41, 61, 13, 25, 37, 49, 2, 22, 42, 62, 14, 26, 38, 50, 3, 22, 41, 60, 7, 22, 37, 52, 11, 26, 41, 56, 15, 26, 37, 48, 0, 20, 40, 60, 0, 17, 34, 51, 3, 18, 33, 48, 3, 23, 43, 63, 12, 24, 36, 48, 12, 29, 46, 63, 15, 30, 45, 60, 15, 27, 39, 51 }; char b[64]; char sep[] = "----------- ----------- ----------- -----------"; main(argc, argv) char *argv[]; { if (yes("Print rules")) rules(); if (yes("Play first")) man(); for (;;) { beast(); man(); } } yes(s) char *s; { char b[20]; for (;;) { printf("%s? ", s); if (gets(b) == NULL) exit(0); if (b[0] == 'y') return (1); if (b[0] == 'n') return (0); printf("Answer `yes' or `no'.\n"); } } rules() { printf("Three dimensional tic-tac-toe is played on a 4x4x4\n"); printf("board. To win you must get 4 in a row. Your moves\n"); printf("are specified as a 3 digit number; the first digit\n"); printf("is the level, the second the row and the third the\n"); printf("column. Levels and columns go from left to right\n"); printf("from 0 to 3. Rows go from top to bottom with 0 on\n"); printf("the top.\n"); } man() { register i, j, t; char buf[20]; board(); for (;;) { if (gets(buf) == NULL) exit(0); i = 16*(buf[0]-'0') + (buf[1]-'0') + 4*(buf[2]-'0'); if (i>=0 && i<=63 && b[i]==EMPTY) break; printf("?\n"); } b[i] = MAN; for (i=0; i<4*76; i+=4) { t = 0; for (j=0; j<4; ++j) t += b[w[i+j]]; if (t == 4*MAN) { printf("You win.\n"); exit(0); } } } board() { register i, j; for (i=0; i<4; ++i) { if (i != 0) puts(sep); for (j=0; j<64; j+=4) { psq(i+j); if (j==12 || j==28 || j==44) putchar(' '); else if (j >= 60) putchar('\n'); else putchar('!'); } } } psq(s) { register v; v = b[s]; if (v == MAN) printf("UU"); else if (v == BEAST) printf("CC"); else printf(" "); } beast() { register i, j, t; int s, bs, bt, v[76]; for (i=0; i<4*76; i+=4) { t = 0; for (j=0; j<4; ++j) t += b[w[i+j]]; v[i>>2] = t; if (t == 3*BEAST) break; } if (i < 4*76) { for (j=0; j<4; ++j) if (b[w[i+j]] == EMPTY) { b[w[i+j]] = BEAST; break; } board(); printf("I win.\n"); exit(0); } bt = 0; for (s=0; s<64; ++s) { if (b[s] != EMPTY) continue; t = 0; for (i=0; i<4*76; i+=4) { for (j=0; j<4; ++j) if (w[i+j] == s) break; if (j != 4) { if (v[i>>2] == 3*MAN) { b[s] = BEAST; return; } t += weight(v[i>>2]); } } if (t > bt) { bt = t; bs = s; } } if (bt != 0) b[bs] = BEAST; else { for (s=0; s<64; ++s) if (b[s] == EMPTY) break; if (s == 64) { printf("Draw.\n"); exit(0); } b[s] = BEAST; } } weight(t) register t; { if (t == MAN) return(1); if (t == 2*MAN) return(4); if (t == BEAST) return(1); if (t == 2*BEAST) return(2); return(0); }
the_stack_data/9513362.c
#include <stdint.h> const int16_t cg_FC1weit[1620] = { // Co,H,W,Ci: (180, 9) // Out channel 0 3834, -1646, 1577, 812, -4240, 467, 2931, -569, 645, // Out channel 1 5523, 2136, -4200, -619, -270, -1678, -65, -451, -1256, // Out channel 2 -1880, -1608, 3951, -2541, -4308, 3357, 403, 24, 1015, // Out channel 3 -3164, 1896, 643, -843, -14, -502, 1644, -3045, -2635, // Out channel 4 3308, 781, -987, 3161, 789, -2306, 2812, 778, -1332, // Out channel 5 1884, -2314, 2791, 118, -4615, 2307, 1688, 149, 492, // Out channel 6 -4620, -1991, 1164, -2007, 1178, 1765, 1342, -1653, -528, // Out channel 7 522, -911, -3676, -3014, 3802, 1245, -2186, 2024, 318, // Out channel 8 -6225, -78, 3289, -4460, 318, 2176, -5532, 57, 1102, // Out channel 9 -4687, -393, 319, 584, 1175, 975, 1530, -2273, 15, // Out channel 10 2245, 2021, -3650, 2271, 3043, -2496, -910, 595, -367, // Out channel 11 3954, -909, 322, -1553, -3320, 2019, -1102, 871, -615, // Out channel 12 -1583, -1715, -199, 3342, 402, -993, 4657, -1184, 453, // Out channel 13 -1560, 112, 4307, 793, -3123, 1897, 501, 1876, 2338, // Out channel 14 -1944, -570, 2397, 2171, -1041, 1582, -2156, 2093, -66, // Out channel 15 3156, -1836, -445, -3398, -2775, 3112, -1151, 470, 2194, // Out channel 16 -1639, 1065, -3195, -403, 5239, -1050, -3676, 558, -831, // Out channel 17 3565, 923, -2508, 1070, 3100, -470, -1613, 3569, 221, // Out channel 18 103, 3198, -3862, 1914, 3036, -2418, 180, 171, -71, // Out channel 19 -2710, -66, -1437, -4316, 1422, 1554, -2177, 380, 1647, // Out channel 20 -77, -2015, 1713, 3249, -3580, -594, 5363, -2603, -1598, // Out channel 21 -2594, -2494, 3051, 1509, -3522, 3192, 2070, -31, 729, // Out channel 22 2691, -2404, 2095, 445, -3192, 1032, 3348, 1579, 2364, // Out channel 23 3783, -570, 192, -2355, -2725, 844, 866, -1157, -636, // Out channel 24 -729, -1646, 3427, -2339, -3205, 2496, -1069, -623, -966, // Out channel 25 1865, -2516, 1381, -76, -4168, 2471, 4211, 460, 1550, // Out channel 26 1821, 533, -339, -6356, -1036, 959, -3613, -1157, -115, // Out channel 27 -2893, 331, 1265, -1740, -763, 2357, 1528, -420, 553, // Out channel 28 1428, -1188, 1208, -130, -2130, -180, 5089, -2518, 640, // Out channel 29 -426, 774, -3322, 1155, 2896, -1706, 1176, -1514, 1481, // Out channel 30 -1054, -1588, 3118, 4130, -2439, -507, 5113, -2152, -14, // Out channel 31 -3339, -378, 3285, -3108, -665, 2126, -1859, 329, 343, // Out channel 32 -3928, 1114, 159, -4866, 2540, 936, -3068, 214, 1222, // Out channel 33 962, 2823, -1162, 3331, -1865, -2460, 3095, -1330, 288, // Out channel 34 -1164, -1328, 2974, -871, -3705, 1613, -1032, -3224, -631, // Out channel 35 -3527, 184, 2405, 2535, 2371, -1202, -4062, 2775, 1011, // Out channel 36 2824, 1580, -3907, -2124, 4185, -823, -797, 1102, 56, // Out channel 37 2461, -1622, 548, 4572, -1815, 40, 6159, -322, 1174, // Out channel 38 -1872, -1295, 606, 1696, 2666, -1188, 1897, -381, 1052, // Out channel 39 2138, 290, -2476, 534, 4291, -1913, 1034, 1174, -295, // Out channel 40 -1822, -2711, 4393, -267, -3243, 1782, -217, 840, -2135, // Out channel 41 1192, 2718, -3628, -921, 3251, -2695, -1602, -900, -725, // Out channel 42 -3151, -1784, 3396, 4798, 105, -1652, -2121, 17, -666, // Out channel 43 -962, 2556, -2800, 2049, 2861, -1185, -3066, 1147, -806, // Out channel 44 -2586, -1481, 1796, 4332, 655, -1125, 4767, -916, -66, // Out channel 45 4293, 48, -1275, 1258, -3600, 982, 3982, -1332, -828, // Out channel 46 -2888, -2292, 2611, 4113, -227, 828, 849, -1724, -1210, // Out channel 47 -3638, -1450, 3986, -1294, -2459, 1612, -703, -2076, -810, // Out channel 48 6106, 450, -983, 431, -610, -212, -693, 1947, -7, // Out channel 49 3331, -225, -3127, -3957, 1904, 806, -3298, 1227, 341, // Out channel 50 866, 1407, -1954, 2526, 3371, -2939, -1768, -133, -2108, // Out channel 51 3699, -608, 195, 451, -2634, 1176, -1286, 1061, -1619, // Out channel 52 1676, 733, -1941, 3270, 3607, -1106, -2643, 3671, 205, // Out channel 53 792, 2079, -733, 2360, 1988, -3244, -1057, -543, 823, // Out channel 54 -3723, -970, 2271, -1263, -5221, 2367, 1258, -3422, -439, // Out channel 55 -1142, 1860, -562, -3674, -255, 527, 516, -431, -823, // Out channel 56 -4582, 1439, 557, -2532, 3200, -655, -2060, 297, 1340, // Out channel 57 4594, 1940, -58, -510, -1673, -1031, 328, -1172, -972, // Out channel 58 -589, -1075, 3332, 1172, -4941, 2017, 991, -1654, 131, // Out channel 59 4344, 695, -85, 4380, 2279, -1832, 2917, 641, -294, // Out channel 60 -4667, 56, 552, 3493, 3565, -996, -1995, -567, -1958, // Out channel 61 2135, 489, -1224, 2408, -1611, -1442, 2193, -953, -1002, // Out channel 62 -3989, -233, 513, -665, 1951, -230, -1840, -1740, -2504, // Out channel 63 -3334, -114, 1352, -4385, 2522, 64, -3805, 1085, 1579, // Out channel 64 3794, 748, -2862, -4249, -557, -579, -2369, -694, 1636, // Out channel 65 1268, -2827, 3798, 674, -555, 588, -2798, 3803, 836, // Out channel 66 -483, -2643, 3488, 1157, -5097, 2428, 1416, -65, 49, // Out channel 67 -1030, 1270, 1520, -852, 3554, -1035, -4382, 1104, 467, // Out channel 68 -2787, -839, -839, -504, 3963, -687, -1952, 2656, -1111, // Out channel 69 1480, -602, 2345, 4710, -983, -669, 2257, 681, -2304, // Out channel 70 -2013, -1939, 2543, -375, -3235, 2672, -198, -299, 415, // Out channel 71 -4924, 807, 864, -2052, 3516, -363, -1859, -410, 1878, // Out channel 72 4487, -135, -1765, 3642, 371, -1875, 1500, -52, -1005, // Out channel 73 -3364, -1360, 2539, -1159, 1547, -152, -2185, 2005, 1420, // Out channel 74 3408, 81, -1731, 2485, 3054, -1679, -4238, 1682, -1498, // Out channel 75 -5765, -418, 2099, 1849, 2652, 196, -735, 211, -585, // Out channel 76 2565, -245, 2968, 153, -3986, 1957, -2051, 2588, -1357, // Out channel 77 2028, -126, -3757, -2476, 4996, -184, -1492, 1535, -264, // Out channel 78 3232, 542, 2012, 2434, -1290, -582, -1420, 2795, 472, // Out channel 79 -2606, 2271, -1433, -4028, 1368, 725, -2557, -926, 494, // Out channel 80 -713, 1587, -2800, -1067, 3992, -1910, -1571, -1890, -2204, // Out channel 81 3095, -985, -2455, -3556, 610, 1499, 168, -250, -673, // Out channel 82 -3571, 1292, -3139, 2581, 3725, -2384, -2930, -919, -1057, // Out channel 83 184, -3292, 3021, 797, -1619, 2342, 634, 441, -655, // Out channel 84 2504, 1820, -1560, 2783, -1156, -2467, 1520, -3025, -1373, // Out channel 85 2790, -2029, -2553, -3208, 568, 1041, 1197, 2244, 617, // Out channel 86 811, -438, 905, -294, -5253, 2535, 2420, -1145, 489, // Out channel 87 -673, -1906, 3182, 2669, -2921, 1419, -2289, 303, -134, // Out channel 88 3836, -1317, 880, 5100, -554, -1357, 4415, 1050, 60, // Out channel 89 5213, 796, -3477, 3574, 3155, -3276, 805, 467, 205, // Out channel 90 -2278, 2414, -3436, -854, 3872, -817, -494, -699, 1480, // Out channel 91 2879, -2630, 1423, 213, -1481, 897, -1178, 1372, -2622, // Out channel 92 1630, 1762, -2810, -1806, 758, -362, 3866, -1646, 2477, // Out channel 93 -437, -2313, 3480, 1170, -4724, 2348, 1762, -293, -1078, // Out channel 94 -3560, -690, 3935, -1498, -2812, 2987, 1253, -1935, 20, // Out channel 95 -1797, 1694, -2529, 2694, 5015, -3374, -1554, 334, -26, // Out channel 96 -3439, -135, 3865, -4106, -3821, 220, -1617, -3696, -1473, // Out channel 97 -1703, -1897, -36, 591, -2795, -113, -971, -2922, -3316, // Out channel 98 672, -2423, -1732, 4078, 159, 882, 1620, -1922, -1443, // Out channel 99 1418, 2072, 1490, 579, -3450, 643, 4311, 202, 1351, // Out channel 100 -2285, -2347, 2363, 3682, 681, 1140, 1773, 1928, -1084, // Out channel 101 -1011, 326, 2477, 246, -5573, 3376, 1976, 458, 935, // Out channel 102 -1692, -249, -2584, -265, 4690, -1957, -2912, 30, -281, // Out channel 103 533, 13, -2162, -2843, 1702, 2334, 1403, 659, 675, // Out channel 104 -786, 156, -2332, -3266, 3095, -1269, 238, -2602, -120, // Out channel 105 660, 517, -3318, -976, 5285, -2024, 234, 582, 763, // Out channel 106 -3050, 308, 1990, -4075, -1941, 2021, -3314, -451, -392, // Out channel 107 879, -691, -951, -786, -1567, -874, 4532, -2615, 1088, // Out channel 108 -3507, 273, 1010, -3864, 2757, 1526, -3217, 1320, 2591, // Out channel 109 -1058, -1841, 815, 2795, -3691, 1558, 2993, -71, 2008, // Out channel 110 3946, -1443, 1081, 3518, -1926, -2020, 3585, 690, -1371, // Out channel 111 1578, 2363, 1456, 1511, 469, -1775, 1458, -1321, 1351, // Out channel 112 -4182, 3265, -285, -1374, 1400, -1926, 681, -2696, 1710, // Out channel 113 -4122, -82, -642, -969, 2233, 1225, 785, 732, 1563, // Out channel 114 3869, -1573, 16, -3072, -380, 1056, -615, 2312, 2236, // Out channel 115 -1860, 3012, -574, -1085, 122, -1131, -202, -1398, 448, // Out channel 116 -1945, 2727, -2573, -2114, 3960, -1901, -5256, 745, -162, // Out channel 117 3860, 2311, -3231, -213, 1498, -746, -10, 967, 1247, // Out channel 118 -4871, 1386, 298, -462, 1111, -766, -1377, -2201, -293, // Out channel 119 2412, 1189, -1617, 2222, 3285, -4038, -1959, 736, -1131, // Out channel 120 3937, 943, -3189, -136, 3181, -1048, 2468, -66, 974, // Out channel 121 5255, -1346, -462, 2655, -3246, -210, 4695, 9, -111, // Out channel 122 -1071, 1590, -3867, 1499, 4337, -2582, 1256, 594, 1225, // Out channel 123 310, 488, -1351, 2291, 2911, -2603, -5932, 1816, -514, // Out channel 124 332, -1193, 2645, 444, -5483, 2696, 240, -868, -1671, // Out channel 125 -190, 958, -3062, -461, -216, 545, 3997, -124, 3798, // Out channel 126 761, -1064, -3064, -1591, 2802, 171, -2279, 796, -1316, // Out channel 127 4571, 2741, -2791, -823, -1173, -1739, 189, -1279, 969, // Out channel 128 4195, -2137, -572, -51, -4011, 1205, 1228, -1028, 43, // Out channel 129 -5015, 50, 3953, 847, -2434, 1931, -2094, -1323, 598, // Out channel 130 2837, -2045, -424, 4036, -2469, -1365, 5316, -1033, -570, // Out channel 131 4088, -864, -2194, 3717, 657, -1492, 2987, -291, -1122, // Out channel 132 -1425, -619, -2678, -416, 3110, -2421, -3824, 340, 339, // Out channel 133 2499, -2276, 1861, 1291, -3535, 1276, -30, 1312, -713, // Out channel 134 2803, -521, -2154, -5027, 376, 1142, -1901, 1003, 495, // Out channel 135 -1041, 2120, -3480, 2239, 5249, -381, -1815, 1468, -1738, // Out channel 136 1138, -3360, 3821, 1347, -3282, 20, 1005, 1340, 1249, // Out channel 137 -293, -788, 222, 1002, 2211, -203, 749, 2705, 2372, // Out channel 138 2199, -1472, 737, -621, -4485, 1603, -2757, 165, -949, // Out channel 139 -4667, -475, 2741, -3706, -1807, 3466, -3154, 321, -360, // Out channel 140 1983, 1353, -282, -783, 1852, -264, 2319, 2536, 2735, // Out channel 141 2610, 603, -3573, 2118, 2769, -923, 1141, 2397, 1606, // Out channel 142 4644, 559, -2986, 3765, 2798, -2067, 1984, 1693, 6, // Out channel 143 4855, -1353, -1367, -1003, -932, 1821, 100, 2418, -231, // Out channel 144 -2404, -1576, 4327, -174, -2693, 1700, -1799, 662, 924, // Out channel 145 2817, 632, 1433, -176, 1404, 135, -3691, 4556, 774, // Out channel 146 1239, -2641, 2273, -2184, -2817, 3108, 286, -43, 506, // Out channel 147 866, -425, -776, -4554, -408, 2700, 1621, -1176, -1020, // Out channel 148 -4411, -397, 3005, -266, 200, 166, 1415, -1943, 208, // Out channel 149 1404, -2675, 1846, 234, -1883, -172, 2970, -1512, -1365, // Out channel 150 -2848, 2678, -2192, -619, 2745, -982, -2960, -1078, 754, // Out channel 151 -1020, 2256, -3029, -1842, 4273, -914, -2582, 1137, 555, // Out channel 152 -2790, -796, 4232, -8, -1338, 239, -2608, 1724, 684, // Out channel 153 3457, -2583, 1301, -1274, -2220, 2955, -2317, 1227, -1676, // Out channel 154 812, -436, -754, -4040, -4424, 2597, 1876, -2214, 1673, // Out channel 155 -238, -402, 1724, -4425, -220, 2853, -1869, 1296, 403, // Out channel 156 2243, -1058, 139, 2130, -2779, -350, 6408, -2845, -105, // Out channel 157 -5864, -397, 3710, -1312, -814, 1154, -4735, 719, 229, // Out channel 158 -1390, -1119, 1140, 1408, 527, -922, 4872, 477, -1175, // Out channel 159 -294, -2687, 2402, -2468, -703, 2879, -2523, 1574, 97, // Out channel 160 -269, 1205, 15, -76, 443, 1239, 3739, 877, 2565, // Out channel 161 -3551, 2030, 1056, -245, -556, -1039, 2897, -1953, 2054, // Out channel 162 3504, -398, 3378, 3012, -3015, -309, 1418, 222, -1683, // Out channel 163 2989, -340, 1552, 1787, -2405, 1617, 3296, 1970, 1301, // Out channel 164 -6291, -948, 2506, -970, -389, 1466, -3118, 1763, 2281, // Out channel 165 -4561, 1276, -670, -2690, 3660, 765, -2758, 61, 188, // Out channel 166 2365, -1433, 3035, -507, -4500, -339, 342, -1882, -1400, // Out channel 167 1704, -1857, 284, -2664, -1531, 3092, -215, 1051, 2741, // Out channel 168 -5487, -1169, 2177, -3494, -43, 152, -3117, -1468, -172, // Out channel 169 -2042, 752, -2600, 1723, -1315, 637, 4083, -947, 3210, // Out channel 170 4600, 1615, -2214, 1037, 554, -2156, -1445, -1540, 190, // Out channel 171 1766, -994, 2169, 3497, -2483, -1541, 4150, -219, 539, // Out channel 172 566, -410, 1414, -625, 916, -1199, -3937, 9, -2718, // Out channel 173 -3617, 242, 1506, 2853, 1031, -155, 143, -558, -417, // Out channel 174 -2078, 204, -291, -1559, 4401, -1393, -4491, -99, -1254, // Out channel 175 -2124, 1892, -988, -1460, 3845, -318, -6204, 497, -400, // Out channel 176 -1193, -495, 4864, -992, -4347, 2366, -2129, 2318, 981, // Out channel 177 4819, 985, -3857, 2121, -2066, -1562, 5201, -1828, -2874, // Out channel 178 -204, -1571, -1364, -3762, 1639, 1558, -3146, 25, -1120, // Out channel 179 -4392, -1971, 3510, -3482, 1299, 1777, -5047, 1110, 1098, }; const int16_t cg_FC1bias[180] = { // Co,H,W,Ci: (180,) -341, 2213, 1666, 582, -1249, 2599, -2987, -514, -3204, 2821, -549, -1379, 1114, 3416, -2979, 553, -2403, 5788, -713, -3311, // 20 476, 2317, 2645, 4754, 1015, 4652, 2520, 1106, 2040, -3247, 1685, 1411, -4233, 1002, -1071, 2044, -252, 2708, -2996, -1595, // 40 -2676, -2074, -371, 2713, -2606, 2321, 1708, 581, 3691, -1667, -2468, -74, 3482, 2942, 2984, 752, -2296, 3805, 1617, 5311, // 60 -3084, 383, -3608, -2477, -2770, 1235, 1542, -2190, -2724, 6678, 2109, -3769, -3430, -5322, -1319, 95, 1964, -1818, 1533, -1623, // 80 -4582, -1309, -3317, 1287, 585, -3926, 3824, 2132, 3769, 272, -2051, -2186, 2850, 1154, 2308, -868, -3603, -2063, -1805, 1478, // 100 1720, 2052, -4861, 2311, -6119, -4032, -5595, -3712, 220, 4808, 1768, -1465, -2760, -2029, 624, -671, -4005, 3118, -2764, 1953, // 120 1912, 1935, -1698, -968, 1957, 4027, 780, -497, 962, 81, 2343, -1050, -1102, -678, -2059, 961, 2329, 5260, 230, -2558, // 140 6691, 216, 2981, 3670, 1297, 3114, 174, 1253, -5634, -2545, -4311, -3473, -192, -389, 2466, 385, -815, 1193, 5801, 791, // 160 5227, 2899, 1653, 6072, -1096, 135, -17, -1854, -6014, 5775, -2169, 3276, -553, 4845, -4374, -4064, 1759, 2482, -3568, -686, // 180 }; const int16_t cg_FC2weit[18000] = { // Co,H,W,Ci: (100, 180) // Out channel 0 -13, -1245, 3556, -93, -161, 3086, -381, -628, 2436, -786, -232, 1253, -345, 2779, 1299, 844, -1214, -1391, -1586, 326, // 20 79, 1189, 1095, -19, 1161, 897, -370, 41, 886, -552, 310, 767, 399, -268, -100, 1085, -713, -113, 196, -1284, // 40 1430, -2347, 1048, 52, -165, -1284, -1534, 233, 1062, -1081, -697, 891, -18, -35, 669, -230, 418, 1156, 1203, -21, // 60 -388, -613, 294, 424, -760, 2268, 1512, 1208, -356, 628, 381, 538, -223, 577, -109, 661, 1977, 448, 874, 47, // 80 -1178, 189, -2112, -177, -19, -967, 971, 720, 86, -2549, -610, 11, 760, 2803, 3153, -1528, 794, -1048, -807, 2153, // 100 615, 3918, -2854, -159, -1365, -1611, 621, -1668, 2178, -1303, -607, 1694, 12, 1089, -30, 629, -912, -150, 896, -461, // 120 -961, -181, -1656, -657, 1295, -602, -1842, -626, 233, 1589, -1257, -516, -2488, -578, -159, -433, 232, 233, -105, 1224, // 140 1052, -221, -2032, 32, 2754, 881, 352, -584, -5, -555, -165, -1317, 2228, -192, -553, 1809, -767, 1744, -450, 91, // 160 1053, 137, 486, 1216, 1190, 686, -123, -253, -319, -457, -301, -377, -363, 761, -1189, 287, 4766, -2586, -1245, 2376, // 180 // Out channel 1 -233, 236, 1448, -151, 474, 1295, -1043, -353, -353, -747, 155, 596, -143, 368, -611, 704, -1269, -454, -908, -147, // 200 110, -179, 146, 196, 434, -6, -108, -906, -158, -250, 198, 1151, -1461, -68, 356, 412, 366, 1253, -210, -325, // 220 507, 312, -135, 2, -132, -933, -100, -147, 1124, 387, 522, -336, -707, -1180, -224, 373, -382, 376, 165, 543, // 240 -976, -235, -178, -183, -150, 408, 441, 226, -1577, 722, 624, -446, -612, 453, -417, 428, 1143, 232, -68, -180, // 260 -589, 71, -1270, -1162, -703, -113, -62, 848, -645, -598, 273, 387, 354, 7, -1398, -163, -1036, -438, -1001, 1340, // 280 422, 979, -1941, -603, 213, -477, 818, 363, 592, -412, 365, 962, -749, -941, 60, 638, 63, 518, -1479, 48, // 300 683, 753, 345, 22, 1140, 248, -696, 682, -461, -352, 262, 400, 578, -236, 255, -584, 227, 266, 535, -8, // 320 513, -131, 1075, 1101, 99, 978, 202, 185, -1022, 363, -52, -410, 216, 403, -209, 1184, 142, 1, 732, 943, // 340 -150, -589, -43, 413, 113, -1144, 896, 355, -956, 648, 335, 102, -368, 64, -588, -295, 1144, -160, 545, -86, // 360 // Out channel 2 464, 1084, 894, -2, -665, 1260, -332, -1131, 1395, -86, -581, 599, -543, 1479, 781, -255, -407, -256, -466, -960, // 380 -494, 158, -1177, 1101, 1692, 543, 1163, -402, 324, -1034, 1151, 768, -1148, 334, 1154, -686, -1265, -1150, -333, -942, // 400 -405, 31, 731, -844, -242, -51, 421, 1805, -279, -300, 835, 415, -1688, -864, 1919, 743, -212, 1504, -799, 443, // 420 513, -356, 779, -321, -1248, 267, 246, 472, -1160, 365, 581, -1504, 298, 346, 376, 343, 820, -1533, -454, -109, // 440 -774, -1997, 3, 70, 762, -1852, 1392, 873, -452, -843, 703, 656, 1026, 283, 700, -302, 663, -63, -532, 142, // 460 -968, 1500, -1504, -527, -24, -1859, 1147, -653, -335, -1056, 20, 952, 556, -1185, -790, 1135, 54, -173, 1265, 416, // 480 -301, -1695, -549, -435, -15, -765, -54, 696, -1067, 1710, 479, -889, -159, -810, -1064, 287, 106, -45, -180, 466, // 500 -1299, -1095, -1428, -158, -37, -204, 563, -366, 284, 831, -551, -1148, 678, -486, -69, -203, -377, 1302, 706, 52, // 520 -429, -933, 159, -1070, -596, -685, 1234, -729, -884, -556, 1193, -367, 580, 748, -42, 34, 1067, -127, -352, 600, // 540 // Out channel 3 -1965, 181, 951, -383, -536, 472, 312, 2625, 1993, -430, -222, 1768, -851, -1453, -383, 598, 1324, 1308, -307, 966, // 560 -1807, -152, -770, 697, 17, 309, 140, 575, -845, -832, -2283, 676, 1295, -2737, -842, -553, 766, -2123, -1084, 164, // 580 651, 819, -345, -428, -824, 165, -667, 444, -255, 1322, -434, -379, 1044, -1717, -1337, 1159, -391, -1141, -575, -947, // 600 395, -50, 592, 580, -44, 825, -486, 300, 1432, -190, 83, -237, -603, -437, 151, 439, 806, 3015, 195, 587, // 620 640, 1023, -149, -89, -2351, 991, -481, -568, -1433, -903, 343, 950, -888, -175, 29, -1648, -9, 732, 301, -793, // 640 93, -209, 804, 1897, -724, 539, 715, -237, 681, -987, -281, -1756, -817, 388, 891, 63, 1023, 706, -839, -1095, // 660 -430, -829, 264, 730, -950, 1036, 818, -811, 390, -562, -2017, -151, 682, 353, 1134, 1474, -183, -774, 711, 2221, // 680 55, -27, 78, 1635, 752, 106, -535, 476, -369, -726, -359, 1362, -1210, 1784, -158, 1062, -2346, 543, 1035, 1320, // 700 -142, -1569, -1338, -319, 567, 1626, -1122, 490, -139, 312, -1119, -2674, 48, -649, 27, 1779, 540, -1215, 1838, 284, // 720 // Out channel 4 561, 90, 261, -1483, 497, 2151, -1178, 115, -126, -1593, 4, 948, 193, 466, 993, 992, -242, 1204, 336, -892, // 740 516, 300, 1688, 112, 374, 390, -441, -1296, 15, -383, -199, -1057, -2250, -1875, -386, 972, 21, 1082, -227, 372, // 760 2318, -614, 510, 68, -93, 120, 325, -513, 1542, 61, -639, 459, -105, 526, -707, -1309, -348, 231, 595, 722, // 780 -333, 785, -915, -503, -690, 3329, 1675, 294, -338, 628, 973, -1711, 830, 516, 445, -381, 2667, -251, 1477, -2212, // 800 -2132, 327, -1793, 248, -751, 865, -535, 1421, 919, 1169, -4142, 2000, -1284, 1194, -679, -602, -817, 112, 192, -1152, // 820 902, -105, -653, -491, -826, -109, -91, -357, -1442, 490, 1812, 43, -3186, -504, 825, -962, -415, 478, -976, 1202, // 840 -378, 1385, -863, 826, 251, -172, 299, -430, 462, -207, 672, 395, 548, 1649, -377, 196, 2408, 1504, 548, -1015, // 860 229, 132, 1420, 2382, 1536, 2177, 1381, -1496, -815, 640, -1832, -1181, 1148, 2213, -1415, 132, -295, 1293, 701, 1157, // 880 627, -1378, 1844, 1528, 360, -1600, 342, 174, 632, -504, -89, 1321, 1131, 122, 662, -1327, 1474, -937, -326, 832, // 900 // Out channel 5 -221, 2096, -679, 380, 1292, -479, -1202, -1067, -788, -434, 2347, -423, -1255, -273, -241, -418, 1260, 1113, 416, 640, // 920 643, -629, -717, 82, -100, 21, 100, 221, -261, -764, -1087, 259, -253, 586, -661, 1049, 1030, -315, 386, -702, // 940 -1028, 862, 630, 2147, -1512, -385, -956, -1770, -155, 623, 1517, 687, 1735, 1087, -661, 789, -82, 975, 303, 465, // 960 -663, 596, 449, -107, 516, -635, -1374, -42, 43, 927, -1224, -827, 142, -44, 1809, -526, 227, 146, -120, -62, // 980 313, -1098, 236, -880, 415, -370, -810, 1009, 303, 172, -948, 137, -626, -1298, -297, 231, -1453, -954, -495, -210, // 1000 -317, 1111, -157, -207, -1450, 365, 476, -1918, 741, -964, 641, -38, 395, -393, -1626, 454, 1507, 950, -176, 1581, // 1020 -411, 77, 347, 1702, -321, -305, 729, 298, -1895, -730, 371, -539, -289, -425, 500, 1629, -315, -10, -120, 8, // 1040 268, -238, 1133, -397, 145, 1202, -884, -268, -2022, -1512, 1043, 195, 405, 774, -883, -263, -800, -25, -100, -208, // 1060 1466, -1035, 131, 674, -111, 243, -175, -1101, -1316, -1157, -45, -72, 636, -378, 98, 1343, -241, 888, -558, 1192, // 1080 // Out channel 6 105, -1883, 2097, -417, 47, 2059, -805, 170, 1531, -330, -781, 261, -786, 1908, 1276, 662, -324, 701, -1570, 517, // 1100 -449, 2238, 87, -1083, 166, 778, -507, 772, -101, -1100, -72, 1291, 411, -567, 544, 619, -1321, -1011, -92, -741, // 1120 2843, -2457, -545, -938, -701, -933, 370, 837, 747, 440, -584, -145, -172, -784, 859, -296, 1238, -929, 2021, -1220, // 1140 579, -1126, 139, 127, -615, 1913, 2019, 734, 117, 199, 527, -41, -1195, 819, -46, 698, 2135, -291, 697, 660, // 1160 -2074, -341, -1667, 242, -1269, 462, -167, 2462, -786, -2900, -685, -392, -1049, 2490, 1543, -1681, 289, -210, 83, -1329, // 1180 409, 2082, -950, 1374, -1138, -1992, 1428, -887, 1384, 1084, -517, -816, -557, 453, 435, -1107, -1868, -1360, -1077, -2053, // 1200 -223, -383, -1544, 591, 1922, -808, -3, -661, 297, 835, -1030, -568, -288, 1144, -347, -268, 685, -1361, 537, 1921, // 1220 -1047, -487, -1063, -254, 1956, 1514, 1152, 1052, 488, -37, 267, -1329, 1468, 1529, 522, 1244, -612, 1677, -543, 1467, // 1240 128, 44, 30, 771, 1288, 647, 54, -509, 375, 131, -1231, -280, 286, 368, -357, 1537, 3061, -2809, -340, 2624, // 1260 // Out channel 7 692, 1786, -987, 1206, 201, -128, 101, -118, -1943, -907, 1744, 283, 602, 62, -435, 187, 481, -1303, 220, -546, // 1280 580, 1301, 1283, -258, -32, 399, -1108, -1468, 1356, -168, 312, -552, -1678, 349, 1021, -1658, -1029, 1345, 268, -414, // 1300 -1273, 776, -952, 846, -22, 478, -300, -48, 54, -217, -322, 179, -319, -31, -138, -724, -239, -381, -215, -31, // 1320 60, 1069, -254, -1216, 22, -2040, -863, -616, 0, 428, -879, -836, 229, -847, 45, 442, -1164, -442, -46, -102, // 1340 551, 87, -181, -839, 1756, 363, 792, -344, 395, 1666, 1193, -1230, 1494, -660, -830, 651, -412, 14, 26, -31, // 1360 -495, 247, -948, -287, 181, -443, -416, 741, -1241, 634, 572, 1058, 692, 77, 246, 71, -1590, 1007, 705, -92, // 1380 852, 1308, 1419, 516, 156, 1579, -500, 282, 304, -100, 1697, 1517, -906, -412, 1, -209, -315, -278, 749, -705, // 1400 -951, -777, 1466, 35, -752, -608, 403, 586, -244, 966, 48, 509, -860, -987, 577, -793, 920, -2000, -163, -985, // 1420 32, -799, 645, -25, -1100, -464, 757, -528, -1345, 826, 77, 1057, -161, -235, -719, -659, -1439, 2184, -582, -2813, // 1440 // Out channel 8 1178, -5, 346, -1006, -561, -285, -474, -1582, 2241, 821, -954, -269, -1029, 757, -133, 63, -783, -997, -1852, -10, // 1460 -1323, 775, -1218, 774, 1509, -625, -166, -207, 319, 968, 1186, 1364, 1270, 629, 1169, 1640, -1105, -226, -512, -1551, // 1480 576, -1130, 1549, -87, -299, -363, 538, 258, -332, -1353, 1030, -215, -215, 823, 559, -98, 1796, 338, -75, -250, // 1500 358, -479, 1285, 106, 962, 1681, 906, 787, -785, -526, 1, 1681, -285, -197, 262, -100, 553, -1078, 605, 314, // 1520 -230, -2614, 977, -233, -381, -1321, 126, 176, -160, -614, 436, -37, 655, 1583, 1507, -774, 718, -547, -788, -314, // 1540 -160, -329, -182, -932, -22, -368, 1922, -68, 503, -340, -471, 1334, 1062, -1314, -626, -152, 1558, -535, 547, -840, // 1560 -909, -1639, -837, 284, 63, -1125, -1594, -713, -905, 3233, -799, -754, -412, -57, -374, -977, 904, 893, 524, 599, // 1580 -221, -151, -1575, -2285, 1905, 558, 532, -1791, 684, 207, -474, -537, 2234, -498, -31, -325, -72, 2995, -1003, -28, // 1600 -785, 288, 487, -623, 1505, 330, 1836, -1165, 936, 424, 932, 1341, -1113, 129, 690, 1608, 843, -3481, 60, 2046, // 1620 // Out channel 9 309, -1437, 1702, -266, -34, 196, 1547, -328, 299, 1610, -1623, -342, 1418, 63, 89, -1378, -417, 402, 284, 95, // 1640 833, 3277, 56, -1302, -97, 1088, -1880, -19, 476, 519, 1282, -222, 605, -1081, -781, 159, -1491, 1036, 838, 1184, // 1660 1022, -2054, 751, -996, 1552, -515, 1002, 938, -1403, -165, -1352, -1054, -90, -1212, -860, -270, 386, -1620, 952, 508, // 1680 938, -333, -30, -429, -1643, -231, 1070, -1280, 295, 848, -850, 334, -615, 480, -1123, 2429, -682, -292, -1010, -675, // 1700 -412, -1440, -936, 1914, -1003, -13, 28, 92, 148, -2222, -1074, -854, 245, 1399, 779, 973, -752, 91, 689, -334, // 1720 1755, 89, 371, 668, 465, 197, -730, -406, 161, 584, -227, 43, 1318, 1035, -356, -293, -1062, -981, 1007, -1845, // 1740 -698, -155, -167, -1578, 42, 381, 400, -1545, 105, -251, 1091, 1354, -163, -506, -22, -983, 448, 1191, -1231, 454, // 1760 -639, 1381, -1068, -1109, 567, -428, 61, 213, 1384, 1224, -964, -1044, -403, -980, -989, -672, 499, 227, 1450, -1335, // 1780 650, 44, -1063, -358, 469, -232, -787, 751, 1148, 346, -867, 57, -258, 320, 136, -667, -78, 422, 325, -762, // 1800 // Out channel 10 -999, 378, 1153, 642, 856, 17, -707, 1634, 2247, -1199, 469, 1591, -1689, 414, 67, 1669, 940, 287, -664, 1866, // 1820 -2299, -1228, -133, 19, 1683, 429, 1473, 376, -545, 28, -2270, 1711, 2295, -1680, -1109, -1014, 964, -1952, -410, 504, // 1840 5, -897, -2204, 46, -2153, 38, -2022, -212, 941, 1067, -1107, 545, -520, -751, 602, 285, 1434, -678, -1002, -1031, // 1860 -1353, -1638, 271, 1507, 559, 1362, 604, 443, 1521, -1310, -1415, 100, -1127, 201, -1368, -897, 813, 742, -313, 958, // 1880 33, 1518, -2840, -611, -899, 1325, -499, -314, -1168, -928, 456, 710, 173, 310, 702, -2466, 734, -490, -1290, -179, // 1900 -942, 604, 453, 704, -95, 193, 948, -277, 396, -1631, -1153, -65, -270, 701, -221, 174, 1233, 114, -399, -1336, // 1920 297, -458, -257, -868, 453, 461, -236, 448, -336, -374, -2070, -625, -190, -185, 3100, 77, -1884, -770, 252, 2595, // 1940 185, -437, -740, 2165, -537, 976, 2213, 1742, -869, -872, 503, 266, 342, 1783, 1578, 3297, -1193, -180, -413, 135, // 1960 1131, -946, -913, -222, 364, 1892, -776, 2400, 331, -1381, -788, -2062, -31, -159, 786, 894, 2237, -1387, 1209, 3266, // 1980 // Out channel 11 1398, 131, 1453, 450, -461, 1553, 94, -928, 1683, -112, -514, 19, -547, 622, -207, 928, -2529, -984, -1371, -927, // 2000 6, 176, 5, 791, 1062, 179, 1991, 3, 505, -982, 1341, 692, 444, 610, 905, -1060, -1648, 680, -765, -583, // 2020 249, -276, -625, -867, -1463, 701, -41, 884, 947, -15, -525, -247, -1107, -121, 1544, 1474, 654, -384, 882, -206, // 2040 -2037, 426, -425, 194, 838, -184, 1719, 259, -1621, 64, -234, -17, -353, -210, 543, -767, 248, -2352, -471, 315, // 2060 -867, 968, -1706, 333, 408, -866, 1305, -236, -619, -697, -850, 383, -9, 962, 1042, -3108, 1366, 270, -479, 255, // 2080 -656, 1255, -682, -580, -221, -1277, 805, 1198, -1277, -1223, -672, 226, 59, -1473, 96, 206, -380, -848, 861, 80, // 2100 -403, 519, 804, -365, 1654, 262, -120, 52, 223, -36, 182, -758, 82, 54, 485, -1834, 342, -1281, -625, 922, // 2120 273, -187, -1201, -358, 715, -119, 1200, -241, -403, 760, 729, -1554, 298, 668, 1240, 854, 674, -201, 316, 533, // 2140 -318, 245, 288, 268, -416, -1737, 1238, -14, -307, -239, 500, 781, -87, -356, 444, 236, 653, 173, -433, -526, // 2160 // Out channel 12 -1694, -1021, -778, -95, -136, -251, -889, 50, -333, 966, 843, 31, 272, -2002, 47, 365, 969, -538, 789, -148, // 2180 321, -646, -1066, -264, 223, 785, 567, -357, -248, 79, 140, 37, -651, 96, -612, 158, 533, -1091, -265, -166, // 2200 -62, 1074, -618, -370, -639, -1184, 452, 694, -674, 542, 104, 515, 121, -1287, 190, 682, -510, 267, 771, 644, // 2220 1775, 692, 781, 367, 908, 156, 130, -479, 871, 461, -84, -373, -483, 5, -630, 855, -359, -186, -365, -827, // 2240 1050, 1044, 1731, 352, -139, 897, -405, -422, -1107, -137, -495, 763, -703, -263, -476, 467, 152, -612, 887, -299, // 2260 -831, 436, -467, 378, -174, 173, 104, -122, -412, -227, 34, -642, -944, 249, -880, 207, 1153, 820, 9, 639, // 2280 445, 291, 115, -1406, -109, -447, 374, -289, -1197, 473, 153, -292, -109, 20, -287, 1641, -641, -296, -308, 1550, // 2300 583, 35, -364, -455, -275, -442, -790, 598, -548, -596, 1231, -5, -338, 972, -906, -637, -357, -149, 597, 311, // 2320 122, -1530, 985, 139, 210, 1589, -478, 454, 306, -36, -129, -507, 277, 216, -740, 2007, -444, -983, 181, 151, // 2340 // Out channel 13 -2041, -1208, 553, 1359, -50, -420, 800, 132, 2007, 710, 179, -2387, 850, 237, 238, -63, 965, -853, 280, 1244, // 2360 -629, 766, -691, -1287, 167, 718, -727, 1164, 102, -60, 386, 238, 1432, -293, 220, 455, -1065, -792, 276, -948, // 2380 -32, -352, 740, -342, 680, -1865, -154, 577, -1419, -459, -518, -1199, -502, 521, 442, 923, 1751, 288, -600, -283, // 2400 1539, -48, 1002, 802, -196, -1362, -286, -174, 388, -1333, 381, 2007, -596, 1209, -617, 1386, -1145, -698, 485, 1637, // 2420 -216, 5, -33, 170, -550, -889, -398, 19, -1954, -836, 2077, -1879, 1113, -989, 400, 1047, 512, -321, -1027, -125, // 2440 944, 199, 369, -242, 946, 798, 394, 641, 1226, 525, -1787, 645, 2677, 76, -1330, 593, 1154, 316, 2146, 636, // 2460 -21, -3634, 1715, 10, -785, 227, -411, -955, -853, 1629, -38, -888, -449, -1013, -865, -248, 315, -395, -1104, 1415, // 2480 310, -422, -1491, -902, -1109, 54, -1297, -317, 2165, -475, 1383, 446, 1172, -1554, 55, 536, -384, 2134, -418, -1780, // 2500 215, 1495, -820, -752, 1229, 2485, -1070, -220, 1106, -310, -36, 800, -243, 669, 473, 1344, 639, -1923, 138, 1424, // 2520 // Out channel 14 1005, 17, 250, -207, 1125, 1437, 537, 390, -1513, -12, 395, 1604, -90, -239, -107, 1299, -239, 132, 3, -1072, // 2540 213, 922, -67, 686, 1197, -88, 952, -312, 206, -1474, 373, -293, 595, 137, 148, -402, -833, -416, -114, -171, // 2560 787, -150, 985, 0, -419, 391, 2030, -432, 65, -302, 146, 1006, 513, -709, 225, -360, -2691, 550, 149, 813, // 2580 125, -276, -27, -1481, -509, 1156, 777, -762, -76, 696, 446, -2937, 306, -810, 413, -872, 2991, 167, 494, -912, // 2600 -195, 462, -100, 619, 333, -189, 1336, 540, 946, 451, -2790, 1919, -1082, 1197, -150, -504, 1378, 785, 184, -333, // 2620 1077, 857, 534, -406, -344, -25, -962, -364, -1855, 899, 1295, -1089, -3050, -803, 30, -1075, -1262, -804, 208, 27, // 2640 -473, 2163, -2753, 74, 2025, -1646, 1257, -5, 77, 650, 1464, 2002, -670, 2154, -192, -660, 840, -387, 671, -41, // 2660 327, -1464, 1050, 385, 1027, -216, 865, -87, -198, -2, -1198, -992, 725, 2097, -120, -805, 168, 418, -32, 1488, // 2680 -891, -679, 840, 516, -717, -1725, 1298, -530, 596, -1853, -843, -134, 746, 398, 234, -541, 483, 1250, 770, -918, // 2700 // Out channel 15 -548, -698, 1746, 812, -1884, 574, 1385, 7, 2514, 2045, -1818, -102, 75, 21, 181, 955, -285, -1463, -515, 1682, // 2720 -279, 1827, -989, -322, -52, -706, 1821, 1108, 217, 865, 1193, 433, 1305, -421, 1565, -1632, 29, -898, 975, -632, // 2740 536, -1156, -358, -1976, 412, -39, 1004, 1319, -1109, -118, -2616, -747, -1932, -494, 1226, 840, -335, -569, 384, -1971, // 2760 -93, -229, 995, 890, -226, -662, 1395, 506, 437, -460, 647, 331, -1125, 40, -2439, 972, -805, -1009, -1147, 1159, // 2780 165, 1655, -1399, -848, -510, 481, 1217, -699, -2036, -4257, 459, -795, 649, 1119, 2299, -2194, 1318, 254, 287, 449, // 2800 610, -224, -609, 995, 546, -274, 1656, 1215, 1138, 592, -851, -400, 639, 261, -1277, -40, -1253, -1460, -148, -3058, // 2820 440, -682, -523, -1526, 697, 1215, 187, -1029, 620, 211, -670, -1939, -82, -214, 349, -1181, -268, -491, -114, 2277, // 2840 -180, -625, -3251, -84, -465, -918, 1524, 1130, 951, -24, 207, -111, -13, 279, 2720, 618, 1900, 1219, 383, 242, // 2860 -823, 77, -936, 2, 766, 665, 273, 1015, 1424, -22, -1076, -893, 8, -274, -33, -80, 1434, -517, 305, 1265, // 2880 // Out channel 16 -187, -499, 589, -2246, -685, -547, 694, 1783, 669, -515, -456, -306, -542, -345, -166, 2187, 839, 1852, -302, 1403, // 2900 -1949, -757, 687, 579, 561, -369, 88, -73, -835, 198, -793, 24, 2187, -1575, -484, 220, 494, -225, 266, 1385, // 2920 -144, -1064, -1049, -529, 874, -689, -198, -1034, -476, 1271, -257, 485, 1076, -132, -1191, 494, 775, -1075, -1025, -459, // 2940 -33, -465, -643, 1558, 708, 3034, 238, 52, 2450, -532, 11, 797, -1041, 911, -49, -813, 939, 1184, 665, 872, // 2960 -811, 1043, -522, 861, -1998, 2695, -790, -438, -1056, 205, 477, 796, -330, -1350, -454, 878, -656, -1195, 153, -2262, // 2980 158, -714, 1290, 427, -993, 1079, 121, 424, 571, 469, -808, -979, -1553, 1169, 1819, -197, 462, 304, -2446, 592, // 3000 892, -515, 251, 1154, -1359, 694, 606, -762, 1100, -1235, -785, -208, 856, -82, 1938, 203, -67, 1100, 284, 589, // 3020 1167, 1364, -77, 1862, 1270, 868, -143, -829, -533, 30, -583, 520, -56, 1634, 68, 80, -1653, 406, -502, 1437, // 3040 643, 17, -574, -360, -603, 306, 26, 983, 1014, -376, -460, -1346, -952, -809, -234, 673, 45, -877, 372, 1105, // 3060 // Out channel 17 -2865, 110, -919, 1104, 1825, -2782, 143, 39, 586, 120, 662, 48, -297, -355, 220, -1190, 2247, 414, 489, 320, // 3080 715, -288, -1105, -1383, -913, -2190, -1653, 278, -397, -244, 300, -615, 1192, -510, -151, 739, 1176, -1527, 75, -430, // 3100 566, 1551, 752, 93, -366, -965, 31, 214, -22, -718, 818, 701, -306, -193, 655, -197, 503, -616, -277, -402, // 3120 2172, -119, 2307, -629, -1029, -1347, -1261, 1097, 1514, 637, -446, 189, 1181, -202, -179, 1266, -941, 1466, -1110, 862, // 3140 836, -559, 2278, 213, 302, 462, -662, -742, -399, -316, -45, 497, -96, -1716, -1031, 3283, -151, 1625, 692, -542, // 3160 738, -2021, 883, 590, 329, 1244, 563, 353, -304, -1558, 1007, -651, 644, 963, -1582, -223, 865, -1111, 302, 437, // 3180 102, -1084, -337, -237, -800, -1392, 267, -1102, -736, 323, 389, 226, 491, -496, -1006, 1962, -470, -373, -447, -576, // 3200 -456, -1045, -1388, -1766, -193, 427, -1641, 9, 601, -131, 948, 1405, 240, -175, -796, -657, -613, 426, 998, -187, // 3220 -672, -1790, 76, -1258, 591, 1666, -403, -2560, 923, -567, -322, -1014, 628, 1050, 1306, 1243, -337, 1027, -262, 422, // 3240 // Out channel 18 707, 1722, 216, 106, 649, -121, -580, 953, 17, -513, 828, 861, -591, -1492, -1094, 1101, 704, -664, 757, 498, // 3260 -606, -2198, 273, 649, -1455, -70, 629, -184, 44, -141, -1700, 118, 189, 72, 124, -936, 1025, -2018, -893, 956, // 3280 -1391, 2776, -1383, -244, -2149, 815, -1213, -286, -1, 1625, 285, 693, 160, -119, 812, -18, -378, 544, -1653, -295, // 3300 -2006, 740, -701, 217, 2334, -357, -734, 436, -348, -798, -913, -1350, -904, 442, 93, -1306, 737, 890, 1065, 860, // 3320 917, 443, 220, -276, 1198, -337, 913, 372, -743, 1051, 1622, -2056, 639, -305, -446, -743, -227, -17, -1213, -183, // 3340 -1662, 17, 148, 509, 1304, 36, 190, -827, 647, -411, 455, 45, 270, -563, 622, -139, 378, 1573, -197, 662, // 3360 610, -1132, -165, 1150, -17, 43, 773, 1503, -106, -466, -63, -139, -844, -790, 2673, -199, -1656, -676, -497, -266, // 3380 1766, 95, 849, 1296, -826, 161, -463, -286, -1515, 188, 77, 1227, -492, 1549, 1541, 955, -180, 341, -214, -276, // 3400 393, 418, 346, -363, 255, 424, 653, -24, -803, -720, 267, -23, 358, -244, 184, -598, -652, 900, 230, -789, // 3420 // Out channel 19 -52, 1316, -3718, 444, 1352, -933, 747, -110, -3487, 273, 803, -347, -143, -1824, 316, 372, 775, 415, 2331, -453, // 3440 539, -1838, -111, -502, -1385, 0, -158, -725, 788, 999, -187, -1539, -100, 809, -645, -520, 999, 1019, 1063, 1624, // 3460 -1331, 1922, -496, -79, -3, 940, -225, -2592, 253, 655, 2058, 228, 712, 408, -1012, -340, -355, 995, -1384, 1567, // 3480 42, 596, -1152, -296, 713, -297, -2053, -344, 230, 640, -931, -921, 1920, -296, -63, -846, -1188, 254, -423, -513, // 3500 1100, 527, 584, -621, 476, 227, -935, -1331, 313, 2092, 1285, -124, -33, -1912, -1325, 768, -1182, -70, 125, 464, // 3520 859, -2367, 1152, 420, 924, -577, -693, -620, -764, 352, 814, -348, 219, -511, -449, -253, -407, 1492, -674, 1735, // 3540 1609, 1853, 1878, 391, -787, -887, 520, 26, 622, -1391, 450, 46, -201, -252, 110, 1044, -1294, -355, 349, -2273, // 3560 1213, 985, 2812, 15, -2617, 596, -1305, 10, -1169, 41, -699, 403, -1031, 164, -679, -912, -26, -1962, -496, -168, // 3580 -281, -68, 64, -17, -1128, -1052, 107, -21, -1111, 333, 1043, -477, 45, -233, -1568, -106, -3287, 2503, -334, -2170, // 3600 // Out channel 20 -1636, 755, -301, 748, -197, -2270, 640, -349, 1257, 276, -628, -1252, -219, -408, -1011, -165, 804, -1933, 1010, 688, // 3620 -606, -866, -134, -309, -642, -498, 523, 960, 199, -418, -96, 676, 1703, 71, 440, -714, 597, -1263, 523, -587, // 3640 -1486, 427, -1018, 160, -556, -298, -750, 120, -868, -528, -498, -523, -1562, -787, 837, 975, 2700, 323, -368, -1166, // 3660 540, -1075, -281, 719, 282, -1843, -1393, 428, -175, -599, -637, 2769, -1321, 94, -1253, 575, -2410, 772, -843, 1503, // 3680 163, -327, 951, -1061, 227, -471, 148, -1482, -985, -1006, 3448, -1987, -113, -2595, -142, 1299, 947, 256, 218, -389, // 3700 -604, 488, 260, 1317, 886, 403, 1277, 246, 1142, -412, -1308, 537, 3419, -3, -236, 1347, 2748, 503, 1768, -1488, // 3720 -1070, -2407, 1442, -642, -1579, 371, -1064, 1136, -1072, 1264, -554, -1136, 497, -1557, -392, -30, -2645, -1009, -1105, 370, // 3740 -359, -983, -2311, -1649, -288, -1165, -1784, 647, 1826, -965, 2101, 1837, 23, -2423, 1024, -11, 184, 608, -265, -930, // 3760 193, 1379, -779, -2434, 366, 1374, -1045, -327, 1521, 1134, -292, -1140, -1100, 845, -40, 2307, -1112, -419, 264, 187, // 3780 // Out channel 21 1041, -1418, -544, 281, -210, 499, 379, -633, 1634, 956, -1078, -632, -17, -154, -1014, -329, -1284, -431, 6, 684, // 3800 788, 806, -563, -420, -89, -129, 143, 253, 189, 501, 906, 213, 48, 708, 551, -229, 110, 317, 1712, -309, // 3820 270, -845, 212, -1380, 406, 335, 979, 985, -64, -1016, -606, -1085, -1855, -113, 909, -107, 382, -587, 2, -1475, // 3840 245, -159, 743, 256, 350, -551, 387, 191, -290, -153, -42, 80, -65, 460, -1202, 217, -720, -220, -659, 263, // 3860 -109, -439, -150, 369, 798, -592, 330, -591, -936, -792, 1150, -1016, 368, 54, 1266, -803, 1262, 1159, 300, 541, // 3880 40, 173, 148, 281, 1103, 259, 191, 191, 598, 140, -209, 706, 1368, 1273, -732, -795, -103, -1043, 47, -500, // 3900 -1206, -829, -3, -1236, 402, -131, -21, -1544, 505, 1222, 741, 419, 171, 450, -226, -421, 295, -400, -1216, -42, // 3920 -12, -1044, -706, -223, 712, -920, 27, -460, 2791, 1084, 1105, -10, -624, -1424, 571, -1521, 946, -548, -170, 41, // 3940 -434, 607, -917, -380, 16, 600, -508, 729, 1684, 526, -974, -34, -178, 825, -724, 333, -189, -70, -662, -258, // 3960 // Out channel 22 -598, -361, 654, 1697, -1308, -1358, 1077, 778, 2724, 1269, -1776, 749, -276, -1094, -594, 231, 183, -747, -646, 1223, // 3980 -814, 472, -949, 1253, 371, -594, 1727, 779, 50, 809, 574, 937, 2008, -195, 1633, -1011, -629, -1534, 798, -236, // 4000 539, -419, -43, -3, -333, -460, 1396, 1207, -974, 301, -494, -446, -1604, -184, 2158, 1263, 248, -333, 129, -2848, // 4020 -258, 4, 1022, -11, 818, -1809, -482, -503, -391, -1051, 356, 557, -1626, -637, 21, -5, -1102, 879, -627, 2607, // 4040 1276, 224, 1201, -146, 314, -1676, 785, -548, -2792, -2405, 1064, 80, 496, -573, 1742, -862, 2431, 1000, -39, -693, // 4060 -1459, 294, 695, 495, 1093, 294, 1244, 1188, 583, 122, -804, -34, 643, -19, -1613, 484, 781, -617, 1054, -506, // 4080 -1127, -2108, -1355, -841, 1150, 251, -25, -139, 1410, 736, -1008, -1806, 373, -1036, -417, -1205, -636, -531, 1322, 1464, // 4100 -1114, -745, -3284, -386, -188, -1256, 151, 499, 942, 240, 1301, -255, -625, -395, 553, 1240, 454, 1587, -421, 634, // 4120 -392, 228, -1311, -1653, -102, 2057, 725, -1180, 1367, 1036, 53, -253, 1101, 319, 816, 888, -274, -20, 1876, 664, // 4140 // Out channel 23 1198, -858, 1895, 187, -346, 2252, 524, 107, 521, 1526, -2404, 443, -115, 1257, -718, 1836, -1623, -1402, -904, 448, // 4160 589, 1843, 1127, 931, 385, 447, 428, -508, 74, 1107, 956, 175, 866, -405, 882, -1640, -722, 723, 143, -911, // 4180 67, -1029, -1284, -2227, 395, 969, -19, 581, -1634, 209, -2387, -269, -2345, -1233, 1866, -647, 576, -350, 105, -940, // 4200 -1968, 871, -130, 897, 842, -353, 2251, -1170, -866, -633, 1574, 1331, -575, -960, -1667, -1408, -960, -386, -628, 303, // 4220 -1056, -67, -659, 671, 693, 466, 1193, 129, -1679, -1751, 11, 308, 1385, 310, 2024, -819, 1050, 975, 207, -171, // 4240 -985, 1233, -314, -530, 1342, -64, 1056, 1389, -349, 673, -63, -84, -493, 23, -251, 172, -1349, -919, 843, -2227, // 4260 1113, 410, 121, -2336, 693, 1235, 922, 428, 2051, 678, -47, -348, 405, 302, 727, -2760, 710, 557, 398, 1141, // 4280 -132, 341, -1729, -686, 601, -923, 2051, -337, 473, 1225, -515, -672, -487, -386, 3058, -647, 2016, 355, -212, 232, // 4300 595, 322, -197, -202, 176, -539, 447, 1128, 40, 1227, 905, 894, -426, -1122, 499, -742, 69, 650, 788, -343, // 4320 // Out channel 24 -1421, -131, 1211, 576, -602, -1128, 657, 215, 2990, 549, -555, -282, -873, -103, 1333, -104, -94, -313, -835, -541, // 4340 -610, -844, -2268, 78, 890, -2220, 740, 635, -1520, -404, -1130, 418, 1713, -87, 637, 695, -1063, -2056, -390, -837, // 4360 1475, 664, 699, -565, -156, -1619, 1013, 791, -1266, -1115, 577, 325, 820, -93, 382, -251, 1502, 833, -361, -1112, // 4380 626, -87, 627, 1059, 760, 61, -82, 297, 274, 289, -618, 1428, 103, 186, 1157, 745, -147, -106, 61, 806, // 4400 708, -367, 1378, 74, -354, -193, 31, -502, -1888, -980, -121, 123, -666, 793, -761, 963, 2161, 622, -477, -187, // 4420 -758, -549, 2132, -838, 643, -171, 1389, -67, -419, -406, -132, 403, 629, -985, 270, 268, 2147, -793, 350, 1042, // 4440 -402, -3626, 54, 1294, -375, -981, 556, 211, 37, 1092, -1651, -397, 952, -759, 115, 181, -661, 61, 748, 1642, // 4460 -888, -537, -1403, -996, 408, 91, -1289, -868, 3, 544, 1703, 966, 881, -318, -875, 684, -1475, 2584, -838, 568, // 4480 -1143, 854, 94, -1332, 401, 1719, 858, -781, 1957, -926, 660, -270, 1359, 154, 1737, 2315, 806, -1619, 151, 2123, // 4500 // Out channel 25 320, -1953, 1834, -26, -623, 1612, 139, -1112, 534, 633, -1199, -1070, -339, 1855, 150, 138, -1710, -155, -316, 60, // 4520 -99, 1583, 723, -23, 941, 333, 430, 910, 844, -15, -369, 316, 985, 803, 1375, 908, -1271, 658, 74, -1421, // 4540 -626, -495, 289, -441, 169, -115, -749, 433, 42, -1591, 662, -626, -540, 916, 1156, 1161, 532, 207, 2410, 124, // 4560 -297, -142, 225, -112, -877, 897, 1962, 717, -667, -119, 1389, 504, -1219, -88, -879, 865, 539, -1478, -261, 969, // 4580 -1021, -376, -743, 298, 104, -1697, 294, 1041, -639, -1978, -336, -355, 215, 1215, 2440, -1256, 1404, 289, -13, 1163, // 4600 -202, 2199, -659, -1465, -339, -435, 1137, 716, 723, 2, -409, 591, 1662, -11, -230, 669, 911, -738, 646, 497, // 4620 -960, -504, -590, -107, -148, -211, -1540, -381, -297, 2570, -915, 282, -1659, -565, -427, -708, 1765, 394, -641, 1154, // 4640 767, -944, -331, -292, 1201, -331, -63, 290, 1610, -491, -322, -809, 1556, -79, 63, 210, 206, 1647, -656, -726, // 4660 908, 1259, 221, -290, 1328, 900, 545, -252, 573, -277, -43, 1363, -832, 494, -538, 814, 1727, -2659, -636, 1190, // 4680 // Out channel 26 820, 172, 319, -110, -314, -360, 371, 468, 490, -72, -635, -1225, -142, -800, 1057, -358, 655, -230, 397, 185, // 4700 -57, 962, -410, -965, 88, -131, -415, 284, -864, -62, -107, -89, -1105, -202, -860, -1033, 1505, -152, -684, -644, // 4720 -345, 804, 598, 625, 159, -115, 594, 324, 79, 1172, 1342, -155, 213, -719, -196, 914, 233, -16, 827, -254, // 4740 -398, 892, 157, -366, 758, -562, -595, 34, 70, 53, 37, -378, -472, -366, 958, 492, 97, -218, -547, 263, // 4760 387, 459, 1258, 743, -111, 162, 1065, -245, -921, -17, 371, -180, 1048, 105, 69, 318, -330, -154, 645, -1205, // 4780 -206, 114, 254, 406, -873, -677, -185, -378, 370, 232, -238, -760, 716, 206, 377, 586, 86, 212, -27, 150, // 4800 171, -836, -378, 1193, -115, -841, 132, -689, 796, -91, -148, -234, 835, -283, 453, 695, -688, 1170, 936, -746, // 4820 300, 1, -212, 523, 230, 45, 376, 1017, -2013, -392, -375, -395, -1197, -1373, 892, 1395, -317, -220, -337, -150, // 4840 -338, 266, -364, -509, 572, 195, 259, -720, 765, 655, -629, -1219, 27, 404, -171, 740, -214, 630, -78, -35, // 4860 // Out channel 27 3409, -224, 1118, 74, 725, 1427, -366, -1106, -1557, 263, -1318, 929, 182, -305, -7, 957, -2883, 57, -1149, -401, // 4880 532, 632, -123, 182, 1278, 1146, 306, 67, 464, -928, 1107, -692, 18, 406, 671, -914, -1765, 884, 367, -518, // 4900 613, -763, 230, 182, 602, 1931, 350, 1340, -149, -1066, -746, 219, -1013, -570, 1022, -838, -1166, 66, 1294, -978, // 4920 -685, -237, -69, 43, 59, -23, 2259, -198, -724, 1066, 889, -896, 1295, 584, -498, -765, 553, -1373, -637, -285, // 4940 -239, -1471, -644, 407, 443, 572, 758, 669, 254, -1295, -2383, -19, -20, 2288, 288, -2418, 306, 1296, 951, 114, // 4960 426, 1026, -68, -518, 632, -1229, 502, 676, -1789, 1258, 860, -907, -1668, 25, 374, 190, -1440, -1260, -1357, 162, // 4980 -1839, 2161, -1327, 709, 2903, -523, -804, 801, 1202, -336, 1250, 550, -232, 1200, -1047, -2236, 1413, 87, 2724, 498, // 5000 -273, 595, -1109, -628, 833, 328, 856, 180, -470, 1416, -1724, -1825, 118, -510, 1877, -452, 755, 971, -462, 584, // 5020 -1093, 46, 625, -87, -212, -1984, 1191, -293, -1406, 164, -23, 762, 80, -1368, 505, -601, -163, 2256, -409, -1911, // 5040 // Out channel 28 -3405, 757, -2361, 841, 379, -1180, -179, 252, 688, -638, 1222, -1641, -389, -178, -381, -1325, 3603, 454, 1564, 513, // 5060 -1201, -1953, -1197, -921, -948, -1851, 211, 118, -624, -213, -494, 60, 1023, -229, 498, 721, 1576, -1470, 599, 929, // 5080 -478, 1590, 207, 1167, -395, -1434, -194, 250, 87, 314, 809, -731, -141, 785, -544, 399, 1358, -1044, -2116, -330, // 5100 2284, -264, 1439, 1532, 390, -621, -4778, 24, 423, 13, -475, 748, 393, 457, 1402, 1019, -1116, 750, 31, 296, // 5120 595, 522, 1026, -886, -684, -90, -1658, 338, -500, 586, 1847, -116, 100, -3911, 313, 2345, 453, -111, -1239, 71, // 5140 -7, -621, 925, 103, 495, 516, -605, -319, 415, -2070, -1706, 955, 1536, 1468, -867, 115, 958, 146, 331, 510, // 5160 1081, -1791, 1706, 702, -1661, -780, 254, -60, -1836, -595, -320, 380, 1059, -1048, 1224, 1923, -1603, -797, -1397, 145, // 5180 86, -134, 341, -1410, -1306, -1544, -2099, -98, 479, -701, 1618, 842, -58, -344, -887, -284, -1202, -605, -355, -876, // 5200 646, 217, 231, 123, 572, 1772, -562, -940, 30, -1547, -449, -455, 354, 726, 290, 2376, -162, -1241, 299, 1478, // 5220 // Out channel 29 -48, -2030, 316, 854, -1074, -811, -18, -203, 966, 1203, 340, -1870, 795, -1212, 1490, -1591, -44, -561, 180, 770, // 5240 630, 957, -256, -673, 16, -34, -1028, -350, -259, -591, 1891, -269, 191, 95, -129, 1629, -822, 839, 749, 171, // 5260 775, -315, 704, -162, 1292, -1429, 758, 1663, -1897, -1655, 216, -176, -318, -773, 861, 976, 451, -1192, -130, -71, // 5280 2316, -875, 1933, -324, -783, -1373, 702, 54, 367, 676, 635, 627, -209, 398, -38, 1850, -121, -442, 222, 551, // 5300 -549, -1565, 1270, -83, -15, -780, -742, 612, 534, -1405, 140, -323, -927, 1004, 206, 667, 1125, 620, 429, -893, // 5320 1505, -57, -220, -858, 40, -378, 128, 385, -504, 94, -10, -183, 582, 1145, -1955, -422, -594, -1943, 802, -101, // 5340 -937, -1574, -358, 684, 1170, -1576, -673, -1601, -1735, -50, 34, -197, 780, -220, -1307, 315, 1056, -366, 647, 1165, // 5360 -1499, -21, 284, -2055, 1047, -711, -421, -482, 506, 55, 126, -1952, 53, 486, -1306, -61, 268, 830, 154, -155, // 5380 -528, 386, -1562, 81, 76, 153, -1182, -1343, 558, -7, -797, -255, -656, 507, 33, 479, -186, -18, 347, 334, // 5400 // Out channel 30 -398, -425, 1397, 639, -2205, -416, 942, -146, 3660, 924, -1220, -1277, -502, -145, -760, 436, -826, -1435, -656, 650, // 5420 -258, -505, -958, 642, 597, -1607, 1708, 1010, 586, 340, -770, 1340, 1705, -557, 1982, -882, -1121, -1628, -8, -849, // 5440 -250, 459, -676, 188, -164, -304, -103, 788, -643, 550, 910, 132, -1124, 361, 1391, -421, 1055, 360, -218, -2718, // 5460 1593, 324, 163, 1847, 803, -1492, -943, 261, -997, 13, 195, 1170, -1384, 896, -945, -937, -576, -861, -667, 1991, // 5480 800, -381, 1220, 1027, 1900, -784, 1201, 497, -3755, -890, 473, -845, 551, 381, 1209, -1455, 2684, 510, -1190, -398, // 5500 -1198, 250, 1272, 25, 1749, -306, 1307, 522, 1455, 736, -1612, 29, 1037, -3, -140, 492, 1216, -783, 2469, -926, // 5520 -157, -2676, -835, -263, 837, -771, 154, 1203, 294, 1643, -687, -1187, 1272, 267, -264, -520, -1226, -359, 918, 1918, // 5540 -837, -1118, -2562, -1551, 67, -1439, 593, 1184, 1681, 20, 268, 978, -96, 79, 278, 754, 58, 2485, -1453, 566, // 5560 -1065, 288, -672, -1290, 486, 2440, 72, 210, 3856, -901, 481, -202, -505, 206, 1323, 974, 33, -1181, 1311, 1176, // 5580 // Out channel 31 240, -1311, 764, -1353, -1048, 543, 136, 1025, -289, -733, 71, -947, 439, 1405, -345, 88, -59, -448, -384, 510, // 5600 410, 1982, 1222, -1761, -1132, 1370, -1529, 368, 579, 658, 1352, -790, -164, -1025, -1385, 1293, -489, 2177, 1171, 267, // 5620 507, -1760, 276, -540, 1738, -479, 50, -426, 410, -276, -248, -55, 1014, -369, -279, -1130, 470, -2055, -339, 832, // 5640 -572, -775, -459, 633, -44, 416, 1715, 102, 1398, -977, -795, 900, -587, 794, -27, 1034, -338, -372, 649, -975, // 5660 -1986, -731, -721, 826, -1204, 71, 478, 1139, 1735, -447, 604, -310, 1137, 1032, 397, -125, -1301, -1249, 192, -402, // 5680 1085, 371, -301, -529, -400, 339, -420, 385, 534, 845, -816, 387, -352, 1345, 1038, -138, -370, 837, -1095, -565, // 5700 335, -483, 1640, 36, -1766, 959, -328, -523, 61, 115, 1071, -10, -108, 19, -14, -258, 1109, -36, -1492, -720, // 5720 1018, 985, 1010, 892, 346, -241, 26, -551, 897, -155, 728, -879, 841, 289, -1040, -478, 1209, -34, -648, 71, // 5740 951, 80, 706, 366, 1254, 842, -1604, 692, -347, 1623, -1737, 964, -1563, 413, -274, -325, 535, -1540, -1870, 1259, // 5760 // Out channel 32 -3244, 79, -1435, 193, 1254, -1278, -912, 684, 1627, -520, 863, -1200, -894, 275, 208, -1138, 2184, 470, 2021, 134, // 5780 -1198, -1922, -1613, -1173, -184, -1617, -118, 396, 224, 454, -953, 481, -274, 527, -1807, 1370, 1349, -892, -718, 710, // 5800 -1572, 1330, 879, 1328, -921, -2128, 114, -885, 306, 799, 1124, 133, 831, 1019, -1379, 127, 576, 716, -1890, 52, // 5820 1072, -643, 618, 1014, -88, 249, -3045, 1410, 859, 128, -876, 804, -154, -6, 569, 520, -766, 1130, -16, 894, // 5840 256, 72, 434, -740, -390, -740, -1249, -349, -406, 1396, 1973, -763, 338, -3150, -191, 3615, -864, -575, -762, -378, // 5860 -187, -1483, 498, -287, -143, 1699, -95, -461, 713, -860, -1590, 1165, 893, 151, -230, 390, 1522, 1145, -267, 1392, // 5880 285, -2351, 1400, 2385, -1983, 128, 183, -57, -3046, -422, -531, 91, 378, -1509, -291, 2669, -703, 965, -1999, 367, // 5900 21, 1037, 708, -719, -642, 225, -1044, -79, 1203, -920, 2260, 2129, 365, 397, -1692, 73, -430, 858, -1640, -445, // 5920 602, 694, 221, -222, 319, 2293, -1124, 393, -610, -361, 1172, -1655, 1083, 576, 346, 2205, -124, -1420, 149, 1445, // 5940 // Out channel 33 -1012, -925, -683, 1310, 325, -645, 550, -2051, -696, 341, -175, -1663, 84, -86, -246, -2926, -153, -13, 277, -1846, // 5960 2067, 842, 275, -582, -958, 333, -2732, 645, 350, 54, 1991, 200, -1297, -89, 302, 584, -897, 938, 1013, 307, // 5980 969, -715, 1986, 426, 1918, -648, 1693, 382, -277, -1546, 1021, -392, -702, 536, 503, -783, -929, -576, 717, 55, // 6000 2911, -71, 1292, -1671, -2126, -128, 165, 144, 234, 1663, -541, -548, -436, -916, -286, 1934, -390, -621, 856, -962, // 6020 -40, -2431, 1466, 474, 761, -1488, -175, -163, 1665, -878, 28, -560, -456, 1328, 1194, 912, 190, -282, 542, 1517, // 6040 1769, 29, -463, -88, -905, -356, -973, -726, -622, 533, 629, 263, 1443, 1094, -2783, -66, -1217, -1074, 411, 679, // 6060 -147, -496, 110, -702, -144, -1155, -97, -605, -741, 915, 1725, 246, -1000, -195, -3123, 590, 248, 726, -1059, -670, // 6080 -33, -1184, 176, -2055, 802, -757, -915, -392, 907, 338, 977, -840, 724, -1398, -685, -1482, 1264, 464, 1628, -1434, // 6100 1314, 953, 788, 1459, -1104, -350, -600, -1842, -341, -115, 60, 1499, 514, 812, -714, -1130, -498, 744, -445, -1649, // 6120 // Out channel 34 138, 988, 952, 1631, 198, 731, 1357, 579, 5, 1366, 77, 50, -289, 169, -637, 1071, -184, -410, -222, 1256, // 6140 -1372, 240, 789, 34, 832, 806, 908, 1049, 534, -384, -1243, -38, 1267, -1083, -465, -565, 727, -772, -368, 865, // 6160 671, -104, -1169, -414, 713, 399, -454, -392, 215, 1093, -1420, -446, -998, -1397, 399, 958, -1158, -767, -1219, -489, // 6180 -311, 6, 773, -356, 182, -530, -472, 30, 392, -311, 379, -1496, -554, -1634, -474, -853, -243, 1186, -750, 639, // 6200 192, 372, -1856, 131, -732, 548, 1330, -1050, -1189, -488, 802, -76, 193, -142, 676, -1661, -949, -376, -1371, 397, // 6220 294, 593, 37, 2336, -202, 999, 171, 546, 1160, -791, -529, -546, 149, 1225, -157, -70, -21, 29, -80, -1221, // 6240 861, 609, -436, -1299, 703, 638, 1110, -849, -380, -681, -46, -19, 322, -1292, -152, 1, -737, -46, 63, 658, // 6260 777, 199, 136, 705, -773, -732, 1027, 2271, -393, -80, -1426, 332, -854, 719, 1840, 1319, -243, -1123, 1573, 255, // 6280 684, 899, -49, 1111, -54, 524, -472, 1050, 995, 33, -51, -1218, -731, 24, 590, 558, 811, 1344, 669, -866, // 6300 // Out channel 35 16, 414, -3202, -1100, 566, -1654, -419, 713, -494, -444, 2275, -937, -205, -565, -943, 15, 1486, 812, 2386, 705, // 6320 -1664, -1668, -51, 564, -419, -222, 129, -734, -235, 445, -623, -98, 238, 142, -358, -37, 1590, -416, 795, -79, // 6340 -2017, 1657, 124, 1067, -959, -641, -1218, -540, 313, -347, 811, 290, 759, 859, -2744, -382, 465, -126, -3688, -264, // 6360 -1068, -227, -654, 954, 1029, 450, -3535, 1082, 261, -991, -1938, 149, 203, 517, 1160, -287, -1445, 1282, 1159, 1013, // 6380 1047, -710, 135, -1486, 106, 742, -2013, 718, -60, 1899, 1360, -571, 962, -4999, -1452, 2493, -1053, -628, -571, 593, // 6400 -388, -2227, 1020, -798, 441, 3024, -957, 345, 25, -401, -534, 70, 1001, -368, 157, 1388, 459, 902, 312, 1283, // 6420 -66, 778, 2200, 1705, -2840, -192, 428, 755, -490, -698, -50, 711, -99, -601, 1255, 1504, -1654, 739, -1080, -1208, // 6440 57, 337, 1146, 749, -310, 334, -952, -673, -154, -743, 514, 1146, 100, 90, -502, -273, -1004, -1385, -705, 151, // 6460 64, -327, 740, -817, 131, 547, -891, -260, -335, -473, 540, -1338, -254, -471, 827, 1285, -1365, -634, 203, -198, // 6480 // Out channel 36 2779, -776, -455, 1774, -1448, 2269, -50, -1846, -133, -169, -928, -380, -1261, -536, 1098, -28, -2603, -1735, -2282, 82, // 6500 669, 206, -836, 1092, 2368, -161, 1738, 1026, 611, -255, 1353, 1776, -504, 55, 3239, -852, -1400, -324, -972, -2311, // 6520 6, -289, 695, -450, -521, -39, -334, 1913, 128, -1241, -20, -303, -2403, 21, 1785, 721, -157, 934, 1822, -91, // 6540 -1047, 277, 1515, -529, 560, -349, 1093, 708, -1663, -217, 939, -212, 331, -218, -564, -199, 44, -1993, -862, -276, // 6560 146, -21, -187, -178, 1387, -356, 1098, 122, -1426, -1040, -1800, 97, 18, 2308, 1928, -2616, 3479, 419, -311, 987, // 6580 -1006, 786, -789, -258, 263, -1740, 605, 51, -621, -840, 92, 995, 625, -31, -423, 581, -1494, -706, 2055, -67, // 6600 -276, 642, -689, -474, 1838, -1549, -2011, 276, 1104, 1957, 198, -1007, -850, 720, 294, -2589, -382, -1859, 995, 1078, // 6620 -475, -2318, -1397, -518, 385, -676, 621, -335, 1348, -395, -1006, -1984, 1025, 188, 432, -304, 712, -32, -1052, 81, // 6640 -623, 548, 677, -998, -154, -393, 2511, -265, 1492, 189, 824, -327, -120, -417, -212, -210, -175, -12, -616, -23, // 6660 // Out channel 37 -735, 719, -1212, 2102, -124, -1656, 61, 638, 1380, 910, 39, -1361, -175, -403, -674, -1187, 1271, -112, 534, 171, // 6680 770, -232, -1427, 391, 838, -465, -882, 1595, -26, -669, 77, 291, 1140, -72, 537, -215, 50, -595, -673, -363, // 6700 -135, 540, -752, 353, 1168, -387, 718, 473, -2333, -693, 1178, -239, -803, -232, 1281, 958, -580, -470, -419, -771, // 6720 1176, 246, 2176, -275, -352, -1807, -647, -535, 911, -867, -193, 848, -1462, -1047, -199, 781, 455, -728, -1422, 1529, // 6740 783, 324, 2346, -345, 932, -989, 343, -1452, -73, -1192, 735, 411, 63, -788, 922, 618, 692, 1443, -17, -247, // 6760 439, -994, 508, 781, 251, -548, 186, -33, -201, -1089, -691, -437, 2077, 482, -2598, 138, 421, -84, 1508, -130, // 6780 -872, 143, 52, -1382, 159, 275, 57, -119, 843, 584, -413, -935, 198, -863, -804, 839, -3251, -136, 303, 707, // 6800 177, -822, -842, -1393, 384, -1764, -605, 1378, 1825, -34, 1655, 212, -887, -177, 476, -22, 666, 1524, 80, -915, // 6820 414, 366, -1115, -1157, -373, 1014, -633, -1314, 17, 134, 136, -102, 84, 16, 276, -761, -923, 1338, -166, -455, // 6840 // Out channel 38 1186, 718, -179, 1185, -581, 1165, -326, -206, -1882, -582, -115, 431, 213, 159, 10, 315, -834, 535, -326, -770, // 6860 165, -786, -197, 388, -477, -20, -547, -328, -293, -1231, 790, -1397, -449, 153, -583, 185, -839, 979, 1192, 817, // 6880 -431, -593, 454, -1135, 203, -512, 637, -457, -507, -303, 491, 433, -15, -144, 77, -1343, 264, 1662, 224, -75, // 6900 -773, 1012, 446, -19, -777, 414, 547, -15, -894, 12, -689, -1204, 826, -634, -292, 656, -355, 550, -37, -1326, // 6920 -104, 84, -1473, -267, 741, -412, -303, -198, 1380, 1290, 123, 892, -638, -791, -301, 125, -326, -2, 807, 224, // 6940 -101, 856, 53, -104, 194, 1340, -217, 1310, -1852, 49, 1193, 395, -1312, -854, -934, 394, -509, -999, 48, 1163, // 6960 881, 822, -9, 348, -916, -166, 138, 556, -543, 140, 222, 636, -102, -153, 444, -511, -604, -547, -431, -1076, // 6980 -1232, 477, -657, 428, -227, -682, 86, -250, -333, -19, -250, 218, -522, -985, 920, -1635, 121, -1144, 290, -178, // 7000 316, 384, -371, 112, -122, -367, 823, 244, 366, -156, 793, 182, 916, -29, -537, -298, 1058, 789, 589, -369, // 7020 // Out channel 39 1994, -475, 2386, 912, -503, 2390, -372, -1217, -194, 744, -1419, 1498, 257, -294, 315, 916, -3141, -137, -1714, -688, // 7040 576, 1890, 1119, 380, 1852, 1002, 48, -233, 180, 63, 145, 571, -483, -518, 1114, 122, -1530, -474, -485, -1543, // 7060 511, -1874, 45, 421, 460, 1503, 1018, 1561, -825, 74, -1444, 410, -1499, 120, 2185, 197, -1261, -217, 3989, -770, // 7080 -185, -967, -483, -226, -541, -291, 3316, -2121, -921, 420, 1663, -806, 223, -628, -803, -564, 1548, -1567, -806, -188, // 7100 598, -545, -875, 1038, -256, -1052, 1470, 1375, -378, -1756, -1131, 934, -763, 3946, 1827, -3369, 1126, 585, 566, 555, // 7120 -66, 1536, -1697, 468, -58, -2672, 663, -455, -652, 440, 155, -98, 894, -694, -254, 476, -2310, -464, -314, -1815, // 7140 -1108, 979, -1198, -730, 3540, -554, -80, -221, 1066, 1193, -29, -688, -287, 916, 487, -2544, 1311, -549, 1899, 1058, // 7160 -645, -926, -1360, -99, 1718, -45, 1060, 824, -812, -530, -1645, -1456, 540, 1422, 287, 337, 628, 1197, -579, -518, // 7180 567, 230, -207, -289, -253, -994, 1838, 407, 117, -201, -565, -567, 245, 333, -750, -911, 795, 776, -710, -766, // 7200 // Out channel 40 -631, -974, 1220, -1476, -276, 1092, -675, -128, 3112, -1038, 319, 446, -1850, 1729, 1181, -15, -463, 387, -518, 81, // 7220 -1720, -960, -314, 489, 1367, -1445, -44, -423, -2067, -1878, -958, 1244, 844, -1668, 338, 2587, 274, -2481, 189, -249, // 7240 767, -976, 999, 1229, -2140, -813, -48, -1442, 1564, 811, 673, 969, 1418, 135, -1838, -25, 1052, -39, -224, -226, // 7260 -789, -469, 193, 998, -1274, 1561, 257, 1932, 3, -67, 556, 982, -49, 2762, 1945, 94, 1848, -626, 904, -296, // 7280 -167, -840, -808, 294, -1204, -1390, -1134, 881, -1147, -956, -537, 335, -965, 322, -636, -120, 1510, -652, -785, -813, // 7300 -271, -960, 63, -718, -526, -564, 1407, -1575, 809, -484, -240, 671, -174, -169, 762, 315, 1681, -55, 232, 972, // 7320 -453, -2233, -109, 1001, 141, -511, 149, 83, -958, 2257, -2086, -1894, 349, 612, -515, 261, 1084, -89, 644, 2238, // 7340 -182, 397, -1028, 250, 1695, 1705, 262, -1584, -754, -686, -603, -93, 2311, 765, -1814, 1274, -2791, 2810, -711, 1201, // 7360 -144, -1322, 811, 25, 1616, 46, 809, 726, 699, -1912, 461, -80, 499, -556, 1858, 1709, 3576, -5080, 214, 3926, // 7380 // Out channel 41 -526, -2399, 1908, 238, -675, 284, 2034, 120, 1633, 919, -930, -1118, 2014, 257, 613, -512, -413, 334, -938, 617, // 7400 -129, 2045, 1078, -407, 502, 1019, -58, 310, 701, -518, 206, 243, 1583, -1778, 171, -656, -880, 231, 1279, 546, // 7420 1416, -1271, 406, -363, 851, -1427, 7, 1356, -1537, -589, -1620, -1458, -54, -1271, 713, 213, 421, -1737, 1755, -1104, // 7440 89, -553, -44, 1206, -1737, 552, 446, -584, 1736, -521, 993, 284, -81, 1808, -2233, 1913, -309, 64, -1403, 88, // 7460 -603, 38, -1489, -440, -847, 778, 861, -902, -803, -3890, 177, -151, -717, 1654, 952, -712, 163, 530, 430, -131, // 7480 1228, 586, 360, 324, -176, -55, -639, 796, 84, 144, 292, -1901, -1136, 1057, 48, -250, -1831, -2204, -436, -1465, // 7500 -969, -838, -199, -1324, 612, 417, 348, -651, 495, 880, -120, -571, -536, -370, -644, -565, 842, 800, -721, 1914, // 7520 -1141, -314, -2060, 1371, 1954, -308, 961, -318, 1116, 337, 269, -1022, 775, -286, 268, -114, 252, 2196, 1398, 1340, // 7540 355, 328, -831, -326, 1052, 936, -428, -672, 960, -381, -1754, -266, 373, 1474, -240, 157, 1442, -1023, -255, 1250, // 7560 // Out channel 42 -1462, -937, -1612, -9, 879, -1245, 179, 574, -520, -592, 1523, -388, -4, 60, 154, -831, 1202, 1047, -465, 414, // 7580 -909, -598, -382, -1344, -1465, -1162, -947, 26, 666, 779, 435, 120, 521, -139, -139, 796, 557, 524, 165, 1075, // 7600 -845, 518, -388, 213, 261, -1550, -539, -1052, -965, -478, 215, -1039, 1309, -350, -950, 118, -257, -1105, -593, -30, // 7620 2140, -80, 81, -316, 105, -415, -902, 243, 540, 505, -1435, 725, 724, -1669, 1220, 1135, -745, 1160, 147, -496, // 7640 1213, 127, 712, -993, 466, 1042, -1223, 59, 279, 763, -35, -306, -719, -2589, -1488, 2189, -1892, -850, -455, -36, // 7660 143, -430, 1089, 217, -670, 625, -868, -498, 243, 160, 420, -840, -514, 1110, -556, 495, 923, 319, -161, -25, // 7680 1540, -277, 1217, 391, -1138, 100, 748, -291, -1062, -1000, -395, 730, 775, -736, -244, 2397, -460, 1165, -1028, 155, // 7700 796, 1704, 824, -1065, -1497, 479, -1232, 38, -563, -388, 229, 1017, 74, 493, -761, 232, 470, -579, 617, -474, // 7720 168, 32, 92, -391, -252, 890, -916, -1181, -217, -885, -787, -740, -253, 591, -32, -289, 427, 1047, -197, -202, // 7740 // Out channel 43 -356, 528, 184, 1298, -646, -1505, 1139, 827, -1079, 2258, -547, -1269, 776, 282, -802, 364, 652, 453, 218, 216, // 7760 1002, 2015, 693, -581, -115, 1575, 73, 722, 280, -67, 369, -309, 1237, -189, -1436, -1160, 1207, 789, -67, 714, // 7780 1152, -514, -520, -225, 44, -589, 1113, 497, -184, 463, -2385, -1312, -660, -321, 759, -585, -1139, -1442, 1268, -386, // 7800 399, -521, -171, 1224, -334, -1089, 84, -1086, 1459, -340, -20, -831, 276, -1523, -264, 454, -135, -211, -343, -1205, // 7820 -103, 74, 960, -560, 534, -238, 629, 298, -204, 126, 363, 117, -510, -175, -1141, -54, -839, -246, 531, -546, // 7840 -86, 57, 1133, 233, -410, 416, -826, 1115, 31, 1756, -508, -956, -999, 396, -648, -1100, -163, -824, -492, -718, // 7860 352, 739, -126, 634, 959, 1146, 341, 278, 546, -854, 364, -169, 1605, 529, -1080, 260, -456, 405, 46, 554, // 7880 -472, 218, 643, 679, -308, -803, -416, 893, -499, -1163, 481, -945, -298, -1352, 1672, 286, 959, -570, 222, 91, // 7900 -526, 22, -1220, -16, -255, -1499, -1154, -1225, 264, 733, -1623, -882, -684, 730, -1290, 144, -683, 1545, -451, -1122, // 7920 // Out channel 44 -864, 992, -1625, 483, 676, -876, 540, 156, 335, 601, -499, -1209, 339, -562, -2091, -242, 338, -989, 265, -170, // 7940 2112, 566, -1222, 627, -819, -403, 644, -319, 630, 1672, 392, 443, 795, 552, 563, -1715, 279, -282, -29, -22, // 7960 -1559, 743, -1013, -647, 340, 223, -63, -291, -614, -80, -346, -634, -233, -115, 2316, 268, -310, -334, -1051, -198, // 7980 16, 127, 679, 0, 312, -3010, -2238, -310, 452, -139, -489, 717, -737, -908, -911, -635, -2020, 276, -1297, 255, // 8000 1823, 484, 1673, -834, 826, -12, -214, -1104, -1492, 171, 1713, -1166, 485, -1222, -784, 39, 349, 165, -200, 269, // 8020 441, -558, 456, 539, 1947, 1163, -993, 720, -659, 244, -457, -75, 1513, 267, -735, 175, 703, -185, 405, 24, // 8040 869, -234, 649, -277, -1510, 1211, 539, 460, 533, -777, 300, 390, 725, -1227, 597, -637, -1373, -252, -20, -176, // 8060 -240, 391, -269, -1342, -1611, -1269, -1197, 592, -264, -35, 1846, 581, -970, -1273, -443, -1449, -365, -2162, 714, -1581, // 8080 -701, 1773, -1381, -550, -1131, 353, 404, -1065, 980, 798, 134, -189, -927, 381, 791, 355, -3752, 2170, -670, -1763, // 8100 // Out channel 45 -669, -1104, 1575, -327, -856, 2073, -497, -1685, 1165, -114, -98, 679, -116, 2268, 1289, 363, -433, -292, -1198, -315, // 8120 56, 2850, 973, 597, 961, 2001, -1270, 434, -504, 112, 1426, 1618, -562, -419, 835, 664, -1800, 583, 1098, -1048, // 8140 1298, -1531, 753, 73, -283, -768, 1056, 2027, 731, -1055, -1549, -274, -108, -160, 1370, 658, 497, 832, 2247, 303, // 8160 139, -592, -421, 913, -1530, 1440, 3568, 773, 0, 223, 829, 183, -546, 70, -148, 130, 1467, -1768, 12, 65, // 8180 -2717, 114, -901, 483, 148, -786, -449, 1386, 805, -2562, -407, 1124, -681, 2116, 1557, -252, 144, -293, 116, 503, // 8200 383, 3645, -1300, -419, -1455, -289, -328, -563, 560, -99, -989, -566, -507, 677, -459, 468, -624, -69, 638, -706, // 8220 -196, -361, -1247, -264, 945, -218, -602, -1045, -619, 1861, 88, -939, -1499, 232, -671, -843, 564, 31, -174, 1151, // 8240 266, -571, -565, 104, 1419, -209, 734, 52, 901, 107, -987, -197, 1549, 865, -1054, 328, -306, 1502, 433, -100, // 8260 150, 337, 1010, 915, 1594, 1177, 485, -389, -341, 350, -308, -87, -516, 645, -968, -534, 2846, -2433, -154, 2331, // 8280 // Out channel 46 954, 632, -903, -1060, 1245, 1019, -1286, -525, -5693, -1100, -28, 1238, 179, 586, -278, 368, 328, 1326, 421, -325, // 8300 641, 469, 1916, 995, -1774, 811, -1334, -136, 658, 574, 215, -170, -817, 232, -1065, 2, 1333, 3069, -180, 1289, // 8320 654, 332, -876, -83, -79, 1457, -1073, -1998, 1303, 540, -615, -508, 435, 104, -2445, 200, -787, 264, -203, 2166, // 8340 -671, 299, -457, -255, -123, 238, 629, -812, 1226, 658, -692, -866, 1931, -413, -145, -601, 31, 763, -534, -2018, // 8360 -762, 863, -1721, -468, -1145, 950, -235, -535, 2814, 1793, -327, 6, -204, 1338, -2014, -10, -1741, -735, 270, 293, // 8380 -303, -735, -518, 612, -1319, 434, -1968, 1010, -211, 201, 1591, 699, -824, -951, -677, 330, -2008, 576, -1722, 368, // 8400 1436, 3221, -25, 7, -769, 115, -121, 598, 721, -1553, 1346, 1195, 38, 881, 1054, 495, 177, -261, -1490, -2608, // 8420 1297, 464, 3459, 643, -525, -382, -671, 208, 156, -580, -322, 472, 23, 83, 645, -1197, 484, -2598, 591, -831, // 8440 422, -219, 735, 426, -674, -2767, 453, 870, -2552, 727, -139, 1064, -288, -358, -1382, -1304, -523, 1375, -950, -1641, // 8460 // Out channel 47 1900, 391, -36, -825, -293, -2, 397, -568, -913, -1208, -1287, 963, 396, -987, 19, 121, -1290, -444, 159, -791, // 8480 781, -720, 703, 806, -105, 74, 42, 40, 85, 248, 348, -779, -990, 927, 321, -644, -1570, 752, -518, -810, // 8500 544, 258, -414, -137, 608, 1265, 151, 378, -154, 268, 210, -478, -591, 1178, 1364, -266, -1523, 728, 742, -205, // 8520 455, 1682, -989, 151, 688, 586, 391, -897, -886, -665, 1149, -982, 930, -503, -527, -1044, 259, -417, -599, -9, // 8540 -1321, -392, -189, 697, 1280, -169, 1234, 610, 438, 540, -1714, 195, -85, 563, 677, -417, -62, 669, 294, -414, // 8560 -606, 331, -170, -1035, -332, -470, 1414, 358, -1140, 912, 443, -396, -263, -347, 459, 75, -316, -601, -475, 129, // 8580 -1311, 2223, -1025, 1150, 1420, -404, 146, 491, 1322, 463, 1510, 1026, 666, 1324, -299, -1918, 1307, -521, 844, -334, // 8600 -1188, -1262, 265, -175, 275, 404, 189, 235, -654, 1035, -761, -775, -222, 513, 913, 466, 1450, 7, 1103, -343, // 8620 -1067, 463, 94, -370, -578, -3051, 1105, -103, 93, 175, 273, 609, 969, -236, -588, -2338, 220, 730, -99, -2183, // 8640 // Out channel 48 875, -964, -2, 202, -1276, 1280, 720, 377, -302, 974, -557, -697, 691, 55, 49, 956, -498, -80, 148, 13, // 8660 564, -372, 1389, -200, -407, 1908, 347, 1011, 631, 549, 10, -425, 75, -650, -1270, -1312, -330, 1545, 1129, 588, // 8680 -680, -989, 466, 549, 2085, 815, -581, 33, -509, -701, -465, -1492, -1048, -978, 640, -422, -521, -16, -325, 290, // 8700 282, 214, -487, 558, -361, -40, -581, -1475, -1503, -270, 424, -618, 234, -269, -2654, 205, -48, 625, -869, -780, // 8720 -1186, -356, -1028, 50, -92, -145, 806, -129, 1057, 317, 333, 60, 1017, 330, -1379, 583, 353, 722, -2, 203, // 8740 117, 1069, -8, 389, -584, -304, -1354, 456, -225, 1138, 754, -846, -461, 572, 753, -39, 743, -72, 95, 280, // 8760 39, 592, 213, -1217, -530, 1484, 544, -356, -763, -881, 1064, 1494, -257, -638, -237, -202, -348, 1526, -519, -679, // 8780 1158, 988, 1146, 307, -774, -987, -515, 7, -495, 697, -129, -1012, -227, -1718, 545, 488, 665, -1259, 1365, -44, // 8800 223, 333, -280, 20, -920, -1063, -397, 1051, 174, 1759, -690, -281, -705, 530, 75, -1420, 468, -375, -1874, -931, // 8820 // Out channel 49 1706, -473, 1245, -887, 948, 1834, 867, -64, -80, 203, -376, -621, -172, 583, 102, -187, -2016, 467, -1569, -1895, // 8840 306, 752, 626, 417, 741, 383, 480, 996, 822, -536, 357, 488, -540, 258, 61, 522, -265, -179, -299, -1190, // 8860 2108, -500, 853, -9, -656, -725, 950, 740, 947, -1212, 612, 1083, -600, -189, 307, -424, -1303, 734, 1636, 1379, // 8880 414, -309, -388, 183, -854, 1563, 2721, -389, -325, 463, 729, -1236, 300, 1179, -318, -69, 2165, -526, 704, -1190, // 8900 -697, -447, -1018, -26, -652, 229, -106, 1070, 1347, 457, -2534, 615, 171, 2013, 617, -1158, 551, 153, 887, -142, // 8920 -386, 1474, -697, -41, -1084, -1630, -858, 150, 47, -700, 684, -255, -337, -695, 7, -416, -2175, 9, 128, 244, // 8940 871, 881, -1638, -344, 1071, -1120, -388, -478, -291, 207, -725, -3, -1656, 766, -448, -664, 1500, -350, -314, 1164, // 8960 844, -483, 65, 306, 1391, -202, 240, 378, 466, 370, -677, -1946, 956, 1142, -300, -287, 147, 1063, 3, 434, // 8980 1224, -123, 825, 208, 102, -1394, 1075, 706, -254, -981, 123, 944, 831, 870, -333, -374, 876, -882, 58, 637, // 9000 // Out channel 50 -1214, -472, 377, 909, -508, -2503, 1969, -183, 4331, 688, -830, -358, -618, -1202, 80, -544, -32, -1650, -1492, -413, // 9020 333, 706, -2730, 484, 1264, -1859, 518, -414, -430, -509, 1033, 1024, 1371, 31, 991, 211, -913, -2059, -483, 171, // 9040 721, 289, 1284, -115, 280, -2686, 197, 2185, -1611, 513, 1173, 52, -1302, -547, 1811, -751, 442, -1407, -215, -2446, // 9060 827, -326, 1880, 244, 42, -1467, -1858, 189, -250, 92, 772, 853, -746, -104, -601, -418, -1319, -992, -1079, 493, // 9080 1415, -18, 1315, 563, -186, -909, -254, 752, -2656, -1348, 301, 250, -461, -654, 1447, 686, 1744, 1129, -195, -918, // 9100 -295, -1152, 1072, -1172, 548, 493, 1680, -612, 1000, 978, -716, 132, -63, 313, -1055, 106, 1428, -914, 765, -45, // 9120 -1277, -3806, -1628, 1105, 711, -844, 325, 503, 487, 1550, 59, -869, 333, -878, -687, -237, -360, -1162, 1381, 1666, // 9140 -1240, -1044, -2455, -2753, 510, -854, 416, -276, 518, -85, 2025, -348, 103, -433, 311, 183, -227, 1737, -1109, 704, // 9160 -1595, 563, -943, -1630, 1268, 1386, 929, -771, 3329, 130, 662, 9, 1857, -327, 2649, 2431, -1306, -1471, 1337, 1871, // 9180 // Out channel 51 -34, 119, 3043, 655, -840, -270, -141, -948, 3858, 64, -2506, 682, -795, -259, 787, 1415, -1061, -337, -883, 113, // 9200 -223, 503, -1020, 579, 1782, -924, 1133, 473, 305, -664, -153, 199, 1255, -678, 1884, -403, -1411, -2026, -2035, -643, // 9220 41, -205, -543, -763, -1150, 287, -116, 1688, -476, 157, -1232, 1083, -1672, -513, 2387, 427, 403, -446, 1153, -2605, // 9240 -159, -355, 659, 1280, 695, -806, -47, -486, -254, -758, 1332, 335, -1629, -966, -80, -772, 601, -251, -25, 365, // 9260 251, -309, 546, 359, -15, -563, 130, 299, -1966, -1852, -44, -436, -412, -87, 2859, -998, 3106, 1296, -698, 365, // 9280 -774, 715, -210, -783, 296, -1907, 2844, 41, 25, 74, -943, -474, -15, -457, 537, 226, 1517, -920, 1043, -781, // 9300 -1202, -2533, -1857, 260, 110, -69, -376, 474, -149, 1354, -2316, -2926, -587, 283, 592, -3058, -1118, -28, 526, 2763, // 9320 -576, -1454, -4601, -1537, 1184, 824, 868, 871, 644, 453, 1260, -69, -748, -810, 1520, 439, -1270, 2941, -1175, 148, // 9340 -1457, -179, -683, -1105, 64, 1200, 1699, 431, 1759, -1247, -156, -549, 1152, -283, 959, 797, 1273, -382, 107, 1488, // 9360 // Out channel 52 -1375, -321, -1169, 846, -75, -1323, 1144, -1216, -362, 936, 946, 190, 464, -1324, -395, -890, 421, -16, 585, 239, // 9380 975, -600, -2442, 192, 288, -1894, -286, -594, 520, -13, -469, -209, 97, -536, 399, -71, 95, -602, -374, -723, // 9400 769, 1647, 1839, 1224, 595, -146, 1189, 1209, -1045, 241, 2556, 657, 305, 479, 27, -1145, 252, -253, 625, 767, // 9420 3034, 31, 1787, -1402, -2203, -213, -1242, 192, 207, 964, 361, -1431, 517, -566, 974, 599, 1018, -446, -645, 169, // 9440 1251, -1066, 3293, 803, 394, -1190, -593, 607, 1468, 513, -1401, 165, -870, -743, -1127, 310, 560, 2044, -229, -1955, // 9460 -60, -1969, 1083, -1066, 1007, -477, -976, 82, 51, -623, 549, -351, 253, -703, -2335, -450, 1110, -1046, 446, 2076, // 9480 -149, -319, -485, 1864, -489, -1285, 932, 129, -740, 1342, 389, 1544, 228, -912, -1871, -55, -937, 902, 268, 564, // 9500 -1817, -790, -533, -2135, -180, -82, -1347, -455, -343, 590, 1289, 1332, -484, 1122, -1260, -835, 562, -599, -213, -332, // 9520 -851, 37, -179, -1656, -1307, 130, 1344, -2139, 1055, -2119, 173, -110, 258, 1261, 1109, 192, -1158, 1347, -102, 1124, // 9540 // Out channel 53 -1160, 586, 1360, -75, -1906, -407, 578, 138, 2586, 1010, -1646, 195, 918, 150, -1281, -186, 699, -1788, -137, 866, // 9560 -115, 297, -958, 936, 2011, 426, 841, -517, -479, -695, -482, 493, 262, -236, 1057, -997, -34, -1947, -371, -1174, // 9580 768, -680, -795, 197, 539, -519, 792, 2620, -1369, 817, -558, 713, -1189, -460, 1617, 828, 730, -515, 517, -2381, // 9600 624, 65, 862, 717, 430, -17, 444, -194, -826, -1441, 1438, -568, -880, 154, -947, 1233, -605, -559, -297, 841, // 9620 750, -874, 232, 1193, -358, -997, 483, 253, -1118, -2972, 1046, 319, -670, -419, 1488, -95, 1435, 36, 244, 86, // 9640 -1005, 510, -93, 990, 594, -500, 1939, -1088, -112, -430, -361, -943, -549, 460, -671, -52, 497, -754, 1136, -994, // 9660 -1549, -2518, -572, -311, 785, -1025, -97, -411, -56, 764, -962, -668, 783, 191, -480, -294, 457, 94, 1421, 2309, // 9680 -1477, -1212, -2086, -1157, 256, -961, 1512, 708, -8, 94, 260, -596, -332, -7, 1880, 26, -534, 2218, -572, 589, // 9700 -882, -182, -827, -1009, 447, 1520, 1088, 148, 2370, -323, -254, -840, 694, -35, 173, 1162, 337, -1956, 1319, 1072, // 9720 // Out channel 54 -349, -895, 2095, 596, -405, 1222, 913, -6, 2524, 136, 40, -458, -672, 1010, 778, 36, -413, 773, -504, 182, // 9740 -988, -544, -80, -883, 158, 323, -219, 919, 666, -44, -1476, 1404, 818, -51, -130, 122, 409, 253, -653, -1626, // 9760 220, -702, 274, 629, -497, 195, -289, 752, 1026, 310, -74, -565, 219, -509, 1307, 415, 1561, 167, 154, -637, // 9780 -470, -791, 293, 1676, -1847, 478, 57, -6, 123, 759, -254, 613, -760, 472, -1028, 645, 1333, -956, -620, 455, // 9800 -1196, 284, -1993, 508, -465, -431, 898, 437, 741, -1472, 55, -1039, -184, 615, 1010, -1350, 768, -543, -103, 464, // 9820 705, 1275, -1433, 643, -1363, -718, -509, -582, 1208, -865, 76, -731, 1181, 373, 1057, 264, 524, 1741, 165, -604, // 9840 -514, -1139, -1009, -311, 107, -684, -701, -99, -208, 1129, -1571, -1140, -933, 48, 1669, 242, 752, -384, -124, 2819, // 9860 973, -290, -1187, 1146, 1253, 329, 975, 20, -93, -282, -403, 42, 548, 650, 1130, 809, -217, 1855, 446, 689, // 9880 1173, 525, 1060, 1218, 1064, 930, -174, 880, 761, -294, -531, -167, 599, 900, -718, 1027, 1666, -1930, -692, 2539, // 9900 // Out channel 55 -783, 637, -1486, -1087, 430, -1779, 107, 2169, -114, -157, 942, -578, 787, 17, 366, 1043, 1313, 1905, 861, 78, // 9920 -1118, -407, -208, -1095, -1669, -440, -349, 363, -98, 1900, 27, -979, 607, 185, -2878, 409, 1712, 520, 141, 1503, // 9940 -1476, 666, -588, -170, 1220, -547, -689, -1154, -169, -328, 4, -1282, 834, 971, -2810, 209, 773, 118, -2591, 310, // 9960 -808, 862, -311, -91, 668, -281, -1949, -559, -680, -673, -256, 376, -318, 715, -73, -239, -1924, 1970, -1351, 1019, // 9980 233, 599, 327, -725, -929, 893, -1642, -1179, 119, 911, 1773, -2018, 762, -3242, -1538, 595, -1220, 140, -1208, -200, // 10000 -218, -1082, 867, 1182, 365, 1880, 214, 223, 369, 632, -545, 300, 205, 955, -14, -44, -147, 226, -433, 435, // 10020 1783, -1166, 1839, -551, -3463, 596, 310, 481, 886, -1971, -2463, -253, 1451, -1215, -198, 681, -642, 1128, -791, -270, // 10040 1471, 2619, 140, 485, -1220, -100, -917, -749, 159, -335, 1444, 3495, -1519, -2500, 200, -689, 42, -356, 483, 44, // 10060 213, 359, -2909, -642, 368, 606, -1964, 374, -1125, 881, -992, 777, -798, -113, 992, 587, -164, 1138, -406, -181, // 10080 // Out channel 56 282, 1416, 614, -39, -873, 21, 62, 52, 3524, -755, 157, 1214, -696, 42, -282, 836, -1182, 233, -816, 808, // 10100 -1121, -757, -1803, 552, 1050, 378, 2603, -1040, -587, -843, -1093, -676, 1592, 172, 1110, 274, 517, -2135, -1369, -1064, // 10120 -31, 274, -240, -624, -1992, -885, 765, 575, -470, 854, 155, 361, -104, -259, -118, -403, 1015, 69, 388, -1303, // 10140 161, 626, 155, 821, 1883, -687, -1166, 453, -22, -747, -542, -537, 313, 339, 652, -812, 377, 756, 352, 646, // 10160 395, 218, 899, -341, 864, -163, -461, 1878, -2343, -358, -81, 969, -593, -1112, 772, 1053, 1581, 827, -365, -650, // 10180 248, 307, 542, -946, 836, -124, 1718, -502, 5, -264, -955, -827, -511, -1199, 422, 536, 343, 180, 1232, -378, // 10200 -820, -2176, -799, 826, 563, -1436, 723, 374, 904, -113, -928, -735, 476, 282, 668, -556, 569, -690, 457, 1569, // 10220 -1184, -261, -1299, 31, -94, 41, 184, -1092, 1076, -1040, 153, 1061, -56, 203, -16, 713, -857, 1266, -187, 1052, // 10240 -1002, -274, 11, -1452, 113, 703, 1589, 215, 2152, -1123, 341, -388, 832, -412, 974, 476, -693, -1612, 1979, 1254, // 10260 // Out channel 57 -233, -836, 3055, -741, -791, 2734, -216, -710, 1187, 136, -400, 1140, -404, 1599, 358, 221, -978, -570, -1273, 506, // 10280 -856, 2246, 870, -270, -30, 818, 187, 951, -266, -1492, 1355, 2038, 394, -593, 131, 1148, -808, 303, 619, -1529, // 10300 1858, -3045, 327, 413, -451, -1013, -295, 709, 607, -1266, -1069, 593, -618, -350, 1454, 228, -155, 802, 1709, 135, // 10320 563, -1739, -303, -360, -1516, 1717, 3629, 158, -647, 1176, 1212, 139, -530, 729, -355, 866, 1540, -974, -196, -573, // 10340 -1972, 567, -1767, -379, -543, 84, 894, 1122, 1002, -373, -494, 33, 851, 2911, 1739, -1645, 394, -353, -521, -77, // 10360 600, 3351, -1811, 759, -665, -1445, 119, -645, 558, -45, -1213, 215, -100, 75, -435, 293, -1021, -3, 454, -159, // 10380 -797, 177, -1039, -1392, 1075, 115, -1212, -923, 939, 298, 143, -714, -1800, 4, -349, -652, 978, -656, -818, 2253, // 10400 870, -721, -499, -263, 1438, -257, 1016, 356, -746, -868, -810, -1273, 1048, 1009, -432, 871, 527, 532, 509, -246, // 10420 1201, 186, 1150, 808, 929, -241, 107, 1536, 26, 411, -587, 801, 455, 12, -601, -171, 1636, -1481, -301, 2165, // 10440 // Out channel 58 1054, 2381, -109, 355, 277, 2207, -1149, 812, -1866, 233, 364, 503, -738, 720, 378, -101, -42, 736, 1324, -117, // 10460 -567, -1229, 1502, 13, 569, 1270, -750, 51, 411, 199, -613, -359, -282, 638, -1087, -661, 435, 1068, 405, -423, // 10480 -989, -701, -598, 171, -1509, 1011, -1536, -1035, 2111, 225, -1519, -480, 214, -154, -557, 344, -1562, -26, -414, 1348, // 10500 -980, 377, -909, -1146, 297, 77, -229, -99, 736, -565, 196, -1439, 182, -1412, 842, -769, 199, 1375, 536, 82, // 10520 -815, 1422, -1363, 622, 321, 853, 134, -917, 831, 667, 701, -359, 2054, -456, -68, -648, -843, -372, 154, 236, // 10540 359, 635, -595, 1101, 237, 589, -356, 258, 332, 997, 1174, -61, -567, -687, 1994, -125, -586, 1400, -1670, -739, // 10560 702, 1417, 231, 83, -1169, 300, 239, 42, 184, -1089, 882, -568, -204, -34, 842, -883, -1155, -148, 208, -766, // 10580 45, 1161, 1231, 786, -54, 654, 123, 607, -1088, -931, -1591, -529, -1197, 7, 1230, 78, -242, -2251, 562, -443, // 10600 1008, 408, 221, 1895, -897, 299, -499, 404, -1669, 552, -148, 875, -481, -632, -2294, -1026, 305, 476, -1378, -1786, // 10620 // Out channel 59 -821, -1617, -510, 1738, 397, -1036, 1013, -1472, 62, 991, 169, -1050, 595, -878, 767, -3884, 472, -1428, -163, -1487, // 10640 2271, 1147, -858, -1431, -601, -2004, -3228, 901, -171, -404, 1972, 771, -1133, 1332, -386, 743, -1071, 385, 227, 147, // 10660 502, 149, 1623, 777, 2628, -676, 1530, 420, -1207, -1874, 2313, 634, -20, 239, 1071, -356, -258, -694, 1426, 1545, // 10680 4474, -697, 1898, -1041, -2564, -770, 752, 984, -507, 1819, -228, -1264, 101, -272, -54, 3901, -475, -1177, -323, -287, // 10700 925, -1319, 1551, 1215, 331, -2253, -691, 655, 1849, 635, -933, 73, -1020, 474, 274, 1818, -492, 1282, 655, -602, // 10720 2109, -492, 796, 56, -1255, -206, -1017, -1041, -1065, -340, 757, 409, 916, 648, -2944, 578, -858, -1163, 1524, 491, // 10740 -588, -589, -233, 1097, 455, -1541, -1073, -1186, -974, 699, 1734, 408, -841, 11, -3736, 1334, 63, -64, -923, 152, // 10760 -687, -1076, -15, -2458, 30, -942, -1745, 16, 261, 193, -342, -2521, 100, -1100, -2835, -1555, -278, 568, 878, -1953, // 10780 246, -257, 315, 646, -123, 689, 398, -1938, 2, -510, -913, 1059, 899, 2415, 180, -729, 447, 646, -1279, -515, // 10800 // Out channel 60 806, 170, -1391, 1411, 47, -361, 320, -426, -500, 16, -457, 1150, -466, -910, -668, -2, 180, -147, -327, -458, // 10820 385, -1751, -1261, 1238, -55, 74, 2, 577, 379, -657, -529, -282, -538, 428, -222, -958, 312, -618, -761, -216, // 10840 141, 624, -117, -166, -341, -12, 21, -93, -339, 895, 90, 1470, -1587, 504, 1315, -90, -1008, 1653, 449, 47, // 10860 44, -183, 1107, -1034, 85, -150, -23, -223, -744, 347, -244, -1850, 291, -1652, 200, -295, 607, -430, 551, 317, // 10880 400, -492, -428, -636, 1191, -72, -304, -1011, -1837, 1241, -514, 1969, 7, -236, -565, -1245, 172, 479, 1119, -520, // 10900 -53, -193, -920, -318, 598, 353, 9, 856, -1760, -1056, -311, 162, 202, -1046, -919, 985, -153, -826, 828, 703, // 10920 -336, 1100, -885, -283, 298, -375, 515, 1201, 106, -339, -560, 221, 323, -585, -319, -343, -284, -1233, -836, -1326, // 10940 -1048, 417, -710, 78, -283, 5, 501, 513, -395, 553, -3, -404, 105, -183, 901, -463, 239, -2283, -597, -1031, // 10960 592, -257, 491, -651, -933, -789, 1206, -871, -294, -845, -187, -624, 934, 284, -129, 373, 502, 1009, 92, -1686, // 10980 // Out channel 61 -2471, -1118, -226, 588, -206, 148, -479, -299, 353, 129, 533, -1794, -328, 13, 18, -639, 991, 56, 388, 418, // 11000 -1241, -619, 56, -1303, -1330, -591, -915, 1707, -133, 663, -1129, 1565, 253, 172, -1235, 1119, -753, -258, 968, -666, // 11020 -1284, -672, -390, 898, 246, -2123, -1051, 744, -1079, 16, 131, -434, 376, 272, 137, 683, 2621, 66, -259, -191, // 11040 723, -1570, 758, 1022, -432, 406, -1205, 743, 95, 480, -562, 1647, -677, 664, 229, 2495, -361, -516, -904, 909, // 11060 -952, 637, 287, -458, -101, -60, 6, -1224, -794, -1315, 2965, -1156, 389, -1734, 566, 835, -540, -1087, -1555, 641, // 11080 950, 269, -284, 592, 722, -442, 1307, -873, 1522, 318, -1074, 231, 2221, -226, -281, -76, 197, 394, 782, -721, // 11100 -416, -1201, 663, -498, -557, 461, -120, -293, -1743, 55, -737, -1667, -767, -1011, -54, 962, 160, -677, -1840, 1914, // 11120 1693, -414, -531, -557, -267, 852, -941, -252, 660, -1631, 1222, 1853, 725, -974, -939, 270, -1112, 885, 175, -263, // 11140 1714, 662, -41, 931, 1161, 3272, -464, -151, 602, -389, -765, -385, -616, 754, -578, -79, -325, -1520, -119, -1143, // 11160 // Out channel 62 -1787, -1830, 999, 244, -218, -1345, -347, -261, 3536, 99, -157, -1438, 783, -95, -434, -475, 1453, -144, 440, 1516, // 11180 -201, -6, -554, -1347, -497, -601, -426, -558, -171, 1066, 92, 468, 1746, -78, -299, 473, 154, -540, 156, 813, // 11200 -1264, -1062, 328, -463, 331, -1881, -592, 1138, -1267, -633, -702, -1589, 569, -535, -485, 553, 2901, -407, -1452, 498, // 11220 611, -1064, 657, 1058, -293, 673, -75, 1270, 1124, 100, -917, 2372, -1621, 1245, -219, 2180, -810, -304, -1096, 310, // 11240 -148, -823, 620, 1038, -602, -680, -888, -801, -1439, -1675, 1731, -1231, 14, -1580, 507, -17, 415, -50, -768, -133, // 11260 914, 245, 542, -561, -67, 670, 997, -311, 1020, -424, -863, -432, 2068, 1595, -385, -109, 1471, -51, 430, -487, // 11280 -47, -3257, 783, -191, -1846, -145, -90, -544, -1695, 194, -1900, -789, 798, -1564, -1165, 8, -513, 459, -789, 46, // 11300 373, -505, -974, -467, -732, -537, -410, 824, 847, -786, 879, 1310, 529, -917, -105, 715, -576, 2474, 584, -609, // 11320 730, -490, -678, -164, 1050, 1750, -792, -944, 935, -1486, -1379, -25, -544, 859, 1424, 1227, 229, -2106, 479, 2042, // 11340 // Out channel 63 653, -360, 1593, -1133, -982, 2011, 559, 637, -77, -370, -694, 9, 247, 1130, 1594, 1798, 22, 781, -1897, -38, // 11360 -345, 1911, 812, -1140, 134, 1624, -602, -191, 192, -662, 371, 920, -272, -600, 761, 934, -308, 930, 518, -405, // 11380 647, -2045, 31, -88, -408, -1556, 419, -100, -175, -778, -510, 561, 342, -304, -205, -316, -575, -1653, 442, 889, // 11400 -842, -667, -1144, -393, -1406, 1742, 2366, -144, 427, 131, 1183, 423, -905, 1428, -773, 497, 1095, 155, 172, -1234, // 11420 -2833, -217, -779, 1293, -2057, -29, -304, 693, 829, -348, -318, 406, -1081, 2700, -15, -177, -1948, -283, 433, 324, // 11440 885, 171, -273, 58, -1056, -53, 516, 1279, 377, 1081, -299, -262, -1512, 769, 532, -1858, -519, 435, 94, -1442, // 11460 -632, 490, -1323, -327, 394, 1765, 234, -1376, -867, 524, -6, -863, -3, 855, -1332, -117, 942, 272, 435, 1177, // 11480 1071, 273, 288, 470, 1777, 1563, 1442, -1386, 441, 83, -1631, -213, 1012, 484, -818, 1163, 408, 928, 323, 1717, // 11500 272, -604, 607, 1536, 1596, 57, -301, 1099, -171, 28, -1324, 124, -1170, 280, -982, -284, 1113, -1736, -41, 390, // 11520 // Out channel 64 403, 862, 633, -840, -776, -137, -278, 1549, -851, -975, 200, 1754, -489, -1807, -1764, 1802, 988, 1139, 202, -614, // 11540 -1033, -183, 741, 187, -348, 429, 1299, -168, -122, 647, -1286, -1809, 158, -1261, -1478, -549, 1083, 671, -423, 1022, // 11560 713, 695, -1149, -459, -339, 341, 491, -773, 208, 2050, 236, 834, -61, -432, -629, 131, -1223, -618, -1112, 595, // 11580 -638, -56, -178, 155, 1546, 811, -566, -404, 476, -368, -6, -1246, 572, -563, -313, -490, 372, 2498, -616, 228, // 11600 586, 1381, -216, 661, -28, 2069, -494, -1347, -249, 13, -454, 1839, -201, 54, -1596, -681, 11, 1005, 933, -2174, // 11620 -511, -970, 612, 1140, -184, -336, 531, 2109, -634, -676, -569, -780, -1935, -184, 364, -721, -206, -19, -1850, 414, // 11640 158, 168, -228, 63, -108, -728, 2370, 385, 1354, -2047, 241, 1596, 1608, 198, 2369, -1001, -262, -121, 620, -175, // 11660 -1393, 659, -145, 1378, -873, 932, 1083, 1096, -597, 1426, -242, 119, -1721, 1003, 430, -24, 313, -828, -143, 532, // 11680 -1468, -2316, -297, -513, -1452, 7, -168, 811, -115, -890, -225, -1977, 1009, -1472, 653, 351, -1508, 801, 1098, -519, // 11700 // Out channel 65 161, 776, -1033, -453, 347, 463, -740, 1430, -1380, 654, 22, 1155, -456, -2494, 235, 658, 1616, 1002, 469, -311, // 11720 788, 207, -749, 1043, -373, 734, 924, 287, 236, -561, -768, -2064, 530, -672, -777, -2217, -127, -1103, -377, 596, // 11740 -252, 965, -1848, -390, -797, 196, 1096, -242, 275, 1550, -454, 563, -532, -663, -197, -724, -2050, -532, 935, -504, // 11760 501, -531, 593, -149, 867, -514, -236, -1516, -24, -113, -942, -2030, 905, -1206, 346, -130, -337, 1959, -1210, -1344, // 11780 356, 1196, 1099, 493, 383, 1199, 19, -235, -862, 1423, -1136, 901, -709, -963, -1284, 189, -962, 1848, 2080, -1304, // 11800 -27, -951, 586, -564, -512, 127, -8, 447, -695, 193, -432, -535, -1928, 373, -592, -303, -9, 663, -1831, 251, // 11820 179, 416, 410, 765, 944, -601, 2462, 660, 1308, -1754, 227, 2029, 1102, 506, 889, 512, -907, 131, 165, 105, // 11840 -1020, -397, 535, 1737, -683, -316, 304, 1041, -1247, 81, -189, 240, -1880, 2307, 87, -393, 608, -2609, 654, -133, // 11860 -1371, -1182, 222, -96, -1543, 132, 1068, 360, -1026, -991, 653, -664, 495, -497, -493, -52, -1127, 3222, 76, -1939, // 11880 // Out channel 66 -210, 491, -2510, -905, -12, -316, -1463, 488, -50, -793, 1947, -720, -1461, 215, 1863, -1621, 669, 718, 744, -736, // 11900 -773, -1575, -188, -947, -292, -1596, -54, -100, -300, -128, -967, -604, -393, 1063, 848, 856, 349, -681, -66, -592, // 11920 -523, 2636, 429, 1585, -407, -1483, -25, -1333, -369, 275, 1605, 164, 518, 1179, -655, -457, 1072, 924, -202, 1288, // 11940 511, -701, 258, -356, 22, 727, -1579, 527, 459, -43, 259, -497, -516, 423, 2131, -1138, -476, -377, 666, -452, // 11960 531, -623, 1956, -544, -404, -493, -1827, 1237, 26, 819, -254, 869, -468, 208, -787, 1499, 404, -506, -189, -112, // 11980 20, -408, -460, 8, -836, -135, 478, -1611, 655, -1577, -452, 957, -216, -238, -1144, 79, 1333, -23, 122, 1240, // 12000 -456, -452, 390, 919, -56, -459, -825, -34, -1951, -372, -6, -1301, -655, 169, -718, 1923, 172, -75, -538, -499, // 12020 409, -483, 1998, -375, -140, 703, -1693, -391, 225, -545, 297, -223, 566, 365, -2599, -692, -1492, 339, -1226, 110, // 12040 125, 148, -873, 475, 540, 308, -81, -1260, -59, -963, -8, -499, 209, 707, 401, 600, 721, -143, -278, -390, // 12060 // Out channel 67 -370, 1129, -768, 895, 348, 93, -409, 152, -893, -1086, 1385, 1652, -618, -358, -579, 69, 219, 36, 89, -533, // 12080 -884, -2908, 204, 1758, -367, -847, 855, -608, 146, -714, -1188, 213, -269, 626, -423, -637, 823, -565, -1228, 263, // 12100 -609, 614, -1336, 238, -990, 965, -605, -23, 1309, 317, 215, 1043, -503, -31, -204, 902, -444, 1879, -465, 0, // 12120 -969, -755, -906, -134, -136, -327, -1532, 493, -1169, -886, -62, -2186, 620, -702, 444, -2135, 577, 8, -106, -1423, // 12140 738, -65, -619, -765, 315, 613, 618, -125, -181, 937, -326, 1932, 628, -2416, -1392, -791, -554, -274, -650, 332, // 12160 -1035, 944, -473, -439, 833, -255, -95, -273, -522, -1370, 187, 309, 992, -2172, 200, 36, 942, 1160, 417, 601, // 12180 574, 1655, -301, 62, -294, 412, 77, 1528, 173, 3, -487, 816, -264, -573, 405, -364, -720, 944, 79, -1102, // 12200 100, -387, 799, 252, -141, 639, -394, 643, -1275, -173, -15, 1063, -593, 745, -493, 780, -443, -1861, 401, -555, // 12220 290, -544, 749, -466, -1125, -724, 671, -271, -609, -1076, 1042, -419, -288, -153, -317, 566, -87, -256, -42, -488, // 12240 // Out channel 68 132, 1124, -456, -456, 568, 60, -120, -248, 166, -888, 865, -207, 269, -217, -349, -526, -165, 214, 1482, 877, // 12260 -1121, -1854, 283, 202, -1019, -501, 217, 416, 1474, 665, 72, -425, 161, 1389, -23, 1271, 815, -167, 272, -127, // 12280 -2766, 1710, -628, 608, -924, -144, -780, -1149, -6, -319, 1020, -364, 1496, 1346, -499, 53, 1730, 975, -575, -165, // 12300 -958, 329, -1450, 1236, 1442, -130, -1621, -340, 288, 216, -363, 762, -78, -336, -573, -597, -1331, -770, 654, -446, // 12320 -164, 500, -456, -1694, 709, -622, -776, -432, 99, 785, 1974, -1746, 866, -1721, 964, 591, 533, -333, -1023, 489, // 12340 -561, -268, -568, -260, 1280, -15, -650, -277, 284, -315, -658, 273, 1894, -916, 357, 897, 1152, 1869, -35, 177, // 12360 408, -906, 1519, 922, -1269, 1183, -257, 1329, 653, -685, -855, -597, 293, -1411, 293, -1130, -617, 772, 256, -533, // 12380 989, 510, -606, -171, -737, -271, -1440, 234, -368, -1130, 1539, -79, -535, -1775, 622, 489, -478, -1256, -1229, -217, // 12400 -207, 1245, 210, 63, 598, -288, 578, 1318, -1336, 683, 356, 567, 160, -241, 103, -548, 594, -940, -365, -471, // 12420 // Out channel 69 332, -667, 1231, 180, -102, 147, 1793, 783, 636, -265, -1431, -165, 430, -450, 12, 122, 237, -199, 384, 377, // 12440 -581, 770, 1714, 531, -1105, 670, -1343, 77, 385, 1475, -121, -547, 472, 165, -392, -942, 1006, 14, 458, 413, // 12460 322, -608, -762, -1079, 654, 279, -1550, -393, -49, 865, -1535, -901, -137, -1601, -1153, 1316, 68, -1030, 237, -965, // 12480 870, -397, -604, 837, 577, -207, 109, 157, 2116, -451, 1383, 262, -788, -617, -718, -214, -228, 1394, -367, 473, // 12500 -744, 214, -327, -174, -987, 1385, -285, -735, -254, -1908, 1197, -586, 686, 312, 251, -382, -1094, -1228, -26, -262, // 12520 1116, 517, -644, 1586, -598, -33, -759, 1317, 409, 756, -590, -349, -360, 866, 452, -800, -1312, 320, -496, -1918, // 12540 -376, 889, -1121, -699, 326, 50, 282, -499, 156, -766, 298, 713, 238, 520, 286, -1331, -137, 815, 22, 374, // 12560 714, 488, 788, 448, -511, 163, -138, 837, 636, 474, 293, 727, -1390, -868, 705, 1668, -283, 110, 189, -47, // 12580 275, 974, -547, -147, 851, -965, 217, 1013, 379, 1563, -716, 63, -575, -1044, -314, -311, 448, 97, 560, 125, // 12600 // Out channel 70 -652, -979, 191, -727, -327, 108, 860, 125, 350, 1677, -1362, -850, 1656, 712, -861, 481, -853, -270, 173, 758, // 12620 -162, 2464, -183, -1475, 412, 635, -173, -117, 491, 1125, 736, 290, 973, -903, -1325, -372, -942, 669, 1025, 610, // 12640 1939, -1167, 72, -8, 1254, -219, 825, 319, -1125, 970, -2078, -1762, -123, -531, -28, -686, -36, -2625, -25, -478, // 12660 530, 39, -707, 33, -61, 1162, 129, -211, 1415, -305, 592, 889, -669, 128, 164, 1226, -1047, 1340, 15, 367, // 12680 -644, -807, -275, 441, -2672, 1282, 392, 258, -454, -1938, 32, -694, -820, 1132, -348, 644, -632, 757, 111, -799, // 12700 1518, -22, 164, -34, 78, 654, -829, 396, 1018, 1693, 480, -265, -1127, 952, -32, -550, -1047, -896, -926, -1319, // 12720 913, -76, -420, 70, -998, 248, 959, -1425, 1212, -733, 647, -380, 566, -637, -55, -869, 699, 1891, 128, 414, // 12740 870, 1224, -521, -534, 544, -762, 335, 60, 641, -161, -17, -35, -510, -299, 629, 884, -469, 907, 787, 389, // 12760 -246, -568, -1082, 766, 733, 507, -617, -218, 357, 1041, -2077, -459, 669, -486, -358, -465, -610, 540, 311, 198, // 12780 // Out channel 71 -861, 1387, -2741, 1091, 382, -1236, -519, -1695, -993, -46, 2059, 102, 699, -1014, -1005, -363, -203, 99, 3419, -1195, // 12800 171, -1690, -908, 823, -1363, -1306, 182, -1222, 957, 620, 190, -711, -600, 816, -391, 877, 1468, -131, -243, 399, // 12820 -2536, 3185, 196, -74, -1365, 763, 76, -945, 1715, -121, 1658, -319, 198, 1978, -411, -777, 517, 1463, -1997, 792, // 12840 -1082, 273, 153, -666, 365, -1319, -3598, 1190, -1121, -589, -1262, 541, 1643, -999, 1089, -704, -1424, 633, -623, 716, // 12860 1849, 276, 1227, -154, 841, -1650, -703, -384, 110, 2449, 1901, -2514, 2203, -4421, -712, 984, 119, -92, 275, 437, // 12880 -1396, -1067, 948, -422, 937, 1370, -986, -817, 84, -790, -379, 1599, 925, -1287, -141, 152, 2080, 569, 448, 2071, // 12900 1124, -684, 1684, 212, -2154, 901, -589, 901, -358, -1011, 858, 96, 182, -1718, -205, 920, -2330, -887, -508, -2068, // 12920 41, 44, 1194, -451, -1044, -627, -878, -512, -457, -1437, 2253, 1255, -345, -502, -296, -778, 372, -1345, -362, -1245, // 12940 -608, 734, 377, 137, -897, -158, -335, -80, -186, -273, 1264, 84, -440, 391, -211, 1385, -3099, 1128, 570, -2437, // 12960 // Out channel 72 1625, 250, -505, -1248, 624, 724, 60, -262, -777, -860, 193, 846, 558, -1566, 36, 1716, -471, -270, -1679, -134, // 12980 464, 682, -257, 935, 167, 341, 2035, -1561, -608, 1448, -496, -1216, 458, 690, 917, -1341, -414, -329, 178, 558, // 13000 670, -443, 1181, -474, 217, 359, 925, 622, 727, 363, 162, 377, -553, -448, 299, -831, -1030, -400, 266, 25, // 13020 -110, 405, -92, 165, 1040, 21, 239, -1427, -575, 319, 1001, -904, 1296, 348, 473, -2048, 709, 589, 300, 666, // 13040 262, 328, -57, 642, 1732, -411, -455, -393, -790, 895, -1079, 771, -701, 1099, -436, -855, 996, 2546, 655, -554, // 13060 -288, -2075, 1543, -791, 925, 63, -721, 125, -1969, 25, 996, 215, -2216, -884, 502, -312, -144, -861, -277, 1210, // 13080 -389, 974, -687, 1394, 666, -1157, 873, 601, 1546, 228, 446, 1140, 1944, 1321, -104, -861, 1295, -502, 1937, -718, // 13100 -1316, -46, 154, 1126, -151, -139, -223, -994, -1256, 579, -1020, -92, -215, 1533, 633, -722, 1164, -169, -1217, -201, // 13120 -2455, -2040, 190, -865, -618, -688, 1460, 559, -324, 301, -136, -278, -6, -2052, 942, -126, -694, -189, 59, 235, // 13140 // Out channel 73 -2838, -769, 336, 192, -934, -1892, 22, 162, 1376, 133, 3, -959, -145, 209, 753, -813, 1828, 391, 1566, -410, // 13160 -1140, 401, -563, -1608, -336, -1111, -1790, 516, -976, -295, -706, -133, 792, -640, -888, 753, 347, -211, 813, 446, // 13180 -354, -321, 1227, 607, 1446, -2786, -572, 298, -911, 156, 424, -790, 1041, 54, -253, 247, 597, -1221, -482, 99, // 13200 1292, -424, -824, 947, -1796, 1012, -673, -93, 988, -826, 153, 1042, -1578, 423, -318, 1539, -208, 261, -863, 393, // 13220 399, -241, -39, -123, -885, 772, -398, -686, 427, 821, 1574, -288, 71, -478, -1029, 1719, -1349, 136, 291, -999, // 13240 845, -108, 172, 460, -852, 32, -815, -156, 1507, 279, -1215, -163, 835, 334, -283, 295, 1521, -775, -160, 195, // 13260 265, -1110, 27, 757, -2405, 586, 918, -1441, -3230, 287, -882, -211, 117, 401, 90, 2324, 895, 94, -930, 606, // 13280 -189, 0, 760, -252, 364, 1004, -842, 865, -100, -1197, 484, 916, 160, -556, -509, -592, -817, 617, 696, 305, // 13300 833, -864, -277, 104, 1480, 2124, -1161, 1019, -552, -97, -944, -443, -502, 542, 703, 2372, 879, -995, 83, 1298, // 13320 // Out channel 74 2236, -21, 391, 203, 507, 778, -429, -235, -2209, -1612, -889, 1315, -998, 305, -14, 47, -1045, 1051, -1947, -1424, // 13340 648, 139, 375, 1912, 1250, 980, -155, -407, -1155, -1940, 900, -412, -2603, -1626, 400, -286, -261, 210, -596, 380, // 13360 997, -1530, 785, 565, -11, 468, 1491, -56, 1121, 86, 331, 2160, 1255, 244, -872, -159, -3034, 349, 845, 1837, // 13380 463, 783, -724, -225, 14, 1655, 2584, -89, -520, 961, 250, -4224, 1903, -248, 1879, -865, 2208, -127, 1368, -1928, // 13400 -392, -545, -486, 2611, 375, 591, 933, 449, 857, 475, -3522, 2625, -1424, 2779, -78, -2700, -437, 352, 181, 308, // 13420 476, 318, -886, -564, -392, -1454, -7, 324, -945, 756, 2085, -1060, -3062, -1210, 256, -1560, -2327, -273, -2297, 451, // 13440 -1017, 3435, -3233, 648, 1980, -685, -362, -722, -100, -215, 1619, 2147, -155, 2928, -560, 151, 1032, -831, 1547, -861, // 13460 -482, 401, 654, 1480, 199, 978, 1400, 393, -790, 986, -2708, -1987, 1068, 3231, -195, 111, 402, 139, 940, 1488, // 13480 -1263, -1980, 1892, 2104, -1346, -1854, 1294, -652, -1744, -1505, -950, 332, 1225, 216, -930, -981, 439, 760, -243, -726, // 13500 // Out channel 75 1285, 1781, 1278, -367, -156, 1820, -888, -366, -1042, -778, -83, 1991, -1393, 918, -681, 2198, -1601, 200, 131, 673, // 13520 -829, -186, 752, 821, 276, 1735, 1862, 771, 125, -1368, -908, -21, 247, 427, 398, -949, 1297, 608, -142, 455, // 13540 -1162, -401, -1251, -225, -2537, 631, -1307, -486, 1901, 1093, 107, 238, 326, -189, -33, 932, 179, 374, 707, -808, // 13560 -3220, 230, -906, -532, 651, 242, 144, -416, -914, -280, -124, -117, -591, -699, -339, -793, 1441, -25, -53, 69, // 13580 -704, 986, -4390, -1422, -58, 1260, 854, -194, 334, -136, -310, 354, 1028, 762, 851, -3236, 288, -699, -1340, 1500, // 13600 -1815, 2537, -1327, 718, -203, -262, 99, -314, 438, -1163, -118, 89, -77, -984, 711, 184, -904, 1926, -486, -207, // 13620 306, 2018, -859, -1470, 927, 3, -1148, 1287, 1032, -111, -32, -1356, -1114, 658, 784, -1363, -700, 778, -818, -259, // 13640 887, -56, -191, 1954, -131, 639, 1565, 1619, -299, -1320, 476, 213, -665, 1854, 1255, 1482, 569, -1181, 279, -128, // 13660 669, 44, 914, 1035, 158, -471, 1057, 1771, -1215, 706, 692, -509, -354, -243, -1049, 12, 516, 1376, -409, -121, // 13680 // Out channel 76 2655, 1580, 63, -1433, -504, 1859, -1048, 485, -1354, -1057, 299, 862, -98, 1079, -307, 2357, -2301, 297, -336, -208, // 13700 -979, -305, 570, 1067, -153, 2126, 1130, -232, -26, 213, -347, -580, -368, 671, -689, -1475, 1127, 817, -750, 84, // 13720 -1736, -506, -558, -833, -1458, 1717, -1588, -1573, 2273, 464, -1278, 454, -319, 94, -651, 350, -685, 1500, -163, 41, // 13740 -3667, -300, -2388, 200, 1866, 251, 772, 694, -935, -1151, 0, -366, 505, -89, -139, -2923, 446, 376, 771, 530, // 13760 -1663, 318, -4538, -793, -606, 1231, 1237, -333, 161, 259, -1237, -36, 1025, 481, 437, -2168, 500, -1503, -902, 1276, // 13780 -1027, 1704, -1552, 303, 544, -98, -559, -943, 328, 126, -471, 705, 166, -800, 1587, -71, -110, 1534, -554, -118, // 13800 694, 1484, -452, -341, 343, 823, -300, 2215, 1570, -1005, 289, 472, -1222, 371, 1900, -1187, 79, 381, -394, -890, // 13820 1618, 830, 809, 2320, 265, 902, 1846, 59, -1544, -264, -1306, -361, 231, 499, 227, 893, 68, -1244, -1003, 474, // 13840 119, 714, -173, 2052, -1449, -1030, 507, 2280, -805, 351, 311, 826, -420, -608, -746, 111, 1310, 60, 418, -2134, // 13860 // Out channel 77 597, -310, -691, -433, 447, 939, -1155, -1302, -2761, -728, 215, -127, 990, -516, -848, -1741, 1035, -349, 741, -340, // 13880 580, -791, 1124, -155, 632, 247, 114, -37, 1866, 404, 229, -705, -618, 1037, -635, -1040, 510, 636, -156, 970, // 13900 -756, 874, -546, -252, 322, 1186, -183, -802, -177, 795, 209, -881, -1308, 193, 132, 378, -832, 166, 885, 1521, // 13920 -788, -1345, -15, -678, -469, -273, 57, 6, -416, -32, -879, -197, 1446, 130, 179, 249, -278, -517, 195, -675, // 13940 -170, -5, -317, 255, 822, 249, -939, 131, 731, 2417, 546, -148, 1768, 742, -97, 861, -774, -1579, 983, 1307, // 13960 382, 657, -943, -940, -1785, 524, -413, -93, -278, -112, 1057, 364, 161, -1117, -769, 387, -840, -495, -666, -475, // 13980 1538, 270, 1118, 101, 411, 92, -11, 464, 532, -1249, 1857, 942, -740, -965, -239, 507, 451, -455, -387, -2387, // 14000 712, 775, 2113, 193, -1373, 251, -226, 11, 648, 305, -260, 178, -758, 203, 41, -238, 1533, -3142, 202, -1075, // 14020 677, -247, 818, 435, -2292, -189, 33, 116, -2057, 512, 189, 943, -619, -1117, -1712, -483, -263, 2598, -739, -1582, // 14040 // Out channel 78 -29, -568, 414, -500, 1902, 1219, -738, -552, -319, -1366, -638, 2124, -926, -101, 1165, 177, 151, 395, -1960, -1544, // 14060 160, 635, 196, 239, 494, 878, 436, -714, -1086, -1112, -512, -253, -1043, -1166, -55, -297, 145, 146, -1021, 201, // 14080 1410, -1121, 737, -201, -1774, 1032, 19, 213, 1190, 959, -221, 1456, 419, -122, -260, 277, -959, 70, 935, 557, // 14100 818, -396, 296, -1106, 230, 1317, 1328, -340, -284, 579, 607, -2901, 1453, -741, 998, -640, 1389, 1128, 1272, -1699, // 14120 -1656, 203, -671, 990, -726, -18, 508, 80, -90, -886, -2731, 1327, -1142, 1471, -382, -2019, 336, 258, -48, 523, // 14140 774, 390, -1953, -120, -1209, -363, -507, -18, -44, 99, 187, -718, -3225, -999, -295, -771, -1513, 359, -311, -1711, // 14160 -488, 2424, -2116, -804, 2112, -974, -458, -97, 571, -333, 357, 1022, 360, 2697, -808, -294, 652, 66, 806, 919, // 14180 -54, 134, -688, 1031, 887, 317, 1776, 323, -773, -320, -1417, -1239, 973, 2824, 659, 643, 94, 223, 809, 1897, // 14200 58, -1149, 857, 131, -408, -951, 110, 164, -511, -1317, -398, 635, -9, -872, 20, -373, -228, 834, 444, 164, // 14220 // Out channel 79 -943, -1216, 1427, 113, -741, 87, 229, 935, 3760, -163, 252, -395, -995, 46, 778, 545, -279, 700, -1043, 217, // 14240 -656, 415, 189, -352, 460, 101, 415, 869, -608, -59, 119, 824, 601, -533, 612, 23, -588, -1044, 180, -1498, // 14260 -1, 207, 149, -240, 376, -94, -201, 1038, 1002, 1303, 558, -70, 783, -483, 148, 26, 1643, -442, 239, -954, // 14280 19, -643, -102, 541, 51, 338, 35, 1062, 1014, 24, 885, 1126, -751, 455, -217, -418, -75, 641, 268, 1094, // 14300 -613, -75, -1129, 342, 46, -1041, 360, 420, -905, -1040, 723, -205, 701, 54, 1509, 498, -341, -163, -486, -221, // 14320 -110, -154, 424, 1492, -288, -820, 968, -122, 1491, 317, -1218, -256, 492, -110, 228, -431, -501, 192, 958, 338, // 14340 -651, -2238, -611, 399, 88, -840, -330, -273, 1082, 1461, -1861, -298, -441, 303, 563, -247, -13, 841, 890, 1363, // 14360 -351, -94, -1126, 889, 645, 171, 635, -863, -661, -542, 7, -125, -275, 203, 358, 1772, -2009, 2375, -310, 1436, // 14380 319, 221, -353, -767, 349, 2277, -868, 482, 1090, 155, -209, 410, 740, 32, 163, 1343, -559, -1168, 396, 1661, // 14400 // Out channel 80 1019, -488, 577, 696, 345, -237, 815, -481, 962, 562, -1270, -494, 683, -59, -650, 720, -1284, -1929, -310, 128, // 14420 516, 780, 933, 833, -394, 1644, 792, 19, 1685, 523, 1067, -203, 7, 160, -1027, -1785, -494, 665, 643, -402, // 14440 -706, -795, -1365, -1577, 1215, 1262, 730, 1751, -660, -1578, -699, -989, -1920, -619, 1365, -308, 25, -466, 240, -1491, // 14460 80, 259, 9, -662, -166, -999, -175, -837, -1272, 188, -23, 265, -168, -6, -1987, -494, -981, 177, -718, 963, // 14480 -751, -51, -1144, 182, 270, 574, 1047, -154, -199, -1005, 675, -275, 86, 544, 1454, -1926, 1412, 536, 198, 367, // 14500 -449, 608, 53, -508, 179, 555, -638, 1846, -38, 906, 74, 1265, -30, 392, -18, -591, -1990, -1132, 693, -1718, // 14520 1135, 94, 230, -1373, 1253, 1222, 881, -825, 1738, 1280, 1444, 199, 313, 884, -122, -1088, 301, 100, 101, 41, // 14540 361, 169, -2132, -612, 564, -1384, 163, 246, 905, 833, 143, -696, -1126, -1004, 2261, 668, 1536, -1202, 288, 515, // 14560 309, 1484, -474, -174, -76, -300, 755, -164, -66, 1046, -292, 140, 139, -4, -298, -1568, -446, 1175, -453, -1318, // 14580 // Out channel 81 -1600, 300, -1655, -741, -105, -1895, -327, 774, -803, -214, 1497, -2238, 375, -820, -816, -283, 1728, 689, 2917, 294, // 14600 -594, -684, -696, -291, -2920, -600, -692, -869, 106, 996, -228, -6, 345, 1050, -1302, 513, 1388, 143, 350, 1572, // 14620 -1732, 2134, -756, 1576, 333, 485, -141, -526, -482, 846, 1747, -375, 756, 1152, -1545, -920, 1336, 218, -2475, 26, // 14640 97, -115, -933, 1080, -460, -7, -3307, 674, 126, -872, -39, 1471, 97, 191, 819, 70, -1546, 668, 173, 973, // 14660 820, 66, 1129, -1525, 327, -34, -1133, -205, -127, 941, 3169, -1075, 373, -3055, -1743, 2394, -1001, -313, -605, -7, // 14680 -642, -1738, 1089, -160, 786, 768, -839, 385, 35, 387, -571, 364, 474, -552, 128, 98, 1714, 1326, 265, 579, // 14700 1725, -1539, 3369, 1013, -4512, 1009, 307, -114, -626, -398, 461, 241, -211, -592, 259, 1994, -1515, 993, -1549, -970, // 14720 534, 1922, 2343, -197, -968, -763, -2836, -786, -351, -373, 685, 1495, -445, -1166, -503, -375, -1256, -1126, -764, -556, // 14740 61, 490, -979, -1000, -314, 410, -1553, 685, -358, 869, 1595, 810, -744, -905, 1011, 1453, -1955, -145, -417, -1111, // 14760 // Out channel 82 401, 868, -142, -1910, -341, 549, -601, 2224, -1355, -1715, 300, 2538, -628, -848, -204, 2751, 989, 715, -433, -354, // 14780 -1250, -134, 420, 1339, -136, 1299, 1281, -607, -967, -71, -1899, -909, 35, -735, -593, -927, 1135, -938, -663, -295, // 14800 -400, -192, -545, -997, -1728, 1671, -1349, -527, 1397, 2307, -135, 605, 1442, -14, -208, 257, -547, -331, -997, 517, // 14820 -778, -1204, -735, -350, 655, 301, -714, -313, 531, 776, -672, -1619, -44, -151, 568, -1357, 633, 1252, 1355, 229, // 14840 -286, 2358, -1837, 902, -632, 2022, 1374, 722, -383, 549, -552, 825, 335, -944, -1054, -1176, -535, -386, 646, -124, // 14860 -1062, 315, -689, -552, -741, -53, 795, -485, -699, -246, -104, -321, -1626, -61, 1681, -1172, 456, 1112, -1307, 209, // 14880 229, 1334, 105, -409, 76, 740, 504, 393, 758, -2483, -112, 1179, 128, 598, 2092, 1, -112, 75, 908, -89, // 14900 -296, 387, 289, 2698, -555, 626, 116, 920, -1493, 268, -587, 533, -779, 1363, 215, 1539, -451, -1924, -823, 96, // 14920 588, -623, 635, 623, -987, -74, 369, 1848, -247, -151, -143, -622, -1494, -1314, 837, 205, -108, 1542, 857, -196, // 14940 // Out channel 83 251, 2279, -2493, -383, 1591, -2106, -277, 92, -823, 486, 652, -522, 163, -2079, -1031, -250, 911, 1728, 1865, -380, // 14960 -697, -2638, -833, 175, -950, -1319, 811, -1052, -1293, 866, 28, -1812, 279, 24, -1101, -1326, 964, -286, 221, 1258, // 14980 -1468, 2469, -1345, -231, 1001, -170, -341, -1068, -178, 1072, 678, 340, 386, 113, -1538, -109, -286, -441, -2839, -61, // 15000 -345, 444, 103, -52, 1087, -2149, -3938, 625, 373, -1024, -875, -274, 1162, -14, 1397, 53, -1183, 2296, -877, 426, // 15020 2211, 750, 1808, -684, 707, 922, -962, -876, -817, 1785, 85, -765, 54, -2714, -2377, 1500, 577, 906, 185, -1128, // 15040 -758, -3565, 1864, 789, 494, 1666, -277, 888, -1721, -694, 575, -237, -224, -682, -64, 104, 1099, 411, -782, 1907, // 15060 1106, -1147, 560, 848, -1180, 68, 2123, 1336, 463, -2701, -40, 185, 906, -354, 659, 1388, -1405, 224, 1261, -1516, // 15080 299, 1124, 730, 165, -1690, 11, -607, 614, -1081, -77, 1485, 639, -1576, -452, 483, -955, -487, -2246, -283, -315, // 15100 -1132, -1087, -1863, -1031, -1848, -446, -45, 164, 48, 481, 1242, -823, 753, -1059, 888, 825, -2789, 2131, 346, -1591, // 15120 // Out channel 84 982, 933, 318, -1468, 383, 1314, -291, 2080, 360, -703, -115, 666, -548, -37, -575, 2251, 1342, 847, 562, 1068, // 15140 -1693, -1282, -193, 639, 780, 69, 2381, -1012, -884, -535, -1724, 702, 585, -1131, -908, -769, 2280, -1497, -80, 188, // 15160 -844, 501, -1477, 243, -984, 138, -1275, -102, 568, 2069, 71, 316, -370, -51, -1647, -384, 683, 301, -1039, -735, // 15180 -2575, -25, -1194, 1744, 1978, 2384, -1622, -16, 1372, -1801, -132, -371, -247, 1614, 487, -1503, 822, 678, 78, 822, // 15200 -143, 835, -603, 839, -1192, 1155, -456, -807, -1224, 556, -924, 1201, -35, -1877, -832, -928, -210, -765, -366, -313, // 15220 -1249, 748, 697, -955, -128, 1031, -657, -714, 904, -518, -232, -713, -1349, -696, 968, -13, 1151, 1257, -455, -165, // 15240 -725, -250, -41, -632, -468, 592, 546, 1098, 570, -1236, -1928, -541, 198, -166, 2932, -1105, 276, -349, 1346, 305, // 15260 878, 507, -179, 2121, 232, 1915, 490, -226, -827, -578, -276, 1433, -699, 858, 1062, 982, -1892, -828, -813, 1270, // 15280 -431, -780, -68, 584, 68, -159, 281, 1621, 939, -381, -101, -1310, -674, -1860, 716, 1683, 852, -1369, 649, -228, // 15300 // Out channel 85 1528, 1036, 1595, -845, -1201, 823, 553, 50, 756, 631, -1451, 807, 133, 499, -55, 3172, -2162, -715, -396, 871, // 15320 1324, -251, 1953, 1815, -272, 1317, 2183, -352, 1201, 607, -75, 33, -40, -10, 1355, -821, 470, 451, -235, -866, // 15340 -284, -704, -1225, -1679, 30, 1077, -851, 623, -761, 1013, -1122, 101, -1300, 444, 1363, -229, 33, 72, -58, -1343, // 15360 -3643, 652, -1999, 1852, 2179, -763, 1018, -942, -1731, -1594, 856, -593, -440, -39, -248, -1527, -742, -296, -1578, 640, // 15380 591, 0, -1341, 490, 446, 235, 1382, 160, -1603, 744, 88, -234, 840, -73, 1667, -1863, 896, 634, -494, -948, // 15400 -2304, -172, -1203, 157, 534, -495, 577, 1744, -229, 698, -13, 198, 189, -218, 1485, 850, -912, 1304, -499, -1435, // 15420 -356, -846, -382, -1572, 468, 1789, 639, 1970, 972, 819, 463, -894, 336, 376, 999, -2901, 421, 363, 614, 244, // 15440 -53, 145, -688, -271, 276, -776, 1765, 428, -226, 593, -129, 20, -1034, 500, 2965, 746, 930, 144, -848, 393, // 15460 -38, 184, 142, -423, 112, -190, 346, 1997, 1689, 687, 870, 928, -169, -1256, 409, -698, 217, -497, 52, -997, // 15480 // Out channel 86 290, 749, -878, -2683, -48, 239, -421, 1842, 1166, -330, 201, 347, 211, -443, 214, 1590, 612, 1318, 896, 557, // 15500 -467, -963, 176, -784, -1047, 405, 1156, 957, 490, 112, -1098, -698, 218, -640, -873, -839, 2203, 165, -99, 1475, // 15520 1, 355, -1026, -1457, -1195, 302, -1484, -915, 231, 1800, -605, -1064, -25, -515, -698, -32, -374, -529, -1668, -63, // 15540 -798, 352, -1395, 1162, 780, -26, -371, 490, 1567, -926, 304, 116, 1014, 198, 498, -202, -547, 1812, 1111, 203, // 15560 419, 519, -1039, 352, -1194, 2190, -19, -161, -748, 486, -1267, 1085, -595, -1199, -721, -553, -1513, 188, 354, -416, // 15580 -138, -177, 507, 700, -924, 598, 161, 1036, 1095, 537, 51, -805, -1267, -539, 1244, -633, -560, 464, -1825, 753, // 15600 202, 28, 411, -281, -1028, 1050, 567, 812, 278, -2508, -1711, 16, 1005, 1076, 1443, -494, 546, 1006, 490, -696, // 15620 321, 306, -280, 1950, -1126, 2215, 1618, 574, -466, 1025, -134, 149, 62, 474, 1023, 1320, -855, -829, 331, 626, // 15640 -44, -826, -845, -321, -68, -188, -728, 946, 245, 58, -628, -43, -31, -1156, 558, 328, -304, -202, -461, 827, // 15660 // Out channel 87 687, -193, -1540, -99, 2430, -48, -61, -1884, -586, -235, 1165, 635, 467, -478, 1077, -1487, -541, -1196, -347, -1076, // 15680 685, -458, -892, 953, -398, -1958, -1514, -821, 417, -1287, 658, -1416, -974, 834, 199, 2097, -400, 26, 563, 292, // 15700 -39, 601, 3688, 298, -150, -973, 1835, 384, 281, -1240, 1814, 781, 1708, 515, 244, -13, -184, 140, 584, 885, // 15720 1850, 1107, 941, -1421, -981, -40, 1136, 338, 340, 404, -196, -371, 370, -316, 992, -48, -93, -342, 1127, -1177, // 15740 583, -863, 1852, 633, 1571, -678, -969, 643, 767, 739, -243, 464, -554, 1359, 601, 693, -263, -727, 679, 527, // 15760 818, -198, -9, -398, -22, 39, -546, -1326, -148, -561, 509, 521, -136, -617, -1625, -315, 308, 116, 952, 1426, // 15780 -299, 299, -165, 1010, -496, -643, -1218, -652, -199, 1345, 542, 667, -508, -425, -814, 1022, 256, -406, -397, -1695, // 15800 -1190, 76, 614, -1034, -14, 444, -827, -982, 32, 809, -85, -777, -57, 247, -3061, -2459, -187, 291, -199, 1272, // 15820 -313, 236, 538, -331, 4, -674, 480, -1737, -36, -2261, 324, 988, 239, -137, 891, 627, 120, -343, -496, -40, // 15840 // Out channel 88 2311, 172, 598, -183, 642, 1098, -126, -1681, -729, 94, -344, 243, -80, -142, 450, -465, -1060, -578, -1879, -574, // 15860 981, 368, -526, 479, 731, 493, 622, -417, -773, -1786, 561, 65, -337, -1440, 2459, -789, -772, 484, 695, -994, // 15880 2340, -1268, 941, -704, 503, 193, 1211, 171, 532, 74, 11, 538, -751, -425, 1155, -452, -1071, 222, 1515, 293, // 15900 -145, -1189, 1451, -396, 46, 235, 2884, -800, -102, 585, 271, -1124, 253, -180, 663, 195, 1431, -388, 81, -864, // 15920 55, -451, -1250, 2194, 577, -57, 346, 1131, 859, -704, -3640, 2800, -719, 2838, -200, -1322, 665, 310, 172, -75, // 15940 784, -296, -1073, -65, -670, -1718, 958, -43, -882, 262, 1672, 92, -2490, -543, -935, -958, -1922, -752, 617, 665, // 15960 -1089, 1328, -1930, 140, 2435, -1696, -735, 23, 732, -14, 967, -246, -10, 1167, -1233, 27, 1230, 458, 806, 286, // 15980 -782, -2249, -218, 6, 957, -761, 1293, 42, 418, 649, -2223, -2142, 334, 2042, -145, 68, 243, 100, 1488, 1517, // 16000 -1554, -808, 920, 19, -1300, -1113, 2162, -723, 839, -729, -176, 1242, 913, -277, -394, -525, 382, 317, 719, 305, // 16020 // Out channel 89 266, 1428, -2938, -875, -265, -803, -1280, 376, -1742, -896, 1902, 322, 493, -1140, 281, 658, 1068, 288, 1519, 95, // 16040 -614, -2805, -1029, 746, -823, -1882, -515, -1222, -1538, 637, 125, -1177, -661, 1160, -841, 1738, 868, 1341, 372, -304, // 16060 -1009, 1757, 547, 633, -161, 30, 268, -1624, 1467, 1112, 1787, 316, 1273, 2270, -2934, -1093, 886, 1236, -1334, 1389, // 16080 -458, -238, -655, 1034, 901, 949, -2644, 103, -1657, -327, -1095, -923, 870, 852, 1693, -1230, 93, 938, 865, -951, // 16100 2077, -771, 423, -37, 522, -1903, -341, 766, 284, 5587, 871, -534, -136, -2074, -1924, 2444, -1394, -879, -71, -141, // 16120 -1955, -2045, 657, 97, -820, 904, -79, -12, -778, -409, 447, 995, -682, -1633, 1092, 330, 2075, 1413, -534, 3838, // 16140 -537, -75, 1419, 2364, -2059, -139, -44, 1626, -182, -994, 642, 936, 272, 949, -377, -324, -120, 694, 325, -3195, // 16160 -333, 1322, 4175, -499, -462, 1473, -1366, -2263, -980, 24, -209, 332, -43, -619, -843, -619, -454, -1154, -443, 53, // 16180 -479, -379, 811, -403, -1213, -579, 515, 501, -611, 131, 1260, 724, 586, -371, 1167, 807, -1204, 150, -100, -1792, // 16200 // Out channel 90 498, -366, -473, -551, 62, 806, 789, -861, 655, 49, -492, -986, -389, 354, 754, 556, -518, -865, -501, 752, // 16220 744, -17, 80, -780, -86, -288, -135, -929, -217, 1730, -380, -454, 450, 103, -207, 974, 574, -122, 449, 245, // 16240 115, -1511, 901, 801, 46, -958, 885, -110, -168, -874, 20, 474, 292, 992, -38, -678, -604, 424, 1492, -305, // 16260 -1079, -587, -455, 612, -209, 885, 1857, 440, 543, -13, 352, 1489, -892, -119, -321, -42, -409, -1806, -418, 615, // 16280 -1603, -1016, 504, -350, -34, -594, 608, 886, 168, -570, 464, -1574, 272, 2492, 945, -778, 717, 162, -378, -365, // 16300 573, 516, 1107, -941, -476, -1747, 101, -157, 278, 666, -338, 1018, 561, -602, 1084, 1134, -157, -351, 507, 547, // 16320 -1380, 176, -637, -93, -53, -300, -1355, -488, -221, 1654, -189, -307, -740, 355, -306, -1239, 391, 1080, -715, 909, // 16340 -41, -921, -1615, -996, 1620, -938, 681, -1538, 1105, -455, -19, -961, 1091, -612, -236, 384, -328, 2102, -302, -501, // 16360 154, 297, -226, -844, 2030, -305, -540, 273, 456, 31, 97, 772, -1057, -996, 525, 442, 1809, -2653, -646, 529, // 16380 // Out channel 91 -804, -760, 942, -104, -938, 441, -183, -1173, 515, 578, -273, -1180, -362, 1954, 456, -490, -642, -338, 418, 802, // 16400 -739, 0, -306, 925, -172, 505, -1004, 864, -828, 145, 389, 1450, -447, 271, 464, 590, -1157, 73, 853, -187, // 16420 -647, 656, 881, 2004, 943, -625, 18, 1311, -1093, -1119, 400, -697, -243, -259, 1181, 318, 465, 711, 344, 327, // 16440 -463, -486, -478, 406, -490, -712, -851, 186, -129, 103, 288, 593, -1241, 890, 1301, 450, -218, -599, -111, 497, // 16460 -752, -663, -806, -161, -42, -1887, 192, -64, 836, -767, 1658, -1365, 1174, 220, 726, -315, 972, -982, -949, 1165, // 16480 42, 1460, -443, 583, -418, 67, -349, -361, 1806, -809, -1117, -62, 1333, -1066, -609, 194, 203, 493, 207, -86, // 16500 -318, -889, 872, 253, -530, 271, -560, -438, -115, 893, -1023, -478, -760, -840, -562, 161, -266, -144, 59, -291, // 16520 455, -654, 736, -274, -80, 395, -1131, -596, 402, -784, -74, 601, 1441, -1350, 6, 135, -162, 1147, -576, 27, // 16540 1131, 210, 586, 1166, 963, -443, -635, -756, -563, -367, 73, 960, 39, 1299, -1564, -587, 736, -686, -1094, 126, // 16560 // Out channel 92 -660, -181, 945, 74, 127, -885, 1050, 1023, 3025, 89, 3, 885, -825, 1443, 179, 679, 1386, 315, 270, 651, // 16580 -787, -477, -249, -575, 669, -173, 1236, -795, -1624, -147, -1513, 1300, 1012, -1281, 410, 1012, 360, -1396, -139, -113, // 16600 1040, 743, -759, -200, -650, -651, -685, -255, 689, 204, -580, 406, 112, 4, -714, 618, 478, -545, 258, -682, // 16620 -297, -287, 352, 1107, -357, 1181, -319, 1785, -374, -559, -688, 704, -322, 166, 78, 973, 564, 678, -3, 865, // 16640 -179, 907, -460, -495, -244, 1308, -1007, 550, -1480, -567, 587, -30, -1005, 135, -188, -622, -53, -370, -675, -322, // 16660 -568, 150, -642, -441, 785, 820, 1555, -643, 950, -517, -1328, -92, 737, 219, 1371, -792, 1362, -146, -15, -659, // 16680 -1012, -1842, -1177, -374, 120, -511, 553, -59, -188, 767, -1768, -875, 278, 82, 705, -144, -1006, 818, 209, 1474, // 16700 -108, -489, -1821, 1090, 265, 931, 776, 166, 27, -79, 175, 265, -648, 233, -429, 1759, -1707, 339, -90, 879, // 16720 1096, -1260, 547, 28, 1304, 1404, -188, 415, 1106, -230, -214, -1379, 371, -178, 765, 1209, 1497, -1046, 636, 2814, // 16740 // Out channel 93 -182, -77, 3281, 885, -1921, -60, 1839, 251, 2551, 570, -1631, -540, -336, 424, -1184, 1658, -431, -499, -919, 1921, // 16760 392, 677, 242, -134, 282, 628, 45, 758, -231, 417, -760, 867, 1757, -891, 147, -778, -233, -90, -707, -196, // 16780 855, -241, -1697, -1354, 236, 265, -248, 1570, -1127, 1135, -2376, -1704, -1835, -1190, 1614, 902, 1434, -770, 776, -1919, // 16800 54, -482, 446, 739, -126, -2162, 1023, -813, 204, -617, 750, 570, -2052, -54, -2750, 781, -283, -217, -921, 408, // 16820 -19, 1480, -377, -549, -392, 1287, 557, -311, -1912, -3639, 648, -1055, 161, 2892, 1599, -969, 1429, -549, -307, -513, // 16840 -154, 580, 637, 1719, 1088, 712, 1563, 1486, 510, 969, -985, 87, 786, 945, 58, 779, -696, -514, 317, -2859, // 16860 725, -1526, -356, -2389, 402, 463, -191, -529, -844, 60, -1025, -192, 1404, -287, 836, -728, -297, -881, 587, 2568, // 16880 -505, 278, -3228, -98, 46, -1457, 1134, 2648, 1339, -569, 657, 89, -1117, 47, 2313, 1648, 496, 628, -931, 789, // 16900 -150, 290, -1288, 53, 695, 240, -1107, 955, 1152, 1184, -1973, -694, -536, -295, 562, 380, -277, -585, 1475, 1410, // 16920 // Out channel 94 1050, -97, 580, 511, 687, 599, -388, -1056, -269, -674, -602, 887, 464, -123, -422, -423, -1574, -1112, -731, 812, // 16940 1180, -306, -57, 1610, 1222, 39, 1412, 219, 1260, -503, 183, -19, -569, 846, 1356, -1130, -1133, 769, -410, -126, // 16960 -310, 152, -766, -783, -94, 1197, -244, 1100, -495, -723, -26, 516, -1905, 408, 1930, -167, -312, 1095, 1253, -84, // 16980 -626, 834, 459, 125, 471, -479, 143, -271, -914, -119, 246, -1000, 148, 29, -662, -659, 947, -2207, 146, 654, // 17000 658, 298, -521, -301, 372, -1515, 1292, -838, -43, -497, -1129, 569, -381, 588, 1464, -2043, 2327, 19, -266, 1416, // 17020 -1057, 763, -441, -882, 518, -637, 463, 336, -826, -251, 737, 822, 170, -604, -550, 3, -2011, -630, 407, -590, // 17040 -1049, 757, -1186, -1085, 1794, -156, -728, 499, 1049, 704, 1105, 184, 74, 717, 187, -2091, 147, -1284, 601, 150, // 17060 -458, -1232, -1375, -456, -602, -937, 781, 328, 92, 1380, -1076, -2042, -475, 295, 1050, 919, 1564, 164, -634, -621, // 17080 -25, 733, 323, 593, -537, 63, 2782, -769, -209, 206, 583, 156, -322, 272, -1443, -886, -110, 1490, 507, -1709, // 17100 // Out channel 95 -1097, -1877, 832, 841, -945, -595, 2246, 419, 642, 538, -866, -395, 1786, 446, -558, -1659, -138, -476, -342, 40, // 17120 551, 1565, -306, -689, 889, 245, -1807, 1394, 1489, -321, 1207, 625, 1654, -894, -1283, -569, -1483, -105, 1024, 1285, // 17140 1788, -1276, 32, -29, 1681, -165, 362, 746, -1748, -96, -391, -602, 225, -2191, 525, -457, -121, -2934, 720, -681, // 17160 971, 573, 923, 1371, -1098, -733, 1591, -600, 1940, 248, -634, 1425, 23, 269, -1057, 2385, -101, 526, -224, -156, // 17180 -156, -95, 860, 73, -583, 96, -2, 457, 259, -2911, 1068, -1172, -755, 497, 731, 482, -1530, 948, 1022, -266, // 17200 879, 331, 755, 936, -263, -395, -1013, 498, -281, 35, 355, -755, 49, 1443, -1889, -107, -1601, -1513, -32, -1484, // 17220 40, -1204, 681, 201, 1015, -579, 139, -2615, -180, 585, -401, -986, 458, 65, -239, -90, -951, 394, -95, 1214, // 17240 -745, -159, -247, -953, -106, -1039, -408, 724, 61, 898, 589, -471, -208, 548, -564, 1193, 43, 2118, 883, 575, // 17260 823, 353, -790, 198, 1049, 352, -560, -473, 339, 577, -1884, -724, 602, 227, -690, -631, -461, 92, -666, 479, // 17280 // Out channel 96 -75, -951, 158, 1167, -239, -1830, 156, 186, 2805, 1126, -1244, -163, -882, -1252, 337, -1073, 552, -1180, -86, 245, // 17300 1802, -690, -1764, 1019, 895, -3153, 1007, -482, -1022, -871, -1119, -971, 557, -1173, 532, 623, -1093, -2729, 680, -696, // 17320 1992, 558, 1596, 276, 152, -1022, 1055, 801, -486, 367, 802, 542, -1469, -790, 740, 337, 1434, -352, 0, -988, // 17340 1486, 385, 2250, 792, 664, -512, -541, -1134, 530, -436, 170, -68, -186, 1483, 576, 1379, 105, -307, -633, -138, // 17360 591, -50, 2634, 269, -157, -483, -720, 370, -1746, -844, -921, 818, -1912, -985, -409, 992, 2222, 1822, -28, -1561, // 17380 -289, -389, 1104, -39, 1037, -96, 1031, -1049, -601, 271, -667, -469, -269, -559, -846, 624, 1636, -1635, 917, 146, // 17400 -1431, -2118, -1231, 502, 274, -1849, 871, -1041, -622, 754, -1466, -1067, 967, 861, -23, -581, 206, -1201, 894, 2138, // 17420 -1991, -1233, -1701, -1129, 358, -1127, 94, 414, 449, 796, 947, 269, -469, 473, -553, -103, 247, 1275, -525, 787, // 17440 -1421, -1306, -57, -2576, 1663, 798, 702, -545, 1967, -1361, 276, -658, 423, -444, 1052, 806, 547, -114, 131, 842, // 17460 // Out channel 97 1119, 971, -901, -323, -1099, 255, -721, -468, -190, -542, -628, 601, -1088, -41, -209, -340, -527, -508, 1238, -184, // 17480 -1370, -251, -128, 111, 432, -1269, 1327, -817, -686, -538, -992, 881, 960, 803, 36, 511, -250, -144, 151, 437, // 17500 -62, 284, -390, -243, -947, -627, -1518, 105, 635, 1113, 1185, 470, -433, 1822, 112, -92, 776, 1345, -293, -1057, // 17520 -297, 322, -112, 1378, 592, 427, 501, 46, -329, -645, -395, 421, 319, -124, 810, -1590, -839, -359, 1031, 640, // 17540 1254, -132, 642, -974, 404, -565, -207, -280, -388, 93, 139, 35, -15, -943, -1088, 90, 951, 277, -909, -303, // 17560 -254, 23, -259, -755, 1252, -497, 277, 56, 492, -1021, -926, 768, -669, -2218, -354, 857, 1423, -138, 913, 1457, // 17580 17, 133, 673, 816, -128, -85, -152, 1717, -158, 1025, -613, -741, 77, 565, 484, 69, 945, 62, 922, -858, // 17600 720, 406, -207, 35, -285, -151, -842, -1655, 467, 232, -159, -83, 66, 14, 548, -511, 220, -306, -1373, -131, // 17620 -38, 742, 892, -1136, -609, -1061, 1247, -194, 465, -665, 973, -309, -24, -796, 811, 352, 119, -1694, 420, 726, // 17640 // Out channel 98 819, -381, -1556, -313, 853, -98, -679, -1662, -2733, -142, 509, -606, 477, -546, -640, -282, -45, -227, -261, -1841, // 17660 763, 647, 971, -142, 30, -273, -711, -718, 1597, 4, 1799, -443, -1865, 2552, 672, 130, 14, 1279, 120, 556, // 17680 -1667, 494, -767, 113, 365, 1522, 318, 323, -135, -978, 517, 158, -1309, 748, 477, -388, -1283, 1672, 914, 347, // 17700 151, -191, -253, -801, 862, -770, 292, 430, -485, -272, 280, 39, 1122, -522, -351, -873, -367, 17, 372, -914, // 17720 769, -201, -438, 235, 1367, -593, 944, 249, 1236, 1770, -219, -916, 815, -510, -12, 58, -874, -520, -1161, 668, // 17740 -772, 109, -375, -278, -314, -283, -382, 847, -525, 403, 319, 1488, 815, -437, -379, -56, -800, -40, 479, 150, // 17760 -420, 1565, 52, -807, -497, 168, -393, 294, -112, 496, 240, 554, 461, -106, -1084, -434, -776, 142, 437, -1556, // 17780 -435, -215, 618, -931, 41, 203, -640, -1022, 1977, -71, 235, -1000, 199, -1176, 677, -698, 1601, -1440, -1043, -1194, // 17800 226, 1394, 1340, 1284, -1016, -942, -9, 337, -816, -313, 772, 1302, 337, 796, -956, -1312, -775, 1595, -819, -3605, // 17820 // Out channel 99 -936, -1714, 2566, -639, -1419, 1234, 766, 203, 2611, -460, -725, 286, -643, 1336, 923, 135, -206, 206, -2460, 698, // 17840 -911, 1082, 153, -471, 1115, 724, -36, 303, -927, -1398, -1293, 133, 636, -803, -155, 389, -381, -508, -163, -1130, // 17860 2217, -2658, 73, -160, 8, -1655, -214, 1852, -807, -28, -270, 773, 472, -1162, -109, -1129, 753, -520, 1338, -1153, // 17880 -580, -883, 683, 971, -1186, 1504, 2704, -108, 510, -682, 164, -387, -1156, 47, -56, 344, 830, 409, 323, 10, // 17900 -1479, -294, -272, 563, -611, 1167, 533, 1485, -1095, -3554, -1343, 949, -1263, 1927, 511, -1007, 1169, -123, 620, -888, // 17920 512, 1636, -733, -120, -384, -956, 476, -424, 856, -1001, 586, -582, -863, 1131, 502, -766, 313, -1441, 188, -769, // 17940 -1784, -1415, -933, 821, 1861, -863, 76, -399, -452, 281, -627, -766, 145, 707, 244, 15, 890, 816, 914, 2537, // 17960 -305, -523, -1429, -259, 2067, 518, 171, 7, -273, 649, 80, -661, 139, 854, 217, 1486, -2131, 2048, -497, 1188, // 17980 -791, -983, -125, 328, 1766, 701, -1074, 580, 68, 174, -842, -821, 376, -682, 985, 862, 2653, -2656, 802, 3020, // 18000 }; const int16_t cg_FC2bias[100] = { // Co,H,W,Ci: (100,) -3086, -26, -1535, 664, 1217, -2506, -488, -1606, -709, 1271, -1899, 844, -749, -1570, 2098, 2177, 2861, -831, -469, -507, // 20 -1929, 638, 1860, 1809, -779, -2412, 1517, 3520, -3578, 94, 2344, -559, -3821, -2636, 1549, -1265, -1175, -743, -93, 1650, // 40 -1989, 1395, -165, 3971, 329, -1299, 136, 4739, 2960, -336, -234, 180, -713, 1309, -1974, 467, 539, -2430, 1208, -1434, // 60 762, -3348, -2346, 842, 4547, 2673, -3854, -1913, -1021, 2411, 3566, -1456, 3980, -2335, 2095, -538, -88, -2063, 1929, 909, // 80 1420, -1429, -572, 2378, 1116, 3606, 2902, -2526, -218, -556, 446, -2152, -1091, 2134, -129, 949, 622, -235, -875, 1293, // 100 }; const int16_t cg_FC3weit[4000] = { // Co,H,W,Ci: (40, 100) // Out channel 0 -741, -1232, -755, -1128, -234, 1155, -1098, 1980, -875, -88, -1039, -1931, -902, 454, -1324, -1736, 394, -1475, -713, 18, 1621, -778, -1850, -2382, -2405, 59, -1951, -2309, 489, -2003, -1252, 4157, // 32 2525, -1025, -1947, 2370, -2016, -591, 1435, -2304, -18, -1466, 1349, 1165, -1286, -479, 2525, -1728, 1006, -198, -3888, -2507, 19, -1192, 916, 1490, -2477, -32, 2142, -1624, -1551, 3345, 1424, 1272, // 64 -1643, -2127, 2202, 2241, 360, -1768, -932, 580, -27, 957, -2586, -749, 2054, 821, -1926, -976, -1345, 1132, 1540, 875, 1277, -746, -1887, 1253, -670, 4886, -258, 1244, -1730, -3209, -2353, -4127, // 96 -2854, -879, 1476, -1444, // Out channel 1 1217, 1250, -1481, 2034, 2550, -802, -229, 145, 1165, 37, -910, 432, -1550, 1955, -1055, -1516, -812, -1464, -660, -716, 572, -99, -3005, -61, -1762, 718, -2405, -2217, -911, -655, 573, -276, // 132 2377, -173, 510, 778, -1169, -949, -1920, 1292, 871, 147, 734, -1516, -144, 33, 742, -1284, -2766, 411, -923, -1077, 1309, -1433, 519, 95, -18, 1588, -166, -1252, -2085, 1842, 31, 144, // 164 -2653, -819, -154, -2008, 1045, -2899, -3530, -491, -605, 2520, 763, -73, -1334, 658, -2672, -149, 576, 2381, -1003, -458, -1421, -628, -339, -85, -166, 1694, 668, 643, 704, 654, 631, -2692, // 196 -1335, -514, 1423, -724, // Out channel 2 1026, -542, -2433, 2279, 560, 745, 1077, -1253, -1055, 151, 3545, -555, 1769, 2214, -2200, 446, 1321, 1052, 851, -993, -300, -725, 724, 377, 921, -99, 331, -3312, 2083, 1838, 520, 1836, // 232 2389, -200, 715, 735, -2564, -602, -1258, -486, 462, -1239, 1823, 908, 23, 961, -1152, -4517, -1094, 395, 770, 2494, -1770, 903, 652, 831, 1041, 1549, -96, -2965, -1579, 4736, 2589, 927, // 264 35, -769, 347, -1499, 635, 87, 496, 196, -870, 3724, -653, -1949, -1390, -1604, -942, 587, -423, 688, 155, -2121, 1052, -92, 411, 767, -1112, -876, 52, 1366, 2619, 455, -3760, 409, // 296 198, -166, -2038, 453, // Out channel 3 213, 1612, -209, 393, 117, 1471, 510, -308, -118, 566, -1483, 896, -3059, 928, -2513, -1933, 814, 357, -1159, -696, 2261, -1675, 805, -781, -443, 602, -373, 580, 1443, -503, -929, -144, // 332 -201, 977, 110, -793, -1132, -1301, 346, 1644, 1443, -1521, 518, -2456, 891, 803, -1228, -1177, 705, -1057, 1267, -990, 1743, -254, 2618, 1421, -1192, -480, 704, 825, 424, 1434, 1392, -1694, // 364 -1832, -2973, -584, 2429, 2955, -2103, -2485, -1953, -1474, 146, -2583, 1726, -1959, 2055, 312, 267, -1774, -1242, -2138, -1298, -851, -787, -903, 3256, -794, -598, 2507, -1008, 534, -1484, -23, 1860, // 396 -1725, 579, -1797, 1299, // Out channel 4 654, -1404, 1404, -845, 24, 3006, -336, 2440, 1835, 865, -812, -516, -158, -634, 415, -251, -900, 241, 1754, -746, 2349, 640, 794, -2114, -284, 344, 1797, 971, -189, -857, -2543, 541, // 432 -1060, -885, -1296, -260, 899, 1711, 355, -404, 137, -239, 101, -4594, 1458, -32, 225, -2129, -932, 489, -1795, -2184, -478, 663, 1653, -1271, -1303, 1850, -758, -1234, -663, 2979, 892, 945, // 464 -1276, -2803, 1199, 1634, -1130, -960, -1690, 1847, -1062, 1884, 776, 263, -410, -2705, -1069, -2944, 1212, 210, -767, 58, -2212, -2247, -1826, 2603, -83, 646, -720, 1926, 717, -774, 1121, -38, // 496 -896, -287, -1721, -242, // Out channel 5 1315, 921, 723, -992, 1332, 1745, 1479, 2086, 1206, -864, -1120, 92, 1224, 1431, 359, -1662, -1842, -1092, 1832, -2289, 890, -1048, -868, -958, -332, -898, -547, 270, 77, 1550, -833, 1377, // 532 -313, 879, 45, 390, 628, 82, -180, 281, 1242, -1818, 1489, -1963, 1500, 553, -12, 432, -72, -169, 764, -782, 1431, -1233, 479, 1927, -458, 233, 463, -1259, 106, 809, 87, -1411, // 564 -2842, -2733, 1589, 1036, 628, -1350, -2706, 300, -1745, 141, 10, 229, 269, -1310, 645, -695, -550, 1058, -2502, 1050, -1659, -2391, -1913, 1958, 857, -1246, 29, 1208, 1765, -1266, 526, 1226, // 596 -746, 604, 734, -1065, // Out channel 6 541, -1257, 2099, -158, -765, 83, 1265, -1307, 151, -1393, 637, 1081, -89, -1307, -856, -1056, -2361, 408, 1108, -1424, 2344, -1161, 631, -536, 1302, -399, 1310, 534, 1502, -534, 1184, 126, // 632 -435, -277, -861, -901, 562, -118, 1437, -608, 3501, 241, -510, -1465, 1003, -158, -1299, -1132, 40, -425, 1006, -1072, 923, -467, -285, -273, -592, 1017, -909, 1567, 196, 2108, 790, -1136, // 664 -2706, 475, 57, 2138, 833, -1383, -1829, -1704, -2790, 337, -222, 968, 1691, 41, 315, -525, -1217, 35, -1905, -1607, -508, 307, 81, 1211, -1023, -891, -54, 1541, -527, 511, -47, -2168, // 696 -204, 1264, 1772, -79, // Out channel 7 1225, -397, 853, -2937, 1459, 670, 1268, -503, -114, 148, -1419, 862, 512, 1977, 511, 213, -646, -1482, 2024, -1354, 1342, -1910, 2, -1243, -980, -1188, -1027, -1665, -702, 573, 84, -830, // 732 -1365, 286, 614, -1993, 1230, -113, 571, -166, 30, 608, 126, -2415, 737, 683, -81, -1302, 924, 321, -134, -169, 273, -941, 1840, 259, -1778, -788, 2121, -1022, -1039, -61, -659, 1970, // 764 -1613, -2519, 91, 1117, 1401, -2196, -2923, -1704, -1431, 1093, -301, -930, 1254, 1322, -1383, -2015, -2037, 794, 174, 259, -889, -1803, -838, 220, -2166, -2169, 1385, 556, -1893, 57, 365, 1825, // 796 -1994, 1644, -1, -1469, // Out channel 8 600, 315, 2683, 255, -261, 2590, -1314, 805, -655, 1501, -137, 1145, 485, 233, 405, -2476, -775, 156, 1716, 947, -456, 732, -2190, -1575, -569, -170, 158, 947, 1011, -1135, -1599, -678, // 832 2658, 909, -1460, -11, -891, 2176, -2651, -1849, -1803, 726, -193, -1809, -1153, 1256, 1867, 1110, -2391, 384, -1379, 136, 1399, -1586, 492, 643, -1745, -176, -927, 1184, -859, 2666, -81, 1470, // 864 -1307, -2732, 671, -1344, -1317, -744, -1331, -881, -4914, 2770, 1828, 15, -1372, -765, -266, 955, 2324, -1420, -761, -1220, -30, -2622, -442, 456, 406, -2268, -1432, 2145, -2265, -2492, 58, 976, // 896 -651, 2133, -226, 788, // Out channel 9 659, -1145, 2317, -654, 1946, 1740, -1521, 643, -45, 776, 2002, 1604, -953, 404, 227, -2536, -1718, -1176, 2016, 17, 658, -668, -1301, -337, -1184, 2171, 1218, 989, -416, 1337, 284, -1077, // 932 2246, 2837, -290, -58, 1345, 277, 47, 1850, 1235, -329, 1256, -2052, 2164, 3073, -460, -1232, 657, 122, -340, -543, -598, -1254, 1755, -194, 794, 1088, -1670, 17, -2990, 3432, 1580, 1108, // 964 -984, -1514, 1075, 2487, 31, -2263, -2517, 352, -2989, -353, 1, -290, -485, -1114, 18, 209, -1458, 433, -816, -1854, -69, -1291, -1239, 1200, -266, 1829, 515, 1521, 1150, 791, -53, -1733, // 996 -1546, 362, 355, 898, // Out channel 10 2398, 1176, -882, -519, 1914, 551, 1613, -1162, 2851, -1183, 2436, 130, 325, 295, 162, 1738, 765, -320, -1470, -1013, 1360, -493, 1751, -747, 1812, 986, -2271, -1059, 120, -2612, 3118, -1664, // 1032 -984, -977, -805, -605, -109, -2379, 351, 1369, 6326, -525, 884, -3387, -1766, 512, -992, -733, -188, 2419, 2518, 1270, 1661, -711, -600, 291, 288, 1111, -1910, -1528, 791, -759, 1348, 111, // 1064 699, -2268, 962, 476, 3024, -1497, -385, -298, 235, 961, -427, 856, 495, -660, -157, -1691, -977, -1150, -232, -1573, 1581, -249, 940, 2334, 1829, 806, 707, 168, 1697, -1925, -345, -3152, // 1096 -276, 2754, 343, 1417, // Out channel 11 -400, 169, 1835, 143, 1776, 4380, 18, 312, 577, -3291, -207, 1049, 1231, 1153, -1937, -2348, -1891, -255, 1890, -489, 1209, 46, -1573, -2122, -243, 1341, 416, -1077, 730, -1538, -2180, 2317, // 1132 -249, 440, -771, 456, 1206, 394, -640, 1087, 1703, -467, 745, -12, 2012, 313, 1082, -135, -168, -61, -1687, -121, -413, -1969, 802, 2156, -1600, 1235, 3047, -117, -170, 2507, 356, 796, // 1164 -1863, -523, 1903, -654, 2072, -1387, -1518, 439, -4526, 2096, -1094, -157, -194, 588, -3119, -342, -171, 122, -247, -222, -1870, -2462, -1047, 890, 190, 1904, -121, -98, -52, -2417, 1202, -650, // 1196 -4138, 604, 118, 666, // Out channel 12 -818, 1740, 1971, -1257, -582, 2295, -1311, 1394, -1037, -3505, 4353, 2045, -734, -1684, -151, -707, -1987, -1455, 3348, 2104, 83, -973, -1009, 600, -1237, 602, -501, 2258, -1495, -2424, -1919, -2933, // 1232 -1805, 131, -232, -962, 3793, -985, 1459, 2941, -1706, -3534, -1457, -1697, 756, -1849, 1098, -127, -929, 62, -1658, 1933, -32, 1035, 303, -79, -291, 721, 1933, -2384, 1569, 1552, 164, -1702, // 1264 -554, 390, 2189, 3985, 2649, -2274, -2824, 2802, -1438, -3163, -1920, 4334, 1803, 1163, -1658, -1252, 600, 447, 1247, 1629, 2126, 557, -137, 94, -268, 1804, -1303, 411, -93, -2001, 3371, -3371, // 1296 -1159, 2071, 1596, -1977, // Out channel 13 218, 132, 2814, -824, -1535, 1491, 656, 384, 1288, -502, 152, -147, 459, 1372, 951, 977, -1327, -431, -9, -77, 2456, -869, 610, 536, 54, 762, 268, -305, 1169, -725, -2497, -444, // 1332 1126, 1800, -928, -300, 355, -101, 621, 1111, 1394, -636, -1158, -2855, -1571, -786, 2570, -1306, -1977, -447, 1476, 192, -96, 1712, 1497, -562, -1890, 410, -592, 1090, 2576, 1797, 425, -1959, // 1364 -666, -974, 429, 1154, -632, -447, -2214, 2063, -2896, 2067, -204, -301, -956, 1333, -566, -523, 1328, 1546, -1473, 416, -554, -2524, 465, 2171, 191, -1251, -860, 876, -1639, 39, -1055, -1402, // 1396 1000, 604, 984, 903, // Out channel 14 2285, 959, 490, -2203, 1740, 927, 592, -280, 2896, 1935, -66, 419, 503, -52, -446, 1700, -1405, 942, -727, -744, 2214, -407, -142, -1765, -211, 621, -1256, -1812, 646, -1435, 1039, 489, // 1432 -100, 1669, -189, -1766, 297, -257, 2019, 1861, 3800, -586, -1270, 313, -321, 1738, -1113, -972, 1034, 1450, -759, -75, 1655, -1049, -84, 1124, 12, 978, -1538, -716, -1515, 2030, 994, -1340, // 1464 -3856, -2155, 2536, 617, 904, -670, 204, 2041, -3626, 623, -1180, 1730, 51, -76, 215, -410, 838, 2090, -1934, -1006, -301, -1012, -314, 474, 1323, -288, -273, -302, -324, -1960, 2552, -1106, // 1496 -1004, -944, -2520, -304, // Out channel 15 2301, 540, 2048, -894, -221, 251, 1018, 859, -135, 795, 488, 1284, -3021, 2515, -4729, -1246, -2773, -538, 34, -2375, 294, 1544, 603, -1185, -1184, 1607, 1735, -84, 322, 789, -263, 1661, // 1532 523, 2477, -80, -1636, -441, -2464, 147, -208, -427, 41, -1287, -203, -1539, 1069, 197, -1143, 1488, 499, -1220, 4, -1097, -333, 2253, 1078, -2711, 2306, 1230, 482, 832, 3654, 2028, 484, // 1564 -4001, -4906, 229, -365, 1412, -451, 23, 154, -4240, 590, -352, 1918, 2865, 1921, -1291, -650, -435, -655, -2161, -1274, -616, -94, -335, 981, -3985, 1228, 691, 3619, -808, 1237, -1438, 420, // 1596 -4335, -295, 1440, 436, // Out channel 16 511, -239, -289, 710, 2856, 536, 439, -480, 928, -205, -3786, -1713, 398, -1814, 1543, -3848, 933, 576, -3037, 1110, -2830, -2633, -3489, -5538, -609, 1506, 395, -187, -186, 1572, -2150, 861, // 1632 2116, 2703, -723, 1082, 380, 162, 453, -344, 1923, 991, 87, 25, -992, 335, 1549, -1180, -638, 1781, -1863, -4788, 2805, -3199, -550, -2616, -2475, 545, 42, 5531, 78, -1379, -212, 1616, // 1664 -1519, -1025, 2172, -922, -1573, -241, -1458, -1813, -528, 1606, 2384, -1901, -2063, 432, 1106, -1453, -3684, 279, -18, -956, -1938, -5404, -1322, 2514, 958, 3019, 1253, -190, -1336, -3234, -2008, 936, // 1696 951, -386, 140, -1305, // Out channel 17 -42, 22, 2555, -476, -578, 2360, 1178, -1549, 3096, -2428, 1211, 661, 349, 3376, -1337, -1998, -251, 3667, 3657, -1957, -911, -1884, 220, -306, 3767, 311, 1141, 1280, -505, -1634, 128, -1869, // 1732 -45, 286, -946, -2788, 1169, 611, 1114, 512, 4801, -2589, -419, -2749, 99, -853, -3249, 2028, -4355, -1937, 2708, 2591, 874, 1665, 2323, 59, 137, -652, -2443, -915, 1563, 1569, 2677, -3949, // 1764 -1437, -1444, 839, 2147, 4479, -1612, -3156, 570, 421, -2004, -1621, -445, -434, -1064, -1181, 1405, -1195, -65, -2350, -111, 834, -105, -881, 1346, -1362, 2223, 357, 134, -270, -1372, 873, -756, // 1796 1982, 1772, 667, 4032, // Out channel 18 -698, 1707, 1002, -2858, 184, 549, -508, 1827, 11, -716, -55, -774, -94, 864, -106, -2206, -2335, -441, -1107, 1502, -350, -31, -2037, -1801, -1611, 891, 341, 1456, -1448, -524, -988, -74, // 1832 761, 3467, -2649, 504, 1559, 136, -979, 441, -73, -3787, 1452, -1275, -1097, -1694, 318, -1911, -254, 1324, -765, -2290, 104, -2181, -961, -299, -2551, 610, -455, 2848, 508, 993, 688, -207, // 1864 -2499, -558, 1245, 742, -1028, -2162, -2823, 1724, -1805, 227, -240, -314, -451, 1217, 1339, -185, -1297, -494, -1318, -1087, -2567, -3022, -3106, 2785, 1503, 1378, -90, -439, 319, -2936, 847, -148, // 1896 -1650, 661, 2126, -2077, // Out channel 19 -72, -219, 1328, -386, -874, 2223, -1733, -1191, 2466, 27, -731, 1174, -80, 295, 546, -1773, -292, 994, -1025, -1844, 2843, -2071, 139, -1050, 1082, 318, -142, -1381, 1330, 772, -3007, 454, // 1932 1390, 683, 1779, -1181, 1036, 275, 1756, 1145, 3420, -157, 1686, -2689, -1817, -1878, 434, -454, -244, 397, 171, 1033, 1664, -572, 1184, -725, -2317, -1551, -751, 883, -1081, 15, 295, -705, // 1964 -1282, -2472, 1819, 1923, 1472, -3082, -1585, -179, -1101, 1537, -814, -768, 866, -2039, 1118, -677, 1839, -244, 633, -367, -1179, -766, -785, 2374, -709, -345, -527, 639, -2951, -1879, 347, -2414, // 1996 832, 838, -1005, 995, // Out channel 20 1425, -724, -272, -1825, 348, 2427, 839, -1510, -461, 111, 1408, 558, 795, 634, 38, -1375, -1147, -2277, 1237, -2357, 396, -1965, -197, -2086, 534, 1225, 81, -933, 2240, 1156, -1596, 1898, // 2032 976, 1739, -3237, -1168, -170, 770, 461, -655, 2137, -883, -442, -473, 810, -504, 528, -2704, -1545, 287, -408, -1584, -709, -2142, 2341, -345, -1368, 2237, 323, 1462, 806, 1656, 1428, 627, // 2064 -305, 322, 1298, -595, 1784, -1973, -2655, 714, -2704, 231, -1384, -900, -2183, 1394, -453, -98, -2117, -1241, 1565, -1526, 1308, -371, -2017, -1061, -512, 221, 2056, 1562, 254, -407, 968, -2232, // 2096 -2703, -1995, -693, -542, // Out channel 21 1833, 302, 1651, -3247, -1390, 235, 3063, 168, 1172, 174, -2652, 307, -1323, 1521, -685, 279, -2997, -1895, -134, -719, -896, 146, -647, 1738, -472, 3172, 323, 294, 283, 1044, -1348, 472, // 2132 64, 4255, 360, -1889, -308, 1226, -614, 1565, 1287, 755, -837, -787, 1211, 1791, 1090, 404, -1432, 1069, -1031, -96, 1479, 742, 584, 208, -1907, 1852, 213, 1757, -474, 1394, 961, 1067, // 2164 -5763, -2675, 322, -1068, -68, 215, -1489, -939, -2394, 357, -683, -1111, -345, 35, -1311, 314, 1069, -843, -4205, -2885, -3987, -642, -3909, 1188, 760, -1501, 1398, 3261, -612, 1399, -14, 2322, // 2196 -2300, -646, 431, 800, // Out channel 22 -1589, -2616, 79, -1745, -1958, 310, 407, -55, -1124, 56, -647, 1282, 354, 1456, 874, 1138, -2172, -308, -1045, 717, 460, -968, -344, 292, 1316, 1878, -954, -1492, 236, 1453, -1227, -38, // 2232 2595, 1537, -3138, -2176, 740, -1733, 1128, -24, 362, 1641, 1620, -2335, 591, 1549, 126, -1478, -607, 825, 234, -1647, 1155, -1579, 1562, -1476, -2072, 1714, -326, 307, -1614, 112, 941, 140, // 2264 -2513, -2997, 89, -686, 2088, 122, -1851, -311, 380, 196, -1671, -139, -443, 988, -1160, -1368, -771, -244, -406, -313, 1373, -210, -3726, 1743, 1968, -1316, 1156, 3040, -369, -2780, 1248, -2933, // 2296 -806, 833, 49, -1995, // Out channel 23 1009, -1041, 2816, -795, 1222, 2291, -481, 74, -802, -560, 76, 611, 151, 655, -1960, 269, -1025, -539, -277, 132, 349, -1744, -558, 274, 679, 833, -1510, -1813, 705, 1598, -1113, 95, // 2332 -1522, 1600, 268, 578, -651, -1256, 404, 1356, 1647, -1656, 1065, -2068, -704, 802, -90, -202, -48, 260, -868, -16, 924, -604, 545, -378, -244, 1456, 757, 771, -473, 1158, 742, 1003, // 2364 -2592, -2436, 1813, -592, -107, -2070, -688, -17, -2733, 28, 69, 933, -19, -962, -386, 143, -1690, -581, 737, -595, 872, -2464, -2903, 962, 1122, 194, 160, 1112, -1626, -104, 1463, 1514, // 2396 -877, 7, 21, -524, // Out channel 24 2761, 1215, -802, -767, -138, 2011, 2126, 631, 325, -1208, -403, 1200, 1794, -295, -311, -750, -1086, -12, 1451, 177, -714, 73, 733, -788, 48, 1300, -2253, 273, 2262, -75, -2122, -178, // 2432 -838, 1861, -619, -638, 877, 287, 1778, -723, 3088, -1709, -1059, -2479, 60, 131, 1245, -503, -396, -1944, -436, 160, -401, -955, 3139, 399, 775, 1713, 540, 217, -1545, 1103, 873, 1412, // 2464 -1754, -3078, 1067, -1018, 998, -1832, -2529, 1577, 362, 3093, -1065, -865, 975, -1315, -1754, -1804, 707, -1141, -3265, -671, -1175, -620, -714, 1633, -673, -1541, 592, 319, -8, -403, 1368, -1928, // 2496 -305, -449, 873, -1252, // Out channel 25 769, -464, -768, 64, 2272, 1794, 899, -641, 1083, 217, -827, 793, -505, 1928, -124, -1361, -782, 746, -765, -2399, -821, -161, -922, -3142, 1298, -221, -2052, -2024, -494, 599, -132, 2512, // 2532 -656, -268, -12, 520, 1743, 136, 848, -100, -261, -580, 435, -1699, -692, 1162, 945, -6, 120, -880, 718, 901, 1626, 737, 1204, 1483, -1026, 42, 1294, 1398, -1914, -467, 419, -2287, // 2564 -1882, -1214, 748, 406, -126, -2421, -997, -371, -2239, -1477, -473, 106, 1868, 924, -1127, 3, -1413, -1085, -1708, 93, -411, -2724, -1519, 1239, 193, 1297, -208, 2383, -121, -98, 510, 298, // 2596 -665, -465, 1466, -1864, // Out channel 26 1830, -396, 1479, -1845, 2424, 1049, 2030, -422, 556, -14, 133, -1193, 2175, 2081, -633, 866, -1686, 2344, -837, -3221, 977, -1333, 642, 495, 646, -69, -1301, -2053, 2041, 208, -1063, 1350, // 2632 2275, 507, -280, 88, -282, -190, 1189, -2895, 2360, -2335, -214, -2336, -2343, 976, 571, -4153, -699, -1286, 498, 185, -1315, -1054, 670, -731, -483, -918, -2480, -1215, -148, 1100, 1761, 1819, // 2664 -1381, -1584, 1277, -441, -811, -272, -1655, -1095, -515, 2249, -706, -91, -488, 969, -50, -1841, -957, -517, 110, 2690, -679, -361, -2043, 2001, -410, 2019, -713, 109, 637, 254, -1877, -280, // 2696 563, 282, -51, 46, // Out channel 27 -136, 154, 1004, -374, -1762, 1874, 613, -245, 1031, -2357, -2781, 968, 146, 703, -344, -2481, -3863, -597, 1321, 763, 923, 545, -2241, -666, 1155, 412, 1374, -125, 2896, 587, -1157, -1389, // 2732 2261, 2259, 496, 670, 1271, 1586, -43, 494, 965, -2200, -976, -1176, -740, -334, 1772, 43, -852, 1590, -106, -1374, 113, 1585, -830, 1280, 43, 1437, -332, 1208, -1639, 2128, 847, 397, // 2764 -2764, -637, -434, 263, 26, -2369, -2426, 1201, -214, -337, -1203, -267, -89, 1900, 582, -2787, 137, -1069, -353, -1258, -650, -2586, -3480, 1373, 1666, 1548, 1139, 2280, -802, 465, -393, 141, // 2796 1846, 1104, 678, -590, // Out channel 28 2843, 790, 1332, 1598, 1971, -2389, 2376, -1380, 545, 2329, 1098, -164, 354, -2113, 1654, 2844, 1938, -2115, -1843, -1302, -4368, -591, 656, 772, -1773, 1988, -107, 1752, -1510, 290, 1070, -296, // 2832 -1247, -2262, 1554, -2531, 1338, -558, 456, 1631, 117, 2376, -1069, 326, -798, 2823, 5, -296, 1617, 1251, 651, -247, 107, 1790, 1904, -207, 23, 3211, 786, 772, -54, -1272, 545, 531, // 2864 -653, -179, -1478, 370, -973, 1401, 399, -1230, 1957, -1002, 3493, 213, 923, -1598, 169, 735, 632, -1935, -60, -3493, 781, 1675, -453, -1521, 1851, -1910, -51, 203, 1608, 2497, -636, 1096, // 2896 -552, -606, -1141, 2749, // Out channel 29 -406, -523, 1535, -1842, -1501, 987, 980, 1018, 2132, -420, 54, 4575, 90, 4195, -1946, 911, -1428, -626, 2041, -2479, 2639, 1819, -1947, -708, 2589, 3021, -732, -611, -79, -339, -260, 1152, // 2932 148, 1451, -1185, -1233, 1951, 1517, -819, 813, 431, -476, -2396, -2420, -138, -563, 179, -597, -3031, -1137, -1483, -133, -295, 382, 1345, 1398, -392, 2387, -2132, 1292, -1099, 2609, 2939, -2129, // 2964 -4072, -2421, 119, -57, 1516, -1348, -2218, -850, -1102, 989, -2584, -1038, -174, -1020, -1423, -690, -605, 1508, -264, -513, -17, -848, -1993, 508, -1898, -474, 1189, 2972, 1172, -589, 235, -1686, // 2996 1225, 1360, -967, -756, // Out channel 30 -322, 152, 288, -1305, 912, 2174, 1333, 1004, 1255, -248, -1137, -502, -623, 446, 457, -266, -2643, -1839, 103, -694, 854, 249, 87, 269, 370, 1082, 613, -1214, 1872, -184, -597, -369, // 3032 661, 2007, -2169, 2395, 340, -1249, 1452, -183, 2550, 518, 753, -1628, -76, -332, 1069, -2082, -111, 135, -1172, -226, -291, -197, 493, 1141, -860, 145, -1584, 1463, -152, 696, 1378, -2048, // 3064 -1506, 3, 1840, 739, 997, -503, -1070, -446, -557, 1794, -875, -1339, 274, 976, -761, -761, 626, -534, -797, -2171, -608, -881, -2730, 1940, -531, -1379, -192, 356, 158, -1559, -1238, -2642, // 3096 -81, 1182, 664, -46, // Out channel 31 1573, 597, 274, -1173, 1111, 2281, -354, 935, 1168, -622, -1406, 335, 801, 1358, -426, -758, -804, 308, 1506, -707, -618, 620, -944, -2588, 801, 1399, -1492, 135, 1017, -197, 2113, -51, // 3132 2487, 1513, -1255, 796, 208, -559, 261, -844, 4139, -2012, -1034, -3372, -916, 654, -553, -2382, -1397, -405, 941, 531, 2034, -92, 551, -363, -2963, 1310, -2920, -622, 723, 848, 187, 19, // 3164 553, -1033, 1847, 966, 2092, -4477, -2395, 975, -2593, 1781, -1014, -649, -599, -1708, 396, -930, 555, -1945, -998, -1981, 1649, -3050, -2091, -179, -35, -842, 990, -34, 2279, 796, 124, -1161, // 3196 -151, 653, 331, -618, // Out channel 32 -21, -616, -189, 1505, 827, 282, -118, 803, -700, -132, -1676, -1313, -2178, 2922, -2531, 127, -1393, -1415, 70, -3116, 1136, -1682, -1546, -618, 2015, 920, -455, 255, -1066, -423, -2074, 404, // 3232 -922, 1974, -41, -179, 1068, 1181, -913, 1104, 2200, 925, -1009, -3450, 423, 10, 605, 1025, -21, 1676, -1115, 77, 1422, -974, 65, -185, 41, 1996, -3227, 1154, -110, -402, 628, 486, // 3264 -2771, -411, 789, 215, -1263, -962, -222, 376, -107, -1951, -408, 1649, 1010, -216, -787, -1452, -1054, 2684, -1500, 372, -1258, 170, -13, 3867, 306, -1238, 906, 2067, -1031, -1256, -159, 387, // 3296 -238, 1537, 1098, -44, // Out channel 33 4024, -116, 1448, 1528, 2129, 1175, 1889, -882, 291, 81, 2402, 1430, 31, -1241, 800, 457, 973, -982, 421, -971, -1236, 538, 1684, 1051, -1377, 1577, 492, -438, -650, -208, 69, 1794, // 3332 1448, 364, 637, -176, 1615, -804, -893, -1112, -436, -607, -346, 194, -1696, 1487, 41, -9, -1210, 2079, -614, 422, -2502, -595, 1774, -509, -1416, 2185, 1271, -3575, -137, 320, -1402, 1460, // 3364 -1023, -377, 1221, -1210, -1207, 611, 480, -1350, -1126, -104, 1718, 3404, 4713, -268, 418, 600, 1036, 68, 1135, -1297, 401, -303, 417, -167, 1253, -627, 874, 1090, 474, 1199, 225, 825, // 3396 -2037, -703, -2178, 459, // Out channel 34 1399, -2388, 1112, -2496, 241, 2499, -1347, 1117, 335, -1606, 538, 1011, -1392, 1714, 1652, -540, 173, -565, -401, 1698, -673, -56, -1972, -1216, -1643, 1166, 486, -2223, 1005, 980, -158, 2554, // 3432 38, 1525, -1804, -1802, -339, -617, 2538, 312, 1956, 737, -1483, -1241, 1351, -134, 1434, -2271, -2842, -499, 1421, -1411, 6, -1261, -1837, 679, 214, 349, -2233, 119, -2321, 165, 2297, -2833, // 3464 -677, -1635, 3809, 823, 1469, -2358, -1767, 448, 586, 1099, 1410, 410, 192, -813, 1815, -1484, -107, -1037, -2710, -457, -1100, -1511, -388, 3115, 435, 734, 508, 583, -384, -603, 656, 1, // 3496 -816, 3148, -432, 754, // Out channel 35 842, -486, 786, 671, 308, 3368, -450, -314, -1014, -2471, 1432, -1394, 1965, 1021, -650, -2344, 739, 2067, 1649, 174, -663, -2281, -1433, -3822, 400, 275, -522, -597, 2172, -946, -859, 501, // 3532 1531, 705, 289, 1096, 883, 893, -496, -1850, 2379, -1020, 1416, -246, -205, 13, -327, -3075, -1376, 601, -61, 563, 1531, -1352, 1063, 426, -717, 1146, 1112, -1855, -1049, 1315, 271, -391, // 3564 -701, -45, 3325, 1007, 2274, -1416, -2431, 1250, -2552, 2654, -810, -263, -2001, 378, -618, -111, -2576, 1316, 1795, -818, -86, -1928, -868, 473, 762, 1606, -1423, 1492, 1204, -2209, -1752, -1242, // 3596 -191, 685, -1287, 336, // Out channel 36 597, 23, 61, -1196, -357, 1797, -265, 466, 859, 35, 253, -191, -789, -33, -1545, -1592, -2267, -1885, 457, -1148, 429, -347, -84, -584, -327, -6, -992, 248, -65, 989, -1166, -1084, // 3632 1418, 1082, -1462, -1433, -800, 496, 743, 1109, 1331, 1041, -1152, -159, -71, -466, 897, -178, -156, 855, -470, -222, -891, -142, 1175, 296, -2345, -239, 384, 928, 446, 1537, 596, -479, // 3664 -860, -1151, 1625, 1243, 200, -283, -1389, -769, -1291, 918, -854, 334, -1681, 386, -498, -767, 178, 565, 96, 490, 259, -2167, -1103, 1130, -235, -515, -229, 123, -250, -57, 750, -917, // 3696 332, 341, -2485, 1604, // Out channel 37 1247, -287, 470, -144, 489, 1366, 1978, -1114, -266, -311, 1298, 86, -381, 105, -2328, -2423, -3543, 1277, 117, -638, 1315, 218, -1461, -369, -1785, -251, -71, 604, 2945, 1628, -525, 947, // 3732 179, 679, -1457, 2016, 1191, -447, -723, -137, 111, -907, -1603, -2054, -2922, 1546, 748, 1094, 586, 457, -112, -44, -212, -2214, -709, 2315, -1302, 477, -574, -454, -714, 1172, -273, 385, // 3764 55, -2407, 443, 17, 314, -3370, -3806, 1418, -1949, 1922, -1011, -248, 223, -1868, 346, 27, 375, -75, -738, -381, -2019, 660, -284, 295, 350, -1748, 1931, 1933, 1116, -782, 179, -803, // 3796 322, 1508, 368, -1364, // Out channel 38 -279, -1092, 453, -191, -1704, 538, -841, 668, -1090, 682, -4, -1272, 307, 1494, -1077, 292, 858, 2075, 931, 166, 2441, 751, 2714, -322, 1946, -423, 966, -840, 3435, -57, 1665, -1169, // 3832 2947, -711, -1026, 2268, -2059, 1775, -155, -3126, 253, 189, 1003, -111, -447, 94, -3040, 28, 315, -1006, 3657, 2915, 523, 1541, 355, 2357, 1366, -1747, -1358, -1236, 69, 997, 788, -1753, // 3864 719, 648, 105, -237, 1762, -304, 625, 2744, 20, -529, -3112, -1239, -1232, -992, -1581, 1447, -72, 3716, 732, 999, 1355, 700, 1042, -186, -1716, 1998, -414, -414, -169, 79, -1723, -82, // 3896 2498, -280, -621, -316, // Out channel 39 -124, 34, 1403, -2257, 563, -672, 230, 678, 2414, -2333, -2664, 1079, -671, -1003, -549, -3187, -1278, 729, -816, 395, -880, -1027, 755, 888, -851, 192, 735, -540, -1170, 997, -163, -45, // 3932 -36, 1351, -3697, -1710, -115, -439, -405, -2123, -606, 132, -757, 379, -1677, -819, -2543, -1499, -3105, -334, 952, -2157, -999, 946, 689, -520, -1406, -1502, -231, -1996, -1659, 891, 1595, 412, // 3964 -1460, -3532, 3625, 114, 586, 227, -3034, 829, -1887, 1174, -1619, -2431, 454, 1017, 558, 271, 658, 507, -1470, -793, -600, -3465, -647, 1409, -1602, -413, -1806, 1132, 1808, 49, -258, 577, // 3996 -2352, -728, 2019, -162, }; const int16_t cg_FC3bias[40] = { // Co,H,W,Ci: (40,) -3148, -3149, -810, -3302, -3669, -4160, -3165, -2248, -1917, -3890, -1252, -2479, -1532, -2371, -2651, -2195, -2594, -2561, -1793, -3910, -2625, -3064, -2336, -3195, -3637, -2837, -2601, -2393, 1946, -3226, -3293, -2810, // 32 -3072, -27, -2166, -3347, -4291, -2903, 1348, -2257, }; const int16_t cg_FC4weit[40] = { // Co,H,W,Ci: (1, 40) // Out channel 0 1422, 67, -2784, 205, -1167, 14, 732, 347, -420, -363, 1431, -1951, -2682, 324, 1017, -4356, -3881, 1551, 3465, -807, // 20 -1531, -3798, 896, 640, 731, 192, -3716, 2569, 2804, 2054, -706, -969, 910, 2121, -804, 6548, 377, 1500, -3482, -737, // 40 }; const int16_t cg_FC4bias[1] = { // Co,H,W,Ci: (1,) -701, };
the_stack_data/148067.c
#include <stdio.h> #include <math.h> int main() { int n,i; long int a,b,c; scanf("%d", &n); for(i=1; i<=n; i++) { scanf("%ld %ld %ld", &a,&b,&c); if(a+b<=c || a+c<=b || b+c<=a) { printf("Case %d: Invalid\n", i); } else if(a==b && b==c && a==c) { printf("Case %d: Equilateral\n", i); } else if(a==b || b==c || a==c) { printf("Case %d: Isosceles\n", i); } else { printf("Case %d: Scalene\n", i); } } return 0; }
the_stack_data/67290.c
/* * Copyright 2018, Data61 * Commonwealth Scientific and Industrial Research Organisation (CSIRO) * ABN 41 687 119 230. * * This software may be distributed and modified according to the terms of * the GNU General Public License version 2. Note that NO WARRANTY is provided. * See "LICENSE_GPLv2.txt" for details. * * @TAG(DATA61_GPL) */ #include <stdio.h> #include <fcntl.h> #include <unistd.h> #include <assert.h> #include <sys/types.h> #include <sys/stat.h> #include <sys/mman.h> int main(int argc, char *argv[]) { if (argc != 3) { printf("Usage: %s file dataport_size\n\n" "Reads the c string contents of a specified dataport file to stdout", argv[0]); return 1; } char *dataport_name = argv[1]; int length = atoi(argv[2]); assert(length > 0); int fd = open(dataport_name, O_RDWR); assert(fd >= 0); char *dataport; if ((dataport = mmap(NULL, length, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 1 * getpagesize())) == (void *) -1) { printf("mmap failed\n"); close(fd); } printf("%s\n", dataport); munmap(dataport, length); close(fd); return 0; }
the_stack_data/168892390.c
#include <stdio.h> #include <stdlib.h> typedef struct node { int key; int value; struct node *left; struct node *right; } node; typedef struct Snode { struct node *amount; struct Snode *next; } Snode; typedef node *tree; typedef Snode *stack; int init(tree *root) { *root = NULL; return 0; } int Sinit(stack *stk) { *stk = NULL; return 0; } _Bool isEmpty(tree root) { if (root == NULL) return 1; return 0; } _Bool SisEmpty(stack stk) { if (stk == NULL) return 1; return 0; } int add(tree *root, int key, int value) { tree p = *root; if (*root != NULL) { while (*root != NULL) { if (key > (*root)->key) { if ((*root)->right == NULL) { (*root)->right = malloc(sizeof(node)); *root = (*root)->right; break; } *root = (*root)->right; } else if (key < (*root)->key) { if ((*root)->left == NULL) { (*root)->left = malloc(sizeof(node)); *root = (*root)->left; break; } *root = (*root)->left; } else { (*root)->value = value; return 0; } } } else { *root = malloc(sizeof(node)); p = *root; } (*root)->left = NULL; (*root)->right = NULL; (*root)->key = key; (*root)->value = value; *root = p; return 0; } int find(tree root, int key) { tree p = root; int lvl = 0; if (!isEmpty(root)) { while (p->key != key) { if (p->key > key) p = p->left; else if (p->key != key) p = p->right; lvl++; if (p == NULL) return -1; } printf("%d ", lvl); return p->value; } return -1; } int destroy(tree *root) { if ((*root)->left != NULL) destroy(&((*root)->left)); if ((*root)->right != NULL) destroy(&((*root)->right)); if (((*root)->left == NULL) && ((*root)->right == NULL)) { free(*root); *root = NULL; return 0; } } int Sdestroy(stack *stk) { stack p; while (!SisEmpty(*stk)) { p = *stk; *stk = (*stk)->next; free(p); } } int push(stack *stk, tree amount) { stack p; if (!SisEmpty(*stk)) { p = *stk; *stk = malloc(sizeof(Snode)); (*stk)->next = p; } else { *stk = malloc(sizeof(Snode)); (*stk)->next = NULL; } (*stk)->amount = amount; return 0; } tree pop(stack *stk) { stack p; tree amount; if (!SisEmpty(*stk)) { p = *stk; *stk = (*stk)->next; amount = p->amount; free(p); } return amount; } int traversal(tree root) { tree p; stack stk; Sinit(&stk); push(&stk, root); while (!SisEmpty(stk)) { p = pop(&stk); printf("%d ", p->value); if (p->right != NULL) push(&stk, p->right); if (p->left != NULL) push(&stk, p->left); } return 0; } int main() { tree t; int n, i, k, v; init(&t); scanf("%d", &n); for (i = 0; i<n; i++) { scanf("%d %d", &k, &v); add(&t, k, v); } traversal(t); destroy(&t); return 0; }
the_stack_data/226506.c
/* * C Program to Demonstrate Circular Single Linked List * source - https://www.sanfoundry.com/c-program-implement-circular-single-linked-list/ */ #include <stdio.h> #include <stdlib.h> struct node { int data; struct node *link; }; struct node *head = NULL, *x, *y, *z; void create(); void ins_at_beg(); void ins_at_pos(); void del_at_beg(); void del_at_pos(); void traverse(); void search(); void sort(); void update(); void rev_traverse(struct node *p); void main() { int ch; printf("\n 1.Creation \n 2.Insertion at beginning \n 3.Insertion at remaining"); printf("\n4.Deletion at beginning \n5.Deletion at remaining \n6.traverse"); printf("\n7.Search\n8.sort\n9.update\n10.Exit\n"); while (1) { printf("\n Enter your choice:"); scanf("%d", &ch); switch(ch) { case 1: create(); break; case 2: ins_at_beg(); break; case 3: ins_at_pos(); break; case 4: del_at_beg(); break; case 5: del_at_pos(); break; case 6: traverse(); break; case 7: search(); break; case 8: sort(); break; case 9: update(); break; case 10: rev_traverse(head); break; default: exit(0); } } } /*Function to create a new circular linked list*/ void create() { int c; x = (struct node*)malloc(sizeof(struct node)); printf("\n Enter the data:"); scanf("%d", &x->data); x->link = x; head = x; printf("\n If you wish to continue press 1 otherwise 0:"); scanf("%d", &c); while (c != 0) { y = (struct node*)malloc(sizeof(struct node)); printf("\n Enter the data:"); scanf("%d", &y->data); x->link = y; y->link = head; x = y; printf("\n If you wish to continue press 1 otherwise 0:"); scanf("%d", &c); } } /*Function to insert an element at the begining of the list*/ void ins_at_beg() { x = head; y = (struct node*)malloc(sizeof(struct node)); printf("\n Enter the data:"); scanf("%d", &y->data); while (x->link != head) { x = x->link; } x->link = y; y->link = head; head = y; } /*Function to insert an element at any position the list*/ void ins_at_pos() { struct node *ptr; int c = 1, pos, count = 1; y = (struct node*)malloc(sizeof(struct node)); if (head == NULL) { printf("cannot enter an element at this place"); } printf("\n Enter the data:"); scanf("%d", &y->data); printf("\n Enter the position to be inserted:"); scanf("%d", &pos); x = head; ptr = head; while (ptr->link != head) { count++; ptr = ptr->link; } count++; if (pos > count) { printf("OUT OF BOUND"); return; } while (c < pos) { z = x; x = x->link; c++; } y->link = x; z->link = y; } /*Function to delete an element at any begining of the list*/ void del_at_beg() { if (head == NULL) printf("\n List is empty"); else { x = head; y = head; while (x->link != head) { x = x->link; } head = y->link; x->link = head; free(y); } } /*Function to delete an element at any position the list*/ void del_at_pos() { if (head == NULL) printf("\n List is empty"); else { int c = 1, pos; printf("\n Enter the position to be deleted:"); scanf("%d", &pos); x = head; while (c < pos) { y = x; x = x->link; c++; } y->link = x->link; free(x); } } /*Function to display the elements in the list*/ void traverse() { if (head == NULL) printf("\n List is empty"); else { x = head; while (x->link != head) { printf("%d->", x->data); x = x->link; } printf("%d", x->data); } } /*Function to search an element in the list*/ void search() { int search_val, count = 0, flag = 0; printf("\nenter the element to search\n"); scanf("%d", &search_val); if (head == NULL) printf("\nList is empty nothing to search"); else { x = head; while (x->link != head) { if (x->data == search_val) { printf("\nthe element is found at %d", count); flag = 1; break; } count++; x = x->link; } if (x->data == search_val) { printf("element found at postion %d", count); } if (flag == 0) { printf("\nelement not found"); } } } /*Function to sort the list in ascending order*/ void sort() { struct node *ptr, *nxt; int temp; if (head == NULL) { printf("empty linkedlist"); } else { ptr = head; while (ptr->link != head) { nxt = ptr->link; while (nxt != head) { if (nxt != head) { if (ptr->data > nxt->data) { temp = ptr->data; ptr->data = nxt->data; nxt->data = temp; } } else { break; } nxt = nxt->link; } ptr = ptr->link; } } } /*Function to update an element at any position the list*/ void update() { struct node *ptr; int search_val; int replace_val; int flag = 0; if (head == NULL) { printf("\n empty list"); } else { printf("enter the value to be edited\n"); scanf("%d", &search_val); fflush(stdin); printf("enter the value to be replace\n"); scanf("%d", &replace_val); ptr = head; while (ptr->link != head) { if (ptr->data == search_val) { ptr->data = replace_val; flag = 1; break; } ptr = ptr->link; } if (ptr->data == search_val) { ptr->data = replace_val; flag = 1; } if (flag == 1) { printf("\nUPdate sucessful"); } else { printf("\n update not successful"); } } } /*Function to display the elements of the list in reverse order*/ void rev_traverse(struct node *p) { int i = 0; if (head == NULL) { printf("empty linked list"); } else { if (p->link != head) { i = p->data; rev_traverse(p->link); printf(" %d", i); } if (p->link == head) { printf(" %d", p->data); } } }
the_stack_data/66118.c
#include<stdio.h> int main(){ int n,i,j_sum,o_sum; printf("please input a num:"); scanf("%d",&n); j_sum = 0; o_sum = 0; do{ if(i % 2==0){ o_sum += i; }else{ j_sum += i; } i++; }while(i <= n); printf("from 1 to %d's odd sum is %d\n",n,j_sum); printf("from 1 to %d's even sum is %d\n",n,o_sum); return 0; }
the_stack_data/187644379.c
struct s { unsigned:32; int x; } s; int main(void) { return *((unsigned*)&s); }
the_stack_data/111077699.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 'relational_greater_than_int4int4.cl' */ source_code = read_buffer("relational_greater_than_int4int4.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, "relational_greater_than_int4int4", &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_int4 *src_0_host_buffer; src_0_host_buffer = malloc(num_elem * sizeof(cl_int4)); for (int i = 0; i < num_elem; i++) src_0_host_buffer[i] = (cl_int4){{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_int4), 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_int4), 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_int4 *src_1_host_buffer; src_1_host_buffer = malloc(num_elem * sizeof(cl_int4)); for (int i = 0; i < num_elem; i++) src_1_host_buffer[i] = (cl_int4){{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_int4), 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_int4), 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_int4 *dst_host_buffer; dst_host_buffer = malloc(num_elem * sizeof(cl_int4)); memset((void *)dst_host_buffer, 1, num_elem * sizeof(cl_int4)); /* Create device dst buffer */ cl_mem dst_device_buffer; dst_device_buffer = clCreateBuffer(context, CL_MEM_WRITE_ONLY, num_elem *sizeof(cl_int4), 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_int4), 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_int4)); 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/168893018.c
/** * @Author Bob * @Eamil [email protected] * @Date 2018/5/7 */ #include <stdio.h> int main(void) { int feet, fathoms; fathoms = 2; feet = 6 * fathoms; printf("There are %d feet in %d fathoms!\n", feet, fathoms); printf("Yes, I said %d feet!\n", 6 * fathoms); return 0; }
the_stack_data/42885.c
/* ** !!DESCRIPTION!! Simple tests of pointer-to-array dereferences ** !!ORIGIN!! cc65 regression tests ** !!LICENCE!! Public Domain ** !!AUTHOR!! 2015-06-29, Greg King */ #include <stdio.h> static unsigned char failures = 0; static size_t Size; typedef unsigned char array_t[4][4]; static array_t table = { {12, 13, 14, 15}, { 8, 9, 10, 11}, { 4, 5, 6, 7}, { 0, 1, 2, 3} }; static array_t *tablePtr = &table; static unsigned (*vector)[2]; static unsigned char y = 0, x; int main(void) { /* The indirection must convert the expression-type (from Pointer into ** Array); but, it must not convert the value, because it already points ** to the start of the array. */ /* (Note: I reduce output clutter by using a variable to prevent ** compiler warnings about constant comparisons and unreachable code. */ if ((Size = sizeof *tablePtr) != sizeof table) { ++failures; } if (*tablePtr != table) { ++failures; } /* Test fetching. */ do { x = 0; do { if ((*tablePtr)[y][x] != table[y][x]) { ++failures; printf("(*tableptr)[%u][%u] (%u) != table[%u][%u] (%u).\n", y, x, (*tablePtr)[y][x], y, x, table[y][x]); } } while (++x < sizeof table[0]); } while (++y < sizeof table / sizeof table[0]); vector = (unsigned (*)[])table[1]; if ((*vector)[1] != 0x0B0A) { ++failures; } /* Test storing. */ (*tablePtr)[2][1] = 42; if (table[2][1] != 42) { ++failures; printf("table[2][1] == %u (should have changed from 5 to 42).\n", table[2][1]); } x = 3; y = 1; (*tablePtr)[y][x] = 83; if (table[1][3] != 83) { ++failures; printf("table[y][x] == %u (should have changed from 11 to 83).\n", table[1][3]); } /* Test triple indirection. It should compile to two indirection ** operations. */ --***tablePtr; if (**table != 11) { ++failures; printf("**table == %u (should have changed from 12 to 11).\n", table[0][0]); } if (failures != 0) { printf("failures: %u\n", failures); } return failures; }
the_stack_data/231392220.c
#include<stdio.h> // Definition for singly-linked list. struct ListNode { int val; struct ListNode *next; }; struct ListNode* reverseList(struct ListNode* head) { struct ListNode* prev = NULL; struct ListNode* curr = head; while (curr) { struct ListNode* next = curr->next; curr->next = prev; prev = curr; curr = next; } return prev; }
the_stack_data/117326851.c
#include <stdio.h> int binarySearch(int array[], int left, int right, int search_value) { if (right >= left) { int mid = left + (right - left) / 2; if (array[mid] == search_value) return mid; if (array[mid] > search_value) return binarySearch(array, left, mid - 1, search_value); return binarySearch(array, mid + 1, right, search_value); } return -1; } int main(void) { int array[] = { 2, 3, 4, 10, 40 }; int n = sizeof(array) / sizeof(array[0]); int search_value = 10; int result = binarySearch(array, 0, n - 1, search_value); (result == -1) ? printf("Element is not found") : printf("Element is found at index %d", result); return 0; }
the_stack_data/122776.c
/* Copyright 2007-2014 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/>. Contributed by Markus Deuling <[email protected]>. */ #include <stdio.h> void foo () { printf ("foo in lib\n"); return; } void foo2() { printf ("foo2 in lib\n"); return; }
the_stack_data/90765268.c
/* * puts.c - print a string onto the standard output stream */ /* $Id$ */ #include <stdio.h> int puts(register const char *s) { register FILE *file = stdout; register int i = 0; while (*s) { if (putc(*s++, file) == EOF) return EOF; else i++; } if (putc('\n', file) == EOF) return EOF; return i + 1; }
the_stack_data/105030.c
double atof(const char* str); double ATOF(const char* str) { return atof(str); }
the_stack_data/34003.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 'post_decrement_short8.cl' */ source_code = read_buffer("post_decrement_short8.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, "post_decrement_short8", &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_short8 *src_0_host_buffer; src_0_host_buffer = malloc(num_elem * sizeof(cl_short8)); for (int i = 0; i < num_elem; i++) src_0_host_buffer[i] = (cl_short8){{2, 2, 2, 2, 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_short8), 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_short8), src_0_host_buffer, 0, NULL, NULL); if (ret != CL_SUCCESS) { printf("error: call to 'clEnqueueWriteBuffer' failed\n"); exit(1); } /* Create host dst buffer */ cl_short8 *dst_host_buffer; dst_host_buffer = malloc(num_elem * sizeof(cl_short8)); memset((void *)dst_host_buffer, 1, num_elem * sizeof(cl_short8)); /* Create device dst buffer */ cl_mem dst_device_buffer; dst_device_buffer = clCreateBuffer(context, CL_MEM_WRITE_ONLY, num_elem *sizeof(cl_short8), 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), &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_short8), 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_short8)); 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); } /* 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/13745.c
#include <stdio.h> int sum(int, int); int main() { printf("hello WebAssembly\n"); int x, y; printf("input x:\n"); scanf("%d", &x); printf("\n input y:\n"); scanf("%d", &y); int z = sum(x, y); printf("%d + %d = %d\n", x, y, z); return 0; } int sum(int x, int y) { return x + y; }
the_stack_data/159514320.c
extern void __VERIFIER_error() __attribute__ ((__noreturn__)); #include <stdio.h> #include <stdlib.h> #include <pthread.h> #define USAGE "./reorder <param1> <param2>\n" static int iSet = 2; static int iCheck = 2; static int a = 0; static int b = 0; void *setThread(void *param); void *checkThread(void *param); void set(); int check(); int main(int argc, char *argv[]) { int i, err; if (argc != 1) { if (argc != 3) { fprintf(stderr, USAGE); exit(-1); } else { sscanf(argv[1], "%d", &iSet); sscanf(argv[2], "%d", &iCheck); } } //printf("iSet = %d\niCheck = %d\n", iSet, iCheck); pthread_t setPool[iSet]; pthread_t checkPool[iCheck]; for (i = 0; i < iSet; i++) { if (0 != (err = pthread_create(&setPool[i], NULL, &setThread, NULL))) { fprintf(stderr, "Error [%d] found creating set thread.\n", err); exit(-1); } } for (i = 0; i < iCheck; i++) { if (0 != (err = pthread_create(&checkPool[i], NULL, &checkThread, NULL))) { fprintf(stderr, "Error [%d] found creating check thread.\n", err); exit(-1); } } for (i = 0; i < iSet; i++) { if (0 != (err = pthread_join(setPool[i], NULL))) { fprintf(stderr, "pthread join error: %d\n", err); exit(-1); } } for (i = 0; i < iCheck; i++) { if (0 != (err = pthread_join(checkPool[i], NULL))) { fprintf(stderr, "pthread join error: %d\n", err); exit(-1); } } return 0; } void *setThread(void *param) { a = 1; b = -1; return NULL; } void *checkThread(void *param) { if (! ((a == 0 && b == 0) || (a == 1 && b == -1))) { fprintf(stderr, "Bug found!\n"); ERROR: __VERIFIER_error(); goto ERROR; } return NULL; }
the_stack_data/140766189.c
/** @author Graeme Douglas @brief @details @copyright Copyright 2013 Graeme Douglas @license Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 @par Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. */ void runAllTests_ntjoin(); int main(void) { runAllTests_ntjoin(); return 0; }
the_stack_data/455425.c
// Tests for 3C. // // Checks very simple inference properties for local variables. // // RUN: 3c -base-dir=%S %s -- | FileCheck -match-full-lines %s // RUN: 3c -base-dir=%S -alltypes %s -- | FileCheck -match-full-lines %s // RUN: 3c -base-dir=%S %s -- | %clang_cc1 -verify -fcheckedc-extension -x c - // expected-no-diagnostics #include <stdarg.h> int doStuff(unsigned int tag, va_list arg) { return 0; } //CHECK: int doStuff(unsigned int tag, va_list arg) { return 0; } int *id(int *a) { return a; } //CHECK: _Ptr<int> id(_Ptr<int> a) { return a; }
the_stack_data/6386616.c
#include <stdio.h> #include <string.h> #include <stdlib.h> void loadSubunits ( char nome_subunidades[512], // nome do arquivo com as subunidades foneticas int *nSubunits1, // number of phonetic subunits char ***subunits1 ) { FILE *arquivo; char data[512]; int i; char **subunits; int nSubunits = 0; arquivo = fopen(nome_subunidades,"rt"); if (arquivo == NULL) { printf("Error opening file %s.\n",nome_subunidades); exit(1); } // Counting phonetic subunits fgets(data, 500, arquivo); while (!feof(arquivo)) { nSubunits += 1; fgets(data, 500, arquivo); } // Allocating memory subunits = malloc(sizeof(char *)*nSubunits); for (i=0;i<nSubunits;i++) subunits[i] = malloc(sizeof(char)*10); // Reading subunits rewind(arquivo); fgets(data, 500, arquivo); // removing control characters (\r \n) frm the end of string while (data[strlen(data)-1]=='\r' || data[strlen(data)-1]=='\n') data[strlen(data)-1] = '\0'; i=0; while (!feof(arquivo)) { strcpy(subunits[i++],data); // Reading new entry from file if (!feof(arquivo)) fgets(data, 500, arquivo); // removing control characters (\r \n) frm the end of string while (data[strlen(data)-1]=='\r' || data[strlen(data)-1]=='\n') data[strlen(data)-1] = '\0'; } // end of configuration file reading fclose(arquivo); *subunits1 = subunits; *nSubunits1 = nSubunits; } void freeSubunits ( char ***subunits1, int nSubunits ) { char **subunits; int i; subunits = *subunits1; for(i=0;i<nSubunits;i++) free(subunits[i]); free(subunits); }
the_stack_data/669986.c
/** ****************************************************************************** * @file startup_stm32f4xx.s * @author Coocox / UB (angepasst fuer STM32F429) * @version V1.1 * @date 10/27/2013 * @brief STM32F429 Devices vector table for RIDE7 toolchain. * This module performs: * - Set the initial SP * - Set the initial PC == Reset_Handler, * - Set the vector table entries with the exceptions ISR address * - Configure the clock system and the external SRAM mounted on * STM324xG-EVAL board to be used as data memory (optional, * to be enabled by user) * - Branches to main in the C library (which eventually * calls main()). * After Reset the Cortex-M4 processor is in Thread mode, * priority is Privileged, and the Stack is set to Main. ****************************************************************************** */ /*----------Stack Configuration-----------------------------------------------*/ #define STACK_SIZE 0x00000200 /*!< The Stack size suggest using even number */ __attribute__ ((section(".co_stack"))) unsigned long pulStack[STACK_SIZE]; /*----------Macro definition--------------------------------------------------*/ #define WEAK __attribute__ ((weak)) /*----------Declaration of the default fault handlers-------------------------*/ /* System exception vector handler */ __attribute__ ((used)) void WEAK Reset_Handler(void); void WEAK NMI_Handler(void); void WEAK HardFault_Handler(void); void WEAK MemManage_Handler(void); void WEAK BusFault_Handler(void); void WEAK UsageFault_Handler(void); void WEAK SVC_Handler(void); void WEAK DebugMon_Handler(void); void WEAK PendSV_Handler(void); void WEAK SysTick_Handler(void); void WEAK WWDG_IRQHandler(void); void WEAK PVD_IRQHandler(void); void WEAK TAMP_STAMP_IRQHandler(void); void WEAK RTC_WKUP_IRQHandler(void); void WEAK FLASH_IRQHandler(void); void WEAK RCC_IRQHandler(void); void WEAK EXTI0_IRQHandler(void); void WEAK EXTI1_IRQHandler(void); void WEAK EXTI2_IRQHandler(void); void WEAK EXTI3_IRQHandler(void); void WEAK EXTI4_IRQHandler(void); void WEAK DMA1_Stream0_IRQHandler(void); void WEAK DMA1_Stream1_IRQHandler(void); void WEAK DMA1_Stream2_IRQHandler(void); void WEAK DMA1_Stream3_IRQHandler(void); void WEAK DMA1_Stream4_IRQHandler(void); void WEAK DMA1_Stream5_IRQHandler(void); void WEAK DMA1_Stream6_IRQHandler(void); void WEAK ADC_IRQHandler(void); void WEAK CAN1_TX_IRQHandler(void); void WEAK CAN1_RX0_IRQHandler(void); void WEAK CAN1_RX1_IRQHandler(void); void WEAK CAN1_SCE_IRQHandler(void); void WEAK EXTI9_5_IRQHandler(void); void WEAK TIM1_BRK_TIM9_IRQHandler(void); void WEAK TIM1_UP_TIM10_IRQHandler(void); void WEAK TIM1_TRG_COM_TIM11_IRQHandler(void); void WEAK TIM1_CC_IRQHandler(void); void WEAK TIM2_IRQHandler(void); void WEAK TIM3_IRQHandler(void); void WEAK TIM4_IRQHandler(void); void WEAK I2C1_EV_IRQHandler(void); void WEAK I2C1_ER_IRQHandler(void); void WEAK I2C2_EV_IRQHandler(void); void WEAK I2C2_ER_IRQHandler(void); void WEAK SPI1_IRQHandler(void); void WEAK SPI2_IRQHandler(void); void WEAK USART1_IRQHandler(void); void WEAK USART2_IRQHandler(void); void WEAK USART3_IRQHandler(void); void WEAK EXTI15_10_IRQHandler(void); void WEAK RTC_Alarm_IRQHandler(void); void WEAK OTG_FS_WKUP_IRQHandler(void); void WEAK TIM8_BRK_TIM12_IRQHandler(void); void WEAK TIM8_UP_TIM13_IRQHandler(void); void WEAK TIM8_TRG_COM_TIM14_IRQHandler(void); void WEAK TIM8_CC_IRQHandler(void); void WEAK DMA1_Stream7_IRQHandler(void); void WEAK FMC_IRQHandler(void); void WEAK SDIO_IRQHandler(void); void WEAK TIM5_IRQHandler(void); void WEAK SPI3_IRQHandler(void); void WEAK UART4_IRQHandler(void); void WEAK UART5_IRQHandler(void); void WEAK TIM6_DAC_IRQHandler(void); void WEAK TIM7_IRQHandler(void); void WEAK DMA2_Stream0_IRQHandler(void); void WEAK DMA2_Stream1_IRQHandler(void); void WEAK DMA2_Stream2_IRQHandler(void); void WEAK DMA2_Stream3_IRQHandler(void); void WEAK DMA2_Stream4_IRQHandler(void); void WEAK ETH_IRQHandler(void); void WEAK ETH_WKUP_IRQHandler(void); void WEAK CAN2_TX_IRQHandler(void); void WEAK CAN2_RX0_IRQHandler(void); void WEAK CAN2_RX1_IRQHandler(void); void WEAK CAN2_SCE_IRQHandler(void); void WEAK OTG_FS_IRQHandler(void); void WEAK DMA2_Stream5_IRQHandler(void); void WEAK DMA2_Stream6_IRQHandler(void); void WEAK DMA2_Stream7_IRQHandler(void); void WEAK USART6_IRQHandler(void); void WEAK I2C3_EV_IRQHandler(void); void WEAK I2C3_ER_IRQHandler(void); void WEAK OTG_HS_EP1_OUT_IRQHandler(void); void WEAK OTG_HS_EP1_IN_IRQHandler(void); void WEAK OTG_HS_WKUP_IRQHandler(void); void WEAK OTG_HS_IRQHandler(void); void WEAK DCMI_IRQHandler(void); void WEAK CRYP_IRQHandler(void); void WEAK HASH_RNG_IRQHandler(void); void WEAK FPU_IRQHandler(void); // neu für STM32F429 void WEAK UART7_IRQHandler(void); void WEAK UART8_IRQHandler(void); void WEAK SPI4_IRQHandler(void); void WEAK SPI5_IRQHandler(void); void WEAK SPI6_IRQHandler(void); void WEAK SAI1_IRQHandler(void); void WEAK LTDC_IRQHandler(void); void WEAK LTDC_ER_IRQHandler(void); void WEAK DMA2D_IRQHandler(void); /*----------Symbols defined in linker script----------------------------------*/ extern unsigned long _sidata; /*!< Start address for the initialization values of the .data section. */ extern unsigned long _sdata; /*!< Start address for the .data section */ extern unsigned long _edata; /*!< End address for the .data section */ extern unsigned long _sbss; /*!< Start address for the .bss section */ extern unsigned long _ebss; /*!< End address for the .bss section */ extern void _eram; /*!< End address for ram */ /*----------Function prototypes-----------------------------------------------*/ extern int main(void); /*!< The entry point for the application. */ extern void SystemInit(void); /*!< Setup the microcontroller system(CMSIS) */ void Default_Reset_Handler(void); /*!< Default reset handler */ static void Default_Handler(void); /*!< Default exception handler */ /** *@brief The minimal vector table for a Cortex M3. Note that the proper constructs * must be placed on this to ensure that it ends up at physical address * 0x00000000. */ __attribute__ ((used,section(".isr_vector"))) void (* const g_pfnVectors[])(void) = { /*----------Core Exceptions------------------------------------------------ */ (void *)&pulStack[STACK_SIZE], /*!< The initial stack pointer */ Reset_Handler, /*!< Reset Handler */ NMI_Handler, /*!< NMI Handler */ HardFault_Handler, /*!< Hard Fault Handler */ MemManage_Handler, /*!< MPU Fault Handler */ BusFault_Handler, /*!< Bus Fault Handler */ UsageFault_Handler, /*!< Usage Fault Handler */ 0,0,0,0, /*!< Reserved */ SVC_Handler, /*!< SVCall Handler */ DebugMon_Handler, /*!< Debug Monitor Handler */ 0, /*!< Reserved */ PendSV_Handler, /*!< PendSV Handler */ SysTick_Handler, /*!< SysTick Handler */ /*----------External Exceptions---------------------------------------------*/ WWDG_IRQHandler, /*!< 0: Window WatchDog */ PVD_IRQHandler, /*!< 1: PVD through EXTI Line detection */ TAMP_STAMP_IRQHandler, /*!< 2: Tamper and TimeStamps through the EXTI line*/ RTC_WKUP_IRQHandler, /*!< 3: RTC Wakeup through the EXTI line */ FLASH_IRQHandler, /*!< 4: FLASH */ RCC_IRQHandler , /*!< 5: RCC */ EXTI0_IRQHandler, /*!< 6: EXTI Line0 */ EXTI1_IRQHandler, /*!< 7: EXTI Line1 */ EXTI2_IRQHandler, /*!< 8: EXTI Line2 */ EXTI3_IRQHandler, /*!< 9: EXTI Line3 */ EXTI4_IRQHandler, /*!< 10: EXTI Line4 */ DMA1_Stream0_IRQHandler, /*!< 11: DMA1 Stream 0 */ DMA1_Stream1_IRQHandler, /*!< 12: DMA1 Stream 1 */ DMA1_Stream2_IRQHandler, /*!< 13: DMA1 Stream 2 */ DMA1_Stream3_IRQHandler, /*!< 14: DMA1 Stream 3 */ DMA1_Stream4_IRQHandler, /*!< 15: DMA1 Stream 4 */ DMA1_Stream5_IRQHandler, /*!< 16: DMA1 Stream 5 */ DMA1_Stream6_IRQHandler, /*!< 17: DMA1 Stream 6 */ ADC_IRQHandler, /*!< 18: ADC1, ADC2 and ADC3s */ CAN1_TX_IRQHandler, /*!< 19: CAN1 TX */ CAN1_RX0_IRQHandler, /*!< 20: CAN1 RX0 */ CAN1_RX1_IRQHandler, /*!< 21: CAN1 RX1 */ CAN1_SCE_IRQHandler, /*!< 22: CAN1 SCE */ EXTI9_5_IRQHandler, /*!< 23: External Line[9:5]s */ TIM1_BRK_TIM9_IRQHandler, /*!< 24: TIM1 Break and TIM9 */ TIM1_UP_TIM10_IRQHandler, /*!< 25: TIM1 Update and TIM10 */ TIM1_TRG_COM_TIM11_IRQHandler,/*!< 26: TIM1 Trigger and Commutation and TIM11*/ TIM1_CC_IRQHandler, /*!< 27: TIM1 Capture Compare */ TIM2_IRQHandler, /*!< 28: TIM2 */ TIM3_IRQHandler, /*!< 29: TIM3 */ TIM4_IRQHandler, /*!< 30: TIM4 */ I2C1_EV_IRQHandler, /*!< 31: I2C1 Event */ I2C1_ER_IRQHandler, /*!< 32: I2C1 Error */ I2C2_EV_IRQHandler, /*!< 33: I2C2 Event */ I2C2_ER_IRQHandler, /*!< 34: I2C2 Error */ SPI1_IRQHandler, /*!< 35: SPI1 */ SPI2_IRQHandler, /*!< 36: SPI2 */ USART1_IRQHandler, /*!< 37: USART1 */ USART2_IRQHandler, /*!< 38: USART2 */ USART3_IRQHandler, /*!< 39: USART3 */ EXTI15_10_IRQHandler, /*!< 40: External Line[15:10]s */ RTC_Alarm_IRQHandler, /*!< 41: RTC Alarm (A and B) through EXTI Line */ OTG_FS_WKUP_IRQHandler, /*!< 42: USB OTG FS Wakeup through EXTI line */ TIM8_BRK_TIM12_IRQHandler, /*!< 43: TIM8 Break and TIM12 */ TIM8_UP_TIM13_IRQHandler, /*!< 44: TIM8 Update and TIM13 */ TIM8_TRG_COM_TIM14_IRQHandler,/*!< 45:TIM8 Trigger and Commutation and TIM14*/ TIM8_CC_IRQHandler, /*!< 46: TIM8 Capture Compare */ DMA1_Stream7_IRQHandler, /*!< 47: DMA1 Stream7 */ FMC_IRQHandler, /*!< 48: FMC */ SDIO_IRQHandler, /*!< 49: SDIO */ TIM5_IRQHandler, /*!< 50: TIM5 */ SPI3_IRQHandler, /*!< 51: SPI3 */ UART4_IRQHandler, /*!< 52: UART4 */ UART5_IRQHandler, /*!< 53: UART5 */ TIM6_DAC_IRQHandler, /*!< 54: TIM6 and DAC1&2 underrun errors */ TIM7_IRQHandler, /*!< 55: TIM7 */ DMA2_Stream0_IRQHandler, /*!< 56: DMA2 Stream 0 */ DMA2_Stream1_IRQHandler, /*!< 57: DMA2 Stream 1 */ DMA2_Stream2_IRQHandler, /*!< 58: DMA2 Stream 2 */ DMA2_Stream3_IRQHandler, /*!< 59: DMA2 Stream 3 */ DMA2_Stream4_IRQHandler, /*!< 60: DMA2 Stream 4 */ ETH_IRQHandler, /*!< 61: Ethernet */ ETH_WKUP_IRQHandler, /*!< 62: Ethernet Wakeup through EXTI line */ CAN2_TX_IRQHandler, /*!< 63: CAN2 TX */ CAN2_RX0_IRQHandler, /*!< 64: CAN2 RX0 */ CAN2_RX1_IRQHandler, /*!< 65: CAN2 RX1 */ CAN2_SCE_IRQHandler, /*!< 66: CAN2 SCE */ OTG_FS_IRQHandler, /*!< 67: USB OTG FS */ DMA2_Stream5_IRQHandler, /*!< 68: DMA2 Stream 5 */ DMA2_Stream6_IRQHandler, /*!< 69: DMA2 Stream 6 */ DMA2_Stream7_IRQHandler, /*!< 70: DMA2 Stream 7 */ USART6_IRQHandler, /*!< 71: USART6 */ I2C3_EV_IRQHandler, /*!< 72: I2C3 event */ I2C3_ER_IRQHandler, /*!< 73: I2C3 error */ OTG_HS_EP1_OUT_IRQHandler, /*!< 74: USB OTG HS End Point 1 Out */ OTG_HS_EP1_IN_IRQHandler, /*!< 75: USB OTG HS End Point 1 In */ OTG_HS_WKUP_IRQHandler, /*!< 76: USB OTG HS Wakeup through EXTI */ OTG_HS_IRQHandler, /*!< 77: USB OTG HS */ DCMI_IRQHandler, /*!< 53: DCMI */ CRYP_IRQHandler, /*!< 53: CRYP crypto */ HASH_RNG_IRQHandler, /*!< 53: Hash and Rng */ FPU_IRQHandler, /*!< 53: FPU */ UART7_IRQHandler, /*!< ??: UART7 (STM32F429) */ UART8_IRQHandler, /*!< ??: UART8 (STM32F429) */ SPI4_IRQHandler, /*!< ??: SPI4 (STM32F429) */ SPI5_IRQHandler, /*!< ??: SPI5 (STM32F429) */ SPI6_IRQHandler, /*!< ??: SPI6 (STM32F429) */ SAI1_IRQHandler, /*!< ??: SAI1 (STM32F429) */ LTDC_IRQHandler, /*!< ??: LTDC (STM32F429) */ LTDC_ER_IRQHandler, /*!< ??: LTDC_ER (STM32F429) */ DMA2D_IRQHandler /*!< ??: DMA2D (STM32F429) */ }; /** * @brief This is the code that gets called when the processor first * starts execution following a reset event. Only the absolutely * necessary set is performed, after which the application * supplied main() routine is called. * @param None * @retval None */ void Default_Reset_Handler(void) { /* Initialize data and bss */ unsigned long *pulSrc, *pulDest; /* Copy the data segment initializers from flash to SRAM */ pulSrc = &_sidata; for(pulDest = &_sdata; pulDest < &_edata; ) { *(pulDest++) = *(pulSrc++); } /* Zero fill the bss segment. This is done with inline assembly since this will clear the value of pulDest if it is not kept in a register. */ __asm(" ldr r0, =_sbss\n" " ldr r1, =_ebss\n" " mov r2, #0\n" " .thumb_func\n" "zero_loop:\n" " cmp r0, r1\n" " it lt\n" " strlt r2, [r0], #4\n" " blt zero_loop"); #ifdef __FPU_USED /* Enable FPU.*/ __asm(" LDR.W R0, =0xE000ED88\n" " LDR R1, [R0]\n" " ORR R1, R1, #(0xF << 20)\n" " STR R1, [R0]"); #endif //Configure CLOCK //SystemInit(); /* Call the application's entry point.*/ main(); } /** *@brief Provide weak aliases for each Exception handler to the Default_Handler. * As they are weak aliases, any function with the same name will override * this definition. */ #pragma weak Reset_Handler = Default_Reset_Handler #pragma weak NMI_Handler = Default_Handler #pragma weak HardFault_Handler = Default_Handler #pragma weak MemManage_Handler = Default_Handler #pragma weak BusFault_Handler = Default_Handler #pragma weak UsageFault_Handler = Default_Handler #pragma weak SVC_Handler = Default_Handler #pragma weak DebugMon_Handler = Default_Handler #pragma weak PendSV_Handler = Default_Handler #pragma weak SysTick_Handler = Default_Handler #pragma weak WWDG_IRQHandler = Default_Handler #pragma weak PVD_IRQHandler = Default_Handler #pragma weak TAMP_STAMP_IRQHandler = Default_Handler #pragma weak RTC_WKUP_IRQHandler = Default_Handler #pragma weak FLASH_IRQHandler = Default_Handler #pragma weak RCC_IRQHandler = Default_Handler #pragma weak EXTI0_IRQHandler = Default_Handler #pragma weak EXTI1_IRQHandler = Default_Handler #pragma weak EXTI2_IRQHandler = Default_Handler #pragma weak EXTI3_IRQHandler = Default_Handler #pragma weak EXTI4_IRQHandler = Default_Handler #pragma weak DMA1_Stream0_IRQHandler = Default_Handler #pragma weak DMA1_Stream1_IRQHandler = Default_Handler #pragma weak DMA1_Stream2_IRQHandler = Default_Handler #pragma weak DMA1_Stream3_IRQHandler = Default_Handler #pragma weak DMA1_Stream4_IRQHandler = Default_Handler #pragma weak DMA1_Stream5_IRQHandler = Default_Handler #pragma weak DMA1_Stream6_IRQHandler = Default_Handler #pragma weak ADC_IRQHandler = Default_Handler #pragma weak CAN1_TX_IRQHandler = Default_Handler #pragma weak CAN1_RX0_IRQHandler = Default_Handler #pragma weak CAN1_RX1_IRQHandler = Default_Handler #pragma weak CAN1_SCE_IRQHandler = Default_Handler #pragma weak EXTI9_5_IRQHandler = Default_Handler #pragma weak TIM1_BRK_TIM9_IRQHandler = Default_Handler #pragma weak TIM1_UP_TIM10_IRQHandler = Default_Handler #pragma weak TIM1_TRG_COM_TIM11_IRQHandler = Default_Handler #pragma weak TIM1_CC_IRQHandler = Default_Handler #pragma weak TIM2_IRQHandler = Default_Handler #pragma weak TIM3_IRQHandler = Default_Handler #pragma weak TIM4_IRQHandler = Default_Handler #pragma weak I2C1_EV_IRQHandler = Default_Handler #pragma weak I2C1_ER_IRQHandler = Default_Handler #pragma weak I2C2_EV_IRQHandler = Default_Handler #pragma weak I2C2_ER_IRQHandler = Default_Handler #pragma weak SPI1_IRQHandler = Default_Handler #pragma weak SPI2_IRQHandler = Default_Handler #pragma weak USART1_IRQHandler = Default_Handler #pragma weak USART2_IRQHandler = Default_Handler #pragma weak USART3_IRQHandler = Default_Handler #pragma weak EXTI15_10_IRQHandler = Default_Handler #pragma weak RTC_Alarm_IRQHandler = Default_Handler #pragma weak OTG_FS_WKUP_IRQHandler = Default_Handler #pragma weak TIM8_BRK_TIM12_IRQHandler = Default_Handler #pragma weak TIM8_UP_TIM13_IRQHandler = Default_Handler #pragma weak TIM8_TRG_COM_TIM14_IRQHandler = Default_Handler #pragma weak TIM8_CC_IRQHandler = Default_Handler #pragma weak DMA1_Stream7_IRQHandler = Default_Handler #pragma weak FMC_IRQHandler = Default_Handler #pragma weak SDIO_IRQHandler = Default_Handler #pragma weak TIM5_IRQHandler = Default_Handler #pragma weak SPI3_IRQHandler = Default_Handler #pragma weak UART4_IRQHandler = Default_Handler #pragma weak UART5_IRQHandler = Default_Handler #pragma weak TIM6_DAC_IRQHandler = Default_Handler #pragma weak TIM7_IRQHandler = Default_Handler #pragma weak DMA2_Stream0_IRQHandler = Default_Handler #pragma weak DMA2_Stream1_IRQHandler = Default_Handler #pragma weak DMA2_Stream2_IRQHandler = Default_Handler #pragma weak DMA2_Stream3_IRQHandler = Default_Handler #pragma weak DMA2_Stream4_IRQHandler = Default_Handler #pragma weak ETH_IRQHandler = Default_Handler #pragma weak ETH_WKUP_IRQHandler = Default_Handler #pragma weak CAN2_TX_IRQHandler = Default_Handler #pragma weak CAN2_RX0_IRQHandler = Default_Handler #pragma weak CAN2_RX1_IRQHandler = Default_Handler #pragma weak CAN2_SCE_IRQHandler = Default_Handler #pragma weak OTG_FS_IRQHandler = Default_Handler #pragma weak DMA2_Stream5_IRQHandler = Default_Handler #pragma weak DMA2_Stream6_IRQHandler = Default_Handler #pragma weak DMA2_Stream7_IRQHandler = Default_Handler #pragma weak USART6_IRQHandler = Default_Handler #pragma weak I2C3_EV_IRQHandler = Default_Handler #pragma weak I2C3_ER_IRQHandler = Default_Handler #pragma weak OTG_HS_EP1_OUT_IRQHandler = Default_Handler #pragma weak OTG_HS_EP1_IN_IRQHandler = Default_Handler #pragma weak OTG_HS_WKUP_IRQHandler = Default_Handler #pragma weak OTG_HS_IRQHandler = Default_Handler #pragma weak DCMI_IRQHandler = Default_Handler #pragma weak CRYP_IRQHandler = Default_Handler #pragma weak HASH_RNG_IRQHandler = Default_Handler #pragma weak FPU_IRQHandler = Default_Handler // neu für STM32F429 #pragma weak UART7_IRQHandler = Default_Handler #pragma weak UART8_IRQHandler = Default_Handler #pragma weak SPI4_IRQHandler = Default_Handler #pragma weak SPI5_IRQHandler = Default_Handler #pragma weak SPI6_IRQHandler = Default_Handler #pragma weak SAI1_IRQHandler = Default_Handler #pragma weak LTDC_IRQHandler = Default_Handler #pragma weak LTDC_ER_IRQHandler = Default_Handler #pragma weak DMA2D_IRQHandler = Default_Handler /** * @brief This is the code that gets called when the processor receives an * unexpected interrupt. This simply enters an infinite loop, * preserving the system state for examination by a debugger. * @param None * @retval None */ static void Default_Handler(void) { /* Go into an infinite loop. */ while (1) { } } /*********************** (C) COPYRIGHT 2009 Coocox ************END OF FILE*****/
the_stack_data/128001.c
#include <stdio.h> int main() { printf("Hello!\n"); printf("Name : Remya IS\n"); printf("Age : 36\n"); printf("Username : Remya101\n"); return(0); }
the_stack_data/21638.c
#include <stdio.h> int main() { int x = 1; switch(x) { case 1: int t = 1; break; case 2: t = 2; break; default: break; } return 0; }
the_stack_data/300811.c
//a program to display Fibonacci series of last term up to 300 #include <stdio.h> int main() { int a,b,c; a=b=1; printf("%d\n%d\n",a,b); while (1) { c=a+b; if (c>=300) break; printf("%d\n",c); a=b; b=c; } return 0; }
the_stack_data/129389.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_SIZE 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 4 /* 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_LV_DEMO_PRINTER_IMG_SCAN #define LV_ATTRIBUTE_IMG_LV_DEMO_PRINTER_IMG_SCAN #endif const LV_ATTRIBUTE_MEM_ALIGN LV_ATTRIBUTE_IMG_LV_DEMO_PRINTER_IMG_SCAN uint8_t lv_demo_printer_img_scan_map[] = { #if LV_COLOR_DEPTH == 1 || LV_COLOR_DEPTH == 8 /*Pixel format: Alpha 8 bit, Red: 3 bit, Green: 3 bit, Blue: 2 bit*/ 0xff, 0x00, 0xff, 0x00, 0xff, 0x0b, 0xff, 0x68, 0xff, 0xab, 0xff, 0xcf, 0xff, 0xec, 0xff, 0xef, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 0xec, 0xff, 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0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xf3, 0xff, 0xff, 0xbc, 0xff, 0xff, 0x58, 0xff, 0xff, 0x00, 0xff, 0xff, 0x00, 0xff, 0xff, 0x00, #endif #if LV_COLOR_DEPTH == 16 && LV_COLOR_16_SWAP != 0 /*Pixel format: Alpha 8 bit, Red: 5 bit, Green: 6 bit, Blue: 5 bit BUT the 2 color bytes are swapped*/ 0xff, 0xff, 0x00, 0xff, 0xff, 0x00, 0xff, 0xff, 0x0b, 0xff, 0xff, 0x68, 0xff, 0xff, 0xab, 0xff, 0xff, 0xcf, 0xff, 0xff, 0xec, 0xff, 0xff, 0xef, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 0xff, 0xec, 0xff, 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.header.w = 51, .header.h = 61, .data_size = 3111 * LV_IMG_PX_SIZE_ALPHA_BYTE, .header.cf = LV_IMG_CF_TRUE_COLOR_ALPHA, .data = lv_demo_printer_img_scan_map, }; /* * writing the pixel map */ int main(int argc, char **argv) { FILE *fp; char *binFile; binFile="img_scan_51x61_argb8888.bin"; /* 32 bit color */ fp = fopen(binFile, "wb"); fwrite(lv_demo_printer_img_scan_map,lv_demo_printer_img_scan.data_size,1,fp); fclose(fp); }
the_stack_data/176706948.c
#include <stdio.h> int main (){ int i, num; scanf("%d", &num); for (i = 1; i<=num; i++) { if (i % 3 == 0 && i % 7 ==0){ printf("O numero %d e divisivel por 3 e por 7\n", i);} else{ printf("O numero %d nao e divisivel por 3 e por 7\n", i);} } return 0;}
the_stack_data/20449882.c
/* ヘッダファイルのインクルード */ #include <stdio.h> /* 標準入出力 */ #include <string.h> /* 文字列処理 */ #include <openssl/sha.h> /* SHA */ #include <openssl/evp.h> /* EVP */ #include <openssl/hmac.h> /* HMAC */ /* main関数の定義 */ int main(void){ /* 変数の宣言と初期化. */ char key[] = "ABC&XYZ"; /* char型配列keyを"ABC&XYZ"と初期化. */ int key_len; /* int型key_len. */ char data[] = "ABCDE"; /* char型配列dataを"ABCDE"と初期化. */ int data_len; /* int型data_len. */ char hmac_sha1[SHA_DIGEST_LENGTH + 1]; /* char型配列hmac_sha1. */ int hmac_sha1_len; /* int型hmac_sha1_len. */ BIO *mem = NULL; /* メモリデータシンクBIO */ BIO *base64 = NULL; /* Base64フィルタBIO */ char base64_str[1024] = {0}; /* char型配列base64_strを0で初期化. */ /* keyの長さを計算. */ key_len = strlen(key); /* strlenでkeyの長さを計算し, key_lenに格納. */ /* dataの長さを計算. */ data_len = strlen(data); /* strlenでdataの長さを計算し, data_lenに格納. */ /* HMAC-SHA1の計算. */ HMAC(EVP_sha1(), key, key_len, data, data_len, hmac_sha1, &hmac_sha1_len); /* HMAC()でHMAC-SHA1を計算. */ /* hmac_sha1の出力. */ printf("hmac_sha1 = %s\n", hmac_sha1); /* printfでhmac_sha1を出力. */ /* memの作成. */ mem = BIO_new(BIO_s_mem()); /* BIO_new()にBIO_s_mem()を渡してmemを作成. */ /* base64の作成. */ base64 = BIO_new(BIO_f_base64()); /* BIO_new()にBIO_f_base64()を渡してbase64を作成. */ /* base64とmemを連結. */ BIO_push(base64, mem); /* BIO_pushでbase64とmemを連結. */ /* base64に書き込み. */ BIO_write(base64, hmac_sha1, hmac_sha1_len); /* base64にhmac_sha1を書き込み. */ /* フラッシュ */ BIO_flush(base64); /* BIO_flushでフラッシュ. */ /* memを読み込み. */ BIO_read(mem, base64_str, 1024); /* BIO_readでmemを読み込み, base64_strに格納. */ /* base64_strの出力. */ printf("base64_str = %s\n", base64_str); /* printfでbase64_strの出力. */ /* 解放 */ BIO_free_all(base64); /* base64と連結しているmemも解放される. */ /* プログラムの終了. */ return 0; /* 0を返す. */ }
the_stack_data/28263700.c
//Faça um programa que peça a temperatura em graus Farenheit, transforme e mostre a temperatura em graus Celsius. //C = (5 * (F-32) / 9) #include <stdio.h> int main() { float farenheit; printf("Digite uma temperatura, em Farenheit: "); scanf("%f", &farenheit); double celsius = (5 * (farenheit - 32)) / 9.0; printf("A temperatura, em Celsius, eh de: %.2f graus.", celsius); return 0; }
the_stack_data/98575737.c
#ifdef _WIN32 # include "windows.h" #else void pthread_exit(void *value_ptr); #endif int main() { int i; if(i == 100) { #ifdef _WIN32 ExitThread(0); #else pthread_exit(0); #endif } assert(i != 100); }
the_stack_data/36074140.c
// WARNING: kmalloc bug in bpf_prog_array_copy_info // https://syzkaller.appspot.com/bug?id=ec004d5b332946f698636fc7f5614d4d08096af3 // status:fixed // autogenerated by syzkaller (http://github.com/google/syzkaller) #define _GNU_SOURCE #include <endian.h> #include <stdint.h> #include <string.h> #include <sys/syscall.h> #include <unistd.h> #define BITMASK_LEN(type, bf_len) (type)((1ull << (bf_len)) - 1) #define BITMASK_LEN_OFF(type, bf_off, bf_len) \ (type)(BITMASK_LEN(type, (bf_len)) << (bf_off)) #define STORE_BY_BITMASK(type, addr, val, bf_off, bf_len) \ if ((bf_off) == 0 && (bf_len) == 0) { \ *(type*)(addr) = (type)(val); \ } else { \ type new_val = *(type*)(addr); \ new_val &= ~BITMASK_LEN_OFF(type, (bf_off), (bf_len)); \ new_val |= ((type)(val)&BITMASK_LEN(type, (bf_len))) << (bf_off); \ *(type*)(addr) = new_val; \ } #ifndef __NR_bpf #define __NR_bpf 321 #endif long r[2]; void loop() { memset(r, -1, sizeof(r)); syscall(__NR_mmap, 0x20000000, 0xfff000, 3, 0x32, -1, 0); *(uint32_t*)0x2001d000 = 2; *(uint32_t*)0x2001d004 = 0x78; *(uint8_t*)0x2001d008 = 0; *(uint8_t*)0x2001d009 = 1; *(uint8_t*)0x2001d00a = 0; *(uint8_t*)0x2001d00b = 0; *(uint32_t*)0x2001d00c = 0; *(uint64_t*)0x2001d010 = 0; *(uint64_t*)0x2001d018 = 0; *(uint64_t*)0x2001d020 = 0; STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 0, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 1, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 2, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 3, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 4, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 5, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 6, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 7, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 8, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 9, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 10, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 11, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 12, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 13, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 14, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 15, 2); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 17, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 18, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 19, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 20, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 21, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 22, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 23, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 24, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 25, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 26, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 27, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 28, 1); STORE_BY_BITMASK(uint64_t, 0x2001d028, 0, 29, 35); *(uint32_t*)0x2001d030 = 0; *(uint32_t*)0x2001d034 = 0; *(uint64_t*)0x2001d038 = 0x20000000; *(uint64_t*)0x2001d040 = 0; *(uint64_t*)0x2001d048 = 0; *(uint64_t*)0x2001d050 = 0; *(uint64_t*)0x2001d058 = 0; *(uint32_t*)0x2001d060 = 0; *(uint64_t*)0x2001d068 = 0; *(uint32_t*)0x2001d070 = 0; *(uint16_t*)0x2001d074 = 0; *(uint16_t*)0x2001d076 = 0; r[0] = syscall(__NR_perf_event_open, 0x2001d000, 0, 0, -1, 0); *(uint32_t*)0x20973000 = 5; *(uint32_t*)0x20973004 = 3; *(uint64_t*)0x20973008 = 0x209ff000; *(uint64_t*)0x20973010 = 0x202bf000; *(uint32_t*)0x20973018 = 4; *(uint32_t*)0x2097301c = 0xb7; *(uint64_t*)0x20973020 = 0x206ab000; *(uint32_t*)0x20973028 = 0; *(uint32_t*)0x2097302c = 0; *(uint8_t*)0x20973030 = 0; *(uint8_t*)0x20973031 = 0; *(uint8_t*)0x20973032 = 0; *(uint8_t*)0x20973033 = 0; *(uint8_t*)0x20973034 = 0; *(uint8_t*)0x20973035 = 0; *(uint8_t*)0x20973036 = 0; *(uint8_t*)0x20973037 = 0; *(uint8_t*)0x20973038 = 0; *(uint8_t*)0x20973039 = 0; *(uint8_t*)0x2097303a = 0; *(uint8_t*)0x2097303b = 0; *(uint8_t*)0x2097303c = 0; *(uint8_t*)0x2097303d = 0; *(uint8_t*)0x2097303e = 0; *(uint8_t*)0x2097303f = 0; *(uint32_t*)0x20973040 = 0; *(uint8_t*)0x209ff000 = 0x18; STORE_BY_BITMASK(uint8_t, 0x209ff001, 0, 0, 4); STORE_BY_BITMASK(uint8_t, 0x209ff001, 0, 4, 4); *(uint16_t*)0x209ff002 = 0; *(uint32_t*)0x209ff004 = 0; *(uint8_t*)0x209ff008 = 0; *(uint8_t*)0x209ff009 = 0; *(uint16_t*)0x209ff00a = 0; *(uint32_t*)0x209ff00c = 0; *(uint8_t*)0x209ff010 = 0x95; *(uint8_t*)0x209ff011 = 0; *(uint16_t*)0x209ff012 = 0; *(uint32_t*)0x209ff014 = 0; memcpy((void*)0x202bf000, "syzkaller", 10); r[1] = syscall(__NR_bpf, 5, 0x20973000, 0x48); syscall(__NR_ioctl, r[0], 0x40042408, r[1]); *(uint32_t*)0x206a8000 = 0x3ffffe29; *(uint32_t*)0x206a8004 = 0; syscall(__NR_ioctl, r[0], 0xc008240a, 0x206a8000); } int main() { loop(); return 0; }
the_stack_data/1066627.c
#include <stdio.h> int main() { int n = 5; for(int i = 1; i <= n; i++) { for(int j = 1; j <= n*2; j++) { if(j <= i) printf("%d ", j); else if(j >= n*2 - i) printf("%d ", n*2 - j + 1); else printf(" "); } printf("\n"); } return 0; }
the_stack_data/215767849.c
/* * Registers of reset controller. * Specific to QEMU "mips" machine. */ #define _REG32(a) *(volatile unsigned*)(a) #define HW_RESET _REG32 (0x1fbf0000) #define HW_SHUTDOWN _REG32 (0x1fbf0004) /* * Reset vector at 0xBFC00000 */ asm ( ".section .init \n" " .set noreorder \n" " .org 0 \n" "_reset_: \n" " la $sp, _estack \n" " j startup \n" " lui $gp, 0 \n" " .section .text"); /* * Initialize memory and call main(), then shutdown. */ void startup () { /* Copy the .data image from flash to ram. * Linker places it at the end of .text segment. */ extern void _etext(); extern unsigned __data_start, _edata, _end; unsigned *src = (unsigned*) &_etext; unsigned *dest = &__data_start; while (dest < &_edata) *dest++ = *src++; /* Clear .bss segment. */ dest = &_edata; while (dest < &_end) *dest++ = 0; /* Call user program. */ extern int main(); main (); /* Stop qemu. */ HW_SHUTDOWN = 42; }
the_stack_data/28262488.c
#include<stdio.h> #define ROW 3 #define COLUMN 80 void input_text(char text[ROW][COLUMN],int row,int column); void print_text(char text[ROW][COLUMN],int row,int column); void statistics(char text[ROW][COLUMN],int row,int column,int *uppe,int *low,int *dig,int *spa,int *oth); int main() { char text[ROW][COLUMN]; int upper; int lower; int digit; int space; int other; printf("请输入一个%d行%d列的字符串:\n",ROW,COLUMN); input_text(text,ROW,COLUMN); print_text(text,ROW,COLUMN); statistics(text,ROW,COLUMN,&upper,&lower,&digit,&space,&other); printf("大写字母:%d,小写字母:%d,数字:%d,空格:%d,其他:%d\n",upper,lower,digit,space,other); return 0; } void input_text(char text[ROW][COLUMN],int row,int column) { int i; for(i = 0; i < row; i++) { fgets(text[i],column,stdin); } } void print_text(char text[ROW][COLUMN],int row,int column) { int i,j; for(i = 0; i < row; i++) { fputs(text[i],stdout); } } void statistics(char text[ROW][COLUMN],int row,int column,int *uppe,int *low,int *dig,int *spa,int *oth) { int i,j; int ch; int upper,lower,digit,space,other; upper = lower = digit = space = other = 0; for(i = 0; i < row; i++) { for(j = 0; j < column && text[i][j] != '\n';j++) { ch = text[i][j]; if(ch >= 'A' && ch <= 'Z') { upper++; }else if(ch >= 'a' && ch <= 'z') { lower++; }else if(ch >= '0' && ch <= '9') { digit++; }else if(ch == ' ') { space++; }else { other++; } } } //赋值 *uppe = upper; *low = lower; *dig = digit; *spa = space; *oth = other; }
the_stack_data/111583.c
#include <fcntl.h> extern int __NumNodes,__NDim; int mylog(int num) { int j=0,k=1; while(k<num) { k*=2; j++; } return j; } extern int flag; int dealwithargs(int argc, char *argv[]) { int size; if (argc > 3) flag = atoi(argv[3]); else flag = 0; if (argc > 2) __NumNodes = atoi(argv[2]); else __NumNodes = 4; if (argc > 1) size = atoi(argv[1]); else size = 16; __NDim = mylog(__NumNodes); return size; }