Sha256: 5d0f1723622b4db63bbdcc9e4b2ef9a80ef8a6d328be71d8ebc5b0906020dc97
Contents?: true
Size: 1.84 KB
Versions: 3
Compression:
Stored size: 1.84 KB
Contents
#include "crypto_onetimeauth.h" #include "randombytes.h" #include "cpucycles.h" extern void printentry(long long,const char *,long long *,long long); extern unsigned char *alignedcalloc(unsigned long long); extern const char *primitiveimplementation; extern const char *implementationversion; extern const char *sizenames[]; extern const long long sizes[]; extern void allocate(void); extern void measure(void); const char *primitiveimplementation = crypto_onetimeauth_IMPLEMENTATION; const char *implementationversion = crypto_onetimeauth_VERSION; const char *sizenames[] = { "outputbytes", "keybytes", 0 }; const long long sizes[] = { crypto_onetimeauth_BYTES, crypto_onetimeauth_KEYBYTES }; #define MAXTEST_BYTES 4096 #ifdef SUPERCOP #define MGAP 8192 #else #define MGAP 8 #endif static unsigned char *k; static unsigned char *m; static unsigned char *h; void preallocate(void) { } void allocate(void) { k = alignedcalloc(crypto_onetimeauth_KEYBYTES); m = alignedcalloc(MAXTEST_BYTES); h = alignedcalloc(crypto_onetimeauth_BYTES); } #define TIMINGS 15 static long long cycles[TIMINGS + 1]; void measure(void) { int i; int loop; int mlen; for (loop = 0;loop < LOOPS;++loop) { for (mlen = 0;mlen <= MAXTEST_BYTES;mlen += 1 + mlen / MGAP) { randombytes(k,crypto_onetimeauth_KEYBYTES); randombytes(m,mlen); randombytes(h,crypto_onetimeauth_BYTES); for (i = 0;i <= TIMINGS;++i) { cycles[i] = cpucycles(); crypto_onetimeauth(h,m,mlen,k); } for (i = 0;i < TIMINGS;++i) cycles[i] = cycles[i + 1] - cycles[i]; printentry(mlen,"cycles",cycles,TIMINGS); for (i = 0;i <= TIMINGS;++i) { cycles[i] = cpucycles(); crypto_onetimeauth_verify(h,m,mlen,k); } for (i = 0;i < TIMINGS;++i) cycles[i] = cycles[i + 1] - cycles[i]; printentry(mlen,"verify_cycles",cycles,TIMINGS); } } }
Version data entries
3 entries across 3 versions & 1 rubygems