2013-08-11 01:06:51 +08:00
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// Hi-resolution timer
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#ifdef WIN32
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2013-08-12 02:17:02 +08:00
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#ifndef WINVER
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//Windows XP
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#define WINVER 0x0501
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#endif
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2013-08-11 01:06:51 +08:00
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#include <windows.h>
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double get_time()
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{
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LARGE_INTEGER t, f;
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QueryPerformanceCounter(&t);
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QueryPerformanceFrequency(&f);
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2013-08-17 01:11:09 +08:00
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return (double)t.QuadPart / (double)f.QuadPart;
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2013-08-11 01:06:51 +08:00
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}
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#else
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#include <sys/time.h>
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#include <sys/resource.h>
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double get_time()
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{
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struct timeval t;
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struct timezone tzp;
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gettimeofday(&t, &tzp);
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2013-08-17 01:11:09 +08:00
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return t.tv_sec + t.tv_usec * 1e-6;
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2013-08-11 01:06:51 +08:00
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}
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#endif
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#include "../core/net_crypto.h"
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#include <stdlib.h>
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#include <time.h>
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void rand_bytes(uint8_t *b, size_t blen)
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{
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size_t i;
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2013-08-17 01:11:09 +08:00
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for (i = 0; i < blen; i++) {
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2013-08-11 01:06:51 +08:00
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b[i] = rand();
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}
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}
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2013-08-17 01:11:09 +08:00
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int main(int argc, char *argv[])
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2013-08-11 01:06:51 +08:00
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{
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const int numtrials = 10000;
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2013-08-17 01:11:09 +08:00
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2013-08-11 01:06:51 +08:00
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unsigned char pk1[crypto_box_PUBLICKEYBYTES];
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unsigned char sk1[crypto_box_SECRETKEYBYTES];
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unsigned char pk2[crypto_box_PUBLICKEYBYTES];
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unsigned char sk2[crypto_box_SECRETKEYBYTES];
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unsigned char k1[crypto_box_BEFORENMBYTES];
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unsigned char k2[crypto_box_BEFORENMBYTES];
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2013-08-17 01:11:09 +08:00
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unsigned char n[crypto_box_NONCEBYTES];
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2013-08-11 01:06:51 +08:00
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unsigned char m[500];
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unsigned char c[sizeof(m) + ENCRYPTION_PADDING];
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unsigned char k[crypto_box_BEFORENMBYTES];
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int trialno;
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double starttime;
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double endtime;
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double slow_time;
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double fast_time;
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double keygen_time;
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double precompute_time;
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// Pregenerate
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crypto_box_keypair(pk1, sk1);
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crypto_box_keypair(pk2, sk2);
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encrypt_precompute(pk1, sk2, k1);
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encrypt_precompute(pk2, sk1, k2);
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rand_bytes(m, sizeof(m));
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rand_bytes(n, sizeof(n));
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printf("starting slow...\n");
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starttime = get_time();
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2013-08-17 01:11:09 +08:00
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for (trialno = 0; trialno < numtrials; trialno++) {
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2013-08-11 01:06:51 +08:00
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encrypt_data(pk1, sk2, n, m, sizeof(m), c);
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decrypt_data(pk2, sk1, n, c, sizeof(c), m);
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}
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2013-08-17 01:11:09 +08:00
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2013-08-11 01:06:51 +08:00
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endtime = get_time();
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2013-08-17 01:11:09 +08:00
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slow_time = endtime - starttime;
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2013-08-11 01:06:51 +08:00
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printf("starting fast...\n");
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starttime = get_time();
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2013-08-17 01:11:09 +08:00
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for (trialno = 0; trialno < numtrials; trialno++) {
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2013-08-11 01:06:51 +08:00
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encrypt_data_fast(k1, n, m, sizeof(m), c);
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decrypt_data_fast(k2, n, c, sizeof(c), m);
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}
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2013-08-17 01:11:09 +08:00
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2013-08-11 01:06:51 +08:00
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endtime = get_time();
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2013-08-17 01:11:09 +08:00
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fast_time = endtime - starttime;
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2013-08-11 01:06:51 +08:00
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printf("starting keygen...\n");
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starttime = get_time();
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2013-08-17 01:11:09 +08:00
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for (trialno = 0; trialno < numtrials; trialno++) {
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2013-08-11 01:06:51 +08:00
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crypto_box_keypair(pk1, sk1);
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crypto_box_keypair(pk2, sk2);
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}
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2013-08-17 01:11:09 +08:00
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2013-08-11 01:06:51 +08:00
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endtime = get_time();
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2013-08-17 01:11:09 +08:00
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keygen_time = endtime - starttime;
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2013-08-11 01:06:51 +08:00
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printf("starting precompute...\n");
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starttime = get_time();
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2013-08-17 01:11:09 +08:00
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for (trialno = 0; trialno < numtrials; trialno++) {
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2013-08-11 01:06:51 +08:00
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encrypt_precompute(pk1, sk2, k);
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encrypt_precompute(pk2, sk1, k);
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}
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2013-08-17 01:11:09 +08:00
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2013-08-11 01:06:51 +08:00
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endtime = get_time();
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2013-08-17 01:11:09 +08:00
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precompute_time = endtime - starttime;
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2013-08-11 01:06:51 +08:00
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printf("\n");
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2013-08-17 01:11:09 +08:00
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printf("trials: %i\n", 2 * numtrials);
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2013-08-11 01:06:51 +08:00
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printf("\n");
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printf("slow time: %f sec\n", slow_time);
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printf("fast time: %f sec\n", fast_time);
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printf("keygen time: %f sec\n", keygen_time);
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printf("precompute time: %f sec\n", precompute_time);
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printf("\n");
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printf("Speed boost: %.1f%%\n", slow_time * 100 / fast_time);
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printf("\n");
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2013-08-17 01:11:09 +08:00
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printf("slow: %.1f per second\n", 2 * numtrials / slow_time);
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printf("fast: %.1f per second\n", 2 * numtrials / fast_time);
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2013-08-11 01:06:51 +08:00
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return 0;
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}
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