mirror of
https://github.com/libtom/libtomcrypt
synced 2026-08-25 20:26:07 -04:00
84 lines
2.7 KiB
C
84 lines
2.7 KiB
C
/* LibTomCrypt, modular cryptographic library -- Tom St Denis */
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/* SPDX-License-Identifier: Unlicense */
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#include <tomcrypt_test.h>
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#ifdef LTC_PKCS_1
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#ifdef LTC_TEST_REAL_RAND
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#define LTC_TEST_RAND_SEED time(NULL)
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#else
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#define LTC_TEST_RAND_SEED 23
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#endif
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int pkcs_1_test(void)
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{
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unsigned char buf[3][128];
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int res1, res2, res3;
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unsigned long x, y, l1, l2, l3, i1, modlen;
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static const unsigned char lparam[] = { 1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16 };
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ltc_rsa_op_parameters rsa_params = {
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.wprng = find_prng("yarrow"),
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.prng = &yarrow_prng,
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.params.hash_idx = -1,
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.params.mgf1_hash_idx = -1,
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};
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rsa_params.params.hash_idx = find_hash("sha1");
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rsa_params.params.mgf1_hash_idx = rsa_params.params.hash_idx;
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srand(LTC_TEST_RAND_SEED);
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/* do many tests */
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for (x = 0; x < 100; x++) {
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zeromem(buf, sizeof(buf));
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/* make a dummy message (of random length) */
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l3 = (rand() & 31) + 8;
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for (y = 0; y < l3; y++) buf[0][y] = rand() & 255;
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/* pick a random lparam len [0..16] */
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rsa_params.u.crypt.lparamlen = abs(rand()) % 17;
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/* pick a random saltlen 0..16 */
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rsa_params.params.saltlen = abs(rand()) % 17;
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/* PKCS #1 v2.0 supports modlens not multiple of 8 */
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modlen = 800 + (abs(rand()) % 224);
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/* encode it */
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l1 = sizeof(buf[1]);
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rsa_params.padding = LTC_PKCS_1_OAEP;
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rsa_params.u.crypt.lparam = lparam;
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DO(ltc_pkcs_1_oaep_encode(buf[0], l3, &rsa_params, modlen, buf[1], &l1));
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/* decode it */
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l2 = sizeof(buf[2]);
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DO(ltc_pkcs_1_oaep_decode(buf[1], l1, &rsa_params, modlen, buf[2], &l2, &res1));
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ENSURE(res1 == 1);
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COMPARE_TESTVECTOR(buf[0], l3, buf[2], l2, "PKCS#1 OAEP", x);
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/* test PSS */
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l1 = sizeof(buf[1]);
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rsa_params.padding = LTC_PKCS_1_PSS;
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rsa_params.u.crypt.lparam = NULL;
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rsa_params.u.crypt.lparamlen = 0;
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DO(ltc_pkcs_1_pss_encode_mgf1(buf[0], l3, &rsa_params, modlen, buf[1], &l1));
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DO(ltc_pkcs_1_pss_decode_mgf1(buf[0], l3, buf[1], l1, &rsa_params, modlen, &res1));
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buf[0][i1 = abs(rand()) % l3] ^= 1;
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DO(ltc_pkcs_1_pss_decode_mgf1(buf[0], l3, buf[1], l1, &rsa_params, modlen, &res2));
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buf[0][i1] ^= 1;
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buf[1][abs(rand()) % (l1 - 1)] ^= 1;
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ltc_pkcs_1_pss_decode_mgf1(buf[0], l3, buf[1], l1, &rsa_params, modlen, &res3);
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if (!(res1 == 1 && res2 == 0 && res3 == 0)) {
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fprintf(stderr, "PSS failed: %d, %d, %d, %lu, %lu\n", res1, res2, res3, l3, rsa_params.params.saltlen);
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return 1;
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}
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}
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return 0;
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}
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#else
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LTC_NOP_TEST(pkcs_1_test)
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#endif
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