2017-06-19 09:49:18 -04:00
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/* LibTomCrypt, modular cryptographic library -- Tom St Denis
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*
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* LibTomCrypt is a library that provides various cryptographic
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* algorithms in a highly modular and flexible manner.
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*
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* The library is free for all purposes without any express
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* guarantee it works.
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*/
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2014-08-05 18:58:45 -04:00
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#include <tomcrypt_test.h>
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2019-07-02 15:31:51 -04:00
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#if defined(LTC_PKCS_1)
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2014-08-05 18:58:45 -04:00
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#include "../notes/rsa-testvectors/pkcs1v15crypt-vectors.c"
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int pkcs_1_eme_test(void)
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{
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2017-06-09 09:04:46 -04:00
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struct ltc_prng_descriptor* no_prng_desc = no_prng_desc_get();
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int prng_idx = register_prng(no_prng_desc);
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2014-08-05 18:58:45 -04:00
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int hash_idx = find_hash("sha1");
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unsigned int i;
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2017-03-24 05:17:02 -04:00
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unsigned int j;
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2014-08-05 18:58:45 -04:00
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2019-07-02 15:31:51 -04:00
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if (ltc_mp.name == NULL) return CRYPT_NOP;
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2014-08-05 18:58:45 -04:00
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DO(prng_is_valid(prng_idx));
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DO(hash_is_valid(hash_idx));
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for (i = 0; i < sizeof(testcases_eme)/sizeof(testcases_eme[0]); ++i) {
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testcase_t* t = &testcases_eme[i];
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rsa_key k, *key = &k;
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DOX(mp_init_multi(&key->e, &key->d, &key->N, &key->dQ,
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&key->dP, &key->qP, &key->p, &key->q, NULL), t->name);
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DOX(mp_read_unsigned_bin(key->e, t->rsa.e, t->rsa.e_l), t->name);
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DOX(mp_read_unsigned_bin(key->d, t->rsa.d, t->rsa.d_l), t->name);
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DOX(mp_read_unsigned_bin(key->N, t->rsa.n, t->rsa.n_l), t->name);
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DOX(mp_read_unsigned_bin(key->dQ, t->rsa.dQ, t->rsa.dQ_l), t->name);
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DOX(mp_read_unsigned_bin(key->dP, t->rsa.dP, t->rsa.dP_l), t->name);
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DOX(mp_read_unsigned_bin(key->qP, t->rsa.qInv, t->rsa.qInv_l), t->name);
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DOX(mp_read_unsigned_bin(key->q, t->rsa.q, t->rsa.q_l), t->name);
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DOX(mp_read_unsigned_bin(key->p, t->rsa.p, t->rsa.p_l), t->name);
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key->type = PK_PRIVATE;
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for (j = 0; j < sizeof(t->data)/sizeof(t->data[0]); ++j) {
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rsaData_t* s = &t->data[j];
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unsigned char buf[256], obuf[256];
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unsigned long buflen = sizeof(buf), obuflen = sizeof(obuf);
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int stat;
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2017-06-09 09:04:46 -04:00
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prng_descriptor[prng_idx].add_entropy(s->o2, s->o2_l, (prng_state*)no_prng_desc);
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DOX(rsa_encrypt_key_ex(s->o1, s->o1_l, obuf, &obuflen, NULL, 0, (prng_state*)no_prng_desc, prng_idx, -1, LTC_PKCS_1_V1_5, key), s->name);
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2014-08-05 18:58:45 -04:00
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DOX(obuflen == (unsigned long)s->o3_l?CRYPT_OK:CRYPT_FAIL_TESTVECTOR, s->name);
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DOX(memcmp(s->o3, obuf, s->o3_l)==0?CRYPT_OK:CRYPT_FAIL_TESTVECTOR, s->name);
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DOX(rsa_decrypt_key_ex(obuf, obuflen, buf, &buflen, NULL, 0, -1, LTC_PKCS_1_V1_5, &stat, key), s->name);
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DOX(stat == 1?CRYPT_OK:CRYPT_FAIL_TESTVECTOR, s->name);
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} /* for */
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mp_clear_multi(key->d, key->e, key->N, key->dQ, key->dP, key->qP, key->p, key->q, NULL);
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} /* for */
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2017-06-09 09:04:46 -04:00
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unregister_prng(no_prng_desc);
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no_prng_desc_free(no_prng_desc);
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2014-08-05 18:58:45 -04:00
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return 0;
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}
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#else
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int pkcs_1_eme_test(void)
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{
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2017-05-11 08:53:51 -04:00
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return CRYPT_NOP;
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2014-08-05 18:58:45 -04:00
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}
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#endif
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2017-06-19 07:43:49 -04:00
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/* ref: $Format:%D$ */
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/* git commit: $Format:%H$ */
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/* commit time: $Format:%ai$ */
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