mirror of
https://github.com/libtom/libtomcrypt
synced 2026-08-25 20:26:07 -04:00
148 lines
4.3 KiB
C
148 lines
4.3 KiB
C
/* LibTomCrypt, modular cryptographic library -- Tom St Denis */
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/* SPDX-License-Identifier: Unlicense */
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/* test the ciphers and hashes using their built-in self-tests */
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#include <tomcrypt_test.h>
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/* cloning a hash_state via memcpy must yield a working/independent copy */
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static int s_hash_state_clone_test(const struct ltc_hash_descriptor *desc, const char *name)
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{
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hash_state md, clone1, *clone2;
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unsigned char data[200], out[MAXBLOCKSIZE], expect1[MAXBLOCKSIZE], expect2[MAXBLOCKSIZE];
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unsigned long i, hashsize = desc->hashsize;
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for (i = 0; i < sizeof(data); i++) data[i] = (unsigned char)i;
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/* reference digests: expect1 = H(data[0..149]), expect2 = H(data[0..99] || data[150..199]) */
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DO(desc->init(&md));
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DO(desc->process(&md, data, 100));
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DO(desc->process(&md, data + 100, 50));
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DO(desc->done(&md, expect1));
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DO(desc->init(&md));
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DO(desc->process(&md, data, 100));
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DO(desc->process(&md, data + 150, 50));
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DO(desc->done(&md, expect2));
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/* clone the state after the common prefix, then let the original and the clone diverge */
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DO(desc->init(&md));
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DO(desc->process(&md, data, 100));
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XMEMCPY(&clone1, &md, sizeof(hash_state));
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DO(desc->process(&md, data + 100, 50));
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DO(desc->done(&md, out));
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COMPARE_TESTVECTOR(out, hashsize, expect1, hashsize, name, 0);
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DO(desc->process(&clone1, data + 150, 50));
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DO(desc->done(&clone1, out));
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COMPARE_TESTVECTOR(out, hashsize, expect2, hashsize, name, 1);
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/* clone into heap memory and wipe the original before using the clone */
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DO(desc->init(&md));
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DO(desc->process(&md, data, 100));
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clone2 = XMALLOC(sizeof(hash_state));
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if (clone2 == NULL) return CRYPT_MEM;
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XMEMCPY(clone2, &md, sizeof(hash_state));
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zeromem(&md, sizeof(hash_state));
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DO(desc->process(clone2, data + 150, 50));
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DO(desc->done(clone2, out));
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XFREE(clone2);
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COMPARE_TESTVECTOR(out, hashsize, expect2, hashsize, name, 2);
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return CRYPT_OK;
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}
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int cipher_hash_test(void)
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{
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int x;
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/* test block ciphers */
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for (x = 0; cipher_descriptor[x].name != NULL; x++) {
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DOX(cipher_descriptor[x].test(), cipher_descriptor[x].name);
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}
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/* explicit AES-NI test */
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#if defined(LTC_AES_NI)
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if (aesni_is_supported()) {
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DO(aesni_test());
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}
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DO(rijndael_test());
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#endif
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#if defined(LTC_RIJNDAEL)
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#ifndef ENCRYPT_ONLY
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DO(aes_test());
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#else
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DO(aes_enc_test());
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#endif
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#endif
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/* test stream ciphers */
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#ifdef LTC_CHACHA
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DO(chacha_test());
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#endif
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#ifdef LTC_XCHACHA20
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DO(xchacha20_test());
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#endif
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#ifdef LTC_SALSA20
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DO(salsa20_test());
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#endif
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#ifdef LTC_XSALSA20
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DO(xsalsa20_test());
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#endif
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#ifdef LTC_SOSEMANUK
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DO(sosemanuk_test());
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#endif
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#ifdef LTC_RABBIT
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DO(rabbit_test());
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#endif
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#ifdef LTC_RC4_STREAM
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DO(rc4_stream_test());
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#endif
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#ifdef LTC_SOBER128_STREAM
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DO(sober128_stream_test());
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#endif
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/* test hashes */
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for (x = 0; hash_descriptor[x].name != NULL; x++) {
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DOX(hash_descriptor[x].test(), hash_descriptor[x].name);
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/* test that state can be cloned via memcpy */
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DOX(s_hash_state_clone_test(&hash_descriptor[x], hash_descriptor[x].name), hash_descriptor[x].name);
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}
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/* explicit SHA-NI + portable implementations tests */
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if (shani_is_supported()) {
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#if defined(LTC_SHA256) && defined(LTC_SHA256_X86)
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DO(sha256_x86_test());
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DO(s_hash_state_clone_test(&sha256_x86_desc, "sha256-x86-clone"));
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#endif
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#if defined(LTC_SHA224) && defined(LTC_SHA224_X86)
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DO(sha224_x86_test());
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DO(s_hash_state_clone_test(&sha224_x86_desc, "sha224-x86-clone"));
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#endif
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#if defined(LTC_SHA1) && defined(LTC_SHA1_X86)
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DO(sha1_x86_test());
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DO(s_hash_state_clone_test(&sha1_x86_desc, "sha1-x86-clone"));
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#endif
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}
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#if defined(LTC_SHA256)
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DO(sha256_c_test());
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DO(s_hash_state_clone_test(&sha256_portable_desc, "sha256-c-clone"));
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#endif
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#if defined(LTC_SHA224)
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DO(sha224_c_test());
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DO(s_hash_state_clone_test(&sha224_portable_desc, "sha224-c-clone"));
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#endif
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#if defined(LTC_SHA1)
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DO(sha1_c_test());
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DO(s_hash_state_clone_test(&sha1_portable_desc, "sha1-c-clone"));
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#endif
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#ifdef LTC_SHA3
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/* SHAKE128 + SHAKE256 tests are a bit special */
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DOX(sha3_shake_test(), "sha3_shake");
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#endif
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#ifdef LTC_TURBO_SHAKE
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DO(turbo_shake_test());
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#endif
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#ifdef LTC_KANGAROO_TWELVE
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DO(kangaroo_twelve_test());
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#endif
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return 0;
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}
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