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[CRYPTO] tcrypt: Add self test for des3_ebe cipher operating in cbc mode
Patch to add checking of DES3 test vectors using CBC mode. FIPS-140-2 compliance mandates that any supported mode of operation must include a self test. This satisfies that requirement for cbc(des3_ede). The included test vector was generated by me using openssl. Key/IV was generated with the following command: openssl enc -des_ede_cbc -P input and output values were generated by repeating the string "Too many secrets" a few times over, truncating it to 128 bytes, and encrypting it with openssl using the aformentioned key. Tested successfully by myself Signed-off-by: Neil Horman <nhorman@tuxdriver.com> Acked-by: Adrian-Ken Rueegsegger <rueegsegger@swiss-it.ch> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -1220,6 +1220,14 @@ static void do_test(void)
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test_cipher("ecb(des3_ede)", DECRYPT, des3_ede_dec_tv_template,
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DES3_EDE_DEC_TEST_VECTORS);
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test_cipher("cbc(des3_ede)", ENCRYPT,
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des3_ede_cbc_enc_tv_template,
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DES3_EDE_CBC_ENC_TEST_VECTORS);
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test_cipher("cbc(des3_ede)", DECRYPT,
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des3_ede_cbc_dec_tv_template,
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DES3_EDE_CBC_DEC_TEST_VECTORS);
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test_hash("md4", md4_tv_template, MD4_TEST_VECTORS);
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test_hash("sha224", sha224_tv_template, SHA224_TEST_VECTORS);
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@ -1430,6 +1438,14 @@ static void do_test(void)
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DES3_EDE_ENC_TEST_VECTORS);
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test_cipher("ecb(des3_ede)", DECRYPT, des3_ede_dec_tv_template,
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DES3_EDE_DEC_TEST_VECTORS);
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test_cipher("cbc(des3_ede)", ENCRYPT,
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des3_ede_cbc_enc_tv_template,
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DES3_EDE_CBC_ENC_TEST_VECTORS);
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test_cipher("cbc(des3_ede)", DECRYPT,
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des3_ede_cbc_dec_tv_template,
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DES3_EDE_CBC_DEC_TEST_VECTORS);
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break;
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case 5:
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@ -1863,6 +1863,8 @@ static struct hash_testvec hmac_sha512_tv_template[] = {
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#define DES_CBC_DEC_TEST_VECTORS 4
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#define DES3_EDE_ENC_TEST_VECTORS 3
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#define DES3_EDE_DEC_TEST_VECTORS 3
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#define DES3_EDE_CBC_ENC_TEST_VECTORS 1
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#define DES3_EDE_CBC_DEC_TEST_VECTORS 1
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static struct cipher_testvec des_enc_tv_template[] = {
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{ /* From Applied Cryptography */
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@ -2101,9 +2103,6 @@ static struct cipher_testvec des_cbc_dec_tv_template[] = {
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},
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};
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/*
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* We really need some more test vectors, especially for DES3 CBC.
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*/
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static struct cipher_testvec des3_ede_enc_tv_template[] = {
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{ /* These are from openssl */
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.key = "\x01\x23\x45\x67\x89\xab\xcd\xef"
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@ -2166,6 +2165,94 @@ static struct cipher_testvec des3_ede_dec_tv_template[] = {
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},
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};
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static struct cipher_testvec des3_ede_cbc_enc_tv_template[] = {
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{ /* Generated from openssl */
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.key = "\xE9\xC0\xFF\x2E\x76\x0B\x64\x24"
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"\x44\x4D\x99\x5A\x12\xD6\x40\xC0"
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"\xEA\xC2\x84\xE8\x14\x95\xDB\xE8",
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.klen = 24,
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.iv = "\x7D\x33\x88\x93\x0F\x93\xB2\x42",
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.input = "\x6f\x54\x20\x6f\x61\x4d\x79\x6e"
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"\x53\x20\x63\x65\x65\x72\x73\x74"
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"\x54\x20\x6f\x6f\x4d\x20\x6e\x61"
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"\x20\x79\x65\x53\x72\x63\x74\x65"
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"\x20\x73\x6f\x54\x20\x6f\x61\x4d"
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"\x79\x6e\x53\x20\x63\x65\x65\x72"
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"\x73\x74\x54\x20\x6f\x6f\x4d\x20"
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"\x6e\x61\x20\x79\x65\x53\x72\x63"
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"\x74\x65\x20\x73\x6f\x54\x20\x6f"
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"\x61\x4d\x79\x6e\x53\x20\x63\x65"
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"\x65\x72\x73\x74\x54\x20\x6f\x6f"
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"\x4d\x20\x6e\x61\x20\x79\x65\x53"
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"\x72\x63\x74\x65\x20\x73\x6f\x54"
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"\x20\x6f\x61\x4d\x79\x6e\x53\x20"
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"\x63\x65\x65\x72\x73\x74\x54\x20"
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"\x6f\x6f\x4d\x20\x6e\x61\x0a\x79",
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.ilen = 128,
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.result = "\x0e\x2d\xb6\x97\x3c\x56\x33\xf4"
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"\x67\x17\x21\xc7\x6e\x8a\xd5\x49"
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"\x74\xb3\x49\x05\xc5\x1c\xd0\xed"
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"\x12\x56\x5c\x53\x96\xb6\x00\x7d"
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"\x90\x48\xfc\xf5\x8d\x29\x39\xcc"
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"\x8a\xd5\x35\x18\x36\x23\x4e\xd7"
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"\x76\xd1\xda\x0c\x94\x67\xbb\x04"
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"\x8b\xf2\x03\x6c\xa8\xcf\xb6\xea"
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"\x22\x64\x47\xaa\x8f\x75\x13\xbf"
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"\x9f\xc2\xc3\xf0\xc9\x56\xc5\x7a"
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"\x71\x63\x2e\x89\x7b\x1e\x12\xca"
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"\xe2\x5f\xaf\xd8\xa4\xf8\xc9\x7a"
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"\xd6\xf9\x21\x31\x62\x44\x45\xa6"
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"\xd6\xbc\x5a\xd3\x2d\x54\x43\xcc"
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"\x9d\xde\xa5\x70\xe9\x42\x45\x8a"
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"\x6b\xfa\xb1\x91\x13\xb0\xd9\x19",
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.rlen = 128,
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},
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};
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static struct cipher_testvec des3_ede_cbc_dec_tv_template[] = {
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{ /* Generated from openssl */
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.key = "\xE9\xC0\xFF\x2E\x76\x0B\x64\x24"
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"\x44\x4D\x99\x5A\x12\xD6\x40\xC0"
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"\xEA\xC2\x84\xE8\x14\x95\xDB\xE8",
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.klen = 24,
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.iv = "\x7D\x33\x88\x93\x0F\x93\xB2\x42",
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.input = "\x0e\x2d\xb6\x97\x3c\x56\x33\xf4"
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"\x67\x17\x21\xc7\x6e\x8a\xd5\x49"
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"\x74\xb3\x49\x05\xc5\x1c\xd0\xed"
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"\x12\x56\x5c\x53\x96\xb6\x00\x7d"
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"\x90\x48\xfc\xf5\x8d\x29\x39\xcc"
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"\x8a\xd5\x35\x18\x36\x23\x4e\xd7"
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"\x76\xd1\xda\x0c\x94\x67\xbb\x04"
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"\x8b\xf2\x03\x6c\xa8\xcf\xb6\xea"
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"\x22\x64\x47\xaa\x8f\x75\x13\xbf"
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"\x9f\xc2\xc3\xf0\xc9\x56\xc5\x7a"
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"\x71\x63\x2e\x89\x7b\x1e\x12\xca"
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"\xe2\x5f\xaf\xd8\xa4\xf8\xc9\x7a"
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"\xd6\xf9\x21\x31\x62\x44\x45\xa6"
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"\xd6\xbc\x5a\xd3\x2d\x54\x43\xcc"
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"\x9d\xde\xa5\x70\xe9\x42\x45\x8a"
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"\x6b\xfa\xb1\x91\x13\xb0\xd9\x19",
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.ilen = 128,
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.result = "\x6f\x54\x20\x6f\x61\x4d\x79\x6e"
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"\x53\x20\x63\x65\x65\x72\x73\x74"
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"\x54\x20\x6f\x6f\x4d\x20\x6e\x61"
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"\x20\x79\x65\x53\x72\x63\x74\x65"
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"\x20\x73\x6f\x54\x20\x6f\x61\x4d"
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"\x79\x6e\x53\x20\x63\x65\x65\x72"
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"\x73\x74\x54\x20\x6f\x6f\x4d\x20"
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"\x6e\x61\x20\x79\x65\x53\x72\x63"
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"\x74\x65\x20\x73\x6f\x54\x20\x6f"
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"\x61\x4d\x79\x6e\x53\x20\x63\x65"
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"\x65\x72\x73\x74\x54\x20\x6f\x6f"
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"\x4d\x20\x6e\x61\x20\x79\x65\x53"
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"\x72\x63\x74\x65\x20\x73\x6f\x54"
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"\x20\x6f\x61\x4d\x79\x6e\x53\x20"
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"\x63\x65\x65\x72\x73\x74\x54\x20"
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"\x6f\x6f\x4d\x20\x6e\x61\x0a\x79",
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.rlen = 128,
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},
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};
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/*
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* Blowfish test vectors.
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*/
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