mirror of
https://gitlab.com/cryptsetup/cryptsetup.git
synced 2025-12-11 19:00:02 +01:00
Add vector tests for hash algorithms.
This commit is contained in:
committed by
Milan Broz
parent
7194b14cd2
commit
3c1c5ef281
@@ -237,6 +237,102 @@ struct kdf_test_vector kdf_test_vectors[] = {
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}
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};
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struct hash_alg {
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const char *name;
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int length;
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};
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static struct hash_alg hash_algs[] = {
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{ "sha1", 20 },
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{ "sha256", 32 },
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{ "sha512", 64 },
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{ "ripemd160", 20 },
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{ "whirlpool", 64 },
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{ NULL, 0 }
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};
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struct hash_in {
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const char* buffer;
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unsigned int length;
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};
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struct hash_in hash_inputs[]
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= { { "", 0 },
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{ "a", 1 },
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{ "abc", 3 },
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{ "abcdefghijklmnopqrstuvwxyz", 26 },
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{ "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789", 62 },
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{ "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq", 56 },
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{ "message digest", 14 } };
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struct hash_out {
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uint32_t crc32_out;
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const char* sha1_out;
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const char* sha256_out;
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const char* sha512_out;
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const char* rmd160_out;
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const char* wp512_out;
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};
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struct hash_out hash_outputs[] = {
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{
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0x00000000,
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"\xda\x39\xa3\xee\x5e\x6b\x4b\x0d\x32\x55\xbf\xef\x95\x60\x18\x90\xaf\xd8\x07\x09",
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"\xe3\xb0\xc4\x42\x98\xfc\x1c\x14\x9a\xfb\xf4\xc8\x99\x6f\xb9\x24\x27\xae\x41\xe4\x64\x9b\x93\x4c\xa4\x95\x99\x1b\x78\x52\xb8\x55",
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"\xcf\x83\xe1\x35\x7e\xef\xb8\xbd\xf1\x54\x28\x50\xd6\x6d\x80\x07\xd6\x20\xe4\x05\x0b\x57\x15\xdc\x83\xf4\xa9\x21\xd3\x6c\xe9\xce\x47\xd0\xd1\x3c\x5d\x85\xf2\xb0\xff\x83\x18\xd2\x87\x7e\xec\x2f\x63\xb9\x31\xbd\x47\x41\x7a\x81\xa5\x38\x32\x7a\xf9\x27\xda\x3e",
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"\x9c\x11\x85\xa5\xc5\xe9\xfc\x54\x61\x28\x08\x97\x7e\xe8\xf5\x48\xb2\x25\x8d\x31",
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"\x19\xfa\x61\xd7\x55\x22\xa4\x66\x9b\x44\xe3\x9c\x1d\x2e\x17\x26\xc5\x30\x23\x21\x30\xd4\x07\xf8\x9a\xfe\xe0\x96\x49\x97\xf7\xa7\x3e\x83\xbe\x69\x8b\x28\x8f\xeb\xcf\x88\xe3\xe0\x3c\x4f\x07\x57\xea\x89\x64\xe5\x9b\x63\xd9\x37\x08\xb1\x38\xcc\x42\xa6\x6e\xb3"
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},
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{
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0xe8b7be43,
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"\x86\xf7\xe4\x37\xfa\xa5\xa7\xfc\xe1\x5d\x1d\xdc\xb9\xea\xea\xea\x37\x76\x67\xb8",
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"\xca\x97\x81\x12\xca\x1b\xbd\xca\xfa\xc2\x31\xb3\x9a\x23\xdc\x4d\xa7\x86\xef\xf8\x14\x7c\x4e\x72\xb9\x80\x77\x85\xaf\xee\x48\xbb",
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"\x1f\x40\xfc\x92\xda\x24\x16\x94\x75\x09\x79\xee\x6c\xf5\x82\xf2\xd5\xd7\xd2\x8e\x18\x33\x5d\xe0\x5a\xbc\x54\xd0\x56\x0e\x0f\x53\x02\x86\x0c\x65\x2b\xf0\x8d\x56\x02\x52\xaa\x5e\x74\x21\x05\x46\xf3\x69\xfb\xbb\xce\x8c\x12\xcf\xc7\x95\x7b\x26\x52\xfe\x9a\x75",
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"\x0b\xdc\x9d\x2d\x25\x6b\x3e\xe9\xda\xae\x34\x7b\xe6\xf4\xdc\x83\x5a\x46\x7f\xfe",
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"\x8a\xca\x26\x02\x79\x2a\xec\x6f\x11\xa6\x72\x06\x53\x1f\xb7\xd7\xf0\xdf\xf5\x94\x13\x14\x5e\x69\x73\xc4\x50\x01\xd0\x08\x7b\x42\xd1\x1b\xc6\x45\x41\x3a\xef\xf6\x3a\x42\x39\x1a\x39\x14\x5a\x59\x1a\x92\x20\x0d\x56\x01\x95\xe5\x3b\x47\x85\x84\xfd\xae\x23\x1a"
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},
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{
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0x352441c2,
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"\xa9\x99\x3e\x36\x47\x06\x81\x6a\xba\x3e\x25\x71\x78\x50\xc2\x6c\x9c\xd0\xd8\x9d",
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"\xba\x78\x16\xbf\x8f\x01\xcf\xea\x41\x41\x40\xde\x5d\xae\x22\x23\xb0\x03\x61\xa3\x96\x17\x7a\x9c\xb4\x10\xff\x61\xf2\x00\x15\xad",
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"\xdd\xaf\x35\xa1\x93\x61\x7a\xba\xcc\x41\x73\x49\xae\x20\x41\x31\x12\xe6\xfa\x4e\x89\xa9\x7e\xa2\x0a\x9e\xee\xe6\x4b\x55\xd3\x9a\x21\x92\x99\x2a\x27\x4f\xc1\xa8\x36\xba\x3c\x23\xa3\xfe\xeb\xbd\x45\x4d\x44\x23\x64\x3c\xe8\x0e\x2a\x9a\xc9\x4f\xa5\x4c\xa4\x9f",
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"\x8e\xb2\x08\xf7\xe0\x5d\x98\x7a\x9b\x04\x4a\x8e\x98\xc6\xb0\x87\xf1\x5a\x0b\xfc",
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"\x4e\x24\x48\xa4\xc6\xf4\x86\xbb\x16\xb6\x56\x2c\x73\xb4\x02\x0b\xf3\x04\x3e\x3a\x73\x1b\xce\x72\x1a\xe1\xb3\x03\xd9\x7e\x6d\x4c\x71\x81\xee\xbd\xb6\xc5\x7e\x27\x7d\x0e\x34\x95\x71\x14\xcb\xd6\xc7\x97\xfc\x9d\x95\xd8\xb5\x82\xd2\x25\x29\x20\x76\xd4\xee\xf5"
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},
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{
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0x4c2750bd,
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"\x32\xd1\x0c\x7b\x8c\xf9\x65\x70\xca\x04\xce\x37\xf2\xa1\x9d\x84\x24\x0d\x3a\x89",
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"\x71\xc4\x80\xdf\x93\xd6\xae\x2f\x1e\xfa\xd1\x44\x7c\x66\xc9\x52\x5e\x31\x62\x18\xcf\x51\xfc\x8d\x9e\xd8\x32\xf2\xda\xf1\x8b\x73",
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"\x4d\xbf\xf8\x6c\xc2\xca\x1b\xae\x1e\x16\x46\x8a\x05\xcb\x98\x81\xc9\x7f\x17\x53\xbc\xe3\x61\x90\x34\x89\x8f\xaa\x1a\xab\xe4\x29\x95\x5a\x1b\xf8\xec\x48\x3d\x74\x21\xfe\x3c\x16\x46\x61\x3a\x59\xed\x54\x41\xfb\x0f\x32\x13\x89\xf7\x7f\x48\xa8\x79\xc7\xb1\xf1",
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"\xf7\x1c\x27\x10\x9c\x69\x2c\x1b\x56\xbb\xdc\xeb\x5b\x9d\x28\x65\xb3\x70\x8d\xbc",
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"\xf1\xd7\x54\x66\x26\x36\xff\xe9\x2c\x82\xeb\xb9\x21\x2a\x48\x4a\x8d\x38\x63\x1e\xad\x42\x38\xf5\x44\x2e\xe1\x3b\x80\x54\xe4\x1b\x08\xbf\x2a\x92\x51\xc3\x0b\x6a\x0b\x8a\xae\x86\x17\x7a\xb4\xa6\xf6\x8f\x67\x3e\x72\x07\x86\x5d\x5d\x98\x19\xa3\xdb\xa4\xeb\x3b"
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},
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{
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0x1fc2e6d2,
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"\x76\x1c\x45\x7b\xf7\x3b\x14\xd2\x7e\x9e\x92\x65\xc4\x6f\x4b\x4d\xda\x11\xf9\x40",
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"\xdb\x4b\xfc\xbd\x4d\xa0\xcd\x85\xa6\x0c\x3c\x37\xd3\xfb\xd8\x80\x5c\x77\xf1\x5f\xc6\xb1\xfd\xfe\x61\x4e\xe0\xa7\xc8\xfd\xb4\xc0",
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"\x1e\x07\xbe\x23\xc2\x6a\x86\xea\x37\xea\x81\x0c\x8e\xc7\x80\x93\x52\x51\x5a\x97\x0e\x92\x53\xc2\x6f\x53\x6c\xfc\x7a\x99\x96\xc4\x5c\x83\x70\x58\x3e\x0a\x78\xfa\x4a\x90\x04\x1d\x71\xa4\xce\xab\x74\x23\xf1\x9c\x71\xb9\xd5\xa3\xe0\x12\x49\xf0\xbe\xbd\x58\x94",
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"\xb0\xe2\x0b\x6e\x31\x16\x64\x02\x86\xed\x3a\x87\xa5\x71\x30\x79\xb2\x1f\x51\x89",
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"\xdc\x37\xe0\x08\xcf\x9e\xe6\x9b\xf1\x1f\x00\xed\x9a\xba\x26\x90\x1d\xd7\xc2\x8c\xde\xc0\x66\xcc\x6a\xf4\x2e\x40\xf8\x2f\x3a\x1e\x08\xeb\xa2\x66\x29\x12\x9d\x8f\xb7\xcb\x57\x21\x1b\x92\x81\xa6\x55\x17\xcc\x87\x9d\x7b\x96\x21\x42\xc6\x5f\x5a\x7a\xf0\x14\x67"
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},
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{
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0x171a3f5f,
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"\x84\x98\x3e\x44\x1c\x3b\xd2\x6e\xba\xae\x4a\xa1\xf9\x51\x29\xe5\xe5\x46\x70\xf1",
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"\x24\x8d\x6a\x61\xd2\x06\x38\xb8\xe5\xc0\x26\x93\x0c\x3e\x60\x39\xa3\x3c\xe4\x59\x64\xff\x21\x67\xf6\xec\xed\xd4\x19\xdb\x06\xc1",
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"\x20\x4a\x8f\xc6\xdd\xa8\x2f\x0a\x0c\xed\x7b\xeb\x8e\x08\xa4\x16\x57\xc1\x6e\xf4\x68\xb2\x28\xa8\x27\x9b\xe3\x31\xa7\x03\xc3\x35\x96\xfd\x15\xc1\x3b\x1b\x07\xf9\xaa\x1d\x3b\xea\x57\x78\x9c\xa0\x31\xad\x85\xc7\xa7\x1d\xd7\x03\x54\xec\x63\x12\x38\xca\x34\x45",
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"\x12\xa0\x53\x38\x4a\x9c\x0c\x88\xe4\x05\xa0\x6c\x27\xdc\xf4\x9a\xda\x62\xeb\x2b",
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"\x52\x6b\x23\x94\xd8\x56\x83\xe2\x4b\x29\xac\xd0\xfd\x37\xf7\xd5\x02\x7f\x61\x36\x6a\x14\x07\x26\x2d\xc2\xa6\xa3\x45\xd9\xe2\x40\xc0\x17\xc1\x83\x3d\xb1\xe6\xdb\x6a\x46\xbd\x44\x4b\x0c\x69\x52\x0c\x85\x6e\x7c\x6e\x9c\x36\x6d\x15\x0a\x7d\xa3\xae\xb1\x60\xd1"
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},
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{
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0x20159d7f,
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"\xc1\x22\x52\xce\xda\x8b\xe8\x99\x4d\x5f\xa0\x29\x0a\x47\x23\x1c\x1d\x16\xaa\xe3",
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"\xf7\x84\x6f\x55\xcf\x23\xe1\x4e\xeb\xea\xb5\xb4\xe1\x55\x0c\xad\x5b\x50\x9e\x33\x48\xfb\xc4\xef\xa3\xa1\x41\x3d\x39\x3c\xb6\x50",
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"\x10\x7d\xbf\x38\x9d\x9e\x9f\x71\xa3\xa9\x5f\x6c\x05\x5b\x92\x51\xbc\x52\x68\xc2\xbe\x16\xd6\xc1\x34\x92\xea\x45\xb0\x19\x9f\x33\x09\xe1\x64\x55\xab\x1e\x96\x11\x8e\x8a\x90\x5d\x55\x97\xb7\x20\x38\xdd\xb3\x72\xa8\x98\x26\x04\x6d\xe6\x66\x87\xbb\x42\x0e\x7c",
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"\x5d\x06\x89\xef\x49\xd2\xfa\xe5\x72\xb8\x81\xb1\x23\xa8\x5f\xfa\x21\x59\x5f\x36",
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"\x37\x8c\x84\xa4\x12\x6e\x2d\xc6\xe5\x6d\xcc\x74\x58\x37\x7a\xac\x83\x8d\x00\x03\x22\x30\xf5\x3c\xe1\xf5\x70\x0c\x0f\xfb\x4d\x3b\x84\x21\x55\x76\x59\xef\x55\xc1\x06\xb4\xb5\x2a\xc5\xa4\xaa\xa6\x92\xed\x92\x00\x52\x83\x8f\x33\x62\xe8\x6d\xbd\x37\xa8\x90\x3e"
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}
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};
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static int pbkdf_test_vectors(void)
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{
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char result[256];
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@@ -266,6 +362,91 @@ static int pbkdf_test_vectors(void)
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return 0;
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}
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const char* get_vec(struct hash_out* out, int i)
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{
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switch (i) {
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case 0:
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return out->sha1_out;
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case 1:
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return out->sha256_out;
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case 2:
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return out->sha512_out;
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case 3:
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return out->rmd160_out;
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case 4:
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return out->wp512_out;
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}
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return NULL;
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}
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static int hash_test(void)
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{
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uint32_t crc32;
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unsigned int i, j;
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int r, hash_length;
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struct hash_in* in_vec;
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struct hash_out* out_vec;
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struct hash_alg* hash;
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struct crypt_hash *h;
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char result[64];
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for (i = 0; i < (sizeof(hash_inputs) / sizeof(*hash_inputs)); i++) {
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in_vec = &hash_inputs[i];
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out_vec = &hash_outputs[i];
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// CRC32 vector test
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printf("Hash vector %02d: [CRC32]", i);
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crc32 = crypt_crc32(~0, in_vec->buffer, in_vec->length) ^ ~0;
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if (crc32 != out_vec->crc32_out) {
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printf("expected output [FAILED].\n");
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printf(" got: %x\n", crc32);
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printf("want: %x\n", out_vec->crc32_out);
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return -EINVAL;
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}
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// Other hashes test
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for (j = 0; j < (sizeof(hash_algs) / sizeof(*hash_algs) - 1); j++) {
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hash = &hash_algs[j];
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hash_length = crypt_hash_size(hash->name);
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if (hash_length != hash->length) {
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if (hash_length < 0) {
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printf("[%s N/A]", hash->name);
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continue;
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}
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return -EINVAL;
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}
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printf("[%s]", hash->name);
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if (crypt_hash_init(&h, hash->name))
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return -EINVAL;
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r = crypt_hash_write(h, in_vec->buffer, in_vec->length);
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if (!r)
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r = crypt_hash_final(h, result, hash->length);
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crypt_hash_destroy(h);
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if (r)
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return r;
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if (memcmp(result, get_vec(out_vec, j), hash->length)) {
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printf("expected output [FAILED].\n");
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printhex(" got", result, hash->length);
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printhex("want", get_vec(out_vec, j), hash->length);
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return -EINVAL;
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}
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}
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printf("\n");
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}
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return 0;
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}
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int main(int argc, char *argv[])
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{
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if (crypt_backend_init(NULL)) {
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@@ -277,6 +458,9 @@ int main(int argc, char *argv[])
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if (pbkdf_test_vectors())
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exit(EXIT_FAILURE);
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if (hash_test())
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exit(EXIT_FAILURE);
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crypt_backend_destroy();
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exit(EXIT_SUCCESS);
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}
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