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@@ -81,6 +81,9 @@ AVHMAC *av_hmac_alloc(enum AVHMACType type) |
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c->hash = av_sha_alloc(); |
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break; |
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case AV_HMAC_SHA224: |
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#if FF_API_HMAC |
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case AV_HMAC_SHA224_DEPRECATED: |
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#endif |
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c->blocklen = 64; |
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c->hashlen = 28; |
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c->init = sha224_init; |
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@@ -89,6 +92,9 @@ AVHMAC *av_hmac_alloc(enum AVHMACType type) |
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c->hash = av_sha_alloc(); |
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break; |
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case AV_HMAC_SHA256: |
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#if FF_API_HMAC |
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case AV_HMAC_SHA256_DEPRECATED: |
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#endif |
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c->blocklen = 64; |
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c->hashlen = 32; |
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c->init = sha256_init; |
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@@ -207,7 +213,8 @@ static void test(AVHMAC *hmac, const uint8_t *key, int keylen, |
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int main(void) |
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{ |
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uint8_t key1[20], key3[131], data3[50]; |
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enum AVHMACType i = AV_HMAC_SHA224; |
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AVHMAC *hmac; |
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enum AVHMACType i; |
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static const uint8_t key2[] = "Jefe"; |
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static const uint8_t data1[] = "Hi There"; |
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static const uint8_t data2[] = "what do ya want for nothing?"; |
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@@ -216,34 +223,39 @@ int main(void) |
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static const uint8_t data6[] = "This is a test using a larger than block-size key and a larger " |
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"than block-size data. The key needs to be hashed before being used" |
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" by the HMAC algorithm."; |
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AVHMAC *hmac = av_hmac_alloc(AV_HMAC_MD5); |
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if (!hmac) |
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return 1; |
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memset(key1, 0x0b, sizeof(key1)); |
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memset(key3, 0xaa, sizeof(key3)); |
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memset(data3, 0xdd, sizeof(data3)); |
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// RFC 2202 test vectors |
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test(hmac, key1, 16, data1, sizeof(data1)); |
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test(hmac, key2, sizeof(key2), data2, sizeof(data2)); |
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test(hmac, key3, 16, data3, sizeof(data3)); |
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test(hmac, key3, 80, data4, sizeof(data4)); |
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test(hmac, key3, 80, data5, sizeof(data5)); |
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av_hmac_free(hmac); |
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/* SHA-1 */ |
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hmac = av_hmac_alloc(AV_HMAC_SHA1); |
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if (!hmac) |
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return 1; |
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// RFC 2202 test vectors |
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test(hmac, key1, sizeof(key1), data1, sizeof(data1)); |
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test(hmac, key2, sizeof(key2), data2, sizeof(data2)); |
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test(hmac, key3, 20, data3, sizeof(data3)); |
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test(hmac, key3, 80, data4, sizeof(data4)); |
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test(hmac, key3, 80, data5, sizeof(data5)); |
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av_hmac_free(hmac); |
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/* MD5, SHA-1 */ |
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for (i = AV_HMAC_MD5; i <= AV_HMAC_SHA1; i++) { |
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hmac = av_hmac_alloc(i); |
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if (!hmac) |
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return 1; |
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// RFC 2202 test vectors |
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test(hmac, key1, hmac->hashlen, data1, sizeof(data1)); |
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test(hmac, key2, sizeof(key2), data2, sizeof(data2)); |
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test(hmac, key3, hmac->hashlen, data3, sizeof(data3)); |
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test(hmac, key3, 80, data4, sizeof(data4)); |
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test(hmac, key3, 80, data5, sizeof(data5)); |
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av_hmac_free(hmac); |
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} |
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/* SHA-2 */ |
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while (i <= AV_HMAC_SHA512) { |
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for (i = AV_HMAC_SHA224; i <= AV_HMAC_SHA256; i++) { |
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hmac = av_hmac_alloc(i); |
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if (!hmac) |
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return 1; |
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// RFC 4231 test vectors |
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test(hmac, key1, sizeof(key1), data1, sizeof(data1)); |
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test(hmac, key2, sizeof(key2), data2, sizeof(data2)); |
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test(hmac, key3, 20, data3, sizeof(data3)); |
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test(hmac, key3, sizeof(key3), data4, sizeof(data4)); |
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test(hmac, key3, sizeof(key3), data6, sizeof(data6)); |
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av_hmac_free(hmac); |
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} |
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for (i = AV_HMAC_SHA384; i <= AV_HMAC_SHA512; i++) { |
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hmac = av_hmac_alloc(i); |
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if (!hmac) |
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return 1; |
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@@ -254,7 +266,6 @@ int main(void) |
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test(hmac, key3, sizeof(key3), data4, sizeof(data4)); |
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test(hmac, key3, sizeof(key3), data6, sizeof(data6)); |
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av_hmac_free(hmac); |
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i++; |
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} |
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return 0; |
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} |
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