mirror of
https://github.com/trezor/trezor-firmware.git
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split hmac into init/update/final
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parent
ed6debf8c4
commit
445e859450
126
hmac.c
126
hmac.c
@ -24,70 +24,90 @@
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#include <string.h>
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#include "hmac.h"
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#include "sha2.h"
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#include "macros.h"
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void hmac_sha256_Init(HMAC_SHA256_CTX *hctx, const uint8_t *key, const uint32_t keylen)
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{
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uint8_t i_key_pad[SHA256_BLOCK_LENGTH];
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memset(i_key_pad, 0, SHA256_BLOCK_LENGTH);
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if (keylen > SHA256_BLOCK_LENGTH) {
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sha256_Raw(key, keylen, i_key_pad);
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} else {
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memcpy(i_key_pad, key, keylen);
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}
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for (int i = 0; i < SHA256_BLOCK_LENGTH; i++) {
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hctx->o_key_pad[i] = i_key_pad[i] ^ 0x5c;
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i_key_pad[i] ^= 0x36;
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}
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sha256_Init(&(hctx->ctx));
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sha256_Update(&(hctx->ctx), i_key_pad, SHA256_BLOCK_LENGTH);
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MEMSET_BZERO(i_key_pad, sizeof(i_key_pad));
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}
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void hmac_sha256_Update(HMAC_SHA256_CTX *hctx, const uint8_t *msg, const uint32_t msglen)
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{
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sha256_Update(&(hctx->ctx), msg, msglen);
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}
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void hmac_sha256_Final(HMAC_SHA256_CTX *hctx, uint8_t *hmac)
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{
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uint8_t hash[SHA256_DIGEST_LENGTH];
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sha256_Final(&(hctx->ctx), hash);
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sha256_Init(&(hctx->ctx));
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sha256_Update(&(hctx->ctx), hctx->o_key_pad, SHA256_BLOCK_LENGTH);
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sha256_Update(&(hctx->ctx), hash, SHA256_DIGEST_LENGTH);
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sha256_Final(&(hctx->ctx), hmac);
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MEMSET_BZERO(hash, sizeof(hash));
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MEMSET_BZERO(hctx, sizeof(hctx));
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}
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void hmac_sha256(const uint8_t *key, const uint32_t keylen, const uint8_t *msg, const uint32_t msglen, uint8_t *hmac)
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{
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int i;
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uint8_t buf[SHA256_BLOCK_LENGTH], o_key_pad[SHA256_BLOCK_LENGTH], i_key_pad[SHA256_BLOCK_LENGTH];
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SHA256_CTX ctx;
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HMAC_SHA256_CTX hctx;
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hmac_sha256_Init(&hctx, key, keylen);
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hmac_sha256_Update(&hctx, msg, msglen);
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hmac_sha256_Final(&hctx, hmac);
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}
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memset(buf, 0, SHA256_BLOCK_LENGTH);
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if (keylen > SHA256_BLOCK_LENGTH) {
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sha256_Raw(key, keylen, buf);
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void hmac_sha512_Init(HMAC_SHA512_CTX *hctx, const uint8_t *key, const uint32_t keylen)
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{
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uint8_t i_key_pad[SHA512_BLOCK_LENGTH];
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memset(i_key_pad, 0, SHA512_BLOCK_LENGTH);
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if (keylen > SHA512_BLOCK_LENGTH) {
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sha512_Raw(key, keylen, i_key_pad);
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} else {
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memcpy(buf, key, keylen);
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memcpy(i_key_pad, key, keylen);
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}
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for (i = 0; i < SHA256_BLOCK_LENGTH; i++) {
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o_key_pad[i] = buf[i] ^ 0x5c;
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i_key_pad[i] = buf[i] ^ 0x36;
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for (int i = 0; i < SHA512_BLOCK_LENGTH; i++) {
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hctx->o_key_pad[i] = i_key_pad[i] ^ 0x5c;
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i_key_pad[i] ^= 0x36;
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}
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sha256_Init(&ctx);
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sha256_Update(&ctx, i_key_pad, SHA256_BLOCK_LENGTH);
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sha256_Update(&ctx, msg, msglen);
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sha256_Final(&ctx, buf);
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sha256_Init(&ctx);
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sha256_Update(&ctx, o_key_pad, SHA256_BLOCK_LENGTH);
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sha256_Update(&ctx, buf, SHA256_DIGEST_LENGTH);
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sha256_Final(&ctx, hmac);
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MEMSET_BZERO(buf, sizeof(buf));
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MEMSET_BZERO(o_key_pad, sizeof(o_key_pad));
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sha512_Init(&(hctx->ctx));
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sha512_Update(&(hctx->ctx), i_key_pad, SHA512_BLOCK_LENGTH);
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MEMSET_BZERO(i_key_pad, sizeof(i_key_pad));
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}
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void hmac_sha512_Update(HMAC_SHA512_CTX *hctx, const uint8_t *msg, const uint32_t msglen)
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{
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sha512_Update(&(hctx->ctx), msg, msglen);
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}
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void hmac_sha512_Final(HMAC_SHA512_CTX *hctx, uint8_t *hmac)
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{
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uint8_t hash[SHA512_DIGEST_LENGTH];
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sha512_Final(&(hctx->ctx), hash);
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sha512_Init(&(hctx->ctx));
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sha512_Update(&(hctx->ctx), hctx->o_key_pad, SHA512_BLOCK_LENGTH);
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sha512_Update(&(hctx->ctx), hash, SHA512_DIGEST_LENGTH);
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sha512_Final(&(hctx->ctx), hmac);
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MEMSET_BZERO(hash, sizeof(hash));
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MEMSET_BZERO(hctx, sizeof(hctx));
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}
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void hmac_sha512(const uint8_t *key, const uint32_t keylen, const uint8_t *msg, const uint32_t msglen, uint8_t *hmac)
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{
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int i;
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uint8_t buf[SHA512_BLOCK_LENGTH], o_key_pad[SHA512_BLOCK_LENGTH], i_key_pad[SHA512_BLOCK_LENGTH];
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SHA512_CTX ctx;
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memset(buf, 0, SHA512_BLOCK_LENGTH);
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if (keylen > SHA512_BLOCK_LENGTH) {
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sha512_Raw(key, keylen, buf);
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} else {
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memcpy(buf, key, keylen);
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}
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for (i = 0; i < SHA512_BLOCK_LENGTH; i++) {
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o_key_pad[i] = buf[i] ^ 0x5c;
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i_key_pad[i] = buf[i] ^ 0x36;
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}
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sha512_Init(&ctx);
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sha512_Update(&ctx, i_key_pad, SHA512_BLOCK_LENGTH);
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sha512_Update(&ctx, msg, msglen);
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sha512_Final(&ctx, buf);
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sha512_Init(&ctx);
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sha512_Update(&ctx, o_key_pad, SHA512_BLOCK_LENGTH);
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sha512_Update(&ctx, buf, SHA512_DIGEST_LENGTH);
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sha512_Final(&ctx, hmac);
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MEMSET_BZERO(buf, sizeof(buf));
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MEMSET_BZERO(o_key_pad, sizeof(o_key_pad));
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MEMSET_BZERO(i_key_pad, sizeof(i_key_pad));
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HMAC_SHA512_CTX hctx;
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hmac_sha512_Init(&hctx, key, keylen);
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hmac_sha512_Update(&hctx, msg, msglen);
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hmac_sha512_Final(&hctx, hmac);
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}
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20
hmac.h
20
hmac.h
@ -14,7 +14,7 @@
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT HMAC_SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES
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* OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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@ -25,8 +25,26 @@
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#define __HMAC_H__
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#include <stdint.h>
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#include "sha2.h"
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typedef struct _HMAC_SHA256_CTX {
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uint8_t o_key_pad[SHA256_BLOCK_LENGTH];
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SHA256_CTX ctx;
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} HMAC_SHA256_CTX;
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typedef struct _HMAC_SHA512_CTX {
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uint8_t o_key_pad[SHA512_BLOCK_LENGTH];
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SHA512_CTX ctx;
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} HMAC_SHA512_CTX;
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void hmac_sha256_Init(HMAC_SHA256_CTX *hctx, const uint8_t *key, const uint32_t keylen);
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void hmac_sha256_Update(HMAC_SHA256_CTX *hctx, const uint8_t *msg, const uint32_t msglen);
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void hmac_sha256_Final(HMAC_SHA256_CTX *hctx, uint8_t *hmac);
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void hmac_sha256(const uint8_t *key, const uint32_t keylen, const uint8_t *msg, const uint32_t msglen, uint8_t *hmac);
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void hmac_sha512_Init(HMAC_SHA512_CTX *hctx, const uint8_t *key, const uint32_t keylen);
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void hmac_sha512_Update(HMAC_SHA512_CTX *hctx, const uint8_t *msg, const uint32_t msglen);
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void hmac_sha512_Final(HMAC_SHA512_CTX *hctx, uint8_t *hmac);
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void hmac_sha512(const uint8_t *key, const uint32_t keylen, const uint8_t *msg, const uint32_t msglen, uint8_t *hmac);
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#endif
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