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1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "crypto/hmac.h" | 5 #include "crypto/hmac.h" |
6 | 6 |
7 #include <openssl/hmac.h> | 7 #include <openssl/hmac.h> |
8 | 8 |
9 #include <algorithm> | 9 #include <algorithm> |
10 #include <vector> | 10 #include <vector> |
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24 : hash_alg_(hash_alg), plat_(new HMACPlatformData()) { | 24 : hash_alg_(hash_alg), plat_(new HMACPlatformData()) { |
25 // Only SHA-1 and SHA-256 hash algorithms are supported now. | 25 // Only SHA-1 and SHA-256 hash algorithms are supported now. |
26 DCHECK(hash_alg_ == SHA1 || hash_alg_ == SHA256); | 26 DCHECK(hash_alg_ == SHA1 || hash_alg_ == SHA256); |
27 } | 27 } |
28 | 28 |
29 bool HMAC::Init(const unsigned char* key, size_t key_length) { | 29 bool HMAC::Init(const unsigned char* key, size_t key_length) { |
30 // Init must not be called more than once on the same HMAC object. | 30 // Init must not be called more than once on the same HMAC object. |
31 DCHECK(plat_->key.empty()); | 31 DCHECK(plat_->key.empty()); |
32 | 32 |
33 plat_->key.assign(key, key + key_length); | 33 plat_->key.assign(key, key + key_length); |
| 34 if (key_length == 0) { |
| 35 // Special-case: if the key is empty, use a key with one zero |
| 36 // byte. OpenSSL's HMAC function breaks when passed a NULL key. (It calls |
| 37 // HMAC_Init_ex which treats a NULL key as having already been initialized |
| 38 // with a key previously.) HMAC pads keys with zeros, so this key is |
| 39 // equivalent. |
| 40 plat_->key.push_back(0); |
| 41 } |
34 return true; | 42 return true; |
35 } | 43 } |
36 | 44 |
37 HMAC::~HMAC() { | 45 HMAC::~HMAC() { |
38 // Zero out key copy. | 46 // Zero out key copy. |
39 plat_->key.assign(plat_->key.size(), 0); | 47 plat_->key.assign(plat_->key.size(), 0); |
40 STLClearObject(&plat_->key); | 48 STLClearObject(&plat_->key); |
41 } | 49 } |
42 | 50 |
43 bool HMAC::Sign(const base::StringPiece& data, | 51 bool HMAC::Sign(const base::StringPiece& data, |
44 unsigned char* digest, | 52 unsigned char* digest, |
45 size_t digest_length) const { | 53 size_t digest_length) const { |
46 DCHECK(!plat_->key.empty()); // Init must be called before Sign. | 54 DCHECK(!plat_->key.empty()); // Init must be called before Sign. |
47 | 55 |
48 ScopedOpenSSLSafeSizeBuffer<EVP_MAX_MD_SIZE> result(digest, digest_length); | 56 ScopedOpenSSLSafeSizeBuffer<EVP_MAX_MD_SIZE> result(digest, digest_length); |
49 return ::HMAC(hash_alg_ == SHA1 ? EVP_sha1() : EVP_sha256(), | 57 return ::HMAC(hash_alg_ == SHA1 ? EVP_sha1() : EVP_sha256(), |
50 &plat_->key[0], plat_->key.size(), | 58 &plat_->key[0], plat_->key.size(), |
51 reinterpret_cast<const unsigned char*>(data.data()), | 59 reinterpret_cast<const unsigned char*>(data.data()), |
52 data.size(), | 60 data.size(), |
53 result.safe_buffer(), NULL); | 61 result.safe_buffer(), NULL); |
54 } | 62 } |
55 | 63 |
56 } // namespace crypto | 64 } // namespace crypto |
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