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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/encryptor.h" | 5 #include "crypto/encryptor.h" |
| 6 | 6 |
| 7 #include <cryptohi.h> | 7 #include <cryptohi.h> |
| 8 #include <vector> | 8 #include <vector> |
| 9 | 9 |
| 10 #include "base/logging.h" | 10 #include "base/logging.h" |
| 11 #include "crypto/nss_util.h" | 11 #include "crypto/nss_util.h" |
| 12 #include "crypto/symmetric_key.h" | 12 #include "crypto/symmetric_key.h" |
| 13 | 13 |
| 14 namespace crypto { | 14 namespace crypto { |
| 15 | 15 |
| 16 namespace { | |
| 17 | |
| 18 inline CK_MECHANISM_TYPE GetMechanism(Encryptor::Mode mode) { | |
| 19 switch (mode) { | |
| 20 case Encryptor::CBC: | |
| 21 return CKM_AES_CBC_PAD; | |
| 22 case Encryptor::CTR: | |
| 23 return CKM_AES_ECB; | |
|
wtc
2011/06/14 18:11:06
A comment explaining why ECB mode is used would be
Alpha Left Google
2011/06/14 22:22:43
Done.
| |
| 24 default: | |
| 25 NOTREACHED() << "Unsupported mode of operation"; | |
| 26 break; | |
| 27 } | |
| 28 return 0; | |
| 29 } | |
| 30 | |
| 31 } // namespace | |
| 32 | |
| 16 Encryptor::Encryptor() | 33 Encryptor::Encryptor() |
| 17 : key_(NULL), | 34 : key_(NULL), |
| 18 mode_(CBC) { | 35 mode_(CBC) { |
| 19 EnsureNSSInit(); | 36 EnsureNSSInit(); |
| 20 } | 37 } |
| 21 | 38 |
| 22 Encryptor::~Encryptor() { | 39 Encryptor::~Encryptor() { |
| 23 } | 40 } |
| 24 | 41 |
| 25 bool Encryptor::Init(SymmetricKey* key, Mode mode, const std::string& iv) { | 42 bool Encryptor::Init(SymmetricKey* key, Mode mode, const std::string& iv) { |
| 26 DCHECK(key); | 43 DCHECK(key); |
| 27 DCHECK_EQ(CBC, mode); | 44 DCHECK(CBC == mode || CTR == mode) << "Unsupported mode of operation"; |
| 28 | 45 |
| 29 key_ = key; | 46 key_ = key; |
| 30 mode_ = mode; | 47 mode_ = mode; |
| 31 | 48 |
| 32 if (iv.size() != AES_BLOCK_SIZE) | 49 if (mode == CBC && iv.size() != AES_BLOCK_SIZE) |
| 33 return false; | 50 return false; |
| 34 | 51 |
| 35 slot_.reset(PK11_GetBestSlot(CKM_AES_CBC_PAD, NULL)); | 52 slot_.reset(PK11_GetBestSlot(GetMechanism(mode), NULL)); |
| 36 if (!slot_.get()) | 53 if (!slot_.get()) |
| 37 return false; | 54 return false; |
| 38 | 55 |
| 39 SECItem iv_item; | 56 if (mode == CBC) { |
| 40 iv_item.type = siBuffer; | 57 SECItem iv_item; |
| 41 iv_item.data = reinterpret_cast<unsigned char*>( | 58 iv_item.type = siBuffer; |
| 42 const_cast<char *>(iv.data())); | 59 iv_item.data = reinterpret_cast<unsigned char*>( |
| 43 iv_item.len = iv.size(); | 60 const_cast<char *>(iv.data())); |
| 61 iv_item.len = iv.size(); | |
| 44 | 62 |
| 45 param_.reset(PK11_ParamFromIV(CKM_AES_CBC_PAD, &iv_item)); | 63 param_.reset(PK11_ParamFromIV(GetMechanism(mode), &iv_item)); |
| 64 } else { | |
| 65 param_.reset(PK11_ParamFromIV(GetMechanism(mode), NULL)); | |
| 66 } | |
| 67 | |
| 46 if (!param_.get()) | 68 if (!param_.get()) |
| 47 return false; | 69 return false; |
| 48 | |
| 49 return true; | 70 return true; |
| 50 } | 71 } |
| 51 | 72 |
| 52 bool Encryptor::Encrypt(const std::string& plaintext, std::string* ciphertext) { | 73 bool Encryptor::Encrypt(const std::string& plaintext, std::string* ciphertext) { |
| 53 ScopedPK11Context context(PK11_CreateContextBySymKey(CKM_AES_CBC_PAD, | 74 ScopedPK11Context context(PK11_CreateContextBySymKey(GetMechanism(mode_), |
| 54 CKA_ENCRYPT, | 75 CKA_ENCRYPT, |
| 55 key_->key(), | 76 key_->key(), |
| 56 param_.get())); | 77 param_.get())); |
| 57 if (!context.get()) | 78 if (!context.get()) |
| 58 return false; | 79 return false; |
| 59 | 80 |
| 60 size_t ciphertext_len = plaintext.size() + AES_BLOCK_SIZE; | 81 if (mode_ == CTR && !counter_.get()) { |
| 61 std::vector<unsigned char> buffer(ciphertext_len); | 82 LOG(ERROR) << "Counter value not set in CTR mode."; |
| 83 return false; | |
| 84 } | |
| 62 | 85 |
| 63 int op_len; | 86 return mode_ == CTR ? CryptCTR(context.get(), plaintext, ciphertext) : |
| 64 SECStatus rv = PK11_CipherOp(context.get(), | 87 Crypt(context.get(), plaintext, ciphertext); |
| 65 &buffer[0], | |
| 66 &op_len, | |
| 67 ciphertext_len, | |
| 68 reinterpret_cast<unsigned char*>( | |
| 69 const_cast<char*>(plaintext.data())), | |
| 70 plaintext.size()); | |
| 71 if (SECSuccess != rv) | |
| 72 return false; | |
| 73 | |
| 74 unsigned int digest_len; | |
| 75 rv = PK11_DigestFinal(context.get(), | |
| 76 &buffer[op_len], | |
| 77 &digest_len, | |
| 78 ciphertext_len - op_len); | |
| 79 if (SECSuccess != rv) | |
| 80 return false; | |
| 81 | |
| 82 ciphertext->assign(reinterpret_cast<char *>(&buffer[0]), | |
| 83 op_len + digest_len); | |
| 84 return true; | |
| 85 } | 88 } |
| 86 | 89 |
| 87 bool Encryptor::Decrypt(const std::string& ciphertext, std::string* plaintext) { | 90 bool Encryptor::Decrypt(const std::string& ciphertext, std::string* plaintext) { |
| 88 if (ciphertext.empty()) | 91 if (ciphertext.empty()) |
| 89 return false; | 92 return false; |
| 90 | 93 |
| 91 ScopedPK11Context context(PK11_CreateContextBySymKey(CKM_AES_CBC_PAD, | 94 if (mode_ == CTR && !counter_.get()) { |
| 92 CKA_DECRYPT, | 95 LOG(ERROR) << "Count value not set in CTR mode."; |
|
wtc
2011/06/14 18:11:06
Typo: Count => Counter
Alpha Left Google
2011/06/14 22:22:43
Done. Also I moved this block to CryptCTR.
| |
| 93 key_->key(), | 96 return false; |
| 94 param_.get())); | 97 } |
| 98 | |
| 99 ScopedPK11Context context(PK11_CreateContextBySymKey( | |
| 100 GetMechanism(mode_), (mode_ == CTR ? CKA_ENCRYPT : CKA_DECRYPT), | |
| 101 key_->key(), param_.get())); | |
| 95 if (!context.get()) | 102 if (!context.get()) |
| 96 return false; | 103 return false; |
| 97 | 104 |
| 98 size_t plaintext_len = ciphertext.size(); | 105 return mode_ == CTR ? CryptCTR(context.get(), ciphertext, plaintext) : |
| 99 std::vector<unsigned char> buffer(plaintext_len); | 106 Crypt(context.get(), ciphertext, plaintext); |
| 107 } | |
| 108 | |
| 109 bool Encryptor::Crypt(PK11Context* context, const std::string& input, | |
| 110 std::string* output) { | |
| 111 size_t output_len = input.size() + AES_BLOCK_SIZE; | |
| 112 output->resize(output_len); | |
| 113 uint8* output_data = | |
| 114 reinterpret_cast<uint8*>(const_cast<char*>(output->data())); | |
| 115 | |
| 116 int input_len = input.size(); | |
| 117 uint8* input_data = | |
| 118 reinterpret_cast<uint8*>(const_cast<char*>(input.data())); | |
| 100 | 119 |
| 101 int op_len; | 120 int op_len; |
| 102 SECStatus rv = PK11_CipherOp(context.get(), | 121 SECStatus rv = PK11_CipherOp(context, |
| 103 &buffer[0], | 122 output_data, |
| 104 &op_len, | 123 &op_len, |
| 105 plaintext_len, | 124 output_len, |
| 106 reinterpret_cast<unsigned char*>( | 125 input_data, |
| 107 const_cast<char*>(ciphertext.data())), | 126 input_len); |
| 108 ciphertext.size()); | 127 |
| 109 if (SECSuccess != rv) | 128 if (SECSuccess != rv) |
| 110 return false; | 129 return false; |
| 111 | 130 |
| 112 unsigned int digest_len; | 131 unsigned int digest_len; |
| 113 rv = PK11_DigestFinal(context.get(), | 132 rv = PK11_DigestFinal(context, |
| 114 &buffer[op_len], | 133 output_data + op_len, |
| 115 &digest_len, | 134 &digest_len, |
| 116 plaintext_len - op_len); | 135 output_len - op_len); |
| 117 if (SECSuccess != rv) | 136 if (SECSuccess != rv) |
| 118 return false; | 137 return false; |
| 119 | 138 |
| 120 plaintext->assign(reinterpret_cast<char *>(&buffer[0]), | 139 output->resize(op_len + digest_len); |
| 121 op_len + digest_len); | |
| 122 return true; | 140 return true; |
| 123 } | 141 } |
| 124 | 142 |
| 143 bool Encryptor::CryptCTR(PK11Context* context, const std::string& input, | |
| 144 std::string* output) { | |
| 145 size_t output_len = input.size() + AES_BLOCK_SIZE; | |
| 146 output->resize(output_len); | |
| 147 uint8* output_data = | |
| 148 reinterpret_cast<uint8*>(const_cast<char*>(output->data())); | |
| 149 | |
| 150 size_t input_len = input.size(); | |
| 151 uint8* input_data = | |
| 152 reinterpret_cast<uint8*>(const_cast<char*>(input.data())); | |
| 153 | |
| 154 scoped_array<uint8> ctr_mask; | |
| 155 GenerateCounterMask(input_len, &ctr_mask, &input_len); | |
| 156 CHECK(input_len <= output_len); | |
| 157 input_data = ctr_mask.get(); | |
| 158 | |
| 159 int op_len; | |
| 160 SECStatus rv = PK11_CipherOp(context, | |
| 161 output_data, | |
| 162 &op_len, | |
| 163 output_len, | |
| 164 input_data, | |
| 165 input_len); | |
| 166 if (SECSuccess != rv) | |
| 167 return false; | |
| 168 | |
| 169 // Use |output_data| to mask |input|. | |
| 170 MaskMessage( | |
| 171 reinterpret_cast<uint8*>(const_cast<char*>(input.data())), | |
| 172 input.length(), output_data, output_data); | |
| 173 output->resize(input.length()); | |
| 174 return true; | |
| 175 } | |
| 176 | |
| 125 } // namespace crypto | 177 } // namespace crypto |
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