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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" |
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37 mode_(CBC) { | 37 mode_(CBC) { |
38 EnsureNSSInit(); | 38 EnsureNSSInit(); |
39 } | 39 } |
40 | 40 |
41 Encryptor::~Encryptor() { | 41 Encryptor::~Encryptor() { |
42 } | 42 } |
43 | 43 |
44 bool Encryptor::Init(SymmetricKey* key, | 44 bool Encryptor::Init(SymmetricKey* key, |
45 Mode mode, | 45 Mode mode, |
46 const base::StringPiece& iv) { | 46 const base::StringPiece& iv) { |
47 DCHECK(key); | 47 if (!key || !(mode == CBC || mode == CTR)) |
48 DCHECK(CBC == mode || CTR == mode) << "Unsupported mode of operation"; | 48 return false; |
49 | 49 |
50 key_ = key; | 50 key_ = key; |
51 mode_ = mode; | 51 mode_ = mode; |
52 | 52 |
53 if (mode == CBC && iv.size() != AES_BLOCK_SIZE) | 53 if (mode == CBC && iv.size() != AES_BLOCK_SIZE) |
54 return false; | 54 return false; |
55 | 55 |
56 slot_.reset(PK11_GetBestSlot(GetMechanism(mode), NULL)); | 56 slot_.reset(PK11_GetBestSlot(GetMechanism(mode), NULL)); |
57 if (!slot_.get()) | 57 if (!slot_.get()) |
58 return false; | 58 return false; |
59 | 59 |
60 switch (mode) { | 60 switch (mode) { |
61 case CBC: | 61 case CBC: |
62 SECItem iv_item; | 62 SECItem iv_item; |
63 iv_item.type = siBuffer; | 63 iv_item.type = siBuffer; |
64 iv_item.data = reinterpret_cast<unsigned char*>( | 64 iv_item.data = reinterpret_cast<unsigned char*>( |
65 const_cast<char *>(iv.data())); | 65 const_cast<char *>(iv.data())); |
66 iv_item.len = iv.size(); | 66 iv_item.len = iv.size(); |
67 | 67 |
68 param_.reset(PK11_ParamFromIV(GetMechanism(mode), &iv_item)); | 68 param_.reset(PK11_ParamFromIV(GetMechanism(mode), &iv_item)); |
69 break; | 69 break; |
70 case CTR: | 70 case CTR: |
71 param_.reset(PK11_ParamFromIV(GetMechanism(mode), NULL)); | 71 param_.reset(PK11_ParamFromIV(GetMechanism(mode), NULL)); |
72 break; | 72 break; |
73 } | 73 } |
74 | 74 |
75 if (!param_.get()) | 75 return param_ != NULL; |
76 return false; | |
77 return true; | |
78 } | 76 } |
79 | 77 |
80 bool Encryptor::Encrypt(const base::StringPiece& plaintext, | 78 bool Encryptor::Encrypt(const base::StringPiece& plaintext, |
81 std::string* ciphertext) { | 79 std::string* ciphertext) { |
82 ScopedPK11Context context(PK11_CreateContextBySymKey(GetMechanism(mode_), | 80 ciphertext->clear(); |
83 CKA_ENCRYPT, | 81 if (plaintext.empty() && mode_ != CBC) |
84 key_->key(), | 82 return false; |
85 param_.get())); | 83 |
84 ScopedPK11Context context( | |
85 PK11_CreateContextBySymKey(GetMechanism(mode_), CKA_ENCRYPT, | |
86 key_->key(), param_.get())); | |
86 if (!context.get()) | 87 if (!context.get()) |
87 return false; | 88 return false; |
88 | 89 |
89 if (mode_ == CTR) | 90 return (mode_ == CTR) ? |
90 return CryptCTR(context.get(), plaintext, ciphertext); | 91 CryptCTR(context.get(), plaintext, ciphertext) : |
91 else | 92 Crypt(context.get(), plaintext, ciphertext); |
92 return Crypt(context.get(), plaintext, ciphertext); | |
93 } | 93 } |
94 | 94 |
95 bool Encryptor::Decrypt(const base::StringPiece& ciphertext, | 95 bool Encryptor::Decrypt(const base::StringPiece& ciphertext, |
96 std::string* plaintext) { | 96 std::string* plaintext) { |
97 plaintext->clear(); | |
97 if (ciphertext.empty()) | 98 if (ciphertext.empty()) |
98 return false; | 99 return false; |
99 | 100 |
100 ScopedPK11Context context(PK11_CreateContextBySymKey( | 101 ScopedPK11Context context(PK11_CreateContextBySymKey( |
101 GetMechanism(mode_), (mode_ == CTR ? CKA_ENCRYPT : CKA_DECRYPT), | 102 GetMechanism(mode_), (mode_ == CTR ? CKA_ENCRYPT : CKA_DECRYPT), |
102 key_->key(), param_.get())); | 103 key_->key(), param_.get())); |
103 if (!context.get()) | 104 if (!context.get()) |
104 return false; | 105 return false; |
105 | 106 |
106 if (mode_ == CTR) | 107 return (mode_ == CTR) ? |
107 return CryptCTR(context.get(), ciphertext, plaintext); | 108 CryptCTR(context.get(), ciphertext, plaintext) : |
108 else | 109 Crypt(context.get(), ciphertext, plaintext); |
109 return Crypt(context.get(), ciphertext, plaintext); | |
110 } | 110 } |
111 | 111 |
112 bool Encryptor::Crypt(PK11Context* context, | 112 bool Encryptor::Crypt(PK11Context* context, |
113 const base::StringPiece& input, | 113 const base::StringPiece& input, |
114 std::string* output) { | 114 std::string* output) { |
115 size_t output_len = input.size() + AES_BLOCK_SIZE; | 115 size_t output_len = input.size() + AES_BLOCK_SIZE; |
116 CHECK(output_len > input.size()) << "Output size overflow"; | 116 if (output_len < input.size()) |
117 return false; // Size overflow. | |
wtc
2011/11/15 02:33:58
Nit: Size => size_t
| |
117 | 118 |
118 output->resize(output_len); | 119 std::string result; |
119 uint8* output_data = | 120 result.resize(output_len); |
wtc
2011/11/15 02:33:58
Is there a constructor that takes the size input?
| |
120 reinterpret_cast<uint8*>(const_cast<char*>(output->data())); | 121 uint8* result_data = |
122 reinterpret_cast<uint8*>(const_cast<char*>(result.data())); | |
121 | 123 |
122 int input_len = input.size(); | 124 int input_len = input.size(); |
123 uint8* input_data = | 125 uint8* input_data = |
124 reinterpret_cast<uint8*>(const_cast<char*>(input.data())); | 126 reinterpret_cast<uint8*>(const_cast<char*>(input.data())); |
125 | 127 |
126 int op_len; | 128 int op_len; |
127 SECStatus rv = PK11_CipherOp(context, | 129 SECStatus rv = PK11_CipherOp(context, result_data, &op_len, output_len, |
128 output_data, | 130 input_data, input_len); |
129 &op_len, | 131 if (SECSuccess != rv) |
130 output_len, | |
131 input_data, | |
132 input_len); | |
133 | |
134 if (SECSuccess != rv) { | |
135 output->clear(); | |
136 return false; | 132 return false; |
137 } | |
138 | 133 |
139 unsigned int digest_len; | 134 unsigned int digest_len; |
140 rv = PK11_DigestFinal(context, | 135 rv = PK11_DigestFinal(context, result_data + op_len, &digest_len, |
141 output_data + op_len, | |
142 &digest_len, | |
143 output_len - op_len); | 136 output_len - op_len); |
144 if (SECSuccess != rv) { | 137 if (SECSuccess != rv) |
145 output->clear(); | |
146 return false; | 138 return false; |
147 } | |
148 | 139 |
149 output->resize(op_len + digest_len); | 140 result.resize(op_len + digest_len); |
141 output->swap(result); | |
150 return true; | 142 return true; |
151 } | 143 } |
152 | 144 |
153 bool Encryptor::CryptCTR(PK11Context* context, | 145 bool Encryptor::CryptCTR(PK11Context* context, |
154 const base::StringPiece& input, | 146 const base::StringPiece& input, |
155 std::string* output) { | 147 std::string* output) { |
156 if (!counter_.get()) { | 148 if (!counter_.get()) { |
157 LOG(ERROR) << "Counter value not set in CTR mode."; | 149 LOG(ERROR) << "Counter value not set in CTR mode."; |
158 return false; | 150 return false; |
159 } | 151 } |
160 | 152 |
161 size_t output_len = ((input.size() + AES_BLOCK_SIZE - 1) / AES_BLOCK_SIZE) * | 153 size_t output_len = ((input.size() + AES_BLOCK_SIZE - 1) / AES_BLOCK_SIZE) * |
162 AES_BLOCK_SIZE; | 154 AES_BLOCK_SIZE; |
163 CHECK(output_len >= input.size()) << "Output size overflow"; | 155 if (output_len < input.size()) |
164 output->resize(output_len); | 156 return false; // Size overflow. |
165 uint8* output_data = | 157 |
166 reinterpret_cast<uint8*>(const_cast<char*>(output->data())); | 158 // Work on the result in a local variable, and then only transfer it to |
159 // |output| on success to ensure no partial data is returned. | |
160 std::string result; | |
161 result.resize(output_len); | |
162 uint8* result_data = | |
163 reinterpret_cast<uint8*>(const_cast<char*>(result.data())); | |
167 | 164 |
168 size_t mask_len; | 165 size_t mask_len; |
169 bool ret = GenerateCounterMask(input.size(), output_data, &mask_len); | 166 bool ret = GenerateCounterMask(input.size(), result_data, &mask_len); |
170 if (!ret) | 167 if (!ret) |
171 return false; | 168 return false; |
172 | 169 |
173 CHECK_EQ(mask_len, output_len); | 170 CHECK_EQ(mask_len, output_len); |
174 int op_len; | 171 int op_len; |
175 SECStatus rv = PK11_CipherOp(context, | 172 SECStatus rv = PK11_CipherOp(context, result_data, &op_len, output_len, |
176 output_data, | 173 result_data, mask_len); |
177 &op_len, | 174 if (SECSuccess != rv || op_len != static_cast<int>(mask_len)) |
178 output_len, | |
179 output_data, | |
180 mask_len); | |
181 if (SECSuccess != rv) | |
182 return false; | 175 return false; |
183 CHECK(op_len == static_cast<int>(mask_len)); | |
184 | 176 |
185 unsigned int digest_len; | 177 unsigned int digest_len; |
186 rv = PK11_DigestFinal(context, | 178 rv = PK11_DigestFinal(context, NULL, &digest_len, 0); |
187 NULL, | 179 if (SECSuccess != rv || digest_len) |
188 &digest_len, | |
189 0); | |
190 if (SECSuccess != rv) | |
191 return false; | 180 return false; |
192 CHECK(!digest_len); | |
wtc
2011/11/15 02:33:58
IMPORTANT: Some of these CHECKs should not be conv
| |
193 | 181 |
194 // Use |output_data| to mask |input|. | 182 // Use |result_data| to mask |input|. |
195 MaskMessage( | 183 MaskMessage(reinterpret_cast<uint8*>(const_cast<char*>(input.data())), |
196 reinterpret_cast<uint8*>(const_cast<char*>(input.data())), | 184 input.size(), result_data, result_data); |
197 input.length(), output_data, output_data); | 185 result.resize(input.size()); |
198 output->resize(input.length()); | 186 output->swap(result); |
199 return true; | 187 return true; |
200 } | 188 } |
201 | 189 |
202 } // namespace crypto | 190 } // namespace crypto |
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