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Side by Side Diff: crypto/encryptor_nss.cc

Issue 7056026: Implement AES-CTR for NSS. (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src
Patch Set: fixed comments Created 9 years, 6 months ago
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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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