| Index: net/quic/crypto/aes_128_gcm_12_encrypter_test.cc
|
| diff --git a/net/quic/crypto/aes_128_gcm_12_encrypter_test.cc b/net/quic/crypto/aes_128_gcm_12_encrypter_test.cc
|
| deleted file mode 100644
|
| index b7345b5c458c6e40c1d927ef7e7d53e68f7705c3..0000000000000000000000000000000000000000
|
| --- a/net/quic/crypto/aes_128_gcm_12_encrypter_test.cc
|
| +++ /dev/null
|
| @@ -1,297 +0,0 @@
|
| -// Copyright (c) 2013 The Chromium Authors. All rights reserved.
|
| -// Use of this source code is governed by a BSD-style license that can be
|
| -// found in the LICENSE file.
|
| -
|
| -#include "net/quic/crypto/aes_128_gcm_12_encrypter.h"
|
| -
|
| -#include "net/quic/test_tools/quic_test_utils.h"
|
| -
|
| -using base::StringPiece;
|
| -using std::string;
|
| -
|
| -namespace {
|
| -
|
| -// The AES GCM test vectors come from the file gcmEncryptExtIV128.rsp
|
| -// downloaded from http://csrc.nist.gov/groups/STM/cavp/index.html on
|
| -// 2013-02-01. The test vectors in that file look like this:
|
| -//
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| -// [Keylen = 128]
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| -// [IVlen = 96]
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| -// [PTlen = 0]
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| -// [AADlen = 0]
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| -// [Taglen = 128]
|
| -//
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| -// Count = 0
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| -// Key = 11754cd72aec309bf52f7687212e8957
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| -// IV = 3c819d9a9bed087615030b65
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| -// PT =
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| -// AAD =
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| -// CT =
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| -// Tag = 250327c674aaf477aef2675748cf6971
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| -//
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| -// Count = 1
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| -// Key = ca47248ac0b6f8372a97ac43508308ed
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| -// IV = ffd2b598feabc9019262d2be
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| -// PT =
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| -// AAD =
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| -// CT =
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| -// Tag = 60d20404af527d248d893ae495707d1a
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| -//
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| -// ...
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| -//
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| -// The gcmEncryptExtIV128.rsp file is huge (2.8 MB), so I selected just a
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| -// few test vectors for this unit test.
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| -
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| -// Describes a group of test vectors that all have a given key length, IV
|
| -// length, plaintext length, AAD length, and tag length.
|
| -struct TestGroupInfo {
|
| - size_t key_len;
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| - size_t iv_len;
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| - size_t pt_len;
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| - size_t aad_len;
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| - size_t tag_len;
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| -};
|
| -
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| -// Each test vector consists of six strings of lowercase hexadecimal digits.
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| -// The strings may be empty (zero length). A test vector with a NULL |key|
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| -// marks the end of an array of test vectors.
|
| -struct TestVector {
|
| - const char* key;
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| - const char* iv;
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| - const char* pt;
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| - const char* aad;
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| - const char* ct;
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| - const char* tag;
|
| -};
|
| -
|
| -const TestGroupInfo test_group_info[] = {
|
| - { 128, 96, 0, 0, 128 },
|
| - { 128, 96, 0, 128, 128 },
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| - { 128, 96, 128, 0, 128 },
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| - { 128, 96, 408, 160, 128 },
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| - { 128, 96, 408, 720, 128 },
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| - { 128, 96, 104, 0, 128 },
|
| -};
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| -
|
| -const TestVector test_group_0[] = {
|
| - { "11754cd72aec309bf52f7687212e8957",
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| - "3c819d9a9bed087615030b65",
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| - "",
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| - "",
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| - "",
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| - "250327c674aaf477aef2675748cf6971"
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| - },
|
| - { "ca47248ac0b6f8372a97ac43508308ed",
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| - "ffd2b598feabc9019262d2be",
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| - "",
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| - "",
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| - "",
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| - "60d20404af527d248d893ae495707d1a"
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| - },
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| - { NULL }
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| -};
|
| -
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| -const TestVector test_group_1[] = {
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| - { "77be63708971c4e240d1cb79e8d77feb",
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| - "e0e00f19fed7ba0136a797f3",
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| - "",
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| - "7a43ec1d9c0a5a78a0b16533a6213cab",
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| - "",
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| - "209fcc8d3675ed938e9c7166709dd946"
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| - },
|
| - { "7680c5d3ca6154758e510f4d25b98820",
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| - "f8f105f9c3df4965780321f8",
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| - "",
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| - "c94c410194c765e3dcc7964379758ed3",
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| - "",
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| - "94dca8edfcf90bb74b153c8d48a17930"
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| - },
|
| - { NULL }
|
| -};
|
| -
|
| -const TestVector test_group_2[] = {
|
| - { "7fddb57453c241d03efbed3ac44e371c",
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| - "ee283a3fc75575e33efd4887",
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| - "d5de42b461646c255c87bd2962d3b9a2",
|
| - "",
|
| - "2ccda4a5415cb91e135c2a0f78c9b2fd",
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| - "b36d1df9b9d5e596f83e8b7f52971cb3"
|
| - },
|
| - { "ab72c77b97cb5fe9a382d9fe81ffdbed",
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| - "54cc7dc2c37ec006bcc6d1da",
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| - "007c5e5b3e59df24a7c355584fc1518d",
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| - "",
|
| - "0e1bde206a07a9c2c1b65300f8c64997",
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| - "2b4401346697138c7a4891ee59867d0c"
|
| - },
|
| - { NULL }
|
| -};
|
| -
|
| -const TestVector test_group_3[] = {
|
| - { "fe47fcce5fc32665d2ae399e4eec72ba",
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| - "5adb9609dbaeb58cbd6e7275",
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| - "7c0e88c88899a779228465074797cd4c2e1498d259b54390b85e3eef1c02df60e743f1"
|
| - "b840382c4bccaf3bafb4ca8429bea063",
|
| - "88319d6e1d3ffa5f987199166c8a9b56c2aeba5a",
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| - "98f4826f05a265e6dd2be82db241c0fbbbf9ffb1c173aa83964b7cf539304373636525"
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| - "3ddbc5db8778371495da76d269e5db3e",
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| - "291ef1982e4defedaa2249f898556b47"
|
| - },
|
| - { "ec0c2ba17aa95cd6afffe949da9cc3a8",
|
| - "296bce5b50b7d66096d627ef",
|
| - "b85b3753535b825cbe5f632c0b843c741351f18aa484281aebec2f45bb9eea2d79d987"
|
| - "b764b9611f6c0f8641843d5d58f3a242",
|
| - "f8d00f05d22bf68599bcdeb131292ad6e2df5d14",
|
| - "a7443d31c26bdf2a1c945e29ee4bd344a99cfaf3aa71f8b3f191f83c2adfc7a0716299"
|
| - "5506fde6309ffc19e716eddf1a828c5a",
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| - "890147971946b627c40016da1ecf3e77"
|
| - },
|
| - { NULL }
|
| -};
|
| -
|
| -const TestVector test_group_4[] = {
|
| - { "2c1f21cf0f6fb3661943155c3e3d8492",
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| - "23cb5ff362e22426984d1907",
|
| - "42f758836986954db44bf37c6ef5e4ac0adaf38f27252a1b82d02ea949c8a1a2dbc0d6"
|
| - "8b5615ba7c1220ff6510e259f06655d8",
|
| - "5d3624879d35e46849953e45a32a624d6a6c536ed9857c613b572b0333e701557a713e"
|
| - "3f010ecdf9a6bd6c9e3e44b065208645aff4aabee611b391528514170084ccf587177f"
|
| - "4488f33cfb5e979e42b6e1cfc0a60238982a7aec",
|
| - "81824f0e0d523db30d3da369fdc0d60894c7a0a20646dd015073ad2732bd989b14a222"
|
| - "b6ad57af43e1895df9dca2a5344a62cc",
|
| - "57a3ee28136e94c74838997ae9823f3a"
|
| - },
|
| - { "d9f7d2411091f947b4d6f1e2d1f0fb2e",
|
| - "e1934f5db57cc983e6b180e7",
|
| - "73ed042327f70fe9c572a61545eda8b2a0c6e1d6c291ef19248e973aee6c312012f490"
|
| - "c2c6f6166f4a59431e182663fcaea05a",
|
| - "0a8a18a7150e940c3d87b38e73baee9a5c049ee21795663e264b694a949822b639092d"
|
| - "0e67015e86363583fcf0ca645af9f43375f05fdb4ce84f411dcbca73c2220dea03a201"
|
| - "15d2e51398344b16bee1ed7c499b353d6c597af8",
|
| - "aaadbd5c92e9151ce3db7210b8714126b73e43436d242677afa50384f2149b831f1d57"
|
| - "3c7891c2a91fbc48db29967ec9542b23",
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| - "21b51ca862cb637cdd03b99a0f93b134"
|
| - },
|
| - { NULL }
|
| -};
|
| -
|
| -const TestVector test_group_5[] = {
|
| - { "fe9bb47deb3a61e423c2231841cfd1fb",
|
| - "4d328eb776f500a2f7fb47aa",
|
| - "f1cc3818e421876bb6b8bbd6c9",
|
| - "",
|
| - "b88c5c1977b35b517b0aeae967",
|
| - "43fd4727fe5cdb4b5b42818dea7ef8c9"
|
| - },
|
| - { "6703df3701a7f54911ca72e24dca046a",
|
| - "12823ab601c350ea4bc2488c",
|
| - "793cd125b0b84a043e3ac67717",
|
| - "",
|
| - "b2051c80014f42f08735a7b0cd",
|
| - "38e6bcd29962e5f2c13626b85a877101"
|
| - },
|
| - { NULL }
|
| -};
|
| -
|
| -const TestVector* const test_group_array[] = {
|
| - test_group_0,
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| - test_group_1,
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| - test_group_2,
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| - test_group_3,
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| - test_group_4,
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| - test_group_5,
|
| -};
|
| -
|
| -} // namespace
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| -
|
| -namespace net {
|
| -namespace test {
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| -
|
| -// EncryptWithNonce wraps the |Encrypt| method of |encrypter| to allow passing
|
| -// in an nonce and also to allocate the buffer needed for the ciphertext.
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| -QuicData* EncryptWithNonce(Aes128Gcm12Encrypter* encrypter,
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| - StringPiece nonce,
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| - StringPiece associated_data,
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| - StringPiece plaintext) {
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| - size_t ciphertext_size = encrypter->GetCiphertextSize(plaintext.length());
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| - scoped_ptr<char[]> ciphertext(new char[ciphertext_size]);
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| -
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| - if (!encrypter->Encrypt(nonce, associated_data, plaintext,
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| - reinterpret_cast<unsigned char*>(ciphertext.get()))) {
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| - return nullptr;
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| - }
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| -
|
| - return new QuicData(ciphertext.release(), ciphertext_size, true);
|
| -}
|
| -
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| -TEST(Aes128Gcm12EncrypterTest, Encrypt) {
|
| - for (size_t i = 0; i < arraysize(test_group_array); i++) {
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| - SCOPED_TRACE(i);
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| - const TestVector* test_vectors = test_group_array[i];
|
| - const TestGroupInfo& test_info = test_group_info[i];
|
| - for (size_t j = 0; test_vectors[j].key != nullptr; j++) {
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| - // Decode the test vector.
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| - string key;
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| - string iv;
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| - string pt;
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| - string aad;
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| - string ct;
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| - string tag;
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].key, &key));
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].iv, &iv));
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].pt, &pt));
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].aad, &aad));
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].ct, &ct));
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| - ASSERT_TRUE(DecodeHexString(test_vectors[j].tag, &tag));
|
| -
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| - // The test vector's lengths should look sane. Note that the lengths
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| - // in |test_info| are in bits.
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| - EXPECT_EQ(test_info.key_len, key.length() * 8);
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| - EXPECT_EQ(test_info.iv_len, iv.length() * 8);
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| - EXPECT_EQ(test_info.pt_len, pt.length() * 8);
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| - EXPECT_EQ(test_info.aad_len, aad.length() * 8);
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| - EXPECT_EQ(test_info.pt_len, ct.length() * 8);
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| - EXPECT_EQ(test_info.tag_len, tag.length() * 8);
|
| -
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| - Aes128Gcm12Encrypter encrypter;
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| - ASSERT_TRUE(encrypter.SetKey(key));
|
| - scoped_ptr<QuicData> encrypted(EncryptWithNonce(
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| - &encrypter, iv,
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| - // This deliberately tests that the encrypter can handle an AAD that
|
| - // is set to nullptr, as opposed to a zero-length, non-nullptr
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| - // pointer.
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| - aad.length() ? aad : StringPiece(), pt));
|
| - ASSERT_TRUE(encrypted.get());
|
| -
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| - // The test vectors have 16 byte authenticators but this code only uses
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| - // the first 12.
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| - ASSERT_LE(static_cast<size_t>(Aes128Gcm12Encrypter::kAuthTagSize),
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| - tag.length());
|
| - tag.resize(Aes128Gcm12Encrypter::kAuthTagSize);
|
| -
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| - ASSERT_EQ(ct.length() + tag.length(), encrypted->length());
|
| - test::CompareCharArraysWithHexError("ciphertext", encrypted->data(),
|
| - ct.length(), ct.data(), ct.length());
|
| - test::CompareCharArraysWithHexError(
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| - "authentication tag", encrypted->data() + ct.length(), tag.length(),
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| - tag.data(), tag.length());
|
| - }
|
| - }
|
| -}
|
| -
|
| -TEST(Aes128Gcm12EncrypterTest, GetMaxPlaintextSize) {
|
| - Aes128Gcm12Encrypter encrypter;
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| - EXPECT_EQ(1000u, encrypter.GetMaxPlaintextSize(1012));
|
| - EXPECT_EQ(100u, encrypter.GetMaxPlaintextSize(112));
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| - EXPECT_EQ(10u, encrypter.GetMaxPlaintextSize(22));
|
| -}
|
| -
|
| -TEST(Aes128Gcm12EncrypterTest, GetCiphertextSize) {
|
| - Aes128Gcm12Encrypter encrypter;
|
| - EXPECT_EQ(1012u, encrypter.GetCiphertextSize(1000));
|
| - EXPECT_EQ(112u, encrypter.GetCiphertextSize(100));
|
| - EXPECT_EQ(22u, encrypter.GetCiphertextSize(10));
|
| -}
|
| -
|
| -} // namespace test
|
| -} // namespace net
|
|
|