1 /* ====================================================================
2  * Copyright (c) 2008 The OpenSSL Project.  All rights reserved.
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
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11  * 2. Redistributions in binary form must reproduce the above copyright
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48 
49 #include <stdio.h>
50 #include <string.h>
51 
52 #include <vector>
53 
54 #include <gtest/gtest.h>
55 
56 #include <openssl/aes.h>
57 #include <openssl/cpu.h>
58 
59 #include "../../test/abi_test.h"
60 #include "../../test/file_test.h"
61 #include "../../test/test_util.h"
62 #include "../aes/internal.h"
63 #include "internal.h"
64 
65 
TEST(GCMTest,TestVectors)66 TEST(GCMTest, TestVectors) {
67   FileTestGTest("crypto/fipsmodule/modes/gcm_tests.txt", [](FileTest *t) {
68     std::vector<uint8_t> key, plaintext, additional_data, nonce, ciphertext,
69         tag;
70     ASSERT_TRUE(t->GetBytes(&key, "Key"));
71     ASSERT_TRUE(t->GetBytes(&plaintext, "Plaintext"));
72     ASSERT_TRUE(t->GetBytes(&additional_data, "AdditionalData"));
73     ASSERT_TRUE(t->GetBytes(&nonce, "Nonce"));
74     ASSERT_TRUE(t->GetBytes(&ciphertext, "Ciphertext"));
75     ASSERT_TRUE(t->GetBytes(&tag, "Tag"));
76 
77     ASSERT_EQ(plaintext.size(), ciphertext.size());
78     ASSERT_TRUE(key.size() == 16 || key.size() == 24 || key.size() == 32);
79     ASSERT_EQ(16u, tag.size());
80 
81     std::vector<uint8_t> out(plaintext.size());
82     AES_KEY aes_key;
83     ASSERT_EQ(0, AES_set_encrypt_key(key.data(), key.size() * 8, &aes_key));
84 
85     GCM128_CONTEXT ctx;
86     OPENSSL_memset(&ctx, 0, sizeof(ctx));
87     CRYPTO_gcm128_init_key(&ctx.gcm_key, &aes_key, AES_encrypt, 0);
88     CRYPTO_gcm128_setiv(&ctx, &aes_key, nonce.data(), nonce.size());
89     if (!additional_data.empty()) {
90       CRYPTO_gcm128_aad(&ctx, additional_data.data(), additional_data.size());
91     }
92     if (!plaintext.empty()) {
93       CRYPTO_gcm128_encrypt(&ctx, &aes_key, plaintext.data(), out.data(),
94                             plaintext.size());
95     }
96 
97     std::vector<uint8_t> got_tag(tag.size());
98     CRYPTO_gcm128_tag(&ctx, got_tag.data(), got_tag.size());
99     EXPECT_EQ(Bytes(tag), Bytes(got_tag));
100     EXPECT_EQ(Bytes(ciphertext), Bytes(out));
101 
102     CRYPTO_gcm128_setiv(&ctx, &aes_key, nonce.data(), nonce.size());
103     OPENSSL_memset(out.data(), 0, out.size());
104     if (!additional_data.empty()) {
105       CRYPTO_gcm128_aad(&ctx, additional_data.data(), additional_data.size());
106     }
107     if (!ciphertext.empty()) {
108       CRYPTO_gcm128_decrypt(&ctx, &aes_key, ciphertext.data(), out.data(),
109                             ciphertext.size());
110     }
111     ASSERT_TRUE(CRYPTO_gcm128_finish(&ctx, tag.data(), tag.size()));
112     EXPECT_EQ(Bytes(plaintext), Bytes(out));
113   });
114 }
115 
TEST(GCMTest,ByteSwap)116 TEST(GCMTest, ByteSwap) {
117   EXPECT_EQ(0x04030201u, CRYPTO_bswap4(0x01020304u));
118   EXPECT_EQ(UINT64_C(0x0807060504030201),
119             CRYPTO_bswap8(UINT64_C(0x0102030405060708)));
120 }
121 
122 #if defined(SUPPORTS_ABI_TEST) && !defined(OPENSSL_NO_ASM)
TEST(GCMTest,ABI)123 TEST(GCMTest, ABI) {
124   static const uint64_t kH[2] = {
125       UINT64_C(0x66e94bd4ef8a2c3b),
126       UINT64_C(0x884cfa59ca342b2e),
127   };
128   static const size_t kBlockCounts[] = {1, 2, 3, 4, 7, 8, 15, 16, 31, 32};
129   uint8_t buf[16 * 32];
130   OPENSSL_memset(buf, 42, sizeof(buf));
131 
132   uint64_t X[2] = {
133       UINT64_C(0x0388dace60b6a392),
134       UINT64_C(0xf328c2b971b2fe78),
135   };
136 
137   alignas(16) u128 Htable[16];
138 #if defined(GHASH_ASM_X86) || defined(GHASH_ASM_X86_64)
139   if (gcm_ssse3_capable()) {
140     CHECK_ABI_SEH(gcm_init_ssse3, Htable, kH);
141     CHECK_ABI_SEH(gcm_gmult_ssse3, X, Htable);
142     for (size_t blocks : kBlockCounts) {
143       CHECK_ABI_SEH(gcm_ghash_ssse3, X, Htable, buf, 16 * blocks);
144     }
145   }
146 
147   if (crypto_gcm_clmul_enabled()) {
148     CHECK_ABI_SEH(gcm_init_clmul, Htable, kH);
149     CHECK_ABI_SEH(gcm_gmult_clmul, X, Htable);
150     for (size_t blocks : kBlockCounts) {
151       CHECK_ABI_SEH(gcm_ghash_clmul, X, Htable, buf, 16 * blocks);
152     }
153 
154 #if defined(GHASH_ASM_X86_64)
155     if (((OPENSSL_ia32cap_get()[1] >> 22) & 0x41) == 0x41) {  // AVX+MOVBE
156       CHECK_ABI_SEH(gcm_init_avx, Htable, kH);
157       CHECK_ABI_SEH(gcm_gmult_avx, X, Htable);
158       for (size_t blocks : kBlockCounts) {
159         CHECK_ABI_SEH(gcm_ghash_avx, X, Htable, buf, 16 * blocks);
160       }
161 
162       if (hwaes_capable()) {
163         AES_KEY aes_key;
164         static const uint8_t kKey[16] = {0};
165 
166         // aesni_gcm_* makes assumptions about |GCM128_CONTEXT|'s layout.
167         GCM128_CONTEXT gcm;
168         memset(&gcm, 0, sizeof(gcm));
169         memcpy(&gcm.gcm_key.H, kH, sizeof(kH));
170         memcpy(&gcm.gcm_key.Htable, Htable, sizeof(Htable));
171         memcpy(&gcm.Xi, X, sizeof(X));
172         uint8_t iv[16] = {0};
173 
174         aes_hw_set_encrypt_key(kKey, 128, &aes_key);
175         for (size_t blocks : kBlockCounts) {
176           CHECK_ABI(aesni_gcm_encrypt, buf, buf, blocks * 16, &aes_key, iv,
177                     gcm.Xi.u);
178           CHECK_ABI(aesni_gcm_encrypt, buf, buf, blocks * 16 + 7, &aes_key, iv,
179                     gcm.Xi.u);
180         }
181         aes_hw_set_decrypt_key(kKey, 128, &aes_key);
182         for (size_t blocks : kBlockCounts) {
183           CHECK_ABI(aesni_gcm_decrypt, buf, buf, blocks * 16, &aes_key, iv,
184                     gcm.Xi.u);
185           CHECK_ABI(aesni_gcm_decrypt, buf, buf, blocks * 16 + 7, &aes_key, iv,
186                     gcm.Xi.u);
187         }
188       }
189     }
190 #endif  // GHASH_ASM_X86_64
191   }
192 #endif  // GHASH_ASM_X86 || GHASH_ASM_X86_64
193 
194 #if defined(GHASH_ASM_ARM)
195   if (gcm_neon_capable()) {
196     CHECK_ABI(gcm_init_neon, Htable, kH);
197     CHECK_ABI(gcm_gmult_neon, X, Htable);
198     for (size_t blocks : kBlockCounts) {
199       CHECK_ABI(gcm_ghash_neon, X, Htable, buf, 16 * blocks);
200     }
201   }
202 
203   if (gcm_pmull_capable()) {
204     CHECK_ABI(gcm_init_v8, Htable, kH);
205     CHECK_ABI(gcm_gmult_v8, X, Htable);
206     for (size_t blocks : kBlockCounts) {
207       CHECK_ABI(gcm_ghash_v8, X, Htable, buf, 16 * blocks);
208     }
209   }
210 #endif  // GHASH_ASM_ARM
211 
212 #if defined(GHASH_ASM_PPC64LE)
213   if (CRYPTO_is_PPC64LE_vcrypto_capable()) {
214     CHECK_ABI(gcm_init_p8, Htable, kH);
215     CHECK_ABI(gcm_gmult_p8, X, Htable);
216     for (size_t blocks : kBlockCounts) {
217       CHECK_ABI(gcm_ghash_p8, X, Htable, buf, 16 * blocks);
218     }
219   }
220 #endif  // GHASH_ASM_PPC64LE
221 }
222 #endif  // SUPPORTS_ABI_TEST && !OPENSSL_NO_ASM
223