1 | /***************************************************************************
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2 | * _ _ ____ _
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3 | * Project ___| | | | _ \| |
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4 | * / __| | | | |_) | |
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5 | * | (__| |_| | _ <| |___
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6 | * \___|\___/|_| \_\_____|
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7 | *
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8 | * Copyright (C) Florin Petriuc, <[email protected]>
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9 | * Copyright (C) Daniel Stenberg, <[email protected]>, et al.
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10 | *
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11 | * This software is licensed as described in the file COPYING, which
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12 | * you should have received as part of this distribution. The terms
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13 | * are also available at https://curl.se/docs/copyright.html.
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14 | *
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15 | * You may opt to use, copy, modify, merge, publish, distribute and/or sell
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16 | * copies of the Software, and permit persons to whom the Software is
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17 | * furnished to do so, under the terms of the COPYING file.
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18 | *
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19 | * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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20 | * KIND, either express or implied.
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21 | *
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22 | * SPDX-License-Identifier: curl
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23 | *
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24 | ***************************************************************************/
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25 |
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26 | #include "curl_setup.h"
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27 |
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28 | #if !defined(CURL_DISABLE_AWS) || !defined(CURL_DISABLE_DIGEST_AUTH) \
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29 | || defined(USE_LIBSSH2)
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30 |
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31 | #include "warnless.h"
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32 | #include "curl_sha256.h"
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33 | #include "curl_hmac.h"
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34 |
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35 | #ifdef USE_WOLFSSL
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36 | #include <wolfssl/options.h>
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37 | #ifndef NO_SHA256
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38 | #define USE_OPENSSL_SHA256
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39 | #endif
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40 | #endif
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41 |
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42 | #if defined(USE_OPENSSL)
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43 |
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44 | #include <openssl/opensslv.h>
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45 |
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46 | #if (OPENSSL_VERSION_NUMBER >= 0x0090800fL)
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47 | #define USE_OPENSSL_SHA256
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48 | #endif
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49 |
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50 | #endif /* USE_OPENSSL */
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51 |
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52 | #ifdef USE_MBEDTLS
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53 | #include <mbedtls/version.h>
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54 |
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55 | #if(MBEDTLS_VERSION_NUMBER >= 0x02070000) && \
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56 | (MBEDTLS_VERSION_NUMBER < 0x03000000)
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57 | #define HAS_MBEDTLS_RESULT_CODE_BASED_FUNCTIONS
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58 | #endif
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59 | #endif /* USE_MBEDTLS */
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60 |
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61 | #if defined(USE_OPENSSL_SHA256)
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62 |
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63 | /* When OpenSSL or wolfSSL is available we use their SHA256-functions. */
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64 | #if defined(USE_OPENSSL)
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65 | #include <openssl/evp.h>
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66 | #elif defined(USE_WOLFSSL)
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67 | #include <wolfssl/openssl/evp.h>
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68 | #endif
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69 |
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70 | #elif defined(USE_GNUTLS)
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71 | #include <nettle/sha.h>
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72 | #elif defined(USE_MBEDTLS)
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73 | #include <mbedtls/sha256.h>
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74 | #elif (defined(__MAC_OS_X_VERSION_MAX_ALLOWED) && \
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75 | (__MAC_OS_X_VERSION_MAX_ALLOWED >= 1040)) || \
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76 | (defined(__IPHONE_OS_VERSION_MAX_ALLOWED) && \
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77 | (__IPHONE_OS_VERSION_MAX_ALLOWED >= 20000))
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78 | #include <CommonCrypto/CommonDigest.h>
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79 | #define AN_APPLE_OS
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80 | #elif defined(USE_WIN32_CRYPTO)
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81 | #include <wincrypt.h>
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82 | #endif
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83 |
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84 | /* The last 3 #include files should be in this order */
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85 | #include "curl_printf.h"
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86 | #include "curl_memory.h"
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87 | #include "memdebug.h"
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88 |
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89 | /* Please keep the SSL backend-specific #if branches in this order:
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90 | *
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91 | * 1. USE_OPENSSL
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92 | * 2. USE_GNUTLS
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93 | * 3. USE_MBEDTLS
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94 | * 4. USE_COMMON_CRYPTO
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95 | * 5. USE_WIN32_CRYPTO
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96 | *
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97 | * This ensures that the same SSL branch gets activated throughout this source
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98 | * file even if multiple backends are enabled at the same time.
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99 | */
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100 |
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101 | #if defined(USE_OPENSSL_SHA256)
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102 |
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103 | struct sha256_ctx {
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104 | EVP_MD_CTX *openssl_ctx;
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105 | };
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106 | typedef struct sha256_ctx my_sha256_ctx;
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107 |
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108 | static CURLcode my_sha256_init(my_sha256_ctx *ctx)
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109 | {
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110 | ctx->openssl_ctx = EVP_MD_CTX_create();
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111 | if(!ctx->openssl_ctx)
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112 | return CURLE_OUT_OF_MEMORY;
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113 |
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114 | if(!EVP_DigestInit_ex(ctx->openssl_ctx, EVP_sha256(), NULL)) {
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115 | EVP_MD_CTX_destroy(ctx->openssl_ctx);
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116 | return CURLE_FAILED_INIT;
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117 | }
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118 | return CURLE_OK;
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119 | }
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120 |
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121 | static void my_sha256_update(my_sha256_ctx *ctx,
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122 | const unsigned char *data,
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123 | unsigned int length)
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124 | {
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125 | EVP_DigestUpdate(ctx->openssl_ctx, data, length);
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126 | }
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127 |
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128 | static void my_sha256_final(unsigned char *digest, my_sha256_ctx *ctx)
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129 | {
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130 | EVP_DigestFinal_ex(ctx->openssl_ctx, digest, NULL);
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131 | EVP_MD_CTX_destroy(ctx->openssl_ctx);
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132 | }
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133 |
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134 | #elif defined(USE_GNUTLS)
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135 |
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136 | typedef struct sha256_ctx my_sha256_ctx;
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137 |
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138 | static CURLcode my_sha256_init(my_sha256_ctx *ctx)
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139 | {
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140 | sha256_init(ctx);
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141 | return CURLE_OK;
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142 | }
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143 |
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144 | static void my_sha256_update(my_sha256_ctx *ctx,
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145 | const unsigned char *data,
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146 | unsigned int length)
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147 | {
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148 | sha256_update(ctx, length, data);
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149 | }
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150 |
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151 | static void my_sha256_final(unsigned char *digest, my_sha256_ctx *ctx)
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152 | {
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153 | sha256_digest(ctx, SHA256_DIGEST_SIZE, digest);
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154 | }
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155 |
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156 | #elif defined(USE_MBEDTLS)
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157 |
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158 | typedef mbedtls_sha256_context my_sha256_ctx;
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159 |
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160 | static CURLcode my_sha256_init(my_sha256_ctx *ctx)
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161 | {
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162 | #if !defined(HAS_MBEDTLS_RESULT_CODE_BASED_FUNCTIONS)
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163 | (void) mbedtls_sha256_starts(ctx, 0);
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164 | #else
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165 | (void) mbedtls_sha256_starts_ret(ctx, 0);
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166 | #endif
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167 | return CURLE_OK;
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168 | }
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169 |
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170 | static void my_sha256_update(my_sha256_ctx *ctx,
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171 | const unsigned char *data,
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172 | unsigned int length)
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173 | {
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174 | #if !defined(HAS_MBEDTLS_RESULT_CODE_BASED_FUNCTIONS)
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175 | (void) mbedtls_sha256_update(ctx, data, length);
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176 | #else
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177 | (void) mbedtls_sha256_update_ret(ctx, data, length);
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178 | #endif
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179 | }
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180 |
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181 | static void my_sha256_final(unsigned char *digest, my_sha256_ctx *ctx)
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182 | {
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183 | #if !defined(HAS_MBEDTLS_RESULT_CODE_BASED_FUNCTIONS)
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184 | (void) mbedtls_sha256_finish(ctx, digest);
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185 | #else
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186 | (void) mbedtls_sha256_finish_ret(ctx, digest);
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187 | #endif
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188 | }
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189 |
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190 | #elif defined(AN_APPLE_OS)
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191 | typedef CC_SHA256_CTX my_sha256_ctx;
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192 |
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193 | static CURLcode my_sha256_init(my_sha256_ctx *ctx)
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194 | {
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195 | (void) CC_SHA256_Init(ctx);
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196 | return CURLE_OK;
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197 | }
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198 |
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199 | static void my_sha256_update(my_sha256_ctx *ctx,
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200 | const unsigned char *data,
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201 | unsigned int length)
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202 | {
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203 | (void) CC_SHA256_Update(ctx, data, length);
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204 | }
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205 |
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206 | static void my_sha256_final(unsigned char *digest, my_sha256_ctx *ctx)
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207 | {
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208 | (void) CC_SHA256_Final(digest, ctx);
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209 | }
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210 |
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211 | #elif defined(USE_WIN32_CRYPTO)
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212 |
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213 | struct sha256_ctx {
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214 | HCRYPTPROV hCryptProv;
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215 | HCRYPTHASH hHash;
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216 | };
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217 | typedef struct sha256_ctx my_sha256_ctx;
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218 |
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219 | #if !defined(CALG_SHA_256)
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220 | #define CALG_SHA_256 0x0000800c
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221 | #endif
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222 |
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223 | static CURLcode my_sha256_init(my_sha256_ctx *ctx)
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224 | {
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225 | if(!CryptAcquireContext(&ctx->hCryptProv, NULL, NULL, PROV_RSA_AES,
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226 | CRYPT_VERIFYCONTEXT | CRYPT_SILENT))
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227 | return CURLE_OUT_OF_MEMORY;
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228 |
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229 | if(!CryptCreateHash(ctx->hCryptProv, CALG_SHA_256, 0, 0, &ctx->hHash)) {
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230 | CryptReleaseContext(ctx->hCryptProv, 0);
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231 | ctx->hCryptProv = 0;
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232 | return CURLE_FAILED_INIT;
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233 | }
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234 |
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235 | return CURLE_OK;
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236 | }
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237 |
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238 | static void my_sha256_update(my_sha256_ctx *ctx,
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239 | const unsigned char *data,
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240 | unsigned int length)
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241 | {
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242 | CryptHashData(ctx->hHash, (unsigned char *) data, length, 0);
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243 | }
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244 |
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245 | static void my_sha256_final(unsigned char *digest, my_sha256_ctx *ctx)
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246 | {
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247 | unsigned long length = 0;
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248 |
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249 | CryptGetHashParam(ctx->hHash, HP_HASHVAL, NULL, &length, 0);
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250 | if(length == SHA256_DIGEST_LENGTH)
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251 | CryptGetHashParam(ctx->hHash, HP_HASHVAL, digest, &length, 0);
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252 |
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253 | if(ctx->hHash)
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254 | CryptDestroyHash(ctx->hHash);
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255 |
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256 | if(ctx->hCryptProv)
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257 | CryptReleaseContext(ctx->hCryptProv, 0);
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258 | }
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259 |
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260 | #else
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261 |
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262 | /* When no other crypto library is available we use this code segment */
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263 |
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264 | /* This is based on SHA256 implementation in LibTomCrypt that was released into
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265 | * public domain by Tom St Denis. */
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266 |
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267 | #define WPA_GET_BE32(a) ((((unsigned long)(a)[0]) << 24) | \
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268 | (((unsigned long)(a)[1]) << 16) | \
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269 | (((unsigned long)(a)[2]) << 8) | \
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270 | ((unsigned long)(a)[3]))
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271 | #define WPA_PUT_BE32(a, val) \
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272 | do { \
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273 | (a)[0] = (unsigned char)((((unsigned long) (val)) >> 24) & 0xff); \
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274 | (a)[1] = (unsigned char)((((unsigned long) (val)) >> 16) & 0xff); \
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275 | (a)[2] = (unsigned char)((((unsigned long) (val)) >> 8) & 0xff); \
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276 | (a)[3] = (unsigned char)(((unsigned long) (val)) & 0xff); \
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277 | } while(0)
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278 |
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279 | #ifdef HAVE_LONGLONG
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280 | #define WPA_PUT_BE64(a, val) \
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281 | do { \
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282 | (a)[0] = (unsigned char)(((unsigned long long)(val)) >> 56); \
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283 | (a)[1] = (unsigned char)(((unsigned long long)(val)) >> 48); \
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284 | (a)[2] = (unsigned char)(((unsigned long long)(val)) >> 40); \
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285 | (a)[3] = (unsigned char)(((unsigned long long)(val)) >> 32); \
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286 | (a)[4] = (unsigned char)(((unsigned long long)(val)) >> 24); \
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287 | (a)[5] = (unsigned char)(((unsigned long long)(val)) >> 16); \
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288 | (a)[6] = (unsigned char)(((unsigned long long)(val)) >> 8); \
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289 | (a)[7] = (unsigned char)(((unsigned long long)(val)) & 0xff); \
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290 | } while(0)
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291 | #else
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292 | #define WPA_PUT_BE64(a, val) \
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293 | do { \
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294 | (a)[0] = (unsigned char)(((unsigned __int64)(val)) >> 56); \
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295 | (a)[1] = (unsigned char)(((unsigned __int64)(val)) >> 48); \
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296 | (a)[2] = (unsigned char)(((unsigned __int64)(val)) >> 40); \
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297 | (a)[3] = (unsigned char)(((unsigned __int64)(val)) >> 32); \
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298 | (a)[4] = (unsigned char)(((unsigned __int64)(val)) >> 24); \
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299 | (a)[5] = (unsigned char)(((unsigned __int64)(val)) >> 16); \
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300 | (a)[6] = (unsigned char)(((unsigned __int64)(val)) >> 8); \
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301 | (a)[7] = (unsigned char)(((unsigned __int64)(val)) & 0xff); \
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302 | } while(0)
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303 | #endif
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304 |
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305 | struct sha256_state {
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306 | #ifdef HAVE_LONGLONG
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307 | unsigned long long length;
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308 | #else
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309 | unsigned __int64 length;
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310 | #endif
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311 | unsigned long state[8], curlen;
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312 | unsigned char buf[64];
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313 | };
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314 | typedef struct sha256_state my_sha256_ctx;
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315 |
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316 | /* The K array */
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317 | static const unsigned long K[64] = {
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318 | 0x428a2f98UL, 0x71374491UL, 0xb5c0fbcfUL, 0xe9b5dba5UL, 0x3956c25bUL,
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319 | 0x59f111f1UL, 0x923f82a4UL, 0xab1c5ed5UL, 0xd807aa98UL, 0x12835b01UL,
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320 | 0x243185beUL, 0x550c7dc3UL, 0x72be5d74UL, 0x80deb1feUL, 0x9bdc06a7UL,
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321 | 0xc19bf174UL, 0xe49b69c1UL, 0xefbe4786UL, 0x0fc19dc6UL, 0x240ca1ccUL,
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322 | 0x2de92c6fUL, 0x4a7484aaUL, 0x5cb0a9dcUL, 0x76f988daUL, 0x983e5152UL,
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323 | 0xa831c66dUL, 0xb00327c8UL, 0xbf597fc7UL, 0xc6e00bf3UL, 0xd5a79147UL,
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324 | 0x06ca6351UL, 0x14292967UL, 0x27b70a85UL, 0x2e1b2138UL, 0x4d2c6dfcUL,
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325 | 0x53380d13UL, 0x650a7354UL, 0x766a0abbUL, 0x81c2c92eUL, 0x92722c85UL,
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326 | 0xa2bfe8a1UL, 0xa81a664bUL, 0xc24b8b70UL, 0xc76c51a3UL, 0xd192e819UL,
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327 | 0xd6990624UL, 0xf40e3585UL, 0x106aa070UL, 0x19a4c116UL, 0x1e376c08UL,
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328 | 0x2748774cUL, 0x34b0bcb5UL, 0x391c0cb3UL, 0x4ed8aa4aUL, 0x5b9cca4fUL,
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329 | 0x682e6ff3UL, 0x748f82eeUL, 0x78a5636fUL, 0x84c87814UL, 0x8cc70208UL,
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330 | 0x90befffaUL, 0xa4506cebUL, 0xbef9a3f7UL, 0xc67178f2UL
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331 | };
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332 |
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333 | /* Various logical functions */
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334 | #define RORc(x, y) \
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335 | (((((unsigned long)(x) & 0xFFFFFFFFUL) >> (unsigned long)((y) & 31)) | \
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336 | ((unsigned long)(x) << (unsigned long)(32 - ((y) & 31)))) & 0xFFFFFFFFUL)
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337 | #define Ch(x,y,z) (z ^ (x & (y ^ z)))
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338 | #define Maj(x,y,z) (((x | y) & z) | (x & y))
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339 | #define S(x, n) RORc((x), (n))
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340 | #define R(x, n) (((x)&0xFFFFFFFFUL)>>(n))
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341 | #define Sigma0(x) (S(x, 2) ^ S(x, 13) ^ S(x, 22))
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342 | #define Sigma1(x) (S(x, 6) ^ S(x, 11) ^ S(x, 25))
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343 | #define Gamma0(x) (S(x, 7) ^ S(x, 18) ^ R(x, 3))
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344 | #define Gamma1(x) (S(x, 17) ^ S(x, 19) ^ R(x, 10))
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345 |
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346 | /* Compress 512-bits */
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347 | static int sha256_compress(struct sha256_state *md,
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348 | unsigned char *buf)
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349 | {
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350 | unsigned long S[8], W[64];
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351 | int i;
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352 |
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353 | /* Copy state into S */
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354 | for(i = 0; i < 8; i++) {
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355 | S[i] = md->state[i];
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356 | }
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357 | /* copy the state into 512-bits into W[0..15] */
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358 | for(i = 0; i < 16; i++)
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359 | W[i] = WPA_GET_BE32(buf + (4 * i));
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360 | /* fill W[16..63] */
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361 | for(i = 16; i < 64; i++) {
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362 | W[i] = Gamma1(W[i - 2]) + W[i - 7] + Gamma0(W[i - 15]) +
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363 | W[i - 16];
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364 | }
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365 |
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366 | /* Compress */
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367 | #define RND(a,b,c,d,e,f,g,h,i) \
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368 | do { \
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369 | unsigned long t0 = h + Sigma1(e) + Ch(e, f, g) + K[i] + W[i]; \
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370 | unsigned long t1 = Sigma0(a) + Maj(a, b, c); \
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371 | d += t0; \
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372 | h = t0 + t1; \
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373 | } while(0)
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374 |
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375 | for(i = 0; i < 64; ++i) {
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376 | unsigned long t;
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377 | RND(S[0], S[1], S[2], S[3], S[4], S[5], S[6], S[7], i);
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378 | t = S[7]; S[7] = S[6]; S[6] = S[5]; S[5] = S[4];
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379 | S[4] = S[3]; S[3] = S[2]; S[2] = S[1]; S[1] = S[0]; S[0] = t;
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380 | }
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381 |
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382 | /* Feedback */
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383 | for(i = 0; i < 8; i++) {
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384 | md->state[i] = md->state[i] + S[i];
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385 | }
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386 |
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387 | return 0;
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388 | }
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389 |
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390 | /* Initialize the hash state */
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391 | static CURLcode my_sha256_init(struct sha256_state *md)
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392 | {
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393 | md->curlen = 0;
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394 | md->length = 0;
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395 | md->state[0] = 0x6A09E667UL;
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396 | md->state[1] = 0xBB67AE85UL;
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397 | md->state[2] = 0x3C6EF372UL;
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398 | md->state[3] = 0xA54FF53AUL;
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399 | md->state[4] = 0x510E527FUL;
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400 | md->state[5] = 0x9B05688CUL;
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401 | md->state[6] = 0x1F83D9ABUL;
|
---|
402 | md->state[7] = 0x5BE0CD19UL;
|
---|
403 |
|
---|
404 | return CURLE_OK;
|
---|
405 | }
|
---|
406 |
|
---|
407 | /*
|
---|
408 | Process a block of memory though the hash
|
---|
409 | @param md The hash state
|
---|
410 | @param in The data to hash
|
---|
411 | @param inlen The length of the data (octets)
|
---|
412 | @return 0 if successful
|
---|
413 | */
|
---|
414 | static int my_sha256_update(struct sha256_state *md,
|
---|
415 | const unsigned char *in,
|
---|
416 | unsigned long inlen)
|
---|
417 | {
|
---|
418 | unsigned long n;
|
---|
419 |
|
---|
420 | #define block_size 64
|
---|
421 | if(md->curlen > sizeof(md->buf))
|
---|
422 | return -1;
|
---|
423 | while(inlen > 0) {
|
---|
424 | if(md->curlen == 0 && inlen >= block_size) {
|
---|
425 | if(sha256_compress(md, (unsigned char *)in) < 0)
|
---|
426 | return -1;
|
---|
427 | md->length += block_size * 8;
|
---|
428 | in += block_size;
|
---|
429 | inlen -= block_size;
|
---|
430 | }
|
---|
431 | else {
|
---|
432 | n = CURLMIN(inlen, (block_size - md->curlen));
|
---|
433 | memcpy(md->buf + md->curlen, in, n);
|
---|
434 | md->curlen += n;
|
---|
435 | in += n;
|
---|
436 | inlen -= n;
|
---|
437 | if(md->curlen == block_size) {
|
---|
438 | if(sha256_compress(md, md->buf) < 0)
|
---|
439 | return -1;
|
---|
440 | md->length += 8 * block_size;
|
---|
441 | md->curlen = 0;
|
---|
442 | }
|
---|
443 | }
|
---|
444 | }
|
---|
445 |
|
---|
446 | return 0;
|
---|
447 | }
|
---|
448 |
|
---|
449 | /*
|
---|
450 | Terminate the hash to get the digest
|
---|
451 | @param md The hash state
|
---|
452 | @param out [out] The destination of the hash (32 bytes)
|
---|
453 | @return 0 if successful
|
---|
454 | */
|
---|
455 | static int my_sha256_final(unsigned char *out,
|
---|
456 | struct sha256_state *md)
|
---|
457 | {
|
---|
458 | int i;
|
---|
459 |
|
---|
460 | if(md->curlen >= sizeof(md->buf))
|
---|
461 | return -1;
|
---|
462 |
|
---|
463 | /* Increase the length of the message */
|
---|
464 | md->length += md->curlen * 8;
|
---|
465 |
|
---|
466 | /* Append the '1' bit */
|
---|
467 | md->buf[md->curlen++] = (unsigned char)0x80;
|
---|
468 |
|
---|
469 | /* If the length is currently above 56 bytes we append zeros
|
---|
470 | * then compress. Then we can fall back to padding zeros and length
|
---|
471 | * encoding like normal.
|
---|
472 | */
|
---|
473 | if(md->curlen > 56) {
|
---|
474 | while(md->curlen < 64) {
|
---|
475 | md->buf[md->curlen++] = (unsigned char)0;
|
---|
476 | }
|
---|
477 | sha256_compress(md, md->buf);
|
---|
478 | md->curlen = 0;
|
---|
479 | }
|
---|
480 |
|
---|
481 | /* Pad up to 56 bytes of zeroes */
|
---|
482 | while(md->curlen < 56) {
|
---|
483 | md->buf[md->curlen++] = (unsigned char)0;
|
---|
484 | }
|
---|
485 |
|
---|
486 | /* Store length */
|
---|
487 | WPA_PUT_BE64(md->buf + 56, md->length);
|
---|
488 | sha256_compress(md, md->buf);
|
---|
489 |
|
---|
490 | /* Copy output */
|
---|
491 | for(i = 0; i < 8; i++)
|
---|
492 | WPA_PUT_BE32(out + (4 * i), md->state[i]);
|
---|
493 |
|
---|
494 | return 0;
|
---|
495 | }
|
---|
496 |
|
---|
497 | #endif /* CRYPTO LIBS */
|
---|
498 |
|
---|
499 | /*
|
---|
500 | * Curl_sha256it()
|
---|
501 | *
|
---|
502 | * Generates a SHA256 hash for the given input data.
|
---|
503 | *
|
---|
504 | * Parameters:
|
---|
505 | *
|
---|
506 | * output [in/out] - The output buffer.
|
---|
507 | * input [in] - The input data.
|
---|
508 | * length [in] - The input length.
|
---|
509 | *
|
---|
510 | * Returns CURLE_OK on success.
|
---|
511 | */
|
---|
512 | CURLcode Curl_sha256it(unsigned char *output, const unsigned char *input,
|
---|
513 | const size_t length)
|
---|
514 | {
|
---|
515 | CURLcode result;
|
---|
516 | my_sha256_ctx ctx;
|
---|
517 |
|
---|
518 | result = my_sha256_init(&ctx);
|
---|
519 | if(!result) {
|
---|
520 | my_sha256_update(&ctx, input, curlx_uztoui(length));
|
---|
521 | my_sha256_final(output, &ctx);
|
---|
522 | }
|
---|
523 | return result;
|
---|
524 | }
|
---|
525 |
|
---|
526 |
|
---|
527 | const struct HMAC_params Curl_HMAC_SHA256[] = {
|
---|
528 | {
|
---|
529 | /* Hash initialization function. */
|
---|
530 | CURLX_FUNCTION_CAST(HMAC_hinit_func, my_sha256_init),
|
---|
531 | /* Hash update function. */
|
---|
532 | CURLX_FUNCTION_CAST(HMAC_hupdate_func, my_sha256_update),
|
---|
533 | /* Hash computation end function. */
|
---|
534 | CURLX_FUNCTION_CAST(HMAC_hfinal_func, my_sha256_final),
|
---|
535 | /* Size of hash context structure. */
|
---|
536 | sizeof(my_sha256_ctx),
|
---|
537 | /* Maximum key length. */
|
---|
538 | 64,
|
---|
539 | /* Result size. */
|
---|
540 | 32
|
---|
541 | }
|
---|
542 | };
|
---|
543 |
|
---|
544 |
|
---|
545 | #endif /* AWS, DIGEST, or libSSH2 */
|
---|