1 | /*
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2 | * Copyright 2019-2022 The OpenSSL Project Authors. All Rights Reserved.
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3 | *
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4 | * Licensed under the Apache License 2.0 (the "License"). You may not use
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5 | * this file except in compliance with the License. You can obtain a copy
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6 | * in the file LICENSE in the source distribution or at
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7 | * https://www.openssl.org/source/license.html
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8 | */
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9 |
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10 | #include <openssl/crypto.h>
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11 | #include <openssl/evp.h>
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12 | #include <openssl/err.h>
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13 | #include "internal/cryptlib.h"
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14 | #include "internal/refcount.h"
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15 | #include "internal/provider.h"
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16 | #include "internal/core.h"
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17 | #include "internal/numbers.h" /* includes SIZE_MAX */
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18 | #include "crypto/evp.h"
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19 | #include "evp_local.h"
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20 |
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21 | static EVP_KEYEXCH *evp_keyexch_new(OSSL_PROVIDER *prov)
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22 | {
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23 | EVP_KEYEXCH *exchange = OPENSSL_zalloc(sizeof(EVP_KEYEXCH));
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24 |
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25 | if (exchange == NULL) {
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26 | ERR_raise(ERR_LIB_EVP, ERR_R_MALLOC_FAILURE);
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27 | return NULL;
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28 | }
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29 |
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30 | exchange->lock = CRYPTO_THREAD_lock_new();
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31 | if (exchange->lock == NULL) {
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32 | ERR_raise(ERR_LIB_EVP, ERR_R_MALLOC_FAILURE);
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33 | OPENSSL_free(exchange);
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34 | return NULL;
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35 | }
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36 | exchange->prov = prov;
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37 | ossl_provider_up_ref(prov);
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38 | exchange->refcnt = 1;
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39 |
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40 | return exchange;
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41 | }
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42 |
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43 | static void *evp_keyexch_from_algorithm(int name_id,
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44 | const OSSL_ALGORITHM *algodef,
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45 | OSSL_PROVIDER *prov)
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46 | {
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47 | const OSSL_DISPATCH *fns = algodef->implementation;
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48 | EVP_KEYEXCH *exchange = NULL;
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49 | int fncnt = 0, sparamfncnt = 0, gparamfncnt = 0;
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50 |
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51 | if ((exchange = evp_keyexch_new(prov)) == NULL) {
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52 | ERR_raise(ERR_LIB_EVP, ERR_R_MALLOC_FAILURE);
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53 | goto err;
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54 | }
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55 |
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56 | exchange->name_id = name_id;
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57 | if ((exchange->type_name = ossl_algorithm_get1_first_name(algodef)) == NULL)
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58 | goto err;
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59 | exchange->description = algodef->algorithm_description;
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60 |
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61 | for (; fns->function_id != 0; fns++) {
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62 | switch (fns->function_id) {
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63 | case OSSL_FUNC_KEYEXCH_NEWCTX:
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64 | if (exchange->newctx != NULL)
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65 | break;
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66 | exchange->newctx = OSSL_FUNC_keyexch_newctx(fns);
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67 | fncnt++;
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68 | break;
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69 | case OSSL_FUNC_KEYEXCH_INIT:
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70 | if (exchange->init != NULL)
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71 | break;
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72 | exchange->init = OSSL_FUNC_keyexch_init(fns);
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73 | fncnt++;
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74 | break;
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75 | case OSSL_FUNC_KEYEXCH_SET_PEER:
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76 | if (exchange->set_peer != NULL)
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77 | break;
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78 | exchange->set_peer = OSSL_FUNC_keyexch_set_peer(fns);
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79 | break;
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80 | case OSSL_FUNC_KEYEXCH_DERIVE:
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81 | if (exchange->derive != NULL)
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82 | break;
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83 | exchange->derive = OSSL_FUNC_keyexch_derive(fns);
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84 | fncnt++;
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85 | break;
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86 | case OSSL_FUNC_KEYEXCH_FREECTX:
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87 | if (exchange->freectx != NULL)
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88 | break;
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89 | exchange->freectx = OSSL_FUNC_keyexch_freectx(fns);
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90 | fncnt++;
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91 | break;
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92 | case OSSL_FUNC_KEYEXCH_DUPCTX:
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93 | if (exchange->dupctx != NULL)
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94 | break;
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95 | exchange->dupctx = OSSL_FUNC_keyexch_dupctx(fns);
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96 | break;
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97 | case OSSL_FUNC_KEYEXCH_GET_CTX_PARAMS:
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98 | if (exchange->get_ctx_params != NULL)
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99 | break;
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100 | exchange->get_ctx_params = OSSL_FUNC_keyexch_get_ctx_params(fns);
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101 | gparamfncnt++;
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102 | break;
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103 | case OSSL_FUNC_KEYEXCH_GETTABLE_CTX_PARAMS:
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104 | if (exchange->gettable_ctx_params != NULL)
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105 | break;
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106 | exchange->gettable_ctx_params
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107 | = OSSL_FUNC_keyexch_gettable_ctx_params(fns);
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108 | gparamfncnt++;
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109 | break;
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110 | case OSSL_FUNC_KEYEXCH_SET_CTX_PARAMS:
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111 | if (exchange->set_ctx_params != NULL)
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112 | break;
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113 | exchange->set_ctx_params = OSSL_FUNC_keyexch_set_ctx_params(fns);
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114 | sparamfncnt++;
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115 | break;
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116 | case OSSL_FUNC_KEYEXCH_SETTABLE_CTX_PARAMS:
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117 | if (exchange->settable_ctx_params != NULL)
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118 | break;
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119 | exchange->settable_ctx_params
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120 | = OSSL_FUNC_keyexch_settable_ctx_params(fns);
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121 | sparamfncnt++;
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122 | break;
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123 | }
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124 | }
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125 | if (fncnt != 4
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126 | || (gparamfncnt != 0 && gparamfncnt != 2)
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127 | || (sparamfncnt != 0 && sparamfncnt != 2)) {
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128 | /*
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129 | * In order to be a consistent set of functions we must have at least
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130 | * a complete set of "exchange" functions: init, derive, newctx,
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131 | * and freectx. The set_ctx_params and settable_ctx_params functions are
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132 | * optional, but if one of them is present then the other one must also
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133 | * be present. Same goes for get_ctx_params and gettable_ctx_params.
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134 | * The dupctx and set_peer functions are optional.
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135 | */
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136 | ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_PROVIDER_FUNCTIONS);
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137 | goto err;
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138 | }
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139 |
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140 | return exchange;
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141 |
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142 | err:
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143 | EVP_KEYEXCH_free(exchange);
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144 | return NULL;
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145 | }
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146 |
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147 | void EVP_KEYEXCH_free(EVP_KEYEXCH *exchange)
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148 | {
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149 | int i;
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150 |
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151 | if (exchange == NULL)
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152 | return;
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153 | CRYPTO_DOWN_REF(&exchange->refcnt, &i, exchange->lock);
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154 | if (i > 0)
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155 | return;
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156 | OPENSSL_free(exchange->type_name);
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157 | ossl_provider_free(exchange->prov);
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158 | CRYPTO_THREAD_lock_free(exchange->lock);
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159 | OPENSSL_free(exchange);
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160 | }
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161 |
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162 | int EVP_KEYEXCH_up_ref(EVP_KEYEXCH *exchange)
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163 | {
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164 | int ref = 0;
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165 |
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166 | CRYPTO_UP_REF(&exchange->refcnt, &ref, exchange->lock);
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167 | return 1;
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168 | }
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169 |
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170 | OSSL_PROVIDER *EVP_KEYEXCH_get0_provider(const EVP_KEYEXCH *exchange)
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171 | {
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172 | return exchange->prov;
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173 | }
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174 |
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175 | EVP_KEYEXCH *EVP_KEYEXCH_fetch(OSSL_LIB_CTX *ctx, const char *algorithm,
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176 | const char *properties)
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177 | {
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178 | return evp_generic_fetch(ctx, OSSL_OP_KEYEXCH, algorithm, properties,
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179 | evp_keyexch_from_algorithm,
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180 | (int (*)(void *))EVP_KEYEXCH_up_ref,
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181 | (void (*)(void *))EVP_KEYEXCH_free);
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182 | }
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183 |
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184 | EVP_KEYEXCH *evp_keyexch_fetch_from_prov(OSSL_PROVIDER *prov,
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185 | const char *algorithm,
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186 | const char *properties)
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187 | {
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188 | return evp_generic_fetch_from_prov(prov, OSSL_OP_KEYEXCH,
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189 | algorithm, properties,
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190 | evp_keyexch_from_algorithm,
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191 | (int (*)(void *))EVP_KEYEXCH_up_ref,
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192 | (void (*)(void *))EVP_KEYEXCH_free);
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193 | }
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194 |
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195 | int EVP_PKEY_derive_init(EVP_PKEY_CTX *ctx)
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196 | {
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197 | return EVP_PKEY_derive_init_ex(ctx, NULL);
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198 | }
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199 |
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200 | int EVP_PKEY_derive_init_ex(EVP_PKEY_CTX *ctx, const OSSL_PARAM params[])
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201 | {
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202 | int ret;
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203 | void *provkey = NULL;
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204 | EVP_KEYEXCH *exchange = NULL;
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205 | EVP_KEYMGMT *tmp_keymgmt = NULL;
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206 | const OSSL_PROVIDER *tmp_prov = NULL;
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207 | const char *supported_exch = NULL;
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208 | int iter;
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209 |
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210 | if (ctx == NULL) {
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211 | ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);
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212 | return -2;
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213 | }
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214 |
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215 | evp_pkey_ctx_free_old_ops(ctx);
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216 | ctx->operation = EVP_PKEY_OP_DERIVE;
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217 |
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218 | ERR_set_mark();
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219 |
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220 | if (evp_pkey_ctx_is_legacy(ctx))
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221 | goto legacy;
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222 |
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223 | /*
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224 | * Some algorithms (e.g. legacy KDFs) don't have a pkey - so we create
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225 | * a blank one.
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226 | */
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227 | if (ctx->pkey == NULL) {
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228 | EVP_PKEY *pkey = EVP_PKEY_new();
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229 |
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230 | if (pkey == NULL
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231 | || !EVP_PKEY_set_type_by_keymgmt(pkey, ctx->keymgmt)
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232 | || (pkey->keydata = evp_keymgmt_newdata(ctx->keymgmt)) == NULL) {
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233 | ERR_clear_last_mark();
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234 | EVP_PKEY_free(pkey);
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235 | ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);
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236 | goto err;
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237 | }
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238 | ctx->pkey = pkey;
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239 | }
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240 |
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241 | /*
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242 | * Try to derive the supported exch from |ctx->keymgmt|.
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243 | */
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244 | if (!ossl_assert(ctx->pkey->keymgmt == NULL
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245 | || ctx->pkey->keymgmt == ctx->keymgmt)) {
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246 | ERR_clear_last_mark();
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247 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
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248 | goto err;
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249 | }
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250 | supported_exch = evp_keymgmt_util_query_operation_name(ctx->keymgmt,
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251 | OSSL_OP_KEYEXCH);
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252 | if (supported_exch == NULL) {
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253 | ERR_clear_last_mark();
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254 | ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);
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255 | goto err;
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256 | }
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257 |
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258 |
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259 | /*
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260 | * We perform two iterations:
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261 | *
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262 | * 1. Do the normal exchange fetch, using the fetching data given by
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263 | * the EVP_PKEY_CTX.
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264 | * 2. Do the provider specific exchange fetch, from the same provider
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265 | * as |ctx->keymgmt|
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266 | *
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267 | * We then try to fetch the keymgmt from the same provider as the
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268 | * exchange, and try to export |ctx->pkey| to that keymgmt (when
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269 | * this keymgmt happens to be the same as |ctx->keymgmt|, the export
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270 | * is a no-op, but we call it anyway to not complicate the code even
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271 | * more).
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272 | * If the export call succeeds (returns a non-NULL provider key pointer),
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273 | * we're done and can perform the operation itself. If not, we perform
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274 | * the second iteration, or jump to legacy.
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275 | */
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276 | for (iter = 1, provkey = NULL; iter < 3 && provkey == NULL; iter++) {
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277 | EVP_KEYMGMT *tmp_keymgmt_tofree = NULL;
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278 |
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279 | /*
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280 | * If we're on the second iteration, free the results from the first.
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281 | * They are NULL on the first iteration, so no need to check what
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282 | * iteration we're on.
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283 | */
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284 | EVP_KEYEXCH_free(exchange);
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285 | EVP_KEYMGMT_free(tmp_keymgmt);
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286 |
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287 | switch (iter) {
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288 | case 1:
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289 | exchange =
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290 | EVP_KEYEXCH_fetch(ctx->libctx, supported_exch, ctx->propquery);
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291 | if (exchange != NULL)
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292 | tmp_prov = EVP_KEYEXCH_get0_provider(exchange);
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293 | break;
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294 | case 2:
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295 | tmp_prov = EVP_KEYMGMT_get0_provider(ctx->keymgmt);
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296 | exchange =
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297 | evp_keyexch_fetch_from_prov((OSSL_PROVIDER *)tmp_prov,
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298 | supported_exch, ctx->propquery);
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299 | if (exchange == NULL)
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300 | goto legacy;
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301 | break;
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302 | }
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303 | if (exchange == NULL)
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304 | continue;
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305 |
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306 | /*
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307 | * Ensure that the key is provided, either natively, or as a cached
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308 | * export. We start by fetching the keymgmt with the same name as
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309 | * |ctx->keymgmt|, but from the provider of the exchange method, using
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310 | * the same property query as when fetching the exchange method.
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311 | * With the keymgmt we found (if we did), we try to export |ctx->pkey|
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312 | * to it (evp_pkey_export_to_provider() is smart enough to only actually
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313 | * export it if |tmp_keymgmt| is different from |ctx->pkey|'s keymgmt)
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314 | */
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315 | tmp_keymgmt_tofree = tmp_keymgmt =
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316 | evp_keymgmt_fetch_from_prov((OSSL_PROVIDER *)tmp_prov,
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317 | EVP_KEYMGMT_get0_name(ctx->keymgmt),
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318 | ctx->propquery);
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319 | if (tmp_keymgmt != NULL)
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320 | provkey = evp_pkey_export_to_provider(ctx->pkey, ctx->libctx,
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321 | &tmp_keymgmt, ctx->propquery);
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322 | if (tmp_keymgmt == NULL)
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323 | EVP_KEYMGMT_free(tmp_keymgmt_tofree);
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324 | }
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325 |
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326 | if (provkey == NULL) {
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327 | EVP_KEYEXCH_free(exchange);
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328 | goto legacy;
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329 | }
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330 |
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331 | ERR_pop_to_mark();
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332 |
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333 | /* No more legacy from here down to legacy: */
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334 |
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335 | ctx->op.kex.exchange = exchange;
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336 | ctx->op.kex.algctx = exchange->newctx(ossl_provider_ctx(exchange->prov));
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337 | if (ctx->op.kex.algctx == NULL) {
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338 | /* The provider key can stay in the cache */
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339 | ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);
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340 | goto err;
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341 | }
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342 | ret = exchange->init(ctx->op.kex.algctx, provkey, params);
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343 |
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344 | EVP_KEYMGMT_free(tmp_keymgmt);
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345 | return ret ? 1 : 0;
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346 | err:
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347 | evp_pkey_ctx_free_old_ops(ctx);
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348 | ctx->operation = EVP_PKEY_OP_UNDEFINED;
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349 | EVP_KEYMGMT_free(tmp_keymgmt);
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350 | return 0;
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351 |
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352 | legacy:
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353 | /*
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354 | * If we don't have the full support we need with provided methods,
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355 | * let's go see if legacy does.
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356 | */
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357 | ERR_pop_to_mark();
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358 |
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359 | #ifdef FIPS_MODULE
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360 | return 0;
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361 | #else
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362 | if (ctx->pmeth == NULL || ctx->pmeth->derive == NULL) {
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363 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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364 | return -2;
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365 | }
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366 |
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367 | if (ctx->pmeth->derive_init == NULL)
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368 | return 1;
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369 | ret = ctx->pmeth->derive_init(ctx);
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370 | if (ret <= 0)
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371 | ctx->operation = EVP_PKEY_OP_UNDEFINED;
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372 | EVP_KEYMGMT_free(tmp_keymgmt);
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373 | return ret;
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374 | #endif
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375 | }
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376 |
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377 | int EVP_PKEY_derive_set_peer_ex(EVP_PKEY_CTX *ctx, EVP_PKEY *peer,
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378 | int validate_peer)
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379 | {
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380 | int ret = 0, check;
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381 | void *provkey = NULL;
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382 | EVP_PKEY_CTX *check_ctx = NULL;
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383 | EVP_KEYMGMT *tmp_keymgmt = NULL, *tmp_keymgmt_tofree = NULL;
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384 |
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385 | if (ctx == NULL) {
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386 | ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);
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387 | return -1;
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388 | }
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389 |
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390 | if (!EVP_PKEY_CTX_IS_DERIVE_OP(ctx) || ctx->op.kex.algctx == NULL)
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391 | goto legacy;
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392 |
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393 | if (ctx->op.kex.exchange->set_peer == NULL) {
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394 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
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395 | return -2;
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396 | }
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397 |
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398 | if (validate_peer) {
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399 | check_ctx = EVP_PKEY_CTX_new_from_pkey(ctx->libctx, peer, ctx->propquery);
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400 | if (check_ctx == NULL)
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401 | return -1;
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402 | check = EVP_PKEY_public_check(check_ctx);
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403 | EVP_PKEY_CTX_free(check_ctx);
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404 | if (check <= 0)
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405 | return -1;
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406 | }
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407 |
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408 | /*
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409 | * Ensure that the |peer| is provided, either natively, or as a cached
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410 | * export. We start by fetching the keymgmt with the same name as
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411 | * |ctx->keymgmt|, but from the provider of the exchange method, using
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412 | * the same property query as when fetching the exchange method.
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413 | * With the keymgmt we found (if we did), we try to export |peer|
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414 | * to it (evp_pkey_export_to_provider() is smart enough to only actually
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415 | * export it if |tmp_keymgmt| is different from |peer|'s keymgmt)
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416 | */
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417 | tmp_keymgmt_tofree = tmp_keymgmt =
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418 | evp_keymgmt_fetch_from_prov((OSSL_PROVIDER *)
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419 | EVP_KEYEXCH_get0_provider(ctx->op.kex.exchange),
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420 | EVP_KEYMGMT_get0_name(ctx->keymgmt),
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421 | ctx->propquery);
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422 | if (tmp_keymgmt != NULL)
|
---|
423 | provkey = evp_pkey_export_to_provider(peer, ctx->libctx,
|
---|
424 | &tmp_keymgmt, ctx->propquery);
|
---|
425 | EVP_KEYMGMT_free(tmp_keymgmt_tofree);
|
---|
426 |
|
---|
427 | /*
|
---|
428 | * If making the key provided wasn't possible, legacy may be able to pick
|
---|
429 | * it up
|
---|
430 | */
|
---|
431 | if (provkey == NULL)
|
---|
432 | goto legacy;
|
---|
433 | return ctx->op.kex.exchange->set_peer(ctx->op.kex.algctx, provkey);
|
---|
434 |
|
---|
435 | legacy:
|
---|
436 | #ifdef FIPS_MODULE
|
---|
437 | return ret;
|
---|
438 | #else
|
---|
439 | if (ctx->pmeth == NULL
|
---|
440 | || !(ctx->pmeth->derive != NULL
|
---|
441 | || ctx->pmeth->encrypt != NULL
|
---|
442 | || ctx->pmeth->decrypt != NULL)
|
---|
443 | || ctx->pmeth->ctrl == NULL) {
|
---|
444 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
|
---|
445 | return -2;
|
---|
446 | }
|
---|
447 | if (ctx->operation != EVP_PKEY_OP_DERIVE
|
---|
448 | && ctx->operation != EVP_PKEY_OP_ENCRYPT
|
---|
449 | && ctx->operation != EVP_PKEY_OP_DECRYPT) {
|
---|
450 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_INITIALIZED);
|
---|
451 | return -1;
|
---|
452 | }
|
---|
453 |
|
---|
454 | ret = ctx->pmeth->ctrl(ctx, EVP_PKEY_CTRL_PEER_KEY, 0, peer);
|
---|
455 |
|
---|
456 | if (ret <= 0)
|
---|
457 | return ret;
|
---|
458 |
|
---|
459 | if (ret == 2)
|
---|
460 | return 1;
|
---|
461 |
|
---|
462 | if (ctx->pkey == NULL) {
|
---|
463 | ERR_raise(ERR_LIB_EVP, EVP_R_NO_KEY_SET);
|
---|
464 | return -1;
|
---|
465 | }
|
---|
466 |
|
---|
467 | if (ctx->pkey->type != peer->type) {
|
---|
468 | ERR_raise(ERR_LIB_EVP, EVP_R_DIFFERENT_KEY_TYPES);
|
---|
469 | return -1;
|
---|
470 | }
|
---|
471 |
|
---|
472 | /*
|
---|
473 | * For clarity. The error is if parameters in peer are
|
---|
474 | * present (!missing) but don't match. EVP_PKEY_parameters_eq may return
|
---|
475 | * 1 (match), 0 (don't match) and -2 (comparison is not defined). -1
|
---|
476 | * (different key types) is impossible here because it is checked earlier.
|
---|
477 | * -2 is OK for us here, as well as 1, so we can check for 0 only.
|
---|
478 | */
|
---|
479 | if (!EVP_PKEY_missing_parameters(peer) &&
|
---|
480 | !EVP_PKEY_parameters_eq(ctx->pkey, peer)) {
|
---|
481 | ERR_raise(ERR_LIB_EVP, EVP_R_DIFFERENT_PARAMETERS);
|
---|
482 | return -1;
|
---|
483 | }
|
---|
484 |
|
---|
485 | EVP_PKEY_free(ctx->peerkey);
|
---|
486 | ctx->peerkey = peer;
|
---|
487 |
|
---|
488 | ret = ctx->pmeth->ctrl(ctx, EVP_PKEY_CTRL_PEER_KEY, 1, peer);
|
---|
489 |
|
---|
490 | if (ret <= 0) {
|
---|
491 | ctx->peerkey = NULL;
|
---|
492 | return ret;
|
---|
493 | }
|
---|
494 |
|
---|
495 | EVP_PKEY_up_ref(peer);
|
---|
496 | return 1;
|
---|
497 | #endif
|
---|
498 | }
|
---|
499 |
|
---|
500 | int EVP_PKEY_derive_set_peer(EVP_PKEY_CTX *ctx, EVP_PKEY *peer)
|
---|
501 | {
|
---|
502 | return EVP_PKEY_derive_set_peer_ex(ctx, peer, 1);
|
---|
503 | }
|
---|
504 |
|
---|
505 | int EVP_PKEY_derive(EVP_PKEY_CTX *ctx, unsigned char *key, size_t *pkeylen)
|
---|
506 | {
|
---|
507 | int ret;
|
---|
508 |
|
---|
509 | if (ctx == NULL || pkeylen == NULL) {
|
---|
510 | ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);
|
---|
511 | return -1;
|
---|
512 | }
|
---|
513 |
|
---|
514 | if (!EVP_PKEY_CTX_IS_DERIVE_OP(ctx)) {
|
---|
515 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_INITIALIZED);
|
---|
516 | return -1;
|
---|
517 | }
|
---|
518 |
|
---|
519 | if (ctx->op.kex.algctx == NULL)
|
---|
520 | goto legacy;
|
---|
521 |
|
---|
522 | ret = ctx->op.kex.exchange->derive(ctx->op.kex.algctx, key, pkeylen,
|
---|
523 | key != NULL ? *pkeylen : 0);
|
---|
524 |
|
---|
525 | return ret;
|
---|
526 | legacy:
|
---|
527 | if (ctx->pmeth == NULL || ctx->pmeth->derive == NULL) {
|
---|
528 | ERR_raise(ERR_LIB_EVP, EVP_R_OPERATION_NOT_SUPPORTED_FOR_THIS_KEYTYPE);
|
---|
529 | return -2;
|
---|
530 | }
|
---|
531 |
|
---|
532 | M_check_autoarg(ctx, key, pkeylen, EVP_F_EVP_PKEY_DERIVE)
|
---|
533 | return ctx->pmeth->derive(ctx, key, pkeylen);
|
---|
534 | }
|
---|
535 |
|
---|
536 | int evp_keyexch_get_number(const EVP_KEYEXCH *keyexch)
|
---|
537 | {
|
---|
538 | return keyexch->name_id;
|
---|
539 | }
|
---|
540 |
|
---|
541 | const char *EVP_KEYEXCH_get0_name(const EVP_KEYEXCH *keyexch)
|
---|
542 | {
|
---|
543 | return keyexch->type_name;
|
---|
544 | }
|
---|
545 |
|
---|
546 | const char *EVP_KEYEXCH_get0_description(const EVP_KEYEXCH *keyexch)
|
---|
547 | {
|
---|
548 | return keyexch->description;
|
---|
549 | }
|
---|
550 |
|
---|
551 | int EVP_KEYEXCH_is_a(const EVP_KEYEXCH *keyexch, const char *name)
|
---|
552 | {
|
---|
553 | return keyexch != NULL
|
---|
554 | && evp_is_a(keyexch->prov, keyexch->name_id, NULL, name);
|
---|
555 | }
|
---|
556 |
|
---|
557 | void EVP_KEYEXCH_do_all_provided(OSSL_LIB_CTX *libctx,
|
---|
558 | void (*fn)(EVP_KEYEXCH *keyexch, void *arg),
|
---|
559 | void *arg)
|
---|
560 | {
|
---|
561 | evp_generic_do_all(libctx, OSSL_OP_KEYEXCH,
|
---|
562 | (void (*)(void *, void *))fn, arg,
|
---|
563 | evp_keyexch_from_algorithm,
|
---|
564 | (int (*)(void *))EVP_KEYEXCH_up_ref,
|
---|
565 | (void (*)(void *))EVP_KEYEXCH_free);
|
---|
566 | }
|
---|
567 |
|
---|
568 | int EVP_KEYEXCH_names_do_all(const EVP_KEYEXCH *keyexch,
|
---|
569 | void (*fn)(const char *name, void *data),
|
---|
570 | void *data)
|
---|
571 | {
|
---|
572 | if (keyexch->prov != NULL)
|
---|
573 | return evp_names_do_all(keyexch->prov, keyexch->name_id, fn, data);
|
---|
574 |
|
---|
575 | return 1;
|
---|
576 | }
|
---|
577 |
|
---|
578 | const OSSL_PARAM *EVP_KEYEXCH_gettable_ctx_params(const EVP_KEYEXCH *keyexch)
|
---|
579 | {
|
---|
580 | void *provctx;
|
---|
581 |
|
---|
582 | if (keyexch == NULL || keyexch->gettable_ctx_params == NULL)
|
---|
583 | return NULL;
|
---|
584 |
|
---|
585 | provctx = ossl_provider_ctx(EVP_KEYEXCH_get0_provider(keyexch));
|
---|
586 | return keyexch->gettable_ctx_params(NULL, provctx);
|
---|
587 | }
|
---|
588 |
|
---|
589 | const OSSL_PARAM *EVP_KEYEXCH_settable_ctx_params(const EVP_KEYEXCH *keyexch)
|
---|
590 | {
|
---|
591 | void *provctx;
|
---|
592 |
|
---|
593 | if (keyexch == NULL || keyexch->settable_ctx_params == NULL)
|
---|
594 | return NULL;
|
---|
595 | provctx = ossl_provider_ctx(EVP_KEYEXCH_get0_provider(keyexch));
|
---|
596 | return keyexch->settable_ctx_params(NULL, provctx);
|
---|
597 | }
|
---|