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/core_names.h>
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11 | #include "internal/cryptlib.h"
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12 | #include "internal/nelem.h"
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13 | #include "crypto/evp.h"
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14 | #include "internal/core.h"
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15 | #include "internal/provider.h"
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16 | #include "evp_local.h"
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17 |
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18 | /*
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19 | * match_type() checks if two EVP_KEYMGMT are matching key types. This
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20 | * function assumes that the caller has made all the necessary NULL checks.
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21 | */
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22 | static int match_type(const EVP_KEYMGMT *keymgmt1, const EVP_KEYMGMT *keymgmt2)
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23 | {
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24 | const char *name2 = EVP_KEYMGMT_get0_name(keymgmt2);
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25 |
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26 | return EVP_KEYMGMT_is_a(keymgmt1, name2);
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27 | }
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28 |
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29 | int evp_keymgmt_util_try_import(const OSSL_PARAM params[], void *arg)
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30 | {
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31 | struct evp_keymgmt_util_try_import_data_st *data = arg;
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32 | int delete_on_error = 0;
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33 |
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34 | /* Just in time creation of keydata */
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35 | if (data->keydata == NULL) {
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36 | if ((data->keydata = evp_keymgmt_newdata(data->keymgmt)) == NULL) {
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37 | ERR_raise(ERR_LIB_EVP, ERR_R_MALLOC_FAILURE);
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38 | return 0;
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39 | }
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40 | delete_on_error = 1;
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41 | }
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42 |
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43 | /*
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44 | * It's fine if there was no data to transfer, we just end up with an
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45 | * empty destination key.
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46 | */
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47 | if (params[0].key == NULL)
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48 | return 1;
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49 |
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50 | if (evp_keymgmt_import(data->keymgmt, data->keydata, data->selection,
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51 | params))
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52 | return 1;
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53 | if (delete_on_error) {
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54 | evp_keymgmt_freedata(data->keymgmt, data->keydata);
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55 | data->keydata = NULL;
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56 | }
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57 | return 0;
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58 | }
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59 |
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60 | int evp_keymgmt_util_assign_pkey(EVP_PKEY *pkey, EVP_KEYMGMT *keymgmt,
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61 | void *keydata)
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62 | {
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63 | if (pkey == NULL || keymgmt == NULL || keydata == NULL
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64 | || !EVP_PKEY_set_type_by_keymgmt(pkey, keymgmt)) {
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65 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
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66 | return 0;
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67 | }
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68 | pkey->keydata = keydata;
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69 | evp_keymgmt_util_cache_keyinfo(pkey);
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70 | return 1;
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71 | }
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72 |
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73 | EVP_PKEY *evp_keymgmt_util_make_pkey(EVP_KEYMGMT *keymgmt, void *keydata)
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74 | {
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75 | EVP_PKEY *pkey = NULL;
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76 |
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77 | if (keymgmt == NULL
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78 | || keydata == NULL
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79 | || (pkey = EVP_PKEY_new()) == NULL
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80 | || !evp_keymgmt_util_assign_pkey(pkey, keymgmt, keydata)) {
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81 | EVP_PKEY_free(pkey);
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82 | return NULL;
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83 | }
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84 | return pkey;
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85 | }
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86 |
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87 | int evp_keymgmt_util_export(const EVP_PKEY *pk, int selection,
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88 | OSSL_CALLBACK *export_cb, void *export_cbarg)
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89 | {
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90 | if (pk == NULL || export_cb == NULL)
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91 | return 0;
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92 | return evp_keymgmt_export(pk->keymgmt, pk->keydata, selection,
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93 | export_cb, export_cbarg);
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94 | }
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95 |
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96 | void *evp_keymgmt_util_export_to_provider(EVP_PKEY *pk, EVP_KEYMGMT *keymgmt)
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97 | {
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98 | struct evp_keymgmt_util_try_import_data_st import_data;
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99 | OP_CACHE_ELEM *op;
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100 |
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101 | /* Export to where? */
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102 | if (keymgmt == NULL)
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103 | return NULL;
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104 |
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105 | /* If we have an unassigned key, give up */
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106 | if (pk->keydata == NULL)
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107 | return NULL;
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108 |
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109 | /*
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110 | * If |keymgmt| matches the "origin" |keymgmt|, there is no more to do.
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111 | * The "origin" is determined by the |keymgmt| pointers being identical
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112 | * or when the provider and the name ID match. The latter case handles the
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113 | * situation where the fetch cache is flushed and a "new" key manager is
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114 | * created.
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115 | */
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116 | if (pk->keymgmt == keymgmt
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117 | || (pk->keymgmt->name_id == keymgmt->name_id
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118 | && pk->keymgmt->prov == keymgmt->prov))
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119 | return pk->keydata;
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120 |
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121 | if (!CRYPTO_THREAD_read_lock(pk->lock))
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122 | return NULL;
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123 | /*
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124 | * If the provider native "origin" hasn't changed since last time, we
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125 | * try to find our keymgmt in the operation cache. If it has changed
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126 | * and our keymgmt isn't found, we will clear the cache further down.
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127 | */
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128 | if (pk->dirty_cnt == pk->dirty_cnt_copy) {
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129 | /* If this key is already exported to |keymgmt|, no more to do */
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130 | op = evp_keymgmt_util_find_operation_cache(pk, keymgmt);
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131 | if (op != NULL && op->keymgmt != NULL) {
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132 | void *ret = op->keydata;
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133 |
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134 | CRYPTO_THREAD_unlock(pk->lock);
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135 | return ret;
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136 | }
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137 | }
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138 | CRYPTO_THREAD_unlock(pk->lock);
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139 |
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140 | /* If the "origin" |keymgmt| doesn't support exporting, give up */
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141 | if (pk->keymgmt->export == NULL)
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142 | return NULL;
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143 |
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144 | /*
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145 | * Make sure that the type of the keymgmt to export to matches the type
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146 | * of the "origin"
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147 | */
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148 | if (!ossl_assert(match_type(pk->keymgmt, keymgmt)))
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149 | return NULL;
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150 |
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151 | /*
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152 | * We look at the already cached provider keys, and import from the
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153 | * first that supports it (i.e. use its export function), and export
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154 | * the imported data to the new provider.
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155 | */
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156 |
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157 | /* Setup for the export callback */
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158 | import_data.keydata = NULL; /* evp_keymgmt_util_try_import will create it */
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159 | import_data.keymgmt = keymgmt;
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160 | import_data.selection = OSSL_KEYMGMT_SELECT_ALL;
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161 |
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162 | /*
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163 | * The export function calls the callback (evp_keymgmt_util_try_import),
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164 | * which does the import for us. If successful, we're done.
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165 | */
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166 | if (!evp_keymgmt_util_export(pk, OSSL_KEYMGMT_SELECT_ALL,
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167 | &evp_keymgmt_util_try_import, &import_data))
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168 | /* If there was an error, bail out */
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169 | return NULL;
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170 |
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171 | if (!CRYPTO_THREAD_write_lock(pk->lock)) {
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172 | evp_keymgmt_freedata(keymgmt, import_data.keydata);
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173 | return NULL;
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174 | }
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175 | /* Check to make sure some other thread didn't get there first */
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176 | op = evp_keymgmt_util_find_operation_cache(pk, keymgmt);
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177 | if (op != NULL && op->keydata != NULL) {
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178 | void *ret = op->keydata;
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179 |
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180 | CRYPTO_THREAD_unlock(pk->lock);
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181 |
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182 | /*
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183 | * Another thread seemms to have already exported this so we abandon
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184 | * all the work we just did.
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185 | */
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186 | evp_keymgmt_freedata(keymgmt, import_data.keydata);
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187 |
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188 | return ret;
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189 | }
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190 |
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191 | /*
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192 | * If the dirty counter changed since last time, then clear the
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193 | * operation cache. In that case, we know that |i| is zero.
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194 | */
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195 | if (pk->dirty_cnt != pk->dirty_cnt_copy)
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196 | evp_keymgmt_util_clear_operation_cache(pk, 0);
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197 |
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198 | /* Add the new export to the operation cache */
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199 | if (!evp_keymgmt_util_cache_keydata(pk, keymgmt, import_data.keydata)) {
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200 | CRYPTO_THREAD_unlock(pk->lock);
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201 | evp_keymgmt_freedata(keymgmt, import_data.keydata);
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202 | return NULL;
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203 | }
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204 |
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205 | /* Synchronize the dirty count */
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206 | pk->dirty_cnt_copy = pk->dirty_cnt;
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207 |
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208 | CRYPTO_THREAD_unlock(pk->lock);
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209 |
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210 | return import_data.keydata;
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211 | }
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212 |
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213 | static void op_cache_free(OP_CACHE_ELEM *e)
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214 | {
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215 | evp_keymgmt_freedata(e->keymgmt, e->keydata);
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216 | EVP_KEYMGMT_free(e->keymgmt);
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217 | OPENSSL_free(e);
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218 | }
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219 |
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220 | int evp_keymgmt_util_clear_operation_cache(EVP_PKEY *pk, int locking)
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221 | {
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222 | if (pk != NULL) {
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223 | if (locking && pk->lock != NULL && !CRYPTO_THREAD_write_lock(pk->lock))
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224 | return 0;
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225 | sk_OP_CACHE_ELEM_pop_free(pk->operation_cache, op_cache_free);
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226 | pk->operation_cache = NULL;
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227 | if (locking && pk->lock != NULL)
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228 | CRYPTO_THREAD_unlock(pk->lock);
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229 | }
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230 |
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231 | return 1;
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232 | }
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233 |
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234 | OP_CACHE_ELEM *evp_keymgmt_util_find_operation_cache(EVP_PKEY *pk,
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235 | EVP_KEYMGMT *keymgmt)
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236 | {
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237 | int i, end = sk_OP_CACHE_ELEM_num(pk->operation_cache);
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238 | OP_CACHE_ELEM *p;
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239 |
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240 | /*
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241 | * A comparison and sk_P_CACHE_ELEM_find() are avoided to not cause
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242 | * problems when we've only a read lock.
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243 | */
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244 | for (i = 0; i < end; i++) {
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245 | p = sk_OP_CACHE_ELEM_value(pk->operation_cache, i);
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246 | if (keymgmt == p->keymgmt)
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247 | return p;
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248 | }
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249 | return NULL;
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250 | }
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251 |
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252 | int evp_keymgmt_util_cache_keydata(EVP_PKEY *pk,
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253 | EVP_KEYMGMT *keymgmt, void *keydata)
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254 | {
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255 | OP_CACHE_ELEM *p = NULL;
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256 |
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257 | if (keydata != NULL) {
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258 | if (pk->operation_cache == NULL) {
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259 | pk->operation_cache = sk_OP_CACHE_ELEM_new_null();
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260 | if (pk->operation_cache == NULL)
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261 | return 0;
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262 | }
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263 |
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264 | p = OPENSSL_malloc(sizeof(*p));
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265 | if (p == NULL)
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266 | return 0;
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267 | p->keydata = keydata;
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268 | p->keymgmt = keymgmt;
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269 |
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270 | if (!EVP_KEYMGMT_up_ref(keymgmt)) {
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271 | OPENSSL_free(p);
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272 | return 0;
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273 | }
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274 |
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275 | if (!sk_OP_CACHE_ELEM_push(pk->operation_cache, p)) {
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276 | EVP_KEYMGMT_free(keymgmt);
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277 | OPENSSL_free(p);
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278 | return 0;
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279 | }
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280 | }
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281 | return 1;
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282 | }
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283 |
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284 | void evp_keymgmt_util_cache_keyinfo(EVP_PKEY *pk)
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285 | {
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286 | /*
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287 | * Cache information about the provider "origin" key.
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288 | *
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289 | * This services functions like EVP_PKEY_get_size, EVP_PKEY_get_bits, etc
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290 | */
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291 | if (pk->keydata != NULL) {
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292 | int bits = 0;
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293 | int security_bits = 0;
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294 | int size = 0;
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295 | OSSL_PARAM params[4];
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296 |
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297 | params[0] = OSSL_PARAM_construct_int(OSSL_PKEY_PARAM_BITS, &bits);
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298 | params[1] = OSSL_PARAM_construct_int(OSSL_PKEY_PARAM_SECURITY_BITS,
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299 | &security_bits);
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300 | params[2] = OSSL_PARAM_construct_int(OSSL_PKEY_PARAM_MAX_SIZE, &size);
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301 | params[3] = OSSL_PARAM_construct_end();
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302 | if (evp_keymgmt_get_params(pk->keymgmt, pk->keydata, params)) {
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303 | pk->cache.size = size;
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304 | pk->cache.bits = bits;
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305 | pk->cache.security_bits = security_bits;
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306 | }
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307 | }
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308 | }
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309 |
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310 | void *evp_keymgmt_util_fromdata(EVP_PKEY *target, EVP_KEYMGMT *keymgmt,
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311 | int selection, const OSSL_PARAM params[])
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312 | {
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313 | void *keydata = NULL;
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314 |
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315 | if ((keydata = evp_keymgmt_newdata(keymgmt)) == NULL
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316 | || !evp_keymgmt_import(keymgmt, keydata, selection, params)
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317 | || !evp_keymgmt_util_assign_pkey(target, keymgmt, keydata)) {
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318 | evp_keymgmt_freedata(keymgmt, keydata);
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319 | keydata = NULL;
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320 | }
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321 | return keydata;
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322 | }
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323 |
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324 | int evp_keymgmt_util_has(EVP_PKEY *pk, int selection)
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325 | {
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326 | /* Check if key is even assigned */
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327 | if (pk->keymgmt == NULL)
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328 | return 0;
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329 |
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330 | return evp_keymgmt_has(pk->keymgmt, pk->keydata, selection);
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331 | }
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332 |
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333 | /*
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334 | * evp_keymgmt_util_match() doesn't just look at the provider side "origin",
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335 | * but also in the operation cache to see if there's any common keymgmt that
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336 | * supplies OP_keymgmt_match.
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337 | *
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338 | * evp_keymgmt_util_match() adheres to the return values that EVP_PKEY_eq()
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339 | * and EVP_PKEY_parameters_eq() return, i.e.:
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340 | *
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341 | * 1 same key
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342 | * 0 not same key
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343 | * -1 not same key type
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344 | * -2 unsupported operation
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345 | */
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346 | int evp_keymgmt_util_match(EVP_PKEY *pk1, EVP_PKEY *pk2, int selection)
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347 | {
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348 | EVP_KEYMGMT *keymgmt1 = NULL, *keymgmt2 = NULL;
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349 | void *keydata1 = NULL, *keydata2 = NULL;
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350 |
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351 | if (pk1 == NULL || pk2 == NULL) {
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352 | if (pk1 == NULL && pk2 == NULL)
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353 | return 1;
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354 | return 0;
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355 | }
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356 |
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357 | keymgmt1 = pk1->keymgmt;
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358 | keydata1 = pk1->keydata;
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359 | keymgmt2 = pk2->keymgmt;
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360 | keydata2 = pk2->keydata;
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361 |
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362 | if (keymgmt1 != keymgmt2) {
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363 | /*
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364 | * The condition for a successful cross export is that the
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365 | * keydata to be exported is NULL (typed, but otherwise empty
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366 | * EVP_PKEY), or that it was possible to export it with
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367 | * evp_keymgmt_util_export_to_provider().
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368 | *
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369 | * We use |ok| to determine if it's ok to cross export one way,
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370 | * but also to determine if we should attempt a cross export
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371 | * the other way. There's no point doing it both ways.
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372 | */
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373 | int ok = 0;
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374 |
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375 | /* Complex case, where the keymgmt differ */
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376 | if (keymgmt1 != NULL
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377 | && keymgmt2 != NULL
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378 | && !match_type(keymgmt1, keymgmt2)) {
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379 | ERR_raise(ERR_LIB_EVP, EVP_R_DIFFERENT_KEY_TYPES);
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380 | return -1; /* Not the same type */
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381 | }
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382 |
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383 | /*
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384 | * The key types are determined to match, so we try cross export,
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385 | * but only to keymgmt's that supply a matching function.
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386 | */
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387 | if (keymgmt2 != NULL
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388 | && keymgmt2->match != NULL) {
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389 | void *tmp_keydata = NULL;
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390 |
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391 | ok = 1;
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392 | if (keydata1 != NULL) {
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393 | tmp_keydata =
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394 | evp_keymgmt_util_export_to_provider(pk1, keymgmt2);
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395 | ok = (tmp_keydata != NULL);
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396 | }
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397 | if (ok) {
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398 | keymgmt1 = keymgmt2;
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399 | keydata1 = tmp_keydata;
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400 | }
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401 | }
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402 | /*
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403 | * If we've successfully cross exported one way, there's no point
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404 | * doing it the other way, hence the |!ok| check.
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405 | */
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406 | if (!ok
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407 | && keymgmt1 != NULL
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408 | && keymgmt1->match != NULL) {
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409 | void *tmp_keydata = NULL;
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410 |
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411 | ok = 1;
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412 | if (keydata2 != NULL) {
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413 | tmp_keydata =
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414 | evp_keymgmt_util_export_to_provider(pk2, keymgmt1);
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415 | ok = (tmp_keydata != NULL);
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416 | }
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417 | if (ok) {
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418 | keymgmt2 = keymgmt1;
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419 | keydata2 = tmp_keydata;
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420 | }
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421 | }
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422 | }
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423 |
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424 | /* If we still don't have matching keymgmt implementations, we give up */
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425 | if (keymgmt1 != keymgmt2)
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426 | return -2;
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427 |
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428 | /* If both keydata are NULL, then they're the same key */
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429 | if (keydata1 == NULL && keydata2 == NULL)
|
---|
430 | return 1;
|
---|
431 | /* If only one of the keydata is NULL, then they're different keys */
|
---|
432 | if (keydata1 == NULL || keydata2 == NULL)
|
---|
433 | return 0;
|
---|
434 | /* If both keydata are non-NULL, we let the backend decide */
|
---|
435 | return evp_keymgmt_match(keymgmt1, keydata1, keydata2, selection);
|
---|
436 | }
|
---|
437 |
|
---|
438 | int evp_keymgmt_util_copy(EVP_PKEY *to, EVP_PKEY *from, int selection)
|
---|
439 | {
|
---|
440 | /* Save copies of pointers we want to play with without affecting |to| */
|
---|
441 | EVP_KEYMGMT *to_keymgmt = to->keymgmt;
|
---|
442 | void *to_keydata = to->keydata, *alloc_keydata = NULL;
|
---|
443 |
|
---|
444 | /* An unassigned key can't be copied */
|
---|
445 | if (from == NULL || from->keydata == NULL)
|
---|
446 | return 0;
|
---|
447 |
|
---|
448 | /*
|
---|
449 | * If |to| is unassigned, ensure it gets the same KEYMGMT as |from|,
|
---|
450 | * Note that the final setting of KEYMGMT is done further down, with
|
---|
451 | * EVP_PKEY_set_type_by_keymgmt(); we don't want to do that prematurely.
|
---|
452 | */
|
---|
453 | if (to_keymgmt == NULL)
|
---|
454 | to_keymgmt = from->keymgmt;
|
---|
455 |
|
---|
456 | if (to_keymgmt == from->keymgmt && to_keymgmt->dup != NULL
|
---|
457 | && to_keydata == NULL) {
|
---|
458 | to_keydata = alloc_keydata = evp_keymgmt_dup(to_keymgmt,
|
---|
459 | from->keydata,
|
---|
460 | selection);
|
---|
461 | if (to_keydata == NULL)
|
---|
462 | return 0;
|
---|
463 | } else if (match_type(to_keymgmt, from->keymgmt)) {
|
---|
464 | struct evp_keymgmt_util_try_import_data_st import_data;
|
---|
465 |
|
---|
466 | import_data.keymgmt = to_keymgmt;
|
---|
467 | import_data.keydata = to_keydata;
|
---|
468 | import_data.selection = selection;
|
---|
469 |
|
---|
470 | if (!evp_keymgmt_util_export(from, selection,
|
---|
471 | &evp_keymgmt_util_try_import,
|
---|
472 | &import_data))
|
---|
473 | return 0;
|
---|
474 |
|
---|
475 | /*
|
---|
476 | * In case to_keydata was previously unallocated,
|
---|
477 | * evp_keymgmt_util_try_import() may have created it for us.
|
---|
478 | */
|
---|
479 | if (to_keydata == NULL)
|
---|
480 | to_keydata = alloc_keydata = import_data.keydata;
|
---|
481 | } else {
|
---|
482 | ERR_raise(ERR_LIB_EVP, EVP_R_DIFFERENT_KEY_TYPES);
|
---|
483 | return 0;
|
---|
484 | }
|
---|
485 |
|
---|
486 | /*
|
---|
487 | * We only need to set the |to| type when its |keymgmt| isn't set.
|
---|
488 | * We can then just set its |keydata| to what we have, which might
|
---|
489 | * be exactly what it had when entering this function.
|
---|
490 | * This is a bit different from using evp_keymgmt_util_assign_pkey(),
|
---|
491 | * which isn't as careful with |to|'s original |keymgmt|, since it's
|
---|
492 | * meant to forcibly reassign an EVP_PKEY no matter what, which is
|
---|
493 | * why we don't use that one here.
|
---|
494 | */
|
---|
495 | if (to->keymgmt == NULL
|
---|
496 | && !EVP_PKEY_set_type_by_keymgmt(to, to_keymgmt)) {
|
---|
497 | evp_keymgmt_freedata(to_keymgmt, alloc_keydata);
|
---|
498 | return 0;
|
---|
499 | }
|
---|
500 | to->keydata = to_keydata;
|
---|
501 | evp_keymgmt_util_cache_keyinfo(to);
|
---|
502 |
|
---|
503 | return 1;
|
---|
504 | }
|
---|
505 |
|
---|
506 | void *evp_keymgmt_util_gen(EVP_PKEY *target, EVP_KEYMGMT *keymgmt,
|
---|
507 | void *genctx, OSSL_CALLBACK *cb, void *cbarg)
|
---|
508 | {
|
---|
509 | void *keydata = NULL;
|
---|
510 |
|
---|
511 | if ((keydata = evp_keymgmt_gen(keymgmt, genctx, cb, cbarg)) == NULL
|
---|
512 | || !evp_keymgmt_util_assign_pkey(target, keymgmt, keydata)) {
|
---|
513 | evp_keymgmt_freedata(keymgmt, keydata);
|
---|
514 | keydata = NULL;
|
---|
515 | }
|
---|
516 |
|
---|
517 | return keydata;
|
---|
518 | }
|
---|
519 |
|
---|
520 | /*
|
---|
521 | * Returns the same numbers as EVP_PKEY_get_default_digest_name()
|
---|
522 | * When the string from the EVP_KEYMGMT implementation is "", we use
|
---|
523 | * SN_undef, since that corresponds to what EVP_PKEY_get_default_nid()
|
---|
524 | * returns for no digest.
|
---|
525 | */
|
---|
526 | int evp_keymgmt_util_get_deflt_digest_name(EVP_KEYMGMT *keymgmt,
|
---|
527 | void *keydata,
|
---|
528 | char *mdname, size_t mdname_sz)
|
---|
529 | {
|
---|
530 | OSSL_PARAM params[3];
|
---|
531 | char mddefault[100] = "";
|
---|
532 | char mdmandatory[100] = "";
|
---|
533 | char *result = NULL;
|
---|
534 | int rv = -2;
|
---|
535 |
|
---|
536 | params[0] =
|
---|
537 | OSSL_PARAM_construct_utf8_string(OSSL_PKEY_PARAM_DEFAULT_DIGEST,
|
---|
538 | mddefault, sizeof(mddefault));
|
---|
539 | params[1] =
|
---|
540 | OSSL_PARAM_construct_utf8_string(OSSL_PKEY_PARAM_MANDATORY_DIGEST,
|
---|
541 | mdmandatory,
|
---|
542 | sizeof(mdmandatory));
|
---|
543 | params[2] = OSSL_PARAM_construct_end();
|
---|
544 |
|
---|
545 | if (!evp_keymgmt_get_params(keymgmt, keydata, params))
|
---|
546 | return 0;
|
---|
547 |
|
---|
548 | if (OSSL_PARAM_modified(params + 1)) {
|
---|
549 | if (params[1].return_size <= 1) /* Only a NUL byte */
|
---|
550 | result = SN_undef;
|
---|
551 | else
|
---|
552 | result = mdmandatory;
|
---|
553 | rv = 2;
|
---|
554 | } else if (OSSL_PARAM_modified(params)) {
|
---|
555 | if (params[0].return_size <= 1) /* Only a NUL byte */
|
---|
556 | result = SN_undef;
|
---|
557 | else
|
---|
558 | result = mddefault;
|
---|
559 | rv = 1;
|
---|
560 | }
|
---|
561 | if (rv > 0)
|
---|
562 | OPENSSL_strlcpy(mdname, result, mdname_sz);
|
---|
563 | return rv;
|
---|
564 | }
|
---|
565 |
|
---|
566 | /*
|
---|
567 | * If |keymgmt| has the method function |query_operation_name|, use it to get
|
---|
568 | * the name of a supported operation identity. Otherwise, return the keytype,
|
---|
569 | * assuming that it works as a default operation name.
|
---|
570 | */
|
---|
571 | const char *evp_keymgmt_util_query_operation_name(EVP_KEYMGMT *keymgmt,
|
---|
572 | int op_id)
|
---|
573 | {
|
---|
574 | const char *name = NULL;
|
---|
575 |
|
---|
576 | if (keymgmt != NULL) {
|
---|
577 | if (keymgmt->query_operation_name != NULL)
|
---|
578 | name = keymgmt->query_operation_name(op_id);
|
---|
579 | if (name == NULL)
|
---|
580 | name = EVP_KEYMGMT_get0_name(keymgmt);
|
---|
581 | }
|
---|
582 | return name;
|
---|
583 | }
|
---|