1 | /*
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2 | * Copyright 2021-2022 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 | /*
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11 | * Some ctrls depend on deprecated functionality. We trust that this is
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12 | * functionality that remains internally even when 'no-deprecated' is
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13 | * configured. When we drop #legacy EVP_PKEYs, this source should be
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14 | * possible to drop as well.
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15 | */
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16 | #include "internal/deprecated.h"
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17 |
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18 | #include <string.h>
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19 |
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20 | /* The following includes get us all the EVP_PKEY_CTRL macros */
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21 | #include <openssl/dh.h>
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22 | #include <openssl/dsa.h>
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23 | #include <openssl/ec.h>
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24 | #include <openssl/rsa.h>
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25 | #include <openssl/kdf.h>
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26 |
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27 | /* This include gets us all the OSSL_PARAM key string macros */
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28 | #include <openssl/core_names.h>
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29 |
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30 | #include <openssl/err.h>
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31 | #include <openssl/evperr.h>
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32 | #include <openssl/params.h>
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33 | #include "internal/nelem.h"
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34 | #include "internal/cryptlib.h"
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35 | #include "internal/ffc.h"
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36 | #include "crypto/evp.h"
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37 | #include "crypto/dh.h"
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38 | #include "crypto/ec.h"
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39 |
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40 | #include "e_os.h" /* strcasecmp() for Windows */
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41 |
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42 | struct translation_ctx_st; /* Forwarding */
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43 | struct translation_st; /* Forwarding */
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44 |
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45 | /*
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46 | * The fixup_args functions are called with the following parameters:
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47 | *
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48 | * |state| The state we're called in, explained further at the
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49 | * end of this comment.
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50 | * |translation| The translation item, to be pilfered for data as
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51 | * necessary.
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52 | * |ctx| The translation context, which contains copies of
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53 | * the following arguments, applicable according to
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54 | * the caller. All of the attributes in this context
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55 | * may be freely modified by the fixup_args function.
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56 | * For cleanup, call cleanup_translation_ctx().
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57 | *
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58 | * The |state| tells the fixup_args function something about the caller and
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59 | * what they may expect:
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60 | *
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61 | * PKEY The fixup_args function has been called
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62 | * from an EVP_PKEY payload getter / setter,
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63 | * and is fully responsible for getting or
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64 | * setting the requested data. With this
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65 | * state, the fixup_args function is expected
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66 | * to use or modify |*params|, depending on
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67 | * |action_type|.
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68 | *
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69 | * PRE_CTRL_TO_PARAMS The fixup_args function has been called
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70 | * POST_CTRL_TO_PARAMS from EVP_PKEY_CTX_ctrl(), to help with
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71 | * translating the ctrl data to an OSSL_PARAM
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72 | * element or back. The calling sequence is
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73 | * as follows:
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74 | *
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75 | * 1. fixup_args(PRE_CTRL_TO_PARAMS, ...)
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76 | * 2. EVP_PKEY_CTX_set_params() or
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77 | * EVP_PKEY_CTX_get_params()
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78 | * 3. fixup_args(POST_CTRL_TO_PARAMS, ...)
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79 | *
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80 | * With the PRE_CTRL_TO_PARAMS state, the
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81 | * fixup_args function is expected to modify
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82 | * the passed |*params| in whatever way
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83 | * necessary, when |action_type == SET|.
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84 | * With the POST_CTRL_TO_PARAMS state, the
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85 | * fixup_args function is expected to modify
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86 | * the passed |p2| in whatever way necessary,
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87 | * when |action_type == GET|.
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88 | *
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89 | * The return value from the fixup_args call
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90 | * with the POST_CTRL_TO_PARAMS state becomes
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91 | * the return value back to EVP_PKEY_CTX_ctrl().
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92 | *
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93 | * CLEANUP_CTRL_TO_PARAMS The cleanup_args functions has been called
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94 | * from EVP_PKEY_CTX_ctrl(), to clean up what
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95 | * the fixup_args function has done, if needed.
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96 | *
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97 | *
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98 | * PRE_CTRL_STR_TO_PARAMS The fixup_args function has been called
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99 | * POST_CTRL_STR_TO_PARAMS from EVP_PKEY_CTX_ctrl_str(), to help with
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100 | * translating the ctrl_str data to an
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101 | * OSSL_PARAM element or back. The calling
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102 | * sequence is as follows:
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103 | *
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104 | * 1. fixup_args(PRE_CTRL_STR_TO_PARAMS, ...)
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105 | * 2. EVP_PKEY_CTX_set_params() or
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106 | * EVP_PKEY_CTX_get_params()
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107 | * 3. fixup_args(POST_CTRL_STR_TO_PARAMS, ...)
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108 | *
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109 | * With the PRE_CTRL_STR_TO_PARAMS state,
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110 | * the fixup_args function is expected to
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111 | * modify the passed |*params| in whatever
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112 | * way necessary, when |action_type == SET|.
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113 | * With the POST_CTRL_STR_TO_PARAMS state,
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114 | * the fixup_args function is only expected
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115 | * to return a value.
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116 | *
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117 | * CLEANUP_CTRL_STR_TO_PARAMS The cleanup_args functions has been called
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118 | * from EVP_PKEY_CTX_ctrl_str(), to clean up
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119 | * what the fixup_args function has done, if
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120 | * needed.
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121 | *
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122 | * PRE_PARAMS_TO_CTRL The fixup_args function has been called
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123 | * POST_PARAMS_TO_CTRL from EVP_PKEY_CTX_get_params() or
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124 | * EVP_PKEY_CTX_set_params(), to help with
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125 | * translating the OSSL_PARAM data to the
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126 | * corresponding EVP_PKEY_CTX_ctrl() arguments
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127 | * or the other way around. The calling
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128 | * sequence is as follows:
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129 | *
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130 | * 1. fixup_args(PRE_PARAMS_TO_CTRL, ...)
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131 | * 2. EVP_PKEY_CTX_ctrl()
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132 | * 3. fixup_args(POST_PARAMS_TO_CTRL, ...)
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133 | *
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134 | * With the PRE_PARAMS_TO_CTRL state, the
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135 | * fixup_args function is expected to modify
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136 | * the passed |p1| and |p2| in whatever way
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137 | * necessary, when |action_type == SET|.
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138 | * With the POST_PARAMS_TO_CTRL state, the
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139 | * fixup_args function is expected to
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140 | * modify the passed |*params| in whatever
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141 | * way necessary, when |action_type == GET|.
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142 | *
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143 | * CLEANUP_PARAMS_TO_CTRL The cleanup_args functions has been called
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144 | * from EVP_PKEY_CTX_get_params() or
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145 | * EVP_PKEY_CTX_set_params(), to clean up what
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146 | * the fixup_args function has done, if needed.
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147 | */
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148 | enum state {
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149 | PKEY,
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150 | PRE_CTRL_TO_PARAMS, POST_CTRL_TO_PARAMS, CLEANUP_CTRL_TO_PARAMS,
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151 | PRE_CTRL_STR_TO_PARAMS, POST_CTRL_STR_TO_PARAMS, CLEANUP_CTRL_STR_TO_PARAMS,
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152 | PRE_PARAMS_TO_CTRL, POST_PARAMS_TO_CTRL, CLEANUP_PARAMS_TO_CTRL
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153 | };
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154 | enum action {
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155 | NONE = 0, GET = 1, SET = 2
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156 | };
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157 | typedef int fixup_args_fn(enum state state,
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158 | const struct translation_st *translation,
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159 | struct translation_ctx_st *ctx);
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160 | typedef int cleanup_args_fn(enum state state,
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161 | const struct translation_st *translation,
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162 | struct translation_ctx_st *ctx);
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163 |
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164 | struct translation_ctx_st {
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165 | /*
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166 | * The EVP_PKEY_CTX, for calls on that structure, to be pilfered for data
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167 | * as necessary.
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168 | */
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169 | EVP_PKEY_CTX *pctx;
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170 | /*
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171 | * The action type (GET or SET). This may be 0 in some cases, and should
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172 | * be modified by the fixup_args function in the PRE states. It should
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173 | * otherwise remain untouched once set.
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174 | */
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175 | enum action action_type;
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176 | /*
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177 | * For ctrl to params translation, the actual ctrl command number used.
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178 | * For params to ctrl translation, 0.
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179 | */
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180 | int ctrl_cmd;
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181 | /*
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182 | * For ctrl_str to params translation, the actual ctrl command string
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183 | * used. In this case, the (string) value is always passed as |p2|.
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184 | * For params to ctrl translation, this is NULL. Along with it is also
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185 | * and indicator whether it matched |ctrl_str| or |ctrl_hexstr| in the
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186 | * translation item.
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187 | */
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188 | const char *ctrl_str;
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189 | int ishex;
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190 | /* the ctrl-style int argument. */
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191 | int p1;
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192 | /* the ctrl-style void* argument. */
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193 | void *p2;
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194 | /* a size, for passing back the |p2| size where applicable */
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195 | size_t sz;
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196 | /* pointer to the OSSL_PARAM-style params array. */
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197 | OSSL_PARAM *params;
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198 |
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199 | /*-
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200 | * The following are used entirely internally by the fixup_args functions
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201 | * and should not be touched by the callers, at all.
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202 | */
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203 |
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204 | /*
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205 | * Copy of the ctrl-style void* argument, if the fixup_args function
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206 | * needs to manipulate |p2| but wants to remember original.
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207 | */
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208 | void *orig_p2;
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209 | /* Diverse types of storage for the needy. */
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210 | char name_buf[OSSL_MAX_NAME_SIZE];
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211 | void *allocated_buf;
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212 | void *bufp;
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213 | size_t buflen;
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214 | };
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215 |
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216 | struct translation_st {
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217 | /*-
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218 | * What this table item does.
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219 | *
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220 | * If the item has this set to 0, it means that both GET and SET are
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221 | * supported, and |fixup_args| will determine which it is. This is to
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222 | * support translations of ctrls where the action type depends on the
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223 | * value of |p1| or |p2| (ctrls are really bi-directional, but are
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224 | * seldom used that way).
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225 | *
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226 | * This can be also used in the lookup template when it looks up by
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227 | * OSSL_PARAM key, to indicate if a setter or a getter called.
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228 | */
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229 | enum action action_type;
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230 |
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231 | /*-
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232 | * Conditions, for params->ctrl translations.
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233 | *
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234 | * In table item, |keytype1| and |keytype2| can be set to -1 to indicate
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235 | * that this item supports all key types (or rather, that |fixup_args|
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236 | * will check and return an error if it's not supported).
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237 | * Any of these may be set to 0 to indicate that they are unset.
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238 | */
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239 | int keytype1; /* The EVP_PKEY_XXX type, i.e. NIDs. #legacy */
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240 | int keytype2; /* Another EVP_PKEY_XXX type, used for aliases */
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241 | int optype; /* The operation type */
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242 |
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243 | /*
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244 | * Lookup and translation attributes
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245 | *
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246 | * |ctrl_num|, |ctrl_str|, |ctrl_hexstr| and |param_key| are lookup
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247 | * attributes.
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248 | *
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249 | * |ctrl_num| may be 0 or that |param_key| may be NULL in the table item,
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250 | * but not at the same time. If they are, they are simply not used for
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251 | * lookup.
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252 | * When |ctrl_num| == 0, no ctrl will be called. Likewise, when
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253 | * |param_key| == NULL, no OSSL_PARAM setter/getter will be called.
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254 | * In that case the treatment of the translation item relies entirely on
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255 | * |fixup_args|, which is then assumed to have side effects.
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256 | *
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257 | * As a special case, it's possible to set |ctrl_hexstr| and assign NULL
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258 | * to |ctrl_str|. That will signal to default_fixup_args() that the
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259 | * value must always be interpreted as hex.
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260 | */
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261 | int ctrl_num; /* EVP_PKEY_CTRL_xxx */
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262 | const char *ctrl_str; /* The corresponding ctrl string */
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263 | const char *ctrl_hexstr; /* The alternative "hex{str}" ctrl string */
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264 | const char *param_key; /* The corresponding OSSL_PARAM key */
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265 | /*
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266 | * The appropriate OSSL_PARAM data type. This may be 0 to indicate that
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267 | * this OSSL_PARAM may have more than one data type, depending on input
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268 | * material. In this case, |fixup_args| is expected to check and handle
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269 | * it.
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270 | */
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271 | unsigned int param_data_type;
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272 |
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273 | /*
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274 | * Fixer functions
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275 | *
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276 | * |fixup_args| is always called before (for SET) or after (for GET)
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277 | * the actual ctrl / OSSL_PARAM function.
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278 | */
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279 | fixup_args_fn *fixup_args;
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280 | };
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281 |
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282 | /*-
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283 | * Fixer function implementations
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284 | * ==============================
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285 | */
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286 |
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287 | /*
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288 | * default_check isn't a fixer per se, but rather a helper function to
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289 | * perform certain standard checks.
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290 | */
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291 | static int default_check(enum state state,
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292 | const struct translation_st *translation,
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293 | const struct translation_ctx_st *ctx)
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294 | {
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295 | switch (state) {
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296 | default:
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297 | break;
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298 | case PRE_CTRL_TO_PARAMS:
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299 | if (!ossl_assert(translation != NULL)) {
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300 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
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301 | return -2;
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302 | }
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303 | if (!ossl_assert(translation->param_key != 0)
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304 | || !ossl_assert(translation->param_data_type != 0)) {
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305 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
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306 | return -1;
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307 | }
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308 | break;
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309 | case PRE_CTRL_STR_TO_PARAMS:
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310 | /*
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311 | * For ctrl_str to params translation, we allow direct use of
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312 | * OSSL_PARAM keys as ctrl_str keys. Therefore, it's possible that
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313 | * we end up with |translation == NULL|, which is fine. The fixup
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314 | * function will have to deal with it carefully.
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315 | */
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316 | if (translation != NULL) {
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317 | if (!ossl_assert(translation->action_type != GET)) {
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318 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
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319 | return -2;
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320 | }
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321 | if (!ossl_assert(translation->param_key != NULL)
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322 | || !ossl_assert(translation->param_data_type != 0)) {
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323 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
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324 | return 0;
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325 | }
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326 | }
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327 | break;
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328 | case PRE_PARAMS_TO_CTRL:
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329 | case POST_PARAMS_TO_CTRL:
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330 | if (!ossl_assert(translation != NULL)) {
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331 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
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332 | return -2;
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333 | }
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334 | if (!ossl_assert(translation->ctrl_num != 0)
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335 | || !ossl_assert(translation->param_data_type != 0)) {
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336 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
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337 | return -1;
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338 | }
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339 | }
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340 |
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341 | /* Nothing else to check */
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342 | return 1;
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343 | }
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344 |
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345 | /*-
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346 | * default_fixup_args fixes up all sorts of arguments, governed by the
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347 | * diverse attributes in the translation item. It covers all "standard"
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348 | * base ctrl functionality, meaning it can handle basic conversion of
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349 | * data between p1+p2 (SET) or return value+p2 (GET) as long as the values
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350 | * don't have extra semantics (such as NIDs, OIDs, that sort of stuff).
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351 | * Extra semantics must be handled via specific fixup_args functions.
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352 | *
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353 | * The following states and action type combinations have standard handling
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354 | * done in this function:
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355 | *
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356 | * PRE_CTRL_TO_PARAMS, 0 - ERROR. action type must be
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357 | * determined by a fixup function.
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358 | * PRE_CTRL_TO_PARAMS, SET | GET - |p1| and |p2| are converted to an
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359 | * OSSL_PARAM according to the data
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360 | * type given in |translattion|.
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361 | * For OSSL_PARAM_UNSIGNED_INTEGER,
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362 | * a BIGNUM passed as |p2| is accepted.
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363 | * POST_CTRL_TO_PARAMS, GET - If the OSSL_PARAM data type is a
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364 | * STRING or PTR type, |p1| is set
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365 | * to the OSSL_PARAM return size, and
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366 | * |p2| is set to the string.
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367 | * PRE_CTRL_STR_TO_PARAMS, !SET - ERROR. That combination is not
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368 | * supported.
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369 | * PRE_CTRL_STR_TO_PARAMS, SET - |p2| is taken as a string, and is
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370 | * converted to an OSSL_PARAM in a
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371 | * standard manner, guided by the
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372 | * param key and data type from
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373 | * |translation|.
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374 | * PRE_PARAMS_TO_CTRL, SET - the OSSL_PARAM is converted to
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375 | * |p1| and |p2| according to the
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376 | * data type given in |translation|
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377 | * For OSSL_PARAM_UNSIGNED_INTEGER,
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378 | * if |p2| is non-NULL, then |*p2|
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379 | * is assigned a BIGNUM, otherwise
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380 | * |p1| is assigned an unsigned int.
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381 | * POST_PARAMS_TO_CTRL, GET - |p1| and |p2| are converted to
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382 | * an OSSL_PARAM, in the same manner
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383 | * as for the combination of
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384 | * PRE_CTRL_TO_PARAMS, SET.
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385 | */
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386 | static int default_fixup_args(enum state state,
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387 | const struct translation_st *translation,
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388 | struct translation_ctx_st *ctx)
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389 | {
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390 | int ret;
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391 |
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392 | if ((ret = default_check(state, translation, ctx)) < 0)
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393 | return ret;
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394 |
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395 | switch (state) {
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396 | default:
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397 | /* For states this function should never have been called with */
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398 | ERR_raise_data(ERR_LIB_EVP, ERR_R_SHOULD_NOT_HAVE_BEEN_CALLED,
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399 | "[action:%d, state:%d]", ctx->action_type, state);
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400 | return 0;
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401 |
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402 | /*
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403 | * PRE_CTRL_TO_PARAMS and POST_CTRL_TO_PARAMS handle ctrl to params
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404 | * translations. PRE_CTRL_TO_PARAMS is responsible for preparing
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405 | * |*params|, and POST_CTRL_TO_PARAMS is responsible for bringing the
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406 | * result back to |*p2| and the return value.
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407 | */
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408 | case PRE_CTRL_TO_PARAMS:
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409 | /* This is ctrl to params translation, so we need an OSSL_PARAM key */
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410 | if (ctx->action_type == NONE) {
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411 | /*
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412 | * No action type is an error here. That's a case for a
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413 | * special fixup function.
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414 | */
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415 | ERR_raise_data(ERR_LIB_EVP, ERR_R_UNSUPPORTED,
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416 | "[action:%d, state:%d]", ctx->action_type, state);
|
---|
417 | return 0;
|
---|
418 | }
|
---|
419 |
|
---|
420 | if (translation->optype != 0) {
|
---|
421 | if ((EVP_PKEY_CTX_IS_SIGNATURE_OP(ctx->pctx)
|
---|
422 | && ctx->pctx->op.sig.algctx == NULL)
|
---|
423 | || (EVP_PKEY_CTX_IS_DERIVE_OP(ctx->pctx)
|
---|
424 | && ctx->pctx->op.kex.algctx == NULL)
|
---|
425 | || (EVP_PKEY_CTX_IS_ASYM_CIPHER_OP(ctx->pctx)
|
---|
426 | && ctx->pctx->op.ciph.algctx == NULL)
|
---|
427 | || (EVP_PKEY_CTX_IS_KEM_OP(ctx->pctx)
|
---|
428 | && ctx->pctx->op.encap.algctx == NULL)
|
---|
429 | /*
|
---|
430 | * The following may be unnecessary, but we have them
|
---|
431 | * for good measure...
|
---|
432 | */
|
---|
433 | || (EVP_PKEY_CTX_IS_GEN_OP(ctx->pctx)
|
---|
434 | && ctx->pctx->op.keymgmt.genctx == NULL)
|
---|
435 | || (EVP_PKEY_CTX_IS_FROMDATA_OP(ctx->pctx)
|
---|
436 | && ctx->pctx->op.keymgmt.genctx == NULL)) {
|
---|
437 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
|
---|
438 | /* Uses the same return values as EVP_PKEY_CTX_ctrl */
|
---|
439 | return -2;
|
---|
440 | }
|
---|
441 | }
|
---|
442 |
|
---|
443 | /*
|
---|
444 | * OSSL_PARAM_construct_TYPE() works equally well for both SET and GET.
|
---|
445 | */
|
---|
446 | switch (translation->param_data_type) {
|
---|
447 | case OSSL_PARAM_INTEGER:
|
---|
448 | *ctx->params = OSSL_PARAM_construct_int(translation->param_key,
|
---|
449 | &ctx->p1);
|
---|
450 | break;
|
---|
451 | case OSSL_PARAM_UNSIGNED_INTEGER:
|
---|
452 | /*
|
---|
453 | * BIGNUMs are passed via |p2|. For all ctrl's that just want
|
---|
454 | * to pass a simple integer via |p1|, |p2| is expected to be
|
---|
455 | * NULL.
|
---|
456 | *
|
---|
457 | * Note that this allocates a buffer, which the cleanup function
|
---|
458 | * must deallocate.
|
---|
459 | */
|
---|
460 | if (ctx->p2 != NULL) {
|
---|
461 | if (ctx->action_type == SET) {
|
---|
462 | ctx->buflen = BN_num_bytes(ctx->p2);
|
---|
463 | if ((ctx->allocated_buf =
|
---|
464 | OPENSSL_malloc(ctx->buflen)) == NULL) {
|
---|
465 | ERR_raise(ERR_LIB_EVP, ERR_R_MALLOC_FAILURE);
|
---|
466 | return 0;
|
---|
467 | }
|
---|
468 | if (BN_bn2nativepad(ctx->p2,
|
---|
469 | ctx->allocated_buf, ctx->buflen) < 0) {
|
---|
470 | OPENSSL_free(ctx->allocated_buf);
|
---|
471 | ctx->allocated_buf = NULL;
|
---|
472 | return 0;
|
---|
473 | }
|
---|
474 | *ctx->params =
|
---|
475 | OSSL_PARAM_construct_BN(translation->param_key,
|
---|
476 | ctx->allocated_buf,
|
---|
477 | ctx->buflen);
|
---|
478 | } else {
|
---|
479 | /*
|
---|
480 | * No support for getting a BIGNUM by ctrl, this needs
|
---|
481 | * fixup_args function support.
|
---|
482 | */
|
---|
483 | ERR_raise_data(ERR_LIB_EVP, ERR_R_UNSUPPORTED,
|
---|
484 | "[action:%d, state:%d] trying to get a "
|
---|
485 | "BIGNUM via ctrl call",
|
---|
486 | ctx->action_type, state);
|
---|
487 | return 0;
|
---|
488 | }
|
---|
489 | } else {
|
---|
490 | *ctx->params =
|
---|
491 | OSSL_PARAM_construct_uint(translation->param_key,
|
---|
492 | (unsigned int *)&ctx->p1);
|
---|
493 | }
|
---|
494 | break;
|
---|
495 | case OSSL_PARAM_UTF8_STRING:
|
---|
496 | *ctx->params =
|
---|
497 | OSSL_PARAM_construct_utf8_string(translation->param_key,
|
---|
498 | ctx->p2, (size_t)ctx->p1);
|
---|
499 | break;
|
---|
500 | case OSSL_PARAM_UTF8_PTR:
|
---|
501 | *ctx->params =
|
---|
502 | OSSL_PARAM_construct_utf8_ptr(translation->param_key,
|
---|
503 | ctx->p2, (size_t)ctx->p1);
|
---|
504 | break;
|
---|
505 | case OSSL_PARAM_OCTET_STRING:
|
---|
506 | *ctx->params =
|
---|
507 | OSSL_PARAM_construct_octet_string(translation->param_key,
|
---|
508 | ctx->p2, (size_t)ctx->p1);
|
---|
509 | break;
|
---|
510 | case OSSL_PARAM_OCTET_PTR:
|
---|
511 | *ctx->params =
|
---|
512 | OSSL_PARAM_construct_octet_ptr(translation->param_key,
|
---|
513 | ctx->p2, (size_t)ctx->p1);
|
---|
514 | break;
|
---|
515 | }
|
---|
516 | break;
|
---|
517 | case POST_CTRL_TO_PARAMS:
|
---|
518 | /*
|
---|
519 | * Because EVP_PKEY_CTX_ctrl() returns the length of certain objects
|
---|
520 | * as its return value, we need to ensure that we do it here as well,
|
---|
521 | * for the OSSL_PARAM data types where this makes sense.
|
---|
522 | */
|
---|
523 | if (ctx->action_type == GET) {
|
---|
524 | switch (translation->param_data_type) {
|
---|
525 | case OSSL_PARAM_UTF8_STRING:
|
---|
526 | case OSSL_PARAM_UTF8_PTR:
|
---|
527 | case OSSL_PARAM_OCTET_STRING:
|
---|
528 | case OSSL_PARAM_OCTET_PTR:
|
---|
529 | ctx->p1 = (int)ctx->params[0].return_size;
|
---|
530 | break;
|
---|
531 | }
|
---|
532 | }
|
---|
533 | break;
|
---|
534 |
|
---|
535 | /*
|
---|
536 | * PRE_CTRL_STR_TO_PARAMS and POST_CTRL_STR_TO_PARAMS handle ctrl_str to
|
---|
537 | * params translations. PRE_CTRL_TO_PARAMS is responsible for preparing
|
---|
538 | * |*params|, and POST_CTRL_TO_PARAMS currently has nothing to do, since
|
---|
539 | * there's no support for getting data via ctrl_str calls.
|
---|
540 | */
|
---|
541 | case PRE_CTRL_STR_TO_PARAMS:
|
---|
542 | {
|
---|
543 | /* This is ctrl_str to params translation */
|
---|
544 | const char *tmp_ctrl_str = ctx->ctrl_str;
|
---|
545 | const char *orig_ctrl_str = ctx->ctrl_str;
|
---|
546 | const char *orig_value = ctx->p2;
|
---|
547 | const OSSL_PARAM *settable = NULL;
|
---|
548 | int exists = 0;
|
---|
549 |
|
---|
550 | /* Only setting is supported here */
|
---|
551 | if (ctx->action_type != SET) {
|
---|
552 | ERR_raise_data(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED,
|
---|
553 | "[action:%d, state:%d] only setting allowed",
|
---|
554 | ctx->action_type, state);
|
---|
555 | return 0;
|
---|
556 | }
|
---|
557 |
|
---|
558 | /*
|
---|
559 | * If no translation exists, we simply pass the control string
|
---|
560 | * unmodified.
|
---|
561 | */
|
---|
562 | if (translation != NULL) {
|
---|
563 | tmp_ctrl_str = ctx->ctrl_str = translation->param_key;
|
---|
564 |
|
---|
565 | if (ctx->ishex) {
|
---|
566 | strcpy(ctx->name_buf, "hex");
|
---|
567 | if (OPENSSL_strlcat(ctx->name_buf, tmp_ctrl_str,
|
---|
568 | sizeof(ctx->name_buf)) <= 3) {
|
---|
569 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
|
---|
570 | return -1;
|
---|
571 | }
|
---|
572 | tmp_ctrl_str = ctx->name_buf;
|
---|
573 | }
|
---|
574 | }
|
---|
575 |
|
---|
576 | settable = EVP_PKEY_CTX_settable_params(ctx->pctx);
|
---|
577 | if (!OSSL_PARAM_allocate_from_text(ctx->params, settable,
|
---|
578 | tmp_ctrl_str,
|
---|
579 | ctx->p2, strlen(ctx->p2),
|
---|
580 | &exists)) {
|
---|
581 | if (!exists) {
|
---|
582 | ERR_raise_data(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED,
|
---|
583 | "[action:%d, state:%d] name=%s, value=%s",
|
---|
584 | ctx->action_type, state,
|
---|
585 | orig_ctrl_str, orig_value);
|
---|
586 | return -2;
|
---|
587 | }
|
---|
588 | return 0;
|
---|
589 | }
|
---|
590 | ctx->allocated_buf = ctx->params->data;
|
---|
591 | ctx->buflen = ctx->params->data_size;
|
---|
592 | }
|
---|
593 | break;
|
---|
594 | case POST_CTRL_STR_TO_PARAMS:
|
---|
595 | /* Nothing to be done */
|
---|
596 | break;
|
---|
597 |
|
---|
598 | /*
|
---|
599 | * PRE_PARAMS_TO_CTRL and POST_PARAMS_TO_CTRL handle params to ctrl
|
---|
600 | * translations. PRE_PARAMS_TO_CTRL is responsible for preparing
|
---|
601 | * |p1| and |p2|, and POST_PARAMS_TO_CTRL is responsible for bringing
|
---|
602 | * the EVP_PKEY_CTX_ctrl() return value (passed as |p1|) and |p2| back
|
---|
603 | * to |*params|.
|
---|
604 | *
|
---|
605 | * PKEY is treated just like POST_PARAMS_TO_CTRL, making it easy
|
---|
606 | * for the related fixup_args functions to just set |p1| and |p2|
|
---|
607 | * appropriately and leave it to this section of code to fix up
|
---|
608 | * |ctx->params| accordingly.
|
---|
609 | */
|
---|
610 | case PKEY:
|
---|
611 | case POST_PARAMS_TO_CTRL:
|
---|
612 | ret = ctx->p1;
|
---|
613 | /* FALLTHRU */
|
---|
614 | case PRE_PARAMS_TO_CTRL:
|
---|
615 | {
|
---|
616 | /* This is params to ctrl translation */
|
---|
617 | if (state == PRE_PARAMS_TO_CTRL && ctx->action_type == SET) {
|
---|
618 | /* For the PRE state, only setting needs some work to be done */
|
---|
619 |
|
---|
620 | /* When setting, we populate |p1| and |p2| from |*params| */
|
---|
621 | switch (translation->param_data_type) {
|
---|
622 | case OSSL_PARAM_INTEGER:
|
---|
623 | return OSSL_PARAM_get_int(ctx->params, &ctx->p1);
|
---|
624 | case OSSL_PARAM_UNSIGNED_INTEGER:
|
---|
625 | if (ctx->p2 != NULL) {
|
---|
626 | /* BIGNUM passed down with p2 */
|
---|
627 | if (!OSSL_PARAM_get_BN(ctx->params, ctx->p2))
|
---|
628 | return 0;
|
---|
629 | } else {
|
---|
630 | /* Normal C unsigned int passed down */
|
---|
631 | if (!OSSL_PARAM_get_uint(ctx->params,
|
---|
632 | (unsigned int *)&ctx->p1))
|
---|
633 | return 0;
|
---|
634 | }
|
---|
635 | return 1;
|
---|
636 | case OSSL_PARAM_UTF8_STRING:
|
---|
637 | return OSSL_PARAM_get_utf8_string(ctx->params,
|
---|
638 | ctx->p2, ctx->sz);
|
---|
639 | case OSSL_PARAM_OCTET_STRING:
|
---|
640 | return OSSL_PARAM_get_octet_string(ctx->params,
|
---|
641 | ctx->p2, ctx->sz,
|
---|
642 | &ctx->sz);
|
---|
643 | case OSSL_PARAM_OCTET_PTR:
|
---|
644 | return OSSL_PARAM_get_octet_ptr(ctx->params,
|
---|
645 | ctx->p2, &ctx->sz);
|
---|
646 | default:
|
---|
647 | ERR_raise_data(ERR_LIB_EVP, ERR_R_UNSUPPORTED,
|
---|
648 | "[action:%d, state:%d] "
|
---|
649 | "unknown OSSL_PARAM data type %d",
|
---|
650 | ctx->action_type, state,
|
---|
651 | translation->param_data_type);
|
---|
652 | return 0;
|
---|
653 | }
|
---|
654 | } else if ((state == POST_PARAMS_TO_CTRL || state == PKEY)
|
---|
655 | && ctx->action_type == GET) {
|
---|
656 | /* For the POST state, only getting needs some work to be done */
|
---|
657 | unsigned int param_data_type = translation->param_data_type;
|
---|
658 | size_t size = (size_t)ctx->p1;
|
---|
659 |
|
---|
660 | if (state == PKEY)
|
---|
661 | size = ctx->sz;
|
---|
662 | if (param_data_type == 0) {
|
---|
663 | /* we must have a fixup_args function to work */
|
---|
664 | if (!ossl_assert(translation->fixup_args != NULL)) {
|
---|
665 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
|
---|
666 | return 0;
|
---|
667 | }
|
---|
668 | param_data_type = ctx->params->data_type;
|
---|
669 | }
|
---|
670 | /* When getting, we populate |*params| from |p1| and |p2| */
|
---|
671 | switch (param_data_type) {
|
---|
672 | case OSSL_PARAM_INTEGER:
|
---|
673 | return OSSL_PARAM_set_int(ctx->params, ctx->p1);
|
---|
674 | case OSSL_PARAM_UNSIGNED_INTEGER:
|
---|
675 | if (ctx->p2 != NULL) {
|
---|
676 | /* BIGNUM passed back */
|
---|
677 | return OSSL_PARAM_set_BN(ctx->params, ctx->p2);
|
---|
678 | } else {
|
---|
679 | /* Normal C unsigned int passed back */
|
---|
680 | return OSSL_PARAM_set_uint(ctx->params,
|
---|
681 | (unsigned int)ctx->p1);
|
---|
682 | }
|
---|
683 | return 0;
|
---|
684 | case OSSL_PARAM_UTF8_STRING:
|
---|
685 | return OSSL_PARAM_set_utf8_string(ctx->params, ctx->p2);
|
---|
686 | case OSSL_PARAM_OCTET_STRING:
|
---|
687 | return OSSL_PARAM_set_octet_string(ctx->params, ctx->p2,
|
---|
688 | size);
|
---|
689 | case OSSL_PARAM_OCTET_PTR:
|
---|
690 | return OSSL_PARAM_set_octet_ptr(ctx->params, ctx->p2,
|
---|
691 | size);
|
---|
692 | default:
|
---|
693 | ERR_raise_data(ERR_LIB_EVP, ERR_R_UNSUPPORTED,
|
---|
694 | "[action:%d, state:%d] "
|
---|
695 | "unsupported OSSL_PARAM data type %d",
|
---|
696 | ctx->action_type, state,
|
---|
697 | translation->param_data_type);
|
---|
698 | return 0;
|
---|
699 | }
|
---|
700 | }
|
---|
701 | }
|
---|
702 | /* Any other combination is simply pass-through */
|
---|
703 | break;
|
---|
704 | }
|
---|
705 | return ret;
|
---|
706 | }
|
---|
707 |
|
---|
708 | static int
|
---|
709 | cleanup_translation_ctx(enum state state,
|
---|
710 | const struct translation_st *translation,
|
---|
711 | struct translation_ctx_st *ctx)
|
---|
712 | {
|
---|
713 | if (ctx->allocated_buf != NULL)
|
---|
714 | OPENSSL_free(ctx->allocated_buf);
|
---|
715 | ctx->allocated_buf = NULL;
|
---|
716 | return 1;
|
---|
717 | }
|
---|
718 |
|
---|
719 | /*
|
---|
720 | * fix_cipher_md fixes up an EVP_CIPHER / EVP_MD to its name on SET,
|
---|
721 | * and cipher / md name to EVP_MD on GET.
|
---|
722 | */
|
---|
723 | static const char *get_cipher_name(void *cipher)
|
---|
724 | {
|
---|
725 | return EVP_CIPHER_get0_name(cipher);
|
---|
726 | }
|
---|
727 |
|
---|
728 | static const char *get_md_name(void *md)
|
---|
729 | {
|
---|
730 | return EVP_MD_get0_name(md);
|
---|
731 | }
|
---|
732 |
|
---|
733 | static const void *get_cipher_by_name(OSSL_LIB_CTX *libctx, const char *name)
|
---|
734 | {
|
---|
735 | return evp_get_cipherbyname_ex(libctx, name);
|
---|
736 | }
|
---|
737 |
|
---|
738 | static const void *get_md_by_name(OSSL_LIB_CTX *libctx, const char *name)
|
---|
739 | {
|
---|
740 | return evp_get_digestbyname_ex(libctx, name);
|
---|
741 | }
|
---|
742 |
|
---|
743 | static int fix_cipher_md(enum state state,
|
---|
744 | const struct translation_st *translation,
|
---|
745 | struct translation_ctx_st *ctx,
|
---|
746 | const char *(*get_name)(void *algo),
|
---|
747 | const void *(*get_algo_by_name)(OSSL_LIB_CTX *libctx,
|
---|
748 | const char *name))
|
---|
749 | {
|
---|
750 | int ret = 1;
|
---|
751 |
|
---|
752 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
753 | return ret;
|
---|
754 |
|
---|
755 | if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == GET) {
|
---|
756 | /*
|
---|
757 | * |ctx->p2| contains the address to an EVP_CIPHER or EVP_MD pointer
|
---|
758 | * to be filled in. We need to remember it, then make |ctx->p2|
|
---|
759 | * point at a buffer to be filled in with the name, and |ctx->p1|
|
---|
760 | * with its size. default_fixup_args() will take care of the rest
|
---|
761 | * for us.
|
---|
762 | */
|
---|
763 | ctx->orig_p2 = ctx->p2;
|
---|
764 | ctx->p2 = ctx->name_buf;
|
---|
765 | ctx->p1 = sizeof(ctx->name_buf);
|
---|
766 | } else if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == SET) {
|
---|
767 | /*
|
---|
768 | * In different parts of OpenSSL, this ctrl command is used
|
---|
769 | * differently. Some calls pass a NID as p1, others pass an
|
---|
770 | * EVP_CIPHER pointer as p2...
|
---|
771 | */
|
---|
772 | ctx->p2 = (char *)(ctx->p2 == NULL
|
---|
773 | ? OBJ_nid2sn(ctx->p1)
|
---|
774 | : get_name(ctx->p2));
|
---|
775 | ctx->p1 = strlen(ctx->p2);
|
---|
776 | } else if (state == POST_PARAMS_TO_CTRL && ctx->action_type == GET) {
|
---|
777 | ctx->p2 = (ctx->p2 == NULL ? "" : (char *)get_name(ctx->p2));
|
---|
778 | ctx->p1 = strlen(ctx->p2);
|
---|
779 | }
|
---|
780 |
|
---|
781 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
782 | return ret;
|
---|
783 |
|
---|
784 | if (state == POST_CTRL_TO_PARAMS && ctx->action_type == GET) {
|
---|
785 | /*
|
---|
786 | * Here's how we re-use |ctx->orig_p2| that was set in the
|
---|
787 | * PRE_CTRL_TO_PARAMS state above.
|
---|
788 | */
|
---|
789 | *(void **)ctx->orig_p2 =
|
---|
790 | (void *)get_algo_by_name(ctx->pctx->libctx, ctx->p2);
|
---|
791 | ctx->p1 = 1;
|
---|
792 | } else if (state == PRE_PARAMS_TO_CTRL && ctx->action_type == SET) {
|
---|
793 | ctx->p2 = (void *)get_algo_by_name(ctx->pctx->libctx, ctx->p2);
|
---|
794 | ctx->p1 = 0;
|
---|
795 | }
|
---|
796 |
|
---|
797 | return ret;
|
---|
798 | }
|
---|
799 |
|
---|
800 | static int fix_cipher(enum state state,
|
---|
801 | const struct translation_st *translation,
|
---|
802 | struct translation_ctx_st *ctx)
|
---|
803 | {
|
---|
804 | return fix_cipher_md(state, translation, ctx,
|
---|
805 | get_cipher_name, get_cipher_by_name);
|
---|
806 | }
|
---|
807 |
|
---|
808 | static int fix_md(enum state state,
|
---|
809 | const struct translation_st *translation,
|
---|
810 | struct translation_ctx_st *ctx)
|
---|
811 | {
|
---|
812 | return fix_cipher_md(state, translation, ctx,
|
---|
813 | get_md_name, get_md_by_name);
|
---|
814 | }
|
---|
815 |
|
---|
816 | static int fix_distid_len(enum state state,
|
---|
817 | const struct translation_st *translation,
|
---|
818 | struct translation_ctx_st *ctx)
|
---|
819 | {
|
---|
820 | int ret = default_fixup_args(state, translation, ctx);
|
---|
821 |
|
---|
822 | if (ret > 0) {
|
---|
823 | ret = 0;
|
---|
824 | if ((state == POST_CTRL_TO_PARAMS
|
---|
825 | || state == POST_CTRL_STR_TO_PARAMS) && ctx->action_type == GET) {
|
---|
826 | *(size_t *)ctx->p2 = ctx->sz;
|
---|
827 | ret = 1;
|
---|
828 | }
|
---|
829 | }
|
---|
830 | return ret;
|
---|
831 | }
|
---|
832 |
|
---|
833 | struct kdf_type_map_st {
|
---|
834 | int kdf_type_num;
|
---|
835 | const char *kdf_type_str;
|
---|
836 | };
|
---|
837 |
|
---|
838 | static int fix_kdf_type(enum state state,
|
---|
839 | const struct translation_st *translation,
|
---|
840 | struct translation_ctx_st *ctx,
|
---|
841 | const struct kdf_type_map_st *kdf_type_map)
|
---|
842 | {
|
---|
843 | /*
|
---|
844 | * The EVP_PKEY_CTRL_DH_KDF_TYPE ctrl command is a bit special, in
|
---|
845 | * that it's used both for setting a value, and for getting it, all
|
---|
846 | * depending on the value if |p1|; if |p1| is -2, the backend is
|
---|
847 | * supposed to place the current kdf type in |p2|, and if not, |p1|
|
---|
848 | * is interpreted as the new kdf type.
|
---|
849 | */
|
---|
850 | int ret = 0;
|
---|
851 |
|
---|
852 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
853 | return ret;
|
---|
854 |
|
---|
855 | if (state == PRE_CTRL_TO_PARAMS) {
|
---|
856 | /*
|
---|
857 | * In |translations|, the initial value for |ctx->action_type| must
|
---|
858 | * be NONE.
|
---|
859 | */
|
---|
860 | if (!ossl_assert(ctx->action_type == NONE))
|
---|
861 | return 0;
|
---|
862 |
|
---|
863 | /* The action type depends on the value of *p1 */
|
---|
864 | if (ctx->p1 == -2) {
|
---|
865 | /*
|
---|
866 | * The OSSL_PARAMS getter needs space to store a copy of the kdf
|
---|
867 | * type string. We use |ctx->name_buf|, which has enough space
|
---|
868 | * allocated.
|
---|
869 | *
|
---|
870 | * (this wouldn't be needed if the OSSL_xxx_PARAM_KDF_TYPE
|
---|
871 | * had the data type OSSL_PARAM_UTF8_PTR)
|
---|
872 | */
|
---|
873 | ctx->p2 = ctx->name_buf;
|
---|
874 | ctx->p1 = sizeof(ctx->name_buf);
|
---|
875 | ctx->action_type = GET;
|
---|
876 | } else {
|
---|
877 | ctx->action_type = SET;
|
---|
878 | }
|
---|
879 | }
|
---|
880 |
|
---|
881 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
882 | return ret;
|
---|
883 |
|
---|
884 | if ((state == PRE_CTRL_TO_PARAMS && ctx->action_type == SET)
|
---|
885 | || (state == POST_PARAMS_TO_CTRL && ctx->action_type == GET)) {
|
---|
886 | ret = -2;
|
---|
887 | /* Convert KDF type numbers to strings */
|
---|
888 | for (; kdf_type_map->kdf_type_str != NULL; kdf_type_map++)
|
---|
889 | if (ctx->p1 == kdf_type_map->kdf_type_num) {
|
---|
890 | ctx->p2 = (char *)kdf_type_map->kdf_type_str;
|
---|
891 | ret = 1;
|
---|
892 | break;
|
---|
893 | }
|
---|
894 | if (ret <= 0)
|
---|
895 | goto end;
|
---|
896 | ctx->p1 = strlen(ctx->p2);
|
---|
897 | }
|
---|
898 |
|
---|
899 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
900 | return ret;
|
---|
901 |
|
---|
902 | if ((state == POST_CTRL_TO_PARAMS && ctx->action_type == GET)
|
---|
903 | || (state == PRE_PARAMS_TO_CTRL && ctx->action_type == SET)) {
|
---|
904 | ctx->p1 = ret = -1;
|
---|
905 |
|
---|
906 | /* Convert KDF type strings to numbers */
|
---|
907 | for (; kdf_type_map->kdf_type_str != NULL; kdf_type_map++)
|
---|
908 | if (strcasecmp(ctx->p2, kdf_type_map->kdf_type_str) == 0) {
|
---|
909 | ctx->p1 = kdf_type_map->kdf_type_num;
|
---|
910 | ret = 1;
|
---|
911 | break;
|
---|
912 | }
|
---|
913 | ctx->p2 = NULL;
|
---|
914 | } else if (state == PRE_PARAMS_TO_CTRL && ctx->action_type == GET) {
|
---|
915 | ctx->p1 = -2;
|
---|
916 | }
|
---|
917 | end:
|
---|
918 | return ret;
|
---|
919 | }
|
---|
920 |
|
---|
921 | /* EVP_PKEY_CTRL_DH_KDF_TYPE */
|
---|
922 | static int fix_dh_kdf_type(enum state state,
|
---|
923 | const struct translation_st *translation,
|
---|
924 | struct translation_ctx_st *ctx)
|
---|
925 | {
|
---|
926 | static const struct kdf_type_map_st kdf_type_map[] = {
|
---|
927 | { EVP_PKEY_DH_KDF_NONE, "" },
|
---|
928 | { EVP_PKEY_DH_KDF_X9_42, OSSL_KDF_NAME_X942KDF_ASN1 },
|
---|
929 | { 0, NULL }
|
---|
930 | };
|
---|
931 |
|
---|
932 | return fix_kdf_type(state, translation, ctx, kdf_type_map);
|
---|
933 | }
|
---|
934 |
|
---|
935 | /* EVP_PKEY_CTRL_EC_KDF_TYPE */
|
---|
936 | static int fix_ec_kdf_type(enum state state,
|
---|
937 | const struct translation_st *translation,
|
---|
938 | struct translation_ctx_st *ctx)
|
---|
939 | {
|
---|
940 | static const struct kdf_type_map_st kdf_type_map[] = {
|
---|
941 | { EVP_PKEY_ECDH_KDF_NONE, "" },
|
---|
942 | { EVP_PKEY_ECDH_KDF_X9_63, OSSL_KDF_NAME_X963KDF },
|
---|
943 | { 0, NULL }
|
---|
944 | };
|
---|
945 |
|
---|
946 | return fix_kdf_type(state, translation, ctx, kdf_type_map);
|
---|
947 | }
|
---|
948 |
|
---|
949 | /* EVP_PKEY_CTRL_DH_KDF_OID, EVP_PKEY_CTRL_GET_DH_KDF_OID, ...??? */
|
---|
950 | static int fix_oid(enum state state,
|
---|
951 | const struct translation_st *translation,
|
---|
952 | struct translation_ctx_st *ctx)
|
---|
953 | {
|
---|
954 | int ret;
|
---|
955 |
|
---|
956 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
957 | return ret;
|
---|
958 |
|
---|
959 | if ((state == PRE_CTRL_TO_PARAMS && ctx->action_type == SET)
|
---|
960 | || (state == POST_PARAMS_TO_CTRL && ctx->action_type == GET)) {
|
---|
961 | /*
|
---|
962 | * We're translating from ctrl to params and setting the OID, or
|
---|
963 | * we're translating from params to ctrl and getting the OID.
|
---|
964 | * Either way, |ctx->p2| points at an ASN1_OBJECT, and needs to have
|
---|
965 | * that replaced with the corresponding name.
|
---|
966 | * default_fixup_args() will then be able to convert that to the
|
---|
967 | * corresponding OSSL_PARAM.
|
---|
968 | */
|
---|
969 | OBJ_obj2txt(ctx->name_buf, sizeof(ctx->name_buf), ctx->p2, 0);
|
---|
970 | ctx->p2 = (char *)ctx->name_buf;
|
---|
971 | ctx->p1 = 0; /* let default_fixup_args() figure out the length */
|
---|
972 | }
|
---|
973 |
|
---|
974 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
975 | return ret;
|
---|
976 |
|
---|
977 | if ((state == PRE_PARAMS_TO_CTRL && ctx->action_type == SET)
|
---|
978 | || (state == POST_CTRL_TO_PARAMS && ctx->action_type == GET)) {
|
---|
979 | /*
|
---|
980 | * We're translating from ctrl to params and setting the OID name,
|
---|
981 | * or we're translating from params to ctrl and getting the OID
|
---|
982 | * name. Either way, default_fixup_args() has placed the OID name
|
---|
983 | * in |ctx->p2|, all we need to do now is to replace that with the
|
---|
984 | * corresponding ASN1_OBJECT.
|
---|
985 | */
|
---|
986 | ctx->p2 = (ASN1_OBJECT *)OBJ_txt2obj(ctx->p2, 0);
|
---|
987 | }
|
---|
988 |
|
---|
989 | return ret;
|
---|
990 | }
|
---|
991 |
|
---|
992 | /* EVP_PKEY_CTRL_DH_NID */
|
---|
993 | static int fix_dh_nid(enum state state,
|
---|
994 | const struct translation_st *translation,
|
---|
995 | struct translation_ctx_st *ctx)
|
---|
996 | {
|
---|
997 | int ret;
|
---|
998 |
|
---|
999 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1000 | return ret;
|
---|
1001 |
|
---|
1002 | /* This is only settable */
|
---|
1003 | if (ctx->action_type != SET)
|
---|
1004 | return 0;
|
---|
1005 |
|
---|
1006 | if (state == PRE_CTRL_TO_PARAMS) {
|
---|
1007 | if ((ctx->p2 = (char *)ossl_ffc_named_group_get_name
|
---|
1008 | (ossl_ffc_uid_to_dh_named_group(ctx->p1))) == NULL) {
|
---|
1009 | ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_VALUE);
|
---|
1010 | return 0;
|
---|
1011 | }
|
---|
1012 | ctx->p1 = 0;
|
---|
1013 | }
|
---|
1014 |
|
---|
1015 | return default_fixup_args(state, translation, ctx);
|
---|
1016 | }
|
---|
1017 |
|
---|
1018 | /* EVP_PKEY_CTRL_DH_RFC5114 */
|
---|
1019 | static int fix_dh_nid5114(enum state state,
|
---|
1020 | const struct translation_st *translation,
|
---|
1021 | struct translation_ctx_st *ctx)
|
---|
1022 | {
|
---|
1023 | int ret;
|
---|
1024 |
|
---|
1025 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1026 | return ret;
|
---|
1027 |
|
---|
1028 | /* This is only settable */
|
---|
1029 | if (ctx->action_type != SET)
|
---|
1030 | return 0;
|
---|
1031 |
|
---|
1032 | switch (state) {
|
---|
1033 | case PRE_CTRL_TO_PARAMS:
|
---|
1034 | if ((ctx->p2 = (char *)ossl_ffc_named_group_get_name
|
---|
1035 | (ossl_ffc_uid_to_dh_named_group(ctx->p1))) == NULL) {
|
---|
1036 | ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_VALUE);
|
---|
1037 | return 0;
|
---|
1038 | }
|
---|
1039 |
|
---|
1040 | ctx->p1 = 0;
|
---|
1041 | break;
|
---|
1042 |
|
---|
1043 | case PRE_CTRL_STR_TO_PARAMS:
|
---|
1044 | if (ctx->p2 == NULL)
|
---|
1045 | return 0;
|
---|
1046 | if ((ctx->p2 = (char *)ossl_ffc_named_group_get_name
|
---|
1047 | (ossl_ffc_uid_to_dh_named_group(atoi(ctx->p2)))) == NULL) {
|
---|
1048 | ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_VALUE);
|
---|
1049 | return 0;
|
---|
1050 | }
|
---|
1051 |
|
---|
1052 | ctx->p1 = 0;
|
---|
1053 | break;
|
---|
1054 |
|
---|
1055 | default:
|
---|
1056 | break;
|
---|
1057 | }
|
---|
1058 |
|
---|
1059 | return default_fixup_args(state, translation, ctx);
|
---|
1060 | }
|
---|
1061 |
|
---|
1062 | /* EVP_PKEY_CTRL_DH_PARAMGEN_TYPE */
|
---|
1063 | static int fix_dh_paramgen_type(enum state state,
|
---|
1064 | const struct translation_st *translation,
|
---|
1065 | struct translation_ctx_st *ctx)
|
---|
1066 | {
|
---|
1067 | int ret;
|
---|
1068 |
|
---|
1069 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1070 | return ret;
|
---|
1071 |
|
---|
1072 | /* This is only settable */
|
---|
1073 | if (ctx->action_type != SET)
|
---|
1074 | return 0;
|
---|
1075 |
|
---|
1076 | if (state == PRE_CTRL_STR_TO_PARAMS) {
|
---|
1077 | ctx->p2 = (char *)ossl_dh_gen_type_id2name(atoi(ctx->p2));
|
---|
1078 | ctx->p1 = strlen(ctx->p2);
|
---|
1079 | }
|
---|
1080 |
|
---|
1081 | return default_fixup_args(state, translation, ctx);
|
---|
1082 | }
|
---|
1083 |
|
---|
1084 | /* EVP_PKEY_CTRL_EC_PARAM_ENC */
|
---|
1085 | static int fix_ec_param_enc(enum state state,
|
---|
1086 | const struct translation_st *translation,
|
---|
1087 | struct translation_ctx_st *ctx)
|
---|
1088 | {
|
---|
1089 | int ret;
|
---|
1090 |
|
---|
1091 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1092 | return ret;
|
---|
1093 |
|
---|
1094 | /* This is currently only settable */
|
---|
1095 | if (ctx->action_type != SET)
|
---|
1096 | return 0;
|
---|
1097 |
|
---|
1098 | if (state == PRE_CTRL_TO_PARAMS) {
|
---|
1099 | switch (ctx->p1) {
|
---|
1100 | case OPENSSL_EC_EXPLICIT_CURVE:
|
---|
1101 | ctx->p2 = OSSL_PKEY_EC_ENCODING_EXPLICIT;
|
---|
1102 | break;
|
---|
1103 | case OPENSSL_EC_NAMED_CURVE:
|
---|
1104 | ctx->p2 = OSSL_PKEY_EC_ENCODING_GROUP;
|
---|
1105 | break;
|
---|
1106 | default:
|
---|
1107 | ret = -2;
|
---|
1108 | goto end;
|
---|
1109 | }
|
---|
1110 | ctx->p1 = 0;
|
---|
1111 | }
|
---|
1112 |
|
---|
1113 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1114 | return ret;
|
---|
1115 |
|
---|
1116 | if (state == PRE_PARAMS_TO_CTRL) {
|
---|
1117 | if (strcmp(ctx->p2, OSSL_PKEY_EC_ENCODING_EXPLICIT) == 0)
|
---|
1118 | ctx->p1 = OPENSSL_EC_EXPLICIT_CURVE;
|
---|
1119 | else if (strcmp(ctx->p2, OSSL_PKEY_EC_ENCODING_GROUP) == 0)
|
---|
1120 | ctx->p1 = OPENSSL_EC_NAMED_CURVE;
|
---|
1121 | else
|
---|
1122 | ctx->p1 = ret = -2;
|
---|
1123 | ctx->p2 = NULL;
|
---|
1124 | }
|
---|
1125 |
|
---|
1126 | end:
|
---|
1127 | if (ret == -2)
|
---|
1128 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
|
---|
1129 | return ret;
|
---|
1130 | }
|
---|
1131 |
|
---|
1132 | /* EVP_PKEY_CTRL_EC_PARAMGEN_CURVE_NID */
|
---|
1133 | static int fix_ec_paramgen_curve_nid(enum state state,
|
---|
1134 | const struct translation_st *translation,
|
---|
1135 | struct translation_ctx_st *ctx)
|
---|
1136 | {
|
---|
1137 | int ret;
|
---|
1138 |
|
---|
1139 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1140 | return ret;
|
---|
1141 |
|
---|
1142 | /* This is currently only settable */
|
---|
1143 | if (ctx->action_type != SET)
|
---|
1144 | return 0;
|
---|
1145 |
|
---|
1146 | if (state == PRE_CTRL_TO_PARAMS) {
|
---|
1147 | ctx->p2 = (char *)OBJ_nid2sn(ctx->p1);
|
---|
1148 | ctx->p1 = 0;
|
---|
1149 | }
|
---|
1150 |
|
---|
1151 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1152 | return ret;
|
---|
1153 |
|
---|
1154 | if (state == PRE_PARAMS_TO_CTRL) {
|
---|
1155 | ctx->p1 = OBJ_sn2nid(ctx->p2);
|
---|
1156 | ctx->p2 = NULL;
|
---|
1157 | }
|
---|
1158 |
|
---|
1159 | return ret;
|
---|
1160 | }
|
---|
1161 |
|
---|
1162 | /* EVP_PKEY_CTRL_EC_ECDH_COFACTOR */
|
---|
1163 | static int fix_ecdh_cofactor(enum state state,
|
---|
1164 | const struct translation_st *translation,
|
---|
1165 | struct translation_ctx_st *ctx)
|
---|
1166 | {
|
---|
1167 | /*
|
---|
1168 | * The EVP_PKEY_CTRL_EC_ECDH_COFACTOR ctrl command is a bit special, in
|
---|
1169 | * that it's used both for setting a value, and for getting it, all
|
---|
1170 | * depending on the value if |ctx->p1|; if |ctx->p1| is -2, the backend is
|
---|
1171 | * supposed to place the current cofactor mode in |ctx->p2|, and if not,
|
---|
1172 | * |ctx->p1| is interpreted as the new cofactor mode.
|
---|
1173 | */
|
---|
1174 | int ret = 0;
|
---|
1175 |
|
---|
1176 | if (state == PRE_CTRL_TO_PARAMS) {
|
---|
1177 | /*
|
---|
1178 | * The initial value for |ctx->action_type| must be zero.
|
---|
1179 | * evp_pkey_ctrl_to_params() takes it from the translation item.
|
---|
1180 | */
|
---|
1181 | if (!ossl_assert(ctx->action_type == NONE))
|
---|
1182 | return 0;
|
---|
1183 |
|
---|
1184 | /* The action type depends on the value of ctx->p1 */
|
---|
1185 | if (ctx->p1 == -2)
|
---|
1186 | ctx->action_type = GET;
|
---|
1187 | else
|
---|
1188 | ctx->action_type = SET;
|
---|
1189 | } else if (state == PRE_CTRL_STR_TO_PARAMS) {
|
---|
1190 | ctx->action_type = SET;
|
---|
1191 | } else if (state == PRE_PARAMS_TO_CTRL) {
|
---|
1192 | /* The initial value for |ctx->action_type| must not be zero. */
|
---|
1193 | if (!ossl_assert(ctx->action_type != NONE))
|
---|
1194 | return 0;
|
---|
1195 | }
|
---|
1196 |
|
---|
1197 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1198 | return ret;
|
---|
1199 |
|
---|
1200 | if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == SET) {
|
---|
1201 | if (ctx->p1 < -1 || ctx->p1 > 1) {
|
---|
1202 | /* Uses the same return value of pkey_ec_ctrl() */
|
---|
1203 | return -2;
|
---|
1204 | }
|
---|
1205 | }
|
---|
1206 |
|
---|
1207 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1208 | return ret;
|
---|
1209 |
|
---|
1210 | if (state == POST_CTRL_TO_PARAMS && ctx->action_type == GET) {
|
---|
1211 | if (ctx->p1 < 0 || ctx->p1 > 1) {
|
---|
1212 | /*
|
---|
1213 | * The provider should return either 0 or 1, any other value is a
|
---|
1214 | * provider error.
|
---|
1215 | */
|
---|
1216 | ctx->p1 = ret = -1;
|
---|
1217 | }
|
---|
1218 | } else if (state == PRE_PARAMS_TO_CTRL && ctx->action_type == GET) {
|
---|
1219 | ctx->p1 = -2;
|
---|
1220 | }
|
---|
1221 |
|
---|
1222 | return ret;
|
---|
1223 | }
|
---|
1224 |
|
---|
1225 | /* EVP_PKEY_CTRL_RSA_PADDING, EVP_PKEY_CTRL_GET_RSA_PADDING */
|
---|
1226 | static int fix_rsa_padding_mode(enum state state,
|
---|
1227 | const struct translation_st *translation,
|
---|
1228 | struct translation_ctx_st *ctx)
|
---|
1229 | {
|
---|
1230 | static const OSSL_ITEM str_value_map[] = {
|
---|
1231 | { RSA_PKCS1_PADDING, "pkcs1" },
|
---|
1232 | { RSA_NO_PADDING, "none" },
|
---|
1233 | { RSA_PKCS1_OAEP_PADDING, "oaep" },
|
---|
1234 | { RSA_PKCS1_OAEP_PADDING, "oeap" },
|
---|
1235 | { RSA_X931_PADDING, "x931" },
|
---|
1236 | { RSA_PKCS1_PSS_PADDING, "pss" },
|
---|
1237 | /* Special case, will pass directly as an integer */
|
---|
1238 | { RSA_PKCS1_WITH_TLS_PADDING, NULL }
|
---|
1239 | };
|
---|
1240 | int ret;
|
---|
1241 |
|
---|
1242 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1243 | return ret;
|
---|
1244 |
|
---|
1245 | if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == GET) {
|
---|
1246 | /*
|
---|
1247 | * EVP_PKEY_CTRL_GET_RSA_PADDING returns the padding mode in the
|
---|
1248 | * weirdest way for a ctrl. Instead of doing like all other ctrls
|
---|
1249 | * that return a simple, i.e. just have that as a return value,
|
---|
1250 | * this particular ctrl treats p2 as the address for the int to be
|
---|
1251 | * returned. We must therefore remember |ctx->p2|, then make
|
---|
1252 | * |ctx->p2| point at a buffer to be filled in with the name, and
|
---|
1253 | * |ctx->p1| with its size. default_fixup_args() will take care
|
---|
1254 | * of the rest for us, along with the POST_CTRL_TO_PARAMS && GET
|
---|
1255 | * code section further down.
|
---|
1256 | */
|
---|
1257 | ctx->orig_p2 = ctx->p2;
|
---|
1258 | ctx->p2 = ctx->name_buf;
|
---|
1259 | ctx->p1 = sizeof(ctx->name_buf);
|
---|
1260 | } else if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == SET) {
|
---|
1261 | /*
|
---|
1262 | * Ideally, we should use utf8 strings for the diverse padding modes.
|
---|
1263 | * We only came here because someone called EVP_PKEY_CTX_ctrl(),
|
---|
1264 | * though, and since that can reasonably be seen as legacy code
|
---|
1265 | * that uses the diverse RSA macros for the padding mode, and we
|
---|
1266 | * know that at least our providers can handle the numeric modes,
|
---|
1267 | * we take the cheap route for now.
|
---|
1268 | *
|
---|
1269 | * The other solution would be to match |ctx->p1| against entries
|
---|
1270 | * in str_value_map and pass the corresponding string. However,
|
---|
1271 | * since we don't have a string for RSA_PKCS1_WITH_TLS_PADDING,
|
---|
1272 | * we have to do this same hack at least for that one.
|
---|
1273 | *
|
---|
1274 | * Since the "official" data type for the RSA padding mode is utf8
|
---|
1275 | * string, we cannot count on default_fixup_args(). Instead, we
|
---|
1276 | * build the OSSL_PARAM item ourselves and return immediately.
|
---|
1277 | */
|
---|
1278 | ctx->params[0] = OSSL_PARAM_construct_int(translation->param_key,
|
---|
1279 | &ctx->p1);
|
---|
1280 | return 1;
|
---|
1281 | } else if (state == POST_PARAMS_TO_CTRL && ctx->action_type == GET) {
|
---|
1282 | size_t i;
|
---|
1283 |
|
---|
1284 | /*
|
---|
1285 | * The EVP_PKEY_CTX_get_params() caller may have asked for a utf8
|
---|
1286 | * string, or may have asked for an integer of some sort. If they
|
---|
1287 | * ask for an integer, we respond directly. If not, we translate
|
---|
1288 | * the response from the ctrl function into a string.
|
---|
1289 | */
|
---|
1290 | switch (ctx->params->data_type) {
|
---|
1291 | case OSSL_PARAM_INTEGER:
|
---|
1292 | return OSSL_PARAM_get_int(ctx->params, &ctx->p1);
|
---|
1293 | case OSSL_PARAM_UNSIGNED_INTEGER:
|
---|
1294 | return OSSL_PARAM_get_uint(ctx->params, (unsigned int *)&ctx->p1);
|
---|
1295 | default:
|
---|
1296 | break;
|
---|
1297 | }
|
---|
1298 |
|
---|
1299 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1300 | if (ctx->p1 == (int)str_value_map[i].id)
|
---|
1301 | break;
|
---|
1302 | }
|
---|
1303 | if (i == OSSL_NELEM(str_value_map)) {
|
---|
1304 | ERR_raise_data(ERR_LIB_RSA, RSA_R_UNKNOWN_PADDING_TYPE,
|
---|
1305 | "[action:%d, state:%d] padding number %d",
|
---|
1306 | ctx->action_type, state, ctx->p1);
|
---|
1307 | return -2;
|
---|
1308 | }
|
---|
1309 | /*
|
---|
1310 | * If we don't have a string, we can't do anything. The caller
|
---|
1311 | * should have asked for a number...
|
---|
1312 | */
|
---|
1313 | if (str_value_map[i].ptr == NULL) {
|
---|
1314 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
|
---|
1315 | return -2;
|
---|
1316 | }
|
---|
1317 | ctx->p2 = str_value_map[i].ptr;
|
---|
1318 | ctx->p1 = strlen(ctx->p2);
|
---|
1319 | }
|
---|
1320 |
|
---|
1321 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1322 | return ret;
|
---|
1323 |
|
---|
1324 | if ((ctx->action_type == SET && state == PRE_PARAMS_TO_CTRL)
|
---|
1325 | || (ctx->action_type == GET && state == POST_CTRL_TO_PARAMS)) {
|
---|
1326 | size_t i;
|
---|
1327 |
|
---|
1328 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1329 | if (strcmp(ctx->p2, str_value_map[i].ptr) == 0)
|
---|
1330 | break;
|
---|
1331 | }
|
---|
1332 |
|
---|
1333 | if (i == OSSL_NELEM(str_value_map)) {
|
---|
1334 | ERR_raise_data(ERR_LIB_RSA, RSA_R_UNKNOWN_PADDING_TYPE,
|
---|
1335 | "[action:%d, state:%d] padding name %s",
|
---|
1336 | ctx->action_type, state, ctx->p1);
|
---|
1337 | ctx->p1 = ret = -2;
|
---|
1338 | } else if (state == POST_CTRL_TO_PARAMS) {
|
---|
1339 | /* EVP_PKEY_CTRL_GET_RSA_PADDING weirdness explained further up */
|
---|
1340 | *(int *)ctx->orig_p2 = str_value_map[i].id;
|
---|
1341 | } else {
|
---|
1342 | ctx->p1 = str_value_map[i].id;
|
---|
1343 | }
|
---|
1344 | ctx->p2 = NULL;
|
---|
1345 | }
|
---|
1346 |
|
---|
1347 | return ret;
|
---|
1348 | }
|
---|
1349 |
|
---|
1350 | /* EVP_PKEY_CTRL_RSA_PSS_SALTLEN, EVP_PKEY_CTRL_GET_RSA_PSS_SALTLEN */
|
---|
1351 | static int fix_rsa_pss_saltlen(enum state state,
|
---|
1352 | const struct translation_st *translation,
|
---|
1353 | struct translation_ctx_st *ctx)
|
---|
1354 | {
|
---|
1355 | static const OSSL_ITEM str_value_map[] = {
|
---|
1356 | { (unsigned int)RSA_PSS_SALTLEN_DIGEST, "digest" },
|
---|
1357 | { (unsigned int)RSA_PSS_SALTLEN_MAX, "max" },
|
---|
1358 | { (unsigned int)RSA_PSS_SALTLEN_AUTO, "auto" }
|
---|
1359 | };
|
---|
1360 | int ret;
|
---|
1361 |
|
---|
1362 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1363 | return ret;
|
---|
1364 |
|
---|
1365 | if (state == PRE_CTRL_TO_PARAMS && ctx->action_type == GET) {
|
---|
1366 | /*
|
---|
1367 | * EVP_PKEY_CTRL_GET_RSA_PSS_SALTLEN returns the saltlen by filling
|
---|
1368 | * in the int pointed at by p2. This is potentially as weird as
|
---|
1369 | * the way EVP_PKEY_CTRL_GET_RSA_PADDING works, except that saltlen
|
---|
1370 | * might be a negative value, so it wouldn't work as a legitimate
|
---|
1371 | * return value.
|
---|
1372 | * In any case, we must therefore remember |ctx->p2|, then make
|
---|
1373 | * |ctx->p2| point at a buffer to be filled in with the name, and
|
---|
1374 | * |ctx->p1| with its size. default_fixup_args() will take care
|
---|
1375 | * of the rest for us, along with the POST_CTRL_TO_PARAMS && GET
|
---|
1376 | * code section further down.
|
---|
1377 | */
|
---|
1378 | ctx->orig_p2 = ctx->p2;
|
---|
1379 | ctx->p2 = ctx->name_buf;
|
---|
1380 | ctx->p1 = sizeof(ctx->name_buf);
|
---|
1381 | } else if ((ctx->action_type == SET && state == PRE_CTRL_TO_PARAMS)
|
---|
1382 | || (ctx->action_type == GET && state == POST_PARAMS_TO_CTRL)) {
|
---|
1383 | size_t i;
|
---|
1384 |
|
---|
1385 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1386 | if (ctx->p1 == (int)str_value_map[i].id)
|
---|
1387 | break;
|
---|
1388 | }
|
---|
1389 | if (i == OSSL_NELEM(str_value_map)) {
|
---|
1390 | BIO_snprintf(ctx->name_buf, sizeof(ctx->name_buf), "%d", ctx->p1);
|
---|
1391 | } else {
|
---|
1392 | /* This won't truncate but it will quiet static analysers */
|
---|
1393 | strncpy(ctx->name_buf, str_value_map[i].ptr, sizeof(ctx->name_buf) - 1);
|
---|
1394 | ctx->name_buf[sizeof(ctx->name_buf) - 1] = '\0';
|
---|
1395 | }
|
---|
1396 | ctx->p2 = ctx->name_buf;
|
---|
1397 | ctx->p1 = strlen(ctx->p2);
|
---|
1398 | }
|
---|
1399 |
|
---|
1400 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1401 | return ret;
|
---|
1402 |
|
---|
1403 | if ((ctx->action_type == SET && state == PRE_PARAMS_TO_CTRL)
|
---|
1404 | || (ctx->action_type == GET && state == POST_CTRL_TO_PARAMS)) {
|
---|
1405 | size_t i;
|
---|
1406 | int val;
|
---|
1407 |
|
---|
1408 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1409 | if (strcmp(ctx->p2, str_value_map[i].ptr) == 0)
|
---|
1410 | break;
|
---|
1411 | }
|
---|
1412 |
|
---|
1413 | val = i == OSSL_NELEM(str_value_map) ? atoi(ctx->p2)
|
---|
1414 | : (int)str_value_map[i].id;
|
---|
1415 | if (state == POST_CTRL_TO_PARAMS) {
|
---|
1416 | /*
|
---|
1417 | * EVP_PKEY_CTRL_GET_RSA_PSS_SALTLEN weirdness explained further
|
---|
1418 | * up
|
---|
1419 | */
|
---|
1420 | *(int *)ctx->orig_p2 = val;
|
---|
1421 | } else {
|
---|
1422 | ctx->p1 = val;
|
---|
1423 | }
|
---|
1424 | ctx->p2 = NULL;
|
---|
1425 | }
|
---|
1426 |
|
---|
1427 | return ret;
|
---|
1428 | }
|
---|
1429 |
|
---|
1430 | /* EVP_PKEY_CTRL_HKDF_MODE */
|
---|
1431 | static int fix_hkdf_mode(enum state state,
|
---|
1432 | const struct translation_st *translation,
|
---|
1433 | struct translation_ctx_st *ctx)
|
---|
1434 | {
|
---|
1435 | static const OSSL_ITEM str_value_map[] = {
|
---|
1436 | { EVP_KDF_HKDF_MODE_EXTRACT_AND_EXPAND, "EXTRACT_AND_EXPAND" },
|
---|
1437 | { EVP_KDF_HKDF_MODE_EXTRACT_ONLY, "EXTRACT_ONLY" },
|
---|
1438 | { EVP_KDF_HKDF_MODE_EXPAND_ONLY, "EXPAND_ONLY" }
|
---|
1439 | };
|
---|
1440 | int ret;
|
---|
1441 |
|
---|
1442 | if ((ret = default_check(state, translation, ctx)) <= 0)
|
---|
1443 | return ret;
|
---|
1444 |
|
---|
1445 | if ((ctx->action_type == SET && state == PRE_CTRL_TO_PARAMS)
|
---|
1446 | || (ctx->action_type == GET && state == POST_PARAMS_TO_CTRL)) {
|
---|
1447 | size_t i;
|
---|
1448 |
|
---|
1449 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1450 | if (ctx->p1 == (int)str_value_map[i].id)
|
---|
1451 | break;
|
---|
1452 | }
|
---|
1453 | if (i == OSSL_NELEM(str_value_map))
|
---|
1454 | return 0;
|
---|
1455 | ctx->p2 = str_value_map[i].ptr;
|
---|
1456 | ctx->p1 = strlen(ctx->p2);
|
---|
1457 | }
|
---|
1458 |
|
---|
1459 | if ((ret = default_fixup_args(state, translation, ctx)) <= 0)
|
---|
1460 | return ret;
|
---|
1461 |
|
---|
1462 | if ((ctx->action_type == SET && state == PRE_PARAMS_TO_CTRL)
|
---|
1463 | || (ctx->action_type == GET && state == POST_CTRL_TO_PARAMS)) {
|
---|
1464 | size_t i;
|
---|
1465 |
|
---|
1466 | for (i = 0; i < OSSL_NELEM(str_value_map); i++) {
|
---|
1467 | if (strcmp(ctx->p2, str_value_map[i].ptr) == 0)
|
---|
1468 | break;
|
---|
1469 | }
|
---|
1470 | if (i == OSSL_NELEM(str_value_map))
|
---|
1471 | return 0;
|
---|
1472 | if (state == POST_CTRL_TO_PARAMS)
|
---|
1473 | ret = str_value_map[i].id;
|
---|
1474 | else
|
---|
1475 | ctx->p1 = str_value_map[i].id;
|
---|
1476 | ctx->p2 = NULL;
|
---|
1477 | }
|
---|
1478 |
|
---|
1479 | return 1;
|
---|
1480 | }
|
---|
1481 |
|
---|
1482 | /*-
|
---|
1483 | * Payload getters
|
---|
1484 | * ===============
|
---|
1485 | *
|
---|
1486 | * These all get the data they want, then call default_fixup_args() as
|
---|
1487 | * a post-ctrl GET fixup. They all get NULL ctx, ctrl_cmd, ctrl_str,
|
---|
1488 | * p1, sz
|
---|
1489 | */
|
---|
1490 |
|
---|
1491 | /* Pilfering DH, DSA and EC_KEY */
|
---|
1492 | static int get_payload_group_name(enum state state,
|
---|
1493 | const struct translation_st *translation,
|
---|
1494 | struct translation_ctx_st *ctx)
|
---|
1495 | {
|
---|
1496 | EVP_PKEY *pkey = ctx->p2;
|
---|
1497 |
|
---|
1498 | ctx->p2 = NULL;
|
---|
1499 | switch (EVP_PKEY_get_base_id(pkey)) {
|
---|
1500 | #ifndef OPENSSL_NO_DH
|
---|
1501 | case EVP_PKEY_DH:
|
---|
1502 | {
|
---|
1503 | const DH *dh = EVP_PKEY_get0_DH(pkey);
|
---|
1504 | int uid = DH_get_nid(dh);
|
---|
1505 |
|
---|
1506 | if (uid != NID_undef) {
|
---|
1507 | const DH_NAMED_GROUP *dh_group =
|
---|
1508 | ossl_ffc_uid_to_dh_named_group(uid);
|
---|
1509 |
|
---|
1510 | ctx->p2 = (char *)ossl_ffc_named_group_get_name(dh_group);
|
---|
1511 | }
|
---|
1512 | }
|
---|
1513 | break;
|
---|
1514 | #endif
|
---|
1515 | #ifndef OPENSSL_NO_EC
|
---|
1516 | case EVP_PKEY_EC:
|
---|
1517 | {
|
---|
1518 | const EC_GROUP *grp =
|
---|
1519 | EC_KEY_get0_group(EVP_PKEY_get0_EC_KEY(pkey));
|
---|
1520 | int nid = NID_undef;
|
---|
1521 |
|
---|
1522 | if (grp != NULL)
|
---|
1523 | nid = EC_GROUP_get_curve_name(grp);
|
---|
1524 | if (nid != NID_undef)
|
---|
1525 | ctx->p2 = (char *)OSSL_EC_curve_nid2name(nid);
|
---|
1526 | }
|
---|
1527 | break;
|
---|
1528 | #endif
|
---|
1529 | default:
|
---|
1530 | ERR_raise(ERR_LIB_EVP, EVP_R_UNSUPPORTED_KEY_TYPE);
|
---|
1531 | return 0;
|
---|
1532 | }
|
---|
1533 |
|
---|
1534 | /*
|
---|
1535 | * Quietly ignoring unknown groups matches the behaviour on the provider
|
---|
1536 | * side.
|
---|
1537 | */
|
---|
1538 | if (ctx->p2 == NULL)
|
---|
1539 | return 1;
|
---|
1540 |
|
---|
1541 | ctx->p1 = strlen(ctx->p2);
|
---|
1542 | return default_fixup_args(state, translation, ctx);
|
---|
1543 | }
|
---|
1544 |
|
---|
1545 | static int get_payload_private_key(enum state state,
|
---|
1546 | const struct translation_st *translation,
|
---|
1547 | struct translation_ctx_st *ctx)
|
---|
1548 | {
|
---|
1549 | EVP_PKEY *pkey = ctx->p2;
|
---|
1550 |
|
---|
1551 | ctx->p2 = NULL;
|
---|
1552 | if (ctx->params->data_type != OSSL_PARAM_UNSIGNED_INTEGER)
|
---|
1553 | return 0;
|
---|
1554 |
|
---|
1555 | switch (EVP_PKEY_get_base_id(pkey)) {
|
---|
1556 | #ifndef OPENSSL_NO_DH
|
---|
1557 | case EVP_PKEY_DH:
|
---|
1558 | {
|
---|
1559 | const DH *dh = EVP_PKEY_get0_DH(pkey);
|
---|
1560 |
|
---|
1561 | ctx->p2 = (BIGNUM *)DH_get0_priv_key(dh);
|
---|
1562 | }
|
---|
1563 | break;
|
---|
1564 | #endif
|
---|
1565 | #ifndef OPENSSL_NO_EC
|
---|
1566 | case EVP_PKEY_EC:
|
---|
1567 | {
|
---|
1568 | const EC_KEY *ec = EVP_PKEY_get0_EC_KEY(pkey);
|
---|
1569 |
|
---|
1570 | ctx->p2 = (BIGNUM *)EC_KEY_get0_private_key(ec);
|
---|
1571 | }
|
---|
1572 | break;
|
---|
1573 | #endif
|
---|
1574 | default:
|
---|
1575 | ERR_raise(ERR_LIB_EVP, EVP_R_UNSUPPORTED_KEY_TYPE);
|
---|
1576 | return 0;
|
---|
1577 | }
|
---|
1578 |
|
---|
1579 | return default_fixup_args(state, translation, ctx);
|
---|
1580 | }
|
---|
1581 |
|
---|
1582 | static int get_payload_public_key(enum state state,
|
---|
1583 | const struct translation_st *translation,
|
---|
1584 | struct translation_ctx_st *ctx)
|
---|
1585 | {
|
---|
1586 | EVP_PKEY *pkey = ctx->p2;
|
---|
1587 | unsigned char *buf = NULL;
|
---|
1588 | int ret;
|
---|
1589 |
|
---|
1590 | ctx->p2 = NULL;
|
---|
1591 | switch (EVP_PKEY_get_base_id(pkey)) {
|
---|
1592 | #ifndef OPENSSL_NO_DH
|
---|
1593 | case EVP_PKEY_DHX:
|
---|
1594 | case EVP_PKEY_DH:
|
---|
1595 | switch (ctx->params->data_type) {
|
---|
1596 | case OSSL_PARAM_OCTET_STRING:
|
---|
1597 | ctx->sz = ossl_dh_key2buf(EVP_PKEY_get0_DH(pkey), &buf, 0, 1);
|
---|
1598 | ctx->p2 = buf;
|
---|
1599 | break;
|
---|
1600 | case OSSL_PARAM_UNSIGNED_INTEGER:
|
---|
1601 | ctx->p2 = (void *)DH_get0_pub_key(EVP_PKEY_get0_DH(pkey));
|
---|
1602 | break;
|
---|
1603 | default:
|
---|
1604 | return 0;
|
---|
1605 | }
|
---|
1606 | break;
|
---|
1607 | #endif
|
---|
1608 | #ifndef OPENSSL_NO_DSA
|
---|
1609 | case EVP_PKEY_DSA:
|
---|
1610 | if (ctx->params->data_type == OSSL_PARAM_UNSIGNED_INTEGER) {
|
---|
1611 | ctx->p2 = (void *)DSA_get0_pub_key(EVP_PKEY_get0_DSA(pkey));
|
---|
1612 | break;
|
---|
1613 | }
|
---|
1614 | return 0;
|
---|
1615 | #endif
|
---|
1616 | #ifndef OPENSSL_NO_EC
|
---|
1617 | case EVP_PKEY_EC:
|
---|
1618 | if (ctx->params->data_type == OSSL_PARAM_OCTET_STRING) {
|
---|
1619 | const EC_KEY *eckey = EVP_PKEY_get0_EC_KEY(pkey);
|
---|
1620 | BN_CTX *bnctx = BN_CTX_new_ex(ossl_ec_key_get_libctx(eckey));
|
---|
1621 | const EC_GROUP *ecg = EC_KEY_get0_group(eckey);
|
---|
1622 | const EC_POINT *point = EC_KEY_get0_public_key(eckey);
|
---|
1623 |
|
---|
1624 | if (bnctx == NULL)
|
---|
1625 | return 0;
|
---|
1626 | ctx->sz = EC_POINT_point2buf(ecg, point,
|
---|
1627 | POINT_CONVERSION_COMPRESSED,
|
---|
1628 | &buf, bnctx);
|
---|
1629 | ctx->p2 = buf;
|
---|
1630 | BN_CTX_free(bnctx);
|
---|
1631 | break;
|
---|
1632 | }
|
---|
1633 | return 0;
|
---|
1634 | #endif
|
---|
1635 | default:
|
---|
1636 | ERR_raise(ERR_LIB_EVP, EVP_R_UNSUPPORTED_KEY_TYPE);
|
---|
1637 | return 0;
|
---|
1638 | }
|
---|
1639 |
|
---|
1640 | ret = default_fixup_args(state, translation, ctx);
|
---|
1641 | OPENSSL_free(buf);
|
---|
1642 | return ret;
|
---|
1643 | }
|
---|
1644 |
|
---|
1645 | static int get_payload_bn(enum state state,
|
---|
1646 | const struct translation_st *translation,
|
---|
1647 | struct translation_ctx_st *ctx, const BIGNUM *bn)
|
---|
1648 | {
|
---|
1649 | if (bn == NULL)
|
---|
1650 | return 0;
|
---|
1651 | if (ctx->params->data_type != OSSL_PARAM_UNSIGNED_INTEGER)
|
---|
1652 | return 0;
|
---|
1653 | ctx->p2 = (BIGNUM *)bn;
|
---|
1654 |
|
---|
1655 | return default_fixup_args(state, translation, ctx);
|
---|
1656 | }
|
---|
1657 |
|
---|
1658 | static int get_dh_dsa_payload_p(enum state state,
|
---|
1659 | const struct translation_st *translation,
|
---|
1660 | struct translation_ctx_st *ctx)
|
---|
1661 | {
|
---|
1662 | const BIGNUM *bn = NULL;
|
---|
1663 | EVP_PKEY *pkey = ctx->p2;
|
---|
1664 |
|
---|
1665 | switch (EVP_PKEY_get_base_id(pkey)) {
|
---|
1666 | #ifndef OPENSSL_NO_DH
|
---|
1667 | case EVP_PKEY_DH:
|
---|
1668 | bn = DH_get0_p(EVP_PKEY_get0_DH(pkey));
|
---|
1669 | break;
|
---|
1670 | #endif
|
---|
1671 | #ifndef OPENSSL_NO_DSA
|
---|
1672 | case EVP_PKEY_DSA:
|
---|
1673 | bn = DSA_get0_p(EVP_PKEY_get0_DSA(pkey));
|
---|
1674 | break;
|
---|
1675 | #endif
|
---|
1676 | default:
|
---|
1677 | ERR_raise(ERR_LIB_EVP, EVP_R_UNSUPPORTED_KEY_TYPE);
|
---|
1678 | }
|
---|
1679 |
|
---|
1680 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1681 | }
|
---|
1682 |
|
---|
1683 | static int get_dh_dsa_payload_q(enum state state,
|
---|
1684 | const struct translation_st *translation,
|
---|
1685 | struct translation_ctx_st *ctx)
|
---|
1686 | {
|
---|
1687 | const BIGNUM *bn = NULL;
|
---|
1688 |
|
---|
1689 | switch (EVP_PKEY_get_base_id(ctx->p2)) {
|
---|
1690 | #ifndef OPENSSL_NO_DH
|
---|
1691 | case EVP_PKEY_DH:
|
---|
1692 | bn = DH_get0_q(EVP_PKEY_get0_DH(ctx->p2));
|
---|
1693 | break;
|
---|
1694 | #endif
|
---|
1695 | #ifndef OPENSSL_NO_DSA
|
---|
1696 | case EVP_PKEY_DSA:
|
---|
1697 | bn = DSA_get0_q(EVP_PKEY_get0_DSA(ctx->p2));
|
---|
1698 | break;
|
---|
1699 | #endif
|
---|
1700 | }
|
---|
1701 |
|
---|
1702 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1703 | }
|
---|
1704 |
|
---|
1705 | static int get_dh_dsa_payload_g(enum state state,
|
---|
1706 | const struct translation_st *translation,
|
---|
1707 | struct translation_ctx_st *ctx)
|
---|
1708 | {
|
---|
1709 | const BIGNUM *bn = NULL;
|
---|
1710 |
|
---|
1711 | switch (EVP_PKEY_get_base_id(ctx->p2)) {
|
---|
1712 | #ifndef OPENSSL_NO_DH
|
---|
1713 | case EVP_PKEY_DH:
|
---|
1714 | bn = DH_get0_g(EVP_PKEY_get0_DH(ctx->p2));
|
---|
1715 | break;
|
---|
1716 | #endif
|
---|
1717 | #ifndef OPENSSL_NO_DSA
|
---|
1718 | case EVP_PKEY_DSA:
|
---|
1719 | bn = DSA_get0_g(EVP_PKEY_get0_DSA(ctx->p2));
|
---|
1720 | break;
|
---|
1721 | #endif
|
---|
1722 | }
|
---|
1723 |
|
---|
1724 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1725 | }
|
---|
1726 |
|
---|
1727 | static int get_payload_int(enum state state,
|
---|
1728 | const struct translation_st *translation,
|
---|
1729 | struct translation_ctx_st *ctx,
|
---|
1730 | const int val)
|
---|
1731 | {
|
---|
1732 | if (ctx->params->data_type != OSSL_PARAM_INTEGER)
|
---|
1733 | return 0;
|
---|
1734 | ctx->p1 = val;
|
---|
1735 | ctx->p2 = NULL;
|
---|
1736 |
|
---|
1737 | return default_fixup_args(state, translation, ctx);
|
---|
1738 | }
|
---|
1739 |
|
---|
1740 | static int get_ec_decoded_from_explicit_params(enum state state,
|
---|
1741 | const struct translation_st *translation,
|
---|
1742 | struct translation_ctx_st *ctx)
|
---|
1743 | {
|
---|
1744 | int val = 0;
|
---|
1745 | EVP_PKEY *pkey = ctx->p2;
|
---|
1746 |
|
---|
1747 | switch (EVP_PKEY_base_id(pkey)) {
|
---|
1748 | #ifndef OPENSSL_NO_EC
|
---|
1749 | case EVP_PKEY_EC:
|
---|
1750 | val = EC_KEY_decoded_from_explicit_params(EVP_PKEY_get0_EC_KEY(pkey));
|
---|
1751 | if (val < 0) {
|
---|
1752 | ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_KEY);
|
---|
1753 | return 0;
|
---|
1754 | }
|
---|
1755 | break;
|
---|
1756 | #endif
|
---|
1757 | default:
|
---|
1758 | ERR_raise(ERR_LIB_EVP, EVP_R_UNSUPPORTED_KEY_TYPE);
|
---|
1759 | return 0;
|
---|
1760 | }
|
---|
1761 |
|
---|
1762 | return get_payload_int(state, translation, ctx, val);
|
---|
1763 | }
|
---|
1764 |
|
---|
1765 | static int get_rsa_payload_n(enum state state,
|
---|
1766 | const struct translation_st *translation,
|
---|
1767 | struct translation_ctx_st *ctx)
|
---|
1768 | {
|
---|
1769 | const BIGNUM *bn = NULL;
|
---|
1770 |
|
---|
1771 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA)
|
---|
1772 | return 0;
|
---|
1773 | bn = RSA_get0_n(EVP_PKEY_get0_RSA(ctx->p2));
|
---|
1774 |
|
---|
1775 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1776 | }
|
---|
1777 |
|
---|
1778 | static int get_rsa_payload_e(enum state state,
|
---|
1779 | const struct translation_st *translation,
|
---|
1780 | struct translation_ctx_st *ctx)
|
---|
1781 | {
|
---|
1782 | const BIGNUM *bn = NULL;
|
---|
1783 |
|
---|
1784 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA)
|
---|
1785 | return 0;
|
---|
1786 | bn = RSA_get0_e(EVP_PKEY_get0_RSA(ctx->p2));
|
---|
1787 |
|
---|
1788 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1789 | }
|
---|
1790 |
|
---|
1791 | static int get_rsa_payload_d(enum state state,
|
---|
1792 | const struct translation_st *translation,
|
---|
1793 | struct translation_ctx_st *ctx)
|
---|
1794 | {
|
---|
1795 | const BIGNUM *bn = NULL;
|
---|
1796 |
|
---|
1797 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA)
|
---|
1798 | return 0;
|
---|
1799 | bn = RSA_get0_d(EVP_PKEY_get0_RSA(ctx->p2));
|
---|
1800 |
|
---|
1801 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1802 | }
|
---|
1803 |
|
---|
1804 | static int get_rsa_payload_factor(enum state state,
|
---|
1805 | const struct translation_st *translation,
|
---|
1806 | struct translation_ctx_st *ctx,
|
---|
1807 | size_t factornum)
|
---|
1808 | {
|
---|
1809 | const RSA *r = EVP_PKEY_get0_RSA(ctx->p2);
|
---|
1810 | const BIGNUM *bn = NULL;
|
---|
1811 |
|
---|
1812 | switch (factornum) {
|
---|
1813 | case 0:
|
---|
1814 | bn = RSA_get0_p(r);
|
---|
1815 | break;
|
---|
1816 | case 1:
|
---|
1817 | bn = RSA_get0_q(r);
|
---|
1818 | break;
|
---|
1819 | default:
|
---|
1820 | {
|
---|
1821 | size_t pnum = RSA_get_multi_prime_extra_count(r);
|
---|
1822 | const BIGNUM *factors[10];
|
---|
1823 |
|
---|
1824 | if (factornum - 2 < pnum
|
---|
1825 | && RSA_get0_multi_prime_factors(r, factors))
|
---|
1826 | bn = factors[factornum - 2];
|
---|
1827 | }
|
---|
1828 | break;
|
---|
1829 | }
|
---|
1830 |
|
---|
1831 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1832 | }
|
---|
1833 |
|
---|
1834 | static int get_rsa_payload_exponent(enum state state,
|
---|
1835 | const struct translation_st *translation,
|
---|
1836 | struct translation_ctx_st *ctx,
|
---|
1837 | size_t exponentnum)
|
---|
1838 | {
|
---|
1839 | const RSA *r = EVP_PKEY_get0_RSA(ctx->p2);
|
---|
1840 | const BIGNUM *bn = NULL;
|
---|
1841 |
|
---|
1842 | switch (exponentnum) {
|
---|
1843 | case 0:
|
---|
1844 | bn = RSA_get0_dmp1(r);
|
---|
1845 | break;
|
---|
1846 | case 1:
|
---|
1847 | bn = RSA_get0_dmq1(r);
|
---|
1848 | break;
|
---|
1849 | default:
|
---|
1850 | {
|
---|
1851 | size_t pnum = RSA_get_multi_prime_extra_count(r);
|
---|
1852 | const BIGNUM *exps[10], *coeffs[10];
|
---|
1853 |
|
---|
1854 | if (exponentnum - 2 < pnum
|
---|
1855 | && RSA_get0_multi_prime_crt_params(r, exps, coeffs))
|
---|
1856 | bn = exps[exponentnum - 2];
|
---|
1857 | }
|
---|
1858 | break;
|
---|
1859 | }
|
---|
1860 |
|
---|
1861 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1862 | }
|
---|
1863 |
|
---|
1864 | static int get_rsa_payload_coefficient(enum state state,
|
---|
1865 | const struct translation_st *translation,
|
---|
1866 | struct translation_ctx_st *ctx,
|
---|
1867 | size_t coefficientnum)
|
---|
1868 | {
|
---|
1869 | const RSA *r = EVP_PKEY_get0_RSA(ctx->p2);
|
---|
1870 | const BIGNUM *bn = NULL;
|
---|
1871 |
|
---|
1872 | switch (coefficientnum) {
|
---|
1873 | case 0:
|
---|
1874 | bn = RSA_get0_iqmp(r);
|
---|
1875 | break;
|
---|
1876 | default:
|
---|
1877 | {
|
---|
1878 | size_t pnum = RSA_get_multi_prime_extra_count(r);
|
---|
1879 | const BIGNUM *exps[10], *coeffs[10];
|
---|
1880 |
|
---|
1881 | if (coefficientnum - 1 < pnum
|
---|
1882 | && RSA_get0_multi_prime_crt_params(r, exps, coeffs))
|
---|
1883 | bn = coeffs[coefficientnum - 1];
|
---|
1884 | }
|
---|
1885 | break;
|
---|
1886 | }
|
---|
1887 |
|
---|
1888 | return get_payload_bn(state, translation, ctx, bn);
|
---|
1889 | }
|
---|
1890 |
|
---|
1891 | #define IMPL_GET_RSA_PAYLOAD_FACTOR(n) \
|
---|
1892 | static int \
|
---|
1893 | get_rsa_payload_f##n(enum state state, \
|
---|
1894 | const struct translation_st *translation, \
|
---|
1895 | struct translation_ctx_st *ctx) \
|
---|
1896 | { \
|
---|
1897 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA) \
|
---|
1898 | return 0; \
|
---|
1899 | return get_rsa_payload_factor(state, translation, ctx, n - 1); \
|
---|
1900 | }
|
---|
1901 |
|
---|
1902 | #define IMPL_GET_RSA_PAYLOAD_EXPONENT(n) \
|
---|
1903 | static int \
|
---|
1904 | get_rsa_payload_e##n(enum state state, \
|
---|
1905 | const struct translation_st *translation, \
|
---|
1906 | struct translation_ctx_st *ctx) \
|
---|
1907 | { \
|
---|
1908 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA) \
|
---|
1909 | return 0; \
|
---|
1910 | return get_rsa_payload_exponent(state, translation, ctx, \
|
---|
1911 | n - 1); \
|
---|
1912 | }
|
---|
1913 |
|
---|
1914 | #define IMPL_GET_RSA_PAYLOAD_COEFFICIENT(n) \
|
---|
1915 | static int \
|
---|
1916 | get_rsa_payload_c##n(enum state state, \
|
---|
1917 | const struct translation_st *translation, \
|
---|
1918 | struct translation_ctx_st *ctx) \
|
---|
1919 | { \
|
---|
1920 | if (EVP_PKEY_get_base_id(ctx->p2) != EVP_PKEY_RSA) \
|
---|
1921 | return 0; \
|
---|
1922 | return get_rsa_payload_coefficient(state, translation, ctx, \
|
---|
1923 | n - 1); \
|
---|
1924 | }
|
---|
1925 |
|
---|
1926 | IMPL_GET_RSA_PAYLOAD_FACTOR(1)
|
---|
1927 | IMPL_GET_RSA_PAYLOAD_FACTOR(2)
|
---|
1928 | IMPL_GET_RSA_PAYLOAD_FACTOR(3)
|
---|
1929 | IMPL_GET_RSA_PAYLOAD_FACTOR(4)
|
---|
1930 | IMPL_GET_RSA_PAYLOAD_FACTOR(5)
|
---|
1931 | IMPL_GET_RSA_PAYLOAD_FACTOR(6)
|
---|
1932 | IMPL_GET_RSA_PAYLOAD_FACTOR(7)
|
---|
1933 | IMPL_GET_RSA_PAYLOAD_FACTOR(8)
|
---|
1934 | IMPL_GET_RSA_PAYLOAD_FACTOR(9)
|
---|
1935 | IMPL_GET_RSA_PAYLOAD_FACTOR(10)
|
---|
1936 | IMPL_GET_RSA_PAYLOAD_EXPONENT(1)
|
---|
1937 | IMPL_GET_RSA_PAYLOAD_EXPONENT(2)
|
---|
1938 | IMPL_GET_RSA_PAYLOAD_EXPONENT(3)
|
---|
1939 | IMPL_GET_RSA_PAYLOAD_EXPONENT(4)
|
---|
1940 | IMPL_GET_RSA_PAYLOAD_EXPONENT(5)
|
---|
1941 | IMPL_GET_RSA_PAYLOAD_EXPONENT(6)
|
---|
1942 | IMPL_GET_RSA_PAYLOAD_EXPONENT(7)
|
---|
1943 | IMPL_GET_RSA_PAYLOAD_EXPONENT(8)
|
---|
1944 | IMPL_GET_RSA_PAYLOAD_EXPONENT(9)
|
---|
1945 | IMPL_GET_RSA_PAYLOAD_EXPONENT(10)
|
---|
1946 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(1)
|
---|
1947 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(2)
|
---|
1948 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(3)
|
---|
1949 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(4)
|
---|
1950 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(5)
|
---|
1951 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(6)
|
---|
1952 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(7)
|
---|
1953 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(8)
|
---|
1954 | IMPL_GET_RSA_PAYLOAD_COEFFICIENT(9)
|
---|
1955 |
|
---|
1956 | /*-
|
---|
1957 | * The translation table itself
|
---|
1958 | * ============================
|
---|
1959 | */
|
---|
1960 |
|
---|
1961 | static const struct translation_st evp_pkey_ctx_translations[] = {
|
---|
1962 | /*
|
---|
1963 | * DistID: we pass it to the backend as an octet string,
|
---|
1964 | * but get it back as a pointer to an octet string.
|
---|
1965 | *
|
---|
1966 | * Note that the EVP_PKEY_CTRL_GET1_ID_LEN is purely for legacy purposes
|
---|
1967 | * that has no separate counterpart in OSSL_PARAM terms, since we get
|
---|
1968 | * the length of the DistID automatically when getting the DistID itself.
|
---|
1969 | */
|
---|
1970 | { SET, -1, -1, EVP_PKEY_OP_TYPE_SIG,
|
---|
1971 | EVP_PKEY_CTRL_SET1_ID, "distid", "hexdistid",
|
---|
1972 | OSSL_PKEY_PARAM_DIST_ID, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
1973 | { GET, -1, -1, -1,
|
---|
1974 | EVP_PKEY_CTRL_GET1_ID, "distid", "hexdistid",
|
---|
1975 | OSSL_PKEY_PARAM_DIST_ID, OSSL_PARAM_OCTET_PTR, NULL },
|
---|
1976 | { GET, -1, -1, -1,
|
---|
1977 | EVP_PKEY_CTRL_GET1_ID_LEN, NULL, NULL,
|
---|
1978 | OSSL_PKEY_PARAM_DIST_ID, OSSL_PARAM_OCTET_PTR, fix_distid_len },
|
---|
1979 |
|
---|
1980 | /*-
|
---|
1981 | * DH & DHX
|
---|
1982 | * ========
|
---|
1983 | */
|
---|
1984 |
|
---|
1985 | /*
|
---|
1986 | * EVP_PKEY_CTRL_DH_KDF_TYPE is used both for setting and getting. The
|
---|
1987 | * fixup function has to handle this...
|
---|
1988 | */
|
---|
1989 | { NONE, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
1990 | EVP_PKEY_CTRL_DH_KDF_TYPE, NULL, NULL,
|
---|
1991 | OSSL_EXCHANGE_PARAM_KDF_TYPE, OSSL_PARAM_UTF8_STRING,
|
---|
1992 | fix_dh_kdf_type },
|
---|
1993 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
1994 | EVP_PKEY_CTRL_DH_KDF_MD, NULL, NULL,
|
---|
1995 | OSSL_EXCHANGE_PARAM_KDF_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
1996 | { GET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
1997 | EVP_PKEY_CTRL_GET_DH_KDF_MD, NULL, NULL,
|
---|
1998 | OSSL_EXCHANGE_PARAM_KDF_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
1999 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2000 | EVP_PKEY_CTRL_DH_KDF_OUTLEN, NULL, NULL,
|
---|
2001 | OSSL_EXCHANGE_PARAM_KDF_OUTLEN, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2002 | { GET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2003 | EVP_PKEY_CTRL_GET_DH_KDF_OUTLEN, NULL, NULL,
|
---|
2004 | OSSL_EXCHANGE_PARAM_KDF_OUTLEN, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2005 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2006 | EVP_PKEY_CTRL_DH_KDF_UKM, NULL, NULL,
|
---|
2007 | OSSL_EXCHANGE_PARAM_KDF_UKM, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2008 | { GET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2009 | EVP_PKEY_CTRL_GET_DH_KDF_UKM, NULL, NULL,
|
---|
2010 | OSSL_EXCHANGE_PARAM_KDF_UKM, OSSL_PARAM_OCTET_PTR, NULL },
|
---|
2011 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2012 | EVP_PKEY_CTRL_DH_KDF_OID, NULL, NULL,
|
---|
2013 | OSSL_KDF_PARAM_CEK_ALG, OSSL_PARAM_UTF8_STRING, fix_oid },
|
---|
2014 | { GET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_DERIVE,
|
---|
2015 | EVP_PKEY_CTRL_GET_DH_KDF_OID, NULL, NULL,
|
---|
2016 | OSSL_KDF_PARAM_CEK_ALG, OSSL_PARAM_UTF8_STRING, fix_oid },
|
---|
2017 |
|
---|
2018 | /* DHX Keygen Parameters that are shared with DH */
|
---|
2019 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2020 | EVP_PKEY_CTRL_DH_PARAMGEN_TYPE, "dh_paramgen_type", NULL,
|
---|
2021 | OSSL_PKEY_PARAM_FFC_TYPE, OSSL_PARAM_UTF8_STRING, fix_dh_paramgen_type },
|
---|
2022 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2023 | EVP_PKEY_CTRL_DH_PARAMGEN_PRIME_LEN, "dh_paramgen_prime_len", NULL,
|
---|
2024 | OSSL_PKEY_PARAM_FFC_PBITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2025 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2026 | EVP_PKEY_CTRL_DH_NID, "dh_param", NULL,
|
---|
2027 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING, NULL },
|
---|
2028 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2029 | EVP_PKEY_CTRL_DH_RFC5114, "dh_rfc5114", NULL,
|
---|
2030 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING, fix_dh_nid5114 },
|
---|
2031 |
|
---|
2032 | /* DH Keygen Parameters that are shared with DHX */
|
---|
2033 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2034 | EVP_PKEY_CTRL_DH_PARAMGEN_TYPE, "dh_paramgen_type", NULL,
|
---|
2035 | OSSL_PKEY_PARAM_FFC_TYPE, OSSL_PARAM_UTF8_STRING, fix_dh_paramgen_type },
|
---|
2036 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2037 | EVP_PKEY_CTRL_DH_PARAMGEN_PRIME_LEN, "dh_paramgen_prime_len", NULL,
|
---|
2038 | OSSL_PKEY_PARAM_FFC_PBITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2039 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2040 | EVP_PKEY_CTRL_DH_NID, "dh_param", NULL,
|
---|
2041 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING, fix_dh_nid },
|
---|
2042 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2043 | EVP_PKEY_CTRL_DH_RFC5114, "dh_rfc5114", NULL,
|
---|
2044 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING, fix_dh_nid5114 },
|
---|
2045 |
|
---|
2046 | /* DH specific Keygen Parameters */
|
---|
2047 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2048 | EVP_PKEY_CTRL_DH_PARAMGEN_GENERATOR, "dh_paramgen_generator", NULL,
|
---|
2049 | OSSL_PKEY_PARAM_DH_GENERATOR, OSSL_PARAM_INTEGER, NULL },
|
---|
2050 |
|
---|
2051 | /* DHX specific Keygen Parameters */
|
---|
2052 | { SET, EVP_PKEY_DHX, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2053 | EVP_PKEY_CTRL_DH_PARAMGEN_SUBPRIME_LEN, "dh_paramgen_subprime_len", NULL,
|
---|
2054 | OSSL_PKEY_PARAM_FFC_QBITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2055 |
|
---|
2056 | { SET, EVP_PKEY_DH, 0, EVP_PKEY_OP_DERIVE,
|
---|
2057 | EVP_PKEY_CTRL_DH_PAD, "dh_pad", NULL,
|
---|
2058 | OSSL_EXCHANGE_PARAM_PAD, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2059 |
|
---|
2060 | /*-
|
---|
2061 | * DSA
|
---|
2062 | * ===
|
---|
2063 | */
|
---|
2064 | { SET, EVP_PKEY_DSA, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2065 | EVP_PKEY_CTRL_DSA_PARAMGEN_BITS, "dsa_paramgen_bits", NULL,
|
---|
2066 | OSSL_PKEY_PARAM_FFC_PBITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2067 | { SET, EVP_PKEY_DSA, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2068 | EVP_PKEY_CTRL_DSA_PARAMGEN_Q_BITS, "dsa_paramgen_q_bits", NULL,
|
---|
2069 | OSSL_PKEY_PARAM_FFC_QBITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2070 | { SET, EVP_PKEY_DSA, 0, EVP_PKEY_OP_PARAMGEN,
|
---|
2071 | EVP_PKEY_CTRL_DSA_PARAMGEN_MD, "dsa_paramgen_md", NULL,
|
---|
2072 | OSSL_PKEY_PARAM_FFC_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2073 |
|
---|
2074 | /*-
|
---|
2075 | * EC
|
---|
2076 | * ==
|
---|
2077 | */
|
---|
2078 | { SET, EVP_PKEY_EC, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2079 | EVP_PKEY_CTRL_EC_PARAM_ENC, "ec_param_enc", NULL,
|
---|
2080 | OSSL_PKEY_PARAM_EC_ENCODING, OSSL_PARAM_UTF8_STRING, fix_ec_param_enc },
|
---|
2081 | { SET, EVP_PKEY_EC, 0, EVP_PKEY_OP_PARAMGEN | EVP_PKEY_OP_KEYGEN,
|
---|
2082 | EVP_PKEY_CTRL_EC_PARAMGEN_CURVE_NID, "ec_paramgen_curve", NULL,
|
---|
2083 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING,
|
---|
2084 | fix_ec_paramgen_curve_nid },
|
---|
2085 | /*
|
---|
2086 | * EVP_PKEY_CTRL_EC_ECDH_COFACTOR and EVP_PKEY_CTRL_EC_KDF_TYPE are used
|
---|
2087 | * both for setting and getting. The fixup function has to handle this...
|
---|
2088 | */
|
---|
2089 | { NONE, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2090 | EVP_PKEY_CTRL_EC_ECDH_COFACTOR, "ecdh_cofactor_mode", NULL,
|
---|
2091 | OSSL_EXCHANGE_PARAM_EC_ECDH_COFACTOR_MODE, OSSL_PARAM_INTEGER,
|
---|
2092 | fix_ecdh_cofactor },
|
---|
2093 | { NONE, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2094 | EVP_PKEY_CTRL_EC_KDF_TYPE, NULL, NULL,
|
---|
2095 | OSSL_EXCHANGE_PARAM_KDF_TYPE, OSSL_PARAM_UTF8_STRING, fix_ec_kdf_type },
|
---|
2096 | { SET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2097 | EVP_PKEY_CTRL_EC_KDF_MD, "ecdh_kdf_md", NULL,
|
---|
2098 | OSSL_EXCHANGE_PARAM_KDF_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2099 | { GET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2100 | EVP_PKEY_CTRL_GET_EC_KDF_MD, NULL, NULL,
|
---|
2101 | OSSL_EXCHANGE_PARAM_KDF_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2102 | { SET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2103 | EVP_PKEY_CTRL_EC_KDF_OUTLEN, NULL, NULL,
|
---|
2104 | OSSL_EXCHANGE_PARAM_KDF_OUTLEN, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2105 | { GET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2106 | EVP_PKEY_CTRL_GET_EC_KDF_OUTLEN, NULL, NULL,
|
---|
2107 | OSSL_EXCHANGE_PARAM_KDF_OUTLEN, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2108 | { SET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2109 | EVP_PKEY_CTRL_EC_KDF_UKM, NULL, NULL,
|
---|
2110 | OSSL_EXCHANGE_PARAM_KDF_UKM, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2111 | { GET, EVP_PKEY_EC, 0, EVP_PKEY_OP_DERIVE,
|
---|
2112 | EVP_PKEY_CTRL_GET_EC_KDF_UKM, NULL, NULL,
|
---|
2113 | OSSL_EXCHANGE_PARAM_KDF_UKM, OSSL_PARAM_OCTET_PTR, NULL },
|
---|
2114 |
|
---|
2115 | /*-
|
---|
2116 | * RSA
|
---|
2117 | * ===
|
---|
2118 | */
|
---|
2119 |
|
---|
2120 | /*
|
---|
2121 | * RSA padding modes are numeric with ctrls, strings with ctrl_strs,
|
---|
2122 | * and can be both with OSSL_PARAM. We standardise on strings here,
|
---|
2123 | * fix_rsa_padding_mode() does the work when the caller has a different
|
---|
2124 | * idea.
|
---|
2125 | */
|
---|
2126 | { SET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS,
|
---|
2127 | EVP_PKEY_OP_TYPE_CRYPT | EVP_PKEY_OP_TYPE_SIG,
|
---|
2128 | EVP_PKEY_CTRL_RSA_PADDING, "rsa_padding_mode", NULL,
|
---|
2129 | OSSL_PKEY_PARAM_PAD_MODE, OSSL_PARAM_UTF8_STRING, fix_rsa_padding_mode },
|
---|
2130 | { GET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS,
|
---|
2131 | EVP_PKEY_OP_TYPE_CRYPT | EVP_PKEY_OP_TYPE_SIG,
|
---|
2132 | EVP_PKEY_CTRL_GET_RSA_PADDING, NULL, NULL,
|
---|
2133 | OSSL_PKEY_PARAM_PAD_MODE, OSSL_PARAM_UTF8_STRING, fix_rsa_padding_mode },
|
---|
2134 |
|
---|
2135 | { SET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS,
|
---|
2136 | EVP_PKEY_OP_TYPE_CRYPT | EVP_PKEY_OP_TYPE_SIG,
|
---|
2137 | EVP_PKEY_CTRL_RSA_MGF1_MD, "rsa_mgf1_md", NULL,
|
---|
2138 | OSSL_PKEY_PARAM_MGF1_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2139 | { GET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS,
|
---|
2140 | EVP_PKEY_OP_TYPE_CRYPT | EVP_PKEY_OP_TYPE_SIG,
|
---|
2141 | EVP_PKEY_CTRL_GET_RSA_MGF1_MD, NULL, NULL,
|
---|
2142 | OSSL_PKEY_PARAM_MGF1_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2143 |
|
---|
2144 | /*
|
---|
2145 | * RSA-PSS saltlen is essentially numeric, but certain values can be
|
---|
2146 | * expressed as keywords (strings) with ctrl_str. The corresponding
|
---|
2147 | * OSSL_PARAM allows both forms.
|
---|
2148 | * fix_rsa_pss_saltlen() takes care of the distinction.
|
---|
2149 | */
|
---|
2150 | { SET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS, EVP_PKEY_OP_TYPE_SIG,
|
---|
2151 | EVP_PKEY_CTRL_RSA_PSS_SALTLEN, "rsa_pss_saltlen", NULL,
|
---|
2152 | OSSL_PKEY_PARAM_RSA_PSS_SALTLEN, OSSL_PARAM_UTF8_STRING,
|
---|
2153 | fix_rsa_pss_saltlen },
|
---|
2154 | { GET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS, EVP_PKEY_OP_TYPE_SIG,
|
---|
2155 | EVP_PKEY_CTRL_GET_RSA_PSS_SALTLEN, NULL, NULL,
|
---|
2156 | OSSL_PKEY_PARAM_RSA_PSS_SALTLEN, OSSL_PARAM_UTF8_STRING,
|
---|
2157 | fix_rsa_pss_saltlen },
|
---|
2158 |
|
---|
2159 | { SET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_TYPE_CRYPT,
|
---|
2160 | EVP_PKEY_CTRL_RSA_OAEP_MD, "rsa_oaep_md", NULL,
|
---|
2161 | OSSL_ASYM_CIPHER_PARAM_OAEP_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2162 | { GET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_TYPE_CRYPT,
|
---|
2163 | EVP_PKEY_CTRL_GET_RSA_OAEP_MD, NULL, NULL,
|
---|
2164 | OSSL_ASYM_CIPHER_PARAM_OAEP_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2165 | /*
|
---|
2166 | * The "rsa_oaep_label" ctrl_str expects the value to always be hex.
|
---|
2167 | * This is accomodated by default_fixup_args() above, which mimics that
|
---|
2168 | * expectation for any translation item where |ctrl_str| is NULL and
|
---|
2169 | * |ctrl_hexstr| is non-NULL.
|
---|
2170 | */
|
---|
2171 | { SET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_TYPE_CRYPT,
|
---|
2172 | EVP_PKEY_CTRL_RSA_OAEP_LABEL, NULL, "rsa_oaep_label",
|
---|
2173 | OSSL_ASYM_CIPHER_PARAM_OAEP_LABEL, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2174 | { GET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_TYPE_CRYPT,
|
---|
2175 | EVP_PKEY_CTRL_GET_RSA_OAEP_LABEL, NULL, NULL,
|
---|
2176 | OSSL_ASYM_CIPHER_PARAM_OAEP_LABEL, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2177 |
|
---|
2178 | { SET, EVP_PKEY_RSA_PSS, 0, EVP_PKEY_OP_TYPE_GEN,
|
---|
2179 | EVP_PKEY_CTRL_MD, "rsa_pss_keygen_md", NULL,
|
---|
2180 | OSSL_ALG_PARAM_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2181 | { SET, EVP_PKEY_RSA_PSS, 0, EVP_PKEY_OP_TYPE_GEN,
|
---|
2182 | EVP_PKEY_CTRL_RSA_MGF1_MD, "rsa_pss_keygen_mgf1_md", NULL,
|
---|
2183 | OSSL_PKEY_PARAM_MGF1_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2184 | { SET, EVP_PKEY_RSA_PSS, 0, EVP_PKEY_OP_TYPE_GEN,
|
---|
2185 | EVP_PKEY_CTRL_RSA_PSS_SALTLEN, "rsa_pss_keygen_saltlen", NULL,
|
---|
2186 | OSSL_SIGNATURE_PARAM_PSS_SALTLEN, OSSL_PARAM_INTEGER, NULL },
|
---|
2187 | { SET, EVP_PKEY_RSA, EVP_PKEY_RSA_PSS, EVP_PKEY_OP_KEYGEN,
|
---|
2188 | EVP_PKEY_CTRL_RSA_KEYGEN_BITS, "rsa_keygen_bits", NULL,
|
---|
2189 | OSSL_PKEY_PARAM_RSA_BITS, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2190 | { SET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_KEYGEN,
|
---|
2191 | EVP_PKEY_CTRL_RSA_KEYGEN_PUBEXP, "rsa_keygen_pubexp", NULL,
|
---|
2192 | OSSL_PKEY_PARAM_RSA_E, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2193 | { SET, EVP_PKEY_RSA, 0, EVP_PKEY_OP_KEYGEN,
|
---|
2194 | EVP_PKEY_CTRL_RSA_KEYGEN_PRIMES, "rsa_keygen_primes", NULL,
|
---|
2195 | OSSL_PKEY_PARAM_RSA_PRIMES, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2196 |
|
---|
2197 | /*-
|
---|
2198 | * SipHash
|
---|
2199 | * ======
|
---|
2200 | */
|
---|
2201 | { SET, -1, -1, EVP_PKEY_OP_TYPE_SIG,
|
---|
2202 | EVP_PKEY_CTRL_SET_DIGEST_SIZE, "digestsize", NULL,
|
---|
2203 | OSSL_MAC_PARAM_SIZE, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2204 |
|
---|
2205 | /*-
|
---|
2206 | * TLS1-PRF
|
---|
2207 | * ========
|
---|
2208 | */
|
---|
2209 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2210 | EVP_PKEY_CTRL_TLS_MD, "md", NULL,
|
---|
2211 | OSSL_KDF_PARAM_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2212 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2213 | EVP_PKEY_CTRL_TLS_SECRET, "secret", "hexsecret",
|
---|
2214 | OSSL_KDF_PARAM_SECRET, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2215 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2216 | EVP_PKEY_CTRL_TLS_SEED, "seed", "hexseed",
|
---|
2217 | OSSL_KDF_PARAM_SEED, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2218 |
|
---|
2219 | /*-
|
---|
2220 | * HKDF
|
---|
2221 | * ====
|
---|
2222 | */
|
---|
2223 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2224 | EVP_PKEY_CTRL_HKDF_MD, "md", NULL,
|
---|
2225 | OSSL_KDF_PARAM_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2226 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2227 | EVP_PKEY_CTRL_HKDF_SALT, "salt", "hexsalt",
|
---|
2228 | OSSL_KDF_PARAM_SALT, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2229 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2230 | EVP_PKEY_CTRL_HKDF_KEY, "key", "hexkey",
|
---|
2231 | OSSL_KDF_PARAM_KEY, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2232 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2233 | EVP_PKEY_CTRL_HKDF_INFO, "info", "hexinfo",
|
---|
2234 | OSSL_KDF_PARAM_INFO, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2235 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2236 | EVP_PKEY_CTRL_HKDF_MODE, "mode", NULL,
|
---|
2237 | OSSL_KDF_PARAM_MODE, OSSL_PARAM_INTEGER, fix_hkdf_mode },
|
---|
2238 |
|
---|
2239 | /*-
|
---|
2240 | * Scrypt
|
---|
2241 | * ======
|
---|
2242 | */
|
---|
2243 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2244 | EVP_PKEY_CTRL_PASS, "pass", "hexpass",
|
---|
2245 | OSSL_KDF_PARAM_PASSWORD, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2246 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2247 | EVP_PKEY_CTRL_SCRYPT_SALT, "salt", "hexsalt",
|
---|
2248 | OSSL_KDF_PARAM_SALT, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2249 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2250 | EVP_PKEY_CTRL_SCRYPT_N, "N", NULL,
|
---|
2251 | OSSL_KDF_PARAM_SCRYPT_N, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2252 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2253 | EVP_PKEY_CTRL_SCRYPT_R, "r", NULL,
|
---|
2254 | OSSL_KDF_PARAM_SCRYPT_R, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2255 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2256 | EVP_PKEY_CTRL_SCRYPT_P, "p", NULL,
|
---|
2257 | OSSL_KDF_PARAM_SCRYPT_P, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2258 | { SET, -1, -1, EVP_PKEY_OP_DERIVE,
|
---|
2259 | EVP_PKEY_CTRL_SCRYPT_MAXMEM_BYTES, "maxmem_bytes", NULL,
|
---|
2260 | OSSL_KDF_PARAM_SCRYPT_MAXMEM, OSSL_PARAM_UNSIGNED_INTEGER, NULL },
|
---|
2261 |
|
---|
2262 | { SET, -1, -1, EVP_PKEY_OP_KEYGEN | EVP_PKEY_OP_TYPE_CRYPT,
|
---|
2263 | EVP_PKEY_CTRL_CIPHER, NULL, NULL,
|
---|
2264 | OSSL_PKEY_PARAM_CIPHER, OSSL_PARAM_UTF8_STRING, fix_cipher },
|
---|
2265 | { SET, -1, -1, EVP_PKEY_OP_KEYGEN,
|
---|
2266 | EVP_PKEY_CTRL_SET_MAC_KEY, "key", "hexkey",
|
---|
2267 | OSSL_PKEY_PARAM_PRIV_KEY, OSSL_PARAM_OCTET_STRING, NULL },
|
---|
2268 |
|
---|
2269 | { SET, -1, -1, EVP_PKEY_OP_TYPE_SIG,
|
---|
2270 | EVP_PKEY_CTRL_MD, NULL, NULL,
|
---|
2271 | OSSL_SIGNATURE_PARAM_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2272 | { GET, -1, -1, EVP_PKEY_OP_TYPE_SIG,
|
---|
2273 | EVP_PKEY_CTRL_GET_MD, NULL, NULL,
|
---|
2274 | OSSL_SIGNATURE_PARAM_DIGEST, OSSL_PARAM_UTF8_STRING, fix_md },
|
---|
2275 | };
|
---|
2276 |
|
---|
2277 | static const struct translation_st evp_pkey_translations[] = {
|
---|
2278 | /*
|
---|
2279 | * The following contain no ctrls, they are exclusively here to extract
|
---|
2280 | * key payloads from legacy keys, using OSSL_PARAMs, and rely entirely
|
---|
2281 | * on |fixup_args| to pass the actual data. The |fixup_args| should
|
---|
2282 | * expect to get the EVP_PKEY pointer through |ctx->p2|.
|
---|
2283 | */
|
---|
2284 |
|
---|
2285 | /* DH, DSA & EC */
|
---|
2286 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2287 | OSSL_PKEY_PARAM_GROUP_NAME, OSSL_PARAM_UTF8_STRING,
|
---|
2288 | get_payload_group_name },
|
---|
2289 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2290 | OSSL_PKEY_PARAM_PRIV_KEY, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2291 | get_payload_private_key },
|
---|
2292 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2293 | OSSL_PKEY_PARAM_PUB_KEY,
|
---|
2294 | 0 /* no data type, let get_payload_public_key() handle that */,
|
---|
2295 | get_payload_public_key },
|
---|
2296 |
|
---|
2297 | /* DH and DSA */
|
---|
2298 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2299 | OSSL_PKEY_PARAM_FFC_P, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2300 | get_dh_dsa_payload_p },
|
---|
2301 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2302 | OSSL_PKEY_PARAM_FFC_G, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2303 | get_dh_dsa_payload_g },
|
---|
2304 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2305 | OSSL_PKEY_PARAM_FFC_Q, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2306 | get_dh_dsa_payload_q },
|
---|
2307 |
|
---|
2308 | /* RSA */
|
---|
2309 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2310 | OSSL_PKEY_PARAM_RSA_N, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2311 | get_rsa_payload_n },
|
---|
2312 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2313 | OSSL_PKEY_PARAM_RSA_E, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2314 | get_rsa_payload_e },
|
---|
2315 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2316 | OSSL_PKEY_PARAM_RSA_D, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2317 | get_rsa_payload_d },
|
---|
2318 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2319 | OSSL_PKEY_PARAM_RSA_FACTOR1, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2320 | get_rsa_payload_f1 },
|
---|
2321 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2322 | OSSL_PKEY_PARAM_RSA_FACTOR2, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2323 | get_rsa_payload_f2 },
|
---|
2324 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2325 | OSSL_PKEY_PARAM_RSA_FACTOR3, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2326 | get_rsa_payload_f3 },
|
---|
2327 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2328 | OSSL_PKEY_PARAM_RSA_FACTOR4, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2329 | get_rsa_payload_f4 },
|
---|
2330 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2331 | OSSL_PKEY_PARAM_RSA_FACTOR5, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2332 | get_rsa_payload_f5 },
|
---|
2333 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2334 | OSSL_PKEY_PARAM_RSA_FACTOR6, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2335 | get_rsa_payload_f6 },
|
---|
2336 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2337 | OSSL_PKEY_PARAM_RSA_FACTOR7, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2338 | get_rsa_payload_f7 },
|
---|
2339 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2340 | OSSL_PKEY_PARAM_RSA_FACTOR8, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2341 | get_rsa_payload_f8 },
|
---|
2342 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2343 | OSSL_PKEY_PARAM_RSA_FACTOR9, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2344 | get_rsa_payload_f9 },
|
---|
2345 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2346 | OSSL_PKEY_PARAM_RSA_FACTOR10, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2347 | get_rsa_payload_f10 },
|
---|
2348 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2349 | OSSL_PKEY_PARAM_RSA_EXPONENT1, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2350 | get_rsa_payload_e1 },
|
---|
2351 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2352 | OSSL_PKEY_PARAM_RSA_EXPONENT2, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2353 | get_rsa_payload_e2 },
|
---|
2354 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2355 | OSSL_PKEY_PARAM_RSA_EXPONENT3, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2356 | get_rsa_payload_e3 },
|
---|
2357 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2358 | OSSL_PKEY_PARAM_RSA_EXPONENT4, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2359 | get_rsa_payload_e4 },
|
---|
2360 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2361 | OSSL_PKEY_PARAM_RSA_EXPONENT5, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2362 | get_rsa_payload_e5 },
|
---|
2363 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2364 | OSSL_PKEY_PARAM_RSA_EXPONENT6, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2365 | get_rsa_payload_e6 },
|
---|
2366 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2367 | OSSL_PKEY_PARAM_RSA_EXPONENT7, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2368 | get_rsa_payload_e7 },
|
---|
2369 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2370 | OSSL_PKEY_PARAM_RSA_EXPONENT8, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2371 | get_rsa_payload_e8 },
|
---|
2372 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2373 | OSSL_PKEY_PARAM_RSA_EXPONENT9, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2374 | get_rsa_payload_e9 },
|
---|
2375 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2376 | OSSL_PKEY_PARAM_RSA_EXPONENT10, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2377 | get_rsa_payload_e10 },
|
---|
2378 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2379 | OSSL_PKEY_PARAM_RSA_COEFFICIENT1, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2380 | get_rsa_payload_c1 },
|
---|
2381 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2382 | OSSL_PKEY_PARAM_RSA_COEFFICIENT2, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2383 | get_rsa_payload_c2 },
|
---|
2384 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2385 | OSSL_PKEY_PARAM_RSA_COEFFICIENT3, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2386 | get_rsa_payload_c3 },
|
---|
2387 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2388 | OSSL_PKEY_PARAM_RSA_COEFFICIENT4, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2389 | get_rsa_payload_c4 },
|
---|
2390 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2391 | OSSL_PKEY_PARAM_RSA_COEFFICIENT5, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2392 | get_rsa_payload_c5 },
|
---|
2393 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2394 | OSSL_PKEY_PARAM_RSA_COEFFICIENT6, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2395 | get_rsa_payload_c6 },
|
---|
2396 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2397 | OSSL_PKEY_PARAM_RSA_COEFFICIENT7, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2398 | get_rsa_payload_c7 },
|
---|
2399 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2400 | OSSL_PKEY_PARAM_RSA_COEFFICIENT8, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2401 | get_rsa_payload_c8 },
|
---|
2402 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2403 | OSSL_PKEY_PARAM_RSA_COEFFICIENT9, OSSL_PARAM_UNSIGNED_INTEGER,
|
---|
2404 | get_rsa_payload_c9 },
|
---|
2405 |
|
---|
2406 | /* EC */
|
---|
2407 | { GET, -1, -1, -1, 0, NULL, NULL,
|
---|
2408 | OSSL_PKEY_PARAM_EC_DECODED_FROM_EXPLICIT_PARAMS, OSSL_PARAM_INTEGER,
|
---|
2409 | get_ec_decoded_from_explicit_params },
|
---|
2410 | };
|
---|
2411 |
|
---|
2412 | static const struct translation_st *
|
---|
2413 | lookup_translation(struct translation_st *tmpl,
|
---|
2414 | const struct translation_st *translations,
|
---|
2415 | size_t translations_num)
|
---|
2416 | {
|
---|
2417 | size_t i;
|
---|
2418 |
|
---|
2419 | for (i = 0; i < translations_num; i++) {
|
---|
2420 | const struct translation_st *item = &translations[i];
|
---|
2421 |
|
---|
2422 | /*
|
---|
2423 | * Sanity check the translation table item.
|
---|
2424 | *
|
---|
2425 | * 1. Either both keytypes are -1, or neither of them are.
|
---|
2426 | * 2. TBA...
|
---|
2427 | */
|
---|
2428 | if (!ossl_assert((item->keytype1 == -1) == (item->keytype2 == -1)))
|
---|
2429 | continue;
|
---|
2430 |
|
---|
2431 |
|
---|
2432 | /*
|
---|
2433 | * Base search criteria: check that the optype and keytypes match,
|
---|
2434 | * if relevant. All callers must synthesise these bits somehow.
|
---|
2435 | */
|
---|
2436 | if (item->optype != -1 && (tmpl->optype & item->optype) == 0)
|
---|
2437 | continue;
|
---|
2438 | /*
|
---|
2439 | * This expression is stunningly simple thanks to the sanity check
|
---|
2440 | * above.
|
---|
2441 | */
|
---|
2442 | if (item->keytype1 != -1
|
---|
2443 | && tmpl->keytype1 != item->keytype1
|
---|
2444 | && tmpl->keytype2 != item->keytype2)
|
---|
2445 | continue;
|
---|
2446 |
|
---|
2447 | /*
|
---|
2448 | * Done with the base search criteria, now we check the criteria for
|
---|
2449 | * the individual types of translations:
|
---|
2450 | * ctrl->params, ctrl_str->params, and params->ctrl
|
---|
2451 | */
|
---|
2452 | if (tmpl->ctrl_num != 0) {
|
---|
2453 | if (tmpl->ctrl_num != item->ctrl_num)
|
---|
2454 | continue;
|
---|
2455 | } else if (tmpl->ctrl_str != NULL) {
|
---|
2456 | const char *ctrl_str = NULL;
|
---|
2457 | const char *ctrl_hexstr = NULL;
|
---|
2458 |
|
---|
2459 | /*
|
---|
2460 | * Search criteria that originates from a ctrl_str is only used
|
---|
2461 | * for setting, never for getting. Therefore, we only look at
|
---|
2462 | * the setter items.
|
---|
2463 | */
|
---|
2464 | if (item->action_type != NONE
|
---|
2465 | && item->action_type != SET)
|
---|
2466 | continue;
|
---|
2467 | /*
|
---|
2468 | * At least one of the ctrl cmd names must be match the ctrl
|
---|
2469 | * cmd name in the template.
|
---|
2470 | */
|
---|
2471 | if (item->ctrl_str != NULL
|
---|
2472 | && strcasecmp(tmpl->ctrl_str, item->ctrl_str) == 0)
|
---|
2473 | ctrl_str = tmpl->ctrl_str;
|
---|
2474 | else if (item->ctrl_hexstr != NULL
|
---|
2475 | && strcasecmp(tmpl->ctrl_hexstr, item->ctrl_hexstr) == 0)
|
---|
2476 | ctrl_hexstr = tmpl->ctrl_hexstr;
|
---|
2477 | else
|
---|
2478 | continue;
|
---|
2479 |
|
---|
2480 | /* Modify the template to signal which string matched */
|
---|
2481 | tmpl->ctrl_str = ctrl_str;
|
---|
2482 | tmpl->ctrl_hexstr = ctrl_hexstr;
|
---|
2483 | } else if (tmpl->param_key != NULL) {
|
---|
2484 | /*
|
---|
2485 | * Search criteria that originates from a OSSL_PARAM setter or
|
---|
2486 | * getter.
|
---|
2487 | *
|
---|
2488 | * Ctrls were fundamentally bidirectional, with only the ctrl
|
---|
2489 | * command macro name implying direction (if you're lucky).
|
---|
2490 | * A few ctrl commands were even taking advantage of the
|
---|
2491 | * bidirectional nature, making the direction depend in the
|
---|
2492 | * value of the numeric argument.
|
---|
2493 | *
|
---|
2494 | * OSSL_PARAM functions are fundamentally different, in that
|
---|
2495 | * setters and getters are separated, so the data direction is
|
---|
2496 | * implied by the function that's used. The same OSSL_PARAM
|
---|
2497 | * key name can therefore be used in both directions. We must
|
---|
2498 | * therefore take the action type into account in this case.
|
---|
2499 | */
|
---|
2500 | if ((item->action_type != NONE
|
---|
2501 | && tmpl->action_type != item->action_type)
|
---|
2502 | || (item->param_key != NULL
|
---|
2503 | && strcasecmp(tmpl->param_key, item->param_key) != 0))
|
---|
2504 | continue;
|
---|
2505 | } else {
|
---|
2506 | return NULL;
|
---|
2507 | }
|
---|
2508 |
|
---|
2509 | return item;
|
---|
2510 | }
|
---|
2511 |
|
---|
2512 | return NULL;
|
---|
2513 | }
|
---|
2514 |
|
---|
2515 | static const struct translation_st *
|
---|
2516 | lookup_evp_pkey_ctx_translation(struct translation_st *tmpl)
|
---|
2517 | {
|
---|
2518 | return lookup_translation(tmpl, evp_pkey_ctx_translations,
|
---|
2519 | OSSL_NELEM(evp_pkey_ctx_translations));
|
---|
2520 | }
|
---|
2521 |
|
---|
2522 | static const struct translation_st *
|
---|
2523 | lookup_evp_pkey_translation(struct translation_st *tmpl)
|
---|
2524 | {
|
---|
2525 | return lookup_translation(tmpl, evp_pkey_translations,
|
---|
2526 | OSSL_NELEM(evp_pkey_translations));
|
---|
2527 | }
|
---|
2528 |
|
---|
2529 | /* This must ONLY be called for provider side operations */
|
---|
2530 | int evp_pkey_ctx_ctrl_to_param(EVP_PKEY_CTX *pctx,
|
---|
2531 | int keytype, int optype,
|
---|
2532 | int cmd, int p1, void *p2)
|
---|
2533 | {
|
---|
2534 | struct translation_ctx_st ctx = { 0, };
|
---|
2535 | struct translation_st tmpl = { 0, };
|
---|
2536 | const struct translation_st *translation = NULL;
|
---|
2537 | OSSL_PARAM params[2] = { OSSL_PARAM_END, OSSL_PARAM_END };
|
---|
2538 | int ret;
|
---|
2539 | fixup_args_fn *fixup = default_fixup_args;
|
---|
2540 |
|
---|
2541 | if (keytype == -1)
|
---|
2542 | keytype = pctx->legacy_keytype;
|
---|
2543 | tmpl.ctrl_num = cmd;
|
---|
2544 | tmpl.keytype1 = tmpl.keytype2 = keytype;
|
---|
2545 | tmpl.optype = optype;
|
---|
2546 | translation = lookup_evp_pkey_ctx_translation(&tmpl);
|
---|
2547 |
|
---|
2548 | if (translation == NULL) {
|
---|
2549 | ERR_raise(ERR_LIB_EVP, EVP_R_COMMAND_NOT_SUPPORTED);
|
---|
2550 | return -2;
|
---|
2551 | }
|
---|
2552 |
|
---|
2553 | if (pctx->pmeth != NULL
|
---|
2554 | && pctx->pmeth->pkey_id != translation->keytype1
|
---|
2555 | && pctx->pmeth->pkey_id != translation->keytype2)
|
---|
2556 | return -1;
|
---|
2557 |
|
---|
2558 | if (translation->fixup_args != NULL)
|
---|
2559 | fixup = translation->fixup_args;
|
---|
2560 | ctx.action_type = translation->action_type;
|
---|
2561 | ctx.ctrl_cmd = cmd;
|
---|
2562 | ctx.p1 = p1;
|
---|
2563 | ctx.p2 = p2;
|
---|
2564 | ctx.pctx = pctx;
|
---|
2565 | ctx.params = params;
|
---|
2566 |
|
---|
2567 | ret = fixup(PRE_CTRL_TO_PARAMS, translation, &ctx);
|
---|
2568 |
|
---|
2569 | if (ret > 0) {
|
---|
2570 | switch (ctx.action_type) {
|
---|
2571 | default:
|
---|
2572 | /* fixup_args is expected to make sure this is dead code */
|
---|
2573 | break;
|
---|
2574 | case GET:
|
---|
2575 | ret = evp_pkey_ctx_get_params_strict(pctx, ctx.params);
|
---|
2576 | break;
|
---|
2577 | case SET:
|
---|
2578 | ret = evp_pkey_ctx_set_params_strict(pctx, ctx.params);
|
---|
2579 | break;
|
---|
2580 | }
|
---|
2581 | }
|
---|
2582 |
|
---|
2583 | /*
|
---|
2584 | * In POST, we pass the return value as p1, allowing the fixup_args
|
---|
2585 | * function to affect it by changing its value.
|
---|
2586 | */
|
---|
2587 | if (ret > 0) {
|
---|
2588 | ctx.p1 = ret;
|
---|
2589 | fixup(POST_CTRL_TO_PARAMS, translation, &ctx);
|
---|
2590 | ret = ctx.p1;
|
---|
2591 | }
|
---|
2592 |
|
---|
2593 | cleanup_translation_ctx(POST_CTRL_TO_PARAMS, translation, &ctx);
|
---|
2594 |
|
---|
2595 | return ret;
|
---|
2596 | }
|
---|
2597 |
|
---|
2598 | /* This must ONLY be called for provider side operations */
|
---|
2599 | int evp_pkey_ctx_ctrl_str_to_param(EVP_PKEY_CTX *pctx,
|
---|
2600 | const char *name, const char *value)
|
---|
2601 | {
|
---|
2602 | struct translation_ctx_st ctx = { 0, };
|
---|
2603 | struct translation_st tmpl = { 0, };
|
---|
2604 | const struct translation_st *translation = NULL;
|
---|
2605 | OSSL_PARAM params[2] = { OSSL_PARAM_END, OSSL_PARAM_END };
|
---|
2606 | int keytype = pctx->legacy_keytype;
|
---|
2607 | int optype = pctx->operation == 0 ? -1 : pctx->operation;
|
---|
2608 | int ret;
|
---|
2609 | fixup_args_fn *fixup = default_fixup_args;
|
---|
2610 |
|
---|
2611 | tmpl.action_type = SET;
|
---|
2612 | tmpl.keytype1 = tmpl.keytype2 = keytype;
|
---|
2613 | tmpl.optype = optype;
|
---|
2614 | tmpl.ctrl_str = name;
|
---|
2615 | tmpl.ctrl_hexstr = name;
|
---|
2616 | translation = lookup_evp_pkey_ctx_translation(&tmpl);
|
---|
2617 |
|
---|
2618 | if (translation != NULL) {
|
---|
2619 | if (translation->fixup_args != NULL)
|
---|
2620 | fixup = translation->fixup_args;
|
---|
2621 | ctx.action_type = translation->action_type;
|
---|
2622 | ctx.ishex = (tmpl.ctrl_hexstr != NULL);
|
---|
2623 | } else {
|
---|
2624 | /* String controls really only support setting */
|
---|
2625 | ctx.action_type = SET;
|
---|
2626 | }
|
---|
2627 | ctx.ctrl_str = name;
|
---|
2628 | ctx.p1 = (int)strlen(value);
|
---|
2629 | ctx.p2 = (char *)value;
|
---|
2630 | ctx.pctx = pctx;
|
---|
2631 | ctx.params = params;
|
---|
2632 |
|
---|
2633 | ret = fixup(PRE_CTRL_STR_TO_PARAMS, translation, &ctx);
|
---|
2634 |
|
---|
2635 | if (ret > 0) {
|
---|
2636 | switch (ctx.action_type) {
|
---|
2637 | default:
|
---|
2638 | /* fixup_args is expected to make sure this is dead code */
|
---|
2639 | break;
|
---|
2640 | case GET:
|
---|
2641 | /*
|
---|
2642 | * this is dead code, but must be present, or some compilers
|
---|
2643 | * will complain
|
---|
2644 | */
|
---|
2645 | break;
|
---|
2646 | case SET:
|
---|
2647 | ret = evp_pkey_ctx_set_params_strict(pctx, ctx.params);
|
---|
2648 | break;
|
---|
2649 | }
|
---|
2650 | }
|
---|
2651 |
|
---|
2652 | if (ret > 0)
|
---|
2653 | ret = fixup(POST_CTRL_STR_TO_PARAMS, translation, &ctx);
|
---|
2654 |
|
---|
2655 | cleanup_translation_ctx(CLEANUP_CTRL_STR_TO_PARAMS, translation, &ctx);
|
---|
2656 |
|
---|
2657 | return ret;
|
---|
2658 | }
|
---|
2659 |
|
---|
2660 | /* This must ONLY be called for legacy operations */
|
---|
2661 | static int evp_pkey_ctx_setget_params_to_ctrl(EVP_PKEY_CTX *pctx,
|
---|
2662 | enum action action_type,
|
---|
2663 | OSSL_PARAM *params)
|
---|
2664 | {
|
---|
2665 | int keytype = pctx->legacy_keytype;
|
---|
2666 | int optype = pctx->operation == 0 ? -1 : pctx->operation;
|
---|
2667 |
|
---|
2668 | for (; params != NULL && params->key != NULL; params++) {
|
---|
2669 | struct translation_ctx_st ctx = { 0, };
|
---|
2670 | struct translation_st tmpl = { 0, };
|
---|
2671 | const struct translation_st *translation = NULL;
|
---|
2672 | fixup_args_fn *fixup = default_fixup_args;
|
---|
2673 | int ret;
|
---|
2674 |
|
---|
2675 | tmpl.action_type = action_type;
|
---|
2676 | tmpl.keytype1 = tmpl.keytype2 = keytype;
|
---|
2677 | tmpl.optype = optype;
|
---|
2678 | tmpl.param_key = params->key;
|
---|
2679 | translation = lookup_evp_pkey_ctx_translation(&tmpl);
|
---|
2680 |
|
---|
2681 | if (translation != NULL) {
|
---|
2682 | if (translation->fixup_args != NULL)
|
---|
2683 | fixup = translation->fixup_args;
|
---|
2684 | ctx.action_type = translation->action_type;
|
---|
2685 | }
|
---|
2686 | ctx.pctx = pctx;
|
---|
2687 | ctx.params = params;
|
---|
2688 |
|
---|
2689 | ret = fixup(PRE_PARAMS_TO_CTRL, translation, &ctx);
|
---|
2690 |
|
---|
2691 | if (ret > 0 && action_type != NONE)
|
---|
2692 | ret = EVP_PKEY_CTX_ctrl(pctx, keytype, optype,
|
---|
2693 | ctx.ctrl_cmd, ctx.p1, ctx.p2);
|
---|
2694 |
|
---|
2695 | /*
|
---|
2696 | * In POST, we pass the return value as p1, allowing the fixup_args
|
---|
2697 | * function to put it to good use, or maybe affect it.
|
---|
2698 | */
|
---|
2699 | if (ret > 0) {
|
---|
2700 | ctx.p1 = ret;
|
---|
2701 | fixup(POST_PARAMS_TO_CTRL, translation, &ctx);
|
---|
2702 | ret = ctx.p1;
|
---|
2703 | }
|
---|
2704 |
|
---|
2705 | cleanup_translation_ctx(CLEANUP_PARAMS_TO_CTRL, translation, &ctx);
|
---|
2706 |
|
---|
2707 | if (ret <= 0)
|
---|
2708 | return 0;
|
---|
2709 | }
|
---|
2710 | return 1;
|
---|
2711 | }
|
---|
2712 |
|
---|
2713 | int evp_pkey_ctx_set_params_to_ctrl(EVP_PKEY_CTX *ctx, const OSSL_PARAM *params)
|
---|
2714 | {
|
---|
2715 | return evp_pkey_ctx_setget_params_to_ctrl(ctx, SET, (OSSL_PARAM *)params);
|
---|
2716 | }
|
---|
2717 |
|
---|
2718 | int evp_pkey_ctx_get_params_to_ctrl(EVP_PKEY_CTX *ctx, OSSL_PARAM *params)
|
---|
2719 | {
|
---|
2720 | return evp_pkey_ctx_setget_params_to_ctrl(ctx, GET, params);
|
---|
2721 | }
|
---|
2722 |
|
---|
2723 | /* This must ONLY be called for legacy EVP_PKEYs */
|
---|
2724 | static int evp_pkey_setget_params_to_ctrl(const EVP_PKEY *pkey,
|
---|
2725 | enum action action_type,
|
---|
2726 | OSSL_PARAM *params)
|
---|
2727 | {
|
---|
2728 | int ret = 1;
|
---|
2729 |
|
---|
2730 | for (; params != NULL && params->key != NULL; params++) {
|
---|
2731 | struct translation_ctx_st ctx = { 0, };
|
---|
2732 | struct translation_st tmpl = { 0, };
|
---|
2733 | const struct translation_st *translation = NULL;
|
---|
2734 | fixup_args_fn *fixup = default_fixup_args;
|
---|
2735 |
|
---|
2736 | tmpl.action_type = action_type;
|
---|
2737 | tmpl.param_key = params->key;
|
---|
2738 | translation = lookup_evp_pkey_translation(&tmpl);
|
---|
2739 |
|
---|
2740 | if (translation != NULL) {
|
---|
2741 | if (translation->fixup_args != NULL)
|
---|
2742 | fixup = translation->fixup_args;
|
---|
2743 | ctx.action_type = translation->action_type;
|
---|
2744 | }
|
---|
2745 | ctx.p2 = (void *)pkey;
|
---|
2746 | ctx.params = params;
|
---|
2747 |
|
---|
2748 | /*
|
---|
2749 | * EVP_PKEY doesn't have any ctrl function, so we rely completely
|
---|
2750 | * on fixup_args to do the whole work. Also, we currently only
|
---|
2751 | * support getting.
|
---|
2752 | */
|
---|
2753 | if (!ossl_assert(translation != NULL)
|
---|
2754 | || !ossl_assert(translation->action_type == GET)
|
---|
2755 | || !ossl_assert(translation->fixup_args != NULL)) {
|
---|
2756 | return -2;
|
---|
2757 | }
|
---|
2758 |
|
---|
2759 | ret = fixup(PKEY, translation, &ctx);
|
---|
2760 |
|
---|
2761 | cleanup_translation_ctx(PKEY, translation, &ctx);
|
---|
2762 | }
|
---|
2763 | return ret;
|
---|
2764 | }
|
---|
2765 |
|
---|
2766 | int evp_pkey_get_params_to_ctrl(const EVP_PKEY *pkey, OSSL_PARAM *params)
|
---|
2767 | {
|
---|
2768 | return evp_pkey_setget_params_to_ctrl(pkey, GET, params);
|
---|
2769 | }
|
---|