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1 /* ssl/s2_srvr.c */ |
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2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) |
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3 * All rights reserved. |
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4 * |
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5 * This package is an SSL implementation written |
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6 * by Eric Young (eay@cryptsoft.com). |
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7 * The implementation was written so as to conform with Netscapes SSL. |
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8 * |
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9 * This library is free for commercial and non-commercial use as long as |
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10 * the following conditions are aheared to. The following conditions |
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11 * apply to all code found in this distribution, be it the RC4, RSA, |
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12 * lhash, DES, etc., code; not just the SSL code. The SSL documentation |
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13 * included with this distribution is covered by the same copyright terms |
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14 * except that the holder is Tim Hudson (tjh@cryptsoft.com). |
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15 * |
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16 * Copyright remains Eric Young's, and as such any Copyright notices in |
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17 * the code are not to be removed. |
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18 * If this package is used in a product, Eric Young should be given attribution |
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19 * as the author of the parts of the library used. |
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20 * This can be in the form of a textual message at program startup or |
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21 * in documentation (online or textual) provided with the package. |
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22 * |
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23 * Redistribution and use in source and binary forms, with or without |
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24 * modification, are permitted provided that the following conditions |
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25 * are met: |
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26 * 1. Redistributions of source code must retain the copyright |
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27 * notice, this list of conditions and the following disclaimer. |
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28 * 2. Redistributions in binary form must reproduce the above copyright |
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29 * notice, this list of conditions and the following disclaimer in the |
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30 * documentation and/or other materials provided with the distribution. |
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31 * 3. All advertising materials mentioning features or use of this software |
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32 * must display the following acknowledgement: |
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33 * "This product includes cryptographic software written by |
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34 * Eric Young (eay@cryptsoft.com)" |
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35 * The word 'cryptographic' can be left out if the rouines from the library |
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36 * being used are not cryptographic related :-). |
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37 * 4. If you include any Windows specific code (or a derivative thereof) from |
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38 * the apps directory (application code) you must include an acknowledgement: |
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39 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" |
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40 * |
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41 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND |
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42 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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43 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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44 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE |
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45 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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46 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS |
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47 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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48 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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49 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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50 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF |
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51 * SUCH DAMAGE. |
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52 * |
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53 * The licence and distribution terms for any publically available version or |
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54 * derivative of this code cannot be changed. i.e. this code cannot simply be |
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55 * copied and put under another distribution licence |
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56 * [including the GNU Public Licence.] |
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57 */ |
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58 /* ==================================================================== |
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59 * Copyright (c) 1998-2001 The OpenSSL Project. All rights reserved. |
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60 * |
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61 * Redistribution and use in source and binary forms, with or without |
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62 * modification, are permitted provided that the following conditions |
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63 * are met: |
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64 * |
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65 * 1. Redistributions of source code must retain the above copyright |
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66 * notice, this list of conditions and the following disclaimer. |
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67 * |
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68 * 2. Redistributions in binary form must reproduce the above copyright |
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69 * notice, this list of conditions and the following disclaimer in |
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70 * the documentation and/or other materials provided with the |
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71 * distribution. |
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72 * |
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73 * 3. All advertising materials mentioning features or use of this |
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74 * software must display the following acknowledgment: |
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75 * "This product includes software developed by the OpenSSL Project |
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76 * for use in the OpenSSL Toolkit. (http://www.openssl.org/)" |
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77 * |
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78 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to |
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79 * endorse or promote products derived from this software without |
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80 * prior written permission. For written permission, please contact |
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81 * openssl-core@openssl.org. |
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82 * |
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83 * 5. Products derived from this software may not be called "OpenSSL" |
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84 * nor may "OpenSSL" appear in their names without prior written |
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85 * permission of the OpenSSL Project. |
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86 * |
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87 * 6. Redistributions of any form whatsoever must retain the following |
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88 * acknowledgment: |
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89 * "This product includes software developed by the OpenSSL Project |
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90 * for use in the OpenSSL Toolkit (http://www.openssl.org/)" |
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91 * |
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92 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY |
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93 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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94 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR |
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95 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR |
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96 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
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97 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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98 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; |
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99 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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100 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, |
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101 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) |
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102 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED |
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103 * OF THE POSSIBILITY OF SUCH DAMAGE. |
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104 * ==================================================================== |
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105 * |
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106 * This product includes cryptographic software written by Eric Young |
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107 * (eay@cryptsoft.com). This product includes software written by Tim |
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108 * Hudson (tjh@cryptsoft.com). |
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109 * |
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110 */ |
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111 /* |
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112 © Portions copyright (c) 2006 Nokia Corporation. All rights reserved. |
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113 */ |
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114 |
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115 #include "ssl_locl.h" |
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116 #ifndef OPENSSL_NO_SSL2 |
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117 #include <stdio.h> |
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118 #include <openssl/bio.h> |
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119 #include <openssl/rand.h> |
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120 #include <openssl/objects.h> |
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121 #include <openssl/evp.h> |
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122 |
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123 #if (defined(SYMBIAN) && (defined(__WINSCW__) || defined(__WINS__))) |
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124 #include "libssl_wsd.h" |
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125 #endif |
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126 |
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127 #ifdef EMULATOR |
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128 |
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129 GET_STATIC_VAR_FROM_TLS(SSLv2_server_method_data,s2_srvr,SSL_METHOD) |
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130 |
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131 #define SSLv2_server_method_data (*GET_WSD_VAR_NAME(SSLv2_server_method_data,s2_srvr,s)()) |
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132 |
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133 #endif |
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134 static SSL_METHOD *ssl2_get_server_method(int ver); |
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135 static int get_client_master_key(SSL *s); |
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136 static int get_client_hello(SSL *s); |
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137 static int server_hello(SSL *s); |
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138 static int get_client_finished(SSL *s); |
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139 static int server_verify(SSL *s); |
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140 static int server_finish(SSL *s); |
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141 static int request_certificate(SSL *s); |
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142 static int ssl_rsa_private_decrypt(CERT *c, int len, unsigned char *from, |
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143 unsigned char *to,int padding); |
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144 #define BREAK break |
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145 |
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146 static SSL_METHOD *ssl2_get_server_method(int ver) |
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147 { |
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148 if (ver == SSL2_VERSION) |
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149 return(SSLv2_server_method()); |
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150 else |
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151 return(NULL); |
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152 } |
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153 |
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154 EXPORT_C IMPLEMENT_ssl2_meth_func(SSLv2_server_method, |
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155 ssl2_accept, |
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156 ssl_undefined_function, |
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157 ssl2_get_server_method) |
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158 |
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159 int ssl2_accept(SSL *s) |
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160 { |
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161 unsigned long l=(unsigned long)time(NULL); |
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162 BUF_MEM *buf=NULL; |
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163 int ret= -1; |
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164 long num1; |
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165 void (*cb)(const SSL *ssl,int type,int val)=NULL; |
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166 int new_state,state; |
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167 |
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168 RAND_add(&l,sizeof(l),0); |
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169 ERR_clear_error(); |
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170 clear_sys_error(); |
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171 |
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172 if (s->info_callback != NULL) |
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173 cb=s->info_callback; |
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174 else if (s->ctx->info_callback != NULL) |
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175 cb=s->ctx->info_callback; |
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176 |
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177 /* init things to blank */ |
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178 s->in_handshake++; |
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179 if (!SSL_in_init(s) || SSL_in_before(s)) SSL_clear(s); |
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180 |
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181 if (s->cert == NULL) |
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182 { |
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183 SSLerr(SSL_F_SSL2_ACCEPT,SSL_R_NO_CERTIFICATE_SET); |
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184 return(-1); |
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185 } |
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186 |
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187 clear_sys_error(); |
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188 for (;;) |
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189 { |
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190 state=s->state; |
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191 |
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192 switch (s->state) |
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193 { |
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194 case SSL_ST_BEFORE: |
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195 case SSL_ST_ACCEPT: |
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196 case SSL_ST_BEFORE|SSL_ST_ACCEPT: |
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197 case SSL_ST_OK|SSL_ST_ACCEPT: |
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198 |
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199 s->server=1; |
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200 if (cb != NULL) cb(s,SSL_CB_HANDSHAKE_START,1); |
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201 |
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202 s->version=SSL2_VERSION; |
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203 s->type=SSL_ST_ACCEPT; |
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204 |
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205 buf=s->init_buf; |
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206 if ((buf == NULL) && ((buf=BUF_MEM_new()) == NULL)) |
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207 { ret= -1; goto end; } |
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208 if (!BUF_MEM_grow(buf,(int) |
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209 SSL2_MAX_RECORD_LENGTH_3_BYTE_HEADER)) |
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210 { ret= -1; goto end; } |
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211 s->init_buf=buf; |
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212 s->init_num=0; |
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213 s->ctx->stats.sess_accept++; |
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214 s->handshake_func=ssl2_accept; |
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215 s->state=SSL2_ST_GET_CLIENT_HELLO_A; |
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216 BREAK; |
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217 |
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218 case SSL2_ST_GET_CLIENT_HELLO_A: |
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219 case SSL2_ST_GET_CLIENT_HELLO_B: |
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220 case SSL2_ST_GET_CLIENT_HELLO_C: |
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221 s->shutdown=0; |
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222 ret=get_client_hello(s); |
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223 if (ret <= 0) goto end; |
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224 s->init_num=0; |
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225 s->state=SSL2_ST_SEND_SERVER_HELLO_A; |
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226 BREAK; |
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227 |
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228 case SSL2_ST_SEND_SERVER_HELLO_A: |
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229 case SSL2_ST_SEND_SERVER_HELLO_B: |
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230 ret=server_hello(s); |
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231 if (ret <= 0) goto end; |
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232 s->init_num=0; |
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233 if (!s->hit) |
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234 { |
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235 s->state=SSL2_ST_GET_CLIENT_MASTER_KEY_A; |
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236 BREAK; |
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237 } |
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238 else |
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239 { |
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240 s->state=SSL2_ST_SERVER_START_ENCRYPTION; |
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241 BREAK; |
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242 } |
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243 case SSL2_ST_GET_CLIENT_MASTER_KEY_A: |
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244 case SSL2_ST_GET_CLIENT_MASTER_KEY_B: |
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245 ret=get_client_master_key(s); |
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246 if (ret <= 0) goto end; |
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247 s->init_num=0; |
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248 s->state=SSL2_ST_SERVER_START_ENCRYPTION; |
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249 BREAK; |
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250 |
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251 case SSL2_ST_SERVER_START_ENCRYPTION: |
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252 /* Ok we how have sent all the stuff needed to |
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253 * start encrypting, the next packet back will |
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254 * be encrypted. */ |
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255 if (!ssl2_enc_init(s,0)) |
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256 { ret= -1; goto end; } |
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257 s->s2->clear_text=0; |
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258 s->state=SSL2_ST_SEND_SERVER_VERIFY_A; |
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259 BREAK; |
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260 |
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261 case SSL2_ST_SEND_SERVER_VERIFY_A: |
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262 case SSL2_ST_SEND_SERVER_VERIFY_B: |
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263 ret=server_verify(s); |
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264 if (ret <= 0) goto end; |
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265 s->init_num=0; |
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266 if (s->hit) |
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267 { |
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268 /* If we are in here, we have been |
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269 * buffering the output, so we need to |
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270 * flush it and remove buffering from |
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271 * future traffic */ |
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272 s->state=SSL2_ST_SEND_SERVER_VERIFY_C; |
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273 BREAK; |
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274 } |
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275 else |
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276 { |
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277 s->state=SSL2_ST_GET_CLIENT_FINISHED_A; |
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278 break; |
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279 } |
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280 |
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281 case SSL2_ST_SEND_SERVER_VERIFY_C: |
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282 /* get the number of bytes to write */ |
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283 num1=BIO_ctrl(s->wbio,BIO_CTRL_INFO,0,NULL); |
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284 if (num1 != 0) |
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285 { |
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286 s->rwstate=SSL_WRITING; |
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287 num1=BIO_flush(s->wbio); |
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288 if (num1 <= 0) { ret= -1; goto end; } |
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289 s->rwstate=SSL_NOTHING; |
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290 } |
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291 |
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292 /* flushed and now remove buffering */ |
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293 s->wbio=BIO_pop(s->wbio); |
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294 |
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295 s->state=SSL2_ST_GET_CLIENT_FINISHED_A; |
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296 BREAK; |
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297 |
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298 case SSL2_ST_GET_CLIENT_FINISHED_A: |
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299 case SSL2_ST_GET_CLIENT_FINISHED_B: |
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300 ret=get_client_finished(s); |
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301 if (ret <= 0) |
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302 goto end; |
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303 s->init_num=0; |
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304 s->state=SSL2_ST_SEND_REQUEST_CERTIFICATE_A; |
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305 BREAK; |
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306 |
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307 case SSL2_ST_SEND_REQUEST_CERTIFICATE_A: |
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308 case SSL2_ST_SEND_REQUEST_CERTIFICATE_B: |
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309 case SSL2_ST_SEND_REQUEST_CERTIFICATE_C: |
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310 case SSL2_ST_SEND_REQUEST_CERTIFICATE_D: |
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311 /* don't do a 'request certificate' if we |
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312 * don't want to, or we already have one, and |
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313 * we only want to do it once. */ |
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314 if (!(s->verify_mode & SSL_VERIFY_PEER) || |
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315 ((s->session->peer != NULL) && |
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316 (s->verify_mode & SSL_VERIFY_CLIENT_ONCE))) |
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317 { |
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318 s->state=SSL2_ST_SEND_SERVER_FINISHED_A; |
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319 break; |
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320 } |
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321 else |
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322 { |
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323 ret=request_certificate(s); |
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324 if (ret <= 0) goto end; |
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325 s->init_num=0; |
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326 s->state=SSL2_ST_SEND_SERVER_FINISHED_A; |
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327 } |
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328 BREAK; |
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329 |
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330 case SSL2_ST_SEND_SERVER_FINISHED_A: |
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331 case SSL2_ST_SEND_SERVER_FINISHED_B: |
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332 ret=server_finish(s); |
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333 if (ret <= 0) goto end; |
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334 s->init_num=0; |
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335 s->state=SSL_ST_OK; |
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336 break; |
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337 |
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338 case SSL_ST_OK: |
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339 BUF_MEM_free(s->init_buf); |
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340 ssl_free_wbio_buffer(s); |
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341 s->init_buf=NULL; |
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342 s->init_num=0; |
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343 /* ERR_clear_error();*/ |
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344 |
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345 ssl_update_cache(s,SSL_SESS_CACHE_SERVER); |
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346 |
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347 s->ctx->stats.sess_accept_good++; |
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348 /* s->server=1; */ |
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349 ret=1; |
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350 |
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351 if (cb != NULL) cb(s,SSL_CB_HANDSHAKE_DONE,1); |
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352 |
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353 goto end; |
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354 /* BREAK; */ |
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355 |
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356 default: |
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357 SSLerr(SSL_F_SSL2_ACCEPT,SSL_R_UNKNOWN_STATE); |
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358 ret= -1; |
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359 goto end; |
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360 /* BREAK; */ |
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361 } |
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362 |
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363 if ((cb != NULL) && (s->state != state)) |
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364 { |
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365 new_state=s->state; |
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366 s->state=state; |
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367 cb(s,SSL_CB_ACCEPT_LOOP,1); |
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368 s->state=new_state; |
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369 } |
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370 } |
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371 end: |
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372 s->in_handshake--; |
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373 if (cb != NULL) |
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374 cb(s,SSL_CB_ACCEPT_EXIT,ret); |
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375 return(ret); |
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376 } |
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377 |
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378 static int get_client_master_key(SSL *s) |
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379 { |
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380 int is_export,i,n,keya,ek; |
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381 unsigned long len; |
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382 unsigned char *p; |
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383 SSL_CIPHER *cp; |
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384 const EVP_CIPHER *c; |
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385 const EVP_MD *md; |
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386 |
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387 p=(unsigned char *)s->init_buf->data; |
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388 if (s->state == SSL2_ST_GET_CLIENT_MASTER_KEY_A) |
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389 { |
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390 i=ssl2_read(s,(char *)&(p[s->init_num]),10-s->init_num); |
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391 |
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392 if (i < (10-s->init_num)) |
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393 return(ssl2_part_read(s,SSL_F_GET_CLIENT_MASTER_KEY,i)); |
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394 s->init_num = 10; |
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395 |
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396 if (*(p++) != SSL2_MT_CLIENT_MASTER_KEY) |
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397 { |
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398 if (p[-1] != SSL2_MT_ERROR) |
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399 { |
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400 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
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401 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_READ_WRONG_PACKET_TYPE); |
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402 } |
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403 else |
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404 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY, SSL_R_PEER_ERROR); |
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405 return(-1); |
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406 } |
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407 |
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408 cp=ssl2_get_cipher_by_char(p); |
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409 if (cp == NULL) |
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410 { |
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411 ssl2_return_error(s,SSL2_PE_NO_CIPHER); |
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412 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY, SSL_R_NO_CIPHER_MATCH); |
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413 return(-1); |
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414 } |
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415 s->session->cipher= cp; |
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416 |
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417 p+=3; |
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418 n2s(p,i); s->s2->tmp.clear=i; |
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419 n2s(p,i); s->s2->tmp.enc=i; |
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420 n2s(p,i); s->session->key_arg_length=i; |
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421 if(s->session->key_arg_length > SSL_MAX_KEY_ARG_LENGTH) |
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422 { |
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423 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
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424 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY, SSL_R_KEY_ARG_TOO_LONG); |
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425 return -1; |
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426 } |
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427 s->state=SSL2_ST_GET_CLIENT_MASTER_KEY_B; |
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428 } |
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429 |
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430 /* SSL2_ST_GET_CLIENT_MASTER_KEY_B */ |
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431 p=(unsigned char *)s->init_buf->data; |
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432 if (s->init_buf->length < SSL2_MAX_RECORD_LENGTH_3_BYTE_HEADER) |
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433 { |
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434 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
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435 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY, ERR_R_INTERNAL_ERROR); |
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436 return -1; |
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437 } |
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438 keya=s->session->key_arg_length; |
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439 len = 10 + (unsigned long)s->s2->tmp.clear + (unsigned long)s->s2->tmp.enc + (unsigned long)keya; |
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440 if (len > SSL2_MAX_RECORD_LENGTH_3_BYTE_HEADER) |
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441 { |
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442 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
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443 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_MESSAGE_TOO_LONG); |
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444 return -1; |
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445 } |
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446 n = (int)len - s->init_num; |
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447 i = ssl2_read(s,(char *)&(p[s->init_num]),n); |
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448 if (i != n) return(ssl2_part_read(s,SSL_F_GET_CLIENT_MASTER_KEY,i)); |
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449 if (s->msg_callback) |
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450 s->msg_callback(0, s->version, 0, p, (size_t)len, s, s->msg_callback_arg); /* CLIENT-MASTER-KEY */ |
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451 p += 10; |
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452 |
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453 memcpy(s->session->key_arg,&(p[s->s2->tmp.clear+s->s2->tmp.enc]), |
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454 (unsigned int)keya); |
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455 |
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456 if (s->cert->pkeys[SSL_PKEY_RSA_ENC].privatekey == NULL) |
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457 { |
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458 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
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459 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_NO_PRIVATEKEY); |
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460 return(-1); |
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461 } |
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462 i=ssl_rsa_private_decrypt(s->cert,s->s2->tmp.enc, |
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463 &(p[s->s2->tmp.clear]),&(p[s->s2->tmp.clear]), |
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464 (s->s2->ssl2_rollback)?RSA_SSLV23_PADDING:RSA_PKCS1_PADDING); |
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465 |
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466 is_export=SSL_C_IS_EXPORT(s->session->cipher); |
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467 |
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468 if (!ssl_cipher_get_evp(s->session,&c,&md,NULL)) |
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469 { |
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470 ssl2_return_error(s,SSL2_PE_NO_CIPHER); |
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471 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_PROBLEMS_MAPPING_CIPHER_FUNCTIONS); |
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472 return(0); |
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473 } |
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474 |
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475 if (s->session->cipher->algorithm2 & SSL2_CF_8_BYTE_ENC) |
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476 { |
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477 is_export=1; |
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478 ek=8; |
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479 } |
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480 else |
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481 ek=5; |
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482 |
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483 /* bad decrypt */ |
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484 #if 1 |
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485 /* If a bad decrypt, continue with protocol but with a |
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486 * random master secret (Bleichenbacher attack) */ |
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487 if ((i < 0) || |
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488 ((!is_export && (i != EVP_CIPHER_key_length(c))) |
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489 || (is_export && ((i != ek) || (s->s2->tmp.clear+(unsigned int)i != |
|
490 (unsigned int)EVP_CIPHER_key_length(c)))))) |
|
491 { |
|
492 ERR_clear_error(); |
|
493 if (is_export) |
|
494 i=ek; |
|
495 else |
|
496 i=EVP_CIPHER_key_length(c); |
|
497 if (RAND_pseudo_bytes(p,i) <= 0) |
|
498 return 0; |
|
499 } |
|
500 #else |
|
501 if (i < 0) |
|
502 { |
|
503 error=1; |
|
504 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_BAD_RSA_DECRYPT); |
|
505 } |
|
506 /* incorrect number of key bytes for non export cipher */ |
|
507 else if ((!is_export && (i != EVP_CIPHER_key_length(c))) |
|
508 || (is_export && ((i != ek) || (s->s2->tmp.clear+i != |
|
509 EVP_CIPHER_key_length(c))))) |
|
510 { |
|
511 error=1; |
|
512 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY,SSL_R_WRONG_NUMBER_OF_KEY_BITS); |
|
513 } |
|
514 if (error) |
|
515 { |
|
516 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
517 return(-1); |
|
518 } |
|
519 #endif |
|
520 |
|
521 if (is_export) i+=s->s2->tmp.clear; |
|
522 |
|
523 if (i > SSL_MAX_MASTER_KEY_LENGTH) |
|
524 { |
|
525 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
526 SSLerr(SSL_F_GET_CLIENT_MASTER_KEY, ERR_R_INTERNAL_ERROR); |
|
527 return -1; |
|
528 } |
|
529 s->session->master_key_length=i; |
|
530 memcpy(s->session->master_key,p,(unsigned int)i); |
|
531 return(1); |
|
532 } |
|
533 |
|
534 static int get_client_hello(SSL *s) |
|
535 { |
|
536 int i,n; |
|
537 unsigned long len; |
|
538 unsigned char *p; |
|
539 STACK_OF(SSL_CIPHER) *cs; /* a stack of SSL_CIPHERS */ |
|
540 STACK_OF(SSL_CIPHER) *cl; /* the ones we want to use */ |
|
541 STACK_OF(SSL_CIPHER) *prio, *allow; |
|
542 int z; |
|
543 |
|
544 /* This is a bit of a hack to check for the correct packet |
|
545 * type the first time round. */ |
|
546 if (s->state == SSL2_ST_GET_CLIENT_HELLO_A) |
|
547 { |
|
548 s->first_packet=1; |
|
549 s->state=SSL2_ST_GET_CLIENT_HELLO_B; |
|
550 } |
|
551 |
|
552 p=(unsigned char *)s->init_buf->data; |
|
553 if (s->state == SSL2_ST_GET_CLIENT_HELLO_B) |
|
554 { |
|
555 i=ssl2_read(s,(char *)&(p[s->init_num]),9-s->init_num); |
|
556 if (i < (9-s->init_num)) |
|
557 return(ssl2_part_read(s,SSL_F_GET_CLIENT_HELLO,i)); |
|
558 s->init_num = 9; |
|
559 |
|
560 if (*(p++) != SSL2_MT_CLIENT_HELLO) |
|
561 { |
|
562 if (p[-1] != SSL2_MT_ERROR) |
|
563 { |
|
564 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
565 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_READ_WRONG_PACKET_TYPE); |
|
566 } |
|
567 else |
|
568 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_PEER_ERROR); |
|
569 return(-1); |
|
570 } |
|
571 n2s(p,i); |
|
572 if (i < s->version) s->version=i; |
|
573 n2s(p,i); s->s2->tmp.cipher_spec_length=i; |
|
574 n2s(p,i); s->s2->tmp.session_id_length=i; |
|
575 n2s(p,i); s->s2->challenge_length=i; |
|
576 if ( (i < SSL2_MIN_CHALLENGE_LENGTH) || |
|
577 (i > SSL2_MAX_CHALLENGE_LENGTH)) |
|
578 { |
|
579 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
580 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_INVALID_CHALLENGE_LENGTH); |
|
581 return(-1); |
|
582 } |
|
583 s->state=SSL2_ST_GET_CLIENT_HELLO_C; |
|
584 } |
|
585 |
|
586 /* SSL2_ST_GET_CLIENT_HELLO_C */ |
|
587 p=(unsigned char *)s->init_buf->data; |
|
588 len = 9 + (unsigned long)s->s2->tmp.cipher_spec_length + (unsigned long)s->s2->challenge_length + (unsigned long)s->s2->tmp.session_id_length; |
|
589 if (len > SSL2_MAX_RECORD_LENGTH_3_BYTE_HEADER) |
|
590 { |
|
591 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
592 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_MESSAGE_TOO_LONG); |
|
593 return -1; |
|
594 } |
|
595 n = (int)len - s->init_num; |
|
596 i = ssl2_read(s,(char *)&(p[s->init_num]),n); |
|
597 if (i != n) return(ssl2_part_read(s,SSL_F_GET_CLIENT_HELLO,i)); |
|
598 if (s->msg_callback) |
|
599 s->msg_callback(0, s->version, 0, p, (size_t)len, s, s->msg_callback_arg); /* CLIENT-HELLO */ |
|
600 p += 9; |
|
601 |
|
602 /* get session-id before cipher stuff so we can get out session |
|
603 * structure if it is cached */ |
|
604 /* session-id */ |
|
605 if ((s->s2->tmp.session_id_length != 0) && |
|
606 (s->s2->tmp.session_id_length != SSL2_SSL_SESSION_ID_LENGTH)) |
|
607 { |
|
608 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
609 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_BAD_SSL_SESSION_ID_LENGTH); |
|
610 return(-1); |
|
611 } |
|
612 |
|
613 if (s->s2->tmp.session_id_length == 0) |
|
614 { |
|
615 if (!ssl_get_new_session(s,1)) |
|
616 { |
|
617 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
618 return(-1); |
|
619 } |
|
620 } |
|
621 else |
|
622 { |
|
623 i=ssl_get_prev_session(s,&(p[s->s2->tmp.cipher_spec_length]), |
|
624 s->s2->tmp.session_id_length, NULL); |
|
625 if (i == 1) |
|
626 { /* previous session */ |
|
627 s->hit=1; |
|
628 } |
|
629 else if (i == -1) |
|
630 { |
|
631 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
632 return(-1); |
|
633 } |
|
634 else |
|
635 { |
|
636 if (s->cert == NULL) |
|
637 { |
|
638 ssl2_return_error(s,SSL2_PE_NO_CERTIFICATE); |
|
639 SSLerr(SSL_F_GET_CLIENT_HELLO,SSL_R_NO_CERTIFICATE_SET); |
|
640 return(-1); |
|
641 } |
|
642 |
|
643 if (!ssl_get_new_session(s,1)) |
|
644 { |
|
645 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
646 return(-1); |
|
647 } |
|
648 } |
|
649 } |
|
650 |
|
651 if (!s->hit) |
|
652 { |
|
653 cs=ssl_bytes_to_cipher_list(s,p,s->s2->tmp.cipher_spec_length, |
|
654 &s->session->ciphers); |
|
655 if (cs == NULL) goto mem_err; |
|
656 |
|
657 cl=SSL_get_ciphers(s); |
|
658 |
|
659 if (s->options & SSL_OP_CIPHER_SERVER_PREFERENCE) |
|
660 { |
|
661 prio=sk_SSL_CIPHER_dup(cl); |
|
662 if (prio == NULL) goto mem_err; |
|
663 allow = cs; |
|
664 } |
|
665 else |
|
666 { |
|
667 prio = cs; |
|
668 allow = cl; |
|
669 } |
|
670 for (z=0; z<sk_SSL_CIPHER_num(prio); z++) |
|
671 { |
|
672 if (sk_SSL_CIPHER_find(allow,sk_SSL_CIPHER_value(prio,z)) < 0) |
|
673 { |
|
674 (void)sk_SSL_CIPHER_delete(prio,z); |
|
675 z--; |
|
676 } |
|
677 } |
|
678 if (s->options & SSL_OP_CIPHER_SERVER_PREFERENCE) |
|
679 { |
|
680 sk_SSL_CIPHER_free(s->session->ciphers); |
|
681 s->session->ciphers = prio; |
|
682 } |
|
683 /* s->session->ciphers should now have a list of |
|
684 * ciphers that are on both the client and server. |
|
685 * This list is ordered by the order the client sent |
|
686 * the ciphers or in the order of the server's preference |
|
687 * if SSL_OP_CIPHER_SERVER_PREFERENCE was set. |
|
688 */ |
|
689 } |
|
690 p+=s->s2->tmp.cipher_spec_length; |
|
691 /* done cipher selection */ |
|
692 |
|
693 /* session id extracted already */ |
|
694 p+=s->s2->tmp.session_id_length; |
|
695 |
|
696 /* challenge */ |
|
697 if (s->s2->challenge_length > sizeof s->s2->challenge) |
|
698 { |
|
699 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
700 SSLerr(SSL_F_GET_CLIENT_HELLO, ERR_R_INTERNAL_ERROR); |
|
701 return -1; |
|
702 } |
|
703 memcpy(s->s2->challenge,p,(unsigned int)s->s2->challenge_length); |
|
704 return(1); |
|
705 mem_err: |
|
706 SSLerr(SSL_F_GET_CLIENT_HELLO,ERR_R_MALLOC_FAILURE); |
|
707 return(0); |
|
708 } |
|
709 |
|
710 static int server_hello(SSL *s) |
|
711 { |
|
712 unsigned char *p,*d; |
|
713 int n,hit; |
|
714 STACK_OF(SSL_CIPHER) *sk; |
|
715 |
|
716 p=(unsigned char *)s->init_buf->data; |
|
717 if (s->state == SSL2_ST_SEND_SERVER_HELLO_A) |
|
718 { |
|
719 d=p+11; |
|
720 *(p++)=SSL2_MT_SERVER_HELLO; /* type */ |
|
721 hit=s->hit; |
|
722 *(p++)=(unsigned char)hit; |
|
723 #if 1 |
|
724 if (!hit) |
|
725 { |
|
726 if (s->session->sess_cert != NULL) |
|
727 /* This can't really happen because get_client_hello |
|
728 * has called ssl_get_new_session, which does not set |
|
729 * sess_cert. */ |
|
730 ssl_sess_cert_free(s->session->sess_cert); |
|
731 s->session->sess_cert = ssl_sess_cert_new(); |
|
732 if (s->session->sess_cert == NULL) |
|
733 { |
|
734 SSLerr(SSL_F_SERVER_HELLO, ERR_R_MALLOC_FAILURE); |
|
735 return(-1); |
|
736 } |
|
737 } |
|
738 /* If 'hit' is set, then s->sess_cert may be non-NULL or NULL, |
|
739 * depending on whether it survived in the internal cache |
|
740 * or was retrieved from an external cache. |
|
741 * If it is NULL, we cannot put any useful data in it anyway, |
|
742 * so we don't touch it. |
|
743 */ |
|
744 |
|
745 #else /* That's what used to be done when cert_st and sess_cert_st were |
|
746 * the same. */ |
|
747 if (!hit) |
|
748 { /* else add cert to session */ |
|
749 CRYPTO_add(&s->cert->references,1,CRYPTO_LOCK_SSL_CERT); |
|
750 if (s->session->sess_cert != NULL) |
|
751 ssl_cert_free(s->session->sess_cert); |
|
752 s->session->sess_cert=s->cert; |
|
753 } |
|
754 else /* We have a session id-cache hit, if the |
|
755 * session-id has no certificate listed against |
|
756 * the 'cert' structure, grab the 'old' one |
|
757 * listed against the SSL connection */ |
|
758 { |
|
759 if (s->session->sess_cert == NULL) |
|
760 { |
|
761 CRYPTO_add(&s->cert->references,1, |
|
762 CRYPTO_LOCK_SSL_CERT); |
|
763 s->session->sess_cert=s->cert; |
|
764 } |
|
765 } |
|
766 #endif |
|
767 |
|
768 if (s->cert == NULL) |
|
769 { |
|
770 ssl2_return_error(s,SSL2_PE_NO_CERTIFICATE); |
|
771 SSLerr(SSL_F_SERVER_HELLO,SSL_R_NO_CERTIFICATE_SPECIFIED); |
|
772 return(-1); |
|
773 } |
|
774 |
|
775 if (hit) |
|
776 { |
|
777 *(p++)=0; /* no certificate type */ |
|
778 s2n(s->version,p); /* version */ |
|
779 s2n(0,p); /* cert len */ |
|
780 s2n(0,p); /* ciphers len */ |
|
781 } |
|
782 else |
|
783 { |
|
784 /* EAY EAY */ |
|
785 /* put certificate type */ |
|
786 *(p++)=SSL2_CT_X509_CERTIFICATE; |
|
787 s2n(s->version,p); /* version */ |
|
788 n=i2d_X509(s->cert->pkeys[SSL_PKEY_RSA_ENC].x509,NULL); |
|
789 s2n(n,p); /* certificate length */ |
|
790 i2d_X509(s->cert->pkeys[SSL_PKEY_RSA_ENC].x509,&d); |
|
791 n=0; |
|
792 |
|
793 /* lets send out the ciphers we like in the |
|
794 * prefered order */ |
|
795 sk= s->session->ciphers; |
|
796 n=ssl_cipher_list_to_bytes(s,s->session->ciphers,d,0); |
|
797 d+=n; |
|
798 s2n(n,p); /* add cipher length */ |
|
799 } |
|
800 |
|
801 /* make and send conn_id */ |
|
802 s2n(SSL2_CONNECTION_ID_LENGTH,p); /* add conn_id length */ |
|
803 s->s2->conn_id_length=SSL2_CONNECTION_ID_LENGTH; |
|
804 if (RAND_pseudo_bytes(s->s2->conn_id,(int)s->s2->conn_id_length) <= 0) |
|
805 return -1; |
|
806 memcpy(d,s->s2->conn_id,SSL2_CONNECTION_ID_LENGTH); |
|
807 d+=SSL2_CONNECTION_ID_LENGTH; |
|
808 |
|
809 s->state=SSL2_ST_SEND_SERVER_HELLO_B; |
|
810 s->init_num=d-(unsigned char *)s->init_buf->data; |
|
811 s->init_off=0; |
|
812 } |
|
813 /* SSL2_ST_SEND_SERVER_HELLO_B */ |
|
814 /* If we are using TCP/IP, the performance is bad if we do 2 |
|
815 * writes without a read between them. This occurs when |
|
816 * Session-id reuse is used, so I will put in a buffering module |
|
817 */ |
|
818 if (s->hit) |
|
819 { |
|
820 if (!ssl_init_wbio_buffer(s,1)) return(-1); |
|
821 } |
|
822 |
|
823 return(ssl2_do_write(s)); |
|
824 } |
|
825 |
|
826 static int get_client_finished(SSL *s) |
|
827 { |
|
828 unsigned char *p; |
|
829 int i, n; |
|
830 unsigned long len; |
|
831 |
|
832 p=(unsigned char *)s->init_buf->data; |
|
833 if (s->state == SSL2_ST_GET_CLIENT_FINISHED_A) |
|
834 { |
|
835 i=ssl2_read(s,(char *)&(p[s->init_num]),1-s->init_num); |
|
836 if (i < 1-s->init_num) |
|
837 return(ssl2_part_read(s,SSL_F_GET_CLIENT_FINISHED,i)); |
|
838 s->init_num += i; |
|
839 |
|
840 if (*p != SSL2_MT_CLIENT_FINISHED) |
|
841 { |
|
842 if (*p != SSL2_MT_ERROR) |
|
843 { |
|
844 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
845 SSLerr(SSL_F_GET_CLIENT_FINISHED,SSL_R_READ_WRONG_PACKET_TYPE); |
|
846 } |
|
847 else |
|
848 { |
|
849 SSLerr(SSL_F_GET_CLIENT_FINISHED,SSL_R_PEER_ERROR); |
|
850 /* try to read the error message */ |
|
851 i=ssl2_read(s,(char *)&(p[s->init_num]),3-s->init_num); |
|
852 return ssl2_part_read(s,SSL_F_GET_SERVER_VERIFY,i); |
|
853 } |
|
854 return(-1); |
|
855 } |
|
856 s->state=SSL2_ST_GET_CLIENT_FINISHED_B; |
|
857 } |
|
858 |
|
859 /* SSL2_ST_GET_CLIENT_FINISHED_B */ |
|
860 if (s->s2->conn_id_length > sizeof s->s2->conn_id) |
|
861 { |
|
862 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
863 SSLerr(SSL_F_GET_CLIENT_FINISHED, ERR_R_INTERNAL_ERROR); |
|
864 return -1; |
|
865 } |
|
866 len = 1 + (unsigned long)s->s2->conn_id_length; |
|
867 n = (int)len - s->init_num; |
|
868 i = ssl2_read(s,(char *)&(p[s->init_num]),n); |
|
869 if (i < n) |
|
870 { |
|
871 return(ssl2_part_read(s,SSL_F_GET_CLIENT_FINISHED,i)); |
|
872 } |
|
873 if (s->msg_callback) |
|
874 s->msg_callback(0, s->version, 0, p, len, s, s->msg_callback_arg); /* CLIENT-FINISHED */ |
|
875 p += 1; |
|
876 if (memcmp(p,s->s2->conn_id,s->s2->conn_id_length) != 0) |
|
877 { |
|
878 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
879 SSLerr(SSL_F_GET_CLIENT_FINISHED,SSL_R_CONNECTION_ID_IS_DIFFERENT); |
|
880 return(-1); |
|
881 } |
|
882 return(1); |
|
883 } |
|
884 |
|
885 static int server_verify(SSL *s) |
|
886 { |
|
887 unsigned char *p; |
|
888 |
|
889 if (s->state == SSL2_ST_SEND_SERVER_VERIFY_A) |
|
890 { |
|
891 p=(unsigned char *)s->init_buf->data; |
|
892 *(p++)=SSL2_MT_SERVER_VERIFY; |
|
893 if (s->s2->challenge_length > sizeof s->s2->challenge) |
|
894 { |
|
895 SSLerr(SSL_F_SERVER_VERIFY, ERR_R_INTERNAL_ERROR); |
|
896 return -1; |
|
897 } |
|
898 memcpy(p,s->s2->challenge,(unsigned int)s->s2->challenge_length); |
|
899 /* p+=s->s2->challenge_length; */ |
|
900 |
|
901 s->state=SSL2_ST_SEND_SERVER_VERIFY_B; |
|
902 s->init_num=s->s2->challenge_length+1; |
|
903 s->init_off=0; |
|
904 } |
|
905 return(ssl2_do_write(s)); |
|
906 } |
|
907 |
|
908 static int server_finish(SSL *s) |
|
909 { |
|
910 unsigned char *p; |
|
911 |
|
912 if (s->state == SSL2_ST_SEND_SERVER_FINISHED_A) |
|
913 { |
|
914 p=(unsigned char *)s->init_buf->data; |
|
915 *(p++)=SSL2_MT_SERVER_FINISHED; |
|
916 |
|
917 if (s->session->session_id_length > sizeof s->session->session_id) |
|
918 { |
|
919 SSLerr(SSL_F_SERVER_FINISH, ERR_R_INTERNAL_ERROR); |
|
920 return -1; |
|
921 } |
|
922 memcpy(p,s->session->session_id, (unsigned int)s->session->session_id_length); |
|
923 /* p+=s->session->session_id_length; */ |
|
924 |
|
925 s->state=SSL2_ST_SEND_SERVER_FINISHED_B; |
|
926 s->init_num=s->session->session_id_length+1; |
|
927 s->init_off=0; |
|
928 } |
|
929 |
|
930 /* SSL2_ST_SEND_SERVER_FINISHED_B */ |
|
931 return(ssl2_do_write(s)); |
|
932 } |
|
933 |
|
934 /* send the request and check the response */ |
|
935 static int request_certificate(SSL *s) |
|
936 { |
|
937 const unsigned char *cp; |
|
938 unsigned char *p,*p2,*buf2; |
|
939 unsigned char *ccd; |
|
940 int i,j,ctype,ret= -1; |
|
941 unsigned long len; |
|
942 X509 *x509=NULL; |
|
943 STACK_OF(X509) *sk=NULL; |
|
944 |
|
945 ccd=s->s2->tmp.ccl; |
|
946 if (s->state == SSL2_ST_SEND_REQUEST_CERTIFICATE_A) |
|
947 { |
|
948 p=(unsigned char *)s->init_buf->data; |
|
949 *(p++)=SSL2_MT_REQUEST_CERTIFICATE; |
|
950 *(p++)=SSL2_AT_MD5_WITH_RSA_ENCRYPTION; |
|
951 if (RAND_pseudo_bytes(ccd,SSL2_MIN_CERT_CHALLENGE_LENGTH) <= 0) |
|
952 return -1; |
|
953 memcpy(p,ccd,SSL2_MIN_CERT_CHALLENGE_LENGTH); |
|
954 |
|
955 s->state=SSL2_ST_SEND_REQUEST_CERTIFICATE_B; |
|
956 s->init_num=SSL2_MIN_CERT_CHALLENGE_LENGTH+2; |
|
957 s->init_off=0; |
|
958 } |
|
959 |
|
960 if (s->state == SSL2_ST_SEND_REQUEST_CERTIFICATE_B) |
|
961 { |
|
962 i=ssl2_do_write(s); |
|
963 if (i <= 0) |
|
964 { |
|
965 ret=i; |
|
966 goto end; |
|
967 } |
|
968 |
|
969 s->init_num=0; |
|
970 s->state=SSL2_ST_SEND_REQUEST_CERTIFICATE_C; |
|
971 } |
|
972 |
|
973 if (s->state == SSL2_ST_SEND_REQUEST_CERTIFICATE_C) |
|
974 { |
|
975 p=(unsigned char *)s->init_buf->data; |
|
976 i=ssl2_read(s,(char *)&(p[s->init_num]),6-s->init_num); /* try to read 6 octets ... */ |
|
977 if (i < 3-s->init_num) /* ... but don't call ssl2_part_read now if we got at least 3 |
|
978 * (probably NO-CERTIFICATE-ERROR) */ |
|
979 { |
|
980 ret=ssl2_part_read(s,SSL_F_REQUEST_CERTIFICATE,i); |
|
981 goto end; |
|
982 } |
|
983 s->init_num += i; |
|
984 |
|
985 if ((s->init_num >= 3) && (p[0] == SSL2_MT_ERROR)) |
|
986 { |
|
987 n2s(p,i); |
|
988 if (i != SSL2_PE_NO_CERTIFICATE) |
|
989 { |
|
990 /* not the error message we expected -- let ssl2_part_read handle it */ |
|
991 s->init_num -= 3; |
|
992 ret = ssl2_part_read(s,SSL_F_REQUEST_CERTIFICATE, 3); |
|
993 goto end; |
|
994 } |
|
995 |
|
996 if (s->msg_callback) |
|
997 s->msg_callback(0, s->version, 0, p, 3, s, s->msg_callback_arg); /* ERROR */ |
|
998 |
|
999 /* this is the one place where we can recover from an SSL 2.0 error */ |
|
1000 |
|
1001 if (s->verify_mode & SSL_VERIFY_FAIL_IF_NO_PEER_CERT) |
|
1002 { |
|
1003 ssl2_return_error(s,SSL2_PE_BAD_CERTIFICATE); |
|
1004 SSLerr(SSL_F_REQUEST_CERTIFICATE,SSL_R_PEER_DID_NOT_RETURN_A_CERTIFICATE); |
|
1005 goto end; |
|
1006 } |
|
1007 ret=1; |
|
1008 goto end; |
|
1009 } |
|
1010 if ((*(p++) != SSL2_MT_CLIENT_CERTIFICATE) || (s->init_num < 6)) |
|
1011 { |
|
1012 ssl2_return_error(s,SSL2_PE_UNDEFINED_ERROR); |
|
1013 SSLerr(SSL_F_REQUEST_CERTIFICATE,SSL_R_SHORT_READ); |
|
1014 goto end; |
|
1015 } |
|
1016 if (s->init_num != 6) |
|
1017 { |
|
1018 SSLerr(SSL_F_REQUEST_CERTIFICATE, ERR_R_INTERNAL_ERROR); |
|
1019 goto end; |
|
1020 } |
|
1021 |
|
1022 /* ok we have a response */ |
|
1023 /* certificate type, there is only one right now. */ |
|
1024 ctype= *(p++); |
|
1025 if (ctype != SSL2_AT_MD5_WITH_RSA_ENCRYPTION) |
|
1026 { |
|
1027 ssl2_return_error(s,SSL2_PE_UNSUPPORTED_CERTIFICATE_TYPE); |
|
1028 SSLerr(SSL_F_REQUEST_CERTIFICATE,SSL_R_BAD_RESPONSE_ARGUMENT); |
|
1029 goto end; |
|
1030 } |
|
1031 n2s(p,i); s->s2->tmp.clen=i; |
|
1032 n2s(p,i); s->s2->tmp.rlen=i; |
|
1033 s->state=SSL2_ST_SEND_REQUEST_CERTIFICATE_D; |
|
1034 } |
|
1035 |
|
1036 /* SSL2_ST_SEND_REQUEST_CERTIFICATE_D */ |
|
1037 p=(unsigned char *)s->init_buf->data; |
|
1038 len = 6 + (unsigned long)s->s2->tmp.clen + (unsigned long)s->s2->tmp.rlen; |
|
1039 if (len > SSL2_MAX_RECORD_LENGTH_3_BYTE_HEADER) |
|
1040 { |
|
1041 SSLerr(SSL_F_REQUEST_CERTIFICATE,SSL_R_MESSAGE_TOO_LONG); |
|
1042 goto end; |
|
1043 } |
|
1044 j = (int)len - s->init_num; |
|
1045 i = ssl2_read(s,(char *)&(p[s->init_num]),j); |
|
1046 if (i < j) |
|
1047 { |
|
1048 ret=ssl2_part_read(s,SSL_F_REQUEST_CERTIFICATE,i); |
|
1049 goto end; |
|
1050 } |
|
1051 if (s->msg_callback) |
|
1052 s->msg_callback(0, s->version, 0, p, len, s, s->msg_callback_arg); /* CLIENT-CERTIFICATE */ |
|
1053 p += 6; |
|
1054 |
|
1055 cp = p; |
|
1056 x509=(X509 *)d2i_X509(NULL,&cp,(long)s->s2->tmp.clen); |
|
1057 if (x509 == NULL) |
|
1058 { |
|
1059 SSLerr(SSL_F_REQUEST_CERTIFICATE,ERR_R_X509_LIB); |
|
1060 goto msg_end; |
|
1061 } |
|
1062 |
|
1063 if (((sk=sk_X509_new_null()) == NULL) || (!sk_X509_push(sk,x509))) |
|
1064 { |
|
1065 SSLerr(SSL_F_REQUEST_CERTIFICATE,ERR_R_MALLOC_FAILURE); |
|
1066 goto msg_end; |
|
1067 } |
|
1068 |
|
1069 i=ssl_verify_cert_chain(s,sk); |
|
1070 |
|
1071 if (i) /* we like the packet, now check the chksum */ |
|
1072 { |
|
1073 EVP_MD_CTX ctx; |
|
1074 EVP_PKEY *pkey=NULL; |
|
1075 |
|
1076 EVP_MD_CTX_init(&ctx); |
|
1077 EVP_VerifyInit_ex(&ctx,s->ctx->rsa_md5, NULL); |
|
1078 EVP_VerifyUpdate(&ctx,s->s2->key_material, |
|
1079 s->s2->key_material_length); |
|
1080 EVP_VerifyUpdate(&ctx,ccd,SSL2_MIN_CERT_CHALLENGE_LENGTH); |
|
1081 |
|
1082 i=i2d_X509(s->cert->pkeys[SSL_PKEY_RSA_ENC].x509,NULL); |
|
1083 buf2=OPENSSL_malloc((unsigned int)i); |
|
1084 if (buf2 == NULL) |
|
1085 { |
|
1086 SSLerr(SSL_F_REQUEST_CERTIFICATE,ERR_R_MALLOC_FAILURE); |
|
1087 goto msg_end; |
|
1088 } |
|
1089 p2=buf2; |
|
1090 i=i2d_X509(s->cert->pkeys[SSL_PKEY_RSA_ENC].x509,&p2); |
|
1091 EVP_VerifyUpdate(&ctx,buf2,(unsigned int)i); |
|
1092 OPENSSL_free(buf2); |
|
1093 |
|
1094 pkey=X509_get_pubkey(x509); |
|
1095 if (pkey == NULL) goto end; |
|
1096 i=EVP_VerifyFinal(&ctx,cp,s->s2->tmp.rlen,pkey); |
|
1097 EVP_PKEY_free(pkey); |
|
1098 EVP_MD_CTX_cleanup(&ctx); |
|
1099 |
|
1100 if (i) |
|
1101 { |
|
1102 if (s->session->peer != NULL) |
|
1103 X509_free(s->session->peer); |
|
1104 s->session->peer=x509; |
|
1105 CRYPTO_add(&x509->references,1,CRYPTO_LOCK_X509); |
|
1106 s->session->verify_result = s->verify_result; |
|
1107 ret=1; |
|
1108 goto end; |
|
1109 } |
|
1110 else |
|
1111 { |
|
1112 SSLerr(SSL_F_REQUEST_CERTIFICATE,SSL_R_BAD_CHECKSUM); |
|
1113 goto msg_end; |
|
1114 } |
|
1115 } |
|
1116 else |
|
1117 { |
|
1118 msg_end: |
|
1119 ssl2_return_error(s,SSL2_PE_BAD_CERTIFICATE); |
|
1120 } |
|
1121 end: |
|
1122 sk_X509_free(sk); |
|
1123 X509_free(x509); |
|
1124 return(ret); |
|
1125 } |
|
1126 |
|
1127 static int ssl_rsa_private_decrypt(CERT *c, int len, unsigned char *from, |
|
1128 unsigned char *to, int padding) |
|
1129 { |
|
1130 RSA *rsa; |
|
1131 int i; |
|
1132 |
|
1133 if ((c == NULL) || (c->pkeys[SSL_PKEY_RSA_ENC].privatekey == NULL)) |
|
1134 { |
|
1135 SSLerr(SSL_F_SSL_RSA_PRIVATE_DECRYPT,SSL_R_NO_PRIVATEKEY); |
|
1136 return(-1); |
|
1137 } |
|
1138 if (c->pkeys[SSL_PKEY_RSA_ENC].privatekey->type != EVP_PKEY_RSA) |
|
1139 { |
|
1140 SSLerr(SSL_F_SSL_RSA_PRIVATE_DECRYPT,SSL_R_PUBLIC_KEY_IS_NOT_RSA); |
|
1141 return(-1); |
|
1142 } |
|
1143 rsa=c->pkeys[SSL_PKEY_RSA_ENC].privatekey->pkey.rsa; |
|
1144 |
|
1145 /* we have the public key */ |
|
1146 i=RSA_private_decrypt(len,from,to,rsa,padding); |
|
1147 if (i < 0) |
|
1148 SSLerr(SSL_F_SSL_RSA_PRIVATE_DECRYPT,ERR_R_RSA_LIB); |
|
1149 return(i); |
|
1150 } |
|
1151 #else /* !OPENSSL_NO_SSL2 */ |
|
1152 |
|
1153 # if PEDANTIC |
|
1154 static void *dummy=&dummy; |
|
1155 # endif |
|
1156 |
|
1157 #endif |