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1 /* ssl/ssl_stat.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 #include <stdio.h> |
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60 #include "ssl_locl.h" |
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61 |
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62 EXPORT_C const char *SSL_state_string_long(const SSL *s) |
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63 { |
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64 const char *str; |
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65 |
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66 switch (s->state) |
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67 { |
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68 case SSL_ST_BEFORE: str="before SSL initialization"; break; |
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69 case SSL_ST_ACCEPT: str="before accept initialization"; break; |
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70 case SSL_ST_CONNECT: str="before connect initialization"; break; |
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71 case SSL_ST_OK: str="SSL negotiation finished successfully"; break; |
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72 case SSL_ST_RENEGOTIATE: str="SSL renegotiate ciphers"; break; |
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73 case SSL_ST_BEFORE|SSL_ST_CONNECT: str="before/connect initialization"; break; |
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74 case SSL_ST_OK|SSL_ST_CONNECT: str="ok/connect SSL initialization"; break; |
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75 case SSL_ST_BEFORE|SSL_ST_ACCEPT: str="before/accept initialization"; break; |
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76 case SSL_ST_OK|SSL_ST_ACCEPT: str="ok/accept SSL initialization"; break; |
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77 #ifndef OPENSSL_NO_SSL2 |
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78 case SSL2_ST_CLIENT_START_ENCRYPTION: str="SSLv2 client start encryption"; break; |
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79 case SSL2_ST_SERVER_START_ENCRYPTION: str="SSLv2 server start encryption"; break; |
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80 case SSL2_ST_SEND_CLIENT_HELLO_A: str="SSLv2 write client hello A"; break; |
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81 case SSL2_ST_SEND_CLIENT_HELLO_B: str="SSLv2 write client hello B"; break; |
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82 case SSL2_ST_GET_SERVER_HELLO_A: str="SSLv2 read server hello A"; break; |
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83 case SSL2_ST_GET_SERVER_HELLO_B: str="SSLv2 read server hello B"; break; |
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84 case SSL2_ST_SEND_CLIENT_MASTER_KEY_A: str="SSLv2 write client master key A"; break; |
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85 case SSL2_ST_SEND_CLIENT_MASTER_KEY_B: str="SSLv2 write client master key B"; break; |
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86 case SSL2_ST_SEND_CLIENT_FINISHED_A: str="SSLv2 write client finished A"; break; |
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87 case SSL2_ST_SEND_CLIENT_FINISHED_B: str="SSLv2 write client finished B"; break; |
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88 case SSL2_ST_SEND_CLIENT_CERTIFICATE_A: str="SSLv2 write client certificate A"; break; |
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89 case SSL2_ST_SEND_CLIENT_CERTIFICATE_B: str="SSLv2 write client certificate B"; break; |
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90 case SSL2_ST_SEND_CLIENT_CERTIFICATE_C: str="SSLv2 write client certificate C"; break; |
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91 case SSL2_ST_SEND_CLIENT_CERTIFICATE_D: str="SSLv2 write client certificate D"; break; |
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92 case SSL2_ST_GET_SERVER_VERIFY_A: str="SSLv2 read server verify A"; break; |
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93 case SSL2_ST_GET_SERVER_VERIFY_B: str="SSLv2 read server verify B"; break; |
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94 case SSL2_ST_GET_SERVER_FINISHED_A: str="SSLv2 read server finished A"; break; |
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95 case SSL2_ST_GET_SERVER_FINISHED_B: str="SSLv2 read server finished B"; break; |
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96 case SSL2_ST_GET_CLIENT_HELLO_A: str="SSLv2 read client hello A"; break; |
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97 case SSL2_ST_GET_CLIENT_HELLO_B: str="SSLv2 read client hello B"; break; |
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98 case SSL2_ST_GET_CLIENT_HELLO_C: str="SSLv2 read client hello C"; break; |
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99 case SSL2_ST_SEND_SERVER_HELLO_A: str="SSLv2 write server hello A"; break; |
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100 case SSL2_ST_SEND_SERVER_HELLO_B: str="SSLv2 write server hello B"; break; |
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101 case SSL2_ST_GET_CLIENT_MASTER_KEY_A: str="SSLv2 read client master key A"; break; |
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102 case SSL2_ST_GET_CLIENT_MASTER_KEY_B: str="SSLv2 read client master key B"; break; |
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103 case SSL2_ST_SEND_SERVER_VERIFY_A: str="SSLv2 write server verify A"; break; |
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104 case SSL2_ST_SEND_SERVER_VERIFY_B: str="SSLv2 write server verify B"; break; |
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105 case SSL2_ST_SEND_SERVER_VERIFY_C: str="SSLv2 write server verify C"; break; |
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106 case SSL2_ST_GET_CLIENT_FINISHED_A: str="SSLv2 read client finished A"; break; |
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107 case SSL2_ST_GET_CLIENT_FINISHED_B: str="SSLv2 read client finished B"; break; |
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108 case SSL2_ST_SEND_SERVER_FINISHED_A: str="SSLv2 write server finished A"; break; |
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109 case SSL2_ST_SEND_SERVER_FINISHED_B: str="SSLv2 write server finished B"; break; |
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110 case SSL2_ST_SEND_REQUEST_CERTIFICATE_A: str="SSLv2 write request certificate A"; break; |
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111 case SSL2_ST_SEND_REQUEST_CERTIFICATE_B: str="SSLv2 write request certificate B"; break; |
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112 case SSL2_ST_SEND_REQUEST_CERTIFICATE_C: str="SSLv2 write request certificate C"; break; |
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113 case SSL2_ST_SEND_REQUEST_CERTIFICATE_D: str="SSLv2 write request certificate D"; break; |
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114 case SSL2_ST_X509_GET_SERVER_CERTIFICATE: str="SSLv2 X509 read server certificate"; break; |
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115 case SSL2_ST_X509_GET_CLIENT_CERTIFICATE: str="SSLv2 X509 read client certificate"; break; |
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116 #endif |
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117 |
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118 #ifndef OPENSSL_NO_SSL3 |
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119 /* SSLv3 additions */ |
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120 case SSL3_ST_CW_CLNT_HELLO_A: str="SSLv3 write client hello A"; break; |
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121 case SSL3_ST_CW_CLNT_HELLO_B: str="SSLv3 write client hello B"; break; |
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122 case SSL3_ST_CR_SRVR_HELLO_A: str="SSLv3 read server hello A"; break; |
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123 case SSL3_ST_CR_SRVR_HELLO_B: str="SSLv3 read server hello B"; break; |
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124 case SSL3_ST_CR_CERT_A: str="SSLv3 read server certificate A"; break; |
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125 case SSL3_ST_CR_CERT_B: str="SSLv3 read server certificate B"; break; |
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126 case SSL3_ST_CR_KEY_EXCH_A: str="SSLv3 read server key exchange A"; break; |
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127 case SSL3_ST_CR_KEY_EXCH_B: str="SSLv3 read server key exchange B"; break; |
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128 case SSL3_ST_CR_CERT_REQ_A: str="SSLv3 read server certificate request A"; break; |
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129 case SSL3_ST_CR_CERT_REQ_B: str="SSLv3 read server certificate request B"; break; |
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130 case SSL3_ST_CR_SRVR_DONE_A: str="SSLv3 read server done A"; break; |
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131 case SSL3_ST_CR_SRVR_DONE_B: str="SSLv3 read server done B"; break; |
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132 case SSL3_ST_CW_CERT_A: str="SSLv3 write client certificate A"; break; |
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133 case SSL3_ST_CW_CERT_B: str="SSLv3 write client certificate B"; break; |
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134 case SSL3_ST_CW_CERT_C: str="SSLv3 write client certificate C"; break; |
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135 case SSL3_ST_CW_CERT_D: str="SSLv3 write client certificate D"; break; |
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136 case SSL3_ST_CW_KEY_EXCH_A: str="SSLv3 write client key exchange A"; break; |
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137 case SSL3_ST_CW_KEY_EXCH_B: str="SSLv3 write client key exchange B"; break; |
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138 case SSL3_ST_CW_CERT_VRFY_A: str="SSLv3 write certificate verify A"; break; |
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139 case SSL3_ST_CW_CERT_VRFY_B: str="SSLv3 write certificate verify B"; break; |
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140 |
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141 case SSL3_ST_CW_CHANGE_A: |
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142 case SSL3_ST_SW_CHANGE_A: str="SSLv3 write change cipher spec A"; break; |
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143 case SSL3_ST_CW_CHANGE_B: |
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144 case SSL3_ST_SW_CHANGE_B: str="SSLv3 write change cipher spec B"; break; |
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145 case SSL3_ST_CW_FINISHED_A: |
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146 case SSL3_ST_SW_FINISHED_A: str="SSLv3 write finished A"; break; |
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147 case SSL3_ST_CW_FINISHED_B: |
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148 case SSL3_ST_SW_FINISHED_B: str="SSLv3 write finished B"; break; |
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149 case SSL3_ST_CR_CHANGE_A: |
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150 case SSL3_ST_SR_CHANGE_A: str="SSLv3 read change cipher spec A"; break; |
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151 case SSL3_ST_CR_CHANGE_B: |
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152 case SSL3_ST_SR_CHANGE_B: str="SSLv3 read change cipher spec B"; break; |
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153 case SSL3_ST_CR_FINISHED_A: |
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154 case SSL3_ST_SR_FINISHED_A: str="SSLv3 read finished A"; break; |
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155 case SSL3_ST_CR_FINISHED_B: |
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156 case SSL3_ST_SR_FINISHED_B: str="SSLv3 read finished B"; break; |
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157 |
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158 case SSL3_ST_CW_FLUSH: |
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159 case SSL3_ST_SW_FLUSH: str="SSLv3 flush data"; break; |
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160 |
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161 case SSL3_ST_SR_CLNT_HELLO_A: str="SSLv3 read client hello A"; break; |
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162 case SSL3_ST_SR_CLNT_HELLO_B: str="SSLv3 read client hello B"; break; |
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163 case SSL3_ST_SR_CLNT_HELLO_C: str="SSLv3 read client hello C"; break; |
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164 case SSL3_ST_SW_HELLO_REQ_A: str="SSLv3 write hello request A"; break; |
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165 case SSL3_ST_SW_HELLO_REQ_B: str="SSLv3 write hello request B"; break; |
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166 case SSL3_ST_SW_HELLO_REQ_C: str="SSLv3 write hello request C"; break; |
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167 case SSL3_ST_SW_SRVR_HELLO_A: str="SSLv3 write server hello A"; break; |
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168 case SSL3_ST_SW_SRVR_HELLO_B: str="SSLv3 write server hello B"; break; |
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169 case SSL3_ST_SW_CERT_A: str="SSLv3 write certificate A"; break; |
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170 case SSL3_ST_SW_CERT_B: str="SSLv3 write certificate B"; break; |
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171 case SSL3_ST_SW_KEY_EXCH_A: str="SSLv3 write key exchange A"; break; |
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172 case SSL3_ST_SW_KEY_EXCH_B: str="SSLv3 write key exchange B"; break; |
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173 case SSL3_ST_SW_CERT_REQ_A: str="SSLv3 write certificate request A"; break; |
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174 case SSL3_ST_SW_CERT_REQ_B: str="SSLv3 write certificate request B"; break; |
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175 case SSL3_ST_SW_SRVR_DONE_A: str="SSLv3 write server done A"; break; |
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176 case SSL3_ST_SW_SRVR_DONE_B: str="SSLv3 write server done B"; break; |
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177 case SSL3_ST_SR_CERT_A: str="SSLv3 read client certificate A"; break; |
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178 case SSL3_ST_SR_CERT_B: str="SSLv3 read client certificate B"; break; |
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179 case SSL3_ST_SR_KEY_EXCH_A: str="SSLv3 read client key exchange A"; break; |
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180 case SSL3_ST_SR_KEY_EXCH_B: str="SSLv3 read client key exchange B"; break; |
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181 case SSL3_ST_SR_CERT_VRFY_A: str="SSLv3 read certificate verify A"; break; |
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182 case SSL3_ST_SR_CERT_VRFY_B: str="SSLv3 read certificate verify B"; break; |
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183 #endif |
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184 |
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185 #if !defined(OPENSSL_NO_SSL2) && !defined(OPENSSL_NO_SSL3) |
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186 /* SSLv2/v3 compatibility states */ |
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187 /* client */ |
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188 case SSL23_ST_CW_CLNT_HELLO_A: str="SSLv2/v3 write client hello A"; break; |
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189 case SSL23_ST_CW_CLNT_HELLO_B: str="SSLv2/v3 write client hello B"; break; |
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190 case SSL23_ST_CR_SRVR_HELLO_A: str="SSLv2/v3 read server hello A"; break; |
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191 case SSL23_ST_CR_SRVR_HELLO_B: str="SSLv2/v3 read server hello B"; break; |
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192 /* server */ |
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193 case SSL23_ST_SR_CLNT_HELLO_A: str="SSLv2/v3 read client hello A"; break; |
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194 case SSL23_ST_SR_CLNT_HELLO_B: str="SSLv2/v3 read client hello B"; break; |
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195 #endif |
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196 |
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197 default: str="unknown state"; break; |
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198 } |
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199 return(str); |
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200 } |
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201 |
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202 EXPORT_C const char *SSL_rstate_string_long(const SSL *s) |
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203 { |
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204 const char *str; |
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205 |
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206 switch (s->rstate) |
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207 { |
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208 case SSL_ST_READ_HEADER: str="read header"; break; |
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209 case SSL_ST_READ_BODY: str="read body"; break; |
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210 case SSL_ST_READ_DONE: str="read done"; break; |
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211 default: str="unknown"; break; |
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212 } |
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213 return(str); |
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214 } |
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215 |
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216 EXPORT_C const char *SSL_state_string(const SSL *s) |
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217 { |
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218 const char *str; |
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219 |
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220 switch (s->state) |
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221 { |
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222 case SSL_ST_BEFORE: str="PINIT "; break; |
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223 case SSL_ST_ACCEPT: str="AINIT "; break; |
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224 case SSL_ST_CONNECT: str="CINIT "; break; |
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225 case SSL_ST_OK: str="SSLOK "; break; |
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226 #ifndef OPENSSL_NO_SSL2 |
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227 case SSL2_ST_CLIENT_START_ENCRYPTION: str="2CSENC"; break; |
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228 case SSL2_ST_SERVER_START_ENCRYPTION: str="2SSENC"; break; |
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229 case SSL2_ST_SEND_CLIENT_HELLO_A: str="2SCH_A"; break; |
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230 case SSL2_ST_SEND_CLIENT_HELLO_B: str="2SCH_B"; break; |
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231 case SSL2_ST_GET_SERVER_HELLO_A: str="2GSH_A"; break; |
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232 case SSL2_ST_GET_SERVER_HELLO_B: str="2GSH_B"; break; |
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233 case SSL2_ST_SEND_CLIENT_MASTER_KEY_A: str="2SCMKA"; break; |
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234 case SSL2_ST_SEND_CLIENT_MASTER_KEY_B: str="2SCMKB"; break; |
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235 case SSL2_ST_SEND_CLIENT_FINISHED_A: str="2SCF_A"; break; |
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236 case SSL2_ST_SEND_CLIENT_FINISHED_B: str="2SCF_B"; break; |
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237 case SSL2_ST_SEND_CLIENT_CERTIFICATE_A: str="2SCC_A"; break; |
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238 case SSL2_ST_SEND_CLIENT_CERTIFICATE_B: str="2SCC_B"; break; |
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239 case SSL2_ST_SEND_CLIENT_CERTIFICATE_C: str="2SCC_C"; break; |
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240 case SSL2_ST_SEND_CLIENT_CERTIFICATE_D: str="2SCC_D"; break; |
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241 case SSL2_ST_GET_SERVER_VERIFY_A: str="2GSV_A"; break; |
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242 case SSL2_ST_GET_SERVER_VERIFY_B: str="2GSV_B"; break; |
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243 case SSL2_ST_GET_SERVER_FINISHED_A: str="2GSF_A"; break; |
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244 case SSL2_ST_GET_SERVER_FINISHED_B: str="2GSF_B"; break; |
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245 case SSL2_ST_GET_CLIENT_HELLO_A: str="2GCH_A"; break; |
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246 case SSL2_ST_GET_CLIENT_HELLO_B: str="2GCH_B"; break; |
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247 case SSL2_ST_GET_CLIENT_HELLO_C: str="2GCH_C"; break; |
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248 case SSL2_ST_SEND_SERVER_HELLO_A: str="2SSH_A"; break; |
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249 case SSL2_ST_SEND_SERVER_HELLO_B: str="2SSH_B"; break; |
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250 case SSL2_ST_GET_CLIENT_MASTER_KEY_A: str="2GCMKA"; break; |
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251 case SSL2_ST_GET_CLIENT_MASTER_KEY_B: str="2GCMKA"; break; |
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252 case SSL2_ST_SEND_SERVER_VERIFY_A: str="2SSV_A"; break; |
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253 case SSL2_ST_SEND_SERVER_VERIFY_B: str="2SSV_B"; break; |
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254 case SSL2_ST_SEND_SERVER_VERIFY_C: str="2SSV_C"; break; |
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255 case SSL2_ST_GET_CLIENT_FINISHED_A: str="2GCF_A"; break; |
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256 case SSL2_ST_GET_CLIENT_FINISHED_B: str="2GCF_B"; break; |
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257 case SSL2_ST_SEND_SERVER_FINISHED_A: str="2SSF_A"; break; |
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258 case SSL2_ST_SEND_SERVER_FINISHED_B: str="2SSF_B"; break; |
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259 case SSL2_ST_SEND_REQUEST_CERTIFICATE_A: str="2SRC_A"; break; |
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260 case SSL2_ST_SEND_REQUEST_CERTIFICATE_B: str="2SRC_B"; break; |
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261 case SSL2_ST_SEND_REQUEST_CERTIFICATE_C: str="2SRC_C"; break; |
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262 case SSL2_ST_SEND_REQUEST_CERTIFICATE_D: str="2SRC_D"; break; |
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263 case SSL2_ST_X509_GET_SERVER_CERTIFICATE: str="2X9GSC"; break; |
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264 case SSL2_ST_X509_GET_CLIENT_CERTIFICATE: str="2X9GCC"; break; |
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265 #endif |
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266 |
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267 #ifndef OPENSSL_NO_SSL3 |
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268 /* SSLv3 additions */ |
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269 case SSL3_ST_SW_FLUSH: |
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270 case SSL3_ST_CW_FLUSH: str="3FLUSH"; break; |
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271 case SSL3_ST_CW_CLNT_HELLO_A: str="3WCH_A"; break; |
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272 case SSL3_ST_CW_CLNT_HELLO_B: str="3WCH_B"; break; |
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273 case SSL3_ST_CR_SRVR_HELLO_A: str="3RSH_A"; break; |
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274 case SSL3_ST_CR_SRVR_HELLO_B: str="3RSH_B"; break; |
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275 case SSL3_ST_CR_CERT_A: str="3RSC_A"; break; |
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276 case SSL3_ST_CR_CERT_B: str="3RSC_B"; break; |
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277 case SSL3_ST_CR_KEY_EXCH_A: str="3RSKEA"; break; |
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278 case SSL3_ST_CR_KEY_EXCH_B: str="3RSKEB"; break; |
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279 case SSL3_ST_CR_CERT_REQ_A: str="3RCR_A"; break; |
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280 case SSL3_ST_CR_CERT_REQ_B: str="3RCR_B"; break; |
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281 case SSL3_ST_CR_SRVR_DONE_A: str="3RSD_A"; break; |
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282 case SSL3_ST_CR_SRVR_DONE_B: str="3RSD_B"; break; |
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283 case SSL3_ST_CW_CERT_A: str="3WCC_A"; break; |
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284 case SSL3_ST_CW_CERT_B: str="3WCC_B"; break; |
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285 case SSL3_ST_CW_CERT_C: str="3WCC_C"; break; |
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286 case SSL3_ST_CW_CERT_D: str="3WCC_D"; break; |
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287 case SSL3_ST_CW_KEY_EXCH_A: str="3WCKEA"; break; |
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288 case SSL3_ST_CW_KEY_EXCH_B: str="3WCKEB"; break; |
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289 case SSL3_ST_CW_CERT_VRFY_A: str="3WCV_A"; break; |
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290 case SSL3_ST_CW_CERT_VRFY_B: str="3WCV_B"; break; |
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291 |
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292 case SSL3_ST_SW_CHANGE_A: |
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293 case SSL3_ST_CW_CHANGE_A: str="3WCCSA"; break; |
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294 case SSL3_ST_SW_CHANGE_B: |
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295 case SSL3_ST_CW_CHANGE_B: str="3WCCSB"; break; |
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296 case SSL3_ST_SW_FINISHED_A: |
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297 case SSL3_ST_CW_FINISHED_A: str="3WFINA"; break; |
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298 case SSL3_ST_SW_FINISHED_B: |
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299 case SSL3_ST_CW_FINISHED_B: str="3WFINB"; break; |
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300 case SSL3_ST_SR_CHANGE_A: |
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301 case SSL3_ST_CR_CHANGE_A: str="3RCCSA"; break; |
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302 case SSL3_ST_SR_CHANGE_B: |
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303 case SSL3_ST_CR_CHANGE_B: str="3RCCSB"; break; |
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304 case SSL3_ST_SR_FINISHED_A: |
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305 case SSL3_ST_CR_FINISHED_A: str="3RFINA"; break; |
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306 case SSL3_ST_SR_FINISHED_B: |
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307 case SSL3_ST_CR_FINISHED_B: str="3RFINB"; break; |
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308 |
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309 case SSL3_ST_SW_HELLO_REQ_A: str="3WHR_A"; break; |
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310 case SSL3_ST_SW_HELLO_REQ_B: str="3WHR_B"; break; |
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311 case SSL3_ST_SW_HELLO_REQ_C: str="3WHR_C"; break; |
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312 case SSL3_ST_SR_CLNT_HELLO_A: str="3RCH_A"; break; |
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313 case SSL3_ST_SR_CLNT_HELLO_B: str="3RCH_B"; break; |
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314 case SSL3_ST_SR_CLNT_HELLO_C: str="3RCH_C"; break; |
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315 case SSL3_ST_SW_SRVR_HELLO_A: str="3WSH_A"; break; |
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316 case SSL3_ST_SW_SRVR_HELLO_B: str="3WSH_B"; break; |
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317 case SSL3_ST_SW_CERT_A: str="3WSC_A"; break; |
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318 case SSL3_ST_SW_CERT_B: str="3WSC_B"; break; |
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319 case SSL3_ST_SW_KEY_EXCH_A: str="3WSKEA"; break; |
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320 case SSL3_ST_SW_KEY_EXCH_B: str="3WSKEB"; break; |
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321 case SSL3_ST_SW_CERT_REQ_A: str="3WCR_A"; break; |
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322 case SSL3_ST_SW_CERT_REQ_B: str="3WCR_B"; break; |
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323 case SSL3_ST_SW_SRVR_DONE_A: str="3WSD_A"; break; |
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324 case SSL3_ST_SW_SRVR_DONE_B: str="3WSD_B"; break; |
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325 case SSL3_ST_SR_CERT_A: str="3RCC_A"; break; |
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326 case SSL3_ST_SR_CERT_B: str="3RCC_B"; break; |
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327 case SSL3_ST_SR_KEY_EXCH_A: str="3RCKEA"; break; |
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328 case SSL3_ST_SR_KEY_EXCH_B: str="3RCKEB"; break; |
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329 case SSL3_ST_SR_CERT_VRFY_A: str="3RCV_A"; break; |
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330 case SSL3_ST_SR_CERT_VRFY_B: str="3RCV_B"; break; |
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331 #endif |
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332 |
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333 #if !defined(OPENSSL_NO_SSL2) && !defined(OPENSSL_NO_SSL3) |
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334 /* SSLv2/v3 compatibility states */ |
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335 /* client */ |
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336 case SSL23_ST_CW_CLNT_HELLO_A: str="23WCHA"; break; |
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337 case SSL23_ST_CW_CLNT_HELLO_B: str="23WCHB"; break; |
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338 case SSL23_ST_CR_SRVR_HELLO_A: str="23RSHA"; break; |
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339 case SSL23_ST_CR_SRVR_HELLO_B: str="23RSHA"; break; |
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340 /* server */ |
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341 case SSL23_ST_SR_CLNT_HELLO_A: str="23RCHA"; break; |
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342 case SSL23_ST_SR_CLNT_HELLO_B: str="23RCHB"; break; |
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343 #endif |
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344 |
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345 default: str="UNKWN "; break; |
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346 } |
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347 return(str); |
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348 } |
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349 |
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350 EXPORT_C const char *SSL_alert_type_string_long(int value) |
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351 { |
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352 value>>=8; |
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353 if (value == SSL3_AL_WARNING) |
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354 return("warning"); |
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355 else if (value == SSL3_AL_FATAL) |
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356 return("fatal"); |
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357 else |
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358 return("unknown"); |
|
359 } |
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360 |
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361 EXPORT_C const char *SSL_alert_type_string(int value) |
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362 { |
|
363 value>>=8; |
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364 if (value == SSL3_AL_WARNING) |
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365 return("W"); |
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366 else if (value == SSL3_AL_FATAL) |
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367 return("F"); |
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368 else |
|
369 return("U"); |
|
370 } |
|
371 |
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372 EXPORT_C const char *SSL_alert_desc_string(int value) |
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373 { |
|
374 const char *str; |
|
375 |
|
376 switch (value & 0xff) |
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377 { |
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378 case SSL3_AD_CLOSE_NOTIFY: str="CN"; break; |
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379 case SSL3_AD_UNEXPECTED_MESSAGE: str="UM"; break; |
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380 case SSL3_AD_BAD_RECORD_MAC: str="BM"; break; |
|
381 case SSL3_AD_DECOMPRESSION_FAILURE: str="DF"; break; |
|
382 case SSL3_AD_HANDSHAKE_FAILURE: str="HF"; break; |
|
383 case SSL3_AD_NO_CERTIFICATE: str="NC"; break; |
|
384 case SSL3_AD_BAD_CERTIFICATE: str="BC"; break; |
|
385 case SSL3_AD_UNSUPPORTED_CERTIFICATE: str="UC"; break; |
|
386 case SSL3_AD_CERTIFICATE_REVOKED: str="CR"; break; |
|
387 case SSL3_AD_CERTIFICATE_EXPIRED: str="CE"; break; |
|
388 case SSL3_AD_CERTIFICATE_UNKNOWN: str="CU"; break; |
|
389 case SSL3_AD_ILLEGAL_PARAMETER: str="IP"; break; |
|
390 case TLS1_AD_DECRYPTION_FAILED: str="DC"; break; |
|
391 case TLS1_AD_RECORD_OVERFLOW: str="RO"; break; |
|
392 case TLS1_AD_UNKNOWN_CA: str="CA"; break; |
|
393 case TLS1_AD_ACCESS_DENIED: str="AD"; break; |
|
394 case TLS1_AD_DECODE_ERROR: str="DE"; break; |
|
395 case TLS1_AD_DECRYPT_ERROR: str="CY"; break; |
|
396 case TLS1_AD_EXPORT_RESTRICTION: str="ER"; break; |
|
397 case TLS1_AD_PROTOCOL_VERSION: str="PV"; break; |
|
398 case TLS1_AD_INSUFFICIENT_SECURITY: str="IS"; break; |
|
399 case TLS1_AD_INTERNAL_ERROR: str="IE"; break; |
|
400 case TLS1_AD_USER_CANCELLED: str="US"; break; |
|
401 case TLS1_AD_NO_RENEGOTIATION: str="NR"; break; |
|
402 default: str="UK"; break; |
|
403 } |
|
404 return(str); |
|
405 } |
|
406 |
|
407 EXPORT_C const char *SSL_alert_desc_string_long(int value) |
|
408 { |
|
409 const char *str; |
|
410 |
|
411 switch (value & 0xff) |
|
412 { |
|
413 case SSL3_AD_CLOSE_NOTIFY: |
|
414 str="close notify"; |
|
415 break; |
|
416 case SSL3_AD_UNEXPECTED_MESSAGE: |
|
417 str="unexpected_message"; |
|
418 break; |
|
419 case SSL3_AD_BAD_RECORD_MAC: |
|
420 str="bad record mac"; |
|
421 break; |
|
422 case SSL3_AD_DECOMPRESSION_FAILURE: |
|
423 str="decompression failure"; |
|
424 break; |
|
425 case SSL3_AD_HANDSHAKE_FAILURE: |
|
426 str="handshake failure"; |
|
427 break; |
|
428 case SSL3_AD_NO_CERTIFICATE: |
|
429 str="no certificate"; |
|
430 break; |
|
431 case SSL3_AD_BAD_CERTIFICATE: |
|
432 str="bad certificate"; |
|
433 break; |
|
434 case SSL3_AD_UNSUPPORTED_CERTIFICATE: |
|
435 str="unsupported certificate"; |
|
436 break; |
|
437 case SSL3_AD_CERTIFICATE_REVOKED: |
|
438 str="certificate revoked"; |
|
439 break; |
|
440 case SSL3_AD_CERTIFICATE_EXPIRED: |
|
441 str="certificate expired"; |
|
442 break; |
|
443 case SSL3_AD_CERTIFICATE_UNKNOWN: |
|
444 str="certificate unknown"; |
|
445 break; |
|
446 case SSL3_AD_ILLEGAL_PARAMETER: |
|
447 str="illegal parameter"; |
|
448 break; |
|
449 case TLS1_AD_DECRYPTION_FAILED: |
|
450 str="decryption failed"; |
|
451 break; |
|
452 case TLS1_AD_RECORD_OVERFLOW: |
|
453 str="record overflow"; |
|
454 break; |
|
455 case TLS1_AD_UNKNOWN_CA: |
|
456 str="unknown CA"; |
|
457 break; |
|
458 case TLS1_AD_ACCESS_DENIED: |
|
459 str="access denied"; |
|
460 break; |
|
461 case TLS1_AD_DECODE_ERROR: |
|
462 str="decode error"; |
|
463 break; |
|
464 case TLS1_AD_DECRYPT_ERROR: |
|
465 str="decrypt error"; |
|
466 break; |
|
467 case TLS1_AD_EXPORT_RESTRICTION: |
|
468 str="export restriction"; |
|
469 break; |
|
470 case TLS1_AD_PROTOCOL_VERSION: |
|
471 str="protocol version"; |
|
472 break; |
|
473 case TLS1_AD_INSUFFICIENT_SECURITY: |
|
474 str="insufficient security"; |
|
475 break; |
|
476 case TLS1_AD_INTERNAL_ERROR: |
|
477 str="internal error"; |
|
478 break; |
|
479 case TLS1_AD_USER_CANCELLED: |
|
480 str="user canceled"; |
|
481 break; |
|
482 case TLS1_AD_NO_RENEGOTIATION: |
|
483 str="no renegotiation"; |
|
484 break; |
|
485 default: str="unknown"; break; |
|
486 } |
|
487 return(str); |
|
488 } |
|
489 |
|
490 EXPORT_C const char *SSL_rstate_string(const SSL *s) |
|
491 { |
|
492 const char *str; |
|
493 |
|
494 switch (s->rstate) |
|
495 { |
|
496 case SSL_ST_READ_HEADER:str="RH"; break; |
|
497 case SSL_ST_READ_BODY: str="RB"; break; |
|
498 case SSL_ST_READ_DONE: str="RD"; break; |
|
499 default: str="unknown"; break; |
|
500 } |
|
501 return(str); |
|
502 } |