Mercurial > dropbear
annotate random.c @ 646:f10335e5e42f dropbear-tfm
- More asm constraint fixes. Now seems to build OK on 32-bit OS X.
author | Matt Johnston <matt@ucc.asn.au> |
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date | Wed, 30 Nov 2011 23:03:47 +0800 |
parents | 2b1bb792cd4d |
children |
rev | line source |
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1 /* |
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2 * Dropbear - a SSH2 server |
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3 * |
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4 * Copyright (c) 2002,2003 Matt Johnston |
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5 * All rights reserved. |
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6 * |
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7 * Permission is hereby granted, free of charge, to any person obtaining a copy |
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8 * of this software and associated documentation files (the "Software"), to deal |
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9 * in the Software without restriction, including without limitation the rights |
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10 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell |
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11 * copies of the Software, and to permit persons to whom the Software is |
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12 * furnished to do so, subject to the following conditions: |
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13 * |
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14 * The above copyright notice and this permission notice shall be included in |
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15 * all copies or substantial portions of the Software. |
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16 * |
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17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR |
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18 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
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19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE |
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20 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER |
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21 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, |
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22 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE |
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23 * SOFTWARE. */ |
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24 |
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25 #include "includes.h" |
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26 #include "buffer.h" |
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27 #include "dbutil.h" |
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28 #include "bignum.h" |
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29 |
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30 static int donerandinit = 0; |
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31 |
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32 /* this is used to generate unique output from the same hashpool */ |
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33 static uint32_t counter = 0; |
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34 /* the max value for the counter, so it won't integer overflow */ |
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35 #define MAX_COUNTER 1<<30 |
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36 |
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37 static unsigned char hashpool[SHA1_HASH_SIZE]; |
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38 |
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39 #define INIT_SEED_SIZE 32 /* 256 bits */ |
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40 |
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41 static void readrand(unsigned char* buf, unsigned int buflen); |
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42 |
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43 /* The basic setup is we read some data from /dev/(u)random or prngd and hash it |
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44 * into hashpool. To read data, we hash together current hashpool contents, |
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45 * and a counter. We feed more data in by hashing the current pool and new |
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46 * data into the pool. |
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47 * |
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48 * It is important to ensure that counter doesn't wrap around before we |
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49 * feed in new entropy. |
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50 * |
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51 */ |
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52 |
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53 static void readrand(unsigned char* buf, unsigned int buflen) { |
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54 |
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55 static int already_blocked = 0; |
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56 int readfd; |
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57 unsigned int readpos; |
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58 int readlen; |
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59 #ifdef DROPBEAR_PRNGD_SOCKET |
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60 struct sockaddr_un egdsock; |
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61 char egdcmd[2]; |
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62 #endif |
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63 |
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64 #ifdef DROPBEAR_RANDOM_DEV |
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65 readfd = open(DROPBEAR_RANDOM_DEV, O_RDONLY); |
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66 if (readfd < 0) { |
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67 dropbear_exit("Couldn't open random device"); |
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68 } |
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69 #endif |
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70 |
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71 #ifdef DROPBEAR_PRNGD_SOCKET |
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72 readfd = connect_unix(DROPBEAR_PRNGD_SOCKET); |
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73 |
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74 if (readfd < 0) { |
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75 dropbear_exit("Couldn't open random device"); |
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76 } |
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77 |
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78 if (buflen > 255) |
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79 dropbear_exit("Can't request more than 255 bytes from egd"); |
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80 egdcmd[0] = 0x02; /* blocking read */ |
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81 egdcmd[1] = (unsigned char)buflen; |
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82 if (write(readfd, egdcmd, 2) < 0) |
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83 dropbear_exit("Can't send command to egd"); |
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84 #endif |
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85 |
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86 /* read the actual random data */ |
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87 readpos = 0; |
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88 do { |
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89 if (!already_blocked) |
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90 { |
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91 int ret; |
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92 struct timeval timeout; |
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93 fd_set read_fds; |
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94 |
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95 timeout.tv_sec = 2; /* two seconds should be enough */ |
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96 timeout.tv_usec = 0; |
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97 |
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98 FD_ZERO(&read_fds); |
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99 FD_SET(readfd, &read_fds); |
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100 ret = select(readfd + 1, &read_fds, NULL, NULL, &timeout); |
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101 if (ret == 0) |
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102 { |
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103 dropbear_log(LOG_INFO, "Warning: Reading the random source seems to have blocked.\nIf you experience problems, you probably need to find a better entropy source."); |
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104 already_blocked = 1; |
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105 } |
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106 } |
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107 readlen = read(readfd, &buf[readpos], buflen - readpos); |
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108 if (readlen <= 0) { |
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109 if (readlen < 0 && errno == EINTR) { |
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110 continue; |
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111 } |
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112 dropbear_exit("Error reading random source"); |
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113 } |
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114 readpos += readlen; |
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115 } while (readpos < buflen); |
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116 |
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117 close (readfd); |
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118 } |
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119 |
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120 /* initialise the prng from /dev/(u)random or prngd */ |
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121 void seedrandom() { |
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122 |
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123 unsigned char readbuf[INIT_SEED_SIZE]; |
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124 |
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125 hash_state hs; |
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126 |
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127 /* initialise so that things won't warn about |
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128 * hashing an undefined buffer */ |
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129 if (!donerandinit) { |
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130 m_burn(hashpool, sizeof(hashpool)); |
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131 } |
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132 |
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133 /* get the seed data */ |
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134 readrand(readbuf, sizeof(readbuf)); |
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135 |
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136 /* hash in the new seed data */ |
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137 sha1_init(&hs); |
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138 sha1_process(&hs, (void*)hashpool, sizeof(hashpool)); |
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139 sha1_process(&hs, (void*)readbuf, sizeof(readbuf)); |
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140 sha1_done(&hs, hashpool); |
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141 |
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142 counter = 0; |
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143 donerandinit = 1; |
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144 } |
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145 |
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146 /* hash the current random pool with some unique identifiers |
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147 * for this process and point-in-time. this is used to separate |
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148 * the random pools for fork()ed processes. */ |
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149 void reseedrandom() { |
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150 |
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151 pid_t pid; |
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152 hash_state hs; |
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153 struct timeval tv; |
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154 |
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155 if (!donerandinit) { |
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156 dropbear_exit("seedrandom not done"); |
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157 } |
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158 |
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159 pid = getpid(); |
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160 gettimeofday(&tv, NULL); |
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161 |
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162 sha1_init(&hs); |
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163 sha1_process(&hs, (void*)hashpool, sizeof(hashpool)); |
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164 sha1_process(&hs, (void*)&pid, sizeof(pid)); |
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165 sha1_process(&hs, (void*)&tv, sizeof(tv)); |
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166 sha1_done(&hs, hashpool); |
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167 } |
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168 |
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169 /* return len bytes of pseudo-random data */ |
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170 void genrandom(unsigned char* buf, unsigned int len) { |
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171 |
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172 hash_state hs; |
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173 unsigned char hash[SHA1_HASH_SIZE]; |
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174 unsigned int copylen; |
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175 |
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176 if (!donerandinit) { |
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177 dropbear_exit("seedrandom not done"); |
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178 } |
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179 |
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180 while (len > 0) { |
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181 sha1_init(&hs); |
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182 sha1_process(&hs, (void*)hashpool, sizeof(hashpool)); |
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183 sha1_process(&hs, (void*)&counter, sizeof(counter)); |
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184 sha1_done(&hs, hash); |
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185 |
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186 counter++; |
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187 if (counter > MAX_COUNTER) { |
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188 seedrandom(); |
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189 } |
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190 |
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191 copylen = MIN(len, SHA1_HASH_SIZE); |
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192 memcpy(buf, hash, copylen); |
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193 len -= copylen; |
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194 buf += copylen; |
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195 } |
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196 m_burn(hash, sizeof(hash)); |
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197 } |
188
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198 |
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199 /* Generates a random fp_int. |
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200 * max is a *fp_int specifying an upper bound. |
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201 * rand must be an initialised *fp_int for the result. |
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202 * the result rand satisfies: 0 < rand < max |
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203 * */ |
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204 void gen_random_fpint(fp_int *max, fp_int *rand) { |
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205 |
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206 unsigned char *randbuf = NULL; |
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207 unsigned int len = 0; |
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208 const unsigned char masks[] = {0xff, 0x01, 0x03, 0x07, 0x0f, 0x1f, 0x3f, 0x7f}; |
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209 |
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210 const int size_bits = fp_count_bits(max); |
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211 |
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212 len = size_bits / 8; |
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213 if ((size_bits % 8) != 0) { |
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214 len += 1; |
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215 } |
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216 |
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217 randbuf = (unsigned char*)m_malloc(len); |
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218 do { |
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219 genrandom(randbuf, len); |
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220 /* Mask out the unrequired bits - fp_read_unsigned_bin expects |
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221 * MSB first.*/ |
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222 randbuf[0] &= masks[size_bits % 8]; |
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223 |
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224 bytes_to_fp(rand, randbuf, len); |
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225 |
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226 /* keep regenerating until we get one satisfying |
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227 * 0 < rand < max */ |
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228 } while (fp_cmp(rand, max) != FP_LT); |
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229 m_burn(randbuf, len); |
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230 m_free(randbuf); |
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231 } |