Mercurial > hg > octave-nkf > gnulib-hg
annotate lib/sha512.c @ 12518:b5e42ef33b49
update nearly all FSF copyright year lists to include 2009
The files named by the following are exempted:
grep -v '^#' config/srclist.txt|grep -v '^$' \
| while read src dst; do
test -f "$dst" && { echo "$dst"; continue; }
test -d "$dst" || continue
echo "$dst"/$(basename "$src")
done > exempt
git ls-files tests/unictype >> exempt
In the remaining files, convert to all-interval notation if
- there is already at least one year interval like 2000-2003
- the file is maintained by me
- the file is in lib/uni*/, where that style already prevails
Otherwise, use update-copyright's default.
author | Jim Meyering <meyering@redhat.com> |
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date | Mon, 28 Dec 2009 10:50:36 +0100 |
parents | e8d2c6fc33ad |
children | c2cbabec01dd |
rev | line source |
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1 /* sha512.c - Functions to compute SHA512 and SHA384 message digest of files or |
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2 memory blocks according to the NIST specification FIPS-180-2. |
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3 |
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4 Copyright (C) 2005, 2006, 2008, 2009 Free Software Foundation, Inc. |
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5 |
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6 This program is free software: you can redistribute it and/or modify |
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7 it under the terms of the GNU General Public License as published by |
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8 the Free Software Foundation, either version 3 of the License, or |
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9 (at your option) any later version. |
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10 |
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11 This program is distributed in the hope that it will be useful, |
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12 but WITHOUT ANY WARRANTY; without even the implied warranty of |
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13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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14 GNU General Public License for more details. |
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15 |
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16 You should have received a copy of the GNU General Public License |
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17 along with this program. If not, see <http://www.gnu.org/licenses/>. */ |
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18 |
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19 /* Written by David Madore, considerably copypasting from |
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20 Scott G. Miller's sha1.c |
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21 */ |
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22 |
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23 #include <config.h> |
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24 |
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25 #include "sha512.h" |
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26 |
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27 #include <stddef.h> |
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28 #include <stdlib.h> |
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29 #include <string.h> |
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30 |
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31 #if USE_UNLOCKED_IO |
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32 # include "unlocked-io.h" |
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33 #endif |
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34 |
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35 #ifdef WORDS_BIGENDIAN |
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36 # define SWAP(n) (n) |
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37 #else |
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38 # define SWAP(n) \ |
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39 u64or (u64or (u64or (u64shl (n, 56), \ |
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40 u64shl (u64and (n, u64lo (0x0000ff00)), 40)), \ |
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41 u64or (u64shl (u64and (n, u64lo (0x00ff0000)), 24), \ |
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42 u64shl (u64and (n, u64lo (0xff000000)), 8))), \ |
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43 u64or (u64or (u64and (u64shr (n, 8), u64lo (0xff000000)), \ |
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44 u64and (u64shr (n, 24), u64lo (0x00ff0000))), \ |
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45 u64or (u64and (u64shr (n, 40), u64lo (0x0000ff00)), \ |
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46 u64shr (n, 56)))) |
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47 #endif |
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48 |
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49 #define BLOCKSIZE 32768 |
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50 #if BLOCKSIZE % 128 != 0 |
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51 # error "invalid BLOCKSIZE" |
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52 #endif |
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53 |
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54 /* This array contains the bytes used to pad the buffer to the next |
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55 128-byte boundary. */ |
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56 static const unsigned char fillbuf[128] = { 0x80, 0 /* , 0, 0, ... */ }; |
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57 |
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58 |
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59 /* |
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60 Takes a pointer to a 512 bit block of data (eight 64 bit ints) and |
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61 intializes it to the start constants of the SHA512 algorithm. This |
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62 must be called before using hash in the call to sha512_hash |
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63 */ |
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64 void |
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65 sha512_init_ctx (struct sha512_ctx *ctx) |
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66 { |
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67 ctx->state[0] = u64hilo (0x6a09e667, 0xf3bcc908); |
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68 ctx->state[1] = u64hilo (0xbb67ae85, 0x84caa73b); |
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69 ctx->state[2] = u64hilo (0x3c6ef372, 0xfe94f82b); |
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70 ctx->state[3] = u64hilo (0xa54ff53a, 0x5f1d36f1); |
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71 ctx->state[4] = u64hilo (0x510e527f, 0xade682d1); |
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72 ctx->state[5] = u64hilo (0x9b05688c, 0x2b3e6c1f); |
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73 ctx->state[6] = u64hilo (0x1f83d9ab, 0xfb41bd6b); |
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74 ctx->state[7] = u64hilo (0x5be0cd19, 0x137e2179); |
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75 |
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76 ctx->total[0] = ctx->total[1] = u64lo (0); |
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77 ctx->buflen = 0; |
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78 } |
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79 |
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80 void |
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81 sha384_init_ctx (struct sha512_ctx *ctx) |
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82 { |
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83 ctx->state[0] = u64hilo (0xcbbb9d5d, 0xc1059ed8); |
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84 ctx->state[1] = u64hilo (0x629a292a, 0x367cd507); |
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85 ctx->state[2] = u64hilo (0x9159015a, 0x3070dd17); |
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86 ctx->state[3] = u64hilo (0x152fecd8, 0xf70e5939); |
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87 ctx->state[4] = u64hilo (0x67332667, 0xffc00b31); |
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88 ctx->state[5] = u64hilo (0x8eb44a87, 0x68581511); |
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89 ctx->state[6] = u64hilo (0xdb0c2e0d, 0x64f98fa7); |
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90 ctx->state[7] = u64hilo (0x47b5481d, 0xbefa4fa4); |
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91 |
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92 ctx->total[0] = ctx->total[1] = u64lo (0); |
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93 ctx->buflen = 0; |
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94 } |
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95 |
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96 /* Copy the value from V into the memory location pointed to by *CP, |
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97 If your architecture allows unaligned access, this is equivalent to |
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98 * (__typeof__ (v) *) cp = v */ |
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99 static inline void |
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100 set_uint64 (char *cp, u64 v) |
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101 { |
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102 memcpy (cp, &v, sizeof v); |
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103 } |
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104 |
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105 /* Put result from CTX in first 64 bytes following RESBUF. |
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106 The result must be in little endian byte order. */ |
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107 void * |
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108 sha512_read_ctx (const struct sha512_ctx *ctx, void *resbuf) |
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109 { |
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110 int i; |
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111 char *r = resbuf; |
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112 |
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113 for (i = 0; i < 8; i++) |
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114 set_uint64 (r + i * sizeof ctx->state[0], SWAP (ctx->state[i])); |
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115 |
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116 return resbuf; |
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117 } |
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118 |
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119 void * |
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120 sha384_read_ctx (const struct sha512_ctx *ctx, void *resbuf) |
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121 { |
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122 int i; |
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123 char *r = resbuf; |
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124 |
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125 for (i = 0; i < 6; i++) |
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126 set_uint64 (r + i * sizeof ctx->state[0], SWAP (ctx->state[i])); |
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127 |
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128 return resbuf; |
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129 } |
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130 |
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131 /* Process the remaining bytes in the internal buffer and the usual |
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132 prolog according to the standard and write the result to RESBUF. */ |
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133 static void |
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134 sha512_conclude_ctx (struct sha512_ctx *ctx) |
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135 { |
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136 /* Take yet unprocessed bytes into account. */ |
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137 size_t bytes = ctx->buflen; |
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138 size_t size = (bytes < 112) ? 128 / 8 : 128 * 2 / 8; |
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139 |
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140 /* Now count remaining bytes. */ |
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141 ctx->total[0] = u64plus (ctx->total[0], u64lo (bytes)); |
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142 if (u64lt (ctx->total[0], u64lo (bytes))) |
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143 ctx->total[1] = u64plus (ctx->total[1], u64lo (1)); |
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144 |
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145 /* Put the 128-bit file length in *bits* at the end of the buffer. |
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146 Use set_uint64 rather than a simple assignment, to avoid risk of |
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147 unaligned access. */ |
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148 set_uint64 ((char *) &ctx->buffer[size - 2], |
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149 SWAP (u64or (u64shl (ctx->total[1], 3), |
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150 u64shr (ctx->total[0], 61)))); |
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151 set_uint64 ((char *) &ctx->buffer[size - 1], |
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152 SWAP (u64shl (ctx->total[0], 3))); |
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153 |
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154 memcpy (&((char *) ctx->buffer)[bytes], fillbuf, (size - 2) * 8 - bytes); |
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155 |
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156 /* Process last bytes. */ |
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157 sha512_process_block (ctx->buffer, size * 8, ctx); |
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158 } |
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159 |
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160 void * |
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161 sha512_finish_ctx (struct sha512_ctx *ctx, void *resbuf) |
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162 { |
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163 sha512_conclude_ctx (ctx); |
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164 return sha512_read_ctx (ctx, resbuf); |
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165 } |
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166 |
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167 void * |
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168 sha384_finish_ctx (struct sha512_ctx *ctx, void *resbuf) |
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169 { |
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170 sha512_conclude_ctx (ctx); |
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171 return sha384_read_ctx (ctx, resbuf); |
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172 } |
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173 |
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174 /* Compute SHA512 message digest for bytes read from STREAM. The |
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175 resulting message digest number will be written into the 64 bytes |
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176 beginning at RESBLOCK. */ |
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177 int |
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178 sha512_stream (FILE *stream, void *resblock) |
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179 { |
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180 struct sha512_ctx ctx; |
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181 size_t sum; |
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182 |
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183 char *buffer = malloc (BLOCKSIZE + 72); |
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184 if (!buffer) |
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185 return 1; |
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186 |
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187 /* Initialize the computation context. */ |
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188 sha512_init_ctx (&ctx); |
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189 |
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190 /* Iterate over full file contents. */ |
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191 while (1) |
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192 { |
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193 /* We read the file in blocks of BLOCKSIZE bytes. One call of the |
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194 computation function processes the whole buffer so that with the |
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195 next round of the loop another block can be read. */ |
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196 size_t n; |
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197 sum = 0; |
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198 |
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199 /* Read block. Take care for partial reads. */ |
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200 while (1) |
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201 { |
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202 n = fread (buffer + sum, 1, BLOCKSIZE - sum, stream); |
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203 |
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204 sum += n; |
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205 |
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206 if (sum == BLOCKSIZE) |
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207 break; |
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208 |
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209 if (n == 0) |
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210 { |
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211 /* Check for the error flag IFF N == 0, so that we don't |
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212 exit the loop after a partial read due to e.g., EAGAIN |
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213 or EWOULDBLOCK. */ |
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214 if (ferror (stream)) |
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215 { |
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216 free (buffer); |
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217 return 1; |
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218 } |
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219 goto process_partial_block; |
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220 } |
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221 |
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222 /* We've read at least one byte, so ignore errors. But always |
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223 check for EOF, since feof may be true even though N > 0. |
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224 Otherwise, we could end up calling fread after EOF. */ |
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225 if (feof (stream)) |
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226 goto process_partial_block; |
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227 } |
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228 |
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229 /* Process buffer with BLOCKSIZE bytes. Note that |
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230 BLOCKSIZE % 128 == 0 |
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231 */ |
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232 sha512_process_block (buffer, BLOCKSIZE, &ctx); |
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233 } |
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234 |
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235 process_partial_block:; |
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236 |
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237 /* Process any remaining bytes. */ |
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238 if (sum > 0) |
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239 sha512_process_bytes (buffer, sum, &ctx); |
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240 |
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241 /* Construct result in desired memory. */ |
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242 sha512_finish_ctx (&ctx, resblock); |
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243 free (buffer); |
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244 return 0; |
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245 } |
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246 |
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247 /* FIXME: Avoid code duplication */ |
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248 int |
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249 sha384_stream (FILE *stream, void *resblock) |
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250 { |
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251 struct sha512_ctx ctx; |
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252 size_t sum; |
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253 |
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254 char *buffer = malloc (BLOCKSIZE + 72); |
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255 if (!buffer) |
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256 return 1; |
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257 |
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258 /* Initialize the computation context. */ |
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259 sha384_init_ctx (&ctx); |
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260 |
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261 /* Iterate over full file contents. */ |
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262 while (1) |
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263 { |
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264 /* We read the file in blocks of BLOCKSIZE bytes. One call of the |
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265 computation function processes the whole buffer so that with the |
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266 next round of the loop another block can be read. */ |
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267 size_t n; |
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268 sum = 0; |
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269 |
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270 /* Read block. Take care for partial reads. */ |
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271 while (1) |
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272 { |
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273 n = fread (buffer + sum, 1, BLOCKSIZE - sum, stream); |
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274 |
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275 sum += n; |
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276 |
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277 if (sum == BLOCKSIZE) |
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278 break; |
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279 |
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280 if (n == 0) |
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281 { |
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282 /* Check for the error flag IFF N == 0, so that we don't |
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283 exit the loop after a partial read due to e.g., EAGAIN |
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284 or EWOULDBLOCK. */ |
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285 if (ferror (stream)) |
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286 { |
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287 free (buffer); |
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288 return 1; |
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289 } |
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290 goto process_partial_block; |
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291 } |
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292 |
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293 /* We've read at least one byte, so ignore errors. But always |
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294 check for EOF, since feof may be true even though N > 0. |
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295 Otherwise, we could end up calling fread after EOF. */ |
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296 if (feof (stream)) |
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297 goto process_partial_block; |
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298 } |
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299 |
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300 /* Process buffer with BLOCKSIZE bytes. Note that |
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301 BLOCKSIZE % 128 == 0 |
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302 */ |
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303 sha512_process_block (buffer, BLOCKSIZE, &ctx); |
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304 } |
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305 |
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306 process_partial_block:; |
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307 |
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308 /* Process any remaining bytes. */ |
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309 if (sum > 0) |
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310 sha512_process_bytes (buffer, sum, &ctx); |
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311 |
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312 /* Construct result in desired memory. */ |
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313 sha384_finish_ctx (&ctx, resblock); |
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314 free (buffer); |
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315 return 0; |
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316 } |
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317 |
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318 /* Compute SHA512 message digest for LEN bytes beginning at BUFFER. The |
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319 result is always in little endian byte order, so that a byte-wise |
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320 output yields to the wanted ASCII representation of the message |
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321 digest. */ |
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322 void * |
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323 sha512_buffer (const char *buffer, size_t len, void *resblock) |
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324 { |
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325 struct sha512_ctx ctx; |
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326 |
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327 /* Initialize the computation context. */ |
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328 sha512_init_ctx (&ctx); |
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329 |
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330 /* Process whole buffer but last len % 128 bytes. */ |
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331 sha512_process_bytes (buffer, len, &ctx); |
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332 |
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333 /* Put result in desired memory area. */ |
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334 return sha512_finish_ctx (&ctx, resblock); |
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335 } |
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336 |
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337 void * |
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338 sha384_buffer (const char *buffer, size_t len, void *resblock) |
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339 { |
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340 struct sha512_ctx ctx; |
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341 |
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342 /* Initialize the computation context. */ |
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343 sha384_init_ctx (&ctx); |
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344 |
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345 /* Process whole buffer but last len % 128 bytes. */ |
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346 sha512_process_bytes (buffer, len, &ctx); |
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347 |
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348 /* Put result in desired memory area. */ |
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349 return sha384_finish_ctx (&ctx, resblock); |
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350 } |
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351 |
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352 void |
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353 sha512_process_bytes (const void *buffer, size_t len, struct sha512_ctx *ctx) |
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354 { |
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355 /* When we already have some bits in our internal buffer concatenate |
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356 both inputs first. */ |
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357 if (ctx->buflen != 0) |
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358 { |
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359 size_t left_over = ctx->buflen; |
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360 size_t add = 256 - left_over > len ? len : 256 - left_over; |
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361 |
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362 memcpy (&((char *) ctx->buffer)[left_over], buffer, add); |
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363 ctx->buflen += add; |
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364 |
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365 if (ctx->buflen > 128) |
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366 { |
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367 sha512_process_block (ctx->buffer, ctx->buflen & ~127, ctx); |
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368 |
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369 ctx->buflen &= 127; |
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370 /* The regions in the following copy operation cannot overlap. */ |
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371 memcpy (ctx->buffer, |
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372 &((char *) ctx->buffer)[(left_over + add) & ~127], |
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373 ctx->buflen); |
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374 } |
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375 |
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376 buffer = (const char *) buffer + add; |
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377 len -= add; |
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378 } |
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379 |
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380 /* Process available complete blocks. */ |
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381 if (len >= 128) |
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382 { |
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383 #if !_STRING_ARCH_unaligned |
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384 # define alignof(type) offsetof (struct { char c; type x; }, x) |
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385 # define UNALIGNED_P(p) (((size_t) p) % alignof (u64) != 0) |
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386 if (UNALIGNED_P (buffer)) |
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387 while (len > 128) |
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388 { |
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389 sha512_process_block (memcpy (ctx->buffer, buffer, 128), 128, ctx); |
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390 buffer = (const char *) buffer + 128; |
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391 len -= 128; |
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392 } |
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393 else |
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394 #endif |
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395 { |
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396 sha512_process_block (buffer, len & ~127, ctx); |
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397 buffer = (const char *) buffer + (len & ~127); |
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398 len &= 127; |
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399 } |
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400 } |
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401 |
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402 /* Move remaining bytes in internal buffer. */ |
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403 if (len > 0) |
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404 { |
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405 size_t left_over = ctx->buflen; |
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406 |
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407 memcpy (&((char *) ctx->buffer)[left_over], buffer, len); |
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408 left_over += len; |
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409 if (left_over >= 128) |
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410 { |
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411 sha512_process_block (ctx->buffer, 128, ctx); |
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412 left_over -= 128; |
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413 memcpy (ctx->buffer, &ctx->buffer[16], left_over); |
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414 } |
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415 ctx->buflen = left_over; |
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416 } |
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417 } |
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418 |
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419 /* --- Code below is the primary difference between sha1.c and sha512.c --- */ |
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420 |
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421 /* SHA512 round constants */ |
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422 #define K(I) sha512_round_constants[I] |
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423 static u64 const sha512_round_constants[80] = { |
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424 u64init (0x428a2f98, 0xd728ae22), u64init (0x71374491, 0x23ef65cd), |
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425 u64init (0xb5c0fbcf, 0xec4d3b2f), u64init (0xe9b5dba5, 0x8189dbbc), |
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426 u64init (0x3956c25b, 0xf348b538), u64init (0x59f111f1, 0xb605d019), |
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427 u64init (0x923f82a4, 0xaf194f9b), u64init (0xab1c5ed5, 0xda6d8118), |
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428 u64init (0xd807aa98, 0xa3030242), u64init (0x12835b01, 0x45706fbe), |
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429 u64init (0x243185be, 0x4ee4b28c), u64init (0x550c7dc3, 0xd5ffb4e2), |
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430 u64init (0x72be5d74, 0xf27b896f), u64init (0x80deb1fe, 0x3b1696b1), |
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431 u64init (0x9bdc06a7, 0x25c71235), u64init (0xc19bf174, 0xcf692694), |
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432 u64init (0xe49b69c1, 0x9ef14ad2), u64init (0xefbe4786, 0x384f25e3), |
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433 u64init (0x0fc19dc6, 0x8b8cd5b5), u64init (0x240ca1cc, 0x77ac9c65), |
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434 u64init (0x2de92c6f, 0x592b0275), u64init (0x4a7484aa, 0x6ea6e483), |
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435 u64init (0x5cb0a9dc, 0xbd41fbd4), u64init (0x76f988da, 0x831153b5), |
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436 u64init (0x983e5152, 0xee66dfab), u64init (0xa831c66d, 0x2db43210), |
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437 u64init (0xb00327c8, 0x98fb213f), u64init (0xbf597fc7, 0xbeef0ee4), |
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438 u64init (0xc6e00bf3, 0x3da88fc2), u64init (0xd5a79147, 0x930aa725), |
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439 u64init (0x06ca6351, 0xe003826f), u64init (0x14292967, 0x0a0e6e70), |
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440 u64init (0x27b70a85, 0x46d22ffc), u64init (0x2e1b2138, 0x5c26c926), |
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441 u64init (0x4d2c6dfc, 0x5ac42aed), u64init (0x53380d13, 0x9d95b3df), |
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442 u64init (0x650a7354, 0x8baf63de), u64init (0x766a0abb, 0x3c77b2a8), |
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443 u64init (0x81c2c92e, 0x47edaee6), u64init (0x92722c85, 0x1482353b), |
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444 u64init (0xa2bfe8a1, 0x4cf10364), u64init (0xa81a664b, 0xbc423001), |
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445 u64init (0xc24b8b70, 0xd0f89791), u64init (0xc76c51a3, 0x0654be30), |
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446 u64init (0xd192e819, 0xd6ef5218), u64init (0xd6990624, 0x5565a910), |
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447 u64init (0xf40e3585, 0x5771202a), u64init (0x106aa070, 0x32bbd1b8), |
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448 u64init (0x19a4c116, 0xb8d2d0c8), u64init (0x1e376c08, 0x5141ab53), |
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449 u64init (0x2748774c, 0xdf8eeb99), u64init (0x34b0bcb5, 0xe19b48a8), |
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450 u64init (0x391c0cb3, 0xc5c95a63), u64init (0x4ed8aa4a, 0xe3418acb), |
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451 u64init (0x5b9cca4f, 0x7763e373), u64init (0x682e6ff3, 0xd6b2b8a3), |
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452 u64init (0x748f82ee, 0x5defb2fc), u64init (0x78a5636f, 0x43172f60), |
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453 u64init (0x84c87814, 0xa1f0ab72), u64init (0x8cc70208, 0x1a6439ec), |
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454 u64init (0x90befffa, 0x23631e28), u64init (0xa4506ceb, 0xde82bde9), |
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455 u64init (0xbef9a3f7, 0xb2c67915), u64init (0xc67178f2, 0xe372532b), |
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456 u64init (0xca273ece, 0xea26619c), u64init (0xd186b8c7, 0x21c0c207), |
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457 u64init (0xeada7dd6, 0xcde0eb1e), u64init (0xf57d4f7f, 0xee6ed178), |
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458 u64init (0x06f067aa, 0x72176fba), u64init (0x0a637dc5, 0xa2c898a6), |
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459 u64init (0x113f9804, 0xbef90dae), u64init (0x1b710b35, 0x131c471b), |
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460 u64init (0x28db77f5, 0x23047d84), u64init (0x32caab7b, 0x40c72493), |
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461 u64init (0x3c9ebe0a, 0x15c9bebc), u64init (0x431d67c4, 0x9c100d4c), |
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462 u64init (0x4cc5d4be, 0xcb3e42b6), u64init (0x597f299c, 0xfc657e2a), |
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463 u64init (0x5fcb6fab, 0x3ad6faec), u64init (0x6c44198c, 0x4a475817), |
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464 }; |
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465 |
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466 /* Round functions. */ |
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467 #define F2(A, B, C) u64or (u64and (A, B), u64and (C, u64or (A, B))) |
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468 #define F1(E, F, G) u64xor (G, u64and (E, u64xor (F, G))) |
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469 |
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470 /* Process LEN bytes of BUFFER, accumulating context into CTX. |
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471 It is assumed that LEN % 128 == 0. |
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472 Most of this code comes from GnuPG's cipher/sha1.c. */ |
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473 |
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474 void |
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475 sha512_process_block (const void *buffer, size_t len, struct sha512_ctx *ctx) |
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476 { |
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477 u64 const *words = buffer; |
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478 u64 const *endp = words + len / sizeof (u64); |
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479 u64 x[16]; |
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480 u64 a = ctx->state[0]; |
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481 u64 b = ctx->state[1]; |
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482 u64 c = ctx->state[2]; |
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483 u64 d = ctx->state[3]; |
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484 u64 e = ctx->state[4]; |
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485 u64 f = ctx->state[5]; |
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486 u64 g = ctx->state[6]; |
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487 u64 h = ctx->state[7]; |
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488 |
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489 /* First increment the byte count. FIPS PUB 180-2 specifies the possible |
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490 length of the file up to 2^128 bits. Here we only compute the |
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491 number of bytes. Do a double word increment. */ |
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492 ctx->total[0] = u64plus (ctx->total[0], u64lo (len)); |
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493 if (u64lt (ctx->total[0], u64lo (len))) |
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494 ctx->total[1] = u64plus (ctx->total[1], u64lo (1)); |
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495 |
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496 #define S0(x) u64xor (u64rol(x, 63), u64xor (u64rol (x, 56), u64shr (x, 7))) |
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497 #define S1(x) u64xor (u64rol (x, 45), u64xor (u64rol (x, 3), u64shr (x, 6))) |
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498 #define SS0(x) u64xor (u64rol (x, 36), u64xor (u64rol (x, 30), u64rol (x, 25))) |
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499 #define SS1(x) u64xor (u64rol(x, 50), u64xor (u64rol (x, 46), u64rol (x, 23))) |
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500 |
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501 #define M(I) (x[(I) & 15] \ |
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502 = u64plus (x[(I) & 15], \ |
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503 u64plus (S1 (x[((I) - 2) & 15]), \ |
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504 u64plus (x[((I) - 7) & 15], \ |
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505 S0 (x[((I) - 15) & 15]))))) |
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506 |
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507 #define R(A, B, C, D, E, F, G, H, K, M) \ |
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508 do \ |
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509 { \ |
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510 u64 t0 = u64plus (SS0 (A), F2 (A, B, C)); \ |
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511 u64 t1 = \ |
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512 u64plus (H, u64plus (SS1 (E), \ |
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513 u64plus (F1 (E, F, G), u64plus (K, M)))); \ |
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514 D = u64plus (D, t1); \ |
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515 H = u64plus (t0, t1); \ |
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516 } \ |
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517 while (0) |
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518 |
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519 while (words < endp) |
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520 { |
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521 int t; |
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522 /* FIXME: see sha1.c for a better implementation. */ |
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523 for (t = 0; t < 16; t++) |
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524 { |
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525 x[t] = SWAP (*words); |
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526 words++; |
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527 } |
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|
528 |
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529 R( a, b, c, d, e, f, g, h, K( 0), x[ 0] ); |
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530 R( h, a, b, c, d, e, f, g, K( 1), x[ 1] ); |
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531 R( g, h, a, b, c, d, e, f, K( 2), x[ 2] ); |
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532 R( f, g, h, a, b, c, d, e, K( 3), x[ 3] ); |
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533 R( e, f, g, h, a, b, c, d, K( 4), x[ 4] ); |
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534 R( d, e, f, g, h, a, b, c, K( 5), x[ 5] ); |
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535 R( c, d, e, f, g, h, a, b, K( 6), x[ 6] ); |
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536 R( b, c, d, e, f, g, h, a, K( 7), x[ 7] ); |
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537 R( a, b, c, d, e, f, g, h, K( 8), x[ 8] ); |
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538 R( h, a, b, c, d, e, f, g, K( 9), x[ 9] ); |
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539 R( g, h, a, b, c, d, e, f, K(10), x[10] ); |
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540 R( f, g, h, a, b, c, d, e, K(11), x[11] ); |
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|
541 R( e, f, g, h, a, b, c, d, K(12), x[12] ); |
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542 R( d, e, f, g, h, a, b, c, K(13), x[13] ); |
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|
543 R( c, d, e, f, g, h, a, b, K(14), x[14] ); |
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544 R( b, c, d, e, f, g, h, a, K(15), x[15] ); |
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545 R( a, b, c, d, e, f, g, h, K(16), M(16) ); |
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546 R( h, a, b, c, d, e, f, g, K(17), M(17) ); |
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|
547 R( g, h, a, b, c, d, e, f, K(18), M(18) ); |
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548 R( f, g, h, a, b, c, d, e, K(19), M(19) ); |
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|
549 R( e, f, g, h, a, b, c, d, K(20), M(20) ); |
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550 R( d, e, f, g, h, a, b, c, K(21), M(21) ); |
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|
551 R( c, d, e, f, g, h, a, b, K(22), M(22) ); |
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552 R( b, c, d, e, f, g, h, a, K(23), M(23) ); |
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|
553 R( a, b, c, d, e, f, g, h, K(24), M(24) ); |
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|
554 R( h, a, b, c, d, e, f, g, K(25), M(25) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
555 R( g, h, a, b, c, d, e, f, K(26), M(26) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
556 R( f, g, h, a, b, c, d, e, K(27), M(27) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
557 R( e, f, g, h, a, b, c, d, K(28), M(28) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
558 R( d, e, f, g, h, a, b, c, K(29), M(29) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
559 R( c, d, e, f, g, h, a, b, K(30), M(30) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
560 R( b, c, d, e, f, g, h, a, K(31), M(31) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
561 R( a, b, c, d, e, f, g, h, K(32), M(32) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
562 R( h, a, b, c, d, e, f, g, K(33), M(33) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
563 R( g, h, a, b, c, d, e, f, K(34), M(34) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
564 R( f, g, h, a, b, c, d, e, K(35), M(35) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
565 R( e, f, g, h, a, b, c, d, K(36), M(36) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
566 R( d, e, f, g, h, a, b, c, K(37), M(37) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
567 R( c, d, e, f, g, h, a, b, K(38), M(38) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
568 R( b, c, d, e, f, g, h, a, K(39), M(39) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
569 R( a, b, c, d, e, f, g, h, K(40), M(40) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
570 R( h, a, b, c, d, e, f, g, K(41), M(41) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
571 R( g, h, a, b, c, d, e, f, K(42), M(42) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
572 R( f, g, h, a, b, c, d, e, K(43), M(43) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
573 R( e, f, g, h, a, b, c, d, K(44), M(44) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
574 R( d, e, f, g, h, a, b, c, K(45), M(45) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
575 R( c, d, e, f, g, h, a, b, K(46), M(46) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
576 R( b, c, d, e, f, g, h, a, K(47), M(47) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
577 R( a, b, c, d, e, f, g, h, K(48), M(48) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
578 R( h, a, b, c, d, e, f, g, K(49), M(49) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
579 R( g, h, a, b, c, d, e, f, K(50), M(50) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
580 R( f, g, h, a, b, c, d, e, K(51), M(51) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
581 R( e, f, g, h, a, b, c, d, K(52), M(52) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
582 R( d, e, f, g, h, a, b, c, K(53), M(53) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
583 R( c, d, e, f, g, h, a, b, K(54), M(54) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
584 R( b, c, d, e, f, g, h, a, K(55), M(55) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
585 R( a, b, c, d, e, f, g, h, K(56), M(56) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
586 R( h, a, b, c, d, e, f, g, K(57), M(57) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
587 R( g, h, a, b, c, d, e, f, K(58), M(58) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
588 R( f, g, h, a, b, c, d, e, K(59), M(59) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
589 R( e, f, g, h, a, b, c, d, K(60), M(60) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
590 R( d, e, f, g, h, a, b, c, K(61), M(61) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
591 R( c, d, e, f, g, h, a, b, K(62), M(62) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
592 R( b, c, d, e, f, g, h, a, K(63), M(63) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
593 R( a, b, c, d, e, f, g, h, K(64), M(64) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
594 R( h, a, b, c, d, e, f, g, K(65), M(65) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
595 R( g, h, a, b, c, d, e, f, K(66), M(66) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
596 R( f, g, h, a, b, c, d, e, K(67), M(67) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
597 R( e, f, g, h, a, b, c, d, K(68), M(68) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
598 R( d, e, f, g, h, a, b, c, K(69), M(69) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
599 R( c, d, e, f, g, h, a, b, K(70), M(70) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
600 R( b, c, d, e, f, g, h, a, K(71), M(71) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
601 R( a, b, c, d, e, f, g, h, K(72), M(72) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
602 R( h, a, b, c, d, e, f, g, K(73), M(73) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
603 R( g, h, a, b, c, d, e, f, K(74), M(74) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
604 R( f, g, h, a, b, c, d, e, K(75), M(75) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
605 R( e, f, g, h, a, b, c, d, K(76), M(76) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
606 R( d, e, f, g, h, a, b, c, K(77), M(77) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
607 R( c, d, e, f, g, h, a, b, K(78), M(78) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
608 R( b, c, d, e, f, g, h, a, K(79), M(79) ); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
609 |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
610 a = ctx->state[0] = u64plus (ctx->state[0], a); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
611 b = ctx->state[1] = u64plus (ctx->state[1], b); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
612 c = ctx->state[2] = u64plus (ctx->state[2], c); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
613 d = ctx->state[3] = u64plus (ctx->state[3], d); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
614 e = ctx->state[4] = u64plus (ctx->state[4], e); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
615 f = ctx->state[5] = u64plus (ctx->state[5], f); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
616 g = ctx->state[6] = u64plus (ctx->state[6], g); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
617 h = ctx->state[7] = u64plus (ctx->state[7], h); |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
618 } |
e65afb893b33
New modules: crypto/sha256, crypto/sha512 (from coreutils)
Jim Meyering <meyering@redhat.com>
parents:
diff
changeset
|
619 } |