Mercurial > dropbear
annotate libtomcrypt/src/headers/tomcrypt_cipher.h @ 1454:ef310db5ccec
fix updates to libtomcrypt/libtommath for out of tree builds
author | Matt Johnston <matt@ucc.asn.au> |
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date | Tue, 23 Jan 2018 22:44:18 +0800 |
parents | f849a5ca2efc |
children | 6dba84798cd5 |
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1 /* ---- SYMMETRIC KEY STUFF ----- |
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2 * |
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3 * We put each of the ciphers scheduled keys in their own structs then we put all of |
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4 * the key formats in one union. This makes the function prototypes easier to use. |
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5 */ |
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6 #ifdef LTC_BLOWFISH |
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7 struct blowfish_key { |
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8 ulong32 S[4][256]; |
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9 ulong32 K[18]; |
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10 }; |
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11 #endif |
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12 |
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13 #ifdef LTC_RC5 |
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14 struct rc5_key { |
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15 int rounds; |
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16 ulong32 K[50]; |
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17 }; |
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18 #endif |
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19 |
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20 #ifdef LTC_RC6 |
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21 struct rc6_key { |
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22 ulong32 K[44]; |
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23 }; |
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24 #endif |
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25 |
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26 #ifdef LTC_SAFERP |
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27 struct saferp_key { |
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28 unsigned char K[33][16]; |
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29 long rounds; |
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30 }; |
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31 #endif |
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32 |
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33 #ifdef LTC_RIJNDAEL |
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34 struct rijndael_key { |
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35 ulong32 eK[60], dK[60]; |
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36 int Nr; |
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37 }; |
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38 #endif |
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39 |
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40 #ifdef LTC_KSEED |
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41 struct kseed_key { |
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42 ulong32 K[32], dK[32]; |
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43 }; |
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44 #endif |
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45 |
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46 #ifdef LTC_KASUMI |
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47 struct kasumi_key { |
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48 ulong32 KLi1[8], KLi2[8], |
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49 KOi1[8], KOi2[8], KOi3[8], |
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50 KIi1[8], KIi2[8], KIi3[8]; |
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51 }; |
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52 #endif |
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53 |
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54 #ifdef LTC_XTEA |
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55 struct xtea_key { |
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56 unsigned long A[32], B[32]; |
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57 }; |
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58 #endif |
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59 |
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60 #ifdef LTC_TWOFISH |
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61 #ifndef LTC_TWOFISH_SMALL |
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62 struct twofish_key { |
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63 ulong32 S[4][256], K[40]; |
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64 }; |
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65 #else |
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66 struct twofish_key { |
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67 ulong32 K[40]; |
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68 unsigned char S[32], start; |
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69 }; |
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70 #endif |
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71 #endif |
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72 |
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73 #ifdef LTC_SAFER |
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74 #define LTC_SAFER_K64_DEFAULT_NOF_ROUNDS 6 |
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75 #define LTC_SAFER_K128_DEFAULT_NOF_ROUNDS 10 |
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76 #define LTC_SAFER_SK64_DEFAULT_NOF_ROUNDS 8 |
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77 #define LTC_SAFER_SK128_DEFAULT_NOF_ROUNDS 10 |
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78 #define LTC_SAFER_MAX_NOF_ROUNDS 13 |
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79 #define LTC_SAFER_BLOCK_LEN 8 |
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80 #define LTC_SAFER_KEY_LEN (1 + LTC_SAFER_BLOCK_LEN * (1 + 2 * LTC_SAFER_MAX_NOF_ROUNDS)) |
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81 typedef unsigned char safer_block_t[LTC_SAFER_BLOCK_LEN]; |
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82 typedef unsigned char safer_key_t[LTC_SAFER_KEY_LEN]; |
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83 struct safer_key { safer_key_t key; }; |
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84 #endif |
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85 |
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86 #ifdef LTC_RC2 |
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87 struct rc2_key { unsigned xkey[64]; }; |
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88 #endif |
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89 |
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90 #ifdef LTC_DES |
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91 struct des_key { |
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92 ulong32 ek[32], dk[32]; |
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93 }; |
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94 |
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95 struct des3_key { |
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96 ulong32 ek[3][32], dk[3][32]; |
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97 }; |
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98 #endif |
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99 |
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100 #ifdef LTC_CAST5 |
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101 struct cast5_key { |
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102 ulong32 K[32], keylen; |
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103 }; |
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104 #endif |
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105 |
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106 #ifdef LTC_NOEKEON |
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107 struct noekeon_key { |
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108 ulong32 K[4], dK[4]; |
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109 }; |
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110 #endif |
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111 |
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112 #ifdef LTC_SKIPJACK |
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113 struct skipjack_key { |
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114 unsigned char key[10]; |
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115 }; |
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116 #endif |
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117 |
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118 #ifdef LTC_KHAZAD |
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119 struct khazad_key { |
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120 ulong64 roundKeyEnc[8 + 1]; |
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121 ulong64 roundKeyDec[8 + 1]; |
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122 }; |
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123 #endif |
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124 |
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125 #ifdef LTC_ANUBIS |
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126 struct anubis_key { |
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127 int keyBits; |
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128 int R; |
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129 ulong32 roundKeyEnc[18 + 1][4]; |
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130 ulong32 roundKeyDec[18 + 1][4]; |
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131 }; |
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132 #endif |
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133 |
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134 #ifdef LTC_MULTI2 |
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135 struct multi2_key { |
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136 int N; |
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137 ulong32 uk[8]; |
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138 }; |
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139 #endif |
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140 |
285
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141 typedef union Symmetric_key { |
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142 #ifdef LTC_DES |
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143 struct des_key des; |
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144 struct des3_key des3; |
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145 #endif |
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146 #ifdef LTC_RC2 |
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147 struct rc2_key rc2; |
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148 #endif |
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149 #ifdef LTC_SAFER |
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150 struct safer_key safer; |
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151 #endif |
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152 #ifdef LTC_TWOFISH |
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153 struct twofish_key twofish; |
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154 #endif |
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155 #ifdef LTC_BLOWFISH |
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156 struct blowfish_key blowfish; |
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157 #endif |
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158 #ifdef LTC_RC5 |
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159 struct rc5_key rc5; |
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160 #endif |
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161 #ifdef LTC_RC6 |
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162 struct rc6_key rc6; |
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163 #endif |
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164 #ifdef LTC_SAFERP |
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165 struct saferp_key saferp; |
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166 #endif |
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167 #ifdef LTC_RIJNDAEL |
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168 struct rijndael_key rijndael; |
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169 #endif |
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170 #ifdef LTC_XTEA |
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171 struct xtea_key xtea; |
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172 #endif |
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173 #ifdef LTC_CAST5 |
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174 struct cast5_key cast5; |
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175 #endif |
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176 #ifdef LTC_NOEKEON |
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177 struct noekeon_key noekeon; |
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178 #endif |
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179 #ifdef LTC_SKIPJACK |
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180 struct skipjack_key skipjack; |
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181 #endif |
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182 #ifdef LTC_KHAZAD |
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183 struct khazad_key khazad; |
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184 #endif |
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185 #ifdef LTC_ANUBIS |
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186 struct anubis_key anubis; |
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187 #endif |
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188 #ifdef LTC_KSEED |
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189 struct kseed_key kseed; |
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190 #endif |
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191 #ifdef LTC_KASUMI |
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192 struct kasumi_key kasumi; |
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193 #endif |
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194 #ifdef LTC_MULTI2 |
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195 struct multi2_key multi2; |
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196 #endif |
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197 void *data; |
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198 } symmetric_key; |
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199 |
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200 #ifdef LTC_ECB_MODE |
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201 /** A block cipher ECB structure */ |
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202 typedef struct { |
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203 /** The index of the cipher chosen */ |
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204 int cipher, |
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205 /** The block size of the given cipher */ |
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206 blocklen; |
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207 /** The scheduled key */ |
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208 symmetric_key key; |
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209 } symmetric_ECB; |
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210 #endif |
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211 |
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212 #ifdef LTC_CFB_MODE |
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213 /** A block cipher CFB structure */ |
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214 typedef struct { |
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215 /** The index of the cipher chosen */ |
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216 int cipher, |
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217 /** The block size of the given cipher */ |
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218 blocklen, |
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219 /** The padding offset */ |
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220 padlen; |
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221 /** The current IV */ |
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222 unsigned char IV[MAXBLOCKSIZE], |
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223 /** The pad used to encrypt/decrypt */ |
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224 pad[MAXBLOCKSIZE]; |
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225 /** The scheduled key */ |
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226 symmetric_key key; |
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227 } symmetric_CFB; |
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228 #endif |
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229 |
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230 #ifdef LTC_OFB_MODE |
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231 /** A block cipher OFB structure */ |
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232 typedef struct { |
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233 /** The index of the cipher chosen */ |
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234 int cipher, |
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235 /** The block size of the given cipher */ |
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236 blocklen, |
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237 /** The padding offset */ |
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238 padlen; |
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239 /** The current IV */ |
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240 unsigned char IV[MAXBLOCKSIZE]; |
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241 /** The scheduled key */ |
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242 symmetric_key key; |
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243 } symmetric_OFB; |
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244 #endif |
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245 |
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246 #ifdef LTC_CBC_MODE |
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247 /** A block cipher CBC structure */ |
285
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248 typedef struct { |
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249 /** The index of the cipher chosen */ |
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250 int cipher, |
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251 /** The block size of the given cipher */ |
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252 blocklen; |
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253 /** The current IV */ |
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254 unsigned char IV[MAXBLOCKSIZE]; |
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255 /** The scheduled key */ |
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256 symmetric_key key; |
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257 } symmetric_CBC; |
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258 #endif |
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259 |
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260 |
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261 #ifdef LTC_CTR_MODE |
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262 /** A block cipher CTR structure */ |
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263 typedef struct { |
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264 /** The index of the cipher chosen */ |
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265 int cipher, |
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266 /** The block size of the given cipher */ |
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267 blocklen, |
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268 /** The padding offset */ |
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269 padlen, |
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270 /** The mode (endianess) of the CTR, 0==little, 1==big */ |
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271 mode, |
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272 /** counter width */ |
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273 ctrlen; |
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274 |
285
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275 /** The counter */ |
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276 unsigned char ctr[MAXBLOCKSIZE], |
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277 /** The pad used to encrypt/decrypt */ |
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278 pad[MAXBLOCKSIZE]; |
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279 /** The scheduled key */ |
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280 symmetric_key key; |
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281 } symmetric_CTR; |
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282 #endif |
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283 |
382
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284 |
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285 #ifdef LTC_LRW_MODE |
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286 /** A LRW structure */ |
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287 typedef struct { |
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288 /** The index of the cipher chosen (must be a 128-bit block cipher) */ |
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289 int cipher; |
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290 |
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291 /** The current IV */ |
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292 unsigned char IV[16], |
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293 |
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294 /** the tweak key */ |
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295 tweak[16], |
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296 |
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297 /** The current pad, it's the product of the first 15 bytes against the tweak key */ |
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298 pad[16]; |
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299 |
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300 /** The scheduled symmetric key */ |
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301 symmetric_key key; |
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302 |
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303 #ifdef LRW_TABLES |
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304 /** The pre-computed multiplication table */ |
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305 unsigned char PC[16][256][16]; |
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306 #endif |
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307 } symmetric_LRW; |
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308 #endif |
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309 |
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310 #ifdef LTC_F8_MODE |
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311 /** A block cipher F8 structure */ |
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312 typedef struct { |
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313 /** The index of the cipher chosen */ |
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314 int cipher, |
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315 /** The block size of the given cipher */ |
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316 blocklen, |
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317 /** The padding offset */ |
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318 padlen; |
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319 /** The current IV */ |
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320 unsigned char IV[MAXBLOCKSIZE], |
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321 MIV[MAXBLOCKSIZE]; |
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322 /** Current block count */ |
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323 ulong32 blockcnt; |
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324 /** The scheduled key */ |
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325 symmetric_key key; |
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326 } symmetric_F8; |
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327 #endif |
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328 |
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329 |
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330 /** cipher descriptor table, last entry has "name == NULL" to mark the end of table */ |
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331 extern struct ltc_cipher_descriptor { |
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332 /** name of cipher */ |
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333 char *name; |
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334 /** internal ID */ |
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335 unsigned char ID; |
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336 /** min keysize (octets) */ |
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337 int min_key_length, |
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338 /** max keysize (octets) */ |
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339 max_key_length, |
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340 /** block size (octets) */ |
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341 block_length, |
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342 /** default number of rounds */ |
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343 default_rounds; |
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344 /** Setup the cipher |
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345 @param key The input symmetric key |
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346 @param keylen The length of the input key (octets) |
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347 @param num_rounds The requested number of rounds (0==default) |
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348 @param skey [out] The destination of the scheduled key |
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349 @return CRYPT_OK if successful |
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350 */ |
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351 int (*setup)(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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352 /** Encrypt a block |
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353 @param pt The plaintext |
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354 @param ct [out] The ciphertext |
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355 @param skey The scheduled key |
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356 @return CRYPT_OK if successful |
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357 */ |
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358 int (*ecb_encrypt)(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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359 /** Decrypt a block |
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360 @param ct The ciphertext |
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361 @param pt [out] The plaintext |
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362 @param skey The scheduled key |
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363 @return CRYPT_OK if successful |
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364 */ |
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365 int (*ecb_decrypt)(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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366 /** Test the block cipher |
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367 @return CRYPT_OK if successful, CRYPT_NOP if self-testing has been disabled |
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368 */ |
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369 int (*test)(void); |
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370 |
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371 /** Terminate the context |
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372 @param skey The scheduled key |
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373 */ |
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374 void (*done)(symmetric_key *skey); |
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375 |
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376 /** Determine a key size |
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377 @param keysize [in/out] The size of the key desired and the suggested size |
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378 @return CRYPT_OK if successful |
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379 */ |
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380 int (*keysize)(int *keysize); |
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381 |
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382 /** Accelerators **/ |
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383 /** Accelerated ECB encryption |
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384 @param pt Plaintext |
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385 @param ct Ciphertext |
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386 @param blocks The number of complete blocks to process |
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387 @param skey The scheduled key context |
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388 @return CRYPT_OK if successful |
285
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389 */ |
382
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390 int (*accel_ecb_encrypt)(const unsigned char *pt, unsigned char *ct, unsigned long blocks, symmetric_key *skey); |
285
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391 |
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392 /** Accelerated ECB decryption |
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393 @param pt Plaintext |
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394 @param ct Ciphertext |
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395 @param blocks The number of complete blocks to process |
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396 @param skey The scheduled key context |
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397 @return CRYPT_OK if successful |
285
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398 */ |
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399 int (*accel_ecb_decrypt)(const unsigned char *ct, unsigned char *pt, unsigned long blocks, symmetric_key *skey); |
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400 |
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401 /** Accelerated CBC encryption |
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402 @param pt Plaintext |
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403 @param ct Ciphertext |
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404 @param blocks The number of complete blocks to process |
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405 @param IV The initial value (input/output) |
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406 @param skey The scheduled key context |
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407 @return CRYPT_OK if successful |
285
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408 */ |
382
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409 int (*accel_cbc_encrypt)(const unsigned char *pt, unsigned char *ct, unsigned long blocks, unsigned char *IV, symmetric_key *skey); |
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410 |
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411 /** Accelerated CBC decryption |
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412 @param pt Plaintext |
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413 @param ct Ciphertext |
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414 @param blocks The number of complete blocks to process |
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415 @param IV The initial value (input/output) |
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416 @param skey The scheduled key context |
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417 @return CRYPT_OK if successful |
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418 */ |
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419 int (*accel_cbc_decrypt)(const unsigned char *ct, unsigned char *pt, unsigned long blocks, unsigned char *IV, symmetric_key *skey); |
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420 |
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421 /** Accelerated CTR encryption |
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422 @param pt Plaintext |
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423 @param ct Ciphertext |
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424 @param blocks The number of complete blocks to process |
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425 @param IV The initial value (input/output) |
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426 @param mode little or big endian counter (mode=0 or mode=1) |
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427 @param skey The scheduled key context |
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428 @return CRYPT_OK if successful |
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429 */ |
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430 int (*accel_ctr_encrypt)(const unsigned char *pt, unsigned char *ct, unsigned long blocks, unsigned char *IV, int mode, symmetric_key *skey); |
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431 |
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432 /** Accelerated LRW |
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433 @param pt Plaintext |
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434 @param ct Ciphertext |
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435 @param blocks The number of complete blocks to process |
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436 @param IV The initial value (input/output) |
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437 @param tweak The LRW tweak |
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438 @param skey The scheduled key context |
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439 @return CRYPT_OK if successful |
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440 */ |
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441 int (*accel_lrw_encrypt)(const unsigned char *pt, unsigned char *ct, unsigned long blocks, unsigned char *IV, const unsigned char *tweak, symmetric_key *skey); |
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442 |
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443 /** Accelerated LRW |
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444 @param ct Ciphertext |
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445 @param pt Plaintext |
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446 @param blocks The number of complete blocks to process |
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447 @param IV The initial value (input/output) |
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448 @param tweak The LRW tweak |
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449 @param skey The scheduled key context |
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450 @return CRYPT_OK if successful |
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451 */ |
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452 int (*accel_lrw_decrypt)(const unsigned char *ct, unsigned char *pt, unsigned long blocks, unsigned char *IV, const unsigned char *tweak, symmetric_key *skey); |
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453 |
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454 /** Accelerated CCM packet (one-shot) |
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455 @param key The secret key to use |
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456 @param keylen The length of the secret key (octets) |
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457 @param uskey A previously scheduled key [optional can be NULL] |
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458 @param nonce The session nonce [use once] |
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459 @param noncelen The length of the nonce |
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460 @param header The header for the session |
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461 @param headerlen The length of the header (octets) |
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462 @param pt [out] The plaintext |
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463 @param ptlen The length of the plaintext (octets) |
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464 @param ct [out] The ciphertext |
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465 @param tag [out] The destination tag |
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466 @param taglen [in/out] The max size and resulting size of the authentication tag |
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467 @param direction Encrypt or Decrypt direction (0 or 1) |
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468 @return CRYPT_OK if successful |
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469 */ |
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470 int (*accel_ccm_memory)( |
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471 const unsigned char *key, unsigned long keylen, |
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472 symmetric_key *uskey, |
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473 const unsigned char *nonce, unsigned long noncelen, |
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474 const unsigned char *header, unsigned long headerlen, |
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475 unsigned char *pt, unsigned long ptlen, |
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476 unsigned char *ct, |
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477 unsigned char *tag, unsigned long *taglen, |
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478 int direction); |
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479 |
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480 /** Accelerated GCM packet (one shot) |
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481 @param key The secret key |
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482 @param keylen The length of the secret key |
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483 @param IV The initial vector |
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484 @param IVlen The length of the initial vector |
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485 @param adata The additional authentication data (header) |
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486 @param adatalen The length of the adata |
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487 @param pt The plaintext |
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488 @param ptlen The length of the plaintext (ciphertext length is the same) |
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489 @param ct The ciphertext |
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490 @param tag [out] The MAC tag |
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491 @param taglen [in/out] The MAC tag length |
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492 @param direction Encrypt or Decrypt mode (GCM_ENCRYPT or GCM_DECRYPT) |
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493 @return CRYPT_OK on success |
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494 */ |
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495 int (*accel_gcm_memory)( |
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496 const unsigned char *key, unsigned long keylen, |
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497 const unsigned char *IV, unsigned long IVlen, |
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498 const unsigned char *adata, unsigned long adatalen, |
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499 unsigned char *pt, unsigned long ptlen, |
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500 unsigned char *ct, |
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501 unsigned char *tag, unsigned long *taglen, |
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502 int direction); |
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503 |
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504 /** Accelerated one shot LTC_OMAC |
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505 @param key The secret key |
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506 @param keylen The key length (octets) |
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507 @param in The message |
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508 @param inlen Length of message (octets) |
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509 @param out [out] Destination for tag |
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510 @param outlen [in/out] Initial and final size of out |
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511 @return CRYPT_OK on success |
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512 */ |
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513 int (*omac_memory)( |
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514 const unsigned char *key, unsigned long keylen, |
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515 const unsigned char *in, unsigned long inlen, |
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516 unsigned char *out, unsigned long *outlen); |
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517 |
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518 /** Accelerated one shot XCBC |
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519 @param key The secret key |
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520 @param keylen The key length (octets) |
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521 @param in The message |
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522 @param inlen Length of message (octets) |
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523 @param out [out] Destination for tag |
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524 @param outlen [in/out] Initial and final size of out |
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525 @return CRYPT_OK on success |
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526 */ |
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527 int (*xcbc_memory)( |
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528 const unsigned char *key, unsigned long keylen, |
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529 const unsigned char *in, unsigned long inlen, |
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530 unsigned char *out, unsigned long *outlen); |
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531 |
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532 /** Accelerated one shot F9 |
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533 @param key The secret key |
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534 @param keylen The key length (octets) |
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535 @param in The message |
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536 @param inlen Length of message (octets) |
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537 @param out [out] Destination for tag |
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538 @param outlen [in/out] Initial and final size of out |
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539 @return CRYPT_OK on success |
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540 @remark Requires manual padding |
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541 */ |
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542 int (*f9_memory)( |
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543 const unsigned char *key, unsigned long keylen, |
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544 const unsigned char *in, unsigned long inlen, |
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545 unsigned char *out, unsigned long *outlen); |
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546 } cipher_descriptor[]; |
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547 |
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548 #ifdef LTC_BLOWFISH |
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549 int blowfish_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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550 int blowfish_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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551 int blowfish_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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552 int blowfish_test(void); |
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553 void blowfish_done(symmetric_key *skey); |
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554 int blowfish_keysize(int *keysize); |
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555 extern const struct ltc_cipher_descriptor blowfish_desc; |
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556 #endif |
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557 |
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558 #ifdef LTC_RC5 |
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559 int rc5_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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560 int rc5_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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561 int rc5_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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562 int rc5_test(void); |
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563 void rc5_done(symmetric_key *skey); |
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564 int rc5_keysize(int *keysize); |
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565 extern const struct ltc_cipher_descriptor rc5_desc; |
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566 #endif |
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567 |
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568 #ifdef LTC_RC6 |
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569 int rc6_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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570 int rc6_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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571 int rc6_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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572 int rc6_test(void); |
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573 void rc6_done(symmetric_key *skey); |
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574 int rc6_keysize(int *keysize); |
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575 extern const struct ltc_cipher_descriptor rc6_desc; |
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576 #endif |
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577 |
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578 #ifdef LTC_RC2 |
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579 int rc2_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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580 int rc2_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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581 int rc2_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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582 int rc2_test(void); |
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583 void rc2_done(symmetric_key *skey); |
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584 int rc2_keysize(int *keysize); |
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585 extern const struct ltc_cipher_descriptor rc2_desc; |
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586 #endif |
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587 |
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588 #ifdef LTC_SAFERP |
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589 int saferp_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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590 int saferp_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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591 int saferp_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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592 int saferp_test(void); |
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593 void saferp_done(symmetric_key *skey); |
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594 int saferp_keysize(int *keysize); |
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595 extern const struct ltc_cipher_descriptor saferp_desc; |
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596 #endif |
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597 |
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598 #ifdef LTC_SAFER |
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599 int safer_k64_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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600 int safer_sk64_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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601 int safer_k128_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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602 int safer_sk128_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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603 int safer_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *key); |
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604 int safer_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *key); |
285
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605 int safer_k64_test(void); |
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606 int safer_sk64_test(void); |
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607 int safer_sk128_test(void); |
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608 void safer_done(symmetric_key *skey); |
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609 int safer_64_keysize(int *keysize); |
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610 int safer_128_keysize(int *keysize); |
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611 extern const struct ltc_cipher_descriptor safer_k64_desc, safer_k128_desc, safer_sk64_desc, safer_sk128_desc; |
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612 #endif |
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613 |
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614 #ifdef LTC_RIJNDAEL |
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615 |
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616 /* make aes an alias */ |
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617 #define aes_setup rijndael_setup |
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618 #define aes_ecb_encrypt rijndael_ecb_encrypt |
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619 #define aes_ecb_decrypt rijndael_ecb_decrypt |
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620 #define aes_test rijndael_test |
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621 #define aes_done rijndael_done |
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622 #define aes_keysize rijndael_keysize |
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623 |
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624 #define aes_enc_setup rijndael_enc_setup |
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625 #define aes_enc_ecb_encrypt rijndael_enc_ecb_encrypt |
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626 #define aes_enc_keysize rijndael_enc_keysize |
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627 |
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628 int rijndael_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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629 int rijndael_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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630 int rijndael_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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631 int rijndael_test(void); |
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632 void rijndael_done(symmetric_key *skey); |
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633 int rijndael_keysize(int *keysize); |
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634 int rijndael_enc_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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635 int rijndael_enc_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
285
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636 void rijndael_enc_done(symmetric_key *skey); |
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637 int rijndael_enc_keysize(int *keysize); |
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638 extern const struct ltc_cipher_descriptor rijndael_desc, aes_desc; |
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639 extern const struct ltc_cipher_descriptor rijndael_enc_desc, aes_enc_desc; |
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640 #endif |
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641 |
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642 #ifdef LTC_XTEA |
285
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643 int xtea_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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644 int xtea_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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645 int xtea_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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646 int xtea_test(void); |
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647 void xtea_done(symmetric_key *skey); |
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648 int xtea_keysize(int *keysize); |
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649 extern const struct ltc_cipher_descriptor xtea_desc; |
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650 #endif |
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651 |
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652 #ifdef LTC_TWOFISH |
285
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653 int twofish_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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654 int twofish_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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655 int twofish_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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656 int twofish_test(void); |
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657 void twofish_done(symmetric_key *skey); |
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658 int twofish_keysize(int *keysize); |
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659 extern const struct ltc_cipher_descriptor twofish_desc; |
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660 #endif |
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661 |
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662 #ifdef LTC_DES |
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663 int des_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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664 int des_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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665 int des_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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666 int des_test(void); |
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667 void des_done(symmetric_key *skey); |
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668 int des_keysize(int *keysize); |
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669 int des3_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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670 int des3_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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671 int des3_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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672 int des3_test(void); |
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673 void des3_done(symmetric_key *skey); |
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674 int des3_keysize(int *keysize); |
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675 extern const struct ltc_cipher_descriptor des_desc, des3_desc; |
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676 #endif |
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677 |
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678 #ifdef LTC_CAST5 |
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679 int cast5_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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680 int cast5_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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681 int cast5_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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682 int cast5_test(void); |
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683 void cast5_done(symmetric_key *skey); |
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684 int cast5_keysize(int *keysize); |
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685 extern const struct ltc_cipher_descriptor cast5_desc; |
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686 #endif |
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687 |
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688 #ifdef LTC_NOEKEON |
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689 int noekeon_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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690 int noekeon_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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691 int noekeon_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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692 int noekeon_test(void); |
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693 void noekeon_done(symmetric_key *skey); |
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694 int noekeon_keysize(int *keysize); |
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695 extern const struct ltc_cipher_descriptor noekeon_desc; |
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696 #endif |
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697 |
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698 #ifdef LTC_SKIPJACK |
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699 int skipjack_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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700 int skipjack_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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701 int skipjack_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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702 int skipjack_test(void); |
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703 void skipjack_done(symmetric_key *skey); |
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704 int skipjack_keysize(int *keysize); |
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705 extern const struct ltc_cipher_descriptor skipjack_desc; |
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706 #endif |
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707 |
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708 #ifdef LTC_KHAZAD |
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709 int khazad_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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710 int khazad_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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711 int khazad_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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712 int khazad_test(void); |
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713 void khazad_done(symmetric_key *skey); |
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714 int khazad_keysize(int *keysize); |
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715 extern const struct ltc_cipher_descriptor khazad_desc; |
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716 #endif |
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717 |
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718 #ifdef LTC_ANUBIS |
285
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719 int anubis_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
382
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720 int anubis_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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721 int anubis_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
285
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722 int anubis_test(void); |
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723 void anubis_done(symmetric_key *skey); |
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724 int anubis_keysize(int *keysize); |
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725 extern const struct ltc_cipher_descriptor anubis_desc; |
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726 #endif |
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727 |
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728 #ifdef LTC_KSEED |
382
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729 int kseed_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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730 int kseed_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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731 int kseed_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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732 int kseed_test(void); |
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733 void kseed_done(symmetric_key *skey); |
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|
734 int kseed_keysize(int *keysize); |
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735 extern const struct ltc_cipher_descriptor kseed_desc; |
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diff
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736 #endif |
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diff
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|
737 |
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|
738 #ifdef LTC_KASUMI |
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Matt Johnston <matt@ucc.asn.au>
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diff
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739 int kasumi_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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diff
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740 int kasumi_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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Matt Johnston <matt@ucc.asn.au>
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diff
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741 int kasumi_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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Matt Johnston <matt@ucc.asn.au>
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diff
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|
742 int kasumi_test(void); |
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743 void kasumi_done(symmetric_key *skey); |
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744 int kasumi_keysize(int *keysize); |
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745 extern const struct ltc_cipher_descriptor kasumi_desc; |
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diff
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746 #endif |
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747 |
1435
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748 |
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|
749 #ifdef LTC_MULTI2 |
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750 int multi2_setup(const unsigned char *key, int keylen, int num_rounds, symmetric_key *skey); |
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751 int multi2_ecb_encrypt(const unsigned char *pt, unsigned char *ct, symmetric_key *skey); |
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update to libtomcrypt 1.17 (with Dropbear changes)
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752 int multi2_ecb_decrypt(const unsigned char *ct, unsigned char *pt, symmetric_key *skey); |
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753 int multi2_test(void); |
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754 void multi2_done(symmetric_key *skey); |
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755 int multi2_keysize(int *keysize); |
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diff
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756 extern const struct ltc_cipher_descriptor multi2_desc; |
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757 #endif |
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|
758 |
382
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759 #ifdef LTC_ECB_MODE |
285
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Matt Johnston <matt@ucc.asn.au>
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|
760 int ecb_start(int cipher, const unsigned char *key, |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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|
761 int keylen, int num_rounds, symmetric_ECB *ecb); |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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762 int ecb_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_ECB *ecb); |
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Matt Johnston <matt@ucc.asn.au>
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763 int ecb_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_ECB *ecb); |
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Matt Johnston <matt@ucc.asn.au>
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764 int ecb_done(symmetric_ECB *ecb); |
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765 #endif |
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766 |
382
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767 #ifdef LTC_CFB_MODE |
285
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|
768 int cfb_start(int cipher, const unsigned char *IV, const unsigned char *key, |
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Matt Johnston <matt@ucc.asn.au>
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769 int keylen, int num_rounds, symmetric_CFB *cfb); |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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770 int cfb_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_CFB *cfb); |
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Matt Johnston <matt@ucc.asn.au>
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771 int cfb_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_CFB *cfb); |
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772 int cfb_getiv(unsigned char *IV, unsigned long *len, symmetric_CFB *cfb); |
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diff
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|
773 int cfb_setiv(const unsigned char *IV, unsigned long len, symmetric_CFB *cfb); |
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Matt Johnston <matt@ucc.asn.au>
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|
774 int cfb_done(symmetric_CFB *cfb); |
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Matt Johnston <matt@ucc.asn.au>
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775 #endif |
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776 |
382
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777 #ifdef LTC_OFB_MODE |
285
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778 int ofb_start(int cipher, const unsigned char *IV, const unsigned char *key, |
1b9e69c058d2
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779 int keylen, int num_rounds, symmetric_OFB *ofb); |
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Matt Johnston <matt@ucc.asn.au>
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780 int ofb_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_OFB *ofb); |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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781 int ofb_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_OFB *ofb); |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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782 int ofb_getiv(unsigned char *IV, unsigned long *len, symmetric_OFB *ofb); |
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783 int ofb_setiv(const unsigned char *IV, unsigned long len, symmetric_OFB *ofb); |
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Matt Johnston <matt@ucc.asn.au>
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784 int ofb_done(symmetric_OFB *ofb); |
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785 #endif |
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786 |
382
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787 #ifdef LTC_CBC_MODE |
285
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788 int cbc_start(int cipher, const unsigned char *IV, const unsigned char *key, |
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789 int keylen, int num_rounds, symmetric_CBC *cbc); |
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790 int cbc_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_CBC *cbc); |
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791 int cbc_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_CBC *cbc); |
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792 int cbc_getiv(unsigned char *IV, unsigned long *len, symmetric_CBC *cbc); |
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793 int cbc_setiv(const unsigned char *IV, unsigned long len, symmetric_CBC *cbc); |
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794 int cbc_done(symmetric_CBC *cbc); |
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|
795 #endif |
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796 |
382
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|
797 #ifdef LTC_CTR_MODE |
285
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798 |
1435
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|
799 #define CTR_COUNTER_LITTLE_ENDIAN 0x0000 |
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800 #define CTR_COUNTER_BIG_ENDIAN 0x1000 |
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801 #define LTC_CTR_RFC3686 0x2000 |
285
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802 |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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|
803 int ctr_start( int cipher, |
1b9e69c058d2
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Matt Johnston <matt@ucc.asn.au>
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804 const unsigned char *IV, |
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805 const unsigned char *key, int keylen, |
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806 int num_rounds, int ctr_mode, |
1b9e69c058d2
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|
807 symmetric_CTR *ctr); |
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808 int ctr_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_CTR *ctr); |
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809 int ctr_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_CTR *ctr); |
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810 int ctr_getiv(unsigned char *IV, unsigned long *len, symmetric_CTR *ctr); |
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811 int ctr_setiv(const unsigned char *IV, unsigned long len, symmetric_CTR *ctr); |
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812 int ctr_done(symmetric_CTR *ctr); |
382
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813 int ctr_test(void); |
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814 #endif |
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815 |
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816 #ifdef LTC_LRW_MODE |
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817 |
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818 #define LRW_ENCRYPT 0 |
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819 #define LRW_DECRYPT 1 |
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820 |
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821 int lrw_start( int cipher, |
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822 const unsigned char *IV, |
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823 const unsigned char *key, int keylen, |
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824 const unsigned char *tweak, |
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825 int num_rounds, |
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826 symmetric_LRW *lrw); |
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827 int lrw_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_LRW *lrw); |
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828 int lrw_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_LRW *lrw); |
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829 int lrw_getiv(unsigned char *IV, unsigned long *len, symmetric_LRW *lrw); |
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830 int lrw_setiv(const unsigned char *IV, unsigned long len, symmetric_LRW *lrw); |
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831 int lrw_done(symmetric_LRW *lrw); |
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832 int lrw_test(void); |
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833 |
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834 /* don't call */ |
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835 int lrw_process(const unsigned char *pt, unsigned char *ct, unsigned long len, int mode, symmetric_LRW *lrw); |
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836 #endif |
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837 |
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838 #ifdef LTC_F8_MODE |
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839 int f8_start( int cipher, const unsigned char *IV, |
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840 const unsigned char *key, int keylen, |
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841 const unsigned char *salt_key, int skeylen, |
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842 int num_rounds, symmetric_F8 *f8); |
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843 int f8_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_F8 *f8); |
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844 int f8_decrypt(const unsigned char *ct, unsigned char *pt, unsigned long len, symmetric_F8 *f8); |
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845 int f8_getiv(unsigned char *IV, unsigned long *len, symmetric_F8 *f8); |
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846 int f8_setiv(const unsigned char *IV, unsigned long len, symmetric_F8 *f8); |
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847 int f8_done(symmetric_F8 *f8); |
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848 int f8_test_mode(void); |
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849 #endif |
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850 |
1435
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851 #ifdef LTC_XTS_MODE |
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852 typedef struct { |
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853 symmetric_key key1, key2; |
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854 int cipher; |
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855 } symmetric_xts; |
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856 |
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857 int xts_start( int cipher, |
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858 const unsigned char *key1, |
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859 const unsigned char *key2, |
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860 unsigned long keylen, |
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861 int num_rounds, |
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862 symmetric_xts *xts); |
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863 |
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864 int xts_encrypt( |
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865 const unsigned char *pt, unsigned long ptlen, |
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866 unsigned char *ct, |
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867 const unsigned char *tweak, |
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868 symmetric_xts *xts); |
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869 int xts_decrypt( |
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870 const unsigned char *ct, unsigned long ptlen, |
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871 unsigned char *pt, |
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872 const unsigned char *tweak, |
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873 symmetric_xts *xts); |
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874 |
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875 void xts_done(symmetric_xts *xts); |
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876 int xts_test(void); |
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877 void xts_mult_x(unsigned char *I); |
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878 #endif |
382
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879 |
285
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880 int find_cipher(const char *name); |
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881 int find_cipher_any(const char *name, int blocklen, int keylen); |
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882 int find_cipher_id(unsigned char ID); |
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883 int register_cipher(const struct ltc_cipher_descriptor *cipher); |
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884 int unregister_cipher(const struct ltc_cipher_descriptor *cipher); |
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885 int cipher_is_valid(int idx); |
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886 |
382
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887 LTC_MUTEX_PROTO(ltc_cipher_mutex) |
285
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888 |
1435
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889 /* $Source$ */ |
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890 /* $Revision$ */ |
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891 /* $Date$ */ |