1 | /*
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2 | * Copyright 2010-2021 The OpenSSL Project Authors. All Rights Reserved.
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3 | *
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4 | * Licensed under the Apache License 2.0 (the "License"). You may not use
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5 | * this file except in compliance with the License. You can obtain a copy
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6 | * in the file LICENSE in the source distribution or at
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7 | * https://www.openssl.org/source/license.html
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8 | */
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9 |
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10 | /* This header can move into provider when legacy support is removed */
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11 | #include <openssl/modes.h>
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12 |
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13 | #if (defined(_WIN32) || defined(_WIN64)) && !defined(__MINGW32__)
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14 | typedef __int64 i64;
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15 | typedef unsigned __int64 u64;
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16 | # define U64(C) C##UI64
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17 | #elif defined(__arch64__)
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18 | typedef long i64;
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19 | typedef unsigned long u64;
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20 | # define U64(C) C##UL
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21 | #else
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22 | typedef long long i64;
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23 | typedef unsigned long long u64;
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24 | # define U64(C) C##ULL
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25 | #endif
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26 |
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27 | typedef unsigned int u32;
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28 | typedef unsigned char u8;
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29 |
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30 | #define STRICT_ALIGNMENT 1
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31 | #ifndef PEDANTIC
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32 | # if defined(__i386) || defined(__i386__) || \
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33 | defined(__x86_64) || defined(__x86_64__) || \
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34 | defined(_M_IX86) || defined(_M_AMD64) || defined(_M_X64) || \
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35 | defined(__aarch64__) || \
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36 | defined(__s390__) || defined(__s390x__)
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37 | # undef STRICT_ALIGNMENT
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38 | # endif
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39 | #endif
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40 |
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41 | #if !defined(PEDANTIC) && !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM)
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42 | # if defined(__GNUC__) && __GNUC__>=2
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43 | # if defined(__x86_64) || defined(__x86_64__)
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44 | # define BSWAP8(x) ({ u64 ret_=(x); \
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45 | asm ("bswapq %0" \
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46 | : "+r"(ret_)); ret_; })
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47 | # define BSWAP4(x) ({ u32 ret_=(x); \
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48 | asm ("bswapl %0" \
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49 | : "+r"(ret_)); ret_; })
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50 | # elif (defined(__i386) || defined(__i386__)) && !defined(I386_ONLY)
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51 | # define BSWAP8(x) ({ u32 lo_=(u64)(x)>>32,hi_=(x); \
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52 | asm ("bswapl %0; bswapl %1" \
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53 | : "+r"(hi_),"+r"(lo_)); \
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54 | (u64)hi_<<32|lo_; })
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55 | # define BSWAP4(x) ({ u32 ret_=(x); \
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56 | asm ("bswapl %0" \
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57 | : "+r"(ret_)); ret_; })
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58 | # elif defined(__aarch64__)
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59 | # if defined(__BYTE_ORDER__) && defined(__ORDER_LITTLE_ENDIAN__) && \
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60 | __BYTE_ORDER__==__ORDER_LITTLE_ENDIAN__
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61 | # define BSWAP8(x) ({ u64 ret_; \
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62 | asm ("rev %0,%1" \
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63 | : "=r"(ret_) : "r"(x)); ret_; })
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64 | # define BSWAP4(x) ({ u32 ret_; \
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65 | asm ("rev %w0,%w1" \
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66 | : "=r"(ret_) : "r"(x)); ret_; })
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67 | # endif
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68 | # elif (defined(__arm__) || defined(__arm)) && !defined(STRICT_ALIGNMENT)
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69 | # define BSWAP8(x) ({ u32 lo_=(u64)(x)>>32,hi_=(x); \
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70 | asm ("rev %0,%0; rev %1,%1" \
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71 | : "+r"(hi_),"+r"(lo_)); \
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72 | (u64)hi_<<32|lo_; })
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73 | # define BSWAP4(x) ({ u32 ret_; \
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74 | asm ("rev %0,%1" \
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75 | : "=r"(ret_) : "r"((u32)(x))); \
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76 | ret_; })
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77 | # endif
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78 | # elif defined(_MSC_VER)
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79 | # if _MSC_VER>=1300
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80 | # include <stdlib.h>
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81 | # pragma intrinsic(_byteswap_uint64,_byteswap_ulong)
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82 | # define BSWAP8(x) _byteswap_uint64((u64)(x))
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83 | # define BSWAP4(x) _byteswap_ulong((u32)(x))
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84 | # elif defined(_M_IX86)
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85 | __inline u32 _bswap4(u32 val)
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86 | {
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87 | _asm mov eax, val _asm bswap eax}
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88 | # define BSWAP4(x) _bswap4(x)
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89 | # endif
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90 | # endif
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91 | #endif
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92 | #if defined(BSWAP4) && !defined(STRICT_ALIGNMENT)
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93 | # define GETU32(p) BSWAP4(*(const u32 *)(p))
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94 | # define PUTU32(p,v) *(u32 *)(p) = BSWAP4(v)
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95 | #else
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96 | # define GETU32(p) ((u32)(p)[0]<<24|(u32)(p)[1]<<16|(u32)(p)[2]<<8|(u32)(p)[3])
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97 | # define PUTU32(p,v) ((p)[0]=(u8)((v)>>24),(p)[1]=(u8)((v)>>16),(p)[2]=(u8)((v)>>8),(p)[3]=(u8)(v))
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98 | #endif
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99 | /*- GCM definitions */ typedef struct {
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100 | u64 hi, lo;
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101 | } u128;
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102 |
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103 | #ifdef TABLE_BITS
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104 | # undef TABLE_BITS
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105 | #endif
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106 | /*
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107 | * Even though permitted values for TABLE_BITS are 8, 4 and 1, it should
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108 | * never be set to 8 [or 1]. For further information see gcm128.c.
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109 | */
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110 | #define TABLE_BITS 4
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111 |
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112 | struct gcm128_context {
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113 | /* Following 6 names follow names in GCM specification */
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114 | union {
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115 | u64 u[2];
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116 | u32 d[4];
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117 | u8 c[16];
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118 | size_t t[16 / sizeof(size_t)];
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119 | } Yi, EKi, EK0, len, Xi, H;
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120 | /*
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121 | * Relative position of Xi, H and pre-computed Htable is used in some
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122 | * assembler modules, i.e. don't change the order!
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123 | */
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124 | #if TABLE_BITS==8
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125 | u128 Htable[256];
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126 | #else
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127 | u128 Htable[16];
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128 | void (*gmult) (u64 Xi[2], const u128 Htable[16]);
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129 | void (*ghash) (u64 Xi[2], const u128 Htable[16], const u8 *inp,
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130 | size_t len);
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131 | #endif
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132 | unsigned int mres, ares;
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133 | block128_f block;
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134 | void *key;
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135 | #if !defined(OPENSSL_SMALL_FOOTPRINT)
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136 | unsigned char Xn[48];
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137 | #endif
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138 | };
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139 |
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140 | /*
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141 | * The maximum permitted number of cipher blocks per data unit in XTS mode.
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142 | * Reference IEEE Std 1619-2018.
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143 | */
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144 | #define XTS_MAX_BLOCKS_PER_DATA_UNIT (1<<20)
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145 |
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146 | struct xts128_context {
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147 | void *key1, *key2;
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148 | block128_f block1, block2;
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149 | };
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150 |
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151 | struct ccm128_context {
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152 | union {
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153 | u64 u[2];
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154 | u8 c[16];
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155 | } nonce, cmac;
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156 | u64 blocks;
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157 | block128_f block;
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158 | void *key;
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159 | };
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160 |
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161 | #ifndef OPENSSL_NO_OCB
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162 |
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163 | typedef union {
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164 | u64 a[2];
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165 | unsigned char c[16];
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166 | } OCB_BLOCK;
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167 | # define ocb_block16_xor(in1,in2,out) \
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168 | ( (out)->a[0]=(in1)->a[0]^(in2)->a[0], \
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169 | (out)->a[1]=(in1)->a[1]^(in2)->a[1] )
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170 | # if STRICT_ALIGNMENT
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171 | # define ocb_block16_xor_misaligned(in1,in2,out) \
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172 | ocb_block_xor((in1)->c,(in2)->c,16,(out)->c)
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173 | # else
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174 | # define ocb_block16_xor_misaligned ocb_block16_xor
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175 | # endif
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176 |
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177 | struct ocb128_context {
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178 | /* Need both encrypt and decrypt key schedules for decryption */
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179 | block128_f encrypt;
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180 | block128_f decrypt;
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181 | void *keyenc;
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182 | void *keydec;
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183 | ocb128_f stream; /* direction dependent */
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184 | /* Key dependent variables. Can be reused if key remains the same */
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185 | size_t l_index;
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186 | size_t max_l_index;
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187 | OCB_BLOCK l_star;
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188 | OCB_BLOCK l_dollar;
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189 | OCB_BLOCK *l;
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190 | /* Must be reset for each session */
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191 | struct {
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192 | u64 blocks_hashed;
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193 | u64 blocks_processed;
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194 | OCB_BLOCK offset_aad;
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195 | OCB_BLOCK sum;
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196 | OCB_BLOCK offset;
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197 | OCB_BLOCK checksum;
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198 | } sess;
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199 | };
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200 | #endif /* OPENSSL_NO_OCB */
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201 |
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202 | #ifndef OPENSSL_NO_SIV
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203 |
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204 | #define SIV_LEN 16
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205 |
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206 | typedef union siv_block_u {
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207 | uint64_t word[SIV_LEN/sizeof(uint64_t)];
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208 | unsigned char byte[SIV_LEN];
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209 | } SIV_BLOCK;
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210 |
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211 | struct siv128_context {
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212 | /* d stores intermediate results of S2V; it corresponds to D from the
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213 | pseudocode in section 2.4 of RFC 5297. */
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214 | SIV_BLOCK d;
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215 | SIV_BLOCK tag;
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216 | EVP_CIPHER_CTX *cipher_ctx;
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217 | EVP_MAC *mac;
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218 | EVP_MAC_CTX *mac_ctx_init;
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219 | int final_ret;
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220 | int crypto_ok;
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221 | };
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222 |
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223 | #endif /* OPENSSL_NO_SIV */
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