source: EcnlProtoTool/trunk/openssl-1.1.0e/crypto/modes/modes_lcl.h@ 331

Last change on this file since 331 was 331, checked in by coas-nagasima, 6 years ago

prototoolに関連するプロジェクトをnewlibからmuslを使うよう変更・更新
ntshellをnewlibの下位の実装から、muslのsyscallの実装に変更・更新
以下のOSSをアップデート
・mruby-1.3.0
・musl-1.1.18
・onigmo-6.1.3
・tcc-0.9.27
以下のOSSを追加
・openssl-1.1.0e
・curl-7.57.0
・zlib-1.2.11
以下のmrbgemsを追加
・iij/mruby-digest
・iij/mruby-env
・iij/mruby-errno
・iij/mruby-iijson
・iij/mruby-ipaddr
・iij/mruby-mock
・iij/mruby-require
・iij/mruby-tls-openssl

  • Property svn:eol-style set to native
  • Property svn:mime-type set to text/x-chdr
File size: 5.8 KB
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1/*
2 * Copyright 2010-2016 The OpenSSL Project Authors. All Rights Reserved.
3 *
4 * Licensed under the OpenSSL license (the "License"). You may not use
5 * this file except in compliance with the License. You can obtain a copy
6 * in the file LICENSE in the source distribution or at
7 * https://www.openssl.org/source/license.html
8 */
9
10#include <openssl/modes.h>
11
12#if (defined(_WIN32) || defined(_WIN64)) && !defined(__MINGW32__)
13typedef __int64 i64;
14typedef unsigned __int64 u64;
15# define U64(C) C##UI64
16#elif defined(__arch64__)
17typedef long i64;
18typedef unsigned long u64;
19# define U64(C) C##UL
20#else
21typedef long long i64;
22typedef unsigned long long u64;
23# define U64(C) C##ULL
24#endif
25
26typedef unsigned int u32;
27typedef unsigned char u8;
28
29#define STRICT_ALIGNMENT 1
30#ifndef PEDANTIC
31# if defined(__i386) || defined(__i386__) || \
32 defined(__x86_64) || defined(__x86_64__) || \
33 defined(_M_IX86) || defined(_M_AMD64) || defined(_M_X64) || \
34 defined(__aarch64__) || \
35 defined(__s390__) || defined(__s390x__)
36# undef STRICT_ALIGNMENT
37# endif
38#endif
39
40#if !defined(PEDANTIC) && !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM)
41# if defined(__GNUC__) && __GNUC__>=2
42# if defined(__x86_64) || defined(__x86_64__)
43# define BSWAP8(x) ({ u64 ret_=(x); \
44 asm ("bswapq %0" \
45 : "+r"(ret_)); ret_; })
46# define BSWAP4(x) ({ u32 ret_=(x); \
47 asm ("bswapl %0" \
48 : "+r"(ret_)); ret_; })
49# elif (defined(__i386) || defined(__i386__)) && !defined(I386_ONLY)
50# define BSWAP8(x) ({ u32 lo_=(u64)(x)>>32,hi_=(x); \
51 asm ("bswapl %0; bswapl %1" \
52 : "+r"(hi_),"+r"(lo_)); \
53 (u64)hi_<<32|lo_; })
54# define BSWAP4(x) ({ u32 ret_=(x); \
55 asm ("bswapl %0" \
56 : "+r"(ret_)); ret_; })
57# elif defined(__aarch64__)
58# define BSWAP8(x) ({ u64 ret_; \
59 asm ("rev %0,%1" \
60 : "=r"(ret_) : "r"(x)); ret_; })
61# define BSWAP4(x) ({ u32 ret_; \
62 asm ("rev %w0,%w1" \
63 : "=r"(ret_) : "r"(x)); ret_; })
64# elif (defined(__arm__) || defined(__arm)) && !defined(STRICT_ALIGNMENT)
65# define BSWAP8(x) ({ u32 lo_=(u64)(x)>>32,hi_=(x); \
66 asm ("rev %0,%0; rev %1,%1" \
67 : "+r"(hi_),"+r"(lo_)); \
68 (u64)hi_<<32|lo_; })
69# define BSWAP4(x) ({ u32 ret_; \
70 asm ("rev %0,%1" \
71 : "=r"(ret_) : "r"((u32)(x))); \
72 ret_; })
73# endif
74# elif defined(_MSC_VER)
75# if _MSC_VER>=1300
76# pragma intrinsic(_byteswap_uint64,_byteswap_ulong)
77# define BSWAP8(x) _byteswap_uint64((u64)(x))
78# define BSWAP4(x) _byteswap_ulong((u32)(x))
79# elif defined(_M_IX86)
80__inline u32 _bswap4(u32 val)
81{
82_asm mov eax, val _asm bswap eax}
83# define BSWAP4(x) _bswap4(x)
84# endif
85# endif
86#endif
87#if defined(BSWAP4) && !defined(STRICT_ALIGNMENT)
88# define GETU32(p) BSWAP4(*(const u32 *)(p))
89# define PUTU32(p,v) *(u32 *)(p) = BSWAP4(v)
90#else
91# define GETU32(p) ((u32)(p)[0]<<24|(u32)(p)[1]<<16|(u32)(p)[2]<<8|(u32)(p)[3])
92# define PUTU32(p,v) ((p)[0]=(u8)((v)>>24),(p)[1]=(u8)((v)>>16),(p)[2]=(u8)((v)>>8),(p)[3]=(u8)(v))
93#endif
94/*- GCM definitions */ typedef struct {
95 u64 hi, lo;
96} u128;
97
98#ifdef TABLE_BITS
99# undef TABLE_BITS
100#endif
101/*
102 * Even though permitted values for TABLE_BITS are 8, 4 and 1, it should
103 * never be set to 8 [or 1]. For further information see gcm128.c.
104 */
105#define TABLE_BITS 4
106
107struct gcm128_context {
108 /* Following 6 names follow names in GCM specification */
109 union {
110 u64 u[2];
111 u32 d[4];
112 u8 c[16];
113 size_t t[16 / sizeof(size_t)];
114 } Yi, EKi, EK0, len, Xi, H;
115 /*
116 * Relative position of Xi, H and pre-computed Htable is used in some
117 * assembler modules, i.e. don't change the order!
118 */
119#if TABLE_BITS==8
120 u128 Htable[256];
121#else
122 u128 Htable[16];
123 void (*gmult) (u64 Xi[2], const u128 Htable[16]);
124 void (*ghash) (u64 Xi[2], const u128 Htable[16], const u8 *inp,
125 size_t len);
126#endif
127 unsigned int mres, ares;
128 block128_f block;
129 void *key;
130};
131
132struct xts128_context {
133 void *key1, *key2;
134 block128_f block1, block2;
135};
136
137struct ccm128_context {
138 union {
139 u64 u[2];
140 u8 c[16];
141 } nonce, cmac;
142 u64 blocks;
143 block128_f block;
144 void *key;
145};
146
147#ifndef OPENSSL_NO_OCB
148
149typedef union {
150 u64 a[2];
151 unsigned char c[16];
152} OCB_BLOCK;
153# define ocb_block16_xor(in1,in2,out) \
154 ( (out)->a[0]=(in1)->a[0]^(in2)->a[0], \
155 (out)->a[1]=(in1)->a[1]^(in2)->a[1] )
156# if STRICT_ALIGNMENT
157# define ocb_block16_xor_misaligned(in1,in2,out) \
158 ocb_block_xor((in1)->c,(in2)->c,16,(out)->c)
159# else
160# define ocb_block16_xor_misaligned ocb_block16_xor
161# endif
162
163struct ocb128_context {
164 /* Need both encrypt and decrypt key schedules for decryption */
165 block128_f encrypt;
166 block128_f decrypt;
167 void *keyenc;
168 void *keydec;
169 ocb128_f stream; /* direction dependent */
170 /* Key dependent variables. Can be reused if key remains the same */
171 size_t l_index;
172 size_t max_l_index;
173 OCB_BLOCK l_star;
174 OCB_BLOCK l_dollar;
175 OCB_BLOCK *l;
176 /* Must be reset for each session */
177 u64 blocks_hashed;
178 u64 blocks_processed;
179 OCB_BLOCK tag;
180 OCB_BLOCK offset_aad;
181 OCB_BLOCK sum;
182 OCB_BLOCK offset;
183 OCB_BLOCK checksum;
184};
185#endif /* OPENSSL_NO_OCB */
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