| 1 | /* crypto/md32_common.h */ |
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| 2 | /* ==================================================================== |
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| 3 | * Copyright (c) 1999-2007 The OpenSSL Project. All rights reserved. |
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| 4 | * |
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| 5 | * Redistribution and use in source and binary forms, with or without |
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| 6 | * modification, are permitted provided that the following conditions |
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| 7 | * are met: |
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| 8 | * |
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| 9 | * 1. Redistributions of source code must retain the above copyright |
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| 10 | * notice, this list of conditions and the following disclaimer. |
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| 11 | * |
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| 12 | * 2. Redistributions in binary form must reproduce the above copyright |
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| 13 | * notice, this list of conditions and the following disclaimer in |
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| 14 | * the documentation and/or other materials provided with the |
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| 15 | * distribution. |
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| 16 | * |
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| 17 | * 3. All advertising materials mentioning features or use of this |
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| 18 | * software must display the following acknowledgment: |
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| 19 | * "This product includes software developed by the OpenSSL Project |
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| 20 | * for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)" |
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| 21 | * |
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| 22 | * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to |
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| 23 | * endorse or promote products derived from this software without |
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| 24 | * prior written permission. For written permission, please contact |
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| 25 | * licensing@OpenSSL.org. |
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| 26 | * |
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| 27 | * 5. Products derived from this software may not be called "OpenSSL" |
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| 28 | * nor may "OpenSSL" appear in their names without prior written |
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| 29 | * permission of the OpenSSL Project. |
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| 30 | * |
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| 31 | * 6. Redistributions of any form whatsoever must retain the following |
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| 32 | * acknowledgment: |
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| 33 | * "This product includes software developed by the OpenSSL Project |
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| 34 | * for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)" |
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| 35 | * |
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| 36 | * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY |
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| 37 | * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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| 38 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR |
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| 39 | * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR |
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| 40 | * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
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| 41 | * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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| 42 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; |
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| 43 | * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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| 44 | * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, |
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| 45 | * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) |
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| 46 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED |
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| 47 | * OF THE POSSIBILITY OF SUCH DAMAGE. |
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| 48 | * ==================================================================== |
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| 49 | * |
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| 50 | */ |
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| 51 | |
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| 52 | /* |
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| 53 | * This is a generic 32 bit "collector" for message digest algorithms. |
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| 54 | * Whenever needed it collects input character stream into chunks of |
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| 55 | * 32 bit values and invokes a block function that performs actual hash |
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| 56 | * calculations. |
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| 57 | * |
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| 58 | * Porting guide. |
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| 59 | * |
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| 60 | * Obligatory macros: |
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| 61 | * |
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| 62 | * DATA_ORDER_IS_BIG_ENDIAN or DATA_ORDER_IS_LITTLE_ENDIAN |
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| 63 | * this macro defines byte order of input stream. |
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| 64 | * HASH_CBLOCK |
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| 65 | * size of a unit chunk HASH_BLOCK operates on. |
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| 66 | * HASH_LONG |
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| 67 | * has to be at lest 32 bit wide, if it's wider, then |
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| 68 | * HASH_LONG_LOG2 *has to* be defined along |
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| 69 | * HASH_CTX |
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| 70 | * context structure that at least contains following |
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| 71 | * members: |
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| 72 | * typedef struct { |
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| 73 | * ... |
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| 74 | * HASH_LONG Nl,Nh; |
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| 75 | * either { |
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| 76 | * HASH_LONG data[HASH_LBLOCK]; |
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| 77 | * unsigned char data[HASH_CBLOCK]; |
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| 78 | * }; |
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| 79 | * unsigned int num; |
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| 80 | * ... |
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| 81 | * } HASH_CTX; |
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| 82 | * data[] vector is expected to be zeroed upon first call to |
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| 83 | * HASH_UPDATE. |
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| 84 | * HASH_UPDATE |
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| 85 | * name of "Update" function, implemented here. |
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| 86 | * HASH_TRANSFORM |
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| 87 | * name of "Transform" function, implemented here. |
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| 88 | * HASH_FINAL |
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| 89 | * name of "Final" function, implemented here. |
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| 90 | * HASH_BLOCK_DATA_ORDER |
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| 91 | * name of "block" function capable of treating *unaligned* input |
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| 92 | * message in original (data) byte order, implemented externally. |
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| 93 | * HASH_MAKE_STRING |
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| 94 | * macro convering context variables to an ASCII hash string. |
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| 95 | * |
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| 96 | * MD5 example: |
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| 97 | * |
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| 98 | * #define DATA_ORDER_IS_LITTLE_ENDIAN |
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| 99 | * |
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| 100 | * #define HASH_LONG MD5_LONG |
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| 101 | * #define HASH_LONG_LOG2 MD5_LONG_LOG2 |
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| 102 | * #define HASH_CTX MD5_CTX |
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| 103 | * #define HASH_CBLOCK MD5_CBLOCK |
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| 104 | * #define HASH_UPDATE MD5_Update |
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| 105 | * #define HASH_TRANSFORM MD5_Transform |
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| 106 | * #define HASH_FINAL MD5_Final |
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| 107 | * #define HASH_BLOCK_DATA_ORDER md5_block_data_order |
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| 108 | * |
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| 109 | * <appro@fy.chalmers.se> |
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| 110 | */ |
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| 111 | |
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| 112 | #if !defined(DATA_ORDER_IS_BIG_ENDIAN) && !defined(DATA_ORDER_IS_LITTLE_ENDIAN) |
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| 113 | #error "DATA_ORDER must be defined!" |
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| 114 | #endif |
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| 115 | |
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| 116 | #ifndef HASH_CBLOCK |
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| 117 | #error "HASH_CBLOCK must be defined!" |
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| 118 | #endif |
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| 119 | #ifndef HASH_LONG |
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| 120 | #error "HASH_LONG must be defined!" |
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| 121 | #endif |
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| 122 | #ifndef HASH_CTX |
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| 123 | #error "HASH_CTX must be defined!" |
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| 124 | #endif |
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| 125 | |
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| 126 | #ifndef HASH_UPDATE |
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| 127 | #error "HASH_UPDATE must be defined!" |
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| 128 | #endif |
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| 129 | #ifndef HASH_TRANSFORM |
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| 130 | #error "HASH_TRANSFORM must be defined!" |
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| 131 | #endif |
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| 132 | #ifndef HASH_FINAL |
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| 133 | #error "HASH_FINAL must be defined!" |
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| 134 | #endif |
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| 135 | |
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| 136 | #ifndef HASH_BLOCK_DATA_ORDER |
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| 137 | #error "HASH_BLOCK_DATA_ORDER must be defined!" |
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| 138 | #endif |
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| 139 | |
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| 140 | /* |
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| 141 | * Engage compiler specific rotate intrinsic function if available. |
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| 142 | */ |
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| 143 | #undef ROTATE |
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| 144 | #ifndef PEDANTIC |
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| 145 | # if defined(_MSC_VER) || defined(__ICC) |
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| 146 | # define ROTATE(a,n) _lrotl(a,n) |
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| 147 | # elif defined(__MWERKS__) |
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| 148 | # if defined(__POWERPC__) |
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| 149 | # define ROTATE(a,n) __rlwinm(a,n,0,31) |
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| 150 | # elif defined(__MC68K__) |
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| 151 | /* Motorola specific tweak. <appro@fy.chalmers.se> */ |
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| 152 | # define ROTATE(a,n) ( n<24 ? __rol(a,n) : __ror(a,32-n) ) |
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| 153 | # else |
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| 154 | # define ROTATE(a,n) __rol(a,n) |
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| 155 | # endif |
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| 156 | # elif defined(__GNUC__) && __GNUC__>=2 && !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM) |
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| 157 | /* |
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| 158 | * Some GNU C inline assembler templates. Note that these are |
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| 159 | * rotates by *constant* number of bits! But that's exactly |
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| 160 | * what we need here... |
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| 161 | * <appro@fy.chalmers.se> |
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| 162 | */ |
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| 163 | # if defined(__i386) || defined(__i386__) || defined(__x86_64) || defined(__x86_64__) |
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| 164 | # define ROTATE(a,n) ({ register unsigned int ret; \ |
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| 165 | asm ( \ |
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| 166 | "roll %1,%0" \ |
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| 167 | : "=r"(ret) \ |
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| 168 | : "I"(n), "0"(a) \ |
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| 169 | : "cc"); \ |
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| 170 | ret; \ |
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| 171 | }) |
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| 172 | # elif defined(_ARCH_PPC) || defined(_ARCH_PPC64) || \ |
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| 173 | defined(__powerpc) || defined(__ppc__) || defined(__powerpc64__) |
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| 174 | # define ROTATE(a,n) ({ register unsigned int ret; \ |
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| 175 | asm ( \ |
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| 176 | "rlwinm %0,%1,%2,0,31" \ |
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| 177 | : "=r"(ret) \ |
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| 178 | : "r"(a), "I"(n)); \ |
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| 179 | ret; \ |
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| 180 | }) |
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| 181 | # elif defined(__s390x__) |
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| 182 | # define ROTATE(a,n) ({ register unsigned int ret; \ |
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| 183 | asm ("rll %0,%1,%2" \ |
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| 184 | : "=r"(ret) \ |
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| 185 | : "r"(a), "I"(n)); \ |
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| 186 | ret; \ |
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| 187 | }) |
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| 188 | # endif |
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| 189 | # endif |
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| 190 | #endif /* PEDANTIC */ |
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| 191 | |
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| 192 | #ifndef ROTATE |
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| 193 | #define ROTATE(a,n) (((a)<<(n))|(((a)&0xffffffff)>>(32-(n)))) |
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| 194 | #endif |
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| 195 | |
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| 196 | #if defined(DATA_ORDER_IS_BIG_ENDIAN) |
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| 197 | |
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| 198 | #ifndef PEDANTIC |
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| 199 | # if defined(__GNUC__) && __GNUC__>=2 && !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM) |
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| 200 | # if ((defined(__i386) || defined(__i386__)) && !defined(I386_ONLY)) || \ |
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| 201 | (defined(__x86_64) || defined(__x86_64__)) |
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| 202 | # if !defined(B_ENDIAN) |
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| 203 | /* |
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| 204 | * This gives ~30-40% performance improvement in SHA-256 compiled |
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| 205 | * with gcc [on P4]. Well, first macro to be frank. We can pull |
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| 206 | * this trick on x86* platforms only, because these CPUs can fetch |
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| 207 | * unaligned data without raising an exception. |
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| 208 | */ |
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| 209 | # define HOST_c2l(c,l) ({ unsigned int r=*((const unsigned int *)(c)); \ |
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| 210 | asm ("bswapl %0":"=r"(r):"0"(r)); \ |
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| 211 | (c)+=4; (l)=r; }) |
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| 212 | # define HOST_l2c(l,c) ({ unsigned int r=(l); \ |
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| 213 | asm ("bswapl %0":"=r"(r):"0"(r)); \ |
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| 214 | *((unsigned int *)(c))=r; (c)+=4; r; }) |
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| 215 | # endif |
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| 216 | # endif |
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| 217 | # endif |
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| 218 | #endif |
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| 219 | #if defined(__s390__) || defined(__s390x__) |
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| 220 | # define HOST_c2l(c,l) ((l)=*((const unsigned int *)(c)), (c)+=4, (l)) |
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| 221 | # define HOST_l2c(l,c) (*((unsigned int *)(c))=(l), (c)+=4, (l)) |
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| 222 | #endif |
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| 223 | |
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| 224 | #ifndef HOST_c2l |
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| 225 | #define HOST_c2l(c,l) (l =(((unsigned long)(*((c)++)))<<24), \ |
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| 226 | l|=(((unsigned long)(*((c)++)))<<16), \ |
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| 227 | l|=(((unsigned long)(*((c)++)))<< 8), \ |
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| 228 | l|=(((unsigned long)(*((c)++))) ), \ |
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| 229 | l) |
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| 230 | #endif |
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| 231 | #ifndef HOST_l2c |
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| 232 | #define HOST_l2c(l,c) (*((c)++)=(unsigned char)(((l)>>24)&0xff), \ |
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| 233 | *((c)++)=(unsigned char)(((l)>>16)&0xff), \ |
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| 234 | *((c)++)=(unsigned char)(((l)>> 8)&0xff), \ |
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| 235 | *((c)++)=(unsigned char)(((l) )&0xff), \ |
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| 236 | l) |
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| 237 | #endif |
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| 238 | |
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| 239 | #elif defined(DATA_ORDER_IS_LITTLE_ENDIAN) |
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| 240 | |
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| 241 | #ifndef PEDANTIC |
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| 242 | # if defined(__GNUC__) && __GNUC__>=2 && !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM) |
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| 243 | # if defined(__s390x__) |
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| 244 | # define HOST_c2l(c,l) ({ asm ("lrv %0,0(%1)" \ |
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| 245 | :"=r"(l) : "r"(c)); \ |
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| 246 | (c)+=4; (l); }) |
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| 247 | # define HOST_l2c(l,c) ({ asm ("strv %0,0(%1)" \ |
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| 248 | : : "r"(l),"r"(c) : "memory"); \ |
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| 249 | (c)+=4; (l); }) |
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| 250 | # endif |
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| 251 | # endif |
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| 252 | #endif |
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| 253 | #if defined(__i386) || defined(__i386__) || defined(__x86_64) || defined(__x86_64__) |
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| 254 | # ifndef B_ENDIAN |
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| 255 | /* See comment in DATA_ORDER_IS_BIG_ENDIAN section. */ |
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| 256 | # define HOST_c2l(c,l) ((l)=*((const unsigned int *)(c)), (c)+=4, l) |
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| 257 | # define HOST_l2c(l,c) (*((unsigned int *)(c))=(l), (c)+=4, l) |
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| 258 | # endif |
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| 259 | #endif |
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| 260 | |
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| 261 | #ifndef HOST_c2l |
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| 262 | #define HOST_c2l(c,l) (l =(((unsigned long)(*((c)++))) ), \ |
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| 263 | l|=(((unsigned long)(*((c)++)))<< 8), \ |
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| 264 | l|=(((unsigned long)(*((c)++)))<<16), \ |
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| 265 | l|=(((unsigned long)(*((c)++)))<<24), \ |
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| 266 | l) |
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| 267 | #endif |
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| 268 | #ifndef HOST_l2c |
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| 269 | #define HOST_l2c(l,c) (*((c)++)=(unsigned char)(((l) )&0xff), \ |
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| 270 | *((c)++)=(unsigned char)(((l)>> 8)&0xff), \ |
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| 271 | *((c)++)=(unsigned char)(((l)>>16)&0xff), \ |
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| 272 | *((c)++)=(unsigned char)(((l)>>24)&0xff), \ |
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| 273 | l) |
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| 274 | #endif |
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| 275 | |
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| 276 | #endif |
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| 277 | |
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| 278 | /* |
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| 279 | * Time for some action:-) |
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| 280 | */ |
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| 281 | |
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| 282 | int HASH_UPDATE (HASH_CTX *c, const void *data_, size_t len) |
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| 283 | { |
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| 284 | const unsigned char *data=data_; |
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| 285 | unsigned char *p; |
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| 286 | HASH_LONG l; |
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| 287 | size_t n; |
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| 288 | |
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| 289 | if (len==0) return 1; |
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| 290 | |
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| 291 | l=(c->Nl+(((HASH_LONG)len)<<3))&0xffffffffUL; |
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| 292 | /* 95-05-24 eay Fixed a bug with the overflow handling, thanks to |
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| 293 | * Wei Dai <weidai@eskimo.com> for pointing it out. */ |
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| 294 | if (l < c->Nl) /* overflow */ |
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| 295 | c->Nh++; |
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| 296 | c->Nh+=(len>>29); /* might cause compiler warning on 16-bit */ |
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| 297 | c->Nl=l; |
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| 298 | |
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| 299 | n = c->num; |
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| 300 | if (n != 0) |
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| 301 | { |
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| 302 | p=(unsigned char *)c->data; |
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| 303 | |
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| 304 | if (len >= HASH_CBLOCK || len+n >= HASH_CBLOCK) |
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| 305 | { |
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| 306 | memcpy (p+n,data,HASH_CBLOCK-n); |
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| 307 | HASH_BLOCK_DATA_ORDER (c,p,1); |
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| 308 | n = HASH_CBLOCK-n; |
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| 309 | data += n; |
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| 310 | len -= n; |
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| 311 | c->num = 0; |
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| 312 | memset (p,0,HASH_CBLOCK); /* keep it zeroed */ |
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| 313 | } |
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| 314 | else |
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| 315 | { |
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| 316 | memcpy (p+n,data,len); |
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| 317 | c->num += (unsigned int)len; |
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| 318 | return 1; |
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| 319 | } |
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| 320 | } |
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| 321 | |
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| 322 | n = len/HASH_CBLOCK; |
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| 323 | if (n > 0) |
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| 324 | { |
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| 325 | HASH_BLOCK_DATA_ORDER (c,data,n); |
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| 326 | n *= HASH_CBLOCK; |
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| 327 | data += n; |
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| 328 | len -= n; |
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| 329 | } |
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| 330 | |
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| 331 | if (len != 0) |
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| 332 | { |
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| 333 | p = (unsigned char *)c->data; |
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| 334 | c->num = len; |
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| 335 | memcpy (p,data,len); |
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| 336 | } |
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| 337 | return 1; |
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| 338 | } |
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| 339 | |
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| 340 | |
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| 341 | void HASH_TRANSFORM (HASH_CTX *c, const unsigned char *data) |
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| 342 | { |
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| 343 | HASH_BLOCK_DATA_ORDER (c,data,1); |
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| 344 | } |
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| 345 | |
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| 346 | |
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| 347 | int HASH_FINAL (unsigned char *md, HASH_CTX *c) |
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| 348 | { |
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| 349 | unsigned char *p = (unsigned char *)c->data; |
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| 350 | size_t n = c->num; |
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| 351 | |
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| 352 | p[n] = 0x80; /* there is always room for one */ |
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| 353 | n++; |
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| 354 | |
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| 355 | if (n > (HASH_CBLOCK-8)) |
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| 356 | { |
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| 357 | memset (p+n,0,HASH_CBLOCK-n); |
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| 358 | n=0; |
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| 359 | HASH_BLOCK_DATA_ORDER (c,p,1); |
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| 360 | } |
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| 361 | memset (p+n,0,HASH_CBLOCK-8-n); |
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| 362 | |
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| 363 | p += HASH_CBLOCK-8; |
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| 364 | #if defined(DATA_ORDER_IS_BIG_ENDIAN) |
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| 365 | (void)HOST_l2c(c->Nh,p); |
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| 366 | (void)HOST_l2c(c->Nl,p); |
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| 367 | #elif defined(DATA_ORDER_IS_LITTLE_ENDIAN) |
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| 368 | (void)HOST_l2c(c->Nl,p); |
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| 369 | (void)HOST_l2c(c->Nh,p); |
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| 370 | #endif |
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| 371 | p -= HASH_CBLOCK; |
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| 372 | HASH_BLOCK_DATA_ORDER (c,p,1); |
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| 373 | c->num=0; |
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| 374 | memset (p,0,HASH_CBLOCK); |
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| 375 | |
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| 376 | #ifndef HASH_MAKE_STRING |
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| 377 | #error "HASH_MAKE_STRING must be defined!" |
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| 378 | #else |
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| 379 | HASH_MAKE_STRING(c,md); |
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| 380 | #endif |
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| 381 | |
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| 382 | return 1; |
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| 383 | } |
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| 384 | |
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| 385 | #ifndef MD32_REG_T |
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| 386 | #define MD32_REG_T long |
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| 387 | /* |
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| 388 | * This comment was originaly written for MD5, which is why it |
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| 389 | * discusses A-D. But it basically applies to all 32-bit digests, |
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| 390 | * which is why it was moved to common header file. |
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| 391 | * |
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| 392 | * In case you wonder why A-D are declared as long and not |
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| 393 | * as MD5_LONG. Doing so results in slight performance |
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| 394 | * boost on LP64 architectures. The catch is we don't |
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| 395 | * really care if 32 MSBs of a 64-bit register get polluted |
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| 396 | * with eventual overflows as we *save* only 32 LSBs in |
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| 397 | * *either* case. Now declaring 'em long excuses the compiler |
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| 398 | * from keeping 32 MSBs zeroed resulting in 13% performance |
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| 399 | * improvement under SPARC Solaris7/64 and 5% under AlphaLinux. |
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| 400 | * Well, to be honest it should say that this *prevents* |
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| 401 | * performance degradation. |
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| 402 | * <appro@fy.chalmers.se> |
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| 403 | * Apparently there're LP64 compilers that generate better |
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| 404 | * code if A-D are declared int. Most notably GCC-x86_64 |
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| 405 | * generates better code. |
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| 406 | * <appro@fy.chalmers.se> |
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| 407 | */ |
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| 408 | #endif |
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