2009-06-15 22:57:39 +00:00
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/* xnu_uuid.c - transform 64-bit serial number
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to 128-bit uuid suitable for xnu. */
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/*
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* GRUB -- GRand Unified Bootloader
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* Copyright (C) 1995,1996,1998,1999,2001,2002,
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* 2003, 2009 Free Software Foundation, Inc.
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*
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* GRUB is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* GRUB is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with GRUB. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <grub/types.h>
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#include <grub/misc.h>
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#include <grub/mm.h>
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#include <grub/err.h>
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#include <grub/dl.h>
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#include <grub/device.h>
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#include <grub/disk.h>
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#include <grub/fs.h>
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#include <grub/file.h>
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#include <grub/misc.h>
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#include <grub/env.h>
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#include <grub/command.h>
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struct tohash
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{
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grub_uint8_t prefix[16];
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grub_uint64_t serial;
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} __attribute__ ((packed));
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/* This prefix is used by xnu and boot-132 to hash
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together with volume serial. */
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static grub_uint8_t hash_prefix[16]
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= {0xB3, 0xE2, 0x0F, 0x39, 0xF2, 0x92, 0x11, 0xD6,
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0x97, 0xA4, 0x00, 0x30, 0x65, 0x43, 0xEC, 0xAC};
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#define rol(x,n) ( ((x) << (n)) | ((x) >> (32-(n))) )
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#define ror(x,n) ( ((x) >> (n)) | ((x) << (32-(n))) )
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typedef struct {
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grub_uint32_t A,B,C,D; /* chaining variables */
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grub_uint32_t nblocks;
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grub_uint8_t buf[64];
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int count;
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} MD5_CONTEXT;
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static void
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md5_init( void *context )
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{
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MD5_CONTEXT *ctx = context;
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ctx->A = 0x67452301;
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ctx->B = 0xefcdab89;
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ctx->C = 0x98badcfe;
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ctx->D = 0x10325476;
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ctx->nblocks = 0;
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ctx->count = 0;
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}
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/* These are the four functions used in the four steps of the MD5 algorithm
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and defined in the RFC 1321. The first function is a little bit optimized
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(as found in Colin Plumbs public domain implementation). */
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/* #define FF(b, c, d) ((b & c) | (~b & d)) */
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#define FF(b, c, d) (d ^ (b & (c ^ d)))
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#define FG(b, c, d) FF (d, b, c)
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#define FH(b, c, d) (b ^ c ^ d)
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#define FI(b, c, d) (c ^ (b | ~d))
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/****************
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* transform n*64 grub_uint8_ts
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*/
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static void
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transform ( MD5_CONTEXT *ctx, const unsigned char *data )
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{
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grub_uint32_t correct_words[16];
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register grub_uint32_t A = ctx->A;
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register grub_uint32_t B = ctx->B;
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register grub_uint32_t C = ctx->C;
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register grub_uint32_t D = ctx->D;
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grub_uint32_t *cwp = correct_words;
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2009-07-24 01:43:10 +00:00
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#ifdef GRUB_CPU_WORDS_BIGENDIAN
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{
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2009-06-15 22:57:39 +00:00
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int i;
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2009-07-24 01:43:10 +00:00
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const grub_uint32_t *p = (const grub_uint32_t *) data;
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for (i = 0; i < 16; i++)
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correct_words[i] = grub_le_to_cpu32 (p[i]);
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2009-06-15 22:57:39 +00:00
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}
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#else
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2009-07-24 01:43:10 +00:00
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memcpy (correct_words, data, 64);
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2009-06-15 22:57:39 +00:00
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#endif
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#define OP(a, b, c, d, s, T) \
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do \
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{ \
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a += FF (b, c, d) + (*cwp++) + T; \
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a = rol(a, s); \
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a += b; \
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} \
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while (0)
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/* Before we start, one word about the strange constants.
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They are defined in RFC 1321 as
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T[i] = (int) (4294967296.0 * fabs (sin (i))), i=1..64
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*/
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/* Round 1. */
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OP (A, B, C, D, 7, 0xd76aa478);
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OP (D, A, B, C, 12, 0xe8c7b756);
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OP (C, D, A, B, 17, 0x242070db);
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OP (B, C, D, A, 22, 0xc1bdceee);
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OP (A, B, C, D, 7, 0xf57c0faf);
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OP (D, A, B, C, 12, 0x4787c62a);
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OP (C, D, A, B, 17, 0xa8304613);
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OP (B, C, D, A, 22, 0xfd469501);
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OP (A, B, C, D, 7, 0x698098d8);
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OP (D, A, B, C, 12, 0x8b44f7af);
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OP (C, D, A, B, 17, 0xffff5bb1);
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OP (B, C, D, A, 22, 0x895cd7be);
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OP (A, B, C, D, 7, 0x6b901122);
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OP (D, A, B, C, 12, 0xfd987193);
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OP (C, D, A, B, 17, 0xa679438e);
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OP (B, C, D, A, 22, 0x49b40821);
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#undef OP
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#define OP(f, a, b, c, d, k, s, T) \
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do \
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{ \
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a += f (b, c, d) + correct_words[k] + T; \
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a = rol(a, s); \
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a += b; \
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} \
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while (0)
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/* Round 2. */
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OP (FG, A, B, C, D, 1, 5, 0xf61e2562);
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OP (FG, D, A, B, C, 6, 9, 0xc040b340);
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OP (FG, C, D, A, B, 11, 14, 0x265e5a51);
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OP (FG, B, C, D, A, 0, 20, 0xe9b6c7aa);
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OP (FG, A, B, C, D, 5, 5, 0xd62f105d);
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OP (FG, D, A, B, C, 10, 9, 0x02441453);
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OP (FG, C, D, A, B, 15, 14, 0xd8a1e681);
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OP (FG, B, C, D, A, 4, 20, 0xe7d3fbc8);
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OP (FG, A, B, C, D, 9, 5, 0x21e1cde6);
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OP (FG, D, A, B, C, 14, 9, 0xc33707d6);
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OP (FG, C, D, A, B, 3, 14, 0xf4d50d87);
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OP (FG, B, C, D, A, 8, 20, 0x455a14ed);
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OP (FG, A, B, C, D, 13, 5, 0xa9e3e905);
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OP (FG, D, A, B, C, 2, 9, 0xfcefa3f8);
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OP (FG, C, D, A, B, 7, 14, 0x676f02d9);
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OP (FG, B, C, D, A, 12, 20, 0x8d2a4c8a);
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/* Round 3. */
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OP (FH, A, B, C, D, 5, 4, 0xfffa3942);
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OP (FH, D, A, B, C, 8, 11, 0x8771f681);
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OP (FH, C, D, A, B, 11, 16, 0x6d9d6122);
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OP (FH, B, C, D, A, 14, 23, 0xfde5380c);
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OP (FH, A, B, C, D, 1, 4, 0xa4beea44);
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OP (FH, D, A, B, C, 4, 11, 0x4bdecfa9);
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OP (FH, C, D, A, B, 7, 16, 0xf6bb4b60);
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OP (FH, B, C, D, A, 10, 23, 0xbebfbc70);
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OP (FH, A, B, C, D, 13, 4, 0x289b7ec6);
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OP (FH, D, A, B, C, 0, 11, 0xeaa127fa);
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OP (FH, C, D, A, B, 3, 16, 0xd4ef3085);
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OP (FH, B, C, D, A, 6, 23, 0x04881d05);
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OP (FH, A, B, C, D, 9, 4, 0xd9d4d039);
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OP (FH, D, A, B, C, 12, 11, 0xe6db99e5);
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OP (FH, C, D, A, B, 15, 16, 0x1fa27cf8);
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OP (FH, B, C, D, A, 2, 23, 0xc4ac5665);
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/* Round 4. */
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OP (FI, A, B, C, D, 0, 6, 0xf4292244);
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OP (FI, D, A, B, C, 7, 10, 0x432aff97);
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OP (FI, C, D, A, B, 14, 15, 0xab9423a7);
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OP (FI, B, C, D, A, 5, 21, 0xfc93a039);
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OP (FI, A, B, C, D, 12, 6, 0x655b59c3);
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OP (FI, D, A, B, C, 3, 10, 0x8f0ccc92);
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OP (FI, C, D, A, B, 10, 15, 0xffeff47d);
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OP (FI, B, C, D, A, 1, 21, 0x85845dd1);
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OP (FI, A, B, C, D, 8, 6, 0x6fa87e4f);
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OP (FI, D, A, B, C, 15, 10, 0xfe2ce6e0);
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OP (FI, C, D, A, B, 6, 15, 0xa3014314);
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OP (FI, B, C, D, A, 13, 21, 0x4e0811a1);
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OP (FI, A, B, C, D, 4, 6, 0xf7537e82);
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OP (FI, D, A, B, C, 11, 10, 0xbd3af235);
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OP (FI, C, D, A, B, 2, 15, 0x2ad7d2bb);
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OP (FI, B, C, D, A, 9, 21, 0xeb86d391);
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/* Put checksum in context given as argument. */
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ctx->A += A;
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ctx->B += B;
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ctx->C += C;
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ctx->D += D;
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}
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/* The routine updates the message-digest context to
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* account for the presence of each of the characters inBuf[0..inLen-1]
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* in the message whose digest is being computed.
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*/
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static void
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md5_write( void *context, const void *inbuf_arg , grub_size_t inlen)
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{
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const unsigned char *inbuf = inbuf_arg;
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MD5_CONTEXT *hd = context;
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if( hd->count == 64 ) /* flush the buffer */
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{
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transform( hd, hd->buf );
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// _gcry_burn_stack (80+6*sizeof(void*));
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hd->count = 0;
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hd->nblocks++;
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}
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if( !inbuf )
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return;
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if( hd->count )
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{
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for( ; inlen && hd->count < 64; inlen-- )
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hd->buf[hd->count++] = *inbuf++;
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md5_write( hd, NULL, 0 );
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if( !inlen )
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return;
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}
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// _gcry_burn_stack (80+6*sizeof(void*));
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while( inlen >= 64 )
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{
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transform( hd, inbuf );
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hd->count = 0;
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hd->nblocks++;
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inlen -= 64;
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inbuf += 64;
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}
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for( ; inlen && hd->count < 64; inlen-- )
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hd->buf[hd->count++] = *inbuf++;
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}
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/* The routine final terminates the message-digest computation and
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* ends with the desired message digest in mdContext->digest[0...15].
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* The handle is prepared for a new MD5 cycle.
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* Returns 16 grub_uint8_ts representing the digest.
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*/
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static void
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md5_final( void *context)
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{
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MD5_CONTEXT *hd = context;
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grub_uint32_t t, msb, lsb;
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2009-07-24 01:43:10 +00:00
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grub_uint32_t *p;
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2009-06-15 22:57:39 +00:00
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md5_write(hd, NULL, 0); /* flush */;
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t = hd->nblocks;
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/* multiply by 64 to make a grub_uint8_t count */
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lsb = t << 6;
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msb = t >> 26;
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/* add the count */
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t = lsb;
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if( (lsb += hd->count) < t )
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msb++;
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/* multiply by 8 to make a bit count */
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t = lsb;
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lsb <<= 3;
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msb <<= 3;
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msb |= t >> 29;
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if( hd->count < 56 ) /* enough room */
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{
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hd->buf[hd->count++] = 0x80; /* pad */
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while( hd->count < 56 )
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hd->buf[hd->count++] = 0; /* pad */
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}
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else /* need one extra block */
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{
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hd->buf[hd->count++] = 0x80; /* pad character */
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while( hd->count < 64 )
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hd->buf[hd->count++] = 0;
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md5_write(hd, NULL, 0); /* flush */;
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grub_memset(hd->buf, 0, 56 ); /* fill next block with zeroes */
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}
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/* append the 64 bit count */
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hd->buf[56] = lsb ;
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hd->buf[57] = lsb >> 8;
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hd->buf[58] = lsb >> 16;
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hd->buf[59] = lsb >> 24;
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hd->buf[60] = msb ;
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hd->buf[61] = msb >> 8;
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hd->buf[62] = msb >> 16;
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hd->buf[63] = msb >> 24;
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transform( hd, hd->buf );
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// _gcry_burn_stack (80+6*sizeof(void*));
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2009-07-24 01:43:10 +00:00
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p = (grub_uint32_t *) hd->buf;
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#define X(a) do { *p = grub_le_to_cpu32 (hd->a); p++; } while (0)
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2009-06-15 22:57:39 +00:00
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X(A);
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X(B);
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X(C);
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X(D);
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#undef X
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}
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/**
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* GRUB2 Crypto Interface
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* Written by Michael Gorven
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*/
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static grub_err_t
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md5 (const char *in, grub_size_t insize, char *out)
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{
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MD5_CONTEXT hd;
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md5_init (&hd);
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md5_write (&hd, in, insize);
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md5_final (&hd);
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grub_memcpy (out, hd.buf, 16);
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return GRUB_ERR_NONE;
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}
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static grub_err_t
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grub_cmd_xnu_uuid (grub_command_t cmd __attribute__ ((unused)),
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int argc, char **args)
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{
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struct tohash hashme;
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grub_uint8_t xnu_uuid[16];
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char uuid_string[sizeof ("xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx")];
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char *ptr;
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if (argc < 1)
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return grub_error (GRUB_ERR_BAD_ARGUMENT, "UUID required");
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hashme.serial = grub_cpu_to_be64 (grub_strtoull (args[0], 0, 16));
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grub_memcpy (hashme.prefix, hash_prefix, sizeof (hashme.prefix));
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md5 ((char *) &hashme, sizeof (hashme), (char *) xnu_uuid);
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xnu_uuid[6] = (xnu_uuid[6] & 0xf) | 0x30;
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xnu_uuid[8] = (xnu_uuid[8] & 0x3f) | 0x80;
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grub_sprintf (uuid_string,
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"%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
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(unsigned int) xnu_uuid[0], (unsigned int) xnu_uuid[1],
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(unsigned int) xnu_uuid[2], (unsigned int) xnu_uuid[3],
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(unsigned int) xnu_uuid[4], (unsigned int) xnu_uuid[5],
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(unsigned int) ((xnu_uuid[6] & 0xf) | 0x30),
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(unsigned int) xnu_uuid[7],
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(unsigned int) ((xnu_uuid[8] & 0x3f) | 0x80),
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(unsigned int) xnu_uuid[9],
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(unsigned int) xnu_uuid[10], (unsigned int) xnu_uuid[11],
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(unsigned int) xnu_uuid[12], (unsigned int) xnu_uuid[13],
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(unsigned int) xnu_uuid[14], (unsigned int) xnu_uuid[15]);
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for (ptr = uuid_string; *ptr; ptr++)
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*ptr = grub_toupper (*ptr);
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if (argc == 1)
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grub_printf ("%s", uuid_string);
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if (argc > 1)
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grub_env_set (args[1], uuid_string);
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return GRUB_ERR_NONE;
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}
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static grub_command_t cmd;
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GRUB_MOD_INIT (xnu_uuid)
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{
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cmd = grub_register_command ("xnu_uuid", grub_cmd_xnu_uuid,
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"xnu_uuid GRUBUUID [VARNAME]",
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"Transform 64-bit UUID to format "
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"suitable for xnu.");
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}
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GRUB_MOD_FINI (xnu_uuid)
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{
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grub_unregister_command (cmd);
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}
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