[3325] | 1 | /* unpack.c -- decompress files in pack format.
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| 2 |
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| 3 | Copyright (C) 1997, 1999, 2006 Free Software Foundation, Inc.
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| 4 | Copyright (C) 1992-1993 Jean-loup Gailly
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| 5 |
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| 6 | This program is free software; you can redistribute it and/or modify
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| 7 | it under the terms of the GNU General Public License as published by
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| 8 | the Free Software Foundation; either version 2, or (at your option)
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| 9 | any later version.
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| 10 |
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| 11 | This program is distributed in the hope that it will be useful,
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| 12 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 14 | GNU General Public License for more details.
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| 15 |
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| 16 | You should have received a copy of the GNU General Public License
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| 17 | along with this program; if not, write to the Free Software Foundation,
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| 18 | Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. */
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| 19 |
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| 20 | #ifdef RCSID
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| 21 | static char rcsid[] = "$Id: unpack.c,v 1.4 2006/11/20 08:40:34 eggert Exp $";
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| 22 | #endif
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| 23 |
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| 24 | #include <config.h>
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| 25 | #include "tailor.h"
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| 26 | #include "gzip.h"
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| 27 | #include "crypt.h"
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| 28 |
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| 29 | #define MIN(a,b) ((a) <= (b) ? (a) : (b))
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| 30 | /* The arguments must not have side effects. */
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| 31 |
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| 32 | #define MAX_BITLEN 25
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| 33 | /* Maximum length of Huffman codes. (Minor modifications to the code
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| 34 | * would be needed to support 32 bits codes, but pack never generates
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| 35 | * more than 24 bits anyway.)
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| 36 | */
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| 37 |
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| 38 | #define LITERALS 256
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| 39 | /* Number of literals, excluding the End of Block (EOB) code */
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| 40 |
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| 41 | #define MAX_PEEK 12
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| 42 | /* Maximum number of 'peek' bits used to optimize traversal of the
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| 43 | * Huffman tree.
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| 44 | */
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| 45 |
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| 46 | local ulg orig_len; /* original uncompressed length */
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| 47 | local int max_len; /* maximum bit length of Huffman codes */
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| 48 |
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| 49 | local uch literal[LITERALS];
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| 50 | /* The literal bytes present in the Huffman tree. The EOB code is not
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| 51 | * represented.
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| 52 | */
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| 53 |
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| 54 | local int lit_base[MAX_BITLEN+1];
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| 55 | /* All literals of a given bit length are contiguous in literal[] and
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| 56 | * have contiguous codes. literal[code+lit_base[len]] is the literal
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| 57 | * for a code of len bits.
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| 58 | */
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| 59 |
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| 60 | local int leaves [MAX_BITLEN+1]; /* Number of leaves for each bit length */
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| 61 | local int parents[MAX_BITLEN+1]; /* Number of parents for each bit length */
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| 62 |
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| 63 | local int peek_bits; /* Number of peek bits currently used */
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| 64 |
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| 65 | /* local uch prefix_len[1 << MAX_PEEK]; */
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| 66 | #define prefix_len outbuf
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| 67 | /* For each bit pattern b of peek_bits bits, prefix_len[b] is the length
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| 68 | * of the Huffman code starting with a prefix of b (upper bits), or 0
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| 69 | * if all codes of prefix b have more than peek_bits bits. It is not
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| 70 | * necessary to have a huge table (large MAX_PEEK) because most of the
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| 71 | * codes encountered in the input stream are short codes (by construction).
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| 72 | * So for most codes a single lookup will be necessary.
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| 73 | */
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| 74 | #if (1<<MAX_PEEK) > OUTBUFSIZ
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| 75 | error cannot overlay prefix_len and outbuf
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| 76 | #endif
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| 77 |
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| 78 | local ulg bitbuf;
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| 79 | /* Bits are added on the low part of bitbuf and read from the high part. */
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| 80 |
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| 81 | local int valid; /* number of valid bits in bitbuf */
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| 82 | /* all bits above the last valid bit are always zero */
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| 83 |
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| 84 | /* Set code to the next 'bits' input bits without skipping them. code
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| 85 | * must be the name of a simple variable and bits must not have side effects.
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| 86 | * IN assertions: bits <= 25 (so that we still have room for an extra byte
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| 87 | * when valid is only 24), and mask = (1<<bits)-1.
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| 88 | */
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| 89 | #define look_bits(code,bits,mask) \
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| 90 | { \
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| 91 | while (valid < (bits)) bitbuf = (bitbuf<<8) | (ulg)get_byte(), valid += 8; \
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| 92 | code = (bitbuf >> (valid-(bits))) & (mask); \
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| 93 | }
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| 94 |
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| 95 | /* Skip the given number of bits (after having peeked at them): */
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| 96 | #define skip_bits(bits) (valid -= (bits))
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| 97 |
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| 98 | #define clear_bitbuf() (valid = 0, bitbuf = 0)
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| 99 |
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| 100 | /* Local functions */
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| 101 |
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| 102 | local void read_tree OF((void));
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| 103 | local void build_tree OF((void));
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| 104 |
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| 105 | /* ===========================================================================
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| 106 | * Read the Huffman tree.
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| 107 | */
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| 108 | local void read_tree()
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| 109 | {
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| 110 | int len; /* bit length */
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| 111 | int base; /* base offset for a sequence of leaves */
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| 112 | int n;
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| 113 | int max_leaves = 1;
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| 114 |
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| 115 | /* Read the original input size, MSB first */
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| 116 | orig_len = 0;
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| 117 | for (n = 1; n <= 4; n++) orig_len = (orig_len << 8) | (ulg)get_byte();
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| 118 |
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| 119 | max_len = (int)get_byte(); /* maximum bit length of Huffman codes */
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| 120 | if (max_len > MAX_BITLEN) {
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| 121 | gzip_error ("invalid compressed data -- Huffman code > 32 bits");
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| 122 | }
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| 123 |
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| 124 | /* Get the number of leaves at each bit length */
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| 125 | n = 0;
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| 126 | for (len = 1; len <= max_len; len++) {
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| 127 | leaves[len] = (int)get_byte();
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| 128 | if (max_leaves - (len == max_len) < leaves[len])
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| 129 | gzip_error ("too many leaves in Huffman tree");
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| 130 | max_leaves = (max_leaves - leaves[len] + 1) * 2 - 1;
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| 131 | n += leaves[len];
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| 132 | }
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| 133 | if (LITERALS <= n) {
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| 134 | gzip_error ("too many leaves in Huffman tree");
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| 135 | }
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| 136 | Trace((stderr, "orig_len %lu, max_len %d, leaves %d\n",
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| 137 | orig_len, max_len, n));
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| 138 | /* There are at least 2 and at most 256 leaves of length max_len.
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| 139 | * (Pack arbitrarily rejects empty files and files consisting of
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| 140 | * a single byte even repeated.) To fit the last leaf count in a
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| 141 | * byte, it is offset by 2. However, the last literal is the EOB
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| 142 | * code, and is not transmitted explicitly in the tree, so we must
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| 143 | * adjust here by one only.
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| 144 | */
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| 145 | leaves[max_len]++;
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| 146 |
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| 147 | /* Now read the leaves themselves */
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| 148 | base = 0;
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| 149 | for (len = 1; len <= max_len; len++) {
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| 150 | /* Remember where the literals of this length start in literal[] : */
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| 151 | lit_base[len] = base;
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| 152 | /* And read the literals: */
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| 153 | for (n = leaves[len]; n > 0; n--) {
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| 154 | literal[base++] = (uch)get_byte();
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| 155 | }
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| 156 | }
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| 157 | leaves[max_len]++; /* Now include the EOB code in the Huffman tree */
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| 158 | }
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| 159 |
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| 160 | /* ===========================================================================
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| 161 | * Build the Huffman tree and the prefix table.
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| 162 | */
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| 163 | local void build_tree()
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| 164 | {
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| 165 | int nodes = 0; /* number of nodes (parents+leaves) at current bit length */
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| 166 | int len; /* current bit length */
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| 167 | uch *prefixp; /* pointer in prefix_len */
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| 168 |
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| 169 | for (len = max_len; len >= 1; len--) {
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| 170 | /* The number of parent nodes at this level is half the total
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| 171 | * number of nodes at parent level:
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| 172 | */
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| 173 | nodes >>= 1;
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| 174 | parents[len] = nodes;
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| 175 | /* Update lit_base by the appropriate bias to skip the parent nodes
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| 176 | * (which are not represented in the literal array):
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| 177 | */
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| 178 | lit_base[len] -= nodes;
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| 179 | /* Restore nodes to be parents+leaves: */
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| 180 | nodes += leaves[len];
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| 181 | }
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| 182 | /* Construct the prefix table, from shortest leaves to longest ones.
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| 183 | * The shortest code is all ones, so we start at the end of the table.
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| 184 | */
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| 185 | peek_bits = MIN(max_len, MAX_PEEK);
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| 186 | prefixp = &prefix_len[1<<peek_bits];
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| 187 | for (len = 1; len <= peek_bits; len++) {
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| 188 | int prefixes = leaves[len] << (peek_bits-len); /* may be 0 */
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| 189 | while (prefixes--) *--prefixp = (uch)len;
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| 190 | }
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| 191 | /* The length of all other codes is unknown: */
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| 192 | while (prefixp > prefix_len) *--prefixp = 0;
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| 193 | }
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| 194 |
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| 195 | /* ===========================================================================
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| 196 | * Unpack in to out. This routine does not support the old pack format
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| 197 | * with magic header \037\037.
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| 198 | *
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| 199 | * IN assertions: the buffer inbuf contains already the beginning of
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| 200 | * the compressed data, from offsets inptr to insize-1 included.
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| 201 | * The magic header has already been checked. The output buffer is cleared.
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| 202 | */
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| 203 | int unpack(in, out)
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| 204 | int in, out; /* input and output file descriptors */
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| 205 | {
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| 206 | int len; /* Bit length of current code */
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| 207 | unsigned eob; /* End Of Block code */
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| 208 | register unsigned peek; /* lookahead bits */
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| 209 | unsigned peek_mask; /* Mask for peek_bits bits */
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| 210 |
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| 211 | ifd = in;
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| 212 | ofd = out;
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| 213 |
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| 214 | read_tree(); /* Read the Huffman tree */
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| 215 | build_tree(); /* Build the prefix table */
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| 216 | clear_bitbuf(); /* Initialize bit input */
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| 217 | peek_mask = (1<<peek_bits)-1;
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| 218 |
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| 219 | /* The eob code is the largest code among all leaves of maximal length: */
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| 220 | eob = leaves[max_len]-1;
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| 221 | Trace((stderr, "eob %d %x\n", max_len, eob));
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| 222 |
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| 223 | /* Decode the input data: */
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| 224 | for (;;) {
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| 225 | /* Since eob is the longest code and not shorter than max_len,
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| 226 | * we can peek at max_len bits without having the risk of reading
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| 227 | * beyond the end of file.
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| 228 | */
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| 229 | look_bits(peek, peek_bits, peek_mask);
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| 230 | len = prefix_len[peek];
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| 231 | if (len > 0) {
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| 232 | peek >>= peek_bits - len; /* discard the extra bits */
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| 233 | } else {
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| 234 | /* Code of more than peek_bits bits, we must traverse the tree */
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| 235 | ulg mask = peek_mask;
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| 236 | len = peek_bits;
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| 237 | do {
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| 238 | len++, mask = (mask<<1)+1;
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| 239 | look_bits(peek, len, mask);
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| 240 | } while (peek < (unsigned)parents[len]);
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| 241 | /* loop as long as peek is a parent node */
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| 242 | }
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| 243 | /* At this point, peek is the next complete code, of len bits */
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| 244 | if (peek == eob && len == max_len) break; /* end of file? */
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| 245 | put_ubyte(literal[peek+lit_base[len]]);
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| 246 | Tracev((stderr,"%02d %04x %c\n", len, peek,
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| 247 | literal[peek+lit_base[len]]));
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| 248 | skip_bits(len);
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| 249 | } /* for (;;) */
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| 250 |
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| 251 | flush_window();
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| 252 | if (orig_len != (ulg)(bytes_out & 0xffffffff)) {
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| 253 | gzip_error ("invalid compressed data--length error");
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| 254 | }
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| 255 | return OK;
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| 256 | }
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