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238
Source/zlib/DEFLATE.H
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238
Source/zlib/DEFLATE.H
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/* deflate.h -- internal compression state
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* Copyright (C) 1995-1998 Jean-loup Gailly
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* For conditions of distribution and use, see copyright notice in zlib.h
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*/
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#ifndef _DEFLATE_H
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#define _DEFLATE_H
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#include "zutil.h"
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/* ===========================================================================
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* Internal compression state.
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*/
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#define LENGTH_CODES 29
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/* number of length codes, not counting the special END_BLOCK code */
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#define LITERALS 256
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/* number of literal bytes 0..255 */
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#define L_CODES (LITERALS+1+LENGTH_CODES)
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/* number of Literal or Length codes, including the END_BLOCK code */
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#define D_CODES 30
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/* number of distance codes */
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#define BL_CODES 19
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/* number of codes used to transfer the bit lengths */
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#define HEAP_SIZE (2*L_CODES+1)
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/* maximum heap size */
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#define MAX_BITS 15
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/* All codes must not exceed MAX_BITS bits */
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#define INIT_STATE 42
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#define BUSY_STATE 113
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#define FINISH_STATE 666
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/* Stream status */
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/* Data structure describing a single value and its code string. */
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typedef struct ct_data_s {
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union {
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ush freq; /* frequency count */
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ush code; /* bit string */
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} fc;
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union {
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ush dad; /* father node in Huffman tree */
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ush len; /* length of bit string */
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} dl;
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} FAR ct_data;
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#define Freq fc.freq
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#define Code fc.code
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#define Dad dl.dad
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#define Len dl.len
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typedef struct static_tree_desc_s static_tree_desc;
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typedef struct tree_desc_s {
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ct_data *dyn_tree; /* the dynamic tree */
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int max_code; /* largest code with non zero frequency */
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static_tree_desc *stat_desc; /* the corresponding static tree */
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} FAR tree_desc;
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typedef ush Pos;
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typedef Pos FAR Posf;
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typedef unsigned IPos;
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/* A Pos is an index in the character window. We use short instead of int to
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* save space in the various tables. IPos is used only for parameter passing.
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*/
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typedef struct internal_state {
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z_streamp strm; /* pointer back to this zlib stream */
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int status; /* as the name implies */
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Bytef *pending_buf; /* output still pending */
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ulg pending_buf_size; /* size of pending_buf */
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Bytef *pending_out; /* next pending byte to output to the stream */
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int pending; /* nb of bytes in the pending buffer */
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int noheader; /* suppress zlib header and adler32 */
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Byte method; /* STORED (for zip only) or DEFLATED */
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int last_flush; /* value of flush param for previous deflate call */
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/* used by deflate.c: */
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uInt w_size; /* LZ77 window size (32K by default) */
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uInt w_bits; /* log2(w_size) (8..16) */
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uInt w_mask; /* w_size - 1 */
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Bytef *window;
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ulg window_size;
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Posf *prev;
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Posf *head; /* Heads of the hash chains or NIL. */
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uInt ins_h; /* hash index of string to be inserted */
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uInt hash_size; /* number of elements in hash table */
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uInt hash_bits; /* log2(hash_size) */
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uInt hash_mask; /* hash_size-1 */
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uInt hash_shift;
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long block_start;
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uInt match_length; /* length of best match */
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IPos prev_match; /* previous match */
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int match_available; /* set if previous match exists */
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uInt strstart; /* start of string to insert */
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uInt match_start; /* start of matching string */
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uInt lookahead; /* number of valid bytes ahead in window */
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uInt prev_length;
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uInt max_chain_length;
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uInt max_lazy_match;
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# define max_insert_length max_lazy_match
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int level; /* compression level (1..9) */
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int strategy; /* favor or force Huffman coding*/
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uInt good_match;
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int nice_match; /* Stop searching when current match exceeds this */
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struct ct_data_s dyn_ltree[HEAP_SIZE]; /* literal and length tree */
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struct ct_data_s dyn_dtree[2*D_CODES+1]; /* distance tree */
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struct ct_data_s bl_tree[2*BL_CODES+1]; /* Huffman tree for bit lengths */
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struct tree_desc_s l_desc; /* desc. for literal tree */
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struct tree_desc_s d_desc; /* desc. for distance tree */
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struct tree_desc_s bl_desc; /* desc. for bit length tree */
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ush bl_count[MAX_BITS+1];
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/* number of codes at each bit length for an optimal tree */
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int heap[2*L_CODES+1]; /* heap used to build the Huffman trees */
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int heap_len; /* number of elements in the heap */
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int heap_max; /* element of largest frequency */
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uch depth[2*L_CODES+1];
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/* Depth of each subtree used as tie breaker for trees of equal frequency
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*/
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uchf *l_buf; /* buffer for literals or lengths */
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uInt lit_bufsize;
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uInt last_lit; /* running index in l_buf */
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ushf *d_buf;
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ulg opt_len; /* bit length of current block with optimal trees */
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ulg static_len; /* bit length of current block with static trees */
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uInt matches; /* number of string matches in current block */
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int last_eob_len; /* bit length of EOB code for last block */
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#ifdef DEBUG
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ulg compressed_len; /* total bit length of compressed file mod 2^32 */
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ulg bits_sent; /* bit length of compressed data sent mod 2^32 */
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#endif
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ush bi_buf;
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int bi_valid;
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} FAR deflate_state;
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/* Output a byte on the stream.
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* IN assertion: there is enough room in pending_buf.
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*/
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#define put_byte(s, c) {s->pending_buf[s->pending++] = (c);}
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#define MIN_LOOKAHEAD (MAX_MATCH+MIN_MATCH+1)
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/* Minimum amount of lookahead, except at the end of the input file.
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* See deflate.c for comments about the MIN_MATCH+1.
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*/
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#define MAX_DIST(s) ((s)->w_size-MIN_LOOKAHEAD)
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/* In order to simplify the code, particularly on 16 bit machines, match
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* distances are limited to MAX_DIST instead of WSIZE.
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*/
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/* in trees.c */
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void _tr_init OF((deflate_state *s));
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int _tr_tally OF((deflate_state *s, unsigned dist, unsigned lc));
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void _tr_flush_block OF((deflate_state *s, charf *buf, ulg stored_len,
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int eof));
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void _tr_align OF((deflate_state *s));
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void _tr_stored_block OF((deflate_state *s, charf *buf, ulg stored_len,
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int eof));
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#define d_code(dist) \
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((dist) < 256 ? _dist_code[dist] : _dist_code[256+((dist)>>7)])
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/* Mapping from a distance to a distance code. dist is the distance - 1 and
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* must not have side effects. _dist_code[256] and _dist_code[257] are never
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* used.
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*/
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#ifndef DEBUG
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/* Inline versions of _tr_tally for speed: */
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#if defined(GEN_TREES_H) || !defined(STDC)
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extern uch _length_code[];
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extern uch _dist_code[];
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#else
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extern const uch _length_code[];
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extern const uch _dist_code[];
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#endif
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# define _tr_tally_lit(s, c, flush) \
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{ uch cc = (c); \
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s->d_buf[s->last_lit] = 0; \
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s->l_buf[s->last_lit++] = cc; \
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s->dyn_ltree[cc].Freq++; \
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flush = (s->last_lit == s->lit_bufsize-1); \
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}
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# define _tr_tally_dist(s, distance, length, flush) \
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{ uch len = (length); \
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ush dist = (distance); \
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s->d_buf[s->last_lit] = dist; \
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s->l_buf[s->last_lit++] = len; \
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dist--; \
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s->dyn_ltree[_length_code[len]+LITERALS+1].Freq++; \
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s->dyn_dtree[d_code(dist)].Freq++; \
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flush = (s->last_lit == s->lit_bufsize-1); \
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}
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#else
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# define _tr_tally_lit(s, c, flush) flush = _tr_tally(s, 0, c)
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# define _tr_tally_dist(s, distance, length, flush) \
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flush = _tr_tally(s, distance, length)
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#endif
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#endif
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309
Source/zlib/INFBLOCK.C
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309
Source/zlib/INFBLOCK.C
Normal file
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#include "../exehead/config.h"
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#ifdef NSIS_COMPRESS_USE_ZLIB
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/* infblock.c -- interpret and process block types to last block
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* Copyright (C) 1995-1998 Mark Adler
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* For conditions of distribution and use, see copyright notice in zlib.h
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*/
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#include "zutil.h"
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#include "infblock.h"
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#include "inftrees.h"
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#include "infcodes.h"
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#include "infutil.h"
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struct inflate_codes_state {int dummy;}; /* for buggy compilers */
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/* simplify the use of the inflate_huft type with some defines */
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#define exop word.what.Exop
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#define bits word.what.Bits
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local const char border[] = { /* Order of the bit length code lengths */
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16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15};
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void inflate_blocks_reset(s, z, c)
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inflate_blocks_statef *s;
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z_streamp z;
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uLongf *c;
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{
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if (c) *c = s->check;
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if (s->mode == BTREE || s->mode == DTREE)
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ZFREE(z, s->sub.trees.blens);
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if (s->mode == CODES)
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inflate_codes_free(s->sub.decode.codes, z);
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s->mode = TYPE;
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s->bitk = 0;
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s->bitb = 0;
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s->read = s->write = s->window;
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Tracev((stderr, "inflate: blocks reset\n"));
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}
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int inflate_blocks_getssize()
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{
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return sizeof(struct inflate_blocks_state);
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}
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void inflate_blocks_init(z_streamp z,inflate_blocks_statef *s)
|
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{
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s->end = s->window + (1 << DEF_WBITS);
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s->mode = TYPE;
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inflate_blocks_reset(s, z, Z_NULL);
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}
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|
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int inflate_blocks(s, z, r)
|
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inflate_blocks_statef *s;
|
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z_streamp z;
|
||||
int r;
|
||||
{
|
||||
uInt t; /* temporary storage */
|
||||
uLong b; /* bit buffer */
|
||||
uInt k; /* bits in bit buffer */
|
||||
Bytef *p; /* input data pointer */
|
||||
uInt n; /* bytes available there */
|
||||
Bytef *q; /* output window write pointer */
|
||||
uInt m; /* bytes to end of window or read pointer */
|
||||
|
||||
/* copy input/output information to locals (UPDATE macro restores) */
|
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LOAD
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|
||||
/* process input based on current state */
|
||||
for (;;) switch (s->mode)
|
||||
{
|
||||
case TYPE:
|
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NEEDBITS(3)
|
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t = (uInt)b & 7;
|
||||
s->last = t & 1;
|
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switch (t >> 1)
|
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{
|
||||
case 0: /* stored */
|
||||
Tracev((stderr, "inflate: stored block%s\n",
|
||||
s->last ? " (last)" : ""));
|
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DUMPBITS(3)
|
||||
t = k & 7; /* go to byte boundary */
|
||||
DUMPBITS(t)
|
||||
s->mode = LENS; /* get length of stored block */
|
||||
break;
|
||||
case 1: /* fixed */
|
||||
Tracev((stderr, "inflate: fixed codes block%s\n",
|
||||
s->last ? " (last)" : ""));
|
||||
{
|
||||
uInt bl, bd;
|
||||
inflate_huft *tl, *td;
|
||||
|
||||
inflate_trees_fixed(&bl, &bd, &tl, &td, z);
|
||||
s->sub.decode.codes = inflate_codes_new(bl, bd, tl, td, z);
|
||||
if (s->sub.decode.codes == Z_NULL)
|
||||
{
|
||||
r = Z_MEM_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
}
|
||||
DUMPBITS(3)
|
||||
s->mode = CODES;
|
||||
break;
|
||||
case 2: /* dynamic */
|
||||
Tracev((stderr, "inflate: dynamic codes block%s\n",
|
||||
s->last ? " (last)" : ""));
|
||||
DUMPBITS(3)
|
||||
s->mode = TABLE;
|
||||
break;
|
||||
case 3: /* illegal */
|
||||
DUMPBITS(3)
|
||||
s->mode = BAD;
|
||||
// z->msg = (char*)"err";//invalid block type";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
break;
|
||||
case LENS:
|
||||
NEEDBITS(32)
|
||||
if ((((~b) >> 16) & 0xffff) != (b & 0xffff))
|
||||
{
|
||||
s->mode = BAD;
|
||||
// z->msg = (char*)"err";//invalid stored block lengths";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
s->sub.left = (uInt)b & 0xffff;
|
||||
b = k = 0; /* dump bits */
|
||||
Tracev((stderr, "inflate: stored length %u\n", s->sub.left));
|
||||
s->mode = s->sub.left ? STORED : (s->last ? DRY : TYPE);
|
||||
break;
|
||||
case STORED:
|
||||
if (n == 0)
|
||||
LEAVE
|
||||
NEEDOUT
|
||||
t = s->sub.left;
|
||||
if (t > n) t = n;
|
||||
if (t > m) t = m;
|
||||
zmemcpy(q, p, t);
|
||||
p += t; n -= t;
|
||||
q += t; m -= t;
|
||||
if ((s->sub.left -= t) != 0)
|
||||
break;
|
||||
Tracev((stderr, "inflate: stored end, %lu total out\n",
|
||||
z->total_out + (q >= s->read ? q - s->read :
|
||||
(s->end - s->read) + (q - s->window))));
|
||||
s->mode = s->last ? DRY : TYPE;
|
||||
break;
|
||||
case TABLE:
|
||||
NEEDBITS(14)
|
||||
s->sub.trees.table = t = (uInt)b & 0x3fff;
|
||||
#ifndef PKZIP_BUG_WORKAROUND
|
||||
if ((t & 0x1f) > 29 || ((t >> 5) & 0x1f) > 29)
|
||||
{
|
||||
s->mode = BAD;
|
||||
// z->msg = (char*)"err";//too many length or distance symbols";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
#endif
|
||||
t = 258 + (t & 0x1f) + ((t >> 5) & 0x1f);
|
||||
if ((s->sub.trees.blens = (uIntf*)ZALLOC(z, t, sizeof(uInt))) == Z_NULL)
|
||||
{
|
||||
r = Z_MEM_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
DUMPBITS(14)
|
||||
s->sub.trees.index = 0;
|
||||
Tracev((stderr, "inflate: table sizes ok\n"));
|
||||
s->mode = BTREE;
|
||||
case BTREE:
|
||||
while (s->sub.trees.index < 4 + (s->sub.trees.table >> 10))
|
||||
{
|
||||
NEEDBITS(3)
|
||||
s->sub.trees.blens[border[s->sub.trees.index++]] = (uInt)b & 7;
|
||||
DUMPBITS(3)
|
||||
}
|
||||
while (s->sub.trees.index < 19)
|
||||
s->sub.trees.blens[border[s->sub.trees.index++]] = 0;
|
||||
s->sub.trees.bb = 7;
|
||||
t = inflate_trees_bits(s->sub.trees.blens, &s->sub.trees.bb,
|
||||
&s->sub.trees.tb, s->hufts, z);
|
||||
if (t != Z_OK)
|
||||
{
|
||||
ZFREE(z, s->sub.trees.blens);
|
||||
r = t;
|
||||
if (r == Z_DATA_ERROR)
|
||||
s->mode = BAD;
|
||||
LEAVE
|
||||
}
|
||||
s->sub.trees.index = 0;
|
||||
Tracev((stderr, "inflate: bits tree ok\n"));
|
||||
s->mode = DTREE;
|
||||
case DTREE:
|
||||
while (t = s->sub.trees.table,
|
||||
s->sub.trees.index < 258 + (t & 0x1f) + ((t >> 5) & 0x1f))
|
||||
{
|
||||
inflate_huft *h;
|
||||
uInt i, j, c;
|
||||
|
||||
t = s->sub.trees.bb;
|
||||
NEEDBITS(t)
|
||||
h = s->sub.trees.tb + ((uInt)b & (uInt)inflate_mask[t]);
|
||||
t = h->bits;
|
||||
c = h->base;
|
||||
if (c < 16)
|
||||
{
|
||||
DUMPBITS(t)
|
||||
s->sub.trees.blens[s->sub.trees.index++] = c;
|
||||
}
|
||||
else /* c == 16..18 */
|
||||
{
|
||||
i = c == 18 ? 7 : c - 14;
|
||||
j = c == 18 ? 11 : 3;
|
||||
NEEDBITS(t + i)
|
||||
DUMPBITS(t)
|
||||
j += (uInt)b & (uInt)inflate_mask[i];
|
||||
DUMPBITS(i)
|
||||
i = s->sub.trees.index;
|
||||
t = s->sub.trees.table;
|
||||
if (i + j > 258 + (t & 0x1f) + ((t >> 5) & 0x1f) ||
|
||||
(c == 16 && i < 1))
|
||||
{
|
||||
ZFREE(z, s->sub.trees.blens);
|
||||
s->mode = BAD;
|
||||
// z->msg = (char*)"err";//invalid bit length repeat";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
c = c == 16 ? s->sub.trees.blens[i - 1] : 0;
|
||||
do {
|
||||
s->sub.trees.blens[i++] = c;
|
||||
} while (--j);
|
||||
s->sub.trees.index = i;
|
||||
}
|
||||
}
|
||||
s->sub.trees.tb = Z_NULL;
|
||||
{
|
||||
uInt bl, bd;
|
||||
inflate_huft *tl, *td;
|
||||
inflate_codes_statef *c;
|
||||
|
||||
bl = 9; /* must be <= 9 for lookahead assumptions */
|
||||
bd = 6; /* must be <= 9 for lookahead assumptions */
|
||||
t = s->sub.trees.table;
|
||||
t = inflate_trees_dynamic(257 + (t & 0x1f), 1 + ((t >> 5) & 0x1f),
|
||||
s->sub.trees.blens, &bl, &bd, &tl, &td,
|
||||
s->hufts, z);
|
||||
ZFREE(z, s->sub.trees.blens);
|
||||
if (t != Z_OK)
|
||||
{
|
||||
if (t == (uInt)Z_DATA_ERROR)
|
||||
s->mode = BAD;
|
||||
r = t;
|
||||
LEAVE
|
||||
}
|
||||
Tracev((stderr, "inflate: trees ok\n"));
|
||||
if ((c = inflate_codes_new(bl, bd, tl, td, z)) == Z_NULL)
|
||||
{
|
||||
r = Z_MEM_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
s->sub.decode.codes = c;
|
||||
}
|
||||
s->mode = CODES;
|
||||
case CODES:
|
||||
UPDATE
|
||||
if ((r = inflate_codes(s, z, r)) != Z_STREAM_END)
|
||||
return inflate_flush(s, z, r);
|
||||
r = Z_OK;
|
||||
inflate_codes_free(s->sub.decode.codes, z);
|
||||
LOAD
|
||||
Tracev((stderr, "inflate: codes end, %lu total out\n",
|
||||
z->total_out + (q >= s->read ? q - s->read :
|
||||
(s->end - s->read) + (q - s->window))));
|
||||
if (!s->last)
|
||||
{
|
||||
s->mode = TYPE;
|
||||
break;
|
||||
}
|
||||
s->mode = DRY;
|
||||
case DRY:
|
||||
FLUSH
|
||||
if (s->read != s->write)
|
||||
LEAVE
|
||||
s->mode = DONE;
|
||||
case DONE:
|
||||
r = Z_STREAM_END;
|
||||
LEAVE
|
||||
case BAD:
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
default:
|
||||
r = Z_STREAM_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
int inflate_blocks_free(s, z)
|
||||
inflate_blocks_statef *s;
|
||||
z_streamp z;
|
||||
{
|
||||
inflate_blocks_reset(s, z, Z_NULL);
|
||||
ZFREE(z, s);
|
||||
Tracev((stderr, "inflate: blocks freed\n"));
|
||||
return Z_OK;
|
||||
}
|
||||
#endif
|
32
Source/zlib/INFBLOCK.H
Normal file
32
Source/zlib/INFBLOCK.H
Normal file
|
@ -0,0 +1,32 @@
|
|||
/* infblock.h -- header to use infblock.c
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
struct inflate_blocks_state;
|
||||
typedef struct inflate_blocks_state FAR inflate_blocks_statef;
|
||||
|
||||
extern inflate_blocks_statef * inflate_blocks_new OF((
|
||||
z_streamp z)); /* window size */
|
||||
|
||||
extern int inflate_blocks OF((
|
||||
inflate_blocks_statef *,
|
||||
z_streamp ,
|
||||
int)); /* initial return code */
|
||||
|
||||
extern void inflate_blocks_reset OF((
|
||||
inflate_blocks_statef *,
|
||||
z_streamp ,
|
||||
uLongf *)); /* check value on output */
|
||||
|
||||
extern int inflate_blocks_free OF((
|
||||
inflate_blocks_statef *,
|
||||
z_streamp));
|
||||
|
||||
extern void inflate_set_dictionary OF((
|
||||
inflate_blocks_statef *s,
|
||||
const Bytef *d, /* dictionary */
|
||||
uInt n)); /* dictionary length */
|
||||
|
||||
extern int inflate_blocks_sync_point OF((
|
||||
inflate_blocks_statef *s));
|
246
Source/zlib/INFCODES.C
Normal file
246
Source/zlib/INFCODES.C
Normal file
|
@ -0,0 +1,246 @@
|
|||
#include "../exehead/config.h"
|
||||
#ifdef NSIS_COMPRESS_USE_ZLIB
|
||||
/* infcodes.c -- process literals and length/distance pairs
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
#include "zutil.h"
|
||||
#include "inftrees.h"
|
||||
#include "infblock.h"
|
||||
#include "infcodes.h"
|
||||
#include "infutil.h"
|
||||
|
||||
/* simplify the use of the inflate_huft type with some defines */
|
||||
#define exop word.what.Exop
|
||||
#define bits word.what.Bits
|
||||
|
||||
typedef enum { /* waiting for "i:"=input, "o:"=output, "x:"=nothing */
|
||||
START, /* x: set up for LEN */
|
||||
LEN, /* i: get length/literal/eob next */
|
||||
LENEXT, /* i: getting length extra (have base) */
|
||||
DIST, /* i: get distance next */
|
||||
DISTEXT, /* i: getting distance extra */
|
||||
COPY, /* o: copying bytes in window, waiting for space */
|
||||
LIT, /* o: got literal, waiting for output space */
|
||||
WASH, /* o: got eob, possibly still output waiting */
|
||||
END, /* x: got eob and all data flushed */
|
||||
BADCODE} /* x: got error */
|
||||
inflate_codes_mode;
|
||||
|
||||
/* inflate codes private state */
|
||||
struct inflate_codes_state {
|
||||
|
||||
/* mode */
|
||||
inflate_codes_mode mode; /* current inflate_codes mode */
|
||||
|
||||
/* mode dependent information */
|
||||
uInt len;
|
||||
union {
|
||||
struct {
|
||||
inflate_huft *tree; /* pointer into tree */
|
||||
uInt need; /* bits needed */
|
||||
} code; /* if LEN or DIST, where in tree */
|
||||
uInt lit; /* if LIT, literal */
|
||||
struct {
|
||||
uInt get; /* bits to get for extra */
|
||||
uInt dist; /* distance back to copy from */
|
||||
} copy; /* if EXT or COPY, where and how much */
|
||||
} sub; /* submode */
|
||||
|
||||
/* mode independent information */
|
||||
Byte lbits; /* ltree bits decoded per branch */
|
||||
Byte dbits; /* dtree bits decoder per branch */
|
||||
inflate_huft *ltree; /* literal/length/eob tree */
|
||||
inflate_huft *dtree; /* distance tree */
|
||||
|
||||
};
|
||||
|
||||
|
||||
inflate_codes_statef *inflate_codes_new(bl, bd, tl, td, z)
|
||||
uInt bl, bd;
|
||||
inflate_huft *tl;
|
||||
inflate_huft *td; /* need separate declaration for Borland C++ */
|
||||
z_streamp z;
|
||||
{
|
||||
inflate_codes_statef *c;
|
||||
|
||||
if ((c = (inflate_codes_statef *)
|
||||
ZALLOC(z,1,sizeof(struct inflate_codes_state))) != Z_NULL)
|
||||
{
|
||||
c->mode = START;
|
||||
c->lbits = (Byte)bl;
|
||||
c->dbits = (Byte)bd;
|
||||
c->ltree = tl;
|
||||
c->dtree = td;
|
||||
Tracev((stderr, "inflate: codes new\n"));
|
||||
}
|
||||
return c;
|
||||
}
|
||||
|
||||
|
||||
int inflate_codes(s, z, r)
|
||||
inflate_blocks_statef *s;
|
||||
z_streamp z;
|
||||
int r;
|
||||
{
|
||||
uInt j; /* temporary storage */
|
||||
inflate_huft *t; /* temporary pointer */
|
||||
uInt e; /* extra bits or operation */
|
||||
uLong b; /* bit buffer */
|
||||
uInt k; /* bits in bit buffer */
|
||||
Bytef *p; /* input data pointer */
|
||||
uInt n; /* bytes available there */
|
||||
Bytef *q; /* output window write pointer */
|
||||
uInt m; /* bytes to end of window or read pointer */
|
||||
Bytef *f; /* pointer to copy strings from */
|
||||
inflate_codes_statef *c = s->sub.decode.codes; /* codes state */
|
||||
|
||||
/* copy input/output information to locals (UPDATE macro restores) */
|
||||
LOAD
|
||||
|
||||
/* process input and output based on current state */
|
||||
while (1) switch (c->mode)
|
||||
{ /* waiting for "i:"=input, "o:"=output, "x:"=nothing */
|
||||
case START: /* x: set up for LEN */
|
||||
c->sub.code.need = c->lbits;
|
||||
c->sub.code.tree = c->ltree;
|
||||
c->mode = LEN;
|
||||
case LEN: /* i: get length/literal/eob next */
|
||||
j = c->sub.code.need;
|
||||
NEEDBITS(j)
|
||||
t = c->sub.code.tree + ((uInt)b & (uInt)inflate_mask[j]);
|
||||
DUMPBITS(t->bits)
|
||||
e = (uInt)(t->exop);
|
||||
if (e == 0) /* literal */
|
||||
{
|
||||
c->sub.lit = t->base;
|
||||
Tracevv((stderr, t->base >= 0x20 && t->base < 0x7f ?
|
||||
"inflate: literal '%c'\n" :
|
||||
"inflate: literal 0x%02x\n", t->base));
|
||||
c->mode = LIT;
|
||||
break;
|
||||
}
|
||||
if (e & 16) /* length */
|
||||
{
|
||||
c->sub.copy.get = e & 15;
|
||||
c->len = t->base;
|
||||
c->mode = LENEXT;
|
||||
break;
|
||||
}
|
||||
if ((e & 64) == 0) /* next table */
|
||||
{
|
||||
c->sub.code.need = e;
|
||||
c->sub.code.tree = t + t->base;
|
||||
break;
|
||||
}
|
||||
if (e & 32) /* end of block */
|
||||
{
|
||||
Tracevv((stderr, "inflate: end of block\n"));
|
||||
c->mode = WASH;
|
||||
break;
|
||||
}
|
||||
c->mode = BADCODE; /* invalid code */
|
||||
// z->msg = (char*)"err";//invalid literal/length code";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
case LENEXT: /* i: getting length extra (have base) */
|
||||
j = c->sub.copy.get;
|
||||
NEEDBITS(j)
|
||||
c->len += (uInt)b & (uInt)inflate_mask[j];
|
||||
DUMPBITS(j)
|
||||
c->sub.code.need = c->dbits;
|
||||
c->sub.code.tree = c->dtree;
|
||||
Tracevv((stderr, "inflate: length %u\n", c->len));
|
||||
c->mode = DIST;
|
||||
case DIST: /* i: get distance next */
|
||||
j = c->sub.code.need;
|
||||
NEEDBITS(j)
|
||||
t = c->sub.code.tree + ((uInt)b & (uInt)inflate_mask[j]);
|
||||
DUMPBITS(t->bits)
|
||||
e = (uInt)(t->exop);
|
||||
if (e & 16) /* distance */
|
||||
{
|
||||
c->sub.copy.get = e & 15;
|
||||
c->sub.copy.dist = t->base;
|
||||
c->mode = DISTEXT;
|
||||
break;
|
||||
}
|
||||
if ((e & 64) == 0) /* next table */
|
||||
{
|
||||
c->sub.code.need = e;
|
||||
c->sub.code.tree = t + t->base;
|
||||
break;
|
||||
}
|
||||
c->mode = BADCODE; /* invalid code */
|
||||
// z->msg = (char*)"err";//invalid distance code";
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
case DISTEXT: /* i: getting distance extra */
|
||||
j = c->sub.copy.get;
|
||||
NEEDBITS(j)
|
||||
c->sub.copy.dist += (uInt)b & (uInt)inflate_mask[j];
|
||||
DUMPBITS(j)
|
||||
Tracevv((stderr, "inflate: distance %u\n", c->sub.copy.dist));
|
||||
c->mode = COPY;
|
||||
case COPY: /* o: copying bytes in window, waiting for space */
|
||||
#ifndef __TURBOC__ /* Turbo C bug for following expression */
|
||||
f = (uInt)(q - s->window) < c->sub.copy.dist ?
|
||||
s->end - (c->sub.copy.dist - (q - s->window)) :
|
||||
q - c->sub.copy.dist;
|
||||
#else
|
||||
f = q - c->sub.copy.dist;
|
||||
if ((uInt)(q - s->window) < c->sub.copy.dist)
|
||||
f = s->end - (c->sub.copy.dist - (uInt)(q - s->window));
|
||||
#endif
|
||||
while (c->len)
|
||||
{
|
||||
NEEDOUT
|
||||
OUTBYTE(*f++)
|
||||
if (f == s->end)
|
||||
f = s->window;
|
||||
c->len--;
|
||||
}
|
||||
c->mode = START;
|
||||
break;
|
||||
case LIT: /* o: got literal, waiting for output space */
|
||||
NEEDOUT
|
||||
OUTBYTE(c->sub.lit)
|
||||
c->mode = START;
|
||||
break;
|
||||
case WASH: /* o: got eob, possibly more output */
|
||||
if (k > 7) /* return unused byte, if any */
|
||||
{
|
||||
Assert(k < 16, "inflate_codes grabbed too many bytes")
|
||||
k -= 8;
|
||||
n++;
|
||||
p--; /* can always return one */
|
||||
}
|
||||
FLUSH
|
||||
if (s->read != s->write)
|
||||
LEAVE
|
||||
c->mode = END;
|
||||
case END:
|
||||
r = Z_STREAM_END;
|
||||
LEAVE
|
||||
case BADCODE: /* x: got error */
|
||||
r = Z_DATA_ERROR;
|
||||
LEAVE
|
||||
default:
|
||||
r = Z_STREAM_ERROR;
|
||||
LEAVE
|
||||
}
|
||||
#ifdef NEED_DUMMY_RETURN
|
||||
return Z_STREAM_ERROR; /* Some dumb compilers complain without this */
|
||||
#endif
|
||||
}
|
||||
|
||||
|
||||
void inflate_codes_free(c, z)
|
||||
inflate_codes_statef *c;
|
||||
z_streamp z;
|
||||
{
|
||||
ZFREE(z, c);
|
||||
Tracev((stderr, "inflate: codes free\n"));
|
||||
}
|
||||
#endif
|
22
Source/zlib/INFCODES.H
Normal file
22
Source/zlib/INFCODES.H
Normal file
|
@ -0,0 +1,22 @@
|
|||
/* infcodes.h -- header to use infcodes.c
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
struct inflate_codes_state;
|
||||
typedef struct inflate_codes_state FAR inflate_codes_statef;
|
||||
|
||||
extern inflate_codes_statef *inflate_codes_new OF((
|
||||
uInt, uInt,
|
||||
inflate_huft *, inflate_huft *,
|
||||
z_streamp ));
|
||||
|
||||
extern int inflate_codes OF((
|
||||
inflate_blocks_statef *,
|
||||
z_streamp ,
|
||||
int));
|
||||
|
||||
extern void inflate_codes_free OF((
|
||||
inflate_codes_statef *,
|
||||
z_streamp ));
|
||||
|
65
Source/zlib/INFLATE.C
Normal file
65
Source/zlib/INFLATE.C
Normal file
|
@ -0,0 +1,65 @@
|
|||
#include "../exehead/config.h"
|
||||
#ifdef NSIS_COMPRESS_USE_ZLIB
|
||||
/* inflate.c -- zlib interface to inflate modules
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
|
||||
* this has been HEAVILY modified for NSIS use, and is no longer compatible
|
||||
* with the stock zlib.
|
||||
|
||||
*/
|
||||
|
||||
#include "zutil.h"
|
||||
#include "infblock.h"
|
||||
|
||||
struct inflate_blocks_state { int dummy; }; /* for buggy compilers */
|
||||
|
||||
|
||||
/* inflate private state */
|
||||
struct internal_state {
|
||||
|
||||
/* mode dependent information */
|
||||
union {
|
||||
uInt method; /* if FLAGS, method byte */
|
||||
struct {
|
||||
uLong was; /* computed check value */
|
||||
uLong need; /* stream check value */
|
||||
} check; /* if CHECK, check values to compare */
|
||||
uInt marker; /* if BAD, inflateSync's marker bytes count */
|
||||
} sub; /* submode */
|
||||
|
||||
inflate_blocks_statef blocks; /* current inflate_blocks state */
|
||||
};
|
||||
|
||||
|
||||
int inflateReset(z_streamp z)
|
||||
{
|
||||
if (z == Z_NULL || z->state == Z_NULL)
|
||||
return Z_STREAM_ERROR;
|
||||
z->total_in = z->total_out = 0;
|
||||
inflate_blocks_reset(&z->state->blocks, z, Z_NULL);
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
|
||||
int inflateInit(z_streamp z)
|
||||
{
|
||||
int inflate_blocks_getssize();
|
||||
void inflate_blocks_init(z_streamp z,inflate_blocks_statef *s);
|
||||
|
||||
if ((z->state =
|
||||
(struct internal_state FAR *) ZALLOC(z,1,sizeof(struct internal_state)+inflate_blocks_getssize())) == Z_NULL)
|
||||
return Z_MEM_ERROR;
|
||||
|
||||
inflate_blocks_init(z,&z->state->blocks);
|
||||
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
|
||||
int inflate(z_streamp z)
|
||||
{
|
||||
return inflate_blocks(&z->state->blocks, z, Z_OK);
|
||||
}
|
||||
|
||||
#endif
|
324
Source/zlib/INFTREES.C
Normal file
324
Source/zlib/INFTREES.C
Normal file
|
@ -0,0 +1,324 @@
|
|||
#include "../exehead/config.h"
|
||||
#ifdef NSIS_COMPRESS_USE_ZLIB
|
||||
/* inftrees.c -- generate Huffman trees for efficient decoding
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
#include "zutil.h"
|
||||
#include "inftrees.h"
|
||||
|
||||
struct internal_state {int dummy;}; /* for buggy compilers */
|
||||
|
||||
/* simplify the use of the inflate_huft type with some defines */
|
||||
#define exop word.what.Exop
|
||||
#define bits word.what.Bits
|
||||
|
||||
/* Tables for deflate from PKZIP's appnote.txt. */
|
||||
local const unsigned short cplens[31] = { /* Copy lengths for literal codes 257..285 */
|
||||
3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31,
|
||||
35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0};
|
||||
/* see note #13 above about 258 */
|
||||
local const unsigned short cplext[31] = { /* Extra bits for literal codes 257..285 */
|
||||
0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2,
|
||||
3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0, 112, 112}; /* 112==invalid */
|
||||
local const unsigned short cpdist[30] = { /* Copy offsets for distance codes 0..29 */
|
||||
1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193,
|
||||
257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145,
|
||||
8193, 12289, 16385, 24577};
|
||||
local const unsigned short cpdext[30] = { /* Extra bits for distance codes */
|
||||
0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6,
|
||||
7, 7, 8, 8, 9, 9, 10, 10, 11, 11,
|
||||
12, 12, 13, 13};
|
||||
|
||||
#define BMAX 15 /* maximum bit length of any code */
|
||||
|
||||
local int huft_build(
|
||||
uIntf *b, /* code lengths in bits (all assumed <= BMAX) */
|
||||
uInt n, /* number of codes (assumed <= 288) */
|
||||
uInt s, /* number of simple-valued codes (0..s-1) */
|
||||
const unsigned short *d, /* list of base values for non-simple codes */
|
||||
const unsigned short *e, /* list of extra bits for non-simple codes */
|
||||
inflate_huft * FAR *t, /* result: starting table */
|
||||
uIntf *m, /* maximum lookup bits, returns actual */
|
||||
inflate_huft *hp, /* space for trees */
|
||||
uInt *hn) /* working area: values in order of bit length */
|
||||
{
|
||||
static uIntf v[288]; /* work area for huft_build */
|
||||
uInt a; /* counter for codes of length k */
|
||||
uInt c[BMAX+1]; /* bit length count table */
|
||||
uInt f; /* i repeats in table every f entries */
|
||||
int g; /* maximum code length */
|
||||
int h; /* table level */
|
||||
uInt i; /* counter, current code */
|
||||
uInt j; /* counter */
|
||||
int k; /* number of bits in current code */
|
||||
int l; /* bits per table (returned in m) */
|
||||
uIntf *p; /* pointer into c[], b[], or v[] */
|
||||
inflate_huft *q; /* points to current table */
|
||||
struct inflate_huft_s r; /* table entry for structure assignment */
|
||||
inflate_huft *u[BMAX]; /* table stack */
|
||||
int w; /* bits before this table == (l * h) */
|
||||
uInt x[BMAX+1]; /* bit offsets, then code stack */
|
||||
uIntf *xp; /* pointer into x */
|
||||
int y; /* number of dummy codes added */
|
||||
uInt z; /* number of entries in current table */
|
||||
|
||||
|
||||
/* Generate counts for each bit length */
|
||||
p=c;
|
||||
y=16; while (y--) *p++ = 0;
|
||||
p = b;
|
||||
i = n;
|
||||
do {
|
||||
c[*p++]++; /* assume all entries <= BMAX */
|
||||
} while (--i);
|
||||
if (c[0] == n) /* null input--all zero length codes */
|
||||
{
|
||||
*t = (inflate_huft *)Z_NULL;
|
||||
*m = 0;
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
|
||||
/* Find minimum and maximum length, bound *m by those */
|
||||
l = *m;
|
||||
for (j = 1; j <= BMAX; j++)
|
||||
if (c[j])
|
||||
break;
|
||||
k = j; /* minimum code length */
|
||||
if ((uInt)l < j)
|
||||
l = j;
|
||||
for (i = BMAX; i; i--)
|
||||
if (c[i])
|
||||
break;
|
||||
g = i; /* maximum code length */
|
||||
if ((uInt)l > i)
|
||||
l = i;
|
||||
*m = l;
|
||||
|
||||
|
||||
/* Adjust last length count to fill out codes, if needed */
|
||||
for (y = 1 << j; j < i; j++, y <<= 1)
|
||||
if ((y -= c[j]) < 0)
|
||||
return Z_DATA_ERROR;
|
||||
if ((y -= c[i]) < 0)
|
||||
return Z_DATA_ERROR;
|
||||
c[i] += y;
|
||||
|
||||
|
||||
/* Generate starting offsets into the value table for each length */
|
||||
x[1] = j = 0;
|
||||
p = c + 1; xp = x + 2;
|
||||
while (--i) { /* note that i == g from above */
|
||||
*xp++ = (j += *p++);
|
||||
}
|
||||
|
||||
|
||||
/* Make a table of values in order of bit lengths */
|
||||
p = b; i = 0;
|
||||
do {
|
||||
if ((j = *p++) != 0)
|
||||
v[x[j]++] = i;
|
||||
} while (++i < n);
|
||||
n = x[g]; /* set n to length of v */
|
||||
|
||||
|
||||
/* Generate the Huffman codes and for each, make the table entries */
|
||||
x[0] = i = 0; /* first Huffman code is zero */
|
||||
p = v; /* grab values in bit order */
|
||||
h = -1; /* no tables yet--level -1 */
|
||||
w = -l; /* bits decoded == (l * h) */
|
||||
u[0] = (inflate_huft *)Z_NULL; /* just to keep compilers happy */
|
||||
q = (inflate_huft *)Z_NULL; /* ditto */
|
||||
z = 0; /* ditto */
|
||||
|
||||
/* go through the bit lengths (k already is bits in shortest code) */
|
||||
for (; k <= g; k++)
|
||||
{
|
||||
a = c[k];
|
||||
while (a--)
|
||||
{
|
||||
/* here i is the Huffman code of length k bits for value *p */
|
||||
/* make tables up to required level */
|
||||
while (k > w + l)
|
||||
{
|
||||
h++;
|
||||
w += l; /* previous table always l bits */
|
||||
|
||||
/* compute minimum size table less than or equal to l bits */
|
||||
z = g - w;
|
||||
z = z > (uInt)l ? l : z; /* table size upper limit */
|
||||
if ((f = 1 << (j = k - w)) > a + 1) /* try a k-w bit table */
|
||||
{ /* too few codes for k-w bit table */
|
||||
f -= a + 1; /* deduct codes from patterns left */
|
||||
xp = c + k;
|
||||
if (j < z)
|
||||
while (++j < z) /* try smaller tables up to z bits */
|
||||
{
|
||||
if ((f <<= 1) <= *++xp)
|
||||
break; /* enough codes to use up j bits */
|
||||
f -= *xp; /* else deduct codes from patterns */
|
||||
}
|
||||
}
|
||||
z = 1 << j; /* table entries for j-bit table */
|
||||
|
||||
/* allocate new table */
|
||||
if (*hn + z > MANY) /* (note: doesn't matter for fixed) */
|
||||
return Z_MEM_ERROR; /* not enough memory */
|
||||
u[h] = q = hp + *hn;
|
||||
*hn += z;
|
||||
|
||||
/* connect to last table, if there is one */
|
||||
if (h)
|
||||
{
|
||||
x[h] = i; /* save pattern for backing up */
|
||||
r.bits = (Byte)l; /* bits to dump before this table */
|
||||
r.exop = (Byte)j; /* bits in this table */
|
||||
j = i >> (w - l);
|
||||
r.base = (uInt)(q - u[h-1] - j); /* offset to this table */
|
||||
u[h-1][j] = r; /* connect to last table */
|
||||
}
|
||||
else
|
||||
*t = q; /* first table is returned result */
|
||||
}
|
||||
|
||||
/* set up table entry in r */
|
||||
r.bits = (Byte)(k - w);
|
||||
if (p >= v + n)
|
||||
r.exop = 128 + 64; /* out of values--invalid code */
|
||||
else if (*p < s)
|
||||
{
|
||||
r.exop = (Byte)(*p < 256 ? 0 : 32 + 64); /* 256 is end-of-block */
|
||||
r.base = *p++; /* simple code is just the value */
|
||||
}
|
||||
else
|
||||
{
|
||||
r.exop = (Byte)(e[*p - s] + 16 + 64);/* non-simple--look up in lists */
|
||||
r.base = d[*p++ - s];
|
||||
}
|
||||
|
||||
/* fill code-like entries with r */
|
||||
f = 1 << (k - w);
|
||||
for (j = i >> w; j < z; j += f)
|
||||
q[j] = r;
|
||||
|
||||
/* backwards increment the k-bit code i */
|
||||
for (j = 1 << (k - 1); i & j; j >>= 1)
|
||||
i ^= j;
|
||||
i ^= j;
|
||||
|
||||
/* backup over finished tables */
|
||||
while ((i & ((1 << w) - 1)) != x[h])
|
||||
{
|
||||
h--; /* don't need to update q */
|
||||
w -= l;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
/* Return Z_BUF_ERROR if we were given an incomplete table */
|
||||
return y != 0 && g != 1 ? Z_BUF_ERROR : Z_OK;
|
||||
}
|
||||
|
||||
int inflate_trees_bits(c, bb, tb, hp, z)
|
||||
uIntf *c; /* 19 code lengths */
|
||||
uIntf *bb; /* bits tree desired/actual depth */
|
||||
inflate_huft * FAR *tb; /* bits tree result */
|
||||
inflate_huft *hp; /* space for trees */
|
||||
z_streamp z; /* for messages */
|
||||
{
|
||||
int r;
|
||||
uInt hn = 0; /* hufts used in space */
|
||||
|
||||
r = huft_build(c, 19, 19, (short *)Z_NULL, (short*)Z_NULL,
|
||||
tb, bb, hp, &hn);
|
||||
if (r == Z_BUF_ERROR || *bb == 0)
|
||||
{
|
||||
return Z_DATA_ERROR;
|
||||
}
|
||||
return r;
|
||||
}
|
||||
|
||||
int inflate_trees_dynamic(nl, nd, c, bl, bd, tl, td, hp, z)
|
||||
uInt nl; /* number of literal/length codes */
|
||||
uInt nd; /* number of distance codes */
|
||||
uIntf *c; /* that many (total) code lengths */
|
||||
uIntf *bl; /* literal desired/actual bit depth */
|
||||
uIntf *bd; /* distance desired/actual bit depth */
|
||||
inflate_huft * FAR *tl; /* literal/length tree result */
|
||||
inflate_huft * FAR *td; /* distance tree result */
|
||||
inflate_huft *hp; /* space for trees */
|
||||
z_streamp z; /* for messages */
|
||||
{
|
||||
int r;
|
||||
uInt hn = 0; /* hufts used in space */
|
||||
|
||||
/* build literal/length tree */
|
||||
r = huft_build(c, nl, 257, cplens, cplext, tl, bl, hp, &hn);
|
||||
if (r != Z_OK || *bl == 0)
|
||||
{
|
||||
if (r != Z_MEM_ERROR) return Z_DATA_ERROR;
|
||||
return r;
|
||||
}
|
||||
|
||||
/* build distance tree */
|
||||
r = huft_build(c + nl, nd, 0, cpdist, cpdext, td, bd, hp, &hn);
|
||||
if (r != Z_OK || (*bd == 0 && nl > 257))
|
||||
{
|
||||
if (r != Z_MEM_ERROR) return Z_DATA_ERROR;
|
||||
return r;
|
||||
}
|
||||
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
|
||||
/* build fixed tables only once--keep them here */
|
||||
local int fixed_built = 0;
|
||||
#define FIXEDH 544 /* number of hufts used by fixed tables */
|
||||
local inflate_huft fixed_mem[FIXEDH];
|
||||
local uInt fixed_bl;
|
||||
local uInt fixed_bd;
|
||||
local inflate_huft *fixed_tl;
|
||||
local inflate_huft *fixed_td;
|
||||
|
||||
|
||||
int inflate_trees_fixed(bl, bd, tl, td, z)
|
||||
uIntf *bl; /* literal desired/actual bit depth */
|
||||
uIntf *bd; /* distance desired/actual bit depth */
|
||||
inflate_huft * FAR *tl; /* literal/length tree result */
|
||||
inflate_huft * FAR *td; /* distance tree result */
|
||||
z_streamp z; /* for memory allocation */
|
||||
{
|
||||
/* build fixed tables if not already */
|
||||
if (!fixed_built)
|
||||
{
|
||||
int k; /* temporary variable */
|
||||
uInt f = 0; /* number of hufts used in fixed_mem */
|
||||
static uIntf c[288]; /* length list for huft_build */
|
||||
|
||||
/* literal table */
|
||||
for (k = 0; k < 144; k++) c[k] = 8;
|
||||
for (; k < 256; k++) c[k] = 9;
|
||||
for (; k < 280; k++) c[k] = 7;
|
||||
for (; k < 288; k++) c[k] = 8;
|
||||
fixed_bl = 9;
|
||||
huft_build(c, 288, 257, cplens, cplext, &fixed_tl, &fixed_bl, fixed_mem, &f);
|
||||
|
||||
/* distance table */
|
||||
for (k = 0; k < 30; k++) c[k] = 5;
|
||||
fixed_bd = 5;
|
||||
huft_build(c, 30, 0, cpdist, cpdext, &fixed_td, &fixed_bd, fixed_mem, &f);
|
||||
|
||||
/* done */
|
||||
fixed_built = 1;
|
||||
}
|
||||
*bl = fixed_bl;
|
||||
*bd = fixed_bd;
|
||||
*tl = fixed_tl;
|
||||
*td = fixed_td;
|
||||
return Z_OK;
|
||||
}
|
||||
#endif
|
45
Source/zlib/INFTREES.H
Normal file
45
Source/zlib/INFTREES.H
Normal file
|
@ -0,0 +1,45 @@
|
|||
/* inftrees.h -- header to use inftrees.c
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
|
||||
typedef struct inflate_huft_s FAR inflate_huft;
|
||||
|
||||
struct inflate_huft_s {
|
||||
union {
|
||||
struct {
|
||||
Byte Exop; /* number of extra bits or operation */
|
||||
Byte Bits; /* number of bits in this code or subcode */
|
||||
} what;
|
||||
} word;
|
||||
unsigned short base; /* literal, length base, distance base,
|
||||
or table offset */
|
||||
};
|
||||
|
||||
#define MANY 1440
|
||||
|
||||
extern int inflate_trees_bits OF((
|
||||
uIntf *,
|
||||
uIntf *,
|
||||
inflate_huft * FAR *,
|
||||
inflate_huft *,
|
||||
z_streamp));
|
||||
|
||||
extern int inflate_trees_dynamic OF((
|
||||
uInt,
|
||||
uInt,
|
||||
uIntf *,
|
||||
uIntf *,
|
||||
uIntf *,
|
||||
inflate_huft * FAR *,
|
||||
inflate_huft * FAR *,
|
||||
inflate_huft *,
|
||||
z_streamp));
|
||||
|
||||
extern int inflate_trees_fixed OF((
|
||||
uIntf *,
|
||||
uIntf *,
|
||||
inflate_huft * FAR *,
|
||||
inflate_huft * FAR *,
|
||||
z_streamp));
|
87
Source/zlib/INFUTIL.C
Normal file
87
Source/zlib/INFUTIL.C
Normal file
|
@ -0,0 +1,87 @@
|
|||
#include "../exehead/config.h"
|
||||
#ifdef NSIS_COMPRESS_USE_ZLIB
|
||||
/* inflate_util.c -- data and routines common to blocks and codes
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
#include "zutil.h"
|
||||
#include "infblock.h"
|
||||
#include "inftrees.h"
|
||||
#include "infcodes.h"
|
||||
#include "infutil.h"
|
||||
|
||||
struct inflate_codes_state {int dummy;}; /* for buggy compilers */
|
||||
|
||||
/* And'ing with mask[n] masks the lower n bits */
|
||||
unsigned short inflate_mask[17] = {
|
||||
0x0000,
|
||||
0x0001, 0x0003, 0x0007, 0x000f, 0x001f, 0x003f, 0x007f, 0x00ff,
|
||||
0x01ff, 0x03ff, 0x07ff, 0x0fff, 0x1fff, 0x3fff, 0x7fff, 0xffff
|
||||
};
|
||||
|
||||
int __myleave(inflate_blocks_statef *s, z_streamp z, int r, int b, int k, Bytef *p, int n, Bytef *q)
|
||||
{
|
||||
UPDATE
|
||||
return inflate_flush(s,z,r);
|
||||
}
|
||||
|
||||
/* copy as much as possible from the sliding window to the output area */
|
||||
int inflate_flush(s, z, r)
|
||||
inflate_blocks_statef *s;
|
||||
z_streamp z;
|
||||
int r;
|
||||
{
|
||||
uInt n;
|
||||
Bytef *p;
|
||||
Bytef *q;
|
||||
|
||||
/* local copies of source and destination pointers */
|
||||
p = z->next_out;
|
||||
q = s->read;
|
||||
|
||||
/* compute number of bytes to copy as far as end of window */
|
||||
n = (uInt)((q <= s->write ? s->write : s->end) - q);
|
||||
if (n > z->avail_out) n = z->avail_out;
|
||||
if (n && r == Z_BUF_ERROR) r = Z_OK;
|
||||
|
||||
/* update counters */
|
||||
z->avail_out -= n;
|
||||
z->total_out += n;
|
||||
|
||||
/* copy as far as end of window */
|
||||
zmemcpy(p, q, n);
|
||||
p += n;
|
||||
q += n;
|
||||
|
||||
/* see if more to copy at beginning of window */
|
||||
if (q == s->end)
|
||||
{
|
||||
/* wrap pointers */
|
||||
q = s->window;
|
||||
if (s->write == s->end)
|
||||
s->write = s->window;
|
||||
|
||||
/* compute bytes to copy */
|
||||
n = (uInt)(s->write - q);
|
||||
if (n > z->avail_out) n = z->avail_out;
|
||||
if (n && r == Z_BUF_ERROR) r = Z_OK;
|
||||
|
||||
/* update counters */
|
||||
z->avail_out -= n;
|
||||
z->total_out += n;
|
||||
|
||||
/* copy */
|
||||
zmemcpy(p, q, n);
|
||||
p += n;
|
||||
q += n;
|
||||
}
|
||||
|
||||
/* update pointers */
|
||||
z->next_out = p;
|
||||
s->read = q;
|
||||
|
||||
/* done */
|
||||
return r;
|
||||
}
|
||||
#endif
|
97
Source/zlib/INFUTIL.H
Normal file
97
Source/zlib/INFUTIL.H
Normal file
|
@ -0,0 +1,97 @@
|
|||
/* infutil.h -- types and macros common to blocks and codes
|
||||
* Copyright (C) 1995-1998 Mark Adler
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
#ifndef _INFUTIL_H
|
||||
#define _INFUTIL_H
|
||||
|
||||
typedef enum {
|
||||
TYPE, /* get type bits (3, including end bit) */
|
||||
LENS, /* get lengths for stored */
|
||||
STORED, /* processing stored block */
|
||||
TABLE, /* get table lengths */
|
||||
BTREE, /* get bit lengths tree for a dynamic block */
|
||||
DTREE, /* get length, distance trees for a dynamic block */
|
||||
CODES, /* processing fixed or dynamic block */
|
||||
DRY, /* output remaining window bytes */
|
||||
DONE, /* finished last block, done */
|
||||
BAD} /* got a data error--stuck here */
|
||||
inflate_block_mode;
|
||||
|
||||
/* inflate blocks semi-private state */
|
||||
struct inflate_blocks_state {
|
||||
|
||||
/* mode */
|
||||
inflate_block_mode mode; /* current inflate_block mode */
|
||||
|
||||
/* mode dependent information */
|
||||
union {
|
||||
uInt left; /* if STORED, bytes left to copy */
|
||||
struct {
|
||||
uInt table; /* table lengths (14 bits) */
|
||||
uInt index; /* index into blens (or border) */
|
||||
uIntf *blens; /* bit lengths of codes */
|
||||
uInt bb; /* bit length tree depth */
|
||||
inflate_huft *tb; /* bit length decoding tree */
|
||||
} trees; /* if DTREE, decoding info for trees */
|
||||
struct {
|
||||
inflate_codes_statef
|
||||
*codes;
|
||||
} decode; /* if CODES, current state */
|
||||
} sub; /* submode */
|
||||
uInt last; /* true if this block is the last block */
|
||||
|
||||
/* mode independent information */
|
||||
uInt bitk; /* bits in bit buffer */
|
||||
uLong bitb; /* bit buffer */
|
||||
inflate_huft hufts[MANY]; /* single malloc for tree space */
|
||||
Bytef window[1 << DEF_WBITS]; /* sliding window */
|
||||
Bytef *end; /* one byte after sliding window */
|
||||
Bytef *read; /* window read pointer */
|
||||
Bytef *write; /* window write pointer */
|
||||
uLong check; /* check on output */
|
||||
|
||||
};
|
||||
|
||||
|
||||
/* defines for inflate input/output */
|
||||
/* update pointers and return */
|
||||
#define UPDBITS {s->bitb=b;s->bitk=k;}
|
||||
#define UPDIN {z->avail_in=n;z->total_in+=p-z->next_in;z->next_in=p;}
|
||||
#define UPDOUT {s->write=q;}
|
||||
#define UPDATE {UPDBITS UPDIN UPDOUT}
|
||||
#define LEAVE return __myleave(s,z,r,b,k,p,n,q);
|
||||
extern int __myleave(inflate_blocks_statef *s, z_streamp z, int r, int b, int k, Bytef *p, int n, Bytef *q);
|
||||
|
||||
/* get bytes and bits */
|
||||
#define LOADIN {p=z->next_in;n=z->avail_in;b=s->bitb;k=s->bitk;}
|
||||
|
||||
|
||||
#define NEEDBYTE {if(n)r=Z_OK;else LEAVE}
|
||||
#define NEXTBYTE (n--,*p++)
|
||||
#define NEEDBITS(j) {while(k<(j)){NEEDBYTE;b|=((uLong)NEXTBYTE)<<k;k+=8;}}
|
||||
|
||||
#define DUMPBITS(j) {b>>=(j);k-=(j);}
|
||||
/* output bytes */
|
||||
#define WAVAIL (uInt)(q<s->read?s->read-q-1:s->end-q)
|
||||
#define LOADOUT {q=s->write;m=(uInt)WAVAIL;}
|
||||
#define WRAP {if(q==s->end&&s->read!=s->window){q=s->window;m=(uInt)WAVAIL;}}
|
||||
#define FLUSH {UPDOUT r=inflate_flush(s,z,r); LOADOUT}
|
||||
#define NEEDOUT {if(m==0){WRAP if(m==0){FLUSH WRAP if(m==0) LEAVE}}r=Z_OK;}
|
||||
#define OUTBYTE(a) {*q++=(Byte)(a);m--;}
|
||||
/* load local pointers */
|
||||
#define LOAD {LOADIN LOADOUT}
|
||||
|
||||
/* masks for lower bits (size given to avoid silly warnings with Visual C++) */
|
||||
extern unsigned short inflate_mask[17];
|
||||
|
||||
/* copy as much as possible from the sliding window to the output area */
|
||||
extern int inflate_flush OF((
|
||||
inflate_blocks_statef *,
|
||||
z_streamp ,
|
||||
int));
|
||||
|
||||
struct internal_state {int dummy;}; /* for buggy compilers */
|
||||
|
||||
#endif
|
58
Source/zlib/ZCONF.H
Normal file
58
Source/zlib/ZCONF.H
Normal file
|
@ -0,0 +1,58 @@
|
|||
/* zconf.h -- configuration of the zlib compression library
|
||||
* Copyright (C) 1995-1998 Jean-loup Gailly.
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
/* @(#) $Id$ */
|
||||
|
||||
#ifndef _ZCONF_H
|
||||
#define _ZCONF_H
|
||||
|
||||
|
||||
#define MAX_MEM_LEVEL 9
|
||||
|
||||
/* Maximum value for windowBits in deflateInit2 and inflateInit2.
|
||||
* WARNING: reducing MAX_WBITS makes minigzip unable to extract .gz files
|
||||
* created by gzip. (Files created by minigzip can still be extracted by
|
||||
* gzip.)
|
||||
*/
|
||||
#ifndef MAX_WBITS
|
||||
# define MAX_WBITS 15 /* 32K LZ77 window */
|
||||
#endif
|
||||
|
||||
#define OF(args) args
|
||||
|
||||
|
||||
#ifndef ZEXPORT
|
||||
# define ZEXPORT
|
||||
#endif
|
||||
#ifndef ZEXPORTVA
|
||||
# define ZEXPORTVA
|
||||
#endif
|
||||
#ifndef ZEXTERN
|
||||
# define ZEXTERN extern
|
||||
#endif
|
||||
|
||||
#ifndef FAR
|
||||
# define FAR
|
||||
#endif
|
||||
|
||||
typedef unsigned char Byte; /* 8 bits */
|
||||
typedef unsigned int uInt; /* 16 bits or more */
|
||||
typedef unsigned long uLong; /* 32 bits or more */
|
||||
|
||||
typedef Byte FAR Bytef;
|
||||
typedef char FAR charf;
|
||||
typedef int FAR intf;
|
||||
typedef uInt FAR uIntf;
|
||||
typedef uLong FAR uLongf;
|
||||
|
||||
typedef void FAR *voidpf;
|
||||
typedef void *voidp;
|
||||
|
||||
#ifndef z_off_t
|
||||
# define z_off_t long
|
||||
#endif
|
||||
|
||||
|
||||
#endif /* _ZCONF_H */
|
157
Source/zlib/ZLIB.H
Normal file
157
Source/zlib/ZLIB.H
Normal file
|
@ -0,0 +1,157 @@
|
|||
/*
|
||||
Note: this version of zlib has been hacked up quite a bit in order to reduce
|
||||
the size of the EXE header and to remove what we didn't need.
|
||||
For the complete real thing, go to:
|
||||
|
||||
http://www.info-zip.org/pub/infozip/zlib/
|
||||
|
||||
Peace,
|
||||
|
||||
-Justin
|
||||
*/
|
||||
|
||||
|
||||
|
||||
/* zlib.h -- interface of the 'zlib' general purpose compression library
|
||||
version 1.1.3, July 9th, 1998
|
||||
|
||||
Copyright (C) 1995-1998 Jean-loup Gailly and Mark Adler
|
||||
|
||||
This software is provided 'as-is', without any express or implied
|
||||
warranty. In no event will the authors be held liable for any damages
|
||||
arising from the use of this software.
|
||||
|
||||
Permission is granted to anyone to use this software for any purpose,
|
||||
including commercial applications, and to alter it and redistribute it
|
||||
freely, subject to the following restrictions:
|
||||
|
||||
1. The origin of this software must not be misrepresented; you must not
|
||||
claim that you wrote the original software. If you use this software
|
||||
in a product, an acknowledgment in the product documentation would be
|
||||
appreciated but is not required.
|
||||
2. Altered source versions must be plainly marked as such, and must not be
|
||||
misrepresented as being the original software.
|
||||
3. This notice may not be removed or altered from any source distribution.
|
||||
|
||||
Jean-loup Gailly Mark Adler
|
||||
jloup@gzip.org madler@alumni.caltech.edu
|
||||
|
||||
|
||||
*/
|
||||
|
||||
#ifndef _ZLIB_H
|
||||
#define _ZLIB_H
|
||||
|
||||
#include "zconf.h"
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
|
||||
struct internal_state;
|
||||
|
||||
typedef struct z_stream_s {
|
||||
Bytef *next_in; /* next input byte */
|
||||
uInt avail_in; /* number of bytes available at next_in */
|
||||
uLong total_in; /* total nb of input bytes read so far */
|
||||
|
||||
Bytef *next_out; /* next output byte should be put there */
|
||||
uInt avail_out; /* remaining free space at next_out */
|
||||
uLong total_out; /* total nb of bytes output so far */
|
||||
|
||||
// char *msg; /* last error message, NULL if no error */
|
||||
struct internal_state FAR *state; /* not visible by applications */
|
||||
|
||||
} z_stream;
|
||||
|
||||
typedef z_stream FAR *z_streamp;
|
||||
|
||||
|
||||
#define Z_NO_FLUSH 0
|
||||
#define Z_PARTIAL_FLUSH 1 /* will be removed, use Z_SYNC_FLUSH instead */
|
||||
#define Z_SYNC_FLUSH 2
|
||||
#define Z_FULL_FLUSH 3
|
||||
#define Z_FINISH 4
|
||||
/* Allowed flush values; see deflate() below for details */
|
||||
|
||||
#define Z_OK 0
|
||||
#define Z_STREAM_END 1
|
||||
#define Z_NEED_DICT 2
|
||||
#define Z_ERRNO (-1)
|
||||
#define Z_STREAM_ERROR (-2)
|
||||
#define Z_DATA_ERROR (-3)
|
||||
#define Z_MEM_ERROR (-4)
|
||||
#define Z_BUF_ERROR (-5)
|
||||
#define Z_VERSION_ERROR (-6)
|
||||
/* Return codes for the compression/decompression functions. Negative
|
||||
* values are errors, positive values are used for special but normal events.
|
||||
*/
|
||||
|
||||
#define Z_NO_COMPRESSION 0
|
||||
#define Z_BEST_SPEED 1
|
||||
#define Z_BEST_COMPRESSION 9
|
||||
#define Z_DEFAULT_COMPRESSION (-1)
|
||||
/* compression levels */
|
||||
|
||||
#define Z_FILTERED 1
|
||||
#define Z_HUFFMAN_ONLY 2
|
||||
#define Z_DEFAULT_STRATEGY 0
|
||||
/* compression strategy; see deflateInit2() below for details */
|
||||
|
||||
#define Z_BINARY 0
|
||||
#define Z_ASCII 1
|
||||
#define Z_UNKNOWN 2
|
||||
/* Possible values of the data_type field */
|
||||
|
||||
#define Z_DEFLATED 8
|
||||
/* The deflate compression method (the only one supported in this version) */
|
||||
|
||||
#define Z_NULL 0 /* for initializing zalloc, zfree, opaque */
|
||||
|
||||
|
||||
ZEXTERN int ZEXPORT deflate OF((z_streamp strm, int flush));
|
||||
|
||||
ZEXTERN int ZEXPORT deflateEnd OF((z_streamp strm));
|
||||
ZEXTERN int ZEXPORT inflateInit OF((z_streamp strm));
|
||||
|
||||
int inflate(z_streamp z);
|
||||
ZEXTERN int ZEXPORT inflateEnd OF((z_streamp strm));
|
||||
ZEXTERN int ZEXPORT deflateInit2 OF((z_streamp strm,
|
||||
int level,
|
||||
int method,
|
||||
int windowBits,
|
||||
int memLevel,
|
||||
int strategy));
|
||||
|
||||
|
||||
ZEXTERN int ZEXPORT deflateReset OF((z_streamp strm));
|
||||
int inflateReset(z_streamp z);
|
||||
|
||||
|
||||
/* various hacks, don't look :) */
|
||||
|
||||
/* deflateInit and inflateInit are macros to allow checking the zlib version
|
||||
* and the compiler's view of z_stream:
|
||||
*/
|
||||
ZEXTERN int ZEXPORT deflateInit_ OF((z_streamp strm, int level,
|
||||
const char *version, int stream_size));
|
||||
//ZEXTERN int ZEXPORT inflateInit_ OF((z_streamp strm,
|
||||
// const char *version, int stream_size));
|
||||
ZEXTERN int ZEXPORT deflateInit2_ OF((z_streamp strm, int level, int method,
|
||||
int windowBits, int memLevel,
|
||||
int strategy, const char *version,
|
||||
int stream_size));
|
||||
ZEXTERN int ZEXPORT inflateInit2_ OF((z_streamp strm, int windowBits,
|
||||
const char *version, int stream_size));
|
||||
#define deflateInit(strm, level) \
|
||||
deflateInit_((strm), (level), "", sizeof(z_stream))
|
||||
|
||||
extern int inflateInit(z_streamp z);
|
||||
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif /* _ZLIB_H */
|
68
Source/zlib/ZUTIL.H
Normal file
68
Source/zlib/ZUTIL.H
Normal file
|
@ -0,0 +1,68 @@
|
|||
/* zutil.h -- internal interface and configuration of the compression library
|
||||
* Copyright (C) 1995-1998 Jean-loup Gailly.
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
/* WARNING: this file should *not* be used by applications. It is
|
||||
part of the implementation of the compression library and is
|
||||
subject to change. Applications should only use zlib.h.
|
||||
*/
|
||||
|
||||
/* @(#) $Id$ */
|
||||
|
||||
#ifndef _Z_UTIL_H
|
||||
#define _Z_UTIL_H
|
||||
|
||||
#include <windows.h>
|
||||
#include "zlib.h"
|
||||
|
||||
#ifndef local
|
||||
# define local static
|
||||
#endif
|
||||
|
||||
typedef unsigned char uch;
|
||||
typedef uch FAR uchf;
|
||||
typedef unsigned short ush;
|
||||
typedef ush FAR ushf;
|
||||
typedef unsigned long ulg;
|
||||
|
||||
#ifndef DEF_WBITS
|
||||
# define DEF_WBITS MAX_WBITS
|
||||
#endif
|
||||
/* default windowBits for decompression. MAX_WBITS is for compression only */
|
||||
|
||||
#define DEF_MEM_LEVEL MAX_MEM_LEVEL
|
||||
|
||||
#define STORED_BLOCK 0
|
||||
#define STATIC_TREES 1
|
||||
#define DYN_TREES 2
|
||||
/* The three kinds of block type */
|
||||
|
||||
#define MIN_MATCH 3
|
||||
#define MAX_MATCH 258
|
||||
/* The minimum and maximum match lengths */
|
||||
|
||||
#define PRESET_DICT 0x20 /* preset dictionary flag in zlib header */
|
||||
|
||||
|
||||
#ifdef EXEHEAD
|
||||
#include "../exehead/util.h"
|
||||
#define zmemcpy mini_memcpy
|
||||
#else
|
||||
#define zmemcpy memcpy
|
||||
#define zmemzero(a,b) memset(a,0,b)
|
||||
#endif
|
||||
|
||||
# define Assert(cond,msg)
|
||||
# define Trace(x)
|
||||
# define Tracev(x)
|
||||
# define Tracevv(x)
|
||||
# define Tracec(c,x)
|
||||
# define Tracecv(c,x)
|
||||
|
||||
#define ZALLOC(strm, items, size) GlobalAlloc(GPTR,(items)*(size))
|
||||
#define ZFREE(strm, addr) { if (addr) GlobalFree(addr); }
|
||||
#define TRY_FREE(s, p) { ZFREE(s, p); }
|
||||
#define ERR_RETURN(strm,err) return (err)
|
||||
|
||||
#endif /* _Z_UTIL_H */
|
986
Source/zlib/deflate.c
Normal file
986
Source/zlib/deflate.c
Normal file
|
@ -0,0 +1,986 @@
|
|||
/* deflate.c -- compress data using the deflation algorithm
|
||||
* Copyright (C) 1995-1998 Jean-loup Gailly.
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
|
||||
#include "deflate.h"
|
||||
|
||||
const char deflate_copyright[] =
|
||||
" deflate 1.1.3 Copyright 1995-1998 Jean-loup Gailly ";
|
||||
/*
|
||||
If you use the zlib library in a product, an acknowledgment is welcome
|
||||
in the documentation of your product. If for some reason you cannot
|
||||
include such an acknowledgment, I would appreciate that you keep this
|
||||
copyright string in the executable of your product.
|
||||
*/
|
||||
|
||||
/* ===========================================================================
|
||||
* Function prototypes.
|
||||
*/
|
||||
typedef enum {
|
||||
need_more, /* block not completed, need more input or more output */
|
||||
block_done, /* block flush performed */
|
||||
finish_started, /* finish started, need only more output at next deflate */
|
||||
finish_done /* finish done, accept no more input or output */
|
||||
} block_state;
|
||||
|
||||
typedef block_state (*compress_func) OF((deflate_state *s, int flush));
|
||||
/* Compression function. Returns the block state after the call. */
|
||||
|
||||
local void fill_window OF((deflate_state *s));
|
||||
local block_state deflate_stored OF((deflate_state *s, int flush));
|
||||
local block_state deflate_fast OF((deflate_state *s, int flush));
|
||||
local block_state deflate_slow OF((deflate_state *s, int flush));
|
||||
local void lm_init OF((deflate_state *s));
|
||||
local void putShortMSB OF((deflate_state *s, uInt b));
|
||||
local void flush_pending OF((z_streamp strm));
|
||||
local int read_buf OF((z_streamp strm, Bytef *buf, unsigned size));
|
||||
#ifdef ASMV
|
||||
void match_init OF((void)); /* asm code initialization */
|
||||
uInt longest_match OF((deflate_state *s, IPos cur_match));
|
||||
#else
|
||||
local uInt longest_match OF((deflate_state *s, IPos cur_match));
|
||||
#endif
|
||||
|
||||
#ifdef DEBUG
|
||||
local void check_match OF((deflate_state *s, IPos start, IPos match,
|
||||
int length));
|
||||
#endif
|
||||
|
||||
/* ===========================================================================
|
||||
* Local data
|
||||
*/
|
||||
|
||||
#define NIL 0
|
||||
/* Tail of hash chains */
|
||||
|
||||
#ifndef TOO_FAR
|
||||
# define TOO_FAR 4096
|
||||
#endif
|
||||
/* Matches of length 3 are discarded if their distance exceeds TOO_FAR */
|
||||
|
||||
#define MIN_LOOKAHEAD (MAX_MATCH+MIN_MATCH+1)
|
||||
|
||||
typedef struct config_s {
|
||||
ush good_length; /* reduce lazy search above this match length */
|
||||
ush max_lazy; /* do not perform lazy search above this match length */
|
||||
ush nice_length; /* quit search above this match length */
|
||||
ush max_chain;
|
||||
compress_func func;
|
||||
} config;
|
||||
|
||||
local const config configuration_table[10] = {
|
||||
/* good lazy nice chain */
|
||||
/* 0 */ {0, 0, 0, 0, deflate_stored}, /* store only */
|
||||
/* 1 */ {4, 4, 8, 4, deflate_fast}, /* maximum speed, no lazy matches */
|
||||
/* 2 */ {4, 5, 16, 8, deflate_fast},
|
||||
/* 3 */ {4, 6, 32, 32, deflate_fast},
|
||||
|
||||
/* 4 */ {4, 4, 16, 16, deflate_slow}, /* lazy matches */
|
||||
/* 5 */ {8, 16, 32, 32, deflate_slow},
|
||||
/* 6 */ {8, 16, 128, 128, deflate_slow},
|
||||
/* 7 */ {8, 32, 128, 256, deflate_slow},
|
||||
/* 8 */ {32, 128, 258, 1024, deflate_slow},
|
||||
/* 9 */ {32, 258, 258, 4096, deflate_slow}}; /* maximum compression */
|
||||
|
||||
|
||||
#define EQUAL 0
|
||||
/* result of memcmp for equal strings */
|
||||
|
||||
struct static_tree_desc_s {int dummy;}; /* for buggy compilers */
|
||||
|
||||
#define UPDATE_HASH(s,h,c) (h = (((h)<<s->hash_shift) ^ (c)) & s->hash_mask)
|
||||
|
||||
|
||||
#ifdef FASTEST
|
||||
#define INSERT_STRING(s, str, match_head) \
|
||||
(UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
|
||||
match_head = s->head[s->ins_h], \
|
||||
s->head[s->ins_h] = (Pos)(str))
|
||||
#else
|
||||
#define INSERT_STRING(s, str, match_head) \
|
||||
(UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
|
||||
s->prev[(str) & s->w_mask] = match_head = s->head[s->ins_h], \
|
||||
s->head[s->ins_h] = (Pos)(str))
|
||||
#endif
|
||||
|
||||
#define CLEAR_HASH(s) \
|
||||
s->head[s->hash_size-1] = NIL; \
|
||||
zmemzero((Bytef *)s->head, (unsigned)(s->hash_size-1)*sizeof(*s->head));
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateInit_(strm, level, version, stream_size)
|
||||
z_streamp strm;
|
||||
int level;
|
||||
const char *version;
|
||||
int stream_size;
|
||||
{
|
||||
return deflateInit2_(strm, level, Z_DEFLATED, -MAX_WBITS, DEF_MEM_LEVEL,
|
||||
Z_DEFAULT_STRATEGY, version, stream_size);
|
||||
/* To do: ignore strm->next_in if we use it as window */
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateInit2_(strm, level, method, windowBits, memLevel, strategy,
|
||||
version, stream_size)
|
||||
z_streamp strm;
|
||||
int level;
|
||||
int method;
|
||||
int windowBits;
|
||||
int memLevel;
|
||||
int strategy;
|
||||
const char *version;
|
||||
int stream_size;
|
||||
{
|
||||
deflate_state *s;
|
||||
int noheader = 0;
|
||||
|
||||
ushf *overlay;
|
||||
/* We overlay pending_buf and d_buf+l_buf. This works since the average
|
||||
* output size for (length,distance) codes is <= 24 bits.
|
||||
*/
|
||||
|
||||
if (stream_size != sizeof(z_stream)) {
|
||||
return Z_VERSION_ERROR;
|
||||
}
|
||||
if (strm == Z_NULL) return Z_STREAM_ERROR;
|
||||
|
||||
// strm->msg = Z_NULL;
|
||||
|
||||
if (level == Z_DEFAULT_COMPRESSION) level = 6;
|
||||
#ifdef FASTEST
|
||||
level = 1;
|
||||
#endif
|
||||
|
||||
if (windowBits < 0) { /* undocumented feature: suppress zlib header */
|
||||
noheader = 1;
|
||||
windowBits = -windowBits;
|
||||
}
|
||||
if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method != Z_DEFLATED ||
|
||||
windowBits < 8 || windowBits > 15 || level < 0 || level > 9 ||
|
||||
strategy < 0 || strategy > Z_HUFFMAN_ONLY) {
|
||||
return Z_STREAM_ERROR;
|
||||
}
|
||||
s = (deflate_state *) ZALLOC(strm, 1, sizeof(deflate_state));
|
||||
if (s == Z_NULL) return Z_MEM_ERROR;
|
||||
strm->state = (struct internal_state FAR *)s;
|
||||
s->strm = strm;
|
||||
|
||||
s->noheader = noheader;
|
||||
s->w_bits = windowBits;
|
||||
s->w_size = 1 << s->w_bits;
|
||||
s->w_mask = s->w_size - 1;
|
||||
|
||||
s->hash_bits = memLevel + 7;
|
||||
s->hash_size = 1 << s->hash_bits;
|
||||
s->hash_mask = s->hash_size - 1;
|
||||
s->hash_shift = ((s->hash_bits+MIN_MATCH-1)/MIN_MATCH);
|
||||
|
||||
s->window = (Bytef *) ZALLOC(strm, s->w_size, 2*sizeof(Byte));
|
||||
s->prev = (Posf *) ZALLOC(strm, s->w_size, sizeof(Pos));
|
||||
s->head = (Posf *) ZALLOC(strm, s->hash_size, sizeof(Pos));
|
||||
|
||||
s->lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */
|
||||
|
||||
overlay = (ushf *) ZALLOC(strm, s->lit_bufsize, sizeof(ush)+2);
|
||||
s->pending_buf = (uchf *) overlay;
|
||||
s->pending_buf_size = (ulg)s->lit_bufsize * (sizeof(ush)+2L);
|
||||
|
||||
if (s->window == Z_NULL || s->prev == Z_NULL || s->head == Z_NULL ||
|
||||
s->pending_buf == Z_NULL) {
|
||||
// strm->msg = (char*)ERR_MSG(Z_MEM_ERROR);
|
||||
deflateEnd (strm);
|
||||
return Z_MEM_ERROR;
|
||||
}
|
||||
s->d_buf = overlay + s->lit_bufsize/sizeof(ush);
|
||||
s->l_buf = s->pending_buf + (1+sizeof(ush))*s->lit_bufsize;
|
||||
|
||||
s->level = level;
|
||||
s->strategy = strategy;
|
||||
s->method = (Byte)method;
|
||||
|
||||
return deflateReset(strm);
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateSetDictionary (strm, dictionary, dictLength)
|
||||
z_streamp strm;
|
||||
const Bytef *dictionary;
|
||||
uInt dictLength;
|
||||
{
|
||||
deflate_state *s;
|
||||
uInt length = dictLength;
|
||||
uInt n;
|
||||
IPos hash_head = 0;
|
||||
|
||||
if (strm == Z_NULL || strm->state == Z_NULL || dictionary == Z_NULL ||
|
||||
strm->state->status != INIT_STATE) return Z_STREAM_ERROR;
|
||||
|
||||
s = strm->state;
|
||||
|
||||
if (length < MIN_MATCH) return Z_OK;
|
||||
if (length > MAX_DIST(s)) {
|
||||
length = MAX_DIST(s);
|
||||
#ifndef USE_DICT_HEAD
|
||||
dictionary += dictLength - length; /* use the tail of the dictionary */
|
||||
#endif
|
||||
}
|
||||
zmemcpy(s->window, dictionary, length);
|
||||
s->strstart = length;
|
||||
s->block_start = (long)length;
|
||||
|
||||
s->ins_h = s->window[0];
|
||||
UPDATE_HASH(s, s->ins_h, s->window[1]);
|
||||
for (n = 0; n <= length - MIN_MATCH; n++) {
|
||||
INSERT_STRING(s, n, hash_head);
|
||||
}
|
||||
if (hash_head) hash_head = 0; /* to make compiler happy */
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateReset (strm)
|
||||
z_streamp strm;
|
||||
{
|
||||
deflate_state *s;
|
||||
|
||||
if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
|
||||
|
||||
strm->total_in = strm->total_out = 0;
|
||||
// strm->msg = Z_NULL; /* use zfree if we ever allocate msg dynamically */
|
||||
|
||||
s = (deflate_state *)strm->state;
|
||||
s->pending = 0;
|
||||
s->pending_out = s->pending_buf;
|
||||
|
||||
if (s->noheader < 0) {
|
||||
s->noheader = 0; /* was set to -1 by deflate(..., Z_FINISH); */
|
||||
}
|
||||
s->status = s->noheader ? BUSY_STATE : INIT_STATE;
|
||||
s->last_flush = Z_NO_FLUSH;
|
||||
|
||||
_tr_init(s);
|
||||
lm_init(s);
|
||||
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateParams(strm, level, strategy)
|
||||
z_streamp strm;
|
||||
int level;
|
||||
int strategy;
|
||||
{
|
||||
deflate_state *s;
|
||||
compress_func func;
|
||||
int err = Z_OK;
|
||||
|
||||
if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
|
||||
s = strm->state;
|
||||
|
||||
if (level == Z_DEFAULT_COMPRESSION) {
|
||||
level = 6;
|
||||
}
|
||||
if (level < 0 || level > 9 || strategy < 0 || strategy > Z_HUFFMAN_ONLY) {
|
||||
return Z_STREAM_ERROR;
|
||||
}
|
||||
func = configuration_table[s->level].func;
|
||||
|
||||
if (func != configuration_table[level].func && strm->total_in != 0) {
|
||||
/* Flush the last buffer: */
|
||||
err = deflate(strm, Z_PARTIAL_FLUSH);
|
||||
}
|
||||
if (s->level != level) {
|
||||
s->level = level;
|
||||
s->max_lazy_match = configuration_table[level].max_lazy;
|
||||
s->good_match = configuration_table[level].good_length;
|
||||
s->nice_match = configuration_table[level].nice_length;
|
||||
s->max_chain_length = configuration_table[level].max_chain;
|
||||
}
|
||||
s->strategy = strategy;
|
||||
return err;
|
||||
}
|
||||
|
||||
local void putShortMSB (s, b)
|
||||
deflate_state *s;
|
||||
uInt b;
|
||||
{
|
||||
put_byte(s, (Byte)(b >> 8));
|
||||
put_byte(s, (Byte)(b & 0xff));
|
||||
}
|
||||
|
||||
local void flush_pending(strm)
|
||||
z_streamp strm;
|
||||
{
|
||||
unsigned len = strm->state->pending;
|
||||
|
||||
if (len > strm->avail_out) len = strm->avail_out;
|
||||
if (len == 0) return;
|
||||
|
||||
zmemcpy(strm->next_out, strm->state->pending_out, len);
|
||||
strm->next_out += len;
|
||||
strm->state->pending_out += len;
|
||||
strm->total_out += len;
|
||||
strm->avail_out -= len;
|
||||
strm->state->pending -= len;
|
||||
if (strm->state->pending == 0) {
|
||||
strm->state->pending_out = strm->state->pending_buf;
|
||||
}
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflate (strm, flush)
|
||||
z_streamp strm;
|
||||
int flush;
|
||||
{
|
||||
int old_flush; /* value of flush param for previous deflate call */
|
||||
deflate_state *s;
|
||||
|
||||
if (strm == Z_NULL || strm->state == Z_NULL ||
|
||||
flush > Z_FINISH || flush < 0) {
|
||||
return Z_STREAM_ERROR;
|
||||
}
|
||||
s = strm->state;
|
||||
|
||||
if (strm->next_out == Z_NULL ||
|
||||
(strm->next_in == Z_NULL && strm->avail_in != 0) ||
|
||||
(s->status == FINISH_STATE && flush != Z_FINISH)) {
|
||||
ERR_RETURN(strm, Z_STREAM_ERROR);
|
||||
}
|
||||
if (strm->avail_out == 0) ERR_RETURN(strm, Z_BUF_ERROR);
|
||||
|
||||
s->strm = strm; /* just in case */
|
||||
old_flush = s->last_flush;
|
||||
s->last_flush = flush;
|
||||
|
||||
/* Write the zlib header */
|
||||
if (s->status == INIT_STATE) {
|
||||
|
||||
uInt header = (Z_DEFLATED + ((s->w_bits-8)<<4)) << 8;
|
||||
uInt level_flags = (s->level-1) >> 1;
|
||||
|
||||
if (level_flags > 3) level_flags = 3;
|
||||
header |= (level_flags << 6);
|
||||
if (s->strstart != 0) header |= PRESET_DICT;
|
||||
header += 31 - (header % 31);
|
||||
|
||||
s->status = BUSY_STATE;
|
||||
putShortMSB(s, header);
|
||||
|
||||
/* Save the adler32 of the preset dictionary: */
|
||||
if (s->strstart != 0) {
|
||||
// putShortMSB(s, (uInt)(strm->adler >> 16));
|
||||
// putShortMSB(s, (uInt)(strm->adler & 0xffff));
|
||||
}
|
||||
// strm->adler = 1L;
|
||||
}
|
||||
|
||||
/* Flush as much pending output as possible */
|
||||
if (s->pending != 0) {
|
||||
flush_pending(strm);
|
||||
if (strm->avail_out == 0) {
|
||||
s->last_flush = -1;
|
||||
return Z_OK;
|
||||
}
|
||||
|
||||
} else if (strm->avail_in == 0 && flush <= old_flush &&
|
||||
flush != Z_FINISH) {
|
||||
ERR_RETURN(strm, Z_BUF_ERROR);
|
||||
}
|
||||
|
||||
/* User must not provide more input after the first FINISH: */
|
||||
if (s->status == FINISH_STATE && strm->avail_in != 0) {
|
||||
ERR_RETURN(strm, Z_BUF_ERROR);
|
||||
}
|
||||
|
||||
/* Start a new block or continue the current one.
|
||||
*/
|
||||
if (strm->avail_in != 0 || s->lookahead != 0 ||
|
||||
(flush != Z_NO_FLUSH && s->status != FINISH_STATE)) {
|
||||
block_state bstate;
|
||||
|
||||
bstate = (*(configuration_table[s->level].func))(s, flush);
|
||||
|
||||
if (bstate == finish_started || bstate == finish_done) {
|
||||
s->status = FINISH_STATE;
|
||||
}
|
||||
if (bstate == need_more || bstate == finish_started) {
|
||||
if (strm->avail_out == 0) {
|
||||
s->last_flush = -1; /* avoid BUF_ERROR next call, see above */
|
||||
}
|
||||
return Z_OK;
|
||||
}
|
||||
if (bstate == block_done) {
|
||||
if (flush == Z_PARTIAL_FLUSH) {
|
||||
_tr_align(s);
|
||||
} else { /* FULL_FLUSH or SYNC_FLUSH */
|
||||
_tr_stored_block(s, (char*)0, 0L, 0);
|
||||
/* For a full flush, this empty block will be recognized
|
||||
* as a special marker by inflate_sync().
|
||||
*/
|
||||
if (flush == Z_FULL_FLUSH) {
|
||||
CLEAR_HASH(s); /* forget history */
|
||||
}
|
||||
}
|
||||
flush_pending(strm);
|
||||
if (strm->avail_out == 0) {
|
||||
s->last_flush = -1; /* avoid BUF_ERROR at next call, see above */
|
||||
return Z_OK;
|
||||
}
|
||||
}
|
||||
}
|
||||
Assert(strm->avail_out > 0, "bug2");
|
||||
|
||||
if (flush != Z_FINISH) return Z_OK;
|
||||
if (s->noheader) return Z_STREAM_END;
|
||||
|
||||
flush_pending(strm);
|
||||
s->noheader = -1; /* write the trailer only once! */
|
||||
return s->pending != 0 ? Z_OK : Z_STREAM_END;
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateEnd (strm)
|
||||
z_streamp strm;
|
||||
{
|
||||
int status;
|
||||
|
||||
if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
|
||||
|
||||
status = strm->state->status;
|
||||
if (status != INIT_STATE && status != BUSY_STATE &&
|
||||
status != FINISH_STATE) {
|
||||
return Z_STREAM_ERROR;
|
||||
}
|
||||
|
||||
/* Deallocate in reverse order of allocations: */
|
||||
TRY_FREE(strm, strm->state->pending_buf);
|
||||
TRY_FREE(strm, strm->state->head);
|
||||
TRY_FREE(strm, strm->state->prev);
|
||||
TRY_FREE(strm, strm->state->window);
|
||||
|
||||
ZFREE(strm, strm->state);
|
||||
strm->state = Z_NULL;
|
||||
|
||||
return status == BUSY_STATE ? Z_DATA_ERROR : Z_OK;
|
||||
}
|
||||
|
||||
|
||||
local int read_buf(strm, buf, size)
|
||||
z_streamp strm;
|
||||
Bytef *buf;
|
||||
unsigned size;
|
||||
{
|
||||
unsigned len = strm->avail_in;
|
||||
|
||||
if (len > size) len = size;
|
||||
if (len == 0) return 0;
|
||||
|
||||
strm->avail_in -= len;
|
||||
|
||||
//if (!strm->state->noheader) {
|
||||
// strm->adler = adler32(strm->adler, strm->next_in, len);
|
||||
// }
|
||||
zmemcpy(buf, strm->next_in, len);
|
||||
strm->next_in += len;
|
||||
strm->total_in += len;
|
||||
|
||||
return (int)len;
|
||||
}
|
||||
|
||||
/* ===========================================================================
|
||||
* Initialize the "longest match" routines for a new zlib stream
|
||||
*/
|
||||
local void lm_init (s)
|
||||
deflate_state *s;
|
||||
{
|
||||
s->window_size = (ulg)2L*s->w_size;
|
||||
|
||||
CLEAR_HASH(s);
|
||||
|
||||
/* Set the default configuration parameters:
|
||||
*/
|
||||
s->max_lazy_match = configuration_table[s->level].max_lazy;
|
||||
s->good_match = configuration_table[s->level].good_length;
|
||||
s->nice_match = configuration_table[s->level].nice_length;
|
||||
s->max_chain_length = configuration_table[s->level].max_chain;
|
||||
|
||||
s->strstart = 0;
|
||||
s->block_start = 0L;
|
||||
s->lookahead = 0;
|
||||
s->match_length = s->prev_length = MIN_MATCH-1;
|
||||
s->match_available = 0;
|
||||
s->ins_h = 0;
|
||||
#ifdef ASMV
|
||||
match_init(); /* initialize the asm code */
|
||||
#endif
|
||||
}
|
||||
|
||||
#ifndef ASMV
|
||||
/* For 80x86 and 680x0, an optimized version will be provided in match.asm or
|
||||
* match.S. The code will be functionally equivalent.
|
||||
*/
|
||||
#ifndef FASTEST
|
||||
local uInt longest_match(s, cur_match)
|
||||
deflate_state *s;
|
||||
IPos cur_match; /* current match */
|
||||
{
|
||||
unsigned chain_length = s->max_chain_length;/* max hash chain length */
|
||||
register Bytef *scan = s->window + s->strstart; /* current string */
|
||||
register Bytef *match; /* matched string */
|
||||
register int len; /* length of current match */
|
||||
int best_len = s->prev_length; /* best match length so far */
|
||||
int nice_match = s->nice_match; /* stop if match long enough */
|
||||
IPos limit = s->strstart > (IPos)MAX_DIST(s) ?
|
||||
s->strstart - (IPos)MAX_DIST(s) : NIL;
|
||||
/* Stop when cur_match becomes <= limit. To simplify the code,
|
||||
* we prevent matches with the string of window index 0.
|
||||
*/
|
||||
Posf *prev = s->prev;
|
||||
uInt wmask = s->w_mask;
|
||||
|
||||
#ifdef UNALIGNED_OK
|
||||
/* Compare two bytes at a time. Note: this is not always beneficial.
|
||||
* Try with and without -DUNALIGNED_OK to check.
|
||||
*/
|
||||
register Bytef *strend = s->window + s->strstart + MAX_MATCH - 1;
|
||||
register ush scan_start = *(ushf*)scan;
|
||||
register ush scan_end = *(ushf*)(scan+best_len-1);
|
||||
#else
|
||||
register Bytef *strend = s->window + s->strstart + MAX_MATCH;
|
||||
register Byte scan_end1 = scan[best_len-1];
|
||||
register Byte scan_end = scan[best_len];
|
||||
#endif
|
||||
|
||||
/* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
|
||||
* It is easy to get rid of this optimization if necessary.
|
||||
*/
|
||||
Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
|
||||
|
||||
/* Do not waste too much time if we already have a good match: */
|
||||
if (s->prev_length >= s->good_match) {
|
||||
chain_length >>= 2;
|
||||
}
|
||||
/* Do not look for matches beyond the end of the input. This is necessary
|
||||
* to make deflate deterministic.
|
||||
*/
|
||||
if ((uInt)nice_match > s->lookahead) nice_match = s->lookahead;
|
||||
|
||||
Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
|
||||
|
||||
do {
|
||||
Assert(cur_match < s->strstart, "no future");
|
||||
match = s->window + cur_match;
|
||||
|
||||
/* Skip to next match if the match length cannot increase
|
||||
* or if the match length is less than 2:
|
||||
*/
|
||||
#if (defined(UNALIGNED_OK) && MAX_MATCH == 258)
|
||||
/* This code assumes sizeof(unsigned short) == 2. Do not use
|
||||
* UNALIGNED_OK if your compiler uses a different size.
|
||||
*/
|
||||
if (*(ushf*)(match+best_len-1) != scan_end ||
|
||||
*(ushf*)match != scan_start) continue;
|
||||
|
||||
Assert(scan[2] == match[2], "scan[2]?");
|
||||
scan++, match++;
|
||||
do {
|
||||
} while (*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
|
||||
*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
|
||||
*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
|
||||
*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
|
||||
scan < strend);
|
||||
/* The funny "do {}" generates better code on most compilers */
|
||||
|
||||
/* Here, scan <= window+strstart+257 */
|
||||
Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
|
||||
if (*scan == *match) scan++;
|
||||
|
||||
len = (MAX_MATCH - 1) - (int)(strend-scan);
|
||||
scan = strend - (MAX_MATCH-1);
|
||||
|
||||
#else /* UNALIGNED_OK */
|
||||
|
||||
if (match[best_len] != scan_end ||
|
||||
match[best_len-1] != scan_end1 ||
|
||||
*match != *scan ||
|
||||
*++match != scan[1]) continue;
|
||||
|
||||
scan += 2, match++;
|
||||
Assert(*scan == *match, "match[2]?");
|
||||
do {
|
||||
} while (*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
scan < strend);
|
||||
|
||||
Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
|
||||
|
||||
len = MAX_MATCH - (int)(strend - scan);
|
||||
scan = strend - MAX_MATCH;
|
||||
|
||||
#endif /* UNALIGNED_OK */
|
||||
|
||||
if (len > best_len) {
|
||||
s->match_start = cur_match;
|
||||
best_len = len;
|
||||
if (len >= nice_match) break;
|
||||
#ifdef UNALIGNED_OK
|
||||
scan_end = *(ushf*)(scan+best_len-1);
|
||||
#else
|
||||
scan_end1 = scan[best_len-1];
|
||||
scan_end = scan[best_len];
|
||||
#endif
|
||||
}
|
||||
} while ((cur_match = prev[cur_match & wmask]) > limit
|
||||
&& --chain_length != 0);
|
||||
|
||||
if ((uInt)best_len <= s->lookahead) return (uInt)best_len;
|
||||
return s->lookahead;
|
||||
}
|
||||
|
||||
#else /* FASTEST */
|
||||
/* ---------------------------------------------------------------------------
|
||||
* Optimized version for level == 1 only
|
||||
*/
|
||||
local uInt longest_match(s, cur_match)
|
||||
deflate_state *s;
|
||||
IPos cur_match; /* current match */
|
||||
{
|
||||
register Bytef *scan = s->window + s->strstart; /* current string */
|
||||
register Bytef *match; /* matched string */
|
||||
register int len; /* length of current match */
|
||||
register Bytef *strend = s->window + s->strstart + MAX_MATCH;
|
||||
|
||||
Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
|
||||
|
||||
Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
|
||||
|
||||
Assert(cur_match < s->strstart, "no future");
|
||||
|
||||
match = s->window + cur_match;
|
||||
|
||||
/* Return failure if the match length is less than 2:
|
||||
*/
|
||||
if (match[0] != scan[0] || match[1] != scan[1]) return MIN_MATCH-1;
|
||||
scan += 2, match += 2;
|
||||
Assert(*scan == *match, "match[2]?");
|
||||
|
||||
do {
|
||||
} while (*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
*++scan == *++match && *++scan == *++match &&
|
||||
scan < strend);
|
||||
|
||||
Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
|
||||
|
||||
len = MAX_MATCH - (int)(strend - scan);
|
||||
|
||||
if (len < MIN_MATCH) return MIN_MATCH - 1;
|
||||
|
||||
s->match_start = cur_match;
|
||||
return len <= s->lookahead ? len : s->lookahead;
|
||||
}
|
||||
#endif /* FASTEST */
|
||||
#endif /* ASMV */
|
||||
|
||||
# define check_match(s, start, match, length)
|
||||
|
||||
local void fill_window(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
register unsigned n, m;
|
||||
register Posf *p;
|
||||
unsigned more; /* Amount of free space at the end of the window. */
|
||||
uInt wsize = s->w_size;
|
||||
|
||||
do {
|
||||
more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart);
|
||||
|
||||
/* Deal with !@#$% 64K limit: */
|
||||
if (more == 0 && s->strstart == 0 && s->lookahead == 0) {
|
||||
more = wsize;
|
||||
|
||||
} else if (more == (unsigned)(-1)) {
|
||||
/* Very unlikely, but possible on 16 bit machine if strstart == 0
|
||||
* and lookahead == 1 (input done one byte at time)
|
||||
*/
|
||||
more--;
|
||||
|
||||
/* If the window is almost full and there is insufficient lookahead,
|
||||
* move the upper half to the lower one to make room in the upper half.
|
||||
*/
|
||||
} else if (s->strstart >= wsize+MAX_DIST(s)) {
|
||||
|
||||
zmemcpy(s->window, s->window+wsize, (unsigned)wsize);
|
||||
s->match_start -= wsize;
|
||||
s->strstart -= wsize; /* we now have strstart >= MAX_DIST */
|
||||
s->block_start -= (long) wsize;
|
||||
|
||||
n = s->hash_size;
|
||||
p = &s->head[n];
|
||||
do {
|
||||
m = *--p;
|
||||
*p = (Pos)(m >= wsize ? m-wsize : NIL);
|
||||
} while (--n);
|
||||
|
||||
n = wsize;
|
||||
#ifndef FASTEST
|
||||
p = &s->prev[n];
|
||||
do {
|
||||
m = *--p;
|
||||
*p = (Pos)(m >= wsize ? m-wsize : NIL);
|
||||
/* If n is not on any hash chain, prev[n] is garbage but
|
||||
* its value will never be used.
|
||||
*/
|
||||
} while (--n);
|
||||
#endif
|
||||
more += wsize;
|
||||
}
|
||||
if (s->strm->avail_in == 0) return;
|
||||
Assert(more >= 2, "more < 2");
|
||||
|
||||
n = read_buf(s->strm, s->window + s->strstart + s->lookahead, more);
|
||||
s->lookahead += n;
|
||||
|
||||
/* Initialize the hash value now that we have some input: */
|
||||
if (s->lookahead >= MIN_MATCH) {
|
||||
s->ins_h = s->window[s->strstart];
|
||||
UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]);
|
||||
#if MIN_MATCH != 3
|
||||
Call UPDATE_HASH() MIN_MATCH-3 more times
|
||||
#endif
|
||||
}
|
||||
|
||||
} while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0);
|
||||
}
|
||||
|
||||
#define FLUSH_BLOCK_ONLY(s, eof) { \
|
||||
_tr_flush_block(s, (s->block_start >= 0L ? \
|
||||
(charf *)&s->window[(unsigned)s->block_start] : \
|
||||
(charf *)Z_NULL), \
|
||||
(ulg)((long)s->strstart - s->block_start), \
|
||||
(eof)); \
|
||||
s->block_start = s->strstart; \
|
||||
flush_pending(s->strm); \
|
||||
Tracev((stderr,"[FLUSH]")); \
|
||||
}
|
||||
|
||||
/* Same but force premature exit if necessary. */
|
||||
#define FLUSH_BLOCK(s, eof) { \
|
||||
FLUSH_BLOCK_ONLY(s, eof); \
|
||||
if (s->strm->avail_out == 0) return (eof) ? finish_started : need_more; \
|
||||
}
|
||||
|
||||
local block_state deflate_stored(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
/* Stored blocks are limited to 0xffff bytes, pending_buf is limited
|
||||
* to pending_buf_size, and each stored block has a 5 byte header:
|
||||
*/
|
||||
ulg max_block_size = 0xffff;
|
||||
ulg max_start;
|
||||
|
||||
if (max_block_size > s->pending_buf_size - 5) {
|
||||
max_block_size = s->pending_buf_size - 5;
|
||||
}
|
||||
|
||||
/* Copy as much as possible from input to output: */
|
||||
for (;;) {
|
||||
/* Fill the window as much as possible: */
|
||||
if (s->lookahead <= 1) {
|
||||
|
||||
Assert(s->strstart < s->w_size+MAX_DIST(s) ||
|
||||
s->block_start >= (long)s->w_size, "slide too late");
|
||||
|
||||
fill_window(s);
|
||||
if (s->lookahead == 0 && flush == Z_NO_FLUSH) return need_more;
|
||||
|
||||
if (s->lookahead == 0) break; /* flush the current block */
|
||||
}
|
||||
Assert(s->block_start >= 0L, "block gone");
|
||||
|
||||
s->strstart += s->lookahead;
|
||||
s->lookahead = 0;
|
||||
|
||||
/* Emit a stored block if pending_buf will be full: */
|
||||
max_start = s->block_start + max_block_size;
|
||||
if (s->strstart == 0 || (ulg)s->strstart >= max_start) {
|
||||
/* strstart == 0 is possible when wraparound on 16-bit machine */
|
||||
s->lookahead = (uInt)(s->strstart - max_start);
|
||||
s->strstart = (uInt)max_start;
|
||||
FLUSH_BLOCK(s, 0);
|
||||
}
|
||||
if (s->strstart - (uInt)s->block_start >= MAX_DIST(s)) {
|
||||
FLUSH_BLOCK(s, 0);
|
||||
}
|
||||
}
|
||||
FLUSH_BLOCK(s, flush == Z_FINISH);
|
||||
return flush == Z_FINISH ? finish_done : block_done;
|
||||
}
|
||||
|
||||
local block_state deflate_fast(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
IPos hash_head = NIL; /* head of the hash chain */
|
||||
int bflush; /* set if current block must be flushed */
|
||||
|
||||
for (;;) {
|
||||
if (s->lookahead < MIN_LOOKAHEAD) {
|
||||
fill_window(s);
|
||||
if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
|
||||
return need_more;
|
||||
}
|
||||
if (s->lookahead == 0) break; /* flush the current block */
|
||||
}
|
||||
|
||||
if (s->lookahead >= MIN_MATCH) {
|
||||
INSERT_STRING(s, s->strstart, hash_head);
|
||||
}
|
||||
|
||||
if (hash_head != NIL && s->strstart - hash_head <= MAX_DIST(s)) {
|
||||
if (s->strategy != Z_HUFFMAN_ONLY) {
|
||||
s->match_length = longest_match (s, hash_head);
|
||||
}
|
||||
/* longest_match() sets match_start */
|
||||
}
|
||||
if (s->match_length >= MIN_MATCH) {
|
||||
check_match(s, s->strstart, s->match_start, s->match_length);
|
||||
|
||||
_tr_tally_dist(s, s->strstart - s->match_start,
|
||||
s->match_length - MIN_MATCH, bflush);
|
||||
|
||||
s->lookahead -= s->match_length;
|
||||
|
||||
/* Insert new strings in the hash table only if the match length
|
||||
* is not too large. This saves time but degrades compression.
|
||||
*/
|
||||
#ifndef FASTEST
|
||||
if (s->match_length <= s->max_insert_length &&
|
||||
s->lookahead >= MIN_MATCH) {
|
||||
s->match_length--; /* string at strstart already in hash table */
|
||||
do {
|
||||
s->strstart++;
|
||||
INSERT_STRING(s, s->strstart, hash_head);
|
||||
/* strstart never exceeds WSIZE-MAX_MATCH, so there are
|
||||
* always MIN_MATCH bytes ahead.
|
||||
*/
|
||||
} while (--s->match_length != 0);
|
||||
s->strstart++;
|
||||
} else
|
||||
#endif
|
||||
{
|
||||
s->strstart += s->match_length;
|
||||
s->match_length = 0;
|
||||
s->ins_h = s->window[s->strstart];
|
||||
UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]);
|
||||
#if MIN_MATCH != 3
|
||||
Call UPDATE_HASH() MIN_MATCH-3 more times
|
||||
#endif
|
||||
}
|
||||
} else {
|
||||
/* No match, output a literal byte */
|
||||
Tracevv((stderr,"%c", s->window[s->strstart]));
|
||||
_tr_tally_lit (s, s->window[s->strstart], bflush);
|
||||
s->lookahead--;
|
||||
s->strstart++;
|
||||
}
|
||||
if (bflush) FLUSH_BLOCK(s, 0);
|
||||
}
|
||||
FLUSH_BLOCK(s, flush == Z_FINISH);
|
||||
return flush == Z_FINISH ? finish_done : block_done;
|
||||
}
|
||||
|
||||
local block_state deflate_slow(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
IPos hash_head = NIL; /* head of hash chain */
|
||||
int bflush; /* set if current block must be flushed */
|
||||
|
||||
/* Process the input block. */
|
||||
for (;;) {
|
||||
if (s->lookahead < MIN_LOOKAHEAD) {
|
||||
fill_window(s);
|
||||
if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
|
||||
return need_more;
|
||||
}
|
||||
if (s->lookahead == 0) break; /* flush the current block */
|
||||
}
|
||||
if (s->lookahead >= MIN_MATCH) {
|
||||
INSERT_STRING(s, s->strstart, hash_head);
|
||||
}
|
||||
|
||||
/* Find the longest match, discarding those <= prev_length.
|
||||
*/
|
||||
s->prev_length = s->match_length, s->prev_match = s->match_start;
|
||||
s->match_length = MIN_MATCH-1;
|
||||
|
||||
if (hash_head != NIL && s->prev_length < s->max_lazy_match &&
|
||||
s->strstart - hash_head <= MAX_DIST(s)) {
|
||||
if (s->strategy != Z_HUFFMAN_ONLY) {
|
||||
s->match_length = longest_match (s, hash_head);
|
||||
}
|
||||
/* longest_match() sets match_start */
|
||||
|
||||
if (s->match_length <= 5 && (s->strategy == Z_FILTERED ||
|
||||
(s->match_length == MIN_MATCH &&
|
||||
s->strstart - s->match_start > TOO_FAR))) {
|
||||
|
||||
s->match_length = MIN_MATCH-1;
|
||||
}
|
||||
}
|
||||
if (s->prev_length >= MIN_MATCH && s->match_length <= s->prev_length) {
|
||||
uInt max_insert = s->strstart + s->lookahead - MIN_MATCH;
|
||||
/* Do not insert strings in hash table beyond this. */
|
||||
|
||||
check_match(s, s->strstart-1, s->prev_match, s->prev_length);
|
||||
|
||||
_tr_tally_dist(s, s->strstart -1 - s->prev_match,
|
||||
s->prev_length - MIN_MATCH, bflush);
|
||||
|
||||
s->lookahead -= s->prev_length-1;
|
||||
s->prev_length -= 2;
|
||||
do {
|
||||
if (++s->strstart <= max_insert) {
|
||||
INSERT_STRING(s, s->strstart, hash_head);
|
||||
}
|
||||
} while (--s->prev_length != 0);
|
||||
s->match_available = 0;
|
||||
s->match_length = MIN_MATCH-1;
|
||||
s->strstart++;
|
||||
|
||||
if (bflush) FLUSH_BLOCK(s, 0);
|
||||
|
||||
} else if (s->match_available) {
|
||||
Tracevv((stderr,"%c", s->window[s->strstart-1]));
|
||||
_tr_tally_lit(s, s->window[s->strstart-1], bflush);
|
||||
if (bflush) {
|
||||
FLUSH_BLOCK_ONLY(s, 0);
|
||||
}
|
||||
s->strstart++;
|
||||
s->lookahead--;
|
||||
if (s->strm->avail_out == 0) return need_more;
|
||||
} else {
|
||||
/* There is no previous match to compare with, wait for
|
||||
* the next step to decide.
|
||||
*/
|
||||
s->match_available = 1;
|
||||
s->strstart++;
|
||||
s->lookahead--;
|
||||
}
|
||||
}
|
||||
Assert (flush != Z_NO_FLUSH, "no flush?");
|
||||
if (s->match_available) {
|
||||
Tracevv((stderr,"%c", s->window[s->strstart-1]));
|
||||
_tr_tally_lit(s, s->window[s->strstart-1], bflush);
|
||||
s->match_available = 0;
|
||||
}
|
||||
FLUSH_BLOCK(s, flush == Z_FINISH);
|
||||
return flush == Z_FINISH ? finish_done : block_done;
|
||||
}
|
883
Source/zlib/trees.c
Normal file
883
Source/zlib/trees.c
Normal file
|
@ -0,0 +1,883 @@
|
|||
/* trees.c -- output deflated data using Huffman coding
|
||||
* Copyright (C) 1995-1998 Jean-loup Gailly
|
||||
* For conditions of distribution and use, see copyright notice in zlib.h
|
||||
*/
|
||||
|
||||
|
||||
#include "deflate.h"
|
||||
|
||||
#ifdef DEBUG
|
||||
# include <ctype.h>
|
||||
#endif
|
||||
|
||||
/* ===========================================================================
|
||||
* Constants
|
||||
*/
|
||||
|
||||
#define MAX_BL_BITS 7
|
||||
/* Bit length codes must not exceed MAX_BL_BITS bits */
|
||||
|
||||
#define END_BLOCK 256
|
||||
/* end of block literal code */
|
||||
|
||||
#define REP_3_6 16
|
||||
/* repeat previous bit length 3-6 times (2 bits of repeat count) */
|
||||
|
||||
#define REPZ_3_10 17
|
||||
/* repeat a zero length 3-10 times (3 bits of repeat count) */
|
||||
|
||||
#define REPZ_11_138 18
|
||||
/* repeat a zero length 11-138 times (7 bits of repeat count) */
|
||||
|
||||
local const int extra_lbits[LENGTH_CODES] /* extra bits for each length code */
|
||||
= {0,0,0,0,0,0,0,0,1,1,1,1,2,2,2,2,3,3,3,3,4,4,4,4,5,5,5,5,0};
|
||||
|
||||
local const int extra_dbits[D_CODES] /* extra bits for each distance code */
|
||||
= {0,0,0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11,12,12,13,13};
|
||||
|
||||
local const int extra_blbits[BL_CODES]/* extra bits for each bit length code */
|
||||
= {0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,2,3,7};
|
||||
|
||||
local const uch bl_order[BL_CODES]
|
||||
= {16,17,18,0,8,7,9,6,10,5,11,4,12,3,13,2,14,1,15};
|
||||
/* The lengths of the bit length codes are sent in order of decreasing
|
||||
* probability, to avoid transmitting the lengths for unused bit length codes.
|
||||
*/
|
||||
|
||||
#define Buf_size (8 * 2*sizeof(char))
|
||||
|
||||
#define DIST_CODE_LEN 512 /* see definition of array dist_code below */
|
||||
|
||||
local ct_data static_ltree[L_CODES+2];
|
||||
|
||||
local ct_data static_dtree[D_CODES];
|
||||
|
||||
uch _dist_code[DIST_CODE_LEN];
|
||||
|
||||
uch _length_code[MAX_MATCH-MIN_MATCH+1];
|
||||
/* length code for each normalized match length (0 == MIN_MATCH) */
|
||||
|
||||
local int base_length[LENGTH_CODES];
|
||||
/* First normalized length for each code (0 = MIN_MATCH) */
|
||||
|
||||
local int base_dist[D_CODES];
|
||||
/* First normalized distance for each code (0 = distance of 1) */
|
||||
|
||||
struct static_tree_desc_s {
|
||||
const ct_data *static_tree; /* static tree or NULL */
|
||||
const intf *extra_bits; /* extra bits for each code or NULL */
|
||||
int extra_base; /* base index for extra_bits */
|
||||
int elems; /* max number of elements in the tree */
|
||||
int max_length; /* max bit length for the codes */
|
||||
};
|
||||
|
||||
local static_tree_desc static_l_desc =
|
||||
{static_ltree, extra_lbits, LITERALS+1, L_CODES, MAX_BITS};
|
||||
|
||||
local static_tree_desc static_d_desc =
|
||||
{static_dtree, extra_dbits, 0, D_CODES, MAX_BITS};
|
||||
|
||||
local static_tree_desc static_bl_desc =
|
||||
{(const ct_data *)0, extra_blbits, 0, BL_CODES, MAX_BL_BITS};
|
||||
|
||||
/* ===========================================================================
|
||||
* Local (static) routines in this file.
|
||||
*/
|
||||
|
||||
local void tr_static_init OF((void));
|
||||
local void init_block OF((deflate_state *s));
|
||||
local void pqdownheap OF((deflate_state *s, ct_data *tree, int k));
|
||||
local void gen_bitlen OF((deflate_state *s, tree_desc *desc));
|
||||
local void gen_codes OF((ct_data *tree, int max_code, ushf *bl_count));
|
||||
local void build_tree OF((deflate_state *s, tree_desc *desc));
|
||||
local void scan_tree OF((deflate_state *s, ct_data *tree, int max_code));
|
||||
local void send_tree OF((deflate_state *s, ct_data *tree, int max_code));
|
||||
local int build_bl_tree OF((deflate_state *s));
|
||||
local void send_all_trees OF((deflate_state *s, int lcodes, int dcodes,
|
||||
int blcodes));
|
||||
local void compress_block OF((deflate_state *s, ct_data *ltree,
|
||||
ct_data *dtree));
|
||||
local unsigned bi_reverse OF((unsigned value, int length));
|
||||
local void bi_windup OF((deflate_state *s));
|
||||
local void bi_flush OF((deflate_state *s));
|
||||
local void copy_block OF((deflate_state *s, charf *buf, unsigned len,
|
||||
int header));
|
||||
|
||||
#ifdef GEN_TREES_H
|
||||
local void gen_trees_header OF((void));
|
||||
#endif
|
||||
|
||||
#ifndef DEBUG
|
||||
# define send_code(s, c, tree) send_bits(s, tree[c].Code, tree[c].Len)
|
||||
/* Send a code of the given tree. c and tree must not have side effects */
|
||||
|
||||
#else /* DEBUG */
|
||||
# define send_code(s, c, tree) \
|
||||
{ if (z_verbose>2) fprintf(stderr,"\ncd %3d ",(c)); \
|
||||
send_bits(s, tree[c].Code, tree[c].Len); }
|
||||
#endif
|
||||
|
||||
/* ===========================================================================
|
||||
* Output a short LSB first on the stream.
|
||||
* IN assertion: there is enough room in pendingBuf.
|
||||
*/
|
||||
#define put_short(s, w) { \
|
||||
put_byte(s, (uch)((w) & 0xff)); \
|
||||
put_byte(s, (uch)((ush)(w) >> 8)); \
|
||||
}
|
||||
|
||||
/* ===========================================================================
|
||||
* Send a value on a given number of bits.
|
||||
* IN assertion: length <= 16 and value fits in length bits.
|
||||
*/
|
||||
#ifdef DEBUG
|
||||
local void send_bits OF((deflate_state *s, int value, int length));
|
||||
|
||||
local void send_bits(s, value, length)
|
||||
deflate_state *s;
|
||||
int value; /* value to send */
|
||||
int length; /* number of bits */
|
||||
{
|
||||
Tracevv((stderr," l %2d v %4x ", length, value));
|
||||
Assert(length > 0 && length <= 15, "invalid length");
|
||||
s->bits_sent += (ulg)length;
|
||||
|
||||
if (s->bi_valid > (int)Buf_size - length) {
|
||||
s->bi_buf |= (value << s->bi_valid);
|
||||
put_short(s, s->bi_buf);
|
||||
s->bi_buf = (ush)value >> (Buf_size - s->bi_valid);
|
||||
s->bi_valid += length - Buf_size;
|
||||
} else {
|
||||
s->bi_buf |= value << s->bi_valid;
|
||||
s->bi_valid += length;
|
||||
}
|
||||
}
|
||||
#else /* !DEBUG */
|
||||
|
||||
#define send_bits(s, value, length) \
|
||||
{ int len = length;\
|
||||
if (s->bi_valid > (int)Buf_size - len) {\
|
||||
int val = value;\
|
||||
s->bi_buf |= (val << s->bi_valid);\
|
||||
put_short(s, s->bi_buf);\
|
||||
s->bi_buf = (ush)val >> (Buf_size - s->bi_valid);\
|
||||
s->bi_valid += len - Buf_size;\
|
||||
} else {\
|
||||
s->bi_buf |= (value) << s->bi_valid;\
|
||||
s->bi_valid += len;\
|
||||
}\
|
||||
}
|
||||
#endif /* DEBUG */
|
||||
|
||||
|
||||
#define MAX(a,b) (a >= b ? a : b)
|
||||
/* the arguments must not have side effects */
|
||||
|
||||
/* ===========================================================================
|
||||
* Initialize the various 'constant' tables.
|
||||
*/
|
||||
local void tr_static_init()
|
||||
{
|
||||
static int static_init_done = 0;
|
||||
int n; /* iterates over tree elements */
|
||||
int bits; /* bit counter */
|
||||
int length; /* length value */
|
||||
int code; /* code value */
|
||||
int dist; /* distance index */
|
||||
ush bl_count[MAX_BITS+1];
|
||||
/* number of codes at each bit length for an optimal tree */
|
||||
|
||||
if (static_init_done) return;
|
||||
|
||||
/* For some embedded targets, global variables are not initialized: */
|
||||
static_l_desc.static_tree = static_ltree;
|
||||
static_l_desc.extra_bits = extra_lbits;
|
||||
static_d_desc.static_tree = static_dtree;
|
||||
static_d_desc.extra_bits = extra_dbits;
|
||||
static_bl_desc.extra_bits = extra_blbits;
|
||||
|
||||
/* Initialize the mapping length (0..255) -> length code (0..28) */
|
||||
length = 0;
|
||||
for (code = 0; code < LENGTH_CODES-1; code++) {
|
||||
base_length[code] = length;
|
||||
for (n = 0; n < (1<<extra_lbits[code]); n++) {
|
||||
_length_code[length++] = (uch)code;
|
||||
}
|
||||
}
|
||||
Assert (length == 256, "tr_static_init: length != 256");
|
||||
_length_code[length-1] = (uch)code;
|
||||
|
||||
/* Initialize the mapping dist (0..32K) -> dist code (0..29) */
|
||||
dist = 0;
|
||||
for (code = 0 ; code < 16; code++) {
|
||||
base_dist[code] = dist;
|
||||
for (n = 0; n < (1<<extra_dbits[code]); n++) {
|
||||
_dist_code[dist++] = (uch)code;
|
||||
}
|
||||
}
|
||||
Assert (dist == 256, "tr_static_init: dist != 256");
|
||||
dist >>= 7; /* from now on, all distances are divided by 128 */
|
||||
for ( ; code < D_CODES; code++) {
|
||||
base_dist[code] = dist << 7;
|
||||
for (n = 0; n < (1<<(extra_dbits[code]-7)); n++) {
|
||||
_dist_code[256 + dist++] = (uch)code;
|
||||
}
|
||||
}
|
||||
Assert (dist == 256, "tr_static_init: 256+dist != 512");
|
||||
|
||||
/* Construct the codes of the static literal tree */
|
||||
for (bits = 0; bits <= MAX_BITS; bits++) bl_count[bits] = 0;
|
||||
n = 0;
|
||||
while (n <= 143) static_ltree[n++].Len = 8, bl_count[8]++;
|
||||
while (n <= 255) static_ltree[n++].Len = 9, bl_count[9]++;
|
||||
while (n <= 279) static_ltree[n++].Len = 7, bl_count[7]++;
|
||||
while (n <= 287) static_ltree[n++].Len = 8, bl_count[8]++;
|
||||
gen_codes((ct_data *)static_ltree, L_CODES+1, bl_count);
|
||||
|
||||
/* The static distance tree is trivial: */
|
||||
for (n = 0; n < D_CODES; n++) {
|
||||
static_dtree[n].Len = 5;
|
||||
static_dtree[n].Code = bi_reverse((unsigned)n, 5);
|
||||
}
|
||||
static_init_done = 1;
|
||||
|
||||
}
|
||||
|
||||
|
||||
void _tr_init(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
tr_static_init();
|
||||
|
||||
s->l_desc.dyn_tree = s->dyn_ltree;
|
||||
s->l_desc.stat_desc = &static_l_desc;
|
||||
|
||||
s->d_desc.dyn_tree = s->dyn_dtree;
|
||||
s->d_desc.stat_desc = &static_d_desc;
|
||||
|
||||
s->bl_desc.dyn_tree = s->bl_tree;
|
||||
s->bl_desc.stat_desc = &static_bl_desc;
|
||||
|
||||
s->bi_buf = 0;
|
||||
s->bi_valid = 0;
|
||||
s->last_eob_len = 8; /* enough lookahead for inflate */
|
||||
#ifdef DEBUG
|
||||
s->compressed_len = 0L;
|
||||
s->bits_sent = 0L;
|
||||
#endif
|
||||
|
||||
/* Initialize the first block of the first file: */
|
||||
init_block(s);
|
||||
}
|
||||
|
||||
local void init_block(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
int n; /* iterates over tree elements */
|
||||
|
||||
/* Initialize the trees. */
|
||||
for (n = 0; n < L_CODES; n++) s->dyn_ltree[n].Freq = 0;
|
||||
for (n = 0; n < D_CODES; n++) s->dyn_dtree[n].Freq = 0;
|
||||
for (n = 0; n < BL_CODES; n++) s->bl_tree[n].Freq = 0;
|
||||
|
||||
s->dyn_ltree[END_BLOCK].Freq = 1;
|
||||
s->opt_len = s->static_len = 0L;
|
||||
s->last_lit = s->matches = 0;
|
||||
}
|
||||
|
||||
#define SMALLEST 1
|
||||
#define pqremove(s, tree, top) \
|
||||
{\
|
||||
top = s->heap[SMALLEST]; \
|
||||
s->heap[SMALLEST] = s->heap[s->heap_len--]; \
|
||||
pqdownheap(s, tree, SMALLEST); \
|
||||
}
|
||||
#define smaller(tree, n, m, depth) \
|
||||
(tree[n].Freq < tree[m].Freq || \
|
||||
(tree[n].Freq == tree[m].Freq && depth[n] <= depth[m]))
|
||||
|
||||
local void pqdownheap(s, tree, k)
|
||||
deflate_state *s;
|
||||
ct_data *tree; /* the tree to restore */
|
||||
int k; /* node to move down */
|
||||
{
|
||||
int v = s->heap[k];
|
||||
int j = k << 1; /* left son of k */
|
||||
while (j <= s->heap_len) {
|
||||
/* Set j to the smallest of the two sons: */
|
||||
if (j < s->heap_len &&
|
||||
smaller(tree, s->heap[j+1], s->heap[j], s->depth)) {
|
||||
j++;
|
||||
}
|
||||
/* Exit if v is smaller than both sons */
|
||||
if (smaller(tree, v, s->heap[j], s->depth)) break;
|
||||
|
||||
/* Exchange v with the smallest son */
|
||||
s->heap[k] = s->heap[j]; k = j;
|
||||
|
||||
/* And continue down the tree, setting j to the left son of k */
|
||||
j <<= 1;
|
||||
}
|
||||
s->heap[k] = v;
|
||||
}
|
||||
|
||||
local void gen_bitlen(s, desc)
|
||||
deflate_state *s;
|
||||
tree_desc *desc; /* the tree descriptor */
|
||||
{
|
||||
ct_data *tree = desc->dyn_tree;
|
||||
int max_code = desc->max_code;
|
||||
const ct_data *stree = desc->stat_desc->static_tree;
|
||||
const intf *extra = desc->stat_desc->extra_bits;
|
||||
int base = desc->stat_desc->extra_base;
|
||||
int max_length = desc->stat_desc->max_length;
|
||||
int h; /* heap index */
|
||||
int n, m; /* iterate over the tree elements */
|
||||
int bits; /* bit length */
|
||||
int xbits; /* extra bits */
|
||||
ush f; /* frequency */
|
||||
int overflow = 0; /* number of elements with bit length too large */
|
||||
|
||||
for (bits = 0; bits <= MAX_BITS; bits++) s->bl_count[bits] = 0;
|
||||
|
||||
tree[s->heap[s->heap_max]].Len = 0; /* root of the heap */
|
||||
|
||||
for (h = s->heap_max+1; h < HEAP_SIZE; h++) {
|
||||
n = s->heap[h];
|
||||
bits = tree[tree[n].Dad].Len + 1;
|
||||
if (bits > max_length) bits = max_length, overflow++;
|
||||
tree[n].Len = (ush)bits;
|
||||
/* We overwrite tree[n].Dad which is no longer needed */
|
||||
|
||||
if (n > max_code) continue; /* not a leaf node */
|
||||
|
||||
s->bl_count[bits]++;
|
||||
xbits = 0;
|
||||
if (n >= base) xbits = extra[n-base];
|
||||
f = tree[n].Freq;
|
||||
s->opt_len += (ulg)f * (bits + xbits);
|
||||
if (stree) s->static_len += (ulg)f * (stree[n].Len + xbits);
|
||||
}
|
||||
if (overflow == 0) return;
|
||||
|
||||
Trace((stderr,"\nbit length overflow\n"));
|
||||
do {
|
||||
bits = max_length-1;
|
||||
while (s->bl_count[bits] == 0) bits--;
|
||||
s->bl_count[bits]--; /* move one leaf down the tree */
|
||||
s->bl_count[bits+1] += 2; /* move one overflow item as its brother */
|
||||
s->bl_count[max_length]--;
|
||||
overflow -= 2;
|
||||
} while (overflow > 0);
|
||||
|
||||
for (bits = max_length; bits != 0; bits--) {
|
||||
n = s->bl_count[bits];
|
||||
while (n != 0) {
|
||||
m = s->heap[--h];
|
||||
if (m > max_code) continue;
|
||||
if (tree[m].Len != (unsigned) bits) {
|
||||
Trace((stderr,"code %d bits %d->%d\n", m, tree[m].Len, bits));
|
||||
s->opt_len += ((long)bits - (long)tree[m].Len)
|
||||
*(long)tree[m].Freq;
|
||||
tree[m].Len = (ush)bits;
|
||||
}
|
||||
n--;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
local void gen_codes (tree, max_code, bl_count)
|
||||
ct_data *tree; /* the tree to decorate */
|
||||
int max_code; /* largest code with non zero frequency */
|
||||
ushf *bl_count; /* number of codes at each bit length */
|
||||
{
|
||||
ush next_code[MAX_BITS+1]; /* next code value for each bit length */
|
||||
ush code = 0; /* running code value */
|
||||
int bits; /* bit index */
|
||||
int n; /* code index */
|
||||
|
||||
for (bits = 1; bits <= MAX_BITS; bits++) {
|
||||
next_code[bits] = code = (code + bl_count[bits-1]) << 1;
|
||||
}
|
||||
Assert (code + bl_count[MAX_BITS]-1 == (1<<MAX_BITS)-1,
|
||||
"inconsistent bit counts");
|
||||
Tracev((stderr,"\ngen_codes: max_code %d ", max_code));
|
||||
|
||||
for (n = 0; n <= max_code; n++) {
|
||||
int len = tree[n].Len;
|
||||
if (len == 0) continue;
|
||||
/* Now reverse the bits */
|
||||
tree[n].Code = bi_reverse(next_code[len]++, len);
|
||||
|
||||
Tracecv(tree != static_ltree, (stderr,"\nn %3d %c l %2d c %4x (%x) ",
|
||||
n, (isgraph(n) ? n : ' '), len, tree[n].Code, next_code[len]-1));
|
||||
}
|
||||
}
|
||||
|
||||
local void build_tree(s, desc)
|
||||
deflate_state *s;
|
||||
tree_desc *desc; /* the tree descriptor */
|
||||
{
|
||||
ct_data *tree = desc->dyn_tree;
|
||||
const ct_data *stree = desc->stat_desc->static_tree;
|
||||
int elems = desc->stat_desc->elems;
|
||||
int n, m; /* iterate over heap elements */
|
||||
int max_code = -1; /* largest code with non zero frequency */
|
||||
int node; /* new node being created */
|
||||
|
||||
s->heap_len = 0, s->heap_max = HEAP_SIZE;
|
||||
|
||||
for (n = 0; n < elems; n++) {
|
||||
if (tree[n].Freq != 0) {
|
||||
s->heap[++(s->heap_len)] = max_code = n;
|
||||
s->depth[n] = 0;
|
||||
} else {
|
||||
tree[n].Len = 0;
|
||||
}
|
||||
}
|
||||
while (s->heap_len < 2) {
|
||||
node = s->heap[++(s->heap_len)] = (max_code < 2 ? ++max_code : 0);
|
||||
tree[node].Freq = 1;
|
||||
s->depth[node] = 0;
|
||||
s->opt_len--; if (stree) s->static_len -= stree[node].Len;
|
||||
/* node is 0 or 1 so it does not have extra bits */
|
||||
}
|
||||
desc->max_code = max_code;
|
||||
|
||||
for (n = s->heap_len/2; n >= 1; n--) pqdownheap(s, tree, n);
|
||||
|
||||
node = elems; /* next internal node of the tree */
|
||||
do {
|
||||
pqremove(s, tree, n); /* n = node of least frequency */
|
||||
m = s->heap[SMALLEST]; /* m = node of next least frequency */
|
||||
|
||||
s->heap[--(s->heap_max)] = n; /* keep the nodes sorted by frequency */
|
||||
s->heap[--(s->heap_max)] = m;
|
||||
|
||||
/* Create a new node father of n and m */
|
||||
tree[node].Freq = tree[n].Freq + tree[m].Freq;
|
||||
s->depth[node] = (uch) (MAX(s->depth[n], s->depth[m]) + 1);
|
||||
tree[n].Dad = tree[m].Dad = (ush)node;
|
||||
#ifdef DUMP_BL_TREE
|
||||
if (tree == s->bl_tree) {
|
||||
fprintf(stderr,"\nnode %d(%d), sons %d(%d) %d(%d)",
|
||||
node, tree[node].Freq, n, tree[n].Freq, m, tree[m].Freq);
|
||||
}
|
||||
#endif
|
||||
/* and insert the new node in the heap */
|
||||
s->heap[SMALLEST] = node++;
|
||||
pqdownheap(s, tree, SMALLEST);
|
||||
|
||||
} while (s->heap_len >= 2);
|
||||
|
||||
s->heap[--(s->heap_max)] = s->heap[SMALLEST];
|
||||
|
||||
gen_bitlen(s, (tree_desc *)desc);
|
||||
|
||||
/* The field len is now set, we can generate the bit codes */
|
||||
gen_codes ((ct_data *)tree, max_code, s->bl_count);
|
||||
}
|
||||
|
||||
local void scan_tree (s, tree, max_code)
|
||||
deflate_state *s;
|
||||
ct_data *tree; /* the tree to be scanned */
|
||||
int max_code; /* and its largest code of non zero frequency */
|
||||
{
|
||||
int n; /* iterates over all tree elements */
|
||||
int prevlen = -1; /* last emitted length */
|
||||
int curlen; /* length of current code */
|
||||
int nextlen = tree[0].Len; /* length of next code */
|
||||
int count = 0; /* repeat count of the current code */
|
||||
int max_count = 7; /* max repeat count */
|
||||
int min_count = 4; /* min repeat count */
|
||||
|
||||
if (nextlen == 0) max_count = 138, min_count = 3;
|
||||
tree[max_code+1].Len = (ush)0xffff; /* guard */
|
||||
|
||||
for (n = 0; n <= max_code; n++) {
|
||||
curlen = nextlen; nextlen = tree[n+1].Len;
|
||||
if (++count < max_count && curlen == nextlen) {
|
||||
continue;
|
||||
} else if (count < min_count) {
|
||||
s->bl_tree[curlen].Freq += count;
|
||||
} else if (curlen != 0) {
|
||||
if (curlen != prevlen) s->bl_tree[curlen].Freq++;
|
||||
s->bl_tree[REP_3_6].Freq++;
|
||||
} else if (count <= 10) {
|
||||
s->bl_tree[REPZ_3_10].Freq++;
|
||||
} else {
|
||||
s->bl_tree[REPZ_11_138].Freq++;
|
||||
}
|
||||
count = 0; prevlen = curlen;
|
||||
if (nextlen == 0) {
|
||||
max_count = 138, min_count = 3;
|
||||
} else if (curlen == nextlen) {
|
||||
max_count = 6, min_count = 3;
|
||||
} else {
|
||||
max_count = 7, min_count = 4;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
local void send_tree (s, tree, max_code)
|
||||
deflate_state *s;
|
||||
ct_data *tree; /* the tree to be scanned */
|
||||
int max_code; /* and its largest code of non zero frequency */
|
||||
{
|
||||
int n; /* iterates over all tree elements */
|
||||
int prevlen = -1; /* last emitted length */
|
||||
int curlen; /* length of current code */
|
||||
int nextlen = tree[0].Len; /* length of next code */
|
||||
int count = 0; /* repeat count of the current code */
|
||||
int max_count = 7; /* max repeat count */
|
||||
int min_count = 4; /* min repeat count */
|
||||
|
||||
/* tree[max_code+1].Len = -1; */ /* guard already set */
|
||||
if (nextlen == 0) max_count = 138, min_count = 3;
|
||||
|
||||
for (n = 0; n <= max_code; n++) {
|
||||
curlen = nextlen; nextlen = tree[n+1].Len;
|
||||
if (++count < max_count && curlen == nextlen) {
|
||||
continue;
|
||||
} else if (count < min_count) {
|
||||
do { send_code(s, curlen, s->bl_tree); } while (--count != 0);
|
||||
|
||||
} else if (curlen != 0) {
|
||||
if (curlen != prevlen) {
|
||||
send_code(s, curlen, s->bl_tree); count--;
|
||||
}
|
||||
Assert(count >= 3 && count <= 6, " 3_6?");
|
||||
send_code(s, REP_3_6, s->bl_tree); send_bits(s, count-3, 2);
|
||||
|
||||
} else if (count <= 10) {
|
||||
send_code(s, REPZ_3_10, s->bl_tree); send_bits(s, count-3, 3);
|
||||
|
||||
} else {
|
||||
send_code(s, REPZ_11_138, s->bl_tree); send_bits(s, count-11, 7);
|
||||
}
|
||||
count = 0; prevlen = curlen;
|
||||
if (nextlen == 0) {
|
||||
max_count = 138, min_count = 3;
|
||||
} else if (curlen == nextlen) {
|
||||
max_count = 6, min_count = 3;
|
||||
} else {
|
||||
max_count = 7, min_count = 4;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
local int build_bl_tree(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
int max_blindex; /* index of last bit length code of non zero freq */
|
||||
|
||||
/* Determine the bit length frequencies for literal and distance trees */
|
||||
scan_tree(s, (ct_data *)s->dyn_ltree, s->l_desc.max_code);
|
||||
scan_tree(s, (ct_data *)s->dyn_dtree, s->d_desc.max_code);
|
||||
|
||||
/* Build the bit length tree: */
|
||||
build_tree(s, (tree_desc *)(&(s->bl_desc)));
|
||||
for (max_blindex = BL_CODES-1; max_blindex >= 3; max_blindex--) {
|
||||
if (s->bl_tree[bl_order[max_blindex]].Len != 0) break;
|
||||
}
|
||||
/* Update opt_len to include the bit length tree and counts */
|
||||
s->opt_len += 3*(max_blindex+1) + 5+5+4;
|
||||
Tracev((stderr, "\ndyn trees: dyn %ld, stat %ld",
|
||||
s->opt_len, s->static_len));
|
||||
|
||||
return max_blindex;
|
||||
}
|
||||
|
||||
local void send_all_trees(s, lcodes, dcodes, blcodes)
|
||||
deflate_state *s;
|
||||
int lcodes, dcodes, blcodes; /* number of codes for each tree */
|
||||
{
|
||||
int rank; /* index in bl_order */
|
||||
|
||||
Assert (lcodes >= 257 && dcodes >= 1 && blcodes >= 4, "not enough codes");
|
||||
Assert (lcodes <= L_CODES && dcodes <= D_CODES && blcodes <= BL_CODES,
|
||||
"too many codes");
|
||||
Tracev((stderr, "\nbl counts: "));
|
||||
send_bits(s, lcodes-257, 5); /* not +255 as stated in appnote.txt */
|
||||
send_bits(s, dcodes-1, 5);
|
||||
send_bits(s, blcodes-4, 4); /* not -3 as stated in appnote.txt */
|
||||
for (rank = 0; rank < blcodes; rank++) {
|
||||
Tracev((stderr, "\nbl code %2d ", bl_order[rank]));
|
||||
send_bits(s, s->bl_tree[bl_order[rank]].Len, 3);
|
||||
}
|
||||
Tracev((stderr, "\nbl tree: sent %ld", s->bits_sent));
|
||||
|
||||
send_tree(s, (ct_data *)s->dyn_ltree, lcodes-1); /* literal tree */
|
||||
Tracev((stderr, "\nlit tree: sent %ld", s->bits_sent));
|
||||
|
||||
send_tree(s, (ct_data *)s->dyn_dtree, dcodes-1); /* distance tree */
|
||||
Tracev((stderr, "\ndist tree: sent %ld", s->bits_sent));
|
||||
}
|
||||
|
||||
void _tr_stored_block(s, buf, stored_len, eof)
|
||||
deflate_state *s;
|
||||
charf *buf; /* input block */
|
||||
ulg stored_len; /* length of input block */
|
||||
int eof; /* true if this is the last block for a file */
|
||||
{
|
||||
send_bits(s, (STORED_BLOCK<<1)+eof, 3); /* send block type */
|
||||
#ifdef DEBUG
|
||||
s->compressed_len = (s->compressed_len + 3 + 7) & (ulg)~7L;
|
||||
s->compressed_len += (stored_len + 4) << 3;
|
||||
#endif
|
||||
copy_block(s, buf, (unsigned)stored_len, 1); /* with header */
|
||||
}
|
||||
|
||||
void _tr_align(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
send_bits(s, STATIC_TREES<<1, 3);
|
||||
send_code(s, END_BLOCK, static_ltree);
|
||||
#ifdef DEBUG
|
||||
s->compressed_len += 10L; /* 3 for block type, 7 for EOB */
|
||||
#endif
|
||||
bi_flush(s);
|
||||
if (1 + s->last_eob_len + 10 - s->bi_valid < 9) {
|
||||
send_bits(s, STATIC_TREES<<1, 3);
|
||||
send_code(s, END_BLOCK, static_ltree);
|
||||
#ifdef DEBUG
|
||||
s->compressed_len += 10L;
|
||||
#endif
|
||||
bi_flush(s);
|
||||
}
|
||||
s->last_eob_len = 7;
|
||||
}
|
||||
|
||||
void _tr_flush_block(s, buf, stored_len, eof)
|
||||
deflate_state *s;
|
||||
charf *buf; /* input block, or NULL if too old */
|
||||
ulg stored_len; /* length of input block */
|
||||
int eof; /* true if this is the last block for a file */
|
||||
{
|
||||
ulg opt_lenb, static_lenb; /* opt_len and static_len in bytes */
|
||||
int max_blindex = 0; /* index of last bit length code of non zero freq */
|
||||
|
||||
/* Build the Huffman trees unless a stored block is forced */
|
||||
if (s->level > 0) {
|
||||
|
||||
|
||||
/* Construct the literal and distance trees */
|
||||
build_tree(s, (tree_desc *)(&(s->l_desc)));
|
||||
Tracev((stderr, "\nlit data: dyn %ld, stat %ld", s->opt_len,
|
||||
s->static_len));
|
||||
|
||||
build_tree(s, (tree_desc *)(&(s->d_desc)));
|
||||
Tracev((stderr, "\ndist data: dyn %ld, stat %ld", s->opt_len,
|
||||
s->static_len));
|
||||
max_blindex = build_bl_tree(s);
|
||||
|
||||
/* Determine the best encoding. Compute first the block length in bytes*/
|
||||
opt_lenb = (s->opt_len+3+7)>>3;
|
||||
static_lenb = (s->static_len+3+7)>>3;
|
||||
|
||||
Tracev((stderr, "\nopt %lu(%lu) stat %lu(%lu) stored %lu lit %u ",
|
||||
opt_lenb, s->opt_len, static_lenb, s->static_len, stored_len,
|
||||
s->last_lit));
|
||||
|
||||
if (static_lenb <= opt_lenb) opt_lenb = static_lenb;
|
||||
|
||||
} else {
|
||||
Assert(buf != (char*)0, "lost buf");
|
||||
opt_lenb = static_lenb = stored_len + 5; /* force a stored block */
|
||||
}
|
||||
|
||||
#ifdef FORCE_STORED
|
||||
if (buf != (char*)0) { /* force stored block */
|
||||
#else
|
||||
if (stored_len+4 <= opt_lenb && buf != (char*)0) {
|
||||
/* 4: two words for the lengths */
|
||||
#endif
|
||||
_tr_stored_block(s, buf, stored_len, eof);
|
||||
|
||||
#ifdef FORCE_STATIC
|
||||
} else if (static_lenb >= 0) { /* force static trees */
|
||||
#else
|
||||
} else if (static_lenb == opt_lenb) {
|
||||
#endif
|
||||
send_bits(s, (STATIC_TREES<<1)+eof, 3);
|
||||
compress_block(s, (ct_data *)static_ltree, (ct_data *)static_dtree);
|
||||
#ifdef DEBUG
|
||||
s->compressed_len += 3 + s->static_len;
|
||||
#endif
|
||||
} else {
|
||||
send_bits(s, (DYN_TREES<<1)+eof, 3);
|
||||
send_all_trees(s, s->l_desc.max_code+1, s->d_desc.max_code+1,
|
||||
max_blindex+1);
|
||||
compress_block(s, (ct_data *)s->dyn_ltree, (ct_data *)s->dyn_dtree);
|
||||
#ifdef DEBUG
|
||||
s->compressed_len += 3 + s->opt_len;
|
||||
#endif
|
||||
}
|
||||
Assert (s->compressed_len == s->bits_sent, "bad compressed size");
|
||||
|
||||
init_block(s);
|
||||
|
||||
if (eof) {
|
||||
bi_windup(s);
|
||||
#ifdef DEBUG
|
||||
s->compressed_len += 7; /* align on byte boundary */
|
||||
#endif
|
||||
}
|
||||
Tracev((stderr,"\ncomprlen %lu(%lu) ", s->compressed_len>>3,
|
||||
s->compressed_len-7*eof));
|
||||
}
|
||||
|
||||
int _tr_tally (s, dist, lc)
|
||||
deflate_state *s;
|
||||
unsigned dist; /* distance of matched string */
|
||||
unsigned lc; /* match length-MIN_MATCH or unmatched char (if dist==0) */
|
||||
{
|
||||
s->d_buf[s->last_lit] = (ush)dist;
|
||||
s->l_buf[s->last_lit++] = (uch)lc;
|
||||
if (dist == 0) {
|
||||
/* lc is the unmatched char */
|
||||
s->dyn_ltree[lc].Freq++;
|
||||
} else {
|
||||
s->matches++;
|
||||
/* Here, lc is the match length - MIN_MATCH */
|
||||
dist--; /* dist = match distance - 1 */
|
||||
Assert((ush)dist < (ush)MAX_DIST(s) &&
|
||||
(ush)lc <= (ush)(MAX_MATCH-MIN_MATCH) &&
|
||||
(ush)d_code(dist) < (ush)D_CODES, "_tr_tally: bad match");
|
||||
|
||||
s->dyn_ltree[_length_code[lc]+LITERALS+1].Freq++;
|
||||
s->dyn_dtree[d_code(dist)].Freq++;
|
||||
}
|
||||
|
||||
#ifdef TRUNCATE_BLOCK
|
||||
/* Try to guess if it is profitable to stop the current block here */
|
||||
if ((s->last_lit & 0x1fff) == 0 && s->level > 2) {
|
||||
/* Compute an upper bound for the compressed length */
|
||||
ulg out_length = (ulg)s->last_lit*8L;
|
||||
ulg in_length = (ulg)((long)s->strstart - s->block_start);
|
||||
int dcode;
|
||||
for (dcode = 0; dcode < D_CODES; dcode++) {
|
||||
out_length += (ulg)s->dyn_dtree[dcode].Freq *
|
||||
(5L+extra_dbits[dcode]);
|
||||
}
|
||||
out_length >>= 3;
|
||||
Tracev((stderr,"\nlast_lit %u, in %ld, out ~%ld(%ld%%) ",
|
||||
s->last_lit, in_length, out_length,
|
||||
100L - out_length*100L/in_length));
|
||||
if (s->matches < s->last_lit/2 && out_length < in_length/2) return 1;
|
||||
}
|
||||
#endif
|
||||
return (s->last_lit == s->lit_bufsize-1);
|
||||
}
|
||||
|
||||
local void compress_block(s, ltree, dtree)
|
||||
deflate_state *s;
|
||||
ct_data *ltree; /* literal tree */
|
||||
ct_data *dtree; /* distance tree */
|
||||
{
|
||||
unsigned dist; /* distance of matched string */
|
||||
int lc; /* match length or unmatched char (if dist == 0) */
|
||||
unsigned lx = 0; /* running index in l_buf */
|
||||
unsigned code; /* the code to send */
|
||||
int extra; /* number of extra bits to send */
|
||||
|
||||
if (s->last_lit != 0) do {
|
||||
dist = s->d_buf[lx];
|
||||
lc = s->l_buf[lx++];
|
||||
if (dist == 0) {
|
||||
send_code(s, lc, ltree); /* send a literal byte */
|
||||
Tracecv(isgraph(lc), (stderr," '%c' ", lc));
|
||||
} else {
|
||||
/* Here, lc is the match length - MIN_MATCH */
|
||||
code = _length_code[lc];
|
||||
send_code(s, code+LITERALS+1, ltree); /* send the length code */
|
||||
extra = extra_lbits[code];
|
||||
if (extra != 0) {
|
||||
lc -= base_length[code];
|
||||
send_bits(s, lc, extra); /* send the extra length bits */
|
||||
}
|
||||
dist--; /* dist is now the match distance - 1 */
|
||||
code = d_code(dist);
|
||||
Assert (code < D_CODES, "bad d_code");
|
||||
|
||||
send_code(s, code, dtree); /* send the distance code */
|
||||
extra = extra_dbits[code];
|
||||
if (extra != 0) {
|
||||
dist -= base_dist[code];
|
||||
send_bits(s, dist, extra); /* send the extra distance bits */
|
||||
}
|
||||
} /* literal or match pair ? */
|
||||
|
||||
/* Check that the overlay between pending_buf and d_buf+l_buf is ok: */
|
||||
Assert(s->pending < s->lit_bufsize + 2*lx, "pendingBuf overflow");
|
||||
|
||||
} while (lx < s->last_lit);
|
||||
|
||||
send_code(s, END_BLOCK, ltree);
|
||||
s->last_eob_len = ltree[END_BLOCK].Len;
|
||||
}
|
||||
|
||||
local unsigned bi_reverse(code, len)
|
||||
unsigned code; /* the value to invert */
|
||||
int len; /* its bit length */
|
||||
{
|
||||
register unsigned res = 0;
|
||||
do {
|
||||
res |= code & 1;
|
||||
code >>= 1, res <<= 1;
|
||||
} while (--len > 0);
|
||||
return res >> 1;
|
||||
}
|
||||
|
||||
local void bi_flush(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
if (s->bi_valid == 16) {
|
||||
put_short(s, s->bi_buf);
|
||||
s->bi_buf = 0;
|
||||
s->bi_valid = 0;
|
||||
} else if (s->bi_valid >= 8) {
|
||||
put_byte(s, (Byte)s->bi_buf);
|
||||
s->bi_buf >>= 8;
|
||||
s->bi_valid -= 8;
|
||||
}
|
||||
}
|
||||
|
||||
local void bi_windup(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
if (s->bi_valid > 8) {
|
||||
put_short(s, s->bi_buf);
|
||||
} else if (s->bi_valid > 0) {
|
||||
put_byte(s, (Byte)s->bi_buf);
|
||||
}
|
||||
s->bi_buf = 0;
|
||||
s->bi_valid = 0;
|
||||
#ifdef DEBUG
|
||||
s->bits_sent = (s->bits_sent+7) & ~7;
|
||||
#endif
|
||||
}
|
||||
|
||||
local void copy_block(s, buf, len, header)
|
||||
deflate_state *s;
|
||||
charf *buf; /* the input data */
|
||||
unsigned len; /* its length */
|
||||
int header; /* true if block header must be written */
|
||||
{
|
||||
bi_windup(s); /* align on byte boundary */
|
||||
s->last_eob_len = 8; /* enough lookahead for inflate */
|
||||
|
||||
if (header) {
|
||||
put_short(s, (ush)len);
|
||||
put_short(s, (ush)~len);
|
||||
#ifdef DEBUG
|
||||
s->bits_sent += 2*16;
|
||||
#endif
|
||||
}
|
||||
#ifdef DEBUG
|
||||
s->bits_sent += (ulg)len<<3;
|
||||
#endif
|
||||
while (len--) {
|
||||
put_byte(s, *buf++);
|
||||
}
|
||||
}
|
Loading…
Add table
Add a link
Reference in a new issue