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Update zlib to latest (#1181)
* Update zlib to latest * Update copyright Updated copyright of zlib.
This commit is contained in:
@@ -1,5 +1,5 @@
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/* deflate.c -- compress data using the deflation algorithm
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* Copyright (C) 1995-2022 Jean-loup Gailly and Mark Adler
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* Copyright (C) 1995-2023 Jean-loup Gailly and 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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@@ -52,7 +52,7 @@
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#include "deflate.h"
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const char deflate_copyright[] =
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" deflate 1.2.13 Copyright 1995-2022 Jean-loup Gailly and Mark Adler ";
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" deflate 1.3 Copyright 1995-2023 Jean-loup Gailly and Mark Adler ";
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/*
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If you use the zlib library in a product, an acknowledgment is welcome
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in the documentation of your product. If for some reason you cannot
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@@ -60,9 +60,6 @@ const char deflate_copyright[] =
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copyright string in the executable of your product.
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*/
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/* ===========================================================================
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* Function prototypes.
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*/
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typedef enum {
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need_more, /* block not completed, need more input or more output */
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block_done, /* block flush performed */
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@@ -70,29 +67,16 @@ typedef enum {
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finish_done /* finish done, accept no more input or output */
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} block_state;
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typedef block_state (*compress_func) OF((deflate_state *s, int flush));
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typedef block_state (*compress_func)(deflate_state *s, int flush);
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/* Compression function. Returns the block state after the call. */
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local int deflateStateCheck OF((z_streamp strm));
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local void slide_hash OF((deflate_state *s));
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local void fill_window OF((deflate_state *s));
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local block_state deflate_stored OF((deflate_state *s, int flush));
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local block_state deflate_fast OF((deflate_state *s, int flush));
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local block_state deflate_stored(deflate_state *s, int flush);
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local block_state deflate_fast(deflate_state *s, int flush);
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#ifndef FASTEST
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local block_state deflate_slow OF((deflate_state *s, int flush));
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#endif
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local block_state deflate_rle OF((deflate_state *s, int flush));
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local block_state deflate_huff OF((deflate_state *s, int flush));
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local void lm_init OF((deflate_state *s));
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local void putShortMSB OF((deflate_state *s, uInt b));
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local void flush_pending OF((z_streamp strm));
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local unsigned read_buf OF((z_streamp strm, Bytef *buf, unsigned size));
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local uInt longest_match OF((deflate_state *s, IPos cur_match));
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#ifdef ZLIB_DEBUG
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local void check_match OF((deflate_state *s, IPos start, IPos match,
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int length));
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local block_state deflate_slow(deflate_state *s, int flush);
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#endif
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local block_state deflate_rle(deflate_state *s, int flush);
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local block_state deflate_huff(deflate_state *s, int flush);
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/* ===========================================================================
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* Local data
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@@ -195,9 +179,12 @@ local const config configuration_table[10] = {
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* bit values at the expense of memory usage). We slide even when level == 0 to
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* keep the hash table consistent if we switch back to level > 0 later.
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*/
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local void slide_hash(s)
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deflate_state *s;
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{
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#if defined(__has_feature)
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# if __has_feature(memory_sanitizer)
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__attribute__((no_sanitize("memory")))
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# endif
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#endif
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local void slide_hash(deflate_state *s) {
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unsigned n, m;
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Posf *p;
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uInt wsize = s->w_size;
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@@ -221,30 +208,177 @@ local void slide_hash(s)
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#endif
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}
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/* ===========================================================================
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* Read a new buffer from the current input stream, update the adler32
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* and total number of bytes read. All deflate() input goes through
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* this function so some applications may wish to modify it to avoid
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* allocating a large strm->next_in buffer and copying from it.
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* (See also flush_pending()).
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*/
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local unsigned read_buf(z_streamp strm, Bytef *buf, unsigned size) {
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unsigned len = strm->avail_in;
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if (len > size) len = size;
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if (len == 0) return 0;
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strm->avail_in -= len;
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zmemcpy(buf, strm->next_in, len);
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if (strm->state->wrap == 1) {
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strm->adler = adler32(strm->adler, buf, len);
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}
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#ifdef GZIP
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else if (strm->state->wrap == 2) {
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strm->adler = crc32(strm->adler, buf, len);
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}
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#endif
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strm->next_in += len;
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strm->total_in += len;
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return len;
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}
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/* ===========================================================================
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* Fill the window when the lookahead becomes insufficient.
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* Updates strstart and lookahead.
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*
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* IN assertion: lookahead < MIN_LOOKAHEAD
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* OUT assertions: strstart <= window_size-MIN_LOOKAHEAD
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* At least one byte has been read, or avail_in == 0; reads are
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* performed for at least two bytes (required for the zip translate_eol
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* option -- not supported here).
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*/
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local void fill_window(deflate_state *s) {
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unsigned n;
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unsigned more; /* Amount of free space at the end of the window. */
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uInt wsize = s->w_size;
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Assert(s->lookahead < MIN_LOOKAHEAD, "already enough lookahead");
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do {
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more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart);
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/* Deal with !@#$% 64K limit: */
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if (sizeof(int) <= 2) {
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if (more == 0 && s->strstart == 0 && s->lookahead == 0) {
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more = wsize;
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} else if (more == (unsigned)(-1)) {
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/* Very unlikely, but possible on 16 bit machine if
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* strstart == 0 && lookahead == 1 (input done a byte at time)
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*/
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more--;
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}
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}
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/* If the window is almost full and there is insufficient lookahead,
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* move the upper half to the lower one to make room in the upper half.
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*/
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if (s->strstart >= wsize + MAX_DIST(s)) {
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zmemcpy(s->window, s->window + wsize, (unsigned)wsize - more);
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s->match_start -= wsize;
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s->strstart -= wsize; /* we now have strstart >= MAX_DIST */
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s->block_start -= (long) wsize;
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if (s->insert > s->strstart)
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s->insert = s->strstart;
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slide_hash(s);
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more += wsize;
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}
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if (s->strm->avail_in == 0) break;
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/* If there was no sliding:
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* strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 &&
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* more == window_size - lookahead - strstart
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* => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1)
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* => more >= window_size - 2*WSIZE + 2
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* In the BIG_MEM or MMAP case (not yet supported),
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* window_size == input_size + MIN_LOOKAHEAD &&
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* strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD.
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* Otherwise, window_size == 2*WSIZE so more >= 2.
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* If there was sliding, more >= WSIZE. So in all cases, more >= 2.
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*/
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Assert(more >= 2, "more < 2");
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n = read_buf(s->strm, s->window + s->strstart + s->lookahead, more);
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s->lookahead += n;
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/* Initialize the hash value now that we have some input: */
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if (s->lookahead + s->insert >= MIN_MATCH) {
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uInt str = s->strstart - s->insert;
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s->ins_h = s->window[str];
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UPDATE_HASH(s, s->ins_h, s->window[str + 1]);
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#if MIN_MATCH != 3
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Call UPDATE_HASH() MIN_MATCH-3 more times
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#endif
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while (s->insert) {
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UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]);
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#ifndef FASTEST
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s->prev[str & s->w_mask] = s->head[s->ins_h];
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#endif
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s->head[s->ins_h] = (Pos)str;
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str++;
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s->insert--;
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if (s->lookahead + s->insert < MIN_MATCH)
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break;
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}
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}
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/* If the whole input has less than MIN_MATCH bytes, ins_h is garbage,
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* but this is not important since only literal bytes will be emitted.
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*/
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} while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0);
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/* If the WIN_INIT bytes after the end of the current data have never been
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* written, then zero those bytes in order to avoid memory check reports of
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* the use of uninitialized (or uninitialised as Julian writes) bytes by
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* the longest match routines. Update the high water mark for the next
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* time through here. WIN_INIT is set to MAX_MATCH since the longest match
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* routines allow scanning to strstart + MAX_MATCH, ignoring lookahead.
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*/
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if (s->high_water < s->window_size) {
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ulg curr = s->strstart + (ulg)(s->lookahead);
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ulg init;
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if (s->high_water < curr) {
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/* Previous high water mark below current data -- zero WIN_INIT
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* bytes or up to end of window, whichever is less.
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*/
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init = s->window_size - curr;
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if (init > WIN_INIT)
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init = WIN_INIT;
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zmemzero(s->window + curr, (unsigned)init);
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s->high_water = curr + init;
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}
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else if (s->high_water < (ulg)curr + WIN_INIT) {
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/* High water mark at or above current data, but below current data
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* plus WIN_INIT -- zero out to current data plus WIN_INIT, or up
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* to end of window, whichever is less.
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*/
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init = (ulg)curr + WIN_INIT - s->high_water;
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if (init > s->window_size - s->high_water)
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init = s->window_size - s->high_water;
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zmemzero(s->window + s->high_water, (unsigned)init);
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s->high_water += init;
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}
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}
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Assert((ulg)s->strstart <= s->window_size - MIN_LOOKAHEAD,
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"not enough room for search");
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}
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/* ========================================================================= */
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int ZEXPORT deflateInit_(strm, level, version, stream_size)
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z_streamp strm;
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int level;
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const char *version;
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int stream_size;
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{
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int ZEXPORT deflateInit_(z_streamp strm, int level, const char *version,
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int stream_size) {
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return deflateInit2_(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL,
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Z_DEFAULT_STRATEGY, version, stream_size);
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/* To do: ignore strm->next_in if we use it as window */
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}
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/* ========================================================================= */
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int ZEXPORT deflateInit2_(strm, level, method, windowBits, memLevel, strategy,
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version, stream_size)
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z_streamp strm;
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int level;
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int method;
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int windowBits;
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int memLevel;
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int strategy;
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const char *version;
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int stream_size;
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{
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int ZEXPORT deflateInit2_(z_streamp strm, int level, int method,
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int windowBits, int memLevel, int strategy,
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const char *version, int stream_size) {
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deflate_state *s;
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int wrap = 1;
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static const char my_version[] = ZLIB_VERSION;
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@@ -386,9 +520,7 @@ int ZEXPORT deflateInit2_(strm, level, method, windowBits, memLevel, strategy,
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/* =========================================================================
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* Check for a valid deflate stream state. Return 0 if ok, 1 if not.
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*/
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local int deflateStateCheck(strm)
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z_streamp strm;
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{
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local int deflateStateCheck(z_streamp strm) {
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deflate_state *s;
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if (strm == Z_NULL ||
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strm->zalloc == (alloc_func)0 || strm->zfree == (free_func)0)
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@@ -409,11 +541,8 @@ local int deflateStateCheck(strm)
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}
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/* ========================================================================= */
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int ZEXPORT deflateSetDictionary(strm, dictionary, dictLength)
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z_streamp strm;
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const Bytef *dictionary;
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uInt dictLength;
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{
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int ZEXPORT deflateSetDictionary(z_streamp strm, const Bytef *dictionary,
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uInt dictLength) {
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deflate_state *s;
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uInt str, n;
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int wrap;
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@@ -478,11 +607,8 @@ int ZEXPORT deflateSetDictionary(strm, dictionary, dictLength)
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}
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/* ========================================================================= */
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int ZEXPORT deflateGetDictionary(strm, dictionary, dictLength)
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z_streamp strm;
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Bytef *dictionary;
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uInt *dictLength;
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{
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int ZEXPORT deflateGetDictionary(z_streamp strm, Bytef *dictionary,
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uInt *dictLength) {
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deflate_state *s;
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uInt len;
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@@ -500,9 +626,7 @@ int ZEXPORT deflateGetDictionary(strm, dictionary, dictLength)
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}
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/* ========================================================================= */
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int ZEXPORT deflateResetKeep(strm)
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z_streamp strm;
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{
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int ZEXPORT deflateResetKeep(z_streamp strm) {
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deflate_state *s;
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if (deflateStateCheck(strm)) {
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@@ -537,10 +661,32 @@ int ZEXPORT deflateResetKeep(strm)
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return Z_OK;
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}
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/* ===========================================================================
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* Initialize the "longest match" routines for a new zlib stream
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*/
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local void lm_init(deflate_state *s) {
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s->window_size = (ulg)2L*s->w_size;
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CLEAR_HASH(s);
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/* Set the default configuration parameters:
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*/
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s->max_lazy_match = configuration_table[s->level].max_lazy;
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s->good_match = configuration_table[s->level].good_length;
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s->nice_match = configuration_table[s->level].nice_length;
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s->max_chain_length = configuration_table[s->level].max_chain;
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s->strstart = 0;
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s->block_start = 0L;
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s->lookahead = 0;
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s->insert = 0;
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s->match_length = s->prev_length = MIN_MATCH-1;
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s->match_available = 0;
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s->ins_h = 0;
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}
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/* ========================================================================= */
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int ZEXPORT deflateReset(strm)
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z_streamp strm;
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{
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int ZEXPORT deflateReset(z_streamp strm) {
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int ret;
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ret = deflateResetKeep(strm);
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@@ -550,10 +696,7 @@ int ZEXPORT deflateReset(strm)
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}
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/* ========================================================================= */
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int ZEXPORT deflateSetHeader(strm, head)
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z_streamp strm;
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gz_headerp head;
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{
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int ZEXPORT deflateSetHeader(z_streamp strm, gz_headerp head) {
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if (deflateStateCheck(strm) || strm->state->wrap != 2)
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return Z_STREAM_ERROR;
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strm->state->gzhead = head;
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@@ -561,11 +704,7 @@ int ZEXPORT deflateSetHeader(strm, head)
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}
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/* ========================================================================= */
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int ZEXPORT deflatePending(strm, pending, bits)
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unsigned *pending;
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int *bits;
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z_streamp strm;
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{
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int ZEXPORT deflatePending(z_streamp strm, unsigned *pending, int *bits) {
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if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
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if (pending != Z_NULL)
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*pending = strm->state->pending;
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@@ -575,11 +714,7 @@ int ZEXPORT deflatePending(strm, pending, bits)
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}
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/* ========================================================================= */
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int ZEXPORT deflatePrime(strm, bits, value)
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z_streamp strm;
|
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int bits;
|
||||
int value;
|
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{
|
||||
int ZEXPORT deflatePrime(z_streamp strm, int bits, int value) {
|
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deflate_state *s;
|
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int put;
|
||||
|
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@@ -602,11 +737,7 @@ int ZEXPORT deflatePrime(strm, bits, value)
|
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}
|
||||
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/* ========================================================================= */
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int ZEXPORT deflateParams(strm, level, strategy)
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z_streamp strm;
|
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int level;
|
||||
int strategy;
|
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{
|
||||
int ZEXPORT deflateParams(z_streamp strm, int level, int strategy) {
|
||||
deflate_state *s;
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||||
compress_func func;
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||||
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||||
@@ -651,13 +782,8 @@ int ZEXPORT deflateParams(strm, level, strategy)
|
||||
}
|
||||
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||||
/* ========================================================================= */
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int ZEXPORT deflateTune(strm, good_length, max_lazy, nice_length, max_chain)
|
||||
z_streamp strm;
|
||||
int good_length;
|
||||
int max_lazy;
|
||||
int nice_length;
|
||||
int max_chain;
|
||||
{
|
||||
int ZEXPORT deflateTune(z_streamp strm, int good_length, int max_lazy,
|
||||
int nice_length, int max_chain) {
|
||||
deflate_state *s;
|
||||
|
||||
if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
|
||||
@@ -693,10 +819,7 @@ int ZEXPORT deflateTune(strm, good_length, max_lazy, nice_length, max_chain)
|
||||
*
|
||||
* Shifts are used to approximate divisions, for speed.
|
||||
*/
|
||||
uLong ZEXPORT deflateBound(strm, sourceLen)
|
||||
z_streamp strm;
|
||||
uLong sourceLen;
|
||||
{
|
||||
uLong ZEXPORT deflateBound(z_streamp strm, uLong sourceLen) {
|
||||
deflate_state *s;
|
||||
uLong fixedlen, storelen, wraplen;
|
||||
|
||||
@@ -752,7 +875,8 @@ uLong ZEXPORT deflateBound(strm, sourceLen)
|
||||
|
||||
/* if not default parameters, return one of the conservative bounds */
|
||||
if (s->w_bits != 15 || s->hash_bits != 8 + 7)
|
||||
return (s->w_bits <= s->hash_bits ? fixedlen : storelen) + wraplen;
|
||||
return (s->w_bits <= s->hash_bits && s->level ? fixedlen : storelen) +
|
||||
wraplen;
|
||||
|
||||
/* default settings: return tight bound for that case -- ~0.03% overhead
|
||||
plus a small constant */
|
||||
@@ -765,10 +889,7 @@ uLong ZEXPORT deflateBound(strm, sourceLen)
|
||||
* IN assertion: the stream state is correct and there is enough room in
|
||||
* pending_buf.
|
||||
*/
|
||||
local void putShortMSB(s, b)
|
||||
deflate_state *s;
|
||||
uInt b;
|
||||
{
|
||||
local void putShortMSB(deflate_state *s, uInt b) {
|
||||
put_byte(s, (Byte)(b >> 8));
|
||||
put_byte(s, (Byte)(b & 0xff));
|
||||
}
|
||||
@@ -779,9 +900,7 @@ local void putShortMSB(s, b)
|
||||
* applications may wish to modify it to avoid allocating a large
|
||||
* strm->next_out buffer and copying into it. (See also read_buf()).
|
||||
*/
|
||||
local void flush_pending(strm)
|
||||
z_streamp strm;
|
||||
{
|
||||
local void flush_pending(z_streamp strm) {
|
||||
unsigned len;
|
||||
deflate_state *s = strm->state;
|
||||
|
||||
@@ -812,10 +931,7 @@ local void flush_pending(strm)
|
||||
} while (0)
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflate(strm, flush)
|
||||
z_streamp strm;
|
||||
int flush;
|
||||
{
|
||||
int ZEXPORT deflate(z_streamp strm, int flush) {
|
||||
int old_flush; /* value of flush param for previous deflate call */
|
||||
deflate_state *s;
|
||||
|
||||
@@ -1127,9 +1243,7 @@ int ZEXPORT deflate(strm, flush)
|
||||
}
|
||||
|
||||
/* ========================================================================= */
|
||||
int ZEXPORT deflateEnd(strm)
|
||||
z_streamp strm;
|
||||
{
|
||||
int ZEXPORT deflateEnd(z_streamp strm) {
|
||||
int status;
|
||||
|
||||
if (deflateStateCheck(strm)) return Z_STREAM_ERROR;
|
||||
@@ -1153,11 +1267,10 @@ int ZEXPORT deflateEnd(strm)
|
||||
* To simplify the source, this is not supported for 16-bit MSDOS (which
|
||||
* doesn't have enough memory anyway to duplicate compression states).
|
||||
*/
|
||||
int ZEXPORT deflateCopy(dest, source)
|
||||
z_streamp dest;
|
||||
z_streamp source;
|
||||
{
|
||||
int ZEXPORT deflateCopy(z_streamp dest, z_streamp source) {
|
||||
#ifdef MAXSEG_64K
|
||||
(void)dest;
|
||||
(void)source;
|
||||
return Z_STREAM_ERROR;
|
||||
#else
|
||||
deflate_state *ds;
|
||||
@@ -1205,66 +1318,6 @@ int ZEXPORT deflateCopy(dest, source)
|
||||
#endif /* MAXSEG_64K */
|
||||
}
|
||||
|
||||
/* ===========================================================================
|
||||
* Read a new buffer from the current input stream, update the adler32
|
||||
* and total number of bytes read. All deflate() input goes through
|
||||
* this function so some applications may wish to modify it to avoid
|
||||
* allocating a large strm->next_in buffer and copying from it.
|
||||
* (See also flush_pending()).
|
||||
*/
|
||||
local unsigned 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;
|
||||
|
||||
zmemcpy(buf, strm->next_in, len);
|
||||
if (strm->state->wrap == 1) {
|
||||
strm->adler = adler32(strm->adler, buf, len);
|
||||
}
|
||||
#ifdef GZIP
|
||||
else if (strm->state->wrap == 2) {
|
||||
strm->adler = crc32(strm->adler, buf, len);
|
||||
}
|
||||
#endif
|
||||
strm->next_in += len;
|
||||
strm->total_in += len;
|
||||
|
||||
return 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->insert = 0;
|
||||
s->match_length = s->prev_length = MIN_MATCH-1;
|
||||
s->match_available = 0;
|
||||
s->ins_h = 0;
|
||||
}
|
||||
|
||||
#ifndef FASTEST
|
||||
/* ===========================================================================
|
||||
* Set match_start to the longest match starting at the given string and
|
||||
@@ -1275,10 +1328,7 @@ local void lm_init(s)
|
||||
* string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1
|
||||
* OUT assertion: the match length is not greater than s->lookahead.
|
||||
*/
|
||||
local uInt longest_match(s, cur_match)
|
||||
deflate_state *s;
|
||||
IPos cur_match; /* current match */
|
||||
{
|
||||
local uInt longest_match(deflate_state *s, IPos cur_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 */
|
||||
@@ -1426,10 +1476,7 @@ local uInt longest_match(s, cur_match)
|
||||
/* ---------------------------------------------------------------------------
|
||||
* Optimized version for FASTEST only
|
||||
*/
|
||||
local uInt longest_match(s, cur_match)
|
||||
deflate_state *s;
|
||||
IPos cur_match; /* current match */
|
||||
{
|
||||
local uInt longest_match(deflate_state *s, IPos cur_match) {
|
||||
register Bytef *scan = s->window + s->strstart; /* current string */
|
||||
register Bytef *match; /* matched string */
|
||||
register int len; /* length of current match */
|
||||
@@ -1490,11 +1537,7 @@ local uInt longest_match(s, cur_match)
|
||||
/* ===========================================================================
|
||||
* Check that the match at match_start is indeed a match.
|
||||
*/
|
||||
local void check_match(s, start, match, length)
|
||||
deflate_state *s;
|
||||
IPos start, match;
|
||||
int length;
|
||||
{
|
||||
local void check_match(deflate_state *s, IPos start, IPos match, int length) {
|
||||
/* check that the match is indeed a match */
|
||||
if (zmemcmp(s->window + match,
|
||||
s->window + start, length) != EQUAL) {
|
||||
@@ -1514,137 +1557,6 @@ local void check_match(s, start, match, length)
|
||||
# define check_match(s, start, match, length)
|
||||
#endif /* ZLIB_DEBUG */
|
||||
|
||||
/* ===========================================================================
|
||||
* Fill the window when the lookahead becomes insufficient.
|
||||
* Updates strstart and lookahead.
|
||||
*
|
||||
* IN assertion: lookahead < MIN_LOOKAHEAD
|
||||
* OUT assertions: strstart <= window_size-MIN_LOOKAHEAD
|
||||
* At least one byte has been read, or avail_in == 0; reads are
|
||||
* performed for at least two bytes (required for the zip translate_eol
|
||||
* option -- not supported here).
|
||||
*/
|
||||
local void fill_window(s)
|
||||
deflate_state *s;
|
||||
{
|
||||
unsigned n;
|
||||
unsigned more; /* Amount of free space at the end of the window. */
|
||||
uInt wsize = s->w_size;
|
||||
|
||||
Assert(s->lookahead < MIN_LOOKAHEAD, "already enough lookahead");
|
||||
|
||||
do {
|
||||
more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart);
|
||||
|
||||
/* Deal with !@#$% 64K limit: */
|
||||
if (sizeof(int) <= 2) {
|
||||
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 && lookahead == 1 (input done a 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.
|
||||
*/
|
||||
if (s->strstart >= wsize + MAX_DIST(s)) {
|
||||
|
||||
zmemcpy(s->window, s->window + wsize, (unsigned)wsize - more);
|
||||
s->match_start -= wsize;
|
||||
s->strstart -= wsize; /* we now have strstart >= MAX_DIST */
|
||||
s->block_start -= (long) wsize;
|
||||
if (s->insert > s->strstart)
|
||||
s->insert = s->strstart;
|
||||
slide_hash(s);
|
||||
more += wsize;
|
||||
}
|
||||
if (s->strm->avail_in == 0) break;
|
||||
|
||||
/* If there was no sliding:
|
||||
* strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 &&
|
||||
* more == window_size - lookahead - strstart
|
||||
* => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1)
|
||||
* => more >= window_size - 2*WSIZE + 2
|
||||
* In the BIG_MEM or MMAP case (not yet supported),
|
||||
* window_size == input_size + MIN_LOOKAHEAD &&
|
||||
* strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD.
|
||||
* Otherwise, window_size == 2*WSIZE so more >= 2.
|
||||
* If there was sliding, more >= WSIZE. So in all cases, more >= 2.
|
||||
*/
|
||||
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 + s->insert >= MIN_MATCH) {
|
||||
uInt str = s->strstart - s->insert;
|
||||
s->ins_h = s->window[str];
|
||||
UPDATE_HASH(s, s->ins_h, s->window[str + 1]);
|
||||
#if MIN_MATCH != 3
|
||||
Call UPDATE_HASH() MIN_MATCH-3 more times
|
||||
#endif
|
||||
while (s->insert) {
|
||||
UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]);
|
||||
#ifndef FASTEST
|
||||
s->prev[str & s->w_mask] = s->head[s->ins_h];
|
||||
#endif
|
||||
s->head[s->ins_h] = (Pos)str;
|
||||
str++;
|
||||
s->insert--;
|
||||
if (s->lookahead + s->insert < MIN_MATCH)
|
||||
break;
|
||||
}
|
||||
}
|
||||
/* If the whole input has less than MIN_MATCH bytes, ins_h is garbage,
|
||||
* but this is not important since only literal bytes will be emitted.
|
||||
*/
|
||||
|
||||
} while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0);
|
||||
|
||||
/* If the WIN_INIT bytes after the end of the current data have never been
|
||||
* written, then zero those bytes in order to avoid memory check reports of
|
||||
* the use of uninitialized (or uninitialised as Julian writes) bytes by
|
||||
* the longest match routines. Update the high water mark for the next
|
||||
* time through here. WIN_INIT is set to MAX_MATCH since the longest match
|
||||
* routines allow scanning to strstart + MAX_MATCH, ignoring lookahead.
|
||||
*/
|
||||
if (s->high_water < s->window_size) {
|
||||
ulg curr = s->strstart + (ulg)(s->lookahead);
|
||||
ulg init;
|
||||
|
||||
if (s->high_water < curr) {
|
||||
/* Previous high water mark below current data -- zero WIN_INIT
|
||||
* bytes or up to end of window, whichever is less.
|
||||
*/
|
||||
init = s->window_size - curr;
|
||||
if (init > WIN_INIT)
|
||||
init = WIN_INIT;
|
||||
zmemzero(s->window + curr, (unsigned)init);
|
||||
s->high_water = curr + init;
|
||||
}
|
||||
else if (s->high_water < (ulg)curr + WIN_INIT) {
|
||||
/* High water mark at or above current data, but below current data
|
||||
* plus WIN_INIT -- zero out to current data plus WIN_INIT, or up
|
||||
* to end of window, whichever is less.
|
||||
*/
|
||||
init = (ulg)curr + WIN_INIT - s->high_water;
|
||||
if (init > s->window_size - s->high_water)
|
||||
init = s->window_size - s->high_water;
|
||||
zmemzero(s->window + s->high_water, (unsigned)init);
|
||||
s->high_water += init;
|
||||
}
|
||||
}
|
||||
|
||||
Assert((ulg)s->strstart <= s->window_size - MIN_LOOKAHEAD,
|
||||
"not enough room for search");
|
||||
}
|
||||
|
||||
/* ===========================================================================
|
||||
* Flush the current block, with given end-of-file flag.
|
||||
* IN assertion: strstart is set to the end of the current match.
|
||||
@@ -1687,10 +1599,7 @@ local void fill_window(s)
|
||||
* copied. It is most efficient with large input and output buffers, which
|
||||
* maximizes the opportunities to have a single copy from next_in to next_out.
|
||||
*/
|
||||
local block_state deflate_stored(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
local block_state deflate_stored(deflate_state *s, int flush) {
|
||||
/* Smallest worthy block size when not flushing or finishing. By default
|
||||
* this is 32K. This can be as small as 507 bytes for memLevel == 1. For
|
||||
* large input and output buffers, the stored block size will be larger.
|
||||
@@ -1874,10 +1783,7 @@ local block_state deflate_stored(s, flush)
|
||||
* new strings in the dictionary only for unmatched strings or for short
|
||||
* matches. It is used only for the fast compression options.
|
||||
*/
|
||||
local block_state deflate_fast(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
local block_state deflate_fast(deflate_state *s, int flush) {
|
||||
IPos hash_head; /* head of the hash chain */
|
||||
int bflush; /* set if current block must be flushed */
|
||||
|
||||
@@ -1976,10 +1882,7 @@ local block_state deflate_fast(s, flush)
|
||||
* evaluation for matches: a match is finally adopted only if there is
|
||||
* no better match at the next window position.
|
||||
*/
|
||||
local block_state deflate_slow(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
local block_state deflate_slow(deflate_state *s, int flush) {
|
||||
IPos hash_head; /* head of hash chain */
|
||||
int bflush; /* set if current block must be flushed */
|
||||
|
||||
@@ -2107,10 +2010,7 @@ local block_state deflate_slow(s, flush)
|
||||
* one. Do not maintain a hash table. (It will be regenerated if this run of
|
||||
* deflate switches away from Z_RLE.)
|
||||
*/
|
||||
local block_state deflate_rle(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
local block_state deflate_rle(deflate_state *s, int flush) {
|
||||
int bflush; /* set if current block must be flushed */
|
||||
uInt prev; /* byte at distance one to match */
|
||||
Bytef *scan, *strend; /* scan goes up to strend for length of run */
|
||||
@@ -2181,10 +2081,7 @@ local block_state deflate_rle(s, flush)
|
||||
* For Z_HUFFMAN_ONLY, do not look for matches. Do not maintain a hash table.
|
||||
* (It will be regenerated if this run of deflate switches away from Huffman.)
|
||||
*/
|
||||
local block_state deflate_huff(s, flush)
|
||||
deflate_state *s;
|
||||
int flush;
|
||||
{
|
||||
local block_state deflate_huff(deflate_state *s, int flush) {
|
||||
int bflush; /* set if current block must be flushed */
|
||||
|
||||
for (;;) {
|
||||
|
||||
Reference in New Issue
Block a user