1*42e22086SApple OSS Distributions /*
2*42e22086SApple OSS Distributions * Copyright (c) 2008-2016 Apple Inc. All rights reserved.
3*42e22086SApple OSS Distributions *
4*42e22086SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5*42e22086SApple OSS Distributions *
6*42e22086SApple OSS Distributions * This file contains Original Code and/or Modifications of Original Code
7*42e22086SApple OSS Distributions * as defined in and that are subject to the Apple Public Source License
8*42e22086SApple OSS Distributions * Version 2.0 (the 'License'). You may not use this file except in
9*42e22086SApple OSS Distributions * compliance with the License. The rights granted to you under the License
10*42e22086SApple OSS Distributions * may not be used to create, or enable the creation or redistribution of,
11*42e22086SApple OSS Distributions * unlawful or unlicensed copies of an Apple operating system, or to
12*42e22086SApple OSS Distributions * circumvent, violate, or enable the circumvention or violation of, any
13*42e22086SApple OSS Distributions * terms of an Apple operating system software license agreement.
14*42e22086SApple OSS Distributions *
15*42e22086SApple OSS Distributions * Please obtain a copy of the License at
16*42e22086SApple OSS Distributions * http://www.opensource.apple.com/apsl/ and read it before using this file.
17*42e22086SApple OSS Distributions *
18*42e22086SApple OSS Distributions * The Original Code and all software distributed under the License are
19*42e22086SApple OSS Distributions * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20*42e22086SApple OSS Distributions * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21*42e22086SApple OSS Distributions * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22*42e22086SApple OSS Distributions * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23*42e22086SApple OSS Distributions * Please see the License for the specific language governing rights and
24*42e22086SApple OSS Distributions * limitations under the License.
25*42e22086SApple OSS Distributions *
26*42e22086SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27*42e22086SApple OSS Distributions */
28*42e22086SApple OSS Distributions /* deflate.c -- compress data using the deflation algorithm
29*42e22086SApple OSS Distributions * Copyright (C) 1995-2005 Jean-loup Gailly.
30*42e22086SApple OSS Distributions * For conditions of distribution and use, see copyright notice in zlib.h
31*42e22086SApple OSS Distributions */
32*42e22086SApple OSS Distributions
33*42e22086SApple OSS Distributions /*
34*42e22086SApple OSS Distributions * ALGORITHM
35*42e22086SApple OSS Distributions *
36*42e22086SApple OSS Distributions * The "deflation" process depends on being able to identify portions
37*42e22086SApple OSS Distributions * of the input text which are identical to earlier input (within a
38*42e22086SApple OSS Distributions * sliding window trailing behind the input currently being processed).
39*42e22086SApple OSS Distributions *
40*42e22086SApple OSS Distributions * The most straightforward technique turns out to be the fastest for
41*42e22086SApple OSS Distributions * most input files: try all possible matches and select the longest.
42*42e22086SApple OSS Distributions * The key feature of this algorithm is that insertions into the string
43*42e22086SApple OSS Distributions * dictionary are very simple and thus fast, and deletions are avoided
44*42e22086SApple OSS Distributions * completely. Insertions are performed at each input character, whereas
45*42e22086SApple OSS Distributions * string matches are performed only when the previous match ends. So it
46*42e22086SApple OSS Distributions * is preferable to spend more time in matches to allow very fast string
47*42e22086SApple OSS Distributions * insertions and avoid deletions. The matching algorithm for small
48*42e22086SApple OSS Distributions * strings is inspired from that of Rabin & Karp. A brute force approach
49*42e22086SApple OSS Distributions * is used to find longer strings when a small match has been found.
50*42e22086SApple OSS Distributions * A similar algorithm is used in comic (by Jan-Mark Wams) and freeze
51*42e22086SApple OSS Distributions * (by Leonid Broukhis).
52*42e22086SApple OSS Distributions * A previous version of this file used a more sophisticated algorithm
53*42e22086SApple OSS Distributions * (by Fiala and Greene) which is guaranteed to run in linear amortized
54*42e22086SApple OSS Distributions * time, but has a larger average cost, uses more memory and is patented.
55*42e22086SApple OSS Distributions * However the F&G algorithm may be faster for some highly redundant
56*42e22086SApple OSS Distributions * files if the parameter max_chain_length (described below) is too large.
57*42e22086SApple OSS Distributions *
58*42e22086SApple OSS Distributions * ACKNOWLEDGEMENTS
59*42e22086SApple OSS Distributions *
60*42e22086SApple OSS Distributions * The idea of lazy evaluation of matches is due to Jan-Mark Wams, and
61*42e22086SApple OSS Distributions * I found it in 'freeze' written by Leonid Broukhis.
62*42e22086SApple OSS Distributions * Thanks to many people for bug reports and testing.
63*42e22086SApple OSS Distributions *
64*42e22086SApple OSS Distributions * REFERENCES
65*42e22086SApple OSS Distributions *
66*42e22086SApple OSS Distributions * Deutsch, L.P.,"DEFLATE Compressed Data Format Specification".
67*42e22086SApple OSS Distributions * Available in http://www.ietf.org/rfc/rfc1951.txt
68*42e22086SApple OSS Distributions *
69*42e22086SApple OSS Distributions * A description of the Rabin and Karp algorithm is given in the book
70*42e22086SApple OSS Distributions * "Algorithms" by R. Sedgewick, Addison-Wesley, p252.
71*42e22086SApple OSS Distributions *
72*42e22086SApple OSS Distributions * Fiala,E.R., and Greene,D.H.
73*42e22086SApple OSS Distributions * Data Compression with Finite Windows, Comm.ACM, 32,4 (1989) 490-595
74*42e22086SApple OSS Distributions *
75*42e22086SApple OSS Distributions */
76*42e22086SApple OSS Distributions
77*42e22086SApple OSS Distributions /* @(#) $Id$ */
78*42e22086SApple OSS Distributions
79*42e22086SApple OSS Distributions #include "deflate.h"
80*42e22086SApple OSS Distributions
81*42e22086SApple OSS Distributions const char deflate_copyright[] =
82*42e22086SApple OSS Distributions " deflate 1.2.3 Copyright 1995-2005 Jean-loup Gailly ";
83*42e22086SApple OSS Distributions /*
84*42e22086SApple OSS Distributions If you use the zlib library in a product, an acknowledgment is welcome
85*42e22086SApple OSS Distributions in the documentation of your product. If for some reason you cannot
86*42e22086SApple OSS Distributions include such an acknowledgment, I would appreciate that you keep this
87*42e22086SApple OSS Distributions copyright string in the executable of your product.
88*42e22086SApple OSS Distributions */
89*42e22086SApple OSS Distributions
90*42e22086SApple OSS Distributions /* ===========================================================================
91*42e22086SApple OSS Distributions * Function prototypes.
92*42e22086SApple OSS Distributions */
93*42e22086SApple OSS Distributions typedef enum {
94*42e22086SApple OSS Distributions need_more, /* block not completed, need more input or more output */
95*42e22086SApple OSS Distributions block_done, /* block flush performed */
96*42e22086SApple OSS Distributions finish_started, /* finish started, need only more output at next deflate */
97*42e22086SApple OSS Distributions finish_done /* finish done, accept no more input or output */
98*42e22086SApple OSS Distributions } block_state;
99*42e22086SApple OSS Distributions
100*42e22086SApple OSS Distributions typedef block_state (*compress_func) OF((deflate_state *s, int flush));
101*42e22086SApple OSS Distributions /* Compression function. Returns the block state after the call. */
102*42e22086SApple OSS Distributions
103*42e22086SApple OSS Distributions local void fill_window OF((deflate_state *s));
104*42e22086SApple OSS Distributions local block_state deflate_stored OF((deflate_state *s, int flush));
105*42e22086SApple OSS Distributions local block_state deflate_fast OF((deflate_state *s, int flush));
106*42e22086SApple OSS Distributions #ifndef FASTEST
107*42e22086SApple OSS Distributions local block_state deflate_slow OF((deflate_state *s, int flush));
108*42e22086SApple OSS Distributions #endif
109*42e22086SApple OSS Distributions local void lm_init OF((deflate_state *s));
110*42e22086SApple OSS Distributions local void putShortMSB OF((deflate_state *s, uInt b));
111*42e22086SApple OSS Distributions local void flush_pending OF((z_streamp strm));
112*42e22086SApple OSS Distributions local int read_buf OF((z_streamp strm, Bytef *buf, unsigned size));
113*42e22086SApple OSS Distributions #ifndef FASTEST
114*42e22086SApple OSS Distributions #ifdef ASMV
115*42e22086SApple OSS Distributions void match_init OF((void)); /* asm code initialization */
116*42e22086SApple OSS Distributions uInt longest_match OF((deflate_state *s, IPos cur_match));
117*42e22086SApple OSS Distributions #else
118*42e22086SApple OSS Distributions local uInt longest_match OF((deflate_state *s, IPos cur_match));
119*42e22086SApple OSS Distributions #endif
120*42e22086SApple OSS Distributions #endif
121*42e22086SApple OSS Distributions local uInt longest_match_fast OF((deflate_state *s, IPos cur_match));
122*42e22086SApple OSS Distributions
123*42e22086SApple OSS Distributions #ifdef DEBUG
124*42e22086SApple OSS Distributions local void check_match OF((deflate_state *s, IPos start, IPos match,
125*42e22086SApple OSS Distributions int length));
126*42e22086SApple OSS Distributions #endif
127*42e22086SApple OSS Distributions
128*42e22086SApple OSS Distributions /* ===========================================================================
129*42e22086SApple OSS Distributions * Local data
130*42e22086SApple OSS Distributions */
131*42e22086SApple OSS Distributions
132*42e22086SApple OSS Distributions #define NIL 0
133*42e22086SApple OSS Distributions /* Tail of hash chains */
134*42e22086SApple OSS Distributions
135*42e22086SApple OSS Distributions #ifndef TOO_FAR
136*42e22086SApple OSS Distributions # define TOO_FAR 4096
137*42e22086SApple OSS Distributions #endif
138*42e22086SApple OSS Distributions /* Matches of length 3 are discarded if their distance exceeds TOO_FAR */
139*42e22086SApple OSS Distributions
140*42e22086SApple OSS Distributions #define MIN_LOOKAHEAD (MAX_MATCH+MIN_MATCH+1)
141*42e22086SApple OSS Distributions /* Minimum amount of lookahead, except at the end of the input file.
142*42e22086SApple OSS Distributions * See deflate.c for comments about the MIN_MATCH+1.
143*42e22086SApple OSS Distributions */
144*42e22086SApple OSS Distributions
145*42e22086SApple OSS Distributions /* Values for max_lazy_match, good_match and max_chain_length, depending on
146*42e22086SApple OSS Distributions * the desired pack level (0..9). The values given below have been tuned to
147*42e22086SApple OSS Distributions * exclude worst case performance for pathological files. Better values may be
148*42e22086SApple OSS Distributions * found for specific files.
149*42e22086SApple OSS Distributions */
150*42e22086SApple OSS Distributions typedef struct config_s {
151*42e22086SApple OSS Distributions ush good_length; /* reduce lazy search above this match length */
152*42e22086SApple OSS Distributions ush max_lazy; /* do not perform lazy search above this match length */
153*42e22086SApple OSS Distributions ush nice_length; /* quit search above this match length */
154*42e22086SApple OSS Distributions ush max_chain;
155*42e22086SApple OSS Distributions compress_func func;
156*42e22086SApple OSS Distributions } config;
157*42e22086SApple OSS Distributions
158*42e22086SApple OSS Distributions #ifdef FASTEST
159*42e22086SApple OSS Distributions local const config configuration_table[2] = {
160*42e22086SApple OSS Distributions /* good lazy nice chain */
161*42e22086SApple OSS Distributions /* 0 */ {0, 0, 0, 0, deflate_stored}, /* store only */
162*42e22086SApple OSS Distributions /* 1 */ {4, 4, 8, 4, deflate_fast}}; /* max speed, no lazy matches */
163*42e22086SApple OSS Distributions #else
164*42e22086SApple OSS Distributions local const config configuration_table[10] = {
165*42e22086SApple OSS Distributions /* good lazy nice chain */
166*42e22086SApple OSS Distributions /* 0 */ {0, 0, 0, 0, deflate_stored}, /* store only */
167*42e22086SApple OSS Distributions /* 1 */ {4, 4, 8, 4, deflate_fast}, /* max speed, no lazy matches */
168*42e22086SApple OSS Distributions /* 2 */ {4, 5, 16, 8, deflate_fast},
169*42e22086SApple OSS Distributions /* 3 */ {4, 6, 32, 32, deflate_fast},
170*42e22086SApple OSS Distributions
171*42e22086SApple OSS Distributions /* 4 */ {4, 4, 16, 16, deflate_slow}, /* lazy matches */
172*42e22086SApple OSS Distributions /* 5 */ {8, 16, 32, 32, deflate_slow},
173*42e22086SApple OSS Distributions /* 6 */ {8, 16, 128, 128, deflate_slow},
174*42e22086SApple OSS Distributions /* 7 */ {8, 32, 128, 256, deflate_slow},
175*42e22086SApple OSS Distributions /* 8 */ {32, 128, 258, 1024, deflate_slow},
176*42e22086SApple OSS Distributions /* 9 */ {32, 258, 258, 4096, deflate_slow}}; /* max compression */
177*42e22086SApple OSS Distributions #endif
178*42e22086SApple OSS Distributions
179*42e22086SApple OSS Distributions /* Note: the deflate() code requires max_lazy >= MIN_MATCH and max_chain >= 4
180*42e22086SApple OSS Distributions * For deflate_fast() (levels <= 3) good is ignored and lazy has a different
181*42e22086SApple OSS Distributions * meaning.
182*42e22086SApple OSS Distributions */
183*42e22086SApple OSS Distributions
184*42e22086SApple OSS Distributions #define EQUAL 0
185*42e22086SApple OSS Distributions /* result of memcmp for equal strings */
186*42e22086SApple OSS Distributions
187*42e22086SApple OSS Distributions #ifndef NO_DUMMY_DECL
188*42e22086SApple OSS Distributions struct static_tree_desc_s {int dummy;}; /* for buggy compilers */
189*42e22086SApple OSS Distributions #endif
190*42e22086SApple OSS Distributions
191*42e22086SApple OSS Distributions /* ===========================================================================
192*42e22086SApple OSS Distributions * Update a hash value with the given input byte
193*42e22086SApple OSS Distributions * IN assertion: all calls to to UPDATE_HASH are made with consecutive
194*42e22086SApple OSS Distributions * input characters, so that a running hash key can be computed from the
195*42e22086SApple OSS Distributions * previous key instead of complete recalculation each time.
196*42e22086SApple OSS Distributions */
197*42e22086SApple OSS Distributions #define UPDATE_HASH(s,h,c) (h = (((h)<<s->hash_shift) ^ (c)) & s->hash_mask)
198*42e22086SApple OSS Distributions
199*42e22086SApple OSS Distributions
200*42e22086SApple OSS Distributions /* ===========================================================================
201*42e22086SApple OSS Distributions * Insert string str in the dictionary and set match_head to the previous head
202*42e22086SApple OSS Distributions * of the hash chain (the most recent string with same hash key). Return
203*42e22086SApple OSS Distributions * the previous length of the hash chain.
204*42e22086SApple OSS Distributions * If this file is compiled with -DFASTEST, the compression level is forced
205*42e22086SApple OSS Distributions * to 1, and no hash chains are maintained.
206*42e22086SApple OSS Distributions * IN assertion: all calls to to INSERT_STRING are made with consecutive
207*42e22086SApple OSS Distributions * input characters and the first MIN_MATCH bytes of str are valid
208*42e22086SApple OSS Distributions * (except for the last MIN_MATCH-1 bytes of the input file).
209*42e22086SApple OSS Distributions */
210*42e22086SApple OSS Distributions #ifdef FASTEST
211*42e22086SApple OSS Distributions #define INSERT_STRING(s, str, match_head) \
212*42e22086SApple OSS Distributions (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
213*42e22086SApple OSS Distributions match_head = s->head[s->ins_h], \
214*42e22086SApple OSS Distributions s->head[s->ins_h] = (Pos)(str))
215*42e22086SApple OSS Distributions #else
216*42e22086SApple OSS Distributions #define INSERT_STRING(s, str, match_head) \
217*42e22086SApple OSS Distributions (UPDATE_HASH(s, s->ins_h, s->window[(str) + (MIN_MATCH-1)]), \
218*42e22086SApple OSS Distributions match_head = s->prev[(str) & s->w_mask] = s->head[s->ins_h], \
219*42e22086SApple OSS Distributions s->head[s->ins_h] = (Pos)(str))
220*42e22086SApple OSS Distributions #endif
221*42e22086SApple OSS Distributions
222*42e22086SApple OSS Distributions /* ===========================================================================
223*42e22086SApple OSS Distributions * Initialize the hash table (avoiding 64K overflow for 16 bit systems).
224*42e22086SApple OSS Distributions * prev[] will be initialized on the fly.
225*42e22086SApple OSS Distributions */
226*42e22086SApple OSS Distributions #define CLEAR_HASH(s) \
227*42e22086SApple OSS Distributions s->head[s->hash_size-1] = NIL; \
228*42e22086SApple OSS Distributions zmemzero((Bytef *)s->head, (unsigned)(s->hash_size-1)*sizeof(*s->head));
229*42e22086SApple OSS Distributions
230*42e22086SApple OSS Distributions /* ========================================================================= */
231*42e22086SApple OSS Distributions int ZEXPORT
deflateInit_(z_streamp strm,int level,const char * version,int stream_size)232*42e22086SApple OSS Distributions deflateInit_(z_streamp strm, int level, const char *version, int stream_size)
233*42e22086SApple OSS Distributions {
234*42e22086SApple OSS Distributions return deflateInit2_(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL,
235*42e22086SApple OSS Distributions Z_DEFAULT_STRATEGY, version, stream_size);
236*42e22086SApple OSS Distributions /* To do: ignore strm->next_in if we use it as window */
237*42e22086SApple OSS Distributions }
238*42e22086SApple OSS Distributions
239*42e22086SApple OSS Distributions /* ========================================================================= */
240*42e22086SApple OSS Distributions int ZEXPORT
deflateInit2_(z_streamp strm,int level,int method,int windowBits,int memLevel,int strategy,const char * version,int stream_size)241*42e22086SApple OSS Distributions deflateInit2_(z_streamp strm, int level, int method, int windowBits,
242*42e22086SApple OSS Distributions int memLevel, int strategy, const char *version,
243*42e22086SApple OSS Distributions int stream_size)
244*42e22086SApple OSS Distributions {
245*42e22086SApple OSS Distributions deflate_state *s;
246*42e22086SApple OSS Distributions int wrap = 1;
247*42e22086SApple OSS Distributions static const char my_version[] = ZLIB_VERSION;
248*42e22086SApple OSS Distributions
249*42e22086SApple OSS Distributions ushf *overlay;
250*42e22086SApple OSS Distributions /* We overlay pending_buf and d_buf+l_buf. This works since the average
251*42e22086SApple OSS Distributions * output size for (length,distance) codes is <= 24 bits.
252*42e22086SApple OSS Distributions */
253*42e22086SApple OSS Distributions
254*42e22086SApple OSS Distributions if (version == Z_NULL || version[0] != my_version[0] ||
255*42e22086SApple OSS Distributions stream_size != sizeof(z_stream)) {
256*42e22086SApple OSS Distributions return Z_VERSION_ERROR;
257*42e22086SApple OSS Distributions }
258*42e22086SApple OSS Distributions if (strm == Z_NULL) return Z_STREAM_ERROR;
259*42e22086SApple OSS Distributions
260*42e22086SApple OSS Distributions strm->msg = Z_NULL;
261*42e22086SApple OSS Distributions #ifndef NO_ZCFUNCS
262*42e22086SApple OSS Distributions if (strm->zalloc == (alloc_func)0) {
263*42e22086SApple OSS Distributions strm->zalloc = zcalloc;
264*42e22086SApple OSS Distributions strm->opaque = (voidpf)0;
265*42e22086SApple OSS Distributions }
266*42e22086SApple OSS Distributions if (strm->zfree == (free_func)0) strm->zfree = zcfree;
267*42e22086SApple OSS Distributions #endif /* NO_ZCFUNCS */
268*42e22086SApple OSS Distributions
269*42e22086SApple OSS Distributions #ifdef FASTEST
270*42e22086SApple OSS Distributions if (level != 0) level = 1;
271*42e22086SApple OSS Distributions #else
272*42e22086SApple OSS Distributions if (level == Z_DEFAULT_COMPRESSION) level = 6;
273*42e22086SApple OSS Distributions #endif
274*42e22086SApple OSS Distributions
275*42e22086SApple OSS Distributions if (windowBits < 0) { /* suppress zlib wrapper */
276*42e22086SApple OSS Distributions wrap = 0;
277*42e22086SApple OSS Distributions windowBits = -windowBits;
278*42e22086SApple OSS Distributions }
279*42e22086SApple OSS Distributions #ifdef GZIP
280*42e22086SApple OSS Distributions else if (windowBits > 15) {
281*42e22086SApple OSS Distributions wrap = 2; /* write gzip wrapper instead */
282*42e22086SApple OSS Distributions windowBits -= 16;
283*42e22086SApple OSS Distributions }
284*42e22086SApple OSS Distributions #endif
285*42e22086SApple OSS Distributions if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method != Z_DEFLATED ||
286*42e22086SApple OSS Distributions windowBits < 8 || windowBits > 15 || level < 0 || level > 9 ||
287*42e22086SApple OSS Distributions strategy < 0 || strategy > Z_FIXED) {
288*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
289*42e22086SApple OSS Distributions }
290*42e22086SApple OSS Distributions if (windowBits == 8) windowBits = 9; /* until 256-byte window bug fixed */
291*42e22086SApple OSS Distributions s = (deflate_state *) ZALLOC(strm, 1, sizeof(deflate_state));
292*42e22086SApple OSS Distributions if (s == Z_NULL) return Z_MEM_ERROR;
293*42e22086SApple OSS Distributions strm->state = (struct internal_state FAR *)s;
294*42e22086SApple OSS Distributions s->strm = strm;
295*42e22086SApple OSS Distributions
296*42e22086SApple OSS Distributions s->wrap = wrap;
297*42e22086SApple OSS Distributions s->gzhead = Z_NULL;
298*42e22086SApple OSS Distributions s->w_bits = windowBits;
299*42e22086SApple OSS Distributions s->w_size = 1 << s->w_bits;
300*42e22086SApple OSS Distributions s->w_mask = s->w_size - 1;
301*42e22086SApple OSS Distributions
302*42e22086SApple OSS Distributions s->hash_bits = memLevel + 7;
303*42e22086SApple OSS Distributions s->hash_size = 1 << s->hash_bits;
304*42e22086SApple OSS Distributions s->hash_mask = s->hash_size - 1;
305*42e22086SApple OSS Distributions s->hash_shift = ((s->hash_bits+MIN_MATCH-1)/MIN_MATCH);
306*42e22086SApple OSS Distributions
307*42e22086SApple OSS Distributions s->window = (Bytef *) ZALLOC(strm, s->w_size, 2*sizeof(Byte));
308*42e22086SApple OSS Distributions s->prev = (Posf *) ZALLOC(strm, s->w_size, sizeof(Pos));
309*42e22086SApple OSS Distributions s->head = (Posf *) ZALLOC(strm, s->hash_size, sizeof(Pos));
310*42e22086SApple OSS Distributions
311*42e22086SApple OSS Distributions s->lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */
312*42e22086SApple OSS Distributions
313*42e22086SApple OSS Distributions overlay = (ushf *) ZALLOC(strm, s->lit_bufsize, sizeof(ush)+2);
314*42e22086SApple OSS Distributions s->pending_buf = (uchf *) overlay;
315*42e22086SApple OSS Distributions s->pending_buf_size = (ulg)s->lit_bufsize * (sizeof(ush)+2L);
316*42e22086SApple OSS Distributions
317*42e22086SApple OSS Distributions if (s->window == Z_NULL || s->prev == Z_NULL || s->head == Z_NULL ||
318*42e22086SApple OSS Distributions s->pending_buf == Z_NULL) {
319*42e22086SApple OSS Distributions s->status = FINISH_STATE;
320*42e22086SApple OSS Distributions strm->msg = (char*)ERR_MSG(Z_MEM_ERROR);
321*42e22086SApple OSS Distributions deflateEnd (strm);
322*42e22086SApple OSS Distributions return Z_MEM_ERROR;
323*42e22086SApple OSS Distributions }
324*42e22086SApple OSS Distributions s->d_buf = overlay + s->lit_bufsize/sizeof(ush);
325*42e22086SApple OSS Distributions s->l_buf = s->pending_buf + (1+sizeof(ush))*s->lit_bufsize;
326*42e22086SApple OSS Distributions
327*42e22086SApple OSS Distributions s->level = level;
328*42e22086SApple OSS Distributions s->strategy = strategy;
329*42e22086SApple OSS Distributions s->method = (Byte)method;
330*42e22086SApple OSS Distributions
331*42e22086SApple OSS Distributions return deflateReset(strm);
332*42e22086SApple OSS Distributions }
333*42e22086SApple OSS Distributions
334*42e22086SApple OSS Distributions /* ========================================================================= */
335*42e22086SApple OSS Distributions int ZEXPORT
deflateSetDictionary(z_streamp strm,const Bytef * dictionary,uInt dictLength)336*42e22086SApple OSS Distributions deflateSetDictionary(z_streamp strm, const Bytef *dictionary, uInt dictLength)
337*42e22086SApple OSS Distributions {
338*42e22086SApple OSS Distributions deflate_state *s;
339*42e22086SApple OSS Distributions uInt length = dictLength;
340*42e22086SApple OSS Distributions uInt n;
341*42e22086SApple OSS Distributions IPos hash_head = 0;
342*42e22086SApple OSS Distributions
343*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL || dictionary == Z_NULL ||
344*42e22086SApple OSS Distributions strm->state->wrap == 2 ||
345*42e22086SApple OSS Distributions (strm->state->wrap == 1 && strm->state->status != INIT_STATE))
346*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
347*42e22086SApple OSS Distributions
348*42e22086SApple OSS Distributions s = strm->state;
349*42e22086SApple OSS Distributions if (s->wrap)
350*42e22086SApple OSS Distributions strm->adler = adler32(strm->adler, dictionary, dictLength);
351*42e22086SApple OSS Distributions
352*42e22086SApple OSS Distributions if (length < MIN_MATCH) return Z_OK;
353*42e22086SApple OSS Distributions if (length > MAX_DIST(s)) {
354*42e22086SApple OSS Distributions length = MAX_DIST(s);
355*42e22086SApple OSS Distributions dictionary += dictLength - length; /* use the tail of the dictionary */
356*42e22086SApple OSS Distributions }
357*42e22086SApple OSS Distributions zmemcpy(s->window, dictionary, length);
358*42e22086SApple OSS Distributions s->strstart = length;
359*42e22086SApple OSS Distributions s->block_start = (long)length;
360*42e22086SApple OSS Distributions
361*42e22086SApple OSS Distributions /* Insert all strings in the hash table (except for the last two bytes).
362*42e22086SApple OSS Distributions * s->lookahead stays null, so s->ins_h will be recomputed at the next
363*42e22086SApple OSS Distributions * call of fill_window.
364*42e22086SApple OSS Distributions */
365*42e22086SApple OSS Distributions s->ins_h = s->window[0];
366*42e22086SApple OSS Distributions UPDATE_HASH(s, s->ins_h, s->window[1]);
367*42e22086SApple OSS Distributions for (n = 0; n <= length - MIN_MATCH; n++) {
368*42e22086SApple OSS Distributions INSERT_STRING(s, n, hash_head);
369*42e22086SApple OSS Distributions }
370*42e22086SApple OSS Distributions if (hash_head) hash_head = 0; /* to make compiler happy */
371*42e22086SApple OSS Distributions return Z_OK;
372*42e22086SApple OSS Distributions }
373*42e22086SApple OSS Distributions
374*42e22086SApple OSS Distributions /* ========================================================================= */
375*42e22086SApple OSS Distributions
376*42e22086SApple OSS Distributions ZEXTERN int ZEXPORT
deflateResetWithIO(z_streamp strm,z_input_func zinput,z_output_func zoutput)377*42e22086SApple OSS Distributions deflateResetWithIO(z_streamp strm, z_input_func zinput, z_output_func zoutput)
378*42e22086SApple OSS Distributions {
379*42e22086SApple OSS Distributions int zerr;
380*42e22086SApple OSS Distributions
381*42e22086SApple OSS Distributions zerr = deflateReset(strm);
382*42e22086SApple OSS Distributions if (Z_OK != zerr) return (zerr);
383*42e22086SApple OSS Distributions strm->state->zinput = zinput;
384*42e22086SApple OSS Distributions strm->state->zoutput = zoutput;
385*42e22086SApple OSS Distributions return Z_OK;
386*42e22086SApple OSS Distributions }
387*42e22086SApple OSS Distributions
388*42e22086SApple OSS Distributions /* ========================================================================= */
389*42e22086SApple OSS Distributions
390*42e22086SApple OSS Distributions int ZEXPORT
deflateReset(z_streamp strm)391*42e22086SApple OSS Distributions deflateReset(z_streamp strm)
392*42e22086SApple OSS Distributions {
393*42e22086SApple OSS Distributions deflate_state *s;
394*42e22086SApple OSS Distributions
395*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL ||
396*42e22086SApple OSS Distributions strm->zalloc == (alloc_func)0 || strm->zfree == (free_func)0) {
397*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
398*42e22086SApple OSS Distributions }
399*42e22086SApple OSS Distributions
400*42e22086SApple OSS Distributions strm->total_in = strm->total_out = 0;
401*42e22086SApple OSS Distributions strm->msg = Z_NULL; /* use zfree if we ever allocate msg dynamically */
402*42e22086SApple OSS Distributions strm->data_type = Z_UNKNOWN;
403*42e22086SApple OSS Distributions
404*42e22086SApple OSS Distributions s = (deflate_state *)strm->state;
405*42e22086SApple OSS Distributions s->pending = 0;
406*42e22086SApple OSS Distributions s->pending_out = s->pending_buf;
407*42e22086SApple OSS Distributions s->zinput = &read_buf;
408*42e22086SApple OSS Distributions s->zoutput = NULL;
409*42e22086SApple OSS Distributions
410*42e22086SApple OSS Distributions if (s->wrap < 0) {
411*42e22086SApple OSS Distributions s->wrap = -s->wrap; /* was made negative by deflate(..., Z_FINISH); */
412*42e22086SApple OSS Distributions }
413*42e22086SApple OSS Distributions s->status = s->wrap ? INIT_STATE : BUSY_STATE;
414*42e22086SApple OSS Distributions strm->adler =
415*42e22086SApple OSS Distributions #ifdef GZIP
416*42e22086SApple OSS Distributions s->wrap == 2 ? z_crc32(0L, Z_NULL, 0) :
417*42e22086SApple OSS Distributions #endif
418*42e22086SApple OSS Distributions adler32(0L, Z_NULL, 0);
419*42e22086SApple OSS Distributions s->last_flush = Z_NO_FLUSH;
420*42e22086SApple OSS Distributions
421*42e22086SApple OSS Distributions _tr_init(s);
422*42e22086SApple OSS Distributions lm_init(s);
423*42e22086SApple OSS Distributions
424*42e22086SApple OSS Distributions return Z_OK;
425*42e22086SApple OSS Distributions }
426*42e22086SApple OSS Distributions
427*42e22086SApple OSS Distributions /* ========================================================================= */
428*42e22086SApple OSS Distributions int ZEXPORT
deflateSetHeader(z_streamp strm,gz_headerp head)429*42e22086SApple OSS Distributions deflateSetHeader(z_streamp strm, gz_headerp head)
430*42e22086SApple OSS Distributions {
431*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
432*42e22086SApple OSS Distributions if (strm->state->wrap != 2) return Z_STREAM_ERROR;
433*42e22086SApple OSS Distributions strm->state->gzhead = head;
434*42e22086SApple OSS Distributions return Z_OK;
435*42e22086SApple OSS Distributions }
436*42e22086SApple OSS Distributions
437*42e22086SApple OSS Distributions /* ========================================================================= */
438*42e22086SApple OSS Distributions int ZEXPORT
deflatePrime(z_streamp strm,int bits,int value)439*42e22086SApple OSS Distributions deflatePrime(z_streamp strm, int bits, int value)
440*42e22086SApple OSS Distributions {
441*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
442*42e22086SApple OSS Distributions strm->state->bi_valid = bits;
443*42e22086SApple OSS Distributions strm->state->bi_buf = (ush)(value & ((1 << bits) - 1));
444*42e22086SApple OSS Distributions return Z_OK;
445*42e22086SApple OSS Distributions }
446*42e22086SApple OSS Distributions
447*42e22086SApple OSS Distributions /* ========================================================================= */
448*42e22086SApple OSS Distributions int ZEXPORT
deflateParams(z_streamp strm,int level,int strategy)449*42e22086SApple OSS Distributions deflateParams(z_streamp strm, int level, int strategy)
450*42e22086SApple OSS Distributions {
451*42e22086SApple OSS Distributions deflate_state *s;
452*42e22086SApple OSS Distributions compress_func func;
453*42e22086SApple OSS Distributions int err = Z_OK;
454*42e22086SApple OSS Distributions
455*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
456*42e22086SApple OSS Distributions s = strm->state;
457*42e22086SApple OSS Distributions
458*42e22086SApple OSS Distributions #ifdef FASTEST
459*42e22086SApple OSS Distributions if (level != 0) level = 1;
460*42e22086SApple OSS Distributions #else
461*42e22086SApple OSS Distributions if (level == Z_DEFAULT_COMPRESSION) level = 6;
462*42e22086SApple OSS Distributions #endif
463*42e22086SApple OSS Distributions if (level < 0 || level > 9 || strategy < 0 || strategy > Z_FIXED) {
464*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
465*42e22086SApple OSS Distributions }
466*42e22086SApple OSS Distributions func = configuration_table[s->level].func;
467*42e22086SApple OSS Distributions
468*42e22086SApple OSS Distributions if (func != configuration_table[level].func && strm->total_in != 0) {
469*42e22086SApple OSS Distributions /* Flush the last buffer: */
470*42e22086SApple OSS Distributions err = deflate(strm, Z_PARTIAL_FLUSH);
471*42e22086SApple OSS Distributions }
472*42e22086SApple OSS Distributions if (s->level != level) {
473*42e22086SApple OSS Distributions s->level = level;
474*42e22086SApple OSS Distributions s->max_lazy_match = configuration_table[level].max_lazy;
475*42e22086SApple OSS Distributions s->good_match = configuration_table[level].good_length;
476*42e22086SApple OSS Distributions s->nice_match = configuration_table[level].nice_length;
477*42e22086SApple OSS Distributions s->max_chain_length = configuration_table[level].max_chain;
478*42e22086SApple OSS Distributions }
479*42e22086SApple OSS Distributions s->strategy = strategy;
480*42e22086SApple OSS Distributions return err;
481*42e22086SApple OSS Distributions }
482*42e22086SApple OSS Distributions
483*42e22086SApple OSS Distributions /* ========================================================================= */
484*42e22086SApple OSS Distributions int ZEXPORT
deflateTune(z_streamp strm,int good_length,int max_lazy,int nice_length,int max_chain)485*42e22086SApple OSS Distributions deflateTune(z_streamp strm, int good_length, int max_lazy, int nice_length,
486*42e22086SApple OSS Distributions int max_chain)
487*42e22086SApple OSS Distributions {
488*42e22086SApple OSS Distributions deflate_state *s;
489*42e22086SApple OSS Distributions
490*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
491*42e22086SApple OSS Distributions s = strm->state;
492*42e22086SApple OSS Distributions s->good_match = good_length;
493*42e22086SApple OSS Distributions s->max_lazy_match = max_lazy;
494*42e22086SApple OSS Distributions s->nice_match = nice_length;
495*42e22086SApple OSS Distributions s->max_chain_length = max_chain;
496*42e22086SApple OSS Distributions return Z_OK;
497*42e22086SApple OSS Distributions }
498*42e22086SApple OSS Distributions
499*42e22086SApple OSS Distributions /* =========================================================================
500*42e22086SApple OSS Distributions * For the default windowBits of 15 and memLevel of 8, this function returns
501*42e22086SApple OSS Distributions * a close to exact, as well as small, upper bound on the compressed size.
502*42e22086SApple OSS Distributions * They are coded as constants here for a reason--if the #define's are
503*42e22086SApple OSS Distributions * changed, then this function needs to be changed as well. The return
504*42e22086SApple OSS Distributions * value for 15 and 8 only works for those exact settings.
505*42e22086SApple OSS Distributions *
506*42e22086SApple OSS Distributions * For any setting other than those defaults for windowBits and memLevel,
507*42e22086SApple OSS Distributions * the value returned is a conservative worst case for the maximum expansion
508*42e22086SApple OSS Distributions * resulting from using fixed blocks instead of stored blocks, which deflate
509*42e22086SApple OSS Distributions * can emit on compressed data for some combinations of the parameters.
510*42e22086SApple OSS Distributions *
511*42e22086SApple OSS Distributions * This function could be more sophisticated to provide closer upper bounds
512*42e22086SApple OSS Distributions * for every combination of windowBits and memLevel, as well as wrap.
513*42e22086SApple OSS Distributions * But even the conservative upper bound of about 14% expansion does not
514*42e22086SApple OSS Distributions * seem onerous for output buffer allocation.
515*42e22086SApple OSS Distributions */
516*42e22086SApple OSS Distributions uLong ZEXPORT
deflateBound(z_streamp strm,uLong sourceLen)517*42e22086SApple OSS Distributions deflateBound(z_streamp strm, uLong sourceLen)
518*42e22086SApple OSS Distributions {
519*42e22086SApple OSS Distributions deflate_state *s;
520*42e22086SApple OSS Distributions uLong destLen;
521*42e22086SApple OSS Distributions
522*42e22086SApple OSS Distributions /* conservative upper bound */
523*42e22086SApple OSS Distributions destLen = sourceLen +
524*42e22086SApple OSS Distributions ((sourceLen + 7) >> 3) + ((sourceLen + 63) >> 6) + 11;
525*42e22086SApple OSS Distributions
526*42e22086SApple OSS Distributions /* if can't get parameters, return conservative bound */
527*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL)
528*42e22086SApple OSS Distributions return destLen;
529*42e22086SApple OSS Distributions
530*42e22086SApple OSS Distributions /* if not default parameters, return conservative bound */
531*42e22086SApple OSS Distributions s = strm->state;
532*42e22086SApple OSS Distributions if (s->w_bits != 15 || s->hash_bits != 8 + 7)
533*42e22086SApple OSS Distributions return destLen;
534*42e22086SApple OSS Distributions
535*42e22086SApple OSS Distributions /* default settings: return tight bound for that case */
536*42e22086SApple OSS Distributions return compressBound(sourceLen);
537*42e22086SApple OSS Distributions }
538*42e22086SApple OSS Distributions
539*42e22086SApple OSS Distributions /* =========================================================================
540*42e22086SApple OSS Distributions * Put a short in the pending buffer. The 16-bit value is put in MSB order.
541*42e22086SApple OSS Distributions * IN assertion: the stream state is correct and there is enough room in
542*42e22086SApple OSS Distributions * pending_buf.
543*42e22086SApple OSS Distributions */
544*42e22086SApple OSS Distributions local void
putShortMSB(deflate_state * s,uInt b)545*42e22086SApple OSS Distributions putShortMSB(deflate_state *s, uInt b)
546*42e22086SApple OSS Distributions {
547*42e22086SApple OSS Distributions put_byte(s, (Byte)(b >> 8));
548*42e22086SApple OSS Distributions put_byte(s, (Byte)(b & 0xff));
549*42e22086SApple OSS Distributions }
550*42e22086SApple OSS Distributions
551*42e22086SApple OSS Distributions /* =========================================================================
552*42e22086SApple OSS Distributions * Flush as much pending output as possible. All deflate() output goes
553*42e22086SApple OSS Distributions * through this function so some applications may wish to modify it
554*42e22086SApple OSS Distributions * to avoid allocating a large strm->next_out buffer and copying into it.
555*42e22086SApple OSS Distributions * (See also read_buf()).
556*42e22086SApple OSS Distributions */
557*42e22086SApple OSS Distributions local void
flush_pending(z_streamp strm)558*42e22086SApple OSS Distributions flush_pending(z_streamp strm)
559*42e22086SApple OSS Distributions {
560*42e22086SApple OSS Distributions unsigned len = strm->state->pending;
561*42e22086SApple OSS Distributions
562*42e22086SApple OSS Distributions if (strm->state->zoutput) {
563*42e22086SApple OSS Distributions len = (*strm->state->zoutput)(strm, strm->state->pending_out, len);
564*42e22086SApple OSS Distributions } else {
565*42e22086SApple OSS Distributions if (len > strm->avail_out) len = strm->avail_out;
566*42e22086SApple OSS Distributions if (len == 0) return;
567*42e22086SApple OSS Distributions zmemcpy(strm->next_out, strm->state->pending_out, len);
568*42e22086SApple OSS Distributions strm->next_out += len;
569*42e22086SApple OSS Distributions strm->avail_out -= len;
570*42e22086SApple OSS Distributions }
571*42e22086SApple OSS Distributions
572*42e22086SApple OSS Distributions strm->state->pending_out += len;
573*42e22086SApple OSS Distributions strm->total_out += len;
574*42e22086SApple OSS Distributions strm->state->pending -= len;
575*42e22086SApple OSS Distributions if (strm->state->pending == 0) {
576*42e22086SApple OSS Distributions strm->state->pending_out = strm->state->pending_buf;
577*42e22086SApple OSS Distributions }
578*42e22086SApple OSS Distributions }
579*42e22086SApple OSS Distributions
580*42e22086SApple OSS Distributions /* ========================================================================= */
581*42e22086SApple OSS Distributions int ZEXPORT
deflate(z_streamp strm,int flush)582*42e22086SApple OSS Distributions deflate(z_streamp strm, int flush)
583*42e22086SApple OSS Distributions {
584*42e22086SApple OSS Distributions int old_flush; /* value of flush param for previous deflate call */
585*42e22086SApple OSS Distributions deflate_state *s;
586*42e22086SApple OSS Distributions
587*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL ||
588*42e22086SApple OSS Distributions flush > Z_FINISH || flush < 0) {
589*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
590*42e22086SApple OSS Distributions }
591*42e22086SApple OSS Distributions s = strm->state;
592*42e22086SApple OSS Distributions
593*42e22086SApple OSS Distributions if (strm->next_out == Z_NULL ||
594*42e22086SApple OSS Distributions (strm->next_in == Z_NULL && strm->avail_in != 0) ||
595*42e22086SApple OSS Distributions (s->status == FINISH_STATE && flush != Z_FINISH)) {
596*42e22086SApple OSS Distributions ERR_RETURN(strm, Z_STREAM_ERROR);
597*42e22086SApple OSS Distributions }
598*42e22086SApple OSS Distributions if (strm->avail_out == 0) ERR_RETURN(strm, Z_BUF_ERROR);
599*42e22086SApple OSS Distributions
600*42e22086SApple OSS Distributions s->strm = strm; /* just in case */
601*42e22086SApple OSS Distributions old_flush = s->last_flush;
602*42e22086SApple OSS Distributions s->last_flush = flush;
603*42e22086SApple OSS Distributions
604*42e22086SApple OSS Distributions /* Write the header */
605*42e22086SApple OSS Distributions if (s->status == INIT_STATE) {
606*42e22086SApple OSS Distributions #ifdef GZIP
607*42e22086SApple OSS Distributions if (s->wrap == 2) {
608*42e22086SApple OSS Distributions strm->adler = z_crc32(0L, Z_NULL, 0);
609*42e22086SApple OSS Distributions put_byte(s, 31);
610*42e22086SApple OSS Distributions put_byte(s, 139);
611*42e22086SApple OSS Distributions put_byte(s, 8);
612*42e22086SApple OSS Distributions if (s->gzhead == NULL) {
613*42e22086SApple OSS Distributions put_byte(s, 0);
614*42e22086SApple OSS Distributions put_byte(s, 0);
615*42e22086SApple OSS Distributions put_byte(s, 0);
616*42e22086SApple OSS Distributions put_byte(s, 0);
617*42e22086SApple OSS Distributions put_byte(s, 0);
618*42e22086SApple OSS Distributions put_byte(s, s->level == 9 ? 2 :
619*42e22086SApple OSS Distributions (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ?
620*42e22086SApple OSS Distributions 4 : 0));
621*42e22086SApple OSS Distributions put_byte(s, OS_CODE);
622*42e22086SApple OSS Distributions s->status = BUSY_STATE;
623*42e22086SApple OSS Distributions }
624*42e22086SApple OSS Distributions else {
625*42e22086SApple OSS Distributions put_byte(s, (s->gzhead->text ? 1 : 0) +
626*42e22086SApple OSS Distributions (s->gzhead->hcrc ? 2 : 0) +
627*42e22086SApple OSS Distributions (s->gzhead->extra == Z_NULL ? 0 : 4) +
628*42e22086SApple OSS Distributions (s->gzhead->name == Z_NULL ? 0 : 8) +
629*42e22086SApple OSS Distributions (s->gzhead->comment == Z_NULL ? 0 : 16)
630*42e22086SApple OSS Distributions );
631*42e22086SApple OSS Distributions put_byte(s, (Byte)(s->gzhead->time & 0xff));
632*42e22086SApple OSS Distributions put_byte(s, (Byte)((s->gzhead->time >> 8) & 0xff));
633*42e22086SApple OSS Distributions put_byte(s, (Byte)((s->gzhead->time >> 16) & 0xff));
634*42e22086SApple OSS Distributions put_byte(s, (Byte)((s->gzhead->time >> 24) & 0xff));
635*42e22086SApple OSS Distributions put_byte(s, s->level == 9 ? 2 :
636*42e22086SApple OSS Distributions (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2 ?
637*42e22086SApple OSS Distributions 4 : 0));
638*42e22086SApple OSS Distributions put_byte(s, s->gzhead->os & 0xff);
639*42e22086SApple OSS Distributions if (s->gzhead->extra != NULL) {
640*42e22086SApple OSS Distributions put_byte(s, s->gzhead->extra_len & 0xff);
641*42e22086SApple OSS Distributions put_byte(s, (s->gzhead->extra_len >> 8) & 0xff);
642*42e22086SApple OSS Distributions }
643*42e22086SApple OSS Distributions if (s->gzhead->hcrc)
644*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf,
645*42e22086SApple OSS Distributions s->pending);
646*42e22086SApple OSS Distributions s->gzindex = 0;
647*42e22086SApple OSS Distributions s->status = EXTRA_STATE;
648*42e22086SApple OSS Distributions }
649*42e22086SApple OSS Distributions }
650*42e22086SApple OSS Distributions else
651*42e22086SApple OSS Distributions #endif
652*42e22086SApple OSS Distributions {
653*42e22086SApple OSS Distributions uInt header = (Z_DEFLATED + ((s->w_bits-8)<<4)) << 8;
654*42e22086SApple OSS Distributions uInt level_flags;
655*42e22086SApple OSS Distributions
656*42e22086SApple OSS Distributions if (s->strategy >= Z_HUFFMAN_ONLY || s->level < 2)
657*42e22086SApple OSS Distributions level_flags = 0;
658*42e22086SApple OSS Distributions else if (s->level < 6)
659*42e22086SApple OSS Distributions level_flags = 1;
660*42e22086SApple OSS Distributions else if (s->level == 6)
661*42e22086SApple OSS Distributions level_flags = 2;
662*42e22086SApple OSS Distributions else
663*42e22086SApple OSS Distributions level_flags = 3;
664*42e22086SApple OSS Distributions header |= (level_flags << 6);
665*42e22086SApple OSS Distributions if (s->strstart != 0) header |= PRESET_DICT;
666*42e22086SApple OSS Distributions header += 31 - (header % 31);
667*42e22086SApple OSS Distributions
668*42e22086SApple OSS Distributions s->status = BUSY_STATE;
669*42e22086SApple OSS Distributions putShortMSB(s, header);
670*42e22086SApple OSS Distributions
671*42e22086SApple OSS Distributions /* Save the adler32 of the preset dictionary: */
672*42e22086SApple OSS Distributions if (s->strstart != 0) {
673*42e22086SApple OSS Distributions putShortMSB(s, (uInt)(strm->adler >> 16));
674*42e22086SApple OSS Distributions putShortMSB(s, (uInt)(strm->adler & 0xffff));
675*42e22086SApple OSS Distributions }
676*42e22086SApple OSS Distributions strm->adler = adler32(0L, Z_NULL, 0);
677*42e22086SApple OSS Distributions }
678*42e22086SApple OSS Distributions }
679*42e22086SApple OSS Distributions #ifdef GZIP
680*42e22086SApple OSS Distributions if (s->status == EXTRA_STATE) {
681*42e22086SApple OSS Distributions if (s->gzhead->extra != NULL) {
682*42e22086SApple OSS Distributions uInt beg = s->pending; /* start of bytes to update crc */
683*42e22086SApple OSS Distributions
684*42e22086SApple OSS Distributions while (s->gzindex < (s->gzhead->extra_len & 0xffff)) {
685*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size) {
686*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
687*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
688*42e22086SApple OSS Distributions s->pending - beg);
689*42e22086SApple OSS Distributions flush_pending(strm);
690*42e22086SApple OSS Distributions beg = s->pending;
691*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size)
692*42e22086SApple OSS Distributions break;
693*42e22086SApple OSS Distributions }
694*42e22086SApple OSS Distributions put_byte(s, s->gzhead->extra[s->gzindex]);
695*42e22086SApple OSS Distributions s->gzindex++;
696*42e22086SApple OSS Distributions }
697*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
698*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
699*42e22086SApple OSS Distributions s->pending - beg);
700*42e22086SApple OSS Distributions if (s->gzindex == s->gzhead->extra_len) {
701*42e22086SApple OSS Distributions s->gzindex = 0;
702*42e22086SApple OSS Distributions s->status = NAME_STATE;
703*42e22086SApple OSS Distributions }
704*42e22086SApple OSS Distributions }
705*42e22086SApple OSS Distributions else
706*42e22086SApple OSS Distributions s->status = NAME_STATE;
707*42e22086SApple OSS Distributions }
708*42e22086SApple OSS Distributions if (s->status == NAME_STATE) {
709*42e22086SApple OSS Distributions if (s->gzhead->name != NULL) {
710*42e22086SApple OSS Distributions uInt beg = s->pending; /* start of bytes to update crc */
711*42e22086SApple OSS Distributions Bytef val;
712*42e22086SApple OSS Distributions
713*42e22086SApple OSS Distributions do {
714*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size) {
715*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
716*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
717*42e22086SApple OSS Distributions s->pending - beg);
718*42e22086SApple OSS Distributions flush_pending(strm);
719*42e22086SApple OSS Distributions beg = s->pending;
720*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size) {
721*42e22086SApple OSS Distributions val = 1;
722*42e22086SApple OSS Distributions break;
723*42e22086SApple OSS Distributions }
724*42e22086SApple OSS Distributions }
725*42e22086SApple OSS Distributions val = s->gzhead->name[s->gzindex++];
726*42e22086SApple OSS Distributions put_byte(s, val);
727*42e22086SApple OSS Distributions } while (val != 0);
728*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
729*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
730*42e22086SApple OSS Distributions s->pending - beg);
731*42e22086SApple OSS Distributions if (val == 0) {
732*42e22086SApple OSS Distributions s->gzindex = 0;
733*42e22086SApple OSS Distributions s->status = COMMENT_STATE;
734*42e22086SApple OSS Distributions }
735*42e22086SApple OSS Distributions }
736*42e22086SApple OSS Distributions else
737*42e22086SApple OSS Distributions s->status = COMMENT_STATE;
738*42e22086SApple OSS Distributions }
739*42e22086SApple OSS Distributions if (s->status == COMMENT_STATE) {
740*42e22086SApple OSS Distributions if (s->gzhead->comment != NULL) {
741*42e22086SApple OSS Distributions uInt beg = s->pending; /* start of bytes to update crc */
742*42e22086SApple OSS Distributions Bytef val;
743*42e22086SApple OSS Distributions
744*42e22086SApple OSS Distributions do {
745*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size) {
746*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
747*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
748*42e22086SApple OSS Distributions s->pending - beg);
749*42e22086SApple OSS Distributions flush_pending(strm);
750*42e22086SApple OSS Distributions beg = s->pending;
751*42e22086SApple OSS Distributions if (s->pending == s->pending_buf_size) {
752*42e22086SApple OSS Distributions val = 1;
753*42e22086SApple OSS Distributions break;
754*42e22086SApple OSS Distributions }
755*42e22086SApple OSS Distributions }
756*42e22086SApple OSS Distributions val = s->gzhead->comment[s->gzindex++];
757*42e22086SApple OSS Distributions put_byte(s, val);
758*42e22086SApple OSS Distributions } while (val != 0);
759*42e22086SApple OSS Distributions if (s->gzhead->hcrc && s->pending > beg)
760*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, s->pending_buf + beg,
761*42e22086SApple OSS Distributions s->pending - beg);
762*42e22086SApple OSS Distributions if (val == 0)
763*42e22086SApple OSS Distributions s->status = HCRC_STATE;
764*42e22086SApple OSS Distributions }
765*42e22086SApple OSS Distributions else
766*42e22086SApple OSS Distributions s->status = HCRC_STATE;
767*42e22086SApple OSS Distributions }
768*42e22086SApple OSS Distributions if (s->status == HCRC_STATE) {
769*42e22086SApple OSS Distributions if (s->gzhead->hcrc) {
770*42e22086SApple OSS Distributions if (s->pending + 2 > s->pending_buf_size)
771*42e22086SApple OSS Distributions flush_pending(strm);
772*42e22086SApple OSS Distributions if (s->pending + 2 <= s->pending_buf_size) {
773*42e22086SApple OSS Distributions put_byte(s, (Byte)(strm->adler & 0xff));
774*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->adler >> 8) & 0xff));
775*42e22086SApple OSS Distributions strm->adler = z_crc32(0L, Z_NULL, 0);
776*42e22086SApple OSS Distributions s->status = BUSY_STATE;
777*42e22086SApple OSS Distributions }
778*42e22086SApple OSS Distributions }
779*42e22086SApple OSS Distributions else
780*42e22086SApple OSS Distributions s->status = BUSY_STATE;
781*42e22086SApple OSS Distributions }
782*42e22086SApple OSS Distributions #endif
783*42e22086SApple OSS Distributions
784*42e22086SApple OSS Distributions /* Flush as much pending output as possible */
785*42e22086SApple OSS Distributions if (s->pending != 0) {
786*42e22086SApple OSS Distributions flush_pending(strm);
787*42e22086SApple OSS Distributions if (strm->avail_out == 0) {
788*42e22086SApple OSS Distributions /* Since avail_out is 0, deflate will be called again with
789*42e22086SApple OSS Distributions * more output space, but possibly with both pending and
790*42e22086SApple OSS Distributions * avail_in equal to zero. There won't be anything to do,
791*42e22086SApple OSS Distributions * but this is not an error situation so make sure we
792*42e22086SApple OSS Distributions * return OK instead of BUF_ERROR at next call of deflate:
793*42e22086SApple OSS Distributions */
794*42e22086SApple OSS Distributions s->last_flush = -1;
795*42e22086SApple OSS Distributions return Z_OK;
796*42e22086SApple OSS Distributions }
797*42e22086SApple OSS Distributions
798*42e22086SApple OSS Distributions /* Make sure there is something to do and avoid duplicate consecutive
799*42e22086SApple OSS Distributions * flushes. For repeated and useless calls with Z_FINISH, we keep
800*42e22086SApple OSS Distributions * returning Z_STREAM_END instead of Z_BUF_ERROR.
801*42e22086SApple OSS Distributions */
802*42e22086SApple OSS Distributions } else if (strm->avail_in == 0 && flush <= old_flush &&
803*42e22086SApple OSS Distributions flush != Z_FINISH) {
804*42e22086SApple OSS Distributions ERR_RETURN(strm, Z_BUF_ERROR);
805*42e22086SApple OSS Distributions }
806*42e22086SApple OSS Distributions
807*42e22086SApple OSS Distributions /* User must not provide more input after the first FINISH: */
808*42e22086SApple OSS Distributions if (s->status == FINISH_STATE && strm->avail_in != 0) {
809*42e22086SApple OSS Distributions ERR_RETURN(strm, Z_BUF_ERROR);
810*42e22086SApple OSS Distributions }
811*42e22086SApple OSS Distributions
812*42e22086SApple OSS Distributions /* Start a new block or continue the current one.
813*42e22086SApple OSS Distributions */
814*42e22086SApple OSS Distributions if (strm->avail_in != 0 || s->lookahead != 0 ||
815*42e22086SApple OSS Distributions (flush != Z_NO_FLUSH && s->status != FINISH_STATE)) {
816*42e22086SApple OSS Distributions block_state bstate;
817*42e22086SApple OSS Distributions
818*42e22086SApple OSS Distributions bstate = (*(configuration_table[s->level].func))(s, flush);
819*42e22086SApple OSS Distributions
820*42e22086SApple OSS Distributions if (bstate == finish_started || bstate == finish_done) {
821*42e22086SApple OSS Distributions s->status = FINISH_STATE;
822*42e22086SApple OSS Distributions }
823*42e22086SApple OSS Distributions if (bstate == need_more || bstate == finish_started) {
824*42e22086SApple OSS Distributions if (strm->avail_out == 0) {
825*42e22086SApple OSS Distributions s->last_flush = -1; /* avoid BUF_ERROR next call, see above */
826*42e22086SApple OSS Distributions }
827*42e22086SApple OSS Distributions return Z_OK;
828*42e22086SApple OSS Distributions /* If flush != Z_NO_FLUSH && avail_out == 0, the next call
829*42e22086SApple OSS Distributions * of deflate should use the same flush parameter to make sure
830*42e22086SApple OSS Distributions * that the flush is complete. So we don't have to output an
831*42e22086SApple OSS Distributions * empty block here, this will be done at next call. This also
832*42e22086SApple OSS Distributions * ensures that for a very small output buffer, we emit at most
833*42e22086SApple OSS Distributions * one empty block.
834*42e22086SApple OSS Distributions */
835*42e22086SApple OSS Distributions }
836*42e22086SApple OSS Distributions if (bstate == block_done) {
837*42e22086SApple OSS Distributions if (flush == Z_PARTIAL_FLUSH) {
838*42e22086SApple OSS Distributions _tr_align(s);
839*42e22086SApple OSS Distributions } else { /* FULL_FLUSH or SYNC_FLUSH */
840*42e22086SApple OSS Distributions _tr_stored_block(s, (char*)0, 0L, 0);
841*42e22086SApple OSS Distributions /* For a full flush, this empty block will be recognized
842*42e22086SApple OSS Distributions * as a special marker by inflate_sync().
843*42e22086SApple OSS Distributions */
844*42e22086SApple OSS Distributions if (flush == Z_FULL_FLUSH) {
845*42e22086SApple OSS Distributions CLEAR_HASH(s); /* forget history */
846*42e22086SApple OSS Distributions }
847*42e22086SApple OSS Distributions }
848*42e22086SApple OSS Distributions flush_pending(strm);
849*42e22086SApple OSS Distributions if (strm->avail_out == 0) {
850*42e22086SApple OSS Distributions s->last_flush = -1; /* avoid BUF_ERROR at next call, see above */
851*42e22086SApple OSS Distributions return Z_OK;
852*42e22086SApple OSS Distributions }
853*42e22086SApple OSS Distributions }
854*42e22086SApple OSS Distributions }
855*42e22086SApple OSS Distributions Assert(strm->avail_out > 0, "bug2");
856*42e22086SApple OSS Distributions
857*42e22086SApple OSS Distributions if (flush != Z_FINISH) return Z_OK;
858*42e22086SApple OSS Distributions if (s->wrap <= 0) return Z_STREAM_END;
859*42e22086SApple OSS Distributions
860*42e22086SApple OSS Distributions /* Write the trailer */
861*42e22086SApple OSS Distributions #ifdef GZIP
862*42e22086SApple OSS Distributions if (s->wrap == 2) {
863*42e22086SApple OSS Distributions put_byte(s, (Byte)(strm->adler & 0xff));
864*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->adler >> 8) & 0xff));
865*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->adler >> 16) & 0xff));
866*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->adler >> 24) & 0xff));
867*42e22086SApple OSS Distributions put_byte(s, (Byte)(strm->total_in & 0xff));
868*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->total_in >> 8) & 0xff));
869*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->total_in >> 16) & 0xff));
870*42e22086SApple OSS Distributions put_byte(s, (Byte)((strm->total_in >> 24) & 0xff));
871*42e22086SApple OSS Distributions }
872*42e22086SApple OSS Distributions else
873*42e22086SApple OSS Distributions #endif
874*42e22086SApple OSS Distributions {
875*42e22086SApple OSS Distributions putShortMSB(s, (uInt)(strm->adler >> 16));
876*42e22086SApple OSS Distributions putShortMSB(s, (uInt)(strm->adler & 0xffff));
877*42e22086SApple OSS Distributions }
878*42e22086SApple OSS Distributions flush_pending(strm);
879*42e22086SApple OSS Distributions /* If avail_out is zero, the application will call deflate again
880*42e22086SApple OSS Distributions * to flush the rest.
881*42e22086SApple OSS Distributions */
882*42e22086SApple OSS Distributions if (s->wrap > 0) s->wrap = -s->wrap; /* write the trailer only once! */
883*42e22086SApple OSS Distributions return s->pending != 0 ? Z_OK : Z_STREAM_END;
884*42e22086SApple OSS Distributions }
885*42e22086SApple OSS Distributions
886*42e22086SApple OSS Distributions /* ========================================================================= */
887*42e22086SApple OSS Distributions int ZEXPORT
deflateEnd(z_streamp strm)888*42e22086SApple OSS Distributions deflateEnd(z_streamp strm)
889*42e22086SApple OSS Distributions {
890*42e22086SApple OSS Distributions int status;
891*42e22086SApple OSS Distributions
892*42e22086SApple OSS Distributions if (strm == Z_NULL || strm->state == Z_NULL) return Z_STREAM_ERROR;
893*42e22086SApple OSS Distributions
894*42e22086SApple OSS Distributions status = strm->state->status;
895*42e22086SApple OSS Distributions if (status != INIT_STATE &&
896*42e22086SApple OSS Distributions status != EXTRA_STATE &&
897*42e22086SApple OSS Distributions status != NAME_STATE &&
898*42e22086SApple OSS Distributions status != COMMENT_STATE &&
899*42e22086SApple OSS Distributions status != HCRC_STATE &&
900*42e22086SApple OSS Distributions status != BUSY_STATE &&
901*42e22086SApple OSS Distributions status != FINISH_STATE) {
902*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
903*42e22086SApple OSS Distributions }
904*42e22086SApple OSS Distributions
905*42e22086SApple OSS Distributions /* Deallocate in reverse order of allocations: */
906*42e22086SApple OSS Distributions TRY_FREE(strm, strm->state->pending_buf);
907*42e22086SApple OSS Distributions TRY_FREE(strm, strm->state->head);
908*42e22086SApple OSS Distributions TRY_FREE(strm, strm->state->prev);
909*42e22086SApple OSS Distributions TRY_FREE(strm, strm->state->window);
910*42e22086SApple OSS Distributions
911*42e22086SApple OSS Distributions ZFREE(strm, strm->state);
912*42e22086SApple OSS Distributions strm->state = Z_NULL;
913*42e22086SApple OSS Distributions
914*42e22086SApple OSS Distributions return status == BUSY_STATE ? Z_DATA_ERROR : Z_OK;
915*42e22086SApple OSS Distributions }
916*42e22086SApple OSS Distributions
917*42e22086SApple OSS Distributions /* =========================================================================
918*42e22086SApple OSS Distributions * Copy the source state to the destination state.
919*42e22086SApple OSS Distributions * To simplify the source, this is not supported for 16-bit MSDOS (which
920*42e22086SApple OSS Distributions * doesn't have enough memory anyway to duplicate compression states).
921*42e22086SApple OSS Distributions */
922*42e22086SApple OSS Distributions int ZEXPORT
deflateCopy(z_streamp dest,z_streamp source)923*42e22086SApple OSS Distributions deflateCopy(z_streamp dest, z_streamp source)
924*42e22086SApple OSS Distributions {
925*42e22086SApple OSS Distributions #ifdef MAXSEG_64K
926*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
927*42e22086SApple OSS Distributions #else
928*42e22086SApple OSS Distributions deflate_state *ds;
929*42e22086SApple OSS Distributions deflate_state *ss;
930*42e22086SApple OSS Distributions ushf *overlay;
931*42e22086SApple OSS Distributions
932*42e22086SApple OSS Distributions
933*42e22086SApple OSS Distributions if (source == Z_NULL || dest == Z_NULL || source->state == Z_NULL) {
934*42e22086SApple OSS Distributions return Z_STREAM_ERROR;
935*42e22086SApple OSS Distributions }
936*42e22086SApple OSS Distributions
937*42e22086SApple OSS Distributions ss = source->state;
938*42e22086SApple OSS Distributions
939*42e22086SApple OSS Distributions zmemcpy(dest, source, sizeof(z_stream));
940*42e22086SApple OSS Distributions
941*42e22086SApple OSS Distributions ds = (deflate_state *) ZALLOC(dest, 1, sizeof(deflate_state));
942*42e22086SApple OSS Distributions if (ds == Z_NULL) return Z_MEM_ERROR;
943*42e22086SApple OSS Distributions dest->state = (struct internal_state FAR *) ds;
944*42e22086SApple OSS Distributions zmemcpy(ds, ss, sizeof(deflate_state));
945*42e22086SApple OSS Distributions ds->strm = dest;
946*42e22086SApple OSS Distributions
947*42e22086SApple OSS Distributions ds->window = (Bytef *) ZALLOC(dest, ds->w_size, 2*sizeof(Byte));
948*42e22086SApple OSS Distributions ds->prev = (Posf *) ZALLOC(dest, ds->w_size, sizeof(Pos));
949*42e22086SApple OSS Distributions ds->head = (Posf *) ZALLOC(dest, ds->hash_size, sizeof(Pos));
950*42e22086SApple OSS Distributions overlay = (ushf *) ZALLOC(dest, ds->lit_bufsize, sizeof(ush)+2);
951*42e22086SApple OSS Distributions ds->pending_buf = (uchf *) overlay;
952*42e22086SApple OSS Distributions
953*42e22086SApple OSS Distributions if (ds->window == Z_NULL || ds->prev == Z_NULL || ds->head == Z_NULL ||
954*42e22086SApple OSS Distributions ds->pending_buf == Z_NULL) {
955*42e22086SApple OSS Distributions deflateEnd (dest);
956*42e22086SApple OSS Distributions return Z_MEM_ERROR;
957*42e22086SApple OSS Distributions }
958*42e22086SApple OSS Distributions /* following zmemcpy do not work for 16-bit MSDOS */
959*42e22086SApple OSS Distributions zmemcpy(ds->window, ss->window, ds->w_size * 2 * sizeof(Byte));
960*42e22086SApple OSS Distributions zmemcpy(ds->prev, ss->prev, ds->w_size * sizeof(Pos));
961*42e22086SApple OSS Distributions zmemcpy(ds->head, ss->head, ds->hash_size * sizeof(Pos));
962*42e22086SApple OSS Distributions zmemcpy(ds->pending_buf, ss->pending_buf, (uInt)ds->pending_buf_size);
963*42e22086SApple OSS Distributions
964*42e22086SApple OSS Distributions ds->pending_out = ds->pending_buf + (ss->pending_out - ss->pending_buf);
965*42e22086SApple OSS Distributions ds->d_buf = overlay + ds->lit_bufsize/sizeof(ush);
966*42e22086SApple OSS Distributions ds->l_buf = ds->pending_buf + (1+sizeof(ush))*ds->lit_bufsize;
967*42e22086SApple OSS Distributions
968*42e22086SApple OSS Distributions ds->l_desc.dyn_tree = ds->dyn_ltree;
969*42e22086SApple OSS Distributions ds->d_desc.dyn_tree = ds->dyn_dtree;
970*42e22086SApple OSS Distributions ds->bl_desc.dyn_tree = ds->bl_tree;
971*42e22086SApple OSS Distributions
972*42e22086SApple OSS Distributions return Z_OK;
973*42e22086SApple OSS Distributions #endif /* MAXSEG_64K */
974*42e22086SApple OSS Distributions }
975*42e22086SApple OSS Distributions
976*42e22086SApple OSS Distributions /* ===========================================================================
977*42e22086SApple OSS Distributions * Read a new buffer from the current input stream, update the adler32
978*42e22086SApple OSS Distributions * and total number of bytes read. All deflate() input goes through
979*42e22086SApple OSS Distributions * this function so some applications may wish to modify it to avoid
980*42e22086SApple OSS Distributions * allocating a large strm->next_in buffer and copying from it.
981*42e22086SApple OSS Distributions * (See also flush_pending()).
982*42e22086SApple OSS Distributions */
983*42e22086SApple OSS Distributions local int
read_buf(z_streamp strm,Bytef * buf,unsigned size)984*42e22086SApple OSS Distributions read_buf(z_streamp strm, Bytef *buf, unsigned size)
985*42e22086SApple OSS Distributions {
986*42e22086SApple OSS Distributions unsigned len = strm->avail_in;
987*42e22086SApple OSS Distributions
988*42e22086SApple OSS Distributions if (len > size) len = size;
989*42e22086SApple OSS Distributions if (len == 0) return 0;
990*42e22086SApple OSS Distributions
991*42e22086SApple OSS Distributions strm->avail_in -= len;
992*42e22086SApple OSS Distributions
993*42e22086SApple OSS Distributions if (strm->state->wrap == 1) {
994*42e22086SApple OSS Distributions strm->adler = adler32(strm->adler, strm->next_in, len);
995*42e22086SApple OSS Distributions }
996*42e22086SApple OSS Distributions #ifdef GZIP
997*42e22086SApple OSS Distributions else if (strm->state->wrap == 2) {
998*42e22086SApple OSS Distributions strm->adler = z_crc32(strm->adler, strm->next_in, len);
999*42e22086SApple OSS Distributions }
1000*42e22086SApple OSS Distributions #endif
1001*42e22086SApple OSS Distributions zmemcpy(buf, strm->next_in, len);
1002*42e22086SApple OSS Distributions strm->next_in += len;
1003*42e22086SApple OSS Distributions strm->total_in += len;
1004*42e22086SApple OSS Distributions
1005*42e22086SApple OSS Distributions return (int)len;
1006*42e22086SApple OSS Distributions }
1007*42e22086SApple OSS Distributions
1008*42e22086SApple OSS Distributions /* ===========================================================================
1009*42e22086SApple OSS Distributions * Initialize the "longest match" routines for a new zlib stream
1010*42e22086SApple OSS Distributions */
1011*42e22086SApple OSS Distributions local void
lm_init(deflate_state * s)1012*42e22086SApple OSS Distributions lm_init(deflate_state *s)
1013*42e22086SApple OSS Distributions {
1014*42e22086SApple OSS Distributions s->window_size = (ulg)2L*s->w_size;
1015*42e22086SApple OSS Distributions
1016*42e22086SApple OSS Distributions CLEAR_HASH(s);
1017*42e22086SApple OSS Distributions
1018*42e22086SApple OSS Distributions /* Set the default configuration parameters:
1019*42e22086SApple OSS Distributions */
1020*42e22086SApple OSS Distributions s->max_lazy_match = configuration_table[s->level].max_lazy;
1021*42e22086SApple OSS Distributions s->good_match = configuration_table[s->level].good_length;
1022*42e22086SApple OSS Distributions s->nice_match = configuration_table[s->level].nice_length;
1023*42e22086SApple OSS Distributions s->max_chain_length = configuration_table[s->level].max_chain;
1024*42e22086SApple OSS Distributions
1025*42e22086SApple OSS Distributions s->strstart = 0;
1026*42e22086SApple OSS Distributions s->block_start = 0L;
1027*42e22086SApple OSS Distributions s->lookahead = 0;
1028*42e22086SApple OSS Distributions s->match_length = s->prev_length = MIN_MATCH-1;
1029*42e22086SApple OSS Distributions s->match_available = 0;
1030*42e22086SApple OSS Distributions s->ins_h = 0;
1031*42e22086SApple OSS Distributions #ifndef FASTEST
1032*42e22086SApple OSS Distributions #ifdef ASMV
1033*42e22086SApple OSS Distributions match_init(); /* initialize the asm code */
1034*42e22086SApple OSS Distributions #endif
1035*42e22086SApple OSS Distributions #endif
1036*42e22086SApple OSS Distributions }
1037*42e22086SApple OSS Distributions
1038*42e22086SApple OSS Distributions #ifndef FASTEST
1039*42e22086SApple OSS Distributions /* ===========================================================================
1040*42e22086SApple OSS Distributions * Set match_start to the longest match starting at the given string and
1041*42e22086SApple OSS Distributions * return its length. Matches shorter or equal to prev_length are discarded,
1042*42e22086SApple OSS Distributions * in which case the result is equal to prev_length and match_start is
1043*42e22086SApple OSS Distributions * garbage.
1044*42e22086SApple OSS Distributions * IN assertions: cur_match is the head of the hash chain for the current
1045*42e22086SApple OSS Distributions * string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1
1046*42e22086SApple OSS Distributions * OUT assertion: the match length is not greater than s->lookahead.
1047*42e22086SApple OSS Distributions */
1048*42e22086SApple OSS Distributions #ifndef ASMV
1049*42e22086SApple OSS Distributions /* For 80x86 and 680x0, an optimized version will be provided in match.asm or
1050*42e22086SApple OSS Distributions * match.S. The code will be functionally equivalent.
1051*42e22086SApple OSS Distributions * @param cur_match current match
1052*42e22086SApple OSS Distributions */
1053*42e22086SApple OSS Distributions local uInt
longest_match(deflate_state * s,IPos cur_match)1054*42e22086SApple OSS Distributions longest_match(deflate_state *s, IPos cur_match)
1055*42e22086SApple OSS Distributions {
1056*42e22086SApple OSS Distributions unsigned chain_length = s->max_chain_length;/* max hash chain length */
1057*42e22086SApple OSS Distributions Bytef *scan = s->window + s->strstart; /* current string */
1058*42e22086SApple OSS Distributions Bytef *match; /* matched string */
1059*42e22086SApple OSS Distributions int len; /* length of current match */
1060*42e22086SApple OSS Distributions int best_len = s->prev_length; /* best match length so far */
1061*42e22086SApple OSS Distributions int nice_match = s->nice_match; /* stop if match long enough */
1062*42e22086SApple OSS Distributions IPos limit = s->strstart > (IPos)MAX_DIST(s) ?
1063*42e22086SApple OSS Distributions s->strstart - (IPos)MAX_DIST(s) : NIL;
1064*42e22086SApple OSS Distributions /* Stop when cur_match becomes <= limit. To simplify the code,
1065*42e22086SApple OSS Distributions * we prevent matches with the string of window index 0.
1066*42e22086SApple OSS Distributions */
1067*42e22086SApple OSS Distributions Posf *prev = s->prev;
1068*42e22086SApple OSS Distributions uInt wmask = s->w_mask;
1069*42e22086SApple OSS Distributions
1070*42e22086SApple OSS Distributions #ifdef UNALIGNED_OK
1071*42e22086SApple OSS Distributions /* Compare two bytes at a time. Note: this is not always beneficial.
1072*42e22086SApple OSS Distributions * Try with and without -DUNALIGNED_OK to check.
1073*42e22086SApple OSS Distributions */
1074*42e22086SApple OSS Distributions Bytef *strend = s->window + s->strstart + MAX_MATCH - 1;
1075*42e22086SApple OSS Distributions ush scan_start = *(ushf*)scan;
1076*42e22086SApple OSS Distributions ush scan_end = *(ushf*)(scan+best_len-1);
1077*42e22086SApple OSS Distributions #else
1078*42e22086SApple OSS Distributions Bytef *strend = s->window + s->strstart + MAX_MATCH;
1079*42e22086SApple OSS Distributions Byte scan_end1 = scan[best_len-1];
1080*42e22086SApple OSS Distributions Byte scan_end = scan[best_len];
1081*42e22086SApple OSS Distributions #endif
1082*42e22086SApple OSS Distributions
1083*42e22086SApple OSS Distributions /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
1084*42e22086SApple OSS Distributions * It is easy to get rid of this optimization if necessary.
1085*42e22086SApple OSS Distributions */
1086*42e22086SApple OSS Distributions Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
1087*42e22086SApple OSS Distributions
1088*42e22086SApple OSS Distributions /* Do not waste too much time if we already have a good match: */
1089*42e22086SApple OSS Distributions if (s->prev_length >= s->good_match) {
1090*42e22086SApple OSS Distributions chain_length >>= 2;
1091*42e22086SApple OSS Distributions }
1092*42e22086SApple OSS Distributions /* Do not look for matches beyond the end of the input. This is necessary
1093*42e22086SApple OSS Distributions * to make deflate deterministic.
1094*42e22086SApple OSS Distributions */
1095*42e22086SApple OSS Distributions if ((uInt)nice_match > s->lookahead) nice_match = s->lookahead;
1096*42e22086SApple OSS Distributions
1097*42e22086SApple OSS Distributions Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
1098*42e22086SApple OSS Distributions
1099*42e22086SApple OSS Distributions do {
1100*42e22086SApple OSS Distributions Assert(cur_match < s->strstart, "no future");
1101*42e22086SApple OSS Distributions match = s->window + cur_match;
1102*42e22086SApple OSS Distributions
1103*42e22086SApple OSS Distributions /* Skip to next match if the match length cannot increase
1104*42e22086SApple OSS Distributions * or if the match length is less than 2. Note that the checks below
1105*42e22086SApple OSS Distributions * for insufficient lookahead only occur occasionally for performance
1106*42e22086SApple OSS Distributions * reasons. Therefore uninitialized memory will be accessed, and
1107*42e22086SApple OSS Distributions * conditional jumps will be made that depend on those values.
1108*42e22086SApple OSS Distributions * However the length of the match is limited to the lookahead, so
1109*42e22086SApple OSS Distributions * the output of deflate is not affected by the uninitialized values.
1110*42e22086SApple OSS Distributions */
1111*42e22086SApple OSS Distributions #if (defined(UNALIGNED_OK) && MAX_MATCH == 258)
1112*42e22086SApple OSS Distributions /* This code assumes sizeof(unsigned short) == 2. Do not use
1113*42e22086SApple OSS Distributions * UNALIGNED_OK if your compiler uses a different size.
1114*42e22086SApple OSS Distributions */
1115*42e22086SApple OSS Distributions if (*(ushf*)(match+best_len-1) != scan_end ||
1116*42e22086SApple OSS Distributions *(ushf*)match != scan_start) continue;
1117*42e22086SApple OSS Distributions
1118*42e22086SApple OSS Distributions /* It is not necessary to compare scan[2] and match[2] since they are
1119*42e22086SApple OSS Distributions * always equal when the other bytes match, given that the hash keys
1120*42e22086SApple OSS Distributions * are equal and that HASH_BITS >= 8. Compare 2 bytes at a time at
1121*42e22086SApple OSS Distributions * strstart+3, +5, ... up to strstart+257. We check for insufficient
1122*42e22086SApple OSS Distributions * lookahead only every 4th comparison; the 128th check will be made
1123*42e22086SApple OSS Distributions * at strstart+257. If MAX_MATCH-2 is not a multiple of 8, it is
1124*42e22086SApple OSS Distributions * necessary to put more guard bytes at the end of the window, or
1125*42e22086SApple OSS Distributions * to check more often for insufficient lookahead.
1126*42e22086SApple OSS Distributions */
1127*42e22086SApple OSS Distributions Assert(scan[2] == match[2], "scan[2]?");
1128*42e22086SApple OSS Distributions scan++, match++;
1129*42e22086SApple OSS Distributions do {
1130*42e22086SApple OSS Distributions } while (*(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
1131*42e22086SApple OSS Distributions *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
1132*42e22086SApple OSS Distributions *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
1133*42e22086SApple OSS Distributions *(ushf*)(scan+=2) == *(ushf*)(match+=2) &&
1134*42e22086SApple OSS Distributions scan < strend);
1135*42e22086SApple OSS Distributions /* The funny "do {}" generates better code on most compilers */
1136*42e22086SApple OSS Distributions
1137*42e22086SApple OSS Distributions /* Here, scan <= window+strstart+257 */
1138*42e22086SApple OSS Distributions Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
1139*42e22086SApple OSS Distributions if (*scan == *match) scan++;
1140*42e22086SApple OSS Distributions
1141*42e22086SApple OSS Distributions len = (MAX_MATCH - 1) - (int)(strend-scan);
1142*42e22086SApple OSS Distributions scan = strend - (MAX_MATCH-1);
1143*42e22086SApple OSS Distributions
1144*42e22086SApple OSS Distributions #else /* UNALIGNED_OK */
1145*42e22086SApple OSS Distributions
1146*42e22086SApple OSS Distributions if (match[best_len] != scan_end ||
1147*42e22086SApple OSS Distributions match[best_len-1] != scan_end1 ||
1148*42e22086SApple OSS Distributions *match != *scan ||
1149*42e22086SApple OSS Distributions *++match != scan[1]) continue;
1150*42e22086SApple OSS Distributions
1151*42e22086SApple OSS Distributions /* The check at best_len-1 can be removed because it will be made
1152*42e22086SApple OSS Distributions * again later. (This heuristic is not always a win.)
1153*42e22086SApple OSS Distributions * It is not necessary to compare scan[2] and match[2] since they
1154*42e22086SApple OSS Distributions * are always equal when the other bytes match, given that
1155*42e22086SApple OSS Distributions * the hash keys are equal and that HASH_BITS >= 8.
1156*42e22086SApple OSS Distributions */
1157*42e22086SApple OSS Distributions scan += 2;
1158*42e22086SApple OSS Distributions match++;
1159*42e22086SApple OSS Distributions Assert(*scan == *match, "match[2]?");
1160*42e22086SApple OSS Distributions
1161*42e22086SApple OSS Distributions /* We check for insufficient lookahead only every 8th comparison;
1162*42e22086SApple OSS Distributions * the 256th check will be made at strstart+258.
1163*42e22086SApple OSS Distributions */
1164*42e22086SApple OSS Distributions do {
1165*42e22086SApple OSS Distributions } while (*++scan == *++match && *++scan == *++match &&
1166*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1167*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1168*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1169*42e22086SApple OSS Distributions scan < strend);
1170*42e22086SApple OSS Distributions
1171*42e22086SApple OSS Distributions Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
1172*42e22086SApple OSS Distributions
1173*42e22086SApple OSS Distributions len = MAX_MATCH - (int)(strend - scan);
1174*42e22086SApple OSS Distributions scan = strend - MAX_MATCH;
1175*42e22086SApple OSS Distributions
1176*42e22086SApple OSS Distributions #endif /* UNALIGNED_OK */
1177*42e22086SApple OSS Distributions
1178*42e22086SApple OSS Distributions if (len > best_len) {
1179*42e22086SApple OSS Distributions s->match_start = cur_match;
1180*42e22086SApple OSS Distributions best_len = len;
1181*42e22086SApple OSS Distributions if (len >= nice_match) break;
1182*42e22086SApple OSS Distributions #ifdef UNALIGNED_OK
1183*42e22086SApple OSS Distributions scan_end = *(ushf*)(scan+best_len-1);
1184*42e22086SApple OSS Distributions #else
1185*42e22086SApple OSS Distributions scan_end1 = scan[best_len-1];
1186*42e22086SApple OSS Distributions scan_end = scan[best_len];
1187*42e22086SApple OSS Distributions #endif
1188*42e22086SApple OSS Distributions }
1189*42e22086SApple OSS Distributions } while ((cur_match = prev[cur_match & wmask]) > limit
1190*42e22086SApple OSS Distributions && --chain_length != 0);
1191*42e22086SApple OSS Distributions
1192*42e22086SApple OSS Distributions if ((uInt)best_len <= s->lookahead) return (uInt)best_len;
1193*42e22086SApple OSS Distributions return s->lookahead;
1194*42e22086SApple OSS Distributions }
1195*42e22086SApple OSS Distributions #endif /* ASMV */
1196*42e22086SApple OSS Distributions #endif /* FASTEST */
1197*42e22086SApple OSS Distributions
1198*42e22086SApple OSS Distributions /* ---------------------------------------------------------------------------
1199*42e22086SApple OSS Distributions * Optimized version for level == 1 or strategy == Z_RLE only
1200*42e22086SApple OSS Distributions * @param cur_match current match
1201*42e22086SApple OSS Distributions */
1202*42e22086SApple OSS Distributions local uInt
longest_match_fast(deflate_state * s,IPos cur_match)1203*42e22086SApple OSS Distributions longest_match_fast(deflate_state *s, IPos cur_match)
1204*42e22086SApple OSS Distributions {
1205*42e22086SApple OSS Distributions Bytef *scan = s->window + s->strstart; /* current string */
1206*42e22086SApple OSS Distributions Bytef *match; /* matched string */
1207*42e22086SApple OSS Distributions int len; /* length of current match */
1208*42e22086SApple OSS Distributions Bytef *strend = s->window + s->strstart + MAX_MATCH;
1209*42e22086SApple OSS Distributions
1210*42e22086SApple OSS Distributions /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
1211*42e22086SApple OSS Distributions * It is easy to get rid of this optimization if necessary.
1212*42e22086SApple OSS Distributions */
1213*42e22086SApple OSS Distributions Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
1214*42e22086SApple OSS Distributions
1215*42e22086SApple OSS Distributions Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
1216*42e22086SApple OSS Distributions
1217*42e22086SApple OSS Distributions Assert(cur_match < s->strstart, "no future");
1218*42e22086SApple OSS Distributions
1219*42e22086SApple OSS Distributions match = s->window + cur_match;
1220*42e22086SApple OSS Distributions
1221*42e22086SApple OSS Distributions /* Return failure if the match length is less than 2:
1222*42e22086SApple OSS Distributions */
1223*42e22086SApple OSS Distributions if (match[0] != scan[0] || match[1] != scan[1]) return MIN_MATCH-1;
1224*42e22086SApple OSS Distributions
1225*42e22086SApple OSS Distributions /* The check at best_len-1 can be removed because it will be made
1226*42e22086SApple OSS Distributions * again later. (This heuristic is not always a win.)
1227*42e22086SApple OSS Distributions * It is not necessary to compare scan[2] and match[2] since they
1228*42e22086SApple OSS Distributions * are always equal when the other bytes match, given that
1229*42e22086SApple OSS Distributions * the hash keys are equal and that HASH_BITS >= 8.
1230*42e22086SApple OSS Distributions */
1231*42e22086SApple OSS Distributions scan += 2;
1232*42e22086SApple OSS Distributions match += 2;
1233*42e22086SApple OSS Distributions Assert(*scan == *match, "match[2]?");
1234*42e22086SApple OSS Distributions
1235*42e22086SApple OSS Distributions /* We check for insufficient lookahead only every 8th comparison;
1236*42e22086SApple OSS Distributions * the 256th check will be made at strstart+258.
1237*42e22086SApple OSS Distributions */
1238*42e22086SApple OSS Distributions do {
1239*42e22086SApple OSS Distributions } while (*++scan == *++match && *++scan == *++match &&
1240*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1241*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1242*42e22086SApple OSS Distributions *++scan == *++match && *++scan == *++match &&
1243*42e22086SApple OSS Distributions scan < strend);
1244*42e22086SApple OSS Distributions
1245*42e22086SApple OSS Distributions Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
1246*42e22086SApple OSS Distributions
1247*42e22086SApple OSS Distributions len = MAX_MATCH - (int)(strend - scan);
1248*42e22086SApple OSS Distributions
1249*42e22086SApple OSS Distributions if (len < MIN_MATCH) return MIN_MATCH - 1;
1250*42e22086SApple OSS Distributions
1251*42e22086SApple OSS Distributions s->match_start = cur_match;
1252*42e22086SApple OSS Distributions return (uInt)len <= s->lookahead ? (uInt)len : s->lookahead;
1253*42e22086SApple OSS Distributions }
1254*42e22086SApple OSS Distributions
1255*42e22086SApple OSS Distributions #ifdef DEBUG
1256*42e22086SApple OSS Distributions /* ===========================================================================
1257*42e22086SApple OSS Distributions * Check that the match at match_start is indeed a match.
1258*42e22086SApple OSS Distributions */
1259*42e22086SApple OSS Distributions local void
check_match(deflate_state * s,IPos start,IPos match,int length)1260*42e22086SApple OSS Distributions check_match(deflate_state *s, IPos start, IPos match, int length)
1261*42e22086SApple OSS Distributions {
1262*42e22086SApple OSS Distributions /* check that the match is indeed a match */
1263*42e22086SApple OSS Distributions if (zmemcmp(s->window + match,
1264*42e22086SApple OSS Distributions s->window + start, length) != EQUAL) {
1265*42e22086SApple OSS Distributions fprintf(stderr, " start %u, match %u, length %d\n",
1266*42e22086SApple OSS Distributions start, match, length);
1267*42e22086SApple OSS Distributions do {
1268*42e22086SApple OSS Distributions fprintf(stderr, "%c%c", s->window[match++], s->window[start++]);
1269*42e22086SApple OSS Distributions } while (--length != 0);
1270*42e22086SApple OSS Distributions z_error("invalid match");
1271*42e22086SApple OSS Distributions }
1272*42e22086SApple OSS Distributions if (z_verbose > 1) {
1273*42e22086SApple OSS Distributions fprintf(stderr,"\\[%d,%d]", start-match, length);
1274*42e22086SApple OSS Distributions do { putc(s->window[start++], stderr); } while (--length != 0);
1275*42e22086SApple OSS Distributions }
1276*42e22086SApple OSS Distributions }
1277*42e22086SApple OSS Distributions #else
1278*42e22086SApple OSS Distributions # define check_match(s, start, match, length)
1279*42e22086SApple OSS Distributions #endif /* DEBUG */
1280*42e22086SApple OSS Distributions
1281*42e22086SApple OSS Distributions /* ===========================================================================
1282*42e22086SApple OSS Distributions * Fill the window when the lookahead becomes insufficient.
1283*42e22086SApple OSS Distributions * Updates strstart and lookahead.
1284*42e22086SApple OSS Distributions *
1285*42e22086SApple OSS Distributions * IN assertion: lookahead < MIN_LOOKAHEAD
1286*42e22086SApple OSS Distributions * OUT assertions: strstart <= window_size-MIN_LOOKAHEAD
1287*42e22086SApple OSS Distributions * At least one byte has been read, or avail_in == 0; reads are
1288*42e22086SApple OSS Distributions * performed for at least two bytes (required for the zip translate_eol
1289*42e22086SApple OSS Distributions * option -- not supported here).
1290*42e22086SApple OSS Distributions */
1291*42e22086SApple OSS Distributions local void
fill_window(deflate_state * s)1292*42e22086SApple OSS Distributions fill_window(deflate_state *s)
1293*42e22086SApple OSS Distributions {
1294*42e22086SApple OSS Distributions unsigned n, m;
1295*42e22086SApple OSS Distributions Posf *p;
1296*42e22086SApple OSS Distributions unsigned more; /* Amount of free space at the end of the window. */
1297*42e22086SApple OSS Distributions uInt wsize = s->w_size;
1298*42e22086SApple OSS Distributions
1299*42e22086SApple OSS Distributions do {
1300*42e22086SApple OSS Distributions more = (unsigned)(s->window_size -(ulg)s->lookahead -(ulg)s->strstart);
1301*42e22086SApple OSS Distributions
1302*42e22086SApple OSS Distributions /* Deal with !@#$% 64K limit: */
1303*42e22086SApple OSS Distributions if (sizeof(int) <= 2) {
1304*42e22086SApple OSS Distributions if (more == 0 && s->strstart == 0 && s->lookahead == 0) {
1305*42e22086SApple OSS Distributions more = wsize;
1306*42e22086SApple OSS Distributions
1307*42e22086SApple OSS Distributions } else if (more == (unsigned)(-1)) {
1308*42e22086SApple OSS Distributions /* Very unlikely, but possible on 16 bit machine if
1309*42e22086SApple OSS Distributions * strstart == 0 && lookahead == 1 (input done a byte at time)
1310*42e22086SApple OSS Distributions */
1311*42e22086SApple OSS Distributions more--;
1312*42e22086SApple OSS Distributions }
1313*42e22086SApple OSS Distributions }
1314*42e22086SApple OSS Distributions
1315*42e22086SApple OSS Distributions /* If the window is almost full and there is insufficient lookahead,
1316*42e22086SApple OSS Distributions * move the upper half to the lower one to make room in the upper half.
1317*42e22086SApple OSS Distributions */
1318*42e22086SApple OSS Distributions if (s->strstart >= wsize+MAX_DIST(s)) {
1319*42e22086SApple OSS Distributions
1320*42e22086SApple OSS Distributions zmemcpy(s->window, s->window+wsize, (unsigned)wsize);
1321*42e22086SApple OSS Distributions s->match_start -= wsize;
1322*42e22086SApple OSS Distributions s->strstart -= wsize; /* we now have strstart >= MAX_DIST */
1323*42e22086SApple OSS Distributions s->block_start -= (long) wsize;
1324*42e22086SApple OSS Distributions
1325*42e22086SApple OSS Distributions /* Slide the hash table (could be avoided with 32 bit values
1326*42e22086SApple OSS Distributions at the expense of memory usage). We slide even when level == 0
1327*42e22086SApple OSS Distributions to keep the hash table consistent if we switch back to level > 0
1328*42e22086SApple OSS Distributions later. (Using level 0 permanently is not an optimal usage of
1329*42e22086SApple OSS Distributions zlib, so we don't care about this pathological case.)
1330*42e22086SApple OSS Distributions */
1331*42e22086SApple OSS Distributions /* %%% avoid this when Z_RLE */
1332*42e22086SApple OSS Distributions n = s->hash_size;
1333*42e22086SApple OSS Distributions p = &s->head[n];
1334*42e22086SApple OSS Distributions do {
1335*42e22086SApple OSS Distributions m = *--p;
1336*42e22086SApple OSS Distributions *p = (Pos)(m >= wsize ? m-wsize : NIL);
1337*42e22086SApple OSS Distributions } while (--n);
1338*42e22086SApple OSS Distributions
1339*42e22086SApple OSS Distributions n = wsize;
1340*42e22086SApple OSS Distributions #ifndef FASTEST
1341*42e22086SApple OSS Distributions p = &s->prev[n];
1342*42e22086SApple OSS Distributions do {
1343*42e22086SApple OSS Distributions m = *--p;
1344*42e22086SApple OSS Distributions *p = (Pos)(m >= wsize ? m-wsize : NIL);
1345*42e22086SApple OSS Distributions /* If n is not on any hash chain, prev[n] is garbage but
1346*42e22086SApple OSS Distributions * its value will never be used.
1347*42e22086SApple OSS Distributions */
1348*42e22086SApple OSS Distributions } while (--n);
1349*42e22086SApple OSS Distributions #endif
1350*42e22086SApple OSS Distributions more += wsize;
1351*42e22086SApple OSS Distributions }
1352*42e22086SApple OSS Distributions if (s->strm->avail_in == 0) return;
1353*42e22086SApple OSS Distributions
1354*42e22086SApple OSS Distributions /* If there was no sliding:
1355*42e22086SApple OSS Distributions * strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 &&
1356*42e22086SApple OSS Distributions * more == window_size - lookahead - strstart
1357*42e22086SApple OSS Distributions * => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1)
1358*42e22086SApple OSS Distributions * => more >= window_size - 2*WSIZE + 2
1359*42e22086SApple OSS Distributions * In the BIG_MEM or MMAP case (not yet supported),
1360*42e22086SApple OSS Distributions * window_size == input_size + MIN_LOOKAHEAD &&
1361*42e22086SApple OSS Distributions * strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD.
1362*42e22086SApple OSS Distributions * Otherwise, window_size == 2*WSIZE so more >= 2.
1363*42e22086SApple OSS Distributions * If there was sliding, more >= WSIZE. So in all cases, more >= 2.
1364*42e22086SApple OSS Distributions */
1365*42e22086SApple OSS Distributions Assert(more >= 2, "more < 2");
1366*42e22086SApple OSS Distributions
1367*42e22086SApple OSS Distributions n = (*s->zinput)(s->strm, s->window + s->strstart + s->lookahead, more);
1368*42e22086SApple OSS Distributions s->lookahead += n;
1369*42e22086SApple OSS Distributions
1370*42e22086SApple OSS Distributions /* Initialize the hash value now that we have some input: */
1371*42e22086SApple OSS Distributions if (s->lookahead >= MIN_MATCH) {
1372*42e22086SApple OSS Distributions s->ins_h = s->window[s->strstart];
1373*42e22086SApple OSS Distributions UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]);
1374*42e22086SApple OSS Distributions #if MIN_MATCH != 3
1375*42e22086SApple OSS Distributions Call UPDATE_HASH() MIN_MATCH-3 more times
1376*42e22086SApple OSS Distributions #endif
1377*42e22086SApple OSS Distributions }
1378*42e22086SApple OSS Distributions /* If the whole input has less than MIN_MATCH bytes, ins_h is garbage,
1379*42e22086SApple OSS Distributions * but this is not important since only literal bytes will be emitted.
1380*42e22086SApple OSS Distributions */
1381*42e22086SApple OSS Distributions
1382*42e22086SApple OSS Distributions } while (s->lookahead < MIN_LOOKAHEAD && s->strm->avail_in != 0);
1383*42e22086SApple OSS Distributions }
1384*42e22086SApple OSS Distributions
1385*42e22086SApple OSS Distributions /* ===========================================================================
1386*42e22086SApple OSS Distributions * Flush the current block, with given end-of-file flag.
1387*42e22086SApple OSS Distributions * IN assertion: strstart is set to the end of the current match.
1388*42e22086SApple OSS Distributions */
1389*42e22086SApple OSS Distributions #define FLUSH_BLOCK_ONLY(s, eof) { \
1390*42e22086SApple OSS Distributions _tr_flush_block(s, (s->block_start >= 0L ? \
1391*42e22086SApple OSS Distributions (charf *)&s->window[(unsigned)s->block_start] : \
1392*42e22086SApple OSS Distributions (charf *)Z_NULL), \
1393*42e22086SApple OSS Distributions (ulg)((long)s->strstart - s->block_start), \
1394*42e22086SApple OSS Distributions (eof)); \
1395*42e22086SApple OSS Distributions s->block_start = s->strstart; \
1396*42e22086SApple OSS Distributions flush_pending(s->strm); \
1397*42e22086SApple OSS Distributions Tracev((stderr,"[FLUSH]")); \
1398*42e22086SApple OSS Distributions }
1399*42e22086SApple OSS Distributions
1400*42e22086SApple OSS Distributions /* Same but force premature exit if necessary. */
1401*42e22086SApple OSS Distributions #define FLUSH_BLOCK(s, eof) { \
1402*42e22086SApple OSS Distributions FLUSH_BLOCK_ONLY(s, eof); \
1403*42e22086SApple OSS Distributions if (s->strm->avail_out == 0) return (eof) ? finish_started : need_more; \
1404*42e22086SApple OSS Distributions }
1405*42e22086SApple OSS Distributions
1406*42e22086SApple OSS Distributions /* ===========================================================================
1407*42e22086SApple OSS Distributions * Copy without compression as much as possible from the input stream, return
1408*42e22086SApple OSS Distributions * the current block state.
1409*42e22086SApple OSS Distributions * This function does not insert new strings in the dictionary since
1410*42e22086SApple OSS Distributions * uncompressible data is probably not useful. This function is used
1411*42e22086SApple OSS Distributions * only for the level=0 compression option.
1412*42e22086SApple OSS Distributions * NOTE: this function should be optimized to avoid extra copying from
1413*42e22086SApple OSS Distributions * window to pending_buf.
1414*42e22086SApple OSS Distributions */
1415*42e22086SApple OSS Distributions local block_state
deflate_stored(deflate_state * s,int flush)1416*42e22086SApple OSS Distributions deflate_stored(deflate_state *s, int flush)
1417*42e22086SApple OSS Distributions {
1418*42e22086SApple OSS Distributions /* Stored blocks are limited to 0xffff bytes, pending_buf is limited
1419*42e22086SApple OSS Distributions * to pending_buf_size, and each stored block has a 5 byte header:
1420*42e22086SApple OSS Distributions */
1421*42e22086SApple OSS Distributions ulg max_block_size = 0xffff;
1422*42e22086SApple OSS Distributions ulg max_start;
1423*42e22086SApple OSS Distributions
1424*42e22086SApple OSS Distributions if (max_block_size > s->pending_buf_size - 5) {
1425*42e22086SApple OSS Distributions max_block_size = s->pending_buf_size - 5;
1426*42e22086SApple OSS Distributions }
1427*42e22086SApple OSS Distributions
1428*42e22086SApple OSS Distributions /* Copy as much as possible from input to output: */
1429*42e22086SApple OSS Distributions for (;;) {
1430*42e22086SApple OSS Distributions /* Fill the window as much as possible: */
1431*42e22086SApple OSS Distributions if (s->lookahead <= 1) {
1432*42e22086SApple OSS Distributions
1433*42e22086SApple OSS Distributions Assert(s->strstart < s->w_size+MAX_DIST(s) ||
1434*42e22086SApple OSS Distributions s->block_start >= (long)s->w_size, "slide too late");
1435*42e22086SApple OSS Distributions
1436*42e22086SApple OSS Distributions fill_window(s);
1437*42e22086SApple OSS Distributions if (s->lookahead == 0 && flush == Z_NO_FLUSH) return need_more;
1438*42e22086SApple OSS Distributions
1439*42e22086SApple OSS Distributions if (s->lookahead == 0) break; /* flush the current block */
1440*42e22086SApple OSS Distributions }
1441*42e22086SApple OSS Distributions Assert(s->block_start >= 0L, "block gone");
1442*42e22086SApple OSS Distributions
1443*42e22086SApple OSS Distributions s->strstart += s->lookahead;
1444*42e22086SApple OSS Distributions s->lookahead = 0;
1445*42e22086SApple OSS Distributions
1446*42e22086SApple OSS Distributions /* Emit a stored block if pending_buf will be full: */
1447*42e22086SApple OSS Distributions max_start = s->block_start + max_block_size;
1448*42e22086SApple OSS Distributions if (s->strstart == 0 || (ulg)s->strstart >= max_start) {
1449*42e22086SApple OSS Distributions /* strstart == 0 is possible when wraparound on 16-bit machine */
1450*42e22086SApple OSS Distributions s->lookahead = (uInt)(s->strstart - max_start);
1451*42e22086SApple OSS Distributions s->strstart = (uInt)max_start;
1452*42e22086SApple OSS Distributions FLUSH_BLOCK(s, 0);
1453*42e22086SApple OSS Distributions }
1454*42e22086SApple OSS Distributions /* Flush if we may have to slide, otherwise block_start may become
1455*42e22086SApple OSS Distributions * negative and the data will be gone:
1456*42e22086SApple OSS Distributions */
1457*42e22086SApple OSS Distributions if (s->strstart - (uInt)s->block_start >= MAX_DIST(s)) {
1458*42e22086SApple OSS Distributions FLUSH_BLOCK(s, 0);
1459*42e22086SApple OSS Distributions }
1460*42e22086SApple OSS Distributions }
1461*42e22086SApple OSS Distributions FLUSH_BLOCK(s, flush == Z_FINISH);
1462*42e22086SApple OSS Distributions return flush == Z_FINISH ? finish_done : block_done;
1463*42e22086SApple OSS Distributions }
1464*42e22086SApple OSS Distributions
1465*42e22086SApple OSS Distributions /* ===========================================================================
1466*42e22086SApple OSS Distributions * Compress as much as possible from the input stream, return the current
1467*42e22086SApple OSS Distributions * block state.
1468*42e22086SApple OSS Distributions * This function does not perform lazy evaluation of matches and inserts
1469*42e22086SApple OSS Distributions * new strings in the dictionary only for unmatched strings or for short
1470*42e22086SApple OSS Distributions * matches. It is used only for the fast compression options.
1471*42e22086SApple OSS Distributions */
1472*42e22086SApple OSS Distributions local block_state
deflate_fast(deflate_state * s,int flush)1473*42e22086SApple OSS Distributions deflate_fast(deflate_state *s, int flush)
1474*42e22086SApple OSS Distributions {
1475*42e22086SApple OSS Distributions IPos hash_head = NIL; /* head of the hash chain */
1476*42e22086SApple OSS Distributions int bflush; /* set if current block must be flushed */
1477*42e22086SApple OSS Distributions
1478*42e22086SApple OSS Distributions for (;;) {
1479*42e22086SApple OSS Distributions /* Make sure that we always have enough lookahead, except
1480*42e22086SApple OSS Distributions * at the end of the input file. We need MAX_MATCH bytes
1481*42e22086SApple OSS Distributions * for the next match, plus MIN_MATCH bytes to insert the
1482*42e22086SApple OSS Distributions * string following the next match.
1483*42e22086SApple OSS Distributions */
1484*42e22086SApple OSS Distributions if (s->lookahead < MIN_LOOKAHEAD) {
1485*42e22086SApple OSS Distributions fill_window(s);
1486*42e22086SApple OSS Distributions if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
1487*42e22086SApple OSS Distributions return need_more;
1488*42e22086SApple OSS Distributions }
1489*42e22086SApple OSS Distributions if (s->lookahead == 0) break; /* flush the current block */
1490*42e22086SApple OSS Distributions }
1491*42e22086SApple OSS Distributions
1492*42e22086SApple OSS Distributions /* Insert the string window[strstart .. strstart+2] in the
1493*42e22086SApple OSS Distributions * dictionary, and set hash_head to the head of the hash chain:
1494*42e22086SApple OSS Distributions */
1495*42e22086SApple OSS Distributions if (s->lookahead >= MIN_MATCH) {
1496*42e22086SApple OSS Distributions INSERT_STRING(s, s->strstart, hash_head);
1497*42e22086SApple OSS Distributions }
1498*42e22086SApple OSS Distributions
1499*42e22086SApple OSS Distributions /* Find the longest match, discarding those <= prev_length.
1500*42e22086SApple OSS Distributions * At this point we have always match_length < MIN_MATCH
1501*42e22086SApple OSS Distributions */
1502*42e22086SApple OSS Distributions if (hash_head != NIL && s->strstart - hash_head <= MAX_DIST(s)) {
1503*42e22086SApple OSS Distributions /* To simplify the code, we prevent matches with the string
1504*42e22086SApple OSS Distributions * of window index 0 (in particular we have to avoid a match
1505*42e22086SApple OSS Distributions * of the string with itself at the start of the input file).
1506*42e22086SApple OSS Distributions */
1507*42e22086SApple OSS Distributions #ifdef FASTEST
1508*42e22086SApple OSS Distributions if ((s->strategy != Z_HUFFMAN_ONLY && s->strategy != Z_RLE) ||
1509*42e22086SApple OSS Distributions (s->strategy == Z_RLE && s->strstart - hash_head == 1)) {
1510*42e22086SApple OSS Distributions s->match_length = longest_match_fast (s, hash_head);
1511*42e22086SApple OSS Distributions }
1512*42e22086SApple OSS Distributions #else
1513*42e22086SApple OSS Distributions if (s->strategy != Z_HUFFMAN_ONLY && s->strategy != Z_RLE) {
1514*42e22086SApple OSS Distributions s->match_length = longest_match (s, hash_head);
1515*42e22086SApple OSS Distributions } else if (s->strategy == Z_RLE && s->strstart - hash_head == 1) {
1516*42e22086SApple OSS Distributions s->match_length = longest_match_fast (s, hash_head);
1517*42e22086SApple OSS Distributions }
1518*42e22086SApple OSS Distributions #endif
1519*42e22086SApple OSS Distributions /* longest_match() or longest_match_fast() sets match_start */
1520*42e22086SApple OSS Distributions }
1521*42e22086SApple OSS Distributions if (s->match_length >= MIN_MATCH) {
1522*42e22086SApple OSS Distributions check_match(s, s->strstart, s->match_start, s->match_length);
1523*42e22086SApple OSS Distributions
1524*42e22086SApple OSS Distributions _tr_tally_dist(s, s->strstart - s->match_start,
1525*42e22086SApple OSS Distributions s->match_length - MIN_MATCH, bflush);
1526*42e22086SApple OSS Distributions
1527*42e22086SApple OSS Distributions s->lookahead -= s->match_length;
1528*42e22086SApple OSS Distributions
1529*42e22086SApple OSS Distributions /* Insert new strings in the hash table only if the match length
1530*42e22086SApple OSS Distributions * is not too large. This saves time but degrades compression.
1531*42e22086SApple OSS Distributions */
1532*42e22086SApple OSS Distributions #ifndef FASTEST
1533*42e22086SApple OSS Distributions if (s->match_length <= s->max_insert_length &&
1534*42e22086SApple OSS Distributions s->lookahead >= MIN_MATCH) {
1535*42e22086SApple OSS Distributions s->match_length--; /* string at strstart already in table */
1536*42e22086SApple OSS Distributions do {
1537*42e22086SApple OSS Distributions s->strstart++;
1538*42e22086SApple OSS Distributions INSERT_STRING(s, s->strstart, hash_head);
1539*42e22086SApple OSS Distributions /* strstart never exceeds WSIZE-MAX_MATCH, so there are
1540*42e22086SApple OSS Distributions * always MIN_MATCH bytes ahead.
1541*42e22086SApple OSS Distributions */
1542*42e22086SApple OSS Distributions } while (--s->match_length != 0);
1543*42e22086SApple OSS Distributions s->strstart++;
1544*42e22086SApple OSS Distributions } else
1545*42e22086SApple OSS Distributions #endif
1546*42e22086SApple OSS Distributions {
1547*42e22086SApple OSS Distributions s->strstart += s->match_length;
1548*42e22086SApple OSS Distributions s->match_length = 0;
1549*42e22086SApple OSS Distributions s->ins_h = s->window[s->strstart];
1550*42e22086SApple OSS Distributions UPDATE_HASH(s, s->ins_h, s->window[s->strstart+1]);
1551*42e22086SApple OSS Distributions #if MIN_MATCH != 3
1552*42e22086SApple OSS Distributions Call UPDATE_HASH() MIN_MATCH-3 more times
1553*42e22086SApple OSS Distributions #endif
1554*42e22086SApple OSS Distributions /* If lookahead < MIN_MATCH, ins_h is garbage, but it does not
1555*42e22086SApple OSS Distributions * matter since it will be recomputed at next deflate call.
1556*42e22086SApple OSS Distributions */
1557*42e22086SApple OSS Distributions }
1558*42e22086SApple OSS Distributions } else {
1559*42e22086SApple OSS Distributions /* No match, output a literal byte */
1560*42e22086SApple OSS Distributions Tracevv((stderr,"%c", s->window[s->strstart]));
1561*42e22086SApple OSS Distributions _tr_tally_lit (s, s->window[s->strstart], bflush);
1562*42e22086SApple OSS Distributions s->lookahead--;
1563*42e22086SApple OSS Distributions s->strstart++;
1564*42e22086SApple OSS Distributions }
1565*42e22086SApple OSS Distributions if (bflush) FLUSH_BLOCK(s, 0);
1566*42e22086SApple OSS Distributions }
1567*42e22086SApple OSS Distributions FLUSH_BLOCK(s, flush == Z_FINISH);
1568*42e22086SApple OSS Distributions return flush == Z_FINISH ? finish_done : block_done;
1569*42e22086SApple OSS Distributions }
1570*42e22086SApple OSS Distributions
1571*42e22086SApple OSS Distributions #ifndef FASTEST
1572*42e22086SApple OSS Distributions /* ===========================================================================
1573*42e22086SApple OSS Distributions * Same as above, but achieves better compression. We use a lazy
1574*42e22086SApple OSS Distributions * evaluation for matches: a match is finally adopted only if there is
1575*42e22086SApple OSS Distributions * no better match at the next window position.
1576*42e22086SApple OSS Distributions */
1577*42e22086SApple OSS Distributions local block_state
deflate_slow(deflate_state * s,int flush)1578*42e22086SApple OSS Distributions deflate_slow(deflate_state *s, int flush)
1579*42e22086SApple OSS Distributions {
1580*42e22086SApple OSS Distributions IPos hash_head = NIL; /* head of hash chain */
1581*42e22086SApple OSS Distributions int bflush; /* set if current block must be flushed */
1582*42e22086SApple OSS Distributions
1583*42e22086SApple OSS Distributions /* Process the input block. */
1584*42e22086SApple OSS Distributions for (;;) {
1585*42e22086SApple OSS Distributions /* Make sure that we always have enough lookahead, except
1586*42e22086SApple OSS Distributions * at the end of the input file. We need MAX_MATCH bytes
1587*42e22086SApple OSS Distributions * for the next match, plus MIN_MATCH bytes to insert the
1588*42e22086SApple OSS Distributions * string following the next match.
1589*42e22086SApple OSS Distributions */
1590*42e22086SApple OSS Distributions if (s->lookahead < MIN_LOOKAHEAD) {
1591*42e22086SApple OSS Distributions fill_window(s);
1592*42e22086SApple OSS Distributions if (s->lookahead < MIN_LOOKAHEAD && flush == Z_NO_FLUSH) {
1593*42e22086SApple OSS Distributions return need_more;
1594*42e22086SApple OSS Distributions }
1595*42e22086SApple OSS Distributions if (s->lookahead == 0) break; /* flush the current block */
1596*42e22086SApple OSS Distributions }
1597*42e22086SApple OSS Distributions
1598*42e22086SApple OSS Distributions /* Insert the string window[strstart .. strstart+2] in the
1599*42e22086SApple OSS Distributions * dictionary, and set hash_head to the head of the hash chain:
1600*42e22086SApple OSS Distributions */
1601*42e22086SApple OSS Distributions if (s->lookahead >= MIN_MATCH) {
1602*42e22086SApple OSS Distributions INSERT_STRING(s, s->strstart, hash_head);
1603*42e22086SApple OSS Distributions }
1604*42e22086SApple OSS Distributions
1605*42e22086SApple OSS Distributions /* Find the longest match, discarding those <= prev_length.
1606*42e22086SApple OSS Distributions */
1607*42e22086SApple OSS Distributions s->prev_length = s->match_length;
1608*42e22086SApple OSS Distributions s->prev_match = s->match_start;
1609*42e22086SApple OSS Distributions s->match_length = MIN_MATCH-1;
1610*42e22086SApple OSS Distributions
1611*42e22086SApple OSS Distributions if (hash_head != NIL && s->prev_length < s->max_lazy_match &&
1612*42e22086SApple OSS Distributions s->strstart - hash_head <= MAX_DIST(s)) {
1613*42e22086SApple OSS Distributions /* To simplify the code, we prevent matches with the string
1614*42e22086SApple OSS Distributions * of window index 0 (in particular we have to avoid a match
1615*42e22086SApple OSS Distributions * of the string with itself at the start of the input file).
1616*42e22086SApple OSS Distributions */
1617*42e22086SApple OSS Distributions if (s->strategy != Z_HUFFMAN_ONLY && s->strategy != Z_RLE) {
1618*42e22086SApple OSS Distributions s->match_length = longest_match (s, hash_head);
1619*42e22086SApple OSS Distributions } else if (s->strategy == Z_RLE && s->strstart - hash_head == 1) {
1620*42e22086SApple OSS Distributions s->match_length = longest_match_fast (s, hash_head);
1621*42e22086SApple OSS Distributions }
1622*42e22086SApple OSS Distributions /* longest_match() or longest_match_fast() sets match_start */
1623*42e22086SApple OSS Distributions
1624*42e22086SApple OSS Distributions if (s->match_length <= 5 && (s->strategy == Z_FILTERED
1625*42e22086SApple OSS Distributions #if TOO_FAR <= 32767
1626*42e22086SApple OSS Distributions || (s->match_length == MIN_MATCH &&
1627*42e22086SApple OSS Distributions s->strstart - s->match_start > TOO_FAR)
1628*42e22086SApple OSS Distributions #endif
1629*42e22086SApple OSS Distributions )) {
1630*42e22086SApple OSS Distributions
1631*42e22086SApple OSS Distributions /* If prev_match is also MIN_MATCH, match_start is garbage
1632*42e22086SApple OSS Distributions * but we will ignore the current match anyway.
1633*42e22086SApple OSS Distributions */
1634*42e22086SApple OSS Distributions s->match_length = MIN_MATCH-1;
1635*42e22086SApple OSS Distributions }
1636*42e22086SApple OSS Distributions }
1637*42e22086SApple OSS Distributions /* If there was a match at the previous step and the current
1638*42e22086SApple OSS Distributions * match is not better, output the previous match:
1639*42e22086SApple OSS Distributions */
1640*42e22086SApple OSS Distributions if (s->prev_length >= MIN_MATCH && s->match_length <= s->prev_length) {
1641*42e22086SApple OSS Distributions uInt max_insert = s->strstart + s->lookahead - MIN_MATCH;
1642*42e22086SApple OSS Distributions /* Do not insert strings in hash table beyond this. */
1643*42e22086SApple OSS Distributions
1644*42e22086SApple OSS Distributions check_match(s, s->strstart-1, s->prev_match, s->prev_length);
1645*42e22086SApple OSS Distributions
1646*42e22086SApple OSS Distributions _tr_tally_dist(s, s->strstart -1 - s->prev_match,
1647*42e22086SApple OSS Distributions s->prev_length - MIN_MATCH, bflush);
1648*42e22086SApple OSS Distributions
1649*42e22086SApple OSS Distributions /* Insert in hash table all strings up to the end of the match.
1650*42e22086SApple OSS Distributions * strstart-1 and strstart are already inserted. If there is not
1651*42e22086SApple OSS Distributions * enough lookahead, the last two strings are not inserted in
1652*42e22086SApple OSS Distributions * the hash table.
1653*42e22086SApple OSS Distributions */
1654*42e22086SApple OSS Distributions s->lookahead -= s->prev_length-1;
1655*42e22086SApple OSS Distributions s->prev_length -= 2;
1656*42e22086SApple OSS Distributions do {
1657*42e22086SApple OSS Distributions if (++s->strstart <= max_insert) {
1658*42e22086SApple OSS Distributions INSERT_STRING(s, s->strstart, hash_head);
1659*42e22086SApple OSS Distributions }
1660*42e22086SApple OSS Distributions } while (--s->prev_length != 0);
1661*42e22086SApple OSS Distributions s->match_available = 0;
1662*42e22086SApple OSS Distributions s->match_length = MIN_MATCH-1;
1663*42e22086SApple OSS Distributions s->strstart++;
1664*42e22086SApple OSS Distributions
1665*42e22086SApple OSS Distributions if (bflush) FLUSH_BLOCK(s, 0);
1666*42e22086SApple OSS Distributions
1667*42e22086SApple OSS Distributions } else if (s->match_available) {
1668*42e22086SApple OSS Distributions /* If there was no match at the previous position, output a
1669*42e22086SApple OSS Distributions * single literal. If there was a match but the current match
1670*42e22086SApple OSS Distributions * is longer, truncate the previous match to a single literal.
1671*42e22086SApple OSS Distributions */
1672*42e22086SApple OSS Distributions Tracevv((stderr,"%c", s->window[s->strstart-1]));
1673*42e22086SApple OSS Distributions _tr_tally_lit(s, s->window[s->strstart-1], bflush);
1674*42e22086SApple OSS Distributions if (bflush) {
1675*42e22086SApple OSS Distributions FLUSH_BLOCK_ONLY(s, 0);
1676*42e22086SApple OSS Distributions }
1677*42e22086SApple OSS Distributions s->strstart++;
1678*42e22086SApple OSS Distributions s->lookahead--;
1679*42e22086SApple OSS Distributions if (s->strm->avail_out == 0) return need_more;
1680*42e22086SApple OSS Distributions } else {
1681*42e22086SApple OSS Distributions /* There is no previous match to compare with, wait for
1682*42e22086SApple OSS Distributions * the next step to decide.
1683*42e22086SApple OSS Distributions */
1684*42e22086SApple OSS Distributions s->match_available = 1;
1685*42e22086SApple OSS Distributions s->strstart++;
1686*42e22086SApple OSS Distributions s->lookahead--;
1687*42e22086SApple OSS Distributions }
1688*42e22086SApple OSS Distributions }
1689*42e22086SApple OSS Distributions Assert (flush != Z_NO_FLUSH, "no flush?");
1690*42e22086SApple OSS Distributions if (s->match_available) {
1691*42e22086SApple OSS Distributions Tracevv((stderr,"%c", s->window[s->strstart-1]));
1692*42e22086SApple OSS Distributions _tr_tally_lit(s, s->window[s->strstart-1], bflush);
1693*42e22086SApple OSS Distributions s->match_available = 0;
1694*42e22086SApple OSS Distributions }
1695*42e22086SApple OSS Distributions FLUSH_BLOCK(s, flush == Z_FINISH);
1696*42e22086SApple OSS Distributions return flush == Z_FINISH ? finish_done : block_done;
1697*42e22086SApple OSS Distributions }
1698*42e22086SApple OSS Distributions #endif /* FASTEST */
1699*42e22086SApple OSS Distributions
1700*42e22086SApple OSS Distributions #if 0
1701*42e22086SApple OSS Distributions /* ===========================================================================
1702*42e22086SApple OSS Distributions * For Z_RLE, simply look for runs of bytes, generate matches only of distance
1703*42e22086SApple OSS Distributions * one. Do not maintain a hash table. (It will be regenerated if this run of
1704*42e22086SApple OSS Distributions * deflate switches away from Z_RLE.)
1705*42e22086SApple OSS Distributions */
1706*42e22086SApple OSS Distributions local block_state
1707*42e22086SApple OSS Distributions deflate_rle(deflate_state *s, int flush)
1708*42e22086SApple OSS Distributions {
1709*42e22086SApple OSS Distributions int bflush; /* set if current block must be flushed */
1710*42e22086SApple OSS Distributions uInt run; /* length of run */
1711*42e22086SApple OSS Distributions uInt max; /* maximum length of run */
1712*42e22086SApple OSS Distributions uInt prev; /* byte at distance one to match */
1713*42e22086SApple OSS Distributions Bytef *scan; /* scan for end of run */
1714*42e22086SApple OSS Distributions
1715*42e22086SApple OSS Distributions for (;;) {
1716*42e22086SApple OSS Distributions /* Make sure that we always have enough lookahead, except
1717*42e22086SApple OSS Distributions * at the end of the input file. We need MAX_MATCH bytes
1718*42e22086SApple OSS Distributions * for the longest encodable run.
1719*42e22086SApple OSS Distributions */
1720*42e22086SApple OSS Distributions if (s->lookahead < MAX_MATCH) {
1721*42e22086SApple OSS Distributions fill_window(s);
1722*42e22086SApple OSS Distributions if (s->lookahead < MAX_MATCH && flush == Z_NO_FLUSH) {
1723*42e22086SApple OSS Distributions return need_more;
1724*42e22086SApple OSS Distributions }
1725*42e22086SApple OSS Distributions if (s->lookahead == 0) break; /* flush the current block */
1726*42e22086SApple OSS Distributions }
1727*42e22086SApple OSS Distributions
1728*42e22086SApple OSS Distributions /* See how many times the previous byte repeats */
1729*42e22086SApple OSS Distributions run = 0;
1730*42e22086SApple OSS Distributions if (s->strstart > 0) { /* if there is a previous byte, that is */
1731*42e22086SApple OSS Distributions max = s->lookahead < MAX_MATCH ? s->lookahead : MAX_MATCH;
1732*42e22086SApple OSS Distributions scan = s->window + s->strstart - 1;
1733*42e22086SApple OSS Distributions prev = *scan++;
1734*42e22086SApple OSS Distributions do {
1735*42e22086SApple OSS Distributions if (*scan++ != prev)
1736*42e22086SApple OSS Distributions break;
1737*42e22086SApple OSS Distributions } while (++run < max);
1738*42e22086SApple OSS Distributions }
1739*42e22086SApple OSS Distributions
1740*42e22086SApple OSS Distributions /* Emit match if have run of MIN_MATCH or longer, else emit literal */
1741*42e22086SApple OSS Distributions if (run >= MIN_MATCH) {
1742*42e22086SApple OSS Distributions check_match(s, s->strstart, s->strstart - 1, run);
1743*42e22086SApple OSS Distributions _tr_tally_dist(s, 1, run - MIN_MATCH, bflush);
1744*42e22086SApple OSS Distributions s->lookahead -= run;
1745*42e22086SApple OSS Distributions s->strstart += run;
1746*42e22086SApple OSS Distributions } else {
1747*42e22086SApple OSS Distributions /* No match, output a literal byte */
1748*42e22086SApple OSS Distributions Tracevv((stderr,"%c", s->window[s->strstart]));
1749*42e22086SApple OSS Distributions _tr_tally_lit (s, s->window[s->strstart], bflush);
1750*42e22086SApple OSS Distributions s->lookahead--;
1751*42e22086SApple OSS Distributions s->strstart++;
1752*42e22086SApple OSS Distributions }
1753*42e22086SApple OSS Distributions if (bflush) FLUSH_BLOCK(s, 0);
1754*42e22086SApple OSS Distributions }
1755*42e22086SApple OSS Distributions FLUSH_BLOCK(s, flush == Z_FINISH);
1756*42e22086SApple OSS Distributions return flush == Z_FINISH ? finish_done : block_done;
1757*42e22086SApple OSS Distributions }
1758*42e22086SApple OSS Distributions #endif
1759*42e22086SApple OSS Distributions
1760*42e22086SApple OSS Distributions #if XNU_KERNEL_PRIVATE
1761*42e22086SApple OSS Distributions
1762*42e22086SApple OSS Distributions uLong
zlib_deflate_memory_size(int wbits,int memlevel)1763*42e22086SApple OSS Distributions zlib_deflate_memory_size(int wbits, int memlevel)
1764*42e22086SApple OSS Distributions {
1765*42e22086SApple OSS Distributions return (31 + sizeof(deflate_state) + (1 << (wbits + 2)) + (1 << (memlevel + 9)));
1766*42e22086SApple OSS Distributions }
1767*42e22086SApple OSS Distributions
1768*42e22086SApple OSS Distributions #endif /* XNU_KERNEL_PRIVATE */
1769