Coverage Report

Created: 2025-12-14 06:36

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/zlib/inflate.c
Line
Count
Source
1
/* inflate.c -- zlib decompression
2
 * Copyright (C) 1995-2025 Mark Adler
3
 * For conditions of distribution and use, see copyright notice in zlib.h
4
 */
5
6
/*
7
 * Change history:
8
 *
9
 * 1.2.beta0    24 Nov 2002
10
 * - First version -- complete rewrite of inflate to simplify code, avoid
11
 *   creation of window when not needed, minimize use of window when it is
12
 *   needed, make inffast.c even faster, implement gzip decoding, and to
13
 *   improve code readability and style over the previous zlib inflate code
14
 *
15
 * 1.2.beta1    25 Nov 2002
16
 * - Use pointers for available input and output checking in inffast.c
17
 * - Remove input and output counters in inffast.c
18
 * - Change inffast.c entry and loop from avail_in >= 7 to >= 6
19
 * - Remove unnecessary second byte pull from length extra in inffast.c
20
 * - Unroll direct copy to three copies per loop in inffast.c
21
 *
22
 * 1.2.beta2    4 Dec 2002
23
 * - Change external routine names to reduce potential conflicts
24
 * - Correct filename to inffixed.h for fixed tables in inflate.c
25
 * - Make hbuf[] unsigned char to match parameter type in inflate.c
26
 * - Change strm->next_out[-state->offset] to *(strm->next_out - state->offset)
27
 *   to avoid negation problem on Alphas (64 bit) in inflate.c
28
 *
29
 * 1.2.beta3    22 Dec 2002
30
 * - Add comments on state->bits assertion in inffast.c
31
 * - Add comments on op field in inftrees.h
32
 * - Fix bug in reuse of allocated window after inflateReset()
33
 * - Remove bit fields--back to byte structure for speed
34
 * - Remove distance extra == 0 check in inflate_fast()--only helps for lengths
35
 * - Change post-increments to pre-increments in inflate_fast(), PPC biased?
36
 * - Add compile time option, POSTINC, to use post-increments instead (Intel?)
37
 * - Make MATCH copy in inflate() much faster for when inflate_fast() not used
38
 * - Use local copies of stream next and avail values, as well as local bit
39
 *   buffer and bit count in inflate()--for speed when inflate_fast() not used
40
 *
41
 * 1.2.beta4    1 Jan 2003
42
 * - Split ptr - 257 statements in inflate_table() to avoid compiler warnings
43
 * - Move a comment on output buffer sizes from inffast.c to inflate.c
44
 * - Add comments in inffast.c to introduce the inflate_fast() routine
45
 * - Rearrange window copies in inflate_fast() for speed and simplification
46
 * - Unroll last copy for window match in inflate_fast()
47
 * - Use local copies of window variables in inflate_fast() for speed
48
 * - Pull out common wnext == 0 case for speed in inflate_fast()
49
 * - Make op and len in inflate_fast() unsigned for consistency
50
 * - Add FAR to lcode and dcode declarations in inflate_fast()
51
 * - Simplified bad distance check in inflate_fast()
52
 * - Added inflateBackInit(), inflateBack(), and inflateBackEnd() in new
53
 *   source file infback.c to provide a call-back interface to inflate for
54
 *   programs like gzip and unzip -- uses window as output buffer to avoid
55
 *   window copying
56
 *
57
 * 1.2.beta5    1 Jan 2003
58
 * - Improved inflateBack() interface to allow the caller to provide initial
59
 *   input in strm.
60
 * - Fixed stored blocks bug in inflateBack()
61
 *
62
 * 1.2.beta6    4 Jan 2003
63
 * - Added comments in inffast.c on effectiveness of POSTINC
64
 * - Typecasting all around to reduce compiler warnings
65
 * - Changed loops from while (1) or do {} while (1) to for (;;), again to
66
 *   make compilers happy
67
 * - Changed type of window in inflateBackInit() to unsigned char *
68
 *
69
 * 1.2.beta7    27 Jan 2003
70
 * - Changed many types to unsigned or unsigned short to avoid warnings
71
 * - Added inflateCopy() function
72
 *
73
 * 1.2.0        9 Mar 2003
74
 * - Changed inflateBack() interface to provide separate opaque descriptors
75
 *   for the in() and out() functions
76
 * - Changed inflateBack() argument and in_func typedef to swap the length
77
 *   and buffer address return values for the input function
78
 * - Check next_in and next_out for Z_NULL on entry to inflate()
79
 *
80
 * The history for versions after 1.2.0 are in ChangeLog in zlib distribution.
81
 */
82
83
#include "zutil.h"
84
#include "inftrees.h"
85
#include "inflate.h"
86
#include "inffast.h"
87
88
#ifdef MAKEFIXED
89
#  ifndef BUILDFIXED
90
#    define BUILDFIXED
91
#  endif
92
#endif
93
94
231k
local int inflateStateCheck(z_streamp strm) {
95
231k
    struct inflate_state FAR *state;
96
231k
    if (strm == Z_NULL ||
97
231k
        strm->zalloc == (alloc_func)0 || strm->zfree == (free_func)0)
98
0
        return 1;
99
231k
    state = (struct inflate_state FAR *)strm->state;
100
231k
    if (state == Z_NULL || state->strm != strm ||
101
231k
        state->mode < HEAD || state->mode > SYNC)
102
0
        return 1;
103
231k
    return 0;
104
231k
}
105
106
16.3k
int ZEXPORT inflateResetKeep(z_streamp strm) {
107
16.3k
    struct inflate_state FAR *state;
108
109
16.3k
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
110
16.3k
    state = (struct inflate_state FAR *)strm->state;
111
16.3k
    strm->total_in = strm->total_out = state->total = 0;
112
16.3k
    strm->msg = Z_NULL;
113
16.3k
    strm->data_type = 0;
114
16.3k
    if (state->wrap)        /* to support ill-conceived Java test suite */
115
16.3k
        strm->adler = state->wrap & 1;
116
16.3k
    state->mode = HEAD;
117
16.3k
    state->last = 0;
118
16.3k
    state->havedict = 0;
119
16.3k
    state->flags = -1;
120
16.3k
    state->dmax = 32768U;
121
16.3k
    state->head = Z_NULL;
122
16.3k
    state->hold = 0;
123
16.3k
    state->bits = 0;
124
16.3k
    state->lencode = state->distcode = state->next = state->codes;
125
16.3k
    state->sane = 1;
126
16.3k
    state->back = -1;
127
16.3k
    Tracev((stderr, "inflate: reset\n"));
128
16.3k
    return Z_OK;
129
16.3k
}
130
131
16.3k
int ZEXPORT inflateReset(z_streamp strm) {
132
16.3k
    struct inflate_state FAR *state;
133
134
16.3k
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
135
16.3k
    state = (struct inflate_state FAR *)strm->state;
136
16.3k
    state->wsize = 0;
137
16.3k
    state->whave = 0;
138
16.3k
    state->wnext = 0;
139
16.3k
    return inflateResetKeep(strm);
140
16.3k
}
141
142
16.3k
int ZEXPORT inflateReset2(z_streamp strm, int windowBits) {
143
16.3k
    int wrap;
144
16.3k
    struct inflate_state FAR *state;
145
146
    /* get the state */
147
16.3k
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
148
16.3k
    state = (struct inflate_state FAR *)strm->state;
149
150
    /* extract wrap request from windowBits parameter */
151
16.3k
    if (windowBits < 0) {
152
0
        if (windowBits < -15)
153
0
            return Z_STREAM_ERROR;
154
0
        wrap = 0;
155
0
        windowBits = -windowBits;
156
0
    }
157
16.3k
    else {
158
16.3k
        wrap = (windowBits >> 4) + 5;
159
16.3k
#ifdef GUNZIP
160
16.3k
        if (windowBits < 48)
161
16.3k
            windowBits &= 15;
162
16.3k
#endif
163
16.3k
    }
164
165
    /* set number of window bits, free window if different */
166
16.3k
    if (windowBits && (windowBits < 8 || windowBits > 15))
167
0
        return Z_STREAM_ERROR;
168
16.3k
    if (state->window != Z_NULL && state->wbits != (unsigned)windowBits) {
169
0
        ZFREE(strm, state->window);
170
0
        state->window = Z_NULL;
171
0
    }
172
173
    /* update state and reset the rest of it */
174
16.3k
    state->wrap = wrap;
175
16.3k
    state->wbits = (unsigned)windowBits;
176
16.3k
    return inflateReset(strm);
177
16.3k
}
178
179
int ZEXPORT inflateInit2_(z_streamp strm, int windowBits,
180
16.3k
                          const char *version, int stream_size) {
181
16.3k
    int ret;
182
16.3k
    struct inflate_state FAR *state;
183
184
16.3k
    if (version == Z_NULL || version[0] != ZLIB_VERSION[0] ||
185
16.3k
        stream_size != (int)(sizeof(z_stream)))
186
0
        return Z_VERSION_ERROR;
187
16.3k
    if (strm == Z_NULL) return Z_STREAM_ERROR;
188
16.3k
    strm->msg = Z_NULL;                 /* in case we return an error */
189
16.3k
    if (strm->zalloc == (alloc_func)0) {
190
#ifdef Z_SOLO
191
        return Z_STREAM_ERROR;
192
#else
193
16.3k
        strm->zalloc = zcalloc;
194
16.3k
        strm->opaque = (voidpf)0;
195
16.3k
#endif
196
16.3k
    }
197
16.3k
    if (strm->zfree == (free_func)0)
198
#ifdef Z_SOLO
199
        return Z_STREAM_ERROR;
200
#else
201
16.3k
        strm->zfree = zcfree;
202
16.3k
#endif
203
16.3k
    state = (struct inflate_state FAR *)
204
16.3k
            ZALLOC(strm, 1, sizeof(struct inflate_state));
205
16.3k
    if (state == Z_NULL) return Z_MEM_ERROR;
206
16.3k
    Tracev((stderr, "inflate: allocated\n"));
207
16.3k
    strm->state = (struct internal_state FAR *)state;
208
16.3k
    state->strm = strm;
209
16.3k
    state->window = Z_NULL;
210
16.3k
    state->mode = HEAD;     /* to pass state test in inflateReset2() */
211
16.3k
    ret = inflateReset2(strm, windowBits);
212
16.3k
    if (ret != Z_OK) {
213
0
        ZFREE(strm, state);
214
0
        strm->state = Z_NULL;
215
0
    }
216
16.3k
    return ret;
217
16.3k
}
218
219
int ZEXPORT inflateInit_(z_streamp strm, const char *version,
220
16.3k
                         int stream_size) {
221
16.3k
    return inflateInit2_(strm, DEF_WBITS, version, stream_size);
222
16.3k
}
223
224
0
int ZEXPORT inflatePrime(z_streamp strm, int bits, int value) {
225
0
    struct inflate_state FAR *state;
226
227
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
228
0
    if (bits == 0)
229
0
        return Z_OK;
230
0
    state = (struct inflate_state FAR *)strm->state;
231
0
    if (bits < 0) {
232
0
        state->hold = 0;
233
0
        state->bits = 0;
234
0
        return Z_OK;
235
0
    }
236
0
    if (bits > 16 || state->bits + (uInt)bits > 32) return Z_STREAM_ERROR;
237
0
    value &= (1L << bits) - 1;
238
0
    state->hold += (unsigned long)value << state->bits;
239
0
    state->bits += (uInt)bits;
240
0
    return Z_OK;
241
0
}
242
243
/*
244
   Return state with length and distance decoding tables and index sizes set to
245
   fixed code decoding.  Normally this returns fixed tables from inffixed.h.
246
   If BUILDFIXED is defined, then instead this routine builds the tables the
247
   first time it's called, and returns those tables the first time and
248
   thereafter.  This reduces the size of the code by about 2K bytes, in
249
   exchange for a little execution time.  However, BUILDFIXED should not be
250
   used for threaded applications, since the rewriting of the tables and virgin
251
   may not be thread-safe.
252
 */
253
11.9k
local void fixedtables(struct inflate_state FAR *state) {
254
#ifdef BUILDFIXED
255
    static int virgin = 1;
256
    static code *lenfix, *distfix;
257
    static code fixed[544];
258
259
    /* build fixed huffman tables if first call (may not be thread safe) */
260
    if (virgin) {
261
        unsigned sym, bits;
262
        static code *next;
263
264
        /* literal/length table */
265
        sym = 0;
266
        while (sym < 144) state->lens[sym++] = 8;
267
        while (sym < 256) state->lens[sym++] = 9;
268
        while (sym < 280) state->lens[sym++] = 7;
269
        while (sym < 288) state->lens[sym++] = 8;
270
        next = fixed;
271
        lenfix = next;
272
        bits = 9;
273
        inflate_table(LENS, state->lens, 288, &(next), &(bits), state->work);
274
275
        /* distance table */
276
        sym = 0;
277
        while (sym < 32) state->lens[sym++] = 5;
278
        distfix = next;
279
        bits = 5;
280
        inflate_table(DISTS, state->lens, 32, &(next), &(bits), state->work);
281
282
        /* do this just once */
283
        virgin = 0;
284
    }
285
#else /* !BUILDFIXED */
286
11.9k
#   include "inffixed.h"
287
11.9k
#endif /* BUILDFIXED */
288
11.9k
    state->lencode = lenfix;
289
11.9k
    state->lenbits = 9;
290
11.9k
    state->distcode = distfix;
291
11.9k
    state->distbits = 5;
292
11.9k
}
293
294
#ifdef MAKEFIXED
295
#include <stdio.h>
296
297
/*
298
   Write out the inffixed.h that is #include'd above.  Defining MAKEFIXED also
299
   defines BUILDFIXED, so the tables are built on the fly.  makefixed() writes
300
   those tables to stdout, which would be piped to inffixed.h.  A small program
301
   can simply call makefixed to do this:
302
303
    void makefixed(void);
304
305
    int main(void)
306
    {
307
        makefixed();
308
        return 0;
309
    }
310
311
   Then that can be linked with zlib built with MAKEFIXED defined and run:
312
313
    a.out > inffixed.h
314
 */
315
void makefixed(void)
316
{
317
    unsigned low, size;
318
    struct inflate_state state;
319
320
    fixedtables(&state);
321
    puts("    /* inffixed.h -- table for decoding fixed codes");
322
    puts("     * Generated automatically by makefixed().");
323
    puts("     */");
324
    puts("");
325
    puts("    /* WARNING: this file should *not* be used by applications.");
326
    puts("       It is part of the implementation of this library and is");
327
    puts("       subject to change. Applications should only use zlib.h.");
328
    puts("     */");
329
    puts("");
330
    size = 1U << 9;
331
    printf("    static const code lenfix[%u] = {", size);
332
    low = 0;
333
    for (;;) {
334
        if ((low % 7) == 0) printf("\n        ");
335
        printf("{%u,%u,%d}", (low & 127) == 99 ? 64 : state.lencode[low].op,
336
               state.lencode[low].bits, state.lencode[low].val);
337
        if (++low == size) break;
338
        putchar(',');
339
    }
340
    puts("\n    };");
341
    size = 1U << 5;
342
    printf("\n    static const code distfix[%u] = {", size);
343
    low = 0;
344
    for (;;) {
345
        if ((low % 6) == 0) printf("\n        ");
346
        printf("{%u,%u,%d}", state.distcode[low].op, state.distcode[low].bits,
347
               state.distcode[low].val);
348
        if (++low == size) break;
349
        putchar(',');
350
    }
351
    puts("\n    };");
352
}
353
#endif /* MAKEFIXED */
354
355
/*
356
   Update the window with the last wsize (normally 32K) bytes written before
357
   returning.  If window does not exist yet, create it.  This is only called
358
   when a window is already in use, or when output has been written during this
359
   inflate call, but the end of the deflate stream has not been reached yet.
360
   It is also called to create a window for dictionary data when a dictionary
361
   is loaded.
362
363
   Providing output buffers larger than 32K to inflate() should provide a speed
364
   advantage, since only the last 32K of output is copied to the sliding window
365
   upon return from inflate(), and since all distances after the first 32K of
366
   output will fall in the output data, making match copies simpler and faster.
367
   The advantage may be dependent on the size of the processor's data caches.
368
 */
369
133k
local int updatewindow(z_streamp strm, const Bytef *end, unsigned copy) {
370
133k
    struct inflate_state FAR *state;
371
133k
    unsigned dist;
372
373
133k
    state = (struct inflate_state FAR *)strm->state;
374
375
    /* if it hasn't been done already, allocate space for the window */
376
133k
    if (state->window == Z_NULL) {
377
4.04k
        state->window = (unsigned char FAR *)
378
4.04k
                        ZALLOC(strm, 1U << state->wbits,
379
4.04k
                               sizeof(unsigned char));
380
4.04k
        if (state->window == Z_NULL) return 1;
381
4.04k
    }
382
383
    /* if window not in use yet, initialize */
384
133k
    if (state->wsize == 0) {
385
4.04k
        state->wsize = 1U << state->wbits;
386
4.04k
        state->wnext = 0;
387
4.04k
        state->whave = 0;
388
4.04k
    }
389
390
    /* copy state->wsize or less output bytes into the circular window */
391
133k
    if (copy >= state->wsize) {
392
858
        zmemcpy(state->window, end - state->wsize, state->wsize);
393
858
        state->wnext = 0;
394
858
        state->whave = state->wsize;
395
858
    }
396
132k
    else {
397
132k
        dist = state->wsize - state->wnext;
398
132k
        if (dist > copy) dist = copy;
399
132k
        zmemcpy(state->window + state->wnext, end - copy, dist);
400
132k
        copy -= dist;
401
132k
        if (copy) {
402
259
            zmemcpy(state->window, end - copy, copy);
403
259
            state->wnext = copy;
404
259
            state->whave = state->wsize;
405
259
        }
406
132k
        else {
407
132k
            state->wnext += dist;
408
132k
            if (state->wnext == state->wsize) state->wnext = 0;
409
132k
            if (state->whave < state->wsize) state->whave += dist;
410
132k
        }
411
132k
    }
412
133k
    return 0;
413
133k
}
414
415
/* Macros for inflate(): */
416
417
/* check function to use adler32() for zlib or crc32() for gzip */
418
#ifdef GUNZIP
419
#  define UPDATE_CHECK(check, buf, len) \
420
133k
    (state->flags ? crc32(check, buf, len) : adler32(check, buf, len))
421
#else
422
#  define UPDATE_CHECK(check, buf, len) adler32(check, buf, len)
423
#endif
424
425
/* check macros for header crc */
426
#ifdef GUNZIP
427
#  define CRC2(check, word) \
428
0
    do { \
429
0
        hbuf[0] = (unsigned char)(word); \
430
0
        hbuf[1] = (unsigned char)((word) >> 8); \
431
0
        check = crc32(check, hbuf, 2); \
432
0
    } while (0)
433
434
#  define CRC4(check, word) \
435
0
    do { \
436
0
        hbuf[0] = (unsigned char)(word); \
437
0
        hbuf[1] = (unsigned char)((word) >> 8); \
438
0
        hbuf[2] = (unsigned char)((word) >> 16); \
439
0
        hbuf[3] = (unsigned char)((word) >> 24); \
440
0
        check = crc32(check, hbuf, 4); \
441
0
    } while (0)
442
#endif
443
444
/* Load registers with state in inflate() for speed */
445
#define LOAD() \
446
263k
    do { \
447
263k
        put = strm->next_out; \
448
263k
        left = strm->avail_out; \
449
263k
        next = strm->next_in; \
450
263k
        have = strm->avail_in; \
451
263k
        hold = state->hold; \
452
263k
        bits = state->bits; \
453
263k
    } while (0)
454
455
/* Restore state from registers in inflate() */
456
#define RESTORE() \
457
263k
    do { \
458
263k
        strm->next_out = put; \
459
263k
        strm->avail_out = left; \
460
263k
        strm->next_in = next; \
461
263k
        strm->avail_in = have; \
462
263k
        state->hold = hold; \
463
263k
        state->bits = bits; \
464
263k
    } while (0)
465
466
/* Clear the input bit accumulator */
467
#define INITBITS() \
468
26.1k
    do { \
469
26.1k
        hold = 0; \
470
26.1k
        bits = 0; \
471
26.1k
    } while (0)
472
473
/* Get a byte of input into the bit accumulator, or return from inflate()
474
   if there is no input available. */
475
#define PULLBYTE() \
476
1.23M
    do { \
477
1.23M
        if (have == 0) goto inf_leave; \
478
1.23M
        have--; \
479
1.09M
        hold += (unsigned long)(*next++) << bits; \
480
1.09M
        bits += 8; \
481
1.09M
    } while (0)
482
483
/* Assure that there are at least n bits in the bit accumulator.  If there is
484
   not enough available input to do that, then return from inflate(). */
485
#define NEEDBITS(n) \
486
552k
    do { \
487
895k
        while (bits < (unsigned)(n)) \
488
552k
            PULLBYTE(); \
489
552k
    } while (0)
490
491
/* Return the low n bits of the bit accumulator (n < 16) */
492
#define BITS(n) \
493
3.12M
    ((unsigned)hold & ((1U << (n)) - 1))
494
495
/* Remove n bits from the bit accumulator */
496
#define DROPBITS(n) \
497
2.22M
    do { \
498
2.22M
        hold >>= (n); \
499
2.22M
        bits -= (unsigned)(n); \
500
2.22M
    } while (0)
501
502
/* Remove zero to seven bits as needed to go to a byte boundary */
503
#define BYTEBITS() \
504
12.7k
    do { \
505
12.7k
        hold >>= bits & 7; \
506
12.7k
        bits -= bits & 7; \
507
12.7k
    } while (0)
508
509
/*
510
   inflate() uses a state machine to process as much input data and generate as
511
   much output data as possible before returning.  The state machine is
512
   structured roughly as follows:
513
514
    for (;;) switch (state) {
515
    ...
516
    case STATEn:
517
        if (not enough input data or output space to make progress)
518
            return;
519
        ... make progress ...
520
        state = STATEm;
521
        break;
522
    ...
523
    }
524
525
   so when inflate() is called again, the same case is attempted again, and
526
   if the appropriate resources are provided, the machine proceeds to the
527
   next state.  The NEEDBITS() macro is usually the way the state evaluates
528
   whether it can proceed or should return.  NEEDBITS() does the return if
529
   the requested bits are not available.  The typical use of the BITS macros
530
   is:
531
532
        NEEDBITS(n);
533
        ... do something with BITS(n) ...
534
        DROPBITS(n);
535
536
   where NEEDBITS(n) either returns from inflate() if there isn't enough
537
   input left to load n bits into the accumulator, or it continues.  BITS(n)
538
   gives the low n bits in the accumulator.  When done, DROPBITS(n) drops
539
   the low n bits off the accumulator.  INITBITS() clears the accumulator
540
   and sets the number of available bits to zero.  BYTEBITS() discards just
541
   enough bits to put the accumulator on a byte boundary.  After BYTEBITS()
542
   and a NEEDBITS(8), then BITS(8) would return the next byte in the stream.
543
544
   NEEDBITS(n) uses PULLBYTE() to get an available byte of input, or to return
545
   if there is no input available.  The decoding of variable length codes uses
546
   PULLBYTE() directly in order to pull just enough bytes to decode the next
547
   code, and no more.
548
549
   Some states loop until they get enough input, making sure that enough
550
   state information is maintained to continue the loop where it left off
551
   if NEEDBITS() returns in the loop.  For example, want, need, and keep
552
   would all have to actually be part of the saved state in case NEEDBITS()
553
   returns:
554
555
    case STATEw:
556
        while (want < need) {
557
            NEEDBITS(n);
558
            keep[want++] = BITS(n);
559
            DROPBITS(n);
560
        }
561
        state = STATEx;
562
    case STATEx:
563
564
   As shown above, if the next state is also the next case, then the break
565
   is omitted.
566
567
   A state may also return if there is not enough output space available to
568
   complete that state.  Those states are copying stored data, writing a
569
   literal byte, and copying a matching string.
570
571
   When returning, a "goto inf_leave" is used to update the total counters,
572
   update the check value, and determine whether any progress has been made
573
   during that inflate() call in order to return the proper return code.
574
   Progress is defined as a change in either strm->avail_in or strm->avail_out.
575
   When there is a window, goto inf_leave will update the window with the last
576
   output written.  If a goto inf_leave occurs in the middle of decompression
577
   and there is no window currently, goto inf_leave will create one and copy
578
   output to the window for the next call of inflate().
579
580
   In this implementation, the flush parameter of inflate() only affects the
581
   return code (per zlib.h).  inflate() always writes as much as possible to
582
   strm->next_out, given the space available and the provided input--the effect
583
   documented in zlib.h of Z_SYNC_FLUSH.  Furthermore, inflate() always defers
584
   the allocation of and copying into a sliding window until necessary, which
585
   provides the effect documented in zlib.h for Z_FINISH when the entire input
586
   stream available.  So the only thing the flush parameter actually does is:
587
   when flush is set to Z_FINISH, inflate() cannot return Z_OK.  Instead it
588
   will return Z_BUF_ERROR if it has not reached the end of the stream.
589
 */
590
591
165k
int ZEXPORT inflate(z_streamp strm, int flush) {
592
165k
    struct inflate_state FAR *state;
593
165k
    z_const unsigned char FAR *next;    /* next input */
594
165k
    unsigned char FAR *put;     /* next output */
595
165k
    unsigned have, left;        /* available input and output */
596
165k
    unsigned long hold;         /* bit buffer */
597
165k
    unsigned bits;              /* bits in bit buffer */
598
165k
    unsigned in, out;           /* save starting available input and output */
599
165k
    unsigned copy;              /* number of stored or match bytes to copy */
600
165k
    unsigned char FAR *from;    /* where to copy match bytes from */
601
165k
    code here;                  /* current decoding table entry */
602
165k
    code last;                  /* parent table entry */
603
165k
    unsigned len;               /* length to copy for repeats, bits to drop */
604
165k
    int ret;                    /* return code */
605
165k
#ifdef GUNZIP
606
165k
    unsigned char hbuf[4];      /* buffer for gzip header crc calculation */
607
165k
#endif
608
165k
    static const unsigned short order[19] = /* permutation of code lengths */
609
165k
        {16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15};
610
611
165k
    if (inflateStateCheck(strm) || strm->next_out == Z_NULL ||
612
165k
        (strm->next_in == Z_NULL && strm->avail_in != 0))
613
0
        return Z_STREAM_ERROR;
614
615
165k
    state = (struct inflate_state FAR *)strm->state;
616
165k
    if (state->mode == TYPE) state->mode = TYPEDO;      /* skip check */
617
165k
    LOAD();
618
165k
    in = have;
619
165k
    out = left;
620
165k
    ret = Z_OK;
621
165k
    for (;;)
622
952k
        switch (state->mode) {
623
16.4k
        case HEAD:
624
16.4k
            if (state->wrap == 0) {
625
0
                state->mode = TYPEDO;
626
0
                break;
627
0
            }
628
16.4k
            NEEDBITS(16);
629
16.2k
#ifdef GUNZIP
630
16.2k
            if ((state->wrap & 2) && hold == 0x8b1f) {  /* gzip header */
631
0
                if (state->wbits == 0)
632
0
                    state->wbits = 15;
633
0
                state->check = crc32(0L, Z_NULL, 0);
634
0
                CRC2(state->check, hold);
635
0
                INITBITS();
636
0
                state->mode = FLAGS;
637
0
                break;
638
0
            }
639
16.2k
            if (state->head != Z_NULL)
640
0
                state->head->done = -1;
641
16.2k
            if (!(state->wrap & 1) ||   /* check if zlib header allowed */
642
#else
643
            if (
644
#endif
645
16.2k
                ((BITS(8) << 8) + (hold >> 8)) % 31) {
646
943
                strm->msg = (z_const char *)"incorrect header check";
647
943
                state->mode = BAD;
648
943
                break;
649
943
            }
650
15.3k
            if (BITS(4) != Z_DEFLATED) {
651
69
                strm->msg = (z_const char *)"unknown compression method";
652
69
                state->mode = BAD;
653
69
                break;
654
69
            }
655
15.2k
            DROPBITS(4);
656
15.2k
            len = BITS(4) + 8;
657
15.2k
            if (state->wbits == 0)
658
0
                state->wbits = len;
659
15.2k
            if (len > 15 || len > state->wbits) {
660
34
                strm->msg = (z_const char *)"invalid window size";
661
34
                state->mode = BAD;
662
34
                break;
663
34
            }
664
15.2k
            state->dmax = 1U << len;
665
15.2k
            state->flags = 0;               /* indicate zlib header */
666
15.2k
            Tracev((stderr, "inflate:   zlib header ok\n"));
667
15.2k
            strm->adler = state->check = adler32(0L, Z_NULL, 0);
668
15.2k
            state->mode = hold & 0x200 ? DICTID : TYPE;
669
15.2k
            INITBITS();
670
15.2k
            break;
671
0
#ifdef GUNZIP
672
0
        case FLAGS:
673
0
            NEEDBITS(16);
674
0
            state->flags = (int)(hold);
675
0
            if ((state->flags & 0xff) != Z_DEFLATED) {
676
0
                strm->msg = (z_const char *)"unknown compression method";
677
0
                state->mode = BAD;
678
0
                break;
679
0
            }
680
0
            if (state->flags & 0xe000) {
681
0
                strm->msg = (z_const char *)"unknown header flags set";
682
0
                state->mode = BAD;
683
0
                break;
684
0
            }
685
0
            if (state->head != Z_NULL)
686
0
                state->head->text = (int)((hold >> 8) & 1);
687
0
            if ((state->flags & 0x0200) && (state->wrap & 4))
688
0
                CRC2(state->check, hold);
689
0
            INITBITS();
690
0
            state->mode = TIME;
691
                /* fallthrough */
692
0
        case TIME:
693
0
            NEEDBITS(32);
694
0
            if (state->head != Z_NULL)
695
0
                state->head->time = hold;
696
0
            if ((state->flags & 0x0200) && (state->wrap & 4))
697
0
                CRC4(state->check, hold);
698
0
            INITBITS();
699
0
            state->mode = OS;
700
                /* fallthrough */
701
0
        case OS:
702
0
            NEEDBITS(16);
703
0
            if (state->head != Z_NULL) {
704
0
                state->head->xflags = (int)(hold & 0xff);
705
0
                state->head->os = (int)(hold >> 8);
706
0
            }
707
0
            if ((state->flags & 0x0200) && (state->wrap & 4))
708
0
                CRC2(state->check, hold);
709
0
            INITBITS();
710
0
            state->mode = EXLEN;
711
                /* fallthrough */
712
0
        case EXLEN:
713
0
            if (state->flags & 0x0400) {
714
0
                NEEDBITS(16);
715
0
                state->length = (unsigned)(hold);
716
0
                if (state->head != Z_NULL)
717
0
                    state->head->extra_len = (unsigned)hold;
718
0
                if ((state->flags & 0x0200) && (state->wrap & 4))
719
0
                    CRC2(state->check, hold);
720
0
                INITBITS();
721
0
            }
722
0
            else if (state->head != Z_NULL)
723
0
                state->head->extra = Z_NULL;
724
0
            state->mode = EXTRA;
725
                /* fallthrough */
726
0
        case EXTRA:
727
0
            if (state->flags & 0x0400) {
728
0
                copy = state->length;
729
0
                if (copy > have) copy = have;
730
0
                if (copy) {
731
0
                    if (state->head != Z_NULL &&
732
0
                        state->head->extra != Z_NULL &&
733
0
                        (len = state->head->extra_len - state->length) <
734
0
                            state->head->extra_max) {
735
0
                        zmemcpy(state->head->extra + len, next,
736
0
                                len + copy > state->head->extra_max ?
737
0
                                state->head->extra_max - len : copy);
738
0
                    }
739
0
                    if ((state->flags & 0x0200) && (state->wrap & 4))
740
0
                        state->check = crc32(state->check, next, copy);
741
0
                    have -= copy;
742
0
                    next += copy;
743
0
                    state->length -= copy;
744
0
                }
745
0
                if (state->length) goto inf_leave;
746
0
            }
747
0
            state->length = 0;
748
0
            state->mode = NAME;
749
                /* fallthrough */
750
0
        case NAME:
751
0
            if (state->flags & 0x0800) {
752
0
                if (have == 0) goto inf_leave;
753
0
                copy = 0;
754
0
                do {
755
0
                    len = (unsigned)(next[copy++]);
756
0
                    if (state->head != Z_NULL &&
757
0
                            state->head->name != Z_NULL &&
758
0
                            state->length < state->head->name_max)
759
0
                        state->head->name[state->length++] = (Bytef)len;
760
0
                } while (len && copy < have);
761
0
                if ((state->flags & 0x0200) && (state->wrap & 4))
762
0
                    state->check = crc32(state->check, next, copy);
763
0
                have -= copy;
764
0
                next += copy;
765
0
                if (len) goto inf_leave;
766
0
            }
767
0
            else if (state->head != Z_NULL)
768
0
                state->head->name = Z_NULL;
769
0
            state->length = 0;
770
0
            state->mode = COMMENT;
771
                /* fallthrough */
772
0
        case COMMENT:
773
0
            if (state->flags & 0x1000) {
774
0
                if (have == 0) goto inf_leave;
775
0
                copy = 0;
776
0
                do {
777
0
                    len = (unsigned)(next[copy++]);
778
0
                    if (state->head != Z_NULL &&
779
0
                            state->head->comment != Z_NULL &&
780
0
                            state->length < state->head->comm_max)
781
0
                        state->head->comment[state->length++] = (Bytef)len;
782
0
                } while (len && copy < have);
783
0
                if ((state->flags & 0x0200) && (state->wrap & 4))
784
0
                    state->check = crc32(state->check, next, copy);
785
0
                have -= copy;
786
0
                next += copy;
787
0
                if (len) goto inf_leave;
788
0
            }
789
0
            else if (state->head != Z_NULL)
790
0
                state->head->comment = Z_NULL;
791
0
            state->mode = HCRC;
792
                /* fallthrough */
793
0
        case HCRC:
794
0
            if (state->flags & 0x0200) {
795
0
                NEEDBITS(16);
796
0
                if ((state->wrap & 4) && hold != (state->check & 0xffff)) {
797
0
                    strm->msg = (z_const char *)"header crc mismatch";
798
0
                    state->mode = BAD;
799
0
                    break;
800
0
                }
801
0
                INITBITS();
802
0
            }
803
0
            if (state->head != Z_NULL) {
804
0
                state->head->hcrc = (int)((state->flags >> 9) & 1);
805
0
                state->head->done = 1;
806
0
            }
807
0
            strm->adler = state->check = crc32(0L, Z_NULL, 0);
808
0
            state->mode = TYPE;
809
0
            break;
810
0
#endif
811
69
        case DICTID:
812
69
            NEEDBITS(32);
813
54
            strm->adler = state->check = ZSWAP32(hold);
814
54
            INITBITS();
815
54
            state->mode = DICT;
816
                /* fallthrough */
817
106
        case DICT:
818
106
            if (state->havedict == 0) {
819
106
                RESTORE();
820
106
                return Z_NEED_DICT;
821
106
            }
822
0
            strm->adler = state->check = adler32(0L, Z_NULL, 0);
823
0
            state->mode = TYPE;
824
                /* fallthrough */
825
36.7k
        case TYPE:
826
36.7k
            if (flush == Z_BLOCK || flush == Z_TREES) goto inf_leave;
827
                /* fallthrough */
828
36.9k
        case TYPEDO:
829
36.9k
            if (state->last) {
830
9.59k
                BYTEBITS();
831
9.59k
                state->mode = CHECK;
832
9.59k
                break;
833
9.59k
            }
834
27.3k
            NEEDBITS(3);
835
27.1k
            state->last = BITS(1);
836
27.1k
            DROPBITS(1);
837
27.1k
            switch (BITS(2)) {
838
3.03k
            case 0:                             /* stored block */
839
3.03k
                Tracev((stderr, "inflate:     stored block%s\n",
840
3.03k
                        state->last ? " (last)" : ""));
841
3.03k
                state->mode = STORED;
842
3.03k
                break;
843
11.9k
            case 1:                             /* fixed block */
844
11.9k
                fixedtables(state);
845
11.9k
                Tracev((stderr, "inflate:     fixed codes block%s\n",
846
11.9k
                        state->last ? " (last)" : ""));
847
11.9k
                state->mode = LEN_;             /* decode codes */
848
11.9k
                if (flush == Z_TREES) {
849
0
                    DROPBITS(2);
850
0
                    goto inf_leave;
851
0
                }
852
11.9k
                break;
853
12.1k
            case 2:                             /* dynamic block */
854
12.1k
                Tracev((stderr, "inflate:     dynamic codes block%s\n",
855
12.1k
                        state->last ? " (last)" : ""));
856
12.1k
                state->mode = TABLE;
857
12.1k
                break;
858
48
            case 3:
859
48
                strm->msg = (z_const char *)"invalid block type";
860
48
                state->mode = BAD;
861
27.1k
            }
862
27.1k
            DROPBITS(2);
863
27.1k
            break;
864
3.11k
        case STORED:
865
3.11k
            BYTEBITS();                         /* go to byte boundary */
866
3.11k
            NEEDBITS(32);
867
2.96k
            if ((hold & 0xffff) != ((hold >> 16) ^ 0xffff)) {
868
137
                strm->msg = (z_const char *)"invalid stored block lengths";
869
137
                state->mode = BAD;
870
137
                break;
871
137
            }
872
2.82k
            state->length = (unsigned)hold & 0xffff;
873
2.82k
            Tracev((stderr, "inflate:       stored length %u\n",
874
2.82k
                    state->length));
875
2.82k
            INITBITS();
876
2.82k
            state->mode = COPY_;
877
2.82k
            if (flush == Z_TREES) goto inf_leave;
878
                /* fallthrough */
879
2.82k
        case COPY_:
880
2.82k
            state->mode = COPY;
881
                /* fallthrough */
882
3.26k
        case COPY:
883
3.26k
            copy = state->length;
884
3.26k
            if (copy) {
885
502
                if (copy > have) copy = have;
886
502
                if (copy > left) copy = left;
887
502
                if (copy == 0) goto inf_leave;
888
345
                zmemcpy(put, next, copy);
889
345
                have -= copy;
890
345
                next += copy;
891
345
                left -= copy;
892
345
                put += copy;
893
345
                state->length -= copy;
894
345
                break;
895
502
            }
896
2.76k
            Tracev((stderr, "inflate:       stored end\n"));
897
2.76k
            state->mode = TYPE;
898
2.76k
            break;
899
12.8k
        case TABLE:
900
12.8k
            NEEDBITS(14);
901
12.0k
            state->nlen = BITS(5) + 257;
902
12.0k
            DROPBITS(5);
903
12.0k
            state->ndist = BITS(5) + 1;
904
12.0k
            DROPBITS(5);
905
12.0k
            state->ncode = BITS(4) + 4;
906
12.0k
            DROPBITS(4);
907
12.0k
#ifndef PKZIP_BUG_WORKAROUND
908
12.0k
            if (state->nlen > 286 || state->ndist > 30) {
909
7
                strm->msg = (z_const char *)
910
7
                    "too many length or distance symbols";
911
7
                state->mode = BAD;
912
7
                break;
913
7
            }
914
12.0k
#endif
915
12.0k
            Tracev((stderr, "inflate:       table sizes ok\n"));
916
12.0k
            state->have = 0;
917
12.0k
            state->mode = LENLENS;
918
                /* fallthrough */
919
12.9k
        case LENLENS:
920
212k
            while (state->have < state->ncode) {
921
200k
                NEEDBITS(3);
922
199k
                state->lens[order[state->have++]] = (unsigned short)BITS(3);
923
199k
                DROPBITS(3);
924
199k
            }
925
40.8k
            while (state->have < 19)
926
28.8k
                state->lens[order[state->have++]] = 0;
927
12.0k
            state->next = state->codes;
928
12.0k
            state->lencode = state->distcode = (const code FAR *)(state->next);
929
12.0k
            state->lenbits = 7;
930
12.0k
            ret = inflate_table(CODES, state->lens, 19, &(state->next),
931
12.0k
                                &(state->lenbits), state->work);
932
12.0k
            if (ret) {
933
254
                strm->msg = (z_const char *)"invalid code lengths set";
934
254
                state->mode = BAD;
935
254
                break;
936
254
            }
937
11.7k
            Tracev((stderr, "inflate:       code lengths ok\n"));
938
11.7k
            state->have = 0;
939
11.7k
            state->mode = CODELENS;
940
                /* fallthrough */
941
18.0k
        case CODELENS:
942
1.12M
            while (state->have < state->nlen + state->ndist) {
943
1.51M
                for (;;) {
944
1.51M
                    here = state->lencode[BITS(state->lenbits)];
945
1.51M
                    if ((unsigned)(here.bits) <= bits) break;
946
410k
                    PULLBYTE();
947
410k
                }
948
1.10M
                if (here.val < 16) {
949
974k
                    DROPBITS(here.bits);
950
974k
                    state->lens[state->have++] = here.val;
951
974k
                }
952
132k
                else {
953
132k
                    if (here.val == 16) {
954
48.0k
                        NEEDBITS(here.bits + 2);
955
47.7k
                        DROPBITS(here.bits);
956
47.7k
                        if (state->have == 0) {
957
8
                            strm->msg = (z_const char *)
958
8
                                "invalid bit length repeat";
959
8
                            state->mode = BAD;
960
8
                            break;
961
8
                        }
962
47.7k
                        len = state->lens[state->have - 1];
963
47.7k
                        copy = 3 + BITS(2);
964
47.7k
                        DROPBITS(2);
965
47.7k
                    }
966
84.8k
                    else if (here.val == 17) {
967
49.3k
                        NEEDBITS(here.bits + 3);
968
49.2k
                        DROPBITS(here.bits);
969
49.2k
                        len = 0;
970
49.2k
                        copy = 3 + BITS(3);
971
49.2k
                        DROPBITS(3);
972
49.2k
                    }
973
35.5k
                    else {
974
35.5k
                        NEEDBITS(here.bits + 7);
975
34.2k
                        DROPBITS(here.bits);
976
34.2k
                        len = 0;
977
34.2k
                        copy = 11 + BITS(7);
978
34.2k
                        DROPBITS(7);
979
34.2k
                    }
980
131k
                    if (state->have + copy > state->nlen + state->ndist) {
981
199
                        strm->msg = (z_const char *)
982
199
                            "invalid bit length repeat";
983
199
                        state->mode = BAD;
984
199
                        break;
985
199
                    }
986
2.62M
                    while (copy--)
987
2.49M
                        state->lens[state->have++] = (unsigned short)len;
988
131k
                }
989
1.10M
            }
990
991
            /* handle error breaks in while */
992
11.6k
            if (state->mode == BAD) break;
993
994
            /* check for end-of-block code (better have one) */
995
11.3k
            if (state->lens[256] == 0) {
996
68
                strm->msg = (z_const char *)
997
68
                    "invalid code -- missing end-of-block";
998
68
                state->mode = BAD;
999
68
                break;
1000
68
            }
1001
1002
            /* build code tables -- note: do not change the lenbits or distbits
1003
               values here (9 and 6) without reading the comments in inftrees.h
1004
               concerning the ENOUGH constants, which depend on those values */
1005
11.3k
            state->next = state->codes;
1006
11.3k
            state->lencode = (const code FAR *)(state->next);
1007
11.3k
            state->lenbits = 9;
1008
11.3k
            ret = inflate_table(LENS, state->lens, state->nlen, &(state->next),
1009
11.3k
                                &(state->lenbits), state->work);
1010
11.3k
            if (ret) {
1011
152
                strm->msg = (z_const char *)"invalid literal/lengths set";
1012
152
                state->mode = BAD;
1013
152
                break;
1014
152
            }
1015
11.1k
            state->distcode = (const code FAR *)(state->next);
1016
11.1k
            state->distbits = 6;
1017
11.1k
            ret = inflate_table(DISTS, state->lens + state->nlen, state->ndist,
1018
11.1k
                            &(state->next), &(state->distbits), state->work);
1019
11.1k
            if (ret) {
1020
92
                strm->msg = (z_const char *)"invalid distances set";
1021
92
                state->mode = BAD;
1022
92
                break;
1023
92
            }
1024
11.0k
            Tracev((stderr, "inflate:       codes ok\n"));
1025
11.0k
            state->mode = LEN_;
1026
11.0k
            if (flush == Z_TREES) goto inf_leave;
1027
                /* fallthrough */
1028
23.0k
        case LEN_:
1029
23.0k
            state->mode = LEN;
1030
                /* fallthrough */
1031
580k
        case LEN:
1032
580k
            if (have >= 6 && left >= 258) {
1033
97.8k
                RESTORE();
1034
97.8k
                inflate_fast(strm, out);
1035
97.8k
                LOAD();
1036
97.8k
                if (state->mode == TYPE)
1037
11.5k
                    state->back = -1;
1038
97.8k
                break;
1039
97.8k
            }
1040
482k
            state->back = 0;
1041
777k
            for (;;) {
1042
777k
                here = state->lencode[BITS(state->lenbits)];
1043
777k
                if ((unsigned)(here.bits) <= bits) break;
1044
394k
                PULLBYTE();
1045
394k
            }
1046
383k
            if (here.op && (here.op & 0xf0) == 0) {
1047
29.2k
                last = here;
1048
31.6k
                for (;;) {
1049
31.6k
                    here = state->lencode[last.val +
1050
31.6k
                            (BITS(last.bits + last.op) >> last.bits)];
1051
31.6k
                    if ((unsigned)(last.bits + here.bits) <= bits) break;
1052
3.13k
                    PULLBYTE();
1053
3.13k
                }
1054
28.5k
                DROPBITS(last.bits);
1055
28.5k
                state->back += last.bits;
1056
28.5k
            }
1057
382k
            DROPBITS(here.bits);
1058
382k
            state->back += here.bits;
1059
382k
            state->length = (unsigned)here.val;
1060
382k
            if ((int)(here.op) == 0) {
1061
236k
                Tracevv((stderr, here.val >= 0x20 && here.val < 0x7f ?
1062
236k
                        "inflate:         literal '%c'\n" :
1063
236k
                        "inflate:         literal 0x%02x\n", here.val));
1064
236k
                state->mode = LIT;
1065
236k
                break;
1066
236k
            }
1067
146k
            if (here.op & 32) {
1068
7.21k
                Tracevv((stderr, "inflate:         end of block\n"));
1069
7.21k
                state->back = -1;
1070
7.21k
                state->mode = TYPE;
1071
7.21k
                break;
1072
7.21k
            }
1073
138k
            if (here.op & 64) {
1074
11
                strm->msg = (z_const char *)"invalid literal/length code";
1075
11
                state->mode = BAD;
1076
11
                break;
1077
11
            }
1078
138k
            state->extra = (unsigned)(here.op) & 15;
1079
138k
            state->mode = LENEXT;
1080
                /* fallthrough */
1081
139k
        case LENEXT:
1082
139k
            if (state->extra) {
1083
36.4k
                NEEDBITS(state->extra);
1084
35.2k
                state->length += BITS(state->extra);
1085
35.2k
                DROPBITS(state->extra);
1086
35.2k
                state->back += state->extra;
1087
35.2k
            }
1088
138k
            Tracevv((stderr, "inflate:         length %u\n", state->length));
1089
138k
            state->was = state->length;
1090
138k
            state->mode = DIST;
1091
                /* fallthrough */
1092
149k
        case DIST:
1093
193k
            for (;;) {
1094
193k
                here = state->distcode[BITS(state->distbits)];
1095
193k
                if ((unsigned)(here.bits) <= bits) break;
1096
55.2k
                PULLBYTE();
1097
55.2k
            }
1098
138k
            if ((here.op & 0xf0) == 0) {
1099
2.95k
                last = here;
1100
4.04k
                for (;;) {
1101
4.04k
                    here = state->distcode[last.val +
1102
4.04k
                            (BITS(last.bits + last.op) >> last.bits)];
1103
4.04k
                    if ((unsigned)(last.bits + here.bits) <= bits) break;
1104
1.33k
                    PULLBYTE();
1105
1.33k
                }
1106
2.71k
                DROPBITS(last.bits);
1107
2.71k
                state->back += last.bits;
1108
2.71k
            }
1109
138k
            DROPBITS(here.bits);
1110
138k
            state->back += here.bits;
1111
138k
            if (here.op & 64) {
1112
20
                strm->msg = (z_const char *)"invalid distance code";
1113
20
                state->mode = BAD;
1114
20
                break;
1115
20
            }
1116
138k
            state->offset = (unsigned)here.val;
1117
138k
            state->extra = (unsigned)(here.op) & 15;
1118
138k
            state->mode = DISTEXT;
1119
                /* fallthrough */
1120
153k
        case DISTEXT:
1121
153k
            if (state->extra) {
1122
112k
                NEEDBITS(state->extra);
1123
96.5k
                state->offset += BITS(state->extra);
1124
96.5k
                DROPBITS(state->extra);
1125
96.5k
                state->back += state->extra;
1126
96.5k
            }
1127
#ifdef INFLATE_STRICT
1128
            if (state->offset > state->dmax) {
1129
                strm->msg = (z_const char *)"invalid distance too far back";
1130
                state->mode = BAD;
1131
                break;
1132
            }
1133
#endif
1134
137k
            Tracevv((stderr, "inflate:         distance %u\n", state->offset));
1135
137k
            state->mode = MATCH;
1136
                /* fallthrough */
1137
151k
        case MATCH:
1138
151k
            if (left == 0) goto inf_leave;
1139
150k
            copy = out - left;
1140
150k
            if (state->offset > copy) {         /* copy from window */
1141
73.9k
                copy = state->offset - copy;
1142
73.9k
                if (copy > state->whave) {
1143
101
                    if (state->sane) {
1144
101
                        strm->msg = (z_const char *)
1145
101
                            "invalid distance too far back";
1146
101
                        state->mode = BAD;
1147
101
                        break;
1148
101
                    }
1149
#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR
1150
                    Trace((stderr, "inflate.c too far\n"));
1151
                    copy -= state->whave;
1152
                    if (copy > state->length) copy = state->length;
1153
                    if (copy > left) copy = left;
1154
                    left -= copy;
1155
                    state->length -= copy;
1156
                    do {
1157
                        *put++ = 0;
1158
                    } while (--copy);
1159
                    if (state->length == 0) state->mode = LEN;
1160
                    break;
1161
#endif
1162
101
                }
1163
73.8k
                if (copy > state->wnext) {
1164
5.75k
                    copy -= state->wnext;
1165
5.75k
                    from = state->window + (state->wsize - copy);
1166
5.75k
                }
1167
68.0k
                else
1168
68.0k
                    from = state->window + (state->wnext - copy);
1169
73.8k
                if (copy > state->length) copy = state->length;
1170
73.8k
            }
1171
77.0k
            else {                              /* copy from output */
1172
77.0k
                from = put - state->offset;
1173
77.0k
                copy = state->length;
1174
77.0k
            }
1175
150k
            if (copy > left) copy = left;
1176
150k
            left -= copy;
1177
150k
            state->length -= copy;
1178
12.3M
            do {
1179
12.3M
                *put++ = *from++;
1180
12.3M
            } while (--copy);
1181
150k
            if (state->length == 0) state->mode = LEN;
1182
150k
            break;
1183
236k
        case LIT:
1184
236k
            if (left == 0) goto inf_leave;
1185
236k
            *put++ = (unsigned char)(state->length);
1186
236k
            left--;
1187
236k
            state->mode = LEN;
1188
236k
            break;
1189
10.1k
        case CHECK:
1190
10.1k
            if (state->wrap) {
1191
10.1k
                NEEDBITS(32);
1192
9.50k
                out -= left;
1193
9.50k
                strm->total_out += out;
1194
9.50k
                state->total += out;
1195
9.50k
                if ((state->wrap & 4) && out)
1196
7.66k
                    strm->adler = state->check =
1197
7.66k
                        UPDATE_CHECK(state->check, put - out, out);
1198
9.50k
                out = left;
1199
9.50k
                if ((state->wrap & 4) && (
1200
9.50k
#ifdef GUNZIP
1201
9.50k
                     state->flags ? hold :
1202
9.50k
#endif
1203
9.50k
                     ZSWAP32(hold)) != state->check) {
1204
1.45k
                    strm->msg = (z_const char *)"incorrect data check";
1205
1.45k
                    state->mode = BAD;
1206
1.45k
                    break;
1207
1.45k
                }
1208
8.05k
                INITBITS();
1209
8.05k
                Tracev((stderr, "inflate:   check matches trailer\n"));
1210
8.05k
            }
1211
8.05k
#ifdef GUNZIP
1212
8.05k
            state->mode = LENGTH;
1213
                /* fallthrough */
1214
8.05k
        case LENGTH:
1215
8.05k
            if (state->wrap && state->flags) {
1216
0
                NEEDBITS(32);
1217
0
                if ((state->wrap & 4) && hold != (state->total & 0xffffffff)) {
1218
0
                    strm->msg = (z_const char *)"incorrect length check";
1219
0
                    state->mode = BAD;
1220
0
                    break;
1221
0
                }
1222
0
                INITBITS();
1223
0
                Tracev((stderr, "inflate:   length matches trailer\n"));
1224
0
            }
1225
8.05k
#endif
1226
8.05k
            state->mode = DONE;
1227
                /* fallthrough */
1228
16.4k
        case DONE:
1229
16.4k
            ret = Z_STREAM_END;
1230
16.4k
            goto inf_leave;
1231
10.1k
        case BAD:
1232
10.1k
            ret = Z_DATA_ERROR;
1233
10.1k
            goto inf_leave;
1234
0
        case MEM:
1235
0
            return Z_MEM_ERROR;
1236
0
        case SYNC:
1237
                /* fallthrough */
1238
0
        default:
1239
0
            return Z_STREAM_ERROR;
1240
952k
        }
1241
1242
    /*
1243
       Return from inflate(), updating the total counts and the check value.
1244
       If there was no progress during the inflate() call, return a buffer
1245
       error.  Call updatewindow() to create and/or update the window state.
1246
       Note: a memory error from inflate() is non-recoverable.
1247
     */
1248
165k
  inf_leave:
1249
165k
    RESTORE();
1250
165k
    if (state->wsize || (out != strm->avail_out && state->mode < BAD &&
1251
4.04k
            (state->mode < CHECK || flush != Z_FINISH)))
1252
133k
        if (updatewindow(strm, strm->next_out, out - strm->avail_out)) {
1253
0
            state->mode = MEM;
1254
0
            return Z_MEM_ERROR;
1255
0
        }
1256
165k
    in -= strm->avail_in;
1257
165k
    out -= strm->avail_out;
1258
165k
    strm->total_in += in;
1259
165k
    strm->total_out += out;
1260
165k
    state->total += out;
1261
165k
    if ((state->wrap & 4) && out)
1262
125k
        strm->adler = state->check =
1263
125k
            UPDATE_CHECK(state->check, strm->next_out - out, out);
1264
165k
    strm->data_type = (int)state->bits + (state->last ? 64 : 0) +
1265
165k
                      (state->mode == TYPE ? 128 : 0) +
1266
165k
                      (state->mode == LEN_ || state->mode == COPY_ ? 256 : 0);
1267
165k
    if (((in == 0 && out == 0) || flush == Z_FINISH) && ret == Z_OK)
1268
3.47k
        ret = Z_BUF_ERROR;
1269
165k
    return ret;
1270
165k
}
1271
1272
16.3k
int ZEXPORT inflateEnd(z_streamp strm) {
1273
16.3k
    struct inflate_state FAR *state;
1274
16.3k
    if (inflateStateCheck(strm))
1275
0
        return Z_STREAM_ERROR;
1276
16.3k
    state = (struct inflate_state FAR *)strm->state;
1277
16.3k
    if (state->window != Z_NULL) ZFREE(strm, state->window);
1278
16.3k
    ZFREE(strm, strm->state);
1279
16.3k
    strm->state = Z_NULL;
1280
16.3k
    Tracev((stderr, "inflate: end\n"));
1281
16.3k
    return Z_OK;
1282
16.3k
}
1283
1284
int ZEXPORT inflateGetDictionary(z_streamp strm, Bytef *dictionary,
1285
0
                                 uInt *dictLength) {
1286
0
    struct inflate_state FAR *state;
1287
1288
    /* check state */
1289
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1290
0
    state = (struct inflate_state FAR *)strm->state;
1291
1292
    /* copy dictionary */
1293
0
    if (state->whave && dictionary != Z_NULL) {
1294
0
        zmemcpy(dictionary, state->window + state->wnext,
1295
0
                state->whave - state->wnext);
1296
0
        zmemcpy(dictionary + state->whave - state->wnext,
1297
0
                state->window, state->wnext);
1298
0
    }
1299
0
    if (dictLength != Z_NULL)
1300
0
        *dictLength = state->whave;
1301
0
    return Z_OK;
1302
0
}
1303
1304
int ZEXPORT inflateSetDictionary(z_streamp strm, const Bytef *dictionary,
1305
0
                                 uInt dictLength) {
1306
0
    struct inflate_state FAR *state;
1307
0
    unsigned long dictid;
1308
0
    int ret;
1309
1310
    /* check state */
1311
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1312
0
    state = (struct inflate_state FAR *)strm->state;
1313
0
    if (state->wrap != 0 && state->mode != DICT)
1314
0
        return Z_STREAM_ERROR;
1315
1316
    /* check for correct dictionary identifier */
1317
0
    if (state->mode == DICT) {
1318
0
        dictid = adler32(0L, Z_NULL, 0);
1319
0
        dictid = adler32(dictid, dictionary, dictLength);
1320
0
        if (dictid != state->check)
1321
0
            return Z_DATA_ERROR;
1322
0
    }
1323
1324
    /* copy dictionary to window using updatewindow(), which will amend the
1325
       existing dictionary if appropriate */
1326
0
    ret = updatewindow(strm, dictionary + dictLength, dictLength);
1327
0
    if (ret) {
1328
0
        state->mode = MEM;
1329
0
        return Z_MEM_ERROR;
1330
0
    }
1331
0
    state->havedict = 1;
1332
0
    Tracev((stderr, "inflate:   dictionary set\n"));
1333
0
    return Z_OK;
1334
0
}
1335
1336
0
int ZEXPORT inflateGetHeader(z_streamp strm, gz_headerp head) {
1337
0
    struct inflate_state FAR *state;
1338
1339
    /* check state */
1340
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1341
0
    state = (struct inflate_state FAR *)strm->state;
1342
0
    if ((state->wrap & 2) == 0) return Z_STREAM_ERROR;
1343
1344
    /* save header structure */
1345
0
    state->head = head;
1346
0
    head->done = 0;
1347
0
    return Z_OK;
1348
0
}
1349
1350
/*
1351
   Search buf[0..len-1] for the pattern: 0, 0, 0xff, 0xff.  Return when found
1352
   or when out of input.  When called, *have is the number of pattern bytes
1353
   found in order so far, in 0..3.  On return *have is updated to the new
1354
   state.  If on return *have equals four, then the pattern was found and the
1355
   return value is how many bytes were read including the last byte of the
1356
   pattern.  If *have is less than four, then the pattern has not been found
1357
   yet and the return value is len.  In the latter case, syncsearch() can be
1358
   called again with more data and the *have state.  *have is initialized to
1359
   zero for the first call.
1360
 */
1361
local unsigned syncsearch(unsigned FAR *have, const unsigned char FAR *buf,
1362
0
                          unsigned len) {
1363
0
    unsigned got;
1364
0
    unsigned next;
1365
1366
0
    got = *have;
1367
0
    next = 0;
1368
0
    while (next < len && got < 4) {
1369
0
        if ((int)(buf[next]) == (got < 2 ? 0 : 0xff))
1370
0
            got++;
1371
0
        else if (buf[next])
1372
0
            got = 0;
1373
0
        else
1374
0
            got = 4 - got;
1375
0
        next++;
1376
0
    }
1377
0
    *have = got;
1378
0
    return next;
1379
0
}
1380
1381
0
int ZEXPORT inflateSync(z_streamp strm) {
1382
0
    unsigned len;               /* number of bytes to look at or looked at */
1383
0
    int flags;                  /* temporary to save header status */
1384
0
    unsigned long in, out;      /* temporary to save total_in and total_out */
1385
0
    unsigned char buf[4];       /* to restore bit buffer to byte string */
1386
0
    struct inflate_state FAR *state;
1387
1388
    /* check parameters */
1389
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1390
0
    state = (struct inflate_state FAR *)strm->state;
1391
0
    if (strm->avail_in == 0 && state->bits < 8) return Z_BUF_ERROR;
1392
1393
    /* if first time, start search in bit buffer */
1394
0
    if (state->mode != SYNC) {
1395
0
        state->mode = SYNC;
1396
0
        state->hold >>= state->bits & 7;
1397
0
        state->bits -= state->bits & 7;
1398
0
        len = 0;
1399
0
        while (state->bits >= 8) {
1400
0
            buf[len++] = (unsigned char)(state->hold);
1401
0
            state->hold >>= 8;
1402
0
            state->bits -= 8;
1403
0
        }
1404
0
        state->have = 0;
1405
0
        syncsearch(&(state->have), buf, len);
1406
0
    }
1407
1408
    /* search available input */
1409
0
    len = syncsearch(&(state->have), strm->next_in, strm->avail_in);
1410
0
    strm->avail_in -= len;
1411
0
    strm->next_in += len;
1412
0
    strm->total_in += len;
1413
1414
    /* return no joy or set up to restart inflate() on a new block */
1415
0
    if (state->have != 4) return Z_DATA_ERROR;
1416
0
    if (state->flags == -1)
1417
0
        state->wrap = 0;    /* if no header yet, treat as raw */
1418
0
    else
1419
0
        state->wrap &= ~4;  /* no point in computing a check value now */
1420
0
    flags = state->flags;
1421
0
    in = strm->total_in;  out = strm->total_out;
1422
0
    inflateReset(strm);
1423
0
    strm->total_in = in;  strm->total_out = out;
1424
0
    state->flags = flags;
1425
0
    state->mode = TYPE;
1426
0
    return Z_OK;
1427
0
}
1428
1429
/*
1430
   Returns true if inflate is currently at the end of a block generated by
1431
   Z_SYNC_FLUSH or Z_FULL_FLUSH. This function is used by one PPP
1432
   implementation to provide an additional safety check. PPP uses
1433
   Z_SYNC_FLUSH but removes the length bytes of the resulting empty stored
1434
   block. When decompressing, PPP checks that at the end of input packet,
1435
   inflate is waiting for these length bytes.
1436
 */
1437
0
int ZEXPORT inflateSyncPoint(z_streamp strm) {
1438
0
    struct inflate_state FAR *state;
1439
1440
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1441
0
    state = (struct inflate_state FAR *)strm->state;
1442
0
    return state->mode == STORED && state->bits == 0;
1443
0
}
1444
1445
0
int ZEXPORT inflateCopy(z_streamp dest, z_streamp source) {
1446
0
    struct inflate_state FAR *state;
1447
0
    struct inflate_state FAR *copy;
1448
0
    unsigned char FAR *window;
1449
0
    unsigned wsize;
1450
1451
    /* check input */
1452
0
    if (inflateStateCheck(source) || dest == Z_NULL)
1453
0
        return Z_STREAM_ERROR;
1454
0
    state = (struct inflate_state FAR *)source->state;
1455
1456
    /* allocate space */
1457
0
    copy = (struct inflate_state FAR *)
1458
0
           ZALLOC(source, 1, sizeof(struct inflate_state));
1459
0
    if (copy == Z_NULL) return Z_MEM_ERROR;
1460
0
    window = Z_NULL;
1461
0
    if (state->window != Z_NULL) {
1462
0
        window = (unsigned char FAR *)
1463
0
                 ZALLOC(source, 1U << state->wbits, sizeof(unsigned char));
1464
0
        if (window == Z_NULL) {
1465
0
            ZFREE(source, copy);
1466
0
            return Z_MEM_ERROR;
1467
0
        }
1468
0
    }
1469
1470
    /* copy state */
1471
0
    zmemcpy((voidpf)dest, (voidpf)source, sizeof(z_stream));
1472
0
    zmemcpy((voidpf)copy, (voidpf)state, sizeof(struct inflate_state));
1473
0
    copy->strm = dest;
1474
0
    if (state->lencode >= state->codes &&
1475
0
        state->lencode <= state->codes + ENOUGH - 1) {
1476
0
        copy->lencode = copy->codes + (state->lencode - state->codes);
1477
0
        copy->distcode = copy->codes + (state->distcode - state->codes);
1478
0
    }
1479
0
    copy->next = copy->codes + (state->next - state->codes);
1480
0
    if (window != Z_NULL) {
1481
0
        wsize = 1U << state->wbits;
1482
0
        zmemcpy(window, state->window, wsize);
1483
0
    }
1484
0
    copy->window = window;
1485
0
    dest->state = (struct internal_state FAR *)copy;
1486
0
    return Z_OK;
1487
0
}
1488
1489
0
int ZEXPORT inflateUndermine(z_streamp strm, int subvert) {
1490
0
    struct inflate_state FAR *state;
1491
1492
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1493
0
    state = (struct inflate_state FAR *)strm->state;
1494
#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR
1495
    state->sane = !subvert;
1496
    return Z_OK;
1497
#else
1498
0
    (void)subvert;
1499
0
    state->sane = 1;
1500
0
    return Z_DATA_ERROR;
1501
0
#endif
1502
0
}
1503
1504
0
int ZEXPORT inflateValidate(z_streamp strm, int check) {
1505
0
    struct inflate_state FAR *state;
1506
1507
0
    if (inflateStateCheck(strm)) return Z_STREAM_ERROR;
1508
0
    state = (struct inflate_state FAR *)strm->state;
1509
0
    if (check && state->wrap)
1510
0
        state->wrap |= 4;
1511
0
    else
1512
0
        state->wrap &= ~4;
1513
0
    return Z_OK;
1514
0
}
1515
1516
0
long ZEXPORT inflateMark(z_streamp strm) {
1517
0
    struct inflate_state FAR *state;
1518
1519
0
    if (inflateStateCheck(strm))
1520
0
        return -(1L << 16);
1521
0
    state = (struct inflate_state FAR *)strm->state;
1522
0
    return (long)(((unsigned long)((long)state->back)) << 16) +
1523
0
        (state->mode == COPY ? state->length :
1524
0
            (state->mode == MATCH ? state->was - state->length : 0));
1525
0
}
1526
1527
0
unsigned long ZEXPORT inflateCodesUsed(z_streamp strm) {
1528
0
    struct inflate_state FAR *state;
1529
0
    if (inflateStateCheck(strm)) return (unsigned long)-1;
1530
0
    state = (struct inflate_state FAR *)strm->state;
1531
0
    return (unsigned long)(state->next - state->codes);
1532
0
}