Coverage Report

Created: 2025-08-03 07:01

/src/zstd/lib/legacy/zstd_v03.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright (c) Yann Collet, Meta Platforms, Inc. and affiliates.
3
 * All rights reserved.
4
 *
5
 * This source code is licensed under both the BSD-style license (found in the
6
 * LICENSE file in the root directory of this source tree) and the GPLv2 (found
7
 * in the COPYING file in the root directory of this source tree).
8
 * You may select, at your option, one of the above-listed licenses.
9
 */
10
11
12
#include <stddef.h>    /* size_t, ptrdiff_t */
13
#include "zstd_v03.h"
14
#include "../common/compiler.h"
15
#include "../common/error_private.h"
16
17
18
/******************************************
19
*  Compiler-specific
20
******************************************/
21
#if defined(_MSC_VER)   /* Visual Studio */
22
#   include <stdlib.h>  /* _byteswap_ulong */
23
#   include <intrin.h>  /* _byteswap_* */
24
#endif
25
26
27
28
/* ******************************************************************
29
   mem.h
30
   low-level memory access routines
31
   Copyright (C) 2013-2015, Yann Collet.
32
33
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
34
35
   Redistribution and use in source and binary forms, with or without
36
   modification, are permitted provided that the following conditions are
37
   met:
38
39
       * Redistributions of source code must retain the above copyright
40
   notice, this list of conditions and the following disclaimer.
41
       * Redistributions in binary form must reproduce the above
42
   copyright notice, this list of conditions and the following disclaimer
43
   in the documentation and/or other materials provided with the
44
   distribution.
45
46
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
47
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
48
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
49
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
50
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
51
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
52
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
53
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
54
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
55
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
56
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
57
58
    You can contact the author at :
59
    - FSE source repository : https://github.com/Cyan4973/FiniteStateEntropy
60
    - Public forum : https://groups.google.com/forum/#!forum/lz4c
61
****************************************************************** */
62
#ifndef MEM_H_MODULE
63
#define MEM_H_MODULE
64
65
#if defined (__cplusplus)
66
extern "C" {
67
#endif
68
69
/******************************************
70
*  Includes
71
******************************************/
72
#include <stddef.h>    /* size_t, ptrdiff_t */
73
#include <string.h>    /* memcpy */
74
75
76
/****************************************************************
77
*  Basic Types
78
*****************************************************************/
79
#if defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */)
80
# if defined(_AIX)
81
#  include <inttypes.h>
82
# else
83
#  include <stdint.h> /* intptr_t */
84
# endif
85
  typedef  uint8_t BYTE;
86
  typedef uint16_t U16;
87
  typedef  int16_t S16;
88
  typedef uint32_t U32;
89
  typedef  int32_t S32;
90
  typedef uint64_t U64;
91
  typedef  int64_t S64;
92
#else
93
  typedef unsigned char       BYTE;
94
  typedef unsigned short      U16;
95
  typedef   signed short      S16;
96
  typedef unsigned int        U32;
97
  typedef   signed int        S32;
98
  typedef unsigned long long  U64;
99
  typedef   signed long long  S64;
100
#endif
101
102
103
/****************************************************************
104
*  Memory I/O
105
*****************************************************************/
106
107
365k
MEM_STATIC unsigned MEM_32bits(void) { return sizeof(void*)==4; }
108
991k
MEM_STATIC unsigned MEM_64bits(void) { return sizeof(void*)==8; }
109
110
MEM_STATIC unsigned MEM_isLittleEndian(void)
111
424k
{
112
424k
    const union { U32 u; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental  */
113
424k
    return one.c[0];
114
424k
}
115
116
MEM_STATIC U16 MEM_read16(const void* memPtr)
117
3.33k
{
118
3.33k
    U16 val; memcpy(&val, memPtr, sizeof(val)); return val;
119
3.33k
}
120
121
MEM_STATIC U32 MEM_read32(const void* memPtr)
122
42.8k
{
123
42.8k
    U32 val; memcpy(&val, memPtr, sizeof(val)); return val;
124
42.8k
}
125
126
MEM_STATIC U64 MEM_read64(const void* memPtr)
127
344k
{
128
344k
    U64 val; memcpy(&val, memPtr, sizeof(val)); return val;
129
344k
}
130
131
MEM_STATIC void MEM_write16(void* memPtr, U16 value)
132
34.1k
{
133
34.1k
    memcpy(memPtr, &value, sizeof(value));
134
34.1k
}
135
136
MEM_STATIC U16 MEM_readLE16(const void* memPtr)
137
3.33k
{
138
3.33k
    if (MEM_isLittleEndian())
139
3.33k
        return MEM_read16(memPtr);
140
0
    else
141
0
    {
142
0
        const BYTE* p = (const BYTE*)memPtr;
143
0
        return (U16)(p[0] + (p[1]<<8));
144
0
    }
145
3.33k
}
146
147
MEM_STATIC void MEM_writeLE16(void* memPtr, U16 val)
148
34.1k
{
149
34.1k
    if (MEM_isLittleEndian())
150
34.1k
    {
151
34.1k
        MEM_write16(memPtr, val);
152
34.1k
    }
153
0
    else
154
0
    {
155
0
        BYTE* p = (BYTE*)memPtr;
156
0
        p[0] = (BYTE)val;
157
0
        p[1] = (BYTE)(val>>8);
158
0
    }
159
34.1k
}
160
161
MEM_STATIC U32 MEM_readLE24(const void* memPtr)
162
117
{
163
117
    return MEM_readLE16(memPtr) + (((const BYTE*)memPtr)[2] << 16);
164
117
}
165
166
MEM_STATIC U32 MEM_readLE32(const void* memPtr)
167
42.8k
{
168
42.8k
    if (MEM_isLittleEndian())
169
42.8k
        return MEM_read32(memPtr);
170
0
    else
171
0
    {
172
0
        const BYTE* p = (const BYTE*)memPtr;
173
0
        return (U32)((U32)p[0] + ((U32)p[1]<<8) + ((U32)p[2]<<16) + ((U32)p[3]<<24));
174
0
    }
175
42.8k
}
176
177
MEM_STATIC U64 MEM_readLE64(const void* memPtr)
178
344k
{
179
344k
    if (MEM_isLittleEndian())
180
344k
        return MEM_read64(memPtr);
181
0
    else
182
0
    {
183
0
        const BYTE* p = (const BYTE*)memPtr;
184
0
        return (U64)((U64)p[0] + ((U64)p[1]<<8) + ((U64)p[2]<<16) + ((U64)p[3]<<24)
185
0
                     + ((U64)p[4]<<32) + ((U64)p[5]<<40) + ((U64)p[6]<<48) + ((U64)p[7]<<56));
186
0
    }
187
344k
}
188
189
190
MEM_STATIC size_t MEM_readLEST(const void* memPtr)
191
344k
{
192
344k
    if (MEM_32bits())
193
0
        return (size_t)MEM_readLE32(memPtr);
194
344k
    else
195
344k
        return (size_t)MEM_readLE64(memPtr);
196
344k
}
197
198
199
#if defined (__cplusplus)
200
}
201
#endif
202
203
#endif /* MEM_H_MODULE */
204
205
206
/* ******************************************************************
207
   bitstream
208
   Part of NewGen Entropy library
209
   header file (to include)
210
   Copyright (C) 2013-2015, Yann Collet.
211
212
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
213
214
   Redistribution and use in source and binary forms, with or without
215
   modification, are permitted provided that the following conditions are
216
   met:
217
218
       * Redistributions of source code must retain the above copyright
219
   notice, this list of conditions and the following disclaimer.
220
       * Redistributions in binary form must reproduce the above
221
   copyright notice, this list of conditions and the following disclaimer
222
   in the documentation and/or other materials provided with the
223
   distribution.
224
225
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
226
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
227
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
228
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
229
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
230
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
231
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
232
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
233
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
234
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
235
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
236
237
   You can contact the author at :
238
   - Source repository : https://github.com/Cyan4973/FiniteStateEntropy
239
   - Public forum : https://groups.google.com/forum/#!forum/lz4c
240
****************************************************************** */
241
#ifndef BITSTREAM_H_MODULE
242
#define BITSTREAM_H_MODULE
243
244
#if defined (__cplusplus)
245
extern "C" {
246
#endif
247
248
249
/*
250
*  This API consists of small unitary functions, which highly benefit from being inlined.
251
*  Since link-time-optimization is not available for all compilers,
252
*  these functions are defined into a .h to be included.
253
*/
254
255
256
/**********************************************
257
*  bitStream decompression API (read backward)
258
**********************************************/
259
typedef struct
260
{
261
    size_t   bitContainer;
262
    unsigned bitsConsumed;
263
    const char* ptr;
264
    const char* start;
265
} BIT_DStream_t;
266
267
typedef enum { BIT_DStream_unfinished = 0,
268
               BIT_DStream_endOfBuffer = 1,
269
               BIT_DStream_completed = 2,
270
               BIT_DStream_overflow = 3 } BIT_DStream_status;  /* result of BIT_reloadDStream() */
271
               /* 1,2,4,8 would be better for bitmap combinations, but slows down performance a bit ... :( */
272
273
MEM_STATIC size_t   BIT_initDStream(BIT_DStream_t* bitD, const void* srcBuffer, size_t srcSize);
274
MEM_STATIC size_t   BIT_readBits(BIT_DStream_t* bitD, unsigned nbBits);
275
MEM_STATIC BIT_DStream_status BIT_reloadDStream(BIT_DStream_t* bitD);
276
MEM_STATIC unsigned BIT_endOfDStream(const BIT_DStream_t* bitD);
277
278
279
280
/******************************************
281
*  unsafe API
282
******************************************/
283
MEM_STATIC size_t BIT_readBitsFast(BIT_DStream_t* bitD, unsigned nbBits);
284
/* faster, but works only if nbBits >= 1 */
285
286
287
288
/****************************************************************
289
*  Helper functions
290
****************************************************************/
291
MEM_STATIC unsigned BIT_highbit32 (U32 val)
292
498k
{
293
#   if defined(_MSC_VER)   /* Visual */
294
    unsigned long r;
295
    return _BitScanReverse(&r, val) ? (unsigned)r : 0;
296
#   elif defined(__GNUC__) && (__GNUC__ >= 3)   /* Use GCC Intrinsic */
297
    return __builtin_clz (val) ^ 31;
298
#   else   /* Software version */
299
    static const unsigned DeBruijnClz[32] = { 0, 9, 1, 10, 13, 21, 2, 29, 11, 14, 16, 18, 22, 25, 3, 30, 8, 12, 20, 28, 15, 17, 24, 7, 19, 27, 23, 6, 26, 5, 4, 31 };
300
    U32 v = val;
301
    unsigned r;
302
    v |= v >> 1;
303
    v |= v >> 2;
304
    v |= v >> 4;
305
    v |= v >> 8;
306
    v |= v >> 16;
307
    r = DeBruijnClz[ (U32) (v * 0x07C4ACDDU) >> 27];
308
    return r;
309
#   endif
310
498k
}
311
312
313
314
/**********************************************************
315
* bitStream decoding
316
**********************************************************/
317
318
/*!BIT_initDStream
319
*  Initialize a BIT_DStream_t.
320
*  @bitD : a pointer to an already allocated BIT_DStream_t structure
321
*  @srcBuffer must point at the beginning of a bitStream
322
*  @srcSize must be the exact size of the bitStream
323
*  @result : size of stream (== srcSize) or an errorCode if a problem is detected
324
*/
325
MEM_STATIC size_t BIT_initDStream(BIT_DStream_t* bitD, const void* srcBuffer, size_t srcSize)
326
3.30k
{
327
3.30k
    if (srcSize < 1) { memset(bitD, 0, sizeof(*bitD)); return ERROR(srcSize_wrong); }
328
329
3.28k
    if (srcSize >=  sizeof(size_t))   /* normal case */
330
857
    {
331
857
        U32 contain32;
332
857
        bitD->start = (const char*)srcBuffer;
333
857
        bitD->ptr   = (const char*)srcBuffer + srcSize - sizeof(size_t);
334
857
        bitD->bitContainer = MEM_readLEST(bitD->ptr);
335
857
        contain32 = ((const BYTE*)srcBuffer)[srcSize-1];
336
857
        if (contain32 == 0) return ERROR(GENERIC);   /* endMark not present */
337
831
        bitD->bitsConsumed = 8 - BIT_highbit32(contain32);
338
831
    }
339
2.42k
    else
340
2.42k
    {
341
2.42k
        U32 contain32;
342
2.42k
        bitD->start = (const char*)srcBuffer;
343
2.42k
        bitD->ptr   = bitD->start;
344
2.42k
        bitD->bitContainer = *(const BYTE*)(bitD->start);
345
2.42k
        switch(srcSize)
346
2.42k
        {
347
33
            case 7: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[6]) << (sizeof(size_t)*8 - 16);
348
                    /* fallthrough */
349
60
            case 6: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[5]) << (sizeof(size_t)*8 - 24);
350
                    /* fallthrough */
351
87
            case 5: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[4]) << (sizeof(size_t)*8 - 32);
352
                    /* fallthrough */
353
162
            case 4: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[3]) << 24;
354
                    /* fallthrough */
355
1.42k
            case 3: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[2]) << 16;
356
                    /* fallthrough */
357
1.87k
            case 2: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[1]) <<  8;
358
                    /* fallthrough */
359
2.42k
            default:;
360
2.42k
        }
361
2.42k
        contain32 = ((const BYTE*)srcBuffer)[srcSize-1];
362
2.42k
        if (contain32 == 0) return ERROR(GENERIC);   /* endMark not present */
363
2.40k
        bitD->bitsConsumed = 8 - BIT_highbit32(contain32);
364
2.40k
        bitD->bitsConsumed += (U32)(sizeof(size_t) - srcSize)*8;
365
2.40k
    }
366
367
3.23k
    return srcSize;
368
3.28k
}
369
MEM_STATIC size_t BIT_lookBits(BIT_DStream_t* bitD, U32 nbBits)
370
60.2k
{
371
60.2k
    const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1;
372
60.2k
    return ((bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> 1) >> ((bitMask-nbBits) & bitMask);
373
60.2k
}
374
375
/*! BIT_lookBitsFast :
376
*   unsafe version; only works if nbBits >= 1 */
377
MEM_STATIC size_t BIT_lookBitsFast(BIT_DStream_t* bitD, U32 nbBits)
378
5.16M
{
379
5.16M
    const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1;
380
5.16M
    return (bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> (((bitMask+1)-nbBits) & bitMask);
381
5.16M
}
382
383
MEM_STATIC void BIT_skipBits(BIT_DStream_t* bitD, U32 nbBits)
384
5.22M
{
385
5.22M
    bitD->bitsConsumed += nbBits;
386
5.22M
}
387
388
MEM_STATIC size_t BIT_readBits(BIT_DStream_t* bitD, U32 nbBits)
389
60.2k
{
390
60.2k
    size_t value = BIT_lookBits(bitD, nbBits);
391
60.2k
    BIT_skipBits(bitD, nbBits);
392
60.2k
    return value;
393
60.2k
}
394
395
/*!BIT_readBitsFast :
396
*  unsafe version; only works if nbBits >= 1 */
397
MEM_STATIC size_t BIT_readBitsFast(BIT_DStream_t* bitD, U32 nbBits)
398
4.40k
{
399
4.40k
    size_t value = BIT_lookBitsFast(bitD, nbBits);
400
4.40k
    BIT_skipBits(bitD, nbBits);
401
4.40k
    return value;
402
4.40k
}
403
404
MEM_STATIC BIT_DStream_status BIT_reloadDStream(BIT_DStream_t* bitD)
405
362k
{
406
362k
    if (bitD->bitsConsumed > (sizeof(bitD->bitContainer)*8))  /* should never happen */
407
114
        return BIT_DStream_overflow;
408
409
362k
    if (bitD->ptr >= bitD->start + sizeof(bitD->bitContainer))
410
339k
    {
411
339k
        bitD->ptr -= bitD->bitsConsumed >> 3;
412
339k
        bitD->bitsConsumed &= 7;
413
339k
        bitD->bitContainer = MEM_readLEST(bitD->ptr);
414
339k
        return BIT_DStream_unfinished;
415
339k
    }
416
23.0k
    if (bitD->ptr == bitD->start)
417
18.9k
    {
418
18.9k
        if (bitD->bitsConsumed < sizeof(bitD->bitContainer)*8) return BIT_DStream_endOfBuffer;
419
7.34k
        return BIT_DStream_completed;
420
18.9k
    }
421
4.09k
    {
422
4.09k
        U32 nbBytes = bitD->bitsConsumed >> 3;
423
4.09k
        BIT_DStream_status result = BIT_DStream_unfinished;
424
4.09k
        if (bitD->ptr - nbBytes < bitD->start)
425
303
        {
426
303
            nbBytes = (U32)(bitD->ptr - bitD->start);  /* ptr > start */
427
303
            result = BIT_DStream_endOfBuffer;
428
303
        }
429
4.09k
        bitD->ptr -= nbBytes;
430
4.09k
        bitD->bitsConsumed -= nbBytes*8;
431
4.09k
        bitD->bitContainer = MEM_readLEST(bitD->ptr);   /* reminder : srcSize > sizeof(bitD) */
432
4.09k
        return result;
433
23.0k
    }
434
23.0k
}
435
436
/*! BIT_endOfDStream
437
*   @return Tells if DStream has reached its exact end
438
*/
439
MEM_STATIC unsigned BIT_endOfDStream(const BIT_DStream_t* DStream)
440
10.5k
{
441
10.5k
    return ((DStream->ptr == DStream->start) && (DStream->bitsConsumed == sizeof(DStream->bitContainer)*8));
442
10.5k
}
443
444
#if defined (__cplusplus)
445
}
446
#endif
447
448
#endif /* BITSTREAM_H_MODULE */
449
/* ******************************************************************
450
   Error codes and messages
451
   Copyright (C) 2013-2015, Yann Collet
452
453
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
454
455
   Redistribution and use in source and binary forms, with or without
456
   modification, are permitted provided that the following conditions are
457
   met:
458
459
       * Redistributions of source code must retain the above copyright
460
   notice, this list of conditions and the following disclaimer.
461
       * Redistributions in binary form must reproduce the above
462
   copyright notice, this list of conditions and the following disclaimer
463
   in the documentation and/or other materials provided with the
464
   distribution.
465
466
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
467
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
468
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
469
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
470
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
471
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
472
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
473
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
474
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
475
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
476
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
477
478
   You can contact the author at :
479
   - Source repository : https://github.com/Cyan4973/FiniteStateEntropy
480
   - Public forum : https://groups.google.com/forum/#!forum/lz4c
481
****************************************************************** */
482
#ifndef ERROR_H_MODULE
483
#define ERROR_H_MODULE
484
485
#if defined (__cplusplus)
486
extern "C" {
487
#endif
488
489
490
/******************************************
491
*  Compiler-specific
492
******************************************/
493
#if defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */)
494
#  define ERR_STATIC static inline
495
#elif defined(_MSC_VER)
496
#  define ERR_STATIC static __inline
497
#elif defined(__GNUC__)
498
#  define ERR_STATIC static __attribute__((unused))
499
#else
500
#  define ERR_STATIC static  /* this version may generate warnings for unused static functions; disable the relevant warning */
501
#endif
502
503
504
/******************************************
505
*  Error Management
506
******************************************/
507
#define PREFIX(name) ZSTD_error_##name
508
509
#define ERROR(name) (size_t)-PREFIX(name)
510
511
#define ERROR_LIST(ITEM) \
512
        ITEM(PREFIX(No_Error)) ITEM(PREFIX(GENERIC)) \
513
        ITEM(PREFIX(dstSize_tooSmall)) ITEM(PREFIX(srcSize_wrong)) \
514
        ITEM(PREFIX(prefix_unknown)) ITEM(PREFIX(corruption_detected)) \
515
        ITEM(PREFIX(tableLog_tooLarge)) ITEM(PREFIX(maxSymbolValue_tooLarge)) ITEM(PREFIX(maxSymbolValue_tooSmall)) \
516
        ITEM(PREFIX(maxCode))
517
518
#define ERROR_GENERATE_ENUM(ENUM) ENUM,
519
typedef enum { ERROR_LIST(ERROR_GENERATE_ENUM) } ERR_codes;  /* enum is exposed, to detect & handle specific errors; compare function result to -enum value */
520
521
#define ERROR_CONVERTTOSTRING(STRING) #STRING,
522
#define ERROR_GENERATE_STRING(EXPR) ERROR_CONVERTTOSTRING(EXPR)
523
static const char* ERR_strings[] = { ERROR_LIST(ERROR_GENERATE_STRING) };
524
525
ERR_STATIC unsigned ERR_isError(size_t code) { return (code > ERROR(maxCode)); }
526
527
ERR_STATIC const char* ERR_getErrorName(size_t code)
528
{
529
    static const char* codeError = "Unspecified error code";
530
    if (ERR_isError(code)) return ERR_strings[-(int)(code)];
531
    return codeError;
532
}
533
534
535
#if defined (__cplusplus)
536
}
537
#endif
538
539
#endif /* ERROR_H_MODULE */
540
/*
541
Constructor and Destructor of type FSE_CTable
542
    Note that its size depends on 'tableLog' and 'maxSymbolValue' */
543
typedef unsigned FSE_CTable;   /* don't allocate that. It's just a way to be more restrictive than void* */
544
typedef unsigned FSE_DTable;   /* don't allocate that. It's just a way to be more restrictive than void* */
545
546
547
/* ******************************************************************
548
   FSE : Finite State Entropy coder
549
   header file for static linking (only)
550
   Copyright (C) 2013-2015, Yann Collet
551
552
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
553
554
   Redistribution and use in source and binary forms, with or without
555
   modification, are permitted provided that the following conditions are
556
   met:
557
558
       * Redistributions of source code must retain the above copyright
559
   notice, this list of conditions and the following disclaimer.
560
       * Redistributions in binary form must reproduce the above
561
   copyright notice, this list of conditions and the following disclaimer
562
   in the documentation and/or other materials provided with the
563
   distribution.
564
565
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
566
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
567
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
568
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
569
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
570
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
571
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
572
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
573
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
574
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
575
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
576
577
   You can contact the author at :
578
   - Source repository : https://github.com/Cyan4973/FiniteStateEntropy
579
   - Public forum : https://groups.google.com/forum/#!forum/lz4c
580
****************************************************************** */
581
#if defined (__cplusplus)
582
extern "C" {
583
#endif
584
585
586
/******************************************
587
*  Static allocation
588
******************************************/
589
/* FSE buffer bounds */
590
#define FSE_NCOUNTBOUND 512
591
#define FSE_BLOCKBOUND(size) (size + (size>>7))
592
#define FSE_COMPRESSBOUND(size) (FSE_NCOUNTBOUND + FSE_BLOCKBOUND(size))   /* Macro version, useful for static allocation */
593
594
/* You can statically allocate FSE CTable/DTable as a table of unsigned using below macro */
595
#define FSE_CTABLE_SIZE_U32(maxTableLog, maxSymbolValue)   (1 + (1<<(maxTableLog-1)) + ((maxSymbolValue+1)*2))
596
#define FSE_DTABLE_SIZE_U32(maxTableLog)                   (1 + (1<<maxTableLog))
597
598
599
/******************************************
600
*  FSE advanced API
601
******************************************/
602
static size_t FSE_buildDTable_raw (FSE_DTable* dt, unsigned nbBits);
603
/* build a fake FSE_DTable, designed to read an uncompressed bitstream where each symbol uses nbBits */
604
605
static size_t FSE_buildDTable_rle (FSE_DTable* dt, unsigned char symbolValue);
606
/* build a fake FSE_DTable, designed to always generate the same symbolValue */
607
608
609
/******************************************
610
*  FSE symbol decompression API
611
******************************************/
612
typedef struct
613
{
614
    size_t      state;
615
    const void* table;   /* precise table may vary, depending on U16 */
616
} FSE_DState_t;
617
618
619
static void     FSE_initDState(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD, const FSE_DTable* dt);
620
621
static unsigned char FSE_decodeSymbol(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD);
622
623
static unsigned FSE_endOfDState(const FSE_DState_t* DStatePtr);
624
625
626
/******************************************
627
*  FSE unsafe API
628
******************************************/
629
static unsigned char FSE_decodeSymbolFast(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD);
630
/* faster, but works only if nbBits is always >= 1 (otherwise, result will be corrupted) */
631
632
633
/******************************************
634
*  Implementation of inline functions
635
******************************************/
636
637
/* decompression */
638
639
typedef struct {
640
    U16 tableLog;
641
    U16 fastMode;
642
} FSE_DTableHeader;   /* sizeof U32 */
643
644
typedef struct
645
{
646
    unsigned short newState;
647
    unsigned char  symbol;
648
    unsigned char  nbBits;
649
} FSE_decode_t;   /* size == U32 */
650
651
MEM_STATIC void FSE_initDState(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD, const FSE_DTable* dt)
652
7.81k
{
653
7.81k
    FSE_DTableHeader DTableH;
654
7.81k
    memcpy(&DTableH, dt, sizeof(DTableH));
655
7.81k
    DStatePtr->state = BIT_readBits(bitD, DTableH.tableLog);
656
7.81k
    BIT_reloadDStream(bitD);
657
7.81k
    DStatePtr->table = dt + 1;
658
7.81k
}
659
660
MEM_STATIC BYTE FSE_decodeSymbol(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD)
661
42.0k
{
662
42.0k
    const FSE_decode_t DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state];
663
42.0k
    const U32  nbBits = DInfo.nbBits;
664
42.0k
    BYTE symbol = DInfo.symbol;
665
42.0k
    size_t lowBits = BIT_readBits(bitD, nbBits);
666
667
42.0k
    DStatePtr->state = DInfo.newState + lowBits;
668
42.0k
    return symbol;
669
42.0k
}
670
671
MEM_STATIC BYTE FSE_decodeSymbolFast(FSE_DState_t* DStatePtr, BIT_DStream_t* bitD)
672
4.40k
{
673
4.40k
    const FSE_decode_t DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state];
674
4.40k
    const U32 nbBits = DInfo.nbBits;
675
4.40k
    BYTE symbol = DInfo.symbol;
676
4.40k
    size_t lowBits = BIT_readBitsFast(bitD, nbBits);
677
678
4.40k
    DStatePtr->state = DInfo.newState + lowBits;
679
4.40k
    return symbol;
680
4.40k
}
681
682
MEM_STATIC unsigned FSE_endOfDState(const FSE_DState_t* DStatePtr)
683
2.02k
{
684
2.02k
    return DStatePtr->state == 0;
685
2.02k
}
686
687
688
#if defined (__cplusplus)
689
}
690
#endif
691
/* ******************************************************************
692
   Huff0 : Huffman coder, part of New Generation Entropy library
693
   header file for static linking (only)
694
   Copyright (C) 2013-2015, Yann Collet
695
696
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
697
698
   Redistribution and use in source and binary forms, with or without
699
   modification, are permitted provided that the following conditions are
700
   met:
701
702
       * Redistributions of source code must retain the above copyright
703
   notice, this list of conditions and the following disclaimer.
704
       * Redistributions in binary form must reproduce the above
705
   copyright notice, this list of conditions and the following disclaimer
706
   in the documentation and/or other materials provided with the
707
   distribution.
708
709
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
710
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
711
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
712
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
713
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
714
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
715
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
716
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
717
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
718
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
719
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
720
721
   You can contact the author at :
722
   - Source repository : https://github.com/Cyan4973/FiniteStateEntropy
723
   - Public forum : https://groups.google.com/forum/#!forum/lz4c
724
****************************************************************** */
725
726
#if defined (__cplusplus)
727
extern "C" {
728
#endif
729
730
/******************************************
731
*  Static allocation macros
732
******************************************/
733
/* Huff0 buffer bounds */
734
#define HUF_CTABLEBOUND 129
735
#define HUF_BLOCKBOUND(size) (size + (size>>8) + 8)   /* only true if incompressible pre-filtered with fast heuristic */
736
#define HUF_COMPRESSBOUND(size) (HUF_CTABLEBOUND + HUF_BLOCKBOUND(size))   /* Macro version, useful for static allocation */
737
738
/* static allocation of Huff0's DTable */
739
#define HUF_DTABLE_SIZE(maxTableLog)   (1 + (1<<maxTableLog))  /* nb Cells; use unsigned short for X2, unsigned int for X4 */
740
#define HUF_CREATE_STATIC_DTABLEX2(DTable, maxTableLog) \
741
326
        unsigned short DTable[HUF_DTABLE_SIZE(maxTableLog)] = { maxTableLog }
742
#define HUF_CREATE_STATIC_DTABLEX4(DTable, maxTableLog) \
743
93
        unsigned int DTable[HUF_DTABLE_SIZE(maxTableLog)] = { maxTableLog }
744
#define HUF_CREATE_STATIC_DTABLEX6(DTable, maxTableLog) \
745
        unsigned int DTable[HUF_DTABLE_SIZE(maxTableLog) * 3 / 2] = { maxTableLog }
746
747
748
/******************************************
749
*  Advanced functions
750
******************************************/
751
static size_t HUF_decompress4X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize);   /* single-symbol decoder */
752
static size_t HUF_decompress4X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize);   /* double-symbols decoder */
753
754
755
#if defined (__cplusplus)
756
}
757
#endif
758
759
/*
760
    zstd - standard compression library
761
    Header File
762
    Copyright (C) 2014-2015, Yann Collet.
763
764
    BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
765
766
    Redistribution and use in source and binary forms, with or without
767
    modification, are permitted provided that the following conditions are
768
    met:
769
    * Redistributions of source code must retain the above copyright
770
    notice, this list of conditions and the following disclaimer.
771
    * Redistributions in binary form must reproduce the above
772
    copyright notice, this list of conditions and the following disclaimer
773
    in the documentation and/or other materials provided with the
774
    distribution.
775
    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
776
    "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
777
    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
778
    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
779
    OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
780
    SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
781
    LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
782
    DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
783
    THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
784
    (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
785
    OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
786
787
    You can contact the author at :
788
    - zstd source repository : https://github.com/Cyan4973/zstd
789
    - ztsd public forum : https://groups.google.com/forum/#!forum/lz4c
790
*/
791
792
#if defined (__cplusplus)
793
extern "C" {
794
#endif
795
796
/* *************************************
797
*  Includes
798
***************************************/
799
#include <stddef.h>   /* size_t */
800
801
802
/* *************************************
803
*  Version
804
***************************************/
805
#define ZSTD_VERSION_MAJOR    0    /* for breaking interface changes  */
806
#define ZSTD_VERSION_MINOR    2    /* for new (non-breaking) interface capabilities */
807
#define ZSTD_VERSION_RELEASE  2    /* for tweaks, bug-fixes, or development */
808
#define ZSTD_VERSION_NUMBER  (ZSTD_VERSION_MAJOR *100*100 + ZSTD_VERSION_MINOR *100 + ZSTD_VERSION_RELEASE)
809
810
811
/* *************************************
812
*  Advanced functions
813
***************************************/
814
typedef struct ZSTD_CCtx_s ZSTD_CCtx;   /* incomplete type */
815
816
#if defined (__cplusplus)
817
}
818
#endif
819
/*
820
    zstd - standard compression library
821
    Header File for static linking only
822
    Copyright (C) 2014-2015, Yann Collet.
823
824
    BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
825
826
    Redistribution and use in source and binary forms, with or without
827
    modification, are permitted provided that the following conditions are
828
    met:
829
    * Redistributions of source code must retain the above copyright
830
    notice, this list of conditions and the following disclaimer.
831
    * Redistributions in binary form must reproduce the above
832
    copyright notice, this list of conditions and the following disclaimer
833
    in the documentation and/or other materials provided with the
834
    distribution.
835
    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
836
    "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
837
    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
838
    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
839
    OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
840
    SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
841
    LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
842
    DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
843
    THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
844
    (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
845
    OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
846
847
    You can contact the author at :
848
    - zstd source repository : https://github.com/Cyan4973/zstd
849
    - ztsd public forum : https://groups.google.com/forum/#!forum/lz4c
850
*/
851
852
/* The objects defined into this file should be considered experimental.
853
 * They are not labelled stable, as their prototype may change in the future.
854
 * You can use them for tests, provide feedback, or if you can endure risk of future changes.
855
 */
856
857
#if defined (__cplusplus)
858
extern "C" {
859
#endif
860
861
/* *************************************
862
*  Streaming functions
863
***************************************/
864
865
typedef struct ZSTDv03_Dctx_s ZSTD_DCtx;
866
867
/*
868
  Use above functions alternatively.
869
  ZSTD_nextSrcSizeToDecompress() tells how much bytes to provide as 'srcSize' to ZSTD_decompressContinue().
870
  ZSTD_decompressContinue() will use previous data blocks to improve compression if they are located prior to current block.
871
  Result is the number of bytes regenerated within 'dst'.
872
  It can be zero, which is not an error; it just means ZSTD_decompressContinue() has decoded some header.
873
*/
874
875
/* *************************************
876
*  Prefix - version detection
877
***************************************/
878
3.79k
#define ZSTD_magicNumber 0xFD2FB523   /* v0.3 */
879
880
881
#if defined (__cplusplus)
882
}
883
#endif
884
/* ******************************************************************
885
   FSE : Finite State Entropy coder
886
   Copyright (C) 2013-2015, Yann Collet.
887
888
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
889
890
   Redistribution and use in source and binary forms, with or without
891
   modification, are permitted provided that the following conditions are
892
   met:
893
894
       * Redistributions of source code must retain the above copyright
895
   notice, this list of conditions and the following disclaimer.
896
       * Redistributions in binary form must reproduce the above
897
   copyright notice, this list of conditions and the following disclaimer
898
   in the documentation and/or other materials provided with the
899
   distribution.
900
901
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
902
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
903
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
904
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
905
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
906
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
907
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
908
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
909
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
910
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
911
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
912
913
    You can contact the author at :
914
    - FSE source repository : https://github.com/Cyan4973/FiniteStateEntropy
915
    - Public forum : https://groups.google.com/forum/#!forum/lz4c
916
****************************************************************** */
917
918
#ifndef FSE_COMMONDEFS_ONLY
919
920
/****************************************************************
921
*  Tuning parameters
922
****************************************************************/
923
/* MEMORY_USAGE :
924
*  Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.)
925
*  Increasing memory usage improves compression ratio
926
*  Reduced memory usage can improve speed, due to cache effect
927
*  Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */
928
7.69k
#define FSE_MAX_MEMORY_USAGE 14
929
#define FSE_DEFAULT_MEMORY_USAGE 13
930
931
/* FSE_MAX_SYMBOL_VALUE :
932
*  Maximum symbol value authorized.
933
*  Required for proper stack allocation */
934
2.08k
#define FSE_MAX_SYMBOL_VALUE 255
935
936
937
/****************************************************************
938
*  template functions type & suffix
939
****************************************************************/
940
494k
#define FSE_FUNCTION_TYPE BYTE
941
#define FSE_FUNCTION_EXTENSION
942
943
944
/****************************************************************
945
*  Byte symbol type
946
****************************************************************/
947
#endif   /* !FSE_COMMONDEFS_ONLY */
948
949
950
/****************************************************************
951
*  Compiler specifics
952
****************************************************************/
953
#ifdef _MSC_VER    /* Visual Studio */
954
#  define FORCE_INLINE static __forceinline
955
#  include <intrin.h>                    /* For Visual 2005 */
956
#  pragma warning(disable : 4127)        /* disable: C4127: conditional expression is constant */
957
#  pragma warning(disable : 4214)        /* disable: C4214: non-int bitfields */
958
#else
959
#  if defined (__cplusplus) || defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
960
#    ifdef __GNUC__
961
#      define FORCE_INLINE static inline __attribute__((always_inline))
962
#    else
963
#      define FORCE_INLINE static inline
964
#    endif
965
#  else
966
#    define FORCE_INLINE static
967
#  endif /* __STDC_VERSION__ */
968
#endif
969
970
971
/****************************************************************
972
*  Includes
973
****************************************************************/
974
#include <stdlib.h>     /* malloc, free, qsort */
975
#include <string.h>     /* memcpy, memset */
976
#include <stdio.h>      /* printf (debug) */
977
978
/****************************************************************
979
*  Constants
980
*****************************************************************/
981
7.69k
#define FSE_MAX_TABLELOG  (FSE_MAX_MEMORY_USAGE-2)
982
#define FSE_MAX_TABLESIZE (1U<<FSE_MAX_TABLELOG)
983
#define FSE_MAXTABLESIZE_MASK (FSE_MAX_TABLESIZE-1)
984
#define FSE_DEFAULT_TABLELOG (FSE_DEFAULT_MEMORY_USAGE-2)
985
1.99k
#define FSE_MIN_TABLELOG 5
986
987
1.99k
#define FSE_TABLELOG_ABSOLUTE_MAX 15
988
#if FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX
989
#error "FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX is not supported"
990
#endif
991
992
993
/****************************************************************
994
*  Error Management
995
****************************************************************/
996
#define FSE_STATIC_ASSERT(c) { enum { FSE_static_assert = 1/(int)(!!(c)) }; }   /* use only *after* variable declarations */
997
998
999
/****************************************************************
1000
*  Complex types
1001
****************************************************************/
1002
typedef U32 DTable_max_t[FSE_DTABLE_SIZE_U32(FSE_MAX_TABLELOG)];
1003
1004
1005
/****************************************************************
1006
*  Templates
1007
****************************************************************/
1008
/*
1009
  designed to be included
1010
  for type-specific functions (template emulation in C)
1011
  Objective is to write these functions only once, for improved maintenance
1012
*/
1013
1014
/* safety checks */
1015
#ifndef FSE_FUNCTION_EXTENSION
1016
#  error "FSE_FUNCTION_EXTENSION must be defined"
1017
#endif
1018
#ifndef FSE_FUNCTION_TYPE
1019
#  error "FSE_FUNCTION_TYPE must be defined"
1020
#endif
1021
1022
/* Function names */
1023
#define FSE_CAT(X,Y) X##Y
1024
#define FSE_FUNCTION_NAME(X,Y) FSE_CAT(X,Y)
1025
#define FSE_TYPE_NAME(X,Y) FSE_CAT(X,Y)
1026
1027
1028
/* Function templates */
1029
1030
1.90k
#define FSE_DECODE_TYPE FSE_decode_t
1031
1032
1.90k
static U32 FSE_tableStep(U32 tableSize) { return (tableSize>>1) + (tableSize>>3) + 3; }
1033
1034
static size_t FSE_buildDTable
1035
(FSE_DTable* dt, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog)
1036
1.90k
{
1037
1.90k
    void* ptr = dt+1;
1038
1.90k
    FSE_DTableHeader DTableH;
1039
1.90k
    FSE_DECODE_TYPE* const tableDecode = (FSE_DECODE_TYPE*)ptr;
1040
1.90k
    const U32 tableSize = 1 << tableLog;
1041
1.90k
    const U32 tableMask = tableSize-1;
1042
1.90k
    const U32 step = FSE_tableStep(tableSize);
1043
1.90k
    U16 symbolNext[FSE_MAX_SYMBOL_VALUE+1];
1044
1.90k
    U32 position = 0;
1045
1.90k
    U32 highThreshold = tableSize-1;
1046
1.90k
    const S16 largeLimit= (S16)(1 << (tableLog-1));
1047
1.90k
    U32 noLarge = 1;
1048
1.90k
    U32 s;
1049
1050
    /* Sanity Checks */
1051
1.90k
    if (maxSymbolValue > FSE_MAX_SYMBOL_VALUE) return ERROR(maxSymbolValue_tooLarge);
1052
1.90k
    if (tableLog > FSE_MAX_TABLELOG) return ERROR(tableLog_tooLarge);
1053
1054
    /* Init, lay down lowprob symbols */
1055
1.90k
    DTableH.tableLog = (U16)tableLog;
1056
31.8k
    for (s=0; s<=maxSymbolValue; s++)
1057
29.9k
    {
1058
29.9k
        if (normalizedCounter[s]==-1)
1059
17.5k
        {
1060
17.5k
            tableDecode[highThreshold--].symbol = (FSE_FUNCTION_TYPE)s;
1061
17.5k
            symbolNext[s] = 1;
1062
17.5k
        }
1063
12.4k
        else
1064
12.4k
        {
1065
12.4k
            if (normalizedCounter[s] >= largeLimit) noLarge=0;
1066
12.4k
            symbolNext[s] = normalizedCounter[s];
1067
12.4k
        }
1068
29.9k
    }
1069
1070
    /* Spread symbols */
1071
31.8k
    for (s=0; s<=maxSymbolValue; s++)
1072
29.9k
    {
1073
29.9k
        int i;
1074
506k
        for (i=0; i<normalizedCounter[s]; i++)
1075
476k
        {
1076
476k
            tableDecode[position].symbol = (FSE_FUNCTION_TYPE)s;
1077
476k
            position = (position + step) & tableMask;
1078
493k
            while (position > highThreshold) position = (position + step) & tableMask;   /* lowprob area */
1079
476k
        }
1080
29.9k
    }
1081
1082
1.90k
    if (position!=0) return ERROR(GENERIC);   /* position must reach all cells once, otherwise normalizedCounter is incorrect */
1083
1084
    /* Build Decoding table */
1085
1.90k
    {
1086
1.90k
        U32 i;
1087
496k
        for (i=0; i<tableSize; i++)
1088
494k
        {
1089
494k
            FSE_FUNCTION_TYPE symbol = (FSE_FUNCTION_TYPE)(tableDecode[i].symbol);
1090
494k
            U16 nextState = symbolNext[symbol]++;
1091
494k
            tableDecode[i].nbBits = (BYTE) (tableLog - BIT_highbit32 ((U32)nextState) );
1092
494k
            tableDecode[i].newState = (U16) ( (nextState << tableDecode[i].nbBits) - tableSize);
1093
494k
        }
1094
1.90k
    }
1095
1096
1.90k
    DTableH.fastMode = (U16)noLarge;
1097
1.90k
    memcpy(dt, &DTableH, sizeof(DTableH));
1098
1.90k
    return 0;
1099
1.90k
}
1100
1101
1102
#ifndef FSE_COMMONDEFS_ONLY
1103
/******************************************
1104
*  FSE helper functions
1105
******************************************/
1106
2.47k
static unsigned FSE_isError(size_t code) { return ERR_isError(code); }
1107
1108
1109
/****************************************************************
1110
*  FSE NCount encoding-decoding
1111
****************************************************************/
1112
static short FSE_abs(short a)
1113
31.7k
{
1114
31.7k
    return a<0 ? -a : a;
1115
31.7k
}
1116
1117
static size_t FSE_readNCount (short* normalizedCounter, unsigned* maxSVPtr, unsigned* tableLogPtr,
1118
                 const void* headerBuffer, size_t hbSize)
1119
2.01k
{
1120
2.01k
    const BYTE* const istart = (const BYTE*) headerBuffer;
1121
2.01k
    const BYTE* const iend = istart + hbSize;
1122
2.01k
    const BYTE* ip = istart;
1123
2.01k
    int nbBits;
1124
2.01k
    int remaining;
1125
2.01k
    int threshold;
1126
2.01k
    U32 bitStream;
1127
2.01k
    int bitCount;
1128
2.01k
    unsigned charnum = 0;
1129
2.01k
    int previous0 = 0;
1130
1131
2.01k
    if (hbSize < 4) return ERROR(srcSize_wrong);
1132
1.99k
    bitStream = MEM_readLE32(ip);
1133
1.99k
    nbBits = (bitStream & 0xF) + FSE_MIN_TABLELOG;   /* extract tableLog */
1134
1.99k
    if (nbBits > FSE_TABLELOG_ABSOLUTE_MAX) return ERROR(tableLog_tooLarge);
1135
1.98k
    bitStream >>= 4;
1136
1.98k
    bitCount = 4;
1137
1.98k
    *tableLogPtr = nbBits;
1138
1.98k
    remaining = (1<<nbBits)+1;
1139
1.98k
    threshold = 1<<nbBits;
1140
1.98k
    nbBits++;
1141
1142
33.6k
    while ((remaining>1) && (charnum<=*maxSVPtr))
1143
31.7k
    {
1144
31.7k
        if (previous0)
1145
2.53k
        {
1146
2.53k
            unsigned n0 = charnum;
1147
2.86k
            while ((bitStream & 0xFFFF) == 0xFFFF)
1148
331
            {
1149
331
                n0+=24;
1150
331
                if (ip < iend-5)
1151
291
                {
1152
291
                    ip+=2;
1153
291
                    bitStream = MEM_readLE32(ip) >> bitCount;
1154
291
                }
1155
40
                else
1156
40
                {
1157
40
                    bitStream >>= 16;
1158
40
                    bitCount+=16;
1159
40
                }
1160
331
            }
1161
3.17k
            while ((bitStream & 3) == 3)
1162
645
            {
1163
645
                n0+=3;
1164
645
                bitStream>>=2;
1165
645
                bitCount+=2;
1166
645
            }
1167
2.53k
            n0 += bitStream & 3;
1168
2.53k
            bitCount += 2;
1169
2.53k
            if (n0 > *maxSVPtr) return ERROR(maxSymbolValue_tooSmall);
1170
7.44k
            while (charnum < n0) normalizedCounter[charnum++] = 0;
1171
2.51k
            if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4))
1172
1.47k
            {
1173
1.47k
                ip += bitCount>>3;
1174
1.47k
                bitCount &= 7;
1175
1.47k
                bitStream = MEM_readLE32(ip) >> bitCount;
1176
1.47k
            }
1177
1.04k
            else
1178
1.04k
                bitStream >>= 2;
1179
2.51k
        }
1180
31.7k
        {
1181
31.7k
            const short max = (short)((2*threshold-1)-remaining);
1182
31.7k
            short count;
1183
1184
31.7k
            if ((bitStream & (threshold-1)) < (U32)max)
1185
24.2k
            {
1186
24.2k
                count = (short)(bitStream & (threshold-1));
1187
24.2k
                bitCount   += nbBits-1;
1188
24.2k
            }
1189
7.43k
            else
1190
7.43k
            {
1191
7.43k
                count = (short)(bitStream & (2*threshold-1));
1192
7.43k
                if (count >= threshold) count -= max;
1193
7.43k
                bitCount   += nbBits;
1194
7.43k
            }
1195
1196
31.7k
            count--;   /* extra accuracy */
1197
31.7k
            remaining -= FSE_abs(count);
1198
31.7k
            normalizedCounter[charnum++] = count;
1199
31.7k
            previous0 = !count;
1200
44.6k
            while (remaining < threshold)
1201
12.9k
            {
1202
12.9k
                nbBits--;
1203
12.9k
                threshold >>= 1;
1204
12.9k
            }
1205
1206
31.7k
            {
1207
31.7k
                if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4))
1208
27.1k
                {
1209
27.1k
                    ip += bitCount>>3;
1210
27.1k
                    bitCount &= 7;
1211
27.1k
                }
1212
4.60k
                else
1213
4.60k
                {
1214
4.60k
                    bitCount -= (int)(8 * (iend - 4 - ip));
1215
4.60k
                    ip = iend - 4;
1216
4.60k
                }
1217
31.7k
                bitStream = MEM_readLE32(ip) >> (bitCount & 31);
1218
31.7k
            }
1219
31.7k
        }
1220
31.7k
    }
1221
1.96k
    if (remaining != 1) return ERROR(GENERIC);
1222
1.95k
    *maxSVPtr = charnum-1;
1223
1224
1.95k
    ip += (bitCount+7)>>3;
1225
1.95k
    if ((size_t)(ip-istart) > hbSize) return ERROR(srcSize_wrong);
1226
1.92k
    return ip-istart;
1227
1.95k
}
1228
1229
1230
/*********************************************************
1231
*  Decompression (Byte symbols)
1232
*********************************************************/
1233
static size_t FSE_buildDTable_rle (FSE_DTable* dt, BYTE symbolValue)
1234
1.66k
{
1235
1.66k
    void* ptr = dt;
1236
1.66k
    FSE_DTableHeader* const DTableH = (FSE_DTableHeader*)ptr;
1237
1.66k
    FSE_decode_t* const cell = (FSE_decode_t*)(ptr) + 1;
1238
1239
1.66k
    DTableH->tableLog = 0;
1240
1.66k
    DTableH->fastMode = 0;
1241
1242
1.66k
    cell->newState = 0;
1243
1.66k
    cell->symbol = symbolValue;
1244
1.66k
    cell->nbBits = 0;
1245
1246
1.66k
    return 0;
1247
1.66k
}
1248
1249
1250
static size_t FSE_buildDTable_raw (FSE_DTable* dt, unsigned nbBits)
1251
4.26k
{
1252
4.26k
    void* ptr = dt;
1253
4.26k
    FSE_DTableHeader* const DTableH = (FSE_DTableHeader*)ptr;
1254
4.26k
    FSE_decode_t* const dinfo = (FSE_decode_t*)(ptr) + 1;
1255
4.26k
    const unsigned tableSize = 1 << nbBits;
1256
4.26k
    const unsigned tableMask = tableSize - 1;
1257
4.26k
    const unsigned maxSymbolValue = tableMask;
1258
4.26k
    unsigned s;
1259
1260
    /* Sanity checks */
1261
4.26k
    if (nbBits < 1) return ERROR(GENERIC);         /* min size */
1262
1263
    /* Build Decoding Table */
1264
4.26k
    DTableH->tableLog = (U16)nbBits;
1265
4.26k
    DTableH->fastMode = 1;
1266
326k
    for (s=0; s<=maxSymbolValue; s++)
1267
321k
    {
1268
321k
        dinfo[s].newState = 0;
1269
321k
        dinfo[s].symbol = (BYTE)s;
1270
321k
        dinfo[s].nbBits = (BYTE)nbBits;
1271
321k
    }
1272
1273
4.26k
    return 0;
1274
4.26k
}
1275
1276
FORCE_INLINE size_t FSE_decompress_usingDTable_generic(
1277
          void* dst, size_t maxDstSize,
1278
    const void* cSrc, size_t cSrcSize,
1279
    const FSE_DTable* dt, const unsigned fast)
1280
134
{
1281
134
    BYTE* const ostart = (BYTE*) dst;
1282
134
    BYTE* op = ostart;
1283
134
    BYTE* const omax = op + maxDstSize;
1284
134
    BYTE* const olimit = omax-3;
1285
1286
134
    BIT_DStream_t bitD;
1287
134
    FSE_DState_t state1;
1288
134
    FSE_DState_t state2;
1289
134
    size_t errorCode;
1290
1291
    /* Init */
1292
134
    errorCode = BIT_initDStream(&bitD, cSrc, cSrcSize);   /* replaced last arg by maxCompressed Size */
1293
134
    if (FSE_isError(errorCode)) return errorCode;
1294
1295
128
    FSE_initDState(&state1, &bitD, dt);
1296
128
    FSE_initDState(&state2, &bitD, dt);
1297
1298
15.2k
#define FSE_GETSYMBOL(statePtr) fast ? FSE_decodeSymbolFast(statePtr, &bitD) : FSE_decodeSymbol(statePtr, &bitD)
1299
1300
    /* 4 symbols per loop */
1301
2.05k
    for ( ; (BIT_reloadDStream(&bitD)==BIT_DStream_unfinished) && (op<olimit) ; op+=4)
1302
1.93k
    {
1303
1.93k
        op[0] = FSE_GETSYMBOL(&state1);
1304
1305
1.93k
        if (FSE_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
1306
0
            BIT_reloadDStream(&bitD);
1307
1308
1.93k
        op[1] = FSE_GETSYMBOL(&state2);
1309
1310
1.93k
        if (FSE_MAX_TABLELOG*4+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
1311
0
            { if (BIT_reloadDStream(&bitD) > BIT_DStream_unfinished) { op+=2; break; } }
1312
1313
1.93k
        op[2] = FSE_GETSYMBOL(&state1);
1314
1315
1.93k
        if (FSE_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
1316
0
            BIT_reloadDStream(&bitD);
1317
1318
1.93k
        op[3] = FSE_GETSYMBOL(&state2);
1319
1.93k
    }
1320
1321
    /* tail */
1322
    /* note : BIT_reloadDStream(&bitD) >= FSE_DStream_partiallyFilled; Ends at exactly BIT_DStream_completed */
1323
3.84k
    while (1)
1324
3.84k
    {
1325
3.84k
        if ( (BIT_reloadDStream(&bitD)>BIT_DStream_completed) || (op==omax) || (BIT_endOfDStream(&bitD) && (fast || FSE_endOfDState(&state1))) )
1326
54
            break;
1327
1328
3.78k
        *op++ = FSE_GETSYMBOL(&state1);
1329
1330
3.78k
        if ( (BIT_reloadDStream(&bitD)>BIT_DStream_completed) || (op==omax) || (BIT_endOfDStream(&bitD) && (fast || FSE_endOfDState(&state2))) )
1331
74
            break;
1332
1333
3.71k
        *op++ = FSE_GETSYMBOL(&state2);
1334
3.71k
    }
1335
1336
    /* end ? */
1337
128
    if (BIT_endOfDStream(&bitD) && FSE_endOfDState(&state1) && FSE_endOfDState(&state2))
1338
26
        return op-ostart;
1339
1340
102
    if (op==omax) return ERROR(dstSize_tooSmall);   /* dst buffer is full, but cSrc unfinished */
1341
1342
73
    return ERROR(corruption_detected);
1343
102
}
1344
1345
1346
static size_t FSE_decompress_usingDTable(void* dst, size_t originalSize,
1347
                            const void* cSrc, size_t cSrcSize,
1348
                            const FSE_DTable* dt)
1349
134
{
1350
134
    FSE_DTableHeader DTableH;
1351
134
    memcpy(&DTableH, dt, sizeof(DTableH));
1352
1353
    /* select fast mode (static) */
1354
134
    if (DTableH.fastMode) return FSE_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 1);
1355
84
    return FSE_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 0);
1356
134
}
1357
1358
1359
static size_t FSE_decompress(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize)
1360
182
{
1361
182
    const BYTE* const istart = (const BYTE*)cSrc;
1362
182
    const BYTE* ip = istart;
1363
182
    short counting[FSE_MAX_SYMBOL_VALUE+1];
1364
182
    DTable_max_t dt;   /* Static analyzer seems unable to understand this table will be properly initialized later */
1365
182
    unsigned tableLog;
1366
182
    unsigned maxSymbolValue = FSE_MAX_SYMBOL_VALUE;
1367
182
    size_t errorCode;
1368
1369
182
    if (cSrcSize<2) return ERROR(srcSize_wrong);   /* too small input size */
1370
1371
    /* normal FSE decoding mode */
1372
180
    errorCode = FSE_readNCount (counting, &maxSymbolValue, &tableLog, istart, cSrcSize);
1373
180
    if (FSE_isError(errorCode)) return errorCode;
1374
141
    if (errorCode >= cSrcSize) return ERROR(srcSize_wrong);   /* too small input size */
1375
136
    ip += errorCode;
1376
136
    cSrcSize -= errorCode;
1377
1378
136
    errorCode = FSE_buildDTable (dt, counting, maxSymbolValue, tableLog);
1379
136
    if (FSE_isError(errorCode)) return errorCode;
1380
1381
    /* always return, even if it is an error code */
1382
134
    return FSE_decompress_usingDTable (dst, maxDstSize, ip, cSrcSize, dt);
1383
136
}
1384
1385
1386
1387
#endif   /* FSE_COMMONDEFS_ONLY */
1388
/* ******************************************************************
1389
   Huff0 : Huffman coder, part of New Generation Entropy library
1390
   Copyright (C) 2013-2015, Yann Collet.
1391
1392
   BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
1393
1394
   Redistribution and use in source and binary forms, with or without
1395
   modification, are permitted provided that the following conditions are
1396
   met:
1397
1398
       * Redistributions of source code must retain the above copyright
1399
   notice, this list of conditions and the following disclaimer.
1400
       * Redistributions in binary form must reproduce the above
1401
   copyright notice, this list of conditions and the following disclaimer
1402
   in the documentation and/or other materials provided with the
1403
   distribution.
1404
1405
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
1406
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
1407
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
1408
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
1409
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
1410
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
1411
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
1412
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
1413
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
1414
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
1415
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
1416
1417
    You can contact the author at :
1418
    - FSE+Huff0 source repository : https://github.com/Cyan4973/FiniteStateEntropy
1419
    - Public forum : https://groups.google.com/forum/#!forum/lz4c
1420
****************************************************************** */
1421
1422
/****************************************************************
1423
*  Compiler specifics
1424
****************************************************************/
1425
#if defined (__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */)
1426
/* inline is defined */
1427
#elif defined(_MSC_VER)
1428
#  pragma warning(disable : 4127)        /* disable: C4127: conditional expression is constant */
1429
#  define inline __inline
1430
#else
1431
#  define inline /* disable inline */
1432
#endif
1433
1434
1435
/****************************************************************
1436
*  Includes
1437
****************************************************************/
1438
#include <stdlib.h>     /* malloc, free, qsort */
1439
#include <string.h>     /* memcpy, memset */
1440
#include <stdio.h>      /* printf (debug) */
1441
1442
/****************************************************************
1443
*  Error Management
1444
****************************************************************/
1445
419
#define HUF_STATIC_ASSERT(c) { enum { HUF_static_assert = 1/(int)(!!(c)) }; }   /* use only *after* variable declarations */
1446
1447
1448
/******************************************
1449
*  Helper functions
1450
******************************************/
1451
1.90k
static unsigned HUF_isError(size_t code) { return ERR_isError(code); }
1452
1453
17.8k
#define HUF_ABSOLUTEMAX_TABLELOG  16   /* absolute limit of HUF_MAX_TABLELOG. Beyond that value, code does not work */
1454
0
#define HUF_MAX_TABLELOG  12           /* max configured tableLog (for static allocation); can be modified up to HUF_ABSOLUTEMAX_TABLELOG */
1455
#define HUF_DEFAULT_TABLELOG  HUF_MAX_TABLELOG   /* tableLog by default, when not specified */
1456
419
#define HUF_MAX_SYMBOL_VALUE 255
1457
#if (HUF_MAX_TABLELOG > HUF_ABSOLUTEMAX_TABLELOG)
1458
#  error "HUF_MAX_TABLELOG is too large !"
1459
#endif
1460
1461
1462
1463
/*********************************************************
1464
*  Huff0 : Huffman block decompression
1465
*********************************************************/
1466
typedef struct { BYTE byte; BYTE nbBits; } HUF_DEltX2;   /* single-symbol decoding */
1467
1468
typedef struct { U16 sequence; BYTE nbBits; BYTE length; } HUF_DEltX4;  /* double-symbols decoding */
1469
1470
typedef struct { BYTE symbol; BYTE weight; } sortedSymbol_t;
1471
1472
/*! HUF_readStats
1473
    Read compact Huffman tree, saved by HUF_writeCTable
1474
    @huffWeight : destination buffer
1475
    @return : size read from `src`
1476
*/
1477
static size_t HUF_readStats(BYTE* huffWeight, size_t hwSize, U32* rankStats,
1478
                            U32* nbSymbolsPtr, U32* tableLogPtr,
1479
                            const void* src, size_t srcSize)
1480
419
{
1481
419
    U32 weightTotal;
1482
419
    U32 tableLog;
1483
419
    const BYTE* ip = (const BYTE*) src;
1484
419
    size_t iSize;
1485
419
    size_t oSize;
1486
419
    U32 n;
1487
1488
419
    if (!srcSize) return ERROR(srcSize_wrong);
1489
412
    iSize = ip[0];
1490
    //memset(huffWeight, 0, hwSize);   /* is not necessary, even though some analyzer complain ... */
1491
1492
412
    if (iSize >= 128)  /* special header */
1493
225
    {
1494
225
        if (iSize >= (242))   /* RLE */
1495
158
        {
1496
158
            static int l[14] = { 1, 2, 3, 4, 7, 8, 15, 16, 31, 32, 63, 64, 127, 128 };
1497
158
            oSize = l[iSize-242];
1498
158
            memset(huffWeight, 1, hwSize);
1499
158
            iSize = 0;
1500
158
        }
1501
67
        else   /* Incompressible */
1502
67
        {
1503
67
            oSize = iSize - 127;
1504
67
            iSize = ((oSize+1)/2);
1505
67
            if (iSize+1 > srcSize) return ERROR(srcSize_wrong);
1506
61
            if (oSize >= hwSize) return ERROR(corruption_detected);
1507
61
            ip += 1;
1508
1.65k
            for (n=0; n<oSize; n+=2)
1509
1.59k
            {
1510
1.59k
                huffWeight[n]   = ip[n/2] >> 4;
1511
1.59k
                huffWeight[n+1] = ip[n/2] & 15;
1512
1.59k
            }
1513
61
        }
1514
225
    }
1515
187
    else  /* header compressed with FSE (normal case) */
1516
187
    {
1517
187
        if (iSize+1 > srcSize) return ERROR(srcSize_wrong);
1518
182
        oSize = FSE_decompress(huffWeight, hwSize-1, ip+1, iSize);   /* max (hwSize-1) values decoded, as last one is implied */
1519
182
        if (FSE_isError(oSize)) return oSize;
1520
182
    }
1521
1522
    /* collect weight stats */
1523
245
    memset(rankStats, 0, (HUF_ABSOLUTEMAX_TABLELOG + 1) * sizeof(U32));
1524
245
    weightTotal = 0;
1525
17.5k
    for (n=0; n<oSize; n++)
1526
17.2k
    {
1527
17.2k
        if (huffWeight[n] >= HUF_ABSOLUTEMAX_TABLELOG) return ERROR(corruption_detected);
1528
17.2k
        rankStats[huffWeight[n]]++;
1529
17.2k
        weightTotal += (1 << huffWeight[n]) >> 1;
1530
17.2k
    }
1531
243
    if (weightTotal == 0) return ERROR(corruption_detected);
1532
1533
    /* get last non-null symbol weight (implied, total must be 2^n) */
1534
241
    tableLog = BIT_highbit32(weightTotal) + 1;
1535
241
    if (tableLog > HUF_ABSOLUTEMAX_TABLELOG) return ERROR(corruption_detected);
1536
232
    {
1537
232
        U32 total = 1 << tableLog;
1538
232
        U32 rest = total - weightTotal;
1539
232
        U32 verif = 1 << BIT_highbit32(rest);
1540
232
        U32 lastWeight = BIT_highbit32(rest) + 1;
1541
232
        if (verif != rest) return ERROR(corruption_detected);    /* last value must be a clean power of 2 */
1542
222
        huffWeight[oSize] = (BYTE)lastWeight;
1543
222
        rankStats[lastWeight]++;
1544
222
    }
1545
1546
    /* check tree construction validity */
1547
222
    if ((rankStats[1] < 2) || (rankStats[1] & 1)) return ERROR(corruption_detected);   /* by construction : at least 2 elts of rank 1, must be even */
1548
1549
    /* results */
1550
221
    *nbSymbolsPtr = (U32)(oSize+1);
1551
221
    *tableLogPtr = tableLog;
1552
221
    return iSize+1;
1553
222
}
1554
1555
1556
/**************************/
1557
/* single-symbol decoding */
1558
/**************************/
1559
1560
static size_t HUF_readDTableX2 (U16* DTable, const void* src, size_t srcSize)
1561
326
{
1562
326
    BYTE huffWeight[HUF_MAX_SYMBOL_VALUE + 1];
1563
326
    U32 rankVal[HUF_ABSOLUTEMAX_TABLELOG + 1];   /* large enough for values from 0 to 16 */
1564
326
    U32 tableLog = 0;
1565
326
    const BYTE* ip = (const BYTE*) src;
1566
326
    size_t iSize = ip[0];
1567
326
    U32 nbSymbols = 0;
1568
326
    U32 n;
1569
326
    U32 nextRankStart;
1570
326
    void* ptr = DTable+1;
1571
326
    HUF_DEltX2* const dt = (HUF_DEltX2*)(ptr);
1572
1573
326
    HUF_STATIC_ASSERT(sizeof(HUF_DEltX2) == sizeof(U16));   /* if compilation fails here, assertion is false */
1574
    //memset(huffWeight, 0, sizeof(huffWeight));   /* is not necessary, even though some analyzer complain ... */
1575
1576
326
    iSize = HUF_readStats(huffWeight, HUF_MAX_SYMBOL_VALUE + 1, rankVal, &nbSymbols, &tableLog, src, srcSize);
1577
326
    if (HUF_isError(iSize)) return iSize;
1578
1579
    /* check result */
1580
132
    if (tableLog > DTable[0]) return ERROR(tableLog_tooLarge);   /* DTable is too small */
1581
130
    DTable[0] = (U16)tableLog;   /* maybe should separate sizeof DTable, as allocated, from used size of DTable, in case of DTable re-use */
1582
1583
    /* Prepare ranks */
1584
130
    nextRankStart = 0;
1585
908
    for (n=1; n<=tableLog; n++)
1586
778
    {
1587
778
        U32 current = nextRankStart;
1588
778
        nextRankStart += (rankVal[n] << (n-1));
1589
778
        rankVal[n] = current;
1590
778
    }
1591
1592
    /* fill DTable */
1593
9.15k
    for (n=0; n<nbSymbols; n++)
1594
9.02k
    {
1595
9.02k
        const U32 w = huffWeight[n];
1596
9.02k
        const U32 length = (1 << w) >> 1;
1597
9.02k
        U32 i;
1598
9.02k
        HUF_DEltX2 D;
1599
9.02k
        D.byte = (BYTE)n; D.nbBits = (BYTE)(tableLog + 1 - w);
1600
34.7k
        for (i = rankVal[w]; i < rankVal[w] + length; i++)
1601
25.6k
            dt[i] = D;
1602
9.02k
        rankVal[w] += length;
1603
9.02k
    }
1604
1605
130
    return iSize;
1606
132
}
1607
1608
static BYTE HUF_decodeSymbolX2(BIT_DStream_t* Dstream, const HUF_DEltX2* dt, const U32 dtLog)
1609
4.49M
{
1610
4.49M
        const size_t val = BIT_lookBitsFast(Dstream, dtLog); /* note : dtLog >= 1 */
1611
4.49M
        const BYTE c = dt[val].byte;
1612
4.49M
        BIT_skipBits(Dstream, dt[val].nbBits);
1613
4.49M
        return c;
1614
4.49M
}
1615
1616
#define HUF_DECODE_SYMBOLX2_0(ptr, DStreamPtr) \
1617
4.49M
    *ptr++ = HUF_decodeSymbolX2(DStreamPtr, dt, dtLog)
1618
1619
#define HUF_DECODE_SYMBOLX2_1(ptr, DStreamPtr) \
1620
226k
    if (MEM_64bits() || (HUF_MAX_TABLELOG<=12)) \
1621
226k
        HUF_DECODE_SYMBOLX2_0(ptr, DStreamPtr)
1622
1623
#define HUF_DECODE_SYMBOLX2_2(ptr, DStreamPtr) \
1624
453k
    if (MEM_64bits()) \
1625
453k
        HUF_DECODE_SYMBOLX2_0(ptr, DStreamPtr)
1626
1627
static inline size_t HUF_decodeStreamX2(BYTE* p, BIT_DStream_t* const bitDPtr, BYTE* const pEnd, const HUF_DEltX2* const dt, const U32 dtLog)
1628
336
{
1629
336
    BYTE* const pStart = p;
1630
1631
    /* up to 4 symbols at a time */
1632
104k
    while ((BIT_reloadDStream(bitDPtr) == BIT_DStream_unfinished) && (p <= pEnd-4))
1633
104k
    {
1634
104k
        HUF_DECODE_SYMBOLX2_2(p, bitDPtr);
1635
104k
        HUF_DECODE_SYMBOLX2_1(p, bitDPtr);
1636
104k
        HUF_DECODE_SYMBOLX2_2(p, bitDPtr);
1637
104k
        HUF_DECODE_SYMBOLX2_0(p, bitDPtr);
1638
104k
    }
1639
1640
    /* closer to the end */
1641
451
    while ((BIT_reloadDStream(bitDPtr) == BIT_DStream_unfinished) && (p < pEnd))
1642
115
        HUF_DECODE_SYMBOLX2_0(p, bitDPtr);
1643
1644
    /* no more data to retrieve from bitstream, hence no need to reload */
1645
3.58M
    while (p < pEnd)
1646
3.58M
        HUF_DECODE_SYMBOLX2_0(p, bitDPtr);
1647
1648
336
    return pEnd-pStart;
1649
336
}
1650
1651
1652
static size_t HUF_decompress4X2_usingDTable(
1653
          void* dst,  size_t dstSize,
1654
    const void* cSrc, size_t cSrcSize,
1655
    const U16* DTable)
1656
122
{
1657
122
    if (cSrcSize < 10) return ERROR(corruption_detected);   /* strict minimum : jump table + 1 byte per stream */
1658
1659
108
    {
1660
108
        const BYTE* const istart = (const BYTE*) cSrc;
1661
108
        BYTE* const ostart = (BYTE*) dst;
1662
108
        BYTE* const oend = ostart + dstSize;
1663
1664
108
        const void* ptr = DTable;
1665
108
        const HUF_DEltX2* const dt = ((const HUF_DEltX2*)ptr) +1;
1666
108
        const U32 dtLog = DTable[0];
1667
108
        size_t errorCode;
1668
1669
        /* Init */
1670
108
        BIT_DStream_t bitD1;
1671
108
        BIT_DStream_t bitD2;
1672
108
        BIT_DStream_t bitD3;
1673
108
        BIT_DStream_t bitD4;
1674
108
        const size_t length1 = MEM_readLE16(istart);
1675
108
        const size_t length2 = MEM_readLE16(istart+2);
1676
108
        const size_t length3 = MEM_readLE16(istart+4);
1677
108
        size_t length4;
1678
108
        const BYTE* const istart1 = istart + 6;  /* jumpTable */
1679
108
        const BYTE* const istart2 = istart1 + length1;
1680
108
        const BYTE* const istart3 = istart2 + length2;
1681
108
        const BYTE* const istart4 = istart3 + length3;
1682
108
        const size_t segmentSize = (dstSize+3) / 4;
1683
108
        BYTE* const opStart2 = ostart + segmentSize;
1684
108
        BYTE* const opStart3 = opStart2 + segmentSize;
1685
108
        BYTE* const opStart4 = opStart3 + segmentSize;
1686
108
        BYTE* op1 = ostart;
1687
108
        BYTE* op2 = opStart2;
1688
108
        BYTE* op3 = opStart3;
1689
108
        BYTE* op4 = opStart4;
1690
108
        U32 endSignal;
1691
1692
108
        length4 = cSrcSize - (length1 + length2 + length3 + 6);
1693
108
        if (length4 > cSrcSize) return ERROR(corruption_detected);   /* overflow */
1694
104
        errorCode = BIT_initDStream(&bitD1, istart1, length1);
1695
104
        if (HUF_isError(errorCode)) return errorCode;
1696
100
        errorCode = BIT_initDStream(&bitD2, istart2, length2);
1697
100
        if (HUF_isError(errorCode)) return errorCode;
1698
93
        errorCode = BIT_initDStream(&bitD3, istart3, length3);
1699
93
        if (HUF_isError(errorCode)) return errorCode;
1700
89
        errorCode = BIT_initDStream(&bitD4, istart4, length4);
1701
89
        if (HUF_isError(errorCode)) return errorCode;
1702
1703
        /* 16-32 symbols per loop (4-8 symbols per stream) */
1704
84
        endSignal = BIT_reloadDStream(&bitD1) | BIT_reloadDStream(&bitD2) | BIT_reloadDStream(&bitD3) | BIT_reloadDStream(&bitD4);
1705
30.6k
        for ( ; (endSignal==BIT_DStream_unfinished) && (op4<(oend-7)) ; )
1706
30.5k
        {
1707
30.5k
            HUF_DECODE_SYMBOLX2_2(op1, &bitD1);
1708
30.5k
            HUF_DECODE_SYMBOLX2_2(op2, &bitD2);
1709
30.5k
            HUF_DECODE_SYMBOLX2_2(op3, &bitD3);
1710
30.5k
            HUF_DECODE_SYMBOLX2_2(op4, &bitD4);
1711
30.5k
            HUF_DECODE_SYMBOLX2_1(op1, &bitD1);
1712
30.5k
            HUF_DECODE_SYMBOLX2_1(op2, &bitD2);
1713
30.5k
            HUF_DECODE_SYMBOLX2_1(op3, &bitD3);
1714
30.5k
            HUF_DECODE_SYMBOLX2_1(op4, &bitD4);
1715
30.5k
            HUF_DECODE_SYMBOLX2_2(op1, &bitD1);
1716
30.5k
            HUF_DECODE_SYMBOLX2_2(op2, &bitD2);
1717
30.5k
            HUF_DECODE_SYMBOLX2_2(op3, &bitD3);
1718
30.5k
            HUF_DECODE_SYMBOLX2_2(op4, &bitD4);
1719
30.5k
            HUF_DECODE_SYMBOLX2_0(op1, &bitD1);
1720
30.5k
            HUF_DECODE_SYMBOLX2_0(op2, &bitD2);
1721
30.5k
            HUF_DECODE_SYMBOLX2_0(op3, &bitD3);
1722
30.5k
            HUF_DECODE_SYMBOLX2_0(op4, &bitD4);
1723
1724
30.5k
            endSignal = BIT_reloadDStream(&bitD1) | BIT_reloadDStream(&bitD2) | BIT_reloadDStream(&bitD3) | BIT_reloadDStream(&bitD4);
1725
30.5k
        }
1726
1727
        /* check corruption */
1728
84
        if (op1 > opStart2) return ERROR(corruption_detected);
1729
84
        if (op2 > opStart3) return ERROR(corruption_detected);
1730
84
        if (op3 > opStart4) return ERROR(corruption_detected);
1731
        /* note : op4 supposed already verified within main loop */
1732
1733
        /* finish bitStreams one by one */
1734
84
        HUF_decodeStreamX2(op1, &bitD1, opStart2, dt, dtLog);
1735
84
        HUF_decodeStreamX2(op2, &bitD2, opStart3, dt, dtLog);
1736
84
        HUF_decodeStreamX2(op3, &bitD3, opStart4, dt, dtLog);
1737
84
        HUF_decodeStreamX2(op4, &bitD4, oend,     dt, dtLog);
1738
1739
        /* check */
1740
84
        endSignal = BIT_endOfDStream(&bitD1) & BIT_endOfDStream(&bitD2) & BIT_endOfDStream(&bitD3) & BIT_endOfDStream(&bitD4);
1741
84
        if (!endSignal) return ERROR(corruption_detected);
1742
1743
        /* decoded size */
1744
1
        return dstSize;
1745
84
    }
1746
84
}
1747
1748
1749
static size_t HUF_decompress4X2 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize)
1750
326
{
1751
326
    HUF_CREATE_STATIC_DTABLEX2(DTable, HUF_MAX_TABLELOG);
1752
326
    const BYTE* ip = (const BYTE*) cSrc;
1753
326
    size_t errorCode;
1754
1755
326
    errorCode = HUF_readDTableX2 (DTable, cSrc, cSrcSize);
1756
326
    if (HUF_isError(errorCode)) return errorCode;
1757
130
    if (errorCode >= cSrcSize) return ERROR(srcSize_wrong);
1758
122
    ip += errorCode;
1759
122
    cSrcSize -= errorCode;
1760
1761
122
    return HUF_decompress4X2_usingDTable (dst, dstSize, ip, cSrcSize, DTable);
1762
130
}
1763
1764
1765
/***************************/
1766
/* double-symbols decoding */
1767
/***************************/
1768
1769
static void HUF_fillDTableX4Level2(HUF_DEltX4* DTable, U32 sizeLog, const U32 consumed,
1770
                           const U32* rankValOrigin, const int minWeight,
1771
                           const sortedSymbol_t* sortedSymbols, const U32 sortedListSize,
1772
                           U32 nbBitsBaseline, U16 baseSeq)
1773
4.03k
{
1774
4.03k
    HUF_DEltX4 DElt;
1775
4.03k
    U32 rankVal[HUF_ABSOLUTEMAX_TABLELOG + 1];
1776
4.03k
    U32 s;
1777
1778
    /* get pre-calculated rankVal */
1779
4.03k
    memcpy(rankVal, rankValOrigin, sizeof(rankVal));
1780
1781
    /* fill skipped values */
1782
4.03k
    if (minWeight>1)
1783
3.62k
    {
1784
3.62k
        U32 i, skipSize = rankVal[minWeight];
1785
3.62k
        MEM_writeLE16(&(DElt.sequence), baseSeq);
1786
3.62k
        DElt.nbBits   = (BYTE)(consumed);
1787
3.62k
        DElt.length   = 1;
1788
40.4k
        for (i = 0; i < skipSize; i++)
1789
36.8k
            DTable[i] = DElt;
1790
3.62k
    }
1791
1792
    /* fill DTable */
1793
33.0k
    for (s=0; s<sortedListSize; s++)   /* note : sortedSymbols already skipped */
1794
29.0k
    {
1795
29.0k
        const U32 symbol = sortedSymbols[s].symbol;
1796
29.0k
        const U32 weight = sortedSymbols[s].weight;
1797
29.0k
        const U32 nbBits = nbBitsBaseline - weight;
1798
29.0k
        const U32 length = 1 << (sizeLog-nbBits);
1799
29.0k
        const U32 start = rankVal[weight];
1800
29.0k
        U32 i = start;
1801
29.0k
        const U32 end = start + length;
1802
1803
29.0k
        MEM_writeLE16(&(DElt.sequence), (U16)(baseSeq + (symbol << 8)));
1804
29.0k
        DElt.nbBits = (BYTE)(nbBits + consumed);
1805
29.0k
        DElt.length = 2;
1806
296k
        do { DTable[i++] = DElt; } while (i<end);   /* since length >= 1 */
1807
1808
29.0k
        rankVal[weight] += length;
1809
29.0k
    }
1810
4.03k
}
1811
1812
typedef U32 rankVal_t[HUF_ABSOLUTEMAX_TABLELOG][HUF_ABSOLUTEMAX_TABLELOG + 1];
1813
1814
static void HUF_fillDTableX4(HUF_DEltX4* DTable, const U32 targetLog,
1815
                           const sortedSymbol_t* sortedList, const U32 sortedListSize,
1816
                           const U32* rankStart, rankVal_t rankValOrigin, const U32 maxWeight,
1817
                           const U32 nbBitsBaseline)
1818
88
{
1819
88
    U32 rankVal[HUF_ABSOLUTEMAX_TABLELOG + 1];
1820
88
    const int scaleLog = nbBitsBaseline - targetLog;   /* note : targetLog >= srcLog, hence scaleLog <= 1 */
1821
88
    const U32 minBits  = nbBitsBaseline - maxWeight;
1822
88
    U32 s;
1823
1824
88
    memcpy(rankVal, rankValOrigin, sizeof(rankVal));
1825
1826
    /* fill DTable */
1827
5.60k
    for (s=0; s<sortedListSize; s++)
1828
5.52k
    {
1829
5.52k
        const U16 symbol = sortedList[s].symbol;
1830
5.52k
        const U32 weight = sortedList[s].weight;
1831
5.52k
        const U32 nbBits = nbBitsBaseline - weight;
1832
5.52k
        const U32 start = rankVal[weight];
1833
5.52k
        const U32 length = 1 << (targetLog-nbBits);
1834
1835
5.52k
        if (targetLog-nbBits >= minBits)   /* enough room for a second symbol */
1836
4.03k
        {
1837
4.03k
            U32 sortedRank;
1838
4.03k
            int minWeight = nbBits + scaleLog;
1839
4.03k
            if (minWeight < 1) minWeight = 1;
1840
4.03k
            sortedRank = rankStart[minWeight];
1841
4.03k
            HUF_fillDTableX4Level2(DTable+start, targetLog-nbBits, nbBits,
1842
4.03k
                           rankValOrigin[nbBits], minWeight,
1843
4.03k
                           sortedList+sortedRank, sortedListSize-sortedRank,
1844
4.03k
                           nbBitsBaseline, symbol);
1845
4.03k
        }
1846
1.48k
        else
1847
1.48k
        {
1848
1.48k
            U32 i;
1849
1.48k
            const U32 end = start + length;
1850
1.48k
            HUF_DEltX4 DElt;
1851
1852
1.48k
            MEM_writeLE16(&(DElt.sequence), symbol);
1853
1.48k
            DElt.nbBits   = (BYTE)(nbBits);
1854
1.48k
            DElt.length   = 1;
1855
28.6k
            for (i = start; i < end; i++)
1856
27.1k
                DTable[i] = DElt;
1857
1.48k
        }
1858
5.52k
        rankVal[weight] += length;
1859
5.52k
    }
1860
88
}
1861
1862
static size_t HUF_readDTableX4 (U32* DTable, const void* src, size_t srcSize)
1863
93
{
1864
93
    BYTE weightList[HUF_MAX_SYMBOL_VALUE + 1];
1865
93
    sortedSymbol_t sortedSymbol[HUF_MAX_SYMBOL_VALUE + 1];
1866
93
    U32 rankStats[HUF_ABSOLUTEMAX_TABLELOG + 1] = { 0 };
1867
93
    U32 rankStart0[HUF_ABSOLUTEMAX_TABLELOG + 2] = { 0 };
1868
93
    U32* const rankStart = rankStart0+1;
1869
93
    rankVal_t rankVal;
1870
93
    U32 tableLog, maxW, sizeOfSort, nbSymbols;
1871
93
    const U32 memLog = DTable[0];
1872
93
    const BYTE* ip = (const BYTE*) src;
1873
93
    size_t iSize = ip[0];
1874
93
    void* ptr = DTable;
1875
93
    HUF_DEltX4* const dt = ((HUF_DEltX4*)ptr) + 1;
1876
1877
93
    HUF_STATIC_ASSERT(sizeof(HUF_DEltX4) == sizeof(U32));   /* if compilation fails here, assertion is false */
1878
93
    if (memLog > HUF_ABSOLUTEMAX_TABLELOG) return ERROR(tableLog_tooLarge);
1879
    //memset(weightList, 0, sizeof(weightList));   /* is not necessary, even though some analyzer complain ... */
1880
1881
93
    iSize = HUF_readStats(weightList, HUF_MAX_SYMBOL_VALUE + 1, rankStats, &nbSymbols, &tableLog, src, srcSize);
1882
93
    if (HUF_isError(iSize)) return iSize;
1883
1884
    /* check result */
1885
89
    if (tableLog > memLog) return ERROR(tableLog_tooLarge);   /* DTable can't fit code depth */
1886
1887
    /* find maxWeight */
1888
175
    for (maxW = tableLog; rankStats[maxW]==0; maxW--)
1889
87
        { if (!maxW) return ERROR(GENERIC); }  /* necessarily finds a solution before maxW==0 */
1890
1891
    /* Get start index of each weight */
1892
88
    {
1893
88
        U32 w, nextRankStart = 0;
1894
616
        for (w=1; w<=maxW; w++)
1895
528
        {
1896
528
            U32 current = nextRankStart;
1897
528
            nextRankStart += rankStats[w];
1898
528
            rankStart[w] = current;
1899
528
        }
1900
88
        rankStart[0] = nextRankStart;   /* put all 0w symbols at the end of sorted list*/
1901
88
        sizeOfSort = nextRankStart;
1902
88
    }
1903
1904
    /* sort symbols by weight */
1905
88
    {
1906
88
        U32 s;
1907
7.69k
        for (s=0; s<nbSymbols; s++)
1908
7.61k
        {
1909
7.61k
            U32 w = weightList[s];
1910
7.61k
            U32 r = rankStart[w]++;
1911
7.61k
            sortedSymbol[r].symbol = (BYTE)s;
1912
7.61k
            sortedSymbol[r].weight = (BYTE)w;
1913
7.61k
        }
1914
88
        rankStart[0] = 0;   /* forget 0w symbols; this is beginning of weight(1) */
1915
88
    }
1916
1917
    /* Build rankVal */
1918
88
    {
1919
88
        const U32 minBits = tableLog+1 - maxW;
1920
88
        U32 nextRankVal = 0;
1921
88
        U32 w, consumed;
1922
88
        const int rescale = (memLog-tableLog) - 1;   /* tableLog <= memLog */
1923
88
        U32* rankVal0 = rankVal[0];
1924
616
        for (w=1; w<=maxW; w++)
1925
528
        {
1926
528
            U32 current = nextRankVal;
1927
528
            nextRankVal += rankStats[w] << (w+rescale);
1928
528
            rankVal0[w] = current;
1929
528
        }
1930
884
        for (consumed = minBits; consumed <= memLog - minBits; consumed++)
1931
796
        {
1932
796
            U32* rankValPtr = rankVal[consumed];
1933
6.05k
            for (w = 1; w <= maxW; w++)
1934
5.26k
            {
1935
5.26k
                rankValPtr[w] = rankVal0[w] >> consumed;
1936
5.26k
            }
1937
796
        }
1938
88
    }
1939
1940
88
    HUF_fillDTableX4(dt, memLog,
1941
88
                   sortedSymbol, sizeOfSort,
1942
88
                   rankStart0, rankVal, maxW,
1943
88
                   tableLog+1);
1944
1945
88
    return iSize;
1946
88
}
1947
1948
1949
static U32 HUF_decodeSymbolX4(void* op, BIT_DStream_t* DStream, const HUF_DEltX4* dt, const U32 dtLog)
1950
661k
{
1951
661k
    const size_t val = BIT_lookBitsFast(DStream, dtLog);   /* note : dtLog >= 1 */
1952
661k
    memcpy(op, dt+val, 2);
1953
661k
    BIT_skipBits(DStream, dt[val].nbBits);
1954
661k
    return dt[val].length;
1955
661k
}
1956
1957
static U32 HUF_decodeLastSymbolX4(void* op, BIT_DStream_t* DStream, const HUF_DEltX4* dt, const U32 dtLog)
1958
132
{
1959
132
    const size_t val = BIT_lookBitsFast(DStream, dtLog);   /* note : dtLog >= 1 */
1960
132
    memcpy(op, dt+val, 1);
1961
132
    if (dt[val].length==1) BIT_skipBits(DStream, dt[val].nbBits);
1962
102
    else
1963
102
    {
1964
102
        if (DStream->bitsConsumed < (sizeof(DStream->bitContainer)*8))
1965
47
        {
1966
47
            BIT_skipBits(DStream, dt[val].nbBits);
1967
47
            if (DStream->bitsConsumed > (sizeof(DStream->bitContainer)*8))
1968
11
                DStream->bitsConsumed = (sizeof(DStream->bitContainer)*8);   /* ugly hack; works only because it's the last symbol. Note : can't easily extract nbBits from just this symbol */
1969
47
        }
1970
102
    }
1971
132
    return 1;
1972
132
}
1973
1974
1975
#define HUF_DECODE_SYMBOLX4_0(ptr, DStreamPtr) \
1976
349k
    ptr += HUF_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog)
1977
1978
#define HUF_DECODE_SYMBOLX4_1(ptr, DStreamPtr) \
1979
103k
    if (MEM_64bits() || (HUF_MAX_TABLELOG<=12)) \
1980
103k
        ptr += HUF_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog)
1981
1982
#define HUF_DECODE_SYMBOLX4_2(ptr, DStreamPtr) \
1983
207k
    if (MEM_64bits()) \
1984
207k
        ptr += HUF_decodeSymbolX4(ptr, DStreamPtr, dt, dtLog)
1985
1986
static inline size_t HUF_decodeStreamX4(BYTE* p, BIT_DStream_t* bitDPtr, BYTE* const pEnd, const HUF_DEltX4* const dt, const U32 dtLog)
1987
188
{
1988
188
    BYTE* const pStart = p;
1989
1990
    /* up to 8 symbols at a time */
1991
69.3k
    while ((BIT_reloadDStream(bitDPtr) == BIT_DStream_unfinished) && (p < pEnd-7))
1992
69.1k
    {
1993
69.1k
        HUF_DECODE_SYMBOLX4_2(p, bitDPtr);
1994
69.1k
        HUF_DECODE_SYMBOLX4_1(p, bitDPtr);
1995
69.1k
        HUF_DECODE_SYMBOLX4_2(p, bitDPtr);
1996
69.1k
        HUF_DECODE_SYMBOLX4_0(p, bitDPtr);
1997
69.1k
    }
1998
1999
    /* closer to the end */
2000
305
    while ((BIT_reloadDStream(bitDPtr) == BIT_DStream_unfinished) && (p <= pEnd-2))
2001
117
        HUF_DECODE_SYMBOLX4_0(p, bitDPtr);
2002
2003
246k
    while (p <= pEnd-2)
2004
245k
        HUF_DECODE_SYMBOLX4_0(p, bitDPtr);   /* no need to reload : reached the end of DStream */
2005
2006
188
    if (p < pEnd)
2007
132
        p += HUF_decodeLastSymbolX4(p, bitDPtr, dt, dtLog);
2008
2009
188
    return p-pStart;
2010
188
}
2011
2012
2013
2014
static size_t HUF_decompress4X4_usingDTable(
2015
          void* dst,  size_t dstSize,
2016
    const void* cSrc, size_t cSrcSize,
2017
    const U32* DTable)
2018
88
{
2019
88
    if (cSrcSize < 10) return ERROR(corruption_detected);   /* strict minimum : jump table + 1 byte per stream */
2020
2021
88
    {
2022
88
        const BYTE* const istart = (const BYTE*) cSrc;
2023
88
        BYTE* const ostart = (BYTE*) dst;
2024
88
        BYTE* const oend = ostart + dstSize;
2025
2026
88
        const void* ptr = DTable;
2027
88
        const HUF_DEltX4* const dt = ((const HUF_DEltX4*)ptr) +1;
2028
88
        const U32 dtLog = DTable[0];
2029
88
        size_t errorCode;
2030
2031
        /* Init */
2032
88
        BIT_DStream_t bitD1;
2033
88
        BIT_DStream_t bitD2;
2034
88
        BIT_DStream_t bitD3;
2035
88
        BIT_DStream_t bitD4;
2036
88
        const size_t length1 = MEM_readLE16(istart);
2037
88
        const size_t length2 = MEM_readLE16(istart+2);
2038
88
        const size_t length3 = MEM_readLE16(istart+4);
2039
88
        size_t length4;
2040
88
        const BYTE* const istart1 = istart + 6;  /* jumpTable */
2041
88
        const BYTE* const istart2 = istart1 + length1;
2042
88
        const BYTE* const istart3 = istart2 + length2;
2043
88
        const BYTE* const istart4 = istart3 + length3;
2044
88
        const size_t segmentSize = (dstSize+3) / 4;
2045
88
        BYTE* const opStart2 = ostart + segmentSize;
2046
88
        BYTE* const opStart3 = opStart2 + segmentSize;
2047
88
        BYTE* const opStart4 = opStart3 + segmentSize;
2048
88
        BYTE* op1 = ostart;
2049
88
        BYTE* op2 = opStart2;
2050
88
        BYTE* op3 = opStart3;
2051
88
        BYTE* op4 = opStart4;
2052
88
        U32 endSignal;
2053
2054
88
        length4 = cSrcSize - (length1 + length2 + length3 + 6);
2055
88
        if (length4 > cSrcSize) return ERROR(corruption_detected);   /* overflow */
2056
70
        errorCode = BIT_initDStream(&bitD1, istart1, length1);
2057
70
        if (HUF_isError(errorCode)) return errorCode;
2058
63
        errorCode = BIT_initDStream(&bitD2, istart2, length2);
2059
63
        if (HUF_isError(errorCode)) return errorCode;
2060
56
        errorCode = BIT_initDStream(&bitD3, istart3, length3);
2061
56
        if (HUF_isError(errorCode)) return errorCode;
2062
51
        errorCode = BIT_initDStream(&bitD4, istart4, length4);
2063
51
        if (HUF_isError(errorCode)) return errorCode;
2064
2065
        /* 16-32 symbols per loop (4-8 symbols per stream) */
2066
48
        endSignal = BIT_reloadDStream(&bitD1) | BIT_reloadDStream(&bitD2) | BIT_reloadDStream(&bitD3) | BIT_reloadDStream(&bitD4);
2067
8.73k
        for ( ; (endSignal==BIT_DStream_unfinished) && (op4<(oend-7)) ; )
2068
8.69k
        {
2069
8.69k
            HUF_DECODE_SYMBOLX4_2(op1, &bitD1);
2070
8.69k
            HUF_DECODE_SYMBOLX4_2(op2, &bitD2);
2071
8.69k
            HUF_DECODE_SYMBOLX4_2(op3, &bitD3);
2072
8.69k
            HUF_DECODE_SYMBOLX4_2(op4, &bitD4);
2073
8.69k
            HUF_DECODE_SYMBOLX4_1(op1, &bitD1);
2074
8.69k
            HUF_DECODE_SYMBOLX4_1(op2, &bitD2);
2075
8.69k
            HUF_DECODE_SYMBOLX4_1(op3, &bitD3);
2076
8.69k
            HUF_DECODE_SYMBOLX4_1(op4, &bitD4);
2077
8.69k
            HUF_DECODE_SYMBOLX4_2(op1, &bitD1);
2078
8.69k
            HUF_DECODE_SYMBOLX4_2(op2, &bitD2);
2079
8.69k
            HUF_DECODE_SYMBOLX4_2(op3, &bitD3);
2080
8.69k
            HUF_DECODE_SYMBOLX4_2(op4, &bitD4);
2081
8.69k
            HUF_DECODE_SYMBOLX4_0(op1, &bitD1);
2082
8.69k
            HUF_DECODE_SYMBOLX4_0(op2, &bitD2);
2083
8.69k
            HUF_DECODE_SYMBOLX4_0(op3, &bitD3);
2084
8.69k
            HUF_DECODE_SYMBOLX4_0(op4, &bitD4);
2085
2086
8.69k
            endSignal = BIT_reloadDStream(&bitD1) | BIT_reloadDStream(&bitD2) | BIT_reloadDStream(&bitD3) | BIT_reloadDStream(&bitD4);
2087
8.69k
        }
2088
2089
        /* check corruption */
2090
48
        if (op1 > opStart2) return ERROR(corruption_detected);
2091
48
        if (op2 > opStart3) return ERROR(corruption_detected);
2092
47
        if (op3 > opStart4) return ERROR(corruption_detected);
2093
        /* note : op4 supposed already verified within main loop */
2094
2095
        /* finish bitStreams one by one */
2096
47
        HUF_decodeStreamX4(op1, &bitD1, opStart2, dt, dtLog);
2097
47
        HUF_decodeStreamX4(op2, &bitD2, opStart3, dt, dtLog);
2098
47
        HUF_decodeStreamX4(op3, &bitD3, opStart4, dt, dtLog);
2099
47
        HUF_decodeStreamX4(op4, &bitD4, oend,     dt, dtLog);
2100
2101
        /* check */
2102
47
        endSignal = BIT_endOfDStream(&bitD1) & BIT_endOfDStream(&bitD2) & BIT_endOfDStream(&bitD3) & BIT_endOfDStream(&bitD4);
2103
47
        if (!endSignal) return ERROR(corruption_detected);
2104
2105
        /* decoded size */
2106
1
        return dstSize;
2107
47
    }
2108
47
}
2109
2110
2111
static size_t HUF_decompress4X4 (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize)
2112
93
{
2113
93
    HUF_CREATE_STATIC_DTABLEX4(DTable, HUF_MAX_TABLELOG);
2114
93
    const BYTE* ip = (const BYTE*) cSrc;
2115
2116
93
    size_t hSize = HUF_readDTableX4 (DTable, cSrc, cSrcSize);
2117
93
    if (HUF_isError(hSize)) return hSize;
2118
88
    if (hSize >= cSrcSize) return ERROR(srcSize_wrong);
2119
88
    ip += hSize;
2120
88
    cSrcSize -= hSize;
2121
2122
88
    return HUF_decompress4X4_usingDTable (dst, dstSize, ip, cSrcSize, DTable);
2123
88
}
2124
2125
2126
/**********************************/
2127
/* Generic decompression selector */
2128
/**********************************/
2129
2130
typedef struct { U32 tableTime; U32 decode256Time; } algo_time_t;
2131
static const algo_time_t algoTime[16 /* Quantization */][3 /* single, double, quad */] =
2132
{
2133
    /* single, double, quad */
2134
    {{0,0}, {1,1}, {2,2}},  /* Q==0 : impossible */
2135
    {{0,0}, {1,1}, {2,2}},  /* Q==1 : impossible */
2136
    {{  38,130}, {1313, 74}, {2151, 38}},   /* Q == 2 : 12-18% */
2137
    {{ 448,128}, {1353, 74}, {2238, 41}},   /* Q == 3 : 18-25% */
2138
    {{ 556,128}, {1353, 74}, {2238, 47}},   /* Q == 4 : 25-32% */
2139
    {{ 714,128}, {1418, 74}, {2436, 53}},   /* Q == 5 : 32-38% */
2140
    {{ 883,128}, {1437, 74}, {2464, 61}},   /* Q == 6 : 38-44% */
2141
    {{ 897,128}, {1515, 75}, {2622, 68}},   /* Q == 7 : 44-50% */
2142
    {{ 926,128}, {1613, 75}, {2730, 75}},   /* Q == 8 : 50-56% */
2143
    {{ 947,128}, {1729, 77}, {3359, 77}},   /* Q == 9 : 56-62% */
2144
    {{1107,128}, {2083, 81}, {4006, 84}},   /* Q ==10 : 62-69% */
2145
    {{1177,128}, {2379, 87}, {4785, 88}},   /* Q ==11 : 69-75% */
2146
    {{1242,128}, {2415, 93}, {5155, 84}},   /* Q ==12 : 75-81% */
2147
    {{1349,128}, {2644,106}, {5260,106}},   /* Q ==13 : 81-87% */
2148
    {{1455,128}, {2422,124}, {4174,124}},   /* Q ==14 : 87-93% */
2149
    {{ 722,128}, {1891,145}, {1936,146}},   /* Q ==15 : 93-99% */
2150
};
2151
2152
typedef size_t (*decompressionAlgo)(void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize);
2153
2154
static size_t HUF_decompress (void* dst, size_t dstSize, const void* cSrc, size_t cSrcSize)
2155
438
{
2156
438
    static const decompressionAlgo decompress[3] = { HUF_decompress4X2, HUF_decompress4X4, NULL };
2157
    /* estimate decompression time */
2158
438
    U32 Q;
2159
438
    const U32 D256 = (U32)(dstSize >> 8);
2160
438
    U32 Dtime[3];
2161
438
    U32 algoNb = 0;
2162
438
    int n;
2163
2164
    /* validation checks */
2165
438
    if (dstSize == 0) return ERROR(dstSize_tooSmall);
2166
436
    if (cSrcSize > dstSize) return ERROR(corruption_detected);   /* invalid */
2167
427
    if (cSrcSize == dstSize) { memcpy(dst, cSrc, dstSize); return dstSize; }   /* not compressed */
2168
424
    if (cSrcSize == 1) { memset(dst, *(const BYTE*)cSrc, dstSize); return dstSize; }   /* RLE */
2169
2170
    /* decoder timing evaluation */
2171
419
    Q = (U32)(cSrcSize * 16 / dstSize);   /* Q < 16 since dstSize > cSrcSize */
2172
1.67k
    for (n=0; n<3; n++)
2173
1.25k
        Dtime[n] = algoTime[Q][n].tableTime + (algoTime[Q][n].decode256Time * D256);
2174
2175
419
    Dtime[1] += Dtime[1] >> 4; Dtime[2] += Dtime[2] >> 3; /* advantage to algorithms using less memory, for cache eviction */
2176
2177
419
    if (Dtime[1] < Dtime[0]) algoNb = 1;
2178
2179
419
    return decompress[algoNb](dst, dstSize, cSrc, cSrcSize);
2180
2181
    //return HUF_decompress4X2(dst, dstSize, cSrc, cSrcSize);   /* multi-streams single-symbol decoding */
2182
    //return HUF_decompress4X4(dst, dstSize, cSrc, cSrcSize);   /* multi-streams double-symbols decoding */
2183
    //return HUF_decompress4X6(dst, dstSize, cSrc, cSrcSize);   /* multi-streams quad-symbols decoding */
2184
424
}
2185
/*
2186
    zstd - standard compression library
2187
    Copyright (C) 2014-2015, Yann Collet.
2188
2189
    BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
2190
2191
    Redistribution and use in source and binary forms, with or without
2192
    modification, are permitted provided that the following conditions are
2193
    met:
2194
    * Redistributions of source code must retain the above copyright
2195
    notice, this list of conditions and the following disclaimer.
2196
    * Redistributions in binary form must reproduce the above
2197
    copyright notice, this list of conditions and the following disclaimer
2198
    in the documentation and/or other materials provided with the
2199
    distribution.
2200
    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
2201
    "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
2202
    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
2203
    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
2204
    OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
2205
    SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
2206
    LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
2207
    DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
2208
    THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
2209
    (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
2210
    OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
2211
2212
    You can contact the author at :
2213
    - zstd source repository : https://github.com/Cyan4973/zstd
2214
    - ztsd public forum : https://groups.google.com/forum/#!forum/lz4c
2215
*/
2216
2217
/* ***************************************************************
2218
*  Tuning parameters
2219
*****************************************************************/
2220
/*!
2221
*  MEMORY_USAGE :
2222
*  Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.)
2223
*  Increasing memory usage improves compression ratio
2224
*  Reduced memory usage can improve speed, due to cache effect
2225
*/
2226
#define ZSTD_MEMORY_USAGE 17
2227
2228
/*!
2229
 * HEAPMODE :
2230
 * Select how default compression functions will allocate memory for their hash table,
2231
 * in memory stack (0, fastest), or in memory heap (1, requires malloc())
2232
 * Note that compression context is fairly large, as a consequence heap memory is recommended.
2233
 */
2234
#ifndef ZSTD_HEAPMODE
2235
#  define ZSTD_HEAPMODE 1
2236
#endif /* ZSTD_HEAPMODE */
2237
2238
/*!
2239
*  LEGACY_SUPPORT :
2240
*  decompressor can decode older formats (starting from Zstd 0.1+)
2241
*/
2242
#ifndef ZSTD_LEGACY_SUPPORT
2243
#  define ZSTD_LEGACY_SUPPORT 1
2244
#endif
2245
2246
2247
/* *******************************************************
2248
*  Includes
2249
*********************************************************/
2250
#include <stdlib.h>      /* calloc */
2251
#include <string.h>      /* memcpy, memmove */
2252
#include <stdio.h>       /* debug : printf */
2253
2254
2255
/* *******************************************************
2256
*  Compiler specifics
2257
*********************************************************/
2258
#ifdef __AVX2__
2259
#  include <immintrin.h>   /* AVX2 intrinsics */
2260
#endif
2261
2262
#ifdef _MSC_VER    /* Visual Studio */
2263
#  include <intrin.h>                    /* For Visual 2005 */
2264
#  pragma warning(disable : 4127)        /* disable: C4127: conditional expression is constant */
2265
#  pragma warning(disable : 4324)        /* disable: C4324: padded structure */
2266
#else
2267
#  define GCC_VERSION (__GNUC__ * 100 + __GNUC_MINOR__)
2268
#endif
2269
2270
2271
/* *******************************************************
2272
*  Constants
2273
*********************************************************/
2274
#define HASH_LOG (ZSTD_MEMORY_USAGE - 2)
2275
#define HASH_TABLESIZE (1 << HASH_LOG)
2276
#define HASH_MASK (HASH_TABLESIZE - 1)
2277
2278
#define KNUTH 2654435761
2279
2280
#define BIT7 128
2281
#define BIT6  64
2282
#define BIT5  32
2283
#define BIT4  16
2284
596
#define BIT1   2
2285
2.07k
#define BIT0   1
2286
2287
2.97k
#define KB *(1 <<10)
2288
#define MB *(1 <<20)
2289
#define GB *(1U<<30)
2290
2291
2.97k
#define BLOCKSIZE (128 KB)                 /* define, for static allocation */
2292
3.46k
#define MIN_SEQUENCES_SIZE (2 /*seqNb*/ + 2 /*dumps*/ + 3 /*seqTables*/ + 1 /*bitStream*/)
2293
3.46k
#define MIN_CBLOCK_SIZE (3 /*litCSize*/ + MIN_SEQUENCES_SIZE)
2294
2.07k
#define IS_RAW BIT0
2295
596
#define IS_RLE BIT1
2296
2297
#define WORKPLACESIZE (BLOCKSIZE*3)
2298
20.6k
#define MINMATCH 4
2299
13.6k
#define MLbits   7
2300
14.4k
#define LLbits   6
2301
2.55k
#define Offbits  5
2302
10.8k
#define MaxML  ((1<<MLbits )-1)
2303
11.3k
#define MaxLL  ((1<<LLbits )-1)
2304
1.30k
#define MaxOff   31
2305
#define LitFSELog  11
2306
413
#define MLFSELog   10
2307
922
#define LLFSELog   10
2308
445
#define OffFSELog   9
2309
#define MAX(a,b) ((a)<(b)?(b):(a))
2310
#define MaxSeq MAX(MaxLL, MaxML)
2311
2312
#define LITERAL_NOENTROPY 63
2313
#define COMMAND_NOENTROPY 7   /* to remove */
2314
2315
64
#define ZSTD_CONTENTSIZE_ERROR   (0ULL - 2)
2316
2317
static const size_t ZSTD_blockHeaderSize = 3;
2318
static const size_t ZSTD_frameHeaderSize = 4;
2319
2320
2321
/* *******************************************************
2322
*  Memory operations
2323
**********************************************************/
2324
4.62k
static void   ZSTD_copy4(void* dst, const void* src) { memcpy(dst, src, 4); }
2325
2326
271k
static void   ZSTD_copy8(void* dst, const void* src) { memcpy(dst, src, 8); }
2327
2328
265k
#define COPY8(d,s) { ZSTD_copy8(d,s); d+=8; s+=8; }
2329
2330
/*! ZSTD_wildcopy : custom version of memcpy(), can copy up to 7-8 bytes too many */
2331
static void ZSTD_wildcopy(void* dst, const void* src, ptrdiff_t length)
2332
20.4k
{
2333
20.4k
    const BYTE* ip = (const BYTE*)src;
2334
20.4k
    BYTE* op = (BYTE*)dst;
2335
20.4k
    BYTE* const oend = op + length;
2336
265k
    do COPY8(op, ip) while (op < oend);
2337
20.4k
}
2338
2339
2340
/* **************************************
2341
*  Local structures
2342
****************************************/
2343
typedef enum { bt_compressed, bt_raw, bt_rle, bt_end } blockType_t;
2344
2345
typedef struct
2346
{
2347
    blockType_t blockType;
2348
    U32 origSize;
2349
} blockProperties_t;
2350
2351
typedef struct {
2352
    void* buffer;
2353
    U32*  offsetStart;
2354
    U32*  offset;
2355
    BYTE* offCodeStart;
2356
    BYTE* offCode;
2357
    BYTE* litStart;
2358
    BYTE* lit;
2359
    BYTE* litLengthStart;
2360
    BYTE* litLength;
2361
    BYTE* matchLengthStart;
2362
    BYTE* matchLength;
2363
    BYTE* dumpsStart;
2364
    BYTE* dumps;
2365
} SeqStore_t;
2366
2367
2368
/* *************************************
2369
*  Error Management
2370
***************************************/
2371
/*! ZSTD_isError
2372
*   tells if a return value is an error code */
2373
30.7k
static unsigned ZSTD_isError(size_t code) { return ERR_isError(code); }
2374
2375
2376
2377
/* *************************************************************
2378
*   Decompression section
2379
***************************************************************/
2380
struct ZSTDv03_Dctx_s
2381
{
2382
    U32 LLTable[FSE_DTABLE_SIZE_U32(LLFSELog)];
2383
    U32 OffTable[FSE_DTABLE_SIZE_U32(OffFSELog)];
2384
    U32 MLTable[FSE_DTABLE_SIZE_U32(MLFSELog)];
2385
    void* previousDstEnd;
2386
    void* base;
2387
    size_t expected;
2388
    blockType_t bType;
2389
    U32 phase;
2390
    const BYTE* litPtr;
2391
    size_t litSize;
2392
    BYTE litBuffer[BLOCKSIZE + 8 /* margin for wildcopy */];
2393
};   /* typedef'd to ZSTD_Dctx within "zstd_static.h" */
2394
2395
2396
static size_t ZSTD_getcBlockSize(const void* src, size_t srcSize, blockProperties_t* bpPtr)
2397
10.6k
{
2398
10.6k
    const BYTE* const in = (const BYTE* const)src;
2399
10.6k
    BYTE headerFlags;
2400
10.6k
    U32 cSize;
2401
2402
10.6k
    if (srcSize < 3) return ERROR(srcSize_wrong);
2403
2404
10.5k
    headerFlags = *in;
2405
10.5k
    cSize = in[2] + (in[1]<<8) + ((in[0] & 7)<<16);
2406
2407
10.5k
    bpPtr->blockType = (blockType_t)(headerFlags >> 6);
2408
10.5k
    bpPtr->origSize = (bpPtr->blockType == bt_rle) ? cSize : 0;
2409
2410
10.5k
    if (bpPtr->blockType == bt_end) return 0;
2411
9.20k
    if (bpPtr->blockType == bt_rle) return 1;
2412
8.90k
    return cSize;
2413
9.20k
}
2414
2415
static size_t ZSTD_copyUncompressedBlock(void* dst, size_t maxDstSize, const void* src, size_t srcSize)
2416
803
{
2417
803
    if (srcSize > maxDstSize) return ERROR(dstSize_tooSmall);
2418
793
    if (srcSize > 0) {
2419
494
        memcpy(dst, src, srcSize);
2420
494
    }
2421
793
    return srcSize;
2422
803
}
2423
2424
2425
/** ZSTD_decompressLiterals
2426
    @return : nb of bytes read from src, or an error code*/
2427
static size_t ZSTD_decompressLiterals(void* dst, size_t* maxDstSizePtr,
2428
                                const void* src, size_t srcSize)
2429
476
{
2430
476
    const BYTE* ip = (const BYTE*)src;
2431
2432
476
    const size_t litSize = (MEM_readLE32(src) & 0x1FFFFF) >> 2;   /* no buffer issue : srcSize >= MIN_CBLOCK_SIZE */
2433
476
    const size_t litCSize = (MEM_readLE32(ip+2) & 0xFFFFFF) >> 5;   /* no buffer issue : srcSize >= MIN_CBLOCK_SIZE */
2434
2435
476
    if (litSize > *maxDstSizePtr) return ERROR(corruption_detected);
2436
465
    if (litCSize + 5 > srcSize) return ERROR(corruption_detected);
2437
2438
438
    if (HUF_isError(HUF_decompress(dst, litSize, ip+5, litCSize))) return ERROR(corruption_detected);
2439
2440
10
    *maxDstSizePtr = litSize;
2441
10
    return litCSize + 5;
2442
438
}
2443
2444
2445
/** ZSTD_decodeLiteralsBlock
2446
    @return : nb of bytes read from src (< srcSize )*/
2447
static size_t ZSTD_decodeLiteralsBlock(void* ctx,
2448
                          const void* src, size_t srcSize)
2449
3.46k
{
2450
3.46k
    ZSTD_DCtx* dctx = (ZSTD_DCtx*)ctx;
2451
3.46k
    const BYTE* const istart = (const BYTE* const)src;
2452
2453
    /* any compressed block with literals segment must be at least this size */
2454
3.46k
    if (srcSize < MIN_CBLOCK_SIZE) return ERROR(corruption_detected);
2455
2456
3.14k
    switch(*istart & 3)
2457
3.14k
    {
2458
144
    default:
2459
476
    case 0:
2460
476
        {
2461
476
            size_t litSize = BLOCKSIZE;
2462
476
            const size_t readSize = ZSTD_decompressLiterals(dctx->litBuffer, &litSize, src, srcSize);
2463
476
            dctx->litPtr = dctx->litBuffer;
2464
476
            dctx->litSize = litSize;
2465
476
            memset(dctx->litBuffer + dctx->litSize, 0, 8);
2466
476
            return readSize;   /* works if it's an error too */
2467
144
        }
2468
2.07k
    case IS_RAW:
2469
2.07k
        {
2470
2.07k
            const size_t litSize = (MEM_readLE32(istart) & 0xFFFFFF) >> 2;   /* no buffer issue : srcSize >= MIN_CBLOCK_SIZE */
2471
2.07k
            if (litSize > srcSize-11)   /* risk of reading too far with wildcopy */
2472
34
            {
2473
34
                if (litSize > BLOCKSIZE) return ERROR(corruption_detected);
2474
24
                if (litSize > srcSize-3) return ERROR(corruption_detected);
2475
4
                memcpy(dctx->litBuffer, istart, litSize);
2476
4
                dctx->litPtr = dctx->litBuffer;
2477
4
                dctx->litSize = litSize;
2478
4
                memset(dctx->litBuffer + dctx->litSize, 0, 8);
2479
4
                return litSize+3;
2480
24
            }
2481
            /* direct reference into compressed stream */
2482
2.03k
            dctx->litPtr = istart+3;
2483
2.03k
            dctx->litSize = litSize;
2484
2.03k
            return litSize+3;
2485
2.07k
        }
2486
596
    case IS_RLE:
2487
596
        {
2488
596
            const size_t litSize = (MEM_readLE32(istart) & 0xFFFFFF) >> 2;   /* no buffer issue : srcSize >= MIN_CBLOCK_SIZE */
2489
596
            if (litSize > BLOCKSIZE) return ERROR(corruption_detected);
2490
588
            memset(dctx->litBuffer, istart[3], litSize + 8);
2491
588
            dctx->litPtr = dctx->litBuffer;
2492
588
            dctx->litSize = litSize;
2493
588
            return 4;
2494
596
        }
2495
3.14k
    }
2496
3.14k
}
2497
2498
2499
static size_t ZSTD_decodeSeqHeaders(int* nbSeq, const BYTE** dumpsPtr, size_t* dumpsLengthPtr,
2500
                         FSE_DTable* DTableLL, FSE_DTable* DTableML, FSE_DTable* DTableOffb,
2501
                         const void* src, size_t srcSize)
2502
2.64k
{
2503
2.64k
    const BYTE* const istart = (const BYTE* const)src;
2504
2.64k
    const BYTE* ip = istart;
2505
2.64k
    const BYTE* const iend = istart + srcSize;
2506
2.64k
    U32 LLtype, Offtype, MLtype;
2507
2.64k
    U32 LLlog, Offlog, MLlog;
2508
2.64k
    size_t dumpsLength;
2509
2510
    /* check */
2511
2.64k
    if (srcSize < 5) return ERROR(srcSize_wrong);
2512
2513
    /* SeqHead */
2514
2.63k
    *nbSeq = MEM_readLE16(ip); ip+=2;
2515
2.63k
    LLtype  = *ip >> 6;
2516
2.63k
    Offtype = (*ip >> 4) & 3;
2517
2.63k
    MLtype  = (*ip >> 2) & 3;
2518
2.63k
    if (*ip & 2)
2519
1.91k
    {
2520
1.91k
        dumpsLength  = ip[2];
2521
1.91k
        dumpsLength += ip[1] << 8;
2522
1.91k
        ip += 3;
2523
1.91k
    }
2524
719
    else
2525
719
    {
2526
719
        dumpsLength  = ip[1];
2527
719
        dumpsLength += (ip[0] & 1) << 8;
2528
719
        ip += 2;
2529
719
    }
2530
2.63k
    *dumpsPtr = ip;
2531
2.63k
    ip += dumpsLength;
2532
2.63k
    *dumpsLengthPtr = dumpsLength;
2533
2534
    /* check */
2535
2.63k
    if (ip > iend-3) return ERROR(srcSize_wrong); /* min : all 3 are "raw", hence no header, but at least xxLog bits per type */
2536
2537
    /* sequences */
2538
2.61k
    {
2539
2.61k
        S16 norm[MaxML+1];    /* assumption : MaxML >= MaxLL and MaxOff */
2540
2.61k
        size_t headerSize;
2541
2542
        /* Build DTables */
2543
2.61k
        switch(LLtype)
2544
2.61k
        {
2545
93
        case bt_rle :
2546
93
            LLlog = 0;
2547
93
            FSE_buildDTable_rle(DTableLL, *ip++); break;
2548
1.57k
        case bt_raw :
2549
1.57k
            LLlog = LLbits;
2550
1.57k
            FSE_buildDTable_raw(DTableLL, LLbits); break;
2551
947
        default :
2552
947
            {   U32 max = MaxLL;
2553
947
                headerSize = FSE_readNCount(norm, &max, &LLlog, ip, iend-ip);
2554
947
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
2555
922
                if (LLlog > LLFSELog) return ERROR(corruption_detected);
2556
918
                ip += headerSize;
2557
918
                FSE_buildDTable(DTableLL, norm, max, LLlog);
2558
918
        }   }
2559
2560
2.58k
        switch(Offtype)
2561
2.58k
        {
2562
842
        case bt_rle :
2563
842
            Offlog = 0;
2564
842
            if (ip > iend-2) return ERROR(srcSize_wrong);   /* min : "raw", hence no header, but at least xxLog bits */
2565
841
            FSE_buildDTable_rle(DTableOffb, *ip++ & MaxOff); /* if *ip > MaxOff, data is corrupted */
2566
841
            break;
2567
1.27k
        case bt_raw :
2568
1.27k
            Offlog = Offbits;
2569
1.27k
            FSE_buildDTable_raw(DTableOffb, Offbits); break;
2570
468
        default :
2571
468
            {   U32 max = MaxOff;
2572
468
                headerSize = FSE_readNCount(norm, &max, &Offlog, ip, iend-ip);
2573
468
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
2574
445
                if (Offlog > OffFSELog) return ERROR(corruption_detected);
2575
442
                ip += headerSize;
2576
442
                FSE_buildDTable(DTableOffb, norm, max, Offlog);
2577
442
        }   }
2578
2579
2.55k
        switch(MLtype)
2580
2.55k
        {
2581
727
        case bt_rle :
2582
727
            MLlog = 0;
2583
727
            if (ip > iend-2) return ERROR(srcSize_wrong); /* min : "raw", hence no header, but at least xxLog bits */
2584
726
            FSE_buildDTable_rle(DTableML, *ip++); break;
2585
1.40k
        case bt_raw :
2586
1.40k
            MLlog = MLbits;
2587
1.40k
            FSE_buildDTable_raw(DTableML, MLbits); break;
2588
423
        default :
2589
423
            {   U32 max = MaxML;
2590
423
                headerSize = FSE_readNCount(norm, &max, &MLlog, ip, iend-ip);
2591
423
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
2592
413
                if (MLlog > MLFSELog) return ERROR(corruption_detected);
2593
410
                ip += headerSize;
2594
410
                FSE_buildDTable(DTableML, norm, max, MLlog);
2595
410
    }   }   }
2596
2597
2.54k
    return ip-istart;
2598
2.55k
}
2599
2600
2601
typedef struct {
2602
    size_t litLength;
2603
    size_t offset;
2604
    size_t matchLength;
2605
} seq_t;
2606
2607
typedef struct {
2608
    BIT_DStream_t DStream;
2609
    FSE_DState_t stateLL;
2610
    FSE_DState_t stateOffb;
2611
    FSE_DState_t stateML;
2612
    size_t prevOffset;
2613
    const BYTE* dumps;
2614
    const BYTE* dumpsEnd;
2615
} seqState_t;
2616
2617
2618
static void ZSTD_decodeSequence(seq_t* seq, seqState_t* seqState)
2619
10.4k
{
2620
10.4k
    size_t litLength;
2621
10.4k
    size_t prevOffset;
2622
10.4k
    size_t offset;
2623
10.4k
    size_t matchLength;
2624
10.4k
    const BYTE* dumps = seqState->dumps;
2625
10.4k
    const BYTE* const de = seqState->dumpsEnd;
2626
2627
    /* Literal length */
2628
10.4k
    litLength = FSE_decodeSymbol(&(seqState->stateLL), &(seqState->DStream));
2629
10.4k
    prevOffset = litLength ? seq->offset : seqState->prevOffset;
2630
10.4k
    seqState->prevOffset = seq->offset;
2631
10.4k
    if (litLength == MaxLL)
2632
1.46k
    {
2633
1.46k
        const U32 add = dumps<de ? *dumps++ : 0;
2634
1.46k
        if (add < 255) litLength += add;
2635
300
        else if (dumps + 3 <= de)
2636
52
        {
2637
52
            litLength = MEM_readLE24(dumps);
2638
52
            dumps += 3;
2639
52
        }
2640
1.46k
        if (dumps >= de) dumps = de-1;   /* late correction, to avoid read overflow (data is now corrupted anyway) */
2641
1.46k
    }
2642
2643
    /* Offset */
2644
10.4k
    {
2645
10.4k
        static const size_t offsetPrefix[MaxOff+1] = {  /* note : size_t faster than U32 */
2646
10.4k
                1 /*fake*/, 1, 2, 4, 8, 16, 32, 64, 128, 256,
2647
10.4k
                512, 1024, 2048, 4096, 8192, 16384, 32768, 65536, 131072, 262144,
2648
10.4k
                524288, 1048576, 2097152, 4194304, 8388608, 16777216, 33554432, /*fake*/ 1, 1, 1, 1, 1 };
2649
10.4k
        U32 offsetCode, nbBits;
2650
10.4k
        offsetCode = FSE_decodeSymbol(&(seqState->stateOffb), &(seqState->DStream));   /* <= maxOff, by table construction */
2651
10.4k
        if (MEM_32bits()) BIT_reloadDStream(&(seqState->DStream));
2652
10.4k
        nbBits = offsetCode - 1;
2653
10.4k
        if (offsetCode==0) nbBits = 0;   /* cmove */
2654
10.4k
        offset = offsetPrefix[offsetCode] + BIT_readBits(&(seqState->DStream), nbBits);
2655
10.4k
        if (MEM_32bits()) BIT_reloadDStream(&(seqState->DStream));
2656
10.4k
        if (offsetCode==0) offset = prevOffset;   /* cmove */
2657
10.4k
    }
2658
2659
    /* MatchLength */
2660
10.4k
    matchLength = FSE_decodeSymbol(&(seqState->stateML), &(seqState->DStream));
2661
10.4k
    if (matchLength == MaxML)
2662
1.32k
    {
2663
1.32k
        const U32 add = dumps<de ? *dumps++ : 0;
2664
1.32k
        if (add < 255) matchLength += add;
2665
267
        else if (dumps + 3 <= de)
2666
65
        {
2667
65
            matchLength = MEM_readLE24(dumps);
2668
65
            dumps += 3;
2669
65
        }
2670
1.32k
        if (dumps >= de) dumps = de-1;   /* late correction, to avoid read overflow (data is now corrupted anyway) */
2671
1.32k
    }
2672
10.4k
    matchLength += MINMATCH;
2673
2674
    /* save result */
2675
10.4k
    seq->litLength = litLength;
2676
10.4k
    seq->offset = offset;
2677
10.4k
    seq->matchLength = matchLength;
2678
10.4k
    seqState->dumps = dumps;
2679
10.4k
}
2680
2681
2682
static size_t ZSTD_execSequence(BYTE* op,
2683
                                seq_t sequence,
2684
                                const BYTE** litPtr, const BYTE* const litLimit,
2685
                                BYTE* const base, BYTE* const oend)
2686
10.4k
{
2687
10.4k
    static const int dec32table[] = {0, 1, 2, 1, 4, 4, 4, 4};   /* added */
2688
10.4k
    static const int dec64table[] = {8, 8, 8, 7, 8, 9,10,11};   /* subtracted */
2689
10.4k
    const BYTE* const ostart = op;
2690
10.4k
    BYTE* const oLitEnd = op + sequence.litLength;
2691
10.4k
    BYTE* const oMatchEnd = op + sequence.litLength + sequence.matchLength;   /* risk : address space overflow (32-bits) */
2692
10.4k
    BYTE* const oend_8 = oend-8;
2693
10.4k
    const BYTE* const litEnd = *litPtr + sequence.litLength;
2694
2695
    /* checks */
2696
10.4k
    size_t const seqLength = sequence.litLength + sequence.matchLength;
2697
2698
10.4k
    if (seqLength > (size_t)(oend - op)) return ERROR(dstSize_tooSmall);
2699
10.2k
    if (sequence.litLength > (size_t)(litLimit - *litPtr)) return ERROR(corruption_detected);
2700
    /* Now we know there are no overflow in literal nor match lengths, can use pointer checks */
2701
10.2k
    if (oLitEnd > oend_8) return ERROR(dstSize_tooSmall);
2702
10.2k
    if (sequence.offset > (U32)(oLitEnd - base)) return ERROR(corruption_detected);
2703
2704
10.2k
    if (oMatchEnd > oend) return ERROR(dstSize_tooSmall);   /* overwrite beyond dst buffer */
2705
10.2k
    if (litEnd > litLimit) return ERROR(corruption_detected);   /* overRead beyond lit buffer */
2706
2707
    /* copy Literals */
2708
10.2k
    ZSTD_wildcopy(op, *litPtr, (ptrdiff_t)sequence.litLength);   /* note : oLitEnd <= oend-8 : no risk of overwrite beyond oend */
2709
10.2k
    op = oLitEnd;
2710
10.2k
    *litPtr = litEnd;   /* update for next sequence */
2711
2712
    /* copy Match */
2713
10.2k
    {   const BYTE* match = op - sequence.offset;
2714
2715
        /* check */
2716
10.2k
        if (sequence.offset > (size_t)op) return ERROR(corruption_detected);   /* address space overflow test (this test seems kept by clang optimizer) */
2717
        //if (match > op) return ERROR(corruption_detected);   /* address space overflow test (is clang optimizer removing this test ?) */
2718
10.2k
        if (match < base) return ERROR(corruption_detected);
2719
2720
        /* close range match, overlap */
2721
10.2k
        if (sequence.offset < 8)
2722
4.62k
        {
2723
4.62k
            const int dec64 = dec64table[sequence.offset];
2724
4.62k
            op[0] = match[0];
2725
4.62k
            op[1] = match[1];
2726
4.62k
            op[2] = match[2];
2727
4.62k
            op[3] = match[3];
2728
4.62k
            match += dec32table[sequence.offset];
2729
4.62k
            ZSTD_copy4(op+4, match);
2730
4.62k
            match -= dec64;
2731
4.62k
        }
2732
5.62k
        else
2733
5.62k
        {
2734
5.62k
            ZSTD_copy8(op, match);
2735
5.62k
        }
2736
10.2k
        op += 8; match += 8;
2737
2738
10.2k
        if (oMatchEnd > oend-(16-MINMATCH))
2739
38
        {
2740
38
            if (op < oend_8)
2741
15
            {
2742
15
                ZSTD_wildcopy(op, match, oend_8 - op);
2743
15
                match += oend_8 - op;
2744
15
                op = oend_8;
2745
15
            }
2746
96
            while (op < oMatchEnd) *op++ = *match++;
2747
38
        }
2748
10.2k
        else
2749
10.2k
        {
2750
10.2k
            ZSTD_wildcopy(op, match, (ptrdiff_t)sequence.matchLength-8);   /* works even if matchLength < 8 */
2751
10.2k
        }
2752
10.2k
    }
2753
2754
0
    return oMatchEnd - ostart;
2755
10.2k
}
2756
2757
static size_t ZSTD_decompressSequences(
2758
                               void* ctx,
2759
                               void* dst, size_t maxDstSize,
2760
                         const void* seqStart, size_t seqSize)
2761
2.64k
{
2762
2.64k
    ZSTD_DCtx* dctx = (ZSTD_DCtx*)ctx;
2763
2.64k
    const BYTE* ip = (const BYTE*)seqStart;
2764
2.64k
    const BYTE* const iend = ip + seqSize;
2765
2.64k
    BYTE* const ostart = (BYTE* const)dst;
2766
2.64k
    BYTE* op = ostart;
2767
2.64k
    BYTE* const oend = ostart + maxDstSize;
2768
2.64k
    size_t errorCode, dumpsLength;
2769
2.64k
    const BYTE* litPtr = dctx->litPtr;
2770
2.64k
    const BYTE* const litEnd = litPtr + dctx->litSize;
2771
2.64k
    int nbSeq;
2772
2.64k
    const BYTE* dumps;
2773
2.64k
    U32* DTableLL = dctx->LLTable;
2774
2.64k
    U32* DTableML = dctx->MLTable;
2775
2.64k
    U32* DTableOffb = dctx->OffTable;
2776
2.64k
    BYTE* const base = (BYTE*) (dctx->base);
2777
2778
    /* Build Decoding Tables */
2779
2.64k
    errorCode = ZSTD_decodeSeqHeaders(&nbSeq, &dumps, &dumpsLength,
2780
2.64k
                                      DTableLL, DTableML, DTableOffb,
2781
2.64k
                                      ip, iend-ip);
2782
2.64k
    if (ZSTD_isError(errorCode)) return errorCode;
2783
2.54k
    ip += errorCode;
2784
2785
    /* Regen sequences */
2786
2.54k
    {
2787
2.54k
        seq_t sequence;
2788
2.54k
        seqState_t seqState;
2789
2790
2.54k
        memset(&sequence, 0, sizeof(sequence));
2791
2.54k
        seqState.dumps = dumps;
2792
2.54k
        seqState.dumpsEnd = dumps + dumpsLength;
2793
2.54k
        seqState.prevOffset = sequence.offset = 4;
2794
2.54k
        errorCode = BIT_initDStream(&(seqState.DStream), ip, iend-ip);
2795
2.54k
        if (ERR_isError(errorCode)) return ERROR(corruption_detected);
2796
2.51k
        FSE_initDState(&(seqState.stateLL), &(seqState.DStream), DTableLL);
2797
2.51k
        FSE_initDState(&(seqState.stateOffb), &(seqState.DStream), DTableOffb);
2798
2.51k
        FSE_initDState(&(seqState.stateML), &(seqState.DStream), DTableML);
2799
2800
12.7k
        for ( ; (BIT_reloadDStream(&(seqState.DStream)) <= BIT_DStream_completed) && (nbSeq>0) ; )
2801
10.4k
        {
2802
10.4k
            size_t oneSeqSize;
2803
10.4k
            nbSeq--;
2804
10.4k
            ZSTD_decodeSequence(&sequence, &seqState);
2805
10.4k
            oneSeqSize = ZSTD_execSequence(op, sequence, &litPtr, litEnd, base, oend);
2806
10.4k
            if (ZSTD_isError(oneSeqSize)) return oneSeqSize;
2807
10.2k
            op += oneSeqSize;
2808
10.2k
        }
2809
2810
        /* check if reached exact end */
2811
2.36k
        if ( !BIT_endOfDStream(&(seqState.DStream)) ) return ERROR(corruption_detected);   /* requested too much : data is corrupted */
2812
2.31k
        if (nbSeq<0) return ERROR(corruption_detected);   /* requested too many sequences : data is corrupted */
2813
2814
        /* last literal segment */
2815
2.31k
        {
2816
2.31k
            size_t lastLLSize = litEnd - litPtr;
2817
2.31k
            if (litPtr > litEnd) return ERROR(corruption_detected);
2818
2.31k
            if (op+lastLLSize > oend) return ERROR(dstSize_tooSmall);
2819
2.31k
            if (lastLLSize > 0) {
2820
304
                if (op != litPtr) memmove(op, litPtr, lastLLSize);
2821
304
                op += lastLLSize;
2822
304
            }
2823
2.31k
        }
2824
2.31k
    }
2825
2826
0
    return op-ostart;
2827
2.31k
}
2828
2829
2830
static size_t ZSTD_decompressBlock(
2831
                            void* ctx,
2832
                            void* dst, size_t maxDstSize,
2833
                      const void* src, size_t srcSize)
2834
3.46k
{
2835
    /* blockType == blockCompressed */
2836
3.46k
    const BYTE* ip = (const BYTE*)src;
2837
2838
    /* Decode literals sub-block */
2839
3.46k
    size_t litCSize = ZSTD_decodeLiteralsBlock(ctx, src, srcSize);
2840
3.46k
    if (ZSTD_isError(litCSize)) return litCSize;
2841
2.64k
    ip += litCSize;
2842
2.64k
    srcSize -= litCSize;
2843
2844
2.64k
    return ZSTD_decompressSequences(ctx, dst, maxDstSize, ip, srcSize);
2845
3.46k
}
2846
2847
2848
static size_t ZSTD_decompressDCtx(void* ctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize)
2849
1.86k
{
2850
1.86k
    const BYTE* ip = (const BYTE*)src;
2851
1.86k
    const BYTE* iend = ip + srcSize;
2852
1.86k
    BYTE* const ostart = (BYTE* const)dst;
2853
1.86k
    BYTE* op = ostart;
2854
1.86k
    BYTE* const oend = ostart + maxDstSize;
2855
1.86k
    size_t remainingSize = srcSize;
2856
1.86k
    U32 magicNumber;
2857
1.86k
    blockProperties_t blockProperties;
2858
2859
    /* Frame Header */
2860
1.86k
    if (srcSize < ZSTD_frameHeaderSize+ZSTD_blockHeaderSize) return ERROR(srcSize_wrong);
2861
1.86k
    magicNumber = MEM_readLE32(src);
2862
1.86k
    if (magicNumber != ZSTD_magicNumber) return ERROR(prefix_unknown);
2863
1.86k
    ip += ZSTD_frameHeaderSize; remainingSize -= ZSTD_frameHeaderSize;
2864
2865
    /* Loop on each block */
2866
4.67k
    while (1)
2867
4.67k
    {
2868
4.67k
        size_t decodedSize=0;
2869
4.67k
        size_t cBlockSize = ZSTD_getcBlockSize(ip, iend-ip, &blockProperties);
2870
4.67k
        if (ZSTD_isError(cBlockSize)) return cBlockSize;
2871
2872
4.67k
        ip += ZSTD_blockHeaderSize;
2873
4.67k
        remainingSize -= ZSTD_blockHeaderSize;
2874
4.67k
        if (cBlockSize > remainingSize) return ERROR(srcSize_wrong);
2875
2876
4.67k
        switch(blockProperties.blockType)
2877
4.67k
        {
2878
3.46k
        case bt_compressed:
2879
3.46k
            decodedSize = ZSTD_decompressBlock(ctx, op, oend-op, ip, cBlockSize);
2880
3.46k
            break;
2881
803
        case bt_raw :
2882
803
            decodedSize = ZSTD_copyUncompressedBlock(op, oend-op, ip, cBlockSize);
2883
803
            break;
2884
5
        case bt_rle :
2885
5
            return ERROR(GENERIC);   /* not yet supported */
2886
0
            break;
2887
404
        case bt_end :
2888
            /* end of frame */
2889
404
            if (remainingSize) return ERROR(srcSize_wrong);
2890
404
            break;
2891
404
        default:
2892
0
            return ERROR(GENERIC);   /* impossible */
2893
4.67k
        }
2894
4.66k
        if (cBlockSize == 0) break;   /* bt_end */
2895
2896
3.65k
        if (ZSTD_isError(decodedSize)) return decodedSize;
2897
2.80k
        op += decodedSize;
2898
2.80k
        ip += cBlockSize;
2899
2.80k
        remainingSize -= cBlockSize;
2900
2.80k
    }
2901
2902
1.01k
    return op-ostart;
2903
1.86k
}
2904
2905
static size_t ZSTD_decompress(void* dst, size_t maxDstSize, const void* src, size_t srcSize)
2906
1.86k
{
2907
1.86k
    ZSTD_DCtx ctx;
2908
1.86k
    ctx.base = dst;
2909
1.86k
    return ZSTD_decompressDCtx(&ctx, dst, maxDstSize, src, srcSize);
2910
1.86k
}
2911
2912
/* ZSTD_errorFrameSizeInfoLegacy() :
2913
   assumes `cSize` and `dBound` are _not_ NULL */
2914
MEM_STATIC void ZSTD_errorFrameSizeInfoLegacy(size_t* cSize, unsigned long long* dBound, size_t ret)
2915
64
{
2916
64
    *cSize = ret;
2917
64
    *dBound = ZSTD_CONTENTSIZE_ERROR;
2918
64
}
2919
2920
void ZSTDv03_findFrameSizeInfoLegacy(const void *src, size_t srcSize, size_t* cSize, unsigned long long* dBound)
2921
1.93k
{
2922
1.93k
    const BYTE* ip = (const BYTE*)src;
2923
1.93k
    size_t remainingSize = srcSize;
2924
1.93k
    size_t nbBlocks = 0;
2925
1.93k
    U32 magicNumber;
2926
1.93k
    blockProperties_t blockProperties;
2927
2928
    /* Frame Header */
2929
1.93k
    if (srcSize < ZSTD_frameHeaderSize+ZSTD_blockHeaderSize) {
2930
6
        ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong));
2931
6
        return;
2932
6
    }
2933
1.92k
    magicNumber = MEM_readLE32(src);
2934
1.92k
    if (magicNumber != ZSTD_magicNumber) {
2935
0
        ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(prefix_unknown));
2936
0
        return;
2937
0
    }
2938
1.92k
    ip += ZSTD_frameHeaderSize; remainingSize -= ZSTD_frameHeaderSize;
2939
2940
    /* Loop on each block */
2941
5.93k
    while (1)
2942
5.93k
    {
2943
5.93k
        size_t cBlockSize = ZSTD_getcBlockSize(ip, remainingSize, &blockProperties);
2944
5.93k
        if (ZSTD_isError(cBlockSize)) {
2945
9
            ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, cBlockSize);
2946
9
            return;
2947
9
        }
2948
2949
5.92k
        ip += ZSTD_blockHeaderSize;
2950
5.92k
        remainingSize -= ZSTD_blockHeaderSize;
2951
5.92k
        if (cBlockSize > remainingSize) {
2952
49
            ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong));
2953
49
            return;
2954
49
        }
2955
2956
5.87k
        if (cBlockSize == 0) break;   /* bt_end */
2957
2958
4.01k
        ip += cBlockSize;
2959
4.01k
        remainingSize -= cBlockSize;
2960
4.01k
        nbBlocks++;
2961
4.01k
    }
2962
2963
1.86k
    *cSize = ip - (const BYTE*)src;
2964
1.86k
    *dBound = nbBlocks * BLOCKSIZE;
2965
1.86k
}
2966
2967
2968
/*******************************
2969
*  Streaming Decompression API
2970
*******************************/
2971
2972
static size_t ZSTD_resetDCtx(ZSTD_DCtx* dctx)
2973
0
{
2974
0
    dctx->expected = ZSTD_frameHeaderSize;
2975
0
    dctx->phase = 0;
2976
0
    dctx->previousDstEnd = NULL;
2977
0
    dctx->base = NULL;
2978
0
    return 0;
2979
0
}
2980
2981
static ZSTD_DCtx* ZSTD_createDCtx(void)
2982
0
{
2983
0
    ZSTD_DCtx* dctx = (ZSTD_DCtx*)malloc(sizeof(ZSTD_DCtx));
2984
0
    if (dctx==NULL) return NULL;
2985
0
    ZSTD_resetDCtx(dctx);
2986
0
    return dctx;
2987
0
}
2988
2989
static size_t ZSTD_freeDCtx(ZSTD_DCtx* dctx)
2990
0
{
2991
0
    free(dctx);
2992
0
    return 0;
2993
0
}
2994
2995
static size_t ZSTD_nextSrcSizeToDecompress(ZSTD_DCtx* dctx)
2996
0
{
2997
0
    return dctx->expected;
2998
0
}
2999
3000
static size_t ZSTD_decompressContinue(ZSTD_DCtx* ctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize)
3001
0
{
3002
    /* Sanity check */
3003
0
    if (srcSize != ctx->expected) return ERROR(srcSize_wrong);
3004
0
    if (dst != ctx->previousDstEnd)  /* not contiguous */
3005
0
        ctx->base = dst;
3006
3007
    /* Decompress : frame header */
3008
0
    if (ctx->phase == 0)
3009
0
    {
3010
        /* Check frame magic header */
3011
0
        U32 magicNumber = MEM_readLE32(src);
3012
0
        if (magicNumber != ZSTD_magicNumber) return ERROR(prefix_unknown);
3013
0
        ctx->phase = 1;
3014
0
        ctx->expected = ZSTD_blockHeaderSize;
3015
0
        return 0;
3016
0
    }
3017
3018
    /* Decompress : block header */
3019
0
    if (ctx->phase == 1)
3020
0
    {
3021
0
        blockProperties_t bp;
3022
0
        size_t blockSize = ZSTD_getcBlockSize(src, ZSTD_blockHeaderSize, &bp);
3023
0
        if (ZSTD_isError(blockSize)) return blockSize;
3024
0
        if (bp.blockType == bt_end)
3025
0
        {
3026
0
            ctx->expected = 0;
3027
0
            ctx->phase = 0;
3028
0
        }
3029
0
        else
3030
0
        {
3031
0
            ctx->expected = blockSize;
3032
0
            ctx->bType = bp.blockType;
3033
0
            ctx->phase = 2;
3034
0
        }
3035
3036
0
        return 0;
3037
0
    }
3038
3039
    /* Decompress : block content */
3040
0
    {
3041
0
        size_t rSize;
3042
0
        switch(ctx->bType)
3043
0
        {
3044
0
        case bt_compressed:
3045
0
            rSize = ZSTD_decompressBlock(ctx, dst, maxDstSize, src, srcSize);
3046
0
            break;
3047
0
        case bt_raw :
3048
0
            rSize = ZSTD_copyUncompressedBlock(dst, maxDstSize, src, srcSize);
3049
0
            break;
3050
0
        case bt_rle :
3051
0
            return ERROR(GENERIC);   /* not yet handled */
3052
0
            break;
3053
0
        case bt_end :   /* should never happen (filtered at phase 1) */
3054
0
            rSize = 0;
3055
0
            break;
3056
0
        default:
3057
0
            return ERROR(GENERIC);
3058
0
        }
3059
0
        ctx->phase = 1;
3060
0
        ctx->expected = ZSTD_blockHeaderSize;
3061
0
        if (ZSTD_isError(rSize)) return rSize;
3062
0
        ctx->previousDstEnd = (void*)( ((char*)dst) + rSize);
3063
0
        return rSize;
3064
0
    }
3065
3066
0
}
3067
3068
3069
/* wrapper layer */
3070
3071
unsigned ZSTDv03_isError(size_t code)
3072
0
{
3073
0
    return ZSTD_isError(code);
3074
0
}
3075
3076
size_t ZSTDv03_decompress( void* dst, size_t maxOriginalSize,
3077
                     const void* src, size_t compressedSize)
3078
1.86k
{
3079
1.86k
    return ZSTD_decompress(dst, maxOriginalSize, src, compressedSize);
3080
1.86k
}
3081
3082
ZSTDv03_Dctx* ZSTDv03_createDCtx(void)
3083
0
{
3084
0
    return (ZSTDv03_Dctx*)ZSTD_createDCtx();
3085
0
}
3086
3087
size_t ZSTDv03_freeDCtx(ZSTDv03_Dctx* dctx)
3088
0
{
3089
0
    return ZSTD_freeDCtx((ZSTD_DCtx*)dctx);
3090
0
}
3091
3092
size_t ZSTDv03_resetDCtx(ZSTDv03_Dctx* dctx)
3093
0
{
3094
0
    return ZSTD_resetDCtx((ZSTD_DCtx*)dctx);
3095
0
}
3096
3097
size_t ZSTDv03_nextSrcSizeToDecompress(ZSTDv03_Dctx* dctx)
3098
0
{
3099
0
    return ZSTD_nextSrcSizeToDecompress((ZSTD_DCtx*)dctx);
3100
0
}
3101
3102
size_t ZSTDv03_decompressContinue(ZSTDv03_Dctx* dctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize)
3103
0
{
3104
0
    return ZSTD_decompressContinue((ZSTD_DCtx*)dctx, dst, maxDstSize, src, srcSize);
3105
0
}