Coverage Report

Created: 2025-11-24 06:12

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/lz4/lib/lz4hc.c
Line
Count
Source
1
/*
2
    LZ4 HC - High Compression Mode of LZ4
3
    Copyright (c) Yann Collet. All rights reserved.
4
5
    BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php)
6
7
    Redistribution and use in source and binary forms, with or without
8
    modification, are permitted provided that the following conditions are
9
    met:
10
11
    * Redistributions of source code must retain the above copyright
12
    notice, this list of conditions and the following disclaimer.
13
    * Redistributions in binary form must reproduce the above
14
    copyright notice, this list of conditions and the following disclaimer
15
    in the documentation and/or other materials provided with the
16
    distribution.
17
18
    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19
    "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20
    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
21
    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
22
    OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
23
    SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
24
    LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25
    DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26
    THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27
    (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
28
    OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29
30
    You can contact the author at :
31
       - LZ4 source repository : https://github.com/lz4/lz4
32
       - LZ4 public forum : https://groups.google.com/forum/#!forum/lz4c
33
*/
34
/* note : lz4hc is not an independent module, it requires lz4.h/lz4.c for proper compilation */
35
36
37
/* *************************************
38
*  Tuning Parameter
39
***************************************/
40
41
/*! HEAPMODE :
42
 *  Select how stateless HC compression functions like `LZ4_compress_HC()`
43
 *  allocate memory for their workspace:
44
 *  in stack (0:fastest), or in heap (1:default, requires malloc()).
45
 *  Since workspace is rather large, heap mode is recommended.
46
**/
47
#ifndef LZ4HC_HEAPMODE
48
#  define LZ4HC_HEAPMODE 1
49
#endif
50
51
52
/*===    Dependency    ===*/
53
#define LZ4_HC_STATIC_LINKING_ONLY
54
#include "lz4hc.h"
55
#include <limits.h>
56
57
58
/*===   Shared lz4.c code   ===*/
59
#ifndef LZ4_SRC_INCLUDED
60
# if defined(__GNUC__)
61
#  pragma GCC diagnostic ignored "-Wunused-function"
62
# endif
63
# if defined (__clang__)
64
#  pragma clang diagnostic ignored "-Wunused-function"
65
# endif
66
# define LZ4_COMMONDEFS_ONLY
67
# include "lz4.c"   /* LZ4_count, constants, mem */
68
#endif
69
70
71
/*===   Enums   ===*/
72
typedef enum { noDictCtx, usingDictCtxHc } dictCtx_directive;
73
74
75
/*===   Constants   ===*/
76
447k
#define OPTIMAL_ML (int)((ML_MASK-1)+MINMATCH)
77
1.61M
#define LZ4_OPT_NUM   (1<<12)
78
79
80
/*===   Macros   ===*/
81
61.2M
#define MIN(a,b)   ( (a) < (b) ? (a) : (b) )
82
105M
#define MAX(a,b)   ( (a) > (b) ? (a) : (b) )
83
84
85
/*===   Levels definition   ===*/
86
typedef enum { lz4mid, lz4hc, lz4opt } lz4hc_strat_e;
87
typedef struct {
88
    lz4hc_strat_e strat;
89
    int nbSearches;
90
    U32 targetLength;
91
} cParams_t;
92
static const cParams_t k_clTable[LZ4HC_CLEVEL_MAX+1] = {
93
    { lz4mid,    2, 16 },  /* 0, unused */
94
    { lz4mid,    2, 16 },  /* 1, unused */
95
    { lz4mid,    2, 16 },  /* 2 */
96
    { lz4hc,     4, 16 },  /* 3 */
97
    { lz4hc,     8, 16 },  /* 4 */
98
    { lz4hc,    16, 16 },  /* 5 */
99
    { lz4hc,    32, 16 },  /* 6 */
100
    { lz4hc,    64, 16 },  /* 7 */
101
    { lz4hc,   128, 16 },  /* 8 */
102
    { lz4hc,   256, 16 },  /* 9 */
103
    { lz4opt,   96, 64 },  /*10==LZ4HC_CLEVEL_OPT_MIN*/
104
    { lz4opt,  512,128 },  /*11 */
105
    { lz4opt,16384,LZ4_OPT_NUM },  /* 12==LZ4HC_CLEVEL_MAX */
106
};
107
108
static cParams_t LZ4HC_getCLevelParams(int cLevel)
109
7.68k
{
110
    /* note : clevel convention is a bit different from lz4frame,
111
     * possibly something worth revisiting for consistency */
112
7.68k
    if (cLevel < 1)
113
0
        cLevel = LZ4HC_CLEVEL_DEFAULT;
114
7.68k
    cLevel = MIN(LZ4HC_CLEVEL_MAX, cLevel);
115
7.68k
    return k_clTable[cLevel];
116
7.68k
}
117
118
119
/*===   Hashing   ===*/
120
0
#define LZ4HC_HASHSIZE 4
121
258M
#define HASH_FUNCTION(i)      (((i) * 2654435761U) >> ((MINMATCH*8)-LZ4HC_HASH_LOG))
122
258M
static U32 LZ4HC_hashPtr(const void* ptr) { return HASH_FUNCTION(LZ4_read32(ptr)); }
123
124
#if defined(LZ4_FORCE_MEMORY_ACCESS) && (LZ4_FORCE_MEMORY_ACCESS==2)
125
/* lie to the compiler about data alignment; use with caution */
126
static U64 LZ4_read64(const void* memPtr) { return *(const U64*) memPtr; }
127
128
#elif defined(LZ4_FORCE_MEMORY_ACCESS) && (LZ4_FORCE_MEMORY_ACCESS==1)
129
/* __pack instructions are safer, but compiler specific */
130
LZ4_PACK(typedef struct { U64 u64; }) LZ4_unalign64;
131
14.5M
static U64 LZ4_read64(const void* ptr) { return ((const LZ4_unalign64*)ptr)->u64; }
132
133
#else  /* safe and portable access using memcpy() */
134
static U64 LZ4_read64(const void* memPtr)
135
{
136
    U64 val; LZ4_memcpy(&val, memPtr, sizeof(val)); return val;
137
}
138
139
#endif /* LZ4_FORCE_MEMORY_ACCESS */
140
141
1.15k
#define LZ4MID_HASHSIZE 8
142
24.9M
#define LZ4MID_HASHLOG (LZ4HC_HASH_LOG-1)
143
1.15k
#define LZ4MID_HASHTABLESIZE (1 << LZ4MID_HASHLOG)
144
145
10.4M
static U32 LZ4MID_hash4(U32 v) { return (v * 2654435761U) >> (32-LZ4MID_HASHLOG); }
146
10.4M
static U32 LZ4MID_hash4Ptr(const void* ptr) { return LZ4MID_hash4(LZ4_read32(ptr)); }
147
/* note: hash7 hashes the lower 56-bits.
148
 * It presumes input was read using little endian.*/
149
14.5M
static U32 LZ4MID_hash7(U64 v) { return (U32)(((v  << (64-56)) * 58295818150454627ULL) >> (64-LZ4MID_HASHLOG)) ; }
150
static U64 LZ4_readLE64(const void* memPtr);
151
14.5M
static U32 LZ4MID_hash8Ptr(const void* ptr) { return LZ4MID_hash7(LZ4_readLE64(ptr)); }
152
153
static U64 LZ4_readLE64(const void* memPtr)
154
14.5M
{
155
14.5M
    if (LZ4_isLittleEndian()) {
156
14.5M
        return LZ4_read64(memPtr);
157
14.5M
    } else {
158
0
        const BYTE* p = (const BYTE*)memPtr;
159
        /* note: relies on the compiler to simplify this expression */
160
0
        return (U64)p[0] | ((U64)p[1]<<8) | ((U64)p[2]<<16) | ((U64)p[3]<<24)
161
0
            | ((U64)p[4]<<32) | ((U64)p[5]<<40) | ((U64)p[6]<<48) | ((U64)p[7]<<56);
162
0
    }
163
14.5M
}
164
165
166
/*===   Count match length   ===*/
167
LZ4_FORCE_INLINE
168
unsigned LZ4HC_NbCommonBytes32(U32 val)
169
17.6M
{
170
17.6M
    assert(val != 0);
171
17.6M
    if (LZ4_isLittleEndian()) {
172
#     if defined(_MSC_VER) && (_MSC_VER >= 1400) && !defined(LZ4_FORCE_SW_BITCOUNT)
173
        unsigned long r;
174
        _BitScanReverse(&r, val);
175
        return (unsigned)((31 - r) >> 3);
176
#     elif (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
177
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
178
                                        !defined(LZ4_FORCE_SW_BITCOUNT)
179
        return (unsigned)__builtin_clz(val) >> 3;
180
#     else
181
        val >>= 8;
182
        val = ((((val + 0x00FFFF00) | 0x00FFFFFF) + val) |
183
              (val + 0x00FF0000)) >> 24;
184
        return (unsigned)val ^ 3;
185
#     endif
186
17.6M
    } else {
187
#     if defined(_MSC_VER) && (_MSC_VER >= 1400) && !defined(LZ4_FORCE_SW_BITCOUNT)
188
        unsigned long r;
189
        _BitScanForward(&r, val);
190
        return (unsigned)(r >> 3);
191
#     elif (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
192
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
193
                                        !defined(LZ4_FORCE_SW_BITCOUNT)
194
        return (unsigned)__builtin_ctz(val) >> 3;
195
#     else
196
        const U32 m = 0x01010101;
197
        return (unsigned)((((val - 1) ^ val) & (m - 1)) * m) >> 24;
198
#     endif
199
0
    }
200
17.6M
}
201
202
/** LZ4HC_countBack() :
203
 * @return : negative value, nb of common bytes before ip/match */
204
LZ4_FORCE_INLINE
205
int LZ4HC_countBack(const BYTE* const ip, const BYTE* const match,
206
                    const BYTE* const iMin, const BYTE* const mMin)
207
21.3M
{
208
21.3M
    int back = 0;
209
21.3M
    int const min = (int)MAX(iMin - ip, mMin - match);
210
21.3M
    assert(min <= 0);
211
21.3M
    assert(ip >= iMin); assert((size_t)(ip-iMin) < (1U<<31));
212
21.3M
    assert(match >= mMin); assert((size_t)(match - mMin) < (1U<<31));
213
214
82.6M
    while ((back - min) > 3) {
215
78.8M
        U32 const v = LZ4_read32(ip + back - 4) ^ LZ4_read32(match + back - 4);
216
78.8M
        if (v) {
217
17.6M
            return (back - (int)LZ4HC_NbCommonBytes32(v));
218
61.2M
        } else back -= 4; /* 4-byte step */
219
78.8M
    }
220
    /* check remainder if any */
221
5.86M
    while ( (back > min)
222
5.74M
         && (ip[back-1] == match[back-1]) )
223
2.10M
            back--;
224
3.76M
    return back;
225
21.3M
}
226
227
/*===   Chain table updates   ===*/
228
1.28G
#define DELTANEXTU16(table, pos) table[(U16)(pos)]   /* faster */
229
/* Make fields passed to, and updated by LZ4HC_encodeSequence explicit */
230
4.28M
#define UPDATABLE(ip, op, anchor) &ip, &op, &anchor
231
232
233
/**************************************
234
*  Init
235
**************************************/
236
static void LZ4HC_clearTables (LZ4HC_CCtx_internal* hc4)
237
0
{
238
0
    MEM_INIT(hc4->hashTable, 0, sizeof(hc4->hashTable));
239
0
    MEM_INIT(hc4->chainTable, 0xFF, sizeof(hc4->chainTable));
240
0
}
241
242
static void LZ4HC_init_internal (LZ4HC_CCtx_internal* hc4, const BYTE* start)
243
7.68k
{
244
7.68k
    size_t const bufferSize = (size_t)(hc4->end - hc4->prefixStart);
245
7.68k
    size_t newStartingOffset = bufferSize + hc4->dictLimit;
246
7.68k
    DEBUGLOG(5, "LZ4HC_init_internal");
247
7.68k
    assert(newStartingOffset >= bufferSize);  /* check overflow */
248
7.68k
    if (newStartingOffset > 1 GB) {
249
0
        LZ4HC_clearTables(hc4);
250
0
        newStartingOffset = 0;
251
0
    }
252
7.68k
    newStartingOffset += 64 KB;
253
7.68k
    hc4->nextToUpdate = (U32)newStartingOffset;
254
7.68k
    hc4->prefixStart = start;
255
7.68k
    hc4->end = start;
256
7.68k
    hc4->dictStart = start;
257
7.68k
    hc4->dictLimit = (U32)newStartingOffset;
258
7.68k
    hc4->lowLimit = (U32)newStartingOffset;
259
7.68k
}
260
261
262
/**************************************
263
*  Encode
264
**************************************/
265
#if defined(LZ4_DEBUG) && (LZ4_DEBUG >= 2)
266
# define RAWLOG(...) fprintf(stderr, __VA_ARGS__)
267
void LZ4HC_hexOut(const void* src, size_t len)
268
{
269
    const BYTE* p = (const BYTE*)src;
270
    size_t n;
271
    for (n=0; n<len; n++) {
272
        RAWLOG("%02X ", p[n]);
273
    }
274
    RAWLOG(" \n");
275
}
276
277
# define HEX_CMP(_lev, _ptr, _ref, _len) \
278
    if (LZ4_DEBUG >= _lev) {            \
279
        RAWLOG("match bytes: ");        \
280
        LZ4HC_hexOut(_ptr, _len);       \
281
        RAWLOG("ref bytes: ");          \
282
        LZ4HC_hexOut(_ref, _len);       \
283
    }
284
285
#else
286
# define HEX_CMP(l,p,r,_l)
287
#endif
288
289
/* LZ4HC_encodeSequence() :
290
 * @return : 0 if ok,
291
 *           1 if buffer issue detected */
292
LZ4_FORCE_INLINE int LZ4HC_encodeSequence (
293
    const BYTE** _ip,
294
    BYTE** _op,
295
    const BYTE** _anchor,
296
    int matchLength,
297
    int offset,
298
    limitedOutput_directive limit,
299
    BYTE* oend)
300
4.28M
{
301
12.8M
#define ip      (*_ip)
302
27.9M
#define op      (*_op)
303
12.8M
#define anchor  (*_anchor)
304
305
4.28M
    BYTE* const token = op++;
306
307
#if defined(LZ4_DEBUG) && (LZ4_DEBUG >= 6)
308
    static const BYTE* start = NULL;
309
    static U32 totalCost = 0;
310
    U32 const pos = (start==NULL) ? 0 : (U32)(anchor - start); /* only works for single segment */
311
    U32 const ll = (U32)(ip - anchor);
312
    U32 const llAdd = (ll>=15) ? ((ll-15) / 255) + 1 : 0;
313
    U32 const mlAdd = (matchLength>=19) ? ((matchLength-19) / 255) + 1 : 0;
314
    U32 const cost = 1 + llAdd + ll + 2 + mlAdd;
315
    if (start==NULL) start = anchor;  /* only works for single segment */
316
    DEBUGLOG(6, "pos:%7u -- literals:%4u, match:%4i, offset:%5i, cost:%4u + %5u",
317
                pos,
318
                (U32)(ip - anchor), matchLength, offset,
319
                cost, totalCost);
320
# if 1 /* only works on single segment data */
321
    HEX_CMP(7, ip, ip-offset, matchLength);
322
# endif
323
    totalCost += cost;
324
#endif
325
326
    /* Encode Literal length */
327
4.28M
    {   size_t litLen = (size_t)(ip - anchor);
328
4.28M
        LZ4_STATIC_ASSERT(notLimited == 0);
329
        /* Check output limit */
330
4.28M
        if (limit && ((op + (litLen / 255) + litLen + (2 + 1 + LASTLITERALS)) > oend)) {
331
0
            DEBUGLOG(6, "Not enough room to write %i literals (%i bytes remaining)",
332
0
                    (int)litLen, (int)(oend - op));
333
0
            return 1;
334
0
        }
335
4.28M
        if (litLen >= RUN_MASK) {
336
140k
            size_t len = litLen - RUN_MASK;
337
140k
            *token = (RUN_MASK << ML_BITS);
338
279k
            for(; len >= 255 ; len -= 255) *op++ = 255;
339
140k
            *op++ = (BYTE)len;
340
4.14M
        } else {
341
4.14M
            *token = (BYTE)(litLen << ML_BITS);
342
4.14M
        }
343
344
        /* Copy Literals */
345
4.28M
        LZ4_wildCopy8(op, anchor, op + litLen);
346
4.28M
        op += litLen;
347
4.28M
    }
348
349
    /* Encode Offset */
350
4.28M
    assert(offset <= LZ4_DISTANCE_MAX );
351
4.28M
    assert(offset > 0);
352
4.28M
    LZ4_writeLE16(op, (U16)(offset)); op += 2;
353
354
    /* Encode MatchLength */
355
4.28M
    assert(matchLength >= MINMATCH);
356
4.28M
    {   size_t mlCode = (size_t)matchLength - MINMATCH;
357
4.28M
        if (limit && (op + (mlCode / 255) + (1 + LASTLITERALS) > oend)) {
358
0
            DEBUGLOG(6, "Not enough room to write match length");
359
0
            return 1;   /* Check output limit */
360
0
        }
361
4.28M
        if (mlCode >= ML_MASK) {
362
1.11M
            *token += ML_MASK;
363
1.11M
            mlCode -= ML_MASK;
364
1.47M
            for(; mlCode >= 510 ; mlCode -= 510) { *op++ = 255; *op++ = 255; }
365
1.11M
            if (mlCode >= 255) { mlCode -= 255; *op++ = 255; }
366
1.11M
            *op++ = (BYTE)mlCode;
367
3.17M
        } else {
368
3.17M
            *token += (BYTE)(mlCode);
369
3.17M
    }   }
370
371
    /* Prepare next loop */
372
4.28M
    ip += matchLength;
373
4.28M
    anchor = ip;
374
375
4.28M
    return 0;
376
377
4.28M
#undef ip
378
4.28M
#undef op
379
4.28M
#undef anchor
380
4.28M
}
381
382
383
typedef struct {
384
    int off;
385
    int len;
386
    int back;  /* negative value */
387
} LZ4HC_match_t;
388
389
LZ4HC_match_t LZ4HC_searchExtDict(const BYTE* ip, U32 ipIndex,
390
        const BYTE* const iLowLimit, const BYTE* const iHighLimit,
391
        const LZ4HC_CCtx_internal* dictCtx, U32 gDictEndIndex,
392
        int currentBestML, int nbAttempts)
393
0
{
394
0
    size_t const lDictEndIndex = (size_t)(dictCtx->end - dictCtx->prefixStart) + dictCtx->dictLimit;
395
0
    U32 lDictMatchIndex = dictCtx->hashTable[LZ4HC_hashPtr(ip)];
396
0
    U32 matchIndex = lDictMatchIndex + gDictEndIndex - (U32)lDictEndIndex;
397
0
    int offset = 0, sBack = 0;
398
0
    assert(lDictEndIndex <= 1 GB);
399
0
    if (lDictMatchIndex>0)
400
0
        DEBUGLOG(7, "lDictEndIndex = %zu, lDictMatchIndex = %u", lDictEndIndex, lDictMatchIndex);
401
0
    while (ipIndex - matchIndex <= LZ4_DISTANCE_MAX && nbAttempts--) {
402
0
        const BYTE* const matchPtr = dictCtx->prefixStart - dictCtx->dictLimit + lDictMatchIndex;
403
404
0
        if (LZ4_read32(matchPtr) == LZ4_read32(ip)) {
405
0
            int mlt;
406
0
            int back = 0;
407
0
            const BYTE* vLimit = ip + (lDictEndIndex - lDictMatchIndex);
408
0
            if (vLimit > iHighLimit) vLimit = iHighLimit;
409
0
            mlt = (int)LZ4_count(ip+MINMATCH, matchPtr+MINMATCH, vLimit) + MINMATCH;
410
0
            back = (ip > iLowLimit) ? LZ4HC_countBack(ip, matchPtr, iLowLimit, dictCtx->prefixStart) : 0;
411
0
            mlt -= back;
412
0
            if (mlt > currentBestML) {
413
0
                currentBestML = mlt;
414
0
                offset = (int)(ipIndex - matchIndex);
415
0
                sBack = back;
416
0
                DEBUGLOG(7, "found match of length %i within extDictCtx", currentBestML);
417
0
        }   }
418
419
0
        {   U32 const nextOffset = DELTANEXTU16(dictCtx->chainTable, lDictMatchIndex);
420
0
            lDictMatchIndex -= nextOffset;
421
0
            matchIndex -= nextOffset;
422
0
    }   }
423
424
0
    {   LZ4HC_match_t md;
425
0
        md.len = currentBestML;
426
0
        md.off = offset;
427
0
        md.back = sBack;
428
0
        return md;
429
0
    }
430
0
}
431
432
typedef LZ4HC_match_t (*LZ4MID_searchIntoDict_f)(const BYTE* ip, U32 ipIndex,
433
        const BYTE* const iHighLimit,
434
        const LZ4HC_CCtx_internal* dictCtx, U32 gDictEndIndex);
435
436
static LZ4HC_match_t LZ4MID_searchHCDict(const BYTE* ip, U32 ipIndex,
437
        const BYTE* const iHighLimit,
438
        const LZ4HC_CCtx_internal* dictCtx, U32 gDictEndIndex)
439
0
{
440
0
    return LZ4HC_searchExtDict(ip,ipIndex,
441
0
                            ip, iHighLimit,
442
0
                            dictCtx, gDictEndIndex,
443
0
                            MINMATCH-1, 2);
444
0
}
445
446
static LZ4HC_match_t LZ4MID_searchExtDict(const BYTE* ip, U32 ipIndex,
447
        const BYTE* const iHighLimit,
448
        const LZ4HC_CCtx_internal* dictCtx, U32 gDictEndIndex)
449
0
{
450
0
    size_t const lDictEndIndex = (size_t)(dictCtx->end - dictCtx->prefixStart) + dictCtx->dictLimit;
451
0
    const U32* const hash4Table = dictCtx->hashTable;
452
0
    const U32* const hash8Table = hash4Table + LZ4MID_HASHTABLESIZE;
453
0
    DEBUGLOG(7, "LZ4MID_searchExtDict (ipIdx=%u)", ipIndex);
454
455
    /* search long match first */
456
0
    {   U32 l8DictMatchIndex = hash8Table[LZ4MID_hash8Ptr(ip)];
457
0
        U32 m8Index = l8DictMatchIndex + gDictEndIndex - (U32)lDictEndIndex;
458
0
        assert(lDictEndIndex <= 1 GB);
459
0
        if (ipIndex - m8Index <= LZ4_DISTANCE_MAX) {
460
0
            const BYTE* const matchPtr = dictCtx->prefixStart - dictCtx->dictLimit + l8DictMatchIndex;
461
0
            const size_t safeLen = MIN(lDictEndIndex - l8DictMatchIndex, (size_t)(iHighLimit - ip));
462
0
            int mlt = (int)LZ4_count(ip, matchPtr, ip + safeLen);
463
0
            if (mlt >= MINMATCH) {
464
0
                LZ4HC_match_t md;
465
0
                DEBUGLOG(7, "Found long ExtDict match of len=%u", mlt);
466
0
                md.len = mlt;
467
0
                md.off = (int)(ipIndex - m8Index);
468
0
                md.back = 0;
469
0
                return md;
470
0
            }
471
0
        }
472
0
    }
473
474
    /* search for short match second */
475
0
    {   U32 l4DictMatchIndex = hash4Table[LZ4MID_hash4Ptr(ip)];
476
0
        U32 m4Index = l4DictMatchIndex + gDictEndIndex - (U32)lDictEndIndex;
477
0
        if (ipIndex - m4Index <= LZ4_DISTANCE_MAX) {
478
0
            const BYTE* const matchPtr = dictCtx->prefixStart - dictCtx->dictLimit + l4DictMatchIndex;
479
0
            const size_t safeLen = MIN(lDictEndIndex - l4DictMatchIndex, (size_t)(iHighLimit - ip));
480
0
            int mlt = (int)LZ4_count(ip, matchPtr, ip + safeLen);
481
0
            if (mlt >= MINMATCH) {
482
0
                LZ4HC_match_t md;
483
0
                DEBUGLOG(7, "Found short ExtDict match of len=%u", mlt);
484
0
                md.len = mlt;
485
0
                md.off = (int)(ipIndex - m4Index);
486
0
                md.back = 0;
487
0
                return md;
488
0
            }
489
0
        }
490
0
    }
491
492
    /* nothing found */
493
0
    {   LZ4HC_match_t const md = {0, 0, 0 };
494
0
        return md;
495
0
    }
496
0
}
497
498
/**************************************
499
*  Mid Compression (level 2)
500
**************************************/
501
502
LZ4_FORCE_INLINE void
503
LZ4MID_addPosition(U32* hTable, U32 hValue, U32 index)
504
24.3M
{
505
24.3M
    hTable[hValue] = index;
506
24.3M
}
507
508
6.86M
#define ADDPOS8(_p, _idx) LZ4MID_addPosition(hash8Table, LZ4MID_hash8Ptr(_p), _idx)
509
4.12M
#define ADDPOS4(_p, _idx) LZ4MID_addPosition(hash4Table, LZ4MID_hash4Ptr(_p), _idx)
510
511
/* Fill hash tables with references into dictionary.
512
 * The resulting table is only exploitable by LZ4MID (level 2) */
513
static void
514
LZ4MID_fillHTable (LZ4HC_CCtx_internal* cctx, const void* dict, size_t size)
515
0
{
516
0
    U32* const hash4Table = cctx->hashTable;
517
0
    U32* const hash8Table = hash4Table + LZ4MID_HASHTABLESIZE;
518
0
    const BYTE* const prefixPtr = (const BYTE*)dict;
519
0
    U32 const prefixIdx = cctx->dictLimit;
520
0
    U32 const target = prefixIdx + (U32)size - LZ4MID_HASHSIZE;
521
0
    U32 idx = cctx->nextToUpdate;
522
0
    assert(dict == cctx->prefixStart);
523
0
    DEBUGLOG(4, "LZ4MID_fillHTable (size:%zu)", size);
524
0
    if (size <= LZ4MID_HASHSIZE)
525
0
        return;
526
527
0
    for (; idx < target; idx += 3) {
528
0
        ADDPOS4(prefixPtr+idx-prefixIdx, idx);
529
0
        ADDPOS8(prefixPtr+idx+1-prefixIdx, idx+1);
530
0
    }
531
532
0
    idx = (size > 32 KB + LZ4MID_HASHSIZE) ? target - 32 KB : cctx->nextToUpdate;
533
0
    for (; idx < target; idx += 1) {
534
0
        ADDPOS8(prefixPtr+idx-prefixIdx, idx);
535
0
    }
536
537
0
    cctx->nextToUpdate = target;
538
0
}
539
540
static LZ4MID_searchIntoDict_f select_searchDict_function(const LZ4HC_CCtx_internal* dictCtx)
541
0
{
542
0
    if (dictCtx == NULL) return NULL;
543
0
    if (LZ4HC_getCLevelParams(dictCtx->compressionLevel).strat == lz4mid)
544
0
        return LZ4MID_searchExtDict;
545
0
    return LZ4MID_searchHCDict;
546
0
}
547
548
/* preconditions:
549
 * - *srcSizePtr within [1, LZ4_MAX_INPUT_SIZE]
550
 * - src is valid
551
 * - maxOutputSize >= 1
552
 * - dst is valid
553
 */
554
static int LZ4MID_compress (
555
    LZ4HC_CCtx_internal* const ctx,
556
    const char* const src,
557
    char* const dst,
558
    int* srcSizePtr,
559
    int const maxOutputSize,
560
    const limitedOutput_directive limit,
561
    const dictCtx_directive dict
562
    )
563
1.15k
{
564
1.15k
    U32* const hash4Table = ctx->hashTable;
565
1.15k
    U32* const hash8Table = hash4Table + LZ4MID_HASHTABLESIZE;
566
1.15k
    const BYTE* ip = (const BYTE*)src;
567
1.15k
    const BYTE* anchor = ip;
568
1.15k
    const BYTE* const iend = ip + *srcSizePtr;
569
1.15k
    const BYTE* const mflimit = iend - MFLIMIT;
570
1.15k
    const BYTE* const matchlimit = (iend - LASTLITERALS);
571
1.15k
    const BYTE* const ilimit = (iend - LZ4MID_HASHSIZE);
572
1.15k
    BYTE* op = (BYTE*)dst;
573
1.15k
    BYTE* oend = op + maxOutputSize;
574
575
1.15k
    const BYTE* const prefixPtr = ctx->prefixStart;
576
1.15k
    const U32 prefixIdx = ctx->dictLimit;
577
1.15k
    const U32 ilimitIdx = (U32)(ilimit - prefixPtr) + prefixIdx;
578
1.15k
    const BYTE* const dictStart = ctx->dictStart;
579
1.15k
    const U32 dictIdx = ctx->lowLimit;
580
1.15k
    const U32 gDictEndIndex = ctx->lowLimit;
581
1.15k
    const LZ4MID_searchIntoDict_f searchIntoDict = (dict == usingDictCtxHc) ? select_searchDict_function(ctx->dictCtx) : NULL;
582
1.15k
    unsigned matchLength;
583
1.15k
    unsigned matchDistance;
584
585
1.15k
    DEBUGLOG(5, "LZ4MID_compress (%i bytes)", *srcSizePtr);
586
587
    /* preconditions verifications */
588
1.15k
    if (dict == usingDictCtxHc) DEBUGLOG(5, "usingDictCtxHc");
589
1.15k
    assert(*srcSizePtr > 0);
590
1.15k
    assert(*srcSizePtr <= LZ4_MAX_INPUT_SIZE);
591
1.15k
    assert(src != NULL);
592
1.15k
    assert(maxOutputSize >= 1);
593
1.15k
    assert(dst != NULL);
594
595
1.15k
    if (limit == fillOutput) oend -= LASTLITERALS;  /* Hack for support LZ4 format restriction */
596
1.15k
    if (*srcSizePtr < LZ4_minLength)
597
12
        goto _lz4mid_last_literals;  /* Input too small, no compression (all literals) */
598
599
    /* main loop */
600
6.94M
    while (ip <= mflimit) {
601
6.94M
        const U32 ipIndex = (U32)(ip - prefixPtr) + prefixIdx;
602
        /* search long match */
603
6.94M
        {   U32 const h8 = LZ4MID_hash8Ptr(ip);
604
6.94M
            U32 const pos8 = hash8Table[h8];
605
6.94M
            assert(h8 < LZ4MID_HASHTABLESIZE);
606
6.94M
            assert(pos8 < ipIndex);
607
6.94M
            LZ4MID_addPosition(hash8Table, h8, ipIndex);
608
6.94M
            if (ipIndex - pos8 <= LZ4_DISTANCE_MAX) {
609
                /* match candidate found */
610
5.25M
                if (pos8 >= prefixIdx) {
611
5.25M
                    const BYTE* const matchPtr = prefixPtr + pos8 - prefixIdx;
612
5.25M
                    assert(matchPtr < ip);
613
5.25M
                    matchLength = LZ4_count(ip, matchPtr, matchlimit);
614
5.25M
                    if (matchLength >= MINMATCH) {
615
637k
                        DEBUGLOG(7, "found long match at pos %u (len=%u)", pos8, matchLength);
616
637k
                        matchDistance = ipIndex - pos8;
617
637k
                        goto _lz4mid_encode_sequence;
618
637k
                    }
619
5.25M
                } else {
620
0
                    if (pos8 >= dictIdx) {
621
                        /* extDict match candidate */
622
0
                        const BYTE* const matchPtr = dictStart + (pos8 - dictIdx);
623
0
                        const size_t safeLen = MIN(prefixIdx - pos8, (size_t)(matchlimit - ip));
624
0
                        matchLength = LZ4_count(ip, matchPtr, ip + safeLen);
625
0
                        if (matchLength >= MINMATCH) {
626
0
                            DEBUGLOG(7, "found long match at ExtDict pos %u (len=%u)", pos8, matchLength);
627
0
                            matchDistance = ipIndex - pos8;
628
0
                            goto _lz4mid_encode_sequence;
629
0
                        }
630
0
                    }
631
0
                }
632
5.25M
        }   }
633
        /* search short match */
634
6.30M
        {   U32 const h4 = LZ4MID_hash4Ptr(ip);
635
6.30M
            U32 const pos4 = hash4Table[h4];
636
6.30M
            assert(h4 < LZ4MID_HASHTABLESIZE);
637
6.30M
            assert(pos4 < ipIndex);
638
6.30M
            LZ4MID_addPosition(hash4Table, h4, ipIndex);
639
6.30M
            if (ipIndex - pos4 <= LZ4_DISTANCE_MAX) {
640
                /* match candidate found */
641
4.50M
                if (pos4 >= prefixIdx) {
642
                /* only search within prefix */
643
4.50M
                    const BYTE* const matchPtr = prefixPtr + (pos4 - prefixIdx);
644
4.50M
                    assert(matchPtr < ip);
645
4.50M
                    assert(matchPtr >= prefixPtr);
646
4.50M
                    matchLength = LZ4_count(ip, matchPtr, matchlimit);
647
4.50M
                    if (matchLength >= MINMATCH) {
648
                        /* short match found, let's just check ip+1 for longer */
649
736k
                        U32 const h8 = LZ4MID_hash8Ptr(ip+1);
650
736k
                        U32 const pos8 = hash8Table[h8];
651
736k
                        U32 const m2Distance = ipIndex + 1 - pos8;
652
736k
                        matchDistance = ipIndex - pos4;
653
736k
                        if ( m2Distance <= LZ4_DISTANCE_MAX
654
618k
                        && pos8 >= prefixIdx /* only search within prefix */
655
618k
                        && likely(ip < mflimit)
656
736k
                        ) {
657
618k
                            const BYTE* const m2Ptr = prefixPtr + (pos8 - prefixIdx);
658
618k
                            unsigned ml2 = LZ4_count(ip+1, m2Ptr, matchlimit);
659
618k
                            if (ml2 > matchLength) {
660
53.9k
                                LZ4MID_addPosition(hash8Table, h8, ipIndex+1);
661
53.9k
                                ip++;
662
53.9k
                                matchLength = ml2;
663
53.9k
                                matchDistance = m2Distance;
664
53.9k
                        }   }
665
736k
                        goto _lz4mid_encode_sequence;
666
736k
                    }
667
4.50M
                } else {
668
0
                    if (pos4 >= dictIdx) {
669
                        /* extDict match candidate */
670
0
                        const BYTE* const matchPtr = dictStart + (pos4 - dictIdx);
671
0
                        const size_t safeLen = MIN(prefixIdx - pos4, (size_t)(matchlimit - ip));
672
0
                        matchLength = LZ4_count(ip, matchPtr, ip + safeLen);
673
0
                        if (matchLength >= MINMATCH) {
674
0
                            DEBUGLOG(7, "found match at ExtDict pos %u (len=%u)", pos4, matchLength);
675
0
                            matchDistance = ipIndex - pos4;
676
0
                            goto _lz4mid_encode_sequence;
677
0
                        }
678
0
                    }
679
0
                }
680
4.50M
        }   }
681
        /* no match found in prefix */
682
5.57M
        if ( (dict == usingDictCtxHc)
683
0
          && (ipIndex - gDictEndIndex < LZ4_DISTANCE_MAX - 8) ) {
684
            /* search a match into external dictionary */
685
0
            LZ4HC_match_t dMatch = searchIntoDict(ip, ipIndex,
686
0
                    matchlimit,
687
0
                    ctx->dictCtx, gDictEndIndex);
688
0
            if (dMatch.len >= MINMATCH) {
689
0
                DEBUGLOG(7, "found Dictionary match (offset=%i)", dMatch.off);
690
0
                assert(dMatch.back == 0);
691
0
                matchLength = (unsigned)dMatch.len;
692
0
                matchDistance = (unsigned)dMatch.off;
693
0
                goto _lz4mid_encode_sequence;
694
0
            }
695
0
        }
696
        /* no match found */
697
5.57M
        ip += 1 + ((ip-anchor) >> 9);  /* skip faster over incompressible data */
698
5.57M
        continue;
699
700
1.37M
_lz4mid_encode_sequence:
701
        /* catch back */
702
1.48M
        while (((ip > anchor) & ((U32)(ip-prefixPtr) > matchDistance)) && (unlikely(ip[-1] == ip[-(int)matchDistance-1]))) {
703
110k
            ip--;  matchLength++;
704
110k
        };
705
706
        /* fill table with beginning of match */
707
1.37M
        ADDPOS8(ip+1, ipIndex+1);
708
1.37M
        ADDPOS8(ip+2, ipIndex+2);
709
1.37M
        ADDPOS4(ip+1, ipIndex+1);
710
711
        /* encode */
712
1.37M
        {   BYTE* const saved_op = op;
713
            /* LZ4HC_encodeSequence always updates @op; on success, it updates @ip and @anchor */
714
1.37M
            if (LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
715
1.37M
                    (int)matchLength, (int)matchDistance,
716
1.37M
                    limit, oend) ) {
717
0
                op = saved_op;  /* restore @op value before failed LZ4HC_encodeSequence */
718
0
                goto _lz4mid_dest_overflow;
719
0
            }
720
1.37M
        }
721
722
        /* fill table with end of match */
723
1.37M
        {   U32 endMatchIdx = (U32)(ip-prefixPtr) + prefixIdx;
724
1.37M
            U32 pos_m2 = endMatchIdx - 2;
725
1.37M
            if (pos_m2 < ilimitIdx) {
726
1.37M
                if (likely(ip - prefixPtr > 5)) {
727
1.37M
                    ADDPOS8(ip-5, endMatchIdx - 5);
728
1.37M
                }
729
1.37M
                ADDPOS8(ip-3, endMatchIdx - 3);
730
1.37M
                ADDPOS8(ip-2, endMatchIdx - 2);
731
1.37M
                ADDPOS4(ip-2, endMatchIdx - 2);
732
1.37M
                ADDPOS4(ip-1, endMatchIdx - 1);
733
1.37M
            }
734
1.37M
        }
735
1.37M
    }
736
737
1.15k
_lz4mid_last_literals:
738
    /* Encode Last Literals */
739
1.15k
    {   size_t lastRunSize = (size_t)(iend - anchor);  /* literals */
740
1.15k
        size_t llAdd = (lastRunSize + 255 - RUN_MASK) / 255;
741
1.15k
        size_t const totalSize = 1 + llAdd + lastRunSize;
742
1.15k
        if (limit == fillOutput) oend += LASTLITERALS;  /* restore correct value */
743
1.15k
        if (limit && (op + totalSize > oend)) {
744
0
            if (limit == limitedOutput) return 0;  /* not enough space in @dst */
745
            /* adapt lastRunSize to fill 'dest' */
746
0
            lastRunSize  = (size_t)(oend - op) - 1 /*token*/;
747
0
            llAdd = (lastRunSize + 256 - RUN_MASK) / 256;
748
0
            lastRunSize -= llAdd;
749
0
        }
750
1.15k
        DEBUGLOG(6, "Final literal run : %i literals", (int)lastRunSize);
751
1.15k
        ip = anchor + lastRunSize;  /* can be != iend if limit==fillOutput */
752
753
1.15k
        if (lastRunSize >= RUN_MASK) {
754
194
            size_t accumulator = lastRunSize - RUN_MASK;
755
194
            *op++ = (RUN_MASK << ML_BITS);
756
34.2k
            for(; accumulator >= 255 ; accumulator -= 255)
757
34.0k
                *op++ = 255;
758
194
            *op++ = (BYTE) accumulator;
759
957
        } else {
760
957
            *op++ = (BYTE)(lastRunSize << ML_BITS);
761
957
        }
762
1.15k
        assert(lastRunSize <= (size_t)(oend - op));
763
1.15k
        LZ4_memcpy(op, anchor, lastRunSize);
764
1.15k
        op += lastRunSize;
765
1.15k
    }
766
767
    /* End */
768
1.15k
    DEBUGLOG(5, "compressed %i bytes into %i bytes", *srcSizePtr, (int)((char*)op - dst));
769
1.15k
    assert(ip >= (const BYTE*)src);
770
1.15k
    assert(ip <= iend);
771
1.15k
    *srcSizePtr = (int)(ip - (const BYTE*)src);
772
1.15k
    assert((char*)op >= dst);
773
1.15k
    assert(op <= oend);
774
1.15k
    assert((char*)op - dst < INT_MAX);
775
1.15k
    return (int)((char*)op - dst);
776
777
0
_lz4mid_dest_overflow:
778
0
    if (limit == fillOutput) {
779
        /* Assumption : @ip, @anchor, @optr and @matchLength must be set correctly */
780
0
        size_t const ll = (size_t)(ip - anchor);
781
0
        size_t const ll_addbytes = (ll + 240) / 255;
782
0
        size_t const ll_totalCost = 1 + ll_addbytes + ll;
783
0
        BYTE* const maxLitPos = oend - 3; /* 2 for offset, 1 for token */
784
0
        DEBUGLOG(6, "Last sequence is overflowing : %u literals, %u remaining space",
785
0
                (unsigned)ll, (unsigned)(oend-op));
786
0
        if (op + ll_totalCost <= maxLitPos) {
787
            /* ll validated; now adjust match length */
788
0
            size_t const bytesLeftForMl = (size_t)(maxLitPos - (op+ll_totalCost));
789
0
            size_t const maxMlSize = MINMATCH + (ML_MASK-1) + (bytesLeftForMl * 255);
790
0
            assert(maxMlSize < INT_MAX);
791
0
            if ((size_t)matchLength > maxMlSize) matchLength= (unsigned)maxMlSize;
792
0
            if ((oend + LASTLITERALS) - (op + ll_totalCost + 2) - 1 + matchLength >= MFLIMIT) {
793
0
            DEBUGLOG(6, "Let's encode a last sequence (ll=%u, ml=%u)", (unsigned)ll, matchLength);
794
0
                LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
795
0
                        (int)matchLength, (int)matchDistance,
796
0
                        notLimited, oend);
797
0
        }   }
798
0
        DEBUGLOG(6, "Let's finish with a run of literals (%u bytes left)", (unsigned)(oend-op));
799
0
        goto _lz4mid_last_literals;
800
0
    }
801
    /* compression failed */
802
0
    return 0;
803
0
}
804
805
806
/**************************************
807
*  HC Compression - Search
808
**************************************/
809
810
/* Update chains up to ip (excluded) */
811
LZ4_FORCE_INLINE void LZ4HC_Insert (LZ4HC_CCtx_internal* hc4, const BYTE* ip)
812
43.4M
{
813
43.4M
    U16* const chainTable = hc4->chainTable;
814
43.4M
    U32* const hashTable  = hc4->hashTable;
815
43.4M
    const BYTE* const prefixPtr = hc4->prefixStart;
816
43.4M
    U32 const prefixIdx = hc4->dictLimit;
817
43.4M
    U32 const target = (U32)(ip - prefixPtr) + prefixIdx;
818
43.4M
    U32 idx = hc4->nextToUpdate;
819
43.4M
    assert(ip >= prefixPtr);
820
43.4M
    assert(target >= prefixIdx);
821
822
258M
    while (idx < target) {
823
214M
        U32 const h = LZ4HC_hashPtr(prefixPtr+idx-prefixIdx);
824
214M
        size_t delta = idx - hashTable[h];
825
214M
        if (delta>LZ4_DISTANCE_MAX) delta = LZ4_DISTANCE_MAX;
826
214M
        DELTANEXTU16(chainTable, idx) = (U16)delta;
827
214M
        hashTable[h] = idx;
828
214M
        idx++;
829
214M
    }
830
831
43.4M
    hc4->nextToUpdate = target;
832
43.4M
}
833
834
#if defined(_MSC_VER)
835
#  define LZ4HC_rotl32(x,r) _rotl(x,r)
836
#else
837
0
#  define LZ4HC_rotl32(x,r) ((x << r) | (x >> (32 - r)))
838
#endif
839
840
841
static U32 LZ4HC_rotatePattern(size_t const rotate, U32 const pattern)
842
0
{
843
0
    size_t const bitsToRotate = (rotate & (sizeof(pattern) - 1)) << 3;
844
0
    if (bitsToRotate == 0) return pattern;
845
0
    return LZ4HC_rotl32(pattern, (int)bitsToRotate);
846
0
}
847
848
/* LZ4HC_countPattern() :
849
 * pattern32 must be a sample of repetitive pattern of length 1, 2 or 4 (but not 3!) */
850
static unsigned
851
LZ4HC_countPattern(const BYTE* ip, const BYTE* const iEnd, U32 const pattern32)
852
84.8M
{
853
84.8M
    const BYTE* const iStart = ip;
854
84.8M
    reg_t const pattern = (sizeof(pattern)==8) ?
855
84.8M
        (reg_t)pattern32 + (((reg_t)pattern32) << (sizeof(pattern)*4)) : pattern32;
856
857
164M
    while (likely(ip < iEnd-(sizeof(pattern)-1))) {
858
164M
        reg_t const diff = LZ4_read_ARCH(ip) ^ pattern;
859
164M
        if (!diff) { ip+=sizeof(pattern); continue; }
860
84.8M
        ip += LZ4_NbCommonBytes(diff);
861
84.8M
        return (unsigned)(ip - iStart);
862
164M
    }
863
864
8.87k
    if (LZ4_isLittleEndian()) {
865
8.87k
        reg_t patternByte = pattern;
866
34.2k
        while ((ip<iEnd) && (*ip == (BYTE)patternByte)) {
867
25.3k
            ip++; patternByte >>= 8;
868
25.3k
        }
869
8.87k
    } else {  /* big endian */
870
0
        U32 bitOffset = (sizeof(pattern)*8) - 8;
871
0
        while (ip < iEnd) {
872
0
            BYTE const byte = (BYTE)(pattern >> bitOffset);
873
0
            if (*ip != byte) break;
874
0
            ip ++; bitOffset -= 8;
875
0
    }   }
876
877
8.87k
    return (unsigned)(ip - iStart);
878
84.8M
}
879
880
/* LZ4HC_reverseCountPattern() :
881
 * pattern must be a sample of repetitive pattern of length 1, 2 or 4 (but not 3!)
882
 * read using natural platform endianness */
883
static unsigned
884
LZ4HC_reverseCountPattern(const BYTE* ip, const BYTE* const iLow, U32 pattern)
885
84.1M
{
886
84.1M
    const BYTE* const iStart = ip;
887
888
1.49G
    while (likely(ip >= iLow+4)) {
889
1.49G
        if (LZ4_read32(ip-4) != pattern) break;
890
1.41G
        ip -= 4;
891
1.41G
    }
892
84.1M
    {   const BYTE* bytePtr = (const BYTE*)(&pattern) + 3; /* works for any endianness */
893
192M
        while (likely(ip>iLow)) {
894
192M
            if (ip[-1] != *bytePtr) break;
895
108M
            ip--; bytePtr--;
896
108M
    }   }
897
84.1M
    return (unsigned)(iStart - ip);
898
84.1M
}
899
900
/* LZ4HC_protectDictEnd() :
901
 * Checks if the match is in the last 3 bytes of the dictionary, so reading the
902
 * 4 byte MINMATCH would overflow.
903
 * @returns true if the match index is okay.
904
 */
905
static int LZ4HC_protectDictEnd(U32 const dictLimit, U32 const matchIndex)
906
168M
{
907
168M
    return ((U32)((dictLimit - 1) - matchIndex) >= 3);
908
168M
}
909
910
typedef enum { rep_untested, rep_not, rep_confirmed } repeat_state_e;
911
typedef enum { favorCompressionRatio=0, favorDecompressionSpeed } HCfavor_e;
912
913
914
LZ4_FORCE_INLINE LZ4HC_match_t
915
LZ4HC_InsertAndGetWiderMatch (
916
        LZ4HC_CCtx_internal* const hc4,
917
        const BYTE* const ip,
918
        const BYTE* const iLowLimit, const BYTE* const iHighLimit,
919
        int longest,
920
        const int maxNbAttempts,
921
        const int patternAnalysis, const int chainSwap,
922
        const dictCtx_directive dict,
923
        const HCfavor_e favorDecSpeed)
924
43.4M
{
925
43.4M
    U16* const chainTable = hc4->chainTable;
926
43.4M
    U32* const hashTable = hc4->hashTable;
927
43.4M
    const LZ4HC_CCtx_internal* const dictCtx = hc4->dictCtx;
928
43.4M
    const BYTE* const prefixPtr = hc4->prefixStart;
929
43.4M
    const U32 prefixIdx = hc4->dictLimit;
930
43.4M
    const U32 ipIndex = (U32)(ip - prefixPtr) + prefixIdx;
931
43.4M
    const int withinStartDistance = (hc4->lowLimit + (LZ4_DISTANCE_MAX + 1) > ipIndex);
932
43.4M
    const U32 lowestMatchIndex = (withinStartDistance) ? hc4->lowLimit : ipIndex - LZ4_DISTANCE_MAX;
933
43.4M
    const BYTE* const dictStart = hc4->dictStart;
934
43.4M
    const U32 dictIdx = hc4->lowLimit;
935
43.4M
    const BYTE* const dictEnd = dictStart + prefixIdx - dictIdx;
936
43.4M
    int const lookBackLength = (int)(ip-iLowLimit);
937
43.4M
    int nbAttempts = maxNbAttempts;
938
43.4M
    U32 matchChainPos = 0;
939
43.4M
    U32 const pattern = LZ4_read32(ip);
940
43.4M
    U32 matchIndex;
941
43.4M
    repeat_state_e repeat = rep_untested;
942
43.4M
    size_t srcPatternLength = 0;
943
43.4M
    int offset = 0, sBack = 0;
944
945
43.4M
    DEBUGLOG(7, "LZ4HC_InsertAndGetWiderMatch");
946
    /* First Match */
947
43.4M
    LZ4HC_Insert(hc4, ip);  /* insert all prior positions up to ip (excluded) */
948
43.4M
    matchIndex = hashTable[LZ4HC_hashPtr(ip)];
949
43.4M
    DEBUGLOG(7, "First candidate match for pos %u found at index %u / %u (lowestMatchIndex)",
950
43.4M
                ipIndex, matchIndex, lowestMatchIndex);
951
952
557M
    while ((matchIndex>=lowestMatchIndex) && (nbAttempts>0)) {
953
514M
        int matchLength=0;
954
514M
        nbAttempts--;
955
514M
        assert(matchIndex < ipIndex);
956
514M
        if (favorDecSpeed && (ipIndex - matchIndex < 8)) {
957
            /* do nothing:
958
             * favorDecSpeed intentionally skips matches with offset < 8 */
959
514M
        } else if (matchIndex >= prefixIdx) {   /* within current Prefix */
960
514M
            const BYTE* const matchPtr = prefixPtr + (matchIndex - prefixIdx);
961
514M
            assert(matchPtr < ip);
962
514M
            assert(longest >= 1);
963
514M
            if (LZ4_read16(iLowLimit + longest - 1) == LZ4_read16(matchPtr - lookBackLength + longest - 1)) {
964
50.8M
                if (LZ4_read32(matchPtr) == pattern) {
965
36.1M
                    int const back = lookBackLength ? LZ4HC_countBack(ip, matchPtr, iLowLimit, prefixPtr) : 0;
966
36.1M
                    matchLength = MINMATCH + (int)LZ4_count(ip+MINMATCH, matchPtr+MINMATCH, iHighLimit);
967
36.1M
                    matchLength -= back;
968
36.1M
                    if (matchLength > longest) {
969
6.77M
                        longest = matchLength;
970
6.77M
                        offset = (int)(ipIndex - matchIndex);
971
6.77M
                        sBack = back;
972
6.77M
                        DEBUGLOG(7, "Found match of len=%i within prefix, offset=%i, back=%i", longest, offset, -back);
973
6.77M
                        HEX_CMP(7, ip + back, ip + back - offset, (size_t)matchLength);
974
6.77M
            }   }   }
975
514M
        } else {   /* lowestMatchIndex <= matchIndex < dictLimit : within Ext Dict */
976
0
            const BYTE* const matchPtr = dictStart + (matchIndex - dictIdx);
977
0
            assert(matchIndex >= dictIdx);
978
0
            if ( likely(matchIndex <= prefixIdx - 4)
979
0
              && (LZ4_read32(matchPtr) == pattern) ) {
980
0
                int back = 0;
981
0
                const BYTE* vLimit = ip + (prefixIdx - matchIndex);
982
0
                if (vLimit > iHighLimit) vLimit = iHighLimit;
983
0
                matchLength = (int)LZ4_count(ip+MINMATCH, matchPtr+MINMATCH, vLimit) + MINMATCH;
984
0
                if ((ip+matchLength == vLimit) && (vLimit < iHighLimit))
985
0
                    matchLength += LZ4_count(ip+matchLength, prefixPtr, iHighLimit);
986
0
                back = lookBackLength ? LZ4HC_countBack(ip, matchPtr, iLowLimit, dictStart) : 0;
987
0
                matchLength -= back;
988
0
                if (matchLength > longest) {
989
0
                    longest = matchLength;
990
0
                    offset = (int)(ipIndex - matchIndex);
991
0
                    sBack = back;
992
0
                    DEBUGLOG(7, "Found match of len=%i within dict, offset=%i, back=%i", longest, offset, -back);
993
0
                    HEX_CMP(7, ip + back, matchPtr + back, (size_t)matchLength);
994
0
        }   }   }
995
996
514M
        if (chainSwap && matchLength==longest) {   /* better match => select a better chain */
997
3.32M
            assert(lookBackLength==0);   /* search forward only */
998
3.32M
            if (matchIndex + (U32)longest <= ipIndex) {
999
2.93M
                int const kTrigger = 4;
1000
2.93M
                U32 distanceToNextMatch = 1;
1001
2.93M
                int const end = longest - MINMATCH + 1;
1002
2.93M
                int step = 1;
1003
2.93M
                int accel = 1 << kTrigger;
1004
2.93M
                int pos;
1005
75.2M
                for (pos = 0; pos < end; pos += step) {
1006
72.3M
                    U32 const candidateDist = DELTANEXTU16(chainTable, matchIndex + (U32)pos);
1007
72.3M
                    step = (accel++ >> kTrigger);
1008
72.3M
                    if (candidateDist > distanceToNextMatch) {
1009
3.54M
                        distanceToNextMatch = candidateDist;
1010
3.54M
                        matchChainPos = (U32)pos;
1011
3.54M
                        accel = 1 << kTrigger;
1012
3.54M
                }   }
1013
2.93M
                if (distanceToNextMatch > 1) {
1014
2.68M
                    if (distanceToNextMatch > matchIndex) break;   /* avoid overflow */
1015
2.68M
                    matchIndex -= distanceToNextMatch;
1016
2.68M
                    continue;
1017
2.68M
        }   }   }
1018
1019
511M
        {   U32 const distNextMatch = DELTANEXTU16(chainTable, matchIndex);
1020
511M
            if (patternAnalysis && distNextMatch==1 && matchChainPos==0) {
1021
92.5M
                U32 const matchCandidateIdx = matchIndex-1;
1022
                /* may be a repeated pattern */
1023
92.5M
                if (repeat == rep_untested) {
1024
759k
                    if ( ((pattern & 0xFFFF) == (pattern >> 16))
1025
759k
                      &  ((pattern & 0xFF)   == (pattern >> 24)) ) {
1026
746k
                        DEBUGLOG(7, "Repeat pattern detected, char %02X", pattern >> 24);
1027
746k
                        repeat = rep_confirmed;
1028
746k
                        srcPatternLength = LZ4HC_countPattern(ip+sizeof(pattern), iHighLimit, pattern) + sizeof(pattern);
1029
746k
                    } else {
1030
12.6k
                        repeat = rep_not;
1031
12.6k
                }   }
1032
92.5M
                if ( (repeat == rep_confirmed) && (matchCandidateIdx >= lowestMatchIndex)
1033
84.2M
                  && LZ4HC_protectDictEnd(prefixIdx, matchCandidateIdx) ) {
1034
84.2M
                    const int extDict = matchCandidateIdx < prefixIdx;
1035
84.2M
                    const BYTE* const matchPtr = extDict ? dictStart + (matchCandidateIdx - dictIdx) : prefixPtr + (matchCandidateIdx - prefixIdx);
1036
84.2M
                    if (LZ4_read32(matchPtr) == pattern) {  /* good candidate */
1037
84.1M
                        const BYTE* const iLimit = extDict ? dictEnd : iHighLimit;
1038
84.1M
                        size_t forwardPatternLength = LZ4HC_countPattern(matchPtr+sizeof(pattern), iLimit, pattern) + sizeof(pattern);
1039
84.1M
                        if (extDict && matchPtr + forwardPatternLength == iLimit) {
1040
0
                            U32 const rotatedPattern = LZ4HC_rotatePattern(forwardPatternLength, pattern);
1041
0
                            forwardPatternLength += LZ4HC_countPattern(prefixPtr, iHighLimit, rotatedPattern);
1042
0
                        }
1043
84.1M
                        {   const BYTE* const lowestMatchPtr = extDict ? dictStart : prefixPtr;
1044
84.1M
                            size_t backLength = LZ4HC_reverseCountPattern(matchPtr, lowestMatchPtr, pattern);
1045
84.1M
                            size_t currentSegmentLength;
1046
84.1M
                            if (!extDict
1047
84.1M
                              && matchPtr - backLength == prefixPtr
1048
34.8k
                              && dictIdx < prefixIdx) {
1049
0
                                U32 const rotatedPattern = LZ4HC_rotatePattern((U32)(-(int)backLength), pattern);
1050
0
                                backLength += LZ4HC_reverseCountPattern(dictEnd, dictStart, rotatedPattern);
1051
0
                            }
1052
                            /* Limit backLength not go further than lowestMatchIndex */
1053
84.1M
                            backLength = matchCandidateIdx - MAX(matchCandidateIdx - (U32)backLength, lowestMatchIndex);
1054
84.1M
                            assert(matchCandidateIdx - backLength >= lowestMatchIndex);
1055
84.1M
                            currentSegmentLength = backLength + forwardPatternLength;
1056
                            /* Adjust to end of pattern if the source pattern fits, otherwise the beginning of the pattern */
1057
84.1M
                            if ( (currentSegmentLength >= srcPatternLength)   /* current pattern segment large enough to contain full srcPatternLength */
1058
44.2M
                              && (forwardPatternLength <= srcPatternLength) ) { /* haven't reached this position yet */
1059
19.9M
                                U32 const newMatchIndex = matchCandidateIdx + (U32)forwardPatternLength - (U32)srcPatternLength;  /* best position, full pattern, might be followed by more match */
1060
19.9M
                                if (LZ4HC_protectDictEnd(prefixIdx, newMatchIndex))
1061
19.9M
                                    matchIndex = newMatchIndex;
1062
0
                                else {
1063
                                    /* Can only happen if started in the prefix */
1064
0
                                    assert(newMatchIndex >= prefixIdx - 3 && newMatchIndex < prefixIdx && !extDict);
1065
0
                                    matchIndex = prefixIdx;
1066
0
                                }
1067
64.1M
                            } else {
1068
64.1M
                                U32 const newMatchIndex = matchCandidateIdx - (U32)backLength;   /* farthest position in current segment, will find a match of length currentSegmentLength + maybe some back */
1069
64.1M
                                if (!LZ4HC_protectDictEnd(prefixIdx, newMatchIndex)) {
1070
0
                                    assert(newMatchIndex >= prefixIdx - 3 && newMatchIndex < prefixIdx && !extDict);
1071
0
                                    matchIndex = prefixIdx;
1072
64.1M
                                } else {
1073
64.1M
                                    matchIndex = newMatchIndex;
1074
64.1M
                                    if (lookBackLength==0) {  /* no back possible */
1075
61.2M
                                        size_t const maxML = MIN(currentSegmentLength, srcPatternLength);
1076
61.2M
                                        if ((size_t)longest < maxML) {
1077
153k
                                            assert(prefixPtr - prefixIdx + matchIndex != ip);
1078
153k
                                            if ((size_t)(ip - prefixPtr) + prefixIdx - matchIndex > LZ4_DISTANCE_MAX) break;
1079
153k
                                            assert(maxML < 2 GB);
1080
153k
                                            longest = (int)maxML;
1081
153k
                                            offset = (int)(ipIndex - matchIndex);
1082
153k
                                            assert(sBack == 0);
1083
153k
                                            DEBUGLOG(7, "Found repeat pattern match of len=%i, offset=%i", longest, offset);
1084
153k
                                        }
1085
61.2M
                                        {   U32 const distToNextPattern = DELTANEXTU16(chainTable, matchIndex);
1086
61.2M
                                            if (distToNextPattern > matchIndex) break;  /* avoid overflow */
1087
61.2M
                                            matchIndex -= distToNextPattern;
1088
61.2M
                        }   }   }   }   }
1089
84.1M
                        continue;
1090
84.1M
                }   }
1091
92.5M
        }   }   /* PA optimization */
1092
1093
        /* follow current chain */
1094
427M
        matchIndex -= DELTANEXTU16(chainTable, matchIndex + matchChainPos);
1095
1096
427M
    }  /* while ((matchIndex>=lowestMatchIndex) && (nbAttempts)) */
1097
1098
43.4M
    if ( dict == usingDictCtxHc
1099
0
      && nbAttempts > 0
1100
0
      && withinStartDistance) {
1101
0
        size_t const dictEndOffset = (size_t)(dictCtx->end - dictCtx->prefixStart) + dictCtx->dictLimit;
1102
0
        U32 dictMatchIndex = dictCtx->hashTable[LZ4HC_hashPtr(ip)];
1103
0
        assert(dictEndOffset <= 1 GB);
1104
0
        matchIndex = dictMatchIndex + lowestMatchIndex - (U32)dictEndOffset;
1105
0
        if (dictMatchIndex>0) DEBUGLOG(7, "dictEndOffset = %zu, dictMatchIndex = %u => relative matchIndex = %i", dictEndOffset, dictMatchIndex, (int)dictMatchIndex - (int)dictEndOffset);
1106
0
        while (ipIndex - matchIndex <= LZ4_DISTANCE_MAX && nbAttempts--) {
1107
0
            const BYTE* const matchPtr = dictCtx->prefixStart - dictCtx->dictLimit + dictMatchIndex;
1108
1109
0
            if (LZ4_read32(matchPtr) == pattern) {
1110
0
                int mlt;
1111
0
                int back = 0;
1112
0
                const BYTE* vLimit = ip + (dictEndOffset - dictMatchIndex);
1113
0
                if (vLimit > iHighLimit) vLimit = iHighLimit;
1114
0
                mlt = (int)LZ4_count(ip+MINMATCH, matchPtr+MINMATCH, vLimit) + MINMATCH;
1115
0
                back = lookBackLength ? LZ4HC_countBack(ip, matchPtr, iLowLimit, dictCtx->prefixStart) : 0;
1116
0
                mlt -= back;
1117
0
                if (mlt > longest) {
1118
0
                    longest = mlt;
1119
0
                    offset = (int)(ipIndex - matchIndex);
1120
0
                    sBack = back;
1121
0
                    DEBUGLOG(7, "found match of length %i within extDictCtx", longest);
1122
0
            }   }
1123
1124
0
            {   U32 const nextOffset = DELTANEXTU16(dictCtx->chainTable, dictMatchIndex);
1125
0
                dictMatchIndex -= nextOffset;
1126
0
                matchIndex -= nextOffset;
1127
0
    }   }   }
1128
1129
43.4M
    {   LZ4HC_match_t md;
1130
43.4M
        assert(longest >= 0);
1131
43.4M
        md.len = longest;
1132
43.4M
        md.off = offset;
1133
43.4M
        md.back = sBack;
1134
43.4M
        return md;
1135
43.4M
    }
1136
43.4M
}
1137
1138
LZ4_FORCE_INLINE LZ4HC_match_t
1139
LZ4HC_InsertAndFindBestMatch(LZ4HC_CCtx_internal* const hc4,   /* Index table will be updated */
1140
                       const BYTE* const ip, const BYTE* const iLimit,
1141
                       const int maxNbAttempts,
1142
                       const int patternAnalysis,
1143
                       const dictCtx_directive dict)
1144
20.9M
{
1145
20.9M
    DEBUGLOG(7, "LZ4HC_InsertAndFindBestMatch");
1146
    /* note : LZ4HC_InsertAndGetWiderMatch() is able to modify the starting position of a match (*startpos),
1147
     * but this won't be the case here, as we define iLowLimit==ip,
1148
     * so LZ4HC_InsertAndGetWiderMatch() won't be allowed to search past ip */
1149
20.9M
    return LZ4HC_InsertAndGetWiderMatch(hc4, ip, ip, iLimit, MINMATCH-1, maxNbAttempts, patternAnalysis, 0 /*chainSwap*/, dict, favorCompressionRatio);
1150
20.9M
}
1151
1152
1153
/* preconditions:
1154
 * - *srcSizePtr within [1, LZ4_MAX_INPUT_SIZE]
1155
 * - src is valid
1156
 * - maxOutputSize >= 1
1157
 * - dst is valid
1158
 */
1159
LZ4_FORCE_INLINE int LZ4HC_compress_hashChain (
1160
    LZ4HC_CCtx_internal* const ctx,
1161
    const char* const src,
1162
    char* const dst,
1163
    int* srcSizePtr,
1164
    int const maxOutputSize,
1165
    int maxNbAttempts,
1166
    const limitedOutput_directive limit,
1167
    const dictCtx_directive dict
1168
    )
1169
3.16k
{
1170
3.16k
    const int inputSize = *srcSizePtr;
1171
3.16k
    const int patternAnalysis = (maxNbAttempts > 128);   /* levels 9+ */
1172
1173
3.16k
    const BYTE* ip = (const BYTE*)src;
1174
3.16k
    const BYTE* anchor = ip;
1175
3.16k
    const BYTE* const iend = ip + inputSize;
1176
3.16k
    const BYTE* const mflimit = iend - MFLIMIT;
1177
3.16k
    const BYTE* const matchlimit = (iend - LASTLITERALS);
1178
1179
3.16k
    BYTE* optr = (BYTE*) dst;
1180
3.16k
    BYTE* op = (BYTE*) dst;
1181
3.16k
    BYTE* oend = op + maxOutputSize;
1182
1183
3.16k
    const BYTE* start0;
1184
3.16k
    const BYTE* start2 = NULL;
1185
3.16k
    const BYTE* start3 = NULL;
1186
3.16k
    LZ4HC_match_t m0, m1, m2, m3;
1187
3.16k
    const LZ4HC_match_t nomatch = {0, 0, 0};
1188
1189
    /* init */
1190
3.16k
    DEBUGLOG(5, "LZ4HC_compress_hashChain (dict?=>%i)", dict);
1191
1192
    /* preconditions verifications */
1193
3.16k
    assert(*srcSizePtr >= 1);
1194
3.16k
    assert(src != NULL);
1195
3.16k
    assert(maxOutputSize >= 1);
1196
3.16k
    assert(dst != NULL);
1197
1198
3.16k
    *srcSizePtr = 0;
1199
3.16k
    if (limit == fillOutput) oend -= LASTLITERALS;                  /* Hack for support LZ4 format restriction */
1200
3.16k
    if (inputSize < LZ4_minLength) goto _last_literals;             /* Input too small, no compression (all literals) */
1201
1202
    /* Main Loop */
1203
20.9M
    while (ip <= mflimit) {
1204
20.9M
        m1 = LZ4HC_InsertAndFindBestMatch(ctx, ip, matchlimit, maxNbAttempts, patternAnalysis, dict);
1205
20.9M
        if (m1.len<MINMATCH) { ip++; continue; }
1206
1207
        /* saved, in case we would skip too much */
1208
1.87M
        start0 = ip; m0 = m1;
1209
1210
2.30M
_Search2:
1211
2.30M
        DEBUGLOG(7, "_Search2 (currently found match of size %i)", m1.len);
1212
2.30M
        if (ip+m1.len <= mflimit) {
1213
2.29M
            start2 = ip + m1.len - 2;
1214
2.29M
            m2 = LZ4HC_InsertAndGetWiderMatch(ctx,
1215
2.29M
                            start2, ip + 0, matchlimit, m1.len,
1216
2.29M
                            maxNbAttempts, patternAnalysis, 0, dict, favorCompressionRatio);
1217
2.29M
            start2 += m2.back;
1218
2.29M
        } else {
1219
1.85k
            m2 = nomatch;  /* do not search further */
1220
1.85k
        }
1221
1222
2.30M
        if (m2.len <= m1.len) { /* No better match => encode ML1 immediately */
1223
1.75M
            optr = op;
1224
1.75M
            if (LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
1225
1.75M
                    m1.len, m1.off,
1226
1.75M
                    limit, oend) )
1227
0
                goto _dest_overflow;
1228
1.75M
            continue;
1229
1.75M
        }
1230
1231
544k
        if (start0 < ip) {   /* first match was skipped at least once */
1232
67.5k
            if (start2 < ip + m0.len) {  /* squeezing ML1 between ML0(original ML1) and ML2 */
1233
46.1k
                ip = start0; m1 = m0;  /* restore initial Match1 */
1234
46.1k
        }   }
1235
1236
        /* Here, start0==ip */
1237
544k
        if ((start2 - ip) < 3) {  /* First Match too small : removed */
1238
360k
            ip = start2;
1239
360k
            m1 = m2;
1240
360k
            goto _Search2;
1241
360k
        }
1242
1243
221k
_Search3:
1244
221k
        if ((start2 - ip) < OPTIMAL_ML) {
1245
193k
            int correction;
1246
193k
            int new_ml = m1.len;
1247
193k
            if (new_ml > OPTIMAL_ML) new_ml = OPTIMAL_ML;
1248
193k
            if (ip+new_ml > start2 + m2.len - MINMATCH)
1249
516
                new_ml = (int)(start2 - ip) + m2.len - MINMATCH;
1250
193k
            correction = new_ml - (int)(start2 - ip);
1251
193k
            if (correction > 0) {
1252
177k
                start2 += correction;
1253
177k
                m2.len -= correction;
1254
177k
            }
1255
193k
        }
1256
1257
221k
        if (start2 + m2.len <= mflimit) {
1258
221k
            start3 = start2 + m2.len - 3;
1259
221k
            m3 = LZ4HC_InsertAndGetWiderMatch(ctx,
1260
221k
                            start3, start2, matchlimit, m2.len,
1261
221k
                            maxNbAttempts, patternAnalysis, 0, dict, favorCompressionRatio);
1262
221k
            start3 += m3.back;
1263
221k
        } else {
1264
378
            m3 = nomatch;  /* do not search further */
1265
378
        }
1266
1267
221k
        if (m3.len <= m2.len) {  /* No better match => encode ML1 and ML2 */
1268
            /* ip & ref are known; Now for ml */
1269
121k
            if (start2 < ip+m1.len) m1.len = (int)(start2 - ip);
1270
            /* Now, encode 2 sequences */
1271
121k
            optr = op;
1272
121k
            if (LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
1273
121k
                    m1.len, m1.off,
1274
121k
                    limit, oend) )
1275
0
                goto _dest_overflow;
1276
121k
            ip = start2;
1277
121k
            optr = op;
1278
121k
            if (LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
1279
121k
                    m2.len, m2.off,
1280
121k
                    limit, oend) ) {
1281
0
                m1 = m2;
1282
0
                goto _dest_overflow;
1283
0
            }
1284
121k
            continue;
1285
121k
        }
1286
1287
100k
        if (start3 < ip+m1.len+3) {  /* Not enough space for match 2 : remove it */
1288
66.6k
            if (start3 >= (ip+m1.len)) {  /* can write Seq1 immediately ==> Seq2 is removed, so Seq3 becomes Seq1 */
1289
62.5k
                if (start2 < ip+m1.len) {
1290
4.44k
                    int correction = (int)(ip+m1.len - start2);
1291
4.44k
                    start2 += correction;
1292
4.44k
                    m2.len -= correction;
1293
4.44k
                    if (m2.len < MINMATCH) {
1294
47
                        start2 = start3;
1295
47
                        m2 = m3;
1296
47
                    }
1297
4.44k
                }
1298
1299
62.5k
                optr = op;
1300
62.5k
                if (LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
1301
62.5k
                        m1.len, m1.off,
1302
62.5k
                        limit, oend) )
1303
0
                    goto _dest_overflow;
1304
62.5k
                ip  = start3;
1305
62.5k
                m1 = m3;
1306
1307
62.5k
                start0 = start2;
1308
62.5k
                m0 = m2;
1309
62.5k
                goto _Search2;
1310
62.5k
            }
1311
1312
4.16k
            start2 = start3;
1313
4.16k
            m2 = m3;
1314
4.16k
            goto _Search3;
1315
66.6k
        }
1316
1317
        /*
1318
        * OK, now we have 3 ascending matches;
1319
        * let's write the first one ML1.
1320
        * ip & ref are known; Now decide ml.
1321
        */
1322
34.1k
        if (start2 < ip+m1.len) {
1323
8.18k
            if ((start2 - ip) < OPTIMAL_ML) {
1324
0
                int correction;
1325
0
                if (m1.len > OPTIMAL_ML) m1.len = OPTIMAL_ML;
1326
0
                if (ip + m1.len > start2 + m2.len - MINMATCH)
1327
0
                    m1.len = (int)(start2 - ip) + m2.len - MINMATCH;
1328
0
                correction = m1.len - (int)(start2 - ip);
1329
0
                if (correction > 0) {
1330
0
                    start2 += correction;
1331
0
                    m2.len -= correction;
1332
0
                }
1333
8.18k
            } else {
1334
8.18k
                m1.len = (int)(start2 - ip);
1335
8.18k
            }
1336
8.18k
        }
1337
34.1k
        optr = op;
1338
34.1k
        if ( LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor),
1339
34.1k
                m1.len, m1.off,
1340
34.1k
                limit, oend) )
1341
0
            goto _dest_overflow;
1342
1343
        /* ML2 becomes ML1 */
1344
34.1k
        ip = start2; m1 = m2;
1345
1346
        /* ML3 becomes ML2 */
1347
34.1k
        start2 = start3; m2 = m3;
1348
1349
        /* let's find a new ML3 */
1350
34.1k
        goto _Search3;
1351
34.1k
    }
1352
1353
3.16k
_last_literals:
1354
    /* Encode Last Literals */
1355
3.16k
    {   size_t lastRunSize = (size_t)(iend - anchor);  /* literals */
1356
3.16k
        size_t llAdd = (lastRunSize + 255 - RUN_MASK) / 255;
1357
3.16k
        size_t const totalSize = 1 + llAdd + lastRunSize;
1358
3.16k
        if (limit == fillOutput) oend += LASTLITERALS;  /* restore correct value */
1359
3.16k
        if (limit && (op + totalSize > oend)) {
1360
0
            if (limit == limitedOutput) return 0;
1361
            /* adapt lastRunSize to fill 'dest' */
1362
0
            lastRunSize  = (size_t)(oend - op) - 1 /*token*/;
1363
0
            llAdd = (lastRunSize + 256 - RUN_MASK) / 256;
1364
0
            lastRunSize -= llAdd;
1365
0
        }
1366
3.16k
        DEBUGLOG(6, "Final literal run : %i literals", (int)lastRunSize);
1367
3.16k
        ip = anchor + lastRunSize;  /* can be != iend if limit==fillOutput */
1368
1369
3.16k
        if (lastRunSize >= RUN_MASK) {
1370
227
            size_t accumulator = lastRunSize - RUN_MASK;
1371
227
            *op++ = (RUN_MASK << ML_BITS);
1372
8.13k
            for(; accumulator >= 255 ; accumulator -= 255) *op++ = 255;
1373
227
            *op++ = (BYTE) accumulator;
1374
2.93k
        } else {
1375
2.93k
            *op++ = (BYTE)(lastRunSize << ML_BITS);
1376
2.93k
        }
1377
3.16k
        LZ4_memcpy(op, anchor, lastRunSize);
1378
3.16k
        op += lastRunSize;
1379
3.16k
    }
1380
1381
    /* End */
1382
0
    *srcSizePtr = (int) (((const char*)ip) - src);
1383
3.16k
    return (int) (((char*)op)-dst);
1384
1385
0
_dest_overflow:
1386
0
    if (limit == fillOutput) {
1387
        /* Assumption : @ip, @anchor, @optr and @m1 must be set correctly */
1388
0
        size_t const ll = (size_t)(ip - anchor);
1389
0
        size_t const ll_addbytes = (ll + 240) / 255;
1390
0
        size_t const ll_totalCost = 1 + ll_addbytes + ll;
1391
0
        BYTE* const maxLitPos = oend - 3; /* 2 for offset, 1 for token */
1392
0
        DEBUGLOG(6, "Last sequence overflowing");
1393
0
        op = optr;  /* restore correct out pointer */
1394
0
        if (op + ll_totalCost <= maxLitPos) {
1395
            /* ll validated; now adjust match length */
1396
0
            size_t const bytesLeftForMl = (size_t)(maxLitPos - (op+ll_totalCost));
1397
0
            size_t const maxMlSize = MINMATCH + (ML_MASK-1) + (bytesLeftForMl * 255);
1398
0
            assert(maxMlSize < INT_MAX); assert(m1.len >= 0);
1399
0
            if ((size_t)m1.len > maxMlSize) m1.len = (int)maxMlSize;
1400
0
            if ((oend + LASTLITERALS) - (op + ll_totalCost + 2) - 1 + m1.len >= MFLIMIT) {
1401
0
                LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor), m1.len, m1.off, notLimited, oend);
1402
0
        }   }
1403
0
        goto _last_literals;
1404
0
    }
1405
    /* compression failed */
1406
0
    return 0;
1407
0
}
1408
1409
1410
static int LZ4HC_compress_optimal( LZ4HC_CCtx_internal* ctx,
1411
    const char* const source, char* dst,
1412
    int* srcSizePtr, int dstCapacity,
1413
    int const nbSearches, size_t sufficient_len,
1414
    const limitedOutput_directive limit, int const fullUpdate,
1415
    const dictCtx_directive dict,
1416
    const HCfavor_e favorDecSpeed);
1417
1418
static int
1419
LZ4HC_compress_generic_internal (
1420
            LZ4HC_CCtx_internal* const ctx,
1421
            const char* const src,
1422
            char* const dst,
1423
            int* const srcSizePtr,
1424
            int const dstCapacity,
1425
            int cLevel,
1426
            const limitedOutput_directive limit,
1427
            const dictCtx_directive dict
1428
            )
1429
7.68k
{
1430
7.68k
    DEBUGLOG(5, "LZ4HC_compress_generic_internal(src=%p, srcSize=%d, dstCapacity=%d)",
1431
7.68k
                src, *srcSizePtr, dstCapacity);
1432
1433
    /* input sanitization */
1434
7.68k
    if ((U32)*srcSizePtr > (U32)LZ4_MAX_INPUT_SIZE) return 0;  /* Unsupported input size (too large or negative) */
1435
7.68k
    if (dstCapacity < 1) return 0;   /* Invalid: impossible to store anything */
1436
7.68k
    assert(dst); /* since dstCapacity >= 1, dst must be valid */
1437
7.68k
    if (*srcSizePtr == 0) { *dst = 0; return 1; }
1438
7.68k
    assert(src != NULL); /* since *srcSizePtr >= 1, src must be valid */
1439
1440
7.68k
    ctx->end += *srcSizePtr;
1441
7.68k
    {   cParams_t const cParam = LZ4HC_getCLevelParams(cLevel);
1442
7.68k
        HCfavor_e const favor = ctx->favorDecSpeed ? favorDecompressionSpeed : favorCompressionRatio;
1443
7.68k
        int result;
1444
1445
7.68k
        if (cParam.strat == lz4mid) {
1446
1.15k
            result = LZ4MID_compress(ctx,
1447
1.15k
                                src, dst, srcSizePtr, dstCapacity,
1448
1.15k
                                limit, dict);
1449
6.52k
        } else if (cParam.strat == lz4hc) {
1450
3.16k
            result = LZ4HC_compress_hashChain(ctx,
1451
3.16k
                                src, dst, srcSizePtr, dstCapacity,
1452
3.16k
                                cParam.nbSearches, limit, dict);
1453
3.36k
        } else {
1454
3.36k
            assert(cParam.strat == lz4opt);
1455
3.36k
            result = LZ4HC_compress_optimal(ctx,
1456
3.36k
                                src, dst, srcSizePtr, dstCapacity,
1457
3.36k
                                cParam.nbSearches, cParam.targetLength, limit,
1458
3.36k
                                cLevel >= LZ4HC_CLEVEL_MAX,   /* ultra mode */
1459
3.36k
                                dict, favor);
1460
3.36k
        }
1461
7.68k
        if (result <= 0) ctx->dirty = 1;
1462
7.68k
        return result;
1463
7.68k
    }
1464
7.68k
}
1465
1466
static void LZ4HC_setExternalDict(LZ4HC_CCtx_internal* ctxPtr, const BYTE* newBlock);
1467
1468
static int
1469
LZ4HC_compress_generic_noDictCtx (
1470
        LZ4HC_CCtx_internal* const ctx,
1471
        const char* const src,
1472
        char* const dst,
1473
        int* const srcSizePtr,
1474
        int const dstCapacity,
1475
        int cLevel,
1476
        limitedOutput_directive limit
1477
        )
1478
7.68k
{
1479
7.68k
    assert(ctx->dictCtx == NULL);
1480
7.68k
    return LZ4HC_compress_generic_internal(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit, noDictCtx);
1481
7.68k
}
1482
1483
static int isStateCompatible(const LZ4HC_CCtx_internal* ctx1, const LZ4HC_CCtx_internal* ctx2)
1484
0
{
1485
0
    int const isMid1 = LZ4HC_getCLevelParams(ctx1->compressionLevel).strat == lz4mid;
1486
0
    int const isMid2 = LZ4HC_getCLevelParams(ctx2->compressionLevel).strat == lz4mid;
1487
0
    return !(isMid1 ^ isMid2);
1488
0
}
1489
1490
static int
1491
LZ4HC_compress_generic_dictCtx (
1492
        LZ4HC_CCtx_internal* const ctx,
1493
        const char* const src,
1494
        char* const dst,
1495
        int* const srcSizePtr,
1496
        int const dstCapacity,
1497
        int cLevel,
1498
        limitedOutput_directive limit
1499
        )
1500
0
{
1501
0
    const size_t position = (size_t)(ctx->end - ctx->prefixStart) + (ctx->dictLimit - ctx->lowLimit);
1502
0
    assert(ctx->dictCtx != NULL);
1503
0
    if (position >= 64 KB) {
1504
0
        ctx->dictCtx = NULL;
1505
0
        return LZ4HC_compress_generic_noDictCtx(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit);
1506
0
    } else if (position == 0 && *srcSizePtr > 4 KB && isStateCompatible(ctx, ctx->dictCtx)) {
1507
0
        LZ4_memcpy(ctx, ctx->dictCtx, sizeof(LZ4HC_CCtx_internal));
1508
0
        LZ4HC_setExternalDict(ctx, (const BYTE *)src);
1509
0
        ctx->compressionLevel = (short)cLevel;
1510
0
        return LZ4HC_compress_generic_noDictCtx(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit);
1511
0
    } else {
1512
0
        return LZ4HC_compress_generic_internal(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit, usingDictCtxHc);
1513
0
    }
1514
0
}
1515
1516
static int
1517
LZ4HC_compress_generic (
1518
        LZ4HC_CCtx_internal* const ctx,
1519
        const char* const src,
1520
        char* const dst,
1521
        int* const srcSizePtr,
1522
        int const dstCapacity,
1523
        int cLevel,
1524
        limitedOutput_directive limit
1525
        )
1526
7.68k
{
1527
7.68k
    if (ctx->dictCtx == NULL) {
1528
7.68k
        return LZ4HC_compress_generic_noDictCtx(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit);
1529
7.68k
    } else {
1530
0
        return LZ4HC_compress_generic_dictCtx(ctx, src, dst, srcSizePtr, dstCapacity, cLevel, limit);
1531
0
    }
1532
7.68k
}
1533
1534
1535
0
int LZ4_sizeofStateHC(void) { return (int)sizeof(LZ4_streamHC_t); }
1536
1537
static size_t LZ4_streamHC_t_alignment(void)
1538
15.3k
{
1539
15.3k
#if LZ4_ALIGN_TEST
1540
15.3k
    typedef struct { char c; LZ4_streamHC_t t; } t_a;
1541
15.3k
    return sizeof(t_a) - sizeof(LZ4_streamHC_t);
1542
#else
1543
    return 1;  /* effectively disabled */
1544
#endif
1545
15.3k
}
1546
1547
/* state is presumed correctly initialized,
1548
 * in which case its size and alignment have already been validate */
1549
int LZ4_compress_HC_extStateHC_fastReset (void* state, const char* src, char* dst, int srcSize, int dstCapacity, int compressionLevel)
1550
7.68k
{
1551
7.68k
    LZ4HC_CCtx_internal* const ctx = &((LZ4_streamHC_t*)state)->internal_donotuse;
1552
7.68k
    if (!LZ4_isAligned(state, LZ4_streamHC_t_alignment())) return 0;
1553
7.68k
    LZ4_resetStreamHC_fast((LZ4_streamHC_t*)state, compressionLevel);
1554
7.68k
    LZ4HC_init_internal (ctx, (const BYTE*)src);
1555
7.68k
    if (dstCapacity < LZ4_compressBound(srcSize))
1556
0
        return LZ4HC_compress_generic (ctx, src, dst, &srcSize, dstCapacity, compressionLevel, limitedOutput);
1557
7.68k
    else
1558
7.68k
        return LZ4HC_compress_generic (ctx, src, dst, &srcSize, dstCapacity, compressionLevel, notLimited);
1559
7.68k
}
1560
1561
int LZ4_compress_HC_extStateHC (void* state, const char* src, char* dst, int srcSize, int dstCapacity, int compressionLevel)
1562
7.68k
{
1563
7.68k
    LZ4_streamHC_t* const ctx = LZ4_initStreamHC(state, sizeof(*ctx));
1564
7.68k
    if (ctx==NULL) return 0;   /* init failure */
1565
7.68k
    return LZ4_compress_HC_extStateHC_fastReset(state, src, dst, srcSize, dstCapacity, compressionLevel);
1566
7.68k
}
1567
1568
int LZ4_compress_HC(const char* src, char* dst, int srcSize, int dstCapacity, int compressionLevel)
1569
7.68k
{
1570
7.68k
    int cSize;
1571
7.68k
#if defined(LZ4HC_HEAPMODE) && LZ4HC_HEAPMODE==1
1572
7.68k
    LZ4_streamHC_t* const statePtr = (LZ4_streamHC_t*)ALLOC(sizeof(LZ4_streamHC_t));
1573
7.68k
    if (statePtr==NULL) return 0;
1574
#else
1575
    LZ4_streamHC_t state;
1576
    LZ4_streamHC_t* const statePtr = &state;
1577
#endif
1578
7.68k
    DEBUGLOG(5, "LZ4_compress_HC")
1579
7.68k
    cSize = LZ4_compress_HC_extStateHC(statePtr, src, dst, srcSize, dstCapacity, compressionLevel);
1580
7.68k
#if defined(LZ4HC_HEAPMODE) && LZ4HC_HEAPMODE==1
1581
7.68k
    FREEMEM(statePtr);
1582
7.68k
#endif
1583
7.68k
    return cSize;
1584
7.68k
}
1585
1586
/* state is presumed sized correctly (>= sizeof(LZ4_streamHC_t)) */
1587
int LZ4_compress_HC_destSize(void* state, const char* source, char* dest, int* sourceSizePtr, int targetDestSize, int cLevel)
1588
0
{
1589
0
    LZ4_streamHC_t* const ctx = LZ4_initStreamHC(state, sizeof(*ctx));
1590
0
    if (ctx==NULL) return 0;   /* init failure */
1591
0
    LZ4HC_init_internal(&ctx->internal_donotuse, (const BYTE*) source);
1592
0
    LZ4_setCompressionLevel(ctx, cLevel);
1593
0
    return LZ4HC_compress_generic(&ctx->internal_donotuse, source, dest, sourceSizePtr, targetDestSize, cLevel, fillOutput);
1594
0
}
1595
1596
1597
1598
/**************************************
1599
*  Streaming Functions
1600
**************************************/
1601
/* allocation */
1602
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
1603
LZ4_streamHC_t* LZ4_createStreamHC(void)
1604
0
{
1605
0
    LZ4_streamHC_t* const state =
1606
0
        (LZ4_streamHC_t*)ALLOC_AND_ZERO(sizeof(LZ4_streamHC_t));
1607
0
    if (state == NULL) return NULL;
1608
0
    LZ4_setCompressionLevel(state, LZ4HC_CLEVEL_DEFAULT);
1609
0
    return state;
1610
0
}
1611
1612
int LZ4_freeStreamHC (LZ4_streamHC_t* LZ4_streamHCPtr)
1613
0
{
1614
0
    DEBUGLOG(4, "LZ4_freeStreamHC(%p)", LZ4_streamHCPtr);
1615
0
    if (!LZ4_streamHCPtr) return 0;  /* support free on NULL */
1616
0
    FREEMEM(LZ4_streamHCPtr);
1617
0
    return 0;
1618
0
}
1619
#endif
1620
1621
1622
LZ4_streamHC_t* LZ4_initStreamHC (void* buffer, size_t size)
1623
7.68k
{
1624
7.68k
    LZ4_streamHC_t* const LZ4_streamHCPtr = (LZ4_streamHC_t*)buffer;
1625
7.68k
    DEBUGLOG(4, "LZ4_initStreamHC(%p, %u)", buffer, (unsigned)size);
1626
    /* check conditions */
1627
7.68k
    if (buffer == NULL) return NULL;
1628
7.68k
    if (size < sizeof(LZ4_streamHC_t)) return NULL;
1629
7.68k
    if (!LZ4_isAligned(buffer, LZ4_streamHC_t_alignment())) return NULL;
1630
    /* init */
1631
7.68k
    { LZ4HC_CCtx_internal* const hcstate = &(LZ4_streamHCPtr->internal_donotuse);
1632
7.68k
      MEM_INIT(hcstate, 0, sizeof(*hcstate)); }
1633
7.68k
    LZ4_setCompressionLevel(LZ4_streamHCPtr, LZ4HC_CLEVEL_DEFAULT);
1634
7.68k
    return LZ4_streamHCPtr;
1635
7.68k
}
1636
1637
/* just a stub */
1638
void LZ4_resetStreamHC (LZ4_streamHC_t* LZ4_streamHCPtr, int compressionLevel)
1639
0
{
1640
0
    LZ4_initStreamHC(LZ4_streamHCPtr, sizeof(*LZ4_streamHCPtr));
1641
0
    LZ4_setCompressionLevel(LZ4_streamHCPtr, compressionLevel);
1642
0
}
1643
1644
void LZ4_resetStreamHC_fast (LZ4_streamHC_t* LZ4_streamHCPtr, int compressionLevel)
1645
7.68k
{
1646
7.68k
    LZ4HC_CCtx_internal* const s = &LZ4_streamHCPtr->internal_donotuse;
1647
7.68k
    DEBUGLOG(5, "LZ4_resetStreamHC_fast(%p, %d)", LZ4_streamHCPtr, compressionLevel);
1648
7.68k
    if (s->dirty) {
1649
0
        LZ4_initStreamHC(LZ4_streamHCPtr, sizeof(*LZ4_streamHCPtr));
1650
7.68k
    } else {
1651
7.68k
        assert(s->end >= s->prefixStart);
1652
7.68k
        s->dictLimit += (U32)(s->end - s->prefixStart);
1653
7.68k
        s->prefixStart = NULL;
1654
7.68k
        s->end = NULL;
1655
7.68k
        s->dictCtx = NULL;
1656
7.68k
    }
1657
7.68k
    LZ4_setCompressionLevel(LZ4_streamHCPtr, compressionLevel);
1658
7.68k
}
1659
1660
void LZ4_setCompressionLevel(LZ4_streamHC_t* LZ4_streamHCPtr, int compressionLevel)
1661
15.3k
{
1662
15.3k
    DEBUGLOG(5, "LZ4_setCompressionLevel(%p, %d)", LZ4_streamHCPtr, compressionLevel);
1663
15.3k
    if (compressionLevel < 1) compressionLevel = LZ4HC_CLEVEL_DEFAULT;
1664
15.3k
    if (compressionLevel > LZ4HC_CLEVEL_MAX) compressionLevel = LZ4HC_CLEVEL_MAX;
1665
15.3k
    LZ4_streamHCPtr->internal_donotuse.compressionLevel = (short)compressionLevel;
1666
15.3k
}
1667
1668
void LZ4_favorDecompressionSpeed(LZ4_streamHC_t* LZ4_streamHCPtr, int favor)
1669
0
{
1670
0
    LZ4_streamHCPtr->internal_donotuse.favorDecSpeed = (favor!=0);
1671
0
}
1672
1673
/* LZ4_loadDictHC() :
1674
 * LZ4_streamHCPtr is presumed properly initialized */
1675
int LZ4_loadDictHC (LZ4_streamHC_t* LZ4_streamHCPtr,
1676
              const char* dictionary, int dictSize)
1677
0
{
1678
0
    LZ4HC_CCtx_internal* const ctxPtr = &LZ4_streamHCPtr->internal_donotuse;
1679
0
    cParams_t cp;
1680
0
    DEBUGLOG(4, "LZ4_loadDictHC(ctx:%p, dict:%p, dictSize:%d, clevel=%d)", LZ4_streamHCPtr, dictionary, dictSize, ctxPtr->compressionLevel);
1681
0
    assert(dictSize >= 0);
1682
0
    assert(LZ4_streamHCPtr != NULL);
1683
0
    if (dictSize > 64 KB) {
1684
0
        dictionary += (size_t)dictSize - 64 KB;
1685
0
        dictSize = 64 KB;
1686
0
    }
1687
    /* need a full initialization, there are bad side-effects when using resetFast() */
1688
0
    {   int const cLevel = ctxPtr->compressionLevel;
1689
0
        LZ4_initStreamHC(LZ4_streamHCPtr, sizeof(*LZ4_streamHCPtr));
1690
0
        LZ4_setCompressionLevel(LZ4_streamHCPtr, cLevel);
1691
0
        cp = LZ4HC_getCLevelParams(cLevel);
1692
0
    }
1693
0
    LZ4HC_init_internal (ctxPtr, (const BYTE*)dictionary);
1694
0
    ctxPtr->end = (const BYTE*)dictionary + dictSize;
1695
0
    if (cp.strat == lz4mid) {
1696
0
        LZ4MID_fillHTable (ctxPtr, dictionary, (size_t)dictSize);
1697
0
    } else {
1698
0
        if (dictSize >= LZ4HC_HASHSIZE) LZ4HC_Insert (ctxPtr, ctxPtr->end-3);
1699
0
    }
1700
0
    return dictSize;
1701
0
}
1702
1703
0
void LZ4_attach_HC_dictionary(LZ4_streamHC_t *working_stream, const LZ4_streamHC_t *dictionary_stream) {
1704
0
    working_stream->internal_donotuse.dictCtx = dictionary_stream != NULL ? &(dictionary_stream->internal_donotuse) : NULL;
1705
0
}
1706
1707
/* compression */
1708
1709
static void LZ4HC_setExternalDict(LZ4HC_CCtx_internal* ctxPtr, const BYTE* newBlock)
1710
0
{
1711
0
    DEBUGLOG(4, "LZ4HC_setExternalDict(%p, %p)", ctxPtr, newBlock);
1712
0
    if ( (ctxPtr->end >= ctxPtr->prefixStart + 4)
1713
0
      && (LZ4HC_getCLevelParams(ctxPtr->compressionLevel).strat != lz4mid) ) {
1714
0
        LZ4HC_Insert (ctxPtr, ctxPtr->end-3);  /* Referencing remaining dictionary content */
1715
0
    }
1716
1717
    /* Only one memory segment for extDict, so any previous extDict is lost at this stage */
1718
0
    ctxPtr->lowLimit  = ctxPtr->dictLimit;
1719
0
    ctxPtr->dictStart  = ctxPtr->prefixStart;
1720
0
    ctxPtr->dictLimit += (U32)(ctxPtr->end - ctxPtr->prefixStart);
1721
0
    ctxPtr->prefixStart = newBlock;
1722
0
    ctxPtr->end  = newBlock;
1723
0
    ctxPtr->nextToUpdate = ctxPtr->dictLimit;   /* match referencing will resume from there */
1724
1725
    /* cannot reference an extDict and a dictCtx at the same time */
1726
0
    ctxPtr->dictCtx = NULL;
1727
0
}
1728
1729
static int
1730
LZ4_compressHC_continue_generic (LZ4_streamHC_t* LZ4_streamHCPtr,
1731
                                 const char* src, char* dst,
1732
                                 int* srcSizePtr, int dstCapacity,
1733
                                 limitedOutput_directive limit)
1734
0
{
1735
0
    LZ4HC_CCtx_internal* const ctxPtr = &LZ4_streamHCPtr->internal_donotuse;
1736
0
    DEBUGLOG(5, "LZ4_compressHC_continue_generic(ctx=%p, src=%p, srcSize=%d, limit=%d)",
1737
0
                LZ4_streamHCPtr, src, *srcSizePtr, limit);
1738
0
    assert(ctxPtr != NULL);
1739
    /* auto-init if forgotten */
1740
0
    if (ctxPtr->prefixStart == NULL)
1741
0
        LZ4HC_init_internal (ctxPtr, (const BYTE*) src);
1742
1743
    /* Check overflow */
1744
0
    if ((size_t)(ctxPtr->end - ctxPtr->prefixStart) + ctxPtr->dictLimit > 2 GB) {
1745
0
        size_t dictSize = (size_t)(ctxPtr->end - ctxPtr->prefixStart);
1746
0
        if (dictSize > 64 KB) dictSize = 64 KB;
1747
0
        LZ4_loadDictHC(LZ4_streamHCPtr, (const char*)(ctxPtr->end) - dictSize, (int)dictSize);
1748
0
    }
1749
1750
    /* Check if blocks follow each other */
1751
0
    if ((const BYTE*)src != ctxPtr->end)
1752
0
        LZ4HC_setExternalDict(ctxPtr, (const BYTE*)src);
1753
1754
    /* Check overlapping input/dictionary space */
1755
0
    {   const BYTE* sourceEnd = (const BYTE*) src + *srcSizePtr;
1756
0
        const BYTE* const dictBegin = ctxPtr->dictStart;
1757
0
        const BYTE* const dictEnd   = ctxPtr->dictStart + (ctxPtr->dictLimit - ctxPtr->lowLimit);
1758
0
        if ((sourceEnd > dictBegin) && ((const BYTE*)src < dictEnd)) {
1759
0
            if (sourceEnd > dictEnd) sourceEnd = dictEnd;
1760
0
            ctxPtr->lowLimit += (U32)(sourceEnd - ctxPtr->dictStart);
1761
0
            ctxPtr->dictStart += (U32)(sourceEnd - ctxPtr->dictStart);
1762
            /* invalidate dictionary is it's too small */
1763
0
            if (ctxPtr->dictLimit - ctxPtr->lowLimit < LZ4HC_HASHSIZE) {
1764
0
                ctxPtr->lowLimit = ctxPtr->dictLimit;
1765
0
                ctxPtr->dictStart = ctxPtr->prefixStart;
1766
0
    }   }   }
1767
1768
0
    return LZ4HC_compress_generic (ctxPtr, src, dst, srcSizePtr, dstCapacity, ctxPtr->compressionLevel, limit);
1769
0
}
1770
1771
int LZ4_compress_HC_continue (LZ4_streamHC_t* LZ4_streamHCPtr, const char* src, char* dst, int srcSize, int dstCapacity)
1772
0
{
1773
0
    DEBUGLOG(5, "LZ4_compress_HC_continue");
1774
0
    if (dstCapacity < LZ4_compressBound(srcSize))
1775
0
        return LZ4_compressHC_continue_generic (LZ4_streamHCPtr, src, dst, &srcSize, dstCapacity, limitedOutput);
1776
0
    else
1777
0
        return LZ4_compressHC_continue_generic (LZ4_streamHCPtr, src, dst, &srcSize, dstCapacity, notLimited);
1778
0
}
1779
1780
int LZ4_compress_HC_continue_destSize (LZ4_streamHC_t* LZ4_streamHCPtr, const char* src, char* dst, int* srcSizePtr, int targetDestSize)
1781
0
{
1782
0
    return LZ4_compressHC_continue_generic(LZ4_streamHCPtr, src, dst, srcSizePtr, targetDestSize, fillOutput);
1783
0
}
1784
1785
1786
/* LZ4_saveDictHC :
1787
 * save history content
1788
 * into a user-provided buffer
1789
 * which is then used to continue compression
1790
 */
1791
int LZ4_saveDictHC (LZ4_streamHC_t* LZ4_streamHCPtr, char* safeBuffer, int dictSize)
1792
0
{
1793
0
    LZ4HC_CCtx_internal* const streamPtr = &LZ4_streamHCPtr->internal_donotuse;
1794
0
    int const prefixSize = (int)(streamPtr->end - streamPtr->prefixStart);
1795
0
    DEBUGLOG(5, "LZ4_saveDictHC(%p, %p, %d)", LZ4_streamHCPtr, safeBuffer, dictSize);
1796
0
    assert(prefixSize >= 0);
1797
0
    if (dictSize > 64 KB) dictSize = 64 KB;
1798
0
    if (dictSize < 4) dictSize = 0;
1799
0
    if (dictSize > prefixSize) dictSize = prefixSize;
1800
0
    if (safeBuffer == NULL) assert(dictSize == 0);
1801
0
    if (dictSize > 0)
1802
0
        LZ4_memmove(safeBuffer, streamPtr->end - dictSize, (size_t)dictSize);
1803
0
    {   U32 const endIndex = (U32)(streamPtr->end - streamPtr->prefixStart) + streamPtr->dictLimit;
1804
0
        streamPtr->end = (safeBuffer == NULL) ? NULL : (const BYTE*)safeBuffer + dictSize;
1805
0
        streamPtr->prefixStart = (const BYTE*)safeBuffer;
1806
0
        streamPtr->dictLimit = endIndex - (U32)dictSize;
1807
0
        streamPtr->lowLimit = endIndex - (U32)dictSize;
1808
0
        streamPtr->dictStart = streamPtr->prefixStart;
1809
0
        if (streamPtr->nextToUpdate < streamPtr->dictLimit)
1810
0
            streamPtr->nextToUpdate = streamPtr->dictLimit;
1811
0
    }
1812
0
    return dictSize;
1813
0
}
1814
1815
1816
/* ================================================
1817
 *  LZ4 Optimal parser (levels [LZ4HC_CLEVEL_OPT_MIN - LZ4HC_CLEVEL_MAX])
1818
 * ===============================================*/
1819
typedef struct {
1820
    int price;
1821
    int off;
1822
    int mlen;
1823
    int litlen;
1824
} LZ4HC_optimal_t;
1825
1826
/* price in bytes */
1827
LZ4_FORCE_INLINE int LZ4HC_literalsPrice(int const litlen)
1828
151M
{
1829
151M
    int price = litlen;
1830
151M
    assert(litlen >= 0);
1831
151M
    if (litlen >= (int)RUN_MASK)
1832
1.75M
        price += 1 + ((litlen-(int)RUN_MASK) / 255);
1833
151M
    return price;
1834
151M
}
1835
1836
/* requires mlen >= MINMATCH */
1837
LZ4_FORCE_INLINE int LZ4HC_sequencePrice(int litlen, int mlen)
1838
134M
{
1839
134M
    int price = 1 + 2 ; /* token + 16-bit offset */
1840
134M
    assert(litlen >= 0);
1841
134M
    assert(mlen >= MINMATCH);
1842
1843
134M
    price += LZ4HC_literalsPrice(litlen);
1844
1845
134M
    if (mlen >= (int)(ML_MASK+MINMATCH))
1846
116M
        price += 1 + ((mlen-(int)(ML_MASK+MINMATCH)) / 255);
1847
1848
134M
    return price;
1849
134M
}
1850
1851
LZ4_FORCE_INLINE LZ4HC_match_t
1852
LZ4HC_FindLongerMatch(LZ4HC_CCtx_internal* const ctx,
1853
                      const BYTE* ip, const BYTE* const iHighLimit,
1854
                      int minLen, int nbSearches,
1855
                      const dictCtx_directive dict,
1856
                      const HCfavor_e favorDecSpeed)
1857
20.0M
{
1858
20.0M
    LZ4HC_match_t const match0 = { 0 , 0, 0 };
1859
    /* note : LZ4HC_InsertAndGetWiderMatch() is able to modify the starting position of a match (*startpos),
1860
     * but this won't be the case here, as we define iLowLimit==ip,
1861
    ** so LZ4HC_InsertAndGetWiderMatch() won't be allowed to search past ip */
1862
20.0M
    LZ4HC_match_t md = LZ4HC_InsertAndGetWiderMatch(ctx, ip, ip, iHighLimit, minLen, nbSearches, 1 /*patternAnalysis*/, 1 /*chainSwap*/, dict, favorDecSpeed);
1863
20.0M
    assert(md.back == 0);
1864
20.0M
    if (md.len <= minLen) return match0;
1865
2.10M
    if (favorDecSpeed) {
1866
0
        if ((md.len>18) & (md.len<=36)) md.len=18;   /* favor dec.speed (shortcut) */
1867
0
    }
1868
2.10M
    return md;
1869
20.0M
}
1870
1871
1872
1873
/* preconditions:
1874
 * - *srcSizePtr within [1, LZ4_MAX_INPUT_SIZE]
1875
 * - src is valid
1876
 * - maxOutputSize >= 1
1877
 * - dst is valid
1878
 */
1879
static int LZ4HC_compress_optimal ( LZ4HC_CCtx_internal* ctx,
1880
                                    const char* const source,
1881
                                    char* dst,
1882
                                    int* srcSizePtr,
1883
                                    int dstCapacity,
1884
                                    int const nbSearches,
1885
                                    size_t sufficient_len,
1886
                                    const limitedOutput_directive limit,
1887
                                    int const fullUpdate,
1888
                                    const dictCtx_directive dict,
1889
                                    const HCfavor_e favorDecSpeed)
1890
3.36k
{
1891
3.36k
    int retval = 0;
1892
250M
#define TRAILING_LITERALS 3
1893
3.36k
#if defined(LZ4HC_HEAPMODE) && LZ4HC_HEAPMODE==1
1894
3.36k
    LZ4HC_optimal_t* const opt = (LZ4HC_optimal_t*)ALLOC(sizeof(LZ4HC_optimal_t) * (LZ4_OPT_NUM + TRAILING_LITERALS));
1895
#else
1896
    LZ4HC_optimal_t opt[LZ4_OPT_NUM + TRAILING_LITERALS];   /* ~64 KB, which can be a bit large for some stacks... */
1897
#endif
1898
1899
3.36k
    const BYTE* ip = (const BYTE*) source;
1900
3.36k
    const BYTE* anchor = ip;
1901
3.36k
    const BYTE* const iend = ip + *srcSizePtr;
1902
3.36k
    const BYTE* const mflimit = iend - MFLIMIT;
1903
3.36k
    const BYTE* const matchlimit = iend - LASTLITERALS;
1904
3.36k
    BYTE* op = (BYTE*) dst;
1905
3.36k
    BYTE* opSaved = (BYTE*) dst;
1906
3.36k
    BYTE* oend = op + dstCapacity;
1907
3.36k
    int ovml = MINMATCH;  /* overflow - last sequence */
1908
3.36k
    int ovoff = 0;
1909
1910
    /* init */
1911
3.36k
    DEBUGLOG(5, "LZ4HC_compress_optimal(dst=%p, dstCapa=%u)", dst, (unsigned)dstCapacity);
1912
3.36k
#if defined(LZ4HC_HEAPMODE) && LZ4HC_HEAPMODE==1
1913
3.36k
    if (opt == NULL) goto _return_label;
1914
3.36k
#endif
1915
1916
    /* preconditions verifications */
1917
3.36k
    assert(dstCapacity > 0);
1918
3.36k
    assert(dst != NULL);
1919
3.36k
    assert(*srcSizePtr > 0);
1920
3.36k
    assert(source != NULL);
1921
1922
3.36k
    *srcSizePtr = 0;
1923
3.36k
    if (limit == fillOutput) oend -= LASTLITERALS;   /* Hack for support LZ4 format restriction */
1924
3.36k
    if (sufficient_len >= LZ4_OPT_NUM) sufficient_len = LZ4_OPT_NUM-1;
1925
1926
    /* Main Loop */
1927
17.2M
    while (ip <= mflimit) {
1928
17.2M
         int const llen = (int)(ip - anchor);
1929
17.2M
         int best_mlen, best_off;
1930
17.2M
         int cur, last_match_pos = 0;
1931
1932
17.2M
         LZ4HC_match_t const firstMatch = LZ4HC_FindLongerMatch(ctx, ip, matchlimit, MINMATCH-1, nbSearches, dict, favorDecSpeed);
1933
17.2M
         if (firstMatch.len==0) { ip++; continue; }
1934
1935
492k
         if ((size_t)firstMatch.len > sufficient_len) {
1936
             /* good enough solution : immediate encoding */
1937
34.4k
             int const firstML = firstMatch.len;
1938
34.4k
             opSaved = op;
1939
34.4k
             if ( LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor), firstML, firstMatch.off, limit, oend) ) {  /* updates ip, op and anchor */
1940
0
                 ovml = firstML;
1941
0
                 ovoff = firstMatch.off;
1942
0
                 goto _dest_overflow;
1943
0
             }
1944
34.4k
             continue;
1945
34.4k
         }
1946
1947
         /* set prices for first positions (literals) */
1948
458k
         {   int rPos;
1949
2.29M
             for (rPos = 0 ; rPos < MINMATCH ; rPos++) {
1950
1.83M
                 int const cost = LZ4HC_literalsPrice(llen + rPos);
1951
1.83M
                 opt[rPos].mlen = 1;
1952
1.83M
                 opt[rPos].off = 0;
1953
1.83M
                 opt[rPos].litlen = llen + rPos;
1954
1.83M
                 opt[rPos].price = cost;
1955
1.83M
                 DEBUGLOG(7, "rPos:%3i => price:%3i (litlen=%i) -- initial setup",
1956
1.83M
                             rPos, cost, opt[rPos].litlen);
1957
1.83M
         }   }
1958
         /* set prices using initial match */
1959
458k
         {   int const matchML = firstMatch.len;   /* necessarily < sufficient_len < LZ4_OPT_NUM */
1960
458k
             int const offset = firstMatch.off;
1961
458k
             int mlen;
1962
458k
             assert(matchML < LZ4_OPT_NUM);
1963
13.5M
             for (mlen = MINMATCH ; mlen <= matchML ; mlen++) {
1964
13.0M
                 int const cost = LZ4HC_sequencePrice(llen, mlen);
1965
13.0M
                 opt[mlen].mlen = mlen;
1966
13.0M
                 opt[mlen].off = offset;
1967
13.0M
                 opt[mlen].litlen = llen;
1968
13.0M
                 opt[mlen].price = cost;
1969
13.0M
                 DEBUGLOG(7, "rPos:%3i => price:%3i (matchlen=%i) -- initial setup",
1970
13.0M
                             mlen, cost, mlen);
1971
13.0M
         }   }
1972
458k
         last_match_pos = firstMatch.len;
1973
458k
         {   int addLit;
1974
1.83M
             for (addLit = 1; addLit <= TRAILING_LITERALS; addLit ++) {
1975
1.37M
                 opt[last_match_pos+addLit].mlen = 1; /* literal */
1976
1.37M
                 opt[last_match_pos+addLit].off = 0;
1977
1.37M
                 opt[last_match_pos+addLit].litlen = addLit;
1978
1.37M
                 opt[last_match_pos+addLit].price = opt[last_match_pos].price + LZ4HC_literalsPrice(addLit);
1979
1.37M
                 DEBUGLOG(7, "rPos:%3i => price:%3i (litlen=%i) -- initial setup",
1980
1.37M
                             last_match_pos+addLit, opt[last_match_pos+addLit].price, addLit);
1981
1.37M
         }   }
1982
1983
         /* check further positions */
1984
28.5M
         for (cur = 1; cur < last_match_pos; cur++) {
1985
28.0M
             const BYTE* const curPtr = ip + cur;
1986
28.0M
             LZ4HC_match_t newMatch;
1987
1988
28.0M
             if (curPtr > mflimit) break;
1989
28.0M
             DEBUGLOG(7, "rPos:%u[%u] vs [%u]%u",
1990
28.0M
                     cur, opt[cur].price, opt[cur+1].price, cur+1);
1991
28.0M
             if (fullUpdate) {
1992
                 /* not useful to search here if next position has same (or lower) cost */
1993
23.9M
                 if ( (opt[cur+1].price <= opt[cur].price)
1994
                   /* in some cases, next position has same cost, but cost rises sharply after, so a small match would still be beneficial */
1995
22.3M
                   && (opt[cur+MINMATCH].price < opt[cur].price + 3/*min seq price*/) )
1996
21.8M
                     continue;
1997
23.9M
             } else {
1998
                 /* not useful to search here if next position has same (or lower) cost */
1999
4.17M
                 if (opt[cur+1].price <= opt[cur].price) continue;
2000
4.17M
             }
2001
2002
2.77M
             DEBUGLOG(7, "search at rPos:%u", cur);
2003
2.77M
             if (fullUpdate)
2004
2.04M
                 newMatch = LZ4HC_FindLongerMatch(ctx, curPtr, matchlimit, MINMATCH-1, nbSearches, dict, favorDecSpeed);
2005
729k
             else
2006
                 /* only test matches of minimum length; slightly faster, but misses a few bytes */
2007
729k
                 newMatch = LZ4HC_FindLongerMatch(ctx, curPtr, matchlimit, last_match_pos - cur, nbSearches, dict, favorDecSpeed);
2008
2.77M
             if (!newMatch.len) continue;
2009
2010
1.61M
             if ( ((size_t)newMatch.len > sufficient_len)
2011
1.60M
               || (newMatch.len + cur >= LZ4_OPT_NUM) ) {
2012
                 /* immediate encoding */
2013
8.50k
                 best_mlen = newMatch.len;
2014
8.50k
                 best_off = newMatch.off;
2015
8.50k
                 last_match_pos = cur + 1;
2016
8.50k
                 goto encode;
2017
8.50k
             }
2018
2019
             /* before match : set price with literals at beginning */
2020
1.60M
             {   int const baseLitlen = opt[cur].litlen;
2021
1.60M
                 int litlen;
2022
6.42M
                 for (litlen = 1; litlen < MINMATCH; litlen++) {
2023
4.81M
                     int const price = opt[cur].price - LZ4HC_literalsPrice(baseLitlen) + LZ4HC_literalsPrice(baseLitlen+litlen);
2024
4.81M
                     int const pos = cur + litlen;
2025
4.81M
                     if (price < opt[pos].price) {
2026
0
                         opt[pos].mlen = 1; /* literal */
2027
0
                         opt[pos].off = 0;
2028
0
                         opt[pos].litlen = baseLitlen+litlen;
2029
0
                         opt[pos].price = price;
2030
0
                         DEBUGLOG(7, "rPos:%3i => price:%3i (litlen=%i)",
2031
0
                                     pos, price, opt[pos].litlen);
2032
0
             }   }   }
2033
2034
             /* set prices using match at position = cur */
2035
1.60M
             {   int const matchML = newMatch.len;
2036
1.60M
                 int ml = MINMATCH;
2037
2038
1.60M
                 assert(cur + newMatch.len < LZ4_OPT_NUM);
2039
122M
                 for ( ; ml <= matchML ; ml++) {
2040
121M
                     int const pos = cur + ml;
2041
121M
                     int const offset = newMatch.off;
2042
121M
                     int price;
2043
121M
                     int ll;
2044
121M
                     DEBUGLOG(7, "testing price rPos %i (last_match_pos=%i)",
2045
121M
                                 pos, last_match_pos);
2046
121M
                     if (opt[cur].mlen == 1) {
2047
40.7M
                         ll = opt[cur].litlen;
2048
40.7M
                         price = ((cur > ll) ? opt[cur - ll].price : 0)
2049
40.7M
                               + LZ4HC_sequencePrice(ll, ml);
2050
80.3M
                     } else {
2051
80.3M
                         ll = 0;
2052
80.3M
                         price = opt[cur].price + LZ4HC_sequencePrice(0, ml);
2053
80.3M
                     }
2054
2055
121M
                    assert((U32)favorDecSpeed <= 1);
2056
121M
                     if (pos > last_match_pos+TRAILING_LITERALS
2057
107M
                      || price <= opt[pos].price - (int)favorDecSpeed) {
2058
21.0M
                         DEBUGLOG(7, "rPos:%3i => price:%3i (matchlen=%i)",
2059
21.0M
                                     pos, price, ml);
2060
21.0M
                         assert(pos < LZ4_OPT_NUM);
2061
21.0M
                         if ( (ml == matchML)  /* last pos of last match */
2062
954k
                           && (last_match_pos < pos) )
2063
767k
                             last_match_pos = pos;
2064
21.0M
                         opt[pos].mlen = ml;
2065
21.0M
                         opt[pos].off = offset;
2066
21.0M
                         opt[pos].litlen = ll;
2067
21.0M
                         opt[pos].price = price;
2068
21.0M
             }   }   }
2069
             /* complete following positions with literals */
2070
1.60M
             {   int addLit;
2071
6.42M
                 for (addLit = 1; addLit <= TRAILING_LITERALS; addLit ++) {
2072
4.81M
                     opt[last_match_pos+addLit].mlen = 1; /* literal */
2073
4.81M
                     opt[last_match_pos+addLit].off = 0;
2074
4.81M
                     opt[last_match_pos+addLit].litlen = addLit;
2075
4.81M
                     opt[last_match_pos+addLit].price = opt[last_match_pos].price + LZ4HC_literalsPrice(addLit);
2076
4.81M
                     DEBUGLOG(7, "rPos:%3i => price:%3i (litlen=%i)", last_match_pos+addLit, opt[last_match_pos+addLit].price, addLit);
2077
4.81M
             }   }
2078
1.60M
         }  /* for (cur = 1; cur <= last_match_pos; cur++) */
2079
2080
458k
         assert(last_match_pos < LZ4_OPT_NUM + TRAILING_LITERALS);
2081
449k
         best_mlen = opt[last_match_pos].mlen;
2082
449k
         best_off = opt[last_match_pos].off;
2083
449k
         cur = last_match_pos - best_mlen;
2084
2085
458k
encode: /* cur, last_match_pos, best_mlen, best_off must be set */
2086
458k
         assert(cur < LZ4_OPT_NUM);
2087
458k
         assert(last_match_pos >= 1);  /* == 1 when only one candidate */
2088
458k
         DEBUGLOG(6, "reverse traversal, looking for shortest path (last_match_pos=%i)", last_match_pos);
2089
458k
         {   int candidate_pos = cur;
2090
458k
             int selected_matchLength = best_mlen;
2091
458k
             int selected_offset = best_off;
2092
976k
             while (1) {  /* from end to beginning */
2093
976k
                 int const next_matchLength = opt[candidate_pos].mlen;  /* can be 1, means literal */
2094
976k
                 int const next_offset = opt[candidate_pos].off;
2095
976k
                 DEBUGLOG(7, "pos %i: sequence length %i", candidate_pos, selected_matchLength);
2096
976k
                 opt[candidate_pos].mlen = selected_matchLength;
2097
976k
                 opt[candidate_pos].off = selected_offset;
2098
976k
                 selected_matchLength = next_matchLength;
2099
976k
                 selected_offset = next_offset;
2100
976k
                 if (next_matchLength > candidate_pos) break; /* last match elected, first match to encode */
2101
976k
                 assert(next_matchLength > 0);  /* can be 1, means literal */
2102
518k
                 candidate_pos -= next_matchLength;
2103
518k
         }   }
2104
2105
         /* encode all recorded sequences in order */
2106
458k
         {   int rPos = 0;  /* relative position (to ip) */
2107
1.43M
             while (rPos < last_match_pos) {
2108
976k
                 int const ml = opt[rPos].mlen;
2109
976k
                 int const offset = opt[rPos].off;
2110
976k
                 if (ml == 1) { ip++; rPos++; continue; }  /* literal; note: can end up with several literals, in which case, skip them */
2111
784k
                 rPos += ml;
2112
784k
                 assert(ml >= MINMATCH);
2113
784k
                 assert((offset >= 1) && (offset <= LZ4_DISTANCE_MAX));
2114
784k
                 opSaved = op;
2115
784k
                 if ( LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor), ml, offset, limit, oend) ) {  /* updates ip, op and anchor */
2116
0
                     ovml = ml;
2117
0
                     ovoff = offset;
2118
0
                     goto _dest_overflow;
2119
0
         }   }   }
2120
458k
     }  /* while (ip <= mflimit) */
2121
2122
3.36k
_last_literals:
2123
     /* Encode Last Literals */
2124
3.36k
     {   size_t lastRunSize = (size_t)(iend - anchor);  /* literals */
2125
3.36k
         size_t llAdd = (lastRunSize + 255 - RUN_MASK) / 255;
2126
3.36k
         size_t const totalSize = 1 + llAdd + lastRunSize;
2127
3.36k
         if (limit == fillOutput) oend += LASTLITERALS;  /* restore correct value */
2128
3.36k
         if (limit && (op + totalSize > oend)) {
2129
0
             if (limit == limitedOutput) { /* Check output limit */
2130
0
                retval = 0;
2131
0
                goto _return_label;
2132
0
             }
2133
             /* adapt lastRunSize to fill 'dst' */
2134
0
             lastRunSize  = (size_t)(oend - op) - 1 /*token*/;
2135
0
             llAdd = (lastRunSize + 256 - RUN_MASK) / 256;
2136
0
             lastRunSize -= llAdd;
2137
0
         }
2138
3.36k
         DEBUGLOG(6, "Final literal run : %i literals", (int)lastRunSize);
2139
3.36k
         ip = anchor + lastRunSize; /* can be != iend if limit==fillOutput */
2140
2141
3.36k
         if (lastRunSize >= RUN_MASK) {
2142
137
             size_t accumulator = lastRunSize - RUN_MASK;
2143
137
             *op++ = (RUN_MASK << ML_BITS);
2144
2.19k
             for(; accumulator >= 255 ; accumulator -= 255) *op++ = 255;
2145
137
             *op++ = (BYTE) accumulator;
2146
3.22k
         } else {
2147
3.22k
             *op++ = (BYTE)(lastRunSize << ML_BITS);
2148
3.22k
         }
2149
3.36k
         LZ4_memcpy(op, anchor, lastRunSize);
2150
3.36k
         op += lastRunSize;
2151
3.36k
     }
2152
2153
     /* End */
2154
0
     *srcSizePtr = (int) (((const char*)ip) - source);
2155
3.36k
     retval = (int) ((char*)op-dst);
2156
3.36k
     goto _return_label;
2157
2158
0
_dest_overflow:
2159
0
if (limit == fillOutput) {
2160
     /* Assumption : ip, anchor, ovml and ovref must be set correctly */
2161
0
     size_t const ll = (size_t)(ip - anchor);
2162
0
     size_t const ll_addbytes = (ll + 240) / 255;
2163
0
     size_t const ll_totalCost = 1 + ll_addbytes + ll;
2164
0
     BYTE* const maxLitPos = oend - 3; /* 2 for offset, 1 for token */
2165
0
     DEBUGLOG(6, "Last sequence overflowing (only %i bytes remaining)", (int)(oend-1-opSaved));
2166
0
     op = opSaved;  /* restore correct out pointer */
2167
0
     if (op + ll_totalCost <= maxLitPos) {
2168
         /* ll validated; now adjust match length */
2169
0
         size_t const bytesLeftForMl = (size_t)(maxLitPos - (op+ll_totalCost));
2170
0
         size_t const maxMlSize = MINMATCH + (ML_MASK-1) + (bytesLeftForMl * 255);
2171
0
         assert(maxMlSize < INT_MAX); assert(ovml >= 0);
2172
0
         if ((size_t)ovml > maxMlSize) ovml = (int)maxMlSize;
2173
0
         if ((oend + LASTLITERALS) - (op + ll_totalCost + 2) - 1 + ovml >= MFLIMIT) {
2174
0
             DEBUGLOG(6, "Space to end : %i + ml (%i)", (int)((oend + LASTLITERALS) - (op + ll_totalCost + 2) - 1), ovml);
2175
0
             DEBUGLOG(6, "Before : ip = %p, anchor = %p", ip, anchor);
2176
0
             LZ4HC_encodeSequence(UPDATABLE(ip, op, anchor), ovml, ovoff, notLimited, oend);
2177
0
             DEBUGLOG(6, "After : ip = %p, anchor = %p", ip, anchor);
2178
0
     }   }
2179
0
     goto _last_literals;
2180
0
}
2181
3.36k
_return_label:
2182
3.36k
#if defined(LZ4HC_HEAPMODE) && LZ4HC_HEAPMODE==1
2183
3.36k
     if (opt) FREEMEM(opt);
2184
3.36k
#endif
2185
3.36k
     return retval;
2186
0
}
2187
2188
2189
/***************************************************
2190
*  Deprecated Functions
2191
***************************************************/
2192
2193
/* These functions currently generate deprecation warnings */
2194
2195
/* Wrappers for deprecated compression functions */
2196
0
int LZ4_compressHC(const char* src, char* dst, int srcSize) { return LZ4_compress_HC (src, dst, srcSize, LZ4_compressBound(srcSize), 0); }
2197
0
int LZ4_compressHC_limitedOutput(const char* src, char* dst, int srcSize, int maxDstSize) { return LZ4_compress_HC(src, dst, srcSize, maxDstSize, 0); }
2198
0
int LZ4_compressHC2(const char* src, char* dst, int srcSize, int cLevel) { return LZ4_compress_HC (src, dst, srcSize, LZ4_compressBound(srcSize), cLevel); }
2199
0
int LZ4_compressHC2_limitedOutput(const char* src, char* dst, int srcSize, int maxDstSize, int cLevel) { return LZ4_compress_HC(src, dst, srcSize, maxDstSize, cLevel); }
2200
0
int LZ4_compressHC_withStateHC (void* state, const char* src, char* dst, int srcSize) { return LZ4_compress_HC_extStateHC (state, src, dst, srcSize, LZ4_compressBound(srcSize), 0); }
2201
0
int LZ4_compressHC_limitedOutput_withStateHC (void* state, const char* src, char* dst, int srcSize, int maxDstSize) { return LZ4_compress_HC_extStateHC (state, src, dst, srcSize, maxDstSize, 0); }
2202
0
int LZ4_compressHC2_withStateHC (void* state, const char* src, char* dst, int srcSize, int cLevel) { return LZ4_compress_HC_extStateHC(state, src, dst, srcSize, LZ4_compressBound(srcSize), cLevel); }
2203
0
int LZ4_compressHC2_limitedOutput_withStateHC (void* state, const char* src, char* dst, int srcSize, int maxDstSize, int cLevel) { return LZ4_compress_HC_extStateHC(state, src, dst, srcSize, maxDstSize, cLevel); }
2204
0
int LZ4_compressHC_continue (LZ4_streamHC_t* ctx, const char* src, char* dst, int srcSize) { return LZ4_compress_HC_continue (ctx, src, dst, srcSize, LZ4_compressBound(srcSize)); }
2205
0
int LZ4_compressHC_limitedOutput_continue (LZ4_streamHC_t* ctx, const char* src, char* dst, int srcSize, int maxDstSize) { return LZ4_compress_HC_continue (ctx, src, dst, srcSize, maxDstSize); }
2206
2207
2208
/* Deprecated streaming functions */
2209
0
int LZ4_sizeofStreamStateHC(void) { return sizeof(LZ4_streamHC_t); }
2210
2211
/* state is presumed correctly sized, aka >= sizeof(LZ4_streamHC_t)
2212
 * @return : 0 on success, !=0 if error */
2213
int LZ4_resetStreamStateHC(void* state, char* inputBuffer)
2214
0
{
2215
0
    LZ4_streamHC_t* const hc4 = LZ4_initStreamHC(state, sizeof(*hc4));
2216
0
    if (hc4 == NULL) return 1;   /* init failed */
2217
0
    LZ4HC_init_internal (&hc4->internal_donotuse, (const BYTE*)inputBuffer);
2218
0
    return 0;
2219
0
}
2220
2221
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
2222
void* LZ4_createHC (const char* inputBuffer)
2223
0
{
2224
0
    LZ4_streamHC_t* const hc4 = LZ4_createStreamHC();
2225
0
    if (hc4 == NULL) return NULL;   /* not enough memory */
2226
0
    LZ4HC_init_internal (&hc4->internal_donotuse, (const BYTE*)inputBuffer);
2227
0
    return hc4;
2228
0
}
2229
2230
int LZ4_freeHC (void* LZ4HC_Data)
2231
0
{
2232
0
    if (!LZ4HC_Data) return 0;  /* support free on NULL */
2233
0
    FREEMEM(LZ4HC_Data);
2234
0
    return 0;
2235
0
}
2236
#endif
2237
2238
int LZ4_compressHC2_continue (void* LZ4HC_Data, const char* src, char* dst, int srcSize, int cLevel)
2239
0
{
2240
0
    return LZ4HC_compress_generic (&((LZ4_streamHC_t*)LZ4HC_Data)->internal_donotuse, src, dst, &srcSize, 0, cLevel, notLimited);
2241
0
}
2242
2243
int LZ4_compressHC2_limitedOutput_continue (void* LZ4HC_Data, const char* src, char* dst, int srcSize, int dstCapacity, int cLevel)
2244
0
{
2245
0
    return LZ4HC_compress_generic (&((LZ4_streamHC_t*)LZ4HC_Data)->internal_donotuse, src, dst, &srcSize, dstCapacity, cLevel, limitedOutput);
2246
0
}
2247
2248
char* LZ4_slideInputBufferHC(void* LZ4HC_Data)
2249
0
{
2250
0
    LZ4HC_CCtx_internal* const s = &((LZ4_streamHC_t*)LZ4HC_Data)->internal_donotuse;
2251
0
    const BYTE* const bufferStart = s->prefixStart - s->dictLimit + s->lowLimit;
2252
0
    LZ4_resetStreamHC_fast((LZ4_streamHC_t*)LZ4HC_Data, s->compressionLevel);
2253
    /* ugly conversion trick, required to evade (const char*) -> (char*) cast-qual warning :( */
2254
0
    return (char*)(uptrval)bufferStart;
2255
0
}