Coverage Report

Created: 2025-11-16 07:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/zstd/lib/compress/zstd_compress_internal.h
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Source
1
/*
2
 * Copyright (c) Meta Platforms, Inc. and affiliates.
3
 * All rights reserved.
4
 *
5
 * This source code is licensed under both the BSD-style license (found in the
6
 * LICENSE file in the root directory of this source tree) and the GPLv2 (found
7
 * in the COPYING file in the root directory of this source tree).
8
 * You may select, at your option, one of the above-listed licenses.
9
 */
10
11
/* This header contains definitions
12
 * that shall **only** be used by modules within lib/compress.
13
 */
14
15
#ifndef ZSTD_COMPRESS_H
16
#define ZSTD_COMPRESS_H
17
18
/*-*************************************
19
*  Dependencies
20
***************************************/
21
#include "../common/zstd_internal.h"
22
#include "zstd_cwksp.h"
23
#ifdef ZSTD_MULTITHREAD
24
#  include "zstdmt_compress.h"
25
#endif
26
#include "../common/bits.h" /* ZSTD_highbit32, ZSTD_NbCommonBytes */
27
#include "zstd_preSplit.h" /* ZSTD_SLIPBLOCK_WORKSPACESIZE */
28
29
/*-*************************************
30
*  Constants
31
***************************************/
32
36.4M
#define kSearchStrength      8
33
14.9k
#define HASH_READ_SIZE       8
34
0
#define ZSTD_DUBT_UNSORTED_MARK 1   /* For btlazy2 strategy, index ZSTD_DUBT_UNSORTED_MARK==1 means "unsorted".
35
                                       It could be confused for a real successor at index "1", if sorted as larger than its predecessor.
36
                                       It's not a big deal though : candidate will just be sorted again.
37
                                       Additionally, candidate position 1 will be lost.
38
                                       But candidate 1 cannot hide a large tree of candidates, so it's a minimal loss.
39
                                       The benefit is that ZSTD_DUBT_UNSORTED_MARK cannot be mishandled after table reuse with a different strategy.
40
                                       This constant is required by ZSTD_compressBlock_btlazy2() and ZSTD_reduceTable_internal() */
41
42
43
/*-*************************************
44
*  Context memory management
45
***************************************/
46
typedef enum { ZSTDcs_created=0, ZSTDcs_init, ZSTDcs_ongoing, ZSTDcs_ending } ZSTD_compressionStage_e;
47
typedef enum { zcss_init=0, zcss_load, zcss_flush } ZSTD_cStreamStage;
48
49
typedef struct ZSTD_prefixDict_s {
50
    const void* dict;
51
    size_t dictSize;
52
    ZSTD_dictContentType_e dictContentType;
53
} ZSTD_prefixDict;
54
55
typedef struct {
56
    void* dictBuffer;
57
    void const* dict;
58
    size_t dictSize;
59
    ZSTD_dictContentType_e dictContentType;
60
    ZSTD_CDict* cdict;
61
} ZSTD_localDict;
62
63
typedef struct {
64
    HUF_CElt CTable[HUF_CTABLE_SIZE_ST(255)];
65
    HUF_repeat repeatMode;
66
} ZSTD_hufCTables_t;
67
68
typedef struct {
69
    FSE_CTable offcodeCTable[FSE_CTABLE_SIZE_U32(OffFSELog, MaxOff)];
70
    FSE_CTable matchlengthCTable[FSE_CTABLE_SIZE_U32(MLFSELog, MaxML)];
71
    FSE_CTable litlengthCTable[FSE_CTABLE_SIZE_U32(LLFSELog, MaxLL)];
72
    FSE_repeat offcode_repeatMode;
73
    FSE_repeat matchlength_repeatMode;
74
    FSE_repeat litlength_repeatMode;
75
} ZSTD_fseCTables_t;
76
77
typedef struct {
78
    ZSTD_hufCTables_t huf;
79
    ZSTD_fseCTables_t fse;
80
} ZSTD_entropyCTables_t;
81
82
/***********************************************
83
*  Sequences *
84
***********************************************/
85
typedef struct SeqDef_s {
86
    U32 offBase;   /* offBase == Offset + ZSTD_REP_NUM, or repcode 1,2,3 */
87
    U16 litLength;
88
    U16 mlBase;    /* mlBase == matchLength - MINMATCH */
89
} SeqDef;
90
91
/* Controls whether seqStore has a single "long" litLength or matchLength. See SeqStore_t. */
92
typedef enum {
93
    ZSTD_llt_none = 0,             /* no longLengthType */
94
    ZSTD_llt_literalLength = 1,    /* represents a long literal */
95
    ZSTD_llt_matchLength = 2       /* represents a long match */
96
} ZSTD_longLengthType_e;
97
98
typedef struct {
99
    SeqDef* sequencesStart;
100
    SeqDef* sequences;      /* ptr to end of sequences */
101
    BYTE*  litStart;
102
    BYTE*  lit;             /* ptr to end of literals */
103
    BYTE*  llCode;
104
    BYTE*  mlCode;
105
    BYTE*  ofCode;
106
    size_t maxNbSeq;
107
    size_t maxNbLit;
108
109
    /* longLengthPos and longLengthType to allow us to represent either a single litLength or matchLength
110
     * in the seqStore that has a value larger than U16 (if it exists). To do so, we increment
111
     * the existing value of the litLength or matchLength by 0x10000.
112
     */
113
    ZSTD_longLengthType_e longLengthType;
114
    U32                   longLengthPos;  /* Index of the sequence to apply long length modification to */
115
} SeqStore_t;
116
117
typedef struct {
118
    U32 litLength;
119
    U32 matchLength;
120
} ZSTD_SequenceLength;
121
122
/**
123
 * Returns the ZSTD_SequenceLength for the given sequences. It handles the decoding of long sequences
124
 * indicated by longLengthPos and longLengthType, and adds MINMATCH back to matchLength.
125
 */
126
MEM_STATIC ZSTD_SequenceLength ZSTD_getSequenceLength(SeqStore_t const* seqStore, SeqDef const* seq)
127
0
{
128
0
    ZSTD_SequenceLength seqLen;
129
0
    seqLen.litLength = seq->litLength;
130
0
    seqLen.matchLength = seq->mlBase + MINMATCH;
131
0
    if (seqStore->longLengthPos == (U32)(seq - seqStore->sequencesStart)) {
132
0
        if (seqStore->longLengthType == ZSTD_llt_literalLength) {
133
0
            seqLen.litLength += 0x10000;
134
0
        }
135
0
        if (seqStore->longLengthType == ZSTD_llt_matchLength) {
136
0
            seqLen.matchLength += 0x10000;
137
0
        }
138
0
    }
139
0
    return seqLen;
140
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_double_fast.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_fast.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_lazy.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_ldm.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstd_opt.c:ZSTD_getSequenceLength
Unexecuted instantiation: zstdmt_compress.c:ZSTD_getSequenceLength
141
142
const SeqStore_t* ZSTD_getSeqStore(const ZSTD_CCtx* ctx);   /* compress & dictBuilder */
143
int ZSTD_seqToCodes(const SeqStore_t* seqStorePtr);   /* compress, dictBuilder, decodeCorpus (shouldn't get its definition from here) */
144
145
146
/***********************************************
147
*  Entropy buffer statistics structs and funcs *
148
***********************************************/
149
/** ZSTD_hufCTablesMetadata_t :
150
 *  Stores Literals Block Type for a super-block in hType, and
151
 *  huffman tree description in hufDesBuffer.
152
 *  hufDesSize refers to the size of huffman tree description in bytes.
153
 *  This metadata is populated in ZSTD_buildBlockEntropyStats_literals() */
154
typedef struct {
155
    SymbolEncodingType_e hType;
156
    BYTE hufDesBuffer[ZSTD_MAX_HUF_HEADER_SIZE];
157
    size_t hufDesSize;
158
} ZSTD_hufCTablesMetadata_t;
159
160
/** ZSTD_fseCTablesMetadata_t :
161
 *  Stores symbol compression modes for a super-block in {ll, ol, ml}Type, and
162
 *  fse tables in fseTablesBuffer.
163
 *  fseTablesSize refers to the size of fse tables in bytes.
164
 *  This metadata is populated in ZSTD_buildBlockEntropyStats_sequences() */
165
typedef struct {
166
    SymbolEncodingType_e llType;
167
    SymbolEncodingType_e ofType;
168
    SymbolEncodingType_e mlType;
169
    BYTE fseTablesBuffer[ZSTD_MAX_FSE_HEADERS_SIZE];
170
    size_t fseTablesSize;
171
    size_t lastCountSize; /* This is to account for bug in 1.3.4. More detail in ZSTD_entropyCompressSeqStore_internal() */
172
} ZSTD_fseCTablesMetadata_t;
173
174
typedef struct {
175
    ZSTD_hufCTablesMetadata_t hufMetadata;
176
    ZSTD_fseCTablesMetadata_t fseMetadata;
177
} ZSTD_entropyCTablesMetadata_t;
178
179
/** ZSTD_buildBlockEntropyStats() :
180
 *  Builds entropy for the block.
181
 *  @return : 0 on success or error code */
182
size_t ZSTD_buildBlockEntropyStats(
183
                    const SeqStore_t* seqStorePtr,
184
                    const ZSTD_entropyCTables_t* prevEntropy,
185
                          ZSTD_entropyCTables_t* nextEntropy,
186
                    const ZSTD_CCtx_params* cctxParams,
187
                          ZSTD_entropyCTablesMetadata_t* entropyMetadata,
188
                          void* workspace, size_t wkspSize);
189
190
/*********************************
191
*  Compression internals structs *
192
*********************************/
193
194
typedef struct {
195
    U32 off;            /* Offset sumtype code for the match, using ZSTD_storeSeq() format */
196
    U32 len;            /* Raw length of match */
197
} ZSTD_match_t;
198
199
typedef struct {
200
    U32 offset;         /* Offset of sequence */
201
    U32 litLength;      /* Length of literals prior to match */
202
    U32 matchLength;    /* Raw length of match */
203
} rawSeq;
204
205
typedef struct {
206
  rawSeq* seq;          /* The start of the sequences */
207
  size_t pos;           /* The index in seq where reading stopped. pos <= size. */
208
  size_t posInSequence; /* The position within the sequence at seq[pos] where reading
209
                           stopped. posInSequence <= seq[pos].litLength + seq[pos].matchLength */
210
  size_t size;          /* The number of sequences. <= capacity. */
211
  size_t capacity;      /* The capacity starting from `seq` pointer */
212
} RawSeqStore_t;
213
214
UNUSED_ATTR static const RawSeqStore_t kNullRawSeqStore = {NULL, 0, 0, 0, 0};
215
216
typedef struct {
217
    int price;  /* price from beginning of segment to this position */
218
    U32 off;    /* offset of previous match */
219
    U32 mlen;   /* length of previous match */
220
    U32 litlen; /* nb of literals since previous match */
221
    U32 rep[ZSTD_REP_NUM];  /* offset history after previous match */
222
} ZSTD_optimal_t;
223
224
typedef enum { zop_dynamic=0, zop_predef } ZSTD_OptPrice_e;
225
226
29.8k
#define ZSTD_OPT_SIZE (ZSTD_OPT_NUM+3)
227
typedef struct {
228
    /* All tables are allocated inside cctx->workspace by ZSTD_resetCCtx_internal() */
229
    unsigned* litFreq;           /* table of literals statistics, of size 256 */
230
    unsigned* litLengthFreq;     /* table of litLength statistics, of size (MaxLL+1) */
231
    unsigned* matchLengthFreq;   /* table of matchLength statistics, of size (MaxML+1) */
232
    unsigned* offCodeFreq;       /* table of offCode statistics, of size (MaxOff+1) */
233
    ZSTD_match_t* matchTable;    /* list of found matches, of size ZSTD_OPT_SIZE */
234
    ZSTD_optimal_t* priceTable;  /* All positions tracked by optimal parser, of size ZSTD_OPT_SIZE */
235
236
    U32  litSum;                 /* nb of literals */
237
    U32  litLengthSum;           /* nb of litLength codes */
238
    U32  matchLengthSum;         /* nb of matchLength codes */
239
    U32  offCodeSum;             /* nb of offset codes */
240
    U32  litSumBasePrice;        /* to compare to log2(litfreq) */
241
    U32  litLengthSumBasePrice;  /* to compare to log2(llfreq)  */
242
    U32  matchLengthSumBasePrice;/* to compare to log2(mlfreq)  */
243
    U32  offCodeSumBasePrice;    /* to compare to log2(offreq)  */
244
    ZSTD_OptPrice_e priceType;   /* prices can be determined dynamically, or follow a pre-defined cost structure */
245
    const ZSTD_entropyCTables_t* symbolCosts;  /* pre-calculated dictionary statistics */
246
    ZSTD_ParamSwitch_e literalCompressionMode;
247
} optState_t;
248
249
typedef struct {
250
  ZSTD_entropyCTables_t entropy;
251
  U32 rep[ZSTD_REP_NUM];
252
} ZSTD_compressedBlockState_t;
253
254
typedef struct {
255
    BYTE const* nextSrc;       /* next block here to continue on current prefix */
256
    BYTE const* base;          /* All regular indexes relative to this position */
257
    BYTE const* dictBase;      /* extDict indexes relative to this position */
258
    U32 dictLimit;             /* below that point, need extDict */
259
    U32 lowLimit;              /* below that point, no more valid data */
260
    U32 nbOverflowCorrections; /* Number of times overflow correction has run since
261
                                * ZSTD_window_init(). Useful for debugging coredumps
262
                                * and for ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY.
263
                                */
264
} ZSTD_window_t;
265
266
70.6k
#define ZSTD_WINDOW_START_INDEX 2
267
268
typedef struct ZSTD_MatchState_t ZSTD_MatchState_t;
269
270
1.80G
#define ZSTD_ROW_HASH_CACHE_SIZE 8       /* Size of prefetching hash cache for row-based matchfinder */
271
272
struct ZSTD_MatchState_t {
273
    ZSTD_window_t window;   /* State for window round buffer management */
274
    U32 loadedDictEnd;      /* index of end of dictionary, within context's referential.
275
                             * When loadedDictEnd != 0, a dictionary is in use, and still valid.
276
                             * This relies on a mechanism to set loadedDictEnd=0 when dictionary is no longer within distance.
277
                             * Such mechanism is provided within ZSTD_window_enforceMaxDist() and ZSTD_checkDictValidity().
278
                             * When dict referential is copied into active context (i.e. not attached),
279
                             * loadedDictEnd == dictSize, since referential starts from zero.
280
                             */
281
    U32 nextToUpdate;       /* index from which to continue table update */
282
    U32 hashLog3;           /* dispatch table for matches of len==3 : larger == faster, more memory */
283
284
    U32 rowHashLog;                          /* For row-based matchfinder: Hashlog based on nb of rows in the hashTable.*/
285
    BYTE* tagTable;                          /* For row-based matchFinder: A row-based table containing the hashes and head index. */
286
    U32 hashCache[ZSTD_ROW_HASH_CACHE_SIZE]; /* For row-based matchFinder: a cache of hashes to improve speed */
287
    U64 hashSalt;                            /* For row-based matchFinder: salts the hash for reuse of tag table */
288
    U32 hashSaltEntropy;                     /* For row-based matchFinder: collects entropy for salt generation */
289
290
    U32* hashTable;
291
    U32* hashTable3;
292
    U32* chainTable;
293
294
    int forceNonContiguous; /* Non-zero if we should force non-contiguous load for the next window update. */
295
296
    int dedicatedDictSearch;  /* Indicates whether this matchState is using the
297
                               * dedicated dictionary search structure.
298
                               */
299
    optState_t opt;         /* optimal parser state */
300
    const ZSTD_MatchState_t* dictMatchState;
301
    ZSTD_compressionParameters cParams;
302
    const RawSeqStore_t* ldmSeqStore;
303
304
    /* Controls prefetching in some dictMatchState matchfinders.
305
     * This behavior is controlled from the cctx ms.
306
     * This parameter has no effect in the cdict ms. */
307
    int prefetchCDictTables;
308
309
    /* When == 0, lazy match finders insert every position.
310
     * When != 0, lazy match finders only insert positions they search.
311
     * This allows them to skip much faster over incompressible data,
312
     * at a small cost to compression ratio.
313
     */
314
    int lazySkipping;
315
};
316
317
typedef struct {
318
    ZSTD_compressedBlockState_t* prevCBlock;
319
    ZSTD_compressedBlockState_t* nextCBlock;
320
    ZSTD_MatchState_t matchState;
321
} ZSTD_blockState_t;
322
323
typedef struct {
324
    U32 offset;
325
    U32 checksum;
326
} ldmEntry_t;
327
328
typedef struct {
329
    BYTE const* split;
330
    U32 hash;
331
    U32 checksum;
332
    ldmEntry_t* bucket;
333
} ldmMatchCandidate_t;
334
335
0
#define LDM_BATCH_SIZE 64
336
337
typedef struct {
338
    ZSTD_window_t window;   /* State for the window round buffer management */
339
    ldmEntry_t* hashTable;
340
    U32 loadedDictEnd;
341
    BYTE* bucketOffsets;    /* Next position in bucket to insert entry */
342
    size_t splitIndices[LDM_BATCH_SIZE];
343
    ldmMatchCandidate_t matchCandidates[LDM_BATCH_SIZE];
344
} ldmState_t;
345
346
typedef struct {
347
    ZSTD_ParamSwitch_e enableLdm; /* ZSTD_ps_enable to enable LDM. ZSTD_ps_auto by default */
348
    U32 hashLog;            /* Log size of hashTable */
349
    U32 bucketSizeLog;      /* Log bucket size for collision resolution, at most 8 */
350
    U32 minMatchLength;     /* Minimum match length */
351
    U32 hashRateLog;       /* Log number of entries to skip */
352
    U32 windowLog;          /* Window log for the LDM */
353
} ldmParams_t;
354
355
typedef struct {
356
    int collectSequences;
357
    ZSTD_Sequence* seqStart;
358
    size_t seqIndex;
359
    size_t maxSequences;
360
} SeqCollector;
361
362
struct ZSTD_CCtx_params_s {
363
    ZSTD_format_e format;
364
    ZSTD_compressionParameters cParams;
365
    ZSTD_frameParameters fParams;
366
367
    int compressionLevel;
368
    int forceWindow;           /* force back-references to respect limit of
369
                                * 1<<wLog, even for dictionary */
370
    size_t targetCBlockSize;   /* Tries to fit compressed block size to be around targetCBlockSize.
371
                                * No target when targetCBlockSize == 0.
372
                                * There is no guarantee on compressed block size */
373
    int srcSizeHint;           /* User's best guess of source size.
374
                                * Hint is not valid when srcSizeHint == 0.
375
                                * There is no guarantee that hint is close to actual source size */
376
377
    ZSTD_dictAttachPref_e attachDictPref;
378
    ZSTD_ParamSwitch_e literalCompressionMode;
379
380
    /* Multithreading: used to pass parameters to mtctx */
381
    int nbWorkers;
382
    size_t jobSize;
383
    int overlapLog;
384
    int rsyncable;
385
386
    /* Long distance matching parameters */
387
    ldmParams_t ldmParams;
388
389
    /* Dedicated dict search algorithm trigger */
390
    int enableDedicatedDictSearch;
391
392
    /* Input/output buffer modes */
393
    ZSTD_bufferMode_e inBufferMode;
394
    ZSTD_bufferMode_e outBufferMode;
395
396
    /* Sequence compression API */
397
    ZSTD_SequenceFormat_e blockDelimiters;
398
    int validateSequences;
399
400
    /* Block splitting
401
     * @postBlockSplitter executes split analysis after sequences are produced,
402
     * it's more accurate but consumes more resources.
403
     * @preBlockSplitter_level splits before knowing sequences,
404
     * it's more approximative but also cheaper.
405
     * Valid @preBlockSplitter_level values range from 0 to 6 (included).
406
     * 0 means auto, 1 means do not split,
407
     * then levels are sorted in increasing cpu budget, from 2 (fastest) to 6 (slowest).
408
     * Highest @preBlockSplitter_level combines well with @postBlockSplitter.
409
     */
410
    ZSTD_ParamSwitch_e postBlockSplitter;
411
    int preBlockSplitter_level;
412
413
    /* Adjust the max block size*/
414
    size_t maxBlockSize;
415
416
    /* Param for deciding whether to use row-based matchfinder */
417
    ZSTD_ParamSwitch_e useRowMatchFinder;
418
419
    /* Always load a dictionary in ext-dict mode (not prefix mode)? */
420
    int deterministicRefPrefix;
421
422
    /* Internal use, for createCCtxParams() and freeCCtxParams() only */
423
    ZSTD_customMem customMem;
424
425
    /* Controls prefetching in some dictMatchState matchfinders */
426
    ZSTD_ParamSwitch_e prefetchCDictTables;
427
428
    /* Controls whether zstd will fall back to an internal matchfinder
429
     * if the external matchfinder returns an error code. */
430
    int enableMatchFinderFallback;
431
432
    /* Parameters for the external sequence producer API.
433
     * Users set these parameters through ZSTD_registerSequenceProducer().
434
     * It is not possible to set these parameters individually through the public API. */
435
    void* extSeqProdState;
436
    ZSTD_sequenceProducer_F extSeqProdFunc;
437
438
    /* Controls repcode search in external sequence parsing */
439
    ZSTD_ParamSwitch_e searchForExternalRepcodes;
440
};  /* typedef'd to ZSTD_CCtx_params within "zstd.h" */
441
442
#define COMPRESS_SEQUENCES_WORKSPACE_SIZE (sizeof(unsigned) * (MaxSeq + 2))
443
#define ENTROPY_WORKSPACE_SIZE (HUF_WORKSPACE_SIZE + COMPRESS_SEQUENCES_WORKSPACE_SIZE)
444
26.0k
#define TMP_WORKSPACE_SIZE (MAX(ENTROPY_WORKSPACE_SIZE, ZSTD_SLIPBLOCK_WORKSPACESIZE))
445
446
/**
447
 * Indicates whether this compression proceeds directly from user-provided
448
 * source buffer to user-provided destination buffer (ZSTDb_not_buffered), or
449
 * whether the context needs to buffer the input/output (ZSTDb_buffered).
450
 */
451
typedef enum {
452
    ZSTDb_not_buffered,
453
    ZSTDb_buffered
454
} ZSTD_buffered_policy_e;
455
456
/**
457
 * Struct that contains all elements of block splitter that should be allocated
458
 * in a wksp.
459
 */
460
0
#define ZSTD_MAX_NB_BLOCK_SPLITS 196
461
typedef struct {
462
    SeqStore_t fullSeqStoreChunk;
463
    SeqStore_t firstHalfSeqStore;
464
    SeqStore_t secondHalfSeqStore;
465
    SeqStore_t currSeqStore;
466
    SeqStore_t nextSeqStore;
467
468
    U32 partitions[ZSTD_MAX_NB_BLOCK_SPLITS];
469
    ZSTD_entropyCTablesMetadata_t entropyMetadata;
470
} ZSTD_blockSplitCtx;
471
472
struct ZSTD_CCtx_s {
473
    ZSTD_compressionStage_e stage;
474
    int cParamsChanged;                  /* == 1 if cParams(except wlog) or compression level are changed in requestedParams. Triggers transmission of new params to ZSTDMT (if available) then reset to 0. */
475
    int bmi2;                            /* == 1 if the CPU supports BMI2 and 0 otherwise. CPU support is determined dynamically once per context lifetime. */
476
    ZSTD_CCtx_params requestedParams;
477
    ZSTD_CCtx_params appliedParams;
478
    ZSTD_CCtx_params simpleApiParams;    /* Param storage used by the simple API - not sticky. Must only be used in top-level simple API functions for storage. */
479
    U32   dictID;
480
    size_t dictContentSize;
481
482
    ZSTD_cwksp workspace; /* manages buffer for dynamic allocations */
483
    size_t blockSizeMax;
484
    unsigned long long pledgedSrcSizePlusOne;  /* this way, 0 (default) == unknown */
485
    unsigned long long consumedSrcSize;
486
    unsigned long long producedCSize;
487
    XXH64_state_t xxhState;
488
    ZSTD_customMem customMem;
489
    ZSTD_threadPool* pool;
490
    size_t staticSize;
491
    SeqCollector seqCollector;
492
    int isFirstBlock;
493
    int initialized;
494
495
    SeqStore_t seqStore;      /* sequences storage ptrs */
496
    ldmState_t ldmState;      /* long distance matching state */
497
    rawSeq* ldmSequences;     /* Storage for the ldm output sequences */
498
    size_t maxNbLdmSequences;
499
    RawSeqStore_t externSeqStore; /* Mutable reference to external sequences */
500
    ZSTD_blockState_t blockState;
501
    void* tmpWorkspace;  /* used as substitute of stack space - must be aligned for S64 type */
502
    size_t tmpWkspSize;
503
504
    /* Whether we are streaming or not */
505
    ZSTD_buffered_policy_e bufferedPolicy;
506
507
    /* streaming */
508
    char*  inBuff;
509
    size_t inBuffSize;
510
    size_t inToCompress;
511
    size_t inBuffPos;
512
    size_t inBuffTarget;
513
    char*  outBuff;
514
    size_t outBuffSize;
515
    size_t outBuffContentSize;
516
    size_t outBuffFlushedSize;
517
    ZSTD_cStreamStage streamStage;
518
    U32    frameEnded;
519
520
    /* Stable in/out buffer verification */
521
    ZSTD_inBuffer expectedInBuffer;
522
    size_t stableIn_notConsumed; /* nb bytes within stable input buffer that are said to be consumed but are not */
523
    size_t expectedOutBufferSize;
524
525
    /* Dictionary */
526
    ZSTD_localDict localDict;
527
    const ZSTD_CDict* cdict;
528
    ZSTD_prefixDict prefixDict;   /* single-usage dictionary */
529
530
    /* Multi-threading */
531
#ifdef ZSTD_MULTITHREAD
532
    ZSTDMT_CCtx* mtctx;
533
#endif
534
535
    /* Tracing */
536
#if ZSTD_TRACE
537
    ZSTD_TraceCtx traceCtx;
538
#endif
539
540
    /* Workspace for block splitter */
541
    ZSTD_blockSplitCtx blockSplitCtx;
542
543
    /* Buffer for output from external sequence producer */
544
    ZSTD_Sequence* extSeqBuf;
545
    size_t extSeqBufCapacity;
546
};
547
548
typedef enum { ZSTD_dtlm_fast, ZSTD_dtlm_full } ZSTD_dictTableLoadMethod_e;
549
typedef enum { ZSTD_tfp_forCCtx, ZSTD_tfp_forCDict } ZSTD_tableFillPurpose_e;
550
551
typedef enum {
552
    ZSTD_noDict = 0,
553
    ZSTD_extDict = 1,
554
    ZSTD_dictMatchState = 2,
555
    ZSTD_dedicatedDictSearch = 3
556
} ZSTD_dictMode_e;
557
558
typedef enum {
559
    ZSTD_cpm_noAttachDict = 0,  /* Compression with ZSTD_noDict or ZSTD_extDict.
560
                                 * In this mode we use both the srcSize and the dictSize
561
                                 * when selecting and adjusting parameters.
562
                                 */
563
    ZSTD_cpm_attachDict = 1,    /* Compression with ZSTD_dictMatchState or ZSTD_dedicatedDictSearch.
564
                                 * In this mode we only take the srcSize into account when selecting
565
                                 * and adjusting parameters.
566
                                 */
567
    ZSTD_cpm_createCDict = 2,   /* Creating a CDict.
568
                                 * In this mode we take both the source size and the dictionary size
569
                                 * into account when selecting and adjusting the parameters.
570
                                 */
571
    ZSTD_cpm_unknown = 3        /* ZSTD_getCParams, ZSTD_getParams, ZSTD_adjustParams.
572
                                 * We don't know what these parameters are for. We default to the legacy
573
                                 * behavior of taking both the source size and the dict size into account
574
                                 * when selecting and adjusting parameters.
575
                                 */
576
} ZSTD_CParamMode_e;
577
578
typedef size_t (*ZSTD_BlockCompressor_f) (
579
        ZSTD_MatchState_t* bs, SeqStore_t* seqStore, U32 rep[ZSTD_REP_NUM],
580
        void const* src, size_t srcSize);
581
ZSTD_BlockCompressor_f ZSTD_selectBlockCompressor(ZSTD_strategy strat, ZSTD_ParamSwitch_e rowMatchfinderMode, ZSTD_dictMode_e dictMode);
582
583
584
MEM_STATIC U32 ZSTD_LLcode(U32 litLength)
585
32.3M
{
586
32.3M
    static const BYTE LL_Code[64] = {  0,  1,  2,  3,  4,  5,  6,  7,
587
32.3M
                                       8,  9, 10, 11, 12, 13, 14, 15,
588
32.3M
                                      16, 16, 17, 17, 18, 18, 19, 19,
589
32.3M
                                      20, 20, 20, 20, 21, 21, 21, 21,
590
32.3M
                                      22, 22, 22, 22, 22, 22, 22, 22,
591
32.3M
                                      23, 23, 23, 23, 23, 23, 23, 23,
592
32.3M
                                      24, 24, 24, 24, 24, 24, 24, 24,
593
32.3M
                                      24, 24, 24, 24, 24, 24, 24, 24 };
594
32.3M
    static const U32 LL_deltaCode = 19;
595
32.3M
    return (litLength > 63) ? ZSTD_highbit32(litLength) + LL_deltaCode : LL_Code[litLength];
596
32.3M
}
zstd_compress.c:ZSTD_LLcode
Line
Count
Source
585
32.3M
{
586
32.3M
    static const BYTE LL_Code[64] = {  0,  1,  2,  3,  4,  5,  6,  7,
587
32.3M
                                       8,  9, 10, 11, 12, 13, 14, 15,
588
32.3M
                                      16, 16, 17, 17, 18, 18, 19, 19,
589
32.3M
                                      20, 20, 20, 20, 21, 21, 21, 21,
590
32.3M
                                      22, 22, 22, 22, 22, 22, 22, 22,
591
32.3M
                                      23, 23, 23, 23, 23, 23, 23, 23,
592
32.3M
                                      24, 24, 24, 24, 24, 24, 24, 24,
593
32.3M
                                      24, 24, 24, 24, 24, 24, 24, 24 };
594
32.3M
    static const U32 LL_deltaCode = 19;
595
32.3M
    return (litLength > 63) ? ZSTD_highbit32(litLength) + LL_deltaCode : LL_Code[litLength];
596
32.3M
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_LLcode
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_LLcode
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_LLcode
Unexecuted instantiation: zstd_double_fast.c:ZSTD_LLcode
Unexecuted instantiation: zstd_fast.c:ZSTD_LLcode
Unexecuted instantiation: zstd_lazy.c:ZSTD_LLcode
Unexecuted instantiation: zstd_ldm.c:ZSTD_LLcode
Unexecuted instantiation: zstd_opt.c:ZSTD_LLcode
Unexecuted instantiation: zstdmt_compress.c:ZSTD_LLcode
597
598
/* ZSTD_MLcode() :
599
 * note : mlBase = matchLength - MINMATCH;
600
 *        because it's the format it's stored in seqStore->sequences */
601
MEM_STATIC U32 ZSTD_MLcode(U32 mlBase)
602
32.3M
{
603
32.3M
    static const BYTE ML_Code[128] = { 0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14, 15,
604
32.3M
                                      16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31,
605
32.3M
                                      32, 32, 33, 33, 34, 34, 35, 35, 36, 36, 36, 36, 37, 37, 37, 37,
606
32.3M
                                      38, 38, 38, 38, 38, 38, 38, 38, 39, 39, 39, 39, 39, 39, 39, 39,
607
32.3M
                                      40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40,
608
32.3M
                                      41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41,
609
32.3M
                                      42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
610
32.3M
                                      42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42 };
611
32.3M
    static const U32 ML_deltaCode = 36;
612
32.3M
    return (mlBase > 127) ? ZSTD_highbit32(mlBase) + ML_deltaCode : ML_Code[mlBase];
613
32.3M
}
zstd_compress.c:ZSTD_MLcode
Line
Count
Source
602
32.3M
{
603
32.3M
    static const BYTE ML_Code[128] = { 0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14, 15,
604
32.3M
                                      16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31,
605
32.3M
                                      32, 32, 33, 33, 34, 34, 35, 35, 36, 36, 36, 36, 37, 37, 37, 37,
606
32.3M
                                      38, 38, 38, 38, 38, 38, 38, 38, 39, 39, 39, 39, 39, 39, 39, 39,
607
32.3M
                                      40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40,
608
32.3M
                                      41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41,
609
32.3M
                                      42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
610
32.3M
                                      42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42 };
611
32.3M
    static const U32 ML_deltaCode = 36;
612
32.3M
    return (mlBase > 127) ? ZSTD_highbit32(mlBase) + ML_deltaCode : ML_Code[mlBase];
613
32.3M
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_MLcode
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_MLcode
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_MLcode
Unexecuted instantiation: zstd_double_fast.c:ZSTD_MLcode
Unexecuted instantiation: zstd_fast.c:ZSTD_MLcode
Unexecuted instantiation: zstd_lazy.c:ZSTD_MLcode
Unexecuted instantiation: zstd_ldm.c:ZSTD_MLcode
Unexecuted instantiation: zstd_opt.c:ZSTD_MLcode
Unexecuted instantiation: zstdmt_compress.c:ZSTD_MLcode
614
615
/* ZSTD_cParam_withinBounds:
616
 * @return 1 if value is within cParam bounds,
617
 * 0 otherwise */
618
MEM_STATIC int ZSTD_cParam_withinBounds(ZSTD_cParameter cParam, int value)
619
0
{
620
0
    ZSTD_bounds const bounds = ZSTD_cParam_getBounds(cParam);
621
0
    if (ZSTD_isError(bounds.error)) return 0;
622
0
    if (value < bounds.lowerBound) return 0;
623
0
    if (value > bounds.upperBound) return 0;
624
0
    return 1;
625
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_double_fast.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_fast.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_lazy.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_ldm.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstd_opt.c:ZSTD_cParam_withinBounds
Unexecuted instantiation: zstdmt_compress.c:ZSTD_cParam_withinBounds
626
627
/* ZSTD_selectAddr:
628
 * @return index >= lowLimit ? candidate : backup,
629
 * tries to force branchless codegen. */
630
MEM_STATIC const BYTE*
631
ZSTD_selectAddr(U32 index, U32 lowLimit, const BYTE* candidate, const BYTE* backup)
632
0
{
633
0
#if defined(__GNUC__) && defined(__x86_64__)
634
0
    __asm__ (
635
0
        "cmp %1, %2\n"
636
0
        "cmova %3, %0\n"
637
0
        : "+r"(candidate)
638
0
        : "r"(index), "r"(lowLimit), "r"(backup)
639
0
        );
640
0
    return candidate;
641
#else
642
    return index >= lowLimit ? candidate : backup;
643
#endif
644
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_fast.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_lazy.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_ldm.c:ZSTD_selectAddr
Unexecuted instantiation: zstd_opt.c:ZSTD_selectAddr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_selectAddr
645
646
/* ZSTD_noCompressBlock() :
647
 * Writes uncompressed block to dst buffer from given src.
648
 * Returns the size of the block */
649
MEM_STATIC size_t
650
ZSTD_noCompressBlock(void* dst, size_t dstCapacity, const void* src, size_t srcSize, U32 lastBlock)
651
176
{
652
176
    U32 const cBlockHeader24 = lastBlock + (((U32)bt_raw)<<1) + (U32)(srcSize << 3);
653
176
    DEBUGLOG(5, "ZSTD_noCompressBlock (srcSize=%zu, dstCapacity=%zu)", srcSize, dstCapacity);
654
176
    RETURN_ERROR_IF(srcSize + ZSTD_blockHeaderSize > dstCapacity,
655
176
                    dstSize_tooSmall, "dst buf too small for uncompressed block");
656
176
    MEM_writeLE24(dst, cBlockHeader24);
657
176
    ZSTD_memcpy((BYTE*)dst + ZSTD_blockHeaderSize, src, srcSize);
658
176
    return ZSTD_blockHeaderSize + srcSize;
659
176
}
zstd_compress.c:ZSTD_noCompressBlock
Line
Count
Source
651
176
{
652
176
    U32 const cBlockHeader24 = lastBlock + (((U32)bt_raw)<<1) + (U32)(srcSize << 3);
653
176
    DEBUGLOG(5, "ZSTD_noCompressBlock (srcSize=%zu, dstCapacity=%zu)", srcSize, dstCapacity);
654
176
    RETURN_ERROR_IF(srcSize + ZSTD_blockHeaderSize > dstCapacity,
655
176
                    dstSize_tooSmall, "dst buf too small for uncompressed block");
656
176
    MEM_writeLE24(dst, cBlockHeader24);
657
176
    ZSTD_memcpy((BYTE*)dst + ZSTD_blockHeaderSize, src, srcSize);
658
176
    return ZSTD_blockHeaderSize + srcSize;
659
176
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_double_fast.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_fast.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_lazy.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_ldm.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstd_opt.c:ZSTD_noCompressBlock
Unexecuted instantiation: zstdmt_compress.c:ZSTD_noCompressBlock
660
661
MEM_STATIC size_t
662
ZSTD_rleCompressBlock(void* dst, size_t dstCapacity, BYTE src, size_t srcSize, U32 lastBlock)
663
0
{
664
0
    BYTE* const op = (BYTE*)dst;
665
0
    U32 const cBlockHeader = lastBlock + (((U32)bt_rle)<<1) + (U32)(srcSize << 3);
666
0
    RETURN_ERROR_IF(dstCapacity < 4, dstSize_tooSmall, "");
667
0
    MEM_writeLE24(op, cBlockHeader);
668
0
    op[3] = src;
669
0
    return 4;
670
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_double_fast.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_fast.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_lazy.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_ldm.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstd_opt.c:ZSTD_rleCompressBlock
Unexecuted instantiation: zstdmt_compress.c:ZSTD_rleCompressBlock
671
672
673
/* ZSTD_minGain() :
674
 * minimum compression required
675
 * to generate a compress block or a compressed literals section.
676
 * note : use same formula for both situations */
677
MEM_STATIC size_t ZSTD_minGain(size_t srcSize, ZSTD_strategy strat)
678
72.5k
{
679
72.5k
    U32 const minlog = (strat>=ZSTD_btultra) ? (U32)(strat) - 1 : 6;
680
72.5k
    ZSTD_STATIC_ASSERT(ZSTD_btultra == 8);
681
72.5k
    assert(ZSTD_cParam_withinBounds(ZSTD_c_strategy, (int)strat));
682
72.5k
    return (srcSize >> minlog) + 2;
683
72.5k
}
zstd_compress.c:ZSTD_minGain
Line
Count
Source
678
52.7k
{
679
52.7k
    U32 const minlog = (strat>=ZSTD_btultra) ? (U32)(strat) - 1 : 6;
680
52.7k
    ZSTD_STATIC_ASSERT(ZSTD_btultra == 8);
681
52.7k
    assert(ZSTD_cParam_withinBounds(ZSTD_c_strategy, (int)strat));
682
52.7k
    return (srcSize >> minlog) + 2;
683
52.7k
}
zstd_compress_literals.c:ZSTD_minGain
Line
Count
Source
678
19.8k
{
679
19.8k
    U32 const minlog = (strat>=ZSTD_btultra) ? (U32)(strat) - 1 : 6;
680
19.8k
    ZSTD_STATIC_ASSERT(ZSTD_btultra == 8);
681
19.8k
    assert(ZSTD_cParam_withinBounds(ZSTD_c_strategy, (int)strat));
682
19.8k
    return (srcSize >> minlog) + 2;
683
19.8k
}
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_minGain
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_minGain
Unexecuted instantiation: zstd_double_fast.c:ZSTD_minGain
Unexecuted instantiation: zstd_fast.c:ZSTD_minGain
Unexecuted instantiation: zstd_lazy.c:ZSTD_minGain
Unexecuted instantiation: zstd_ldm.c:ZSTD_minGain
Unexecuted instantiation: zstd_opt.c:ZSTD_minGain
Unexecuted instantiation: zstdmt_compress.c:ZSTD_minGain
684
685
MEM_STATIC int ZSTD_literalsCompressionIsDisabled(const ZSTD_CCtx_params* cctxParams)
686
52.7k
{
687
52.7k
    switch (cctxParams->literalCompressionMode) {
688
0
    case ZSTD_ps_enable:
689
0
        return 0;
690
0
    case ZSTD_ps_disable:
691
0
        return 1;
692
0
    default:
693
0
        assert(0 /* impossible: pre-validated */);
694
0
        ZSTD_FALLTHROUGH;
695
52.7k
    case ZSTD_ps_auto:
696
52.7k
        return (cctxParams->cParams.strategy == ZSTD_fast) && (cctxParams->cParams.targetLength > 0);
697
52.7k
    }
698
52.7k
}
zstd_compress.c:ZSTD_literalsCompressionIsDisabled
Line
Count
Source
686
52.7k
{
687
52.7k
    switch (cctxParams->literalCompressionMode) {
688
0
    case ZSTD_ps_enable:
689
0
        return 0;
690
0
    case ZSTD_ps_disable:
691
0
        return 1;
692
0
    default:
693
0
        assert(0 /* impossible: pre-validated */);
694
0
        ZSTD_FALLTHROUGH;
695
52.7k
    case ZSTD_ps_auto:
696
52.7k
        return (cctxParams->cParams.strategy == ZSTD_fast) && (cctxParams->cParams.targetLength > 0);
697
52.7k
    }
698
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_double_fast.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_fast.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_lazy.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_ldm.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstd_opt.c:ZSTD_literalsCompressionIsDisabled
Unexecuted instantiation: zstdmt_compress.c:ZSTD_literalsCompressionIsDisabled
699
700
/*! ZSTD_safecopyLiterals() :
701
 *  memcpy() function that won't read beyond more than WILDCOPY_OVERLENGTH bytes past ilimit_w.
702
 *  Only called when the sequence ends past ilimit_w, so it only needs to be optimized for single
703
 *  large copies.
704
 */
705
static void
706
ZSTD_safecopyLiterals(BYTE* op, BYTE const* ip, BYTE const* const iend, BYTE const* ilimit_w)
707
12.2k
{
708
12.2k
    assert(iend > ilimit_w);
709
12.2k
    if (ip <= ilimit_w) {
710
1.67k
        ZSTD_wildcopy(op, ip, (size_t)(ilimit_w - ip), ZSTD_no_overlap);
711
1.67k
        op += ilimit_w - ip;
712
1.67k
        ip = ilimit_w;
713
1.67k
    }
714
30.5k
    while (ip < iend) *op++ = *ip++;
715
12.2k
}
Unexecuted instantiation: zstd_compress.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_double_fast.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_fast.c:ZSTD_safecopyLiterals
zstd_lazy.c:ZSTD_safecopyLiterals
Line
Count
Source
707
12.2k
{
708
12.2k
    assert(iend > ilimit_w);
709
12.2k
    if (ip <= ilimit_w) {
710
1.67k
        ZSTD_wildcopy(op, ip, (size_t)(ilimit_w - ip), ZSTD_no_overlap);
711
1.67k
        op += ilimit_w - ip;
712
1.67k
        ip = ilimit_w;
713
1.67k
    }
714
30.5k
    while (ip < iend) *op++ = *ip++;
715
12.2k
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstd_opt.c:ZSTD_safecopyLiterals
Unexecuted instantiation: zstdmt_compress.c:ZSTD_safecopyLiterals
716
717
718
69.5M
#define REPCODE1_TO_OFFBASE REPCODE_TO_OFFBASE(1)
719
#define REPCODE2_TO_OFFBASE REPCODE_TO_OFFBASE(2)
720
0
#define REPCODE3_TO_OFFBASE REPCODE_TO_OFFBASE(3)
721
69.5M
#define REPCODE_TO_OFFBASE(r) (assert((r)>=1), assert((r)<=ZSTD_REP_NUM), (r)) /* accepts IDs 1,2,3 */
722
225M
#define OFFSET_TO_OFFBASE(o)  (assert((o)>0), o + ZSTD_REP_NUM)
723
26.9M
#define OFFBASE_IS_OFFSET(o)  ((o) > ZSTD_REP_NUM)
724
0
#define OFFBASE_IS_REPCODE(o) ( 1 <= (o) && (o) <= ZSTD_REP_NUM)
725
63.6M
#define OFFBASE_TO_OFFSET(o)  (assert(OFFBASE_IS_OFFSET(o)), (o) - ZSTD_REP_NUM)
726
0
#define OFFBASE_TO_REPCODE(o) (assert(OFFBASE_IS_REPCODE(o)), (o))  /* returns ID 1,2,3 */
727
728
/*! ZSTD_storeSeqOnly() :
729
 *  Store a sequence (litlen, litPtr, offBase and matchLength) into SeqStore_t.
730
 *  Literals themselves are not copied, but @litPtr is updated.
731
 *  @offBase : Users should employ macros REPCODE_TO_OFFBASE() and OFFSET_TO_OFFBASE().
732
 *  @matchLength : must be >= MINMATCH
733
*/
734
HINT_INLINE UNUSED_ATTR void
735
ZSTD_storeSeqOnly(SeqStore_t* seqStorePtr,
736
              size_t litLength,
737
              U32 offBase,
738
              size_t matchLength)
739
32.3M
{
740
32.3M
    assert((size_t)(seqStorePtr->sequences - seqStorePtr->sequencesStart) < seqStorePtr->maxNbSeq);
741
742
    /* literal Length */
743
32.3M
    assert(litLength <= ZSTD_BLOCKSIZE_MAX);
744
32.3M
    if (UNLIKELY(litLength>0xFFFF)) {
745
20
        assert(seqStorePtr->longLengthType == ZSTD_llt_none); /* there can only be a single long length */
746
20
        seqStorePtr->longLengthType = ZSTD_llt_literalLength;
747
20
        seqStorePtr->longLengthPos = (U32)(seqStorePtr->sequences - seqStorePtr->sequencesStart);
748
20
    }
749
32.3M
    seqStorePtr->sequences[0].litLength = (U16)litLength;
750
751
    /* match offset */
752
32.3M
    seqStorePtr->sequences[0].offBase = offBase;
753
754
    /* match Length */
755
32.3M
    assert(matchLength <= ZSTD_BLOCKSIZE_MAX);
756
32.3M
    assert(matchLength >= MINMATCH);
757
32.3M
    {   size_t const mlBase = matchLength - MINMATCH;
758
32.3M
        if (UNLIKELY(mlBase>0xFFFF)) {
759
19.4k
            assert(seqStorePtr->longLengthType == ZSTD_llt_none); /* there can only be a single long length */
760
19.4k
            seqStorePtr->longLengthType = ZSTD_llt_matchLength;
761
19.4k
            seqStorePtr->longLengthPos = (U32)(seqStorePtr->sequences - seqStorePtr->sequencesStart);
762
19.4k
        }
763
32.3M
        seqStorePtr->sequences[0].mlBase = (U16)mlBase;
764
32.3M
    }
765
766
32.3M
    seqStorePtr->sequences++;
767
32.3M
}
Unexecuted instantiation: zstd_compress.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_double_fast.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_fast.c:ZSTD_storeSeqOnly
zstd_lazy.c:ZSTD_storeSeqOnly
Line
Count
Source
739
32.3M
{
740
32.3M
    assert((size_t)(seqStorePtr->sequences - seqStorePtr->sequencesStart) < seqStorePtr->maxNbSeq);
741
742
    /* literal Length */
743
32.3M
    assert(litLength <= ZSTD_BLOCKSIZE_MAX);
744
32.3M
    if (UNLIKELY(litLength>0xFFFF)) {
745
20
        assert(seqStorePtr->longLengthType == ZSTD_llt_none); /* there can only be a single long length */
746
20
        seqStorePtr->longLengthType = ZSTD_llt_literalLength;
747
20
        seqStorePtr->longLengthPos = (U32)(seqStorePtr->sequences - seqStorePtr->sequencesStart);
748
20
    }
749
32.3M
    seqStorePtr->sequences[0].litLength = (U16)litLength;
750
751
    /* match offset */
752
32.3M
    seqStorePtr->sequences[0].offBase = offBase;
753
754
    /* match Length */
755
32.3M
    assert(matchLength <= ZSTD_BLOCKSIZE_MAX);
756
32.3M
    assert(matchLength >= MINMATCH);
757
32.3M
    {   size_t const mlBase = matchLength - MINMATCH;
758
32.3M
        if (UNLIKELY(mlBase>0xFFFF)) {
759
19.4k
            assert(seqStorePtr->longLengthType == ZSTD_llt_none); /* there can only be a single long length */
760
19.4k
            seqStorePtr->longLengthType = ZSTD_llt_matchLength;
761
19.4k
            seqStorePtr->longLengthPos = (U32)(seqStorePtr->sequences - seqStorePtr->sequencesStart);
762
19.4k
        }
763
32.3M
        seqStorePtr->sequences[0].mlBase = (U16)mlBase;
764
32.3M
    }
765
766
32.3M
    seqStorePtr->sequences++;
767
32.3M
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstd_opt.c:ZSTD_storeSeqOnly
Unexecuted instantiation: zstdmt_compress.c:ZSTD_storeSeqOnly
768
769
/*! ZSTD_storeSeq() :
770
 *  Store a sequence (litlen, litPtr, offBase and matchLength) into SeqStore_t.
771
 *  @offBase : Users should employ macros REPCODE_TO_OFFBASE() and OFFSET_TO_OFFBASE().
772
 *  @matchLength : must be >= MINMATCH
773
 *  Allowed to over-read literals up to litLimit.
774
*/
775
HINT_INLINE UNUSED_ATTR void
776
ZSTD_storeSeq(SeqStore_t* seqStorePtr,
777
              size_t litLength, const BYTE* literals, const BYTE* litLimit,
778
              U32 offBase,
779
              size_t matchLength)
780
32.3M
{
781
32.3M
    BYTE const* const litLimit_w = litLimit - WILDCOPY_OVERLENGTH;
782
32.3M
    BYTE const* const litEnd = literals + litLength;
783
#if defined(DEBUGLEVEL) && (DEBUGLEVEL >= 6)
784
    static const BYTE* g_start = NULL;
785
    if (g_start==NULL) g_start = (const BYTE*)literals;  /* note : index only works for compression within a single segment */
786
    {   U32 const pos = (U32)((const BYTE*)literals - g_start);
787
        DEBUGLOG(6, "Cpos%7u :%3u literals, match%4u bytes at offBase%7u",
788
               pos, (U32)litLength, (U32)matchLength, (U32)offBase);
789
    }
790
#endif
791
32.3M
    assert((size_t)(seqStorePtr->sequences - seqStorePtr->sequencesStart) < seqStorePtr->maxNbSeq);
792
    /* copy Literals */
793
32.3M
    assert(seqStorePtr->maxNbLit <= 128 KB);
794
32.3M
    assert(seqStorePtr->lit + litLength <= seqStorePtr->litStart + seqStorePtr->maxNbLit);
795
32.3M
    assert(literals + litLength <= litLimit);
796
32.3M
    if (litEnd <= litLimit_w) {
797
        /* Common case we can use wildcopy.
798
         * First copy 16 bytes, because literals are likely short.
799
         */
800
32.3M
        ZSTD_STATIC_ASSERT(WILDCOPY_OVERLENGTH >= 16);
801
32.3M
        ZSTD_copy16(seqStorePtr->lit, literals);
802
32.3M
        if (litLength > 16) {
803
356k
            ZSTD_wildcopy(seqStorePtr->lit+16, literals+16, litLength-16, ZSTD_no_overlap);
804
356k
        }
805
32.3M
    } else {
806
12.2k
        ZSTD_safecopyLiterals(seqStorePtr->lit, literals, litEnd, litLimit_w);
807
12.2k
    }
808
32.3M
    seqStorePtr->lit += litLength;
809
810
32.3M
    ZSTD_storeSeqOnly(seqStorePtr, litLength, offBase, matchLength);
811
32.3M
}
Unexecuted instantiation: zstd_compress.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_double_fast.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_fast.c:ZSTD_storeSeq
zstd_lazy.c:ZSTD_storeSeq
Line
Count
Source
780
32.3M
{
781
32.3M
    BYTE const* const litLimit_w = litLimit - WILDCOPY_OVERLENGTH;
782
32.3M
    BYTE const* const litEnd = literals + litLength;
783
#if defined(DEBUGLEVEL) && (DEBUGLEVEL >= 6)
784
    static const BYTE* g_start = NULL;
785
    if (g_start==NULL) g_start = (const BYTE*)literals;  /* note : index only works for compression within a single segment */
786
    {   U32 const pos = (U32)((const BYTE*)literals - g_start);
787
        DEBUGLOG(6, "Cpos%7u :%3u literals, match%4u bytes at offBase%7u",
788
               pos, (U32)litLength, (U32)matchLength, (U32)offBase);
789
    }
790
#endif
791
32.3M
    assert((size_t)(seqStorePtr->sequences - seqStorePtr->sequencesStart) < seqStorePtr->maxNbSeq);
792
    /* copy Literals */
793
32.3M
    assert(seqStorePtr->maxNbLit <= 128 KB);
794
32.3M
    assert(seqStorePtr->lit + litLength <= seqStorePtr->litStart + seqStorePtr->maxNbLit);
795
32.3M
    assert(literals + litLength <= litLimit);
796
32.3M
    if (litEnd <= litLimit_w) {
797
        /* Common case we can use wildcopy.
798
         * First copy 16 bytes, because literals are likely short.
799
         */
800
32.3M
        ZSTD_STATIC_ASSERT(WILDCOPY_OVERLENGTH >= 16);
801
32.3M
        ZSTD_copy16(seqStorePtr->lit, literals);
802
32.3M
        if (litLength > 16) {
803
356k
            ZSTD_wildcopy(seqStorePtr->lit+16, literals+16, litLength-16, ZSTD_no_overlap);
804
356k
        }
805
32.3M
    } else {
806
12.2k
        ZSTD_safecopyLiterals(seqStorePtr->lit, literals, litEnd, litLimit_w);
807
12.2k
    }
808
32.3M
    seqStorePtr->lit += litLength;
809
810
32.3M
    ZSTD_storeSeqOnly(seqStorePtr, litLength, offBase, matchLength);
811
32.3M
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_storeSeq
Unexecuted instantiation: zstd_opt.c:ZSTD_storeSeq
Unexecuted instantiation: zstdmt_compress.c:ZSTD_storeSeq
812
813
/* ZSTD_updateRep() :
814
 * updates in-place @rep (array of repeat offsets)
815
 * @offBase : sum-type, using numeric representation of ZSTD_storeSeq()
816
 */
817
MEM_STATIC void
818
ZSTD_updateRep(U32 rep[ZSTD_REP_NUM], U32 const offBase, U32 const ll0)
819
0
{
820
0
    if (OFFBASE_IS_OFFSET(offBase)) {  /* full offset */
821
0
        rep[2] = rep[1];
822
0
        rep[1] = rep[0];
823
0
        rep[0] = OFFBASE_TO_OFFSET(offBase);
824
0
    } else {   /* repcode */
825
0
        U32 const repCode = OFFBASE_TO_REPCODE(offBase) - 1 + ll0;
826
0
        if (repCode > 0) {  /* note : if repCode==0, no change */
827
0
            U32 const currentOffset = (repCode==ZSTD_REP_NUM) ? (rep[0] - 1) : rep[repCode];
828
0
            rep[2] = (repCode >= 2) ? rep[1] : rep[2];
829
0
            rep[1] = rep[0];
830
0
            rep[0] = currentOffset;
831
0
        } else {   /* repCode == 0 */
832
            /* nothing to do */
833
0
        }
834
0
    }
835
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_updateRep
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_updateRep
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_updateRep
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_updateRep
Unexecuted instantiation: zstd_double_fast.c:ZSTD_updateRep
Unexecuted instantiation: zstd_fast.c:ZSTD_updateRep
Unexecuted instantiation: zstd_lazy.c:ZSTD_updateRep
Unexecuted instantiation: zstd_ldm.c:ZSTD_updateRep
Unexecuted instantiation: zstd_opt.c:ZSTD_updateRep
Unexecuted instantiation: zstdmt_compress.c:ZSTD_updateRep
836
837
typedef struct repcodes_s {
838
    U32 rep[3];
839
} Repcodes_t;
840
841
MEM_STATIC Repcodes_t
842
ZSTD_newRep(U32 const rep[ZSTD_REP_NUM], U32 const offBase, U32 const ll0)
843
0
{
844
0
    Repcodes_t newReps;
845
0
    ZSTD_memcpy(&newReps, rep, sizeof(newReps));
846
0
    ZSTD_updateRep(newReps.rep, offBase, ll0);
847
0
    return newReps;
848
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_newRep
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_newRep
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_newRep
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_newRep
Unexecuted instantiation: zstd_double_fast.c:ZSTD_newRep
Unexecuted instantiation: zstd_fast.c:ZSTD_newRep
Unexecuted instantiation: zstd_lazy.c:ZSTD_newRep
Unexecuted instantiation: zstd_ldm.c:ZSTD_newRep
Unexecuted instantiation: zstd_opt.c:ZSTD_newRep
Unexecuted instantiation: zstdmt_compress.c:ZSTD_newRep
849
850
851
/*-*************************************
852
*  Match length counter
853
***************************************/
854
MEM_STATIC size_t ZSTD_count(const BYTE* pIn, const BYTE* pMatch, const BYTE* const pInLimit)
855
255M
{
856
255M
    const BYTE* const pStart = pIn;
857
255M
    const BYTE* const pInLoopLimit = pInLimit - (sizeof(size_t)-1);
858
859
255M
    if (pIn < pInLoopLimit) {
860
255M
        { size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
861
255M
          if (diff) return ZSTD_NbCommonBytes(diff); }
862
131M
        pIn+=sizeof(size_t); pMatch+=sizeof(size_t);
863
1.98G
        while (pIn < pInLoopLimit) {
864
1.98G
            size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
865
1.98G
            if (!diff) { pIn+=sizeof(size_t); pMatch+=sizeof(size_t); continue; }
866
131M
            pIn += ZSTD_NbCommonBytes(diff);
867
131M
            return (size_t)(pIn - pStart);
868
1.98G
    }   }
869
100k
    if (MEM_64bits() && (pIn<(pInLimit-3)) && (MEM_read32(pMatch) == MEM_read32(pIn))) { pIn+=4; pMatch+=4; }
870
100k
    if ((pIn<(pInLimit-1)) && (MEM_read16(pMatch) == MEM_read16(pIn))) { pIn+=2; pMatch+=2; }
871
100k
    if ((pIn<pInLimit) && (*pMatch == *pIn)) pIn++;
872
100k
    return (size_t)(pIn - pStart);
873
255M
}
zstd_compress.c:ZSTD_count
Line
Count
Source
855
2.15k
{
856
2.15k
    const BYTE* const pStart = pIn;
857
2.15k
    const BYTE* const pInLoopLimit = pInLimit - (sizeof(size_t)-1);
858
859
2.15k
    if (pIn < pInLoopLimit) {
860
1.43k
        { size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
861
1.43k
          if (diff) return ZSTD_NbCommonBytes(diff); }
862
522
        pIn+=sizeof(size_t); pMatch+=sizeof(size_t);
863
785
        while (pIn < pInLoopLimit) {
864
399
            size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
865
399
            if (!diff) { pIn+=sizeof(size_t); pMatch+=sizeof(size_t); continue; }
866
136
            pIn += ZSTD_NbCommonBytes(diff);
867
136
            return (size_t)(pIn - pStart);
868
399
    }   }
869
1.10k
    if (MEM_64bits() && (pIn<(pInLimit-3)) && (MEM_read32(pMatch) == MEM_read32(pIn))) { pIn+=4; pMatch+=4; }
870
1.10k
    if ((pIn<(pInLimit-1)) && (MEM_read16(pMatch) == MEM_read16(pIn))) { pIn+=2; pMatch+=2; }
871
1.10k
    if ((pIn<pInLimit) && (*pMatch == *pIn)) pIn++;
872
1.10k
    return (size_t)(pIn - pStart);
873
2.15k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_count
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_count
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_count
Unexecuted instantiation: zstd_double_fast.c:ZSTD_count
Unexecuted instantiation: zstd_fast.c:ZSTD_count
zstd_lazy.c:ZSTD_count
Line
Count
Source
855
255M
{
856
255M
    const BYTE* const pStart = pIn;
857
255M
    const BYTE* const pInLoopLimit = pInLimit - (sizeof(size_t)-1);
858
859
255M
    if (pIn < pInLoopLimit) {
860
255M
        { size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
861
255M
          if (diff) return ZSTD_NbCommonBytes(diff); }
862
131M
        pIn+=sizeof(size_t); pMatch+=sizeof(size_t);
863
1.98G
        while (pIn < pInLoopLimit) {
864
1.98G
            size_t const diff = MEM_readST(pMatch) ^ MEM_readST(pIn);
865
1.98G
            if (!diff) { pIn+=sizeof(size_t); pMatch+=sizeof(size_t); continue; }
866
131M
            pIn += ZSTD_NbCommonBytes(diff);
867
131M
            return (size_t)(pIn - pStart);
868
1.98G
    }   }
869
99.4k
    if (MEM_64bits() && (pIn<(pInLimit-3)) && (MEM_read32(pMatch) == MEM_read32(pIn))) { pIn+=4; pMatch+=4; }
870
99.4k
    if ((pIn<(pInLimit-1)) && (MEM_read16(pMatch) == MEM_read16(pIn))) { pIn+=2; pMatch+=2; }
871
99.4k
    if ((pIn<pInLimit) && (*pMatch == *pIn)) pIn++;
872
99.4k
    return (size_t)(pIn - pStart);
873
255M
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_count
Unexecuted instantiation: zstd_opt.c:ZSTD_count
Unexecuted instantiation: zstdmt_compress.c:ZSTD_count
874
875
/** ZSTD_count_2segments() :
876
 *  can count match length with `ip` & `match` in 2 different segments.
877
 *  convention : on reaching mEnd, match count continue starting from iStart
878
 */
879
MEM_STATIC size_t
880
ZSTD_count_2segments(const BYTE* ip, const BYTE* match,
881
                     const BYTE* iEnd, const BYTE* mEnd, const BYTE* iStart)
882
0
{
883
0
    const BYTE* const vEnd = MIN( ip + (mEnd - match), iEnd);
884
0
    size_t const matchLength = ZSTD_count(ip, match, vEnd);
885
0
    if (match + matchLength != mEnd) return matchLength;
886
0
    DEBUGLOG(7, "ZSTD_count_2segments: found a 2-parts match (current length==%zu)", matchLength);
887
0
    DEBUGLOG(7, "distance from match beginning to end dictionary = %i", (int)(mEnd - match));
888
0
    DEBUGLOG(7, "distance from current pos to end buffer = %i", (int)(iEnd - ip));
889
0
    DEBUGLOG(7, "next byte : ip==%02X, istart==%02X", ip[matchLength], *iStart);
890
0
    DEBUGLOG(7, "final match length = %zu", matchLength + ZSTD_count(ip+matchLength, iStart, iEnd));
891
0
    return matchLength + ZSTD_count(ip+matchLength, iStart, iEnd);
892
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_double_fast.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_fast.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_lazy.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_ldm.c:ZSTD_count_2segments
Unexecuted instantiation: zstd_opt.c:ZSTD_count_2segments
Unexecuted instantiation: zstdmt_compress.c:ZSTD_count_2segments
893
894
895
/*-*************************************
896
 *  Hashes
897
 ***************************************/
898
static const U32 prime3bytes = 506832829U;
899
0
static U32    ZSTD_hash3(U32 u, U32 h, U32 s) { assert(h <= 32); return (((u << (32-24)) * prime3bytes) ^ s)  >> (32-h) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash3
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash3
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash3
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash3
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash3
Unexecuted instantiation: zstd_fast.c:ZSTD_hash3
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash3
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash3
Unexecuted instantiation: zstd_opt.c:ZSTD_hash3
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash3
900
0
MEM_STATIC size_t ZSTD_hash3Ptr(const void* ptr, U32 h) { return ZSTD_hash3(MEM_readLE32(ptr), h, 0); } /* only in zstd_opt.h */
Unexecuted instantiation: zstd_compress.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash3Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash3Ptr
901
0
MEM_STATIC size_t ZSTD_hash3PtrS(const void* ptr, U32 h, U32 s) { return ZSTD_hash3(MEM_readLE32(ptr), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash3PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash3PtrS
902
903
static const U32 prime4bytes = 2654435761U;
904
0
static U32    ZSTD_hash4(U32 u, U32 h, U32 s) { assert(h <= 32); return ((u * prime4bytes) ^ s) >> (32-h) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash4
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash4
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash4
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash4
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash4
Unexecuted instantiation: zstd_fast.c:ZSTD_hash4
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash4
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash4
Unexecuted instantiation: zstd_opt.c:ZSTD_hash4
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash4
905
0
static size_t ZSTD_hash4Ptr(const void* ptr, U32 h) { return ZSTD_hash4(MEM_readLE32(ptr), h, 0); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash4Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash4Ptr
906
0
static size_t ZSTD_hash4PtrS(const void* ptr, U32 h, U32 s) { return ZSTD_hash4(MEM_readLE32(ptr), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash4PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash4PtrS
907
908
static const U64 prime5bytes = 889523592379ULL;
909
604M
static size_t ZSTD_hash5(U64 u, U32 h, U64 s) { assert(h <= 64); return (size_t)((((u  << (64-40)) * prime5bytes) ^ s) >> (64-h)) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash5
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash5
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash5
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash5
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash5
Unexecuted instantiation: zstd_fast.c:ZSTD_hash5
zstd_lazy.c:ZSTD_hash5
Line
Count
Source
909
604M
static size_t ZSTD_hash5(U64 u, U32 h, U64 s) { assert(h <= 64); return (size_t)((((u  << (64-40)) * prime5bytes) ^ s) >> (64-h)) ; }
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash5
Unexecuted instantiation: zstd_opt.c:ZSTD_hash5
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash5
910
0
static size_t ZSTD_hash5Ptr(const void* p, U32 h) { return ZSTD_hash5(MEM_readLE64(p), h, 0); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash5Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash5Ptr
911
604M
static size_t ZSTD_hash5PtrS(const void* p, U32 h, U64 s) { return ZSTD_hash5(MEM_readLE64(p), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash5PtrS
zstd_lazy.c:ZSTD_hash5PtrS
Line
Count
Source
911
604M
static size_t ZSTD_hash5PtrS(const void* p, U32 h, U64 s) { return ZSTD_hash5(MEM_readLE64(p), h, s); }
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash5PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash5PtrS
912
913
static const U64 prime6bytes = 227718039650203ULL;
914
0
static size_t ZSTD_hash6(U64 u, U32 h, U64 s) { assert(h <= 64); return (size_t)((((u  << (64-48)) * prime6bytes) ^ s) >> (64-h)) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash6
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash6
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash6
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash6
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash6
Unexecuted instantiation: zstd_fast.c:ZSTD_hash6
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash6
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash6
Unexecuted instantiation: zstd_opt.c:ZSTD_hash6
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash6
915
0
static size_t ZSTD_hash6Ptr(const void* p, U32 h) { return ZSTD_hash6(MEM_readLE64(p), h, 0); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash6Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash6Ptr
916
0
static size_t ZSTD_hash6PtrS(const void* p, U32 h, U64 s) { return ZSTD_hash6(MEM_readLE64(p), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash6PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash6PtrS
917
918
static const U64 prime7bytes = 58295818150454627ULL;
919
0
static size_t ZSTD_hash7(U64 u, U32 h, U64 s) { assert(h <= 64); return (size_t)((((u  << (64-56)) * prime7bytes) ^ s) >> (64-h)) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash7
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash7
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash7
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash7
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash7
Unexecuted instantiation: zstd_fast.c:ZSTD_hash7
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash7
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash7
Unexecuted instantiation: zstd_opt.c:ZSTD_hash7
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash7
920
0
static size_t ZSTD_hash7Ptr(const void* p, U32 h) { return ZSTD_hash7(MEM_readLE64(p), h, 0); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash7Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash7Ptr
921
0
static size_t ZSTD_hash7PtrS(const void* p, U32 h, U64 s) { return ZSTD_hash7(MEM_readLE64(p), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash7PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash7PtrS
922
923
static const U64 prime8bytes = 0xCF1BBCDCB7A56463ULL;
924
0
static size_t ZSTD_hash8(U64 u, U32 h, U64 s) { assert(h <= 64); return (size_t)((((u) * prime8bytes)  ^ s) >> (64-h)) ; }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash8
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash8
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash8
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash8
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash8
Unexecuted instantiation: zstd_fast.c:ZSTD_hash8
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash8
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash8
Unexecuted instantiation: zstd_opt.c:ZSTD_hash8
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash8
925
0
static size_t ZSTD_hash8Ptr(const void* p, U32 h) { return ZSTD_hash8(MEM_readLE64(p), h, 0); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_fast.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstd_opt.c:ZSTD_hash8Ptr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash8Ptr
926
0
static size_t ZSTD_hash8PtrS(const void* p, U32 h, U64 s) { return ZSTD_hash8(MEM_readLE64(p), h, s); }
Unexecuted instantiation: zstd_compress.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_fast.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_lazy.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_ldm.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstd_opt.c:ZSTD_hash8PtrS
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hash8PtrS
927
928
929
MEM_STATIC FORCE_INLINE_ATTR
930
size_t ZSTD_hashPtr(const void* p, U32 hBits, U32 mls)
931
0
{
932
    /* Although some of these hashes do support hBits up to 64, some do not.
933
     * To be on the safe side, always avoid hBits > 32. */
934
0
    assert(hBits <= 32);
935
936
0
    switch(mls)
937
0
    {
938
0
    default:
939
0
    case 4: return ZSTD_hash4Ptr(p, hBits);
940
0
    case 5: return ZSTD_hash5Ptr(p, hBits);
941
0
    case 6: return ZSTD_hash6Ptr(p, hBits);
942
0
    case 7: return ZSTD_hash7Ptr(p, hBits);
943
0
    case 8: return ZSTD_hash8Ptr(p, hBits);
944
0
    }
945
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_fast.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_lazy.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_ldm.c:ZSTD_hashPtr
Unexecuted instantiation: zstd_opt.c:ZSTD_hashPtr
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hashPtr
946
947
MEM_STATIC FORCE_INLINE_ATTR
948
604M
size_t ZSTD_hashPtrSalted(const void* p, U32 hBits, U32 mls, const U64 hashSalt) {
949
    /* Although some of these hashes do support hBits up to 64, some do not.
950
     * To be on the safe side, always avoid hBits > 32. */
951
604M
    assert(hBits <= 32);
952
953
604M
    switch(mls)
954
604M
    {
955
0
        default:
956
0
        case 4: return ZSTD_hash4PtrS(p, hBits, (U32)hashSalt);
957
604M
        case 5: return ZSTD_hash5PtrS(p, hBits, hashSalt);
958
0
        case 6: return ZSTD_hash6PtrS(p, hBits, hashSalt);
959
0
        case 7: return ZSTD_hash7PtrS(p, hBits, hashSalt);
960
0
        case 8: return ZSTD_hash8PtrS(p, hBits, hashSalt);
961
604M
    }
962
604M
}
Unexecuted instantiation: zstd_compress.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_fast.c:ZSTD_hashPtrSalted
zstd_lazy.c:ZSTD_hashPtrSalted
Line
Count
Source
948
604M
size_t ZSTD_hashPtrSalted(const void* p, U32 hBits, U32 mls, const U64 hashSalt) {
949
    /* Although some of these hashes do support hBits up to 64, some do not.
950
     * To be on the safe side, always avoid hBits > 32. */
951
604M
    assert(hBits <= 32);
952
953
604M
    switch(mls)
954
604M
    {
955
0
        default:
956
0
        case 4: return ZSTD_hash4PtrS(p, hBits, (U32)hashSalt);
957
604M
        case 5: return ZSTD_hash5PtrS(p, hBits, hashSalt);
958
0
        case 6: return ZSTD_hash6PtrS(p, hBits, hashSalt);
959
0
        case 7: return ZSTD_hash7PtrS(p, hBits, hashSalt);
960
0
        case 8: return ZSTD_hash8PtrS(p, hBits, hashSalt);
961
604M
    }
962
604M
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstd_opt.c:ZSTD_hashPtrSalted
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hashPtrSalted
963
964
965
/** ZSTD_ipow() :
966
 * Return base^exponent.
967
 */
968
static U64 ZSTD_ipow(U64 base, U64 exponent)
969
0
{
970
0
    U64 power = 1;
971
0
    while (exponent) {
972
0
      if (exponent & 1) power *= base;
973
0
      exponent >>= 1;
974
0
      base *= base;
975
0
    }
976
0
    return power;
977
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_ipow
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_ipow
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_ipow
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_ipow
Unexecuted instantiation: zstd_double_fast.c:ZSTD_ipow
Unexecuted instantiation: zstd_fast.c:ZSTD_ipow
Unexecuted instantiation: zstd_lazy.c:ZSTD_ipow
Unexecuted instantiation: zstd_ldm.c:ZSTD_ipow
Unexecuted instantiation: zstd_opt.c:ZSTD_ipow
Unexecuted instantiation: zstdmt_compress.c:ZSTD_ipow
978
979
0
#define ZSTD_ROLL_HASH_CHAR_OFFSET 10
980
981
/** ZSTD_rollingHash_append() :
982
 * Add the buffer to the hash value.
983
 */
984
static U64 ZSTD_rollingHash_append(U64 hash, void const* buf, size_t size)
985
0
{
986
0
    BYTE const* istart = (BYTE const*)buf;
987
0
    size_t pos;
988
0
    for (pos = 0; pos < size; ++pos) {
989
0
        hash *= prime8bytes;
990
0
        hash += istart[pos] + ZSTD_ROLL_HASH_CHAR_OFFSET;
991
0
    }
992
0
    return hash;
993
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_double_fast.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_fast.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_lazy.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_ldm.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstd_opt.c:ZSTD_rollingHash_append
Unexecuted instantiation: zstdmt_compress.c:ZSTD_rollingHash_append
994
995
/** ZSTD_rollingHash_compute() :
996
 * Compute the rolling hash value of the buffer.
997
 */
998
MEM_STATIC U64 ZSTD_rollingHash_compute(void const* buf, size_t size)
999
0
{
1000
0
    return ZSTD_rollingHash_append(0, buf, size);
1001
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_double_fast.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_fast.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_lazy.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_ldm.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstd_opt.c:ZSTD_rollingHash_compute
Unexecuted instantiation: zstdmt_compress.c:ZSTD_rollingHash_compute
1002
1003
/** ZSTD_rollingHash_primePower() :
1004
 * Compute the primePower to be passed to ZSTD_rollingHash_rotate() for a hash
1005
 * over a window of length bytes.
1006
 */
1007
MEM_STATIC U64 ZSTD_rollingHash_primePower(U32 length)
1008
0
{
1009
0
    return ZSTD_ipow(prime8bytes, length - 1);
1010
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_double_fast.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_fast.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_lazy.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_ldm.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstd_opt.c:ZSTD_rollingHash_primePower
Unexecuted instantiation: zstdmt_compress.c:ZSTD_rollingHash_primePower
1011
1012
/** ZSTD_rollingHash_rotate() :
1013
 * Rotate the rolling hash by one byte.
1014
 */
1015
MEM_STATIC U64 ZSTD_rollingHash_rotate(U64 hash, BYTE toRemove, BYTE toAdd, U64 primePower)
1016
0
{
1017
0
    hash -= (toRemove + ZSTD_ROLL_HASH_CHAR_OFFSET) * primePower;
1018
0
    hash *= prime8bytes;
1019
0
    hash += toAdd + ZSTD_ROLL_HASH_CHAR_OFFSET;
1020
0
    return hash;
1021
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_double_fast.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_fast.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_lazy.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_ldm.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstd_opt.c:ZSTD_rollingHash_rotate
Unexecuted instantiation: zstdmt_compress.c:ZSTD_rollingHash_rotate
1022
1023
/*-*************************************
1024
*  Round buffer management
1025
***************************************/
1026
/* Max @current value allowed:
1027
 * In 32-bit mode: we want to avoid crossing the 2 GB limit,
1028
 *                 reducing risks of side effects in case of signed operations on indexes.
1029
 * In 64-bit mode: we want to ensure that adding the maximum job size (512 MB)
1030
 *                 doesn't overflow U32 index capacity (4 GB) */
1031
82.3k
#define ZSTD_CURRENT_MAX (MEM_64bits() ? 3500U MB : 2000U MB)
1032
/* Maximum chunk size before overflow correction needs to be called again */
1033
#define ZSTD_CHUNKSIZE_MAX                                                     \
1034
14.9k
    ( ((U32)-1)                  /* Maximum ending current index */            \
1035
14.9k
    - ZSTD_CURRENT_MAX)          /* Maximum beginning lowLimit */
1036
1037
/**
1038
 * ZSTD_window_clear():
1039
 * Clears the window containing the history by simply setting it to empty.
1040
 */
1041
MEM_STATIC void ZSTD_window_clear(ZSTD_window_t* window)
1042
14.9k
{
1043
14.9k
    size_t const endT = (size_t)(window->nextSrc - window->base);
1044
14.9k
    U32 const end = (U32)endT;
1045
1046
14.9k
    window->lowLimit = end;
1047
14.9k
    window->dictLimit = end;
1048
14.9k
}
zstd_compress.c:ZSTD_window_clear
Line
Count
Source
1042
14.9k
{
1043
14.9k
    size_t const endT = (size_t)(window->nextSrc - window->base);
1044
14.9k
    U32 const end = (U32)endT;
1045
1046
14.9k
    window->lowLimit = end;
1047
14.9k
    window->dictLimit = end;
1048
14.9k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_clear
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_clear
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_clear
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_clear
Unexecuted instantiation: zstd_fast.c:ZSTD_window_clear
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_clear
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_clear
Unexecuted instantiation: zstd_opt.c:ZSTD_window_clear
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_clear
1049
1050
MEM_STATIC U32 ZSTD_window_isEmpty(ZSTD_window_t const window)
1051
0
{
1052
0
    return window.dictLimit == ZSTD_WINDOW_START_INDEX &&
1053
0
           window.lowLimit == ZSTD_WINDOW_START_INDEX &&
1054
0
           (window.nextSrc - window.base) == ZSTD_WINDOW_START_INDEX;
1055
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_fast.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstd_opt.c:ZSTD_window_isEmpty
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_isEmpty
1056
1057
/**
1058
 * ZSTD_window_hasExtDict():
1059
 * Returns non-zero if the window has a non-empty extDict.
1060
 */
1061
MEM_STATIC U32 ZSTD_window_hasExtDict(ZSTD_window_t const window)
1062
52.7k
{
1063
52.7k
    return window.lowLimit < window.dictLimit;
1064
52.7k
}
zstd_compress.c:ZSTD_window_hasExtDict
Line
Count
Source
1062
52.7k
{
1063
52.7k
    return window.lowLimit < window.dictLimit;
1064
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_fast.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstd_opt.c:ZSTD_window_hasExtDict
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_hasExtDict
1065
1066
/**
1067
 * ZSTD_matchState_dictMode():
1068
 * Inspects the provided matchState and figures out what dictMode should be
1069
 * passed to the compressor.
1070
 */
1071
MEM_STATIC ZSTD_dictMode_e ZSTD_matchState_dictMode(const ZSTD_MatchState_t *ms)
1072
52.7k
{
1073
52.7k
    return ZSTD_window_hasExtDict(ms->window) ?
1074
0
        ZSTD_extDict :
1075
52.7k
        ms->dictMatchState != NULL ?
1076
0
            (ms->dictMatchState->dedicatedDictSearch ? ZSTD_dedicatedDictSearch : ZSTD_dictMatchState) :
1077
52.7k
            ZSTD_noDict;
1078
52.7k
}
zstd_compress.c:ZSTD_matchState_dictMode
Line
Count
Source
1072
52.7k
{
1073
52.7k
    return ZSTD_window_hasExtDict(ms->window) ?
1074
0
        ZSTD_extDict :
1075
52.7k
        ms->dictMatchState != NULL ?
1076
0
            (ms->dictMatchState->dedicatedDictSearch ? ZSTD_dedicatedDictSearch : ZSTD_dictMatchState) :
1077
52.7k
            ZSTD_noDict;
1078
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_double_fast.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_fast.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_lazy.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_ldm.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstd_opt.c:ZSTD_matchState_dictMode
Unexecuted instantiation: zstdmt_compress.c:ZSTD_matchState_dictMode
1079
1080
/* Defining this macro to non-zero tells zstd to run the overflow correction
1081
 * code much more frequently. This is very inefficient, and should only be
1082
 * used for tests and fuzzers.
1083
 */
1084
#ifndef ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY
1085
#  ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
1086
53.0k
#    define ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY 1
1087
#  else
1088
#    define ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY 0
1089
#  endif
1090
#endif
1091
1092
/**
1093
 * ZSTD_window_canOverflowCorrect():
1094
 * Returns non-zero if the indices are large enough for overflow correction
1095
 * to work correctly without impacting compression ratio.
1096
 */
1097
MEM_STATIC U32 ZSTD_window_canOverflowCorrect(ZSTD_window_t const window,
1098
                                              U32 cycleLog,
1099
                                              U32 maxDist,
1100
                                              U32 loadedDictEnd,
1101
                                              void const* src)
1102
52.7k
{
1103
52.7k
    U32 const cycleSize = 1u << cycleLog;
1104
52.7k
    U32 const curr = (U32)((BYTE const*)src - window.base);
1105
52.7k
    U32 const minIndexToOverflowCorrect = cycleSize
1106
52.7k
                                        + MAX(maxDist, cycleSize)
1107
52.7k
                                        + ZSTD_WINDOW_START_INDEX;
1108
1109
    /* Adjust the min index to backoff the overflow correction frequency,
1110
     * so we don't waste too much CPU in overflow correction. If this
1111
     * computation overflows we don't really care, we just need to make
1112
     * sure it is at least minIndexToOverflowCorrect.
1113
     */
1114
52.7k
    U32 const adjustment = window.nbOverflowCorrections + 1;
1115
52.7k
    U32 const adjustedIndex = MAX(minIndexToOverflowCorrect * adjustment,
1116
52.7k
                                  minIndexToOverflowCorrect);
1117
52.7k
    U32 const indexLargeEnough = curr > adjustedIndex;
1118
1119
    /* Only overflow correct early if the dictionary is invalidated already,
1120
     * so we don't hurt compression ratio.
1121
     */
1122
52.7k
    U32 const dictionaryInvalidated = curr > maxDist + loadedDictEnd;
1123
1124
52.7k
    return indexLargeEnough && dictionaryInvalidated;
1125
52.7k
}
zstd_compress.c:ZSTD_window_canOverflowCorrect
Line
Count
Source
1102
52.7k
{
1103
52.7k
    U32 const cycleSize = 1u << cycleLog;
1104
52.7k
    U32 const curr = (U32)((BYTE const*)src - window.base);
1105
52.7k
    U32 const minIndexToOverflowCorrect = cycleSize
1106
52.7k
                                        + MAX(maxDist, cycleSize)
1107
52.7k
                                        + ZSTD_WINDOW_START_INDEX;
1108
1109
    /* Adjust the min index to backoff the overflow correction frequency,
1110
     * so we don't waste too much CPU in overflow correction. If this
1111
     * computation overflows we don't really care, we just need to make
1112
     * sure it is at least minIndexToOverflowCorrect.
1113
     */
1114
52.7k
    U32 const adjustment = window.nbOverflowCorrections + 1;
1115
52.7k
    U32 const adjustedIndex = MAX(minIndexToOverflowCorrect * adjustment,
1116
52.7k
                                  minIndexToOverflowCorrect);
1117
52.7k
    U32 const indexLargeEnough = curr > adjustedIndex;
1118
1119
    /* Only overflow correct early if the dictionary is invalidated already,
1120
     * so we don't hurt compression ratio.
1121
     */
1122
52.7k
    U32 const dictionaryInvalidated = curr > maxDist + loadedDictEnd;
1123
1124
52.7k
    return indexLargeEnough && dictionaryInvalidated;
1125
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_fast.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstd_opt.c:ZSTD_window_canOverflowCorrect
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_canOverflowCorrect
1126
1127
/**
1128
 * ZSTD_window_needOverflowCorrection():
1129
 * Returns non-zero if the indices are getting too large and need overflow
1130
 * protection.
1131
 */
1132
MEM_STATIC U32 ZSTD_window_needOverflowCorrection(ZSTD_window_t const window,
1133
                                                  U32 cycleLog,
1134
                                                  U32 maxDist,
1135
                                                  U32 loadedDictEnd,
1136
                                                  void const* src,
1137
                                                  void const* srcEnd)
1138
52.7k
{
1139
52.7k
    U32 const curr = (U32)((BYTE const*)srcEnd - window.base);
1140
52.7k
    if (ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY) {
1141
52.7k
        if (ZSTD_window_canOverflowCorrect(window, cycleLog, maxDist, loadedDictEnd, src)) {
1142
319
            return 1;
1143
319
        }
1144
52.7k
    }
1145
52.4k
    return curr > ZSTD_CURRENT_MAX;
1146
52.7k
}
zstd_compress.c:ZSTD_window_needOverflowCorrection
Line
Count
Source
1138
52.7k
{
1139
52.7k
    U32 const curr = (U32)((BYTE const*)srcEnd - window.base);
1140
52.7k
    if (ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY) {
1141
52.7k
        if (ZSTD_window_canOverflowCorrect(window, cycleLog, maxDist, loadedDictEnd, src)) {
1142
319
            return 1;
1143
319
        }
1144
52.7k
    }
1145
52.4k
    return curr > ZSTD_CURRENT_MAX;
1146
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_fast.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstd_opt.c:ZSTD_window_needOverflowCorrection
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_needOverflowCorrection
1147
1148
/**
1149
 * ZSTD_window_correctOverflow():
1150
 * Reduces the indices to protect from index overflow.
1151
 * Returns the correction made to the indices, which must be applied to every
1152
 * stored index.
1153
 *
1154
 * The least significant cycleLog bits of the indices must remain the same,
1155
 * which may be 0. Every index up to maxDist in the past must be valid.
1156
 */
1157
MEM_STATIC
1158
ZSTD_ALLOW_POINTER_OVERFLOW_ATTR
1159
U32 ZSTD_window_correctOverflow(ZSTD_window_t* window, U32 cycleLog,
1160
                                           U32 maxDist, void const* src)
1161
319
{
1162
    /* preemptive overflow correction:
1163
     * 1. correction is large enough:
1164
     *    lowLimit > (3<<29) ==> current > 3<<29 + 1<<windowLog
1165
     *    1<<windowLog <= newCurrent < 1<<chainLog + 1<<windowLog
1166
     *
1167
     *    current - newCurrent
1168
     *    > (3<<29 + 1<<windowLog) - (1<<windowLog + 1<<chainLog)
1169
     *    > (3<<29) - (1<<chainLog)
1170
     *    > (3<<29) - (1<<30)             (NOTE: chainLog <= 30)
1171
     *    > 1<<29
1172
     *
1173
     * 2. (ip+ZSTD_CHUNKSIZE_MAX - cctx->base) doesn't overflow:
1174
     *    After correction, current is less than (1<<chainLog + 1<<windowLog).
1175
     *    In 64-bit mode we are safe, because we have 64-bit ptrdiff_t.
1176
     *    In 32-bit mode we are safe, because (chainLog <= 29), so
1177
     *    ip+ZSTD_CHUNKSIZE_MAX - cctx->base < 1<<32.
1178
     * 3. (cctx->lowLimit + 1<<windowLog) < 1<<32:
1179
     *    windowLog <= 31 ==> 3<<29 + 1<<windowLog < 7<<29 < 1<<32.
1180
     */
1181
319
    U32 const cycleSize = 1u << cycleLog;
1182
319
    U32 const cycleMask = cycleSize - 1;
1183
319
    U32 const curr = (U32)((BYTE const*)src - window->base);
1184
319
    U32 const currentCycle = curr & cycleMask;
1185
    /* Ensure newCurrent - maxDist >= ZSTD_WINDOW_START_INDEX. */
1186
319
    U32 const currentCycleCorrection = currentCycle < ZSTD_WINDOW_START_INDEX
1187
319
                                     ? MAX(cycleSize, ZSTD_WINDOW_START_INDEX)
1188
319
                                     : 0;
1189
319
    U32 const newCurrent = currentCycle
1190
319
                         + currentCycleCorrection
1191
319
                         + MAX(maxDist, cycleSize);
1192
319
    U32 const correction = curr - newCurrent;
1193
    /* maxDist must be a power of two so that:
1194
     *   (newCurrent & cycleMask) == (curr & cycleMask)
1195
     * This is required to not corrupt the chains / binary tree.
1196
     */
1197
319
    assert((maxDist & (maxDist - 1)) == 0);
1198
319
    assert((curr & cycleMask) == (newCurrent & cycleMask));
1199
319
    assert(curr > newCurrent);
1200
319
    if (!ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY) {
1201
        /* Loose bound, should be around 1<<29 (see above) */
1202
0
        assert(correction > 1<<28);
1203
0
    }
1204
1205
319
    window->base += correction;
1206
319
    window->dictBase += correction;
1207
319
    if (window->lowLimit < correction + ZSTD_WINDOW_START_INDEX) {
1208
0
        window->lowLimit = ZSTD_WINDOW_START_INDEX;
1209
319
    } else {
1210
319
        window->lowLimit -= correction;
1211
319
    }
1212
319
    if (window->dictLimit < correction + ZSTD_WINDOW_START_INDEX) {
1213
0
        window->dictLimit = ZSTD_WINDOW_START_INDEX;
1214
319
    } else {
1215
319
        window->dictLimit -= correction;
1216
319
    }
1217
1218
    /* Ensure we can still reference the full window. */
1219
319
    assert(newCurrent >= maxDist);
1220
319
    assert(newCurrent - maxDist >= ZSTD_WINDOW_START_INDEX);
1221
    /* Ensure that lowLimit and dictLimit didn't underflow. */
1222
319
    assert(window->lowLimit <= newCurrent);
1223
319
    assert(window->dictLimit <= newCurrent);
1224
1225
319
    ++window->nbOverflowCorrections;
1226
1227
319
    DEBUGLOG(4, "Correction of 0x%x bytes to lowLimit=0x%x", correction,
1228
319
             window->lowLimit);
1229
319
    return correction;
1230
319
}
zstd_compress.c:ZSTD_window_correctOverflow
Line
Count
Source
1161
319
{
1162
    /* preemptive overflow correction:
1163
     * 1. correction is large enough:
1164
     *    lowLimit > (3<<29) ==> current > 3<<29 + 1<<windowLog
1165
     *    1<<windowLog <= newCurrent < 1<<chainLog + 1<<windowLog
1166
     *
1167
     *    current - newCurrent
1168
     *    > (3<<29 + 1<<windowLog) - (1<<windowLog + 1<<chainLog)
1169
     *    > (3<<29) - (1<<chainLog)
1170
     *    > (3<<29) - (1<<30)             (NOTE: chainLog <= 30)
1171
     *    > 1<<29
1172
     *
1173
     * 2. (ip+ZSTD_CHUNKSIZE_MAX - cctx->base) doesn't overflow:
1174
     *    After correction, current is less than (1<<chainLog + 1<<windowLog).
1175
     *    In 64-bit mode we are safe, because we have 64-bit ptrdiff_t.
1176
     *    In 32-bit mode we are safe, because (chainLog <= 29), so
1177
     *    ip+ZSTD_CHUNKSIZE_MAX - cctx->base < 1<<32.
1178
     * 3. (cctx->lowLimit + 1<<windowLog) < 1<<32:
1179
     *    windowLog <= 31 ==> 3<<29 + 1<<windowLog < 7<<29 < 1<<32.
1180
     */
1181
319
    U32 const cycleSize = 1u << cycleLog;
1182
319
    U32 const cycleMask = cycleSize - 1;
1183
319
    U32 const curr = (U32)((BYTE const*)src - window->base);
1184
319
    U32 const currentCycle = curr & cycleMask;
1185
    /* Ensure newCurrent - maxDist >= ZSTD_WINDOW_START_INDEX. */
1186
319
    U32 const currentCycleCorrection = currentCycle < ZSTD_WINDOW_START_INDEX
1187
319
                                     ? MAX(cycleSize, ZSTD_WINDOW_START_INDEX)
1188
319
                                     : 0;
1189
319
    U32 const newCurrent = currentCycle
1190
319
                         + currentCycleCorrection
1191
319
                         + MAX(maxDist, cycleSize);
1192
319
    U32 const correction = curr - newCurrent;
1193
    /* maxDist must be a power of two so that:
1194
     *   (newCurrent & cycleMask) == (curr & cycleMask)
1195
     * This is required to not corrupt the chains / binary tree.
1196
     */
1197
319
    assert((maxDist & (maxDist - 1)) == 0);
1198
319
    assert((curr & cycleMask) == (newCurrent & cycleMask));
1199
319
    assert(curr > newCurrent);
1200
319
    if (!ZSTD_WINDOW_OVERFLOW_CORRECT_FREQUENTLY) {
1201
        /* Loose bound, should be around 1<<29 (see above) */
1202
0
        assert(correction > 1<<28);
1203
0
    }
1204
1205
319
    window->base += correction;
1206
319
    window->dictBase += correction;
1207
319
    if (window->lowLimit < correction + ZSTD_WINDOW_START_INDEX) {
1208
0
        window->lowLimit = ZSTD_WINDOW_START_INDEX;
1209
319
    } else {
1210
319
        window->lowLimit -= correction;
1211
319
    }
1212
319
    if (window->dictLimit < correction + ZSTD_WINDOW_START_INDEX) {
1213
0
        window->dictLimit = ZSTD_WINDOW_START_INDEX;
1214
319
    } else {
1215
319
        window->dictLimit -= correction;
1216
319
    }
1217
1218
    /* Ensure we can still reference the full window. */
1219
319
    assert(newCurrent >= maxDist);
1220
319
    assert(newCurrent - maxDist >= ZSTD_WINDOW_START_INDEX);
1221
    /* Ensure that lowLimit and dictLimit didn't underflow. */
1222
319
    assert(window->lowLimit <= newCurrent);
1223
319
    assert(window->dictLimit <= newCurrent);
1224
1225
319
    ++window->nbOverflowCorrections;
1226
1227
319
    DEBUGLOG(4, "Correction of 0x%x bytes to lowLimit=0x%x", correction,
1228
319
             window->lowLimit);
1229
319
    return correction;
1230
319
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_fast.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstd_opt.c:ZSTD_window_correctOverflow
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_correctOverflow
1231
1232
/**
1233
 * ZSTD_window_enforceMaxDist():
1234
 * Updates lowLimit so that:
1235
 *    (srcEnd - base) - lowLimit == maxDist + loadedDictEnd
1236
 *
1237
 * It ensures index is valid as long as index >= lowLimit.
1238
 * This must be called before a block compression call.
1239
 *
1240
 * loadedDictEnd is only defined if a dictionary is in use for current compression.
1241
 * As the name implies, loadedDictEnd represents the index at end of dictionary.
1242
 * The value lies within context's referential, it can be directly compared to blockEndIdx.
1243
 *
1244
 * If loadedDictEndPtr is NULL, no dictionary is in use, and we use loadedDictEnd == 0.
1245
 * If loadedDictEndPtr is not NULL, we set it to zero after updating lowLimit.
1246
 * This is because dictionaries are allowed to be referenced fully
1247
 * as long as the last byte of the dictionary is in the window.
1248
 * Once input has progressed beyond window size, dictionary cannot be referenced anymore.
1249
 *
1250
 * In normal dict mode, the dictionary lies between lowLimit and dictLimit.
1251
 * In dictMatchState mode, lowLimit and dictLimit are the same,
1252
 * and the dictionary is below them.
1253
 * forceWindow and dictMatchState are therefore incompatible.
1254
 */
1255
MEM_STATIC void
1256
ZSTD_window_enforceMaxDist(ZSTD_window_t* window,
1257
                     const void* blockEnd,
1258
                           U32   maxDist,
1259
                           U32*  loadedDictEndPtr,
1260
                     const ZSTD_MatchState_t** dictMatchStatePtr)
1261
52.7k
{
1262
52.7k
    U32 const blockEndIdx = (U32)((BYTE const*)blockEnd - window->base);
1263
52.7k
    U32 const loadedDictEnd = (loadedDictEndPtr != NULL) ? *loadedDictEndPtr : 0;
1264
52.7k
    DEBUGLOG(5, "ZSTD_window_enforceMaxDist: blockEndIdx=%u, maxDist=%u, loadedDictEnd=%u",
1265
52.7k
                (unsigned)blockEndIdx, (unsigned)maxDist, (unsigned)loadedDictEnd);
1266
1267
    /* - When there is no dictionary : loadedDictEnd == 0.
1268
         In which case, the test (blockEndIdx > maxDist) is merely to avoid
1269
         overflowing next operation `newLowLimit = blockEndIdx - maxDist`.
1270
       - When there is a standard dictionary :
1271
         Index referential is copied from the dictionary,
1272
         which means it starts from 0.
1273
         In which case, loadedDictEnd == dictSize,
1274
         and it makes sense to compare `blockEndIdx > maxDist + dictSize`
1275
         since `blockEndIdx` also starts from zero.
1276
       - When there is an attached dictionary :
1277
         loadedDictEnd is expressed within the referential of the context,
1278
         so it can be directly compared against blockEndIdx.
1279
    */
1280
52.7k
    if (blockEndIdx > maxDist + loadedDictEnd) {
1281
9.25k
        U32 const newLowLimit = blockEndIdx - maxDist;
1282
9.25k
        if (window->lowLimit < newLowLimit) window->lowLimit = newLowLimit;
1283
9.25k
        if (window->dictLimit < window->lowLimit) {
1284
0
            DEBUGLOG(5, "Update dictLimit to match lowLimit, from %u to %u",
1285
0
                        (unsigned)window->dictLimit, (unsigned)window->lowLimit);
1286
0
            window->dictLimit = window->lowLimit;
1287
0
        }
1288
        /* On reaching window size, dictionaries are invalidated */
1289
9.25k
        if (loadedDictEndPtr) *loadedDictEndPtr = 0;
1290
9.25k
        if (dictMatchStatePtr) *dictMatchStatePtr = NULL;
1291
9.25k
    }
1292
52.7k
}
zstd_compress.c:ZSTD_window_enforceMaxDist
Line
Count
Source
1261
52.7k
{
1262
52.7k
    U32 const blockEndIdx = (U32)((BYTE const*)blockEnd - window->base);
1263
52.7k
    U32 const loadedDictEnd = (loadedDictEndPtr != NULL) ? *loadedDictEndPtr : 0;
1264
52.7k
    DEBUGLOG(5, "ZSTD_window_enforceMaxDist: blockEndIdx=%u, maxDist=%u, loadedDictEnd=%u",
1265
52.7k
                (unsigned)blockEndIdx, (unsigned)maxDist, (unsigned)loadedDictEnd);
1266
1267
    /* - When there is no dictionary : loadedDictEnd == 0.
1268
         In which case, the test (blockEndIdx > maxDist) is merely to avoid
1269
         overflowing next operation `newLowLimit = blockEndIdx - maxDist`.
1270
       - When there is a standard dictionary :
1271
         Index referential is copied from the dictionary,
1272
         which means it starts from 0.
1273
         In which case, loadedDictEnd == dictSize,
1274
         and it makes sense to compare `blockEndIdx > maxDist + dictSize`
1275
         since `blockEndIdx` also starts from zero.
1276
       - When there is an attached dictionary :
1277
         loadedDictEnd is expressed within the referential of the context,
1278
         so it can be directly compared against blockEndIdx.
1279
    */
1280
52.7k
    if (blockEndIdx > maxDist + loadedDictEnd) {
1281
9.25k
        U32 const newLowLimit = blockEndIdx - maxDist;
1282
9.25k
        if (window->lowLimit < newLowLimit) window->lowLimit = newLowLimit;
1283
9.25k
        if (window->dictLimit < window->lowLimit) {
1284
0
            DEBUGLOG(5, "Update dictLimit to match lowLimit, from %u to %u",
1285
0
                        (unsigned)window->dictLimit, (unsigned)window->lowLimit);
1286
0
            window->dictLimit = window->lowLimit;
1287
0
        }
1288
        /* On reaching window size, dictionaries are invalidated */
1289
9.25k
        if (loadedDictEndPtr) *loadedDictEndPtr = 0;
1290
9.25k
        if (dictMatchStatePtr) *dictMatchStatePtr = NULL;
1291
9.25k
    }
1292
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_fast.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstd_opt.c:ZSTD_window_enforceMaxDist
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_enforceMaxDist
1293
1294
/* Similar to ZSTD_window_enforceMaxDist(),
1295
 * but only invalidates dictionary
1296
 * when input progresses beyond window size.
1297
 * assumption : loadedDictEndPtr and dictMatchStatePtr are valid (non NULL)
1298
 *              loadedDictEnd uses same referential as window->base
1299
 *              maxDist is the window size */
1300
MEM_STATIC void
1301
ZSTD_checkDictValidity(const ZSTD_window_t* window,
1302
                       const void* blockEnd,
1303
                             U32   maxDist,
1304
                             U32*  loadedDictEndPtr,
1305
                       const ZSTD_MatchState_t** dictMatchStatePtr)
1306
52.7k
{
1307
52.7k
    assert(loadedDictEndPtr != NULL);
1308
52.7k
    assert(dictMatchStatePtr != NULL);
1309
52.7k
    {   U32 const blockEndIdx = (U32)((BYTE const*)blockEnd - window->base);
1310
52.7k
        U32 const loadedDictEnd = *loadedDictEndPtr;
1311
52.7k
        DEBUGLOG(5, "ZSTD_checkDictValidity: blockEndIdx=%u, maxDist=%u, loadedDictEnd=%u",
1312
52.7k
                    (unsigned)blockEndIdx, (unsigned)maxDist, (unsigned)loadedDictEnd);
1313
52.7k
        assert(blockEndIdx >= loadedDictEnd);
1314
1315
52.7k
        if (blockEndIdx > loadedDictEnd + maxDist || loadedDictEnd != window->dictLimit) {
1316
            /* On reaching window size, dictionaries are invalidated.
1317
             * For simplification, if window size is reached anywhere within next block,
1318
             * the dictionary is invalidated for the full block.
1319
             *
1320
             * We also have to invalidate the dictionary if ZSTD_window_update() has detected
1321
             * non-contiguous segments, which means that loadedDictEnd != window->dictLimit.
1322
             * loadedDictEnd may be 0, if forceWindow is true, but in that case we never use
1323
             * dictMatchState, so setting it to NULL is not a problem.
1324
             */
1325
52.7k
            DEBUGLOG(6, "invalidating dictionary for current block (distance > windowSize)");
1326
52.7k
            *loadedDictEndPtr = 0;
1327
52.7k
            *dictMatchStatePtr = NULL;
1328
52.7k
        } else {
1329
0
            if (*loadedDictEndPtr != 0) {
1330
0
                DEBUGLOG(6, "dictionary considered valid for current block");
1331
0
    }   }   }
1332
52.7k
}
zstd_compress.c:ZSTD_checkDictValidity
Line
Count
Source
1306
52.7k
{
1307
52.7k
    assert(loadedDictEndPtr != NULL);
1308
52.7k
    assert(dictMatchStatePtr != NULL);
1309
52.7k
    {   U32 const blockEndIdx = (U32)((BYTE const*)blockEnd - window->base);
1310
52.7k
        U32 const loadedDictEnd = *loadedDictEndPtr;
1311
52.7k
        DEBUGLOG(5, "ZSTD_checkDictValidity: blockEndIdx=%u, maxDist=%u, loadedDictEnd=%u",
1312
52.7k
                    (unsigned)blockEndIdx, (unsigned)maxDist, (unsigned)loadedDictEnd);
1313
52.7k
        assert(blockEndIdx >= loadedDictEnd);
1314
1315
52.7k
        if (blockEndIdx > loadedDictEnd + maxDist || loadedDictEnd != window->dictLimit) {
1316
            /* On reaching window size, dictionaries are invalidated.
1317
             * For simplification, if window size is reached anywhere within next block,
1318
             * the dictionary is invalidated for the full block.
1319
             *
1320
             * We also have to invalidate the dictionary if ZSTD_window_update() has detected
1321
             * non-contiguous segments, which means that loadedDictEnd != window->dictLimit.
1322
             * loadedDictEnd may be 0, if forceWindow is true, but in that case we never use
1323
             * dictMatchState, so setting it to NULL is not a problem.
1324
             */
1325
52.7k
            DEBUGLOG(6, "invalidating dictionary for current block (distance > windowSize)");
1326
52.7k
            *loadedDictEndPtr = 0;
1327
52.7k
            *dictMatchStatePtr = NULL;
1328
52.7k
        } else {
1329
0
            if (*loadedDictEndPtr != 0) {
1330
0
                DEBUGLOG(6, "dictionary considered valid for current block");
1331
0
    }   }   }
1332
52.7k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_double_fast.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_fast.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_lazy.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_ldm.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstd_opt.c:ZSTD_checkDictValidity
Unexecuted instantiation: zstdmt_compress.c:ZSTD_checkDictValidity
1333
1334
5.54k
MEM_STATIC void ZSTD_window_init(ZSTD_window_t* window) {
1335
5.54k
    ZSTD_memset(window, 0, sizeof(*window));
1336
5.54k
    window->base = (BYTE const*)" ";
1337
5.54k
    window->dictBase = (BYTE const*)" ";
1338
5.54k
    ZSTD_STATIC_ASSERT(ZSTD_DUBT_UNSORTED_MARK < ZSTD_WINDOW_START_INDEX); /* Start above ZSTD_DUBT_UNSORTED_MARK */
1339
5.54k
    window->dictLimit = ZSTD_WINDOW_START_INDEX;    /* start from >0, so that 1st position is valid */
1340
5.54k
    window->lowLimit = ZSTD_WINDOW_START_INDEX;     /* it ensures first and later CCtx usages compress the same */
1341
5.54k
    window->nextSrc = window->base + ZSTD_WINDOW_START_INDEX;   /* see issue #1241 */
1342
5.54k
    window->nbOverflowCorrections = 0;
1343
5.54k
}
zstd_compress.c:ZSTD_window_init
Line
Count
Source
1334
5.54k
MEM_STATIC void ZSTD_window_init(ZSTD_window_t* window) {
1335
5.54k
    ZSTD_memset(window, 0, sizeof(*window));
1336
5.54k
    window->base = (BYTE const*)" ";
1337
5.54k
    window->dictBase = (BYTE const*)" ";
1338
5.54k
    ZSTD_STATIC_ASSERT(ZSTD_DUBT_UNSORTED_MARK < ZSTD_WINDOW_START_INDEX); /* Start above ZSTD_DUBT_UNSORTED_MARK */
1339
5.54k
    window->dictLimit = ZSTD_WINDOW_START_INDEX;    /* start from >0, so that 1st position is valid */
1340
5.54k
    window->lowLimit = ZSTD_WINDOW_START_INDEX;     /* it ensures first and later CCtx usages compress the same */
1341
5.54k
    window->nextSrc = window->base + ZSTD_WINDOW_START_INDEX;   /* see issue #1241 */
1342
5.54k
    window->nbOverflowCorrections = 0;
1343
5.54k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_init
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_init
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_init
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_init
Unexecuted instantiation: zstd_fast.c:ZSTD_window_init
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_init
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_init
Unexecuted instantiation: zstd_opt.c:ZSTD_window_init
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_init
1344
1345
/**
1346
 * ZSTD_window_update():
1347
 * Updates the window by appending [src, src + srcSize) to the window.
1348
 * If it is not contiguous, the current prefix becomes the extDict, and we
1349
 * forget about the extDict. Handles overlap of the prefix and extDict.
1350
 * Returns non-zero if the segment is contiguous.
1351
 */
1352
MEM_STATIC
1353
ZSTD_ALLOW_POINTER_OVERFLOW_ATTR
1354
U32 ZSTD_window_update(ZSTD_window_t* window,
1355
                 const void* src, size_t srcSize,
1356
                       int forceNonContiguous)
1357
47.1k
{
1358
47.1k
    BYTE const* const ip = (BYTE const*)src;
1359
47.1k
    U32 contiguous = 1;
1360
47.1k
    DEBUGLOG(5, "ZSTD_window_update");
1361
47.1k
    if (srcSize == 0)
1362
0
        return contiguous;
1363
47.1k
    assert(window->base != NULL);
1364
47.1k
    assert(window->dictBase != NULL);
1365
    /* Check if blocks follow each other */
1366
47.1k
    if (src != window->nextSrc || forceNonContiguous) {
1367
        /* not contiguous */
1368
14.9k
        size_t const distanceFromBase = (size_t)(window->nextSrc - window->base);
1369
14.9k
        DEBUGLOG(5, "Non contiguous blocks, new segment starts at %u", window->dictLimit);
1370
14.9k
        window->lowLimit = window->dictLimit;
1371
14.9k
        assert(distanceFromBase == (size_t)(U32)distanceFromBase);  /* should never overflow */
1372
14.9k
        window->dictLimit = (U32)distanceFromBase;
1373
14.9k
        window->dictBase = window->base;
1374
14.9k
        window->base = ip - distanceFromBase;
1375
        /* ms->nextToUpdate = window->dictLimit; */
1376
14.9k
        if (window->dictLimit - window->lowLimit < HASH_READ_SIZE) window->lowLimit = window->dictLimit;   /* too small extDict */
1377
14.9k
        contiguous = 0;
1378
14.9k
    }
1379
47.1k
    window->nextSrc = ip + srcSize;
1380
    /* if input and dictionary overlap : reduce dictionary (area presumed modified by input) */
1381
47.1k
    if ( (ip+srcSize > window->dictBase + window->lowLimit)
1382
47.1k
       & (ip < window->dictBase + window->dictLimit)) {
1383
606
        size_t const highInputIdx = (size_t)((ip + srcSize) - window->dictBase);
1384
606
        U32 const lowLimitMax = (highInputIdx > (size_t)window->dictLimit) ? window->dictLimit : (U32)highInputIdx;
1385
606
        assert(highInputIdx < UINT_MAX);
1386
606
        window->lowLimit = lowLimitMax;
1387
606
        DEBUGLOG(5, "Overlapping extDict and input : new lowLimit = %u", window->lowLimit);
1388
606
    }
1389
47.1k
    return contiguous;
1390
47.1k
}
zstd_compress.c:ZSTD_window_update
Line
Count
Source
1357
47.1k
{
1358
47.1k
    BYTE const* const ip = (BYTE const*)src;
1359
47.1k
    U32 contiguous = 1;
1360
47.1k
    DEBUGLOG(5, "ZSTD_window_update");
1361
47.1k
    if (srcSize == 0)
1362
0
        return contiguous;
1363
47.1k
    assert(window->base != NULL);
1364
47.1k
    assert(window->dictBase != NULL);
1365
    /* Check if blocks follow each other */
1366
47.1k
    if (src != window->nextSrc || forceNonContiguous) {
1367
        /* not contiguous */
1368
14.9k
        size_t const distanceFromBase = (size_t)(window->nextSrc - window->base);
1369
14.9k
        DEBUGLOG(5, "Non contiguous blocks, new segment starts at %u", window->dictLimit);
1370
14.9k
        window->lowLimit = window->dictLimit;
1371
14.9k
        assert(distanceFromBase == (size_t)(U32)distanceFromBase);  /* should never overflow */
1372
14.9k
        window->dictLimit = (U32)distanceFromBase;
1373
14.9k
        window->dictBase = window->base;
1374
14.9k
        window->base = ip - distanceFromBase;
1375
        /* ms->nextToUpdate = window->dictLimit; */
1376
14.9k
        if (window->dictLimit - window->lowLimit < HASH_READ_SIZE) window->lowLimit = window->dictLimit;   /* too small extDict */
1377
14.9k
        contiguous = 0;
1378
14.9k
    }
1379
47.1k
    window->nextSrc = ip + srcSize;
1380
    /* if input and dictionary overlap : reduce dictionary (area presumed modified by input) */
1381
47.1k
    if ( (ip+srcSize > window->dictBase + window->lowLimit)
1382
47.1k
       & (ip < window->dictBase + window->dictLimit)) {
1383
606
        size_t const highInputIdx = (size_t)((ip + srcSize) - window->dictBase);
1384
606
        U32 const lowLimitMax = (highInputIdx > (size_t)window->dictLimit) ? window->dictLimit : (U32)highInputIdx;
1385
606
        assert(highInputIdx < UINT_MAX);
1386
606
        window->lowLimit = lowLimitMax;
1387
606
        DEBUGLOG(5, "Overlapping extDict and input : new lowLimit = %u", window->lowLimit);
1388
606
    }
1389
47.1k
    return contiguous;
1390
47.1k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_window_update
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_window_update
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_window_update
Unexecuted instantiation: zstd_double_fast.c:ZSTD_window_update
Unexecuted instantiation: zstd_fast.c:ZSTD_window_update
Unexecuted instantiation: zstd_lazy.c:ZSTD_window_update
Unexecuted instantiation: zstd_ldm.c:ZSTD_window_update
Unexecuted instantiation: zstd_opt.c:ZSTD_window_update
Unexecuted instantiation: zstdmt_compress.c:ZSTD_window_update
1391
1392
/**
1393
 * Returns the lowest allowed match index. It may either be in the ext-dict or the prefix.
1394
 */
1395
MEM_STATIC U32 ZSTD_getLowestMatchIndex(const ZSTD_MatchState_t* ms, U32 curr, unsigned windowLog)
1396
0
{
1397
0
    U32 const maxDistance = 1U << windowLog;
1398
0
    U32 const lowestValid = ms->window.lowLimit;
1399
0
    U32 const withinWindow = (curr - lowestValid > maxDistance) ? curr - maxDistance : lowestValid;
1400
0
    U32 const isDictionary = (ms->loadedDictEnd != 0);
1401
    /* When using a dictionary the entire dictionary is valid if a single byte of the dictionary
1402
     * is within the window. We invalidate the dictionary (and set loadedDictEnd to 0) when it isn't
1403
     * valid for the entire block. So this check is sufficient to find the lowest valid match index.
1404
     */
1405
0
    U32 const matchLowest = isDictionary ? lowestValid : withinWindow;
1406
0
    return matchLowest;
1407
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_double_fast.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_fast.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_lazy.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_ldm.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstd_opt.c:ZSTD_getLowestMatchIndex
Unexecuted instantiation: zstdmt_compress.c:ZSTD_getLowestMatchIndex
1408
1409
/**
1410
 * Returns the lowest allowed match index in the prefix.
1411
 */
1412
MEM_STATIC U32 ZSTD_getLowestPrefixIndex(const ZSTD_MatchState_t* ms, U32 curr, unsigned windowLog)
1413
52.7k
{
1414
52.7k
    U32    const maxDistance = 1U << windowLog;
1415
52.7k
    U32    const lowestValid = ms->window.dictLimit;
1416
52.7k
    U32    const withinWindow = (curr - lowestValid > maxDistance) ? curr - maxDistance : lowestValid;
1417
52.7k
    U32    const isDictionary = (ms->loadedDictEnd != 0);
1418
    /* When computing the lowest prefix index we need to take the dictionary into account to handle
1419
     * the edge case where the dictionary and the source are contiguous in memory.
1420
     */
1421
52.7k
    U32    const matchLowest = isDictionary ? lowestValid : withinWindow;
1422
52.7k
    return matchLowest;
1423
52.7k
}
Unexecuted instantiation: zstd_compress.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_double_fast.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_fast.c:ZSTD_getLowestPrefixIndex
zstd_lazy.c:ZSTD_getLowestPrefixIndex
Line
Count
Source
1413
52.7k
{
1414
52.7k
    U32    const maxDistance = 1U << windowLog;
1415
52.7k
    U32    const lowestValid = ms->window.dictLimit;
1416
52.7k
    U32    const withinWindow = (curr - lowestValid > maxDistance) ? curr - maxDistance : lowestValid;
1417
52.7k
    U32    const isDictionary = (ms->loadedDictEnd != 0);
1418
    /* When computing the lowest prefix index we need to take the dictionary into account to handle
1419
     * the edge case where the dictionary and the source are contiguous in memory.
1420
     */
1421
52.7k
    U32    const matchLowest = isDictionary ? lowestValid : withinWindow;
1422
52.7k
    return matchLowest;
1423
52.7k
}
Unexecuted instantiation: zstd_ldm.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstd_opt.c:ZSTD_getLowestPrefixIndex
Unexecuted instantiation: zstdmt_compress.c:ZSTD_getLowestPrefixIndex
1424
1425
/* index_safety_check:
1426
 * intentional underflow : ensure repIndex isn't overlapping dict + prefix
1427
 * @return 1 if values are not overlapping,
1428
 * 0 otherwise */
1429
0
MEM_STATIC int ZSTD_index_overlap_check(const U32 prefixLowestIndex, const U32 repIndex) {
1430
0
    return ((U32)((prefixLowestIndex-1)  - repIndex) >= 3);
1431
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_double_fast.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_fast.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_lazy.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_ldm.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstd_opt.c:ZSTD_index_overlap_check
Unexecuted instantiation: zstdmt_compress.c:ZSTD_index_overlap_check
1432
1433
1434
/* debug functions */
1435
#if (DEBUGLEVEL>=2)
1436
1437
MEM_STATIC double ZSTD_fWeight(U32 rawStat)
1438
{
1439
    U32 const fp_accuracy = 8;
1440
    U32 const fp_multiplier = (1 << fp_accuracy);
1441
    U32 const newStat = rawStat + 1;
1442
    U32 const hb = ZSTD_highbit32(newStat);
1443
    U32 const BWeight = hb * fp_multiplier;
1444
    U32 const FWeight = (newStat << fp_accuracy) >> hb;
1445
    U32 const weight = BWeight + FWeight;
1446
    assert(hb + fp_accuracy < 31);
1447
    return (double)weight / fp_multiplier;
1448
}
1449
1450
/* display a table content,
1451
 * listing each element, its frequency, and its predicted bit cost */
1452
MEM_STATIC void ZSTD_debugTable(const U32* table, U32 max)
1453
{
1454
    unsigned u, sum;
1455
    for (u=0, sum=0; u<=max; u++) sum += table[u];
1456
    DEBUGLOG(2, "total nb elts: %u", sum);
1457
    for (u=0; u<=max; u++) {
1458
        DEBUGLOG(2, "%2u: %5u  (%.2f)",
1459
                u, table[u], ZSTD_fWeight(sum) - ZSTD_fWeight(table[u]) );
1460
    }
1461
}
1462
1463
#endif
1464
1465
/* Short Cache */
1466
1467
/* Normally, zstd matchfinders follow this flow:
1468
 *     1. Compute hash at ip
1469
 *     2. Load index from hashTable[hash]
1470
 *     3. Check if *ip == *(base + index)
1471
 * In dictionary compression, loading *(base + index) is often an L2 or even L3 miss.
1472
 *
1473
 * Short cache is an optimization which allows us to avoid step 3 most of the time
1474
 * when the data doesn't actually match. With short cache, the flow becomes:
1475
 *     1. Compute (hash, currentTag) at ip. currentTag is an 8-bit independent hash at ip.
1476
 *     2. Load (index, matchTag) from hashTable[hash]. See ZSTD_writeTaggedIndex to understand how this works.
1477
 *     3. Only if currentTag == matchTag, check *ip == *(base + index). Otherwise, continue.
1478
 *
1479
 * Currently, short cache is only implemented in CDict hashtables. Thus, its use is limited to
1480
 * dictMatchState matchfinders.
1481
 */
1482
0
#define ZSTD_SHORT_CACHE_TAG_BITS 8
1483
0
#define ZSTD_SHORT_CACHE_TAG_MASK ((1u << ZSTD_SHORT_CACHE_TAG_BITS) - 1)
1484
1485
/* Helper function for ZSTD_fillHashTable and ZSTD_fillDoubleHashTable.
1486
 * Unpacks hashAndTag into (hash, tag), then packs (index, tag) into hashTable[hash]. */
1487
0
MEM_STATIC void ZSTD_writeTaggedIndex(U32* const hashTable, size_t hashAndTag, U32 index) {
1488
0
    size_t const hash = hashAndTag >> ZSTD_SHORT_CACHE_TAG_BITS;
1489
0
    U32 const tag = (U32)(hashAndTag & ZSTD_SHORT_CACHE_TAG_MASK);
1490
0
    assert(index >> (32 - ZSTD_SHORT_CACHE_TAG_BITS) == 0);
1491
0
    hashTable[hash] = (index << ZSTD_SHORT_CACHE_TAG_BITS) | tag;
1492
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_double_fast.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_fast.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_lazy.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_ldm.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstd_opt.c:ZSTD_writeTaggedIndex
Unexecuted instantiation: zstdmt_compress.c:ZSTD_writeTaggedIndex
1493
1494
/* Helper function for short cache matchfinders.
1495
 * Unpacks tag1 and tag2 from lower bits of packedTag1 and packedTag2, then checks if the tags match. */
1496
0
MEM_STATIC int ZSTD_comparePackedTags(size_t packedTag1, size_t packedTag2) {
1497
0
    U32 const tag1 = packedTag1 & ZSTD_SHORT_CACHE_TAG_MASK;
1498
0
    U32 const tag2 = packedTag2 & ZSTD_SHORT_CACHE_TAG_MASK;
1499
0
    return tag1 == tag2;
1500
0
}
Unexecuted instantiation: zstd_compress.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_double_fast.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_fast.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_lazy.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_ldm.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstd_opt.c:ZSTD_comparePackedTags
Unexecuted instantiation: zstdmt_compress.c:ZSTD_comparePackedTags
1501
1502
/* ===============================================================
1503
 * Shared internal declarations
1504
 * These prototypes may be called from sources not in lib/compress
1505
 * =============================================================== */
1506
1507
/* ZSTD_loadCEntropy() :
1508
 * dict : must point at beginning of a valid zstd dictionary.
1509
 * return : size of dictionary header (size of magic number + dict ID + entropy tables)
1510
 * assumptions : magic number supposed already checked
1511
 *               and dictSize >= 8 */
1512
size_t ZSTD_loadCEntropy(ZSTD_compressedBlockState_t* bs, void* workspace,
1513
                         const void* const dict, size_t dictSize);
1514
1515
void ZSTD_reset_compressedBlockState(ZSTD_compressedBlockState_t* bs);
1516
1517
typedef struct {
1518
    U32 idx;            /* Index in array of ZSTD_Sequence */
1519
    U32 posInSequence;  /* Position within sequence at idx */
1520
    size_t posInSrc;    /* Number of bytes given by sequences provided so far */
1521
} ZSTD_SequencePosition;
1522
1523
/* for benchmark */
1524
size_t ZSTD_convertBlockSequences(ZSTD_CCtx* cctx,
1525
                        const ZSTD_Sequence* const inSeqs, size_t nbSequences,
1526
                        int repcodeResolution);
1527
1528
typedef struct {
1529
    size_t nbSequences;
1530
    size_t blockSize;
1531
    size_t litSize;
1532
} BlockSummary;
1533
1534
BlockSummary ZSTD_get1BlockSummary(const ZSTD_Sequence* seqs, size_t nbSeqs);
1535
1536
/* ==============================================================
1537
 * Private declarations
1538
 * These prototypes shall only be called from within lib/compress
1539
 * ============================================================== */
1540
1541
/* ZSTD_getCParamsFromCCtxParams() :
1542
 * cParams are built depending on compressionLevel, src size hints,
1543
 * LDM and manually set compression parameters.
1544
 * Note: srcSizeHint == 0 means 0!
1545
 */
1546
ZSTD_compressionParameters ZSTD_getCParamsFromCCtxParams(
1547
        const ZSTD_CCtx_params* CCtxParams, U64 srcSizeHint, size_t dictSize, ZSTD_CParamMode_e mode);
1548
1549
/*! ZSTD_initCStream_internal() :
1550
 *  Private use only. Init streaming operation.
1551
 *  expects params to be valid.
1552
 *  must receive dict, or cdict, or none, but not both.
1553
 *  @return : 0, or an error code */
1554
size_t ZSTD_initCStream_internal(ZSTD_CStream* zcs,
1555
                     const void* dict, size_t dictSize,
1556
                     const ZSTD_CDict* cdict,
1557
                     const ZSTD_CCtx_params* params, unsigned long long pledgedSrcSize);
1558
1559
void ZSTD_resetSeqStore(SeqStore_t* ssPtr);
1560
1561
/*! ZSTD_getCParamsFromCDict() :
1562
 *  as the name implies */
1563
ZSTD_compressionParameters ZSTD_getCParamsFromCDict(const ZSTD_CDict* cdict);
1564
1565
/* ZSTD_compressBegin_advanced_internal() :
1566
 * Private use only. To be called from zstdmt_compress.c. */
1567
size_t ZSTD_compressBegin_advanced_internal(ZSTD_CCtx* cctx,
1568
                                    const void* dict, size_t dictSize,
1569
                                    ZSTD_dictContentType_e dictContentType,
1570
                                    ZSTD_dictTableLoadMethod_e dtlm,
1571
                                    const ZSTD_CDict* cdict,
1572
                                    const ZSTD_CCtx_params* params,
1573
                                    unsigned long long pledgedSrcSize);
1574
1575
/* ZSTD_compress_advanced_internal() :
1576
 * Private use only. To be called from zstdmt_compress.c. */
1577
size_t ZSTD_compress_advanced_internal(ZSTD_CCtx* cctx,
1578
                                       void* dst, size_t dstCapacity,
1579
                                 const void* src, size_t srcSize,
1580
                                 const void* dict,size_t dictSize,
1581
                                 const ZSTD_CCtx_params* params);
1582
1583
1584
/* ZSTD_writeLastEmptyBlock() :
1585
 * output an empty Block with end-of-frame mark to complete a frame
1586
 * @return : size of data written into `dst` (== ZSTD_blockHeaderSize (defined in zstd_internal.h))
1587
 *           or an error code if `dstCapacity` is too small (<ZSTD_blockHeaderSize)
1588
 */
1589
size_t ZSTD_writeLastEmptyBlock(void* dst, size_t dstCapacity);
1590
1591
1592
/* ZSTD_referenceExternalSequences() :
1593
 * Must be called before starting a compression operation.
1594
 * seqs must parse a prefix of the source.
1595
 * This cannot be used when long range matching is enabled.
1596
 * Zstd will use these sequences, and pass the literals to a secondary block
1597
 * compressor.
1598
 * NOTE: seqs are not verified! Invalid sequences can cause out-of-bounds memory
1599
 * access and data corruption.
1600
 */
1601
void ZSTD_referenceExternalSequences(ZSTD_CCtx* cctx, rawSeq* seq, size_t nbSeq);
1602
1603
/** ZSTD_cycleLog() :
1604
 *  condition for correct operation : hashLog > 1 */
1605
U32 ZSTD_cycleLog(U32 hashLog, ZSTD_strategy strat);
1606
1607
/** ZSTD_CCtx_trace() :
1608
 *  Trace the end of a compression call.
1609
 */
1610
void ZSTD_CCtx_trace(ZSTD_CCtx* cctx, size_t extraCSize);
1611
1612
/* Returns 1 if an external sequence producer is registered, otherwise returns 0. */
1613
112k
MEM_STATIC int ZSTD_hasExtSeqProd(const ZSTD_CCtx_params* params) {
1614
    return params->extSeqProdFunc != NULL;
1615
112k
}
zstd_compress.c:ZSTD_hasExtSeqProd
Line
Count
Source
1613
112k
MEM_STATIC int ZSTD_hasExtSeqProd(const ZSTD_CCtx_params* params) {
1614
    return params->extSeqProdFunc != NULL;
1615
112k
}
Unexecuted instantiation: zstd_compress_literals.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_compress_sequences.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_compress_superblock.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_double_fast.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_fast.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_lazy.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_ldm.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstd_opt.c:ZSTD_hasExtSeqProd
Unexecuted instantiation: zstdmt_compress.c:ZSTD_hasExtSeqProd
1616
1617
/* ===============================================================
1618
 * Deprecated definitions that are still used internally to avoid
1619
 * deprecation warnings. These functions are exactly equivalent to
1620
 * their public variants, but avoid the deprecation warnings.
1621
 * =============================================================== */
1622
1623
size_t ZSTD_compressBegin_usingCDict_deprecated(ZSTD_CCtx* cctx, const ZSTD_CDict* cdict);
1624
1625
size_t ZSTD_compressContinue_public(ZSTD_CCtx* cctx,
1626
                                    void* dst, size_t dstCapacity,
1627
                              const void* src, size_t srcSize);
1628
1629
size_t ZSTD_compressEnd_public(ZSTD_CCtx* cctx,
1630
                               void* dst, size_t dstCapacity,
1631
                         const void* src, size_t srcSize);
1632
1633
size_t ZSTD_compressBlock_deprecated(ZSTD_CCtx* cctx, void* dst, size_t dstCapacity, const void* src, size_t srcSize);
1634
1635
1636
#endif /* ZSTD_COMPRESS_H */