Coverage Report

Created: 2025-11-11 06:13

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/c-blosc2/blosc/blosclz.c
Line
Count
Source
1
/*********************************************************************
2
  Blosc - Blocked Shuffling and Compression Library
3
4
  Copyright (c) 2021  Blosc Development Team <blosc@blosc.org>
5
  https://blosc.org
6
  License: BSD 3-Clause (see LICENSE.txt)
7
8
  See LICENSE.txt for details about copyright and rights to use.
9
**********************************************************************/
10
11
/*********************************************************************
12
  The code in this file is heavily based on FastLZ, a lightning-fast
13
  lossless compression library.  See LICENSES/FASTLZ.txt for details.
14
**********************************************************************/
15
16
17
#include "blosclz.h"
18
#include "fastcopy.h"
19
#include "blosc2/blosc2-common.h"
20
21
#include <stdbool.h>
22
#include <stdio.h>
23
#include <stdint.h>
24
#include <string.h>
25
26
/*
27
 * Give hints to the compiler for branch prediction optimization.
28
 * This is not necessary anymore with modern CPUs.
29
 */
30
#if 0 && defined(__GNUC__) && (__GNUC__ > 2)
31
#define BLOSCLZ_LIKELY(c)    (__builtin_expect((c), 1))
32
#define BLOSCLZ_UNLIKELY(c)  (__builtin_expect((c), 0))
33
#else
34
21.5M
#define BLOSCLZ_LIKELY(c)    (c)
35
49.5M
#define BLOSCLZ_UNLIKELY(c)  (c)
36
#endif
37
38
/*
39
 * Use inlined functions for supported systems.
40
 */
41
#if defined(_MSC_VER) && !defined(__cplusplus)   /* Visual Studio */
42
#define inline __inline  /* Visual C is not C99, but supports some kind of inline */
43
#endif
44
45
858k
#define MAX_COPY 32U
46
22.3M
#define MAX_DISTANCE 8191
47
21.4M
#define MAX_FARDISTANCE (65535 + MAX_DISTANCE - 1)
48
49
#ifdef BLOSC_STRICT_ALIGN
50
  #define BLOSCLZ_READU16(p) ((p)[0] | (p)[1]<<8)
51
  #define BLOSCLZ_READU32(p) ((p)[0] | (p)[1]<<8 | (p)[2]<<16 | (p)[3]<<24)
52
#else
53
  #define BLOSCLZ_READU16(p) *((const uint16_t*)(p))
54
41.6M
  #define BLOSCLZ_READU32(p) *((const uint32_t*)(p))
55
#endif
56
57
330k
#define HASH_LOG (14U)
58
59
// This is used in LZ4 and seems to work pretty well here too
60
22.2M
#define HASH_FUNCTION(v, s, h) {      \
61
22.2M
  (v) = ((s) * 2654435761U) >> (32U - (h)); \
62
22.2M
}
63
64
65
#if defined(__AVX2__)
66
static uint8_t *get_run_32(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
67
    uint8_t x = ip[-1];
68
69
    while (ip < (ip_bound - (sizeof(__m256i)))) {
70
        __m256i value, value2, cmp;
71
        /* Broadcast the value for every byte in a 256-bit register */
72
        memset(&value, x, sizeof(__m256i));
73
        value2 = _mm256_loadu_si256((__m256i *)ref);
74
        cmp = _mm256_cmpeq_epi64(value, value2);
75
        if ((unsigned)_mm256_movemask_epi8(cmp) != 0xFFFFFFFF) {
76
            /* Return the byte that starts to differ */
77
            while (*ref++ == x) ip++;
78
            return ip;
79
        }
80
        else {
81
            ip += sizeof(__m256i);
82
            ref += sizeof(__m256i);
83
        }
84
    }
85
    /* Look into the remainder */
86
    while ((ip < ip_bound) && (*ref++ == x)) ip++;
87
    return ip;
88
}
89
#endif
90
91
#if defined(__SSE2__)
92
0
uint8_t *get_run_16(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
93
0
  uint8_t x = ip[-1];
94
95
0
  while (ip < (ip_bound - sizeof(__m128i))) {
96
0
    __m128i value, value2, cmp;
97
    /* Broadcast the value for every byte in a 128-bit register */
98
0
    memset(&value, x, sizeof(__m128i));
99
0
    value2 = _mm_loadu_si128((__m128i *)ref);
100
0
    cmp = _mm_cmpeq_epi32(value, value2);
101
0
    if (_mm_movemask_epi8(cmp) != 0xFFFF) {
102
      /* Return the byte that starts to differ */
103
0
      while (*ref++ == x) ip++;
104
0
      return ip;
105
0
    }
106
0
    else {
107
0
      ip += sizeof(__m128i);
108
0
      ref += sizeof(__m128i);
109
0
    }
110
0
  }
111
  /* Look into the remainder */
112
0
  while ((ip < ip_bound) && (*ref++ == x)) ip++;
113
0
  return ip;
114
0
}
115
116
#endif
117
118
119
354k
static uint8_t *get_run(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
120
354k
  uint8_t x = ip[-1];
121
354k
  int64_t value, value2;
122
  /* Broadcast the value for every byte in a 64-bit register */
123
354k
  memset(&value, x, 8);
124
  /* safe because the outer check against ip limit */
125
887k
  while (ip < (ip_bound - sizeof(int64_t))) {
126
#if defined(BLOSC_STRICT_ALIGN)
127
    memcpy(&value2, ref, 8);
128
#else
129
873k
    value2 = ((int64_t*)ref)[0];
130
873k
#endif
131
873k
    if (value != value2) {
132
      /* Return the byte that starts to differ */
133
1.09M
      while (*ref++ == x) ip++;
134
340k
      return ip;
135
340k
    }
136
533k
    else {
137
533k
      ip += 8;
138
533k
      ref += 8;
139
533k
    }
140
873k
  }
141
  /* Look into the remainder */
142
49.0k
  while ((ip < ip_bound) && (*ref++ == x)) ip++;
143
13.7k
  return ip;
144
354k
}
145
146
147
/* Return the byte that starts to differ */
148
0
uint8_t *get_match(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
149
0
#if !defined(BLOSC_STRICT_ALIGN)
150
0
  while (ip < (ip_bound - sizeof(int64_t))) {
151
0
    if (*(int64_t*)ref != *(int64_t*)ip) {
152
      /* Return the byte that starts to differ */
153
0
      while (*ref++ == *ip++) {}
154
0
      return ip;
155
0
    }
156
0
    else {
157
0
      ip += sizeof(int64_t);
158
0
      ref += sizeof(int64_t);
159
0
    }
160
0
  }
161
0
#endif
162
  /* Look into the remainder */
163
0
  while ((ip < ip_bound) && (*ref++ == *ip++)) {}
164
0
  return ip;
165
0
}
166
167
168
#if defined(__SSE2__)
169
1.50M
static uint8_t *get_match_16(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
170
1.50M
  __m128i value, value2, cmp;
171
172
3.25M
  while (ip < (ip_bound - sizeof(__m128i))) {
173
3.20M
    value = _mm_loadu_si128((__m128i *) ip);
174
3.20M
    value2 = _mm_loadu_si128((__m128i *) ref);
175
3.20M
    cmp = _mm_cmpeq_epi32(value, value2);
176
3.20M
    if (_mm_movemask_epi8(cmp) != 0xFFFF) {
177
      /* Return the byte that starts to differ */
178
5.74M
      while (*ref++ == *ip++) {}
179
1.45M
      return ip;
180
1.45M
    }
181
1.74M
    else {
182
1.74M
      ip += sizeof(__m128i);
183
1.74M
      ref += sizeof(__m128i);
184
1.74M
    }
185
3.20M
  }
186
  /* Look into the remainder */
187
325k
  while ((ip < ip_bound) && (*ref++ == *ip++)) {}
188
47.0k
  return ip;
189
1.50M
}
190
#endif
191
192
193
#if defined(__AVX2__)
194
static uint8_t *get_match_32(uint8_t *ip, const uint8_t *ip_bound, const uint8_t *ref) {
195
196
  while (ip < (ip_bound - sizeof(__m256i))) {
197
    __m256i value, value2, cmp;
198
    value = _mm256_loadu_si256((__m256i *) ip);
199
    value2 = _mm256_loadu_si256((__m256i *)ref);
200
    cmp = _mm256_cmpeq_epi64(value, value2);
201
    if ((unsigned)_mm256_movemask_epi8(cmp) != 0xFFFFFFFF) {
202
      /* Return the byte that starts to differ */
203
      while (*ref++ == *ip++) {}
204
      return ip;
205
    }
206
    else {
207
      ip += sizeof(__m256i);
208
      ref += sizeof(__m256i);
209
    }
210
  }
211
  /* Look into the remainder */
212
  while ((ip < ip_bound) && (*ref++ == *ip++)) {}
213
  return ip;
214
}
215
#endif
216
217
218
1.85M
static uint8_t* get_run_or_match(uint8_t* ip, uint8_t* ip_bound, const uint8_t* ref, bool run) {
219
1.85M
  if (BLOSCLZ_UNLIKELY(run)) {
220
#if defined(__AVX2__)
221
    // Extensive experiments on AMD Ryzen3 say that regular get_run is faster
222
    // ip = get_run_32(ip, ip_bound, ref);
223
    ip = get_run(ip, ip_bound, ref);
224
#elif defined(__SSE2__)
225
    // Extensive experiments on AMD Ryzen3 say that regular get_run is faster
226
    // ip = get_run_16(ip, ip_bound, ref);
227
354k
    ip = get_run(ip, ip_bound, ref);
228
#else
229
    ip = get_run(ip, ip_bound, ref);
230
#endif
231
354k
  }
232
1.50M
  else {
233
#if defined(__AVX2__)
234
    // Extensive experiments on AMD Ryzen3 say that regular get_match_16 is faster
235
    // ip = get_match_32(ip, ip_bound, ref);
236
    ip = get_match_16(ip, ip_bound, ref);
237
#elif defined(__SSE2__)
238
    ip = get_match_16(ip, ip_bound, ref);
239
#else
240
    ip = get_match(ip, ip_bound, ref);
241
#endif
242
1.50M
  }
243
244
1.85M
  return ip;
245
1.85M
}
246
247
248
11.1M
#define LITERAL(ip, op, op_limit, anchor, copy) {       \
249
11.1M
  if (BLOSCLZ_UNLIKELY((op) + 2 > (op_limit)))          \
250
11.1M
    goto out;                                           \
251
11.1M
  *(op)++ = *(anchor)++;                                \
252
11.1M
  (ip) = (anchor);                                      \
253
11.1M
  (copy)++;                                             \
254
11.1M
  if (BLOSCLZ_UNLIKELY((copy) == MAX_COPY)) {           \
255
279k
    (copy) = 0;                                         \
256
279k
    *(op)++ = MAX_COPY-1;                               \
257
279k
  }                                                     \
258
11.1M
}
259
260
9.58M
#define LITERAL2(ip, anchor, copy) {                    \
261
9.58M
  oc++; (anchor)++;                                     \
262
9.58M
  (ip) = (anchor);                                      \
263
9.58M
  (copy)++;                                             \
264
9.58M
  if (BLOSCLZ_UNLIKELY((copy) == MAX_COPY)) {           \
265
268k
    (copy) = 0;                                         \
266
268k
    oc++;                                               \
267
268k
  }                                                     \
268
9.58M
}
269
270
187k
#define MATCH_SHORT(op, op_limit, len, distance) {        \
271
187k
  if (BLOSCLZ_UNLIKELY((op) + 2 > (op_limit)))            \
272
187k
    goto out;                                             \
273
187k
  *(op)++ = (uint8_t)(((len) << 5U) + ((distance) >> 8U));\
274
187k
  *(op)++ = (uint8_t)(((distance) & 255U));               \
275
187k
}
276
277
348k
#define MATCH_LONG(op, op_limit, len, distance) {       \
278
348k
  if (BLOSCLZ_UNLIKELY((op) + 1 > (op_limit)))          \
279
348k
    goto out;                                           \
280
348k
  *(op)++ = (uint8_t)((7U << 5U) + ((distance) >> 8U)); \
281
390k
  for ((len) -= 7; (len) >= 255; (len) -= 255) {        \
282
42.2k
    if (BLOSCLZ_UNLIKELY((op) + 1 > (op_limit)))        \
283
42.2k
      goto out;                                         \
284
42.2k
    *(op)++ = 255;                                      \
285
42.2k
  }                                                     \
286
348k
  if (BLOSCLZ_UNLIKELY((op) + 2 > (op_limit)))          \
287
348k
    goto out;                                           \
288
348k
  *(op)++ = (uint8_t)(len);                             \
289
348k
  *(op)++ = (uint8_t)(((distance) & 255U));             \
290
348k
}
291
292
1.21k
#define MATCH_SHORT_FAR(op, op_limit, len, distance) {      \
293
1.21k
  if (BLOSCLZ_UNLIKELY((op) + 4 > (op_limit)))              \
294
1.21k
    goto out;                                               \
295
1.21k
  *(op)++ = (uint8_t)(((len) << 5U) + 31);                  \
296
1.20k
  *(op)++ = 255;                                            \
297
1.20k
  *(op)++ = (uint8_t)((distance) >> 8U);                    \
298
1.20k
  *(op)++ = (uint8_t)((distance) & 255U);                   \
299
1.20k
}
300
301
15.3k
#define MATCH_LONG_FAR(op, op_limit, len, distance) {       \
302
15.3k
  if (BLOSCLZ_UNLIKELY((op) + 1 > (op_limit)))              \
303
15.3k
    goto out;                                               \
304
15.3k
  *(op)++ = (7U << 5U) + 31;                                \
305
23.9k
  for ((len) -= 7; (len) >= 255; (len) -= 255) {            \
306
8.66k
    if (BLOSCLZ_UNLIKELY((op) + 1 > (op_limit)))            \
307
8.66k
      goto out;                                             \
308
8.66k
    *(op)++ = 255;                                          \
309
8.65k
  }                                                         \
310
15.3k
  if (BLOSCLZ_UNLIKELY((op) + 4 > (op_limit)))              \
311
15.3k
    goto out;                                               \
312
15.3k
  *(op)++ = (uint8_t)(len);                                 \
313
15.2k
  *(op)++ = 255;                                            \
314
15.2k
  *(op)++ = (uint8_t)((distance) >> 8U);                    \
315
15.2k
  *(op)++ = (uint8_t)((distance) & 255U);                   \
316
15.2k
}
317
318
319
// Get a guess for the compressed size of a buffer
320
36.6k
static double get_cratio(uint8_t* ibase, int maxlen, int minlen, int ipshift, uint32_t htab[], int8_t hashlog) {
321
36.6k
  uint8_t* ip = ibase;
322
36.6k
  int32_t oc = 0;
323
36.6k
  const uint16_t hashlen = (1U << (uint8_t)hashlog);
324
36.6k
  uint32_t hval;
325
36.6k
  uint32_t seq;
326
36.6k
  uint8_t copy;
327
  // Make a tradeoff between testing too much and too little
328
36.6k
  uint16_t limit = (maxlen > hashlen) ? hashlen : maxlen;
329
36.6k
  uint8_t* ip_bound = ibase + limit - 1;
330
36.6k
  uint8_t* ip_limit = ibase + limit - 12;
331
332
  // Initialize the hash table to distances of 0
333
36.6k
  memset(htab, 0, hashlen * sizeof(uint32_t));
334
335
  /* we start with literal copy */
336
36.6k
  copy = 4;
337
36.6k
  oc += 5;
338
339
  /* main loop */
340
9.80M
  while (BLOSCLZ_LIKELY(ip < ip_limit)) {
341
9.76M
    const uint8_t* ref;
342
9.76M
    unsigned distance;
343
9.76M
    uint8_t* anchor = ip;    /* comparison starting-point */
344
345
    /* find potential match */
346
9.76M
    seq = BLOSCLZ_READU32(ip);
347
9.76M
    HASH_FUNCTION(hval, seq, hashlog)
348
9.76M
    ref = ibase + htab[hval];
349
350
    /* calculate distance to the match */
351
9.76M
    distance = (unsigned int)(anchor - ref);
352
353
    /* update hash table */
354
9.76M
    htab[hval] = (uint32_t) (anchor - ibase);
355
356
9.76M
    if (distance == 0 || (distance >= MAX_FARDISTANCE)) {
357
36.6k
      LITERAL2(ip, anchor, copy)
358
36.6k
      continue;
359
36.6k
    }
360
361
    /* is this a match? check the first 4 bytes */
362
9.73M
    if (BLOSCLZ_READU32(ref) == BLOSCLZ_READU32(ip)) {
363
480k
      ref += 4;
364
480k
    }
365
9.25M
    else {
366
      /* no luck, copy as a literal */
367
9.25M
      LITERAL2(ip, anchor, copy)
368
9.25M
      continue;
369
9.25M
    }
370
371
    /* last matched byte */
372
480k
    ip = anchor + 4;
373
374
    /* distance is biased */
375
480k
    distance--;
376
377
    /* get runs or matches; zero distance means a run */
378
480k
    ip = get_run_or_match(ip, ip_bound, ref, !distance);
379
380
480k
    ip -= ipshift;
381
480k
    int len = (int)(ip - anchor);
382
480k
    if (len < minlen) {
383
298k
      LITERAL2(ip, anchor, copy)
384
298k
      continue;
385
298k
    }
386
387
    /* if we haven't copied anything, adjust the output counter */
388
182k
    if (!copy)
389
48.5k
      oc--;
390
    /* reset literal counter */
391
182k
    copy = 0;
392
393
    /* encode the match */
394
182k
    if (distance < MAX_DISTANCE) {
395
179k
      if (len >= 7) {
396
121k
        oc += ((len - 7) / 255) + 1;
397
121k
      }
398
179k
      oc += 2;
399
179k
    }
400
3.07k
    else {
401
      /* far away, but not yet in the another galaxy... */
402
3.07k
      if (len >= 7) {
403
2.21k
        oc += ((len - 7) / 255) + 1;
404
2.21k
      }
405
3.07k
      oc += 4;
406
3.07k
    }
407
408
    /* update the hash at match boundary */
409
182k
    seq = BLOSCLZ_READU32(ip);
410
182k
    HASH_FUNCTION(hval, seq, hashlog)
411
182k
    htab[hval] = (uint32_t)(ip++ - ibase);
412
182k
    ip++;
413
    /* assuming literal copy */
414
182k
    oc++;
415
182k
  }
416
417
36.6k
  double ic = (double)(ip - ibase);
418
36.6k
  return ic / (double)oc;
419
36.6k
}
420
421
422
int blosclz_compress(const int clevel, const void* input, int length,
423
36.6k
                     void* output, int maxout, blosc2_context* ctx) {
424
36.6k
  BLOSC_UNUSED_PARAM(ctx);
425
36.6k
  uint8_t* ibase = (uint8_t*)input;
426
36.6k
  uint32_t htab[1U << (uint8_t)HASH_LOG];
427
428
  /* When we go back in a match (shift), we obtain quite different compression properties.
429
   * It looks like 4 is more useful in combination with bitshuffle and small typesizes
430
   * Fallback to 4 because it provides more consistent results for large cratios.
431
   * UPDATE: new experiments show that using a value of 3 is a bit better, at least for ERA5.
432
   * UPDATE 2: go back to 4, as they seem to provide better cratios in general.
433
   *
434
   * In this block we also check cratios for the beginning of the buffers and
435
   * eventually discard those that are small (take too long to decompress).
436
   * This process is called _entropy probing_.
437
   */
438
36.6k
  unsigned ipshift = 4;
439
  // Minimum lengths for encoding (normally it is good to match the shift value)
440
36.6k
  unsigned minlen = 4;
441
442
36.6k
  uint8_t hashlog_[10] = {0, HASH_LOG - 2, HASH_LOG - 1, HASH_LOG, HASH_LOG,
443
36.6k
                          HASH_LOG, HASH_LOG, HASH_LOG, HASH_LOG, HASH_LOG};
444
36.6k
  uint8_t hashlog = hashlog_[clevel];
445
446
  // Experiments say that checking 1/4 of the buffer is enough to figure out approx cratio
447
  // UPDATE: new experiments with ERA5 datasets (float32) say that checking the whole buffer
448
  // is better (specially when combined with bitshuffle).
449
  // The loss in speed for checking the whole buffer is pretty negligible too.
450
36.6k
  int maxlen = length;
451
36.6k
  if (clevel < 2) {
452
32.6k
    maxlen /= 8;
453
32.6k
  }
454
4.04k
  else if (clevel < 4) {
455
1.04k
    maxlen /= 4;
456
1.04k
  }
457
2.99k
  else if (clevel < 7) {
458
536
    maxlen /= 2;
459
536
  }
460
  // Start probing somewhere inside the buffer
461
36.6k
  int shift = length - maxlen;
462
  // Actual entropy probing!
463
36.6k
  double cratio = get_cratio(ibase + shift, maxlen, minlen, ipshift, htab, hashlog);
464
  // discard probes with small compression ratios (too expensive)
465
36.6k
  double cratio_[10] = {0, 2, 1.5, 1.2, 1.2, 1.2, 1.2, 1.15, 1.1, 1.0};
466
36.6k
  if (cratio < cratio_[clevel]) {
467
10.4k
      goto out;
468
10.4k
  }
469
470
26.1k
  uint8_t* ip = ibase;
471
26.1k
  uint8_t* ip_bound = ibase + length - 1;
472
26.1k
  uint8_t* ip_limit = ibase + length - 12;
473
26.1k
  uint8_t* op = (uint8_t*)output;
474
26.1k
  const uint8_t* op_limit = op + maxout;
475
26.1k
  uint32_t seq;
476
26.1k
  uint8_t copy;
477
26.1k
  uint32_t hval;
478
479
  /* input and output buffer cannot be less than 16 and 66 bytes or we can get into trouble */
480
26.1k
  if (length < 16 || maxout < 66) {
481
102
    return 0;
482
102
  }
483
484
  // Initialize the hash table
485
26.0k
  memset(htab, 0, (1U << hashlog) * sizeof(uint32_t));
486
487
  /* we start with literal copy */
488
26.0k
  copy = 4;
489
26.0k
  *op++ = MAX_COPY - 1;
490
26.0k
  *op++ = *ip++;
491
26.0k
  *op++ = *ip++;
492
26.0k
  *op++ = *ip++;
493
26.0k
  *op++ = *ip++;
494
495
  /* main loop */
496
11.6M
  while (BLOSCLZ_LIKELY(ip < ip_limit)) {
497
11.6M
    const uint8_t* ref;
498
11.6M
    unsigned distance;
499
11.6M
    uint8_t* anchor = ip;    /* comparison starting-point */
500
501
    /* find potential match */
502
11.6M
    seq = BLOSCLZ_READU32(ip);
503
11.6M
    HASH_FUNCTION(hval, seq, hashlog)
504
11.6M
    ref = ibase + htab[hval];
505
506
    /* calculate distance to the match */
507
11.6M
    distance = (unsigned int)(anchor - ref);
508
509
    /* update hash table */
510
11.6M
    htab[hval] = (uint32_t) (anchor - ibase);
511
512
11.6M
    if (distance == 0 || (distance >= MAX_FARDISTANCE)) {
513
33.0k
      LITERAL(ip, op, op_limit, anchor, copy)
514
0
      continue;
515
33.0k
    }
516
517
    /* is this a match? check the first 4 bytes */
518
11.6M
    if (BLOSCLZ_UNLIKELY(BLOSCLZ_READU32(ref) == BLOSCLZ_READU32(ip))) {
519
1.37M
      ref += 4;
520
10.2M
    } else {
521
      /* no luck, copy as a literal */
522
10.2M
      LITERAL(ip, op, op_limit, anchor, copy)
523
0
      continue;
524
10.2M
    }
525
526
    /* last matched byte */
527
1.37M
    ip = anchor + 4;
528
529
    /* distance is biased */
530
1.37M
    distance--;
531
532
    /* get runs or matches; zero distance means a run */
533
1.37M
    ip = get_run_or_match(ip, ip_bound, ref, !distance);
534
535
    /* length is biased, '1' means a match of 3 bytes */
536
1.37M
    ip -= ipshift;
537
538
1.37M
    unsigned len = (int)(ip - anchor);
539
540
    // Encoding short lengths is expensive during decompression
541
1.37M
    if (len < minlen || (len <= 5 && distance >= MAX_DISTANCE)) {
542
825k
      LITERAL(ip, op, op_limit, anchor, copy)
543
0
      continue;
544
825k
    }
545
546
    /* if we have copied something, adjust the copy count */
547
552k
    if (copy)
548
      /* copy is biased, '0' means 1 byte copy */
549
363k
      *(op - copy - 1) = (uint8_t)(copy - 1);
550
189k
    else
551
      /* back, to overwrite the copy count */
552
189k
      op--;
553
    /* reset literal counter */
554
552k
    copy = 0;
555
556
    /* encode the match */
557
552k
    if (distance < MAX_DISTANCE) {
558
536k
      if (len < 7) {
559
187k
        MATCH_SHORT(op, op_limit, len, distance)
560
348k
      } else {
561
1.04M
        MATCH_LONG(op, op_limit, len, distance)
562
1.04M
      }
563
536k
    } else {
564
      /* far away, but not yet in the another galaxy... */
565
16.5k
      distance -= MAX_DISTANCE;
566
16.5k
      if (len < 7) {
567
1.21k
        MATCH_SHORT_FAR(op, op_limit, len, distance)
568
15.3k
      } else {
569
45.9k
        MATCH_LONG_FAR(op, op_limit, len, distance)
570
45.9k
      }
571
16.5k
    }
572
573
    /* update the hash at match boundary */
574
552k
    seq = BLOSCLZ_READU32(ip);
575
552k
    HASH_FUNCTION(hval, seq, hashlog)
576
552k
    htab[hval] = (uint32_t) (ip++ - ibase);
577
552k
    if (clevel == 9) {
578
      // In some situations, including a second hash proves to be useful,
579
      // but not in others.  Activating here in max clevel only.
580
64.0k
      seq >>= 8U;
581
64.0k
      HASH_FUNCTION(hval, seq, hashlog)
582
64.0k
      htab[hval] = (uint32_t) (ip++ - ibase);
583
64.0k
    }
584
488k
    else {
585
488k
      ip++;
586
488k
    }
587
588
552k
    if (BLOSCLZ_UNLIKELY(op + 1 > op_limit))
589
69
      goto out;
590
591
    /* assuming literal copy */
592
552k
    *op++ = MAX_COPY - 1;
593
552k
  }
594
595
  /* left-over as literal copy */
596
140k
  while (BLOSCLZ_UNLIKELY(ip <= ip_bound)) {
597
114k
    if (BLOSCLZ_UNLIKELY(op + 2 > op_limit)) goto out;
598
114k
    *op++ = *ip++;
599
114k
    copy++;
600
114k
    if (BLOSCLZ_UNLIKELY(copy == MAX_COPY)) {
601
694
      copy = 0;
602
694
      *op++ = MAX_COPY - 1;
603
694
    }
604
114k
  }
605
606
  /* if we have copied something, adjust the copy length */
607
25.2k
  if (copy)
608
24.9k
    *(op - copy - 1) = (uint8_t)(copy - 1);
609
291
  else
610
291
    op--;
611
612
  /* marker for blosclz */
613
25.2k
  *(uint8_t*)output |= (1U << 5U);
614
615
25.2k
  return (int)(op - (uint8_t*)output);
616
617
11.3k
  out:
618
11.3k
  return 0;
619
25.5k
}
620
621
// See https://habr.com/en/company/yandex/blog/457612/
622
#if defined(__AVX2__)
623
624
#if defined(_MSC_VER)
625
#define ALIGNED_(x) __declspec(align(x))
626
#else
627
#if defined(__GNUC__)
628
#define ALIGNED_(x) __attribute__ ((aligned(x)))
629
#endif
630
#endif
631
#define ALIGNED_TYPE_(t, x) t ALIGNED_(x)
632
633
static unsigned char* copy_match_16(unsigned char *op, const unsigned char *match, int32_t len)
634
{
635
  size_t offset = op - match;
636
  while (len >= 16) {
637
638
    static const ALIGNED_TYPE_(uint8_t, 16) masks[] =
639
      {
640
                0,  1,  2,  1,  4,  1,  4,  2,  8,  7,  6,  5,  4,  3,  2,  1, // offset = 0, not used as mask, but for shift
641
                0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0,  0, // offset = 1
642
                0,  1,  0,  1,  0,  1,  0,  1,  0,  1,  0,  1,  0,  1,  0,  1,
643
                0,  1,  2,  0,  1,  2,  0,  1,  2,  0,  1,  2,  0,  1,  2,  0,
644
                0,  1,  2,  3,  0,  1,  2,  3,  0,  1,  2,  3,  0,  1,  2,  3,
645
                0,  1,  2,  3,  4,  0,  1,  2,  3,  4,  0,  1,  2,  3,  4,  0,
646
                0,  1,  2,  3,  4,  5,  0,  1,  2,  3,  4,  5,  0,  1,  2,  3,
647
                0,  1,  2,  3,  4,  5,  6,  0,  1,  2,  3,  4,  5,  6,  0,  1,
648
                0,  1,  2,  3,  4,  5,  6,  7,  0,  1,  2,  3,  4,  5,  6,  7,
649
                0,  1,  2,  3,  4,  5,  6,  7,  8,  0,  1,  2,  3,  4,  5,  6,
650
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9,  0,  1,  2,  3,  4,  5,
651
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10,  0,  1,  2,  3,  4,
652
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11,  0,  1,  2,  3,
653
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12,  0,  1,  2,
654
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13,  0,  1,
655
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14,  0,
656
                0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14,  15, // offset = 16
657
      };
658
659
    _mm_storeu_si128((__m128i *)(op),
660
                     _mm_shuffle_epi8(_mm_loadu_si128((const __m128i *)(match)),
661
                                      _mm_load_si128((const __m128i *)(masks) + offset)));
662
663
    match += masks[offset];
664
665
    op += 16;
666
    len -= 16;
667
  }
668
  // Deal with remainders
669
  for (; len > 0; len--) {
670
    *op++ = *match++;
671
  }
672
  return op;
673
}
674
#endif
675
676
// LZ4 wildCopy which can reach excellent copy bandwidth (even if insecure)
677
204k
static inline void wild_copy(uint8_t *out, const uint8_t* from, uint8_t* end) {
678
204k
  uint8_t* d = out;
679
204k
  const uint8_t* s = from;
680
204k
  uint8_t* const e = end;
681
682
1.12M
  do { memcpy(d,s,8); d+=8; s+=8; } while (d<e);
683
204k
}
684
685
12.1k
int blosclz_decompress(const void* input, int length, void* output, int maxout) {
686
12.1k
  const uint8_t* ip = (const uint8_t*)input;
687
12.1k
  const uint8_t* ip_limit = ip + length;
688
12.1k
  uint8_t* op = (uint8_t*)output;
689
12.1k
  uint32_t ctrl;
690
12.1k
  uint8_t* op_limit = op + maxout;
691
12.1k
  if (BLOSCLZ_UNLIKELY(length == 0)) {
692
0
    return 0;
693
0
  }
694
12.1k
  ctrl = (*ip++) & 31U;
695
696
561k
  while (1) {
697
561k
    if (ctrl >= 32) {
698
      // match
699
286k
      int32_t len = (int32_t)(ctrl >> 5U) - 1 ;
700
286k
      int32_t ofs = (int32_t)(ctrl & 31U) << 8U;
701
286k
      uint8_t code;
702
286k
      const uint8_t* ref = op - ofs;
703
704
286k
      if (len == 7 - 1) {
705
216k
        do {
706
216k
          if (BLOSCLZ_UNLIKELY(ip + 1 >= ip_limit)) {
707
0
            return 0;
708
0
          }
709
216k
          code = *ip++;
710
216k
          len += code;
711
216k
        } while (code == 255);
712
186k
      }
713
99.9k
      else {
714
99.9k
        if (BLOSCLZ_UNLIKELY(ip + 1 >= ip_limit)) {
715
0
          return 0;
716
0
        }
717
99.9k
      }
718
286k
      code = *ip++;
719
286k
      len += 3;
720
286k
      ref -= code;
721
722
      /* match from 16-bit distance */
723
286k
      if (BLOSCLZ_UNLIKELY(code == 255)) {
724
20.0k
        if (ofs == (31U << 8U)) {
725
11.9k
          if (ip + 1 >= ip_limit) {
726
0
            return 0;
727
0
          }
728
11.9k
          ofs = (*ip++) << 8U;
729
11.9k
          ofs += *ip++;
730
11.9k
          ref = op - ofs - MAX_DISTANCE;
731
11.9k
        }
732
20.0k
      }
733
734
286k
      if (BLOSCLZ_UNLIKELY(op + len > op_limit)) {
735
0
        return 0;
736
0
      }
737
738
286k
      if (BLOSCLZ_UNLIKELY(ref - 1 < (uint8_t*)output)) {
739
0
        return 0;
740
0
      }
741
742
286k
      if (BLOSCLZ_UNLIKELY(ip >= ip_limit)) break;
743
286k
      ctrl = *ip++;
744
745
286k
      ref--;
746
286k
      if (ref == op - 1) {
747
        /* optimized copy for a run */
748
29.4k
        memset(op, *ref, len);
749
29.4k
        op += len;
750
29.4k
      }
751
256k
      else if ((op - ref >= 8) && (op_limit - op >= len + 8)) {
752
        // copy with an overlap not larger than 8
753
204k
        wild_copy(op, ref, op + len);
754
204k
        op += len;
755
204k
      }
756
52.0k
      else {
757
        // general copy with any overlap
758
#if 0 && defined(__AVX2__)
759
        if (op - ref <= 16) {
760
          // This is not faster on a combination of compilers (clang, gcc, icc) or machines, but
761
          // it is not too slower either.
762
          op = copy_match_16(op, ref, len);
763
        }
764
        else {
765
#endif
766
52.0k
          op = copy_match(op, ref, (unsigned) len);
767
#if 0 && defined(__AVX2__)
768
        }
769
#endif
770
52.0k
      }
771
286k
    }
772
275k
    else {
773
      // literal
774
275k
      ctrl++;
775
275k
      if (BLOSCLZ_UNLIKELY(op + ctrl > op_limit)) {
776
0
        return 0;
777
0
      }
778
275k
      if (BLOSCLZ_UNLIKELY(ip + ctrl > ip_limit)) {
779
0
        return 0;
780
0
      }
781
782
275k
      memcpy(op, ip, ctrl); op += ctrl; ip += ctrl;
783
      // On GCC-6, fastcopy this is still faster than plain memcpy
784
      // However, using recent CLANG/LLVM 9.0, there is almost no difference
785
      // in performance.
786
      // And starting on CLANG/LLVM 10 and GCC 9, memcpy is generally faster.
787
      // op = fastcopy(op, ip, (unsigned) ctrl); ip += ctrl;
788
789
275k
      if (BLOSCLZ_UNLIKELY(ip >= ip_limit)) break;
790
263k
      ctrl = *ip++;
791
263k
    }
792
561k
  }
793
794
12.1k
  return (int)(op - (uint8_t*)output);
795
12.1k
}