Coverage Report

Created: 2026-01-20 07:37

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/dec_ans.cc
Line
Count
Source
1
// Copyright (c) the JPEG XL Project Authors. All rights reserved.
2
//
3
// Use of this source code is governed by a BSD-style
4
// license that can be found in the LICENSE file.
5
6
#include "lib/jxl/dec_ans.h"
7
8
#include <jxl/memory_manager.h>
9
10
#include <algorithm>
11
#include <cstddef>
12
#include <cstdint>
13
#include <utility>
14
#include <vector>
15
16
#include "lib/jxl/ans_common.h"
17
#include "lib/jxl/ans_params.h"
18
#include "lib/jxl/base/bits.h"
19
#include "lib/jxl/base/compiler_specific.h"
20
#include "lib/jxl/base/printf_macros.h"
21
#include "lib/jxl/base/status.h"
22
#include "lib/jxl/dec_bit_reader.h"
23
#include "lib/jxl/dec_context_map.h"
24
#include "lib/jxl/dec_huffman.h"
25
#include "lib/jxl/field_encodings.h"
26
#include "lib/jxl/fields.h"
27
#include "lib/jxl/memory_manager_internal.h"
28
29
namespace jxl {
30
namespace {
31
32
// Decodes a number in the range [0..255], by reading 1 - 11 bits.
33
506k
inline int DecodeVarLenUint8(BitReader* input) {
34
506k
  if (input->ReadFixedBits<1>()) {
35
198k
    int nbits = static_cast<int>(input->ReadFixedBits<3>());
36
198k
    if (nbits == 0) {
37
40.5k
      return 1;
38
158k
    } else {
39
158k
      return static_cast<int>(input->ReadBits(nbits)) + (1 << nbits);
40
158k
    }
41
198k
  }
42
307k
  return 0;
43
506k
}
44
45
// Decodes a number in the range [0..65535], by reading 1 - 21 bits.
46
139k
inline int DecodeVarLenUint16(BitReader* input) {
47
139k
  if (input->ReadFixedBits<1>()) {
48
31.4k
    int nbits = static_cast<int>(input->ReadFixedBits<4>());
49
31.4k
    if (nbits == 0) {
50
1.92k
      return 1;
51
29.4k
    } else {
52
29.4k
      return static_cast<int>(input->ReadBits(nbits)) + (1 << nbits);
53
29.4k
    }
54
31.4k
  }
55
107k
  return 0;
56
139k
}
57
58
Status ReadHistogram(int precision_bits, std::vector<int32_t>* counts,
59
442k
                     BitReader* input) {
60
442k
  int range = 1 << precision_bits;
61
442k
  int simple_code = input->ReadBits(1);
62
442k
  if (simple_code == 1) {
63
68.2k
    int i;
64
68.2k
    int symbols[2] = {0};
65
68.2k
    int max_symbol = 0;
66
68.2k
    const int num_symbols = input->ReadBits(1) + 1;
67
161k
    for (i = 0; i < num_symbols; ++i) {
68
93.6k
      symbols[i] = DecodeVarLenUint8(input);
69
93.6k
      if (symbols[i] > max_symbol) max_symbol = symbols[i];
70
93.6k
    }
71
68.2k
    counts->resize(max_symbol + 1);
72
68.2k
    if (num_symbols == 1) {
73
42.9k
      (*counts)[symbols[0]] = range;
74
42.9k
    } else {
75
25.3k
      if (symbols[0] == symbols[1]) {  // corrupt data
76
3.21k
        return false;
77
3.21k
      }
78
22.1k
      (*counts)[symbols[0]] = input->ReadBits(precision_bits);
79
22.1k
      (*counts)[symbols[1]] = range - (*counts)[symbols[0]];
80
22.1k
    }
81
373k
  } else {
82
373k
    int is_flat = input->ReadBits(1);
83
373k
    if (is_flat == 1) {
84
49.8k
      int alphabet_size = DecodeVarLenUint8(input) + 1;
85
49.8k
      JXL_ENSURE(alphabet_size <= range);
86
49.8k
      *counts = CreateFlatHistogram(alphabet_size, range);
87
49.8k
      return true;
88
49.8k
    }
89
90
323k
    uint32_t shift;
91
323k
    {
92
      // TODO(veluca): speed up reading with table lookups.
93
323k
      int upper_bound_log = FloorLog2Nonzero(ANS_LOG_TAB_SIZE + 1);
94
323k
      int log = 0;
95
405k
      for (; log < upper_bound_log; log++) {
96
400k
        if (input->ReadFixedBits<1>() == 0) break;
97
400k
      }
98
323k
      shift = (input->ReadBits(log) | (1 << log)) - 1;
99
323k
      if (shift > ANS_LOG_TAB_SIZE + 1) {
100
1.12k
        return JXL_FAILURE("Invalid shift value");
101
1.12k
      }
102
323k
    }
103
104
322k
    const size_t length = DecodeVarLenUint8(input) + 3;
105
322k
    counts->resize(length);
106
322k
    int total_count = 0;
107
108
322k
    static const uint8_t huff[128][2] = {
109
322k
        {3, 10}, {7, 12}, {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
110
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
111
322k
        {3, 10}, {5, 0},  {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
112
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
113
322k
        {3, 10}, {6, 11}, {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
114
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
115
322k
        {3, 10}, {5, 0},  {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
116
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
117
322k
        {3, 10}, {7, 13}, {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
118
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
119
322k
        {3, 10}, {5, 0},  {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
120
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
121
322k
        {3, 10}, {6, 11}, {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
122
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
123
322k
        {3, 10}, {5, 0},  {3, 7}, {4, 3}, {3, 6}, {3, 8}, {3, 9}, {4, 5},
124
322k
        {3, 10}, {4, 4},  {3, 7}, {4, 1}, {3, 6}, {3, 8}, {3, 9}, {4, 2},
125
322k
    };
126
127
322k
    std::vector<int> logcounts(length);
128
322k
    int omit_log = -1;
129
322k
    int omit_pos = -1;
130
    // This array remembers which symbols have an RLE length.
131
322k
    std::vector<int> same(length);
132
2.78M
    for (size_t i = 0; i < length; ++i) {
133
2.46M
      input->Refill();  // for PeekFixedBits + Advance
134
2.46M
      int idx = input->PeekFixedBits<7>();
135
2.46M
      input->Consume(huff[idx][0]);
136
2.46M
      logcounts[i] = int(huff[idx][1]) - 1;
137
      // The RLE symbol.
138
2.46M
      if (logcounts[i] == ANS_LOG_TAB_SIZE) {
139
40.0k
        int rle_length = DecodeVarLenUint8(input);
140
40.0k
        same[i] = rle_length + 5;
141
40.0k
        i += rle_length + 3;
142
40.0k
        continue;
143
40.0k
      }
144
2.42M
      if (logcounts[i] > omit_log) {
145
477k
        omit_log = logcounts[i];
146
477k
        omit_pos = i;
147
477k
      }
148
2.42M
    }
149
    // Invalid input, e.g. due to invalid usage of RLE.
150
322k
    if (omit_pos < 0) return JXL_FAILURE("Invalid histogram.");
151
322k
    if (static_cast<size_t>(omit_pos) + 1 < length &&
152
304k
        logcounts[omit_pos + 1] == ANS_LOG_TAB_SIZE) {
153
301
      return JXL_FAILURE("Invalid histogram.");
154
301
    }
155
322k
    int prev = 0;
156
322k
    int numsame = 0;
157
3.47M
    for (size_t i = 0; i < length; ++i) {
158
3.15M
      if (same[i]) {
159
        // RLE sequence, let this loop output the same count for the next
160
        // iterations.
161
39.6k
        numsame = same[i] - 1;
162
39.6k
        prev = i > 0 ? (*counts)[i - 1] : 0;
163
39.6k
      }
164
3.15M
      if (numsame > 0) {
165
732k
        (*counts)[i] = prev;
166
732k
        numsame--;
167
2.42M
      } else {
168
2.42M
        int code = logcounts[i];
169
        // omit_pos may not be negative at this point (checked before).
170
2.42M
        if (i == static_cast<size_t>(omit_pos) || code < 0) {
171
709k
          continue;
172
1.71M
        } else if (shift == 0 || code == 0) {
173
          // `shift = 0` means `bitcount = 0`
174
1.21M
          (*counts)[i] = 1 << code;
175
1.21M
        } else {
176
493k
          int bitcount = GetPopulationCountPrecision(code, shift);
177
493k
          (*counts)[i] = (1 << code) +
178
493k
                         (input->ReadBits(bitcount) << (code - bitcount));
179
493k
        }
180
2.42M
      }
181
2.44M
      total_count += (*counts)[i];
182
2.44M
    }
183
322k
    (*counts)[omit_pos] = range - total_count;
184
322k
    if ((*counts)[omit_pos] <= 0) {
185
      // The histogram we've read sums to more than total_count (including at
186
      // least 1 for the omitted value).
187
2.14k
      return JXL_FAILURE("Invalid histogram count.");
188
2.14k
    }
189
322k
  }
190
385k
  return true;
191
442k
}
192
193
}  // namespace
194
195
Status DecodeANSCodes(JxlMemoryManager* memory_manager,
196
                      const size_t num_histograms,
197
                      const size_t max_alphabet_size, BitReader* in,
198
391k
                      ANSCode* result) {
199
391k
  result->memory_manager = memory_manager;
200
391k
  result->degenerate_symbols.resize(num_histograms, -1);
201
391k
  if (result->use_prefix_code) {
202
106k
    JXL_ENSURE(max_alphabet_size <= 1 << PREFIX_MAX_BITS);
203
106k
    result->huffman_data.resize(num_histograms);
204
106k
    std::vector<uint16_t> alphabet_sizes(num_histograms);
205
245k
    for (size_t c = 0; c < num_histograms; c++) {
206
139k
      alphabet_sizes[c] = DecodeVarLenUint16(in) + 1;
207
139k
      if (alphabet_sizes[c] > max_alphabet_size) {
208
192
        return JXL_FAILURE("Alphabet size is too long: %u", alphabet_sizes[c]);
209
192
      }
210
139k
    }
211
234k
    for (size_t c = 0; c < num_histograms; c++) {
212
136k
      if (alphabet_sizes[c] > 1) {
213
29.7k
        if (!result->huffman_data[c].ReadFromBitStream(alphabet_sizes[c], in)) {
214
8.36k
          if (!in->AllReadsWithinBounds()) {
215
1.16k
            return JXL_NOT_ENOUGH_BYTES("Not enough bytes for huffman code");
216
1.16k
          }
217
7.19k
          return JXL_FAILURE("Invalid huffman tree number %" PRIuS
218
8.36k
                             ", alphabet size %u",
219
8.36k
                             c, alphabet_sizes[c]);
220
8.36k
        }
221
106k
      } else {
222
        // 0-bit codes does not require extension tables.
223
106k
        result->huffman_data[c].table_.clear();
224
106k
        result->huffman_data[c].table_.resize(1u << kHuffmanTableBits);
225
106k
      }
226
35.5M
      for (const auto& h : result->huffman_data[c].table_) {
227
35.5M
        if (h.bits <= kHuffmanTableBits) {
228
35.4M
          result->UpdateMaxNumBits(c, h.value);
229
35.4M
        }
230
35.5M
      }
231
128k
    }
232
284k
  } else {
233
284k
    JXL_ENSURE(max_alphabet_size <= ANS_MAX_ALPHABET_SIZE);
234
284k
    size_t alloc_size = num_histograms * (1 << result->log_alpha_size) *
235
284k
                        sizeof(AliasTable::Entry);
236
284k
    JXL_ASSIGN_OR_RETURN(result->alias_tables,
237
284k
                         AlignedMemory::Create(memory_manager, alloc_size));
238
284k
    AliasTable::Entry* alias_tables =
239
284k
        result->alias_tables.address<AliasTable::Entry>();
240
718k
    for (size_t c = 0; c < num_histograms; ++c) {
241
442k
      std::vector<int32_t> counts;
242
442k
      if (!ReadHistogram(ANS_LOG_TAB_SIZE, &counts, in)) {
243
6.81k
        return JXL_FAILURE("Invalid histogram bitstream.");
244
6.81k
      }
245
435k
      if (counts.size() > max_alphabet_size) {
246
1.59k
        return JXL_FAILURE("Alphabet size is too long: %" PRIuS, counts.size());
247
1.59k
      }
248
467k
      while (!counts.empty() && counts.back() == 0) {
249
33.6k
        counts.pop_back();
250
33.6k
      }
251
4.63M
      for (size_t s = 0; s < counts.size(); s++) {
252
4.20M
        if (counts[s] != 0) {
253
2.55M
          result->UpdateMaxNumBits(c, s);
254
2.55M
        }
255
4.20M
      }
256
      // InitAliasTable "fixes" empty counts to contain degenerate "0" symbol.
257
433k
      int degenerate_symbol = counts.empty() ? 0 : (counts.size() - 1);
258
722k
      for (int s = 0; s < degenerate_symbol; ++s) {
259
640k
        if (counts[s] != 0) {
260
352k
          degenerate_symbol = -1;
261
352k
          break;
262
352k
        }
263
640k
      }
264
433k
      result->degenerate_symbols[c] = degenerate_symbol;
265
433k
      JXL_RETURN_IF_ERROR(
266
433k
          InitAliasTable(counts, ANS_LOG_TAB_SIZE, result->log_alpha_size,
267
433k
                         alias_tables + c * (1 << result->log_alpha_size)));
268
433k
    }
269
284k
  }
270
374k
  return true;
271
391k
}
272
Status DecodeUintConfig(size_t log_alpha_size, HybridUintConfig* uint_config,
273
685k
                        BitReader* br) {
274
685k
  br->Refill();
275
685k
  size_t split_exponent = br->ReadBits(CeilLog2Nonzero(log_alpha_size + 1));
276
685k
  size_t msb_in_token = 0;
277
685k
  size_t lsb_in_token = 0;
278
685k
  if (split_exponent != log_alpha_size) {
279
    // otherwise, msb/lsb don't matter.
280
648k
    size_t nbits = CeilLog2Nonzero(split_exponent + 1);
281
648k
    msb_in_token = br->ReadBits(nbits);
282
648k
    if (msb_in_token > split_exponent) {
283
      // This could be invalid here already and we need to check this before
284
      // we use its value to read more bits.
285
2.26k
      return JXL_FAILURE("Invalid HybridUintConfig");
286
2.26k
    }
287
646k
    nbits = CeilLog2Nonzero(split_exponent - msb_in_token + 1);
288
646k
    lsb_in_token = br->ReadBits(nbits);
289
646k
  }
290
683k
  if (lsb_in_token + msb_in_token > split_exponent) {
291
1.13k
    return JXL_FAILURE("Invalid HybridUintConfig");
292
1.13k
  }
293
682k
  *uint_config = HybridUintConfig(split_exponent, msb_in_token, lsb_in_token);
294
682k
  return true;
295
683k
}
296
297
Status DecodeUintConfigs(size_t log_alpha_size,
298
                         std::vector<HybridUintConfig>* uint_config,
299
393k
                         BitReader* br) {
300
  // TODO(veluca): RLE?
301
593k
  for (auto& cfg : *uint_config) {
302
593k
    JXL_RETURN_IF_ERROR(DecodeUintConfig(log_alpha_size, &cfg, br));
303
593k
  }
304
391k
  return true;
305
393k
}
306
307
984k
LZ77Params::LZ77Params() { Bundle::Init(this); }
308
1.54M
Status LZ77Params::VisitFields(Visitor* JXL_RESTRICT visitor) {
309
1.54M
  JXL_QUIET_RETURN_IF_ERROR(visitor->Bool(false, &enabled));
310
1.52M
  if (!visitor->Conditional(enabled)) return true;
311
1.08M
  JXL_QUIET_RETURN_IF_ERROR(visitor->U32(Val(224), Val(512), Val(4096),
312
1.08M
                                         BitsOffset(15, 8), 224, &min_symbol));
313
1.08M
  JXL_QUIET_RETURN_IF_ERROR(visitor->U32(Val(3), Val(4), BitsOffset(2, 5),
314
1.08M
                                         BitsOffset(8, 9), 3, &min_length));
315
1.08M
  return true;
316
1.08M
}
317
318
37.9M
void ANSCode::UpdateMaxNumBits(size_t ctx, size_t symbol) {
319
37.9M
  HybridUintConfig* cfg = &uint_config[ctx];
320
  // LZ77 symbols use a different uint config.
321
37.9M
  if (lz77.enabled && lz77.nonserialized_distance_context != ctx &&
322
4.39M
      symbol >= lz77.min_symbol) {
323
314k
    symbol -= lz77.min_symbol;
324
314k
    cfg = &lz77.length_uint_config;
325
314k
  }
326
37.9M
  size_t split_token = cfg->split_token;
327
37.9M
  size_t msb_in_token = cfg->msb_in_token;
328
37.9M
  size_t lsb_in_token = cfg->lsb_in_token;
329
37.9M
  size_t split_exponent = cfg->split_exponent;
330
37.9M
  if (symbol < split_token) {
331
32.1M
    max_num_bits = std::max(max_num_bits, split_exponent);
332
32.1M
    return;
333
32.1M
  }
334
5.78M
  uint32_t n_extra_bits =
335
5.78M
      split_exponent - (msb_in_token + lsb_in_token) +
336
5.78M
      ((symbol - split_token) >> (msb_in_token + lsb_in_token));
337
5.78M
  size_t total_bits = msb_in_token + lsb_in_token + n_extra_bits + 1;
338
5.78M
  max_num_bits = std::max(max_num_bits, total_bits);
339
5.78M
}
340
341
Status DecodeHistograms(JxlMemoryManager* memory_manager, BitReader* br,
342
                        size_t num_contexts, ANSCode* code,
343
456k
                        std::vector<uint8_t>* context_map, bool disallow_lz77) {
344
456k
  JXL_RETURN_IF_ERROR(Bundle::Read(br, &code->lz77));
345
426k
  if (code->lz77.enabled) {
346
92.1k
    num_contexts++;
347
92.1k
    JXL_RETURN_IF_ERROR(DecodeUintConfig(/*log_alpha_size=*/8,
348
92.1k
                                         &code->lz77.length_uint_config, br));
349
92.1k
  }
350
426k
  if (code->lz77.enabled && disallow_lz77) {
351
4.67k
    return JXL_FAILURE("Using LZ77 when explicitly disallowed");
352
4.67k
  }
353
421k
  size_t num_histograms = 1;
354
421k
  context_map->resize(num_contexts);
355
421k
  if (num_contexts > 1) {
356
241k
    JXL_RETURN_IF_ERROR(
357
241k
        DecodeContextMap(memory_manager, context_map, &num_histograms, br));
358
241k
  }
359
393k
  JXL_DEBUG_V(
360
393k
      4, "Decoded context map of size %" PRIuS " and %" PRIuS " histograms",
361
393k
      num_contexts, num_histograms);
362
393k
  code->lz77.nonserialized_distance_context = context_map->back();
363
393k
  code->use_prefix_code = static_cast<bool>(br->ReadFixedBits<1>());
364
393k
  if (code->use_prefix_code) {
365
107k
    code->log_alpha_size = PREFIX_MAX_BITS;
366
286k
  } else {
367
286k
    code->log_alpha_size = br->ReadFixedBits<2>() + 5;
368
286k
  }
369
393k
  code->uint_config.resize(num_histograms);
370
393k
  JXL_RETURN_IF_ERROR(
371
393k
      DecodeUintConfigs(code->log_alpha_size, &code->uint_config, br));
372
391k
  const size_t max_alphabet_size = 1 << code->log_alpha_size;
373
391k
  JXL_RETURN_IF_ERROR(DecodeANSCodes(memory_manager, num_histograms,
374
391k
                                     max_alphabet_size, br, code));
375
374k
  return true;
376
391k
}
377
378
StatusOr<ANSSymbolReader> ANSSymbolReader::Create(const ANSCode* code,
379
                                                  BitReader* JXL_RESTRICT br,
380
383k
                                                  size_t distance_multiplier) {
381
383k
  AlignedMemory lz77_window_storage;
382
383k
  if (code->lz77.enabled) {
383
63.1k
    JxlMemoryManager* memory_manager = code->memory_manager;
384
63.1k
    JXL_ASSIGN_OR_RETURN(
385
63.1k
        lz77_window_storage,
386
63.1k
        AlignedMemory::Create(memory_manager, kWindowSize * sizeof(uint32_t)));
387
63.1k
  }
388
383k
  return ANSSymbolReader(code, br, distance_multiplier,
389
383k
                         std::move(lz77_window_storage));
390
383k
}
391
392
ANSSymbolReader::ANSSymbolReader(const ANSCode* code,
393
                                 BitReader* JXL_RESTRICT br,
394
                                 size_t distance_multiplier,
395
                                 AlignedMemory&& lz77_window_storage)
396
383k
    : alias_tables_(code->alias_tables.address<AliasTable::Entry>()),
397
383k
      huffman_data_(code->huffman_data.data()),
398
383k
      use_prefix_code_(code->use_prefix_code),
399
383k
      configs(code->uint_config.data()),
400
383k
      lz77_window_storage_(std::move(lz77_window_storage)) {
401
383k
  if (!use_prefix_code_) {
402
284k
    state_ = static_cast<uint32_t>(br->ReadFixedBits<32>());
403
284k
    log_alpha_size_ = code->log_alpha_size;
404
284k
    log_entry_size_ = ANS_LOG_TAB_SIZE - code->log_alpha_size;
405
284k
    entry_size_minus_1_ = (1 << log_entry_size_) - 1;
406
284k
  } else {
407
99.2k
    state_ = (ANS_SIGNATURE << 16u);
408
99.2k
  }
409
383k
  if (!code->lz77.enabled) return;
410
63.1k
  lz77_window_ = lz77_window_storage_.address<uint32_t>();
411
63.1k
  lz77_ctx_ = code->lz77.nonserialized_distance_context;
412
63.1k
  lz77_length_uint_ = code->lz77.length_uint_config;
413
63.1k
  lz77_threshold_ = code->lz77.min_symbol;
414
63.1k
  lz77_min_length_ = code->lz77.min_length;
415
63.1k
  num_special_distances_ = distance_multiplier == 0 ? 0 : kNumSpecialDistances;
416
1.90M
  for (size_t i = 0; i < num_special_distances_; i++) {
417
1.83M
    special_distances_[i] = SpecialDistance(i, distance_multiplier);
418
1.83M
  }
419
63.1k
}
420
421
}  // namespace jxl