Coverage Report

Created: 2026-04-01 07:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/dec_frame.cc
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Source
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// Copyright (c) the JPEG XL Project Authors. All rights reserved.
2
//
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// 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_frame.h"
7
8
#include <jxl/decode.h>
9
#include <jxl/memory_manager.h>
10
#include <jxl/types.h>
11
12
#include <algorithm>
13
#include <cstddef>
14
#include <cstdint>
15
#include <cstdlib>
16
#include <memory>
17
#include <utility>
18
#include <vector>
19
20
#include "lib/jxl/ac_context.h"
21
#include "lib/jxl/ac_strategy.h"
22
#include "lib/jxl/base/bits.h"
23
#include "lib/jxl/base/common.h"
24
#include "lib/jxl/base/compiler_specific.h"
25
#include "lib/jxl/base/data_parallel.h"
26
#include "lib/jxl/base/printf_macros.h"
27
#include "lib/jxl/base/rect.h"
28
#include "lib/jxl/base/span.h"
29
#include "lib/jxl/base/status.h"
30
#include "lib/jxl/chroma_from_luma.h"
31
#include "lib/jxl/coeff_order.h"
32
#include "lib/jxl/coeff_order_fwd.h"
33
#include "lib/jxl/common.h"  // kMaxNumPasses
34
#include "lib/jxl/compressed_dc.h"
35
#include "lib/jxl/dct_util.h"
36
#include "lib/jxl/dec_ans.h"
37
#include "lib/jxl/dec_bit_reader.h"
38
#include "lib/jxl/dec_cache.h"
39
#include "lib/jxl/dec_group.h"
40
#include "lib/jxl/dec_modular.h"
41
#include "lib/jxl/dec_noise.h"
42
#include "lib/jxl/dec_patch_dictionary.h"
43
#include "lib/jxl/entropy_coder.h"
44
#include "lib/jxl/epf.h"
45
#include "lib/jxl/fields.h"
46
#include "lib/jxl/frame_dimensions.h"
47
#include "lib/jxl/frame_header.h"
48
#include "lib/jxl/image_bundle.h"
49
#include "lib/jxl/image_metadata.h"
50
#include "lib/jxl/image_ops.h"
51
#include "lib/jxl/jpeg/jpeg_data.h"
52
#include "lib/jxl/loop_filter.h"
53
#include "lib/jxl/passes_state.h"
54
#include "lib/jxl/quant_weights.h"
55
#include "lib/jxl/quantizer.h"
56
#include "lib/jxl/render_pipeline/render_pipeline.h"
57
#include "lib/jxl/splines.h"
58
#include "lib/jxl/toc.h"
59
60
namespace jxl {
61
62
namespace {
63
Status DecodeGlobalDCInfo(BitReader* reader, bool is_jpeg,
64
5.73k
                          PassesDecoderState* state, ThreadPool* pool) {
65
5.73k
  JXL_RETURN_IF_ERROR(state->shared_storage.quantizer.Decode(reader));
66
67
5.73k
  JXL_RETURN_IF_ERROR(DecodeBlockCtxMap(state->memory_manager(), reader,
68
5.73k
                                        &state->shared_storage.block_ctx_map));
69
70
5.73k
  JXL_RETURN_IF_ERROR(state->shared_storage.cmap.DecodeDC(reader));
71
72
  // Pre-compute info for decoding a group.
73
5.73k
  if (is_jpeg) {
74
0
    state->shared_storage.quantizer.ClearDCMul();  // Don't dequant DC
75
0
  }
76
77
5.73k
  state->shared_storage.ac_strategy.FillInvalid();
78
5.73k
  return true;
79
5.73k
}
80
}  // namespace
81
82
Status DecodeFrame(PassesDecoderState* dec_state, ThreadPool* JXL_RESTRICT pool,
83
                   const uint8_t* next_in, size_t avail_in,
84
                   FrameHeader* frame_header, ImageBundle* decoded,
85
                   const CodecMetadata& metadata,
86
0
                   bool use_slow_rendering_pipeline) {
87
0
  FrameDecoder frame_decoder(dec_state, metadata, pool,
88
0
                             use_slow_rendering_pipeline);
89
90
0
  BitReader reader(Bytes(next_in, avail_in));
91
0
  JXL_RETURN_IF_ERROR(frame_decoder.InitFrame(&reader, decoded,
92
0
                                              /*is_preview=*/false));
93
0
  JXL_RETURN_IF_ERROR(frame_decoder.InitFrameOutput());
94
0
  if (frame_header) {
95
0
    *frame_header = frame_decoder.GetFrameHeader();
96
0
  }
97
98
0
  JXL_RETURN_IF_ERROR(reader.AllReadsWithinBounds());
99
0
  size_t header_bytes = reader.TotalBitsConsumed() / kBitsPerByte;
100
0
  JXL_RETURN_IF_ERROR(reader.Close());
101
102
0
  size_t processed_bytes = header_bytes;
103
0
  Status close_ok = true;
104
0
  std::vector<std::unique_ptr<BitReader>> section_readers;
105
0
  {
106
0
    std::vector<std::unique_ptr<BitReaderScopedCloser>> section_closers;
107
0
    std::vector<FrameDecoder::SectionInfo> section_info;
108
0
    std::vector<FrameDecoder::SectionStatus> section_status;
109
0
    size_t pos = header_bytes;
110
0
    size_t index = 0;
111
0
    for (auto toc_entry : frame_decoder.Toc()) {
112
0
      JXL_RETURN_IF_ERROR(pos + toc_entry.size <= avail_in);
113
0
      auto br = make_unique<BitReader>(Bytes(next_in + pos, toc_entry.size));
114
0
      section_info.emplace_back(
115
0
          FrameDecoder::SectionInfo{br.get(), toc_entry.id, index++});
116
0
      section_closers.emplace_back(
117
0
          make_unique<BitReaderScopedCloser>(*br, close_ok));
118
0
      section_readers.emplace_back(std::move(br));
119
0
      pos += toc_entry.size;
120
0
    }
121
0
    section_status.resize(section_info.size());
122
0
    JXL_RETURN_IF_ERROR(frame_decoder.ProcessSections(
123
0
        section_info.data(), section_info.size(), section_status.data()));
124
0
    for (size_t i = 0; i < section_status.size(); i++) {
125
0
      JXL_RETURN_IF_ERROR(section_status[i] == FrameDecoder::kDone);
126
0
      processed_bytes += frame_decoder.Toc()[i].size;
127
0
    }
128
0
  }
129
0
  JXL_RETURN_IF_ERROR(close_ok);
130
0
  JXL_RETURN_IF_ERROR(frame_decoder.FinalizeFrame());
131
0
  decoded->SetDecodedBytes(processed_bytes);
132
0
  return true;
133
0
}
134
135
Status FrameDecoder::InitFrame(BitReader* JXL_RESTRICT br, ImageBundle* decoded,
136
62.2k
                               bool is_preview) {
137
62.2k
  decoded_ = decoded;
138
62.2k
  JXL_ENSURE(is_finalized_);
139
62.2k
  JxlMemoryManager* memory_manager = decoded_->memory_manager();
140
141
  // Reset the dequantization matrices to their default values.
142
62.2k
  dec_state_->shared_storage.matrices = DequantMatrices();
143
144
62.2k
  frame_header_.nonserialized_is_preview = is_preview;
145
62.2k
  JXL_ENSURE(frame_header_.nonserialized_metadata != nullptr);
146
62.2k
  JXL_RETURN_IF_ERROR(ReadFrameHeader(br, &frame_header_));
147
59.9k
  frame_dim_ = frame_header_.ToFrameDimensions();
148
59.9k
  JXL_DEBUG_V(2, "FrameHeader: %s", frame_header_.DebugString().c_str());
149
150
59.9k
  const size_t num_passes = frame_header_.passes.num_passes;
151
59.9k
  const size_t num_groups = frame_dim_.num_groups;
152
153
  // If the previous frame was not a kRegularFrame, `decoded` may have different
154
  // dimensions; must reset to avoid errors.
155
59.9k
  decoded->RemoveColor();
156
59.9k
  decoded->ClearExtraChannels();
157
158
59.9k
  decoded->duration = frame_header_.animation_frame.duration;
159
160
59.9k
  if (!frame_header_.nonserialized_is_preview &&
161
59.9k
      (frame_header_.is_last || frame_header_.animation_frame.duration > 0) &&
162
3.28k
      (frame_header_.frame_type == kRegularFrame ||
163
3.28k
       frame_header_.frame_type == kSkipProgressive)) {
164
3.28k
    ++dec_state_->visible_frame_index;
165
3.28k
    dec_state_->nonvisible_frame_index = 0;
166
56.6k
  } else {
167
56.6k
    ++dec_state_->nonvisible_frame_index;
168
56.6k
  }
169
170
  // Read TOC.
171
59.9k
  const size_t toc_entries =
172
59.9k
      NumTocEntries(num_groups, frame_dim_.num_dc_groups, num_passes);
173
59.9k
  std::vector<uint32_t> sizes;
174
59.9k
  std::vector<coeff_order_t> permutation;
175
59.9k
  JXL_RETURN_IF_ERROR(
176
59.9k
      ReadToc(memory_manager, toc_entries, br, &sizes, &permutation));
177
59.3k
  bool have_permutation = !permutation.empty();
178
59.3k
  toc_.resize(toc_entries);
179
59.3k
  section_sizes_sum_ = 0;
180
469k
  for (size_t i = 0; i < toc_entries; ++i) {
181
409k
    toc_[i].size = sizes[i];
182
409k
    size_t index = have_permutation ? permutation[i] : i;
183
409k
    toc_[index].id = i;
184
409k
    if (section_sizes_sum_ + toc_[i].size < section_sizes_sum_) {
185
0
      return JXL_FAILURE("group offset overflow");
186
0
    }
187
409k
    section_sizes_sum_ += toc_[i].size;
188
409k
  }
189
190
59.3k
  if (JXL_DEBUG_V_LEVEL >= 3) {
191
0
    for (size_t i = 0; i < toc_entries; ++i) {
192
0
      JXL_DEBUG_V(3, "TOC entry %" PRIuS " size %" PRIuS " id %" PRIuS "", i,
193
0
                  toc_[i].size, toc_[i].id);
194
0
    }
195
0
  }
196
197
59.3k
  JXL_ENSURE((br->TotalBitsConsumed() % kBitsPerByte) == 0);
198
59.3k
  const size_t group_codes_begin = br->TotalBitsConsumed() / kBitsPerByte;
199
59.3k
  JXL_ENSURE(!toc_.empty());
200
201
  // Overflow check.
202
59.3k
  if (group_codes_begin + section_sizes_sum_ < group_codes_begin) {
203
0
    return JXL_FAILURE("Invalid group codes");
204
0
  }
205
206
59.3k
  if (!frame_header_.chroma_subsampling.Is444() &&
207
2.57k
      !(frame_header_.flags & FrameHeader::kSkipAdaptiveDCSmoothing) &&
208
2.57k
      frame_header_.encoding == FrameEncoding::kVarDCT) {
209
1
    return JXL_FAILURE(
210
1
        "Non-444 chroma subsampling is not allowed when adaptive DC "
211
1
        "smoothing is enabled");
212
1
  }
213
59.3k
  return true;
214
59.3k
}
215
216
13.4k
Status FrameDecoder::InitFrameOutput() {
217
13.4k
  JXL_RETURN_IF_ERROR(
218
13.4k
      InitializePassesSharedState(frame_header_, &dec_state_->shared_storage));
219
13.4k
  JXL_RETURN_IF_ERROR(dec_state_->Init(frame_header_));
220
13.4k
  modular_frame_decoder_.Init(frame_dim_);
221
222
13.4k
  if (decoded_->IsJPEG()) {
223
0
    if (frame_header_.encoding == FrameEncoding::kModular) {
224
0
      return JXL_FAILURE("Cannot output JPEG from Modular");
225
0
    }
226
0
    jpeg::JPEGData* jpeg_data = decoded_->jpeg_data.get();
227
0
    size_t num_components = jpeg_data->components.size();
228
0
    if (num_components != 1 && num_components != 3) {
229
0
      return JXL_FAILURE("Invalid number of components");
230
0
    }
231
0
    if (frame_header_.nonserialized_metadata->m.xyb_encoded) {
232
0
      return JXL_FAILURE("Cannot decode to JPEG an XYB image");
233
0
    }
234
0
    auto jpeg_c_map = JpegOrder(ColorTransform::kYCbCr, num_components == 1);
235
0
    decoded_->jpeg_data->width = frame_dim_.xsize;
236
0
    decoded_->jpeg_data->height = frame_dim_.ysize;
237
0
    for (size_t c = 0; c < num_components; c++) {
238
0
      auto& component = jpeg_data->components[jpeg_c_map[c]];
239
0
      component.width_in_blocks =
240
0
          frame_dim_.xsize_blocks >> frame_header_.chroma_subsampling.HShift(c);
241
0
      component.height_in_blocks =
242
0
          frame_dim_.ysize_blocks >> frame_header_.chroma_subsampling.VShift(c);
243
0
      component.h_samp_factor =
244
0
          1 << frame_header_.chroma_subsampling.RawHShift(c);
245
0
      component.v_samp_factor =
246
0
          1 << frame_header_.chroma_subsampling.RawVShift(c);
247
0
      size_t num_blocks = static_cast<size_t>(component.width_in_blocks) *
248
0
                          component.height_in_blocks;
249
0
      component.coeffs.resize(num_blocks * jxl::kDCTBlockSize);
250
0
    }
251
0
  }
252
253
  // Clear the state.
254
13.4k
  decoded_dc_global_ = false;
255
13.4k
  decoded_ac_global_ = false;
256
13.4k
  is_finalized_ = false;
257
13.4k
  finalized_dc_ = false;
258
13.4k
  num_sections_done_ = 0;
259
13.4k
  decoded_dc_groups_.clear();
260
13.4k
  decoded_dc_groups_.resize(frame_dim_.num_dc_groups);
261
13.4k
  decoded_passes_per_ac_group_.clear();
262
13.4k
  decoded_passes_per_ac_group_.resize(frame_dim_.num_groups, 0);
263
13.4k
  processed_section_.clear();
264
13.4k
  processed_section_.resize(toc_.size());
265
13.4k
  allocated_ = false;
266
13.4k
  return true;
267
13.4k
}
268
269
13.4k
Status FrameDecoder::ProcessDCGlobal(BitReader* br) {
270
13.4k
  PassesSharedState& shared = dec_state_->shared_storage;
271
13.4k
  JxlMemoryManager* memory_manager = shared.memory_manager;
272
13.4k
  if (frame_header_.flags & FrameHeader::kPatches) {
273
987
    bool uses_extra_channels = false;
274
987
    JXL_RETURN_IF_ERROR(shared.image_features.patches.Decode(
275
987
        memory_manager, br, frame_dim_.xsize_padded, frame_dim_.ysize_padded,
276
987
        shared.metadata->m.num_extra_channels, &uses_extra_channels));
277
983
    if (uses_extra_channels && frame_header_.upsampling != 1) {
278
0
      for (size_t ecups : frame_header_.extra_channel_upsampling) {
279
0
        if (ecups != frame_header_.upsampling) {
280
0
          return JXL_FAILURE(
281
0
              "Cannot use extra channels in patches if color channels are "
282
0
              "subsampled differently from extra channels");
283
0
        }
284
0
      }
285
0
    }
286
12.4k
  } else {
287
12.4k
    shared.image_features.patches.Clear();
288
12.4k
  }
289
13.4k
  shared.image_features.splines.Clear();
290
13.4k
  if (frame_header_.flags & FrameHeader::kSplines) {
291
444
    JXL_RETURN_IF_ERROR(shared.image_features.splines.Decode(
292
444
        memory_manager, br, frame_dim_.xsize * frame_dim_.ysize));
293
444
  }
294
13.4k
  if (frame_header_.flags & FrameHeader::kNoise) {
295
2.08k
    JXL_RETURN_IF_ERROR(DecodeNoise(br, &shared.image_features.noise_params));
296
2.08k
  }
297
13.4k
  JXL_RETURN_IF_ERROR(dec_state_->shared_storage.matrices.DecodeDC(br));
298
299
13.3k
  if (frame_header_.encoding == FrameEncoding::kVarDCT) {
300
5.73k
    JXL_RETURN_IF_ERROR(
301
5.73k
        jxl::DecodeGlobalDCInfo(br, decoded_->IsJPEG(), dec_state_, pool_));
302
5.73k
  }
303
  // Splines' draw cache uses the color correlation map.
304
13.3k
  if (frame_header_.flags & FrameHeader::kSplines) {
305
441
    JXL_RETURN_IF_ERROR(shared.image_features.splines.InitializeDrawCache(
306
441
        frame_dim_.xsize_upsampled, frame_dim_.ysize_upsampled,
307
441
        dec_state_->shared->cmap.base()));
308
441
  }
309
13.3k
  Status dec_status = modular_frame_decoder_.DecodeGlobalInfo(
310
13.3k
      br, frame_header_, /*allow_truncated_group=*/false);
311
13.3k
  if (dec_status.IsFatalError()) return dec_status;
312
13.3k
  if (dec_status) {
313
13.3k
    decoded_dc_global_ = true;
314
13.3k
  }
315
13.3k
  return dec_status;
316
13.3k
}
317
318
15.5k
Status FrameDecoder::ProcessDCGroup(size_t dc_group_id, BitReader* br) {
319
15.5k
  const size_t gx = dc_group_id % frame_dim_.xsize_dc_groups;
320
15.5k
  const size_t gy = dc_group_id / frame_dim_.xsize_dc_groups;
321
15.5k
  const LoopFilter& lf = frame_header_.loop_filter;
322
15.5k
  if (frame_header_.encoding == FrameEncoding::kVarDCT &&
323
5.76k
      !(frame_header_.flags & FrameHeader::kUseDcFrame)) {
324
5.76k
    JXL_RETURN_IF_ERROR(modular_frame_decoder_.DecodeVarDCTDC(
325
5.76k
        frame_header_, dc_group_id, br, dec_state_));
326
5.76k
  }
327
15.5k
  const Rect mrect(gx * frame_dim_.dc_group_dim, gy * frame_dim_.dc_group_dim,
328
15.5k
                   frame_dim_.dc_group_dim, frame_dim_.dc_group_dim);
329
15.5k
  JXL_RETURN_IF_ERROR(modular_frame_decoder_.DecodeGroup(
330
15.5k
      frame_header_, mrect, br, 3, 1000,
331
15.5k
      ModularStreamId::ModularDC(dc_group_id),
332
15.5k
      /*zerofill=*/false, nullptr, nullptr,
333
15.5k
      /*allow_truncated=*/false));
334
15.5k
  if (frame_header_.encoding == FrameEncoding::kVarDCT) {
335
5.75k
    JXL_RETURN_IF_ERROR(modular_frame_decoder_.DecodeAcMetadata(
336
5.75k
        frame_header_, dc_group_id, br, dec_state_));
337
9.81k
  } else if (lf.epf_iters > 0) {
338
2.60k
    FillImage(kInvSigmaNum / lf.epf_sigma_for_modular, &dec_state_->sigma);
339
2.60k
  }
340
15.5k
  decoded_dc_groups_[dc_group_id] = JXL_TRUE;
341
15.5k
  return true;
342
15.5k
}
343
344
13.3k
Status FrameDecoder::FinalizeDC() {
345
  // Do Adaptive DC smoothing if enabled. This *must* happen between all the
346
  // ProcessDCGroup and ProcessACGroup.
347
13.3k
  JxlMemoryManager* memory_manager = dec_state_->memory_manager();
348
13.3k
  if (frame_header_.encoding == FrameEncoding::kVarDCT &&
349
5.70k
      !(frame_header_.flags & FrameHeader::kSkipAdaptiveDCSmoothing) &&
350
5.70k
      !(frame_header_.flags & FrameHeader::kUseDcFrame)) {
351
5.70k
    JXL_RETURN_IF_ERROR(AdaptiveDCSmoothing(
352
5.70k
        memory_manager, dec_state_->shared->quantizer.MulDC(),
353
5.70k
        &dec_state_->shared_storage.dc_storage, pool_));
354
5.70k
  }
355
356
13.3k
  finalized_dc_ = true;
357
13.3k
  return true;
358
13.3k
}
359
360
13.3k
Status FrameDecoder::AllocateOutput() {
361
13.3k
  if (allocated_) return true;
362
13.3k
  modular_frame_decoder_.MaybeDropFullImage();
363
13.3k
  decoded_->origin = frame_header_.frame_origin;
364
13.3k
  JXL_RETURN_IF_ERROR(
365
13.3k
      dec_state_->InitForAC(frame_header_.passes.num_passes, nullptr));
366
13.3k
  allocated_ = true;
367
13.3k
  return true;
368
13.3k
}
369
370
13.3k
Status FrameDecoder::ProcessACGlobal(BitReader* br) {
371
13.3k
  JXL_ENSURE(finalized_dc_);
372
13.3k
  JxlMemoryManager* memory_manager = dec_state_->memory_manager();
373
374
  // Decode AC group.
375
13.3k
  if (frame_header_.encoding == FrameEncoding::kVarDCT) {
376
5.70k
    JXL_RETURN_IF_ERROR(dec_state_->shared_storage.matrices.Decode(
377
5.70k
        memory_manager, br, &modular_frame_decoder_));
378
5.70k
    JXL_RETURN_IF_ERROR(dec_state_->shared_storage.matrices.EnsureComputed(
379
5.70k
        memory_manager, dec_state_->used_acs));
380
381
5.70k
    size_t num_histo_bits =
382
5.70k
        CeilLog2Nonzero(dec_state_->shared->frame_dim.num_groups);
383
5.70k
    dec_state_->shared_storage.num_histograms =
384
5.70k
        1 + br->ReadBits(num_histo_bits);
385
386
5.70k
    JXL_DEBUG_V(3,
387
5.70k
                "Processing AC global with %d passes and %" PRIuS
388
5.70k
                " sets of histograms",
389
5.70k
                frame_header_.passes.num_passes,
390
5.70k
                dec_state_->shared_storage.num_histograms);
391
392
5.70k
    dec_state_->code.resize(kMaxNumPasses);
393
5.70k
    dec_state_->context_map.resize(kMaxNumPasses);
394
    // Read coefficient orders and histograms.
395
5.70k
    size_t max_num_bits_ac = 0;
396
11.4k
    for (size_t i = 0; i < frame_header_.passes.num_passes; i++) {
397
5.70k
      uint16_t used_orders = U32Coder::Read(kOrderEnc, br);
398
5.70k
      JXL_RETURN_IF_ERROR(DecodeCoeffOrders(
399
5.70k
          memory_manager, used_orders, dec_state_->used_acs,
400
5.70k
          &dec_state_->shared_storage
401
5.70k
               .coeff_orders[i * dec_state_->shared_storage.coeff_order_size],
402
5.70k
          br));
403
5.70k
      size_t num_contexts =
404
5.70k
          dec_state_->shared->num_histograms *
405
5.70k
          dec_state_->shared_storage.block_ctx_map.NumACContexts();
406
5.70k
      JXL_RETURN_IF_ERROR(DecodeHistograms(memory_manager, br, num_contexts,
407
5.70k
                                           &dec_state_->code[i],
408
5.70k
                                           &dec_state_->context_map[i]));
409
      // Add extra values to enable the cheat in hot loop of DecodeACVarBlock.
410
5.70k
      dec_state_->context_map[i].resize(
411
5.70k
          num_contexts + kZeroDensityContextLimit - kZeroDensityContextCount);
412
5.70k
      max_num_bits_ac =
413
5.70k
          std::max(max_num_bits_ac, dec_state_->code[i].max_num_bits);
414
5.70k
    }
415
5.70k
    max_num_bits_ac += CeilLog2Nonzero(frame_header_.passes.num_passes);
416
    // 16-bit buffer for decoding to JPEG are not implemented.
417
    // TODO(veluca): figure out the exact limit - 16 should still work with
418
    // 16-bit buffers, but we are excluding it for safety.
419
5.70k
    bool use_16_bit = max_num_bits_ac < 16 && !decoded_->IsJPEG();
420
5.70k
    bool store = frame_header_.passes.num_passes > 1;
421
5.70k
    size_t xs = store ? kGroupDim * kGroupDim : 0;
422
5.70k
    size_t ys = store ? frame_dim_.num_groups : 0;
423
5.70k
    if (use_16_bit) {
424
4.71k
      JXL_ASSIGN_OR_RETURN(dec_state_->coefficients,
425
4.71k
                           ACImageT<int16_t>::Make(memory_manager, xs, ys));
426
4.71k
    } else {
427
993
      JXL_ASSIGN_OR_RETURN(dec_state_->coefficients,
428
993
                           ACImageT<int32_t>::Make(memory_manager, xs, ys));
429
993
    }
430
5.70k
    if (store) {
431
1
      dec_state_->coefficients->ZeroFill();
432
1
    }
433
5.70k
  }
434
435
  // Set JPEG decoding data.
436
13.3k
  if (decoded_->IsJPEG()) {
437
0
    decoded_->color_transform = frame_header_.color_transform;
438
0
    decoded_->chroma_subsampling = frame_header_.chroma_subsampling;
439
0
    const std::vector<QuantEncoding>& qe =
440
0
        dec_state_->shared_storage.matrices.encodings();
441
0
    if (qe.empty() || qe[0].mode != QuantEncoding::Mode::kQuantModeRAW ||
442
0
        std::abs(qe[0].qraw.qtable_den - 1.f / (8 * 255)) > 1e-8f) {
443
0
      return JXL_FAILURE(
444
0
          "Quantization table is not a JPEG quantization table.");
445
0
    }
446
0
    jpeg::JPEGData* jpeg_data = decoded_->jpeg_data.get();
447
0
    size_t num_components = jpeg_data->components.size();
448
0
    bool is_gray = (num_components == 1);
449
0
    JXL_ENSURE(frame_header_.color_transform != ColorTransform::kXYB);
450
0
    auto jpeg_c_map = JpegOrder(frame_header_.color_transform, is_gray);
451
0
    size_t qt_set = 0;
452
0
    JXL_ENSURE(num_components <= 3);
453
0
    JXL_ENSURE(qe[0].qraw.qtable->size() == 3 * 8 * 8);
454
0
    int* qtable = qe[0].qraw.qtable->data();
455
0
    for (size_t c = 0; c < num_components; c++) {
456
      // TODO(eustas): why 1-st quant table for gray?
457
0
      size_t quant_c = is_gray ? 1 : c;
458
0
      size_t qpos = jpeg_data->components[jpeg_c_map[c]].quant_idx;
459
0
      JXL_ENSURE(qpos != jpeg_data->quant.size());
460
0
      qt_set |= 1 << qpos;
461
0
      for (size_t x = 0; x < 8; x++) {
462
0
        for (size_t y = 0; y < 8; y++) {
463
0
          jpeg_data->quant[qpos].values[x * 8 + y] =
464
0
              qtable[quant_c * 64 + y * 8 + x];
465
0
        }
466
0
      }
467
0
    }
468
0
    for (size_t i = 0; i < jpeg_data->quant.size(); i++) {
469
0
      if (qt_set & (1 << i)) continue;
470
0
      if (i == 0) return JXL_FAILURE("First quant table unused.");
471
      // Unused quant table is set to copy of previous quant table
472
0
      for (size_t j = 0; j < 64; j++) {
473
0
        jpeg_data->quant[i].values[j] = jpeg_data->quant[i - 1].values[j];
474
0
      }
475
0
    }
476
0
  }
477
13.3k
  decoded_ac_global_ = true;
478
13.3k
  return true;
479
13.3k
}
480
481
Status FrameDecoder::ProcessACGroup(size_t ac_group_id, PassesReaders& br,
482
                                    size_t num_passes, size_t thread,
483
18.5k
                                    bool force_draw, bool dc_only) {
484
18.5k
  size_t group_dim = frame_dim_.group_dim;
485
18.5k
  const size_t gx = ac_group_id % frame_dim_.xsize_groups;
486
18.5k
  const size_t gy = ac_group_id / frame_dim_.xsize_groups;
487
18.5k
  const size_t x = gx * group_dim;
488
18.5k
  const size_t y = gy * group_dim;
489
18.5k
  JxlMemoryManager* memory_manager = dec_state_->memory_manager();
490
18.5k
  JXL_DEBUG_V(3,
491
18.5k
              "Processing AC group %" PRIuS "(%" PRIuS ",%" PRIuS
492
18.5k
              ") group_dim: %" PRIuS " decoded passes: %u new passes: %" PRIuS,
493
18.5k
              ac_group_id, gx, gy, group_dim,
494
18.5k
              decoded_passes_per_ac_group_[ac_group_id], num_passes);
495
496
18.5k
  RenderPipelineInput render_pipeline_input =
497
18.5k
      dec_state_->render_pipeline->GetInputBuffers(ac_group_id, thread);
498
499
18.5k
  bool should_run_pipeline = true;
500
501
18.5k
  if (frame_header_.encoding == FrameEncoding::kVarDCT) {
502
6.09k
    JXL_RETURN_IF_ERROR(group_dec_caches_[thread].InitOnce(
503
6.09k
        memory_manager, frame_header_.passes.num_passes, dec_state_->used_acs));
504
6.09k
    JXL_RETURN_IF_ERROR(DecodeGroup(
505
6.09k
        frame_header_, br.data(), num_passes, ac_group_id, dec_state_,
506
6.09k
        &group_dec_caches_[thread], thread, render_pipeline_input,
507
6.09k
        decoded_->jpeg_data.get(), decoded_passes_per_ac_group_[ac_group_id],
508
6.09k
        force_draw, dc_only, &should_run_pipeline));
509
6.09k
  }
510
511
  // don't limit to image dimensions here (is done in DecodeGroup)
512
18.5k
  const Rect mrect(x, y, group_dim, group_dim);
513
18.5k
  bool modular_ready = false;
514
18.5k
  size_t pass0 = decoded_passes_per_ac_group_[ac_group_id];
515
18.5k
  size_t pass1 =
516
18.5k
      force_draw ? frame_header_.passes.num_passes : pass0 + num_passes;
517
37.0k
  for (size_t i = pass0; i < pass1; ++i) {
518
18.5k
    int minShift;
519
18.5k
    int maxShift;
520
18.5k
    frame_header_.passes.GetDownsamplingBracket(i, minShift, maxShift);
521
18.5k
    bool modular_pass_ready = true;
522
18.5k
    JXL_DEBUG_V(2, "Decoding modular in group %d pass %d",
523
18.5k
                static_cast<int>(ac_group_id), static_cast<int>(i));
524
18.5k
    if (i < pass0 + num_passes) {  // i.e. i - pass0 < num_passes
525
18.5k
      BitReader* r = br[i - pass0];
526
18.5k
      JXL_ENSURE(r);
527
18.5k
      JXL_DEBUG_V(2, "Bit reader position: %" PRIuS " / %" PRIuS,
528
18.5k
                  r->TotalBitsConsumed(), r->TotalBytes() * kBitsPerByte);
529
18.5k
      JXL_RETURN_IF_ERROR(modular_frame_decoder_.DecodeGroup(
530
18.5k
          frame_header_, mrect, r, minShift, maxShift,
531
18.5k
          ModularStreamId::ModularAC(ac_group_id, i),
532
18.5k
          /*zerofill=*/false, dec_state_, &render_pipeline_input,
533
18.5k
          /*allow_truncated=*/false, &modular_pass_ready));
534
18.4E
    } else {
535
18.4E
      JXL_RETURN_IF_ERROR(modular_frame_decoder_.DecodeGroup(
536
18.4E
          frame_header_, mrect, nullptr, minShift, maxShift,
537
18.4E
          ModularStreamId::ModularAC(ac_group_id, i), /*zerofill=*/true,
538
18.4E
          dec_state_, &render_pipeline_input,
539
18.4E
          /*allow_truncated=*/false, &modular_pass_ready));
540
18.4E
    }
541
18.4k
    if (modular_pass_ready) modular_ready = true;
542
18.4k
  }
543
18.4k
  decoded_passes_per_ac_group_[ac_group_id] += num_passes;
544
545
18.4k
  const bool render_noise =
546
18.4k
      ((frame_header_.flags & FrameHeader::kNoise) != 0) &&
547
3.45k
      (frame_header_.dc_level == 0);
548
18.4k
  if (render_noise) {
549
3.19k
    PrepareNoiseInput(*dec_state_, frame_dim_, frame_header_, ac_group_id,
550
3.19k
                      thread);
551
3.19k
  }
552
553
18.4k
  if (!modular_frame_decoder_.UsesFullImage() && !decoded_->IsJPEG()) {
554
9.89k
    if (should_run_pipeline && modular_ready) {
555
9.85k
      JXL_RETURN_IF_ERROR(render_pipeline_input.Done());
556
9.85k
    } else if (force_draw) {
557
0
      return JXL_FAILURE("Modular group decoding failed.");
558
0
    }
559
9.89k
  }
560
18.4k
  return true;
561
18.4k
}
562
563
void FrameDecoder::MarkSections(const SectionInfo* sections, size_t num,
564
13.2k
                                const SectionStatus* section_status) {
565
13.2k
  num_sections_done_ += num;
566
36.0k
  for (size_t i = 0; i < num; i++) {
567
22.7k
    if (section_status[i] != SectionStatus::kDone) {
568
9
      processed_section_[sections[i].id] = JXL_FALSE;
569
9
      num_sections_done_--;
570
9
    }
571
22.7k
  }
572
13.2k
}
573
574
Status FrameDecoder::ProcessSections(const SectionInfo* sections, size_t num,
575
13.5k
                                     SectionStatus* section_status) {
576
13.5k
  if (num == 0) return true;  // Nothing to process
577
13.4k
  std::fill(section_status, section_status + num, SectionStatus::kSkipped);
578
13.4k
  size_t dc_global_sec = num;
579
13.4k
  size_t ac_global_sec = num;
580
13.4k
  std::vector<size_t> dc_group_sec(frame_dim_.num_dc_groups, num);
581
13.4k
  std::vector<std::vector<size_t>> ac_group_sec(
582
13.4k
      frame_dim_.num_groups,
583
13.4k
      std::vector<size_t>(frame_header_.passes.num_passes, num));
584
  // This keeps track of the number of ac passes we want to process during this
585
  // call of ProcessSections.
586
13.4k
  std::vector<size_t> desired_num_ac_passes(frame_dim_.num_groups);
587
13.4k
  bool single_section =
588
13.4k
      frame_dim_.num_groups == 1 && frame_header_.passes.num_passes == 1;
589
13.4k
  if (single_section) {
590
12.2k
    JXL_ENSURE(num == 1);
591
12.2k
    JXL_ENSURE(sections[0].id == 0);
592
12.2k
    if (processed_section_[0] == JXL_FALSE) {
593
12.2k
      processed_section_[0] = JXL_TRUE;
594
12.2k
      ac_group_sec[0].resize(1);
595
12.2k
      dc_global_sec = ac_global_sec = dc_group_sec[0] = ac_group_sec[0][0] = 0;
596
12.2k
      desired_num_ac_passes[0] = 1;
597
12.2k
    } else {
598
0
      section_status[0] = SectionStatus::kDuplicate;
599
0
    }
600
12.2k
  } else {
601
1.21k
    size_t ac_global_index = frame_dim_.num_dc_groups + 1;
602
15.6k
    for (size_t i = 0; i < num; i++) {
603
14.4k
      JXL_ENSURE(sections[i].id < processed_section_.size());
604
14.4k
      if (processed_section_[sections[i].id]) {
605
0
        section_status[i] = SectionStatus::kDuplicate;
606
0
        continue;
607
0
      }
608
14.4k
      if (sections[i].id == 0) {
609
1.21k
        dc_global_sec = i;
610
13.1k
      } else if (sections[i].id < ac_global_index) {
611
4.96k
        dc_group_sec[sections[i].id - 1] = i;
612
8.22k
      } else if (sections[i].id == ac_global_index) {
613
1.19k
        ac_global_sec = i;
614
7.03k
      } else {
615
7.03k
        size_t ac_idx = sections[i].id - ac_global_index - 1;
616
7.03k
        size_t acg = ac_idx % frame_dim_.num_groups;
617
7.03k
        size_t acp = ac_idx / frame_dim_.num_groups;
618
7.03k
        if (acp >= frame_header_.passes.num_passes) {
619
0
          return JXL_FAILURE("Invalid section ID");
620
0
        }
621
7.03k
        ac_group_sec[acg][acp] = i;
622
7.03k
      }
623
14.4k
      processed_section_[sections[i].id] = JXL_TRUE;
624
14.4k
    }
625
    // Count number of new passes per group.
626
75.9k
    for (size_t g = 0; g < ac_group_sec.size(); g++) {
627
74.7k
      size_t j = 0;
628
81.7k
      for (; j + decoded_passes_per_ac_group_[g] <
629
81.7k
             frame_header_.passes.num_passes;
630
74.8k
           j++) {
631
74.8k
        if (ac_group_sec[g][j + decoded_passes_per_ac_group_[g]] == num) {
632
67.8k
          break;
633
67.8k
        }
634
74.8k
      }
635
74.7k
      desired_num_ac_passes[g] = j;
636
74.7k
    }
637
1.21k
  }
638
13.4k
  if (dc_global_sec != num) {
639
13.4k
    Status dc_global_status = ProcessDCGlobal(sections[dc_global_sec].br);
640
13.4k
    if (dc_global_status.IsFatalError()) return dc_global_status;
641
13.3k
    if (dc_global_status) {
642
13.3k
      section_status[dc_global_sec] = SectionStatus::kDone;
643
13.3k
    } else {
644
3
      section_status[dc_global_sec] = SectionStatus::kPartial;
645
3
    }
646
13.3k
  }
647
648
13.3k
  if (decoded_dc_global_) {
649
13.3k
    const auto process_section = [this, &dc_group_sec, &num, &sections,
650
13.3k
                                  &section_status](size_t i,
651
16.0k
                                                   size_t thread) -> Status {
652
16.0k
      if (dc_group_sec[i] != num) {
653
15.6k
        JXL_RETURN_IF_ERROR(ProcessDCGroup(i, sections[dc_group_sec[i]].br));
654
15.6k
        section_status[dc_group_sec[i]] = SectionStatus::kDone;
655
15.6k
      }
656
16.0k
      return true;
657
16.0k
    };
658
13.3k
    JXL_RETURN_IF_ERROR(RunOnPool(pool_, 0, dc_group_sec.size(),
659
13.3k
                                  ThreadPool::NoInit, process_section,
660
13.3k
                                  "DecodeDCGroup"));
661
13.3k
  }
662
663
13.3k
  const bool render_noise =
664
13.3k
      ((frame_header_.flags & FrameHeader::kNoise) != 0) &&
665
2.06k
      (frame_header_.dc_level == 0);
666
13.3k
  if (!HasDcGroupToDecode() && !finalized_dc_) {
667
13.3k
    PassesDecoderState::PipelineOptions pipeline_options;
668
13.3k
    pipeline_options.use_slow_render_pipeline = use_slow_rendering_pipeline_;
669
13.3k
    pipeline_options.coalescing = coalescing_;
670
13.3k
    pipeline_options.render_spotcolors = render_spotcolors_;
671
13.3k
    pipeline_options.render_noise = render_noise;
672
13.3k
    JXL_RETURN_IF_ERROR(dec_state_->PreparePipeline(
673
13.3k
        frame_header_, &frame_header_.nonserialized_metadata->m, decoded_,
674
13.3k
        pipeline_options));
675
13.3k
    JXL_RETURN_IF_ERROR(FinalizeDC());
676
13.3k
    JXL_RETURN_IF_ERROR(AllocateOutput());
677
13.3k
    if (progressive_detail_ >= JxlProgressiveDetail::kDC) {
678
0
      MarkSections(sections, num, section_status);
679
0
      return true;
680
0
    }
681
13.3k
  }
682
683
13.3k
  if (finalized_dc_ && ac_global_sec != num && !decoded_ac_global_) {
684
13.3k
    JXL_RETURN_IF_ERROR(ProcessACGlobal(sections[ac_global_sec].br));
685
13.3k
    section_status[ac_global_sec] = SectionStatus::kDone;
686
13.3k
  }
687
688
13.3k
  if (progressive_detail_ >= JxlProgressiveDetail::kLastPasses) {
689
    // Mark that we only want the next progression pass.
690
0
    size_t target_complete_passes = NextNumPassesToPause();
691
0
    for (size_t i = 0; i < ac_group_sec.size(); i++) {
692
0
      desired_num_ac_passes[i] =
693
0
          std::min(desired_num_ac_passes[i],
694
0
                   target_complete_passes - decoded_passes_per_ac_group_[i]);
695
0
    }
696
0
  }
697
698
13.3k
  if (decoded_ac_global_) {
699
    // Mark all the AC groups that we received as not complete yet.
700
48.4k
    for (size_t i = 0; i < ac_group_sec.size(); i++) {
701
35.1k
      if (desired_num_ac_passes[i] != 0) {
702
18.8k
        dec_state_->render_pipeline->ClearDone(i);
703
18.8k
      }
704
35.1k
    }
705
706
13.3k
    const auto prepare_storage = [this](size_t num_threads) -> Status {
707
13.3k
      JXL_RETURN_IF_ERROR(
708
13.3k
          PrepareStorage(num_threads, decoded_passes_per_ac_group_.size()));
709
13.3k
      return true;
710
13.3k
    };
711
13.3k
    const auto process_group = [this, &ac_group_sec, &desired_num_ac_passes,
712
13.3k
                                &num, &sections, &section_status](
713
28.7k
                                   size_t g, size_t thread) -> Status {
714
28.7k
      if (desired_num_ac_passes[g] == 0) {
715
        // no new AC pass, nothing to do
716
10.1k
        return true;
717
10.1k
      }
718
18.5k
      size_t first_pass = decoded_passes_per_ac_group_[g];
719
18.5k
      PassesReaders readers = {};
720
37.1k
      for (size_t i = 0; i < desired_num_ac_passes[g]; i++) {
721
18.6k
        JXL_ENSURE(ac_group_sec[g][first_pass + i] != num);
722
18.6k
        readers[i] = sections[ac_group_sec[g][first_pass + i]].br;
723
18.6k
      }
724
18.5k
      JXL_RETURN_IF_ERROR(ProcessACGroup(
725
18.5k
          g, readers, desired_num_ac_passes[g], GetStorageLocation(thread, g),
726
18.5k
          /*force_draw=*/false, /*dc_only=*/false));
727
36.9k
      for (size_t i = 0; i < desired_num_ac_passes[g]; i++) {
728
18.5k
        section_status[ac_group_sec[g][first_pass + i]] = SectionStatus::kDone;
729
18.5k
      }
730
18.4k
      return true;
731
18.5k
    };
732
13.3k
    JXL_RETURN_IF_ERROR(RunOnPool(pool_, 0, ac_group_sec.size(),
733
13.3k
                                  prepare_storage, process_group,
734
13.3k
                                  "DecodeGroup"));
735
13.3k
  }
736
737
13.2k
  MarkSections(sections, num, section_status);
738
13.2k
  return true;
739
13.3k
}
740
741
0
Status FrameDecoder::Flush() {
742
0
  bool has_blending = frame_header_.blending_info.mode != BlendMode::kReplace ||
743
0
                      frame_header_.custom_size_or_origin;
744
0
  for (const auto& blending_info_ec :
745
0
       frame_header_.extra_channel_blending_info) {
746
0
    if (blending_info_ec.mode != BlendMode::kReplace) has_blending = true;
747
0
  }
748
  // No early Flush() if blending is enabled.
749
0
  if (has_blending && !is_finalized_) {
750
0
    return false;
751
0
  }
752
  // No early Flush() - nothing to do - if the frame is a kSkipProgressive
753
  // frame.
754
0
  if (frame_header_.frame_type == FrameType::kSkipProgressive &&
755
0
      !is_finalized_) {
756
0
    return true;
757
0
  }
758
0
  if (decoded_->IsJPEG()) {
759
    // Nothing to do.
760
0
    return true;
761
0
  }
762
0
  JXL_RETURN_IF_ERROR(AllocateOutput());
763
764
0
  uint32_t completely_decoded_ac_pass = *std::min_element(
765
0
      decoded_passes_per_ac_group_.begin(), decoded_passes_per_ac_group_.end());
766
0
  if (completely_decoded_ac_pass < frame_header_.passes.num_passes) {
767
    // We don't have all AC yet: force a draw of all the missing areas.
768
    // Mark all sections as not complete.
769
0
    for (size_t i = 0; i < decoded_passes_per_ac_group_.size(); i++) {
770
0
      if (decoded_passes_per_ac_group_[i] < frame_header_.passes.num_passes) {
771
0
        dec_state_->render_pipeline->ClearDone(i);
772
0
      }
773
0
    }
774
0
    const auto prepare_storage = [this](const size_t num_threads) -> Status {
775
0
      JXL_RETURN_IF_ERROR(
776
0
          PrepareStorage(num_threads, decoded_passes_per_ac_group_.size()));
777
0
      return true;
778
0
    };
779
0
    const auto process_group = [this](const uint32_t g,
780
0
                                      size_t thread) -> Status {
781
0
      if (decoded_passes_per_ac_group_[g] == frame_header_.passes.num_passes) {
782
        // This group was drawn already, nothing to do.
783
0
        return true;
784
0
      }
785
0
      PassesReaders readers = {};
786
0
      JXL_RETURN_IF_ERROR(ProcessACGroup(
787
0
          g, readers, /*num_passes=*/0, GetStorageLocation(thread, g),
788
0
          /*force_draw=*/true, /*dc_only=*/!decoded_ac_global_));
789
0
      return true;
790
0
    };
791
0
    JXL_RETURN_IF_ERROR(RunOnPool(pool_, 0, decoded_passes_per_ac_group_.size(),
792
0
                                  prepare_storage, process_group,
793
0
                                  "ForceDrawGroup"));
794
0
  }
795
796
  // undo global modular transforms and copy int pixel buffers to float ones
797
0
  JXL_RETURN_IF_ERROR(modular_frame_decoder_.FinalizeDecoding(
798
0
      frame_header_, dec_state_, pool_, is_finalized_));
799
800
0
  return true;
801
0
}
802
803
59.3k
int FrameDecoder::SavedAs(const FrameHeader& header) {
804
59.3k
  if (header.frame_type == FrameType::kDCFrame) {
805
    // bits 16, 32, 64, 128 for DC level
806
1.69k
    return 16 << (header.dc_level - 1);
807
57.6k
  } else if (header.CanBeReferenced()) {
808
    // bits 1, 2, 4 and 8 for the references
809
54.5k
    return 1 << header.save_as_reference;
810
54.5k
  }
811
812
3.07k
  return 0;
813
59.3k
}
814
815
13.2k
bool FrameDecoder::HasEverything() const {
816
13.2k
  if (!decoded_dc_global_) return false;
817
13.2k
  if (!decoded_ac_global_) return false;
818
13.2k
  if (HasDcGroupToDecode()) return false;
819
14.8k
  for (const auto& nb_passes : decoded_passes_per_ac_group_) {
820
14.8k
    if (nb_passes < frame_header_.passes.num_passes) return false;
821
14.8k
  }
822
13.2k
  return true;
823
13.2k
}
824
825
13.2k
int FrameDecoder::References() const {
826
13.2k
  if (is_finalized_) {
827
0
    return 0;
828
0
  }
829
13.2k
  if (!HasEverything()) return 0;
830
831
13.2k
  int result = 0;
832
833
  // Blending
834
13.2k
  if (frame_header_.frame_type == FrameType::kRegularFrame ||
835
11.2k
      frame_header_.frame_type == FrameType::kSkipProgressive) {
836
11.2k
    bool cropped = frame_header_.custom_size_or_origin;
837
11.2k
    if (cropped || frame_header_.blending_info.mode != BlendMode::kReplace) {
838
2.58k
      result |= (1 << frame_header_.blending_info.source);
839
2.58k
    }
840
11.2k
    const auto& extra = frame_header_.extra_channel_blending_info;
841
11.2k
    for (const auto& ecbi : extra) {
842
980
      if (cropped || ecbi.mode != BlendMode::kReplace) {
843
734
        result |= (1 << ecbi.source);
844
734
      }
845
980
    }
846
11.2k
  }
847
848
  // Patches
849
13.2k
  if (frame_header_.flags & FrameHeader::kPatches) {
850
949
    result |= dec_state_->shared->image_features.patches.GetReferences();
851
949
  }
852
853
  // DC Level
854
13.2k
  if (frame_header_.flags & FrameHeader::kUseDcFrame) {
855
    // Reads from the next dc level
856
0
    int dc_level = frame_header_.dc_level + 1;
857
    // bits 16, 32, 64, 128 for DC level
858
0
    result |= (16 << (dc_level - 1));
859
0
  }
860
861
13.2k
  return result;
862
13.2k
}
863
864
13.2k
Status FrameDecoder::FinalizeFrame() {
865
13.2k
  if (is_finalized_) {
866
0
    return JXL_FAILURE("FinalizeFrame called multiple times");
867
0
  }
868
13.2k
  is_finalized_ = true;
869
13.2k
  if (decoded_->IsJPEG()) {
870
    // Nothing to do.
871
0
    return true;
872
0
  }
873
874
  // undo global modular transforms and copy int pixel buffers to float ones
875
13.2k
  JXL_RETURN_IF_ERROR(
876
13.2k
      modular_frame_decoder_.FinalizeDecoding(frame_header_, dec_state_, pool_,
877
13.2k
                                              /*inplace=*/true));
878
879
13.2k
  if (frame_header_.CanBeReferenced()) {
880
10.4k
    auto& info = dec_state_->shared_storage
881
10.4k
                     .reference_frames[frame_header_.save_as_reference];
882
10.4k
    *info.frame = std::move(dec_state_->frame_storage_for_referencing);
883
10.4k
    info.ib_is_in_xyb = frame_header_.save_before_color_transform;
884
10.4k
  }
885
13.2k
  return true;
886
13.2k
}
887
888
}  // namespace jxl