Coverage Report

Created: 2026-02-14 07:11

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/modular/encoding/encoding.h
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Source
1
// Copyright (c) the JPEG XL Project Authors. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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#ifndef LIB_JXL_MODULAR_ENCODING_ENCODING_H_
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#define LIB_JXL_MODULAR_ENCODING_ENCODING_H_
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#include <array>
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#include <cstddef>
11
#include <cstdint>
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#include <limits>
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#include <vector>
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15
#include "lib/jxl/base/compiler_specific.h"
16
#include "lib/jxl/base/status.h"
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#include "lib/jxl/field_encodings.h"
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#include "lib/jxl/modular/encoding/context_predict.h"
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#include "lib/jxl/modular/encoding/dec_ma.h"
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#include "lib/jxl/modular/modular_image.h"
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#include "lib/jxl/modular/options.h"
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#include "lib/jxl/modular/transform/transform.h"
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namespace jxl {
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struct ANSCode;
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class BitReader;
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// Valid range of properties for using lookup tables instead of trees.
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constexpr int32_t kPropRangeFast = 512 << 4;
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struct GroupHeader : public Fields {
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  GroupHeader();
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  JXL_FIELDS_NAME(GroupHeader)
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236k
  Status VisitFields(Visitor *JXL_RESTRICT visitor) override {
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236k
    JXL_QUIET_RETURN_IF_ERROR(visitor->Bool(false, &use_global_tree));
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236k
    JXL_QUIET_RETURN_IF_ERROR(visitor->VisitNested(&wp_header));
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235k
    uint32_t num_transforms = static_cast<uint32_t>(transforms.size());
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235k
    JXL_QUIET_RETURN_IF_ERROR(visitor->U32(Val(0), Val(1), BitsOffset(4, 2),
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235k
                                           BitsOffset(8, 18), 0,
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235k
                                           &num_transforms));
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235k
    if (visitor->IsReading()) transforms.resize(num_transforms);
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261k
    for (size_t i = 0; i < num_transforms; i++) {
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25.6k
      JXL_QUIET_RETURN_IF_ERROR(visitor->VisitNested(&transforms[i]));
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25.6k
    }
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235k
    return true;
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235k
  }
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  bool use_global_tree;
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  weighted::Header wp_header;
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  std::vector<Transform> transforms;
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};
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FlatTree FilterTree(const Tree &global_tree,
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                    std::array<pixel_type, kNumStaticProperties> &static_props,
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                    size_t *num_props, bool *use_wp, bool *wp_only,
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                    bool *gradient_only);
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template <typename T, bool HAS_OFFSETS, bool HAS_MULTIPLIERS>
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struct TreeLut {
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  std::array<T, 2 * kPropRangeFast> context_lookup;
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  std::array<int8_t, HAS_OFFSETS ? (2 * kPropRangeFast) : 0> offsets;
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  std::array<int8_t, HAS_MULTIPLIERS ? (2 * kPropRangeFast) : 0> multipliers;
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};
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template <typename T, bool HAS_OFFSETS, bool HAS_MULTIPLIERS>
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bool TreeToLookupTable(const FlatTree &tree,
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17.3k
                       TreeLut<T, HAS_OFFSETS, HAS_MULTIPLIERS> &lut) {
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17.3k
  struct TreeRange {
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    // Begin *excluded*, end *included*. This works best with > vs <= decision
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    // nodes.
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17.3k
    int begin, end;
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17.3k
    size_t pos;
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17.3k
  };
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17.3k
  std::vector<TreeRange> ranges;
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17.3k
  ranges.push_back(TreeRange{-kPropRangeFast - 1, kPropRangeFast - 1, 0});
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115k
  while (!ranges.empty()) {
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101k
    TreeRange cur = ranges.back();
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101k
    ranges.pop_back();
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101k
    if (cur.begin < -kPropRangeFast - 1 || cur.begin >= kPropRangeFast - 1 ||
84
101k
        cur.end > kPropRangeFast - 1) {
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      // Tree is outside the allowed range, exit.
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0
      return false;
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0
    }
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101k
    auto &node = tree[cur.pos];
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    // Leaf.
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101k
    if (node.property0 == -1) {
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69.0k
      if (node.predictor_offset < std::numeric_limits<int8_t>::min() ||
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68.8k
          node.predictor_offset > std::numeric_limits<int8_t>::max()) {
93
269
        return false;
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      }
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68.7k
      if (node.multiplier < std::numeric_limits<int8_t>::min() ||
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68.7k
          node.multiplier > std::numeric_limits<int8_t>::max()) {
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816
        return false;
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816
      }
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67.9k
      if (!HAS_MULTIPLIERS && node.multiplier != 1) {
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1.75k
        return false;
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1.75k
      }
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66.2k
      if (!HAS_OFFSETS && node.predictor_offset != 0) {
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262
        return false;
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262
      }
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233M
      for (int i = cur.begin + 1; i < cur.end + 1; i++) {
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233M
        lut.context_lookup[i + kPropRangeFast] = node.childID;
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233M
        if (HAS_MULTIPLIERS) {
108
0
          lut.multipliers[i + kPropRangeFast] = node.multiplier;
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0
        }
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233M
        if (HAS_OFFSETS) {
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0
          lut.offsets[i + kPropRangeFast] = node.predictor_offset;
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0
        }
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233M
      }
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65.9k
      continue;
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66.2k
    }
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    // > side of top node.
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32.3k
    if (node.properties[0] >= kNumStaticProperties) {
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8.33k
      ranges.push_back(TreeRange({node.splitvals[0], cur.end, node.childID}));
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8.33k
      ranges.push_back(
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8.33k
          TreeRange({node.splitval0, node.splitvals[0], node.childID + 1}));
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24.0k
    } else {
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24.0k
      ranges.push_back(TreeRange({node.splitval0, cur.end, node.childID}));
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24.0k
    }
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    // <= side
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32.3k
    if (node.properties[1] >= kNumStaticProperties) {
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11.0k
      ranges.push_back(
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11.0k
          TreeRange({node.splitvals[1], node.splitval0, node.childID + 2}));
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11.0k
      ranges.push_back(
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11.0k
          TreeRange({cur.begin, node.splitvals[1], node.childID + 3}));
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21.2k
    } else {
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21.2k
      ranges.push_back(
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21.2k
          TreeRange({cur.begin, node.splitval0, node.childID + 2}));
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21.2k
    }
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32.3k
  }
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14.2k
  return true;
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17.3k
}
bool jxl::TreeToLookupTable<unsigned short, false, false>(std::__1::vector<jxl::FlatDecisionNode, std::__1::allocator<jxl::FlatDecisionNode> > const&, jxl::TreeLut<unsigned short, false, false>&)
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71
11.2k
                       TreeLut<T, HAS_OFFSETS, HAS_MULTIPLIERS> &lut) {
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11.2k
  struct TreeRange {
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    // Begin *excluded*, end *included*. This works best with > vs <= decision
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    // nodes.
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11.2k
    int begin, end;
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11.2k
    size_t pos;
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11.2k
  };
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11.2k
  std::vector<TreeRange> ranges;
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11.2k
  ranges.push_back(TreeRange{-kPropRangeFast - 1, kPropRangeFast - 1, 0});
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104k
  while (!ranges.empty()) {
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93.2k
    TreeRange cur = ranges.back();
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93.2k
    ranges.pop_back();
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93.2k
    if (cur.begin < -kPropRangeFast - 1 || cur.begin >= kPropRangeFast - 1 ||
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93.2k
        cur.end > kPropRangeFast - 1) {
85
      // Tree is outside the allowed range, exit.
86
0
      return false;
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0
    }
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93.2k
    auto &node = tree[cur.pos];
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    // Leaf.
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93.2k
    if (node.property0 == -1) {
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61.7k
      if (node.predictor_offset < std::numeric_limits<int8_t>::min() ||
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61.7k
          node.predictor_offset > std::numeric_limits<int8_t>::max()) {
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0
        return false;
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0
      }
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61.7k
      if (node.multiplier < std::numeric_limits<int8_t>::min() ||
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61.7k
          node.multiplier > std::numeric_limits<int8_t>::max()) {
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0
        return false;
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0
      }
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61.7k
      if (!HAS_MULTIPLIERS && node.multiplier != 1) {
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0
        return false;
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0
      }
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61.7k
      if (!HAS_OFFSETS && node.predictor_offset != 0) {
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0
        return false;
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0
      }
105
184M
      for (int i = cur.begin + 1; i < cur.end + 1; i++) {
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184M
        lut.context_lookup[i + kPropRangeFast] = node.childID;
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184M
        if (HAS_MULTIPLIERS) {
108
0
          lut.multipliers[i + kPropRangeFast] = node.multiplier;
109
0
        }
110
184M
        if (HAS_OFFSETS) {
111
0
          lut.offsets[i + kPropRangeFast] = node.predictor_offset;
112
0
        }
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184M
      }
114
61.7k
      continue;
115
61.7k
    }
116
    // > side of top node.
117
31.5k
    if (node.properties[0] >= kNumStaticProperties) {
118
8.10k
      ranges.push_back(TreeRange({node.splitvals[0], cur.end, node.childID}));
119
8.10k
      ranges.push_back(
120
8.10k
          TreeRange({node.splitval0, node.splitvals[0], node.childID + 1}));
121
23.4k
    } else {
122
23.4k
      ranges.push_back(TreeRange({node.splitval0, cur.end, node.childID}));
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23.4k
    }
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    // <= side
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31.5k
    if (node.properties[1] >= kNumStaticProperties) {
126
10.8k
      ranges.push_back(
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10.8k
          TreeRange({node.splitvals[1], node.splitval0, node.childID + 2}));
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10.8k
      ranges.push_back(
129
10.8k
          TreeRange({cur.begin, node.splitvals[1], node.childID + 3}));
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20.7k
    } else {
131
20.7k
      ranges.push_back(
132
20.7k
          TreeRange({cur.begin, node.splitval0, node.childID + 2}));
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20.7k
    }
134
31.5k
  }
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11.2k
  return true;
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11.2k
}
bool jxl::TreeToLookupTable<unsigned char, false, false>(std::__1::vector<jxl::FlatDecisionNode, std::__1::allocator<jxl::FlatDecisionNode> > const&, jxl::TreeLut<unsigned char, false, false>&)
Line
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Source
71
6.05k
                       TreeLut<T, HAS_OFFSETS, HAS_MULTIPLIERS> &lut) {
72
6.05k
  struct TreeRange {
73
    // Begin *excluded*, end *included*. This works best with > vs <= decision
74
    // nodes.
75
6.05k
    int begin, end;
76
6.05k
    size_t pos;
77
6.05k
  };
78
6.05k
  std::vector<TreeRange> ranges;
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6.05k
  ranges.push_back(TreeRange{-kPropRangeFast - 1, kPropRangeFast - 1, 0});
80
11.0k
  while (!ranges.empty()) {
81
8.09k
    TreeRange cur = ranges.back();
82
8.09k
    ranges.pop_back();
83
8.09k
    if (cur.begin < -kPropRangeFast - 1 || cur.begin >= kPropRangeFast - 1 ||
84
8.09k
        cur.end > kPropRangeFast - 1) {
85
      // Tree is outside the allowed range, exit.
86
0
      return false;
87
0
    }
88
8.09k
    auto &node = tree[cur.pos];
89
    // Leaf.
90
8.09k
    if (node.property0 == -1) {
91
7.29k
      if (node.predictor_offset < std::numeric_limits<int8_t>::min() ||
92
7.11k
          node.predictor_offset > std::numeric_limits<int8_t>::max()) {
93
269
        return false;
94
269
      }
95
7.02k
      if (node.multiplier < std::numeric_limits<int8_t>::min() ||
96
7.02k
          node.multiplier > std::numeric_limits<int8_t>::max()) {
97
816
        return false;
98
816
      }
99
6.20k
      if (!HAS_MULTIPLIERS && node.multiplier != 1) {
100
1.75k
        return false;
101
1.75k
      }
102
4.44k
      if (!HAS_OFFSETS && node.predictor_offset != 0) {
103
262
        return false;
104
262
      }
105
48.3M
      for (int i = cur.begin + 1; i < cur.end + 1; i++) {
106
48.3M
        lut.context_lookup[i + kPropRangeFast] = node.childID;
107
48.3M
        if (HAS_MULTIPLIERS) {
108
0
          lut.multipliers[i + kPropRangeFast] = node.multiplier;
109
0
        }
110
48.3M
        if (HAS_OFFSETS) {
111
0
          lut.offsets[i + kPropRangeFast] = node.predictor_offset;
112
0
        }
113
48.3M
      }
114
4.18k
      continue;
115
4.44k
    }
116
    // > side of top node.
117
802
    if (node.properties[0] >= kNumStaticProperties) {
118
228
      ranges.push_back(TreeRange({node.splitvals[0], cur.end, node.childID}));
119
228
      ranges.push_back(
120
228
          TreeRange({node.splitval0, node.splitvals[0], node.childID + 1}));
121
574
    } else {
122
574
      ranges.push_back(TreeRange({node.splitval0, cur.end, node.childID}));
123
574
    }
124
    // <= side
125
802
    if (node.properties[1] >= kNumStaticProperties) {
126
259
      ranges.push_back(
127
259
          TreeRange({node.splitvals[1], node.splitval0, node.childID + 2}));
128
259
      ranges.push_back(
129
259
          TreeRange({cur.begin, node.splitvals[1], node.childID + 3}));
130
543
    } else {
131
543
      ranges.push_back(
132
543
          TreeRange({cur.begin, node.splitval0, node.childID + 2}));
133
543
    }
134
802
  }
135
2.95k
  return true;
136
6.05k
}
137
// TODO(veluca): make cleaner interfaces.
138
139
Status ValidateChannelDimensions(const Image &image,
140
                                 const ModularOptions &options);
141
142
Status ModularGenericDecompress(BitReader *br, Image &image,
143
                                GroupHeader *header, size_t group_id,
144
                                ModularOptions *options,
145
                                bool undo_transforms = true,
146
                                const Tree *tree = nullptr,
147
                                const ANSCode *code = nullptr,
148
                                const std::vector<uint8_t> *ctx_map = nullptr,
149
                                bool allow_truncated_group = false);
150
}  // namespace jxl
151
152
#endif  // LIB_JXL_MODULAR_ENCODING_ENCODING_H_