Coverage Report

Created: 2026-09-13 07:02

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/modular/transform/palette.cc
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// 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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#include "lib/jxl/modular/transform/palette.h"
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#include <jxl/memory_manager.h>
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#include <algorithm>
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#include <cstddef>
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#include <cstdint>
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#include <utility>
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#include <vector>
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#include "lib/jxl/base/common.h"
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#include "lib/jxl/base/compiler_specific.h"
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#include "lib/jxl/base/data_parallel.h"
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#include "lib/jxl/base/status.h"
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#include "lib/jxl/image.h"
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#include "lib/jxl/modular/encoding/context_predict.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"  // CheckEqualChannels
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namespace jxl {
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Status InvPalette(Image &input, uint32_t begin_c, uint32_t nb_colors,
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                  uint32_t nb_deltas, Predictor predictor,
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                  const weighted::Header &wp_header, ThreadPool *pool) {
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  JxlMemoryManager *memory_manager = input.memory_manager();
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  if (input.nb_meta_channels < 1) {
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    return JXL_FAILURE("Error: Palette transform without palette.");
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  }
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  int nb = input.channel[0].h;
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  uint32_t c0 = begin_c + 1;
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  if (c0 >= input.channel.size()) {
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    return JXL_FAILURE("Channel is out of range.");
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  }
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  size_t w = input.channel[c0].w;
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  size_t h = input.channel[c0].h;
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  if (nb < 1) return JXL_FAILURE("Corrupted transforms");
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  for (int i = 1; i < nb; i++) {
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    JXL_ASSIGN_OR_RETURN(Channel c, Channel::Create(memory_manager, w, h,
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                                                    input.channel[c0].hshift,
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                                                    input.channel[c0].vshift));
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    input.channel.insert(input.channel.begin() + c0 + 1, std::move(c));
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  }
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  const Channel &palette = input.channel[0];
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  const pixel_type *JXL_RESTRICT p_palette = input.channel[0].Row(0);
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  ptrdiff_t onerow = input.channel[0].plane.PixelsPerRow();
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  ptrdiff_t onerow_image = input.channel[c0].plane.PixelsPerRow();
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  const int bit_depth = std::min(input.bitdepth, 24);
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  if (w == 0) {
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    // Nothing to do.
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    // Avoid touching "empty" channels with non-zero height.
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  } else if (nb_deltas == 0 && predictor == Predictor::Zero) {
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    if (nb == 1) {
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      const auto process_row = [&](const uint32_t task,
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                                   size_t /* thread */) -> Status {
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        const size_t y = task;
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        pixel_type *p = input.channel[c0].Row(y);
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        for (size_t x = 0; x < w; x++) {
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          const int index =
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              Clamp1<int>(p[x], 0, static_cast<pixel_type>(palette.w) - 1);
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          p[x] = palette_internal::GetPaletteValue(p_palette, index, /*c=*/0,
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                                                   /*palette_size=*/palette.w,
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                                                   /*onerow=*/onerow,
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                                                   /*bit_depth=*/bit_depth);
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        }
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        return true;
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      };
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      JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, h, ThreadPool::NoInit, process_row,
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                                    "UndoChannelPalette"));
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    } else {
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      const auto process_row = [&](const uint32_t task,
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                                   size_t /* thread */) -> Status {
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        const size_t y = task;
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        std::vector<pixel_type *> p_out(nb);
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        const pixel_type *p_index = input.channel[c0].Row(y);
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        for (int c = 0; c < nb; c++) p_out[c] = input.channel[c0 + c].Row(y);
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        for (size_t x = 0; x < w; x++) {
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          const int index = p_index[x];
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          for (int c = 0; c < nb; c++) {
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            p_out[c][x] = palette_internal::GetPaletteValue(
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                p_palette, index, /*c=*/c,
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                /*palette_size=*/palette.w,
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                /*onerow=*/onerow, /*bit_depth=*/bit_depth);
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          }
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        }
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        return true;
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      };
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      JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, h, ThreadPool::NoInit, process_row,
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                                    "UndoPalette"));
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    }
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  } else {
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    // Parallelized per channel.
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    ImageI indices;
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    ImageI &plane = input.channel[c0].plane;
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    JXL_ASSIGN_OR_RETURN(
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        indices, ImageI::Create(memory_manager, plane.xsize(), plane.ysize()));
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    plane.Swap(indices);
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    if (predictor == Predictor::Weighted) {
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      const auto process_channel = [&](const uint32_t c,
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                                       size_t /* thread */) -> Status {
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        Channel &channel = input.channel[c0 + c];
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        weighted::State wp_state(wp_header, channel.w, channel.h);
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        for (size_t y = 0; y < channel.h; y++) {
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          pixel_type *JXL_RESTRICT p = channel.Row(y);
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          const pixel_type *JXL_RESTRICT idx = indices.Row(y);
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          for (size_t x = 0; x < channel.w; x++) {
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            int index = idx[x];
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            pixel_type_w val = 0;
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            const pixel_type palette_entry = palette_internal::GetPaletteValue(
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                p_palette, index, /*c=*/c,
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                /*palette_size=*/palette.w, /*onerow=*/onerow,
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                /*bit_depth=*/bit_depth);
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            PredictionResult pred = PredictNoTreeWP(
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                channel.w, p + x, onerow_image, x, y, predictor, &wp_state);
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            if (index < static_cast<int32_t>(nb_deltas)) {
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              val = pred.guess + palette_entry;
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            } else {
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              val = palette_entry;
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            }
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            p[x] = val;
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            wp_state.UpdateErrors(p[x], x, y, channel.w);
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          }
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        }
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        return true;
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      };
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      JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, nb, ThreadPool::NoInit,
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                                    process_channel, "UndoDeltaPaletteWP"));
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    } else {
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      const auto process_channel = [&](const uint32_t c,
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                                       size_t /* thread */) -> Status {
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        Channel &channel = input.channel[c0 + c];
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        for (size_t y = 0; y < channel.h; y++) {
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          pixel_type *JXL_RESTRICT p = channel.Row(y);
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          const pixel_type *JXL_RESTRICT idx = indices.Row(y);
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          for (size_t x = 0; x < channel.w; x++) {
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            int index = idx[x];
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            pixel_type_w val = 0;
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            const pixel_type palette_entry = palette_internal::GetPaletteValue(
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                p_palette, index, /*c=*/c,
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                /*palette_size=*/palette.w,
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                /*onerow=*/onerow, /*bit_depth=*/bit_depth);
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            if (index < static_cast<int32_t>(nb_deltas)) {
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              PredictionResult pred = PredictNoTreeNoWP(
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                  channel.w, p + x, onerow_image, x, y, predictor);
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              val = pred.guess + palette_entry;
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            } else {
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              val = palette_entry;
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            }
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            p[x] = val;
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          }
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        }
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        return true;
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      };
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      JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, nb, ThreadPool::NoInit,
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                                    process_channel, "UndoDeltaPaletteNoWP"));
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    }
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  }
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  if (c0 >= input.nb_meta_channels) {
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    // Palette was done on normal channels
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    input.nb_meta_channels--;
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  } else {
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    // Palette was done on metachannels
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    JXL_ENSURE(static_cast<int>(input.nb_meta_channels) >= 2 - nb);
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    input.nb_meta_channels -= 2 - nb;
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    JXL_ENSURE(begin_c + nb - 1 < input.nb_meta_channels);
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  }
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  input.channel.erase(input.channel.begin(), input.channel.begin() + 1);
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  return true;
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}
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Status MetaPalette(Image &input, uint32_t begin_c, uint32_t end_c,
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                   uint32_t nb_colors, uint32_t nb_deltas, bool lossy) {
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  JXL_RETURN_IF_ERROR(CheckEqualChannels(input, begin_c, end_c));
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  JxlMemoryManager *memory_manager = input.memory_manager();
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  size_t nb = end_c - begin_c + 1;
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  if (begin_c >= input.nb_meta_channels) {
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    // Palette was done on normal channels
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    input.nb_meta_channels++;
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  } else {
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    // Palette was done on metachannels
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    JXL_ENSURE(end_c < input.nb_meta_channels);
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    // we remove nb-1 metachannels and add one
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    input.nb_meta_channels += 2 - nb;
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  }
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  input.channel.erase(input.channel.begin() + begin_c + 1,
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                      input.channel.begin() + end_c + 1);
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  JXL_ASSIGN_OR_RETURN(
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      Channel pch, Channel::Create(memory_manager, nb_colors + nb_deltas, nb));
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  pch.hshift = -1;
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  pch.vshift = -1;
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  input.channel.insert(input.channel.begin(), std::move(pch));
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  return true;
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}
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}  // namespace jxl