Coverage Report

Created: 2025-06-22 08:04

/src/libjxl/lib/jxl/image_ops.h
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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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#ifndef LIB_JXL_IMAGE_OPS_H_
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#define LIB_JXL_IMAGE_OPS_H_
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// Operations on images.
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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 <limits>
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#include "lib/jxl/base/compiler_specific.h"
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#include "lib/jxl/base/rect.h"
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#include "lib/jxl/base/status.h"
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#include "lib/jxl/frame_dimensions.h"
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#include "lib/jxl/image.h"
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namespace jxl {
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// Works for mixed image-like argument types.
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template <class Image1, class Image2>
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423k
bool SameSize(const Image1& image1, const Image2& image2) {
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423k
  return image1.xsize() == image2.xsize() && image1.ysize() == image2.ysize();
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423k
}
bool jxl::SameSize<jxl::RectT<unsigned long>, jxl::RectT<unsigned long> >(jxl::RectT<unsigned long> const&, jxl::RectT<unsigned long> const&)
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134k
bool SameSize(const Image1& image1, const Image2& image2) {
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134k
  return image1.xsize() == image2.xsize() && image1.ysize() == image2.ysize();
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134k
}
Unexecuted instantiation: bool jxl::SameSize<jxl::Plane<float>, jxl::Plane<float> >(jxl::Plane<float> const&, jxl::Plane<float> const&)
Unexecuted instantiation: bool jxl::SameSize<jxl::Plane<int>, jxl::Plane<int> >(jxl::Plane<int> const&, jxl::Plane<int> const&)
Unexecuted instantiation: bool jxl::SameSize<jxl::Plane<int>, jxl::Plane<float> >(jxl::Plane<int> const&, jxl::Plane<float> const&)
Unexecuted instantiation: bool jxl::SameSize<jxl::Image3<float>, jxl::Plane<float> >(jxl::Image3<float> const&, jxl::Plane<float> const&)
Unexecuted instantiation: bool jxl::SameSize<jxl::Image3<float>, jxl::Image3<float> >(jxl::Image3<float> const&, jxl::Image3<float> const&)
Unexecuted instantiation: bool jxl::SameSize<jxl::RectT<unsigned long>, jxl::Image3<float> >(jxl::RectT<unsigned long> const&, jxl::Image3<float> const&)
bool jxl::SameSize<jxl::RectT<unsigned long>, jxl::Plane<float> >(jxl::RectT<unsigned long> const&, jxl::Plane<float> const&)
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28
288k
bool SameSize(const Image1& image1, const Image2& image2) {
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288k
  return image1.xsize() == image2.xsize() && image1.ysize() == image2.ysize();
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288k
}
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template <typename T>
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0
Status CopyImageTo(const Plane<T>& from, Plane<T>* JXL_RESTRICT to) {
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0
  JXL_ENSURE(SameSize(from, *to));
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0
  if (from.ysize() == 0 || from.xsize() == 0) return true;
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0
  for (size_t y = 0; y < from.ysize(); ++y) {
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0
    const T* JXL_RESTRICT row_from = from.ConstRow(y);
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0
    T* JXL_RESTRICT row_to = to->Row(y);
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0
    memcpy(row_to, row_from, from.xsize() * sizeof(T));
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0
  }
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0
  return true;
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0
}
Unexecuted instantiation: jxl::Status jxl::CopyImageTo<float>(jxl::Plane<float> const&, jxl::Plane<float>*)
Unexecuted instantiation: jxl::Status jxl::CopyImageTo<int>(jxl::Plane<int> const&, jxl::Plane<int>*)
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// Copies `from:rect_from` to `to:rect_to`.
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template <typename T>
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Status CopyImageTo(const Rect& rect_from, const Plane<T>& from,
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112k
                   const Rect& rect_to, Plane<T>* JXL_RESTRICT to) {
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112k
  JXL_ENSURE(SameSize(rect_from, rect_to));
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112k
  JXL_ENSURE(rect_from.IsInside(from));
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112k
  JXL_ENSURE(rect_to.IsInside(*to));
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112k
  if (rect_from.xsize() == 0) return true;
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3.59M
  for (size_t y = 0; y < rect_from.ysize(); ++y) {
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3.47M
    const T* JXL_RESTRICT row_from = rect_from.ConstRow(from, y);
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3.47M
    T* JXL_RESTRICT row_to = rect_to.Row(to, y);
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3.47M
    memcpy(row_to, row_from, rect_from.xsize() * sizeof(T));
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3.47M
  }
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110k
  return true;
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112k
}
jxl::Status jxl::CopyImageTo<float>(jxl::RectT<unsigned long> const&, jxl::Plane<float> const&, jxl::RectT<unsigned long> const&, jxl::Plane<float>*)
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47
75.1k
                   const Rect& rect_to, Plane<T>* JXL_RESTRICT to) {
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75.1k
  JXL_ENSURE(SameSize(rect_from, rect_to));
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75.1k
  JXL_ENSURE(rect_from.IsInside(from));
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75.1k
  JXL_ENSURE(rect_to.IsInside(*to));
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75.1k
  if (rect_from.xsize() == 0) return true;
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1.68M
  for (size_t y = 0; y < rect_from.ysize(); ++y) {
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1.61M
    const T* JXL_RESTRICT row_from = rect_from.ConstRow(from, y);
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1.61M
    T* JXL_RESTRICT row_to = rect_to.Row(to, y);
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1.61M
    memcpy(row_to, row_from, rect_from.xsize() * sizeof(T));
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1.61M
  }
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73.7k
  return true;
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75.1k
}
jxl::Status jxl::CopyImageTo<int>(jxl::RectT<unsigned long> const&, jxl::Plane<int> const&, jxl::RectT<unsigned long> const&, jxl::Plane<int>*)
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47
37.1k
                   const Rect& rect_to, Plane<T>* JXL_RESTRICT to) {
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37.1k
  JXL_ENSURE(SameSize(rect_from, rect_to));
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37.1k
  JXL_ENSURE(rect_from.IsInside(from));
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37.1k
  JXL_ENSURE(rect_to.IsInside(*to));
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37.1k
  if (rect_from.xsize() == 0) return true;
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1.90M
  for (size_t y = 0; y < rect_from.ysize(); ++y) {
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1.86M
    const T* JXL_RESTRICT row_from = rect_from.ConstRow(from, y);
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1.86M
    T* JXL_RESTRICT row_to = rect_to.Row(to, y);
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1.86M
    memcpy(row_to, row_from, rect_from.xsize() * sizeof(T));
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1.86M
  }
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37.1k
  return true;
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37.1k
}
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// Copies `from:rect_from` to `to:rect_to`.
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template <typename T>
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Status CopyImageTo(const Rect& rect_from, const Image3<T>& from,
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0
                   const Rect& rect_to, Image3<T>* JXL_RESTRICT to) {
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0
  JXL_ENSURE(SameSize(rect_from, rect_to));
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0
  for (size_t c = 0; c < 3; c++) {
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0
    JXL_RETURN_IF_ERROR(
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0
        CopyImageTo(rect_from, from.Plane(c), rect_to, &to->Plane(c)));
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0
  }
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0
  return true;
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0
}
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template <typename T, typename U>
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Status ConvertPlaneAndClamp(const Rect& rect_from, const Plane<T>& from,
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21.7k
                            const Rect& rect_to, Plane<U>* JXL_RESTRICT to) {
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21.7k
  JXL_ENSURE(SameSize(rect_from, rect_to));
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21.7k
  using M = decltype(T() + U());
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51.5k
  for (size_t y = 0; y < rect_to.ysize(); ++y) {
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29.7k
    const T* JXL_RESTRICT row_from = rect_from.ConstRow(from, y);
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29.7k
    U* JXL_RESTRICT row_to = rect_to.Row(to, y);
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88.5k
    for (size_t x = 0; x < rect_to.xsize(); ++x) {
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58.7k
      row_to[x] =
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58.7k
          std::min<M>(std::max<M>(row_from[x], std::numeric_limits<U>::min()),
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58.7k
                      std::numeric_limits<U>::max());
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58.7k
    }
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29.7k
  }
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21.7k
  return true;
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21.7k
}
Unexecuted instantiation: jxl::Status jxl::ConvertPlaneAndClamp<signed char, int>(jxl::RectT<unsigned long> const&, jxl::Plane<signed char> const&, jxl::RectT<unsigned long> const&, jxl::Plane<int>*)
jxl::Status jxl::ConvertPlaneAndClamp<int, signed char>(jxl::RectT<unsigned long> const&, jxl::Plane<int> const&, jxl::RectT<unsigned long> const&, jxl::Plane<signed char>*)
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Source
74
21.7k
                            const Rect& rect_to, Plane<U>* JXL_RESTRICT to) {
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21.7k
  JXL_ENSURE(SameSize(rect_from, rect_to));
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21.7k
  using M = decltype(T() + U());
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51.5k
  for (size_t y = 0; y < rect_to.ysize(); ++y) {
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29.7k
    const T* JXL_RESTRICT row_from = rect_from.ConstRow(from, y);
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29.7k
    U* JXL_RESTRICT row_to = rect_to.Row(to, y);
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88.5k
    for (size_t x = 0; x < rect_to.xsize(); ++x) {
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58.7k
      row_to[x] =
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58.7k
          std::min<M>(std::max<M>(row_from[x], std::numeric_limits<U>::min()),
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58.7k
                      std::numeric_limits<U>::max());
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58.7k
    }
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29.7k
  }
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21.7k
  return true;
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21.7k
}
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// Copies `from` to `to`.
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template <typename T>
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0
Status CopyImageTo(const T& from, T* JXL_RESTRICT to) {
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0
  return CopyImageTo(Rect(from), from, Rect(*to), to);
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0
}
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// Copies `from:rect_from` to `to:rect_to`; also copies `padding` pixels of
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// border around `from:rect_from`, in all directions, whenever they are inside
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// the first image.
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template <typename T>
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Status CopyImageToWithPadding(const Rect& from_rect, const T& from,
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0
                              size_t padding, const Rect& to_rect, T* to) {
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0
  size_t xextra0 = std::min(padding, from_rect.x0());
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0
  size_t xextra1 =
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0
      std::min(padding, from.xsize() - from_rect.x0() - from_rect.xsize());
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0
  size_t yextra0 = std::min(padding, from_rect.y0());
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0
  size_t yextra1 =
106
0
      std::min(padding, from.ysize() - from_rect.y0() - from_rect.ysize());
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0
  JXL_ENSURE(to_rect.x0() >= xextra0);
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0
  JXL_ENSURE(to_rect.y0() >= yextra0);
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0
  return CopyImageTo(Rect(from_rect.x0() - xextra0, from_rect.y0() - yextra0,
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0
                          from_rect.xsize() + xextra0 + xextra1,
112
0
                          from_rect.ysize() + yextra0 + yextra1),
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0
                     from,
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0
                     Rect(to_rect.x0() - xextra0, to_rect.y0() - yextra0,
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0
                          to_rect.xsize() + xextra0 + xextra1,
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0
                          to_rect.ysize() + yextra0 + yextra1),
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0
                     to);
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0
}
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// Returns linear combination of two grayscale images.
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template <typename T>
122
StatusOr<Plane<T>> LinComb(const T lambda1, const Plane<T>& image1,
123
0
                           const T lambda2, const Plane<T>& image2) {
124
0
  const size_t xsize = image1.xsize();
125
0
  const size_t ysize = image1.ysize();
126
0
  JXL_ENSURE(xsize == image2.xsize());
127
0
  JXL_ENSURE(ysize == image2.ysize());
128
0
  JxlMemoryManager* memory_manager = image1.memory_manager();
129
0
  JXL_ASSIGN_OR_RETURN(Plane<T> out,
130
0
                       Plane<T>::Create(memory_manager, xsize, ysize));
131
0
  for (size_t y = 0; y < ysize; ++y) {
132
0
    const T* const JXL_RESTRICT row1 = image1.Row(y);
133
0
    const T* const JXL_RESTRICT row2 = image2.Row(y);
134
0
    T* const JXL_RESTRICT row_out = out.Row(y);
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0
    for (size_t x = 0; x < xsize; ++x) {
136
0
      row_out[x] = lambda1 * row1[x] + lambda2 * row2[x];
137
0
    }
138
0
  }
139
0
  return out;
140
0
}
141
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// Multiplies image by lambda in-place
143
template <typename T>
144
0
void ScaleImage(const T lambda, Plane<T>* image) {
145
0
  for (size_t y = 0; y < image->ysize(); ++y) {
146
0
    T* const JXL_RESTRICT row = image->Row(y);
147
0
    for (size_t x = 0; x < image->xsize(); ++x) {
148
0
      row[x] = lambda * row[x];
149
0
    }
150
0
  }
151
0
}
152
153
// Multiplies image by lambda in-place
154
template <typename T>
155
void ScaleImage(const T lambda, Image3<T>* image) {
156
  for (size_t c = 0; c < 3; ++c) {
157
    ScaleImage(lambda, &image->Plane(c));
158
  }
159
}
160
161
template <typename T>
162
24.0k
void FillImage(const T value, Plane<T>* image) {
163
2.45M
  for (size_t y = 0; y < image->ysize(); ++y) {
164
2.42M
    T* const JXL_RESTRICT row = image->Row(y);
165
40.8M
    for (size_t x = 0; x < image->xsize(); ++x) {
166
38.3M
      row[x] = value;
167
38.3M
    }
168
2.42M
  }
169
24.0k
}
void jxl::FillImage<unsigned char>(unsigned char, jxl::Plane<unsigned char>*)
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Source
162
12.2k
void FillImage(const T value, Plane<T>* image) {
163
102k
  for (size_t y = 0; y < image->ysize(); ++y) {
164
90.3k
    T* const JXL_RESTRICT row = image->Row(y);
165
16.4M
    for (size_t x = 0; x < image->xsize(); ++x) {
166
16.3M
      row[x] = value;
167
16.3M
    }
168
90.3k
  }
169
12.2k
}
Unexecuted instantiation: void jxl::FillImage<int>(int, jxl::Plane<int>*)
void jxl::FillImage<float>(float, jxl::Plane<float>*)
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Source
162
11.8k
void FillImage(const T value, Plane<T>* image) {
163
2.35M
  for (size_t y = 0; y < image->ysize(); ++y) {
164
2.33M
    T* const JXL_RESTRICT row = image->Row(y);
165
24.3M
    for (size_t x = 0; x < image->xsize(); ++x) {
166
21.9M
      row[x] = value;
167
21.9M
    }
168
2.33M
  }
169
11.8k
}
170
171
template <typename T>
172
1.27M
void ZeroFillImage(Plane<T>* image) {
173
1.27M
  if (image->xsize() == 0) return;
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11.5M
  for (size_t y = 0; y < image->ysize(); ++y) {
175
11.4M
    T* const JXL_RESTRICT row = image->Row(y);
176
11.4M
    memset(row, 0, image->xsize() * sizeof(T));
177
11.4M
  }
178
152k
}
void jxl::ZeroFillImage<int>(jxl::Plane<int>*)
Line
Count
Source
172
1.18M
void ZeroFillImage(Plane<T>* image) {
173
1.18M
  if (image->xsize() == 0) return;
174
10.2M
  for (size_t y = 0; y < image->ysize(); ++y) {
175
10.2M
    T* const JXL_RESTRICT row = image->Row(y);
176
10.2M
    memset(row, 0, image->xsize() * sizeof(T));
177
10.2M
  }
178
64.1k
}
Unexecuted instantiation: void jxl::ZeroFillImage<float>(jxl::Plane<float>*)
void jxl::ZeroFillImage<unsigned char>(jxl::Plane<unsigned char>*)
Line
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Source
172
39
void ZeroFillImage(Plane<T>* image) {
173
39
  if (image->xsize() == 0) return;
174
1.31k
  for (size_t y = 0; y < image->ysize(); ++y) {
175
1.27k
    T* const JXL_RESTRICT row = image->Row(y);
176
1.27k
    memset(row, 0, image->xsize() * sizeof(T));
177
1.27k
  }
178
39
}
void jxl::ZeroFillImage<signed char>(jxl::Plane<signed char>*)
Line
Count
Source
172
87.8k
void ZeroFillImage(Plane<T>* image) {
173
87.8k
  if (image->xsize() == 0) return;
174
1.29M
  for (size_t y = 0; y < image->ysize(); ++y) {
175
1.20M
    T* const JXL_RESTRICT row = image->Row(y);
176
1.20M
    memset(row, 0, image->xsize() * sizeof(T));
177
1.20M
  }
178
87.8k
}
Unexecuted instantiation: void jxl::ZeroFillImage<short>(jxl::Plane<short>*)
179
180
// Mirrors out of bounds coordinates and returns valid coordinates unchanged.
181
// We assume the radius (distance outside the image) is small compared to the
182
// image size, otherwise this might not terminate.
183
// The mirror is outside the last column (border pixel is also replicated).
184
1.60M
static inline int64_t Mirror(int64_t x, const int64_t xsize) {
185
1.60M
  JXL_DASSERT(xsize != 0);
186
187
  // TODO(janwas): replace with branchless version
188
3.54M
  while (x < 0 || x >= xsize) {
189
1.93M
    if (x < 0) {
190
975k
      x = -x - 1;
191
975k
    } else {
192
957k
      x = 2 * xsize - 1 - x;
193
957k
    }
194
1.93M
  }
195
1.60M
  return x;
196
1.60M
}
Unexecuted instantiation: encode.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_jpeg_data.cc:jxl::Mirror(long, long)
Unexecuted instantiation: decode.cc:jxl::Mirror(long, long)
Unexecuted instantiation: image_bundle.cc:jxl::Mirror(long, long)
Unexecuted instantiation: image_metadata.cc:jxl::Mirror(long, long)
Unexecuted instantiation: encoding.cc:jxl::Mirror(long, long)
Unexecuted instantiation: modular_image.cc:jxl::Mirror(long, long)
Unexecuted instantiation: transform.cc:jxl::Mirror(long, long)
Unexecuted instantiation: quant_weights.cc:jxl::Mirror(long, long)
Unexecuted instantiation: quantizer.cc:jxl::Mirror(long, long)
Unexecuted instantiation: decode_to_jpeg.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_fields.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_frame.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_group.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_heuristics.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_modular.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_patch_dictionary.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_progressive_split.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_quant_weights.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_toc.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_xyb.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_encoding.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_ma.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_transform.cc:jxl::Mirror(long, long)
Unexecuted instantiation: ac_strategy.cc:jxl::Mirror(long, long)
Unexecuted instantiation: chroma_from_luma.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_cache.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_external_image.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_frame.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_group.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_modular.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_noise.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_patch_dictionary.cc:jxl::Mirror(long, long)
Unexecuted instantiation: dec_xyb.cc:jxl::Mirror(long, long)
Unexecuted instantiation: epf.cc:jxl::Mirror(long, long)
Unexecuted instantiation: image_ops.cc:jxl::Mirror(long, long)
Unexecuted instantiation: palette.cc:jxl::Mirror(long, long)
Unexecuted instantiation: rct.cc:jxl::Mirror(long, long)
Unexecuted instantiation: squeeze.cc:jxl::Mirror(long, long)
Unexecuted instantiation: passes_state.cc:jxl::Mirror(long, long)
Unexecuted instantiation: simple_render_pipeline.cc:jxl::Mirror(long, long)
Unexecuted instantiation: stage_blending.cc:jxl::Mirror(long, long)
Unexecuted instantiation: stage_epf.cc:jxl::Mirror(long, long)
Unexecuted instantiation: stage_patches.cc:jxl::Mirror(long, long)
Unexecuted instantiation: stage_write.cc:jxl::Mirror(long, long)
Unexecuted instantiation: butteraugli.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_ac_strategy.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_adaptive_quantization.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_ans.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_butteraugli_comparator.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_cache.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_chroma_from_luma.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_coeff_order.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_debug_image.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_dot_dictionary.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_entropy_coder.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_external_image.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_gaborish.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_image_bundle.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_palette.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_rct.cc:jxl::Mirror(long, long)
Unexecuted instantiation: enc_squeeze.cc:jxl::Mirror(long, long)
Unexecuted instantiation: blending.cc:jxl::Mirror(long, long)
Unexecuted instantiation: coeff_order.cc:jxl::Mirror(long, long)
Unexecuted instantiation: convolve_separable5.cc:jxl::Mirror(long, long)
Unexecuted instantiation: convolve_slow.cc:jxl::Mirror(long, long)
Unexecuted instantiation: convolve_symmetric5.cc:jxl::Mirror(long, long)
low_memory_render_pipeline.cc:jxl::Mirror(long, long)
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1.60M
static inline int64_t Mirror(int64_t x, const int64_t xsize) {
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1.60M
  JXL_DASSERT(xsize != 0);
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  // TODO(janwas): replace with branchless version
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3.54M
  while (x < 0 || x >= xsize) {
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1.93M
    if (x < 0) {
190
975k
      x = -x - 1;
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975k
    } else {
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957k
      x = 2 * xsize - 1 - x;
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957k
    }
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1.93M
  }
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1.60M
  return x;
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1.60M
}
Unexecuted instantiation: enc_detect_dots.cc:jxl::Mirror(long, long)
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// Wrap modes for ensuring X/Y coordinates are in the valid range [0, size):
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// Mirrors (repeating the edge pixel once). Useful for convolutions.
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struct WrapMirror {
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0
  JXL_INLINE int64_t operator()(const int64_t coord, const int64_t size) const {
203
0
    return Mirror(coord, size);
204
0
  }
205
};
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// Returns the same coordinate: required for TFNode with Border(), or useful
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// when we know "coord" is already valid (e.g. interior of an image).
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struct WrapUnchanged {
210
0
  JXL_INLINE int64_t operator()(const int64_t coord, int64_t /*size*/) const {
211
0
    return coord;
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0
  }
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};
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// Similar to Wrap* but for row pointers (reduces Row() multiplications).
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class WrapRowMirror {
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 public:
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  template <class ImageOrView>
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  WrapRowMirror(const ImageOrView& image, size_t ysize)
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0
      : first_row_(image.ConstRow(0)), last_row_(image.ConstRow(ysize - 1)) {}
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  const float* operator()(const float* const JXL_RESTRICT row,
224
0
                          const int64_t stride) const {
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0
    if (row < first_row_) {
226
0
      const int64_t num_before = first_row_ - row;
227
      // Mirrored; one row before => row 0, two before = row 1, ...
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0
      return first_row_ + num_before - stride;
229
0
    }
230
0
    if (row > last_row_) {
231
0
      const int64_t num_after = row - last_row_;
232
      // Mirrored; one row after => last row, two after = last - 1, ...
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0
      return last_row_ - num_after + stride;
234
0
    }
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0
    return row;
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0
  }
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 private:
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  const float* const JXL_RESTRICT first_row_;
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  const float* const JXL_RESTRICT last_row_;
241
};
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struct WrapRowUnchanged {
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  JXL_INLINE const float* operator()(const float* const JXL_RESTRICT row,
245
0
                                     int64_t /*stride*/) const {
246
0
    return row;
247
0
  }
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};
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// Computes the minimum and maximum pixel value.
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template <typename T>
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void ImageMinMax(const Plane<T>& image, T* const JXL_RESTRICT min,
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0
                 T* const JXL_RESTRICT max) {
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0
  *min = std::numeric_limits<T>::max();
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0
  *max = std::numeric_limits<T>::lowest();
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0
  for (size_t y = 0; y < image.ysize(); ++y) {
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0
    const T* const JXL_RESTRICT row = image.Row(y);
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0
    for (size_t x = 0; x < image.xsize(); ++x) {
259
0
      *min = std::min(*min, row[x]);
260
0
      *max = std::max(*max, row[x]);
261
0
    }
262
0
  }
263
0
}
Unexecuted instantiation: void jxl::ImageMinMax<float>(jxl::Plane<float> const&, float*, float*)
Unexecuted instantiation: void jxl::ImageMinMax<unsigned char>(jxl::Plane<unsigned char> const&, unsigned char*, unsigned char*)
264
265
// Initializes all planes to the same "value".
266
template <typename T>
267
void FillImage(const T value, Image3<T>* image) {
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  for (size_t c = 0; c < 3; ++c) {
269
    for (size_t y = 0; y < image->ysize(); ++y) {
270
      T* JXL_RESTRICT row = image->PlaneRow(c, y);
271
      for (size_t x = 0; x < image->xsize(); ++x) {
272
        row[x] = value;
273
      }
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    }
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  }
276
}
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template <typename T>
279
0
void FillPlane(const T value, Plane<T>* image, Rect rect) {
280
0
  for (size_t y = 0; y < rect.ysize(); ++y) {
281
0
    T* JXL_RESTRICT row = rect.Row(image, y);
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0
    for (size_t x = 0; x < rect.xsize(); ++x) {
283
0
      row[x] = value;
284
0
    }
285
0
  }
286
0
}
Unexecuted instantiation: void jxl::FillPlane<unsigned char>(unsigned char, jxl::Plane<unsigned char>*, jxl::RectT<unsigned long>)
Unexecuted instantiation: void jxl::FillPlane<float>(float, jxl::Plane<float>*, jxl::RectT<unsigned long>)
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template <typename T>
289
14
void ZeroFillImage(Image3<T>* image) {
290
56
  for (size_t c = 0; c < 3; ++c) {
291
174
    for (size_t y = 0; y < image->ysize(); ++y) {
292
132
      T* JXL_RESTRICT row = image->PlaneRow(c, y);
293
132
      if (image->xsize() != 0) memset(row, 0, image->xsize() * sizeof(T));
294
132
    }
295
42
  }
296
14
}
void jxl::ZeroFillImage<int>(jxl::Image3<int>*)
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289
6
void ZeroFillImage(Image3<T>* image) {
290
24
  for (size_t c = 0; c < 3; ++c) {
291
69
    for (size_t y = 0; y < image->ysize(); ++y) {
292
51
      T* JXL_RESTRICT row = image->PlaneRow(c, y);
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51
      if (image->xsize() != 0) memset(row, 0, image->xsize() * sizeof(T));
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51
    }
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18
  }
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6
}
Unexecuted instantiation: void jxl::ZeroFillImage<float>(jxl::Image3<float>*)
void jxl::ZeroFillImage<short>(jxl::Image3<short>*)
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289
8
void ZeroFillImage(Image3<T>* image) {
290
32
  for (size_t c = 0; c < 3; ++c) {
291
105
    for (size_t y = 0; y < image->ysize(); ++y) {
292
81
      T* JXL_RESTRICT row = image->PlaneRow(c, y);
293
81
      if (image->xsize() != 0) memset(row, 0, image->xsize() * sizeof(T));
294
81
    }
295
24
  }
296
8
}
297
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// Same as above, but operates in-place. Assumes that the `in` image was
299
// allocated large enough.
300
Status PadImageToBlockMultipleInPlace(Image3F* JXL_RESTRICT in,
301
                                      size_t block_dim = kBlockDim);
302
303
// Downsamples an image by a given factor.
304
StatusOr<Image3F> DownsampleImage(const Image3F& opsin, size_t factor);
305
StatusOr<ImageF> DownsampleImage(const ImageF& image, size_t factor);
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}  // namespace jxl
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#endif  // LIB_JXL_IMAGE_OPS_H_