Coverage Report

Created: 2025-08-12 07:37

/src/libjxl/lib/jxl/compressed_dc.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/compressed_dc.h"
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#include <jxl/memory_manager.h>
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#include <algorithm>
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#include <cstdint>
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#include <cstdlib>
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#include <cstring>
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#include <vector>
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#include "lib/jxl/ac_context.h"
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#include "lib/jxl/frame_header.h"
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#include "lib/jxl/modular/modular_image.h"
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#undef HWY_TARGET_INCLUDE
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#define HWY_TARGET_INCLUDE "lib/jxl/compressed_dc.cc"
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#include <hwy/foreach_target.h>
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#include <hwy/highway.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/rect.h"
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#include "lib/jxl/base/status.h"
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#include "lib/jxl/image.h"
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HWY_BEFORE_NAMESPACE();
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namespace jxl {
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namespace HWY_NAMESPACE {
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using D = HWY_FULL(float);
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using DScalar = HWY_CAPPED(float, 1);
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// These templates are not found via ADL.
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using hwy::HWY_NAMESPACE::Abs;
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using hwy::HWY_NAMESPACE::Add;
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using hwy::HWY_NAMESPACE::Div;
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using hwy::HWY_NAMESPACE::Max;
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using hwy::HWY_NAMESPACE::Mul;
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using hwy::HWY_NAMESPACE::MulAdd;
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using hwy::HWY_NAMESPACE::Rebind;
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using hwy::HWY_NAMESPACE::Sub;
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using hwy::HWY_NAMESPACE::Vec;
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using hwy::HWY_NAMESPACE::ZeroIfNegative;
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// TODO(veluca): optimize constants.
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const float w1 = 0.20345139757231578f;
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const float w2 = 0.0334829185968739f;
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const float w0 = 1.0f - 4.0f * (w1 + w2);
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template <class V>
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412k
V MaxWorkaround(V a, V b) {
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#if (HWY_TARGET == HWY_AVX3) && HWY_COMPILER_CLANG <= 800
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  // Prevents "Do not know how to split the result of this operator" error
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  return IfThenElse(a > b, a, b);
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#else
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412k
  return Max(a, b);
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#endif
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}
Unexecuted instantiation: hwy::N_SSE4::Vec128<float, 1ul> jxl::N_SSE4::MaxWorkaround<hwy::N_SSE4::Vec128<float, 1ul> >(hwy::N_SSE4::Vec128<float, 1ul>, hwy::N_SSE4::Vec128<float, 1ul>)
Unexecuted instantiation: hwy::N_SSE4::Vec128<float, 4ul> jxl::N_SSE4::MaxWorkaround<hwy::N_SSE4::Vec128<float, 4ul> >(hwy::N_SSE4::Vec128<float, 4ul>, hwy::N_SSE4::Vec128<float, 4ul>)
hwy::N_AVX2::Vec128<float, 1ul> jxl::N_AVX2::MaxWorkaround<hwy::N_AVX2::Vec128<float, 1ul> >(hwy::N_AVX2::Vec128<float, 1ul>, hwy::N_AVX2::Vec128<float, 1ul>)
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265k
V MaxWorkaround(V a, V b) {
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#if (HWY_TARGET == HWY_AVX3) && HWY_COMPILER_CLANG <= 800
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  // Prevents "Do not know how to split the result of this operator" error
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  return IfThenElse(a > b, a, b);
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#else
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  return Max(a, b);
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#endif
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}
hwy::N_AVX2::Vec256<float> jxl::N_AVX2::MaxWorkaround<hwy::N_AVX2::Vec256<float> >(hwy::N_AVX2::Vec256<float>, hwy::N_AVX2::Vec256<float>)
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146k
V MaxWorkaround(V a, V b) {
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#if (HWY_TARGET == HWY_AVX3) && HWY_COMPILER_CLANG <= 800
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  // Prevents "Do not know how to split the result of this operator" error
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  return IfThenElse(a > b, a, b);
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#else
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  return Max(a, b);
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#endif
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}
Unexecuted instantiation: hwy::N_SSE2::Vec128<float, 1ul> jxl::N_SSE2::MaxWorkaround<hwy::N_SSE2::Vec128<float, 1ul> >(hwy::N_SSE2::Vec128<float, 1ul>, hwy::N_SSE2::Vec128<float, 1ul>)
Unexecuted instantiation: hwy::N_SSE2::Vec128<float, 4ul> jxl::N_SSE2::MaxWorkaround<hwy::N_SSE2::Vec128<float, 4ul> >(hwy::N_SSE2::Vec128<float, 4ul>, hwy::N_SSE2::Vec128<float, 4ul>)
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template <typename D>
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JXL_INLINE void ComputePixelChannel(const D d, const float dc_factor,
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                                    const float* JXL_RESTRICT row_top,
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                                    const float* JXL_RESTRICT row,
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                                    const float* JXL_RESTRICT row_bottom,
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                                    Vec<D>* JXL_RESTRICT mc,
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                                    Vec<D>* JXL_RESTRICT sm,
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                                    Vec<D>* JXL_RESTRICT gap, size_t x) {
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  const auto tl = LoadU(d, row_top + x - 1);
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  const auto tc = Load(d, row_top + x);
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  const auto tr = LoadU(d, row_top + x + 1);
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  const auto ml = LoadU(d, row + x - 1);
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  *mc = Load(d, row + x);
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  const auto mr = LoadU(d, row + x + 1);
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  const auto bl = LoadU(d, row_bottom + x - 1);
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  const auto bc = Load(d, row_bottom + x);
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  const auto br = LoadU(d, row_bottom + x + 1);
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  const auto w_center = Set(d, w0);
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  const auto w_side = Set(d, w1);
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  const auto w_corner = Set(d, w2);
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  const auto corner = Add(Add(tl, tr), Add(bl, br));
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  const auto side = Add(Add(ml, mr), Add(tc, bc));
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  *sm = MulAdd(corner, w_corner, MulAdd(side, w_side, Mul(*mc, w_center)));
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  const auto dc_quant = Set(d, dc_factor);
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  *gap = MaxWorkaround(*gap, Abs(Div(Sub(*mc, *sm), dc_quant)));
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}
Unexecuted instantiation: void jxl::N_SSE4::ComputePixelChannel<hwy::N_SSE4::Simd<float, 1ul, 0> >(hwy::N_SSE4::Simd<float, 1ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_SSE4::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_SSE4::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_SSE4::Simd<float, 1ul, 0>)()))*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::ComputePixelChannel<hwy::N_SSE4::Simd<float, 4ul, 0> >(hwy::N_SSE4::Simd<float, 4ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_SSE4::Simd<float, 4ul, 0>)()))*, decltype (Zero((hwy::N_SSE4::Simd<float, 4ul, 0>)()))*, decltype (Zero((hwy::N_SSE4::Simd<float, 4ul, 0>)()))*, unsigned long)
void jxl::N_AVX2::ComputePixelChannel<hwy::N_AVX2::Simd<float, 1ul, 0> >(hwy::N_AVX2::Simd<float, 1ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_AVX2::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_AVX2::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_AVX2::Simd<float, 1ul, 0>)()))*, unsigned long)
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                                    Vec<D>* JXL_RESTRICT gap, size_t x) {
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  const auto tl = LoadU(d, row_top + x - 1);
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  const auto tc = Load(d, row_top + x);
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  const auto tr = LoadU(d, row_top + x + 1);
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  const auto ml = LoadU(d, row + x - 1);
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  *mc = Load(d, row + x);
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  const auto mr = LoadU(d, row + x + 1);
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  const auto bl = LoadU(d, row_bottom + x - 1);
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  const auto bc = Load(d, row_bottom + x);
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  const auto br = LoadU(d, row_bottom + x + 1);
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  const auto w_center = Set(d, w0);
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  const auto w_side = Set(d, w1);
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  const auto w_corner = Set(d, w2);
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  const auto corner = Add(Add(tl, tr), Add(bl, br));
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  const auto side = Add(Add(ml, mr), Add(tc, bc));
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  *sm = MulAdd(corner, w_corner, MulAdd(side, w_side, Mul(*mc, w_center)));
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  const auto dc_quant = Set(d, dc_factor);
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  *gap = MaxWorkaround(*gap, Abs(Div(Sub(*mc, *sm), dc_quant)));
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}
void jxl::N_AVX2::ComputePixelChannel<hwy::N_AVX2::Simd<float, 8ul, 0> >(hwy::N_AVX2::Simd<float, 8ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_AVX2::Simd<float, 8ul, 0>)()))*, decltype (Zero((hwy::N_AVX2::Simd<float, 8ul, 0>)()))*, decltype (Zero((hwy::N_AVX2::Simd<float, 8ul, 0>)()))*, unsigned long)
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146k
                                    Vec<D>* JXL_RESTRICT gap, size_t x) {
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  const auto tl = LoadU(d, row_top + x - 1);
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  const auto tc = Load(d, row_top + x);
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  const auto tr = LoadU(d, row_top + x + 1);
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  const auto ml = LoadU(d, row + x - 1);
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  *mc = Load(d, row + x);
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  const auto mr = LoadU(d, row + x + 1);
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  const auto bl = LoadU(d, row_bottom + x - 1);
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  const auto bc = Load(d, row_bottom + x);
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  const auto br = LoadU(d, row_bottom + x + 1);
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  const auto w_center = Set(d, w0);
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  const auto w_side = Set(d, w1);
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  const auto w_corner = Set(d, w2);
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  const auto corner = Add(Add(tl, tr), Add(bl, br));
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  const auto side = Add(Add(ml, mr), Add(tc, bc));
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  *sm = MulAdd(corner, w_corner, MulAdd(side, w_side, Mul(*mc, w_center)));
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  const auto dc_quant = Set(d, dc_factor);
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  *gap = MaxWorkaround(*gap, Abs(Div(Sub(*mc, *sm), dc_quant)));
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}
Unexecuted instantiation: void jxl::N_SSE2::ComputePixelChannel<hwy::N_SSE2::Simd<float, 1ul, 0> >(hwy::N_SSE2::Simd<float, 1ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_SSE2::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_SSE2::Simd<float, 1ul, 0>)()))*, decltype (Zero((hwy::N_SSE2::Simd<float, 1ul, 0>)()))*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::ComputePixelChannel<hwy::N_SSE2::Simd<float, 4ul, 0> >(hwy::N_SSE2::Simd<float, 4ul, 0>, float, float const*, float const*, float const*, decltype (Zero((hwy::N_SSE2::Simd<float, 4ul, 0>)()))*, decltype (Zero((hwy::N_SSE2::Simd<float, 4ul, 0>)()))*, decltype (Zero((hwy::N_SSE2::Simd<float, 4ul, 0>)()))*, unsigned long)
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template <typename D>
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JXL_INLINE void ComputePixel(
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    const float* JXL_RESTRICT dc_factors,
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    const float* JXL_RESTRICT* JXL_RESTRICT rows_top,
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    const float* JXL_RESTRICT* JXL_RESTRICT rows,
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    const float* JXL_RESTRICT* JXL_RESTRICT rows_bottom,
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137k
    float* JXL_RESTRICT* JXL_RESTRICT out_rows, size_t x) {
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  const D d;
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  auto mc_x = Undefined(d);
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  auto mc_y = Undefined(d);
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  auto mc_b = Undefined(d);
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  auto sm_x = Undefined(d);
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  auto sm_y = Undefined(d);
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  auto sm_b = Undefined(d);
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  auto gap = Set(d, 0.5f);
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  ComputePixelChannel(d, dc_factors[0], rows_top[0], rows[0], rows_bottom[0],
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                      &mc_x, &sm_x, &gap, x);
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  ComputePixelChannel(d, dc_factors[1], rows_top[1], rows[1], rows_bottom[1],
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                      &mc_y, &sm_y, &gap, x);
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  ComputePixelChannel(d, dc_factors[2], rows_top[2], rows[2], rows_bottom[2],
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                      &mc_b, &sm_b, &gap, x);
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  auto factor = MulAdd(Set(d, -4.0f), gap, Set(d, 3.0f));
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  factor = ZeroIfNegative(factor);
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  auto out = MulAdd(Sub(sm_x, mc_x), factor, mc_x);
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  Store(out, d, out_rows[0] + x);
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  out = MulAdd(Sub(sm_y, mc_y), factor, mc_y);
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  Store(out, d, out_rows[1] + x);
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  out = MulAdd(Sub(sm_b, mc_b), factor, mc_b);
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  Store(out, d, out_rows[2] + x);
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}
Unexecuted instantiation: void jxl::N_SSE4::ComputePixel<hwy::N_SSE4::Simd<float, 1ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE4::ComputePixel<hwy::N_SSE4::Simd<float, 4ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
void jxl::N_AVX2::ComputePixel<hwy::N_AVX2::Simd<float, 1ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
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    float* JXL_RESTRICT* JXL_RESTRICT out_rows, size_t x) {
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88.5k
  const D d;
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88.5k
  auto mc_x = Undefined(d);
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88.5k
  auto mc_y = Undefined(d);
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  auto mc_b = Undefined(d);
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  auto sm_x = Undefined(d);
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  auto sm_y = Undefined(d);
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  auto sm_b = Undefined(d);
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  auto gap = Set(d, 0.5f);
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  ComputePixelChannel(d, dc_factors[0], rows_top[0], rows[0], rows_bottom[0],
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                      &mc_x, &sm_x, &gap, x);
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88.5k
  ComputePixelChannel(d, dc_factors[1], rows_top[1], rows[1], rows_bottom[1],
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                      &mc_y, &sm_y, &gap, x);
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  ComputePixelChannel(d, dc_factors[2], rows_top[2], rows[2], rows_bottom[2],
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                      &mc_b, &sm_b, &gap, x);
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88.5k
  auto factor = MulAdd(Set(d, -4.0f), gap, Set(d, 3.0f));
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  factor = ZeroIfNegative(factor);
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  auto out = MulAdd(Sub(sm_x, mc_x), factor, mc_x);
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  Store(out, d, out_rows[0] + x);
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  out = MulAdd(Sub(sm_y, mc_y), factor, mc_y);
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  Store(out, d, out_rows[1] + x);
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  out = MulAdd(Sub(sm_b, mc_b), factor, mc_b);
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  Store(out, d, out_rows[2] + x);
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}
void jxl::N_AVX2::ComputePixel<hwy::N_AVX2::Simd<float, 8ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
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102
48.8k
    float* JXL_RESTRICT* JXL_RESTRICT out_rows, size_t x) {
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48.8k
  const D d;
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48.8k
  auto mc_x = Undefined(d);
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48.8k
  auto mc_y = Undefined(d);
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48.8k
  auto mc_b = Undefined(d);
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48.8k
  auto sm_x = Undefined(d);
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48.8k
  auto sm_y = Undefined(d);
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  auto sm_b = Undefined(d);
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  auto gap = Set(d, 0.5f);
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  ComputePixelChannel(d, dc_factors[0], rows_top[0], rows[0], rows_bottom[0],
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                      &mc_x, &sm_x, &gap, x);
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  ComputePixelChannel(d, dc_factors[1], rows_top[1], rows[1], rows_bottom[1],
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48.8k
                      &mc_y, &sm_y, &gap, x);
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48.8k
  ComputePixelChannel(d, dc_factors[2], rows_top[2], rows[2], rows_bottom[2],
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48.8k
                      &mc_b, &sm_b, &gap, x);
117
48.8k
  auto factor = MulAdd(Set(d, -4.0f), gap, Set(d, 3.0f));
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  factor = ZeroIfNegative(factor);
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  auto out = MulAdd(Sub(sm_x, mc_x), factor, mc_x);
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  Store(out, d, out_rows[0] + x);
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  out = MulAdd(Sub(sm_y, mc_y), factor, mc_y);
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  Store(out, d, out_rows[1] + x);
124
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  out = MulAdd(Sub(sm_b, mc_b), factor, mc_b);
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  Store(out, d, out_rows[2] + x);
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}
Unexecuted instantiation: void jxl::N_SSE2::ComputePixel<hwy::N_SSE2::Simd<float, 1ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
Unexecuted instantiation: void jxl::N_SSE2::ComputePixel<hwy::N_SSE2::Simd<float, 4ul, 0> >(float const*, float const* restrict*, float const* restrict*, float const* restrict*, float* restrict*, unsigned long)
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Status AdaptiveDCSmoothing(JxlMemoryManager* memory_manager,
129
                           const float* dc_factors, Image3F* dc,
130
3.81k
                           ThreadPool* pool) {
131
3.81k
  const size_t xsize = dc->xsize();
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3.81k
  const size_t ysize = dc->ysize();
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3.81k
  if (ysize <= 2 || xsize <= 2) return true;
134
135
  // TODO(veluca): use tile-based processing?
136
  // TODO(veluca): decide if changes to the y channel should be propagated to
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  // the x and b channels through color correlation.
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855
  JXL_ENSURE(w1 + w2 < 0.25f);
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140
1.71k
  JXL_ASSIGN_OR_RETURN(Image3F smoothed,
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1.71k
                       Image3F::Create(memory_manager, xsize, ysize));
142
  // Fill in borders that the loop below will not. First and last are unused.
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3.42k
  for (size_t c = 0; c < 3; c++) {
144
5.13k
    for (size_t y : {static_cast<size_t>(0), ysize - 1}) {
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5.13k
      memcpy(smoothed.PlaneRow(c, y), dc->PlaneRow(c, y),
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5.13k
             xsize * sizeof(float));
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    }
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  }
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  auto process_row = [&](const uint32_t y, size_t /*thread*/) -> Status {
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10.4k
    const float* JXL_RESTRICT rows_top[3]{
151
10.4k
        dc->ConstPlaneRow(0, y - 1),
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10.4k
        dc->ConstPlaneRow(1, y - 1),
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10.4k
        dc->ConstPlaneRow(2, y - 1),
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    };
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10.4k
    const float* JXL_RESTRICT rows[3] = {
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        dc->ConstPlaneRow(0, y),
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10.4k
        dc->ConstPlaneRow(1, y),
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        dc->ConstPlaneRow(2, y),
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    };
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10.4k
    const float* JXL_RESTRICT rows_bottom[3] = {
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10.4k
        dc->ConstPlaneRow(0, y + 1),
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10.4k
        dc->ConstPlaneRow(1, y + 1),
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        dc->ConstPlaneRow(2, y + 1),
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10.4k
    };
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10.4k
    float* JXL_RESTRICT rows_out[3] = {
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10.4k
        smoothed.PlaneRow(0, y),
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10.4k
        smoothed.PlaneRow(1, y),
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10.4k
        smoothed.PlaneRow(2, y),
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    };
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20.9k
    for (size_t x : {static_cast<size_t>(0), xsize - 1}) {
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      for (size_t c = 0; c < 3; c++) {
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62.7k
        rows_out[c][x] = rows[c][x];
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62.7k
      }
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    }
175
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10.4k
    size_t x = 1;
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    // First pixels
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    const size_t N = Lanes(D());
179
78.7k
    for (; x < std::min(N, xsize - 1); x++) {
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68.2k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
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68.2k
                            x);
182
68.2k
    }
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    // Full vectors.
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59.2k
    for (; x + N <= xsize - 1; x += N) {
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48.8k
      ComputePixel<D>(dc_factors, rows_top, rows, rows_bottom, rows_out, x);
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48.8k
    }
187
    // Last pixels.
188
30.7k
    for (; x < xsize - 1; x++) {
189
20.2k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
190
20.2k
                            x);
191
20.2k
    }
192
10.4k
    return true;
193
10.4k
  };
Unexecuted instantiation: compressed_dc.cc:jxl::N_SSE4::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
compressed_dc.cc:jxl::N_AVX2::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
Line
Count
Source
149
10.4k
  auto process_row = [&](const uint32_t y, size_t /*thread*/) -> Status {
150
10.4k
    const float* JXL_RESTRICT rows_top[3]{
151
10.4k
        dc->ConstPlaneRow(0, y - 1),
152
10.4k
        dc->ConstPlaneRow(1, y - 1),
153
10.4k
        dc->ConstPlaneRow(2, y - 1),
154
10.4k
    };
155
10.4k
    const float* JXL_RESTRICT rows[3] = {
156
10.4k
        dc->ConstPlaneRow(0, y),
157
10.4k
        dc->ConstPlaneRow(1, y),
158
10.4k
        dc->ConstPlaneRow(2, y),
159
10.4k
    };
160
10.4k
    const float* JXL_RESTRICT rows_bottom[3] = {
161
10.4k
        dc->ConstPlaneRow(0, y + 1),
162
10.4k
        dc->ConstPlaneRow(1, y + 1),
163
10.4k
        dc->ConstPlaneRow(2, y + 1),
164
10.4k
    };
165
10.4k
    float* JXL_RESTRICT rows_out[3] = {
166
10.4k
        smoothed.PlaneRow(0, y),
167
10.4k
        smoothed.PlaneRow(1, y),
168
10.4k
        smoothed.PlaneRow(2, y),
169
10.4k
    };
170
20.9k
    for (size_t x : {static_cast<size_t>(0), xsize - 1}) {
171
83.6k
      for (size_t c = 0; c < 3; c++) {
172
62.7k
        rows_out[c][x] = rows[c][x];
173
62.7k
      }
174
20.9k
    }
175
176
10.4k
    size_t x = 1;
177
    // First pixels
178
10.4k
    const size_t N = Lanes(D());
179
78.7k
    for (; x < std::min(N, xsize - 1); x++) {
180
68.2k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
181
68.2k
                            x);
182
68.2k
    }
183
    // Full vectors.
184
59.2k
    for (; x + N <= xsize - 1; x += N) {
185
48.8k
      ComputePixel<D>(dc_factors, rows_top, rows, rows_bottom, rows_out, x);
186
48.8k
    }
187
    // Last pixels.
188
30.7k
    for (; x < xsize - 1; x++) {
189
20.2k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
190
20.2k
                            x);
191
20.2k
    }
192
10.4k
    return true;
193
10.4k
  };
Unexecuted instantiation: compressed_dc.cc:jxl::N_SSE2::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
194
1.71k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 1, ysize - 1, ThreadPool::NoInit,
195
1.71k
                                process_row, "DCSmoothingRow"));
196
855
  dc->Swap(smoothed);
197
855
  return true;
198
1.71k
}
Unexecuted instantiation: jxl::N_SSE4::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)
jxl::N_AVX2::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)
Line
Count
Source
130
3.81k
                           ThreadPool* pool) {
131
3.81k
  const size_t xsize = dc->xsize();
132
3.81k
  const size_t ysize = dc->ysize();
133
3.81k
  if (ysize <= 2 || xsize <= 2) return true;
134
135
  // TODO(veluca): use tile-based processing?
136
  // TODO(veluca): decide if changes to the y channel should be propagated to
137
  // the x and b channels through color correlation.
138
855
  JXL_ENSURE(w1 + w2 < 0.25f);
139
140
1.71k
  JXL_ASSIGN_OR_RETURN(Image3F smoothed,
141
1.71k
                       Image3F::Create(memory_manager, xsize, ysize));
142
  // Fill in borders that the loop below will not. First and last are unused.
143
3.42k
  for (size_t c = 0; c < 3; c++) {
144
5.13k
    for (size_t y : {static_cast<size_t>(0), ysize - 1}) {
145
5.13k
      memcpy(smoothed.PlaneRow(c, y), dc->PlaneRow(c, y),
146
5.13k
             xsize * sizeof(float));
147
5.13k
    }
148
2.56k
  }
149
1.71k
  auto process_row = [&](const uint32_t y, size_t /*thread*/) -> Status {
150
1.71k
    const float* JXL_RESTRICT rows_top[3]{
151
1.71k
        dc->ConstPlaneRow(0, y - 1),
152
1.71k
        dc->ConstPlaneRow(1, y - 1),
153
1.71k
        dc->ConstPlaneRow(2, y - 1),
154
1.71k
    };
155
1.71k
    const float* JXL_RESTRICT rows[3] = {
156
1.71k
        dc->ConstPlaneRow(0, y),
157
1.71k
        dc->ConstPlaneRow(1, y),
158
1.71k
        dc->ConstPlaneRow(2, y),
159
1.71k
    };
160
1.71k
    const float* JXL_RESTRICT rows_bottom[3] = {
161
1.71k
        dc->ConstPlaneRow(0, y + 1),
162
1.71k
        dc->ConstPlaneRow(1, y + 1),
163
1.71k
        dc->ConstPlaneRow(2, y + 1),
164
1.71k
    };
165
1.71k
    float* JXL_RESTRICT rows_out[3] = {
166
1.71k
        smoothed.PlaneRow(0, y),
167
1.71k
        smoothed.PlaneRow(1, y),
168
1.71k
        smoothed.PlaneRow(2, y),
169
1.71k
    };
170
1.71k
    for (size_t x : {static_cast<size_t>(0), xsize - 1}) {
171
1.71k
      for (size_t c = 0; c < 3; c++) {
172
1.71k
        rows_out[c][x] = rows[c][x];
173
1.71k
      }
174
1.71k
    }
175
176
1.71k
    size_t x = 1;
177
    // First pixels
178
1.71k
    const size_t N = Lanes(D());
179
1.71k
    for (; x < std::min(N, xsize - 1); x++) {
180
1.71k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
181
1.71k
                            x);
182
1.71k
    }
183
    // Full vectors.
184
1.71k
    for (; x + N <= xsize - 1; x += N) {
185
1.71k
      ComputePixel<D>(dc_factors, rows_top, rows, rows_bottom, rows_out, x);
186
1.71k
    }
187
    // Last pixels.
188
1.71k
    for (; x < xsize - 1; x++) {
189
1.71k
      ComputePixel<DScalar>(dc_factors, rows_top, rows, rows_bottom, rows_out,
190
1.71k
                            x);
191
1.71k
    }
192
1.71k
    return true;
193
1.71k
  };
194
1.71k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 1, ysize - 1, ThreadPool::NoInit,
195
1.71k
                                process_row, "DCSmoothingRow"));
196
855
  dc->Swap(smoothed);
197
855
  return true;
198
1.71k
}
Unexecuted instantiation: jxl::N_SSE2::AdaptiveDCSmoothing(JxlMemoryManagerStruct*, float const*, jxl::Image3<float>*, jxl::ThreadPool*)
199
200
// DC dequantization.
201
void DequantDC(const Rect& r, Image3F* dc, ImageB* quant_dc, const Image& in,
202
               const float* dc_factors, float mul, const float* cfl_factors,
203
               const YCbCrChromaSubsampling& chroma_subsampling,
204
4.24k
               const BlockCtxMap& bctx) {
205
4.24k
  const HWY_FULL(float) df;
206
4.24k
  const Rebind<pixel_type, HWY_FULL(float)> di;  // assumes pixel_type <= float
207
4.24k
  if (chroma_subsampling.Is444()) {
208
4.13k
    const auto fac_x = Set(df, dc_factors[0] * mul);
209
4.13k
    const auto fac_y = Set(df, dc_factors[1] * mul);
210
4.13k
    const auto fac_b = Set(df, dc_factors[2] * mul);
211
4.13k
    const auto cfl_fac_x = Set(df, cfl_factors[0]);
212
4.13k
    const auto cfl_fac_b = Set(df, cfl_factors[2]);
213
21.9k
    for (size_t y = 0; y < r.ysize(); y++) {
214
17.7k
      float* dec_row_x = r.PlaneRow(dc, 0, y);
215
17.7k
      float* dec_row_y = r.PlaneRow(dc, 1, y);
216
17.7k
      float* dec_row_b = r.PlaneRow(dc, 2, y);
217
17.7k
      const int32_t* quant_row_x = in.channel[1].plane.Row(y);
218
17.7k
      const int32_t* quant_row_y = in.channel[0].plane.Row(y);
219
17.7k
      const int32_t* quant_row_b = in.channel[2].plane.Row(y);
220
102k
      for (size_t x = 0; x < r.xsize(); x += Lanes(di)) {
221
84.5k
        const auto in_q_x = Load(di, quant_row_x + x);
222
84.5k
        const auto in_q_y = Load(di, quant_row_y + x);
223
84.5k
        const auto in_q_b = Load(di, quant_row_b + x);
224
84.5k
        const auto in_x = Mul(ConvertTo(df, in_q_x), fac_x);
225
84.5k
        const auto in_y = Mul(ConvertTo(df, in_q_y), fac_y);
226
84.5k
        const auto in_b = Mul(ConvertTo(df, in_q_b), fac_b);
227
84.5k
        Store(in_y, df, dec_row_y + x);
228
84.5k
        Store(MulAdd(in_y, cfl_fac_x, in_x), df, dec_row_x + x);
229
84.5k
        Store(MulAdd(in_y, cfl_fac_b, in_b), df, dec_row_b + x);
230
84.5k
      }
231
17.7k
    }
232
4.13k
  } else {
233
342
    for (size_t c : {1, 0, 2}) {
234
342
      Rect rect(r.x0() >> chroma_subsampling.HShift(c),
235
342
                r.y0() >> chroma_subsampling.VShift(c),
236
342
                r.xsize() >> chroma_subsampling.HShift(c),
237
342
                r.ysize() >> chroma_subsampling.VShift(c));
238
342
      const auto fac = Set(df, dc_factors[c] * mul);
239
342
      const Channel& ch = in.channel[c < 2 ? c ^ 1 : c];
240
11.0k
      for (size_t y = 0; y < rect.ysize(); y++) {
241
10.7k
        const int32_t* quant_row = ch.plane.Row(y);
242
10.7k
        float* row = rect.PlaneRow(dc, c, y);
243
101k
        for (size_t x = 0; x < rect.xsize(); x += Lanes(di)) {
244
90.8k
          const auto in_q = Load(di, quant_row + x);
245
90.8k
          const auto out = Mul(ConvertTo(df, in_q), fac);
246
90.8k
          Store(out, df, row + x);
247
90.8k
        }
248
10.7k
      }
249
342
    }
250
114
  }
251
4.24k
  if (bctx.num_dc_ctxs <= 1) {
252
18.6k
    for (size_t y = 0; y < r.ysize(); y++) {
253
16.1k
      uint8_t* qdc_row = r.Row(quant_dc, y);
254
16.1k
      memset(qdc_row, 0, sizeof(*qdc_row) * r.xsize());
255
16.1k
    }
256
2.45k
  } else {
257
7.67k
    for (size_t y = 0; y < r.ysize(); y++) {
258
5.88k
      uint8_t* qdc_row_val = r.Row(quant_dc, y);
259
5.88k
      const int32_t* quant_row_x =
260
5.88k
          in.channel[1].plane.Row(y >> chroma_subsampling.VShift(0));
261
5.88k
      const int32_t* quant_row_y =
262
5.88k
          in.channel[0].plane.Row(y >> chroma_subsampling.VShift(1));
263
5.88k
      const int32_t* quant_row_b =
264
5.88k
          in.channel[2].plane.Row(y >> chroma_subsampling.VShift(2));
265
209k
      for (size_t x = 0; x < r.xsize(); x++) {
266
204k
        int bucket_x = 0;
267
204k
        int bucket_y = 0;
268
204k
        int bucket_b = 0;
269
948k
        for (int t : bctx.dc_thresholds[0]) {
270
948k
          if (quant_row_x[x >> chroma_subsampling.HShift(0)] > t) bucket_x++;
271
948k
        }
272
204k
        for (int t : bctx.dc_thresholds[1]) {
273
204k
          if (quant_row_y[x >> chroma_subsampling.HShift(1)] > t) bucket_y++;
274
204k
        }
275
204k
        for (int t : bctx.dc_thresholds[2]) {
276
70.4k
          if (quant_row_b[x >> chroma_subsampling.HShift(2)] > t) bucket_b++;
277
70.4k
        }
278
204k
        int bucket = bucket_x;
279
204k
        bucket *= bctx.dc_thresholds[2].size() + 1;
280
204k
        bucket += bucket_b;
281
204k
        bucket *= bctx.dc_thresholds[1].size() + 1;
282
204k
        bucket += bucket_y;
283
204k
        qdc_row_val[x] = bucket;
284
204k
      }
285
5.88k
    }
286
1.78k
  }
287
4.24k
}
Unexecuted instantiation: jxl::N_SSE4::DequantDC(jxl::RectT<unsigned long> const&, jxl::Image3<float>*, jxl::Plane<unsigned char>*, jxl::Image const&, float const*, float, float const*, jxl::YCbCrChromaSubsampling const&, jxl::BlockCtxMap const&)
jxl::N_AVX2::DequantDC(jxl::RectT<unsigned long> const&, jxl::Image3<float>*, jxl::Plane<unsigned char>*, jxl::Image const&, float const*, float, float const*, jxl::YCbCrChromaSubsampling const&, jxl::BlockCtxMap const&)
Line
Count
Source
204
4.24k
               const BlockCtxMap& bctx) {
205
4.24k
  const HWY_FULL(float) df;
206
4.24k
  const Rebind<pixel_type, HWY_FULL(float)> di;  // assumes pixel_type <= float
207
4.24k
  if (chroma_subsampling.Is444()) {
208
4.13k
    const auto fac_x = Set(df, dc_factors[0] * mul);
209
4.13k
    const auto fac_y = Set(df, dc_factors[1] * mul);
210
4.13k
    const auto fac_b = Set(df, dc_factors[2] * mul);
211
4.13k
    const auto cfl_fac_x = Set(df, cfl_factors[0]);
212
4.13k
    const auto cfl_fac_b = Set(df, cfl_factors[2]);
213
21.9k
    for (size_t y = 0; y < r.ysize(); y++) {
214
17.7k
      float* dec_row_x = r.PlaneRow(dc, 0, y);
215
17.7k
      float* dec_row_y = r.PlaneRow(dc, 1, y);
216
17.7k
      float* dec_row_b = r.PlaneRow(dc, 2, y);
217
17.7k
      const int32_t* quant_row_x = in.channel[1].plane.Row(y);
218
17.7k
      const int32_t* quant_row_y = in.channel[0].plane.Row(y);
219
17.7k
      const int32_t* quant_row_b = in.channel[2].plane.Row(y);
220
102k
      for (size_t x = 0; x < r.xsize(); x += Lanes(di)) {
221
84.5k
        const auto in_q_x = Load(di, quant_row_x + x);
222
84.5k
        const auto in_q_y = Load(di, quant_row_y + x);
223
84.5k
        const auto in_q_b = Load(di, quant_row_b + x);
224
84.5k
        const auto in_x = Mul(ConvertTo(df, in_q_x), fac_x);
225
84.5k
        const auto in_y = Mul(ConvertTo(df, in_q_y), fac_y);
226
84.5k
        const auto in_b = Mul(ConvertTo(df, in_q_b), fac_b);
227
84.5k
        Store(in_y, df, dec_row_y + x);
228
84.5k
        Store(MulAdd(in_y, cfl_fac_x, in_x), df, dec_row_x + x);
229
84.5k
        Store(MulAdd(in_y, cfl_fac_b, in_b), df, dec_row_b + x);
230
84.5k
      }
231
17.7k
    }
232
4.13k
  } else {
233
342
    for (size_t c : {1, 0, 2}) {
234
342
      Rect rect(r.x0() >> chroma_subsampling.HShift(c),
235
342
                r.y0() >> chroma_subsampling.VShift(c),
236
342
                r.xsize() >> chroma_subsampling.HShift(c),
237
342
                r.ysize() >> chroma_subsampling.VShift(c));
238
342
      const auto fac = Set(df, dc_factors[c] * mul);
239
342
      const Channel& ch = in.channel[c < 2 ? c ^ 1 : c];
240
11.0k
      for (size_t y = 0; y < rect.ysize(); y++) {
241
10.7k
        const int32_t* quant_row = ch.plane.Row(y);
242
10.7k
        float* row = rect.PlaneRow(dc, c, y);
243
101k
        for (size_t x = 0; x < rect.xsize(); x += Lanes(di)) {
244
90.8k
          const auto in_q = Load(di, quant_row + x);
245
90.8k
          const auto out = Mul(ConvertTo(df, in_q), fac);
246
90.8k
          Store(out, df, row + x);
247
90.8k
        }
248
10.7k
      }
249
342
    }
250
114
  }
251
4.24k
  if (bctx.num_dc_ctxs <= 1) {
252
18.6k
    for (size_t y = 0; y < r.ysize(); y++) {
253
16.1k
      uint8_t* qdc_row = r.Row(quant_dc, y);
254
16.1k
      memset(qdc_row, 0, sizeof(*qdc_row) * r.xsize());
255
16.1k
    }
256
2.45k
  } else {
257
7.67k
    for (size_t y = 0; y < r.ysize(); y++) {
258
5.88k
      uint8_t* qdc_row_val = r.Row(quant_dc, y);
259
5.88k
      const int32_t* quant_row_x =
260
5.88k
          in.channel[1].plane.Row(y >> chroma_subsampling.VShift(0));
261
5.88k
      const int32_t* quant_row_y =
262
5.88k
          in.channel[0].plane.Row(y >> chroma_subsampling.VShift(1));
263
5.88k
      const int32_t* quant_row_b =
264
5.88k
          in.channel[2].plane.Row(y >> chroma_subsampling.VShift(2));
265
209k
      for (size_t x = 0; x < r.xsize(); x++) {
266
204k
        int bucket_x = 0;
267
204k
        int bucket_y = 0;
268
204k
        int bucket_b = 0;
269
948k
        for (int t : bctx.dc_thresholds[0]) {
270
948k
          if (quant_row_x[x >> chroma_subsampling.HShift(0)] > t) bucket_x++;
271
948k
        }
272
204k
        for (int t : bctx.dc_thresholds[1]) {
273
204k
          if (quant_row_y[x >> chroma_subsampling.HShift(1)] > t) bucket_y++;
274
204k
        }
275
204k
        for (int t : bctx.dc_thresholds[2]) {
276
70.4k
          if (quant_row_b[x >> chroma_subsampling.HShift(2)] > t) bucket_b++;
277
70.4k
        }
278
204k
        int bucket = bucket_x;
279
204k
        bucket *= bctx.dc_thresholds[2].size() + 1;
280
204k
        bucket += bucket_b;
281
204k
        bucket *= bctx.dc_thresholds[1].size() + 1;
282
204k
        bucket += bucket_y;
283
204k
        qdc_row_val[x] = bucket;
284
204k
      }
285
5.88k
    }
286
1.78k
  }
287
4.24k
}
Unexecuted instantiation: jxl::N_SSE2::DequantDC(jxl::RectT<unsigned long> const&, jxl::Image3<float>*, jxl::Plane<unsigned char>*, jxl::Image const&, float const*, float, float const*, jxl::YCbCrChromaSubsampling const&, jxl::BlockCtxMap const&)
288
289
// NOLINTNEXTLINE(google-readability-namespace-comments)
290
}  // namespace HWY_NAMESPACE
291
}  // namespace jxl
292
HWY_AFTER_NAMESPACE();
293
294
#if HWY_ONCE
295
namespace jxl {
296
297
HWY_EXPORT(DequantDC);
298
HWY_EXPORT(AdaptiveDCSmoothing);
299
Status AdaptiveDCSmoothing(JxlMemoryManager* memory_manager,
300
                           const float* dc_factors, Image3F* dc,
301
3.81k
                           ThreadPool* pool) {
302
3.81k
  return HWY_DYNAMIC_DISPATCH(AdaptiveDCSmoothing)(memory_manager, dc_factors,
303
3.81k
                                                   dc, pool);
304
3.81k
}
305
306
void DequantDC(const Rect& r, Image3F* dc, ImageB* quant_dc, const Image& in,
307
               const float* dc_factors, float mul, const float* cfl_factors,
308
               const YCbCrChromaSubsampling& chroma_subsampling,
309
4.24k
               const BlockCtxMap& bctx) {
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  HWY_DYNAMIC_DISPATCH(DequantDC)
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  (r, dc, quant_dc, in, dc_factors, mul, cfl_factors, chroma_subsampling, bctx);
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}
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}  // namespace jxl
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#endif  // HWY_ONCE