Coverage Report

Created: 2025-11-14 07:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/modular/transform/squeeze.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/squeeze.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 <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/printf_macros.h"
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#include "lib/jxl/base/status.h"
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#include "lib/jxl/modular/modular_image.h"
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#include "lib/jxl/modular/transform/squeeze_params.h"
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#undef HWY_TARGET_INCLUDE
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#define HWY_TARGET_INCLUDE "lib/jxl/modular/transform/squeeze.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/simd_util-inl.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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#if HWY_TARGET != HWY_SCALAR
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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::And;
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using hwy::HWY_NAMESPACE::DupEven;
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using hwy::HWY_NAMESPACE::DupOdd;
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using hwy::HWY_NAMESPACE::Gt;
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using hwy::HWY_NAMESPACE::IfThenElse;
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using hwy::HWY_NAMESPACE::IfThenZeroElse;
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using hwy::HWY_NAMESPACE::Lt;
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using hwy::HWY_NAMESPACE::MulEven;
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using hwy::HWY_NAMESPACE::MulOdd;
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using hwy::HWY_NAMESPACE::Ne;
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using hwy::HWY_NAMESPACE::Neg;
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using hwy::HWY_NAMESPACE::OddEven;
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using hwy::HWY_NAMESPACE::RebindToUnsigned;
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using hwy::HWY_NAMESPACE::ShiftLeft;
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using hwy::HWY_NAMESPACE::ShiftRight;
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using hwy::HWY_NAMESPACE::Sub;
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using hwy::HWY_NAMESPACE::Xor;
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using D = HWY_CAPPED(pixel_type, 8);
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using DU = RebindToUnsigned<D>;
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constexpr D d;
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constexpr DU du;
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JXL_INLINE void FastUnsqueeze(const pixel_type *JXL_RESTRICT p_residual,
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                              const pixel_type *JXL_RESTRICT p_avg,
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                              const pixel_type *JXL_RESTRICT p_navg,
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                              const pixel_type *p_pout,
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                              pixel_type *JXL_RESTRICT p_out,
67
74.1M
                              pixel_type *p_nout) {
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74.1M
  const size_t N = Lanes(d);
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74.1M
  auto onethird = Set(d, 0x55555556);
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148M
  for (size_t x = 0; x < 8; x += N) {
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74.1M
    auto avg = Load(d, p_avg + x);
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    auto next_avg = Load(d, p_navg + x);
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74.1M
    auto top = Load(d, p_pout + x);
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    // Equivalent to SmoothTendency(top,avg,next_avg), but without branches
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    // typo:off
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74.1M
    auto Ba = Sub(top, avg);
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74.1M
    auto an = Sub(avg, next_avg);
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74.1M
    auto nonmono = Xor(Ba, an);
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74.1M
    auto absBa = Abs(Ba);
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74.1M
    auto absan = Abs(an);
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74.1M
    auto absBn = Abs(Sub(top, next_avg));
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    // Compute a3 = absBa / 3
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74.1M
    auto a3eh = MulEven(absBa, onethird);
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74.1M
    auto a3oh = MulOdd(absBa, onethird);
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86
74.1M
#if (HWY_MAJOR > 1 || (HWY_MAJOR == 1 && HWY_MINOR >= 2))
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74.1M
#if HWY_IS_LITTLE_ENDIAN
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74.1M
    auto a3 = InterleaveOdd(d, BitCast(d, a3eh), BitCast(d, a3oh));
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#else  // not little endian
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    auto a3 = InterleaveEven(d, BitCast(d, a3eh), BitCast(d, a3oh));
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#endif  // endianness
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#else  // hwy < 1.2
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#if HWY_IS_LITTLE_ENDIAN
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    auto a3 = OddEven(BitCast(d, a3oh), DupOdd(BitCast(d, a3eh)));
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#else  // not little endian
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    auto a3 = OddEven(DupEven(BitCast(d, a3oh)), BitCast(d, a3eh))
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#endif  // endianness
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#endif  // hwy version
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74.1M
    a3 = Add(a3, Add(absBn, Set(d, 2)));
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    auto absdiff = ShiftRight<2>(a3);
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    auto skipdiff = Ne(Ba, Zero(d));
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    skipdiff = And(skipdiff, Ne(an, Zero(d)));
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74.1M
    skipdiff = And(skipdiff, Lt(nonmono, Zero(d)));
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74.1M
    auto absBa2 = Add(ShiftLeft<1>(absBa), And(absdiff, Set(d, 1)));
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74.1M
    absdiff = IfThenElse(Gt(absdiff, absBa2),
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74.1M
                         Add(ShiftLeft<1>(absBa), Set(d, 1)), absdiff);
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    // typo:on
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74.1M
    auto absan2 = ShiftLeft<1>(absan);
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74.1M
    absdiff = IfThenElse(Gt(Add(absdiff, And(absdiff, Set(d, 1))), absan2),
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74.1M
                         absan2, absdiff);
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74.1M
    auto diff1 = IfThenElse(Lt(top, next_avg), Neg(absdiff), absdiff);
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74.1M
    auto tendency = IfThenZeroElse(skipdiff, diff1);
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74.1M
    auto diff_minus_tendency = Load(d, p_residual + x);
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74.1M
    auto diff = Add(diff_minus_tendency, tendency);
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74.1M
    auto out =
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74.1M
        Add(avg, ShiftRight<1>(
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74.1M
                     Add(diff, BitCast(d, ShiftRight<31>(BitCast(du, diff))))));
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    Store(out, d, p_out + x);
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    Store(Sub(out, diff), d, p_nout + x);
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  }
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}
Unexecuted instantiation: jxl::N_SSE4::FastUnsqueeze(int const*, int const*, int const*, int const*, int*, int*)
jxl::N_AVX2::FastUnsqueeze(int const*, int const*, int const*, int const*, int*, int*)
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                              pixel_type *p_nout) {
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  const size_t N = Lanes(d);
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  auto onethird = Set(d, 0x55555556);
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  for (size_t x = 0; x < 8; x += N) {
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    auto avg = Load(d, p_avg + x);
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    auto next_avg = Load(d, p_navg + x);
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    auto top = Load(d, p_pout + x);
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    // Equivalent to SmoothTendency(top,avg,next_avg), but without branches
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    // typo:off
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    auto Ba = Sub(top, avg);
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    auto an = Sub(avg, next_avg);
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    auto nonmono = Xor(Ba, an);
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    auto absBa = Abs(Ba);
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    auto absan = Abs(an);
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    auto absBn = Abs(Sub(top, next_avg));
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    // Compute a3 = absBa / 3
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    auto a3eh = MulEven(absBa, onethird);
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    auto a3oh = MulOdd(absBa, onethird);
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74.1M
#if (HWY_MAJOR > 1 || (HWY_MAJOR == 1 && HWY_MINOR >= 2))
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74.1M
#if HWY_IS_LITTLE_ENDIAN
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74.1M
    auto a3 = InterleaveOdd(d, BitCast(d, a3eh), BitCast(d, a3oh));
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#else  // not little endian
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    auto a3 = InterleaveEven(d, BitCast(d, a3eh), BitCast(d, a3oh));
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#endif  // endianness
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#else  // hwy < 1.2
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#if HWY_IS_LITTLE_ENDIAN
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    auto a3 = OddEven(BitCast(d, a3oh), DupOdd(BitCast(d, a3eh)));
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#else  // not little endian
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    auto a3 = OddEven(DupEven(BitCast(d, a3oh)), BitCast(d, a3eh))
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#endif  // endianness
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#endif  // hwy version
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74.1M
    a3 = Add(a3, Add(absBn, Set(d, 2)));
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    auto absdiff = ShiftRight<2>(a3);
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    auto skipdiff = Ne(Ba, Zero(d));
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    skipdiff = And(skipdiff, Ne(an, Zero(d)));
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    skipdiff = And(skipdiff, Lt(nonmono, Zero(d)));
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74.1M
    auto absBa2 = Add(ShiftLeft<1>(absBa), And(absdiff, Set(d, 1)));
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74.1M
    absdiff = IfThenElse(Gt(absdiff, absBa2),
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74.1M
                         Add(ShiftLeft<1>(absBa), Set(d, 1)), absdiff);
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    // typo:on
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74.1M
    auto absan2 = ShiftLeft<1>(absan);
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74.1M
    absdiff = IfThenElse(Gt(Add(absdiff, And(absdiff, Set(d, 1))), absan2),
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74.1M
                         absan2, absdiff);
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74.1M
    auto diff1 = IfThenElse(Lt(top, next_avg), Neg(absdiff), absdiff);
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74.1M
    auto tendency = IfThenZeroElse(skipdiff, diff1);
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115
74.1M
    auto diff_minus_tendency = Load(d, p_residual + x);
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74.1M
    auto diff = Add(diff_minus_tendency, tendency);
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74.1M
    auto out =
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74.1M
        Add(avg, ShiftRight<1>(
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74.1M
                     Add(diff, BitCast(d, ShiftRight<31>(BitCast(du, diff))))));
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74.1M
    Store(out, d, p_out + x);
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    Store(Sub(out, diff), d, p_nout + x);
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74.1M
  }
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74.1M
}
Unexecuted instantiation: jxl::N_SSE2::FastUnsqueeze(int const*, int const*, int const*, int const*, int*, int*)
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#endif  // HWY_TARGET != HWY_SCALAR
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133k
Status InvHSqueeze(Image &input, uint32_t c, uint32_t rc, ThreadPool *pool) {
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  JXL_ENSURE(c < input.channel.size());
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  JXL_ENSURE(rc < input.channel.size());
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  Channel &chin = input.channel[c];
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  const Channel &chin_residual = input.channel[rc];
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  // These must be valid since we ran MetaApply already.
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  JXL_ENSURE(chin.w == DivCeil(chin.w + chin_residual.w, 2));
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  JXL_ENSURE(chin.h == chin_residual.h);
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  JxlMemoryManager *memory_manager = input.memory_manager();
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  if (chin_residual.w == 0) {
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    // Short-circuit: output channel has same dimensions as input.
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    input.channel[c].hshift--;
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    return true;
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  }
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  // Note: chin.w >= chin_residual.w and at most 1 different.
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  JXL_ASSIGN_OR_RETURN(Channel chout,
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                       Channel::Create(memory_manager, chin.w + chin_residual.w,
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                                       chin.h, chin.hshift - 1, chin.vshift));
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  JXL_DEBUG_V(4,
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              "Undoing horizontal squeeze of channel %i using residuals in "
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              "channel %i (going from width %" PRIuS " to %" PRIuS ")",
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              c, rc, chin.w, chout.w);
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  if (chin_residual.h == 0) {
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    // Short-circuit: channel with no pixels.
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0
    input.channel[c] = std::move(chout);
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0
    return true;
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0
  }
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4.81M
  auto unsqueeze_row = [&](size_t y, size_t x0) {
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4.81M
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y);
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    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y);
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4.81M
    pixel_type *JXL_RESTRICT p_out = chout.Row(y);
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42.2M
    for (size_t x = x0; x < chin_residual.w; x++) {
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37.4M
      pixel_type_w diff_minus_tendency = p_residual[x];
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37.4M
      pixel_type_w avg = p_avg[x];
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37.4M
      pixel_type_w next_avg = (x + 1 < chin.w ? p_avg[x + 1] : avg);
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37.4M
      pixel_type_w left = (x ? p_out[(x << 1) - 1] : avg);
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37.4M
      pixel_type_w tendency = SmoothTendency(left, avg, next_avg);
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37.4M
      pixel_type_w diff = diff_minus_tendency + tendency;
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37.4M
      pixel_type_w A = avg + (diff / 2);
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      p_out[(x << 1)] = A;
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      pixel_type_w B = A - diff;
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37.4M
      p_out[(x << 1) + 1] = B;
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    }
173
4.81M
    if (chout.w & 1) p_out[chout.w - 1] = p_avg[chin.w - 1];
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  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE4::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned long, unsigned long) const
squeeze.cc:jxl::N_AVX2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned long, unsigned long) const
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157
4.81M
  auto unsqueeze_row = [&](size_t y, size_t x0) {
158
4.81M
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y);
159
4.81M
    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y);
160
4.81M
    pixel_type *JXL_RESTRICT p_out = chout.Row(y);
161
42.2M
    for (size_t x = x0; x < chin_residual.w; x++) {
162
37.4M
      pixel_type_w diff_minus_tendency = p_residual[x];
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37.4M
      pixel_type_w avg = p_avg[x];
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37.4M
      pixel_type_w next_avg = (x + 1 < chin.w ? p_avg[x + 1] : avg);
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37.4M
      pixel_type_w left = (x ? p_out[(x << 1) - 1] : avg);
166
37.4M
      pixel_type_w tendency = SmoothTendency(left, avg, next_avg);
167
37.4M
      pixel_type_w diff = diff_minus_tendency + tendency;
168
37.4M
      pixel_type_w A = avg + (diff / 2);
169
37.4M
      p_out[(x << 1)] = A;
170
37.4M
      pixel_type_w B = A - diff;
171
37.4M
      p_out[(x << 1) + 1] = B;
172
37.4M
    }
173
4.81M
    if (chout.w & 1) p_out[chout.w - 1] = p_avg[chin.w - 1];
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4.81M
  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned long, unsigned long) const
175
176
  // somewhat complicated trickery just to be able to SIMD this.
177
  // Horizontal unsqueeze has horizontal data dependencies, so we do
178
  // 8 rows at a time and treat it as a vertical unsqueeze of a
179
  // transposed 8x8 block (or 9x8 for one input).
180
131k
  static constexpr const size_t kRowsPerThread = 8;
181
131k
  const auto unsqueeze_span = [&](const uint32_t task,
182
638k
                                  size_t /* thread */) -> Status {
183
638k
    const size_t y0 = task * kRowsPerThread;
184
638k
    const size_t rows = std::min(kRowsPerThread, chin.h - y0);
185
638k
    size_t x = 0;
186
187
638k
#if HWY_TARGET != HWY_SCALAR
188
638k
    ptrdiff_t onerow_in = chin.plane.PixelsPerRow();
189
638k
    ptrdiff_t onerow_inr = chin_residual.plane.PixelsPerRow();
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638k
    ptrdiff_t onerow_out = chout.plane.PixelsPerRow();
191
638k
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y0);
192
638k
    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y0);
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638k
    pixel_type *JXL_RESTRICT p_out = chout.Row(y0);
194
638k
    HWY_ALIGN pixel_type b_p_avg[9 * kRowsPerThread];
195
638k
    HWY_ALIGN pixel_type b_p_residual[8 * kRowsPerThread];
196
638k
    HWY_ALIGN pixel_type b_p_out_even[8 * kRowsPerThread];
197
638k
    HWY_ALIGN pixel_type b_p_out_odd[8 * kRowsPerThread];
198
638k
    HWY_ALIGN pixel_type b_p_out_evenT[8 * kRowsPerThread];
199
638k
    HWY_ALIGN pixel_type b_p_out_oddT[8 * kRowsPerThread];
200
638k
    const size_t N = Lanes(d);
201
638k
    if (chin_residual.w > 16 && rows == kRowsPerThread) {
202
5.23M
      for (; x < chin_residual.w - 9; x += 8) {
203
4.80M
        Transpose8x8Block(p_residual + x, b_p_residual, onerow_inr);
204
4.80M
        Transpose8x8Block(p_avg + x, b_p_avg, onerow_in);
205
43.2M
        for (size_t y = 0; y < kRowsPerThread; y++) {
206
38.4M
          b_p_avg[8 * 8 + y] = p_avg[x + 8 + onerow_in * y];
207
38.4M
        }
208
43.2M
        for (size_t i = 0; i < 8; i++) {
209
38.4M
          FastUnsqueeze(
210
38.4M
              b_p_residual + 8 * i, b_p_avg + 8 * i, b_p_avg + 8 * (i + 1),
211
38.4M
              (x + i ? b_p_out_odd + 8 * ((x + i - 1) & 7) : b_p_avg + 8 * i),
212
38.4M
              b_p_out_even + 8 * i, b_p_out_odd + 8 * i);
213
38.4M
        }
214
215
4.80M
        Transpose8x8Block(b_p_out_even, b_p_out_evenT, 8);
216
4.80M
        Transpose8x8Block(b_p_out_odd, b_p_out_oddT, 8);
217
43.2M
        for (size_t y = 0; y < kRowsPerThread; y++) {
218
76.8M
          for (size_t i = 0; i < kRowsPerThread; i += N) {
219
38.4M
            auto even = Load(d, b_p_out_evenT + 8 * y + i);
220
38.4M
            auto odd = Load(d, b_p_out_oddT + 8 * y + i);
221
38.4M
            StoreInterleaved(d, even, odd,
222
38.4M
                             p_out + ((x + i) << 1) + onerow_out * y);
223
38.4M
          }
224
38.4M
        }
225
4.80M
      }
226
439k
    }
227
638k
#endif  // HWY_TARGET != HWY_SCALAR
228
5.45M
    for (size_t y = 0; y < rows; y++) {
229
4.81M
      unsqueeze_row(y0 + y, x);
230
4.81M
    }
231
638k
    return true;
232
638k
  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE4::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_1::operator()(unsigned int, unsigned long) const
squeeze.cc:jxl::N_AVX2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_1::operator()(unsigned int, unsigned long) const
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Source
182
638k
                                  size_t /* thread */) -> Status {
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638k
    const size_t y0 = task * kRowsPerThread;
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638k
    const size_t rows = std::min(kRowsPerThread, chin.h - y0);
185
638k
    size_t x = 0;
186
187
638k
#if HWY_TARGET != HWY_SCALAR
188
638k
    ptrdiff_t onerow_in = chin.plane.PixelsPerRow();
189
638k
    ptrdiff_t onerow_inr = chin_residual.plane.PixelsPerRow();
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638k
    ptrdiff_t onerow_out = chout.plane.PixelsPerRow();
191
638k
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y0);
192
638k
    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y0);
193
638k
    pixel_type *JXL_RESTRICT p_out = chout.Row(y0);
194
638k
    HWY_ALIGN pixel_type b_p_avg[9 * kRowsPerThread];
195
638k
    HWY_ALIGN pixel_type b_p_residual[8 * kRowsPerThread];
196
638k
    HWY_ALIGN pixel_type b_p_out_even[8 * kRowsPerThread];
197
638k
    HWY_ALIGN pixel_type b_p_out_odd[8 * kRowsPerThread];
198
638k
    HWY_ALIGN pixel_type b_p_out_evenT[8 * kRowsPerThread];
199
638k
    HWY_ALIGN pixel_type b_p_out_oddT[8 * kRowsPerThread];
200
638k
    const size_t N = Lanes(d);
201
638k
    if (chin_residual.w > 16 && rows == kRowsPerThread) {
202
5.23M
      for (; x < chin_residual.w - 9; x += 8) {
203
4.80M
        Transpose8x8Block(p_residual + x, b_p_residual, onerow_inr);
204
4.80M
        Transpose8x8Block(p_avg + x, b_p_avg, onerow_in);
205
43.2M
        for (size_t y = 0; y < kRowsPerThread; y++) {
206
38.4M
          b_p_avg[8 * 8 + y] = p_avg[x + 8 + onerow_in * y];
207
38.4M
        }
208
43.2M
        for (size_t i = 0; i < 8; i++) {
209
38.4M
          FastUnsqueeze(
210
38.4M
              b_p_residual + 8 * i, b_p_avg + 8 * i, b_p_avg + 8 * (i + 1),
211
38.4M
              (x + i ? b_p_out_odd + 8 * ((x + i - 1) & 7) : b_p_avg + 8 * i),
212
38.4M
              b_p_out_even + 8 * i, b_p_out_odd + 8 * i);
213
38.4M
        }
214
215
4.80M
        Transpose8x8Block(b_p_out_even, b_p_out_evenT, 8);
216
4.80M
        Transpose8x8Block(b_p_out_odd, b_p_out_oddT, 8);
217
43.2M
        for (size_t y = 0; y < kRowsPerThread; y++) {
218
76.8M
          for (size_t i = 0; i < kRowsPerThread; i += N) {
219
38.4M
            auto even = Load(d, b_p_out_evenT + 8 * y + i);
220
38.4M
            auto odd = Load(d, b_p_out_oddT + 8 * y + i);
221
38.4M
            StoreInterleaved(d, even, odd,
222
38.4M
                             p_out + ((x + i) << 1) + onerow_out * y);
223
38.4M
          }
224
38.4M
        }
225
4.80M
      }
226
439k
    }
227
638k
#endif  // HWY_TARGET != HWY_SCALAR
228
5.45M
    for (size_t y = 0; y < rows; y++) {
229
4.81M
      unsqueeze_row(y0 + y, x);
230
4.81M
    }
231
638k
    return true;
232
638k
  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_1::operator()(unsigned int, unsigned long) const
233
131k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, DivCeil(chin.h, kRowsPerThread),
234
131k
                                ThreadPool::NoInit, unsqueeze_span,
235
131k
                                "InvHorizontalSqueeze"));
236
131k
  input.channel[c] = std::move(chout);
237
131k
  return true;
238
131k
}
Unexecuted instantiation: jxl::N_SSE4::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
jxl::N_AVX2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
Line
Count
Source
127
133k
Status InvHSqueeze(Image &input, uint32_t c, uint32_t rc, ThreadPool *pool) {
128
133k
  JXL_ENSURE(c < input.channel.size());
129
133k
  JXL_ENSURE(rc < input.channel.size());
130
133k
  Channel &chin = input.channel[c];
131
133k
  const Channel &chin_residual = input.channel[rc];
132
  // These must be valid since we ran MetaApply already.
133
133k
  JXL_ENSURE(chin.w == DivCeil(chin.w + chin_residual.w, 2));
134
133k
  JXL_ENSURE(chin.h == chin_residual.h);
135
133k
  JxlMemoryManager *memory_manager = input.memory_manager();
136
137
133k
  if (chin_residual.w == 0) {
138
    // Short-circuit: output channel has same dimensions as input.
139
1.84k
    input.channel[c].hshift--;
140
1.84k
    return true;
141
1.84k
  }
142
143
  // Note: chin.w >= chin_residual.w and at most 1 different.
144
262k
  JXL_ASSIGN_OR_RETURN(Channel chout,
145
262k
                       Channel::Create(memory_manager, chin.w + chin_residual.w,
146
262k
                                       chin.h, chin.hshift - 1, chin.vshift));
147
262k
  JXL_DEBUG_V(4,
148
262k
              "Undoing horizontal squeeze of channel %i using residuals in "
149
262k
              "channel %i (going from width %" PRIuS " to %" PRIuS ")",
150
262k
              c, rc, chin.w, chout.w);
151
152
262k
  if (chin_residual.h == 0) {
153
    // Short-circuit: channel with no pixels.
154
0
    input.channel[c] = std::move(chout);
155
0
    return true;
156
0
  }
157
131k
  auto unsqueeze_row = [&](size_t y, size_t x0) {
158
131k
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y);
159
131k
    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y);
160
131k
    pixel_type *JXL_RESTRICT p_out = chout.Row(y);
161
131k
    for (size_t x = x0; x < chin_residual.w; x++) {
162
131k
      pixel_type_w diff_minus_tendency = p_residual[x];
163
131k
      pixel_type_w avg = p_avg[x];
164
131k
      pixel_type_w next_avg = (x + 1 < chin.w ? p_avg[x + 1] : avg);
165
131k
      pixel_type_w left = (x ? p_out[(x << 1) - 1] : avg);
166
131k
      pixel_type_w tendency = SmoothTendency(left, avg, next_avg);
167
131k
      pixel_type_w diff = diff_minus_tendency + tendency;
168
131k
      pixel_type_w A = avg + (diff / 2);
169
131k
      p_out[(x << 1)] = A;
170
131k
      pixel_type_w B = A - diff;
171
131k
      p_out[(x << 1) + 1] = B;
172
131k
    }
173
131k
    if (chout.w & 1) p_out[chout.w - 1] = p_avg[chin.w - 1];
174
131k
  };
175
176
  // somewhat complicated trickery just to be able to SIMD this.
177
  // Horizontal unsqueeze has horizontal data dependencies, so we do
178
  // 8 rows at a time and treat it as a vertical unsqueeze of a
179
  // transposed 8x8 block (or 9x8 for one input).
180
131k
  static constexpr const size_t kRowsPerThread = 8;
181
131k
  const auto unsqueeze_span = [&](const uint32_t task,
182
131k
                                  size_t /* thread */) -> Status {
183
131k
    const size_t y0 = task * kRowsPerThread;
184
131k
    const size_t rows = std::min(kRowsPerThread, chin.h - y0);
185
131k
    size_t x = 0;
186
187
131k
#if HWY_TARGET != HWY_SCALAR
188
131k
    ptrdiff_t onerow_in = chin.plane.PixelsPerRow();
189
131k
    ptrdiff_t onerow_inr = chin_residual.plane.PixelsPerRow();
190
131k
    ptrdiff_t onerow_out = chout.plane.PixelsPerRow();
191
131k
    const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y0);
192
131k
    const pixel_type *JXL_RESTRICT p_avg = chin.Row(y0);
193
131k
    pixel_type *JXL_RESTRICT p_out = chout.Row(y0);
194
131k
    HWY_ALIGN pixel_type b_p_avg[9 * kRowsPerThread];
195
131k
    HWY_ALIGN pixel_type b_p_residual[8 * kRowsPerThread];
196
131k
    HWY_ALIGN pixel_type b_p_out_even[8 * kRowsPerThread];
197
131k
    HWY_ALIGN pixel_type b_p_out_odd[8 * kRowsPerThread];
198
131k
    HWY_ALIGN pixel_type b_p_out_evenT[8 * kRowsPerThread];
199
131k
    HWY_ALIGN pixel_type b_p_out_oddT[8 * kRowsPerThread];
200
131k
    const size_t N = Lanes(d);
201
131k
    if (chin_residual.w > 16 && rows == kRowsPerThread) {
202
131k
      for (; x < chin_residual.w - 9; x += 8) {
203
131k
        Transpose8x8Block(p_residual + x, b_p_residual, onerow_inr);
204
131k
        Transpose8x8Block(p_avg + x, b_p_avg, onerow_in);
205
131k
        for (size_t y = 0; y < kRowsPerThread; y++) {
206
131k
          b_p_avg[8 * 8 + y] = p_avg[x + 8 + onerow_in * y];
207
131k
        }
208
131k
        for (size_t i = 0; i < 8; i++) {
209
131k
          FastUnsqueeze(
210
131k
              b_p_residual + 8 * i, b_p_avg + 8 * i, b_p_avg + 8 * (i + 1),
211
131k
              (x + i ? b_p_out_odd + 8 * ((x + i - 1) & 7) : b_p_avg + 8 * i),
212
131k
              b_p_out_even + 8 * i, b_p_out_odd + 8 * i);
213
131k
        }
214
215
131k
        Transpose8x8Block(b_p_out_even, b_p_out_evenT, 8);
216
131k
        Transpose8x8Block(b_p_out_odd, b_p_out_oddT, 8);
217
131k
        for (size_t y = 0; y < kRowsPerThread; y++) {
218
131k
          for (size_t i = 0; i < kRowsPerThread; i += N) {
219
131k
            auto even = Load(d, b_p_out_evenT + 8 * y + i);
220
131k
            auto odd = Load(d, b_p_out_oddT + 8 * y + i);
221
131k
            StoreInterleaved(d, even, odd,
222
131k
                             p_out + ((x + i) << 1) + onerow_out * y);
223
131k
          }
224
131k
        }
225
131k
      }
226
131k
    }
227
131k
#endif  // HWY_TARGET != HWY_SCALAR
228
131k
    for (size_t y = 0; y < rows; y++) {
229
131k
      unsqueeze_row(y0 + y, x);
230
131k
    }
231
131k
    return true;
232
131k
  };
233
131k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, DivCeil(chin.h, kRowsPerThread),
234
131k
                                ThreadPool::NoInit, unsqueeze_span,
235
131k
                                "InvHorizontalSqueeze"));
236
131k
  input.channel[c] = std::move(chout);
237
131k
  return true;
238
131k
}
Unexecuted instantiation: jxl::N_SSE2::InvHSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
239
240
130k
Status InvVSqueeze(Image &input, uint32_t c, uint32_t rc, ThreadPool *pool) {
241
130k
  JXL_ENSURE(c < input.channel.size());
242
130k
  JXL_ENSURE(rc < input.channel.size());
243
130k
  const Channel &chin = input.channel[c];
244
130k
  const Channel &chin_residual = input.channel[rc];
245
  // These must be valid since we ran MetaApply already.
246
130k
  JXL_ENSURE(chin.h == DivCeil(chin.h + chin_residual.h, 2));
247
130k
  JXL_ENSURE(chin.w == chin_residual.w);
248
130k
  JxlMemoryManager *memory_manager = input.memory_manager();
249
250
130k
  if (chin_residual.h == 0) {
251
    // Short-circuit: output channel has same dimensions as input.
252
910
    input.channel[c].vshift--;
253
910
    return true;
254
910
  }
255
256
  // Note: chin.h >= chin_residual.h and at most 1 different.
257
258k
  JXL_ASSIGN_OR_RETURN(
258
258k
      Channel chout,
259
258k
      Channel::Create(memory_manager, chin.w, chin.h + chin_residual.h,
260
258k
                      chin.hshift, chin.vshift - 1));
261
258k
  JXL_DEBUG_V(
262
258k
      4,
263
258k
      "Undoing vertical squeeze of channel %i using residuals in channel "
264
258k
      "%i (going from height %" PRIuS " to %" PRIuS ")",
265
258k
      c, rc, chin.h, chout.h);
266
267
258k
  if (chin_residual.w == 0) {
268
    // Short-circuit: channel with no pixels.
269
0
    input.channel[c] = std::move(chout);
270
0
    return true;
271
0
  }
272
273
129k
  static constexpr const int kColsPerThread = 64;
274
129k
  const auto unsqueeze_slice = [&](const uint32_t task,
275
156k
                                   size_t /* thread */) -> Status {
276
156k
    const size_t x0 = task * kColsPerThread;
277
156k
    const size_t x1 =
278
156k
        std::min(static_cast<size_t>(task + 1) * kColsPerThread, chin.w);
279
156k
    const size_t w = x1 - x0;
280
    // We only iterate up to std::min(chin_residual.h, chin.h) which is
281
    // always chin_residual.h.
282
5.98M
    for (size_t y = 0; y < chin_residual.h; y++) {
283
5.83M
      const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y) + x0;
284
5.83M
      const pixel_type *JXL_RESTRICT p_avg = chin.Row(y) + x0;
285
5.83M
      const pixel_type *JXL_RESTRICT p_navg =
286
5.83M
          chin.Row(y + 1 < chin.h ? y + 1 : y) + x0;
287
5.83M
      pixel_type *JXL_RESTRICT p_out = chout.Row(y << 1) + x0;
288
5.83M
      pixel_type *JXL_RESTRICT p_nout = chout.Row((y << 1) + 1) + x0;
289
5.83M
      const pixel_type *p_pout = y > 0 ? chout.Row((y << 1) - 1) + x0 : p_avg;
290
5.83M
      size_t x = 0;
291
5.83M
#if HWY_TARGET != HWY_SCALAR
292
41.6M
      for (; x + 7 < w; x += 8) {
293
35.7M
        FastUnsqueeze(p_residual + x, p_avg + x, p_navg + x, p_pout + x,
294
35.7M
                      p_out + x, p_nout + x);
295
35.7M
      }
296
5.83M
#endif
297
12.7M
      for (; x < w; x++) {
298
6.90M
        pixel_type_w avg = p_avg[x];
299
6.90M
        pixel_type_w next_avg = p_navg[x];
300
6.90M
        pixel_type_w top = p_pout[x];
301
6.90M
        pixel_type_w tendency = SmoothTendency(top, avg, next_avg);
302
6.90M
        pixel_type_w diff_minus_tendency = p_residual[x];
303
6.90M
        pixel_type_w diff = diff_minus_tendency + tendency;
304
6.90M
        pixel_type_w out = avg + (diff / 2);
305
6.90M
        p_out[x] = out;
306
        // If the chin_residual.h == chin.h, the output has an even number
307
        // of rows so the next line is fine. Otherwise, this loop won't
308
        // write to the last output row which is handled separately.
309
6.90M
        p_nout[x] = out - diff;
310
6.90M
      }
311
5.83M
    }
312
156k
    return true;
313
156k
  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE4::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
squeeze.cc:jxl::N_AVX2::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
Line
Count
Source
275
156k
                                   size_t /* thread */) -> Status {
276
156k
    const size_t x0 = task * kColsPerThread;
277
156k
    const size_t x1 =
278
156k
        std::min(static_cast<size_t>(task + 1) * kColsPerThread, chin.w);
279
156k
    const size_t w = x1 - x0;
280
    // We only iterate up to std::min(chin_residual.h, chin.h) which is
281
    // always chin_residual.h.
282
5.98M
    for (size_t y = 0; y < chin_residual.h; y++) {
283
5.83M
      const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y) + x0;
284
5.83M
      const pixel_type *JXL_RESTRICT p_avg = chin.Row(y) + x0;
285
5.83M
      const pixel_type *JXL_RESTRICT p_navg =
286
5.83M
          chin.Row(y + 1 < chin.h ? y + 1 : y) + x0;
287
5.83M
      pixel_type *JXL_RESTRICT p_out = chout.Row(y << 1) + x0;
288
5.83M
      pixel_type *JXL_RESTRICT p_nout = chout.Row((y << 1) + 1) + x0;
289
5.83M
      const pixel_type *p_pout = y > 0 ? chout.Row((y << 1) - 1) + x0 : p_avg;
290
5.83M
      size_t x = 0;
291
5.83M
#if HWY_TARGET != HWY_SCALAR
292
41.6M
      for (; x + 7 < w; x += 8) {
293
35.7M
        FastUnsqueeze(p_residual + x, p_avg + x, p_navg + x, p_pout + x,
294
35.7M
                      p_out + x, p_nout + x);
295
35.7M
      }
296
5.83M
#endif
297
12.7M
      for (; x < w; x++) {
298
6.90M
        pixel_type_w avg = p_avg[x];
299
6.90M
        pixel_type_w next_avg = p_navg[x];
300
6.90M
        pixel_type_w top = p_pout[x];
301
6.90M
        pixel_type_w tendency = SmoothTendency(top, avg, next_avg);
302
6.90M
        pixel_type_w diff_minus_tendency = p_residual[x];
303
6.90M
        pixel_type_w diff = diff_minus_tendency + tendency;
304
6.90M
        pixel_type_w out = avg + (diff / 2);
305
6.90M
        p_out[x] = out;
306
        // If the chin_residual.h == chin.h, the output has an even number
307
        // of rows so the next line is fine. Otherwise, this loop won't
308
        // write to the last output row which is handled separately.
309
6.90M
        p_nout[x] = out - diff;
310
6.90M
      }
311
5.83M
    }
312
156k
    return true;
313
156k
  };
Unexecuted instantiation: squeeze.cc:jxl::N_SSE2::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)::$_0::operator()(unsigned int, unsigned long) const
314
129k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, DivCeil(chin.w, kColsPerThread),
315
129k
                                ThreadPool::NoInit, unsqueeze_slice,
316
129k
                                "InvVertSqueeze"));
317
318
129k
  if (chout.h & 1) {
319
29.4k
    size_t y = chin.h - 1;
320
29.4k
    const pixel_type *p_avg = chin.Row(y);
321
29.4k
    pixel_type *p_out = chout.Row(y << 1);
322
791k
    for (size_t x = 0; x < chin.w; x++) {
323
762k
      p_out[x] = p_avg[x];
324
762k
    }
325
29.4k
  }
326
129k
  input.channel[c] = std::move(chout);
327
129k
  return true;
328
129k
}
Unexecuted instantiation: jxl::N_SSE4::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
jxl::N_AVX2::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
Line
Count
Source
240
130k
Status InvVSqueeze(Image &input, uint32_t c, uint32_t rc, ThreadPool *pool) {
241
130k
  JXL_ENSURE(c < input.channel.size());
242
130k
  JXL_ENSURE(rc < input.channel.size());
243
130k
  const Channel &chin = input.channel[c];
244
130k
  const Channel &chin_residual = input.channel[rc];
245
  // These must be valid since we ran MetaApply already.
246
130k
  JXL_ENSURE(chin.h == DivCeil(chin.h + chin_residual.h, 2));
247
130k
  JXL_ENSURE(chin.w == chin_residual.w);
248
130k
  JxlMemoryManager *memory_manager = input.memory_manager();
249
250
130k
  if (chin_residual.h == 0) {
251
    // Short-circuit: output channel has same dimensions as input.
252
910
    input.channel[c].vshift--;
253
910
    return true;
254
910
  }
255
256
  // Note: chin.h >= chin_residual.h and at most 1 different.
257
258k
  JXL_ASSIGN_OR_RETURN(
258
258k
      Channel chout,
259
258k
      Channel::Create(memory_manager, chin.w, chin.h + chin_residual.h,
260
258k
                      chin.hshift, chin.vshift - 1));
261
258k
  JXL_DEBUG_V(
262
258k
      4,
263
258k
      "Undoing vertical squeeze of channel %i using residuals in channel "
264
258k
      "%i (going from height %" PRIuS " to %" PRIuS ")",
265
258k
      c, rc, chin.h, chout.h);
266
267
258k
  if (chin_residual.w == 0) {
268
    // Short-circuit: channel with no pixels.
269
0
    input.channel[c] = std::move(chout);
270
0
    return true;
271
0
  }
272
273
129k
  static constexpr const int kColsPerThread = 64;
274
129k
  const auto unsqueeze_slice = [&](const uint32_t task,
275
129k
                                   size_t /* thread */) -> Status {
276
129k
    const size_t x0 = task * kColsPerThread;
277
129k
    const size_t x1 =
278
129k
        std::min(static_cast<size_t>(task + 1) * kColsPerThread, chin.w);
279
129k
    const size_t w = x1 - x0;
280
    // We only iterate up to std::min(chin_residual.h, chin.h) which is
281
    // always chin_residual.h.
282
129k
    for (size_t y = 0; y < chin_residual.h; y++) {
283
129k
      const pixel_type *JXL_RESTRICT p_residual = chin_residual.Row(y) + x0;
284
129k
      const pixel_type *JXL_RESTRICT p_avg = chin.Row(y) + x0;
285
129k
      const pixel_type *JXL_RESTRICT p_navg =
286
129k
          chin.Row(y + 1 < chin.h ? y + 1 : y) + x0;
287
129k
      pixel_type *JXL_RESTRICT p_out = chout.Row(y << 1) + x0;
288
129k
      pixel_type *JXL_RESTRICT p_nout = chout.Row((y << 1) + 1) + x0;
289
129k
      const pixel_type *p_pout = y > 0 ? chout.Row((y << 1) - 1) + x0 : p_avg;
290
129k
      size_t x = 0;
291
129k
#if HWY_TARGET != HWY_SCALAR
292
129k
      for (; x + 7 < w; x += 8) {
293
129k
        FastUnsqueeze(p_residual + x, p_avg + x, p_navg + x, p_pout + x,
294
129k
                      p_out + x, p_nout + x);
295
129k
      }
296
129k
#endif
297
129k
      for (; x < w; x++) {
298
129k
        pixel_type_w avg = p_avg[x];
299
129k
        pixel_type_w next_avg = p_navg[x];
300
129k
        pixel_type_w top = p_pout[x];
301
129k
        pixel_type_w tendency = SmoothTendency(top, avg, next_avg);
302
129k
        pixel_type_w diff_minus_tendency = p_residual[x];
303
129k
        pixel_type_w diff = diff_minus_tendency + tendency;
304
129k
        pixel_type_w out = avg + (diff / 2);
305
129k
        p_out[x] = out;
306
        // If the chin_residual.h == chin.h, the output has an even number
307
        // of rows so the next line is fine. Otherwise, this loop won't
308
        // write to the last output row which is handled separately.
309
129k
        p_nout[x] = out - diff;
310
129k
      }
311
129k
    }
312
129k
    return true;
313
129k
  };
314
129k
  JXL_RETURN_IF_ERROR(RunOnPool(pool, 0, DivCeil(chin.w, kColsPerThread),
315
129k
                                ThreadPool::NoInit, unsqueeze_slice,
316
129k
                                "InvVertSqueeze"));
317
318
129k
  if (chout.h & 1) {
319
29.4k
    size_t y = chin.h - 1;
320
29.4k
    const pixel_type *p_avg = chin.Row(y);
321
29.4k
    pixel_type *p_out = chout.Row(y << 1);
322
791k
    for (size_t x = 0; x < chin.w; x++) {
323
762k
      p_out[x] = p_avg[x];
324
762k
    }
325
29.4k
  }
326
129k
  input.channel[c] = std::move(chout);
327
129k
  return true;
328
129k
}
Unexecuted instantiation: jxl::N_SSE2::InvVSqueeze(jxl::Image&, unsigned int, unsigned int, jxl::ThreadPool*)
329
330
Status InvSqueeze(Image &input, const std::vector<SqueezeParams> &parameters,
331
17.7k
                  ThreadPool *pool) {
332
99.7k
  for (int i = parameters.size() - 1; i >= 0; i--) {
333
82.0k
    JXL_RETURN_IF_ERROR(
334
82.0k
        CheckMetaSqueezeParams(parameters[i], input.channel.size()));
335
82.0k
    bool horizontal = parameters[i].horizontal;
336
82.0k
    bool in_place = parameters[i].in_place;
337
82.0k
    uint32_t beginc = parameters[i].begin_c;
338
82.0k
    uint32_t endc = parameters[i].begin_c + parameters[i].num_c - 1;
339
82.0k
    uint32_t offset;
340
82.0k
    if (in_place) {
341
57.3k
      offset = endc + 1;
342
57.3k
    } else {
343
24.7k
      offset = input.channel.size() + beginc - endc - 1;
344
24.7k
    }
345
82.0k
    if (beginc < input.nb_meta_channels) {
346
      // This is checked in MetaSqueeze.
347
16
      JXL_ENSURE(input.nb_meta_channels > parameters[i].num_c);
348
16
      input.nb_meta_channels -= parameters[i].num_c;
349
16
    }
350
351
345k
    for (uint32_t c = beginc; c <= endc; c++) {
352
263k
      uint32_t rc = offset + c - beginc;
353
      // MetaApply should imply that `rc` is within range, otherwise there's a
354
      // programming bug.
355
263k
      JXL_ENSURE(rc < input.channel.size());
356
263k
      if ((input.channel[c].w < input.channel[rc].w) ||
357
263k
          (input.channel[c].h < input.channel[rc].h)) {
358
0
        return JXL_FAILURE("Corrupted squeeze transform");
359
0
      }
360
263k
      if (horizontal) {
361
133k
        JXL_RETURN_IF_ERROR(InvHSqueeze(input, c, rc, pool));
362
133k
      } else {
363
130k
        JXL_RETURN_IF_ERROR(InvVSqueeze(input, c, rc, pool));
364
130k
      }
365
263k
    }
366
82.0k
    input.channel.erase(input.channel.begin() + offset,
367
82.0k
                        input.channel.begin() + offset + (endc - beginc + 1));
368
82.0k
  }
369
17.7k
  return true;
370
17.7k
}
Unexecuted instantiation: jxl::N_SSE4::InvSqueeze(jxl::Image&, std::__1::vector<jxl::SqueezeParams, std::__1::allocator<jxl::SqueezeParams> > const&, jxl::ThreadPool*)
jxl::N_AVX2::InvSqueeze(jxl::Image&, std::__1::vector<jxl::SqueezeParams, std::__1::allocator<jxl::SqueezeParams> > const&, jxl::ThreadPool*)
Line
Count
Source
331
17.7k
                  ThreadPool *pool) {
332
99.7k
  for (int i = parameters.size() - 1; i >= 0; i--) {
333
82.0k
    JXL_RETURN_IF_ERROR(
334
82.0k
        CheckMetaSqueezeParams(parameters[i], input.channel.size()));
335
82.0k
    bool horizontal = parameters[i].horizontal;
336
82.0k
    bool in_place = parameters[i].in_place;
337
82.0k
    uint32_t beginc = parameters[i].begin_c;
338
82.0k
    uint32_t endc = parameters[i].begin_c + parameters[i].num_c - 1;
339
82.0k
    uint32_t offset;
340
82.0k
    if (in_place) {
341
57.3k
      offset = endc + 1;
342
57.3k
    } else {
343
24.7k
      offset = input.channel.size() + beginc - endc - 1;
344
24.7k
    }
345
82.0k
    if (beginc < input.nb_meta_channels) {
346
      // This is checked in MetaSqueeze.
347
16
      JXL_ENSURE(input.nb_meta_channels > parameters[i].num_c);
348
16
      input.nb_meta_channels -= parameters[i].num_c;
349
16
    }
350
351
345k
    for (uint32_t c = beginc; c <= endc; c++) {
352
263k
      uint32_t rc = offset + c - beginc;
353
      // MetaApply should imply that `rc` is within range, otherwise there's a
354
      // programming bug.
355
263k
      JXL_ENSURE(rc < input.channel.size());
356
263k
      if ((input.channel[c].w < input.channel[rc].w) ||
357
263k
          (input.channel[c].h < input.channel[rc].h)) {
358
0
        return JXL_FAILURE("Corrupted squeeze transform");
359
0
      }
360
263k
      if (horizontal) {
361
133k
        JXL_RETURN_IF_ERROR(InvHSqueeze(input, c, rc, pool));
362
133k
      } else {
363
130k
        JXL_RETURN_IF_ERROR(InvVSqueeze(input, c, rc, pool));
364
130k
      }
365
263k
    }
366
82.0k
    input.channel.erase(input.channel.begin() + offset,
367
82.0k
                        input.channel.begin() + offset + (endc - beginc + 1));
368
82.0k
  }
369
17.7k
  return true;
370
17.7k
}
Unexecuted instantiation: jxl::N_SSE2::InvSqueeze(jxl::Image&, std::__1::vector<jxl::SqueezeParams, std::__1::allocator<jxl::SqueezeParams> > const&, jxl::ThreadPool*)
371
372
}  // namespace HWY_NAMESPACE
373
}  // namespace jxl
374
HWY_AFTER_NAMESPACE();
375
376
#if HWY_ONCE
377
378
namespace jxl {
379
380
HWY_EXPORT(InvSqueeze);
381
Status InvSqueeze(Image &input, const std::vector<SqueezeParams> &parameters,
382
17.7k
                  ThreadPool *pool) {
383
17.7k
  return HWY_DYNAMIC_DISPATCH(InvSqueeze)(input, parameters, pool);
384
17.7k
}
385
386
void DefaultSqueezeParameters(std::vector<SqueezeParams> *parameters,
387
17.2k
                              const Image &image) {
388
17.2k
  int nb_channels = image.channel.size() - image.nb_meta_channels;
389
390
17.2k
  parameters->clear();
391
17.2k
  size_t w = image.channel[image.nb_meta_channels].w;
392
17.2k
  size_t h = image.channel[image.nb_meta_channels].h;
393
17.2k
  JXL_DEBUG_V(
394
17.2k
      7, "Default squeeze parameters for %" PRIuS "x%" PRIuS " image: ", w, h);
395
396
  // do horizontal first on wide images; vertical first on tall images
397
17.2k
  bool wide = (w > h);
398
399
17.2k
  if (nb_channels > 2 && image.channel[image.nb_meta_channels + 1].w == w &&
400
11.9k
      image.channel[image.nb_meta_channels + 1].h == h) {
401
    // assume channels 1 and 2 are chroma, and can be squeezed first for 4:2:0
402
    // previews
403
9.35k
    JXL_DEBUG_V(7, "(4:2:0 chroma), %" PRIuS "x%" PRIuS " image", w, h);
404
9.35k
    SqueezeParams params;
405
    // horizontal chroma squeeze
406
9.35k
    params.horizontal = true;
407
9.35k
    params.in_place = false;
408
9.35k
    params.begin_c = image.nb_meta_channels + 1;
409
9.35k
    params.num_c = 2;
410
9.35k
    parameters->push_back(params);
411
9.35k
    params.horizontal = false;
412
    // vertical chroma squeeze
413
9.35k
    parameters->push_back(params);
414
9.35k
  }
415
17.2k
  SqueezeParams params;
416
17.2k
  params.begin_c = image.nb_meta_channels;
417
17.2k
  params.num_c = nb_channels;
418
17.2k
  params.in_place = true;
419
420
17.2k
  if (!wide) {
421
9.92k
    if (h > kMaxFirstPreviewSize) {
422
7.65k
      params.horizontal = false;
423
7.65k
      parameters->push_back(params);
424
7.65k
      h = (h + 1) / 2;
425
7.65k
      JXL_DEBUG_V(7, "Vertical (%" PRIuS "x%" PRIuS "), ", w, h);
426
7.65k
    }
427
9.92k
  }
428
48.0k
  while (w > kMaxFirstPreviewSize || h > kMaxFirstPreviewSize) {
429
30.7k
    if (w > kMaxFirstPreviewSize) {
430
29.3k
      params.horizontal = true;
431
29.3k
      parameters->push_back(params);
432
29.3k
      w = (w + 1) / 2;
433
29.3k
      JXL_DEBUG_V(7, "Horizontal (%" PRIuS "x%" PRIuS "), ", w, h);
434
29.3k
    }
435
30.7k
    if (h > kMaxFirstPreviewSize) {
436
21.0k
      params.horizontal = false;
437
21.0k
      parameters->push_back(params);
438
21.0k
      h = (h + 1) / 2;
439
21.0k
      JXL_DEBUG_V(7, "Vertical (%" PRIuS "x%" PRIuS "), ", w, h);
440
21.0k
    }
441
30.7k
  }
442
17.2k
  JXL_DEBUG_V(7, "that's it");
443
17.2k
}
444
445
Status CheckMetaSqueezeParams(const SqueezeParams &parameter,
446
166k
                              int num_channels) {
447
166k
  int c1 = parameter.begin_c;
448
166k
  int c2 = parameter.begin_c + parameter.num_c - 1;
449
166k
  if (c1 < 0 || c1 >= num_channels || c2 < 0 || c2 >= num_channels || c2 < c1) {
450
15
    return JXL_FAILURE("Invalid channel range");
451
15
  }
452
166k
  return true;
453
166k
}
454
455
18.4k
Status MetaSqueeze(Image &image, std::vector<SqueezeParams> *parameters) {
456
18.4k
  JxlMemoryManager *memory_manager = image.memory_manager();
457
18.4k
  if (parameters->empty()) {
458
17.2k
    DefaultSqueezeParameters(parameters, image);
459
17.2k
  }
460
461
84.8k
  for (auto &parameter : *parameters) {
462
84.8k
    JXL_RETURN_IF_ERROR(
463
84.8k
        CheckMetaSqueezeParams(parameter, image.channel.size()));
464
84.8k
    bool horizontal = parameter.horizontal;
465
84.8k
    bool in_place = parameter.in_place;
466
84.8k
    uint32_t beginc = parameter.begin_c;
467
84.8k
    uint32_t endc = parameter.begin_c + parameter.num_c - 1;
468
469
84.8k
    uint32_t offset;
470
84.8k
    if (beginc < image.nb_meta_channels) {
471
31
      if (endc >= image.nb_meta_channels) {
472
1
        return JXL_FAILURE("Invalid squeeze: mix of meta and nonmeta channels");
473
1
      }
474
30
      if (!in_place) {
475
1
        return JXL_FAILURE(
476
1
            "Invalid squeeze: meta channels require in-place residuals");
477
1
      }
478
29
      image.nb_meta_channels += parameter.num_c;
479
29
    }
480
84.8k
    if (in_place) {
481
58.5k
      offset = endc + 1;
482
58.5k
    } else {
483
26.2k
      offset = image.channel.size();
484
26.2k
    }
485
360k
    for (uint32_t c = beginc; c <= endc; c++) {
486
275k
      if (image.channel[c].hshift > 30 || image.channel[c].vshift > 30) {
487
2
        return JXL_FAILURE("Too many squeezes: shift > 30");
488
2
      }
489
275k
      size_t w = image.channel[c].w;
490
275k
      size_t h = image.channel[c].h;
491
275k
      if (w == 0 || h == 0) return JXL_FAILURE("Squeezing empty channel");
492
275k
      if (horizontal) {
493
138k
        image.channel[c].w = (w + 1) / 2;
494
138k
        if (image.channel[c].hshift >= 0) image.channel[c].hshift++;
495
138k
        w = w - (w + 1) / 2;
496
138k
      } else {
497
136k
        image.channel[c].h = (h + 1) / 2;
498
136k
        if (image.channel[c].vshift >= 0) image.channel[c].vshift++;
499
136k
        h = h - (h + 1) / 2;
500
136k
      }
501
275k
      JXL_RETURN_IF_ERROR(image.channel[c].shrink());
502
551k
      JXL_ASSIGN_OR_RETURN(Channel placeholder,
503
551k
                           Channel::Create(memory_manager, w, h));
504
551k
      placeholder.hshift = image.channel[c].hshift;
505
551k
      placeholder.vshift = image.channel[c].vshift;
506
551k
      placeholder.component = image.channel[c].component;
507
551k
      image.channel.insert(image.channel.begin() + offset + (c - beginc),
508
551k
                           std::move(placeholder));
509
551k
      JXL_DEBUG_V(0, "MetaSqueeze applied, current image: %s",
510
551k
                  image.DebugString().c_str());
511
551k
    }
512
84.8k
  }
513
18.4k
  return true;
514
18.4k
}
515
516
}  // namespace jxl
517
518
#endif