d1ec89b1ac
BUG=skia: GOLD_TRYBOT_URL= https://gold.skia.org/search?issue=2184543003 CQ_INCLUDE_TRYBOTS=master.client.skia:Test-Ubuntu-GCC-GCE-CPU-AVX2-x86_64-Release-SKNX_NO_SIMD-Trybot Review-Url: https://codereview.chromium.org/2184543003
154 lines
5.6 KiB
C++
154 lines
5.6 KiB
C++
/*
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* Copyright 2016 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "Resources.h"
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#include "SkCodec.h"
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#include "SkColorPriv.h"
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#include "SkColorSpace.h"
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#include "SkColorSpace_Base.h"
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#include "SkColorSpaceXform.h"
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#include "Test.h"
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class ColorSpaceXformTest {
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public:
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static std::unique_ptr<SkColorSpaceXform> CreateIdentityXform(const sk_sp<SkGammas>& gammas) {
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// Logically we can pass any matrix here. For simplicty, pass I(), i.e. D50 XYZ gamut.
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sk_sp<SkColorSpace> space(new SkColorSpace_Base(
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nullptr, SkColorSpace::kNonStandard_GammaNamed, gammas, SkMatrix::I(), nullptr));
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return SkColorSpaceXform::New(space, space);
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}
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};
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static bool almost_equal(int x, int y) {
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return SkTAbs(x - y) <= 1;
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}
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static void test_identity_xform(skiatest::Reporter* r, const sk_sp<SkGammas>& gammas) {
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// Arbitrary set of 10 pixels
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constexpr int width = 10;
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constexpr uint32_t srcPixels[width] = {
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0xFFABCDEF, 0xFF146829, 0xFF382759, 0xFF184968, 0xFFDE8271,
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0xFF32AB52, 0xFF0383BC, 0xFF000102, 0xFFFFFFFF, 0xFFDDEEFF, };
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uint32_t dstPixels[width];
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// Create and perform an identity xform.
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std::unique_ptr<SkColorSpaceXform> xform = ColorSpaceXformTest::CreateIdentityXform(gammas);
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xform->apply(dstPixels, srcPixels, width, kRGBA_8888_SkColorType, kOpaque_SkAlphaType);
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// Since the src->dst matrix is the identity, and the gamma curves match,
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// the pixels should be unchanged.
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for (int i = 0; i < width; i++) {
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REPORTER_ASSERT(r, almost_equal(((srcPixels[i] >> 0) & 0xFF),
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((dstPixels[i] >> 0) & 0xFF)));
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REPORTER_ASSERT(r, almost_equal(((srcPixels[i] >> 8) & 0xFF),
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((dstPixels[i] >> 8) & 0xFF)));
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REPORTER_ASSERT(r, almost_equal(((srcPixels[i] >> 16) & 0xFF),
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((dstPixels[i] >> 16) & 0xFF)));
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REPORTER_ASSERT(r, almost_equal(((srcPixels[i] >> 24) & 0xFF),
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((dstPixels[i] >> 24) & 0xFF)));
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}
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}
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DEF_TEST(ColorSpaceXform_TableGamma, r) {
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// Lookup-table based gamma curves
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constexpr size_t tableSize = 10;
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void* memory = sk_malloc_throw(sizeof(SkGammas) + sizeof(float) * tableSize);
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sk_sp<SkGammas> gammas = sk_sp<SkGammas>(new (memory) SkGammas());
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gammas->fRedType = gammas->fGreenType = gammas->fBlueType = SkGammas::Type::kTable_Type;
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gammas->fRedData.fTable.fSize = gammas->fGreenData.fTable.fSize =
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gammas->fBlueData.fTable.fSize = tableSize;
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gammas->fRedData.fTable.fOffset = gammas->fGreenData.fTable.fOffset =
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gammas->fBlueData.fTable.fOffset = 0;
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float* table = SkTAddOffset<float>(memory, sizeof(SkGammas));
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table[0] = 0.00f;
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table[1] = 0.05f;
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table[2] = 0.10f;
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table[3] = 0.15f;
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table[4] = 0.25f;
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table[5] = 0.35f;
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table[6] = 0.45f;
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table[7] = 0.60f;
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table[8] = 0.75f;
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table[9] = 1.00f;
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test_identity_xform(r, gammas);
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}
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DEF_TEST(ColorSpaceXform_ParametricGamma, r) {
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// Parametric gamma curves
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void* memory = sk_malloc_throw(sizeof(SkGammas) + sizeof(SkGammas::Params));
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sk_sp<SkGammas> gammas = sk_sp<SkGammas>(new (memory) SkGammas());
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gammas->fRedType = gammas->fGreenType = gammas->fBlueType = SkGammas::Type::kParam_Type;
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gammas->fRedData.fParamOffset = gammas->fGreenData.fParamOffset =
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gammas->fBlueData.fParamOffset = 0;
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SkGammas::Params* params = SkTAddOffset<SkGammas::Params>(memory, sizeof(SkGammas));
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// Interval, switch xforms at 0.0031308f
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params->fD = 0.04045f;
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// First equation:
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params->fE = 1.0f / 12.92f;
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params->fF = 0.0f;
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// Second equation:
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// Note that the function is continuous (it's actually sRGB).
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params->fA = 1.0f / 1.055f;
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params->fB = 0.055f / 1.055f;
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params->fC = 0.0f;
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params->fG = 2.4f;
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test_identity_xform(r, gammas);
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}
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DEF_TEST(ColorSpaceXform_ExponentialGamma, r) {
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// Exponential gamma curves
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sk_sp<SkGammas> gammas = sk_sp<SkGammas>(new SkGammas());
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gammas->fRedType = gammas->fGreenType = gammas->fBlueType = SkGammas::Type::kValue_Type;
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gammas->fRedData.fValue = gammas->fGreenData.fValue = gammas->fBlueData.fValue = 1.4f;
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test_identity_xform(r, gammas);
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}
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DEF_TEST(ColorSpaceXform_NonMatchingGamma, r) {
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constexpr size_t tableSize = 10;
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void* memory = sk_malloc_throw(sizeof(SkGammas) + sizeof(float) * tableSize +
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sizeof(SkGammas::Params));
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sk_sp<SkGammas> gammas = sk_sp<SkGammas>(new (memory) SkGammas());
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float* table = SkTAddOffset<float>(memory, sizeof(SkGammas));
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table[0] = 0.00f;
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table[1] = 0.15f;
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table[2] = 0.20f;
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table[3] = 0.25f;
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table[4] = 0.35f;
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table[5] = 0.45f;
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table[6] = 0.55f;
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table[7] = 0.70f;
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table[8] = 0.85f;
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table[9] = 1.00f;
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SkGammas::Params* params = SkTAddOffset<SkGammas::Params>(memory, sizeof(SkGammas) +
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sizeof(float) * tableSize);
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params->fA = 1.0f / 1.055f;
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params->fB = 0.055f / 1.055f;
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params->fC = 0.0f;
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params->fD = 0.04045f;
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params->fE = 1.0f / 12.92f;
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params->fF = 0.0f;
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params->fG = 2.4f;
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gammas->fRedType = SkGammas::Type::kValue_Type;
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gammas->fRedData.fValue = 1.2f;
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gammas->fGreenType = SkGammas::Type::kTable_Type;
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gammas->fGreenData.fTable.fSize = tableSize;
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gammas->fGreenData.fTable.fOffset = 0;
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gammas->fBlueType = SkGammas::Type::kParam_Type;
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gammas->fBlueData.fParamOffset = sizeof(float) * tableSize;
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test_identity_xform(r, gammas);
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}
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