| /* | 
 |  * Copyright 2019 The Android Open Source Project | 
 |  * | 
 |  * Licensed under the Apache License, Version 2.0 (the "License"); | 
 |  * you may not use this file except in compliance with the License. | 
 |  * You may obtain a copy of the License at | 
 |  * | 
 |  *      http://www.apache.org/licenses/LICENSE-2.0 | 
 |  * | 
 |  * Unless required by applicable law or agreed to in writing, software | 
 |  * distributed under the License is distributed on an "AS IS" BASIS, | 
 |  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | 
 |  * See the License for the specific language governing permissions and | 
 |  * limitations under the License. | 
 |  */ | 
 |  | 
 | #include <cmath> | 
 |  | 
 | #include <compositionengine/impl/Output.h> | 
 | #include <compositionengine/mock/CompositionEngine.h> | 
 | #include <compositionengine/mock/DisplayColorProfile.h> | 
 | #include <compositionengine/mock/Layer.h> | 
 | #include <compositionengine/mock/LayerFE.h> | 
 | #include <compositionengine/mock/OutputLayer.h> | 
 | #include <compositionengine/mock/RenderSurface.h> | 
 | #include <gtest/gtest.h> | 
 | #include <ui/Rect.h> | 
 | #include <ui/Region.h> | 
 |  | 
 | #include "RegionMatcher.h" | 
 | #include "TransformMatcher.h" | 
 |  | 
 | namespace android::compositionengine { | 
 | namespace { | 
 |  | 
 | using testing::Return; | 
 | using testing::ReturnRef; | 
 | using testing::StrictMock; | 
 |  | 
 | class OutputTest : public testing::Test { | 
 | public: | 
 |     OutputTest() { | 
 |         mOutput.setDisplayColorProfileForTest( | 
 |                 std::unique_ptr<DisplayColorProfile>(mDisplayColorProfile)); | 
 |         mOutput.setRenderSurfaceForTest(std::unique_ptr<RenderSurface>(mRenderSurface)); | 
 |     } | 
 |     ~OutputTest() override = default; | 
 |  | 
 |     StrictMock<mock::CompositionEngine> mCompositionEngine; | 
 |     mock::DisplayColorProfile* mDisplayColorProfile = new StrictMock<mock::DisplayColorProfile>(); | 
 |     mock::RenderSurface* mRenderSurface = new StrictMock<mock::RenderSurface>(); | 
 |     impl::Output mOutput{mCompositionEngine}; | 
 | }; | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Basic construction | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, canInstantiateOutput) { | 
 |     // The validation check checks each required component. | 
 |     EXPECT_CALL(*mDisplayColorProfile, isValid()).WillOnce(Return(true)); | 
 |     EXPECT_CALL(*mRenderSurface, isValid()).WillOnce(Return(true)); | 
 |  | 
 |     EXPECT_TRUE(mOutput.isValid()); | 
 |  | 
 |     // If we take away the required components, it is no longer valid. | 
 |     mOutput.setRenderSurfaceForTest(std::unique_ptr<RenderSurface>()); | 
 |  | 
 |     EXPECT_CALL(*mDisplayColorProfile, isValid()).WillOnce(Return(true)); | 
 |  | 
 |     EXPECT_FALSE(mOutput.isValid()); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setCompositionEnabled() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setCompositionEnabledDoesNothingIfAlreadyEnabled) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |     mOutput.editState().isEnabled = true; | 
 |  | 
 |     mOutput.setCompositionEnabled(true); | 
 |  | 
 |     EXPECT_TRUE(mOutput.getState().isEnabled); | 
 |     EXPECT_THAT(mOutput.getState().dirtyRegion, RegionEq(Region())); | 
 | } | 
 |  | 
 | TEST_F(OutputTest, setCompositionEnabledSetsEnabledAndDirtiesEntireOutput) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |     mOutput.editState().isEnabled = false; | 
 |  | 
 |     mOutput.setCompositionEnabled(true); | 
 |  | 
 |     EXPECT_TRUE(mOutput.getState().isEnabled); | 
 |     EXPECT_THAT(mOutput.getState().dirtyRegion, RegionEq(Region(displaySize))); | 
 | } | 
 |  | 
 | TEST_F(OutputTest, setCompositionEnabledSetsDisabledAndDirtiesEntireOutput) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |     mOutput.editState().isEnabled = true; | 
 |  | 
 |     mOutput.setCompositionEnabled(false); | 
 |  | 
 |     EXPECT_FALSE(mOutput.getState().isEnabled); | 
 |     EXPECT_THAT(mOutput.getState().dirtyRegion, RegionEq(Region(displaySize))); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setProjection() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setProjectionTriviallyWorks) { | 
 |     const ui::Transform transform{ui::Transform::ROT_180}; | 
 |     const int32_t orientation = 123; | 
 |     const Rect frame{1, 2, 3, 4}; | 
 |     const Rect viewport{5, 6, 7, 8}; | 
 |     const Rect scissor{9, 10, 11, 12}; | 
 |     const bool needsFiltering = true; | 
 |  | 
 |     mOutput.setProjection(transform, orientation, frame, viewport, scissor, needsFiltering); | 
 |  | 
 |     EXPECT_THAT(mOutput.getState().transform, TransformEq(transform)); | 
 |     EXPECT_EQ(orientation, mOutput.getState().orientation); | 
 |     EXPECT_EQ(frame, mOutput.getState().frame); | 
 |     EXPECT_EQ(viewport, mOutput.getState().viewport); | 
 |     EXPECT_EQ(scissor, mOutput.getState().scissor); | 
 |     EXPECT_EQ(needsFiltering, mOutput.getState().needsFiltering); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setBounds() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setBoundsSetsSizeAndDirtiesEntireOutput) { | 
 |     const ui::Size displaySize{100, 200}; | 
 |  | 
 |     EXPECT_CALL(*mRenderSurface, setDisplaySize(displaySize)).Times(1); | 
 |     EXPECT_CALL(*mRenderSurface, getSize()).WillOnce(ReturnRef(displaySize)); | 
 |  | 
 |     mOutput.setBounds(displaySize); | 
 |  | 
 |     EXPECT_EQ(Rect(displaySize), mOutput.getState().bounds); | 
 |  | 
 |     EXPECT_THAT(mOutput.getState().dirtyRegion, RegionEq(Region(Rect(displaySize)))); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setLayerStackFilter() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setLayerStackFilterSetsFilterAndDirtiesEntireOutput) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |  | 
 |     const uint32_t layerStack = 123u; | 
 |     mOutput.setLayerStackFilter(layerStack, true); | 
 |  | 
 |     EXPECT_TRUE(mOutput.getState().layerStackInternal); | 
 |     EXPECT_EQ(layerStack, mOutput.getState().layerStackId); | 
 |  | 
 |     EXPECT_THAT(mOutput.getState().dirtyRegion, RegionEq(Region(displaySize))); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setColorTransform | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setColorTransformSetsTransform) { | 
 |     // Identity matrix sets an identity state value | 
 |     const mat4 identity; | 
 |  | 
 |     mOutput.setColorTransform(identity); | 
 |  | 
 |     EXPECT_EQ(HAL_COLOR_TRANSFORM_IDENTITY, mOutput.getState().colorTransform); | 
 |  | 
 |     // Non-identity matrix sets a non-identity state value | 
 |     const mat4 nonIdentity = mat4() * 2; | 
 |  | 
 |     mOutput.setColorTransform(nonIdentity); | 
 |  | 
 |     EXPECT_EQ(HAL_COLOR_TRANSFORM_ARBITRARY_MATRIX, mOutput.getState().colorTransform); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setColorMode | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setColorModeSetsModeUnlessNoChange) { | 
 |     EXPECT_CALL(*mRenderSurface, setBufferDataspace(ui::Dataspace::SRGB)).Times(1); | 
 |  | 
 |     mOutput.setColorMode(ui::ColorMode::BT2100_PQ, ui::Dataspace::SRGB, | 
 |                          ui::RenderIntent::TONE_MAP_COLORIMETRIC); | 
 |  | 
 |     EXPECT_EQ(ui::ColorMode::BT2100_PQ, mOutput.getState().colorMode); | 
 |     EXPECT_EQ(ui::Dataspace::SRGB, mOutput.getState().dataspace); | 
 |     EXPECT_EQ(ui::RenderIntent::TONE_MAP_COLORIMETRIC, mOutput.getState().renderIntent); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::setRenderSurface() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, setRenderSurfaceResetsBounds) { | 
 |     const ui::Size newDisplaySize{640, 480}; | 
 |  | 
 |     mock::RenderSurface* renderSurface = new StrictMock<mock::RenderSurface>(); | 
 |     EXPECT_CALL(*renderSurface, getSize()).WillOnce(ReturnRef(newDisplaySize)); | 
 |  | 
 |     mOutput.setRenderSurface(std::unique_ptr<RenderSurface>(renderSurface)); | 
 |  | 
 |     EXPECT_EQ(Rect(newDisplaySize), mOutput.getState().bounds); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::getPhysicalSpaceDirtyRegion() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, getPhysicalSpaceDirtyRegionWithRepaintEverythingTrue) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |     mOutput.editState().dirtyRegion.set(50, 300); | 
 |  | 
 |     { | 
 |         Region result = mOutput.getPhysicalSpaceDirtyRegion(true); | 
 |  | 
 |         EXPECT_THAT(result, RegionEq(Region(displaySize))); | 
 |     } | 
 |  | 
 |     // For repaint everything == true, the returned value does not depend on the display | 
 |     // rotation. | 
 |     mOutput.editState().transform.set(ui::Transform::ROT_90, 0, 0); | 
 |  | 
 |     { | 
 |         Region result = mOutput.getPhysicalSpaceDirtyRegion(true); | 
 |  | 
 |         EXPECT_THAT(result, RegionEq(Region(displaySize))); | 
 |     } | 
 | } | 
 |  | 
 | TEST_F(OutputTest, getPhysicalSpaceDirtyRegionWithRepaintEverythingFalse) { | 
 |     const Rect displaySize{100, 200}; | 
 |     mOutput.editState().bounds = displaySize; | 
 |     mOutput.editState().dirtyRegion.set(50, 300); | 
 |  | 
 |     { | 
 |         Region result = mOutput.getPhysicalSpaceDirtyRegion(false); | 
 |  | 
 |         // The dirtyRegion should be clipped to the display bounds. | 
 |         EXPECT_THAT(result, RegionEq(Region(Rect(50, 200)))); | 
 |     } | 
 |  | 
 |     mOutput.editState().transform.set(ui::Transform::ROT_90, displaySize.getWidth(), | 
 |                                       displaySize.getHeight()); | 
 |  | 
 |     { | 
 |         Region result = mOutput.getPhysicalSpaceDirtyRegion(false); | 
 |  | 
 |         // The dirtyRegion should be rotated and clipped to the display bounds. | 
 |         EXPECT_THAT(result, RegionEq(Region(Rect(100, 50)))); | 
 |     } | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::belongsInOutput() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, belongsInOutputFiltersAsExpected) { | 
 |     const uint32_t layerStack1 = 123u; | 
 |     const uint32_t layerStack2 = 456u; | 
 |  | 
 |     // If the output accepts layerStack1 and internal-only layers.... | 
 |     mOutput.setLayerStackFilter(layerStack1, true); | 
 |  | 
 |     // Any layer with layerStack1 belongs to it, internal-only or not. | 
 |     EXPECT_TRUE(mOutput.belongsInOutput(layerStack1, false)); | 
 |     EXPECT_TRUE(mOutput.belongsInOutput(layerStack1, true)); | 
 |     EXPECT_FALSE(mOutput.belongsInOutput(layerStack2, true)); | 
 |     EXPECT_FALSE(mOutput.belongsInOutput(layerStack2, false)); | 
 |  | 
 |     // If the output accepts layerStack21 but not internal-only layers... | 
 |     mOutput.setLayerStackFilter(layerStack1, false); | 
 |  | 
 |     // Only non-internal layers with layerStack1 belong to it. | 
 |     EXPECT_TRUE(mOutput.belongsInOutput(layerStack1, false)); | 
 |     EXPECT_FALSE(mOutput.belongsInOutput(layerStack1, true)); | 
 |     EXPECT_FALSE(mOutput.belongsInOutput(layerStack2, true)); | 
 |     EXPECT_FALSE(mOutput.belongsInOutput(layerStack2, false)); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::getOutputLayerForLayer() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, getOutputLayerForLayerWorks) { | 
 |     mock::OutputLayer* outputLayer1 = new StrictMock<mock::OutputLayer>(); | 
 |     mock::OutputLayer* outputLayer2 = new StrictMock<mock::OutputLayer>(); | 
 |  | 
 |     Output::OutputLayers outputLayers; | 
 |     outputLayers.emplace_back(std::unique_ptr<OutputLayer>(outputLayer1)); | 
 |     outputLayers.emplace_back(nullptr); | 
 |     outputLayers.emplace_back(std::unique_ptr<OutputLayer>(outputLayer2)); | 
 |     mOutput.setOutputLayersOrderedByZ(std::move(outputLayers)); | 
 |  | 
 |     StrictMock<mock::Layer> layer; | 
 |     StrictMock<mock::Layer> otherLayer; | 
 |  | 
 |     // If the input layer matches the first OutputLayer, it will be returned. | 
 |     EXPECT_CALL(*outputLayer1, getLayer()).WillOnce(ReturnRef(layer)); | 
 |     EXPECT_EQ(outputLayer1, mOutput.getOutputLayerForLayer(&layer)); | 
 |  | 
 |     // If the input layer matches the second OutputLayer, it will be returned. | 
 |     EXPECT_CALL(*outputLayer1, getLayer()).WillOnce(ReturnRef(otherLayer)); | 
 |     EXPECT_CALL(*outputLayer2, getLayer()).WillOnce(ReturnRef(layer)); | 
 |     EXPECT_EQ(outputLayer2, mOutput.getOutputLayerForLayer(&layer)); | 
 |  | 
 |     // If the input layer does not match an output layer, null will be returned. | 
 |     EXPECT_CALL(*outputLayer1, getLayer()).WillOnce(ReturnRef(otherLayer)); | 
 |     EXPECT_CALL(*outputLayer2, getLayer()).WillOnce(ReturnRef(otherLayer)); | 
 |     EXPECT_EQ(nullptr, mOutput.getOutputLayerForLayer(&layer)); | 
 | } | 
 |  | 
 | /* ------------------------------------------------------------------------ | 
 |  * Output::getOrCreateOutputLayer() | 
 |  */ | 
 |  | 
 | TEST_F(OutputTest, getOrCreateOutputLayerWorks) { | 
 |     mock::OutputLayer* existingOutputLayer = new StrictMock<mock::OutputLayer>(); | 
 |  | 
 |     Output::OutputLayers outputLayers; | 
 |     outputLayers.emplace_back(nullptr); | 
 |     outputLayers.emplace_back(std::unique_ptr<OutputLayer>(existingOutputLayer)); | 
 |     mOutput.setOutputLayersOrderedByZ(std::move(outputLayers)); | 
 |  | 
 |     std::shared_ptr<mock::Layer> layer{new StrictMock<mock::Layer>()}; | 
 |     sp<LayerFE> layerFE{new StrictMock<mock::LayerFE>()}; | 
 |  | 
 |     StrictMock<mock::Layer> otherLayer; | 
 |  | 
 |     { | 
 |         // If there is no OutputLayer corresponding to the input layer, a | 
 |         // new OutputLayer is constructed and returned. | 
 |         EXPECT_CALL(*existingOutputLayer, getLayer()).WillOnce(ReturnRef(otherLayer)); | 
 |         auto result = mOutput.getOrCreateOutputLayer(layer, layerFE); | 
 |         EXPECT_NE(existingOutputLayer, result.get()); | 
 |         EXPECT_TRUE(result.get() != nullptr); | 
 |         EXPECT_EQ(layer.get(), &result->getLayer()); | 
 |         EXPECT_EQ(layerFE.get(), &result->getLayerFE()); | 
 |  | 
 |         // The entries in the ordered array should be unchanged. | 
 |         auto& outputLayers = mOutput.getOutputLayersOrderedByZ(); | 
 |         EXPECT_EQ(nullptr, outputLayers[0].get()); | 
 |         EXPECT_EQ(existingOutputLayer, outputLayers[1].get()); | 
 |     } | 
 |  | 
 |     { | 
 |         // If there is an existing OutputLayer for the requested layer, an owned | 
 |         // pointer is returned | 
 |         EXPECT_CALL(*existingOutputLayer, getLayer()).WillOnce(ReturnRef(*layer)); | 
 |         auto result = mOutput.getOrCreateOutputLayer(layer, layerFE); | 
 |         EXPECT_EQ(existingOutputLayer, result.get()); | 
 |  | 
 |         // The corresponding entry in the ordered array should be cleared. | 
 |         auto& outputLayers = mOutput.getOutputLayersOrderedByZ(); | 
 |         EXPECT_EQ(nullptr, outputLayers[0].get()); | 
 |         EXPECT_EQ(nullptr, outputLayers[1].get()); | 
 |     } | 
 | } | 
 |  | 
 | } // namespace | 
 | } // namespace android::compositionengine |