This CL allows for more than one VulkanManager to exist. VulkanManager ctor are public allowing for classes other than RenderThread to instantiate it. Secondary VulkanManager can be used to render on a thread other than RT. Test: Ran HWUI unit tests and several apps Change-Id: Ibfd76c86ff67e01617a500902bba7431b928f5c0
178 lines
6.2 KiB
C++
178 lines
6.2 KiB
C++
/*
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* Copyright (C) 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "TestUtils.h"
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#include "DeferredLayerUpdater.h"
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#include "hwui/Paint.h"
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#include <minikin/Layout.h>
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#include <pipeline/skia/SkiaOpenGLPipeline.h>
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#include <pipeline/skia/SkiaVulkanPipeline.h>
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#include <renderthread/EglManager.h>
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#include <renderthread/VulkanManager.h>
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#include <utils/Unicode.h>
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#include "SkColorData.h"
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#include "SkUnPreMultiply.h"
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namespace android {
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namespace uirenderer {
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std::unordered_map<int, TestUtils::CallCounts> TestUtils::sMockFunctorCounts{};
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SkColor TestUtils::interpolateColor(float fraction, SkColor start, SkColor end) {
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int startA = (start >> 24) & 0xff;
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int startR = (start >> 16) & 0xff;
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int startG = (start >> 8) & 0xff;
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int startB = start & 0xff;
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int endA = (end >> 24) & 0xff;
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int endR = (end >> 16) & 0xff;
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int endG = (end >> 8) & 0xff;
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int endB = end & 0xff;
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return (int)((startA + (int)(fraction * (endA - startA))) << 24) |
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(int)((startR + (int)(fraction * (endR - startR))) << 16) |
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(int)((startG + (int)(fraction * (endG - startG))) << 8) |
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(int)((startB + (int)(fraction * (endB - startB))));
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}
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sp<DeferredLayerUpdater> TestUtils::createTextureLayerUpdater(
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renderthread::RenderThread& renderThread) {
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android::uirenderer::renderthread::IRenderPipeline* pipeline;
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if (Properties::getRenderPipelineType() == RenderPipelineType::SkiaGL) {
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pipeline = new skiapipeline::SkiaOpenGLPipeline(renderThread);
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} else {
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pipeline = new skiapipeline::SkiaVulkanPipeline(renderThread);
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}
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sp<DeferredLayerUpdater> layerUpdater = pipeline->createTextureLayer();
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layerUpdater->apply();
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delete pipeline;
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return layerUpdater;
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}
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sp<DeferredLayerUpdater> TestUtils::createTextureLayerUpdater(
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renderthread::RenderThread& renderThread, uint32_t width, uint32_t height,
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const SkMatrix& transform) {
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sp<DeferredLayerUpdater> layerUpdater = createTextureLayerUpdater(renderThread);
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layerUpdater->backingLayer()->getTransform() = transform;
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layerUpdater->setSize(width, height);
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layerUpdater->setTransform(&transform);
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// updateLayer so it's ready to draw
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layerUpdater->updateLayer(true, SkMatrix::I(), nullptr);
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return layerUpdater;
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}
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void TestUtils::drawUtf8ToCanvas(Canvas* canvas, const char* text, const Paint& paint, float x,
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float y) {
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auto utf16 = asciiToUtf16(text);
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uint32_t length = strlen(text);
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canvas->drawText(utf16.get(), length, // text buffer
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0, length, // draw range
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0, length, // context range
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x, y, minikin::Bidi::LTR, paint, nullptr, nullptr /* measured text */);
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}
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void TestUtils::drawUtf8ToCanvas(Canvas* canvas, const char* text, const Paint& paint,
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const SkPath& path) {
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auto utf16 = asciiToUtf16(text);
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canvas->drawTextOnPath(utf16.get(), strlen(text), minikin::Bidi::LTR, path, 0, 0, paint,
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nullptr);
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}
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void TestUtils::TestTask::run() {
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// RenderState only valid once RenderThread is running, so queried here
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renderthread::RenderThread& renderThread = renderthread::RenderThread::getInstance();
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if (Properties::getRenderPipelineType() == RenderPipelineType::SkiaVulkan) {
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renderThread.requireVkContext();
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} else {
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renderThread.requireGlContext();
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}
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rtCallback(renderThread);
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renderThread.destroyRenderingContext();
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}
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std::unique_ptr<uint16_t[]> TestUtils::asciiToUtf16(const char* str) {
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const int length = strlen(str);
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std::unique_ptr<uint16_t[]> utf16(new uint16_t[length]);
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for (int i = 0; i < length; i++) {
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utf16.get()[i] = str[i];
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}
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return utf16;
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}
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SkColor TestUtils::getColor(const sk_sp<SkSurface>& surface, int x, int y) {
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SkPixmap pixmap;
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if (!surface->peekPixels(&pixmap)) {
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return 0;
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}
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switch (pixmap.colorType()) {
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case kGray_8_SkColorType: {
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const uint8_t* addr = pixmap.addr8(x, y);
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return SkColorSetRGB(*addr, *addr, *addr);
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}
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case kAlpha_8_SkColorType: {
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const uint8_t* addr = pixmap.addr8(x, y);
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return SkColorSetA(0, addr[0]);
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}
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case kRGB_565_SkColorType: {
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const uint16_t* addr = pixmap.addr16(x, y);
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return SkPixel16ToColor(addr[0]);
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}
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case kARGB_4444_SkColorType: {
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const uint16_t* addr = pixmap.addr16(x, y);
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SkPMColor c = SkPixel4444ToPixel32(addr[0]);
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return SkUnPreMultiply::PMColorToColor(c);
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}
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case kBGRA_8888_SkColorType: {
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const uint32_t* addr = pixmap.addr32(x, y);
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SkPMColor c = SkSwizzle_BGRA_to_PMColor(addr[0]);
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return SkUnPreMultiply::PMColorToColor(c);
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}
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case kRGBA_8888_SkColorType: {
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const uint32_t* addr = pixmap.addr32(x, y);
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SkPMColor c = SkSwizzle_RGBA_to_PMColor(addr[0]);
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return SkUnPreMultiply::PMColorToColor(c);
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}
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default:
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return 0;
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}
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return 0;
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}
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SkRect TestUtils::getClipBounds(const SkCanvas* canvas) {
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return SkRect::Make(canvas->getDeviceClipBounds());
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}
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SkRect TestUtils::getLocalClipBounds(const SkCanvas* canvas) {
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SkMatrix invertedTotalMatrix;
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if (!canvas->getTotalMatrix().invert(&invertedTotalMatrix)) {
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return SkRect::MakeEmpty();
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}
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SkRect outlineInDeviceCoord = TestUtils::getClipBounds(canvas);
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SkRect outlineInLocalCoord;
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invertedTotalMatrix.mapRect(&outlineInLocalCoord, outlineInDeviceCoord);
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return outlineInLocalCoord;
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}
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} /* namespace uirenderer */
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} /* namespace android */
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