5a4690bf26
LOG_TAG and TRACE_TAG are already defined in the makefile Change-Id: I9e53e3dacbe018441edd74cb7c8c90846defee74
334 lines
10 KiB
C++
334 lines
10 KiB
C++
/*
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* Copyright (C) 2010 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 "Caches.h"
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#include "GammaFontRenderer.h"
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#include "LayerRenderer.h"
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#include "Properties.h"
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#include "renderstate/RenderState.h"
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#include "ShadowTessellator.h"
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#include "utils/GLUtils.h"
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#include <utils/Log.h>
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#include <utils/String8.h>
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namespace android {
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namespace uirenderer {
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Caches* Caches::sInstance = nullptr;
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///////////////////////////////////////////////////////////////////////////////
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// Macros
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///////////////////////////////////////////////////////////////////////////////
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#if DEBUG_CACHE_FLUSH
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#define FLUSH_LOGD(...) ALOGD(__VA_ARGS__)
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#else
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#define FLUSH_LOGD(...)
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#endif
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///////////////////////////////////////////////////////////////////////////////
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// Constructors/destructor
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///////////////////////////////////////////////////////////////////////////////
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Caches::Caches(RenderState& renderState)
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: gradientCache(mExtensions)
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, patchCache(renderState)
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, programCache(mExtensions)
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, dither(*this)
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, mRenderState(&renderState)
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, mInitialized(false) {
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INIT_LOGD("Creating OpenGL renderer caches");
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init();
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initFont();
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initConstraints();
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initStaticProperties();
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initExtensions();
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}
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bool Caches::init() {
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if (mInitialized) return false;
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ATRACE_NAME("Caches::init");
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mRegionMesh = nullptr;
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mProgram = nullptr;
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mFunctorsCount = 0;
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patchCache.init();
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mInitialized = true;
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mPixelBufferState = new PixelBufferState();
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mTextureState = new TextureState();
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return true;
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}
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void Caches::initFont() {
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fontRenderer = GammaFontRenderer::createRenderer();
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}
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void Caches::initExtensions() {
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if (mExtensions.hasDebugMarker()) {
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eventMark = glInsertEventMarkerEXT;
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startMark = glPushGroupMarkerEXT;
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endMark = glPopGroupMarkerEXT;
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} else {
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eventMark = eventMarkNull;
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startMark = startMarkNull;
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endMark = endMarkNull;
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}
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}
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void Caches::initConstraints() {
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glGetIntegerv(GL_MAX_TEXTURE_SIZE, &maxTextureSize);
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}
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void Caches::initStaticProperties() {
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gpuPixelBuffersEnabled = false;
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// OpenGL ES 3.0+ specific features
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if (mExtensions.hasPixelBufferObjects()) {
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char property[PROPERTY_VALUE_MAX];
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if (property_get(PROPERTY_ENABLE_GPU_PIXEL_BUFFERS, property, "true") > 0) {
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gpuPixelBuffersEnabled = !strcmp(property, "true");
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}
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}
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}
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void Caches::terminate() {
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if (!mInitialized) return;
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mRegionMesh.release();
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fboCache.clear();
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programCache.clear();
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mProgram = nullptr;
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patchCache.clear();
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clearGarbage();
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delete mPixelBufferState;
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mPixelBufferState = nullptr;
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delete mTextureState;
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mTextureState = nullptr;
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mInitialized = false;
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}
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void Caches::setProgram(const ProgramDescription& description) {
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setProgram(programCache.get(description));
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}
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void Caches::setProgram(Program* program) {
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if (!program || !program->isInUse()) {
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if (mProgram) {
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mProgram->remove();
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}
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if (program) {
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program->use();
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}
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mProgram = program;
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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// Debug
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///////////////////////////////////////////////////////////////////////////////
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uint32_t Caches::getOverdrawColor(uint32_t amount) const {
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static uint32_t sOverdrawColors[2][4] = {
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{ 0x2f0000ff, 0x2f00ff00, 0x3fff0000, 0x7fff0000 },
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{ 0x2f0000ff, 0x4fffff00, 0x5fff8ad8, 0x7fff0000 }
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};
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if (amount < 1) amount = 1;
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if (amount > 4) amount = 4;
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int overdrawColorIndex = static_cast<int>(Properties::overdrawColorSet);
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return sOverdrawColors[overdrawColorIndex][amount - 1];
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}
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void Caches::dumpMemoryUsage() {
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String8 stringLog;
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dumpMemoryUsage(stringLog);
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ALOGD("%s", stringLog.string());
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}
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void Caches::dumpMemoryUsage(String8 &log) {
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uint32_t total = 0;
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log.appendFormat("Current memory usage / total memory usage (bytes):\n");
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log.appendFormat(" TextureCache %8d / %8d\n",
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textureCache.getSize(), textureCache.getMaxSize());
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log.appendFormat(" LayerCache %8d / %8d (numLayers = %zu)\n",
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layerCache.getSize(), layerCache.getMaxSize(), layerCache.getCount());
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if (mRenderState) {
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int memused = 0;
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for (std::set<Layer*>::iterator it = mRenderState->mActiveLayers.begin();
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it != mRenderState->mActiveLayers.end(); it++) {
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const Layer* layer = *it;
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log.appendFormat(" Layer size %dx%d; isTextureLayer()=%d; texid=%u fbo=%u; refs=%d\n",
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layer->getWidth(), layer->getHeight(),
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layer->isTextureLayer(), layer->getTextureId(),
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layer->getFbo(), layer->getStrongCount());
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memused += layer->getWidth() * layer->getHeight() * 4;
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}
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log.appendFormat(" Layers total %8d (numLayers = %zu)\n",
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memused, mRenderState->mActiveLayers.size());
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total += memused;
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}
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log.appendFormat(" RenderBufferCache %8d / %8d\n",
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renderBufferCache.getSize(), renderBufferCache.getMaxSize());
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log.appendFormat(" GradientCache %8d / %8d\n",
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gradientCache.getSize(), gradientCache.getMaxSize());
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log.appendFormat(" PathCache %8d / %8d\n",
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pathCache.getSize(), pathCache.getMaxSize());
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log.appendFormat(" TessellationCache %8d / %8d\n",
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tessellationCache.getSize(), tessellationCache.getMaxSize());
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log.appendFormat(" TextDropShadowCache %8d / %8d\n", dropShadowCache.getSize(),
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dropShadowCache.getMaxSize());
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log.appendFormat(" PatchCache %8d / %8d\n",
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patchCache.getSize(), patchCache.getMaxSize());
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for (uint32_t i = 0; i < fontRenderer->getFontRendererCount(); i++) {
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const uint32_t sizeA8 = fontRenderer->getFontRendererSize(i, GL_ALPHA);
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const uint32_t sizeRGBA = fontRenderer->getFontRendererSize(i, GL_RGBA);
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log.appendFormat(" FontRenderer %d A8 %8d / %8d\n", i, sizeA8, sizeA8);
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log.appendFormat(" FontRenderer %d RGBA %8d / %8d\n", i, sizeRGBA, sizeRGBA);
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log.appendFormat(" FontRenderer %d total %8d / %8d\n", i, sizeA8 + sizeRGBA,
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sizeA8 + sizeRGBA);
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}
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log.appendFormat("Other:\n");
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log.appendFormat(" FboCache %8d / %8d\n",
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fboCache.getSize(), fboCache.getMaxSize());
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total += textureCache.getSize();
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total += renderBufferCache.getSize();
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total += gradientCache.getSize();
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total += pathCache.getSize();
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total += tessellationCache.getSize();
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total += dropShadowCache.getSize();
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total += patchCache.getSize();
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for (uint32_t i = 0; i < fontRenderer->getFontRendererCount(); i++) {
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total += fontRenderer->getFontRendererSize(i, GL_ALPHA);
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total += fontRenderer->getFontRendererSize(i, GL_RGBA);
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}
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log.appendFormat("Total memory usage:\n");
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log.appendFormat(" %d bytes, %.2f MB\n", total, total / 1024.0f / 1024.0f);
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}
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///////////////////////////////////////////////////////////////////////////////
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// Memory management
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///////////////////////////////////////////////////////////////////////////////
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void Caches::clearGarbage() {
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textureCache.clearGarbage();
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pathCache.clearGarbage();
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patchCache.clearGarbage();
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}
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void Caches::flush(FlushMode mode) {
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FLUSH_LOGD("Flushing caches (mode %d)", mode);
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// We must stop tasks before clearing caches
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if (mode > kFlushMode_Layers) {
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tasks.stop();
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}
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switch (mode) {
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case kFlushMode_Full:
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textureCache.clear();
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patchCache.clear();
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dropShadowCache.clear();
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gradientCache.clear();
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fontRenderer->clear();
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fboCache.clear();
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dither.clear();
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// fall through
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case kFlushMode_Moderate:
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fontRenderer->flush();
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textureCache.flush();
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pathCache.clear();
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tessellationCache.clear();
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// fall through
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case kFlushMode_Layers:
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layerCache.clear();
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renderBufferCache.clear();
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break;
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}
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clearGarbage();
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glFinish();
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// Errors during cleanup should be considered non-fatal, dump them and
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// and move on. TODO: All errors or just errors like bad surface?
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GLUtils::dumpGLErrors();
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}
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///////////////////////////////////////////////////////////////////////////////
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// Tiling
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///////////////////////////////////////////////////////////////////////////////
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void Caches::startTiling(GLuint x, GLuint y, GLuint width, GLuint height, bool discard) {
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if (mExtensions.hasTiledRendering() && !Properties::debugOverdraw) {
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glStartTilingQCOM(x, y, width, height, (discard ? GL_NONE : GL_COLOR_BUFFER_BIT0_QCOM));
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}
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}
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void Caches::endTiling() {
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if (mExtensions.hasTiledRendering() && !Properties::debugOverdraw) {
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glEndTilingQCOM(GL_COLOR_BUFFER_BIT0_QCOM);
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}
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}
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bool Caches::hasRegisteredFunctors() {
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return mFunctorsCount > 0;
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}
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void Caches::registerFunctors(uint32_t functorCount) {
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mFunctorsCount += functorCount;
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}
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void Caches::unregisterFunctors(uint32_t functorCount) {
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if (functorCount > mFunctorsCount) {
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mFunctorsCount = 0;
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} else {
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mFunctorsCount -= functorCount;
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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// Regions
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///////////////////////////////////////////////////////////////////////////////
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TextureVertex* Caches::getRegionMesh() {
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// Create the mesh, 2 triangles and 4 vertices per rectangle in the region
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if (!mRegionMesh) {
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mRegionMesh.reset(new TextureVertex[kMaxNumberOfQuads * 4]);
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}
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return mRegionMesh.get();
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}
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///////////////////////////////////////////////////////////////////////////////
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// Temporary Properties
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///////////////////////////////////////////////////////////////////////////////
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}; // namespace uirenderer
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}; // namespace android
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