* LRU cache of recently-used is dead, replaced disk storage * ASHMEM size is read from native by the system service, no longer requires keeping a sizeof() in sync with a constant in Java * Supports dumping in proto format by passing --proto * Rotates logs on a daily basis * Keeps a history of the most recent 3 days Bug: 33705836 Test: Manual. Verified log rotating works by setting it up to rotate every minute instead of day. Confirmed /data/system/graphicsstats only has the most recent 3 entries after several minutes Change-Id: Ib84bafb26c58701cc86f123236de4fff01aaa4aa
722 lines
22 KiB
C++
722 lines
22 KiB
C++
/*
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* Copyright (C) 2013 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 "RenderProxy.h"
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#include "DeferredLayerUpdater.h"
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#include "DisplayList.h"
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#include "Readback.h"
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#include "Rect.h"
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#include "renderthread/CanvasContext.h"
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#include "renderthread/EglManager.h"
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#include "renderthread/RenderTask.h"
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#include "renderthread/RenderThread.h"
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#include "utils/Macros.h"
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#include "utils/TimeUtils.h"
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#include <ui/GraphicBuffer.h>
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namespace android {
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namespace uirenderer {
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namespace renderthread {
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#define ARGS(method) method ## Args
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#define CREATE_BRIDGE0(name) CREATE_BRIDGE(name,,,,,,,,)
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#define CREATE_BRIDGE1(name, a1) CREATE_BRIDGE(name, a1,,,,,,,)
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#define CREATE_BRIDGE2(name, a1, a2) CREATE_BRIDGE(name, a1,a2,,,,,,)
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#define CREATE_BRIDGE3(name, a1, a2, a3) CREATE_BRIDGE(name, a1,a2,a3,,,,,)
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#define CREATE_BRIDGE4(name, a1, a2, a3, a4) CREATE_BRIDGE(name, a1,a2,a3,a4,,,,)
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#define CREATE_BRIDGE5(name, a1, a2, a3, a4, a5) CREATE_BRIDGE(name, a1,a2,a3,a4,a5,,,)
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#define CREATE_BRIDGE6(name, a1, a2, a3, a4, a5, a6) CREATE_BRIDGE(name, a1,a2,a3,a4,a5,a6,,)
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#define CREATE_BRIDGE7(name, a1, a2, a3, a4, a5, a6, a7) CREATE_BRIDGE(name, a1,a2,a3,a4,a5,a6,a7,)
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#define CREATE_BRIDGE(name, a1, a2, a3, a4, a5, a6, a7, a8) \
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typedef struct { \
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a1; a2; a3; a4; a5; a6; a7; a8; \
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} ARGS(name); \
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static_assert(std::is_trivially_destructible<ARGS(name)>::value, \
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"Error, ARGS must be trivially destructible!"); \
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static void* Bridge_ ## name(ARGS(name)* args)
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#define SETUP_TASK(method) \
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LOG_ALWAYS_FATAL_IF( METHOD_INVOKE_PAYLOAD_SIZE < sizeof(ARGS(method)), \
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"METHOD_INVOKE_PAYLOAD_SIZE %zu is smaller than sizeof(" #method "Args) %zu", \
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METHOD_INVOKE_PAYLOAD_SIZE, sizeof(ARGS(method))); \
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MethodInvokeRenderTask* task = new MethodInvokeRenderTask((RunnableMethod) Bridge_ ## method); \
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ARGS(method) *args = (ARGS(method) *) task->payload()
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CREATE_BRIDGE4(createContext, RenderThread* thread, bool translucent,
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RenderNode* rootRenderNode, IContextFactory* contextFactory) {
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return CanvasContext::create(*args->thread, args->translucent,
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args->rootRenderNode, args->contextFactory);
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}
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RenderProxy::RenderProxy(bool translucent, RenderNode* rootRenderNode, IContextFactory* contextFactory)
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: mRenderThread(RenderThread::getInstance())
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, mContext(nullptr) {
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SETUP_TASK(createContext);
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args->translucent = translucent;
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args->rootRenderNode = rootRenderNode;
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args->thread = &mRenderThread;
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args->contextFactory = contextFactory;
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mContext = (CanvasContext*) postAndWait(task);
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mDrawFrameTask.setContext(&mRenderThread, mContext, rootRenderNode);
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}
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RenderProxy::~RenderProxy() {
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destroyContext();
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}
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CREATE_BRIDGE1(destroyContext, CanvasContext* context) {
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delete args->context;
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return nullptr;
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}
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void RenderProxy::destroyContext() {
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if (mContext) {
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SETUP_TASK(destroyContext);
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args->context = mContext;
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mContext = nullptr;
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mDrawFrameTask.setContext(nullptr, nullptr, nullptr);
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// This is also a fence as we need to be certain that there are no
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// outstanding mDrawFrame tasks posted before it is destroyed
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postAndWait(task);
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}
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}
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CREATE_BRIDGE2(setSwapBehavior, CanvasContext* context, SwapBehavior swapBehavior) {
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args->context->setSwapBehavior(args->swapBehavior);
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return nullptr;
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}
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void RenderProxy::setSwapBehavior(SwapBehavior swapBehavior) {
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SETUP_TASK(setSwapBehavior);
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args->context = mContext;
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args->swapBehavior = swapBehavior;
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post(task);
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}
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CREATE_BRIDGE1(loadSystemProperties, CanvasContext* context) {
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bool needsRedraw = false;
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if (Caches::hasInstance()) {
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needsRedraw = Properties::load();
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}
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if (args->context->profiler().consumeProperties()) {
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needsRedraw = true;
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}
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return (void*) needsRedraw;
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}
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bool RenderProxy::loadSystemProperties() {
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SETUP_TASK(loadSystemProperties);
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args->context = mContext;
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return (bool) postAndWait(task);
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}
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CREATE_BRIDGE2(setName, CanvasContext* context, const char* name) {
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args->context->setName(std::string(args->name));
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return nullptr;
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}
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void RenderProxy::setName(const char* name) {
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SETUP_TASK(setName);
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args->context = mContext;
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args->name = name;
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postAndWait(task); // block since name/value pointers owned by caller
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}
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CREATE_BRIDGE2(initialize, CanvasContext* context, Surface* surface) {
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args->context->initialize(args->surface);
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return nullptr;
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}
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void RenderProxy::initialize(const sp<Surface>& surface) {
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SETUP_TASK(initialize);
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args->context = mContext;
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args->surface = surface.get();
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post(task);
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}
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CREATE_BRIDGE2(updateSurface, CanvasContext* context, Surface* surface) {
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args->context->updateSurface(args->surface);
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return nullptr;
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}
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void RenderProxy::updateSurface(const sp<Surface>& surface) {
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SETUP_TASK(updateSurface);
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args->context = mContext;
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args->surface = surface.get();
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post(task);
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}
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CREATE_BRIDGE2(pauseSurface, CanvasContext* context, Surface* surface) {
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return (void*) args->context->pauseSurface(args->surface);
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}
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bool RenderProxy::pauseSurface(const sp<Surface>& surface) {
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SETUP_TASK(pauseSurface);
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args->context = mContext;
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args->surface = surface.get();
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return (bool) postAndWait(task);
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}
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CREATE_BRIDGE2(setStopped, CanvasContext* context, bool stopped) {
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args->context->setStopped(args->stopped);
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return nullptr;
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}
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void RenderProxy::setStopped(bool stopped) {
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SETUP_TASK(setStopped);
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args->context = mContext;
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args->stopped = stopped;
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postAndWait(task);
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}
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CREATE_BRIDGE4(setup, CanvasContext* context,
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float lightRadius, uint8_t ambientShadowAlpha, uint8_t spotShadowAlpha) {
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args->context->setup(args->lightRadius,
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args->ambientShadowAlpha, args->spotShadowAlpha);
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return nullptr;
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}
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void RenderProxy::setup(float lightRadius,
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uint8_t ambientShadowAlpha, uint8_t spotShadowAlpha) {
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SETUP_TASK(setup);
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args->context = mContext;
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args->lightRadius = lightRadius;
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args->ambientShadowAlpha = ambientShadowAlpha;
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args->spotShadowAlpha = spotShadowAlpha;
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post(task);
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}
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CREATE_BRIDGE2(setLightCenter, CanvasContext* context, Vector3 lightCenter) {
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args->context->setLightCenter(args->lightCenter);
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return nullptr;
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}
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void RenderProxy::setLightCenter(const Vector3& lightCenter) {
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SETUP_TASK(setLightCenter);
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args->context = mContext;
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args->lightCenter = lightCenter;
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post(task);
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}
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CREATE_BRIDGE2(setOpaque, CanvasContext* context, bool opaque) {
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args->context->setOpaque(args->opaque);
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return nullptr;
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}
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void RenderProxy::setOpaque(bool opaque) {
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SETUP_TASK(setOpaque);
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args->context = mContext;
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args->opaque = opaque;
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post(task);
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}
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int64_t* RenderProxy::frameInfo() {
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return mDrawFrameTask.frameInfo();
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}
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int RenderProxy::syncAndDrawFrame() {
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return mDrawFrameTask.drawFrame();
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}
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CREATE_BRIDGE1(destroy, CanvasContext* context) {
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args->context->destroy();
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return nullptr;
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}
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void RenderProxy::destroy() {
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SETUP_TASK(destroy);
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args->context = mContext;
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// destroyCanvasAndSurface() needs a fence as when it returns the
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// underlying BufferQueue is going to be released from under
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// the render thread.
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postAndWait(task);
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}
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CREATE_BRIDGE2(invokeFunctor, RenderThread* thread, Functor* functor) {
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CanvasContext::invokeFunctor(*args->thread, args->functor);
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return nullptr;
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}
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void RenderProxy::invokeFunctor(Functor* functor, bool waitForCompletion) {
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ATRACE_CALL();
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RenderThread& thread = RenderThread::getInstance();
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SETUP_TASK(invokeFunctor);
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args->thread = &thread;
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args->functor = functor;
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if (waitForCompletion) {
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// waitForCompletion = true is expected to be fairly rare and only
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// happen in destruction. Thus it should be fine to temporarily
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// create a Mutex
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staticPostAndWait(task);
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} else {
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thread.queue(task);
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}
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}
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CREATE_BRIDGE1(createTextureLayer, CanvasContext* context) {
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return args->context->createTextureLayer();
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}
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DeferredLayerUpdater* RenderProxy::createTextureLayer() {
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SETUP_TASK(createTextureLayer);
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args->context = mContext;
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void* retval = postAndWait(task);
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DeferredLayerUpdater* layer = reinterpret_cast<DeferredLayerUpdater*>(retval);
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return layer;
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}
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CREATE_BRIDGE2(buildLayer, CanvasContext* context, RenderNode* node) {
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args->context->buildLayer(args->node);
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return nullptr;
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}
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void RenderProxy::buildLayer(RenderNode* node) {
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SETUP_TASK(buildLayer);
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args->context = mContext;
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args->node = node;
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postAndWait(task);
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}
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CREATE_BRIDGE3(copyLayerInto, CanvasContext* context, DeferredLayerUpdater* layer,
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SkBitmap* bitmap) {
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bool success = args->context->copyLayerInto(args->layer, args->bitmap);
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return (void*) success;
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}
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bool RenderProxy::copyLayerInto(DeferredLayerUpdater* layer, SkBitmap& bitmap) {
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SETUP_TASK(copyLayerInto);
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args->context = mContext;
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args->layer = layer;
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args->bitmap = &bitmap;
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return (bool) postAndWait(task);
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}
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void RenderProxy::pushLayerUpdate(DeferredLayerUpdater* layer) {
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mDrawFrameTask.pushLayerUpdate(layer);
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}
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void RenderProxy::cancelLayerUpdate(DeferredLayerUpdater* layer) {
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mDrawFrameTask.removeLayerUpdate(layer);
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}
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CREATE_BRIDGE1(detachSurfaceTexture, DeferredLayerUpdater* layer) {
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args->layer->detachSurfaceTexture();
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return nullptr;
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}
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void RenderProxy::detachSurfaceTexture(DeferredLayerUpdater* layer) {
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SETUP_TASK(detachSurfaceTexture);
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args->layer = layer;
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postAndWait(task);
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}
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CREATE_BRIDGE1(destroyHardwareResources, CanvasContext* context) {
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args->context->destroyHardwareResources();
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return nullptr;
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}
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void RenderProxy::destroyHardwareResources() {
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SETUP_TASK(destroyHardwareResources);
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args->context = mContext;
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postAndWait(task);
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}
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CREATE_BRIDGE2(trimMemory, RenderThread* thread, int level) {
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CanvasContext::trimMemory(*args->thread, args->level);
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return nullptr;
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}
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void RenderProxy::trimMemory(int level) {
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// Avoid creating a RenderThread to do a trimMemory.
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if (RenderThread::hasInstance()) {
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RenderThread& thread = RenderThread::getInstance();
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SETUP_TASK(trimMemory);
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args->thread = &thread;
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args->level = level;
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thread.queue(task);
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}
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}
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CREATE_BRIDGE2(overrideProperty, const char* name, const char* value) {
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Properties::overrideProperty(args->name, args->value);
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return nullptr;
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}
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void RenderProxy::overrideProperty(const char* name, const char* value) {
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SETUP_TASK(overrideProperty);
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args->name = name;
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args->value = value;
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staticPostAndWait(task); // expensive, but block here since name/value pointers owned by caller
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}
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CREATE_BRIDGE0(fence) {
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// Intentionally empty
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return nullptr;
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}
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template <typename T>
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void UNUSED(T t) {}
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void RenderProxy::fence() {
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SETUP_TASK(fence);
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UNUSED(args);
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postAndWait(task);
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}
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void RenderProxy::staticFence() {
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SETUP_TASK(fence);
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UNUSED(args);
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staticPostAndWait(task);
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}
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CREATE_BRIDGE1(stopDrawing, CanvasContext* context) {
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args->context->stopDrawing();
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return nullptr;
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}
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void RenderProxy::stopDrawing() {
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SETUP_TASK(stopDrawing);
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args->context = mContext;
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postAndWait(task);
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}
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CREATE_BRIDGE1(notifyFramePending, CanvasContext* context) {
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args->context->notifyFramePending();
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return nullptr;
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}
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void RenderProxy::notifyFramePending() {
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SETUP_TASK(notifyFramePending);
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args->context = mContext;
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mRenderThread.queueAtFront(task);
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}
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CREATE_BRIDGE4(dumpProfileInfo, CanvasContext* context, RenderThread* thread,
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int fd, int dumpFlags) {
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args->context->profiler().dumpData(args->fd);
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if (args->dumpFlags & DumpFlags::FrameStats) {
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args->context->dumpFrames(args->fd);
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}
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if (args->dumpFlags & DumpFlags::Reset) {
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args->context->resetFrameStats();
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}
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if (args->dumpFlags & DumpFlags::JankStats) {
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args->thread->jankTracker().dump(args->fd);
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}
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return nullptr;
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}
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void RenderProxy::dumpProfileInfo(int fd, int dumpFlags) {
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SETUP_TASK(dumpProfileInfo);
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args->context = mContext;
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args->thread = &mRenderThread;
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args->fd = fd;
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args->dumpFlags = dumpFlags;
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postAndWait(task);
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}
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CREATE_BRIDGE1(resetProfileInfo, CanvasContext* context) {
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args->context->resetFrameStats();
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return nullptr;
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}
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void RenderProxy::resetProfileInfo() {
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SETUP_TASK(resetProfileInfo);
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args->context = mContext;
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postAndWait(task);
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}
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CREATE_BRIDGE2(frameTimePercentile, RenderThread* thread, int percentile) {
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return reinterpret_cast<void*>(static_cast<uintptr_t>(
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args->thread->jankTracker().findPercentile(args->percentile)));
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}
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uint32_t RenderProxy::frameTimePercentile(int p) {
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SETUP_TASK(frameTimePercentile);
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args->thread = &mRenderThread;
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args->percentile = p;
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return static_cast<uint32_t>(reinterpret_cast<uintptr_t>(
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postAndWait(task)));
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}
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CREATE_BRIDGE2(dumpGraphicsMemory, int fd, RenderThread* thread) {
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args->thread->jankTracker().dump(args->fd);
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FILE *file = fdopen(args->fd, "a");
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if (Caches::hasInstance()) {
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String8 cachesLog;
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Caches::getInstance().dumpMemoryUsage(cachesLog);
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fprintf(file, "\nCaches:\n%s\n", cachesLog.string());
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} else {
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fprintf(file, "\nNo caches instance.\n");
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}
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fprintf(file, "\nPipeline=FrameBuilder\n");
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fflush(file);
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return nullptr;
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}
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void RenderProxy::dumpGraphicsMemory(int fd) {
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if (!RenderThread::hasInstance()) return;
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SETUP_TASK(dumpGraphicsMemory);
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args->fd = fd;
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args->thread = &RenderThread::getInstance();
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staticPostAndWait(task);
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}
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CREATE_BRIDGE2(setProcessStatsBuffer, RenderThread* thread, int fd) {
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args->thread->jankTracker().switchStorageToAshmem(args->fd);
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close(args->fd);
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return nullptr;
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}
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void RenderProxy::setProcessStatsBuffer(int fd) {
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SETUP_TASK(setProcessStatsBuffer);
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auto& rt = RenderThread::getInstance();
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args->thread = &rt;
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args->fd = dup(fd);
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rt.queue(task);
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}
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CREATE_BRIDGE1(rotateProcessStatsBuffer, RenderThread* thread) {
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args->thread->jankTracker().rotateStorage();
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return nullptr;
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}
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void RenderProxy::rotateProcessStatsBuffer() {
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SETUP_TASK(rotateProcessStatsBuffer);
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auto& rt = RenderThread::getInstance();
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args->thread = &rt;
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rt.queue(task);
|
|
}
|
|
|
|
int RenderProxy::getRenderThreadTid() {
|
|
return mRenderThread.getTid();
|
|
}
|
|
|
|
CREATE_BRIDGE3(addRenderNode, CanvasContext* context, RenderNode* node, bool placeFront) {
|
|
args->context->addRenderNode(args->node, args->placeFront);
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::addRenderNode(RenderNode* node, bool placeFront) {
|
|
SETUP_TASK(addRenderNode);
|
|
args->context = mContext;
|
|
args->node = node;
|
|
args->placeFront = placeFront;
|
|
post(task);
|
|
}
|
|
|
|
CREATE_BRIDGE2(removeRenderNode, CanvasContext* context, RenderNode* node) {
|
|
args->context->removeRenderNode(args->node);
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::removeRenderNode(RenderNode* node) {
|
|
SETUP_TASK(removeRenderNode);
|
|
args->context = mContext;
|
|
args->node = node;
|
|
post(task);
|
|
}
|
|
|
|
CREATE_BRIDGE2(drawRenderNode, CanvasContext* context, RenderNode* node) {
|
|
args->context->prepareAndDraw(args->node);
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::drawRenderNode(RenderNode* node) {
|
|
SETUP_TASK(drawRenderNode);
|
|
args->context = mContext;
|
|
args->node = node;
|
|
// Be pseudo-thread-safe and don't use any member variables
|
|
staticPostAndWait(task);
|
|
}
|
|
|
|
CREATE_BRIDGE5(setContentDrawBounds, CanvasContext* context, int left, int top,
|
|
int right, int bottom) {
|
|
args->context->setContentDrawBounds(args->left, args->top, args->right, args->bottom);
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::setContentDrawBounds(int left, int top, int right, int bottom) {
|
|
SETUP_TASK(setContentDrawBounds);
|
|
args->context = mContext;
|
|
args->left = left;
|
|
args->top = top;
|
|
args->right = right;
|
|
args->bottom = bottom;
|
|
staticPostAndWait(task);
|
|
}
|
|
|
|
CREATE_BRIDGE1(serializeDisplayListTree, CanvasContext* context) {
|
|
args->context->serializeDisplayListTree();
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::serializeDisplayListTree() {
|
|
SETUP_TASK(serializeDisplayListTree);
|
|
args->context = mContext;
|
|
post(task);
|
|
}
|
|
|
|
CREATE_BRIDGE2(addFrameMetricsObserver, CanvasContext* context,
|
|
FrameMetricsObserver* frameStatsObserver) {
|
|
args->context->addFrameMetricsObserver(args->frameStatsObserver);
|
|
if (args->frameStatsObserver != nullptr) {
|
|
args->frameStatsObserver->decStrong(args->context);
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::addFrameMetricsObserver(FrameMetricsObserver* observer) {
|
|
SETUP_TASK(addFrameMetricsObserver);
|
|
args->context = mContext;
|
|
args->frameStatsObserver = observer;
|
|
if (observer != nullptr) {
|
|
observer->incStrong(mContext);
|
|
}
|
|
post(task);
|
|
}
|
|
|
|
CREATE_BRIDGE2(removeFrameMetricsObserver, CanvasContext* context,
|
|
FrameMetricsObserver* frameStatsObserver) {
|
|
args->context->removeFrameMetricsObserver(args->frameStatsObserver);
|
|
if (args->frameStatsObserver != nullptr) {
|
|
args->frameStatsObserver->decStrong(args->context);
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::removeFrameMetricsObserver(FrameMetricsObserver* observer) {
|
|
SETUP_TASK(removeFrameMetricsObserver);
|
|
args->context = mContext;
|
|
args->frameStatsObserver = observer;
|
|
if (observer != nullptr) {
|
|
observer->incStrong(mContext);
|
|
}
|
|
post(task);
|
|
}
|
|
|
|
CREATE_BRIDGE4(copySurfaceInto, RenderThread* thread,
|
|
Surface* surface, Rect srcRect, SkBitmap* bitmap) {
|
|
return (void*)args->thread->readback().copySurfaceInto(*args->surface,
|
|
args->srcRect, args->bitmap);
|
|
}
|
|
|
|
int RenderProxy::copySurfaceInto(sp<Surface>& surface, int left, int top,
|
|
int right, int bottom, SkBitmap* bitmap) {
|
|
SETUP_TASK(copySurfaceInto);
|
|
args->bitmap = bitmap;
|
|
args->surface = surface.get();
|
|
args->thread = &RenderThread::getInstance();
|
|
args->srcRect.set(left, top, right, bottom);
|
|
return static_cast<int>(
|
|
reinterpret_cast<intptr_t>( staticPostAndWait(task) ));
|
|
}
|
|
|
|
CREATE_BRIDGE2(prepareToDraw, RenderThread* thread, Bitmap* bitmap) {
|
|
CanvasContext::prepareToDraw(*args->thread, args->bitmap);
|
|
args->bitmap->unref();
|
|
args->bitmap = nullptr;
|
|
return nullptr;
|
|
}
|
|
|
|
void RenderProxy::prepareToDraw(Bitmap& bitmap) {
|
|
// If we haven't spun up a hardware accelerated window yet, there's no
|
|
// point in precaching these bitmaps as it can't impact jank.
|
|
// We also don't know if we even will spin up a hardware-accelerated
|
|
// window or not.
|
|
if (!RenderThread::hasInstance()) return;
|
|
RenderThread* renderThread = &RenderThread::getInstance();
|
|
SETUP_TASK(prepareToDraw);
|
|
args->thread = renderThread;
|
|
bitmap.ref();
|
|
args->bitmap = &bitmap;
|
|
nsecs_t lastVsync = renderThread->timeLord().latestVsync();
|
|
nsecs_t estimatedNextVsync = lastVsync + renderThread->timeLord().frameIntervalNanos();
|
|
nsecs_t timeToNextVsync = estimatedNextVsync - systemTime(CLOCK_MONOTONIC);
|
|
// We expect the UI thread to take 4ms and for RT to be active from VSYNC+4ms to
|
|
// VSYNC+12ms or so, so aim for the gap during which RT is expected to
|
|
// be idle
|
|
// TODO: Make this concept a first-class supported thing? RT could use
|
|
// knowledge of pending draws to better schedule this task
|
|
if (timeToNextVsync > -6_ms && timeToNextVsync < 1_ms) {
|
|
renderThread->queueAt(task, estimatedNextVsync + 8_ms);
|
|
} else {
|
|
renderThread->queue(task);
|
|
}
|
|
}
|
|
|
|
CREATE_BRIDGE2(allocateHardwareBitmap, RenderThread* thread, SkBitmap* bitmap) {
|
|
sk_sp<Bitmap> hardwareBitmap = Bitmap::allocateHardwareBitmap(*args->thread, *args->bitmap);
|
|
return hardwareBitmap.release();
|
|
}
|
|
|
|
sk_sp<Bitmap> RenderProxy::allocateHardwareBitmap(SkBitmap& bitmap) {
|
|
SETUP_TASK(allocateHardwareBitmap);
|
|
args->bitmap = &bitmap;
|
|
args->thread = &RenderThread::getInstance();
|
|
sk_sp<Bitmap> hardwareBitmap(reinterpret_cast<Bitmap*>(staticPostAndWait(task)));
|
|
return hardwareBitmap;
|
|
}
|
|
|
|
CREATE_BRIDGE3(copyGraphicBufferInto, RenderThread* thread, GraphicBuffer* buffer, SkBitmap* bitmap) {
|
|
return (void*) args->thread->readback().copyGraphicBufferInto(args->buffer, args->bitmap);
|
|
}
|
|
|
|
int RenderProxy::copyGraphicBufferInto(GraphicBuffer* buffer, SkBitmap* bitmap) {
|
|
RenderThread& thread = RenderThread::getInstance();
|
|
if (Properties::isSkiaEnabled() && gettid() == thread.getTid()) {
|
|
//TODO: fix everything that hits this. We should never be triggering a readback ourselves.
|
|
return (int) thread.readback().copyGraphicBufferInto(buffer, bitmap);
|
|
} else {
|
|
SETUP_TASK(copyGraphicBufferInto);
|
|
args->thread = &thread;
|
|
args->bitmap = bitmap;
|
|
args->buffer = buffer;
|
|
return static_cast<int>(reinterpret_cast<intptr_t>(staticPostAndWait(task)));
|
|
}
|
|
}
|
|
|
|
void RenderProxy::post(RenderTask* task) {
|
|
mRenderThread.queue(task);
|
|
}
|
|
|
|
void* RenderProxy::postAndWait(MethodInvokeRenderTask* task) {
|
|
void* retval;
|
|
task->setReturnPtr(&retval);
|
|
SignalingRenderTask syncTask(task, &mSyncMutex, &mSyncCondition);
|
|
AutoMutex _lock(mSyncMutex);
|
|
mRenderThread.queue(&syncTask);
|
|
mSyncCondition.wait(mSyncMutex);
|
|
return retval;
|
|
}
|
|
|
|
void* RenderProxy::staticPostAndWait(MethodInvokeRenderTask* task) {
|
|
RenderThread& thread = RenderThread::getInstance();
|
|
LOG_ALWAYS_FATAL_IF(gettid() == thread.getTid());
|
|
void* retval;
|
|
task->setReturnPtr(&retval);
|
|
thread.queueAndWait(task);
|
|
return retval;
|
|
}
|
|
|
|
} /* namespace renderthread */
|
|
} /* namespace uirenderer */
|
|
} /* namespace android */
|