|  | /* | 
|  | * Copyright (C) 2009 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. | 
|  | */ | 
|  |  | 
|  | #define ATRACE_TAG ATRACE_TAG_GRAPHICS | 
|  |  | 
|  | #include <binder/IPCThreadState.h> | 
|  |  | 
|  | #include <utils/Log.h> | 
|  | #include <utils/Timers.h> | 
|  | #include <utils/threads.h> | 
|  |  | 
|  | #include <gui/DisplayEventReceiver.h> | 
|  |  | 
|  | #include "EventThread.h" | 
|  | #include "FrameTimeline.h" | 
|  | #include "MessageQueue.h" | 
|  |  | 
|  | namespace android::impl { | 
|  |  | 
|  | void MessageQueue::Handler::dispatchFrame(VsyncId vsyncId, TimePoint expectedVsyncTime) { | 
|  | if (!mFramePending.exchange(true)) { | 
|  | mVsyncId = vsyncId; | 
|  | mExpectedVsyncTime = expectedVsyncTime; | 
|  | mQueue.mLooper->sendMessage(sp<MessageHandler>::fromExisting(this), Message()); | 
|  | } | 
|  | } | 
|  |  | 
|  | bool MessageQueue::Handler::isFramePending() const { | 
|  | return mFramePending.load(); | 
|  | } | 
|  |  | 
|  | void MessageQueue::Handler::handleMessage(const Message&) { | 
|  | mFramePending.store(false); | 
|  | mQueue.onFrameSignal(mQueue.mCompositor, mVsyncId, mExpectedVsyncTime); | 
|  | } | 
|  |  | 
|  | MessageQueue::MessageQueue(ICompositor& compositor) | 
|  | : MessageQueue(compositor, sp<Handler>::make(*this)) {} | 
|  |  | 
|  | constexpr bool kAllowNonCallbacks = true; | 
|  |  | 
|  | MessageQueue::MessageQueue(ICompositor& compositor, sp<Handler> handler) | 
|  | : mCompositor(compositor), | 
|  | mLooper(sp<Looper>::make(kAllowNonCallbacks)), | 
|  | mHandler(std::move(handler)) {} | 
|  |  | 
|  | void MessageQueue::vsyncCallback(nsecs_t vsyncTime, nsecs_t targetWakeupTime, nsecs_t readyTime) { | 
|  | ATRACE_CALL(); | 
|  | // Trace VSYNC-sf | 
|  | mVsync.value = (mVsync.value + 1) % 2; | 
|  |  | 
|  | const auto expectedVsyncTime = TimePoint::fromNs(vsyncTime); | 
|  | { | 
|  | std::lock_guard lock(mVsync.mutex); | 
|  | mVsync.lastCallbackTime = expectedVsyncTime; | 
|  | mVsync.scheduledFrameTime.reset(); | 
|  | } | 
|  |  | 
|  | const auto vsyncId = VsyncId{mVsync.tokenManager->generateTokenForPredictions( | 
|  | {targetWakeupTime, readyTime, vsyncTime})}; | 
|  |  | 
|  | mHandler->dispatchFrame(vsyncId, expectedVsyncTime); | 
|  | } | 
|  |  | 
|  | void MessageQueue::initVsync(scheduler::VSyncDispatch& dispatch, | 
|  | frametimeline::TokenManager& tokenManager, | 
|  | std::chrono::nanoseconds workDuration) { | 
|  | setDuration(workDuration); | 
|  | mVsync.tokenManager = &tokenManager; | 
|  | mVsync.registration = std::make_unique< | 
|  | scheduler::VSyncCallbackRegistration>(dispatch, | 
|  | std::bind(&MessageQueue::vsyncCallback, this, | 
|  | std::placeholders::_1, | 
|  | std::placeholders::_2, | 
|  | std::placeholders::_3), | 
|  | "sf"); | 
|  | } | 
|  |  | 
|  | void MessageQueue::setDuration(std::chrono::nanoseconds workDuration) { | 
|  | ATRACE_CALL(); | 
|  | std::lock_guard lock(mVsync.mutex); | 
|  | mVsync.workDuration = workDuration; | 
|  | if (mVsync.scheduledFrameTime) { | 
|  | mVsync.scheduledFrameTime = | 
|  | mVsync.registration->schedule({.workDuration = mVsync.workDuration.get().count(), | 
|  | .readyDuration = 0, | 
|  | .earliestVsync = mVsync.lastCallbackTime.ns()}); | 
|  | } | 
|  | } | 
|  |  | 
|  | void MessageQueue::waitMessage() { | 
|  | do { | 
|  | IPCThreadState::self()->flushCommands(); | 
|  | int32_t ret = mLooper->pollOnce(-1); | 
|  | switch (ret) { | 
|  | case Looper::POLL_WAKE: | 
|  | case Looper::POLL_CALLBACK: | 
|  | continue; | 
|  | case Looper::POLL_ERROR: | 
|  | ALOGE("Looper::POLL_ERROR"); | 
|  | continue; | 
|  | case Looper::POLL_TIMEOUT: | 
|  | // timeout (should not happen) | 
|  | continue; | 
|  | default: | 
|  | // should not happen | 
|  | ALOGE("Looper::pollOnce() returned unknown status %d", ret); | 
|  | continue; | 
|  | } | 
|  | } while (true); | 
|  | } | 
|  |  | 
|  | void MessageQueue::postMessage(sp<MessageHandler>&& handler) { | 
|  | mLooper->sendMessage(handler, Message()); | 
|  | } | 
|  |  | 
|  | void MessageQueue::scheduleConfigure() { | 
|  | struct ConfigureHandler : MessageHandler { | 
|  | explicit ConfigureHandler(ICompositor& compositor) : compositor(compositor) {} | 
|  |  | 
|  | void handleMessage(const Message&) override { compositor.configure(); } | 
|  |  | 
|  | ICompositor& compositor; | 
|  | }; | 
|  |  | 
|  | // TODO(b/241285876): Batch configure tasks that happen within some duration. | 
|  | postMessage(sp<ConfigureHandler>::make(mCompositor)); | 
|  | } | 
|  |  | 
|  | void MessageQueue::scheduleFrame() { | 
|  | ATRACE_CALL(); | 
|  |  | 
|  | std::lock_guard lock(mVsync.mutex); | 
|  | mVsync.scheduledFrameTime = | 
|  | mVsync.registration->schedule({.workDuration = mVsync.workDuration.get().count(), | 
|  | .readyDuration = 0, | 
|  | .earliestVsync = mVsync.lastCallbackTime.ns()}); | 
|  | } | 
|  |  | 
|  | auto MessageQueue::getScheduledFrameTime() const -> std::optional<Clock::time_point> { | 
|  | if (mHandler->isFramePending()) { | 
|  | return Clock::now(); | 
|  | } | 
|  |  | 
|  | std::lock_guard lock(mVsync.mutex); | 
|  | if (const auto time = mVsync.scheduledFrameTime) { | 
|  | return Clock::time_point(std::chrono::nanoseconds(*time)); | 
|  | } | 
|  |  | 
|  | return std::nullopt; | 
|  | } | 
|  |  | 
|  | } // namespace android::impl |