206 lines
6.1 KiB
C++
206 lines
6.1 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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#define LOG_TAG "Choreographer"
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//#define LOG_NDEBUG 0
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#include <cinttypes>
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#include <queue>
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#include <thread>
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#include <android/choreographer.h>
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#include <androidfw/DisplayEventDispatcher.h>
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#include <gui/ISurfaceComposer.h>
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#include <utils/Looper.h>
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#include <utils/Mutex.h>
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#include <utils/Timers.h>
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namespace android {
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static inline const char* toString(bool value) {
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return value ? "true" : "false";
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}
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struct FrameCallback {
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AChoreographer_frameCallback callback;
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void* data;
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nsecs_t dueTime;
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inline bool operator<(const FrameCallback& rhs) const {
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// Note that this is intentionally flipped because we want callbacks due sooner to be at
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// the head of the queue
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return dueTime > rhs.dueTime;
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}
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};
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class Choreographer : public DisplayEventDispatcher, public MessageHandler {
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public:
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void postFrameCallback(AChoreographer_frameCallback cb, void* data);
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void postFrameCallbackDelayed(AChoreographer_frameCallback cb, void* data, nsecs_t delay);
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enum {
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MSG_SCHEDULE_CALLBACKS = 0,
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MSG_SCHEDULE_VSYNC = 1
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};
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virtual void handleMessage(const Message& message) override;
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static Choreographer* getForThread();
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protected:
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virtual ~Choreographer() = default;
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private:
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explicit Choreographer(const sp<Looper>& looper);
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Choreographer(const Choreographer&) = delete;
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virtual void dispatchVsync(nsecs_t timestamp, int32_t id, uint32_t count);
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virtual void dispatchHotplug(nsecs_t timestamp, int32_t id, bool connected);
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void scheduleCallbacks();
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// Protected by mLock
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std::priority_queue<FrameCallback> mCallbacks;
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mutable Mutex mLock;
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const sp<Looper> mLooper;
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const std::thread::id mThreadId;
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};
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static thread_local Choreographer* gChoreographer;
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Choreographer* Choreographer::getForThread() {
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if (gChoreographer == nullptr) {
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sp<Looper> looper = Looper::getForThread();
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if (!looper.get()) {
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ALOGW("No looper prepared for thread");
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return nullptr;
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}
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gChoreographer = new Choreographer(looper);
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status_t result = gChoreographer->initialize();
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if (result != OK) {
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ALOGW("Failed to initialize");
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return nullptr;
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}
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}
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return gChoreographer;
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}
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Choreographer::Choreographer(const sp<Looper>& looper) :
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DisplayEventDispatcher(looper), mLooper(looper), mThreadId(std::this_thread::get_id()) {
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}
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void Choreographer::postFrameCallback(AChoreographer_frameCallback cb, void* data) {
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postFrameCallbackDelayed(cb, data, 0);
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}
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void Choreographer::postFrameCallbackDelayed(
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AChoreographer_frameCallback cb, void* data, nsecs_t delay) {
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nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
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FrameCallback callback{cb, data, now + delay};
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{
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AutoMutex _l{mLock};
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mCallbacks.push(callback);
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}
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if (callback.dueTime <= now) {
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if (std::this_thread::get_id() != mThreadId) {
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Message m{MSG_SCHEDULE_VSYNC};
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mLooper->sendMessage(this, m);
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} else {
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scheduleVsync();
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}
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} else {
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Message m{MSG_SCHEDULE_CALLBACKS};
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mLooper->sendMessageDelayed(delay, this, m);
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}
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}
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void Choreographer::scheduleCallbacks() {
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AutoMutex _{mLock};
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nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
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if (mCallbacks.top().dueTime <= now) {
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ALOGV("choreographer %p ~ scheduling vsync", this);
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scheduleVsync();
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return;
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}
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}
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void Choreographer::dispatchVsync(nsecs_t timestamp, int32_t id, uint32_t) {
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if (id != ISurfaceComposer::eDisplayIdMain) {
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ALOGV("choreographer %p ~ ignoring vsync signal for non-main display (id=%d)", this, id);
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scheduleVsync();
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return;
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}
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std::vector<FrameCallback> callbacks{};
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{
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AutoMutex _l{mLock};
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nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
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while (!mCallbacks.empty() && mCallbacks.top().dueTime < now) {
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callbacks.push_back(mCallbacks.top());
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mCallbacks.pop();
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}
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}
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for (const auto& cb : callbacks) {
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cb.callback(timestamp, cb.data);
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}
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}
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void Choreographer::dispatchHotplug(nsecs_t, int32_t id, bool connected) {
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ALOGV("choreographer %p ~ received hotplug event (id=%" PRId32 ", connected=%s), ignoring.",
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this, id, toString(connected));
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}
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void Choreographer::handleMessage(const Message& message) {
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switch (message.what) {
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case MSG_SCHEDULE_CALLBACKS:
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scheduleCallbacks();
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break;
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case MSG_SCHEDULE_VSYNC:
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scheduleVsync();
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break;
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}
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}
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}
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/* Glue for the NDK interface */
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using android::Choreographer;
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static inline Choreographer* AChoreographer_to_Choreographer(AChoreographer* choreographer) {
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return reinterpret_cast<Choreographer*>(choreographer);
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}
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static inline AChoreographer* Choreographer_to_AChoreographer(Choreographer* choreographer) {
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return reinterpret_cast<AChoreographer*>(choreographer);
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}
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AChoreographer* AChoreographer_getInstance() {
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return Choreographer_to_AChoreographer(Choreographer::getForThread());
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}
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void AChoreographer_postFrameCallback(AChoreographer* choreographer,
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AChoreographer_frameCallback callback, void* data) {
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AChoreographer_to_Choreographer(choreographer)->postFrameCallback(callback, data);
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}
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void AChoreographer_postFrameCallbackDelayed(AChoreographer* choreographer,
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AChoreographer_frameCallback callback, void* data, long delayMillis) {
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AChoreographer_to_Choreographer(choreographer)->postFrameCallbackDelayed(
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callback, data, ms2ns(delayMillis));
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}
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