811 lines
25 KiB
C++
811 lines
25 KiB
C++
#include "previewautocacher.h"
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#include <QApplication>
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#include <QtConcurrent/QtConcurrent>
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#include "codec/conformmanager.h"
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#include "node/project/project.h"
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#include "render/rendermanager.h"
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#include "render/renderprocessor.h"
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namespace olive {
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PreviewAutoCacher::PreviewAutoCacher() :
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viewer_node_(nullptr),
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has_changed_(false),
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use_custom_range_(false),
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single_frame_render_(nullptr),
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last_update_time_(0),
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ignore_next_mouse_button_(false),
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last_conform_task_(0)
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{
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paused_ = !Config::Current()[QStringLiteral("AutoCacheEnabled")].toBool(),
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SetPlayhead(0);
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delayed_requeue_timer_.setInterval(Config::Current()[QStringLiteral("AutoCacheDelay")].toInt());
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delayed_requeue_timer_.setSingleShot(true);
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connect(&delayed_requeue_timer_, &QTimer::timeout, this, &PreviewAutoCacher::RequeueFrames);
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connect(ConformManager::instance(), &ConformManager::ConformReady, this, &PreviewAutoCacher::ConformFinished);
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}
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PreviewAutoCacher::~PreviewAutoCacher()
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{
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// Ensure everything is cleaned up appropriately
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SetViewerNode(nullptr);
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}
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RenderTicketPtr PreviewAutoCacher::GetSingleFrame(const rational &t, bool prioritize)
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{
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CancelQueuedSingleFrameRender();
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QByteArray hash;
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if (!paused_) {
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hash = viewer_node_->video_frame_cache()->GetHash(t);
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}
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auto sfr = std::make_shared<RenderTicket>();
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sfr->Start();
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sfr->setProperty("time", QVariant::fromValue(t));
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sfr->setProperty("prioritize", prioritize);
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sfr->setProperty("hash", hash);
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// Attempt to queue
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single_frame_render_ = sfr;
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TryRender();
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return sfr;
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}
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void PreviewAutoCacher::SetPaused(bool paused)
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{
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paused_ = paused;
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}
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void GenerateHashesInternal(ViewerOutput *viewer, FrameHashCache* cache, const QVector<rational> ×, qint64 job_time)
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{
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std::vector<QByteArray> existing_hashes;
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foreach (const rational& time, times) {
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// See if hash already exists in disk cache
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QByteArray hash = RenderManager::Hash(viewer->GetConnectedTextureOutput(), viewer->GetVideoParams(), time);
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// Check memory list since disk checking is slow
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bool hash_exists = (std::find(existing_hashes.begin(), existing_hashes.end(), hash) != existing_hashes.end());
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if (!hash_exists) {
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hash_exists = QFileInfo::exists(cache->CachePathName(hash));
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if (hash_exists) {
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existing_hashes.push_back(hash);
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}
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}
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// Set hash in FrameHashCache's thread rather than in ours to prevent race conditions
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QMetaObject::invokeMethod(cache, "SetHash", Qt::QueuedConnection,
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OLIVE_NS_ARG(rational, time),
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Q_ARG(QByteArray, hash),
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Q_ARG(qint64, job_time),
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Q_ARG(bool, hash_exists));
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}
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}
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void PreviewAutoCacher::GenerateHashes(ViewerOutput *viewer, FrameHashCache* cache, const QVector<rational> ×, qint64 job_time)
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{
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// Ensure number of threads doesn't exceed idealThreadCount for maximum concurrency
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int hashes_per_thread = times.size() / qMax(1, QThread::idealThreadCount()-1);
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// Somewhat arbitrary (it felt right) number used to determine when the overhead of sending this
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// to threads will exceed the benefit of multithreading
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static const int kMinimumHashesPerThread = 500;
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if (hashes_per_thread < kMinimumHashesPerThread) {
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hashes_per_thread = kMinimumHashesPerThread;
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}
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// Queue threaded tasks for each
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if (hashes_per_thread >= times.size()) {
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// Don't bother queuing in other thread, just run
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GenerateHashesInternal(viewer, cache, times, job_time);
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} else {
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QVector<QFuture<void> > threads;
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for (int i=0; i<times.size(); i+=hashes_per_thread) {
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threads.append(QtConcurrent::run(GenerateHashesInternal, viewer, cache, times.mid(i, i == times.size() - 1 ? -1 : hashes_per_thread), job_time));
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}
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for (int i=0; i<threads.size(); i++) {
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threads[i].waitForFinished();
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}
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}
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}
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void PreviewAutoCacher::VideoInvalidated(const TimeRange &range)
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{
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ClearVideoQueue();
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// Hash these frames since that should be relatively quick.
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if (ignore_next_mouse_button_ || !(qApp->mouseButtons() & Qt::LeftButton)) {
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ignore_next_mouse_button_ = false;
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invalidated_video_.insert(range);
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TryRender();
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}
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}
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void PreviewAutoCacher::AudioInvalidated(const TimeRange &range)
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{
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// ClearAudioQueue();
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// Start jobs to re-render the audio at this range, split into 2 second chunks
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invalidated_audio_.insert(range);
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TryRender();
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}
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void PreviewAutoCacher::HashesProcessed()
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{
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QFutureWatcher<void>* watcher = static_cast<QFutureWatcher<void>*>(sender());
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if (hash_tasks_.contains(watcher)) {
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hash_tasks_.removeOne(watcher);
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// Restart delayed requeue timer
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delayed_requeue_timer_.stop();
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delayed_requeue_timer_.start();
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}
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// The cacher might be waiting for this job to finish
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if (!graph_update_queue_.isEmpty()) {
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TryRender();
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}
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delete watcher;
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}
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void PreviewAutoCacher::AudioRendered()
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{
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RenderTicketWatcher* watcher = static_cast<RenderTicketWatcher*>(sender());
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if (audio_tasks_.contains(watcher)) {
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if (watcher->HasResult()) {
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const TimeRange &range = audio_tasks_.value(watcher);
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viewer_node_->audio_playback_cache()->WritePCM(range,
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watcher->Get().value<SampleBufferPtr>(),
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watcher->GetTicket()->GetJobTime());
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bool pcm_is_usable = true;
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if (watcher->GetTicket()->property("incomplete").toBool()) {
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if (last_conform_task_ > watcher->GetTicket()->GetJobTime()) {
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// Requeue now
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viewer_node_->audio_playback_cache()->Invalidate(range, QDateTime::currentMSecsSinceEpoch());
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pcm_is_usable = false;
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} else {
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// Wait for conform
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audio_needing_conform_.insert(range);
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}
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}
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if (pcm_is_usable) {
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// Retrieve visual waveforms
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QVector<RenderProcessor::RenderedWaveform> waveform_list = watcher->GetTicket()->property("waveforms").value< QVector<RenderProcessor::RenderedWaveform> >();
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foreach (const RenderProcessor::RenderedWaveform& waveform_info, waveform_list) {
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// Find original track
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Track* track = nullptr;
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for (auto it=copy_map_.cbegin(); it!=copy_map_.cend(); it++) {
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if (it.value() == waveform_info.track) {
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track = static_cast<Track*>(it.key());
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break;
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}
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}
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if (track) {
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QList<TimeRange> valid_ranges = viewer_node_->audio_playback_cache()->GetValidRanges(waveform_info.range,
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watcher->GetTicket()->GetJobTime());
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if (!valid_ranges.isEmpty()) {
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// Generate visual waveform in this background thread
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track->waveform().set_channel_count(viewer_node_->GetAudioParams().channel_count());
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foreach (const TimeRange& r, valid_ranges) {
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track->waveform().OverwriteSums(waveform_info.waveform, r.in(), r.in() - waveform_info.range.in(), r.length());
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}
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emit track->PreviewChanged();
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}
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}
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}
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}
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}
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audio_tasks_.remove(watcher);
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}
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// The cacher might be waiting for this job to finish
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if (!graph_update_queue_.isEmpty()) {
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TryRender();
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}
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delete watcher;
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}
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void PreviewAutoCacher::VideoRendered()
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{
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RenderTicketWatcher* watcher = static_cast<RenderTicketWatcher*>(sender());
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if (video_tasks_.contains(watcher)) {
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if (watcher->HasResult()) {
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const QByteArray& hash = video_tasks_.value(watcher);
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// Download frame in another thread
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if (!hash.isEmpty() && VideoParams::FormatIsFloat(viewer_node_->GetVideoParams().format())) {
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FramePtr frame = watcher->Get().value<FramePtr>();
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RenderTicketWatcher* w = new RenderTicketWatcher();
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w->setProperty("frame", QVariant::fromValue(frame));
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video_download_tasks_.insert(w, hash);
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connect(w, &RenderTicketWatcher::Finished, this, &PreviewAutoCacher::VideoDownloaded);
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w->SetTicket(RenderManager::instance()->SaveFrameToCache(viewer_node_->video_frame_cache(),
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frame,
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hash,
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true));
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}
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}
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video_tasks_.remove(watcher);
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}
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// Process passthroughs
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QVector<RenderTicketPtr> tickets = video_immediate_passthroughs_.take(watcher);
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foreach (RenderTicketPtr t, tickets) {
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if (watcher->HasResult()) {
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t->Finish(watcher->Get());
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} else {
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t->Finish();
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}
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}
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// The cacher might be waiting for this job to finish
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if (!graph_update_queue_.isEmpty()) {
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TryRender();
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}
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delete watcher;
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}
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void PreviewAutoCacher::VideoDownloaded()
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{
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RenderTicketWatcher* watcher = static_cast<RenderTicketWatcher*>(sender());
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if (video_download_tasks_.contains(watcher)) {
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if (watcher->HasResult()) {
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if (watcher->Get().toBool()) {
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const QByteArray& hash = video_download_tasks_.value(watcher);
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viewer_node_->video_frame_cache()->ValidateFramesWithHash(hash);
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} else {
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qCritical() << "Failed to download video frame";
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}
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}
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video_download_tasks_.remove(watcher);
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}
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// The cacher might be waiting for this job to finish
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if (!graph_update_queue_.isEmpty()) {
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TryRender();
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}
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delete watcher;
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}
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void PreviewAutoCacher::ProcessUpdateQueue()
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{
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foreach (const QueuedJob& job, graph_update_queue_) {
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switch (job.type) {
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case QueuedJob::kNodeAdded:
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AddNode(job.node);
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break;
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case QueuedJob::kNodeRemoved:
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RemoveNode(job.node);
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break;
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case QueuedJob::kEdgeAdded:
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AddEdge(job.output, job.input);
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break;
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case QueuedJob::kEdgeRemoved:
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RemoveEdge(job.output, job.input);
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break;
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case QueuedJob::kValueChanged:
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CopyValue(job.input);
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break;
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}
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}
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graph_update_queue_.clear();
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UpdateLastSyncedValue();
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}
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bool PreviewAutoCacher::HasActiveJobs() const
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{
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return !hash_tasks_.isEmpty()
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|| !audio_tasks_.isEmpty()
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|| !video_tasks_.isEmpty();
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}
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void PreviewAutoCacher::AddNode(Node *node)
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{
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// Copy node
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Node* copy = node->copy();
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// Add to project
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copy->setParent(&copied_project_);
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// Insert into map
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InsertIntoCopyMap(node, copy);
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// Keep track of our nodes
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created_nodes_.append(copy);
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}
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void PreviewAutoCacher::RemoveNode(Node *node)
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{
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// Find our copy and remove it
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Node* copy = copy_map_.take(node);
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// Remove from created list
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created_nodes_.removeOne(copy);
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// Delete it
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delete copy;
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}
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void PreviewAutoCacher::AddEdge(const NodeOutput &output, const NodeInput &input)
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{
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Node* our_output = copy_map_.value(output.node());
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Node* our_input = copy_map_.value(input.node());
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Node::ConnectEdge(NodeOutput(our_output, output.output()), NodeInput(our_input, input.input(), input.element()));
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}
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void PreviewAutoCacher::RemoveEdge(const NodeOutput &output, const NodeInput &input)
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{
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Node* our_output = copy_map_.value(output.node());
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Node* our_input = copy_map_.value(input.node());
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Node::DisconnectEdge(NodeOutput(our_output, output.output()), NodeInput(our_input, input.input(), input.element()));
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}
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void PreviewAutoCacher::CopyValue(const NodeInput &input)
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{
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Node* our_input = copy_map_.value(input.node());
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Node::CopyValuesOfElement(input.node(), our_input, input.input(), input.element());
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}
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void PreviewAutoCacher::InsertIntoCopyMap(Node *node, Node *copy)
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{
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// Insert into map
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copy_map_.insert(node, copy);
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// Copy parameters
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Node::CopyInputs(node, copy, false);
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}
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void PreviewAutoCacher::UpdateLastSyncedValue()
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{
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last_update_time_ = QDateTime::currentMSecsSinceEpoch();
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}
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void PreviewAutoCacher::CancelQueuedSingleFrameRender()
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{
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if (single_frame_render_) {
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// Signal that this ticket was cancelled with no value
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single_frame_render_->Finish();
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single_frame_render_ = nullptr;
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}
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}
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void PreviewAutoCacher::SetPlayhead(const rational &playhead)
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{
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cache_range_ = TimeRange(playhead - Config::Current()[QStringLiteral("DiskCacheBehind")].value<rational>(),
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playhead + Config::Current()[QStringLiteral("DiskCacheAhead")].value<rational>());
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has_changed_ = true;
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use_custom_range_ = false;
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RequeueFrames();
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}
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void PreviewAutoCacher::ClearHashQueue(bool wait)
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{
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auto copy = hash_tasks_;
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for (auto it=copy.cbegin(); it!=copy.cend(); it++) {
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(*it)->cancel();
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}
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if (wait) {
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copy = hash_tasks_;
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for (auto it=copy.cbegin(); it!=copy.cend(); it++) {
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(*it)->waitForFinished();
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}
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hash_tasks_.clear();
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}
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}
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void PreviewAutoCacher::ClearVideoQueue(bool hard)
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{
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ClearQueueInternal(video_tasks_, hard, &PreviewAutoCacher::VideoRendered);
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has_changed_ = true;
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use_custom_range_ = false;
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}
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void PreviewAutoCacher::ClearAudioQueue(bool hard)
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{
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ClearQueueInternal(audio_tasks_, hard, &PreviewAutoCacher::AudioRendered);
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}
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void PreviewAutoCacher::ClearVideoDownloadQueue(bool hard)
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{
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ClearQueueInternal(video_download_tasks_, hard, &PreviewAutoCacher::VideoDownloaded);
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}
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void PreviewAutoCacher::NodeAdded(Node *node)
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{
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graph_update_queue_.append({QueuedJob::kNodeAdded, node, NodeInput(), NodeOutput()});
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}
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void PreviewAutoCacher::NodeRemoved(Node *node)
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{
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graph_update_queue_.append({QueuedJob::kNodeRemoved, node, NodeInput(), NodeOutput()});
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}
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void PreviewAutoCacher::EdgeAdded(const NodeOutput &output, const NodeInput &input)
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{
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graph_update_queue_.append({QueuedJob::kEdgeAdded, nullptr, input, output});
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}
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void PreviewAutoCacher::EdgeRemoved(const NodeOutput &output, const NodeInput &input)
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{
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graph_update_queue_.append({QueuedJob::kEdgeRemoved, nullptr, input, output});
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}
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void PreviewAutoCacher::ValueChanged(const NodeInput &input)
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{
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graph_update_queue_.append({QueuedJob::kValueChanged, nullptr, input, NodeOutput()});
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}
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void PreviewAutoCacher::TryRender()
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{
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if (!graph_update_queue_.isEmpty()) {
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if (HasActiveJobs()) {
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// Still waiting for jobs to finish
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return;
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}
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// No jobs are active, we can process the update queue
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ProcessUpdateQueue();
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}
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// If we're here, we must be able to render
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if (!invalidated_video_.isEmpty()) {
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QVector<rational> frames = viewer_node_->video_frame_cache()->GetFrameListFromTimeRange(invalidated_video_);
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QFutureWatcher<void>* watcher = new QFutureWatcher<void>();
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hash_tasks_.append(watcher);
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connect(watcher, &QFutureWatcher<void>::finished, this, &PreviewAutoCacher::HashesProcessed);
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watcher->setFuture(QtConcurrent::run(&PreviewAutoCacher::GenerateHashes,
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copied_viewer_node_,
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viewer_node_->video_frame_cache(),
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frames,
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last_update_time_));
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invalidated_video_.clear();
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}
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if (!invalidated_audio_.isEmpty()) {
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foreach (const TimeRange& range, invalidated_audio_) {
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std::list<TimeRange> chunks = range.Split(2);
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foreach (const TimeRange& r, chunks) {
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RenderTicketWatcher* watcher = new RenderTicketWatcher();
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connect(watcher, &RenderTicketWatcher::Finished, this, &PreviewAutoCacher::AudioRendered);
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audio_tasks_.insert(watcher, r);
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watcher->SetTicket(RenderManager::instance()->RenderAudio(copied_viewer_node_, r, RenderMode::kOffline, true));
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}
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}
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invalidated_audio_.clear();
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}
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if (single_frame_render_) {
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// Check if already caching this
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QByteArray hash = single_frame_render_->property("hash").toByteArray();
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RenderTicketWatcher* watcher;
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if (!hash.isEmpty() && (watcher = video_tasks_.key(hash))) {
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video_immediate_passthroughs_[watcher].append(single_frame_render_);
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} else if (!hash.isEmpty() && (watcher = video_download_tasks_.key(hash))) {
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single_frame_render_->Finish(watcher->property("frame"));
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} else {
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watcher = RenderFrame(hash,
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single_frame_render_->property("time").value<rational>(),
|
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single_frame_render_->property("prioritize").toBool());
|
|
|
|
video_immediate_passthroughs_[watcher].append(single_frame_render_);
|
|
}
|
|
|
|
single_frame_render_ = nullptr;
|
|
}
|
|
}
|
|
|
|
RenderTicketWatcher* PreviewAutoCacher::RenderFrame(const QByteArray &hash, const rational& time, bool prioritize)
|
|
{
|
|
RenderTicketWatcher* watcher = new RenderTicketWatcher();
|
|
watcher->setProperty("hash", hash);
|
|
connect(watcher, &RenderTicketWatcher::Finished, this, &PreviewAutoCacher::VideoRendered);
|
|
video_tasks_.insert(watcher, hash);
|
|
watcher->SetTicket(RenderManager::instance()->RenderFrame(copied_viewer_node_,
|
|
copied_color_manager_,
|
|
time,
|
|
RenderMode::kOffline,
|
|
viewer_node_->video_frame_cache(),
|
|
prioritize));
|
|
return watcher;
|
|
}
|
|
|
|
void PreviewAutoCacher::RequeueFrames()
|
|
{
|
|
delayed_requeue_timer_.stop();
|
|
|
|
if (viewer_node_
|
|
&& viewer_node_->video_frame_cache()->HasInvalidatedRanges()
|
|
&& hash_tasks_.isEmpty()
|
|
&& has_changed_
|
|
&& VideoParams::FormatIsFloat(viewer_node_->GetVideoParams().format())
|
|
&& (!paused_ || use_custom_range_)) {
|
|
TimeRange using_range;
|
|
|
|
if (use_custom_range_) {
|
|
using_range = custom_autocache_range_;
|
|
use_custom_range_ = false;
|
|
} else {
|
|
using_range = cache_range_;
|
|
}
|
|
|
|
QVector<rational> invalidated_ranges = viewer_node_->video_frame_cache()->GetInvalidatedFrames(using_range);
|
|
|
|
foreach (const rational& t, invalidated_ranges) {
|
|
const QByteArray& hash = viewer_node_->video_frame_cache()->GetHash(t);
|
|
|
|
RenderTicketWatcher* render_task = video_tasks_.key(hash);
|
|
|
|
if (t >= using_range.in()
|
|
&& t < using_range.out()) {
|
|
// We want this hash, if we're not already rendering, start render now
|
|
if (!render_task && !video_download_tasks_.key(hash)) {
|
|
// Don't render any hash more than once
|
|
RenderFrame(hash, t, false);
|
|
}
|
|
} else if (render_task) {
|
|
// Cancel this frame unless it's already started
|
|
QMutexLocker locker(render_task->GetTicket()->lock());
|
|
|
|
if (!render_task->GetTicket()->IsRunning(false)) {
|
|
video_tasks_.remove(render_task);
|
|
delete render_task;
|
|
}
|
|
}
|
|
}
|
|
|
|
has_changed_ = false;
|
|
}
|
|
}
|
|
|
|
void PreviewAutoCacher::ConformFinished()
|
|
{
|
|
last_conform_task_ = QDateTime::currentMSecsSinceEpoch();
|
|
|
|
if (viewer_node_) {
|
|
foreach (const TimeRange &range, audio_needing_conform_) {
|
|
viewer_node_->audio_playback_cache()->Invalidate(range, QDateTime::currentMSecsSinceEpoch());
|
|
}
|
|
audio_needing_conform_.clear();
|
|
}
|
|
}
|
|
|
|
void PreviewAutoCacher::IgnoreNextMouseButton()
|
|
{
|
|
ignore_next_mouse_button_ = true;
|
|
}
|
|
|
|
void PreviewAutoCacher::ForceCacheRange(const TimeRange &range)
|
|
{
|
|
has_changed_ = true;
|
|
use_custom_range_ = true;
|
|
custom_autocache_range_ = range;
|
|
|
|
RequeueFrames();
|
|
}
|
|
|
|
void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
|
|
{
|
|
if (viewer_node_ == viewer_node) {
|
|
return;
|
|
}
|
|
|
|
if (viewer_node_) {
|
|
// Cancel any remaining tickets and wait for them to finish
|
|
|
|
// We need to wait for these since they send signals directly to the FrameHashCache
|
|
// which might get deleted after this function.
|
|
ClearHashQueue(true);
|
|
|
|
// This can be cleared normally (frames will be discarded and need to be rendered again)
|
|
ClearVideoQueue(true);
|
|
|
|
// This can be cleared normally (PCM data will be discarded and need to be rendered again)
|
|
ClearAudioQueue(true);
|
|
|
|
// We'll need to wait for these since they work directly on the FrameHashCache. Frames will
|
|
// be in the cache for later use.
|
|
ClearVideoDownloadQueue(true);
|
|
|
|
// Clear any single frame render that might be queued
|
|
CancelQueuedSingleFrameRender();
|
|
|
|
// No more immediate passthroughts
|
|
video_immediate_passthroughs_.clear();
|
|
|
|
// No more audio conforms
|
|
audio_needing_conform_.clear();
|
|
|
|
// Delete all of our copied nodes
|
|
qDeleteAll(created_nodes_);
|
|
created_nodes_.clear();
|
|
copy_map_.clear();
|
|
copied_viewer_node_ = nullptr;
|
|
graph_update_queue_.clear();
|
|
|
|
// Disconnect signals for future node additions/deletions
|
|
NodeGraph* graph = viewer_node_->parent();
|
|
|
|
disconnect(graph, &NodeGraph::NodeAdded, this, &PreviewAutoCacher::NodeAdded);
|
|
disconnect(graph, &NodeGraph::NodeRemoved, this, &PreviewAutoCacher::NodeRemoved);
|
|
disconnect(graph, &NodeGraph::InputConnected, this, &PreviewAutoCacher::EdgeAdded);
|
|
disconnect(graph, &NodeGraph::InputDisconnected, this, &PreviewAutoCacher::EdgeRemoved);
|
|
disconnect(graph, &NodeGraph::ValueChanged, this, &PreviewAutoCacher::ValueChanged);
|
|
|
|
// Disconnect signal (will be a no-op if the signal was never connected)
|
|
disconnect(viewer_node_->video_frame_cache(),
|
|
&PlaybackCache::Invalidated,
|
|
this,
|
|
&PreviewAutoCacher::VideoInvalidated);
|
|
|
|
disconnect(viewer_node_->audio_playback_cache(),
|
|
&PlaybackCache::Invalidated,
|
|
this,
|
|
&PreviewAutoCacher::AudioInvalidated);
|
|
}
|
|
|
|
viewer_node_ = viewer_node;
|
|
|
|
if (viewer_node_) {
|
|
// Copy graph
|
|
NodeGraph* graph = viewer_node_->parent();
|
|
|
|
// Add all nodes
|
|
for (int i=0; i<copied_project_.nodes().size(); i++) {
|
|
InsertIntoCopyMap(graph->nodes().at(i), copied_project_.nodes().at(i));
|
|
}
|
|
for (int i=copied_project_.nodes().size(); i<graph->nodes().size(); i++) {
|
|
AddNode(graph->nodes().at(i));
|
|
}
|
|
|
|
// Find copied viewer node
|
|
copied_viewer_node_ = static_cast<ViewerOutput*>(copy_map_.value(viewer_node_));
|
|
copied_color_manager_ = static_cast<ColorManager*>(copy_map_.value(viewer_node_->project()->color_manager()));
|
|
|
|
// Add all connections
|
|
foreach (Node* node, graph->nodes()) {
|
|
for (auto it=node->input_connections().cbegin(); it!=node->input_connections().cend(); it++) {
|
|
AddEdge(it->second, it->first);
|
|
}
|
|
}
|
|
|
|
UpdateLastSyncedValue();
|
|
|
|
// Connect signals for future node additions/deletions
|
|
connect(graph, &NodeGraph::NodeAdded, this, &PreviewAutoCacher::NodeAdded);
|
|
connect(graph, &NodeGraph::NodeRemoved, this, &PreviewAutoCacher::NodeRemoved);
|
|
connect(graph, &NodeGraph::InputConnected, this, &PreviewAutoCacher::EdgeAdded);
|
|
connect(graph, &NodeGraph::InputDisconnected, this, &PreviewAutoCacher::EdgeRemoved);
|
|
connect(graph, &NodeGraph::ValueChanged, this, &PreviewAutoCacher::ValueChanged);
|
|
|
|
// Copy invalidated ranges - used to determine which frames need hashing
|
|
invalidated_video_ = viewer_node_->video_frame_cache()->GetInvalidatedRanges();
|
|
invalidated_audio_ = viewer_node_->audio_playback_cache()->GetInvalidatedRanges();
|
|
|
|
connect(viewer_node_->video_frame_cache(),
|
|
&PlaybackCache::Invalidated,
|
|
this,
|
|
&PreviewAutoCacher::VideoInvalidated);
|
|
|
|
connect(viewer_node_->audio_playback_cache(),
|
|
&PlaybackCache::Invalidated,
|
|
this,
|
|
&PreviewAutoCacher::AudioInvalidated);
|
|
|
|
TryRender();
|
|
}
|
|
}
|
|
|
|
RenderTicketWatcher* RetrieveFromQueueIterator(QMap<RenderTicketWatcher*, QByteArray>::iterator it)
|
|
{
|
|
return it.key();
|
|
}
|
|
|
|
RenderTicketWatcher* RetrieveFromQueueIterator(QMap<RenderTicketWatcher*, TimeRange>::iterator it)
|
|
{
|
|
return it.key();
|
|
}
|
|
|
|
RenderTicketWatcher* RetrieveFromQueueIterator(QVector<RenderTicketWatcher*>::iterator it)
|
|
{
|
|
return *it;
|
|
}
|
|
|
|
void PreviewAutoCacher::ClearQueueRemoveEventInternal(QMap<RenderTicketWatcher*, QByteArray>::iterator it)
|
|
{
|
|
Q_UNUSED(it)
|
|
}
|
|
|
|
void PreviewAutoCacher::ClearQueueRemoveEventInternal(QMap<RenderTicketWatcher*, TimeRange>::iterator it)
|
|
{
|
|
Q_UNUSED(it)
|
|
}
|
|
|
|
void PreviewAutoCacher::ClearQueueRemoveEventInternal(QVector<RenderTicketWatcher*>::iterator it)
|
|
{
|
|
Q_UNUSED(it)
|
|
}
|
|
|
|
template<typename T, typename Func>
|
|
void PreviewAutoCacher::ClearQueueInternal(T& list, bool hard, Func member)
|
|
{
|
|
for (auto it=list.begin(); it!=list.end(); ) {
|
|
RenderTicketWatcher* ticket = RetrieveFromQueueIterator(it);
|
|
|
|
QMutexLocker locker(ticket->GetTicket()->lock());
|
|
|
|
bool ticket_is_running = ticket->GetTicket()->IsRunning(false);
|
|
|
|
if (hard || !ticket_is_running) {
|
|
// Override default signalling
|
|
disconnect(ticket, &RenderTicketWatcher::Finished, this, member);
|
|
|
|
if (ticket_is_running) {
|
|
// If ticket is running, assume we're hard clearing and wait for the ticket to finish
|
|
ticket->GetTicket()->WaitForFinished(ticket->GetTicket()->lock());
|
|
} else {
|
|
// Just remove the ticket from the queue
|
|
RenderManager::instance()->RemoveTicket(ticket->GetTicket());
|
|
}
|
|
|
|
// Special functionality for certain queues
|
|
ClearQueueRemoveEventInternal(it);
|
|
|
|
// Destroy ticket
|
|
locker.unlock();
|
|
delete ticket;
|
|
|
|
it = list.erase(it);
|
|
} else {
|
|
// We can't clear this, probably because we're soft clearing and the ticket is currently running
|
|
it++;
|
|
}
|
|
}
|
|
}
|
|
|
|
}
|