frames Previously, when the video renderer received a dirty cache signal, it would proceed to extract all frames from the range and queue them. However, this could be extremely slow for long ranges since it had to iterate through the entire range and calculate the individual frames it contained. Now, we use the same range combining system as audio and automatically calculate the next frame within the range only when necessary. Essentially the same work, but split up over time and done only when needed leading to no discernible UI pause when invalidating cache.
280 lines
8.0 KiB
C++
280 lines
8.0 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2019 Olive Team
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "videorenderbackend.h"
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#include <OpenImageIO/imageio.h>
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#include <QApplication>
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#include <QCryptographicHash>
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#include <QDebug>
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#include <QDir>
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#include <QtMath>
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#include "common/timecodefunctions.h"
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#include "render/pixelservice.h"
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#include "videorenderworker.h"
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VideoRenderBackend::VideoRenderBackend(QObject *parent) :
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RenderBackend(parent),
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export_mode_(false)
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{
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}
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bool VideoRenderBackend::InitInternal()
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{
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cache_frame_load_buffer_.resize(PixelService::GetBufferSize(params_.format(), params_.effective_width(), params_.effective_height()));
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return true;
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}
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void VideoRenderBackend::CloseInternal()
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{
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cache_frame_load_buffer_.clear();
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}
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void VideoRenderBackend::ConnectViewer(ViewerOutput *node)
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{
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connect(node, &ViewerOutput::VideoChangedBetween, this, &VideoRenderBackend::InvalidateCache);
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connect(node, &ViewerOutput::VideoGraphChanged, this, &VideoRenderBackend::QueueRecompile);
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connect(node, &ViewerOutput::LengthChanged, this, &VideoRenderBackend::TruncateFrameCacheLength);
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}
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void VideoRenderBackend::DisconnectViewer(ViewerOutput *node)
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{
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disconnect(node, &ViewerOutput::VideoChangedBetween, this, &VideoRenderBackend::InvalidateCache);
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disconnect(node, &ViewerOutput::VideoGraphChanged, this, &VideoRenderBackend::QueueRecompile);
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disconnect(node, &ViewerOutput::LengthChanged, this, &VideoRenderBackend::TruncateFrameCacheLength);
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}
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const VideoRenderingParams &VideoRenderBackend::params() const
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{
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return params_;
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}
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void VideoRenderBackend::SetParameters(const VideoRenderingParams& params)
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{
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// Set new parameters
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params_ = params;
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// Set params on all processors
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// FIXME: Undefined behavior if the processors are currently working, this may need to be delayed like the
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// recompile signal
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foreach (RenderWorker* worker, processors_) {
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static_cast<VideoRenderWorker*>(worker)->SetParameters(params_);
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}
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// Regenerate the cache ID
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RegenerateCacheID();
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}
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void VideoRenderBackend::SetExportMode(bool enabled)
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{
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export_mode_ = enabled;
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}
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bool VideoRenderBackend::IsRendered(const rational &time) const
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{
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TimeRange range(time, time);
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return !TimeIsQueued(range) && !render_job_info_.contains(range);
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}
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bool VideoRenderBackend::GenerateCacheIDInternal(QCryptographicHash& hash)
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{
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if (!params_.is_valid()) {
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return false;
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}
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// Generate an ID that is more or less guaranteed to be unique to this Sequence
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hash.addData(QString::number(params_.width()).toUtf8());
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hash.addData(QString::number(params_.height()).toUtf8());
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hash.addData(QString::number(params_.format()).toUtf8());
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hash.addData(QString::number(params_.divider()).toUtf8());
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return true;
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}
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void VideoRenderBackend::CacheIDChangedEvent(const QString &id)
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{
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frame_cache_.SetCacheID(id);
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}
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void VideoRenderBackend::ConnectWorkerToThis(RenderWorker *processor)
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{
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VideoRenderWorker* video_processor = static_cast<VideoRenderWorker*>(processor);
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connect(video_processor, &VideoRenderWorker::CompletedFrame, this, &VideoRenderBackend::ThreadCompletedFrame);
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connect(video_processor, &VideoRenderWorker::HashAlreadyBeingCached, this, &VideoRenderBackend::ThreadSkippedFrame);
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connect(video_processor, &VideoRenderWorker::CompletedDownload, this, &VideoRenderBackend::ThreadCompletedDownload);
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connect(video_processor, &VideoRenderWorker::HashAlreadyExists, this, &VideoRenderBackend::ThreadHashAlreadyExists);
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}
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VideoRenderFrameCache *VideoRenderBackend::frame_cache()
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{
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return &frame_cache_;
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}
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const char *VideoRenderBackend::GetCachedFrame(const rational &time)
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{
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last_time_requested_ = time;
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if (viewer_node() == nullptr) {
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// Nothing is connected - nothing to show or render
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return nullptr;
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}
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if (cache_id().isEmpty()) {
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qWarning() << "No cache ID";
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return nullptr;
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}
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if (!params_.is_valid()) {
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qWarning() << "Invalid parameters";
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return nullptr;
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}
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// Find frame in map
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QByteArray frame_hash = frame_cache_.TimeToHash(time);
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if (!frame_hash.isEmpty()) {
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QString fn = frame_cache_.CachePathName(frame_hash);
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if (QFileInfo::exists(fn)) {
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auto in = OIIO::ImageInput::open(fn.toStdString());
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if (in) {
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in->read_image(PixelService::GetPixelFormatInfo(params_.format()).oiio_desc, cache_frame_load_buffer_.data());
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in->close();
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return cache_frame_load_buffer_.constData();
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} else {
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qWarning() << "OIIO Error:" << OIIO::geterror().c_str();
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}
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}
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}
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return nullptr;
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}
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NodeInput *VideoRenderBackend::GetDependentInput()
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{
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return viewer_node()->texture_input();
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}
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bool VideoRenderBackend::CanRender()
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{
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return params_.is_valid();
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}
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TimeRange VideoRenderBackend::PopNextFrameFromQueue()
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{
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TimeRange range = cache_queue_.first();
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// Snap the range to a single discrete frame
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rational snapped_in = Timecode::snap_time_to_timebase(range.in(), params_.time_base());
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// Check if the range starts earlier, in which case we should render that frame instead
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if (range.in() < snapped_in) {
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snapped_in -= params_.time_base();
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}
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// Remove this particular frame from the queue
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cache_queue_.RemoveTimeRange(TimeRange(snapped_in, snapped_in + params_.time_base()));
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// Return the snapped frame
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return TimeRange(snapped_in, snapped_in);
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}
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void VideoRenderBackend::ThreadCompletedFrame(NodeDependency path, qint64 job_time, QByteArray hash, QVariant value)
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{
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if (last_time_requested_ == path.in() || frame_cache_.TimeToHash(last_time_requested_) == hash) {
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EmitCachedFrameReady({last_time_requested_}, value, job_time);
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}
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}
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void VideoRenderBackend::ThreadCompletedDownload(NodeDependency dep, qint64 job_time, QByteArray hash)
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{
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SetWorkerBusyState(static_cast<RenderWorker*>(sender()), false);
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SetFrameHash(dep, hash, job_time);
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QList<rational> hashes_with_time = frame_cache()->FramesWithHash(hash);
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foreach (const rational& t, hashes_with_time) {
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emit CachedTimeReady(t, job_time);
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}
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// Queue up a new frame for this worker
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CacheNext();
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}
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void VideoRenderBackend::ThreadSkippedFrame(NodeDependency dep, qint64 job_time, QByteArray hash)
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{
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SetWorkerBusyState(static_cast<RenderWorker*>(sender()), false);
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if (SetFrameHash(dep, hash, job_time)
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&& frame_cache_.HasHash(hash)) {
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emit CachedTimeReady(dep.in(), job_time);
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}
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// Queue up a new frame for this worker
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CacheNext();
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}
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void VideoRenderBackend::ThreadHashAlreadyExists(NodeDependency dep, qint64 job_time, QByteArray hash)
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{
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SetWorkerBusyState(static_cast<RenderWorker*>(sender()), false);
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if (SetFrameHash(dep, hash, job_time)) {
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emit CachedTimeReady(dep.in(), job_time);
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}
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// Queue up a new frame for this worker
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CacheNext();
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}
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void VideoRenderBackend::TruncateFrameCacheLength(const rational &length)
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{
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// Remove frames after this time code if it's changed
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frame_cache_.Truncate(length);
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}
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bool VideoRenderBackend::TimeIsQueued(const TimeRange &time) const
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{
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return cache_queue_.ContainsTimeRange(time);
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}
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bool VideoRenderBackend::JobIsCurrent(const NodeDependency &dep, const qint64& job_time) const
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{
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return (render_job_info_.value(dep.range()) == job_time && !TimeIsQueued(dep.range()));
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}
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bool VideoRenderBackend::SetFrameHash(const NodeDependency &dep, const QByteArray &hash, const qint64& job_time)
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{
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if (JobIsCurrent(dep, job_time)) {
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frame_cache_.SetHash(dep.in(), hash);
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render_job_info_.remove(dep.range());
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return true;
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}
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return false;
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}
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