Previous iterations would use mutexes to prevent changing of the graph mid-render, however several user actions would need to capture these mutexes causing the main thread to hang until the current render job (frame/range of samples) was complete. We now copy the nodes necessary as part of the "compile" process so that the main thread shouldn't need nearly as much blocking while caching occurs.
228 lines
6.7 KiB
C++
228 lines
6.7 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 "render/pixelservice.h"
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VideoRenderBackend::VideoRenderBackend(QObject *parent) :
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RenderBackend(parent)
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{
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// FIXME: Cache name should actually be the name of the sequence
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SetCacheName("Test");
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}
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void VideoRenderBackend::InvalidateCache(const rational &start_range, const rational &end_range)
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{
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if (!params_.is_valid()) {
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return;
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}
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// Adjust range to min/max values
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rational start_range_adj = qMax(rational(0), start_range);
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rational end_range_adj = qMin(SequenceLength(), end_range);
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qDebug() << "Cache invalidated between"
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<< start_range_adj.toDouble()
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<< "and"
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<< end_range_adj.toDouble();
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// Snap start_range to timebase
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double start_range_dbl = start_range_adj.toDouble();
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double start_range_numf = start_range_dbl * static_cast<double>(params_.time_base().denominator());
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int64_t start_range_numround = qFloor(start_range_numf/static_cast<double>(params_.time_base().numerator())) * params_.time_base().numerator();
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rational true_start_range(start_range_numround, params_.time_base().denominator());
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for (rational r=true_start_range;r<=end_range_adj;r+=params_.time_base()) {
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// Try to order the queue from closest to the playhead to furthest
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rational last_time = last_time_requested_;
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rational diff = r - last_time;
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if (diff < 0) {
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// FIXME: Hardcoded number
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// If the number is before the playhead, we still prioritize its closeness but not nearly as much (5:1 in this
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// example)
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diff = qAbs(diff) * 5;
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}
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bool added = false;
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TimeRange new_range(r, r);
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for (int i=0;i<cache_queue_.size();i++) {
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rational compare = cache_queue_.at(i).in();
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rational compare_diff = compare - last_time;
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if (compare_diff > diff) {
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cache_queue_.insert(i, new_range);
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added = true;
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break;
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}
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if (compare == r) {
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added = true;
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break;
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}
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}
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if (!added) {
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cache_queue_.append(new_range);
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}
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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(SequenceLength());
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CacheNext();
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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, SIGNAL(VideoChangedBetween(const rational&, const rational&)), this, SLOT(InvalidateCache(const rational&, const rational&)));
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connect(node, SIGNAL(VideoGraphChanged()), this, SLOT(QueueRecompile()));
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// FIXME: Hardcoded format, mode, and divider
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SetParameters(VideoRenderingParams(node->video_params(), olive::PIX_FMT_RGBA16F, olive::kOffline, 2));
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}
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void VideoRenderBackend::DisconnectViewer(ViewerOutput *node)
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{
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disconnect(node, SIGNAL(VideoChangedBetween(const rational&, const rational&)), this, SLOT(InvalidateCache(const rational&, const rational&)));
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disconnect(node, SIGNAL(VideoGraphChanged()), this, SLOT(QueueRecompile()));
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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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// Since we're changing parameters, all the existing threads are invalid and must be removed. They will start again
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// next time this Node has to process anything.
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Close();
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// Set new parameters
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params_ = params;
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// Regenerate the cache ID
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RegenerateCacheID();
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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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connect(processor, SIGNAL(CompletedFrame(NodeDependency, QByteArray, QVariant)), this, SLOT(ThreadCompletedFrame(NodeDependency, QByteArray, QVariant)));
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connect(processor, SIGNAL(HashAlreadyBeingCached()), this, SLOT(ThreadSkippedFrame()));
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connect(processor, SIGNAL(CompletedDownload(NodeDependency, QByteArray)), this, SLOT(ThreadCompletedDownload(NodeDependency, QByteArray)));
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connect(processor, SIGNAL(HashAlreadyExists(NodeDependency, QByteArray)), this, SLOT(ThreadHashAlreadyExists(NodeDependency, QByteArray)));
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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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