Making an exception for the transform node, we use a slightly heavier hash to save more rendering time later. Fixes #1560 Addresses some of #1360
477 lines
13 KiB
C++
477 lines
13 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2021 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 "framehashcache.h"
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#include <OpenEXR/ImfFloatAttribute.h>
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#include <OpenEXR/ImfInputFile.h>
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#include <OpenEXR/ImfIntAttribute.h>
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#include <OpenEXR/ImfOutputFile.h>
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#include <OpenEXR/ImfChannelList.h>
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#include <QDir>
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#include <QFileInfo>
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#include "codec/frame.h"
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#include "common/filefunctions.h"
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#include "common/timecodefunctions.h"
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#include "render/diskmanager.h"
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namespace olive {
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FrameHashCache::FrameHashCache(QObject *parent) :
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PlaybackCache(parent)
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{
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if (DiskManager::instance()) {
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connect(DiskManager::instance(), &DiskManager::DeletedFrame, this, &FrameHashCache::HashDeleted);
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connect(DiskManager::instance(), &DiskManager::InvalidateProject, this, &FrameHashCache::ProjectInvalidated);
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}
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}
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QByteArray FrameHashCache::GetHash(const rational &time)
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{
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return time_hash_map_.value(time);
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}
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void FrameHashCache::SetHash(const rational &time, const QByteArray &hash, const qint64& job_time, bool frame_exists)
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{
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for (int i=jobs_.size()-1; i>=0; i--) {
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const JobIdentifier& job = jobs_.at(i);
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if (job.range.Contains(time)
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&& job_time < job.job_time) {
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// Hash here has changed since this frame started rendering, discard it
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return;
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}
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}
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time_hash_map_.insert(time, hash);
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TimeRange validated_range;
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if (frame_exists) {
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validated_range = TimeRange(time, time + timebase_);
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Validate(validated_range);
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}
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}
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void FrameHashCache::SetTimebase(const rational &tb)
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{
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timebase_ = tb;
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}
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void FrameHashCache::ValidateFramesWithHash(const QByteArray &hash)
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{
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const TimeRangeList& invalidated_ranges = GetInvalidatedRanges();
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for (auto iterator=time_hash_map_.begin();iterator!=time_hash_map_.end();iterator++) {
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if (iterator.value() == hash) {
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TimeRange frame_range(iterator.key(), iterator.key() + timebase_);
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if (invalidated_ranges.contains(frame_range)) {
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Validate(frame_range);
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}
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}
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}
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}
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QList<rational> FrameHashCache::GetFramesWithHash(const QByteArray &hash)
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{
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QList<rational> times;
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for (auto iterator=time_hash_map_.begin();iterator!=time_hash_map_.end();iterator++) {
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if (iterator.value() == hash) {
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times.append(iterator.key());
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}
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}
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return times;
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}
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QList<rational> FrameHashCache::TakeFramesWithHash(const QByteArray &hash)
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{
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TimeRangeList range_to_invalidate;
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QList<rational> times;
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auto iterator = time_hash_map_.begin();
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while (iterator != time_hash_map_.end()) {
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if (iterator.value() == hash) {
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times.append(iterator.key());
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range_to_invalidate.insert(TimeRange(iterator.key(), iterator.key() + timebase_));
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iterator = time_hash_map_.erase(iterator);
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} else {
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iterator++;
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}
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}
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foreach (const TimeRange& r, range_to_invalidate) {
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// We apply a 0 job time because the graph hasn't changed to get here, so any renderer should
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// be up to date already
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Invalidate(r, 0);
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}
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return times;
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}
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QMap<rational, QByteArray> FrameHashCache::time_hash_map()
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{
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return time_hash_map_;
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}
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QString FrameHashCache::GetFormatExtension()
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{
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return QStringLiteral(".exr");
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}
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QVector<rational> FrameHashCache::GetFrameListFromTimeRange(TimeRangeList range_list, const rational &timebase)
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{
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// If timebase is null, this will be an infinite loop
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Q_ASSERT(!timebase.isNull());
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QVector<rational> times;
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while (!range_list.isEmpty()) {
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const TimeRange& range = range_list.first();
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rational time = range.in();
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rational snapped = Timecode::snap_time_to_timebase(time, timebase);
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rational next;
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if (snapped > time) {
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next = snapped;
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snapped -= timebase;
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} else {
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next = snapped + timebase;
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}
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times.append(snapped);
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range_list.remove(TimeRange(snapped, next));
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}
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return times;
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}
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QVector<rational> FrameHashCache::GetFrameListFromTimeRange(const TimeRangeList &range)
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{
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return GetFrameListFromTimeRange(range, timebase_);
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}
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QVector<rational> FrameHashCache::GetInvalidatedFrames()
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{
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return GetFrameListFromTimeRange(GetInvalidatedRanges());
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}
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QVector<rational> FrameHashCache::GetInvalidatedFrames(const TimeRange &intersecting)
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{
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return GetFrameListFromTimeRange(GetInvalidatedRanges().Intersects(intersecting));
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}
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bool FrameHashCache::SaveCacheFrame(const QByteArray& hash,
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char* data,
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const VideoParams& vparam,
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int linesize_bytes) const
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{
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return SaveCacheFrame(GetCacheDirectory(), hash, data, vparam, linesize_bytes);
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}
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bool FrameHashCache::SaveCacheFrame(const QByteArray &hash, FramePtr frame) const
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{
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return SaveCacheFrame(GetCacheDirectory(), hash, frame);
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}
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bool FrameHashCache::SaveCacheFrame(const QString &cache_path, const QByteArray &hash, char *data, const VideoParams &vparam, int linesize_bytes)
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{
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if (cache_path.isEmpty()) {
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qWarning() << "Failed to save cache frame with empty path";
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return false;
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}
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QString fn = CachePathName(cache_path, hash);
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if (SaveCacheFrame(fn, data, vparam, linesize_bytes)) {
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// Register frame with the disk manager
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QMetaObject::invokeMethod(DiskManager::instance(),
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"CreatedFile",
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Qt::QueuedConnection,
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Q_ARG(QString, cache_path),
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Q_ARG(QString, fn),
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Q_ARG(QByteArray, hash));
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return true;
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} else {
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return false;
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}
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}
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bool FrameHashCache::SaveCacheFrame(const QString &cache_path, const QByteArray &hash, FramePtr frame)
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{
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if (frame) {
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return SaveCacheFrame(cache_path, hash, frame->data(), frame->video_params(), frame->linesize_bytes());
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} else {
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qWarning() << "Attempted to save a NULL frame to the cache. This may or may not be desirable.";
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return false;
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}
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}
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FramePtr FrameHashCache::LoadCacheFrame(const QString &cache_path, const QByteArray &hash)
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{
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if (cache_path.isEmpty()) {
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qWarning() << "Failed to save cache frame with empty path";
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return nullptr;
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}
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return LoadCacheFrame(CachePathName(cache_path, hash));
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}
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FramePtr FrameHashCache::LoadCacheFrame(const QByteArray &hash) const
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{
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return LoadCacheFrame(CachePathName(hash));
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}
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FramePtr FrameHashCache::LoadCacheFrame(const QString &fn)
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{
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FramePtr frame = nullptr;
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if (!fn.isEmpty() && QFileInfo::exists(fn)) {
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Imf::InputFile file(fn.toUtf8(), 0);
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Imath::Box2i dw = file.header().dataWindow();
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Imf::PixelType pix_type = file.header().channels().begin().channel().type;
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int width = dw.max.x - dw.min.x + 1;
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int height = dw.max.y - dw.min.y + 1;
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bool has_alpha = file.header().channels().findChannel("A");
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int div = qMax(1, static_cast<const Imf::IntAttribute&>(file.header()["oliveDivider"]).value());
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VideoParams::Format image_format;
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if (pix_type == Imf::HALF) {
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image_format = VideoParams::kFormatFloat16;
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} else {
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image_format = VideoParams::kFormatFloat32;
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}
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int channel_count = has_alpha ? VideoParams::kRGBAChannelCount : VideoParams::kRGBChannelCount;
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frame = Frame::Create();
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frame->set_video_params(VideoParams(width * div,
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height * div,
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image_format,
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channel_count,
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rational::fromDouble(file.header().pixelAspectRatio()),
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VideoParams::kInterlaceNone,
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div));
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frame->allocate();
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int bpc = VideoParams::GetBytesPerChannel(image_format);
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size_t xs = channel_count * bpc;
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size_t ys = frame->linesize_bytes();
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Imf::FrameBuffer framebuffer;
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framebuffer.insert("R", Imf::Slice(pix_type, frame->data(), xs, ys));
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framebuffer.insert("G", Imf::Slice(pix_type, frame->data() + bpc, xs, ys));
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framebuffer.insert("B", Imf::Slice(pix_type, frame->data() + 2*bpc, xs, ys));
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if (has_alpha) {
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framebuffer.insert("A", Imf::Slice(pix_type, frame->data() + 3*bpc, xs, ys));
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}
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file.setFrameBuffer(framebuffer);
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file.readPixels(dw.min.y, dw.max.y);
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}
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return frame;
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}
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void FrameHashCache::LengthChangedEvent(const rational &old, const rational &newlen)
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{
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if (newlen < old) {
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auto i = time_hash_map_.begin();
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while (i != time_hash_map_.end()) {
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if (i.key() >= newlen) {
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i = time_hash_map_.erase(i);
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} else {
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i++;
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}
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}
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}
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}
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struct HashTimePair {
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rational time;
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QByteArray hash;
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};
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void FrameHashCache::ShiftEvent(const rational &from, const rational &to)
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{
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auto i = time_hash_map_.begin();
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// POSITIVE if moving forward ->
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// NEGATIVE if moving backward <-
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rational diff = to - from;
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bool diff_is_negative = (diff < 0);
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QList<HashTimePair> shifted_times;
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while (i != time_hash_map_.end()) {
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if (diff_is_negative && i.key() >= to && i.key() < from) {
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// This time will be removed in the shift so we just discard it
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i = time_hash_map_.erase(i);
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} else if (i.key() >= from) {
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// This time is after the from time and must be shifted
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shifted_times.append({i.key() + diff, i.value()});
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i = time_hash_map_.erase(i);
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} else {
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// Do nothing
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i++;
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}
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}
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foreach (const HashTimePair& p, shifted_times) {
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time_hash_map_.insert(p.time, p.hash);
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}
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}
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void FrameHashCache::InvalidateEvent(const TimeRange &range)
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{
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if (!timebase_.isNull()) {
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QVector<rational> invalid_frames = GetFrameListFromTimeRange({range});
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foreach (const rational& r, invalid_frames) {
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time_hash_map_.remove(r);
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}
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}
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}
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void FrameHashCache::HashDeleted(const QString& s, const QByteArray &hash)
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{
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QString cache_dir = GetCacheDirectory();
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if (cache_dir.isEmpty() || s != cache_dir) {
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return;
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}
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TimeRangeList ranges_to_invalidate;
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for (auto i=time_hash_map_.constBegin(); i!=time_hash_map_.constEnd(); i++) {
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if (i.value() == hash) {
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ranges_to_invalidate.insert(TimeRange(i.key(), i.key() + timebase_));
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}
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}
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foreach (const TimeRange& range, ranges_to_invalidate) {
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// We set job time to 0 because the nodes haven't changed and any render job should be up
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// to date
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Invalidate(range, 0);
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}
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}
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void FrameHashCache::ProjectInvalidated(Project *p)
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{
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if (GetProject() == p) {
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time_hash_map_.clear();
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InvalidateAll();
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}
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}
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QString FrameHashCache::CachePathName(const QByteArray& hash) const
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{
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return CachePathName(GetCacheDirectory(), hash);
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}
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QString FrameHashCache::CachePathName(const QString &cache_path, const QByteArray &hash)
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{
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QString ext = GetFormatExtension();
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QDir cache_dir(QDir(cache_path).filePath(QString(hash.left(1).toHex())));
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cache_dir.mkpath(".");
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QString filename = QStringLiteral("%1%2").arg(QString(hash.mid(1).toHex()), ext);
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// Register that in some way this hash has been accessed
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QMetaObject::invokeMethod(DiskManager::instance(),
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"Accessed",
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Qt::QueuedConnection,
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Q_ARG(QString, cache_path),
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Q_ARG(QByteArray, hash));
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return cache_dir.filePath(filename);
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}
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bool FrameHashCache::SaveCacheFrame(const QString &filename, char *data, const VideoParams &vparam, int linesize_bytes)
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{
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if (!VideoParams::FormatIsFloat(vparam.format())) {
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qCritical() << "Tried to cache frame with non-float pixel format";
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return false;
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}
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// Floating point types are stored in EXR
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Imf::PixelType pix_type;
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if (vparam.format() == VideoParams::kFormatFloat16) {
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pix_type = Imf::HALF;
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} else {
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pix_type = Imf::FLOAT;
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}
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Imf::Header header(vparam.effective_width(),
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vparam.effective_height());
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header.channels().insert("R", Imf::Channel(pix_type));
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header.channels().insert("G", Imf::Channel(pix_type));
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header.channels().insert("B", Imf::Channel(pix_type));
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if (vparam.channel_count() == VideoParams::kRGBAChannelCount) {
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header.channels().insert("A", Imf::Channel(pix_type));
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}
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header.compression() = Imf::DWAA_COMPRESSION;
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header.insert("dwaCompressionLevel", Imf::FloatAttribute(200.0f));
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header.pixelAspectRatio() = vparam.pixel_aspect_ratio().toDouble();
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header.insert("oliveDivider", Imf::IntAttribute(vparam.divider()));
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Imf::OutputFile out(filename.toUtf8(), header, 0);
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int bpc = VideoParams::GetBytesPerChannel(vparam.format());
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size_t xs = vparam.channel_count() * bpc;
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size_t ys = linesize_bytes;
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Imf::FrameBuffer framebuffer;
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framebuffer.insert("R", Imf::Slice(pix_type, data, xs, ys));
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framebuffer.insert("G", Imf::Slice(pix_type, data + bpc, xs, ys));
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framebuffer.insert("B", Imf::Slice(pix_type, data + 2*bpc, xs, ys));
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if (vparam.channel_count() == VideoParams::kRGBAChannelCount) {
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framebuffer.insert("A", Imf::Slice(pix_type, data + 3*bpc, xs, ys));
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}
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out.setFrameBuffer(framebuffer);
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out.writePixels(vparam.effective_height());
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return true;
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}
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}
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