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oak-editor/app/render/backend/audiorenderworker.cpp
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2019 Olive Team
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "audiorenderworker.h"
#include <QDir>
#include <QFloat16>
#include "audio/audiomanager.h"
#include "audio/sumsamples.h"
#include "config/config.h"
#include "node/block/clip/clip.h"
OLIVE_NAMESPACE_ENTER
AudioRenderWorker::AudioRenderWorker(QHash<Node *, Node *> *copy_map, QObject *parent) :
RenderWorker(parent),
copy_map_(copy_map)
{
}
void AudioRenderWorker::SetParameters(const AudioRenderingParams &audio_params)
{
audio_params_ = audio_params;
}
bool AudioRenderWorker::InitInternal()
{
// Nothing to init yet
return true;
}
void AudioRenderWorker::CloseInternal()
{
// Nothing to init yet
}
NodeValueTable AudioRenderWorker::RenderBlock(const TrackOutput *track, const TimeRange &range)
{
QList<Block*> active_blocks = track->BlocksAtTimeRange(range);
// All these blocks will need to output to a buffer so we create one here
SampleBufferPtr block_range_buffer = SampleBuffer::CreateAllocated(audio_params_, audio_params_.time_to_samples(range.length()));
block_range_buffer->fill(0);
NodeValueTable merged_table;
// Loop through active blocks retrieving their audio
foreach (Block* b, active_blocks) {
TimeRange range_for_block(qMax(b->in(), range.in()),
qMin(b->out(), range.out()));
int destination_offset = audio_params_.time_to_samples(range_for_block.in() - range.in());
int max_dest_sz = audio_params_.time_to_samples(range_for_block.length());
// Destination buffer
NodeValueTable table = ProcessNode(NodeDependency(b, range_for_block));
QVariant sample_val = table.Take(NodeParam::kSamples);
SampleBufferPtr samples_from_this_block;
if (sample_val.isNull()
|| !(samples_from_this_block = sample_val.value<SampleBufferPtr>())) {
// If we retrieved no samples from this block, do nothing
continue;
}
// Stretch samples here
rational abs_speed = qAbs(b->speed());
if (abs_speed != 1) {
samples_from_this_block->speed(abs_speed.toDouble());
}
if (b->is_reversed()) {
// Reverse the audio buffer
samples_from_this_block->reverse();
}
int copy_length = qMin(max_dest_sz, samples_from_this_block->sample_count_per_channel());
// Copy samples into destination buffer
block_range_buffer->set(samples_from_this_block->const_data(), destination_offset, copy_length);
{
// Save waveform to file
Block* src_block = static_cast<Block*>(copy_map_->key(b));
QDir local_appdata_dir(Config::Current()["DiskCachePath"].toString());
QDir waveform_loc = local_appdata_dir.filePath(QStringLiteral("waveform"));
waveform_loc.mkpath(".");
QString wave_fn(waveform_loc.filePath(QString::number(reinterpret_cast<quintptr>(src_block))));
QFile wave_file(wave_fn);
if (wave_file.open(QFile::ReadWrite)) {
// We use S32 as a size-compatible substitute for SampleSummer::Sum which is 4 bytes in size
AudioRenderingParams waveform_params(SampleSummer::kSumSampleRate, audio_params_.channel_layout(), SampleFormat::SAMPLE_FMT_S32);
int chunk_size = (audio_params().sample_rate() / waveform_params.sample_rate());
qint64 start_offset = waveform_params.time_to_bytes(range_for_block.in() - b->in());
qint64 length_offset = waveform_params.time_to_bytes(range_for_block.length());
qint64 end_offset = start_offset + length_offset;
if (wave_file.size() < end_offset) {
wave_file.resize(end_offset);
}
wave_file.seek(start_offset);
for (int i=0;i<samples_from_this_block->sample_count_per_channel();i+=chunk_size) {
QVector<SampleSummer::Sum> summary = SampleSummer::SumSamples(samples_from_this_block,
i,
qMin(chunk_size, samples_from_this_block->sample_count_per_channel() - i));
wave_file.write(reinterpret_cast<const char*>(summary.constData()),
summary.size() * sizeof(SampleSummer::Sum));
}
wave_file.close();
// Write metadata about this waveform file
QFile wave_metadata(wave_fn.append(QStringLiteral(".meta")));
if (wave_metadata.open(QFile::WriteOnly)) {
SampleSummer::Info info;
info.channels = audio_params_.channel_count();
wave_metadata.write(reinterpret_cast<char*>(&info), sizeof(SampleSummer::Info));
wave_metadata.close();
}
if (src_block->type() == Block::kClip) {
emit static_cast<ClipBlock*>(src_block)->PreviewUpdated();
}
}
}
NodeValueTable::Merge({merged_table, table});
}
merged_table.Push(NodeParam::kSamples, QVariant::fromValue(block_range_buffer));
return merged_table;
}
const AudioRenderingParams &AudioRenderWorker::audio_params() const
{
return audio_params_;
}
OLIVE_NAMESPACE_EXIT