Files
oak-editor/app/render/backend/videorenderworker.cpp
T
itsmattkc 40b3879440 overhauled render classes to support video AND audio
Major refactoring work to try sharing as much code as possible between the
video renderers and audio renderers, as well as make them as
platform-independent as possible.
2019-11-15 13:50:58 +09:00

192 lines
5.7 KiB
C++

#include "videorenderworker.h"
#include "common/define.h"
#include "node/node.h"
#include "render/pixelservice.h"
VideoRenderWorker::VideoRenderWorker(DecoderCache *decoder_cache, VideoRenderFrameCache *frame_cache, QObject *parent) :
RenderWorker(decoder_cache, parent),
frame_cache_(frame_cache)
{
}
const VideoRenderingParams &VideoRenderWorker::video_params()
{
return video_params_;
}
void VideoRenderWorker::RenderInternal(const NodeDependency& path)
{
// Get hash of node graph
// We use SHA-1 for speed (benchmarks show it's the fastest hash available to us)
QCryptographicHash hasher(QCryptographicHash::Sha1);
HashNodeRecursively(&hasher, path.node()->parent(), path.in());
QByteArray hash = hasher.result();
if (frame_cache_->HasHash(hash)) {
// We've already cached this hash, no need to continue
emit HashAlreadyExists(path, hash);
} else if (frame_cache_->TryCache(hash)) {
// This hash is available for us to cache, start traversing graph
RenderAsSibling(path);
emit CompletedFrame(path, hash);
} else {
// Another thread must be caching this already, nothing to be done
emit HashAlreadyBeingCached();
}
}
void VideoRenderWorker::HashNodeRecursively(QCryptographicHash *hash, Node* n, const rational& time)
{
// Resolve BlockList
if (n->IsBlock()) {
n = ValidateBlock(static_cast<Block*>(n), time);
}
// Add this Node's ID
hash->addData(n->id().toUtf8());
foreach (NodeParam* param, n->parameters()) {
// For each input, try to hash its value
if (param->type() == NodeParam::kInput) {
NodeInput* input = static_cast<NodeInput*>(param);
if (input->dependent()) {
// Get time adjustment
TimeRange range = n->InputTimeAdjustment(input, TimeRange(time, time));
// For a single frame, we only care about one of the times
rational input_time = range.in();
if (input->IsConnected()) {
// Traverse down this edge
HashNodeRecursively(hash, input->get_connected_node(), input_time);
} else {
// Grab the value at this time
QVariant value = input->get_value_at_time(input_time);
hash->addData(NodeParam::ValueToBytes(input->data_type(), value));
}
// We have one exception for FOOTAGE types, since we resolve the footage into a frame in the renderer
if (input->data_type() == NodeParam::kFootage) {
StreamPtr stream = ResolveStreamFromInput(input);
DecoderPtr decoder = ResolveDecoderFromInput(input);
if (decoder != nullptr) {
// Add footage details to hash
// Footage filename
hash->addData(stream->footage()->filename().toUtf8());
// Footage last modified date
hash->addData(stream->footage()->timestamp().toString().toUtf8());
// Footage stream
hash->addData(QString::number(stream->index()).toUtf8());
// Footage timestamp
hash->addData(QString::number(decoder->GetTimestampFromTime(time)).toUtf8());
// FIXME: Add colorspace and alpha assoc
}
}
}
}
}
}
void VideoRenderWorker::SetParameters(const VideoRenderingParams &video_params)
{
video_params_ = video_params;
ParametersChangedEvent();
}
bool VideoRenderWorker::InitInternal()
{
download_buffer_.resize(PixelService::GetBufferSize(video_params().format(), video_params().effective_width(), video_params().effective_height()));
return true;
}
void VideoRenderWorker::CloseInternal()
{
download_buffer_.clear();
}
void VideoRenderWorker::RenderAsSibling(NodeDependency dep)
{
NodeOutput* output = dep.node();
Node* original_node = output->parent();
Node* node;
rational time = dep.in();
QVariant value;
// Set working state
working_++;
//qDebug() << "Processing" << original_node->id() << original_node;
original_node->LockProcessing();
// Firstly we check if this node is a "Block", if it is that means it's part of a linked list of mutually exclusive
// nodes based on time and we might need to locate which Block to attach to
if (original_node->IsBlock()) {
node = ValidateBlock(static_cast<Block*>(original_node), time);
if (original_node != node) {
// Ensure output is the output matching the node as it may have changed
output = static_cast<NodeOutput*>(node->GetParameterWithID(output->id()));
// Switch locks
original_node->UnlockProcessing();
node->LockProcessing();
}
} else {
node = original_node;
}
value = ProcessNodeNormally(NodeDependency(output, dep.range()));
// Place the value into the output
output->cache_value(dep.range(), value);
dep.node()->cache_value(dep.range(), value);
// We're done!
node->UnlockProcessing();
// End this working state
working_--;
}
void VideoRenderWorker::Download(NodeDependency dep, QByteArray hash, QVariant texture, QString filename)
{
working_++;
PixelFormatInfo format_info = PixelService::GetPixelFormatInfo(video_params().format());
// Set up OIIO::ImageSpec for compressing cached images on disk
OIIO::ImageSpec spec(video_params().effective_width(), video_params().effective_height(), kRGBAChannels, format_info.oiio_desc);
spec.attribute("compression", "dwaa:200");
TextureToBuffer(texture, download_buffer_);
std::string working_fn_std = filename.toStdString();
std::unique_ptr<OIIO::ImageOutput> out = OIIO::ImageOutput::create(working_fn_std);
if (out) {
//qDebug() << "Saving to" << filename;
out->open(working_fn_std, spec);
out->write_image(format_info.oiio_desc, download_buffer_.data());
out->close();
emit CompletedDownload(dep, hash);
} else {
qWarning() << "Failed to open output file:" << filename;
}
working_--;
}