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oak-editor/app/render/renderworkerpool.cpp
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/***
Oak - Non-Linear Video Editor
Copyright (C) 2026 Oak 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 "renderworkerpool.h"
#include <QCoreApplication>
#include <QDateTime>
#include <QDir>
#include <QFile>
#include <QFileInfo>
#include <QJsonDocument>
#include <QJsonObject>
#include <QProcess>
#include <QTemporaryFile>
#include <QXmlStreamWriter>
#include <algorithm>
#include <memory>
#include <optional>
#include <thread>
#include <utility>
#include <vector>
#if defined(Q_OS_WIN)
#include <windows.h>
#else
#include <signal.h>
#endif
#include "codec/frame.h"
#include "common/qtutils.h"
#include "node/project/footage/footage.h"
#include "node/traverser.h"
namespace olive
{
namespace
{
constexpr int kProtocolVersion = 1;
struct FootageInput {
FootageJob job;
rational time;
};
class FootageInputCollector : public NodeTraverser {
public:
QVector<FootageInput> Collect(const RenderManager::RenderVideoParams &params,
CancelAtom *cancel)
{
SetCancelPointer(cancel);
VideoParams cache_params = params.video_params;
cache_params.set_format(PixelFormat::F32);
SetCacheVideoParams(cache_params);
SetCacheAudioParams(params.audio_params);
rational frame_length = cache_params.frame_rate_as_time_base();
if (cache_params.interlacing() != VideoParams::kInterlaceNone) {
frame_length /= 2;
}
NodeValueTable table = GenerateTable(params.node,
TimeRange(params.time,
params.time + frame_length));
NodeValue texture = table.Get(NodeValue::kTexture);
ResolveJobs(texture);
if (cache_params.interlacing() != VideoParams::kInterlaceNone) {
NodeValueTable second_table =
GenerateTable(params.node,
TimeRange(params.time + frame_length,
params.time + frame_length * 2));
NodeValue second_texture = second_table.Get(NodeValue::kTexture);
ResolveJobs(second_texture);
}
return inputs_;
}
protected:
void ProcessVideoFootage(TexturePtr destination,
const FootageJob *stream,
const rational &input_time) override
{
Q_UNUSED(destination)
if (stream) {
inputs_.append({*stream, input_time});
}
}
private:
QVector<FootageInput> inputs_;
};
DecoderPtr ResolveDecoderFromCache(DecoderCache *decoder_cache,
const QString &decoder_id,
const Decoder::CodecStream &stream)
{
if (!decoder_cache || !stream.IsValid()) {
return nullptr;
}
QMutexLocker locker(decoder_cache->mutex());
DecoderPair decoder = decoder_cache->value(stream);
const qint64 file_last_modified =
QFileInfo(stream.filename()).lastModified().toMSecsSinceEpoch();
if (decoder.decoder && decoder.last_modified == file_last_modified) {
return decoder.decoder;
}
decoder.decoder = Decoder::CreateFromID(decoder_id);
decoder.last_modified = file_last_modified;
decoder_cache->insert(stream, decoder);
locker.unlock();
if (!decoder.decoder || !decoder.decoder->Open(stream)) {
qWarning() << "RenderWorkerPool failed to open decoder for"
<< stream.filename() << "::" << stream.stream();
return nullptr;
}
return decoder.decoder;
}
FramePtr DecodeInputFrame(DecoderCache *decoder_cache,
const FootageInput &input,
CancelAtom *cancel)
{
VideoParams stream_data = input.job.video_params();
QString filename = input.job.filename();
DecoderPtr decoder;
switch (stream_data.video_type()) {
case VideoParams::kVideoTypeVideo:
case VideoParams::kVideoTypeStill:
decoder = ResolveDecoderFromCache(
decoder_cache,
input.job.decoder(),
Decoder::CodecStream(filename, stream_data.stream_index(), nullptr));
break;
case VideoParams::kVideoTypeImageSequence: {
const int64_t frame_number =
stream_data.get_time_in_timebase_units(input.time);
filename = Decoder::TransformImageSequenceFileName(filename, frame_number);
decoder = Decoder::CreateFromID(input.job.decoder());
if (decoder &&
!decoder->Open(Decoder::CodecStream(filename,
stream_data.stream_index(),
nullptr))) {
decoder = nullptr;
}
break;
}
}
if (!decoder) {
return nullptr;
}
Decoder::RetrieveVideoParams retrieve;
retrieve.divider = stream_data.divider();
retrieve.maximum_format = PixelFormat::U16;
retrieve.time = stream_data.video_type() == VideoParams::kVideoTypeVideo
? input.time
: Decoder::kAnyTimecode;
retrieve.cancelled = cancel;
retrieve.force_range = stream_data.color_range();
retrieve.src_interlacing = stream_data.interlacing();
FramePtr frame = decoder->RetrieveVideoFrame(retrieve);
if (frame) {
frame->set_timestamp(input.time);
// Ensure the frame carries the colorspace the color manager expects.
// Decoders do not always set this on the returned frame, but the worker
// needs it to build the correct OCIO transform.
VideoParams frame_params = frame->video_params();
if (frame_params.colorspace().isEmpty() &&
!stream_data.colorspace().isEmpty()) {
frame_params.set_colorspace(stream_data.colorspace());
frame->set_video_params(frame_params);
}
}
return frame;
}
bool DecodeInputFrames(DecoderCache *decoder_cache,
const RenderManager::RenderVideoParams &params,
CancelAtom *cancel,
QVector<FramePtr> *frames)
{
frames->clear();
FootageInputCollector collector;
const QVector<FootageInput> inputs = collector.Collect(params, cancel);
frames->reserve(inputs.size());
for (const FootageInput &input : inputs) {
if (cancel && cancel->IsCancelled()) {
return false;
}
FramePtr frame = DecodeInputFrame(decoder_cache, input, cancel);
if (!frame || !frame->is_allocated()) {
frames->clear();
return false;
}
frames->append(frame);
}
return true;
}
QString WorkerProgramPath()
{
#if defined(Q_OS_WIN)
const QString file = QStringLiteral("olive-render-worker.exe");
#else
const QString file = QStringLiteral("olive-render-worker");
#endif
const QString app_dir = QCoreApplication::applicationDirPath();
const QStringList candidates = {
QDir(app_dir).filePath(file),
QDir(app_dir).filePath(QStringLiteral("../app/") + file),
};
for (const QString &path : candidates) {
if (QFileInfo::exists(path)) {
return path;
}
}
if (qEnvironmentVariableIsSet("OAK_RENDER_WORKER")) {
return QString::fromUtf8(qgetenv("OAK_RENDER_WORKER"));
}
return candidates.first();
}
bool WriteControlMessage(QProcess *process, const QJsonObject &obj)
{
const QByteArray line = QJsonDocument(obj).toJson(QJsonDocument::Compact) + '\n';
return process->write(line) == line.size() && process->waitForBytesWritten(5000);
}
void TryWriteControlMessage(QProcess *process, const QJsonObject &obj)
{
const QByteArray line = QJsonDocument(obj).toJson(QJsonDocument::Compact) + '\n';
process->write(line);
}
bool KillProcessById(qint64 process_id)
{
if (process_id <= 0) {
return false;
}
#if defined(Q_OS_WIN)
HANDLE handle = OpenProcess(PROCESS_TERMINATE, FALSE, DWORD(process_id));
if (!handle) {
return false;
}
const bool ok = TerminateProcess(handle, 1) != 0;
CloseHandle(handle);
return ok;
#else
return ::kill(pid_t(process_id), SIGKILL) == 0;
#endif
}
bool IsProcessAlive(qint64 process_id)
{
if (process_id <= 0) {
return false;
}
#if defined(Q_OS_WIN)
HANDLE handle = OpenProcess(PROCESS_QUERY_LIMITED_INFORMATION, FALSE, DWORD(process_id));
if (!handle) {
return false;
}
DWORD exit_code = 0;
const bool alive = GetExitCodeProcess(handle, &exit_code) && exit_code == STILL_ACTIVE;
CloseHandle(handle);
return alive;
#else
return ::kill(pid_t(process_id), 0) == 0;
#endif
}
QString WorkerProcessDetails(const QProcess *process)
{
if (!process) {
return QStringLiteral("worker process unavailable");
}
const QString exit_status =
process->exitStatus() == QProcess::CrashExit
? QStringLiteral("crash")
: QStringLiteral("normal");
return QStringLiteral("state=%1 exit_status=%2 exit_code=%3 process_error=%4 error=\"%5\"")
.arg(int(process->state()))
.arg(exit_status)
.arg(process->exitCode())
.arg(int(process->error()))
.arg(process->errorString());
}
bool ReadControlMessage(QProcess *process, QJsonObject *out, QString *error,
int timeout_ms = 10000)
{
if (!process->waitForReadyRead(timeout_ms)) {
if (error) {
if (process->state() == QProcess::NotRunning) {
*error = QStringLiteral("worker exited before response: %1")
.arg(WorkerProcessDetails(process));
} else {
*error = QStringLiteral("timeout waiting for worker response: %1")
.arg(WorkerProcessDetails(process));
}
}
return false;
}
while (process->canReadLine()) {
const QByteArray line = process->readLine().trimmed();
if (line.isEmpty()) {
continue;
}
QJsonParseError parse_error;
const QJsonDocument doc = QJsonDocument::fromJson(line, &parse_error);
if (parse_error.error != QJsonParseError::NoError || !doc.isObject()) {
if (error) {
*error = QStringLiteral("worker emitted malformed control JSON");
}
return false;
}
*out = doc.object();
if (out->value(QStringLiteral("type")).toString() ==
QLatin1String(ipc::msgtype::kError)) {
if (error) {
*error = out->value(QStringLiteral("message")).toString();
}
return false;
}
return true;
}
if (error) {
*error = QStringLiteral("worker response did not contain a full line");
}
return false;
}
} // namespace
RenderWorkerPool::RenderWorkerPool(DecoderCache *decoder_cache,
const QString &gpu_backend,
QObject *parent)
: QThread(parent)
, decoder_cache_(decoder_cache)
, gpu_backend_(gpu_backend)
{
}
RenderWorkerPool::~RenderWorkerPool()
{
Shutdown();
}
bool RenderWorkerPool::SubmitFrame(RenderTicketPtr ticket,
const RenderManager::RenderVideoParams &params)
{
Job job(ticket, params);
if (!PrepareJob(ticket, params, &job)) {
return false;
}
ticket->moveToThread(this);
QMutexLocker locker(&mutex_);
queue_.push_back(job);
wait_.wakeOne();
return true;
}
bool RenderWorkerPool::RemoveTicket(RenderTicketPtr ticket)
{
if (!ticket) {
return false;
}
QString queued_graph_path;
bool matched_active = false;
{
QMutexLocker locker(&mutex_);
auto it = std::find_if(queue_.begin(), queue_.end(),
[&ticket](const Job &job) {
return job.ticket == ticket;
});
if (it != queue_.end()) {
queued_graph_path = it->graph_path;
queue_.erase(it);
} else {
for (const ActiveJob &active : active_jobs_) {
if (active.ticket == ticket) {
ticket->Cancel();
CancelActiveProcess(active.process_id);
matched_active = true;
break;
}
}
if (!matched_active) {
return false;
}
}
}
if (!queued_graph_path.isEmpty()) {
CleanupGraphFile(queued_graph_path);
return true;
}
return true;
}
void RenderWorkerPool::Shutdown()
{
QVector<QString> graph_paths_to_clean;
{
QMutexLocker locker(&mutex_);
stopping_ = true;
for (Job &job : queue_) {
if (job.ticket) {
job.ticket->Cancel();
}
}
queue_.clear();
for (ActiveJob &active : active_jobs_) {
if (active.ticket) {
active.ticket->Cancel();
CancelActiveProcess(active.process_id);
}
}
for (auto it = graph_cache_.begin(); it != graph_cache_.end(); ++it) {
graph_paths_to_clean.append(it->path);
}
graph_cache_.clear();
wait_.wakeAll();
}
for (const QString &path : graph_paths_to_clean) {
CleanupGraphFile(path);
}
if (isRunning()) {
wait();
}
}
void RenderWorkerPool::run()
{
const int worker_count = WorkerCount();
{
QMutexLocker locker(&mutex_);
active_jobs_.resize(worker_count);
}
std::vector<std::vector<std::unique_ptr<PooledWorker>>> local_pools(worker_count);
std::vector<std::thread> workers;
workers.reserve(size_t(worker_count));
for (int i = 0; i < worker_count; i++) {
workers.emplace_back([this, i, &local_pools]() {
WorkerLoop(i, &local_pools[i]);
});
}
for (std::thread &worker : workers) {
worker.join();
}
for (auto &local_pool : local_pools) {
ShutdownLocalPool(&local_pool);
}
ClearGraphCache();
QMutexLocker locker(&mutex_);
active_jobs_.clear();
}
void RenderWorkerPool::WorkerLoop(
int worker_index,
std::vector<std::unique_ptr<PooledWorker>> *local_pool)
{
while (true) {
mutex_.lock();
while (queue_.empty() && !stopping_) {
wait_.wait(&mutex_);
}
if (stopping_ && queue_.empty()) {
mutex_.unlock();
break;
}
Job job = queue_.front();
queue_.pop_front();
mutex_.unlock();
ProcessJob(job, worker_index, local_pool);
}
}
bool RenderWorkerPool::PrepareJob(RenderTicketPtr ticket,
const RenderManager::RenderVideoParams &params,
Job *job)
{
if (!IsSupported(params)) {
return false;
}
Project *project = Project::GetProjectFromObject(params.node);
if (!project) {
qWarning() << "RenderWorkerPool could not resolve project for render node";
return false;
}
QVector<FramePtr> input_frames;
if (!DecodeInputFrames(decoder_cache_, params, ticket->GetCancelAtom(),
&input_frames)) {
qWarning() << "RenderWorkerPool could not predecode footage inputs;"
<< "falling back to in-process render";
return false;
}
QString graph_path;
bool wrote_new_snapshot = false;
{
const QUuid project_uuid = project->GetUuid();
QMutexLocker locker(&mutex_);
auto it = graph_cache_.find(project_uuid);
if (it != graph_cache_.end() && !project->is_modified()) {
graph_path = it->path;
} else {
if (it != graph_cache_.end()) {
CleanupGraphFile(it->path);
graph_cache_.erase(it);
}
locker.unlock();
if (!WriteGraphSnapshot(project, &graph_path)) {
return false;
}
wrote_new_snapshot = true;
locker.relock();
graph_cache_.insert(project_uuid, {graph_path});
}
}
job->ticket = ticket;
job->params = params;
job->graph_path = graph_path;
job->node_token = QString::number(reinterpret_cast<quintptr>(params.node));
job->input_frames = input_frames;
Q_UNUSED(wrote_new_snapshot)
return true;
}
bool RenderWorkerPool::WriteGraphSnapshot(Project *project, QString *path)
{
QTemporaryFile file(QDir::temp().filePath(QStringLiteral("oak-render-graph-XXXXXX.ove")));
file.setAutoRemove(false);
if (!file.open()) {
qWarning() << "RenderWorkerPool failed to create graph snapshot temp file"
<< file.errorString();
return false;
}
QXmlStreamWriter writer(&file);
ProjectSerializer::SaveData data(ProjectSerializer::kProject, project, file.fileName());
const ProjectSerializer::Result result = ProjectSerializer::Save(&writer, data);
file.close();
if (result.code() != ProjectSerializer::kSuccess || writer.hasError()) {
qWarning() << "RenderWorkerPool failed to serialize graph snapshot"
<< result.GetDetails();
QFile::remove(file.fileName());
return false;
}
*path = file.fileName();
return true;
}
bool RenderWorkerPool::IsSupported(const RenderManager::RenderVideoParams &params) const
{
return params.node && params.return_type == RenderManager::kFrame &&
params.video_params.is_valid();
}
void RenderWorkerPool::ProcessJob(
const Job &job, int worker_index,
std::vector<std::unique_ptr<PooledWorker>> *local_pool)
{
const qint64 ticket_id = qint64(reinterpret_cast<quintptr>(job.ticket.get()));
SetActiveWorker(worker_index, job.ticket, nullptr, ticket_id);
job.ticket->Start();
if (job.ticket->IsCancelled()) {
job.ticket->Finish();
ClearActiveWorker(worker_index, 0);
return;
}
std::unique_ptr<PooledWorker> worker = AcquireWorker(local_pool, job.graph_path);
if (!worker) {
qWarning() << "RenderWorkerPool failed to acquire worker for ticket"
<< ticket_id;
job.ticket->Finish();
ClearActiveWorker(worker_index, 0);
return;
}
for (int attempt = 0; attempt < kMaxAttempts; attempt++) {
if (attempt > 0) {
worker = AcquireWorker(local_pool, job.graph_path);
if (!worker) {
qWarning() << "RenderWorkerPool failed to acquire worker for retry"
<< ticket_id;
break;
}
}
const JobResult result = ProcessJobAttempt(job, worker_index, attempt,
worker.get());
const qint64 worker_pid = worker && worker->process
? worker->process->processId()
: 0;
const bool process_state_running = worker && worker->process &&
worker->process->state() == QProcess::Running;
const bool os_alive = worker_pid > 0 && IsProcessAlive(worker_pid);
const bool worker_healthy = process_state_running || os_alive;
const bool keep_alive = (result == JobResult::kFinished) && worker_healthy;
ReturnWorker(local_pool, std::move(worker), keep_alive);
worker.reset();
if (result == JobResult::kFinished) {
ClearActiveWorker(worker_index, 0);
return;
}
if (result == JobResult::kCancelled) {
job.ticket->Finish();
ClearActiveWorker(worker_index, 0);
return;
}
if (result == JobResult::kFatalFailure) {
break;
}
if (attempt + 1 < kMaxAttempts && !job.ticket->IsCancelled()) {
qWarning() << "RenderWorkerPool retrying render worker for ticket"
<< ticket_id << "after worker failure";
}
}
if (job.ticket->IsCancelled()) {
job.ticket->Finish();
} else {
qWarning() << "RenderWorkerPool exhausted worker retries for ticket"
<< ticket_id;
job.ticket->Finish();
}
ClearActiveWorker(worker_index, 0);
}
RenderWorkerPool::JobResult RenderWorkerPool::ProcessJobAttempt(
const Job &job, int worker_index, int attempt_index,
PooledWorker *worker)
{
const qint64 ticket_id = qint64(reinterpret_cast<quintptr>(job.ticket.get()));
if (job.ticket->IsCancelled()) {
return JobResult::kCancelled;
}
if (!worker || !worker->process) {
return JobResult::kRetryableFailure;
}
const qint64 worker_process_id = worker->process->processId();
const int output_width = job.params.force_size.width() > 0
? job.params.force_size.width()
: job.params.video_params.effective_width();
const int output_height = job.params.force_size.height() > 0
? job.params.force_size.height()
: job.params.video_params.effective_height();
const PixelFormat::Format output_format =
job.params.force_format != PixelFormat::INVALID
? PixelFormat::Format(job.params.force_format)
: PixelFormat::F32;
const int output_channels = job.params.force_channel_count > 0
? job.params.force_channel_count
: VideoParams::kRGBAChannelCount;
const int output_linesize =
Frame::generate_linesize_bytes(output_width, output_format,
output_channels);
const size_t estimated_output_slot_bytes =
size_t(output_linesize) * size_t(output_height);
const int f32_rgba_linesize =
Frame::generate_linesize_bytes(output_width, PixelFormat::F32,
VideoParams::kRGBAChannelCount);
const size_t f32_rgba_slot_bytes =
size_t(f32_rgba_linesize) * size_t(output_height);
const size_t output_slot_bytes =
std::max(estimated_output_slot_bytes, f32_rgba_slot_bytes);
size_t input_slot_bytes = 0;
for (const FramePtr &frame : job.input_frames) {
if (frame && frame->is_allocated()) {
input_slot_bytes =
std::max(input_slot_bytes, size_t(frame->allocated_size()));
}
}
const size_t output_region_bytes =
ipc::FrameSlotPool::BytesNeeded(kOutputSlots, output_slot_bytes);
if (!worker->output_region.IsValid() ||
worker->output_slot_bytes < output_slot_bytes) {
if (worker->output_region.IsValid()) {
worker->output_region.Close();
worker->output_pool = ipc::FrameSlotPool();
}
if (worker->output_shm_key.isEmpty()) {
worker->output_shm_key =
ipc::SharedMemoryRegion::MakeKey(worker_process_id, 0) +
QStringLiteral("-out");
}
if (!worker->output_region.Open(worker->output_shm_key,
output_region_bytes,
ipc::SharedMemoryRegion::kCreate)) {
qWarning() << "RenderWorkerPool failed to create output shared memory"
<< worker->output_region.error();
return JobResult::kFatalFailure;
}
worker->output_pool = ipc::FrameSlotPool::Create(
worker->output_region.data(), kOutputSlots, output_slot_bytes);
worker->output_slot_bytes = output_slot_bytes;
}
const QString shm_key = worker->output_shm_key;
ipc::FrameSlotPool &output_pool = worker->output_pool;
const uint32_t input_slot_count =
job.input_frames.isEmpty() ? 0 : uint32_t(job.input_frames.size());
if (input_slot_count > 0) {
if (!worker->input_region.IsValid() ||
worker->input_slot_bytes < input_slot_bytes ||
worker->input_pool.slot_count() < input_slot_count) {
if (worker->input_region.IsValid()) {
worker->input_region.Close();
worker->input_pool = ipc::FrameSlotPool();
}
if (worker->input_shm_key.isEmpty()) {
worker->input_shm_key =
ipc::SharedMemoryRegion::MakeKey(worker_process_id, 1) +
QStringLiteral("-in");
}
const size_t input_region_bytes =
ipc::FrameSlotPool::BytesNeeded(input_slot_count, input_slot_bytes);
if (!worker->input_region.Open(worker->input_shm_key,
input_region_bytes,
ipc::SharedMemoryRegion::kCreate)) {
qWarning() << "RenderWorkerPool failed to create input shared memory"
<< worker->input_region.error();
return JobResult::kFatalFailure;
}
worker->input_pool = ipc::FrameSlotPool::Create(
worker->input_region.data(), input_slot_count, input_slot_bytes);
worker->input_slot_bytes = input_slot_bytes;
}
}
const QString input_shm_key = worker->input_shm_key;
ipc::FrameSlotPool &input_pool = worker->input_pool;
QVector<int> input_slots;
if (input_slot_count > 0) {
for (const FramePtr &frame : job.input_frames) {
if (frame->allocated_size() > int(worker->input_slot_bytes)) {
qWarning() << "RenderWorkerPool decoded input frame exceeds slot size";
return JobResult::kFatalFailure;
}
uint32_t slot = 0;
if (!input_pool.Acquire(&slot)) {
qWarning() << "RenderWorkerPool input pool had no free slot";
return JobResult::kFatalFailure;
}
memcpy(input_pool.SlotData(slot), frame->const_data(),
size_t(frame->allocated_size()));
ipc::FrameSlotMeta *meta = input_pool.Meta(slot);
meta->id = qint64(input_slots.size());
meta->time_num = frame->timestamp().numerator();
meta->time_den = frame->timestamp().denominator();
meta->width = frame->width();
meta->height = frame->height();
meta->format = int32_t(frame->format());
meta->channel_count = frame->channel_count();
meta->linesize = frame->linesize_bytes();
meta->data_size = frame->allocated_size();
memset(meta->colorspace, 0, sizeof(meta->colorspace));
const QString cs = frame->video_params().colorspace();
if (!cs.isEmpty()) {
const QByteArray cs_utf8 = cs.toUtf8();
const size_t copy_len = qMin(
static_cast<size_t>(cs_utf8.size()),
sizeof(meta->colorspace) - 1);
memcpy(meta->colorspace, cs_utf8.constData(), copy_len);
meta->colorspace[copy_len] = '\0';
}
if (!input_pool.Publish(slot)) {
qWarning() << "RenderWorkerPool failed to publish input slot";
return JobResult::kFatalFailure;
}
input_slots.append(int(slot));
}
if (input_slots.size() != job.input_frames.size()) {
qWarning() << "RenderWorkerPool failed to publish all input frames;"
<< "aborting worker render";
return JobResult::kFatalFailure;
}
}
SetActiveWorker(worker_index, job.ticket, worker->process, ticket_id);
if (job.ticket->IsCancelled()) {
ipc::CancelMsg cancel;
cancel.ticket_id = ticket_id;
TryWriteControlMessage(worker->process, cancel.ToJson());
ClearActiveWorker(worker_index, worker_process_id);
return JobResult::kCancelled;
}
ipc::HandshakeMsg handshake;
handshake.protocol_version = kProtocolVersion;
handshake.shm_key = shm_key;
handshake.input_shm_key = input_slots.isEmpty() ? QString() : input_shm_key;
handshake.input_slots = input_slots.size();
handshake.output_slots = int(kOutputSlots);
handshake.slot_data_bytes = qint64(output_slot_bytes);
handshake.input_slot_data_bytes = input_slots.isEmpty()
? 0
: qint64(input_slot_bytes);
if (!WriteControlMessage(worker->process, handshake.ToJson())) {
if (!job.ticket->IsCancelled()) {
qWarning() << "RenderWorkerPool failed to send shared-memory handshake";
}
ClearActiveWorker(worker_index, worker_process_id);
return job.ticket->IsCancelled() ? JobResult::kCancelled
: JobResult::kRetryableFailure;
}
if (worker->loaded_graph_path != job.graph_path) {
ipc::LoadGraphMsg load;
load.path = job.graph_path;
QString error;
QJsonObject response;
if (!WriteControlMessage(worker->process, load.ToJson()) ||
!ReadControlMessage(worker->process, &response, &error)) {
if (!job.ticket->IsCancelled()) {
qWarning() << "RenderWorkerPool failed to load graph in worker"
<< error << worker->process->readAllStandardError();
}
ClearActiveWorker(worker_index, worker_process_id);
return job.ticket->IsCancelled() ? JobResult::kCancelled
: JobResult::kRetryableFailure;
}
worker->loaded_graph_path = job.graph_path;
}
ipc::RenderFrameMsg render;
render.ticket_id = ticket_id;
render.node_uuid = job.node_token;
render.time_num = job.params.time.numerator();
render.time_den = job.params.time.denominator();
render.width = output_width;
render.height = output_height;
render.format = int(output_format);
render.channel_count = output_channels;
render.mode = int(job.params.mode);
render.input_slot = input_slots.isEmpty() ? -1 : input_slots.front();
render.input_slots = input_slots;
if (!WriteControlMessage(worker->process, render.ToJson())) {
if (!job.ticket->IsCancelled()) {
qWarning() << "RenderWorkerPool failed to send render_frame";
}
ClearActiveWorker(worker_index, worker_process_id);
return job.ticket->IsCancelled() ? JobResult::kCancelled
: JobResult::kRetryableFailure;
}
QString error;
QJsonObject response;
ipc::FrameReadyMsg ready;
while (true) {
if (!ReadControlMessage(worker->process, &response, &error, 30000)) {
if (!job.ticket->IsCancelled()) {
qWarning() << "RenderWorkerPool failed waiting for frame_ready"
<< error << worker->process->readAllStandardError();
}
ClearActiveWorker(worker_index, worker_process_id);
return job.ticket->IsCancelled() ? JobResult::kCancelled
: JobResult::kRetryableFailure;
}
if (ipc::FrameReadyMsg::FromJson(response, &ready)) {
break;
}
}
if (job.ticket->IsCancelled()) {
ClearActiveWorker(worker_index, worker_process_id);
return JobResult::kCancelled;
}
uint32_t consumed_slot = 0;
if (!output_pool.Consume(&consumed_slot)) {
qWarning() << "RenderWorkerPool failed to consume output slot";
ClearActiveWorker(worker_index, worker_process_id);
return JobResult::kRetryableFailure;
}
if (int(consumed_slot) != ready.output_slot) {
qWarning() << "RenderWorkerPool output slot mismatch: consumed"
<< consumed_slot << "expected" << ready.output_slot;
}
FinishWithFrame(job.ticket, output_pool, consumed_slot);
output_pool.Release(consumed_slot);
ClearActiveWorker(worker_index, worker_process_id);
return JobResult::kFinished;
}
void RenderWorkerPool::CancelActiveProcess(qint64 process_id)
{
KillProcessById(process_id);
}
void RenderWorkerPool::SetActiveWorker(int worker_index, RenderTicketPtr ticket,
QProcess *worker, qint64 ticket_id)
{
QMutexLocker locker(&mutex_);
if (worker_index < 0 || worker_index >= active_jobs_.size()) {
return;
}
ActiveJob &active = active_jobs_[worker_index];
active.ticket = ticket;
active.process_id = worker ? worker->processId() : 0;
active.ticket_id = ticket_id;
}
void RenderWorkerPool::ClearActiveWorker(int worker_index, qint64 process_id)
{
QMutexLocker locker(&mutex_);
if (worker_index < 0 || worker_index >= active_jobs_.size()) {
return;
}
ActiveJob &active = active_jobs_[worker_index];
if (process_id > 0) {
if (active.process_id == process_id) {
active.process_id = 0;
}
} else {
active = ActiveJob();
}
}
int RenderWorkerPool::WorkerCount() const
{
// GPU rendering is the bottleneck for video frames; too many workers just
// multiply first-frame warmup (shader/OCIO cache creation) and compete for
// the same GPU. Cap at a small number while still leaving cores free.
const int ideal = QThread::idealThreadCount();
return std::max(1, std::min(ideal - 2, 4));
}
std::unique_ptr<RenderWorkerPool::PooledWorker> RenderWorkerPool::AcquireWorker(
std::vector<std::unique_ptr<PooledWorker>> *local_pool,
const QString &graph_path)
{
if (!local_pool) {
return nullptr;
}
const qint64 now = QDateTime::currentMSecsSinceEpoch();
// Prefer an idle worker that already has the requested graph loaded.
int best_index = -1;
for (size_t i = 0; i < local_pool->size();) {
PooledWorker *candidate = (*local_pool)[i].get();
if (!candidate || !candidate->process) {
local_pool->erase(local_pool->begin() + i);
continue;
}
const bool candidate_state_running =
candidate->process->state() == QProcess::Running;
const bool candidate_os_alive =
IsProcessAlive(candidate->process->processId());
if (!candidate_state_running && !candidate_os_alive) {
ShutdownWorker(candidate);
local_pool->erase(local_pool->begin() + i);
continue;
}
if (now - candidate->last_used_ms > kWorkerIdleTimeoutMs) {
ShutdownWorker(candidate);
local_pool->erase(local_pool->begin() + i);
continue;
}
if (best_index < 0 ||
(!candidate->loaded_graph_path.isEmpty() &&
candidate->loaded_graph_path == graph_path &&
((*local_pool)[size_t(best_index)]->loaded_graph_path != graph_path))) {
best_index = int(i);
}
++i;
}
if (best_index >= 0) {
std::unique_ptr<PooledWorker> worker =
std::move((*local_pool)[size_t(best_index)]);
local_pool->erase(local_pool->begin() + best_index);
worker->last_used_ms = now;
++worker->use_count;
return worker;
}
// No idle worker available: start a new one.
auto *process = new QProcess();
process->setProgram(WorkerProgramPath());
process->setArguments({QStringLiteral("--backend"), gpu_backend_});
const QString worker_stderr_path = QDir(QDir::tempPath()).filePath(
QStringLiteral("oak-render-worker-%1-%2.stderr.log")
.arg(QCoreApplication::applicationPid())
.arg(QDateTime::currentMSecsSinceEpoch()));
process->setStandardErrorFile(worker_stderr_path);
process->start();
if (!process->waitForStarted(10000)) {
qWarning() << "RenderWorkerPool failed to start worker"
<< process->errorString();
delete process;
return nullptr;
}
QString error;
QJsonObject response;
if (!ReadControlMessage(process, &response, &error)) {
qWarning() << "RenderWorkerPool did not receive startup handshake"
<< error << process->readAllStandardError();
process->kill();
process->waitForFinished();
delete process;
return nullptr;
}
auto worker = std::make_unique<PooledWorker>();
worker->process = process;
worker->last_used_ms = now;
worker->use_count = 1;
return worker;
}
void RenderWorkerPool::ReturnWorker(
std::vector<std::unique_ptr<PooledWorker>> *local_pool,
std::unique_ptr<PooledWorker> worker,
bool keep_alive)
{
if (!worker || !worker->process) {
return;
}
const bool pool_full = worker->use_count >= kWorkerMaxUses;
if (!keep_alive || stopping_ || pool_full) {
ShutdownWorker(worker.get());
return;
}
worker->last_used_ms = QDateTime::currentMSecsSinceEpoch();
local_pool->push_back(std::move(worker));
}
void RenderWorkerPool::ShutdownWorker(PooledWorker *worker)
{
if (!worker || !worker->process) {
return;
}
QProcess *process = worker->process;
worker->process = nullptr;
worker->loaded_graph_path.clear();
worker->use_count = 0;
if (process->state() == QProcess::Running) {
QJsonObject shutdown;
shutdown[QStringLiteral("type")] = ipc::msgtype::kShutdown;
TryWriteControlMessage(process, shutdown);
process->closeWriteChannel();
if (!process->waitForFinished(5000)) {
process->kill();
process->waitForFinished();
}
}
delete process;
}
void RenderWorkerPool::ShutdownLocalPool(
std::vector<std::unique_ptr<PooledWorker>> *local_pool)
{
if (!local_pool) {
return;
}
for (std::unique_ptr<PooledWorker> &worker : *local_pool) {
ShutdownWorker(worker.get());
}
local_pool->clear();
}
void RenderWorkerPool::ClearGraphCache()
{
QMutexLocker locker(&mutex_);
for (auto it = graph_cache_.begin(); it != graph_cache_.end(); ++it) {
CleanupGraphFile(it->path);
}
graph_cache_.clear();
}
void RenderWorkerPool::FinishWithFrame(RenderTicketPtr ticket,
const ipc::FrameSlotPool &pool,
uint32_t slot)
{
const ipc::FrameSlotMeta *meta = pool.Meta(slot);
if (!meta || meta->data_size <= 0 ||
meta->data_size > int(pool.slot_data_bytes())) {
ticket->Finish();
return;
}
VideoParams params(meta->width, meta->height,
PixelFormat::Format(meta->format),
meta->channel_count);
FramePtr frame = Frame::Create();
frame->set_timestamp(rational(int(meta->time_num), int(meta->time_den)));
frame->set_video_params(params);
if (!frame->allocate() || frame->allocated_size() < meta->data_size) {
ticket->Finish();
return;
}
memcpy(frame->data(), pool.SlotData(slot), size_t(meta->data_size));
ticket->Finish(QVariant::fromValue(frame));
}
void RenderWorkerPool::CleanupGraphFile(const QString &path)
{
if (!path.isEmpty()) {
QFile::remove(path);
}
}
} // namespace olive