ffmpegdecoder: re-use existing frame pool for memory management

This commit is contained in:
itsmattkc
2020-04-12 14:12:08 +10:00
parent fa16d2169b
commit cdf5a1058d
6 changed files with 189 additions and 105 deletions
+1
View File
@@ -16,6 +16,7 @@
set(OLIVE_SOURCES
${OLIVE_SOURCES}
codec/ffmpeg/avframeptr.h
codec/ffmpeg/ffmpegcommon.h
codec/ffmpeg/ffmpegcommon.cpp
codec/ffmpeg/ffmpegdecoder.h
+59
View File
@@ -0,0 +1,59 @@
#ifndef AVFRAMEPTR_H
#define AVFRAMEPTR_H
extern "C" {
#include <libavcodec/avcodec.h>
}
#include <memory>
#include <QDateTime>
#include "common/constructors.h"
#include "common/define.h"
OLIVE_NAMESPACE_ENTER
class AVFrameWrapper {
public:
AVFrameWrapper() {
frame_ = av_frame_alloc();
birthtime_ = QDateTime::currentMSecsSinceEpoch();
accessed_ = birthtime_;
}
virtual ~AVFrameWrapper() {
av_frame_free(&frame_);
}
DISABLE_COPY_MOVE(AVFrameWrapper)
inline AVFrame* frame() const {
return frame_;
}
inline const qint64& birthtime() const {
return birthtime_;
}
inline const qint64& last_accessed() const {
return accessed_;
}
void access() {
accessed_ = QDateTime::currentMSecsSinceEpoch();
}
private:
AVFrame* frame_;
qint64 birthtime_;
qint64 accessed_;
};
using AVFramePtr = std::shared_ptr<AVFrameWrapper>;
OLIVE_NAMESPACE_EXIT
#endif // AVFRAMEPTR_H
+58 -56
View File
@@ -47,16 +47,16 @@ OLIVE_NAMESPACE_ENTER
QHash< Stream*, QList<FFmpegDecoderInstance*> > FFmpegDecoder::instances_;
QMutex FFmpegDecoder::instance_lock_;
const int FFmpegDecoder::kMaxFrameLife = 5000;
FFmpegDecoder::FFmpegDecoder() :
scale_ctx_(nullptr),
scale_divider_(-1)
{
/*
// FIXME: Hardcoded, ideally this value is dynamically chosen based on memory restraints
clear_timer_.setInterval(2000);
clear_timer_.setInterval(kMaxFrameLife);
clear_timer_.moveToThread(qApp->thread());
connect(&clear_timer_, &QTimer::timeout, this, &FFmpegDecoder::ClearTimerEvent);
*/
}
FFmpegDecoder::~FFmpegDecoder()
@@ -77,16 +77,16 @@ bool FFmpegDecoder::Open()
// Convert QString to a C string
QByteArray fn_bytes = stream()->footage()->filename().toUtf8();
FFmpegDecoderInstance* instance = new FFmpegDecoderInstance(fn_bytes.constData(), stream()->index());
our_instance_ = new FFmpegDecoderInstance(fn_bytes.constData(), stream()->index());
if (!instance->IsValid()) {
delete instance;
if (!our_instance_->IsValid()) {
delete our_instance_;
return false;
}
if (stream()->type() == Stream::kVideo) {
// Get an Olive compatible AVPixelFormat
src_pix_fmt_ = static_cast<AVPixelFormat>(instance->stream()->codecpar->format);
src_pix_fmt_ = static_cast<AVPixelFormat>(our_instance_->stream()->codecpar->format);
ideal_pix_fmt_ = FFmpegCommon::GetCompatiblePixelFormat(src_pix_fmt_);
// Determine which Olive native pixel format we retrieved
@@ -109,13 +109,13 @@ bool FFmpegDecoder::Open()
qFatal("Invalid output format");
}
aspect_ratio_ = instance->sample_aspect_ratio();
aspect_ratio_ = our_instance_->sample_aspect_ratio();
//QMetaObject::invokeMethod(&clear_timer_, "start");
QMetaObject::invokeMethod(&clear_timer_, "start");
}
time_base_ = instance->stream()->time_base;
start_time_ = instance->stream()->start_time;
time_base_ = our_instance_->stream()->time_base;
start_time_ = our_instance_->stream()->start_time;
// All allocation succeeded so we set the state to open
open_ = true;
@@ -124,7 +124,7 @@ bool FFmpegDecoder::Open()
QMutexLocker l(&instance_lock_);
QList<FFmpegDecoderInstance*> list = instances_.value(stream().get());
list.append(instance);
list.append(our_instance_);
instances_.insert(stream().get(), list);
}
@@ -170,7 +170,7 @@ FramePtr FFmpegDecoder::RetrieveVideo(const rational &timecode, const int &divid
int64_t target_ts = Timecode::time_to_timestamp(timecode, time_base_) + start_time_;
FFmpegDecoderInstance* working_instance = nullptr;
AVFrame* return_frame = nullptr;
AVFramePtr return_frame = nullptr;
// Find instance
do {
@@ -181,7 +181,11 @@ FramePtr FFmpegDecoder::RetrieveVideo(const rational &timecode, const int &divid
QList<FFmpegDecoderInstance*> instances = instances_.value(stream().get());
foreach (FFmpegDecoderInstance* i, instances) {
i->cache_lock()->lock();
{
TIME_THIS_FUNCTION;
i->cache_lock()->lock();
}
if (i->CacheContainsTime(target_ts)) {
@@ -297,10 +301,10 @@ FramePtr FFmpegDecoder::RetrieveVideo(const rational &timecode, const int &divid
int output_linesize = copy->width() * PixelFormat::ChannelCount(native_pix_fmt_) * PixelFormat::BytesPerChannel(native_pix_fmt_);
sws_scale(scale_ctx_,
return_frame->data,
return_frame->linesize,
return_frame->frame()->data,
return_frame->frame()->linesize,
0,
return_frame->height,
return_frame->frame()->height,
&output_data,
&output_linesize);
@@ -357,7 +361,7 @@ void FFmpegDecoder::Close()
ClearResources();
//clear_timer_.stop();
clear_timer_.stop();
}
QString FFmpegDecoder::id()
@@ -723,8 +727,6 @@ void FFmpegDecoder::UnconditionalAudioIndex(const QAtomicInt* cancelled)
int FFmpegDecoderInstance::GetFrame(AVPacket *pkt, AVFrame *frame)
{
TIME_THIS_FUNCTION;
bool eof = false;
int ret;
@@ -790,8 +792,6 @@ void FFmpegDecoderInstance::SetWorking(bool working)
void FFmpegDecoderInstance::Seek(int64_t timestamp)
{
TIME_THIS_FUNCTION;
avcodec_flush_buffers(codec_ctx_);
av_seek_frame(fmt_ctx_, avstream_->index, timestamp, AVSEEK_FLAG_BACKWARD);
}
@@ -880,7 +880,7 @@ void FFmpegDecoderInstance::ClearFrameCache()
cache_at_zero_ = false;
}
AVFrame *FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cache_is_locked)
AVFramePtr FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cache_is_locked)
{
if (!cache_is_locked) {
cache_lock_.lock();
@@ -893,8 +893,8 @@ AVFrame *FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cac
// If the frame wasn't in the frame cache, see if this frame cache is too old to use
if (cached_frames_.isEmpty()
|| target_ts < cached_frames_.first()->pts
|| target_ts > cached_frames_.last()->pts + 2*second_ts_) {
|| target_ts < cached_frames_.first()->frame()->pts
|| target_ts > cached_frames_.last()->frame()->pts + 2*second_ts_) {
ClearFrameCache();
Seek(seek_ts);
@@ -907,18 +907,18 @@ AVFrame *FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cac
int ret;
AVPacket* pkt = av_packet_alloc();
AVFrame* return_frame = nullptr;
AVFramePtr return_frame = nullptr;
// Allocate a new frame
AVFrameWrapper working_frame;
while (true) {
// Allocate a new frame
AVFrame* working_frame = av_frame_alloc();
// Pull from the decoder
ret = GetFrame(pkt, working_frame);
ret = GetFrame(pkt, working_frame.frame());
// Handle any errors that aren't EOF (EOF is handled later on)
if (ret < 0 && ret != AVERROR_EOF) {
av_frame_free(&working_frame);
cache_lock_.unlock();
qCritical() << "Failed to retrieve frame:" << ret;
break;
@@ -927,14 +927,13 @@ AVFrame *FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cac
if (still_seeking) {
// Handle a failure to seek (occurs on some media)
// We'll only be here if the frame cache was emptied earlier
if (!cache_at_zero_ && (ret == AVERROR_EOF || working_frame->pts > target_ts)) {
if (!cache_at_zero_ && (ret == AVERROR_EOF || working_frame.frame()->pts > target_ts)) {
seek_ts = qMax(static_cast<int64_t>(0), seek_ts - second_ts_);
Seek(seek_ts);
if (seek_ts == 0) {
cache_at_zero_ = true;
}
av_frame_free(&working_frame);
continue;
} else {
@@ -959,24 +958,23 @@ AVFrame *FFmpegDecoderInstance::RetrieveFrame(const int64_t& target_ts, bool cac
cache_lock_.unlock();
return_frame = cached_frames_.last();
av_frame_free(&working_frame);
break;
} else {
// Whatever it is, keep this frame in memory for the time being just in case
cached_frames_.append(working_frame);
AVFramePtr cached = cached_frames_.append(working_frame.frame());
cache_wait_cond_.wakeAll();
cache_lock_.unlock();
// If this is a valid frame, see if this or the frame before it are the one we need
if (working_frame->pts == target_ts) {
return_frame = working_frame;
if (cached->frame()->pts == target_ts) {
return_frame = cached;
break;
} else if (working_frame->pts > target_ts) {
} else if (cached->frame()->pts > target_ts) {
if (cached_frames_.isEmpty() && cache_at_zero_) {
return_frame = working_frame;
return_frame = cached;
break;
} else {
return_frame = cached_frames_.at(cached_frames_.size() - 2);
@@ -1034,7 +1032,7 @@ int64_t FFmpegDecoderInstance::RangeStart() const
if (cached_frames_.isEmpty()) {
return AV_NOPTS_VALUE;
}
return cached_frames_.first()->pts;
return cached_frames_.first()->frame()->pts;
}
int64_t FFmpegDecoderInstance::RangeEnd() const
@@ -1042,25 +1040,25 @@ int64_t FFmpegDecoderInstance::RangeEnd() const
if (cached_frames_.isEmpty()) {
return AV_NOPTS_VALUE;
}
return cached_frames_.last()->pts;
return cached_frames_.last()->frame()->pts;
}
bool FFmpegDecoderInstance::CacheContainsTime(const int64_t &t) const
{
return !cached_frames_.isEmpty()
&& ((RangeStart() <= t && RangeEnd() >= t)
|| (cache_at_zero_ && t < cached_frames_.first()->pts)
|| (cache_at_eof_ && t > cached_frames_.last()->pts));
|| (cache_at_zero_ && t < cached_frames_.first()->frame()->pts)
|| (cache_at_eof_ && t > cached_frames_.last()->frame()->pts));
}
bool FFmpegDecoderInstance::CacheWillContainTime(const int64_t &t) const
{
return !cached_frames_.isEmpty() && t >= cached_frames_.first()->pts && t <= cache_target_time_;
return !cached_frames_.isEmpty() && t >= cached_frames_.first()->frame()->pts && t <= cache_target_time_;
}
bool FFmpegDecoderInstance::CacheCouldContainTime(const int64_t &t) const
{
return !cached_frames_.isEmpty() && t >= cached_frames_.first()->pts && t <= (cache_target_time_ + 2*second_ts_);
return !cached_frames_.isEmpty() && t >= cached_frames_.first()->frame()->pts && t <= (cache_target_time_ + 2*second_ts_);
}
bool FFmpegDecoderInstance::CacheIsEmpty() const
@@ -1068,15 +1066,15 @@ bool FFmpegDecoderInstance::CacheIsEmpty() const
return cached_frames_.isEmpty();
}
AVFrame *FFmpegDecoderInstance::GetFrameFromCache(const int64_t &t) const
AVFramePtr FFmpegDecoderInstance::GetFrameFromCache(const int64_t &t) const
{
if (t < cached_frames_.first()->pts) {
if (t < cached_frames_.first()->frame()->pts) {
if (cache_at_zero_) {
return cached_frames_.first();
}
} else if (t > cached_frames_.last()->pts) {
} else if (t > cached_frames_.last()->frame()->pts) {
if (cache_at_eof_) {
return cached_frames_.last();
@@ -1086,10 +1084,10 @@ AVFrame *FFmpegDecoderInstance::GetFrameFromCache(const int64_t &t) const
// We already have this frame in the cache, find it
for (int i=0;i<cached_frames_.size();i++) {
AVFrame* this_frame = cached_frames_.at(i);
AVFramePtr this_frame = cached_frames_.at(i);
if (this_frame->pts == t // Test for an exact match
|| (i < cached_frames_.size() - 1 && cached_frames_.at(i+1)->pts > t)) { // Or for this frame to be the "closest"
if (this_frame->frame()->pts == t // Test for an exact match
|| (i < cached_frames_.size() - 1 && cached_frames_.at(i+1)->frame()->pts > t)) { // Or for this frame to be the "closest"
return this_frame;
@@ -1100,6 +1098,11 @@ AVFrame *FFmpegDecoderInstance::GetFrameFromCache(const int64_t &t) const
return nullptr;
}
void FFmpegDecoderInstance::RemoveFramesBefore(const qint64 &t)
{
cached_frames_.remove_old_frames(t);
}
rational FFmpegDecoderInstance::sample_aspect_ratio() const
{
return av_guess_sample_aspect_ratio(fmt_ctx_, avstream_, nullptr);
@@ -1218,12 +1221,11 @@ void FFmpegDecoderInstance::ClearResources()
}
}
/*void FFmpegDecoder::ClearTimerEvent()
void FFmpegDecoder::ClearTimerEvent()
{
QMutexLocker locker(&mutex_);
cache_at_zero_ = false;
cached_frames_.remove_old_frames(QDateTime::currentMSecsSinceEpoch() - clear_timer_.interval());
}*/
our_instance_->cache_lock()->lock();
our_instance_->RemoveFramesBefore(QDateTime::currentMSecsSinceEpoch() - kMaxFrameLife);
our_instance_->cache_lock()->unlock();
}
OLIVE_NAMESPACE_EXIT
+17 -7
View File
@@ -33,6 +33,7 @@ extern "C" {
#include <QWaitCondition>
#include "audio/sampleformat.h"
#include "avframeptr.h"
#include "codec/decoder.h"
#include "codec/waveoutput.h"
#include "ffmpegframecache.h"
@@ -45,6 +46,8 @@ public:
FFmpegDecoderInstance(const char* filename, int stream_index);
virtual ~FFmpegDecoderInstance();
DISABLE_COPY_MOVE(FFmpegDecoderInstance)
bool IsValid() const;
int64_t RangeStart() const;
@@ -53,14 +56,16 @@ public:
bool CacheWillContainTime(const int64_t& t) const;
bool CacheCouldContainTime(const int64_t& t) const;
bool CacheIsEmpty() const;
AVFrame* GetFrameFromCache(const int64_t& t) const;
AVFramePtr GetFrameFromCache(const int64_t& t) const;
void RemoveFramesBefore(const qint64& t);
rational sample_aspect_ratio() const;
AVStream* stream() const;
void ClearFrameCache();
AVFrame* RetrieveFrame(const int64_t &target_ts, bool cache_is_locked);
AVFramePtr RetrieveFrame(const int64_t &target_ts, bool cache_is_locked);
/**
* @brief Uses the FFmpeg API to retrieve a packet (stored in pkt_) and decode it (stored in frame_)
@@ -77,8 +82,6 @@ public:
bool IsWorking() const;
void SetWorking(bool working);
int64_t cache_target_time_;
private:
void ClearResources();
@@ -93,7 +96,10 @@ private:
QWaitCondition cache_wait_cond_;
QMutex cache_lock_;
QList<AVFrame*> cached_frames_;
//QList<AVFramePtr> cached_frames_;
FFmpegFrameCache::Client cached_frames_;
int64_t cache_target_time_;
bool is_working_;
@@ -172,13 +178,17 @@ private:
SwsContext* scale_ctx_;
int scale_divider_;
//QTimer clear_timer_;
QTimer clear_timer_;
FFmpegDecoderInstance* our_instance_;
static QHash< Stream*, QList<FFmpegDecoderInstance*> > instances_;
static QMutex instance_lock_;
static const int kMaxFrameLife;
private slots:
//void ClearTimerEvent();
void ClearTimerEvent();
};
+43 -27
View File
@@ -26,21 +26,31 @@
OLIVE_NAMESPACE_ENTER
QMutex FFmpegFrameCache::pool_lock_;
QList<Frame*> FFmpegFrameCache::frame_pool_;
QLinkedList<AVFramePtr> FFmpegFrameCache::frame_pool_;
Frame *FFmpegFrameCache::Client::append(const VideoRenderingParams& params)
AVFramePtr FFmpegFrameCache::Client::append(int width, int height, int format)
{
Frame* f = FFmpegFrameCache::Get(params);
AVFramePtr f = FFmpegFrameCache::Get(width, height, format);
frames_.append({f, QDateTime::currentMSecsSinceEpoch()});
frames_.append(f);
return f;
}
AVFramePtr FFmpegFrameCache::Client::append(AVFrame *copy)
{
AVFramePtr f = append(copy->width, copy->height, copy->format);
av_frame_copy(f->frame(), copy);
f->frame()->pts = copy->pts;
return f;
}
void FFmpegFrameCache::Client::clear()
{
foreach (const CachedFrame& cf, frames_) {
FFmpegFrameCache::Release(cf.frame);
foreach (AVFramePtr cf, frames_) {
FFmpegFrameCache::Release(cf);
}
frames_.clear();
}
@@ -50,19 +60,19 @@ bool FFmpegFrameCache::Client::isEmpty() const
return frames_.isEmpty();
}
Frame *FFmpegFrameCache::Client::first() const
AVFramePtr FFmpegFrameCache::Client::first() const
{
return frames_.first().frame;
return frames_.first();
}
Frame *FFmpegFrameCache::Client::at(int i) const
AVFramePtr FFmpegFrameCache::Client::at(int i) const
{
return frames_.at(i).frame;
return frames_.at(i);
}
Frame *FFmpegFrameCache::Client::last() const
AVFramePtr FFmpegFrameCache::Client::last() const
{
return frames_.last().frame;
return frames_.last();
}
int FFmpegFrameCache::Client::size() const
@@ -72,48 +82,54 @@ int FFmpegFrameCache::Client::size() const
void FFmpegFrameCache::Client::accessedFirst()
{
frames_.first().accessed = QDateTime::currentMSecsSinceEpoch();
frames_.first()->access();
}
void FFmpegFrameCache::Client::accessedLast()
{
frames_.last().accessed = QDateTime::currentMSecsSinceEpoch();
frames_.last()->access();
}
void FFmpegFrameCache::Client::accessed(int i)
{
frames_[i].accessed = QDateTime::currentMSecsSinceEpoch();
frames_[i]->access();
}
void FFmpegFrameCache::Client::remove_old_frames(qint64 older_than)
{
while (!frames_.isEmpty() && frames_.first().accessed < older_than) {
FFmpegFrameCache::Release(frames_.takeFirst().frame);
while (!frames_.isEmpty() && frames_.first()->last_accessed() < older_than) {
FFmpegFrameCache::Release(frames_.takeFirst());
}
}
Frame* FFmpegFrameCache::Get(const VideoRenderingParams &params)
AVFramePtr FFmpegFrameCache::Get(int width, int height, int format)
{
QMutexLocker locker(&pool_lock_);
// See if we have a frame matching this description in the pool
for (int i=0;i<frame_pool_.size();i++) {
if (frame_pool_.at(i)->width() == params.width()
&& frame_pool_.at(i)->height() == params.height()
&& frame_pool_.at(i)->format() == params.format()) {
return frame_pool_.takeAt(i);
QLinkedList<AVFramePtr>::iterator i;
for (i=frame_pool_.begin();i!=frame_pool_.end();i++) {
AVFramePtr f = (*i);
if (f->frame()->width == width
&& f->frame()->height == height
&& f->frame()->format == format) {
frame_pool_.erase(i);
return f;
}
}
// Otherwise we'll need to create one
Frame* f = new Frame();
f->set_video_params(params);
f->allocate();
AVFramePtr f = std::make_shared<AVFrameWrapper>();
f->frame()->width = width;
f->frame()->height = height;
f->frame()->format = format;
av_frame_get_buffer(f->frame(), 1);
return f;
}
void FFmpegFrameCache::Release(Frame *f)
void FFmpegFrameCache::Release(AVFramePtr f)
{
QMutexLocker locker(&pool_lock_);
+11 -15
View File
@@ -21,10 +21,10 @@
#ifndef FFMPEGFRAMECACHE_H
#define FFMPEGFRAMECACHE_H
#include <QList>
#include <QLinkedList>
#include <QMutex>
#include "codec/frame.h"
#include "avframeptr.h"
#include "render/videoparams.h"
OLIVE_NAMESPACE_ENTER
@@ -34,22 +34,23 @@ class FFmpegFrameCache
public:
FFmpegFrameCache() = default;
static Frame* Get(const VideoRenderingParams& params);
static AVFramePtr Get(int width, int height, int format);
static void Release(Frame* f);
static void Release(AVFramePtr f);
class Client
{
public:
Client() = default;
Frame* append(const VideoRenderingParams &params);
AVFramePtr append(int width, int height, int format);
AVFramePtr append(AVFrame *copy);
void clear();
bool isEmpty() const;
Frame* first() const;
Frame* at(int i) const;
Frame* last() const;
AVFramePtr first() const;
AVFramePtr at(int i) const;
AVFramePtr last() const;
int size() const;
void accessedFirst();
@@ -59,19 +60,14 @@ public:
void remove_old_frames(qint64 older_than);
private:
struct CachedFrame {
Frame* frame;
qint64 accessed;
};
QList<CachedFrame> frames_;
QList<AVFramePtr> frames_;
};
private:
static QMutex pool_lock_;
static QList<Frame*> frame_pool_;
static QLinkedList<AVFramePtr> frame_pool_;
};