Merge branch 'olive-editor:master' into av1

This commit is contained in:
jazztickets
2022-09-16 15:20:30 -06:00
committed by GitHub
90 changed files with 2591 additions and 1735 deletions
+90 -79
View File
@@ -25,7 +25,6 @@
#include "config/config.h"
#include "common/cpuoptimize.h"
#include "common/functiontimer.h"
namespace olive {
@@ -40,50 +39,50 @@ AudioVisualWaveform::AudioVisualWaveform() :
}
}
void AudioVisualWaveform::OverwriteSamplesFromBuffer(const SampleBuffer &samples, int sample_rate, const rational &start, double target_rate, Sample& data, int &start_index, int &samples_length)
void AudioVisualWaveform::OverwriteSamplesFromBuffer(const SampleBuffer &samples, int sample_rate, const rational &start, double target_rate, Sample& data, size_t &start_index, size_t &samples_length)
{
start_index = time_to_samples(start, target_rate);
samples_length = time_to_samples(static_cast<double>(samples.sample_count()) / static_cast<double>(sample_rate), target_rate);
int end_index = start_index + samples_length;
size_t end_index = start_index + samples_length;
if (data.size() < end_index) {
data.resize(end_index);
}
double chunk_size = double(sample_rate) / double(target_rate);
for (int i=0; i<samples_length; i+=channels_) {
int src_start = qRound((double(i) * chunk_size)) / channels_;
int src_end = qMin(qRound((double(i + channels_) * chunk_size)) / channels_, samples.sample_count());
for (size_t i=0; i<samples_length; i+=channels_) {
size_t src_start = qRound((double(i) * chunk_size)) / channels_;
size_t src_end = qMin(size_t(qRound64((double(i + channels_) * chunk_size))) / channels_, samples.sample_count());
Sample summary = SumSamples(samples,
src_start,
src_end - src_start);
memcpy(&data.data()[i + start_index],
summary.constData(),
summary.data(),
summary.size() * sizeof(SamplePerChannel));
}
}
void AudioVisualWaveform::OverwriteSamplesFromMipmap(const AudioVisualWaveform::Sample &input, double input_sample_rate, int &input_start, int &input_length, const rational &start, double output_rate, AudioVisualWaveform::Sample &output_data)
void AudioVisualWaveform::OverwriteSamplesFromMipmap(const AudioVisualWaveform::Sample &input, double input_sample_rate, size_t &input_start, size_t &input_length, const rational &start, double output_rate, AudioVisualWaveform::Sample &output_data)
{
int start_index = time_to_samples(start, output_rate);
int samples_length = time_to_samples(static_cast<double>(input_length / channels_) / input_sample_rate, output_rate);
size_t start_index = time_to_samples(start, output_rate);
size_t samples_length = time_to_samples(static_cast<double>(input_length / channels_) / input_sample_rate, output_rate);
int end_index = start_index + samples_length;
size_t end_index = start_index + samples_length;
if (output_data.size() < end_index) {
output_data.resize(end_index);
}
// We guarantee mipmaps are powers of two so integer division should be perfectly accurate here
int chunk_size = input_sample_rate / output_rate;
size_t chunk_size = input_sample_rate / output_rate;
for (int i=0; i<samples_length; i+=channels_) {
Sample summary = ReSumSamples(&input.constData()[input_start + (i*chunk_size)], chunk_size * channels_, channels_);
for (size_t i=0; i<samples_length; i+=channels_) {
Sample summary = ReSumSamples(&input.data()[input_start + (i*chunk_size)], chunk_size * channels_, channels_);
memcpy(&output_data.data()[i + start_index],
summary.constData(),
summary.data(),
summary.size() * sizeof(SamplePerChannel));
}
@@ -101,14 +100,14 @@ void AudioVisualWaveform::OverwriteSamples(const SampleBuffer &samples, int samp
// Old less optimized code. Keeping this around as a reference, but the below code is at least
// 10x faster so this shouldn't be used in production.
//
// int input_start, input_length;
// size_t input_start, input_length;
// for (auto it=mipmapped_data_.begin(); it!=mipmapped_data_.end(); it++) {
// OverwriteSamplesFromBuffer(samples, sample_rate, start, it->first.toDouble(), it->second, input_start, input_length);
// }
// Process the largest mipmap directly for the samples
auto current_mipmap = mipmapped_data_.rbegin();
int input_start, input_length;
size_t input_start, input_length;
OverwriteSamplesFromBuffer(samples, sample_rate, start, current_mipmap->first.toDouble(), current_mipmap->second, input_start, input_length);
while (true) {
@@ -140,16 +139,16 @@ void AudioVisualWaveform::OverwriteSums(const AudioVisualWaveform &sums, const r
double rate_dbl = rate.toDouble();
// Get our destination sample
int our_start_index = time_to_samples(dest, rate_dbl);
size_t our_start_index = time_to_samples(dest, rate_dbl);
// Get our source sample
int their_start_index = time_to_samples(offset, rate_dbl);
size_t their_start_index = time_to_samples(offset, rate_dbl);
if (their_start_index >= their_arr.size()) {
continue;
}
// Determine how much we're copying
int copy_len = their_arr.size() - their_start_index;
size_t copy_len = their_arr.size() - their_start_index;
if (!length.isNull()) {
copy_len = qMin(copy_len, time_to_samples(length, rate_dbl));
if (copy_len == 0) {
@@ -158,13 +157,13 @@ void AudioVisualWaveform::OverwriteSums(const AudioVisualWaveform &sums, const r
}
// Determine end index of our array
int end_index = our_start_index + copy_len;
size_t end_index = our_start_index + copy_len;
if (our_arr.size() < end_index) {
our_arr.resize(end_index);
}
memcpy(reinterpret_cast<char*>(our_arr.data()) + our_start_index * sizeof(SamplePerChannel),
reinterpret_cast<const char*>(their_arr.constData()) + their_start_index * sizeof(SamplePerChannel),
reinterpret_cast<const char*>(their_arr.data()) + their_start_index * sizeof(SamplePerChannel),
copy_len * sizeof(SamplePerChannel));
}
@@ -181,9 +180,9 @@ void AudioVisualWaveform::OverwriteSilence(const rational &start, const rational
double rate_dbl = rate.toDouble();
// Get our destination sample
int our_start_index = time_to_samples(start, rate_dbl);
int our_length_index = time_to_samples(length, rate_dbl);
int our_end_index = our_start_index + our_length_index;
size_t our_start_index = time_to_samples(start, rate_dbl);
size_t our_length_index = time_to_samples(length, rate_dbl);
size_t our_end_index = our_start_index + our_length_index;
if (our_arr.size() < our_end_index) {
our_arr.resize(our_end_index);
@@ -193,53 +192,31 @@ void AudioVisualWaveform::OverwriteSilence(const rational &start, const rational
}
}
void AudioVisualWaveform::Shift(const rational &from, const rational &to)
void AudioVisualWaveform::TrimIn(rational length)
{
for (auto it=mipmapped_data_.begin(); it!=mipmapped_data_.end(); it++) {
rational rate = it->first;
double rate_dbl = rate.toDouble();
Sample& data = it->second;
int from_index = time_to_samples(from, rate_dbl);
int to_index = time_to_samples(to, rate_dbl);
if (from_index == to_index) {
continue;
}
if (from_index >= data.size()) {
continue;
}
if (from_index > to_index) {
// Shifting backwards <-
data.remove(to_index, from_index - to_index);
} else {
// Shifting forwards ->
data.insert(from_index, to_index - from_index, {0, 0});
}
if (length == 0) {
return;
}
length_ = qMax(rational(0), length_ + (to-from));
}
bool negative = (length < 0);
if (negative) {
length = -length;
}
void AudioVisualWaveform::TrimIn(const rational &length)
{
for (auto it=mipmapped_data_.begin(); it!=mipmapped_data_.end(); it++) {
rational rate = it->first;
double rate_dbl = rate.toDouble();
Sample& data = it->second;
int chop_length = time_to_samples(length, rate_dbl);
size_t chop_length = time_to_samples(length, rate_dbl);
if (chop_length == 0) {
continue;
}
if (chop_length > 0) {
data = data.mid(chop_length);
if (!negative) {
data = Sample(data.begin() + chop_length, data.end());
} else {
data.insert(0, -chop_length, SamplePerChannel());
data.insert(data.begin(), chop_length, SamplePerChannel());
}
}
@@ -255,6 +232,40 @@ AudioVisualWaveform AudioVisualWaveform::Mid(const rational &offset) const
return mid;
}
AudioVisualWaveform AudioVisualWaveform::Mid(const rational &offset, const rational &length) const
{
AudioVisualWaveform mid = *this;
mid.TrimRange(offset, length);
return mid;
}
void AudioVisualWaveform::Resize(const rational &length)
{
if (length_ == length) {
return;
}
for (auto it=mipmapped_data_.begin(); it!=mipmapped_data_.end(); it++) {
rational rate = it->first;
double rate_dbl = rate.toDouble();
Sample& data = it->second;
size_t chop_length = time_to_samples(length, rate_dbl);
data.resize(chop_length);
}
length_ = length;
}
void AudioVisualWaveform::TrimRange(const rational &in, const rational &length)
{
TrimIn(in);
Resize(length);
}
AudioVisualWaveform::Sample AudioVisualWaveform::GetSummaryFromTime(const rational &start, const rational &length) const
{
// Find mipmap that requires
@@ -262,10 +273,10 @@ AudioVisualWaveform::Sample AudioVisualWaveform::GetSummaryFromTime(const ration
double rate_dbl = using_mipmap->first.toDouble();
int start_sample = time_to_samples(start, rate_dbl);
int sample_length = time_to_samples(length, rate_dbl);
size_t start_sample = time_to_samples(start, rate_dbl);
size_t sample_length = time_to_samples(length, rate_dbl);
const QVector<AudioVisualWaveform::SamplePerChannel> &mipmap_data = using_mipmap->second;
const Sample &mipmap_data = using_mipmap->second;
// Determine if the array actually has this sample
sample_length = qMin(sample_length, mipmap_data.size() - start_sample);
@@ -273,7 +284,7 @@ AudioVisualWaveform::Sample AudioVisualWaveform::GetSummaryFromTime(const ration
// Based on the above `min`, if sample length <= 0, that means start_sample >= the size of the
// array and nothing can be returned.
if (sample_length > 0) {
return ReSumSamples(&mipmap_data.constData()[start_sample], sample_length, channels_);
return ReSumSamples(&mipmap_data.data()[start_sample], sample_length, channels_);
}
// Return null samples
@@ -304,7 +315,7 @@ void ExpandMinMaxChannel(const float *a, size_t length, float &min_val, float &m
// min and max will contain 4 min and max. To get the absolute min and max
// we need to compare the 4 values over themselves by shuffling each time.
for (int i = 0; i < 3; i++) {
for (size_t i = 0; i < 3; i++) {
max = _mm_max_ps(max, _mm_shuffle_ps(max, max, 0x93));
min = _mm_min_ps(min, _mm_shuffle_ps(min, min, 0x93));
}
@@ -323,7 +334,7 @@ void ExpandMinMaxChannel(const float *a, size_t length, float &min_val, float &m
#endif
}
AudioVisualWaveform::Sample AudioVisualWaveform::SumSamples(const SampleBuffer &samples, int start_index, int length)
AudioVisualWaveform::Sample AudioVisualWaveform::SumSamples(const SampleBuffer &samples, size_t start_index, size_t length)
{
int channels = samples.audio_params().channel_count();
AudioVisualWaveform::Sample summed_samples(channels);
@@ -333,7 +344,7 @@ AudioVisualWaveform::Sample AudioVisualWaveform::SumSamples(const SampleBuffer &
}
// for reference: this approximation is n x faster (and less accurate) for a n-tracks clip
// for (int i=start_index; i<end_index; i++) {
// for (size_t i=start_index; i<end_index; i++) {
// ExpandMinMax(summed_samples[i%channels], samples->data(i%channels)[i]);
// }
@@ -341,12 +352,12 @@ AudioVisualWaveform::Sample AudioVisualWaveform::SumSamples(const SampleBuffer &
}
AudioVisualWaveform::Sample AudioVisualWaveform::ReSumSamples(const SamplePerChannel* samples,
int nb_samples,
size_t nb_samples,
int nb_channels)
{
AudioVisualWaveform::Sample summed_samples(nb_channels);
for (int i=0;i<nb_samples;i+=nb_channels) {
for (size_t i=0;i<nb_samples;i+=nb_channels) {
for (int j=0;j<nb_channels;j++) {
const AudioVisualWaveform::SamplePerChannel& sample = samples[i + j];
@@ -365,14 +376,14 @@ AudioVisualWaveform::Sample AudioVisualWaveform::ReSumSamples(const SamplePerCha
void AudioVisualWaveform::DrawSample(QPainter *painter, const Sample& sample, int x, int y, int height, bool rectified)
{
if (sample.isEmpty()) {
if (sample.empty()) {
return;
}
int channel_height = height / sample.size();
int channel_half_height = channel_height / 2;
for (int i=0;i<sample.size();i++) {
for (size_t i=0;i<sample.size();i++) {
float max = qMin(sample.at(i).max, 1.0f);
float min = qMax(sample.at(i).min, -1.0f);
@@ -410,27 +421,27 @@ void AudioVisualWaveform::DrawWaveform(QPainter *painter, const QRect& rect, con
double rate_dbl = rate.toDouble();
const Sample& arr = using_mipmap->second;
int start_sample_index = samples.time_to_samples(start_time, rate_dbl);
size_t start_sample_index = samples.time_to_samples(start_time, rate_dbl);
if (start_sample_index >= arr.size()) {
return;
}
int next_sample_index = start_sample_index;
int sample_index;
size_t next_sample_index = start_sample_index;
size_t sample_index;
Sample summary;
int summary_index = -1;
size_t summary_index = -1;
const QRect& viewport = painter->viewport();
QPoint top_left = painter->transform().map(viewport.topLeft());
int start = qMax(rect.x(), -top_left.x());
int end = qMin(rect.right(), -top_left.x() + viewport.width());
size_t start = qMax(rect.x(), -top_left.x());
size_t end = qMin(rect.right(), -top_left.x() + viewport.width());
bool rectified = OLIVE_CONFIG("RectifiedWaveforms").toBool();
for (int i=start;i<end;i++) {
for (size_t i=start;i<end;i++) {
sample_index = next_sample_index;
if (sample_index == arr.size()) {
@@ -442,7 +453,7 @@ void AudioVisualWaveform::DrawWaveform(QPainter *painter, const QRect& rect, con
if (summary_index != sample_index) {
summary = AudioVisualWaveform::ReSumSamples(&arr.at(sample_index),
qMax(samples.channel_count(), next_sample_index - sample_index),
qMax(size_t(samples.channel_count()), next_sample_index - sample_index),
samples.channel_count());
summary_index = sample_index;
}
@@ -451,12 +462,12 @@ void AudioVisualWaveform::DrawWaveform(QPainter *painter, const QRect& rect, con
}
}
int AudioVisualWaveform::time_to_samples(const rational &time, double sample_rate) const
size_t AudioVisualWaveform::time_to_samples(const rational &time, double sample_rate) const
{
return time_to_samples(time.toDouble(), sample_rate);
}
int AudioVisualWaveform::time_to_samples(const double &time, double sample_rate) const
size_t AudioVisualWaveform::time_to_samples(const double &time, double sample_rate) const
{
return qFloor(time * sample_rate) * channels_;
}
+13 -10
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@@ -43,7 +43,7 @@ public:
float max;
};
using Sample = QVector<SamplePerChannel>;
using Sample = std::vector<SamplePerChannel>;
int channel_count() const
{
@@ -90,17 +90,20 @@ public:
void OverwriteSilence(const rational &start, const rational &length);
void Shift(const rational& from, const rational& to);
void TrimIn(const rational &length);
void TrimIn(rational length);
AudioVisualWaveform Mid(const rational &offset) const;
AudioVisualWaveform Mid(const rational &offset, const rational &length) const;
void Resize(const rational &length);
void TrimRange(const rational &in, const rational &length);
Sample GetSummaryFromTime(const rational& start, const rational& length) const;
static Sample SumSamples(const SampleBuffer &samples, int start_index, int length);
static Sample SumSamples(const SampleBuffer &samples, size_t start_index, size_t length);
static Sample ReSumSamples(const SamplePerChannel *samples, int nb_samples, int nb_channels);
static Sample ReSumSamples(const SamplePerChannel *samples, size_t nb_samples, int nb_channels);
static void DrawSample(QPainter* painter, const Sample &sample, int x, int y, int height, bool rectified);
@@ -111,12 +114,12 @@ public:
static const rational kMaximumSampleRate;
private:
void OverwriteSamplesFromBuffer(const SampleBuffer &samples, int sample_rate, const rational& start, double target_rate, Sample &data, int &start_index, int &samples_length);
void OverwriteSamplesFromBuffer(const SampleBuffer &samples, int sample_rate, const rational& start, double target_rate, Sample &data, size_t &start_index, size_t &samples_length);
void OverwriteSamplesFromMipmap(const Sample& input, double input_sample_rate, int &input_start, int &input_length, const rational& start, double output_rate, Sample &output_data);
void OverwriteSamplesFromMipmap(const Sample& input, double input_sample_rate, size_t &input_start, size_t &input_length, const rational& start, double output_rate, Sample &output_data);
int time_to_samples(const rational& time, double sample_rate) const;
int time_to_samples(const double& time, double sample_rate) const;
size_t time_to_samples(const rational& time, double sample_rate) const;
size_t time_to_samples(const double& time, double sample_rate) const;
std::map<rational, Sample>::const_iterator GetMipmapForScale(double scale) const;
+129 -109
View File
@@ -43,7 +43,6 @@ extern "C" {
#include "common/define.h"
#include "common/ffmpegutils.h"
#include "common/filefunctions.h"
#include "common/functiontimer.h"
#include "common/timecodefunctions.h"
#include "render/framehashcache.h"
#include "render/diskmanager.h"
@@ -164,125 +163,117 @@ TexturePtr FFmpegDecoder::RetrieveVideoInternal(const RetrieveVideoParams &p)
p.divider);
TexturePtr tex = nullptr;
bool hwscale = true;
// Attempt to use GLSL shader for faster YUV to RGB conversion
if (hwscale) {
if (src_fmt == AV_PIX_FMT_YUV420P
|| src_fmt == AV_PIX_FMT_YUV422P
|| src_fmt == AV_PIX_FMT_YUV444P
|| src_fmt == AV_PIX_FMT_YUV420P10LE
|| src_fmt == AV_PIX_FMT_YUV422P10LE
|| src_fmt == AV_PIX_FMT_YUV444P10LE
|| src_fmt == AV_PIX_FMT_YUV420P12LE
|| src_fmt == AV_PIX_FMT_YUV422P12LE
|| src_fmt == AV_PIX_FMT_YUV444P12LE) {
if (Yuv2RgbShader.isNull()) {
// Compile shader
Yuv2RgbShader = p.renderer->CreateNativeShader(ShaderCode(FileFunctions::ReadFileAsString(QStringLiteral(":/shaders/yuv2rgb.frag"))));
if (IsPixelFormatGLSLCompatible(static_cast<AVPixelFormat>(src_fmt))) {
if (Yuv2RgbShader.isNull()) {
// Compile shader
Yuv2RgbShader = p.renderer->CreateNativeShader(ShaderCode(FileFunctions::ReadFileAsString(QStringLiteral(":/shaders/yuv2rgb.frag"))));
}
if (!Yuv2RgbShader.isNull()) {
int px_size;
int bits_per_pixel;
switch (src_fmt) {
case AV_PIX_FMT_YUV420P:
case AV_PIX_FMT_YUV422P:
case AV_PIX_FMT_YUV444P:
default:
px_size = 1;
bits_per_pixel = 8;
break;
case AV_PIX_FMT_YUV420P10LE:
case AV_PIX_FMT_YUV422P10LE:
case AV_PIX_FMT_YUV444P10LE:
px_size = 2;
bits_per_pixel = 10;
break;
case AV_PIX_FMT_YUV420P12LE:
case AV_PIX_FMT_YUV422P12LE:
case AV_PIX_FMT_YUV444P12LE:
px_size = 2;
bits_per_pixel = 12;
break;
}
if (!Yuv2RgbShader.isNull()) {
int px_size;
int bits_per_pixel;
switch (src_fmt) {
case AV_PIX_FMT_YUV420P:
case AV_PIX_FMT_YUV422P:
case AV_PIX_FMT_YUV444P:
default:
px_size = 1;
bits_per_pixel = 8;
break;
case AV_PIX_FMT_YUV420P10LE:
case AV_PIX_FMT_YUV422P10LE:
case AV_PIX_FMT_YUV444P10LE:
px_size = 2;
bits_per_pixel = 10;
break;
case AV_PIX_FMT_YUV420P12LE:
case AV_PIX_FMT_YUV422P12LE:
case AV_PIX_FMT_YUV444P12LE:
px_size = 2;
bits_per_pixel = 12;
break;
}
AVFrame *hw_in = f.get();
VideoParams plane_params = vp;
plane_params.set_channel_count(1);
VideoParams plane_params = vp;
plane_params.set_channel_count(1);
plane_params.set_format(native_internal_pix_fmt_);
if (p.divider != 1) {
ApplyScaler(f.get());
hw_in = working_frame_;
} else {
// Fallback: shouldn't ever really get here, but just in case
plane_params.set_divider(1);
plane_params.set_format(native_internal_pix_fmt_);
TexturePtr y_plane = p.renderer->CreateTexture(plane_params, f->data[0], f->linesize[0] / px_size);
if (src_fmt == AV_PIX_FMT_YUV420P
|| src_fmt == AV_PIX_FMT_YUV422P
|| src_fmt == AV_PIX_FMT_YUV420P10LE
|| src_fmt == AV_PIX_FMT_YUV422P10LE
|| src_fmt == AV_PIX_FMT_YUV420P12LE
|| src_fmt == AV_PIX_FMT_YUV422P12LE) {
plane_params.set_width(plane_params.width()/2);
}
if (src_fmt == AV_PIX_FMT_YUV420P
|| src_fmt == AV_PIX_FMT_YUV420P10LE
|| src_fmt == AV_PIX_FMT_YUV420P12LE) {
plane_params.set_height(plane_params.height()/2);
}
TexturePtr u_plane = p.renderer->CreateTexture(plane_params, f->data[1], f->linesize[1] / px_size);
TexturePtr v_plane = p.renderer->CreateTexture(plane_params, f->data[2], f->linesize[2] / px_size);
ShaderJob job;
job.Insert(QStringLiteral("y_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(y_plane)));
job.Insert(QStringLiteral("u_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(u_plane)));
job.Insert(QStringLiteral("v_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(v_plane)));
job.Insert(QStringLiteral("bits_per_pixel"), NodeValue(NodeValue::kInt, bits_per_pixel));
job.Insert(QStringLiteral("full_range"), NodeValue(NodeValue::kBoolean, f->color_range == AVCOL_RANGE_JPEG));
const int *yuv_coeffs = sws_getCoefficients(FFmpegUtils::GetSwsColorspaceFromAVColorSpace(f.get()->colorspace));
job.Insert(QStringLiteral("yuv_crv"), NodeValue(NodeValue::kInt, yuv_coeffs[0]));
job.Insert(QStringLiteral("yuv_cgu"), NodeValue(NodeValue::kInt, yuv_coeffs[2]));
job.Insert(QStringLiteral("yuv_cgv"), NodeValue(NodeValue::kInt, yuv_coeffs[3]));
job.Insert(QStringLiteral("yuv_cbu"), NodeValue(NodeValue::kInt, yuv_coeffs[1]));
int interlacing = 0;
if (p.src_interlacing != VideoParams::kInterlaceNone) {
if (frame_rate_tb_.isNull()) {
frame_rate_tb_ = av_guess_frame_rate(instance_.fmt_ctx(), instance_.avstream(), f.get());
// Double frame rate for interlaced fields
frame_rate_tb_ *= 2;
// Flip frame rate so it can be used as a timebase
frame_rate_tb_.flip();
}
int64_t req = Timecode::time_to_timestamp(p.time, frame_rate_tb_);
int64_t frm = Timecode::rescale_timestamp(f->pts - instance_.avstream()->start_time, instance_.avstream()->time_base, frame_rate_tb_);
bool first = (req == frm);
bool top_first = (p.src_interlacing == VideoParams::kInterlacedTopFirst);
interlacing = (first == top_first) ? 1 : 2;
}
job.Insert(QStringLiteral("interlacing"), NodeValue(NodeValue::kInt, interlacing));
job.Insert(QStringLiteral("pixel_height"), NodeValue(NodeValue::kInt, f->height));
tex = p.renderer->CreateTexture(vp);
p.renderer->BlitToTexture(Yuv2RgbShader, job, tex.get(), false);
}
TexturePtr y_plane = p.renderer->CreateTexture(plane_params, hw_in->data[0], hw_in->linesize[0] / px_size);
if (src_fmt == AV_PIX_FMT_YUV420P
|| src_fmt == AV_PIX_FMT_YUV422P
|| src_fmt == AV_PIX_FMT_YUV420P10LE
|| src_fmt == AV_PIX_FMT_YUV422P10LE
|| src_fmt == AV_PIX_FMT_YUV420P12LE
|| src_fmt == AV_PIX_FMT_YUV422P12LE) {
plane_params.set_width(plane_params.width()/2);
}
if (src_fmt == AV_PIX_FMT_YUV420P
|| src_fmt == AV_PIX_FMT_YUV420P10LE
|| src_fmt == AV_PIX_FMT_YUV420P12LE) {
plane_params.set_height(plane_params.height()/2);
}
TexturePtr u_plane = p.renderer->CreateTexture(plane_params, hw_in->data[1], hw_in->linesize[1] / px_size);
TexturePtr v_plane = p.renderer->CreateTexture(plane_params, hw_in->data[2], hw_in->linesize[2] / px_size);
ShaderJob job;
job.Insert(QStringLiteral("y_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(y_plane)));
job.Insert(QStringLiteral("u_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(u_plane)));
job.Insert(QStringLiteral("v_channel"), NodeValue(NodeValue::kTexture, QVariant::fromValue(v_plane)));
job.Insert(QStringLiteral("bits_per_pixel"), NodeValue(NodeValue::kInt, bits_per_pixel));
job.Insert(QStringLiteral("full_range"), NodeValue(NodeValue::kBoolean, f->color_range == AVCOL_RANGE_JPEG));
const int *yuv_coeffs = sws_getCoefficients(FFmpegUtils::GetSwsColorspaceFromAVColorSpace(f.get()->colorspace));
job.Insert(QStringLiteral("yuv_crv"), NodeValue(NodeValue::kInt, yuv_coeffs[0]));
job.Insert(QStringLiteral("yuv_cgu"), NodeValue(NodeValue::kInt, yuv_coeffs[2]));
job.Insert(QStringLiteral("yuv_cgv"), NodeValue(NodeValue::kInt, yuv_coeffs[3]));
job.Insert(QStringLiteral("yuv_cbu"), NodeValue(NodeValue::kInt, yuv_coeffs[1]));
int interlacing = 0;
if (p.src_interlacing != VideoParams::kInterlaceNone) {
if (frame_rate_tb_.isNull()) {
frame_rate_tb_ = av_guess_frame_rate(instance_.fmt_ctx(), instance_.avstream(), f.get());
// Double frame rate for interlaced fields
frame_rate_tb_ *= 2;
// Flip frame rate so it can be used as a timebase
frame_rate_tb_.flip();
}
int64_t req = Timecode::time_to_timestamp(p.time, frame_rate_tb_);
int64_t frm = Timecode::rescale_timestamp(f->pts - instance_.avstream()->start_time, instance_.avstream()->time_base, frame_rate_tb_);
bool first = (req == frm);
bool top_first = (p.src_interlacing == VideoParams::kInterlacedTopFirst);
interlacing = (first == top_first) ? 1 : 2;
}
job.Insert(QStringLiteral("interlacing"), NodeValue(NodeValue::kInt, interlacing));
job.Insert(QStringLiteral("pixel_height"), NodeValue(NodeValue::kInt, f->height));
tex = p.renderer->CreateTexture(vp);
p.renderer->BlitToTexture(Yuv2RgbShader, job, tex.get(), false);
}
}
if (!tex) {
// Fallback to software pixel format conversion
int r;
r = av_buffersrc_add_frame_flags(buffersrc_ctx_, f.get(), AV_BUFFERSRC_FLAG_KEEP_REF);
if (r < 0) {
return nullptr;
}
r = av_buffersink_get_frame(buffersink_ctx_, working_frame_);
if (r < 0) {
if (!ApplyScaler(f.get())) {
return nullptr;
}
@@ -717,6 +708,19 @@ const char *FFmpegDecoder::GetInterlacingModeInFFmpeg(VideoParams::Interlacing i
}
}
bool FFmpegDecoder::IsPixelFormatGLSLCompatible(AVPixelFormat f)
{
return f == AV_PIX_FMT_YUV420P
|| f == AV_PIX_FMT_YUV422P
|| f == AV_PIX_FMT_YUV444P
|| f == AV_PIX_FMT_YUV420P10LE
|| f == AV_PIX_FMT_YUV422P10LE
|| f == AV_PIX_FMT_YUV444P10LE
|| f == AV_PIX_FMT_YUV420P12LE
|| f == AV_PIX_FMT_YUV422P12LE
|| f == AV_PIX_FMT_YUV444P12LE;
}
/* OLD UNUSED CODE: Keeping this around in case the code proves useful
void FFmpegDecoder::CacheFrameToDisk(AVFrame *f)
@@ -1023,7 +1027,7 @@ bool FFmpegDecoder::InitScaler(AVFrame *input, const RetrieveVideoParams& params
}
// Add format filter if necessary
if (ideal_pix_fmt != input->format) {
if (ideal_pix_fmt != input->format && !IsPixelFormatGLSLCompatible(static_cast<AVPixelFormat>(input->format))) {
AVFilterContext* format_filter;
snprintf(filter_args, kFilterArgSz, "pix_fmts=%u", ideal_pix_fmt);
@@ -1097,6 +1101,22 @@ void FFmpegDecoder::RemoveFirstFrame()
cache_at_zero_ = false;
}
bool FFmpegDecoder::ApplyScaler(AVFrame *in)
{
int r;
r = av_buffersrc_add_frame_flags(buffersrc_ctx_, in, AV_BUFFERSRC_FLAG_KEEP_REF);
if (r < 0) {
return false;
}
r = av_buffersink_get_frame(buffersink_ctx_, working_frame_);
if (r < 0) {
return false;
}
return true;
}
int FFmpegDecoder::MaximumQueueSize()
{
// Fairly arbitrary size. This used to need to be the number of current threads to ensure any
+4
View File
@@ -142,6 +142,8 @@ private:
static const char* GetInterlacingModeInFFmpeg(VideoParams::Interlacing interlacing);
static bool IsPixelFormatGLSLCompatible(AVPixelFormat f);
AVFramePtr GetFrameFromCache(const int64_t &t) const;
void ClearFrameCache();
@@ -150,6 +152,8 @@ private:
void RemoveFirstFrame();
bool ApplyScaler(AVFrame *in);
static int MaximumQueueSize();
RetrieveVideoParams filter_params_;
+19 -29
View File
@@ -36,7 +36,7 @@ SampleBuffer::SampleBuffer(const AudioParams &audio_params, const rational &leng
allocate();
}
SampleBuffer::SampleBuffer(const AudioParams &audio_params, int samples_per_channel) :
SampleBuffer::SampleBuffer(const AudioParams &audio_params, size_t samples_per_channel) :
audio_params_(audio_params),
sample_count_per_channel_(samples_per_channel)
{
@@ -58,12 +58,7 @@ void SampleBuffer::set_audio_params(const AudioParams &params)
audio_params_ = params;
}
const int &SampleBuffer::sample_count() const
{
return sample_count_per_channel_;
}
void SampleBuffer::set_sample_count(const int &sample_count)
void SampleBuffer::set_sample_count(const size_t &sample_count)
{
if (is_allocated()) {
qWarning() << "Tried to set sample count on allocated sample buffer";
@@ -73,11 +68,6 @@ void SampleBuffer::set_sample_count(const int &sample_count)
sample_count_per_channel_ = sample_count;
}
bool SampleBuffer::is_allocated() const
{
return !data_.isEmpty();
}
void SampleBuffer::allocate()
{
if (!audio_params_.is_valid()) {
@@ -113,10 +103,10 @@ void SampleBuffer::reverse()
return;
}
int half_nb_sample = sample_count_per_channel_ / 2;
size_t half_nb_sample = sample_count_per_channel_ / 2;
for (int i=0;i<half_nb_sample;i++) {
int opposite_ind = sample_count_per_channel_ - i - 1;
for (size_t i=0;i<half_nb_sample;i++) {
size_t opposite_ind = sample_count_per_channel_ - i - 1;
for (int j=0;j<audio_params_.channel_count();j++) {
std::swap(data_[j][i], data_[j][opposite_ind]);
@@ -133,15 +123,15 @@ void SampleBuffer::speed(double speed)
sample_count_per_channel_ = qRound(static_cast<double>(sample_count_per_channel_) / speed);
QVector< QVector<float> > output_data;
std::vector< std::vector<float> > output_data;
output_data.resize(audio_params_.channel_count());
for (int i=0; i<audio_params_.channel_count(); i++) {
output_data[i].resize(sample_count_per_channel_);
}
for (int i=0;i<sample_count_per_channel_;i++) {
int input_index = qFloor(static_cast<double>(i) * speed);
for (size_t i=0;i<sample_count_per_channel_;i++) {
size_t input_index = qFloor(static_cast<double>(i) * speed);
for (int j=0;j<audio_params_.channel_count();j++) {
output_data[j][i] = data_[j][input_index];
@@ -161,12 +151,12 @@ void SampleBuffer::transform_volume(float f)
void SampleBuffer::transform_volume_for_channel(int channel, float volume)
{
float *cdat = data_[channel].data();
int unopt_start = 0;
size_t unopt_start = 0;
#if defined(Q_PROCESSOR_X86) || defined(Q_PROCESSOR_ARM)
__m128 mult = _mm_load1_ps(&volume);
unopt_start = (sample_count_per_channel_ / 4) * 4;
for (int j=0; j<unopt_start; j+=4) {
for (size_t j=0; j<unopt_start; j+=4) {
float *here = cdat + j;
__m128 samples = _mm_loadu_ps(here);
__m128 multiplied = _mm_mul_ps(samples, mult);
@@ -174,19 +164,19 @@ void SampleBuffer::transform_volume_for_channel(int channel, float volume)
}
#endif
for (int j=unopt_start; j<sample_count_per_channel_; j++) {
for (size_t j=unopt_start; j<sample_count_per_channel_; j++) {
cdat[j] *= volume;
}
}
void SampleBuffer::transform_volume_for_sample(int sample_index, float volume)
void SampleBuffer::transform_volume_for_sample(size_t sample_index, float volume)
{
for (int i=0;i<audio_params().channel_count();i++) {
transform_volume_for_sample_on_channel(sample_index, i, volume);
}
}
void SampleBuffer::transform_volume_for_sample_on_channel(int sample_index, int channel, float volume)
void SampleBuffer::transform_volume_for_sample_on_channel(size_t sample_index, int channel, float volume)
{
data_[channel][sample_index] *= volume;
}
@@ -203,12 +193,12 @@ void SampleBuffer::silence()
silence(0, sample_count_per_channel_);
}
void SampleBuffer::silence(int start_sample, int end_sample)
void SampleBuffer::silence(size_t start_sample, size_t end_sample)
{
silence_bytes(start_sample * sizeof(float), end_sample * sizeof(float));
}
void SampleBuffer::silence_bytes(int start_byte, int end_byte)
void SampleBuffer::silence_bytes(size_t start_byte, size_t end_byte)
{
if (!is_allocated()) {
qWarning() << "Tried to fill an unallocated sample buffer";
@@ -220,7 +210,7 @@ void SampleBuffer::silence_bytes(int start_byte, int end_byte)
}
}
void SampleBuffer::set(int channel, const float *data, int sample_offset, int sample_length)
void SampleBuffer::set(int channel, const float *data, size_t sample_offset, size_t sample_length)
{
if (!is_allocated()) {
qWarning() << "Tried to fill an unallocated sample buffer";
@@ -236,14 +226,14 @@ void SampleBuffer::clamp_channel(int channel)
const float max = 1.0f;
float *cdat = data_[channel].data();
int unopt_start = 0;
size_t unopt_start = 0;
#if defined(Q_PROCESSOR_X86) || defined(Q_PROCESSOR_ARM)
__m128 min_sse = _mm_load1_ps(&min);
__m128 max_sse = _mm_load1_ps(&max);
unopt_start = (sample_count_per_channel_ / 4) * 4;
for (int j=0; j<unopt_start; j+=4) {
for (size_t j=0; j<unopt_start; j+=4) {
float *here = cdat + j;
__m128 samples = _mm_loadu_ps(here);
@@ -254,7 +244,7 @@ void SampleBuffer::clamp_channel(int channel)
}
#endif
for (int sample=unopt_start; sample<sample_count(); sample++) {
for (size_t sample=unopt_start; sample<sample_count(); sample++) {
float &s = data(channel)[sample];
s = std::clamp(s, min, max);
}
+16 -16
View File
@@ -40,13 +40,13 @@ class SampleBuffer
public:
SampleBuffer();
SampleBuffer(const AudioParams& audio_params, const rational& length);
SampleBuffer(const AudioParams& audio_params, int samples_per_channel);
SampleBuffer(const AudioParams& audio_params, size_t samples_per_channel);
const AudioParams& audio_params() const;
void set_audio_params(const AudioParams& params);
const int &sample_count() const;
void set_sample_count(const int &sample_count);
const size_t &sample_count() const { return sample_count_per_channel_; }
void set_sample_count(const size_t &sample_count);
void set_sample_count(const rational &length)
{
set_sample_count(audio_params_.time_to_samples(length));
@@ -59,13 +59,13 @@ public:
const float* data(int channel) const
{
return data_.at(channel).constData();
return data_.at(channel).data();
}
QVector<float *> to_raw_ptrs()
std::vector<float *> to_raw_ptrs()
{
QVector<float *> r(data_.size());
for (int i=0; i<r.size(); i++) {
std::vector<float *> r(data_.size());
for (size_t i=0; i<r.size(); i++) {
r[i] = data_[i].data();
}
return r;
@@ -73,7 +73,7 @@ public:
int channel_count() const { return data_.size(); }
bool is_allocated() const;
bool is_allocated() const { return !data_.empty(); }
void allocate();
void destroy();
@@ -81,17 +81,17 @@ public:
void speed(double speed);
void transform_volume(float f);
void transform_volume_for_channel(int channel, float volume);
void transform_volume_for_sample(int sample_index, float volume);
void transform_volume_for_sample_on_channel(int sample_index, int channel, float volume);
void transform_volume_for_sample(size_t sample_index, float volume);
void transform_volume_for_sample_on_channel(size_t sample_index, int channel, float volume);
void clamp();
void silence();
void silence(int start_sample, int end_sample);
void silence_bytes(int start_byte, int end_byte);
void silence(size_t start_sample, size_t end_sample);
void silence_bytes(size_t start_byte, size_t end_byte);
void set(int channel, const float* data, int sample_offset, int sample_length);
void set(int channel, const float* data, int sample_length)
void set(int channel, const float* data, size_t sample_offset, size_t sample_length);
void set(int channel, const float* data, size_t sample_length)
{
set(channel, data, 0, sample_length);
}
@@ -101,9 +101,9 @@ private:
AudioParams audio_params_;
int sample_count_per_channel_;
size_t sample_count_per_channel_;
QVector< QVector<float> > data_;
std::vector< std::vector<float> > data_;
};
-3
View File
@@ -34,9 +34,6 @@ set(OLIVE_SOURCES
common/ffmpegutils.h
common/filefunctions.cpp
common/filefunctions.h
common/flipmodifiers.cpp
common/flipmodifiers.h
common/functiontimer.h
common/html.cpp
common/html.h
common/jobtime.cpp
-34
View File
@@ -1,34 +0,0 @@
/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 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/>.
***/
#ifndef FLIPMODIFIERS_H
#define FLIPMODIFIERS_H
#include <QtCore>
#include "common/define.h"
namespace olive {
Qt::KeyboardModifiers FlipControlAndShiftModifiers(Qt::KeyboardModifiers e);
}
#endif // FLIPMODIFIERS_H
-55
View File
@@ -1,55 +0,0 @@
/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 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/>.
***/
#ifndef FUNCTIONTIMER_H
#define FUNCTIONTIMER_H
#include <QDateTime>
#include <QDebug>
#define TIME_THIS_FUNCTION FunctionTimer __f(__FUNCTION__)
#define START_TIMING {FunctionTimer *__f = new FunctionTimer(__FUNCTION__)
#define STOP_TIMING delete __f;}void()
class FunctionTimer {
public:
FunctionTimer(const char* s)
{
name_ = s;
time_ = QDateTime::currentMSecsSinceEpoch();
}
~FunctionTimer()
{
qint64 elapsed = (QDateTime::currentMSecsSinceEpoch() - time_);
if (elapsed > 1) {
qDebug() << name_ << "took" << elapsed;
}
}
private:
const char* name_;
qint64 time_;
};
#endif // FUNCTIONTIMER_H
+17
View File
@@ -145,6 +145,23 @@ QStringList QtUtils::WordWrapString(const QString &s, const QFontMetrics &fm, in
return list;
}
Qt::KeyboardModifiers QtUtils::FlipControlAndShiftModifiers(Qt::KeyboardModifiers e)
{
if (e & Qt::ControlModifier & Qt::ShiftModifier) {
return e;
}
if (e & Qt::ShiftModifier) {
e |= Qt::ControlModifier;
e &= ~Qt::ShiftModifier;
} else if (e & Qt::ControlModifier) {
e |= Qt::ShiftModifier;
e &= ~Qt::ControlModifier;
}
return e;
}
void QtUtils::SetComboBoxData(QComboBox *cb, int data)
{
for (int i=0; i<cb->count(); i++) {
+2
View File
@@ -53,6 +53,8 @@ public:
static QStringList WordWrapString(const QString &s, const QFontMetrics &fm, int bounding_width);
static Qt::KeyboardModifiers FlipControlAndShiftModifiers(Qt::KeyboardModifiers e);
static void SetComboBoxData(QComboBox *cb, int data);
template <typename T>
+6 -1
View File
@@ -312,6 +312,11 @@ TimeRangeListFrameIterator::TimeRangeListFrameIterator(const TimeRangeList &list
UpdateIndexIfNecessary();
}
rational TimeRangeListFrameIterator::Snap(const rational &r) const
{
return Timecode::snap_time_to_timebase(r, timebase_, Timecode::kFloor);
}
bool TimeRangeListFrameIterator::GetNext(rational *out)
{
if (!HasNext()) {
@@ -368,7 +373,7 @@ void TimeRangeListFrameIterator::UpdateIndexIfNecessary()
range_index_++;
if (range_index_ < list_.size()) {
current_ = Timecode::snap_time_to_timebase(list_.at(range_index_).in(), timebase_, Timecode::kCeil);
current_ = Snap(list_.at(range_index_).in());
}
}
}
+2
View File
@@ -207,6 +207,8 @@ public:
TimeRangeListFrameIterator();
TimeRangeListFrameIterator(const TimeRangeList &list, const rational &timebase);
rational Snap(const rational &r) const;
bool GetNext(rational *out);
bool HasNext() const;
+4
View File
@@ -32,6 +32,7 @@
#include "common/filefunctions.h"
#include "common/xmlutils.h"
#include "core.h"
#include "timeline/timelinecommon.h"
#include "ui/colorcoding.h"
#include "ui/style/style.h"
#include "window/mainwindow/mainwindow.h"
@@ -104,6 +105,9 @@ void Config::SetDefaults()
SetEntryInternal(QStringLiteral("ReassocLinToNonLin"), NodeValue::kBoolean, false);
SetEntryInternal(QStringLiteral("PreviewNonFloatDontAskAgain"), NodeValue::kBoolean, false);
SetEntryInternal(QStringLiteral("TimelineThumbnailMode"), NodeValue::kInt, Timeline::kThumbnailInOut);
SetEntryInternal(QStringLiteral("TimelineWaveformMode"), NodeValue::kInt, Timeline::kWaveformsEnabled);
SetEntryInternal(QStringLiteral("DefaultVideoTransition"), NodeValue::kText, QStringLiteral("org.olivevideoeditor.Olive.crossdissolve"));
SetEntryInternal(QStringLiteral("DefaultAudioTransition"), NodeValue::kText, QStringLiteral("org.olivevideoeditor.Olive.crossdissolve"));
SetEntryInternal(QStringLiteral("DefaultTransitionLength"), NodeValue::kRational, QVariant::fromValue(rational(1)));
+17 -4
View File
@@ -394,10 +394,7 @@ void Core::DialogExportShow()
rational time;
if (GetSequenceToExport(&viewer, &time)) {
ExportDialog* ed = new ExportDialog(viewer, main_window_);
ed->SetTime(time);
connect(ed, &ExportDialog::finished, ed, &ExportDialog::deleteLater);
ed->open();
OpenExportDialogForViewer(viewer, time, false);
}
}
@@ -1253,6 +1250,15 @@ void Core::OpenNodeInViewer(ViewerOutput *viewer)
main_window_->OpenNodeInViewer(viewer);
}
void Core::OpenExportDialogForViewer(ViewerOutput *viewer, const rational &time, bool start_still_image)
{
ExportDialog* ed = new ExportDialog(viewer, start_still_image, main_window_);
ed->SetTime(time);
connect(ed, &ExportDialog::finished, ed, &ExportDialog::deleteLater);
ed->open();
connect(ed, &ExportDialog::RequestImportFile, this, &Core::ImportSingleFile);
}
void Core::CheckForAutoRecoveries()
{
QFile autorecovery_index(GetAutoRecoveryIndexFilename());
@@ -1416,6 +1422,13 @@ void Core::OpenProjectInternal(const QString &filename, bool recovery_project)
task_dialog->open();
}
void Core::ImportSingleFile(const QString &f)
{
if (Project *p = GetActiveProject()) {
ImportFiles({f}, p->root());
}
}
int Core::CountFilesInFileList(const QFileInfoList &filenames)
{
int file_count = 0;
+4
View File
@@ -313,6 +313,8 @@ public:
void OpenNodeInViewer(ViewerOutput* viewer);
void OpenExportDialogForViewer(ViewerOutput *viewer, const rational &time, bool start_still_image);
public slots:
/**
* @brief Starts an open file dialog to load a project from file
@@ -654,6 +656,8 @@ private slots:
*/
void OpenProjectInternal(const QString& filename, bool recovery_project = false);
void ImportSingleFile(const QString &f);
};
}
+41 -11
View File
@@ -44,9 +44,10 @@ namespace olive {
#define super QDialog
ExportDialog::ExportDialog(ViewerOutput *viewer_node, QWidget *parent) :
ExportDialog::ExportDialog(ViewerOutput *viewer_node, bool stills_only_mode, QWidget *parent) :
super(parent),
viewer_node_(viewer_node)
viewer_node_(viewer_node),
stills_only_mode_(stills_only_mode)
{
QHBoxLayout* layout = new QHBoxLayout(this);
@@ -156,6 +157,30 @@ ExportDialog::ExportDialog(ViewerOutput *viewer_node, QWidget *parent) :
row++;
{
QGroupBox *options_group = new QGroupBox();
preferences_layout->addWidget(options_group, row, 0, 1, 4);
QGridLayout *options_layout = new QGridLayout(options_group);
int opt_row = 0;
export_bkg_box_ = new QCheckBox(tr("Run In Background"));
export_bkg_box_->setToolTip(tr("Exporting in the background allows you to continue using Olive while "
"exporting, but may result in slower export speeds, and may"
"severely impact editing and playback performance."));
options_layout->addWidget(export_bkg_box_, opt_row, 0);
import_file_after_export_ = new QCheckBox(tr("Import Result After Export"));
options_layout->addWidget(import_file_after_export_, opt_row, 1);
connect(export_bkg_box_, &QCheckBox::toggled, import_file_after_export_, [this](bool e){
import_file_after_export_->setEnabled(!e);
});
}
row++;
QHBoxLayout *btn_layout = new QHBoxLayout();
btn_layout->setMargin(0);
preferences_layout->addLayout(btn_layout, row, 0, 1, 4);
@@ -170,12 +195,6 @@ ExportDialog::ExportDialog(ViewerOutput *viewer_node, QWidget *parent) :
btn_layout->addWidget(cancel_btn);
connect(cancel_btn, &QPushButton::clicked, this, &ExportDialog::reject);
export_bkg_box_ = new QCheckBox(tr("Run In Background"));
export_bkg_box_->setToolTip(tr("Exporting in the background allows you to continue using Olive while "
"exporting, but may result in slower export speeds, and may"
"severely impact editing and playback performance."));
btn_layout->addWidget(export_bkg_box_);
btn_layout->addStretch();
splitter->addWidget(preferences_area_);
@@ -238,7 +257,7 @@ ExportDialog::ExportDialog(ViewerOutput *viewer_node, QWidget *parent) :
subtitles_enabled_->setEnabled(has_subtitle_tracks);
// If the viewer already has cached params, use them
if (viewer_node_->GetLastUsedEncodingParams().IsValid()) {
if (!stills_only_mode_ && viewer_node_->GetLastUsedEncodingParams().IsValid()) {
SetParams(viewer_node_->GetLastUsedEncodingParams());
} else {
SetDefaults();
@@ -370,6 +389,11 @@ void ExportDialog::ExportFinished()
// If this task was cancelled, we stay open so the user can potentially queue another export
} else {
// Accept this dialog and close
if (import_file_after_export_) {
QString filename = filename_edit_->text().trimmed();
emit RequestImportFile(filename);
}
this->accept();
}
}
@@ -572,7 +596,11 @@ bool ExportDialog::SequenceHasSubtitles() const
void ExportDialog::SetDefaults()
{
format_combobox_->SetFormat(ExportFormat::kFormatMPEG4Video);
if (!stills_only_mode_) {
format_combobox_->SetFormat(ExportFormat::kFormatMPEG4Video);
} else {
format_combobox_->SetFormat(ExportFormat::kFormatPNG);
}
FormatChanged(format_combobox_->GetFormat());
VideoParams vp = viewer_node_->GetVideoParams();
@@ -745,7 +773,9 @@ void ExportDialog::done(int r)
{
preview_viewer_->ConnectViewerNode(nullptr);
viewer_node_->SetLastUsedEncodingParams(GenerateParams());
if (!stills_only_mode_) {
viewer_node_->SetLastUsedEncodingParams(GenerateParams());
}
super::done(r);
}
+10 -1
View File
@@ -43,7 +43,10 @@ class ExportDialog : public QDialog
{
Q_OBJECT
public:
ExportDialog(ViewerOutput* viewer_node, QWidget* parent = nullptr);
ExportDialog(ViewerOutput* viewer_node, bool stills_only_mode, QWidget* parent = nullptr);
ExportDialog(ViewerOutput* viewer_node, QWidget* parent = nullptr) :
ExportDialog(viewer_node, false, parent)
{}
rational GetSelectedTimebase() const;
void SetSelectedTimebase(const rational &r);
@@ -64,6 +67,9 @@ public:
public slots:
virtual void done(int r) override;
signals:
void RequestImportFile(const QString &s);
private:
void AddPreferencesTab(QWidget *inner_widget, const QString &title);
@@ -115,6 +121,9 @@ private:
QWidget* preferences_area_;
QCheckBox *export_bkg_box_;
QCheckBox *import_file_after_export_;
bool stills_only_mode_;
private slots:
void BrowseFilename();
+4 -5
View File
@@ -159,7 +159,7 @@ void SequenceDialog::accept()
sequence_->SetVideoParams(video_params);
sequence_->SetAudioParams(audio_params);
sequence_->SetLabel(name_field_->text());
sequence_->video_frame_cache()->SetEnabled(parameter_tab_->GetSelectedPreviewAutoCache());
sequence_->SetVideoAutoCacheEnabled(parameter_tab_->GetSelectedPreviewAutoCache());
}
QDialog::accept();
@@ -178,7 +178,6 @@ void SequenceDialog::SetAsDefaultClicked()
OLIVE_CONFIG("DefaultSequenceInterlacing") = parameter_tab_->GetSelectedVideoInterlacingMode();
OLIVE_CONFIG("DefaultSequenceAudioFrequency") = parameter_tab_->GetSelectedAudioSampleRate();
OLIVE_CONFIG("DefaultSequenceAudioLayout") = QVariant::fromValue(parameter_tab_->GetSelectedAudioChannelLayout());
OLIVE_CONFIG("DefaultSequenceAutoCache") = QVariant::fromValue(parameter_tab_->GetSelectedPreviewAutoCache());
}
}
@@ -194,7 +193,7 @@ SequenceDialog::SequenceParamCommand::SequenceParamCommand(Sequence* s,
old_video_params_(s->GetVideoParams()),
old_audio_params_(s->GetAudioParams()),
old_name_(s->GetLabel()),
old_autocache_(s->video_frame_cache()->IsEnabled())
old_autocache_(s->IsVideoAutoCacheEnabled())
{
}
@@ -212,7 +211,7 @@ void SequenceDialog::SequenceParamCommand::redo()
sequence_->SetAudioParams(new_audio_params_);
}
sequence_->SetLabel(new_name_);
sequence_->video_frame_cache()->SetEnabled(new_autocache_);
sequence_->SetVideoAutoCacheEnabled(new_autocache_);
}
void SequenceDialog::SequenceParamCommand::undo()
@@ -224,7 +223,7 @@ void SequenceDialog::SequenceParamCommand::undo()
sequence_->SetAudioParams(old_audio_params_);
}
sequence_->SetLabel(old_name_);
sequence_->video_frame_cache()->SetEnabled(old_autocache_);
sequence_->SetVideoAutoCacheEnabled(old_autocache_);
}
}
@@ -73,10 +73,13 @@ SequenceDialogParameterTab::SequenceDialogParameterTab(Sequence* sequence, QWidg
preview_layout->addWidget(new QLabel(tr("Quality:")), row, 0);
preview_format_field_ = new PixelFormatComboBox(false);
preview_layout->addWidget(preview_format_field_, row, 1, 1, 2);
/* TEMP: Disable sequence auto-cache, wanna see if clip cache supersedes it.
row++;
preview_layout->addWidget(new QLabel(tr("Auto-Cache:")), row, 0);
preview_layout->addWidget(preview_autocache_field_, row, 1);*/
preview_autocache_field_ = new QCheckBox();
preview_layout->addWidget(preview_autocache_field_, row, 1);
layout->addWidget(preview_group);
// Set values based on input sequence
@@ -89,7 +92,7 @@ SequenceDialogParameterTab::SequenceDialogParameterTab(Sequence* sequence, QWidg
interlacing_combo_->SetInterlaceMode(vp.interlacing());
preview_resolution_field_->SetDivider(vp.divider());
preview_format_field_->SetPixelFormat(vp.format());
preview_autocache_field_->setChecked(sequence->video_frame_cache()->IsEnabled());
preview_autocache_field_->setChecked(sequence->IsVideoAutoCacheEnabled());
audio_sample_rate_field_->SetSampleRate(ap.sample_rate());
audio_channels_field_->SetChannelLayout(ap.channel_layout());
@@ -66,7 +66,9 @@ public:
bool GetSelectedPreviewAutoCache() const
{
return preview_autocache_field_->isChecked();
//return preview_autocache_field_->isChecked();
// TEMP: Disable sequence auto-cache, wanna see if clip cache supersedes it.
return false;
}
public slots:
@@ -101,7 +101,7 @@ QTreeWidgetItem* SequenceDialogPresetTab::CreateFolder(const QString &name)
QTreeWidgetItem *SequenceDialogPresetTab::CreateHDPresetFolder(const QString &name, int width, int height, int divider)
{
const VideoParams::Format default_format = static_cast<VideoParams::Format>(OLIVE_CONFIG("OfflinePixelFormat").toInt());
const bool default_autocache = OLIVE_CONFIG("DefaultSequenceAutoCache").toBool();
const bool default_autocache = false;
QTreeWidgetItem* parent = CreateFolder(name);
AddStandardItem(parent, std::make_shared<SequencePreset>(tr("%1 23.976 FPS").arg(name),
width,
@@ -164,7 +164,7 @@ QTreeWidgetItem *SequenceDialogPresetTab::CreateHDPresetFolder(const QString &na
QTreeWidgetItem *SequenceDialogPresetTab::CreateSDPresetFolder(const QString &name, int width, int height, const rational& frame_rate, const rational &standard_par, const rational &wide_par, int divider)
{
const VideoParams::Format default_format = static_cast<VideoParams::Format>(OLIVE_CONFIG("OfflinePixelFormat").toInt());
const bool default_autocache = OLIVE_CONFIG("DefaultSequenceAutoCache").toBool();
const bool default_autocache = false;
QTreeWidgetItem* parent = CreateFolder(name);
preset_tree_->addTopLevelItem(parent);
AddStandardItem(parent, std::make_shared<SequencePreset>(tr("%1 Standard").arg(name),
+3
View File
@@ -96,6 +96,7 @@ public:
void set_track(Track* track)
{
track_ = track;
emit TrackChanged(track_);
}
bool is_enabled() const;
@@ -126,6 +127,8 @@ signals:
void PreviewChanged();
void TrackChanged(Track *track);
protected:
virtual void InputValueChangedEvent(const QString& input, int element) override;
+241 -9
View File
@@ -20,6 +20,7 @@
#include "clip.h"
#include "config/config.h"
#include "node/output/track/track.h"
#include "node/output/viewer/viewer.h"
#include "widget/slider/floatslider.h"
@@ -34,6 +35,7 @@ const QString ClipBlock::kMediaInInput = QStringLiteral("media_in_in");
const QString ClipBlock::kSpeedInput = QStringLiteral("speed_in");
const QString ClipBlock::kReverseInput = QStringLiteral("reverse_in");
const QString ClipBlock::kMaintainAudioPitchInput = QStringLiteral("maintain_audio_pitch_in");
const QString ClipBlock::kAutoCacheInput = QStringLiteral("autocache_in");
const QString ClipBlock::kLoopModeInput = QStringLiteral("loop_in");
ClipBlock::ClipBlock() :
@@ -53,6 +55,8 @@ ClipBlock::ClipBlock() :
AddInput(kMaintainAudioPitchInput, NodeValue::kBoolean, false, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
AddInput(kAutoCacheInput, NodeValue::kBoolean, false, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
PrependInput(kBufferIn, NodeValue::kNone, InputFlags(kInputFlagNotKeyframable));
//SetValueHintForInput(kBufferIn, ValueHint(NodeValue::kBuffer));
@@ -105,17 +109,14 @@ void ClipBlock::set_length_and_media_in(const rational &length)
return;
}
if (!reverse()) {
// Calculate media_in adjustment
waveform_.TrimIn(SequenceToMediaTime(this->length() - length, kSTMIgnoreSpeed | kSTMIgnoreLoop) - media_in());
set_media_in(SequenceToMediaTime(this->length() - length, kSTMIgnoreLoop));
} else {
// Trim waveform out point
waveform_.TrimIn(this->length() - length);
}
rational old_length = this->length();
super::set_length_and_media_in(length);
if (!reverse()) {
// Calculate media_in adjustment
set_media_in(SequenceToMediaTime(old_length - length, kSTMIgnoreLoop));
}
}
rational ClipBlock::media_in() const
@@ -126,6 +127,25 @@ rational ClipBlock::media_in() const
void ClipBlock::set_media_in(const rational &media_in)
{
SetStandardValue(kMediaInInput, QVariant::fromValue(media_in));
RequestInvalidatedFromConnected();
}
void ClipBlock::SetAutocache(bool e)
{
SetStandardValue(kAutoCacheInput, e);
}
void ClipBlock::DiscardCache()
{
if (Node *connected = GetConnectedOutput(kBufferIn)) {
Track::Type type = GetTrackType();
if (type == Track::kVideo) {
connected->video_frame_cache()->Invalidate(TimeRange(RATIONAL_MIN, RATIONAL_MAX));
} else if (type == Track::kAudio) {
connected->audio_playback_cache()->Invalidate(TimeRange(RATIONAL_MIN, RATIONAL_MAX));
}
}
}
rational ClipBlock::SequenceToMediaTime(const rational &sequence_time, uint64_t flags) const
@@ -199,12 +219,139 @@ rational ClipBlock::MediaToSequenceTime(const rational &media_time) const
return sequence_time;
}
void ClipBlock::RequestRangeFromConnected(const TimeRange &range)
{
Track::Type type = GetTrackType();
if (type == Track::kVideo || type == Track::kAudio) {
if (Node *connected = GetConnectedOutput(kBufferIn)) {
TimeRange max_range = media_range();
if (type == Track::kVideo) {
// Handle thumbnails
RequestRangeForCache(connected->thumbnail_cache(), max_range, range, true, false);
{
TimeRange thumb_range = range.Intersected(max_range);
if (GetAdjustedThumbnailRange(&thumb_range)) {
emit connected->thumbnail_cache()->Request(thumb_range);
}
}
// Handle video cache
RequestRangeForCache(connected->video_frame_cache(), max_range, range, true, IsAutocaching());
} else if (type == Track::kAudio) {
// Handle waveforms
RequestRangeForCache(connected->waveform_cache(), max_range, range, true, (OLIVE_CONFIG("TimelineWaveformMode").toInt() == Timeline::kWaveformsEnabled));
// Handle audio cache
RequestRangeForCache(connected->audio_playback_cache(), max_range, range, true, IsAutocaching());
}
}
}
}
void ClipBlock::RequestInvalidatedFromConnected(bool force_all, const TimeRange &intersect)
{
Track::Type type = GetTrackType();
if (type == Track::kVideo || type == Track::kAudio) {
if (Node *connected = GetConnectedOutput(kBufferIn)) {
TimeRange max_range = media_range();
if (!intersect.length().isNull()) {
max_range = max_range.Intersected(intersect);
}
if (type == Track::kVideo) {
// Handle thumbnails
TimeRange thumb_range = max_range;
if (GetAdjustedThumbnailRange(&thumb_range)) {
RequestInvalidatedForCache(connected->thumbnail_cache(), thumb_range);
}
// Handle video cache
if (IsAutocaching() || force_all) {
RequestInvalidatedForCache(connected->video_frame_cache(), max_range);
}
} else if (type == Track::kAudio) {
// Handle waveforms
if (OLIVE_CONFIG("TimelineWaveformMode").toInt() == Timeline::kWaveformsEnabled) {
RequestInvalidatedForCache(connected->waveform_cache(), max_range);
}
// Handle audio cache
if (IsAutocaching() || force_all) {
RequestInvalidatedForCache(connected->audio_playback_cache(), max_range);
}
}
}
}
}
void ClipBlock::RequestRangeForCache(PlaybackCache *cache, const TimeRange &max_range, const TimeRange &range, bool invalidate, bool request)
{
TimeRange r = range.Intersected(max_range);
if (invalidate) {
cache->Invalidate(r);
}
if (request) {
emit cache->Request(r);
}
}
void ClipBlock::RequestInvalidatedForCache(PlaybackCache *cache, const TimeRange &max_range)
{
TimeRangeList invalid = cache->GetInvalidatedRanges(max_range);
for (const PlaybackCache::Passthrough &p : cache->GetPassthroughs()) {
invalid.remove(p);
}
for (const TimeRange &r : invalid) {
RequestRangeForCache(cache, max_range, r, false, true);
}
}
bool ClipBlock::GetAdjustedThumbnailRange(TimeRange *r) const
{
switch (static_cast<Timeline::ThumbnailMode>(OLIVE_CONFIG("TimelineThumbnailMode").toInt())) {
case Timeline::kThumbnailOff:
// Don't cache any range
return false;
case Timeline::kThumbnailInOut:
{
// Only cache in point
rational in = this->media_range().in();
if (r->Contains(in)) {
// Cache only the in point
*r = TimeRange(in, in + thumbnail_cache()->GetTimebase());
return true;
} else {
// Cache nothing
return false;
}
}
case Timeline::kThumbnailOn:
// Cache entire range
return true;
}
// Fallback
return true;
}
void ClipBlock::InvalidateCache(const TimeRange& range, const QString& from, int element, InvalidateCacheOptions options)
{
Q_UNUSED(element)
// If signal is from texture input, transform all times from media time to sequence time
if (from == kBufferIn) {
// Render caches where necessary
if (AreCachesEnabled()) {
RequestRangeFromConnected(range);
}
// Adjust range from media time to sequence time
TimeRange adj;
double speed_value = speed();
@@ -256,6 +403,59 @@ void ClipBlock::LinkChangeEvent()
}
}
void ClipBlock::InputConnectedEvent(const QString &input, int element, Node *output)
{
super::InputConnectedEvent(input, element, output);
if (input == kBufferIn) {
connect(output->thumbnail_cache(), &FrameHashCache::Invalidated, this, &Block::PreviewChanged);
connect(output->waveform_cache(), &AudioPlaybackCache::Invalidated, this, &Block::PreviewChanged);
connect(output->video_frame_cache(), &FrameHashCache::Invalidated, this, &Block::PreviewChanged);
connect(output->audio_playback_cache(), &AudioPlaybackCache::Invalidated, this, &Block::PreviewChanged);
connect(output->thumbnail_cache(), &FrameHashCache::Validated, this, &Block::PreviewChanged);
connect(output->waveform_cache(), &AudioPlaybackCache::Validated, this, &Block::PreviewChanged);
connect(output->video_frame_cache(), &FrameHashCache::Validated, this, &Block::PreviewChanged);
connect(output->audio_playback_cache(), &AudioPlaybackCache::Validated, this, &Block::PreviewChanged);
}
}
void ClipBlock::InputDisconnectedEvent(const QString &input, int element, Node *output)
{
super::InputDisconnectedEvent(input, element, output);
if (input == kBufferIn) {
disconnect(output->thumbnail_cache(), &FrameHashCache::Invalidated, this, &Block::PreviewChanged);
disconnect(output->waveform_cache(), &AudioPlaybackCache::Invalidated, this, &Block::PreviewChanged);
disconnect(output->video_frame_cache(), &FrameHashCache::Invalidated, this, &Block::PreviewChanged);
disconnect(output->audio_playback_cache(), &AudioPlaybackCache::Invalidated, this, &Block::PreviewChanged);
disconnect(output->thumbnail_cache(), &FrameHashCache::Validated, this, &Block::PreviewChanged);
disconnect(output->waveform_cache(), &AudioPlaybackCache::Validated, this, &Block::PreviewChanged);
disconnect(output->video_frame_cache(), &FrameHashCache::Validated, this, &Block::PreviewChanged);
disconnect(output->audio_playback_cache(), &AudioPlaybackCache::Validated, this, &Block::PreviewChanged);
}
}
void ClipBlock::InputValueChangedEvent(const QString &input, int element)
{
super::InputValueChangedEvent(input, element);
if (input == kAutoCacheInput) {
if (IsAutocaching()) {
RequestInvalidatedFromConnected();
} else {
Track::Type type = GetTrackType();
if (Node *connected = GetConnectedOutput(kBufferIn)) {
if (type == Track::kVideo) {
emit connected->video_frame_cache()->CancelAll();
} else if (type == Track::kAudio) {
emit connected->audio_playback_cache()->CancelAll();
}
}
}
}
}
TimeRange ClipBlock::InputTimeAdjustment(const QString& input, int element, const TimeRange& input_time) const
{
Q_UNUSED(element)
@@ -304,6 +504,38 @@ void ClipBlock::Retranslate()
SetComboBoxStrings(kLoopModeInput, {tr("None"), tr("Loop"), tr("Clamp")});
}
void ClipBlock::AddCachePassthroughFrom(ClipBlock *other)
{
if (auto tc = this->video_frame_cache()) {
if (auto oc = other->video_frame_cache()) {
tc->SetPassthrough(oc);
}
}
if (auto tc = this->audio_playback_cache()) {
if (auto oc = other->audio_playback_cache()) {
tc->SetPassthrough(oc);
}
}
if (auto tc = this->thumbnails()) {
if (auto oc = other->thumbnails()) {
tc->SetPassthrough(oc);
}
}
if (auto tc = this->waveform()) {
if (auto oc = other->waveform()) {
tc->SetPassthrough(oc);
}
}
}
void ClipBlock::ConnectedToPreviewEvent()
{
RequestInvalidatedFromConnected();
}
TimeRange ClipBlock::media_range() const
{
return InputTimeAdjustment(kBufferIn, -1, TimeRange(0, length()));
+79 -5
View File
@@ -24,6 +24,7 @@
#include "audio/audiovisualwaveform.h"
#include "codec/decoder.h"
#include "node/block/block.h"
#include "node/output/track/track.h"
namespace olive {
@@ -47,9 +48,23 @@ public:
virtual void set_length_and_media_out(const rational &length) override;
virtual void set_length_and_media_in(const rational &length) override;
Track::Type GetTrackType() const
{
if (track()) {
return track()->type();
} else {
return Track::kNone;
}
}
rational media_in() const;
void set_media_in(const rational& media_in);
bool IsAutocaching() const { return GetStandardValue(kAutoCacheInput).toBool(); }
void SetAutocache(bool e);
void DiscardCache();
virtual void InvalidateCache(const TimeRange& range, const QString& from, int element, InvalidateCacheOptions options) override;
virtual TimeRange InputTimeAdjustment(const QString& input, int element, const TimeRange& input_time) const override;
@@ -60,6 +75,8 @@ public:
virtual void Retranslate() override;
void RequestInvalidatedFromConnected(bool force_all = false, const TimeRange &intersect = TimeRange());
double speed() const
{
return GetStandardValue(kSpeedInput).toDouble();
@@ -110,16 +127,61 @@ public:
return block_links_;
}
AudioVisualWaveform& waveform()
FrameHashCache *connected_video_cache() const
{
return waveform_;
if (Node *n = GetConnectedOutput(kBufferIn)) {
return n->video_frame_cache();
} else {
return nullptr;
}
}
AudioPlaybackCache *connected_audio_cache() const
{
if (Node *n = GetConnectedOutput(kBufferIn)) {
return n->audio_playback_cache();
} else {
return nullptr;
}
}
FrameHashCache *thumbnails()
{
if (Node *n = GetConnectedOutput(kBufferIn)) {
return n->thumbnail_cache();
} else {
return nullptr;
}
}
AudioWaveformCache *waveform()
{
if (Node *n = GetConnectedOutput(kBufferIn)) {
return n->waveform_cache();
} else {
return nullptr;
}
}
void AddCachePassthroughFrom(ClipBlock *other);
ViewerOutput *connected_viewer() const
{
return connected_viewer_;
}
virtual TimeRange GetVideoCacheRange() const override
{
return TimeRange(0, length());
}
virtual TimeRange GetAudioCacheRange() const override
{
return TimeRange(0, length());
}
virtual void ConnectedToPreviewEvent() override;
TimeRange media_range() const;
/**
@@ -142,9 +204,17 @@ public:
static const QString kMaintainAudioPitchInput;
static const QString kLoopModeInput;
static const QString kAutoCacheInput;
protected:
virtual void LinkChangeEvent() override;
virtual void InputConnectedEvent(const QString& input, int element, Node *output) override;
virtual void InputDisconnectedEvent(const QString& input, int element, Node *output) override;
virtual void InputValueChangedEvent(const QString& input, int element) override;
private:
enum SequenceToMediaTimeFlag
{
@@ -158,6 +228,13 @@ private:
rational MediaToSequenceTime(const rational& media_time) const;
void RequestRangeFromConnected(const TimeRange &range);
void RequestRangeForCache(PlaybackCache *cache, const TimeRange &max_range, const TimeRange &range, bool invalidate, bool request);
void RequestInvalidatedForCache(PlaybackCache *cache, const TimeRange &max_range);
bool GetAdjustedThumbnailRange(TimeRange *r) const;
QVector<Block*> block_links_;
TransitionBlock* in_transition_;
@@ -166,11 +243,8 @@ private:
ViewerOutput *connected_viewer_;
private:
AudioVisualWaveform waveform_;
rational last_media_in_;
};
}
@@ -55,7 +55,7 @@ ShaderCode CrossDissolveTransition::GetShaderCode(const ShaderRequest &request)
void CrossDissolveTransition::SampleJobEvent(const SampleBuffer &from_samples, const SampleBuffer &to_samples, SampleBuffer &out_samples, double time_in) const
{
for (int i=0; i<out_samples.sample_count(); i++) {
for (size_t i=0; i<out_samples.sample_count(); i++) {
double this_sample_time = out_samples.audio_params().samples_to_time(i).toDouble() + time_in;
double progress = GetTotalProgress(this_sample_time);
@@ -70,9 +70,9 @@ void CrossDissolveTransition::SampleJobEvent(const SampleBuffer &from_samples, c
if (to_samples.is_allocated()) {
// Offset input samples from the end
int in_index = i - (out_samples.sample_count() - to_samples.sample_count());
if (in_index >= 0) {
size_t remain = (out_samples.sample_count() - to_samples.sample_count());
if (i >= remain) {
qint64 in_index = i - remain;
out_samples.data(j)[i] += to_samples.data(j)[in_index] * TransformCurve(progress);
}
}
@@ -272,7 +272,21 @@ void ColorManager::InputValueChangedEvent(const QString &input, int element)
if (input == kConfigFilenameIn) {
try {
QString old_default_cs = GetDefaultInputColorSpace();
SetConfig(OCIO::Config::CreateFromFile(GetConfigFilename().toUtf8()));
// Set new default colorspace appropriately
int new_default = 0;
QStringList available_cs = ListAvailableColorspaces();
for (int i=0; i<available_cs.size(); i++) {
if (available_cs.at(i).compare(old_default_cs, Qt::CaseInsensitive)) {
new_default = i;
break;
}
}
SetStandardValue(kDefaultColorspaceIn, new_default);
emit ConfigChanged();
} catch (OCIO::Exception&) {}
-1
View File
@@ -25,7 +25,6 @@
#include <QTextDocument>
#include "common/cpuoptimize.h"
#include "common/functiontimer.h"
namespace olive {
+4
View File
@@ -39,6 +39,10 @@ void NodeGraph::Clear()
{
// By deleting the last nodes first, we assume that nodes that are most important are deleted last
// (e.g. Project's ColorManager or ProjectSettingsNode.
for (auto it=node_children_.cbegin(); it!=node_children_.cend(); it++) {
(*it)->SetCachesEnabled(false);
}
while (!node_children_.isEmpty()) {
delete node_children_.last();
}
+4 -4
View File
@@ -301,21 +301,21 @@ void MathNodeBase::ValueInternal(Operation operation, Pairing pairing, const QSt
SampleBuffer samples_a = val_a.toSamples();
SampleBuffer samples_b = val_b.toSamples();
int max_samples = qMax(samples_a.sample_count(), samples_b.sample_count());
int min_samples = qMin(samples_a.sample_count(), samples_b.sample_count());
size_t max_samples = qMax(samples_a.sample_count(), samples_b.sample_count());
size_t min_samples = qMin(samples_a.sample_count(), samples_b.sample_count());
SampleBuffer mixed_samples = SampleBuffer(samples_a.audio_params(), max_samples);
for (int i=0;i<mixed_samples.audio_params().channel_count();i++) {
// Mix samples that are in both buffers
for (int j=0;j<min_samples;j++) {
for (size_t j=0;j<min_samples;j++) {
mixed_samples.data(i)[j] = PerformAll<float, float>(operation, samples_a.data(i)[j], samples_b.data(i)[j]);
}
}
if (max_samples > min_samples) {
// Fill in remainder space with 0s
int remainder = max_samples - min_samples;
size_t remainder = max_samples - min_samples;
const SampleBuffer &larger_buffer = (max_samples == samples_a.sample_count()) ? samples_a : samples_b;
+26 -8
View File
@@ -48,13 +48,17 @@ Node::Node() :
can_be_deleted_(true),
override_color_(-1),
folder_(nullptr),
cache_result_(false),
flags_(kNone)
flags_(kNone),
caches_enabled_(true)
{
AddInput(kEnabledInput, NodeValue::kBoolean, true);
video_cache_ = new FrameHashCache(this);
thumbnail_cache_ = new ThumbnailCache(this);
audio_cache_ = new AudioPlaybackCache(this);
waveform_cache_ = new AudioWaveformCache(this);
waveform_cache_->SetSavingEnabled(false);
}
Node::~Node()
@@ -232,6 +236,14 @@ void Node::DisconnectEdge(Node *output, const NodeInput &input)
}
}
void Node::CopyCacheUuidsFrom(Node *n)
{
video_cache_->SetUuid(n->video_cache_->GetUuid());
audio_cache_->SetUuid(n->audio_cache_->GetUuid());
thumbnail_cache_->SetUuid(n->thumbnail_cache_->GetUuid());
waveform_cache_->SetUuid(n->waveform_cache_->GetUuid());
}
QString Node::GetInputName(const QString &id) const
{
const Input* i = GetInternalInputData(id);
@@ -932,12 +944,18 @@ void Node::InvalidateCache(const TimeRange &range, const QString &from, int elem
Q_UNUSED(from)
Q_UNUSED(element)
if (range.in() != range.out()) {
if (video_cache_->IsEnabled()) {
video_frame_cache()->Invalidate(range);
}
if (audio_cache_->IsEnabled()) {
audio_playback_cache()->Invalidate(range);
if (AreCachesEnabled()) {
if (range.in() != range.out()) {
TimeRange vr = range.Intersected(GetVideoCacheRange());
if (vr.length() != 0) {
video_frame_cache()->Invalidate(vr);
thumbnail_cache()->Invalidate(vr);
}
TimeRange ar = range.Intersected(GetAudioCacheRange());
if (ar.length() != 0) {
audio_playback_cache()->Invalidate(ar);
waveform_cache()->Invalidate(ar);
}
}
}
+24 -12
View File
@@ -40,6 +40,7 @@
#include "node/param.h"
#include "render/audioparams.h"
#include "render/audioplaybackcache.h"
#include "render/audiowaveformcache.h"
#include "render/framehashcache.h"
#include "render/job/generatejob.h"
#include "render/job/samplejob.h"
@@ -226,11 +227,24 @@ public:
return video_cache_;
}
ThumbnailCache* thumbnail_cache() const
{
return thumbnail_cache_;
}
AudioPlaybackCache* audio_playback_cache() const
{
return audio_cache_;
}
AudioWaveformCache* waveform_cache() const
{
return waveform_cache_;
}
virtual TimeRange GetVideoCacheRange() const { return TimeRange(); }
virtual TimeRange GetAudioCacheRange() const { return TimeRange(); }
struct Position
{
Position(const QPointF &p = QPointF(0, 0), bool e = false)
@@ -339,6 +353,11 @@ public:
static void DisconnectEdge(Node *output, const NodeInput& input);
void CopyCacheUuidsFrom(Node *n);
bool AreCachesEnabled() const { return caches_enabled_; }
void SetCachesEnabled(bool e) { caches_enabled_ = e; }
virtual QString GetInputName(const QString& id) const;
void SetInputName(const QString& id, const QString& name);
@@ -914,16 +933,6 @@ public:
folder_ = folder;
}
bool GetCacheTextures() const
{
return cache_result_;
}
void SetCacheTextures(bool e)
{
cache_result_ = e;
}
class ArrayRemoveCommand : public UndoCommand
{
public:
@@ -983,6 +992,7 @@ public:
void SetInputFlags(const QString &input, const InputFlags &f);
virtual void LoadFinishedEvent(){}
virtual void ConnectedToPreviewEvent(){}
static void SetValueAtTime(const NodeInput &input, const rational &time, const QVariant &value, int track, MultiUndoCommand *command, bool insert_on_all_tracks_if_no_key);
@@ -1388,8 +1398,6 @@ private:
Folder* folder_;
bool cache_result_;
QMap<InputElementPair, ValueHint> value_hints_;
PositionMap context_positions_;
@@ -1401,8 +1409,12 @@ private:
QString effect_input_;
FrameHashCache *video_cache_;
ThumbnailCache *thumbnail_cache_;
AudioPlaybackCache *audio_cache_;
AudioWaveformCache *waveform_cache_;
bool caches_enabled_;
private slots:
/**
+34 -21
View File
@@ -37,7 +37,9 @@ const QString ViewerOutput::kSamplesInput = QStringLiteral("samples_in");
ViewerOutput::ViewerOutput(bool create_buffer_inputs, bool create_default_streams) :
last_length_(0),
video_length_(0),
audio_length_(0)
audio_length_(0),
autocache_input_video_(false),
autocache_input_audio_(false)
{
AddInput(kVideoParamsInput, NodeValue::kVideoParams, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable | kInputFlagArray | kInputFlagHidden));
@@ -214,26 +216,31 @@ void ViewerOutput::set_default_parameters()
OLIVE_CONFIG("DefaultSequenceAudioLayout").toULongLong(),
AudioParams::kInternalFormat
));
video_frame_cache()->SetEnabled(OLIVE_CONFIG("DefaultSequenceAutoCache").toBool());
}
void ViewerOutput::InvalidateCache(const TimeRange& range, const QString& from, int element, InvalidateCacheOptions options)
{
Q_UNUSED(element)
if (Node *connected = GetConnectedOutput(from, element)) {
if (from == kTextureInput) {
//emit connected->thumbnail_cache()->Request(range.Intersected(max_range), PlaybackCache::kPreviewsOnly);
if (autocache_input_video_) {
TimeRange max_range = InputTimeAdjustment(from, element, TimeRange(0, GetVideoLength()));
emit connected->video_frame_cache()->Request(range.Intersected(max_range));
}
} else if (from == kSamplesInput) {
TimeRange max_range = InputTimeAdjustment(from, element, TimeRange(0, GetAudioLength()));
emit connected->waveform_cache()->Request(range.Intersected(max_range));
if (autocache_input_audio_) {
emit connected->audio_playback_cache()->Request(range.Intersected(max_range));
}
}
}
VerifyLength();
super::InvalidateCache(range, from, element, options);
// TEMP: Just to restore the intended functionality for now. This will be removed later.
if (from == kTextureInput) {
TimeRange r = range.Intersected(TimeRange(0, GetVideoLength()));
if (r.length() != 0) video_frame_cache()->Invalidate(r);
} else if (from == kSamplesInput) {
TimeRange r = range.Intersected(TimeRange(0, GetAudioLength()));
if (r.length() != 0) audio_playback_cache()->Invalidate(r);
}
}
QVector<Track::Reference> ViewerOutput::GetEnabledStreamsAsReferences() const
@@ -310,6 +317,8 @@ void ViewerOutput::InputConnectedEvent(const QString &input, int element, Node *
{
if (input == kTextureInput) {
emit TextureInputChanged();
} else if (input == kSamplesInput) {
connect(output->waveform_cache(), &AudioWaveformCache::Validated, this, &ViewerOutput::ConnectedWaveformChanged);
}
super::InputConnectedEvent(input, element, output);
@@ -319,6 +328,8 @@ void ViewerOutput::InputDisconnectedEvent(const QString &input, int element, Nod
{
if (input == kTextureInput) {
emit TextureInputChanged();
} else if (input == kSamplesInput) {
disconnect(output->waveform_cache(), &AudioWaveformCache::Validated, this, &ViewerOutput::ConnectedWaveformChanged);
}
super::InputDisconnectedEvent(input, element, output);
@@ -376,6 +387,17 @@ Node::ValueHint ViewerOutput::GetConnectedSampleValueHint()
return GetValueHintForInput(kSamplesInput);
}
void ViewerOutput::ConnectedToPreviewEvent()
{
if (Node *connected = GetConnectedOutput(kSamplesInput)) {
TimeRange max_range = InputTimeAdjustment(kSamplesInput, -1, TimeRange(0, GetAudioLength()));
TimeRangeList invalid = connected->waveform_cache()->GetInvalidatedRanges(max_range);
for (const TimeRange &r : invalid) {
emit connected->waveform_cache()->Request(r);
}
}
}
void ViewerOutput::Value(const NodeValueRow &value, const NodeGlobals &globals, NodeValueTable *table) const
{
if (HasInputWithID(kTextureInput)) {
@@ -415,10 +437,6 @@ void ViewerOutput::InputValueChangedEvent(const QString &input, int element)
}
if (frame_rate_changed) {
// FIXME: Will need to find a better way to update this soon
//if (video_frame_cache()->IsEnabled()) {
video_frame_cache()->SetTimebase(new_video_params.frame_rate_as_time_base());
//}
emit FrameRateChanged(new_video_params.frame_rate());
}
@@ -438,11 +456,6 @@ void ViewerOutput::InputValueChangedEvent(const QString &input, int element)
emit AudioParamsChanged();
// FIXME: Will need to find a better way to update this soon
//if (audio_playback_cache()->IsEnabled()) {
audio_playback_cache()->SetParameters(GetAudioParams());
//}
cached_audio_params_ = new_audio_params;
}
+29
View File
@@ -132,6 +132,15 @@ public:
return GetVideoStreamCount() + GetAudioStreamCount() + GetSubtitleStreamCount();
}
const AudioWaveformCache *GetConnectedWaveform()
{
if (Node *n = GetConnectedSampleOutput()) {
return n->waveform_cache();
} else {
return nullptr;
}
}
bool HasEnabledVideoStreams() const;
bool HasEnabledAudioStreams() const;
bool HasEnabledSubtitleStreams() const;
@@ -147,6 +156,16 @@ public:
TimelineWorkArea *GetWorkArea() const { return workarea_; }
TimelineMarkerList *GetMarkers() const { return markers_; }
virtual TimeRange GetVideoCacheRange() const override
{
return TimeRange(0, GetVideoLength());
}
virtual TimeRange GetAudioCacheRange() const override
{
return TimeRange(0, GetAudioLength());
}
QVector<Track::Reference> GetEnabledStreamsAsReferences() const;
QVector<VideoParams> GetEnabledVideoStreams() const;
@@ -163,6 +182,11 @@ public:
virtual ValueHint GetConnectedSampleValueHint();
virtual void ConnectedToPreviewEvent() override;
bool IsVideoAutoCacheEnabled() const { qDebug() << "sequence ac is a stub"; return false; }
void SetVideoAutoCacheEnabled(bool e) { qDebug() << "sequence ac is a stub"; }
virtual void Value(const NodeValueRow& value, const NodeGlobals &globals, NodeValueTable *table) const override;
const EncodingParams &GetLastUsedEncodingParams() const { return last_used_encoding_params_; }
@@ -193,6 +217,8 @@ signals:
void SampleRateChanged(int sr);
void ConnectedWaveformChanged();
public slots:
void VerifyLength();
@@ -220,6 +246,9 @@ private:
TimelineWorkArea *workarea_;
TimelineMarkerList *markers_;
bool autocache_input_video_;
bool autocache_input_audio_;
EncodingParams last_used_encoding_params_;
};
+2 -2
View File
@@ -47,8 +47,6 @@ Footage::Footage(const QString &filename) :
cancelled_(nullptr),
total_stream_count_(0)
{
SetCacheTextures(true);
PrependInput(kFilenameInput, NodeValue::kFile, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
Clear();
@@ -61,6 +59,8 @@ Footage::Footage(const QString &filename) :
check_timer->setInterval(5000);
connect(check_timer, &QTimer::timeout, this, &Footage::CheckFootage);
check_timer->start();
connect(this->waveform_cache(), &AudioWaveformCache::Validated, this, &ViewerOutput::ConnectedWaveformChanged);
}
void Footage::Retranslate()
@@ -104,7 +104,11 @@ ProjectSerializer220403::LoadData ProjectSerializer220403::Load(Project *project
qWarning() << "Failed to find node with ID" << id;
reader->skipCurrentElement();
} else {
// Disable cache while node is being loaded (we'll re-enable it later)
node->SetCachesEnabled(false);
LoadNode(node, xml_node_data, reader);
node->setParent(project);
}
}
@@ -326,6 +330,11 @@ ProjectSerializer220403::LoadData ProjectSerializer220403::Load(Project *project
}
}
// Re-enable caches
for (Node *n : project->nodes()) {
n->SetCachesEnabled(true);
}
return load_data;
}
@@ -558,6 +567,20 @@ void ProjectSerializer220403::LoadNode(Node *node, XMLNodeData &xml_node_data, Q
reader->skipCurrentElement();
}
}
} else if (reader->name() == QStringLiteral("caches")) {
while (XMLReadNextStartElement(reader)) {
if (reader->name() == QStringLiteral("audio")) {
node->audio_playback_cache()->SetUuid(reader->readElementText());
} else if (reader->name() == QStringLiteral("video")) {
node->video_frame_cache()->SetUuid(reader->readElementText());
} else if (reader->name() == QStringLiteral("thumb")) {
node->thumbnail_cache()->SetUuid(reader->readElementText());
} else if (reader->name() == QStringLiteral("waveform")) {
node->waveform_cache()->SetUuid(reader->readElementText());
} else {
reader->skipCurrentElement();
}
}
} else {
reader->skipCurrentElement();
}
@@ -613,6 +636,15 @@ void ProjectSerializer220403::SaveNode(Node *node, QXmlStreamWriter *writer) con
}
WriteEndElement(writer); // hints
WriteStartElement(writer, QStringLiteral("caches"));
writer->writeTextElement(QStringLiteral("audio"), node->audio_playback_cache()->GetUuid().toString());
writer->writeTextElement(QStringLiteral("video"), node->video_frame_cache()->GetUuid().toString());
writer->writeTextElement(QStringLiteral("thumb"), node->thumbnail_cache()->GetUuid().toString());
writer->writeTextElement(QStringLiteral("waveform"), node->waveform_cache()->GetUuid().toString());
WriteEndElement(writer); // caches
WriteStartElement(writer, QStringLiteral("custom"));
SaveNodeCustom(writer, node);
+41 -22
View File
@@ -57,7 +57,7 @@ NodeValueRow NodeTraverser::GenerateRow(NodeValueDatabase *database, const Node
NodeValueRow row;
for (auto it=database->begin(); it!=database->end(); it++) {
// Get hint for which value should be pulled
NodeValue value = GenerateRowValue(node, it.key(), &it.value());
NodeValue value = GenerateRowValue(node, it.key(), &it.value(), range);
row.insert(it.key(), value);
}
@@ -74,9 +74,9 @@ NodeValueRow NodeTraverser::GenerateRow(const Node *node, const TimeRange &range
return GenerateRow(&database, node, range);
}
NodeValue NodeTraverser::GenerateRowValue(const Node *node, const QString &input, NodeValueTable *table)
NodeValue NodeTraverser::GenerateRowValue(const Node *node, const QString &input, NodeValueTable *table, const TimeRange &time)
{
NodeValue value = GenerateRowValueElement(node, input, -1, table);
NodeValue value = GenerateRowValueElement(node, input, -1, table, time);
if (value.array()) {
// Resolve each element of array
@@ -84,7 +84,7 @@ NodeValue NodeTraverser::GenerateRowValue(const Node *node, const QString &input
QVector<NodeValue> output(tables.size());
for (int i=0; i<tables.size(); i++) {
output[i] = GenerateRowValueElement(node, input, i, &tables[i]);
output[i] = GenerateRowValueElement(node, input, i, &tables[i], time);
}
value = NodeValue(value.type(), QVariant::fromValue(output), value.source(), value.array(), value.tag());
@@ -93,14 +93,9 @@ NodeValue NodeTraverser::GenerateRowValue(const Node *node, const QString &input
return value;
}
NodeValue NodeTraverser::GenerateRowValueElement(const Node *node, const QString &input, int element, NodeValueTable *table)
NodeValue NodeTraverser::GenerateRowValueElement(const Node *node, const QString &input, int element, NodeValueTable *table, const TimeRange &time)
{
return GenerateRowValueElement(node->GetValueHintForInput(input, element), node->GetInputDataType(input), table);
}
NodeValue NodeTraverser::GenerateRowValueElement(const Node::ValueHint &hint, NodeValue::Type preferred_type, NodeValueTable *table)
{
int value_index = GenerateRowValueElementIndex(hint, preferred_type, table);
int value_index = GenerateRowValueElementIndex(node->GetValueHintForInput(input, element), node->GetInputDataType(input), table);
if (value_index == -1) {
// If value was -1, try getting the last value
@@ -112,7 +107,20 @@ NodeValue NodeTraverser::GenerateRowValueElement(const Node::ValueHint &hint, No
return NodeValue();
}
return table->TakeAt(value_index);
NodeValue value = table->TakeAt(value_index);
if (value.type() == NodeValue::kTexture) {
QMutexLocker locker(node->video_frame_cache()->mutex());
node->video_frame_cache()->LoadState();
QString cache = node->video_frame_cache()->GetValidCacheFilename(time.in());
if (!cache.isEmpty()) {
value.set_value(CacheJob(cache, value.data()));
}
}
return value;
}
int NodeTraverser::GenerateRowValueElementIndex(const Node::ValueHint &hint, NodeValue::Type preferred_type, const NodeValueTable *table)
@@ -339,6 +347,10 @@ NodeValueTable NodeTraverser::GenerateBlockTable(const Track *track, const TimeR
return table;
}
TexturePtr NodeTraverser::ProcessVideoCacheJob(const CacheJob &val)
{
return nullptr;
}
QVector2D NodeTraverser::GenerateResolution() const
{
@@ -348,6 +360,16 @@ QVector2D NodeTraverser::GenerateResolution() const
void NodeTraverser::ResolveJobs(NodeValue &val, const TimeRange &range)
{
if (val.type() == NodeValue::kTexture || val.type() == NodeValue::kSamples) {
if (val.canConvert<CacheJob>()) {
CacheJob job = val.value<CacheJob>();
TexturePtr tex = ProcessVideoCacheJob(job);
if (tex) {
val.set_value(tex);
} else {
val.set_value(job.GetFallback());
}
}
if (val.canConvert<ShaderJob>()) {
ShaderJob job = val.value<ShaderJob>();
@@ -426,17 +448,14 @@ void NodeTraverser::ResolveJobs(NodeValue &val, const TimeRange &range)
VideoParams render_params = GetCacheVideoParams();
VideoParams job_params = job.video_params();
// HACK/FIXME: Override old cached probe data that contains an invalid divider. Might be
// good in the future to version the probe data so we can automatically
// ignore older stuff.
job_params.set_divider(render_params.divider());
// See if we can make this divider larger (i.e. if the footage is smaller)
while (job_params.divider() > 1
&& VideoParams::GetScaledDimension(job_params.width(), job_params.divider()-1) < render_params.effective_width()
&& VideoParams::GetScaledDimension(job_params.height(), job_params.divider()-1) < render_params.effective_height()) {
job_params.set_divider(job_params.divider() - 1);
if (render_params.divider() > 1) {
// Use a divider appropriate for this target resolution
job_params.set_divider(VideoParams::GetDividerForTargetResolution(job_params.width(), job_params.height(), render_params.effective_width(), render_params.effective_height()));
} else {
// Render everything at full res
job_params.set_divider(1);
}
job.set_video_params(job_params);
if (footage_time.isNaN()) {
+6 -8
View File
@@ -26,9 +26,11 @@
#include "codec/decoder.h"
#include "common/cancelableobject.h"
#include "node/output/track/track.h"
#include "render/job/cachejob.h"
#include "render/cancelatom.h"
#include "render/job/footagejob.h"
#include "render/job/colortransformjob.h"
#include "render/job/footagejob.h"
#include "value.h"
namespace olive {
@@ -45,9 +47,8 @@ public:
NodeValueRow GenerateRow(NodeValueDatabase *database, const Node *node, const TimeRange &range);
NodeValueRow GenerateRow(const Node *node, const TimeRange &range);
NodeValue GenerateRowValue(const Node *node, const QString &input, NodeValueTable *table);
NodeValue GenerateRowValueElement(const Node *node, const QString &input, int element, NodeValueTable *table);
NodeValue GenerateRowValueElement(const Node::ValueHint &hint, NodeValue::Type preferred_type, NodeValueTable *table);
NodeValue GenerateRowValue(const Node *node, const QString &input, NodeValueTable *table, const TimeRange &time);
NodeValue GenerateRowValueElement(const Node *node, const QString &input, int element, NodeValueTable *table, const TimeRange &time);
int GenerateRowValueElementIndex(const Node::ValueHint &hint, NodeValue::Type preferred_type, const NodeValueTable *table);
int GenerateRowValueElementIndex(const Node *node, const QString &input, int element, const NodeValueTable *table);
@@ -102,6 +103,8 @@ protected:
virtual void ConvertToReferenceSpace(TexturePtr destination, TexturePtr source, const QString &input_cs){}
virtual TexturePtr ProcessVideoCacheJob(const CacheJob &val);
virtual TexturePtr CreateTexture(const VideoParams &p)
{
return CreateDummyTexture(p);
@@ -122,11 +125,6 @@ protected:
}
}
virtual bool CanCacheFrames()
{
return false;
}
QVector2D GenerateResolution() const;
bool IsCancelled()
+2
View File
@@ -231,6 +231,8 @@ public:
data_ = QVariant::fromValue(v);
}
const QVariant &data() const { return data_; }
template <typename T>
bool canConvert() const
{
+1
View File
@@ -58,6 +58,7 @@ ProjectPanel::ProjectPanel(QWidget *parent) :
layout->addWidget(explorer_);
connect(explorer_, &ProjectExplorer::DoubleClickedItem, this, &ProjectPanel::ItemDoubleClickSlot);
connect(explorer_, &ProjectExplorer::SelectionChanged, this, &ProjectPanel::SelectionChanged);
connect(toolbar, &ProjectToolbar::SearchChanged, explorer_, &ProjectExplorer::SetSearchFilter);
// Set toolbar's view to the explorer's view
toolbar->SetView(explorer_->view_type());
+2
View File
@@ -24,6 +24,8 @@ set(OLIVE_SOURCES
render/audioparams.h
render/audioplaybackcache.cpp
render/audioplaybackcache.h
render/audiowaveformcache.cpp
render/audiowaveformcache.h
render/cancelatom.h
render/color.cpp
render/color.h
+8 -1
View File
@@ -106,7 +106,14 @@ qint64 AudioParams::samples_to_bytes(const qint64 &samples) const
{
Q_ASSERT(is_valid());
return samples * channel_count() * bytes_per_sample_per_channel();
return samples_to_bytes_per_channel(samples) * channel_count();
}
qint64 AudioParams::samples_to_bytes_per_channel(const qint64 &samples) const
{
Q_ASSERT(is_valid());
return samples * bytes_per_sample_per_channel();
}
rational AudioParams::samples_to_time(const qint64 &samples) const
+1
View File
@@ -213,6 +213,7 @@ public:
qint64 time_to_samples(const double& time) const;
qint64 time_to_samples(const rational& time) const;
qint64 samples_to_bytes(const qint64& samples) const;
qint64 samples_to_bytes_per_channel(const qint64& samples) const;
rational samples_to_time(const qint64& samples) const;
qint64 bytes_to_samples(const qint64 &bytes) const;
rational bytes_to_time(const qint64 &bytes) const;
+42 -387
View File
@@ -39,8 +39,6 @@ AudioPlaybackCache::AudioPlaybackCache(QObject* parent) :
AudioPlaybackCache::~AudioPlaybackCache()
{
// Segments are volatile, so delete them here
ClearPlaylist();
}
void AudioPlaybackCache::SetParameters(const AudioParams &params)
@@ -50,115 +48,13 @@ void AudioPlaybackCache::SetParameters(const AudioParams &params)
}
params_ = params;
visual_.set_channel_count(params_.channel_count());
// Restart empty file so there's always "something" to play
ClearPlaylist();
emit ParametersChanged();
}
void AudioPlaybackCache::WritePCM(const TimeRange &range, const TimeRangeList &valid_ranges, const SampleBuffer &samples)
{
// Ensure if we have enough segments to write this data, creating more if not
qint64 length_diff = params_.time_to_bytes_per_channel(range.out()) - playlist_.GetLength();
while (length_diff > 0) {
qint64 seg_sz = qMin(kDefaultSegmentSizePerChannel, length_diff);
playlist_.push_back(CreateSegment(seg_sz, playlist_.GetLength()));
length_diff -= seg_sz;
}
// Keep track of validated ranges so we can signal them all at once at the end
TimeRangeList ranges_we_validated;
// Calculate buffer size per channel
qint64 buffer_size_per_channel = samples.sample_count() * params_.bytes_per_sample_per_channel();
// Write each valid range to the segments
foreach (const TimeRange& r, valid_ranges) {
rational this_segment_in = 0;
// Write PCM to playlist
for (auto it=playlist_.begin(); it!=playlist_.end(); it++) {
rational this_segment_out = this_segment_in + params_.bytes_per_channel_to_time((*it).size());
if (r.in() < this_segment_out) {
// We'll write at least something to this segment
bool succeeded = true;
// Calculate how much to write
rational this_write_in_point = qMax(r.in(), this_segment_in);
rational this_write_out_point = qMin(r.out(), this_segment_out);
for (int i=0; i<(*it).channels(); i++) {
QFile seg_file((*it).filename(i));
if (seg_file.open(QFile::ReadWrite)) {
// Calculate what the byte offsets are going to be in this segment file
rational in_point_relative = this_write_in_point - this_segment_in;
qint64 dst_offset = params_.time_to_bytes_per_channel(in_point_relative);
// Calculate where to retrieve data from in the source buffer
qint64 src_offset = params_.time_to_bytes_per_channel(this_write_in_point - range.in());
// Determine how many bytes need to be written
qint64 total_write_length = params_.time_to_bytes_per_channel(this_write_out_point - this_write_in_point);
// Determine how many bytes we actually have in the source buffer
qint64 possible_write_length = qMin(qMax(qint64(0), buffer_size_per_channel - src_offset), total_write_length);
// Seek to our start offset
seg_file.seek(dst_offset);
// If we have source bytes to write, write them here
if (possible_write_length > 0) {
// Assume `samples` is valid if we're here, or else `buffer_size_per_channel` and
// therefore `possible_write_length` will be 0.
seg_file.write(reinterpret_cast<const char*>(samples.data(i)) + src_offset, possible_write_length);
}
if (possible_write_length < total_write_length) {
// Fill remaining space with silence
QByteArray s(total_write_length - possible_write_length, 0x00);
seg_file.write(s);
}
seg_file.close();
} else {
qWarning() << "Failed to write PCM data to" << seg_file.fileName();
succeeded = false;
}
}
if (succeeded) {
ranges_we_validated.insert(TimeRange(this_write_in_point, this_write_out_point));
}
}
if (r.out() <= this_segment_out) {
// We've reached the end of this range, we can break out of the loop here
break;
}
// Each segment is contiguous, so this out will be the next segment's in
this_segment_in = this_segment_out;
}
}
foreach (const TimeRange& v, ranges_we_validated) {
Validate(v);
}
}
void AudioPlaybackCache::WriteWaveform(const TimeRange &range, const TimeRangeList &valid_ranges, const AudioVisualWaveform *waveform)
{
// Write each valid range to the segments
foreach (const TimeRange& r, valid_ranges) {
// Write visual
if (waveform) {
visual_.OverwriteSums(*waveform, r.in(), r.in() - range.in(), r.length());
} else {
visual_.OverwriteSilence(r.in(), r.length());
for (const TimeRange &r : valid_ranges) {
if (WritePartOfSampleBuffer(samples, r.in(), r.in() - range.in(), r.length())) {
Validate(r);
}
}
}
@@ -170,311 +66,70 @@ void AudioPlaybackCache::WriteSilence(const TimeRange &range)
WritePCM(range, {range}, SampleBuffer());
}
AudioPlaybackCache::Segment AudioPlaybackCache::CloneSegment(const AudioPlaybackCache::Segment &s) const
bool AudioPlaybackCache::WritePartOfSampleBuffer(const SampleBuffer &samples, const rational &write_start, const rational &buffer_start, const rational &length)
{
Segment new_seg = s;
qint64 length_in_bytes = params_.time_to_bytes_per_channel(length);
new_seg.set_channels(s.channels());
qint64 start_cache_offset = params_.time_to_bytes_per_channel(write_start);
qint64 end_cache_offset = start_cache_offset + length_in_bytes;
// Copy data to a new file
for (int i=0; i<s.channels(); i++) {
QString new_filename = GenerateSegmentFilename();
QFile::copy(s.filename(i), new_filename);
qint64 start_buffer_offset = params_.time_to_bytes_per_channel(buffer_start);
qint64 end_buffer_offset = std::min(start_buffer_offset + length_in_bytes, params_.samples_to_bytes_per_channel(samples.sample_count()));
new_seg.set_filename(i, new_filename);
}
qint64 current_cache_offset = start_cache_offset;
qint64 current_buffer_offset = start_buffer_offset;
return new_seg;
}
bool success = true;
AudioPlaybackCache::Segment AudioPlaybackCache::CreateSegment(const qint64 &size, const qint64& offset) const
{
Segment s(size);
while (current_cache_offset != end_cache_offset) {
qint64 segment = current_cache_offset / kDefaultSegmentSizePerChannel;
qint64 segment_start = segment * kDefaultSegmentSizePerChannel;
qint64 segment_end = segment_start + kDefaultSegmentSizePerChannel;
s.set_channels(params_.channel_count());
qint64 offset_in_segment = current_cache_offset - segment_start;
qint64 write_len = segment_end - offset_in_segment;
qint64 max_buffer_len = end_buffer_offset - current_buffer_offset;
qint64 zero_len = 0;
for (int i=0; i<params_.channel_count(); i++) {
// Generate random unused filename for this segment
QString fn = GenerateSegmentFilename();
// Set it for this segment/channel
s.set_filename(i, fn);
// Create empty file
QFile f(fn);
if (f.open(QFile::WriteOnly)) {
f.close();
}
}
s.set_offset(offset);
return s;
}
QString AudioPlaybackCache::GenerateSegmentFilename() const
{
QString new_seg_filename;
QDir cache_dir(QDir(GetCacheDirectory()).filePath(GetUuid().toString()));
do {
uint32_t r = QRandomGenerator::global()->generate();
new_seg_filename = cache_dir.filePath(QStringLiteral("%1.pcm").arg(r));
} while (QFileInfo::exists(new_seg_filename));
return new_seg_filename;
}
void AudioPlaybackCache::TrimSegmentIn(AudioPlaybackCache::Segment *s, qint64 new_length)
{
// Read filename
for (int i=0; i<s->channels(); i++) {
QFile f(s->filename(i));
if (f.open(QFile::ReadWrite)) {
// Read segment into memory, according to the size we acknowledge
QByteArray data = f.read(s->size());
// Trim to new length
data = data.right(new_length);
// Seek to start and write
f.seek(0);
// Write trimmed data
f.write(data);
f.close();
}
}
s->set_size(new_length);
}
void AudioPlaybackCache::TrimSegmentOut(AudioPlaybackCache::Segment *s, qint64 new_length)
{
// For efficiency, we don't truncate the file, we just truncate our usage of it
s->set_size(new_length);
}
void AudioPlaybackCache::RemoveSegmentFromArray(int index)
{
const Segment &s = playlist_.at(index);
for (int i=0; i<s.channels(); i++) {
QFile::remove(s.filename(i));
}
playlist_.removeAt(index);
}
void AudioPlaybackCache::ClearPlaylist()
{
foreach (const Segment& s, playlist_) {
for (int i=0; i<s.channels(); i++) {
QFile::remove(s.filename(i));
}
}
playlist_.clear();
}
void AudioPlaybackCache::UpdateOffsetsFrom(int index)
{
qint64 current_offset;
if (index == 0) {
current_offset = 0;
} else {
const Segment& previous = playlist_.at(index - 1);
current_offset = previous.offset() + previous.size();
}
for (int i=index; i<playlist_.size(); i++) {
Segment& s = playlist_[i];
s.set_offset(current_offset);
current_offset += s.size();
}
}
AudioPlaybackCache::PlaybackDevice *AudioPlaybackCache::CreatePlaybackDevice(QObject* parent) const
{
PlaybackDevice *d = new PlaybackDevice(playlist_, params_.bytes_per_sample_per_channel(), parent);
// If we're child of a viewer, set the data limit so audio doesn't play beyond the length
if (ViewerOutput *viewer = dynamic_cast<ViewerOutput*>(this->parent())) {
d->SetDataLimit(params_.time_to_bytes_per_channel(viewer->GetAudioLength()));
}
return d;
}
AudioPlaybackCache::Segment::Segment(qint64 size)
{
size_ = size;
}
AudioPlaybackCache::PlaybackDevice::PlaybackDevice(const AudioPlaybackCache::Playlist &playlist, int sample_sz, QObject *parent) :
QIODevice(parent),
playlist_(playlist),
current_segment_(0),
segment_read_index_(0),
sample_size_(sample_sz),
limit_(INT64_MAX)
{
}
AudioPlaybackCache::PlaybackDevice::~PlaybackDevice()
{
close();
}
bool AudioPlaybackCache::PlaybackDevice::seek(qint64 pos)
{
// Default behavior
QIODevice::seek(pos);
// Find which segment we're in
current_segment_ = playlist_.GetIndexOfPosition(pos);
// Catch failure to find index
if (current_segment_ == -1) {
return false;
}
// Find position in segment
segment_read_index_ = pos - playlist_.at(current_segment_).offset();
return true;
}
qint64 AudioPlaybackCache::PlaybackDevice::readData(char *data, qint64 maxSize)
{
qint64 read_size = 0;
while (read_size < maxSize
&& current_segment_ >= 0
&& current_segment_ < playlist_.size()
&& playlist_.at(current_segment_).offset() + segment_read_index_ < limit_) {
const Segment& cs = playlist_.at(current_segment_);
qint64 current_segment_sz = cs.size();
if (cs.offset() + current_segment_sz > limit_) {
current_segment_sz = limit_ - cs.offset();
if (write_len > max_buffer_len) {
zero_len = write_len - max_buffer_len;
write_len = max_buffer_len;
}
QVector<QFile*> segment_files(cs.channels());
segment_files.fill(nullptr);
for (int channel=0; channel<params_.channel_count(); channel++) {
QString filename = GetSegmentFilename(segment, channel);
bool all_files_opened = true;
// Open all file handles
for (int i=0; i<cs.channels(); i++) {
QFile *f = new QFile(cs.filename(i));
segment_files[i] = f;
if (f->open(QFile::ReadOnly)) {
// Seek to our stored index of this segment
f->seek(segment_read_index_);
} else {
all_files_opened = false;
if (!FileFunctions::DirectoryIsValid(QFileInfo(filename).dir())) {
success = false;
break;
}
}
// If all file handles opened successfully, time to interleave and send them out
if (all_files_opened) {
// Determine how many bytes to read
qint64 this_read_length = qMin((current_segment_sz - segment_read_index_) * cs.channels(), maxSize - read_size);
QFile f(filename);
if (f.open(QFile::ReadWrite)) {
f.seek(offset_in_segment);
f.write(reinterpret_cast<const char*>(samples.data(channel)) + current_buffer_offset, write_len);
qint64 target = read_size + this_read_length;
while (read_size < target) {
for (int i=0; i<cs.channels(); i++) {
QFile *segment_file = segment_files.at(i);
// Read those bytes
segment_file->read(data + read_size, sample_size_);
// Add to the read size
read_size += sample_size_;
if (zero_len > 0) {
QByteArray b(zero_len, 0);
f.write(b.constData());
}
// Add to the read index
segment_read_index_ += sample_size_;
}
// If we've reached the end of this segment, tick the counter over to the next segment
if (segment_read_index_ == current_segment_sz) {
// Jump to the next file
segment_read_index_ = 0;
current_segment_++;
f.close();
} else {
success = false;
}
}
// Close and delete file handles
for (int i=0; i<cs.channels(); i++) {
QFile *f = segment_files.at(i);
if (f) {
if (f->isOpen()) {
f->close();
}
delete f;
}
}
current_cache_offset += write_len;
current_buffer_offset += write_len;
}
if (read_size < maxSize) {
// Zero out remaining data
memset(data + read_size, 0, maxSize - read_size);
}
//return read_size;
return maxSize;
return success;
}
int AudioPlaybackCache::Playlist::GetIndexOfPosition(qint64 pos)
QString AudioPlaybackCache::GetSegmentFilename(qint64 segment_index, int channel)
{
if (this->isEmpty()
|| pos < 0
|| pos >= GetLength()) {
return -1;
}
if (pos < this->first().size()) {
return 0;
}
if (pos > this->last().offset()) {
return this->size() - 1;
}
// Use a binary search to find the segment with the right offset
int low = 0;
int high = this->size() - 1;
while (low <= high) {
int mid = low + (high - low) / 2;
const Segment& mid_segment = this->at(mid);
if (mid_segment.offset() <= pos && mid_segment.offset() + mid_segment.size() > pos) {
return mid;
} else if (mid_segment.offset() < pos) {
low = mid + 1;
} else {
high = mid - 1;
}
}
return -1;
}
qint64 AudioPlaybackCache::Playlist::GetLength() const
{
if (this->isEmpty()) {
return 0;
}
return this->last().offset() + this->last().size();
return GetThisCacheDirectory().filePath(QStringLiteral("%1.%2").arg(QString::number(segment_index), QString::number(channel)));
}
}
+4 -158
View File
@@ -68,171 +68,17 @@ public:
void WritePCM(const TimeRange &range, const TimeRangeList &valid_ranges, const SampleBuffer &samples);
void WriteWaveform(const TimeRange &range, const TimeRangeList &valid_ranges, const AudioVisualWaveform *waveform);
void WriteSilence(const TimeRange &range);
class Segment
{
public:
Segment(qint64 size = 0);
qint64 size() const
{
return size_;
}
void set_size(qint64 sz)
{
size_ = sz;
}
qint64 offset() const
{
return offset_;
}
void set_offset(qint64 o)
{
offset_ = o;
}
int channels() const
{
return filenames_.size();
}
void set_channels(int index)
{
filenames_.resize(index);
}
const QString& filename(int index) const
{
return filenames_.at(index);
}
void set_filename(int index, const QString& filename)
{
filenames_[index] = filename;
}
qint64 end() const
{
return offset_ + size_;
}
private:
QVector<QString> filenames_;
qint64 size_;
qint64 offset_;
};
class Playlist : public QVector<Segment>
{
public:
Playlist() = default;
int GetIndexOfPosition(qint64 pos);
qint64 GetLength() const;
};
class PlaybackDevice : public QIODevice
{
public:
PlaybackDevice(const Playlist& playlist, int sample_sz, QObject* parent = nullptr);
void SetDataLimit(qint64 limit)
{
limit_ = limit;
}
virtual ~PlaybackDevice() override;
virtual bool isSequential() const override
{
return false;
}
virtual bool seek(qint64 pos) override;
virtual qint64 size() const override
{
return playlist_.GetLength();
}
virtual qint64 readData(char *data, qint64 maxSize) override;
virtual qint64 writeData(const char *data, qint64 maxSize) override
{
Q_UNUSED(data)
Q_UNUSED(maxSize)
return -1;
}
private:
Playlist playlist_;
int current_segment_;
qint64 segment_read_index_;
int sample_size_;
qint64 limit_;
};
/**
* @brief Create a QIODevice that can play whatever's in the cache currently
*
* This device will act very much like a QFile, transparently linking together various segments
* into what will appear to be a single contiguous file.
*
* The caller becomes responsible for ownership of the device, though the parent can be set
* automatically as an optional parameter to this function.
*/
PlaybackDevice* CreatePlaybackDevice(QObject *parent = nullptr) const;
const AudioVisualWaveform &visual() const
{
return visual_;
}
signals:
void ParametersChanged();
private:
bool WritePartOfSampleBuffer(const SampleBuffer &samples, const rational &write_start, const rational &buffer_start, const rational &length);
QString GetSegmentFilename(qint64 segment_index, int channel);
static const qint64 kDefaultSegmentSizePerChannel;
Segment CloneSegment(const Segment& s) const;
Segment CreateSegment(const qint64 &size, const qint64 &offset) const;
QString GenerateSegmentFilename() const;
void TrimSegmentIn(Segment* s, qint64 new_length);
void TrimSegmentOut(Segment* s, qint64 new_length);
void RemoveSegmentFromArray(int index);
void ClearPlaylist();
void UpdateOffsetsFrom(int index);
Playlist playlist_;
AudioParams params_;
AudioVisualWaveform visual_;
};
}
+134
View File
@@ -0,0 +1,134 @@
/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 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 "audiowaveformcache.h"
namespace olive {
AudioWaveformCache::AudioWaveformCache(QObject *parent) :
PlaybackCache{parent}
{
}
void AudioWaveformCache::WriteWaveform(const TimeRange &range, const TimeRangeList &valid_ranges, const AudioVisualWaveform *waveform)
{
// Write each valid range to the segments
foreach (const TimeRange& r, valid_ranges) {
#ifdef AVW_USE_LIST
// Write visual
TimeRangeList::util_remove(&waveforms_, r);
if (waveform) {
TimeRangeWithWaveform wv = r;
rational local_start = r.in() - range.in();
if (local_start != 0) {
wv.waveform = waveform->Mid(local_start, r.length());
} else {
wv.waveform = *waveform;
}
waveforms_.append(wv);
}
#else
if (waveform) {
waveforms_.OverwriteSums(*waveform, r.in(), r.in() - range.in(), r.length());
}
#endif
Validate(r);
}
}
void AudioWaveformCache::Draw(QPainter *painter, const QRect &rect, const double &scale, const rational &start_time) const
{
rational end = start_time + rational::fromDouble(rect.width() / scale);
TimeRange draw_range(start_time, end);
#ifdef AVW_USE_LIST
foreach (const TimeRangeWithWaveform &wv, waveforms_) {
if (wv.OverlapsWith(draw_range)) {
rational substart = std::max(wv.in(), draw_range.in());
rational subend = std::min(wv.out(), draw_range.out());
QRect subrect = rect;
subrect.setLeft(subrect.left() + (substart - draw_range.in()).toDouble()*scale);
subrect.setWidth((subend - substart).toDouble()*scale);
rational local_start = substart - wv.in();
AudioVisualWaveform::DrawWaveform(painter, subrect, scale, wv.waveform, local_start);
}
}
#else
AudioVisualWaveform::DrawWaveform(painter, rect, scale, waveforms_, start_time);
#endif
}
AudioVisualWaveform::Sample AudioWaveformCache::GetSummaryFromTime(const rational &start, const rational &length) const
{
#ifdef AVW_USE_LIST
QMap<rational, AudioVisualWaveform::Sample> sample;
TimeRange acquire(start, start+length);
foreach (const TimeRangeWithWaveform &wv, waveforms_) {
if (wv.OverlapsWith(acquire)) {
TimeRange this_range = wv.Intersected(acquire);
auto sum = wv.waveform.GetSummaryFromTime(this_range.in() - wv.in(), this_range.length());
sample.insert(this_range.in(), sum);
}
}
AudioVisualWaveform::Sample result;
for (auto it=sample.cbegin(); it!=sample.cend(); it++) {
result.insert(result.end(), it.value().begin(), it.value().end());
}
return result;
#else
return waveforms_.GetSummaryFromTime(start, length);
#endif
}
rational AudioWaveformCache::length() const
{
#ifdef AVW_USE_LIST
rational len = 0;
foreach (const TimeRangeWithWaveform &wv, waveforms_) {
len = std::max(len, wv.out());
}
return len;
#else
return waveforms_.length();
#endif
}
void AudioWaveformCache::SetPassthrough(PlaybackCache *cache)
{
AudioWaveformCache *c = static_cast<AudioWaveformCache*>(cache);
waveforms_ = c->waveforms_;
for (const TimeRange &r : c->GetValidatedRanges()) {
Validate(r);
}
SetParameters(c->GetParameters());
SetSavingEnabled(c->IsSavingEnabled());
}
}
+97
View File
@@ -0,0 +1,97 @@
/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 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/>.
***/
#ifndef AUDIOWAVEFORMCACHE_H
#define AUDIOWAVEFORMCACHE_H
#include "audio/audiovisualwaveform.h"
#include "playbackcache.h"
//#define AVW_USE_LIST
namespace olive {
class AudioWaveformCache : public PlaybackCache
{
Q_OBJECT
public:
AudioWaveformCache(QObject *parent = nullptr);
void WriteWaveform(const TimeRange &range, const TimeRangeList &valid_ranges, const AudioVisualWaveform *waveform);
const AudioParams &GetParameters() const { return params_; }
void SetParameters(const AudioParams &p)
{
params_ = p;
waveforms_.set_channel_count(p.channel_count());
}
void Draw(QPainter* painter, const QRect &rect, const double &scale, const rational &start_time) const;
AudioVisualWaveform::Sample GetSummaryFromTime(const rational &start, const rational &length) const;
rational length() const;
virtual void SetPassthrough(PlaybackCache *cache) override;
private:
#ifdef AVW_USE_LIST
class TimeRangeWithWaveform : public TimeRange
{
public:
TimeRangeWithWaveform() = default;
TimeRangeWithWaveform(const TimeRange &r) :
TimeRange(r)
{
}
void set_in(const rational& in)
{
waveform.TrimIn(in - this->in());
TimeRange::set_in(in);
}
void set_out(const rational& out)
{
waveform.Resize(out - this->in());
TimeRange::set_out(out);
}
void set_range(const rational& in, const rational& out)
{
waveform.TrimRange(in, out-in);
TimeRange::set_range(in, out);
}
AudioVisualWaveform waveform;
};
QVector<TimeRangeWithWaveform> waveforms_;
#else
AudioVisualWaveform waveforms_;
#endif
AudioParams params_;
};
}
#endif // AUDIOWAVEFORMCACHE_H
+1 -3
View File
@@ -314,9 +314,7 @@ bool DiskCacheFolder::DeleteFileInternal(QMap<QString, HashTime>::iterator hash_
// Remove from disk
QFile f(filename);
if (!f.exists()) {
return true;
} else if (f.remove()) {
if (!f.exists() || f.remove()) {
// Remove from internal map
disk_data_.erase(hash_to_delete);
+159 -54
View File
@@ -32,12 +32,11 @@
#include "codec/frame.h"
#include "common/filefunctions.h"
#include "common/oiioutils.h"
#include "render/diskmanager.h"
namespace olive {
const QString FrameHashCache::kCacheFormatExtension = QStringLiteral(".exr");
#define super PlaybackCache
FrameHashCache::FrameHashCache(QObject *parent) :
@@ -65,6 +64,21 @@ void FrameHashCache::ValidateTime(const rational &time)
Validate(TimeRange(time, time + timebase_));
}
QString FrameHashCache::GetValidCacheFilename(const rational &time) const
{
if (IsFrameCached(time)) {
return CachePathName(time);
} else if (!GetPassthroughs().empty()) {
for (const Passthrough &p : GetPassthroughs()) {
if (p.Contains(time)) {
return CachePathName(GetCacheDirectory(), p.cache, time, timebase_);
}
}
}
return QString();
}
bool FrameHashCache::SaveCacheFrame(const int64_t &time, FramePtr frame) const
{
return SaveCacheFrame(GetCacheDirectory(), GetUuid(), time, frame);
@@ -178,15 +192,46 @@ FramePtr FrameHashCache::LoadCacheFrame(const QString &fn)
}
file.setFrameBuffer(framebuffer);
file.readPixels(dw.min.y, dw.max.y);
} catch (const std::exception &e) {
qCritical() << "Failed to read cache frame:" << e.what();
// Not an EXR, maybe it's a JPEG?
QImage img;
// Clear frame to signal that nothing was loaded
frame = nullptr;
if (img.load(fn, "jpg")) {
// Assume this frame is corrupt in some way and delete it
QMetaObject::invokeMethod(DiskManager::instance(), "DeleteSpecificFile", Q_ARG(QString, fn));
// FIXME: Hardcoded
const int div = 1;
const VideoParams::Format image_format = VideoParams::kFormatUnsigned8;
const int channel_count = 4;
const rational par(1, 1);
frame = Frame::Create();
frame->set_video_params(VideoParams(img.width() * div,
img.height() * div,
image_format,
channel_count,
par,
VideoParams::kInterlaceNone,
div));
frame->allocate();
for (int i=0; i<img.height(); i++) {
memcpy(frame->data() + frame->linesize_bytes() * i,
img.bits() + img.bytesPerLine() * i,
frame->width() * frame->video_params().GetBytesPerPixel());
}
} else {
qCritical() << "Failed to read cache frame:" << e.what();
// Clear frame to signal that nothing was loaded
frame = nullptr;
// Assume this frame is corrupt in some way and delete it
QMetaObject::invokeMethod(DiskManager::instance(), "DeleteSpecificFile", Q_ARG(QString, fn));
}
}
}
@@ -194,6 +239,38 @@ FramePtr FrameHashCache::LoadCacheFrame(const QString &fn)
return frame;
}
void FrameHashCache::SetPassthrough(PlaybackCache *cache)
{
super::SetPassthrough(cache);
SetTimebase(static_cast<FrameHashCache*>(cache)->GetTimebase());
}
void FrameHashCache::LoadStateEvent(QDataStream &stream)
{
uint32_t version;
int num, den;
stream >> version;
switch (version) {
case 1:
stream >> num;
stream >> den;
timebase_ = rational(num, den);
break;
}
}
void FrameHashCache::SaveStateEvent(QDataStream &stream)
{
uint32_t version = 1;
stream << version;
stream << timebase_.numerator();
stream << timebase_.denominator();
}
rational FrameHashCache::ToTime(const int64_t &ts) const
{
return Timecode::timestamp_to_time(ts, timebase_);
@@ -239,7 +316,7 @@ QString FrameHashCache::CachePathName(const rational &time) const
QString FrameHashCache::CachePathName(const QString &cache_path, const QUuid &cache_id, const int64_t &time)
{
QString filename = QDir(QDir(cache_path).filePath(cache_id.toString())).filePath(QString::number(time));
QString filename = GetThisCacheDirectory(cache_path, cache_id).filePath(QString::number(time));
// Register that in some way this hash has been accessed
if (DiskManager::instance()) {
@@ -256,63 +333,91 @@ QString FrameHashCache::CachePathName(const QString &cache_path, const QUuid &ca
bool FrameHashCache::SaveCacheFrame(const QString &filename, const FramePtr frame)
{
if (!VideoParams::FormatIsFloat(frame->format())) {
return false;
}
// Ensure directory is created
QDir cache_dir = QFileInfo(filename).dir();
if (!FileFunctions::DirectoryIsValid(cache_dir)) {
return false;
}
// Floating point types are stored in EXR
Imf::PixelType pix_type;
if (VideoParams::FormatIsFloat(frame->format())) {
// Floating point types are stored in EXR
Imf::PixelType pix_type;
if (frame->format() == VideoParams::kFormatFloat16) {
pix_type = Imf::HALF;
} else {
pix_type = Imf::FLOAT;
}
Imf::Header header(frame->width(), frame->height());
header.channels().insert("R", Imf::Channel(pix_type));
header.channels().insert("G", Imf::Channel(pix_type));
header.channels().insert("B", Imf::Channel(pix_type));
if (frame->channel_count() == VideoParams::kRGBAChannelCount) {
header.channels().insert("A", Imf::Channel(pix_type));
}
header.compression() = Imf::DWAA_COMPRESSION;
header.insert("dwaCompressionLevel", Imf::FloatAttribute(200.0f));
header.pixelAspectRatio() = frame->video_params().pixel_aspect_ratio().toDouble();
header.insert("oliveDivider", Imf::IntAttribute(frame->video_params().divider()));
try {
Imf::OutputFile out(filename.toUtf8(), header, 0);
int bpc = VideoParams::GetBytesPerChannel(frame->format());
size_t xs = frame->channel_count() * bpc;
size_t ys = frame->linesize_bytes();
Imf::FrameBuffer framebuffer;
framebuffer.insert("R", Imf::Slice(pix_type, frame->data(), xs, ys));
framebuffer.insert("G", Imf::Slice(pix_type, frame->data() + bpc, xs, ys));
framebuffer.insert("B", Imf::Slice(pix_type, frame->data() + 2*bpc, xs, ys));
if (frame->channel_count() == VideoParams::kRGBAChannelCount) {
framebuffer.insert("A", Imf::Slice(pix_type, frame->data() + 3*bpc, xs, ys));
if (frame->format() == VideoParams::kFormatFloat16) {
pix_type = Imf::HALF;
} else {
pix_type = Imf::FLOAT;
}
out.setFrameBuffer(framebuffer);
out.writePixels(frame->height());
Imf::Header header(frame->width(), frame->height());
header.channels().insert("R", Imf::Channel(pix_type));
header.channels().insert("G", Imf::Channel(pix_type));
header.channels().insert("B", Imf::Channel(pix_type));
if (frame->channel_count() == VideoParams::kRGBAChannelCount) {
header.channels().insert("A", Imf::Channel(pix_type));
}
return true;
} catch (const std::exception &e) {
qCritical() << "Failed to write cache frame:" << e.what();
header.compression() = Imf::DWAA_COMPRESSION;
header.insert("dwaCompressionLevel", Imf::FloatAttribute(200.0f));
header.pixelAspectRatio() = frame->video_params().pixel_aspect_ratio().toDouble();
return false;
header.insert("oliveDivider", Imf::IntAttribute(frame->video_params().divider()));
try {
Imf::OutputFile out(filename.toUtf8(), header, 0);
int bpc = VideoParams::GetBytesPerChannel(frame->format());
size_t xs = frame->channel_count() * bpc;
size_t ys = frame->linesize_bytes();
Imf::FrameBuffer framebuffer;
framebuffer.insert("R", Imf::Slice(pix_type, frame->data(), xs, ys));
framebuffer.insert("G", Imf::Slice(pix_type, frame->data() + bpc, xs, ys));
framebuffer.insert("B", Imf::Slice(pix_type, frame->data() + 2*bpc, xs, ys));
if (frame->channel_count() == VideoParams::kRGBAChannelCount) {
framebuffer.insert("A", Imf::Slice(pix_type, frame->data() + 3*bpc, xs, ys));
}
out.setFrameBuffer(framebuffer);
out.writePixels(frame->height());
return true;
} catch (const std::exception &e) {
qCritical() << "Failed to write cache frame:" << e.what();
return false;
}
} else {
QImage::Format fmt = QImage::Format_Invalid;
switch (frame->format()) {
case VideoParams::kFormatUnsigned8:
if (frame->channel_count() == VideoParams::kRGBAChannelCount){
fmt = QImage::Format_RGBA8888_Premultiplied;
} else if (frame->channel_count() == VideoParams::kRGBChannelCount){
fmt = QImage::Format_RGB888;
}
break;
case VideoParams::kFormatUnsigned16:
if (frame->channel_count() == VideoParams::kRGBAChannelCount){
fmt = QImage::Format_RGBA64_Premultiplied;
}
break;
case VideoParams::kFormatFloat16:
case VideoParams::kFormatFloat32:
case VideoParams::kFormatCount:
case VideoParams::kFormatInvalid:
break;
}
if (fmt == QImage::Format_Invalid) {
return false;
}
QImage img(reinterpret_cast<const uchar*>(frame->data()), frame->width(), frame->height(), frame->linesize_bytes(), fmt);
return img.save(filename, "jpg");
}
}
+18 -10
View File
@@ -48,14 +48,7 @@ public:
return GetValidatedRanges().contains(time);
}
QString GetValidCacheFilename(const rational &time) const
{
if (IsFrameCached(time)) {
return CachePathName(time);
} else {
return QString();
}
}
QString GetValidCacheFilename(const rational &time) const;
static bool SaveCacheFrame(const QString& filename, FramePtr frame);
bool SaveCacheFrame(const int64_t &time, FramePtr frame) const;
@@ -65,6 +58,12 @@ public:
FramePtr LoadCacheFrame(const int64_t &time) const;
static FramePtr LoadCacheFrame(const QString& fn);
virtual void SetPassthrough(PlaybackCache *cache) override;
protected:
virtual void LoadStateEvent(QDataStream &stream) override;
virtual void SaveStateEvent(QDataStream &stream) override;
private:
rational ToTime(const int64_t &ts) const;
int64_t ToTimestamp(const rational &ts, Timecode::Rounding rounding = Timecode::kRound) const;
@@ -80,8 +79,6 @@ private:
rational timebase_;
static const QString kCacheFormatExtension;
private slots:
void HashDeleted(const QString &path, const QString &filename);
@@ -89,6 +86,17 @@ private slots:
};
class ThumbnailCache : public FrameHashCache
{
Q_OBJECT
public:
ThumbnailCache(QObject* parent = nullptr) :
FrameHashCache(parent)
{
SetTimebase(rational(1, 10));
}
};
}
#endif // VIDEORENDERFRAMECACHE_H
@@ -18,24 +18,38 @@
***/
#include "flipmodifiers.h"
#ifndef CACHEJOB_H
#define CACHEJOB_H
#include <QString>
#include <QVariant>
namespace olive {
Qt::KeyboardModifiers FlipControlAndShiftModifiers(Qt::KeyboardModifiers e) {
if (e & Qt::ControlModifier & Qt::ShiftModifier) {
return e;
class CacheJob
{
public:
CacheJob() = default;
CacheJob(const QString &filename, const QVariant &fallback = QVariant())
{
filename_ = filename;
}
if (e & Qt::ShiftModifier) {
e |= Qt::ControlModifier;
e &= ~Qt::ShiftModifier;
} else if (e & Qt::ControlModifier) {
e |= Qt::ShiftModifier;
e &= ~Qt::ControlModifier;
}
const QString &GetFilename() const { return filename_; }
void SetFilename(const QString &s) { filename_ = s; }
return e;
}
const QVariant &GetFallback() const { return fallback_; }
void SetFallback(const QVariant &val) { fallback_ = val; }
private:
QString filename_;
QVariant fallback_;
};
}
Q_DECLARE_METATYPE(olive::CacheJob)
#endif // CACHEJOB_H
+180 -6
View File
@@ -27,7 +27,7 @@
namespace olive {
void PlaybackCache::Invalidate(const TimeRange &r, bool signal)
void PlaybackCache::Invalidate(const TimeRange &r)
{
if (r.in() == r.out()) {
qWarning() << "Tried to invalidate zero-length range";
@@ -36,10 +36,16 @@ void PlaybackCache::Invalidate(const TimeRange &r, bool signal)
validated_.remove(r);
if (!passthroughs_.empty()) {
TimeRangeList::util_remove(&passthroughs_, r);
}
InvalidateEvent(r);
if (signal) {
emit Invalidated(r);
emit Invalidated(r);
if (saving_enabled_) {
SaveState();
}
}
@@ -48,6 +54,159 @@ Node *PlaybackCache::parent() const
return dynamic_cast<Node*>(QObject::parent());
}
QDir PlaybackCache::GetThisCacheDirectory() const
{
return GetThisCacheDirectory(GetCacheDirectory(), GetUuid());
}
QDir PlaybackCache::GetThisCacheDirectory(const QString &cache_path, const QUuid &cache_id)
{
return QDir(cache_path).filePath(cache_id.toString());
}
void PlaybackCache::LoadState()
{
QDir cache_dir = GetThisCacheDirectory();
QFile f(cache_dir.filePath(QStringLiteral("state")));
if (f.open(QFile::ReadOnly)) {
QDataStream s(&f);
uint32_t version;
s >> version;
LoadStateEvent(s);
switch (version) {
case 1:
{
int valid_count, pass_count;
validated_.clear();
s >> valid_count;
for (int i=0; i<valid_count; i++) {
int in_num, in_den, out_num, out_den;
s >> in_num;
s >> in_den;
s >> out_num;
s >> out_den;
validated_.insert(TimeRange(rational(in_num, in_den), rational(out_num, out_den)));
}
passthroughs_.clear();
s >> pass_count;
for (int i=0; i<pass_count; i++) {
QUuid id;
int in_num, in_den, out_num, out_den;
s >> in_num;
s >> in_den;
s >> out_num;
s >> out_den;
s >> id;
Passthrough p = TimeRange(rational(in_num, in_den), rational(out_num, out_den));
p.cache = id;
passthroughs_.append(p);
}
break;
}
}
f.close();
}
}
void PlaybackCache::SaveState()
{
if (!DiskManager::instance()) {
return;
}
QDir cache_dir = GetThisCacheDirectory();
QFile f(cache_dir.filePath(QStringLiteral("state")));
if (validated_.isEmpty() && passthroughs_.isEmpty()) {
if (f.exists()) {
f.remove();
}
} else {
if (FileFunctions::DirectoryIsValid(cache_dir)) {
if (f.open(QFile::WriteOnly)) {
QDataStream s(&f);
uint32_t version = 1;
s << version;
SaveStateEvent(s);
s << validated_.size();
for (const TimeRange &r : validated_) {
s << r.in().numerator();
s << r.in().denominator();
s << r.out().numerator();
s << r.out().denominator();
}
s << passthroughs_.size();
for (const Passthrough &p : passthroughs_) {
s << p.in().numerator();
s << p.in().denominator();
s << p.out().numerator();
s << p.out().denominator();
s << p.cache;
}
f.close();
}
}
}
}
void PlaybackCache::Draw(QPainter *p, const rational &start, double scale, const QRect &rect) const
{
p->fillRect(rect, Qt::red);
foreach (const TimeRange& range, GetValidatedRanges()) {
int range_left = rect.left() + (range.in() - start).toDouble() * scale;
if (range_left >= rect.right()) {
continue;
}
int range_right = rect.left() + (range.out() - start).toDouble() * scale;
if (range_right < rect.left()) {
continue;
}
int adjusted_left = std::max(range_left, rect.left());
int adjusted_right = std::min(range_right, rect.right());
p->fillRect(adjusted_left,
rect.top(),
adjusted_right - adjusted_left,
rect.height(),
Qt::green);
}
}
void PlaybackCache::SetPassthrough(PlaybackCache *cache)
{
for (const TimeRange &r : cache->GetValidatedRanges()) {
Passthrough p = r;
p.cache = cache->GetUuid();
passthroughs_.push_back(p);
}
passthroughs_.append(cache->GetPassthroughs());
if (saving_enabled_) {
SaveState();
}
}
void PlaybackCache::InvalidateAll()
{
Invalidate(TimeRange(0, RATIONAL_MAX));
@@ -60,6 +219,10 @@ void PlaybackCache::Validate(const TimeRange &r, bool signal)
if (signal) {
emit Validated(r);
}
if (saving_enabled_) {
SaveState();
}
}
void PlaybackCache::InvalidateEvent(const TimeRange &)
@@ -73,12 +236,19 @@ Project *PlaybackCache::GetProject() const
PlaybackCache::PlaybackCache(QObject *parent) :
QObject(parent),
enabled_(false)
saving_enabled_(true)
{
uuid_ = QUuid::createUuid();
}
TimeRangeList PlaybackCache::GetInvalidatedRanges(TimeRange intersecting)
void PlaybackCache::SetUuid(const QUuid &u)
{
uuid_ = u;
LoadState();
}
TimeRangeList PlaybackCache::GetInvalidatedRanges(TimeRange intersecting) const
{
TimeRangeList invalidated;
@@ -93,10 +263,14 @@ TimeRangeList PlaybackCache::GetInvalidatedRanges(TimeRange intersecting)
invalidated.remove(range);
}
foreach (const TimeRange &range, passthroughs_) {
invalidated.remove(range);
}
return invalidated;
}
bool PlaybackCache::HasInvalidatedRanges(const TimeRange &intersecting)
bool PlaybackCache::HasInvalidatedRanges(const TimeRange &intersecting) const
{
return !validated_.contains(intersecting);
}
+54 -17
View File
@@ -21,7 +21,10 @@
#ifndef PLAYBACKCACHE_H
#define PLAYBACKCACHE_H
#include <QDir>
#include <QMutex>
#include <QObject>
#include <QPainter>
#include <QUuid>
#include "common/jobtime.h"
@@ -40,37 +43,61 @@ public:
PlaybackCache(QObject* parent = nullptr);
const QUuid &GetUuid() const { return uuid_; }
void SetUuid(const QUuid &u) { uuid_ = u; }
void SetUuid(const QUuid &u);
bool IsEnabled() const { return enabled_; }
void SetEnabled(bool e)
{
if (enabled_ != e) {
enabled_ = e;
emit EnabledChanged(e);
}
}
TimeRangeList GetInvalidatedRanges(TimeRange intersecting);
TimeRangeList GetInvalidatedRanges(const rational &length)
TimeRangeList GetInvalidatedRanges(TimeRange intersecting) const;
TimeRangeList GetInvalidatedRanges(const rational &length) const
{
return GetInvalidatedRanges(TimeRange(0, length));
}
bool HasInvalidatedRanges(const TimeRange &intersecting);
bool HasInvalidatedRanges(const rational &length)
bool HasInvalidatedRanges(const TimeRange &intersecting) const;
bool HasInvalidatedRanges(const rational &length) const
{
return HasInvalidatedRanges(TimeRange(0, length));
}
QString GetCacheDirectory() const;
void Invalidate(const TimeRange& r, bool signal = true);
void Invalidate(const TimeRange& r);
bool HasValidatedRanges() const { return !validated_.isEmpty(); }
const TimeRangeList &GetValidatedRanges() const { return validated_; }
Node *parent() const;
QDir GetThisCacheDirectory() const;
static QDir GetThisCacheDirectory(const QString &cache_path, const QUuid &cache_id);
void LoadState();
void SaveState();
void Draw(QPainter *painter, const rational &start, double scale, const QRect &rect) const;
static int GetCacheIndicatorHeight()
{
return QFontMetrics(QFont()).height()/4;
}
bool IsSavingEnabled() const { return saving_enabled_; }
void SetSavingEnabled(bool e) { saving_enabled_ = e; }
virtual void SetPassthrough(PlaybackCache *cache);
QMutex *mutex() { return &mutex_; }
class Passthrough : public TimeRange
{
public:
Passthrough(const TimeRange &r) :
TimeRange(r)
{}
QUuid cache;
};
const QVector<Passthrough> &GetPassthroughs() const { return passthroughs_; }
public slots:
void InvalidateAll();
@@ -79,13 +106,19 @@ signals:
void Validated(const olive::TimeRange& r);
void EnabledChanged(bool e);
void Request(const olive::TimeRange& r);
void CancelAll();
protected:
void Validate(const TimeRange& r, bool signal = true);
virtual void InvalidateEvent(const TimeRange& range);
virtual void LoadStateEvent(QDataStream &stream){}
virtual void SaveStateEvent(QDataStream &stream){}
Project* GetProject() const;
private:
@@ -93,7 +126,11 @@ private:
QUuid uuid_;
bool enabled_;
bool saving_enabled_;
QMutex mutex_;
QVector<Passthrough> passthroughs_;
};
+331 -288
View File
@@ -26,22 +26,22 @@
#include "codec/conformmanager.h"
#include "node/inputdragger.h"
#include "node/project/project.h"
#include "render/diskmanager.h"
#include "render/renderprocessor.h"
#include "task/customcache/customcachetask.h"
#include "task/taskmanager.h"
#include "widget/slider/base/numericsliderbase.h"
#include "widget/viewer/viewer.h"
namespace olive {
// We may want to make this configurable at some point, so for now this constant is used as a
// placeholder for where that configarable variable would be used.
const bool PreviewAutoCacher::kRealTimeWaveformsEnabled = true;
PreviewAutoCacher::PreviewAutoCacher() :
PreviewAutoCacher::PreviewAutoCacher(QObject *parent) :
QObject(parent),
viewer_node_(nullptr),
use_custom_range_(false),
pause_audio_(false),
single_frame_render_(nullptr)
pause_renders_(false),
single_frame_render_(nullptr),
display_color_processor_(nullptr)
{
// Set defaults
SetPlayhead(0);
@@ -49,7 +49,7 @@ PreviewAutoCacher::PreviewAutoCacher() :
// Wait a certain amount of time before requeuing when we receive an invalidate signal
delayed_requeue_timer_.setInterval(OLIVE_CONFIG("AutoCacheDelay").toInt());
delayed_requeue_timer_.setSingleShot(true);
connect(&delayed_requeue_timer_, &QTimer::timeout, this, &PreviewAutoCacher::RequeueFrames);
connect(&delayed_requeue_timer_, &QTimer::timeout, this, &PreviewAutoCacher::TryRender);
// Catch when a conform is ready
connect(ConformManager::instance(), &ConformManager::ConformReady, this, &PreviewAutoCacher::ConformFinished);
@@ -81,30 +81,55 @@ RenderTicketPtr PreviewAutoCacher::GetSingleFrame(const rational &t, bool dry)
RenderTicketPtr PreviewAutoCacher::GetRangeOfAudio(TimeRange range)
{
return RenderAudio(range, false);
return RenderAudio(copied_viewer_node_->GetConnectedSampleOutput(), range, nullptr);
}
void PreviewAutoCacher::VideoInvalidated(const TimeRange &range)
void PreviewAutoCacher::ClearSingleFrameRenders()
{
// Stop any current render tasks because a) they might be out of date now anyway, and b) we
// want to dedicate all our rendering power to realtime feedback for the user
CancelVideoTasks();
// If auto-cache is enabled and a slider is not being dragged, queue up to hash these frames
if (viewer_node_->video_frame_cache()->IsEnabled() && !NodeInputDragger::IsInputBeingDragged()) {
StartCachingVideoRange(range);
QMap<RenderTicketWatcher*, QVector<RenderTicketPtr> > copy = video_immediate_passthroughs_;
for (auto it=copy.cbegin(); it!=copy.cend(); it++) {
it.key()->Cancel();
if (!it.key()->IsRunning()) {
RenderManager::instance()->RemoveTicket(it.key()->GetTicket());
emit it.key()->GetTicket()->Finished();
}
}
}
void PreviewAutoCacher::AudioInvalidated(const TimeRange &range)
void PreviewAutoCacher::VideoInvalidatedFromCache(const TimeRange &range)
{
// We don't stop rendering audio because currently there's no system of requeuing audio if it's
// cancelled, so some areas may end up unrendered forever
// ClearAudioQueue();
PlaybackCache *cache = static_cast<PlaybackCache*>(sender());
// If we're auto-caching audio or require realtime waveforms, we'll have to render this
if (viewer_node_->audio_playback_cache()->IsEnabled() || kRealTimeWaveformsEnabled) {
StartCachingAudioRange(range);
VideoInvalidatedFromNode(cache, range);
}
void PreviewAutoCacher::AudioInvalidatedFromCache(const TimeRange &range)
{
PlaybackCache *cache = static_cast<PlaybackCache*>(sender());
AudioInvalidatedFromNode(cache, range);
}
void PreviewAutoCacher::CancelForCache()
{
PlaybackCache *cache = static_cast<PlaybackCache*>(sender());
if (dynamic_cast<FrameHashCache*>(cache) || dynamic_cast<ThumbnailCache*>(cache)) {
for (auto it=pending_video_jobs_.begin(); it!=pending_video_jobs_.end(); ) {
if ((*it).cache == cache) {
it = pending_video_jobs_.erase(it);
} else {
it++;
}
}
} else if (dynamic_cast<AudioPlaybackCache*>(cache) || dynamic_cast<AudioWaveformCache*>(cache)) {
for (auto it=pending_audio_jobs_.begin(); it!=pending_audio_jobs_.end(); ) {
if ((*it).cache == cache) {
it = pending_audio_jobs_.erase(it);
} else {
it++;
}
}
}
}
@@ -115,68 +140,45 @@ void PreviewAutoCacher::AudioRendered()
// If the task list doesn't contain this watcher, presumably it was cleared as a result of a
// viewer switch, so we'll completely ignore this watcher
if (audio_tasks_.contains(watcher)) {
if (running_audio_tasks_.removeOne(watcher)) {
// Assume that a "result" is a fully completed image and a non-result is a cancelled ticket
TimeRange range = audio_tasks_.take(watcher);
TimeRange range = watcher->property("time").value<TimeRange>();
Node *node = copy_map_.key(Node::ValueToPtr<Node>(watcher->property("node")));
if (watcher->HasResult()) {
// Remove this task from the list
JobTime watcher_job_time = watcher->property("job").value<JobTime>();
if (watcher->HasResult() && node) {
if (PlaybackCache *cache = Node::ValueToPtr<PlaybackCache>(watcher->property("cache"))) {
AudioCacheData &d = audio_cache_data_[cache];
TimeRangeList valid_ranges = audio_job_tracker_.getCurrentSubRanges(range, watcher_job_time);
JobTime watcher_job_time = watcher->property("job").value<JobTime>();
AudioVisualWaveform waveform = watcher->GetTicket()->property("waveform").value<AudioVisualWaveform>();
TimeRangeList valid_ranges = d.job_tracker.getCurrentSubRanges(range, watcher_job_time);
if (viewer_node_->audio_playback_cache()->IsEnabled()) {
// WritePCM is tolerant to its buffer being null, it will just write silence instead
viewer_node_->audio_playback_cache()->WritePCM(range,
valid_ranges,
watcher->Get().value<SampleBuffer>());
}
AudioVisualWaveform waveform = watcher->GetTicket()->property("waveform").value<AudioVisualWaveform>();
viewer_node_->audio_playback_cache()->WriteWaveform(range, valid_ranges, &waveform);
SampleBuffer buf = watcher->Get().value<SampleBuffer>();
// Detect if this audio was incomplete because it was waiting on a conform to finish
if (watcher->GetTicket()->property("incomplete").toBool()) {
if (last_conform_task_ > watcher_job_time) {
// Requeue now
viewer_node_->audio_playback_cache()->Invalidate(range);
} else {
// Wait for conform
audio_needing_conform_.insert(range);
}
} else{
// Retrieve visual waveforms
QVector<RenderProcessor::RenderedWaveform> waveform_list = watcher->GetTicket()->property("waveforms").value< QVector<RenderProcessor::RenderedWaveform> >();
foreach (const RenderProcessor::RenderedWaveform& waveform_info, waveform_list) {
// Find original track
ClipBlock* block = nullptr;
bool incomplete = watcher->GetTicket()->property("incomplete").toBool();
for (auto it=copy_map_.cbegin(); it!=copy_map_.cend(); it++) {
if (it.value() == waveform_info.block) {
block = static_cast<ClipBlock*>(it.key());
break;
}
if (AudioPlaybackCache *pcm = dynamic_cast<AudioPlaybackCache*>(cache)) {
// WritePCM is tolerant to its buffer being null, it will just write silence instead
pcm->SetParameters(buf.audio_params());
pcm->WritePCM(range,
valid_ranges,
watcher->Get().value<SampleBuffer>());
} else if (AudioWaveformCache *wave = dynamic_cast<AudioWaveformCache*>(cache)) {
wave->SetParameters(buf.audio_params());
if (!incomplete) {
wave->WriteWaveform(range, valid_ranges, &waveform);
}
}
if (block && !valid_ranges.isEmpty()) {
// Generate visual waveform in this background thread
block->waveform().set_channel_count(viewer_node_->GetAudioParams().channel_count());
// Determine which of the waveform ranges we got intersects with the valid ranges
TimeRangeList intersections = valid_ranges.Intersects(waveform_info.range + block->in());
foreach (TimeRange r, intersections) {
// For each range, adjust it relative to the block and write it
r -= block->in();
if (waveform_info.silence) {
block->waveform().OverwriteSilence(r.in(), r.length());
} else {
block->waveform().OverwriteSums(waveform_info.waveform, r.in(), r.in() - waveform_info.range.in(), r.length());
}
}
emit block->PreviewChanged();
if (incomplete) {
if (last_conform_task_ > watcher_job_time) {
// Requeue now
cache->Invalidate(range);
} else {
// Wait for conform
d.needs_conform.insert(range);
}
}
}
@@ -193,6 +195,13 @@ void PreviewAutoCacher::VideoRendered()
{
RenderTicketWatcher* watcher = static_cast<RenderTicketWatcher*>(sender());
const QStringList bad_cache_names = watcher->GetTicket()->property("badcache").toStringList();
if (!bad_cache_names.empty()) {
for (const QString &fn : bad_cache_names) {
DiskManager::instance()->DeleteSpecificFile(fn);
}
}
// Process passthroughs no matter what, if the viewer was switched, the passthrough map would be
// cleared anyway
QVector<RenderTicketPtr> tickets = video_immediate_passthroughs_.take(watcher);
@@ -206,21 +215,21 @@ void PreviewAutoCacher::VideoRendered()
// If the task list doesn't contain this watcher, presumably it was cleared as a result of a
// viewer switch, so we'll completely ignore this watcher
auto it = video_tasks_.find(watcher);
if (it != video_tasks_.end()) {
if (running_video_tasks_.removeOne(watcher)) {
// Assume that a "result" is a fully completed image and a non-result is a cancelled ticket
if (watcher->HasResult()) {
// Download frame in another thread
if (watcher->GetTicket()->property("cached").toBool()) {
if (FrameHashCache *cache = Node::ValueToPtr<FrameHashCache>(watcher->property("cache"))) {
cache->ValidateTime(it.value());
rational time = watcher->property("time").value<rational>();
JobTime job = watcher->property("job").value<JobTime>();
if (video_cache_data_.value(cache).job_tracker.isCurrent(time, job)) {
cache->ValidateTime(time);
}
}
}
}
video_tasks_.erase(it);
// Continue rendering
TryRender();
}
@@ -273,6 +282,12 @@ void PreviewAutoCacher::AddNode(Node *node)
// Add to project
copy->setParent(&copied_project_);
// Disable caches for copy
copy->SetCachesEnabled(false);
// Copy cache UUIDs
copy->CopyCacheUuidsFrom(node);
// Insert into map
InsertIntoCopyMap(node, copy);
@@ -352,54 +367,68 @@ void PreviewAutoCacher::InsertIntoCopyMap(Node *node, Node *copy)
void PreviewAutoCacher::ConnectToNodeCache(Node *node)
{
// TEMP: Retain existing behavior until more work is done
if (node == viewer_node_) {
connect(node->video_frame_cache(),
&PlaybackCache::EnabledChanged,
this,
&PreviewAutoCacher::VideoAutoCacheEnableChanged);
connect(node->video_frame_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::VideoInvalidatedFromCache);
connect(node->audio_playback_cache(),
&PlaybackCache::EnabledChanged,
this,
&PreviewAutoCacher::AudioAutoCacheEnableChanged);
connect(node->thumbnail_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::VideoInvalidatedFromCache);
connect(node->video_frame_cache(),
&PlaybackCache::Invalidated,
this,
&PreviewAutoCacher::VideoInvalidated);
connect(node->audio_playback_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::AudioInvalidatedFromCache);
connect(node->audio_playback_cache(),
&PlaybackCache::Invalidated,
this,
&PreviewAutoCacher::AudioInvalidated);
}
connect(node->waveform_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::AudioInvalidatedFromCache);
connect(node->video_frame_cache(),
&PlaybackCache::CancelAll,
this,
&PreviewAutoCacher::CancelForCache);
connect(node->audio_playback_cache(),
&PlaybackCache::CancelAll,
this,
&PreviewAutoCacher::CancelForCache);
}
void PreviewAutoCacher::DisconnectFromNodeCache(Node *node)
{
// TEMP: Retain existing behavior until more work is done
if (node == viewer_node_) {
disconnect(node->video_frame_cache(),
&PlaybackCache::EnabledChanged,
this,
&PreviewAutoCacher::VideoAutoCacheEnableChanged);
disconnect(node->video_frame_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::VideoInvalidatedFromCache);
disconnect(node->audio_playback_cache(),
&PlaybackCache::EnabledChanged,
this,
&PreviewAutoCacher::AudioAutoCacheEnableChanged);
disconnect(node->thumbnail_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::VideoInvalidatedFromCache);
disconnect(node->video_frame_cache(),
&PlaybackCache::Invalidated,
this,
&PreviewAutoCacher::VideoInvalidated);
disconnect(node->audio_playback_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::AudioInvalidatedFromCache);
disconnect(node->audio_playback_cache(),
&PlaybackCache::Invalidated,
this,
&PreviewAutoCacher::AudioInvalidated);
}
disconnect(node->waveform_cache(),
&PlaybackCache::Request,
this,
&PreviewAutoCacher::AudioInvalidatedFromCache);
disconnect(node->video_frame_cache(),
&PlaybackCache::CancelAll,
this,
&PreviewAutoCacher::CancelForCache);
disconnect(node->audio_playback_cache(),
&PlaybackCache::CancelAll,
this,
&PreviewAutoCacher::CancelForCache);
}
void PreviewAutoCacher::UpdateGraphChangeValue()
@@ -421,44 +450,64 @@ void PreviewAutoCacher::CancelQueuedSingleFrameRender()
}
}
void PreviewAutoCacher::VideoInvalidatedList(const TimeRangeList &list)
{
foreach (const TimeRange &range, list) {
VideoInvalidated(range);
}
}
void PreviewAutoCacher::AudioInvalidatedList(const TimeRangeList &list)
{
foreach (const TimeRange &range, list) {
AudioInvalidated(range);
}
}
void PreviewAutoCacher::StartCachingRange(const TimeRange &range, TimeRangeList *range_list, RenderJobTracker *tracker)
{
range_list->insert(range);
tracker->insert(range, graph_changed_time_);
}
void PreviewAutoCacher::StartCachingVideoRange(const TimeRange &range)
void PreviewAutoCacher::StartCachingVideoRange(PlaybackCache *cache, const TimeRange &range)
{
StartCachingRange(range, &invalidated_video_, &video_job_tracker_);
RequeueFrames();
Node *node = cache->parent();
rational using_tb;
if (ThumbnailCache *thumbs = dynamic_cast<ThumbnailCache*>(cache)) {
using_tb = thumbs->GetTimebase();
} else {
using_tb = viewer_node_->GetVideoParams().frame_rate_as_time_base();
}
TimeRangeListFrameIterator iterator({range}, using_tb);
pending_video_jobs_.push_back({node, cache, range, iterator});
video_cache_data_[cache].job_tracker.insert(TimeRange(iterator.Snap(range.in()), range.out()), graph_changed_time_);
TryRender();
}
void PreviewAutoCacher::StartCachingAudioRange(const TimeRange &range)
void PreviewAutoCacher::StartCachingAudioRange(PlaybackCache *cache, const TimeRange &range)
{
StartCachingRange(range, &invalidated_audio_, &audio_job_tracker_);
Node *node = cache->parent();
pending_audio_jobs_.push_back({node, cache, range});
audio_cache_data_[cache].job_tracker.insert(range, graph_changed_time_);
TryRender();
}
void PreviewAutoCacher::VideoInvalidatedFromNode(PlaybackCache *cache, const TimeRange &range)
{
// Stop any current render tasks because a) they might be out of date now anyway, and b) we
// want to dedicate all our rendering power to realtime feedback for the user
//CancelVideoTasks(node);
// If auto-cache is enabled and a slider is not being dragged, queue up to hash these frames
if (!NodeInputDragger::IsInputBeingDragged()) {
StartCachingVideoRange(cache, range);
}
}
void PreviewAutoCacher::AudioInvalidatedFromNode(PlaybackCache *cache, const TimeRange &range)
{
// We don't stop rendering audio because currently there's no system of requeuing audio if it's
// cancelled, so some areas may end up unrendered forever
// ClearAudioQueue();
// If we're auto-caching audio or require realtime waveforms, we'll have to render this
StartCachingAudioRange(cache, range);
}
void PreviewAutoCacher::SetPlayhead(const rational &playhead)
{
cache_range_ = TimeRange(playhead - OLIVE_CONFIG("DiskCacheBehind").value<rational>(),
playhead + OLIVE_CONFIG("DiskCacheAhead").value<rational>());
RequeueFrames();
TryRender();
}
template<typename T>
@@ -466,30 +515,37 @@ void CancelTasks(const T &task_list, bool and_wait)
{
for (auto it=task_list.cbegin(); it!=task_list.cend(); it++) {
// Signal that the ticket should not be finished
it.key()->Cancel();
(*it)->Cancel();
}
if (and_wait) {
// Wait for each ticket to finish
for (auto it=task_list.cbegin(); it!=task_list.cend(); it++) {
it.key()->WaitForFinished();
(*it)->WaitForFinished();
}
}
}
void PreviewAutoCacher::CancelVideoTasks(bool and_wait_for_them_to_finish)
{
CancelTasks(video_tasks_, and_wait_for_them_to_finish);
CancelTasks(running_video_tasks_, and_wait_for_them_to_finish);
}
void PreviewAutoCacher::CancelAudioTasks(bool and_wait_for_them_to_finish)
{
CancelTasks(audio_tasks_, and_wait_for_them_to_finish);
CancelTasks(running_audio_tasks_, and_wait_for_them_to_finish);
}
void PreviewAutoCacher::SetAudioPaused(bool e)
bool PreviewAutoCacher::IsRenderingCustomRange() const
{
pause_audio_ = e;
/*const VideoCacheData &d = video_cache_data_.value(viewer_node_);
return d.iterator.IsCustomRange() && d.iterator.HasNext();*/
return false;
}
void PreviewAutoCacher::SetRendersPaused(bool e)
{
pause_renders_ = e;
if (!e) {
TryRender();
}
@@ -533,12 +589,14 @@ void PreviewAutoCacher::ValueHintChanged(const NodeInput &input)
void PreviewAutoCacher::TryRender()
{
delayed_requeue_timer_.stop();
if (!graph_update_queue_.isEmpty()) {
// Check if we have jobs running in other threads that shouldn't be interrupted right now
// NOTE: We don't check for downloads because, while they run in another thread, they don't
// require any access to the graph and therefore don't risk race conditions.
if (!audio_tasks_.isEmpty()
|| !video_tasks_.isEmpty()) {
if (!running_audio_tasks_.isEmpty()
|| !running_video_tasks_.isEmpty()) {
return;
}
@@ -546,173 +604,164 @@ void PreviewAutoCacher::TryRender()
ProcessUpdateQueue();
}
// Check for newly invalidated video and hash it
if (!invalidated_video_.isEmpty()) {
if (!copied_viewer_node_->GetConnectedTextureOutput()) {
queued_frame_iterator_.reset();
} else if (queued_frame_iterator_.HasNext()) {
queued_frame_iterator_.insert(invalidated_video_);
} else {
queued_frame_iterator_ = TimeRangeListFrameIterator(invalidated_video_, viewer_node_->GetVideoParams().frame_rate_as_time_base());
}
invalidated_video_.clear();
}
if (!invalidated_audio_.isEmpty()) {
// Add newly invalidated audio to iterator
audio_iterator_.insert(invalidated_audio_);
invalidated_audio_.clear();
}
if (single_frame_render_) {
// Make an explicit copy of the render ticket here - it seems that on some systems it can be set
// to NULL before we're done with it...
RenderTicketPtr t = single_frame_render_;
single_frame_render_ = nullptr;
RenderTicketWatcher *watcher = RenderFrame(t->property("time").value<rational>(),
// Check if already caching this
RenderTicketWatcher *watcher = RenderFrame(copied_viewer_node_->GetConnectedTextureOutput(),
t->property("time").value<rational>(),
nullptr,
t->property("dry").toBool());
video_immediate_passthroughs_[watcher].append(t);
}
// Completely arbitrary number. I don't know what's optimal for this yet.
const int max_tasks = 4;
if (!pause_renders_) {
// Completely arbitrary number. I don't know what's optimal for this yet.
const int max_tasks = 4;
// Handle video tasks
rational t;
while (video_tasks_.size() < max_tasks && queued_frame_iterator_.GetNext(&t)) {
RenderTicketWatcher* render_task = video_tasks_.key(t);
// Handle video tasks
while (!pending_video_jobs_.empty()) {
VideoJob &d = pending_video_jobs_.front();
// We want this hash, if we're not already rendering, start render now
if (!render_task) {
// Don't render any hash more than once
RenderFrame(t, viewer_node_->video_frame_cache(), false);
if (Node *copy = copy_map_.value(d.node)) {
// Queue next frames
rational t;
while (running_video_tasks_.size() < max_tasks && d.iterator.GetNext(&t)) {
RenderFrame(copy, t, d.cache, false);
emit SignalCacheProxyTaskProgress(double(d.iterator.frame_index()) / double(d.iterator.size()));
if (!d.iterator.HasNext()) {
emit StopCacheProxyTasks();
}
}
} else {
qCritical() << "Failed to find node copy for video job";
}
if (d.iterator.HasNext()) {
break;
} else {
pending_video_jobs_.pop_front();
}
}
emit SignalCacheProxyTaskProgress(double(queued_frame_iterator_.frame_index()) / double(queued_frame_iterator_.size()));
// Handle audio tasks
while (!pending_audio_jobs_.empty() && running_audio_tasks_.size() < max_tasks) {
AudioJob &d = pending_audio_jobs_.front();
if (!queued_frame_iterator_.HasNext()) {
emit StopCacheProxyTasks();
bool pop = true;
// Start job
if (Node *copy = copy_map_.value(d.node)) {
TimeRange &queued_range = d.range;
TimeRange use_range = queued_range;
if (dynamic_cast<AudioWaveformCache*>(d.cache)) {
rational new_out = std::min(use_range.in() + AudioVisualWaveform::kMinimumSampleRate.flipped(), use_range.out());
if (new_out != use_range.out()) {
use_range.set_out(new_out);
queued_range.set_in(new_out);
pop = false;
}
}
RenderAudio(copy, use_range, d.cache);
} else {
qCritical() << "Failed to find node copy for audio job";
}
if (pop) {
pending_audio_jobs_.pop_front();
}
}
}
// Handle audio tasks
while (!audio_iterator_.isEmpty() && audio_tasks_.size() < max_tasks && !pause_audio_) {
// Copy first range in list
TimeRange r = audio_iterator_.first();
// Limit to the minimum sample rate supported by AudioVisualWaveform - we use this value so that
// whatever chunk we render can be summed down to the smallest mipmap whole
r.set_out(qMin(r.out(), r.in() + AudioVisualWaveform::kMinimumSampleRate.flipped()));
// Start job
RenderAudio(r, true);
audio_iterator_.remove(r);
}
}
RenderTicketWatcher* PreviewAutoCacher::RenderFrame(Node *node, const rational& time, FrameHashCache *cache, bool dry)
RenderTicketWatcher* PreviewAutoCacher::RenderFrame(Node *node, const rational& time, PlaybackCache *cache, bool dry)
{
RenderTicketWatcher* watcher = new RenderTicketWatcher();
watcher->setProperty("job", QVariant::fromValue(last_update_time_));
watcher->setProperty("cache", Node::PtrToValue(cache));
watcher->setProperty("time", QVariant::fromValue(time));
connect(watcher, &RenderTicketWatcher::Finished, this, &PreviewAutoCacher::VideoRendered);
video_tasks_.insert(watcher, time);
watcher->SetTicket(RenderManager::instance()->RenderFrame(node,
copied_viewer_node_->GetVideoParams(),
copied_viewer_node_->GetAudioParams(),
copied_color_manager_,
time,
RenderMode::kOffline,
cache,
dry ? RenderManager::kNull : RenderManager::kTexture));
running_video_tasks_.append(watcher);
RenderManager::RenderVideoParams rvp(node,
copied_viewer_node_->GetVideoParams(),
copied_viewer_node_->GetAudioParams(),
time,
copied_color_manager_,
RenderMode::kOffline);
if (FrameHashCache *frame_cache = dynamic_cast<FrameHashCache *>(cache)) {
if (ThumbnailCache *wave_cache = dynamic_cast<ThumbnailCache *>(cache)) {
rvp.video_params.set_divider(VideoParams::GetDividerForTargetResolution(rvp.video_params.width(), rvp.video_params.height(), 160, 120));
rvp.force_color_output = display_color_processor_;
rvp.force_format = VideoParams::kFormatUnsigned8;
} else {
frame_cache->SetTimebase(viewer_node_->GetVideoParams().frame_rate_as_time_base());
}
rvp.AddCache(frame_cache);
}
rvp.return_type = dry ? RenderManager::kNull : RenderManager::kTexture;
// Allow using cached images for this render job
rvp.use_cache = true;
watcher->SetTicket(RenderManager::instance()->RenderFrame(rvp));
return watcher;
}
RenderTicketPtr PreviewAutoCacher::RenderAudio(Node *node, const TimeRange &r, bool generate_waveforms)
RenderTicketPtr PreviewAutoCacher::RenderAudio(Node *node, const TimeRange &r, PlaybackCache *cache)
{
RenderTicketWatcher* watcher = new RenderTicketWatcher();
watcher->setProperty("job", QVariant::fromValue(last_update_time_));
watcher->setProperty("node", Node::PtrToValue(node));
watcher->setProperty("cache", Node::PtrToValue(cache));
watcher->setProperty("time", QVariant::fromValue(r));
connect(watcher, &RenderTicketWatcher::Finished, this, &PreviewAutoCacher::AudioRendered);
audio_tasks_.insert(watcher, r);
running_audio_tasks_.append(watcher);
RenderTicketPtr ticket = RenderManager::instance()->RenderAudio(node, r, copied_viewer_node_->GetAudioParams(), RenderMode::kOffline, generate_waveforms);
RenderManager::RenderAudioParams rap(node,
r,
copied_viewer_node_->GetAudioParams(),
RenderMode::kOffline);
rap.generate_waveforms = dynamic_cast<AudioWaveformCache*>(cache);
rap.clamp = false;
RenderTicketPtr ticket = RenderManager::instance()->RenderAudio(rap);
watcher->SetTicket(ticket);
return ticket;
}
void PreviewAutoCacher::RequeueFrames()
{
delayed_requeue_timer_.stop();
if (viewer_node_
&& (viewer_node_->video_frame_cache()->IsEnabled() || use_custom_range_)
&& viewer_node_->video_frame_cache()->HasInvalidatedRanges(viewer_node_->GetVideoLength())
&& !IsRenderingCustomRange()) {
TimeRange using_range = use_custom_range_ ? custom_autocache_range_ : cache_range_;
TimeRangeList invalidated = viewer_node_->video_frame_cache()->GetInvalidatedRanges(using_range);
queued_frame_iterator_ = TimeRangeListFrameIterator(invalidated, viewer_node_->video_frame_cache()->GetTimebase());
queued_frame_iterator_.SetCustomRange(use_custom_range_);
emit StopCacheProxyTasks();
if (use_custom_range_) {
CustomCacheTask *cct = new CustomCacheTask(viewer_node_->GetLabelOrName());
connect(this, &PreviewAutoCacher::StopCacheProxyTasks, cct, &CustomCacheTask::Finish);
connect(this, &PreviewAutoCacher::SignalCacheProxyTaskProgress, cct, &CustomCacheTask::ProgressChanged);
connect(cct, &CustomCacheTask::Cancelled, this, &PreviewAutoCacher::CacheProxyTaskCancelled);
TaskManager::instance()->AddTask(cct);
}
use_custom_range_ = false;
TryRender();
}
}
void PreviewAutoCacher::ConformFinished()
{
// Got an audio conform, requeue all the audio currently needing a conform
last_conform_task_.Acquire();
if (!audio_needing_conform_.isEmpty()) {
// This list should be empty if there was a viewer switch
foreach (const TimeRange &range, audio_needing_conform_) {
viewer_node_->audio_playback_cache()->Invalidate(range);
for (auto it=audio_cache_data_.begin(); it!=audio_cache_data_.end(); it++) {
foreach (const TimeRange &range, it.value().needs_conform) {
it.key()->Request(range);
}
audio_needing_conform_.clear();
}
}
void PreviewAutoCacher::VideoAutoCacheEnableChanged(bool e)
{
if (e) {
VideoInvalidatedList(viewer_node_->video_frame_cache()->GetInvalidatedRanges(viewer_node_->GetVideoLength()));
} else {
CancelVideoTasks();
queued_frame_iterator_.reset();
}
}
void PreviewAutoCacher::AudioAutoCacheEnableChanged(bool e)
{
if (e) {
AudioInvalidatedList(viewer_node_->audio_playback_cache()->GetInvalidatedRanges(viewer_node_->GetAudioLength()));
} else {
CancelAudioTasks();
audio_iterator_.clear();
it.value().needs_conform.clear();
}
}
void PreviewAutoCacher::CacheProxyTaskCancelled()
{
queued_frame_iterator_.reset();
RequeueFrames();
pending_video_jobs_.clear();
TryRender();
}
void PreviewAutoCacher::ForceCacheRange(const TimeRange &range)
@@ -721,7 +770,7 @@ void PreviewAutoCacher::ForceCacheRange(const TimeRange &range)
custom_autocache_range_ = range;
// Re-hash these frames and start rendering
StartCachingVideoRange(range);
StartCachingVideoRange(viewer_node_->video_frame_cache(), range);
}
void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
@@ -738,36 +787,25 @@ void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
delayed_requeue_timer_.stop();
// Handle video rendering tasks
if (!video_tasks_.isEmpty()) {
if (!running_video_tasks_.isEmpty()) {
// Cancel any video tasks and wait for them to finish
CancelVideoTasks(true);
video_tasks_.clear();
running_video_tasks_.clear();
}
// Handle audio rendering tasks
if (!audio_tasks_.isEmpty()) {
if (!running_audio_tasks_.isEmpty()) {
// Cancel any audio tasks and wait for them to finish
CancelAudioTasks(true);
audio_tasks_.clear();
running_audio_tasks_.clear();
}
// Clear iterators
queued_frame_iterator_.reset();
audio_iterator_.clear();
// Clear any invalidated ranges
invalidated_video_.clear();
invalidated_audio_.clear();
// Clear any single frame render that might be queued
CancelQueuedSingleFrameRender();
// Not interested in video passthroughs anymore
video_immediate_passthroughs_.clear();
// Not interested in audio conforming anymore
audio_needing_conform_.clear();
// Disconnect from all node cache's
for (auto it=copy_map_.cbegin(); it!=copy_map_.cend(); it++) {
DisconnectFromNodeCache(it.key());
@@ -779,8 +817,10 @@ void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
copy_map_.clear();
copied_viewer_node_ = nullptr;
graph_update_queue_.clear();
video_job_tracker_.clear();
audio_job_tracker_.clear();
// Ensure all cache data is cleared
video_cache_data_.clear();
audio_cache_data_.clear();
// Disconnect signals for future node additions/deletions
NodeGraph* graph = viewer_node_->parent();
@@ -799,6 +839,8 @@ void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
// Copy graph
NodeGraph* graph = viewer_node_->parent();
SetRendersPaused(true);
// Add all nodes
for (int i=0; i<copied_project_.nodes().size(); i++) {
InsertIntoCopyMap(graph->nodes().at(i), copied_project_.nodes().at(i));
@@ -806,6 +848,9 @@ void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
for (int i=copied_project_.nodes().size(); i<graph->nodes().size(); i++) {
AddNode(graph->nodes().at(i));
}
for (int i=0; i<graph->nodes().size(); i++) {
graph->nodes().at(i)->ConnectedToPreviewEvent();
}
// Find copied viewer node
copied_viewer_node_ = static_cast<ViewerOutput*>(copy_map_.value(viewer_node_));
@@ -830,9 +875,7 @@ void PreviewAutoCacher::SetViewerNode(ViewerOutput *viewer_node)
connect(graph, &NodeGraph::ValueChanged, this, &PreviewAutoCacher::ValueChanged, Qt::DirectConnection);
connect(graph, &NodeGraph::InputValueHintChanged, this, &PreviewAutoCacher::ValueHintChanged, Qt::DirectConnection);
// Copy invalidated ranges and start rendering if necessary
VideoInvalidatedList(viewer_node_->video_frame_cache()->GetInvalidatedRanges(viewer_node_->GetVideoLength()));
AudioInvalidatedList(viewer_node_->audio_playback_cache()->GetInvalidatedRanges(viewer_node_->GetAudioLength()));
SetRendersPaused(false);
}
}
+54 -42
View File
@@ -45,7 +45,7 @@ class PreviewAutoCacher : public QObject
{
Q_OBJECT
public:
PreviewAutoCacher();
PreviewAutoCacher(QObject *parent = nullptr);
virtual ~PreviewAutoCacher() override;
@@ -53,6 +53,8 @@ public:
RenderTicketPtr GetRangeOfAudio(TimeRange range);
void ClearSingleFrameRenders();
/**
* @brief Set the viewer node to auto-cache
*/
@@ -83,12 +85,15 @@ public:
void CancelVideoTasks(bool and_wait_for_them_to_finish = false);
void CancelAudioTasks(bool and_wait_for_them_to_finish = false);
bool IsRenderingCustomRange() const
{
return queued_frame_iterator_.IsCustomRange() && queued_frame_iterator_.HasNext();
}
bool IsRenderingCustomRange() const;
void SetAudioPaused(bool e);
void SetRendersPaused(bool e);
public slots:
void SetDisplayColorProcessor(ColorProcessorPtr processor)
{
display_color_processor_ = processor;
}
signals:
void StopCacheProxyTasks();
@@ -98,17 +103,9 @@ signals:
private:
void TryRender();
RenderTicketWatcher *RenderFrame(Node *node, const rational &time, FrameHashCache *cache, bool dry);
RenderTicketWatcher *RenderFrame(const rational &time, FrameHashCache *cache, bool dry)
{
return RenderFrame(copied_viewer_node_->GetConnectedTextureOutput(), time, cache, dry);
}
RenderTicketWatcher *RenderFrame(Node *node, const rational &time, PlaybackCache *cache, bool dry);
RenderTicketPtr RenderAudio(Node *node, const TimeRange &range, bool generate_waveforms);
RenderTicketPtr RenderAudio(const TimeRange &range, bool generate_waveforms)
{
return RenderAudio(copied_viewer_node_->GetConnectedSampleOutput(), range, generate_waveforms);
}
RenderTicketPtr RenderAudio(Node *node, const TimeRange &range, PlaybackCache *cache);
/**
* @brief Process all changes to internal NodeGraph copy
@@ -135,12 +132,12 @@ private:
void CancelQueuedSingleFrameRender();
void VideoInvalidatedList(const TimeRangeList &list);
void AudioInvalidatedList(const TimeRangeList &list);
void StartCachingRange(const TimeRange &range, TimeRangeList *range_list, RenderJobTracker *tracker);
void StartCachingVideoRange(const TimeRange &range);
void StartCachingAudioRange(const TimeRange &range);
void StartCachingVideoRange(PlaybackCache *cache, const TimeRange &range);
void StartCachingAudioRange(PlaybackCache *cache, const TimeRange &range);
void VideoInvalidatedFromNode(PlaybackCache *cache, const olive::TimeRange &range);
void AudioInvalidatedFromNode(PlaybackCache *cache, const olive::TimeRange &range);
class QueuedJob {
public:
@@ -175,15 +172,9 @@ private:
bool use_custom_range_;
TimeRange custom_autocache_range_;
TimeRangeList invalidated_video_;
TimeRangeList invalidated_audio_;
bool pause_audio_;
bool pause_renders_;
RenderTicketPtr single_frame_render_;
QMap<RenderTicketWatcher*, TimeRange> audio_tasks_;
QMap<RenderTicketWatcher*, rational> video_tasks_;
QMap<RenderTicketWatcher*, QVector<RenderTicketPtr> > video_immediate_passthroughs_;
JobTime graph_changed_time_;
@@ -191,28 +182,53 @@ private:
QTimer delayed_requeue_timer_;
TimeRangeList audio_needing_conform_;
JobTime last_conform_task_;
RenderJobTracker video_job_tracker_;
RenderJobTracker audio_job_tracker_;
QVector<RenderTicketWatcher*> running_video_tasks_;
QVector<RenderTicketWatcher*> running_audio_tasks_;
TimeRangeListFrameIterator queued_frame_iterator_;
TimeRangeList audio_iterator_;
struct VideoJob {
Node *node;
PlaybackCache *cache;
TimeRange range;
TimeRangeListFrameIterator iterator;
};
static const bool kRealTimeWaveformsEnabled;
struct VideoCacheData {
RenderJobTracker job_tracker;
};
struct AudioJob {
Node *node;
PlaybackCache *cache;
TimeRange range;
};
struct AudioCacheData {
RenderJobTracker job_tracker;
TimeRangeList needs_conform;
};
std::list<VideoJob> pending_video_jobs_;
std::list<AudioJob> pending_audio_jobs_;
QHash<PlaybackCache*, VideoCacheData> video_cache_data_;
QHash<PlaybackCache*, AudioCacheData> audio_cache_data_;
ColorProcessorPtr display_color_processor_;
private slots:
/**
* @brief Handler for when the NodeGraph reports a video change over a certain time range
*/
void VideoInvalidated(const olive::TimeRange &range);
void VideoInvalidatedFromCache(const olive::TimeRange &range);
/**
* @brief Handler for when the NodeGraph reports a audio change over a certain time range
*/
void AudioInvalidated(const olive::TimeRange &range);
void AudioInvalidatedFromCache(const olive::TimeRange &range);
void CancelForCache();
/**
* @brief Handler for when the RenderManager has returned rendered audio
@@ -239,14 +255,10 @@ private slots:
/**
* @brief Generic function called whenever the frames to render need to be (re)queued
*/
void RequeueFrames();
//void RequeueFrames();
void ConformFinished();
void VideoAutoCacheEnableChanged(bool e);
void AudioAutoCacheEnableChanged(bool e);
void CacheProxyTaskCancelled();
};
+2
View File
@@ -121,6 +121,8 @@ TexturePtr Renderer::InterlaceTexture(TexturePtr top, TexturePtr bottom, const V
QVariant Renderer::GetDefaultShader()
{
QMutexLocker locker(&color_cache_mutex_);
if (default_shader_.isNull()) {
default_shader_ = CreateNativeShader(ShaderCode(QString(), QString()));
}
+51 -73
View File
@@ -52,13 +52,10 @@ RenderManager::RenderManager(QObject *parent) :
}
if (context_) {
video_thread_ = new RenderThread(context_, decoder_cache_, shader_cache_, this);
dry_run_thread_ = new RenderThread(nullptr, decoder_cache_, shader_cache_, this);
audio_thread_ = new RenderThread(nullptr, decoder_cache_, shader_cache_, this);
video_thread_->start(QThread::IdlePriority);
dry_run_thread_->start(QThread::IdlePriority);
audio_thread_->start(QThread::IdlePriority);
video_thread_ = CreateThread(context_);
dry_run_thread_ = CreateThread();
audio_thread_ = CreateThread();
waveform_thread_ = CreateThread();
}
decoder_clear_timer_ = new QTimer(this);
@@ -73,72 +70,49 @@ RenderManager::~RenderManager()
delete shader_cache_;
delete decoder_cache_;
video_thread_->quit();
video_thread_->wait();
dry_run_thread_->quit();
dry_run_thread_->wait();
for (RenderThread *rt : render_threads_) {
rt->quit();
rt->wait();
}
context_->PostDestroy();
delete context_;
audio_thread_->quit();
audio_thread_->wait();
}
}
RenderTicketPtr RenderManager::RenderFrame(Node *node, const VideoParams &vparam, const AudioParams &param,
ColorManager* color_manager, const rational& time, RenderMode::Mode mode,
FrameHashCache* cache, ReturnType return_type)
RenderThread *RenderManager::CreateThread(Renderer *renderer)
{
return RenderFrame(node,
color_manager,
time,
mode,
vparam,
param,
QSize(0, 0),
QMatrix4x4(),
VideoParams::kFormatInvalid,
0,
nullptr,
cache,
return_type);
auto t = new RenderThread(renderer, decoder_cache_, shader_cache_, this);
render_threads_.push_back(t);
t->start(QThread::IdlePriority);
return t;
}
RenderTicketPtr RenderManager::RenderFrame(Node *node, ColorManager* color_manager,
const rational& time, RenderMode::Mode mode,
const VideoParams &video_params, const AudioParams &audio_params,
const QSize& force_size,
const QMatrix4x4& force_matrix, VideoParams::Format force_format,
int force_channel_count,
ColorProcessorPtr force_color_output,
FrameHashCache* cache, ReturnType return_type)
RenderTicketPtr RenderManager::RenderFrame(const RenderVideoParams &params)
{
// Create ticket
RenderTicketPtr ticket = std::make_shared<RenderTicket>();
ticket->setProperty("node", Node::PtrToValue(node));
ticket->setProperty("time", QVariant::fromValue(time));
ticket->setProperty("size", force_size);
ticket->setProperty("matrix", force_matrix);
ticket->setProperty("format", force_format);
ticket->setProperty("channelcount", force_channel_count);
ticket->setProperty("mode", mode);
ticket->setProperty("node", Node::PtrToValue(params.node));
ticket->setProperty("time", QVariant::fromValue(params.time));
ticket->setProperty("size", params.force_size);
ticket->setProperty("matrix", params.force_matrix);
ticket->setProperty("format", params.force_format);
ticket->setProperty("usecache", params.use_cache);
ticket->setProperty("channelcount", params.force_channel_count);
ticket->setProperty("mode", params.mode);
ticket->setProperty("type", kTypeVideo);
ticket->setProperty("colormanager", Node::PtrToValue(color_manager));
ticket->setProperty("coloroutput", QVariant::fromValue(force_color_output));
ticket->setProperty("vparam", QVariant::fromValue(video_params));
ticket->setProperty("aparam", QVariant::fromValue(audio_params));
ticket->setProperty("return", return_type);
ticket->setProperty("colormanager", Node::PtrToValue(params.color_manager));
ticket->setProperty("coloroutput", QVariant::fromValue(params.force_color_output));
Q_ASSERT(params.video_params.is_valid());
ticket->setProperty("vparam", QVariant::fromValue(params.video_params));
ticket->setProperty("aparam", QVariant::fromValue(params.audio_params));
ticket->setProperty("return", params.return_type);
ticket->setProperty("cache", params.cache_dir);
ticket->setProperty("cachetimebase", QVariant::fromValue(params.cache_timebase));
ticket->setProperty("cacheid", QVariant::fromValue(params.cache_id));
if (cache) {
ticket->setProperty("cache", cache->GetCacheDirectory());
ticket->setProperty("cachetimebase", QVariant::fromValue(cache->GetTimebase()));
ticket->setProperty("cacheuuid", QVariant::fromValue(cache->GetUuid()));
}
if (return_type == ReturnType::kNull) {
if (params.return_type == ReturnType::kNull) {
dry_run_thread_->AddTicket(ticket);
} else {
video_thread_->AddTicket(ticket);
@@ -147,34 +121,37 @@ RenderTicketPtr RenderManager::RenderFrame(Node *node, ColorManager* color_manag
return ticket;
}
RenderTicketPtr RenderManager::RenderAudio(Node *node, const TimeRange &r, const AudioParams &params, RenderMode::Mode mode, bool generate_waveforms)
RenderTicketPtr RenderManager::RenderAudio(const RenderAudioParams &params)
{
// Create ticket
RenderTicketPtr ticket = std::make_shared<RenderTicket>();
ticket->setProperty("node", Node::PtrToValue(node));
ticket->setProperty("time", QVariant::fromValue(r));
ticket->setProperty("node", Node::PtrToValue(params.node));
ticket->setProperty("time", QVariant::fromValue(params.range));
ticket->setProperty("type", kTypeAudio);
ticket->setProperty("mode", mode);
ticket->setProperty("enablewaveforms", generate_waveforms);
ticket->setProperty("aparam", QVariant::fromValue(params));
ticket->setProperty("enablewaveforms", params.generate_waveforms);
ticket->setProperty("clamp", params.clamp);
ticket->setProperty("aparam", QVariant::fromValue(params.audio_params));
ticket->setProperty("mode", params.mode);
audio_thread_->AddTicket(ticket);
if (params.generate_waveforms) {
waveform_thread_->AddTicket(ticket);
} else {
audio_thread_->AddTicket(ticket);
}
return ticket;
}
bool RenderManager::RemoveTicket(RenderTicketPtr ticket)
{
if (video_thread_->RemoveTicket(ticket)) {
return true;
} else if (audio_thread_->RemoveTicket(ticket)) {
return true;
} else if (dry_run_thread_->RemoveTicket(ticket)) {
return true;
} else {
return false;
for (RenderThread *rt : render_threads_) {
if (rt->RemoveTicket(ticket)) {
return true;
}
}
return false;
}
void RenderManager::SetAggressiveGarbageCollection(bool enabled)
@@ -222,6 +199,7 @@ RenderThread::RenderThread(Renderer *renderer, DecoderCache *decoder_cache, Shad
void RenderThread::AddTicket(RenderTicketPtr ticket)
{
QMutexLocker locker(&mutex_);
ticket->moveToThread(this);
queue_.push_back(ticket);
wait_.wakeOne();
}
+71 -12
View File
@@ -101,6 +101,51 @@ public:
kNull
};
struct RenderVideoParams {
RenderVideoParams(Node *n, const VideoParams &vparam, const AudioParams &aparam, const rational &t,
ColorManager *colorman, RenderMode::Mode m)
{
node = n;
video_params = vparam;
audio_params = aparam;
time = t;
color_manager = colorman;
use_cache = false;
return_type = kFrame;
force_format = VideoParams::kFormatInvalid;
force_color_output = nullptr;
force_size = QSize(0, 0);
force_channel_count = 0;
mode = m;
}
void AddCache(FrameHashCache *cache)
{
cache_dir = cache->GetCacheDirectory();
cache_timebase = cache->GetTimebase();
cache_id = cache->GetUuid().toString();
}
Node *node;
VideoParams video_params;
AudioParams audio_params;
rational time;
ColorManager *color_manager;
bool use_cache;
ReturnType return_type;
RenderMode::Mode mode;
QString cache_dir;
rational cache_timebase;
QString cache_id;
QSize force_size;
int force_channel_count;
QMatrix4x4 force_matrix;
VideoParams::Format force_format;
ColorProcessorPtr force_color_output;
};
static const rational kDryRunInterval;
/**
@@ -111,17 +156,26 @@ public:
*
* This function is thread-safe.
*/
RenderTicketPtr RenderFrame(Node *node, const VideoParams &vparam, const AudioParams &param, ColorManager* color_manager,
const rational& time, RenderMode::Mode mode,
FrameHashCache* cache = nullptr, ReturnType return_type = kFrame);
RenderTicketPtr RenderFrame(Node *node, ColorManager* color_manager,
const rational& time, RenderMode::Mode mode,
const VideoParams& video_params, const AudioParams& audio_params,
const QSize& force_size,
const QMatrix4x4& force_matrix, VideoParams::Format force_format,
int force_channel_count,
ColorProcessorPtr force_color_output,
FrameHashCache* cache = nullptr, ReturnType return_type = kFrame);
RenderTicketPtr RenderFrame(const RenderVideoParams &params);
struct RenderAudioParams {
RenderAudioParams(Node *n, const TimeRange &time, const AudioParams &aparam, RenderMode::Mode m)
{
node = n;
range = time;
audio_params = aparam;
generate_waveforms = false;
clamp = true;
mode = m;
}
Node *node;
TimeRange range;
AudioParams audio_params;
bool generate_waveforms;
bool clamp;
RenderMode::Mode mode;
};
/**
* @brief Asynchronously generate a chunk of audio
@@ -130,7 +184,7 @@ public:
*
* This function is thread-safe.
*/
RenderTicketPtr RenderAudio(Node *viewer, const TimeRange& r, const AudioParams& params, RenderMode::Mode mode, bool generate_waveforms);
RenderTicketPtr RenderAudio(const RenderAudioParams &params);
bool RemoveTicket(RenderTicketPtr ticket);
@@ -154,6 +208,8 @@ private:
virtual ~RenderManager() override;
RenderThread *CreateThread(Renderer *renderer = nullptr);
static RenderManager* instance_;
Renderer* context_;
@@ -174,6 +230,9 @@ private:
RenderThread *video_thread_;
RenderThread *dry_run_thread_;
RenderThread *audio_thread_;
RenderThread *waveform_thread_;
std::list<RenderThread *> render_threads_;
private slots:
void ClearOldDecoders();
+61 -57
View File
@@ -95,32 +95,32 @@ FramePtr RenderProcessor::GenerateFrame(TexturePtr texture, const rational& time
ColorProcessorPtr output_color_transform = ticket_->property("coloroutput").value<ColorProcessorPtr>();
const VideoParams& tex_params = texture->params();
if (output_color_transform) {
TexturePtr transform_tex = render_ctx_->CreateTexture(tex_params);
ColorTransformJob job;
job.SetColorProcessor(output_color_transform);
job.SetInputTexture(texture);
job.SetInputAlphaAssociation(OLIVE_CONFIG("ReassocLinToNonLin").toBool() ? kAlphaAssociated : kAlphaNone);
render_ctx_->BlitColorManaged(job, transform_tex.get());
texture = transform_tex;
}
if (tex_params.effective_width() != frame_params.effective_width()
|| tex_params.effective_height() != frame_params.effective_height()
|| tex_params.format() != frame_params.format()
|| output_color_transform) {
|| tex_params.format() != frame_params.format()) {
TexturePtr blit_tex = render_ctx_->CreateTexture(frame_params);
QMatrix4x4 matrix = ticket_->property("matrix").value<QMatrix4x4>();
if (output_color_transform) {
// Yes color transform, blit color managed
ColorTransformJob job;
// No color transform, just blit
ShaderJob job;
job.Insert(QStringLiteral("ove_maintex"), NodeValue(NodeValue::kTexture, QVariant::fromValue(texture)));
job.Insert(QStringLiteral("ove_mvpmat"), NodeValue(NodeValue::kMatrix, matrix));
job.SetColorProcessor(output_color_transform);
job.SetInputTexture(texture);
job.SetInputAlphaAssociation(OLIVE_CONFIG("ReassocLinToNonLin").toBool() ? kAlphaAssociated : kAlphaNone);
job.SetTransformMatrix(matrix);
render_ctx_->BlitColorManaged(job, blit_tex.get());
} else {
// No color transform, just blit
ShaderJob job;
job.Insert(QStringLiteral("ove_maintex"), NodeValue(NodeValue::kTexture, QVariant::fromValue(texture)));
job.Insert(QStringLiteral("ove_mvpmat"), NodeValue(NodeValue::kMatrix, matrix));
render_ctx_->BlitToTexture(render_ctx_->GetDefaultShader(), job, blit_tex.get());
}
render_ctx_->BlitToTexture(render_ctx_->GetDefaultShader(), job, blit_tex.get());
// Replace texture that we're going to download in the next step
texture = blit_tex;
@@ -144,6 +144,11 @@ void RenderProcessor::Run()
SetCacheVideoParams(ticket_->property("vparam").value<VideoParams>());
SetCacheAudioParams(ticket_->property("aparam").value<AudioParams>());
if (IsCancelled()) {
ticket_->Finish();
return;
}
switch (type) {
case RenderManager::kTypeVideo:
{
@@ -176,10 +181,9 @@ void RenderProcessor::Run()
// is actually "complete
ticket_->Finish();
} else {
RenderManager::ReturnType return_type = RenderManager::ReturnType(ticket_->property("return").toInt());
FramePtr frame;
QString cache = ticket_->property("cache").toString();
RenderManager::ReturnType return_type = RenderManager::ReturnType(ticket_->property("return").toInt());
if (return_type == RenderManager::kFrame || !cache.isEmpty()) {
// Convert to CPU frame
@@ -188,7 +192,7 @@ void RenderProcessor::Run()
// Save to cache if requested
if (!cache.isEmpty()) {
rational timebase = ticket_->property("cachetimebase").value<rational>();
QUuid uuid = ticket_->property("cacheuuid").value<QUuid>();
QUuid uuid = ticket_->property("cacheid").value<QUuid>();
bool cache_result = FrameHashCache::SaveCacheFrame(cache, uuid, time, timebase, frame);
ticket_->setProperty("cached", cache_result);
}
@@ -226,9 +230,11 @@ void RenderProcessor::Run()
SampleBuffer samples = sample_val.toSamples();
if (samples.is_allocated()) {
samples.clamp();
if (ticket_->property("clamp").toBool() && !IsCancelled()) {
samples.clamp();
}
if (ticket_->property("enablewaveforms").toBool()) {
if (ticket_->property("enablewaveforms").toBool() && !IsCancelled()) {
AudioVisualWaveform vis;
vis.set_channel_count(samples.audio_params().channel_count());
vis.OverwriteSamples(samples, samples.audio_params().sample_rate());
@@ -262,14 +268,18 @@ DecoderPtr RenderProcessor::ResolveDecoderFromInput(const QString& decoder_id, c
qint64 file_last_modified = QFileInfo(stream.filename()).lastModified().toMSecsSinceEpoch();
if (!decoder.decoder || decoder.last_modified != file_last_modified) {
DecoderPtr dec = nullptr;
if (decoder.decoder && decoder.last_modified == file_last_modified) {
dec = decoder.decoder;
} else {
// No decoder
decoder.decoder = Decoder::CreateFromID(decoder_id);
decoder.decoder = dec = Decoder::CreateFromID(decoder_id);
decoder.last_modified = file_last_modified;
decoder_cache_->insert(stream, decoder);
locker.unlock();
if (!decoder.decoder->Open(stream)) {
if (!dec->Open(stream)) {
qWarning() << "Failed to open decoder for" << stream.filename()
<< "::" << stream.stream();
return nullptr;
@@ -281,7 +291,7 @@ DecoderPtr RenderProcessor::ResolveDecoderFromInput(const QString& decoder_id, c
}
}
return decoder.decoder;
return dec;
}
void RenderProcessor::Process(RenderTicketPtr ticket, Renderer *render_ctx, DecoderCache *decoder_cache, ShaderCache *shader_cache)
@@ -310,8 +320,8 @@ NodeValueTable RenderProcessor::GenerateBlockTable(const Track *track, const Tim
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());
qint64 destination_offset = audio_params.time_to_samples(range_for_block.in() - range.in());
qint64 max_dest_sz = audio_params.time_to_samples(range_for_block.length());
// Destination buffer
NodeValueTable table = GenerateTable(b, Track::TransformRangeForBlock(b, range_for_block));
@@ -375,7 +385,7 @@ NodeValueTable RenderProcessor::GenerateBlockTable(const Track *track, const Tim
}
}
int copy_length = qMin(max_dest_sz, samples_from_this_block.sample_count());
qint64 copy_length = qMin(max_dest_sz, qint64(samples_from_this_block.sample_count()));
// Copy samples into destination buffer
for (int i=0; i<samples_from_this_block.audio_params().channel_count(); i++) {
@@ -384,26 +394,6 @@ NodeValueTable RenderProcessor::GenerateBlockTable(const Track *track, const Tim
NodeValueTable::Merge({merged_table, table});
}
// Create block waveforms if requested
if (ticket_->property("enablewaveforms").toBool() && clip_cast) {
// Format information for use in the main thread
RenderedWaveform waveform_info;
waveform_info.block = clip_cast;
waveform_info.range = range_for_block - b->in();
if (!(waveform_info.silence = !samples_from_this_block.is_allocated())) {
// Generate a visual waveform from the samples acquired from this block
AudioVisualWaveform visual_waveform;
visual_waveform.set_channel_count(audio_params.channel_count());
visual_waveform.OverwriteSamples(samples_from_this_block, audio_params.sample_rate());
waveform_info.waveform = visual_waveform;
}
QVector<RenderedWaveform> waveform_list = ticket_->property("waveforms").value< QVector<RenderedWaveform> >();
waveform_list.append(waveform_info);
ticket_->setProperty("waveforms", QVariant::fromValue(waveform_list));
}
}
}
@@ -485,7 +475,7 @@ void RenderProcessor::ProcessVideoFootage(TexturePtr destination, const FootageJ
unmanaged_texture = decoder->RetrieveVideo(p);
if (unmanaged_texture) {
if (!IsCancelled() && unmanaged_texture) {
// We convert to our rendering pixel format, since that will always be float-based which
// is necessary for correct color conversion
ColorProcessorPtr processor = ColorProcessor::Create(color_manager,
@@ -568,7 +558,7 @@ void RenderProcessor::ProcessSamples(SampleBuffer &destination, const Node *node
const AudioParams& audio_params = GetCacheAudioParams();
for (int i=0;i<job.samples().sample_count();i++) {
for (size_t i=0;i<job.samples().sample_count();i++) {
// Calculate the exact rational time at this sample
double sample_to_second = static_cast<double>(i) / static_cast<double>(audio_params.sample_rate());
@@ -576,9 +566,10 @@ void RenderProcessor::ProcessSamples(SampleBuffer &destination, const Node *node
// Update all non-sample and non-footage inputs
for (auto j=job.GetValues().constBegin(); j!=job.GetValues().constEnd(); j++) {
NodeValueTable value = ProcessInput(node, j.key(), TimeRange(this_sample_time, this_sample_time));
TimeRange r = TimeRange(this_sample_time, this_sample_time);
NodeValueTable value = ProcessInput(node, j.key(), r);
value_db.insert(j.key(), GenerateRowValue(node, j.key(), &value));
value_db.insert(j.key(), GenerateRowValue(node, j.key(), &value, r));
}
node->ProcessSamples(value_db,
@@ -613,9 +604,22 @@ void RenderProcessor::ProcessFrameGeneration(TexturePtr destination, const Node
destination->Upload(frame->data(), frame->linesize_pixels());
}
bool RenderProcessor::CanCacheFrames()
TexturePtr RenderProcessor::ProcessVideoCacheJob(const CacheJob &val)
{
return ticket_->property("type").value<RenderManager::TicketType>() == RenderManager::kTypeVideo;
FramePtr frame = FrameHashCache::LoadCacheFrame(val.GetFilename());
if (frame) {
TexturePtr tex = CreateTexture(frame->video_params());
if (tex) {
tex->Upload(frame->data(), frame->linesize_pixels());
return tex;
}
} else {
QStringList s = ticket_->property("badcache").toStringList();
s.append(val.GetFilename());
ticket_->setProperty("badcache", s);
}
return nullptr;
}
TexturePtr RenderProcessor::CreateTexture(const VideoParams &p)
+1 -1
View File
@@ -56,7 +56,7 @@ protected:
virtual void ProcessFrameGeneration(TexturePtr destination, const Node *node, const GenerateJob& job) override;
virtual bool CanCacheFrames() override;
virtual TexturePtr ProcessVideoCacheJob(const CacheJob &val) override;
virtual TexturePtr CreateTexture(const VideoParams &p) override;
+16 -1
View File
@@ -126,7 +126,7 @@ VideoParams::VideoParams(int width, int height, const rational &time_base, Forma
int VideoParams::generate_auto_divider(qint64 width, qint64 height)
{
const int target_res = 1920*1080;
const int target_res = 1280*720;
qint64 megapixels = width * height;
@@ -243,6 +243,21 @@ QString VideoParams::GetFormatName(VideoParams::Format format)
return QCoreApplication::translate("VideoParams", "Unknown (0x%1)").arg(format, 0, 16);
}
int VideoParams::GetDividerForTargetResolution(int src_width, int src_height, int dst_width, int dst_height)
{
int divider = 0;
int test_width, test_height;
do {
divider++;
test_width = VideoParams::GetScaledDimension(src_width, divider);
test_height = VideoParams::GetScaledDimension(src_height, divider);
} while (test_width > dst_width || test_height > dst_height);
return divider;
}
void VideoParams::calculate_effective_size()
{
effective_width_ = GetScaledDimension(width(), divider_);
+2
View File
@@ -247,6 +247,8 @@ public:
static QString GetFormatName(Format format);
static int GetDividerForTargetResolution(int src_width, int src_height, int dst_width, int dst_height);
static const int kInternalChannelCount;
static const rational kPixelAspectSquare;
+23 -17
View File
@@ -60,19 +60,16 @@ bool RenderTask::Render(ColorManager* manager,
// 50%, which makes the progress bar look weird to the uninitiated
//total_length += r.length().toDouble();
rational r = range.in();
while (r != range.out()) {
rational end = qMin(range.out(), r+1);
TimeRange this_range(r, end);
RenderManager::RenderAudioParams rap(viewer_->GetConnectedSampleOutput(),
range,
audio_params_,
RenderMode::kOnline);
RenderTicketWatcher* watcher = new RenderTicketWatcher();
watcher->setProperty("range", QVariant::fromValue(this_range));
PrepareWatcher(watcher, &watcher_thread);
IncrementRunningTickets();
watcher->SetTicket(RenderManager::instance()->RenderAudio(viewer_->GetConnectedSampleOutput(), this_range, audio_params_, mode, false));
r = end;
}
RenderTicketWatcher* watcher = new RenderTicketWatcher();
watcher->setProperty("range", QVariant::fromValue(range));
PrepareWatcher(watcher, &watcher_thread);
IncrementRunningTickets();
watcher->SetTicket(RenderManager::instance()->RenderAudio(rap));
}
// Look up hashes
@@ -285,15 +282,24 @@ void RenderTask::StartTicket(QThread* watcher_thread, ColorManager* manager,
VideoParams::Format force_format, int force_channel_count,
ColorProcessorPtr force_color_output)
{
RenderManager::RenderVideoParams rvp(viewer_->GetConnectedTextureOutput(), video_params_, audio_params_,
time, manager, mode);
rvp.force_size = force_size;
rvp.force_matrix = force_matrix;
rvp.force_format = force_format;
rvp.force_color_output = force_color_output;
rvp.force_channel_count = force_channel_count;
if (cache) {
rvp.AddCache(cache);
}
RenderTicketWatcher* watcher = new RenderTicketWatcher();
watcher->setProperty("time", QVariant::fromValue(time));
PrepareWatcher(watcher, watcher_thread);
IncrementRunningTickets();
watcher->SetTicket(RenderManager::instance()->RenderFrame(viewer_->GetConnectedTextureOutput(), manager, time,
mode, video_params_, audio_params_,
force_size, force_matrix,
force_format, force_channel_count,
force_color_output, cache));
watcher->SetTicket(RenderManager::instance()->RenderFrame(rvp));
}
void RenderTask::TicketDone(RenderTicketWatcher* watcher)
+11
View File
@@ -38,6 +38,17 @@ public:
kTrimOut
};
enum ThumbnailMode {
kThumbnailOff,
kThumbnailInOut,
kThumbnailOn
};
enum WaveformMode {
kWaveformsDisabled,
kWaveformsEnabled
};
static bool IsATrimMode(MovementMode mode) {return mode == kTrimIn || mode == kTrimOut;}
struct EditToInfo {
-1
View File
@@ -331,7 +331,6 @@ Project* MarkerChangeTimeCommand::GetRelevantProject() const
void MarkerChangeTimeCommand::redo()
{
old_time_ = marker_->time();
marker_->set_time(new_time_);
}
+5 -4
View File
@@ -93,11 +93,12 @@ void AudioMonitor::PushSampleBuffer(const SampleBuffer &d)
SetUpdateLoop(true);
}
void AudioMonitor::StartWaveform(const AudioVisualWaveform *waveform, const rational &start, int playback_speed)
void AudioMonitor::StartWaveform(const AudioWaveformCache *waveform, const rational &start, int playback_speed)
{
Stop();
if (start >= waveform->length()) {
waveform_length_ = waveform->length();
if (start >= waveform_length_) {
return;
}
@@ -242,7 +243,7 @@ void AudioMonitor::paintGL()
if (waveform_) {
UpdateValuesFromWaveform(v, delta_time);
if (waveform_time_ >= waveform_->length()) {
if (waveform_time_ >= waveform_length_) {
Stop();
}
}
@@ -315,7 +316,7 @@ void AudioMonitor::UpdateValuesFromWaveform(QVector<double> &v, qint64 delta_tim
void AudioMonitor::AudioVisualWaveformSampleToInternalValues(const AudioVisualWaveform::Sample &in, QVector<double> &out)
{
for (int i=0; i<in.size(); i++) {
for (size_t i=0; i<in.size(); i++) {
float max = qMax(qAbs(in.at(i).min), qAbs(in.at(i).max));
int output_index = i%out.size();
+5 -4
View File
@@ -28,7 +28,7 @@
#include "audio/audiovisualwaveform.h"
#include "common/define.h"
#include "render/audioparams.h"
#include "render/audioplaybackcache.h"
#include "render/audiowaveformcache.h"
namespace olive {
@@ -45,7 +45,7 @@ public:
return waveform_;
}
static void StartWaveformOnAll(const AudioVisualWaveform *waveform, const rational& start, int playback_speed)
static void StartWaveformOnAll(const AudioWaveformCache *waveform, const rational& start, int playback_speed)
{
foreach (AudioMonitor *m, instances_) {
m->StartWaveform(waveform, start, playback_speed);
@@ -73,7 +73,7 @@ public slots:
void PushSampleBuffer(const SampleBuffer &samples);
void StartWaveform(const AudioVisualWaveform *waveform, const rational& start, int playback_speed);
void StartWaveform(const AudioWaveformCache *waveform, const rational& start, int playback_speed);
protected:
virtual void paintGL() override;
@@ -97,8 +97,9 @@ private:
qint64 last_time_;
const AudioVisualWaveform* waveform_;
const AudioWaveformCache* waveform_;
rational waveform_time_;
rational waveform_length_;
int playback_speed_;
@@ -26,7 +26,6 @@
#include <QScrollBar>
#include <QSplitter>
#include "common/functiontimer.h"
#include "common/timecodefunctions.h"
#include "node/output/viewer/viewer.h"
#include "widget/nodeparamview/nodeparamviewundo.h"
+3 -4
View File
@@ -26,7 +26,6 @@
#include <QPainter>
#include <QStyleOptionGraphicsItem>
#include "common/flipmodifiers.h"
#include "common/qtutils.h"
#include "config/config.h"
#include "core.h"
@@ -434,7 +433,7 @@ void NodeViewItem::mousePressEvent(QGraphicsSceneMouseEvent *event)
return;
}
event->setModifiers(FlipControlAndShiftModifiers(event->modifiers()));
event->setModifiers(QtUtils::FlipControlAndShiftModifiers(event->modifiers()));
QGraphicsRectItem::mousePressEvent(event);
}
@@ -445,7 +444,7 @@ void NodeViewItem::mouseMoveEvent(QGraphicsSceneMouseEvent *event)
return;
}
event->setModifiers(FlipControlAndShiftModifiers(event->modifiers()));
event->setModifiers(QtUtils::FlipControlAndShiftModifiers(event->modifiers()));
QGraphicsRectItem::mouseMoveEvent(event);
}
@@ -457,7 +456,7 @@ void NodeViewItem::mouseReleaseEvent(QGraphicsSceneMouseEvent *event)
return;
}
event->setModifiers(FlipControlAndShiftModifiers(event->modifiers()));
event->setModifiers(QtUtils::FlipControlAndShiftModifiers(event->modifiers()));
QGraphicsRectItem::mouseReleaseEvent(event);
}
-1
View File
@@ -20,7 +20,6 @@
#include "nodeviewscene.h"
#include "common/functiontimer.h"
#include "core.h"
#include "node/project/sequence/sequence.h"
#include "nodeviewedge.h"
@@ -67,6 +67,7 @@ ProjectExplorer::ProjectExplorer(QWidget *parent) :
// Set up sort filter proxy model
sort_model_.setSourceModel(&model_);
sort_model_.setFilterCaseSensitivity(Qt::CaseInsensitive);
sort_model_.setSortRole(ProjectViewModel::kInnerTextRole);
// Add tree view to stacked widget
@@ -301,6 +302,11 @@ void ProjectExplorer::RenameSelectedItem()
}
}
void ProjectExplorer::SetSearchFilter(const QString &s)
{
sort_model_.setFilterFixedString(s);
}
void ProjectExplorer::ShowContextMenu()
{
Menu menu;
@@ -94,6 +94,8 @@ public slots:
void RenameSelectedItem();
void SetSearchFilter(const QString &s);
signals:
/**
* @brief Emitted when an Item is double clicked
@@ -64,6 +64,9 @@ rational TimeScaledObject::SceneToTime(const double &x, const double &x_scale, c
if (round) {
rounded_x_mvmt = qRound64(unscaled_time);
} else if (unscaled_time < 0) {
// "floor" to zero
rounded_x_mvmt = qCeil(unscaled_time);
} else {
rounded_x_mvmt = qFloor(unscaled_time);
}
+99 -4
View File
@@ -54,6 +54,7 @@
#include "undo/timelineundoworkarea.h"
#include "widget/menu/menu.h"
#include "widget/menu/menushared.h"
#include "widget/nodeparamview/nodeparamviewundo.h"
#include "widget/nodeparamview/nodeparamview.h"
#include "widget/nodeview/nodeviewundo.h"
#include "widget/timeruler/timeruler.h"
@@ -1109,6 +1110,27 @@ void TimelineWidget::ShowContextMenu()
menu.addSeparator();
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(selected.first())) {
{
Menu *cache_menu = new Menu(tr("Cache"), &menu);
menu.addMenu(cache_menu);
QAction *autocache_action = cache_menu->addAction(tr("Auto-Cache"));
autocache_action->setCheckable(true);
autocache_action->setChecked(clip->IsAutocaching());
connect(autocache_action, &QAction::triggered, this, &TimelineWidget::SetSelectedClipsAutocaching);
cache_menu->addSeparator();
auto cache_clip = cache_menu->addAction(tr("Cache All"));
connect(cache_clip, &QAction::triggered, this, &TimelineWidget::CacheClips);
auto cache_inout = cache_menu->addAction(tr("Cache In/Out"));
connect(cache_inout, &QAction::triggered, this, &TimelineWidget::CacheClipsInOut);
auto cache_discard = cache_menu->addAction(tr("Discard"));
connect(cache_discard, &QAction::triggered, this, &TimelineWidget::CacheDiscard);
}
if (clip->connected_viewer()) {
QAction *reveal_in_footage_viewer = menu.addAction(tr("Reveal in Footage Viewer"));
reveal_in_footage_viewer->setData(reinterpret_cast<quintptr>(clip->connected_viewer()));
@@ -1134,9 +1156,20 @@ void TimelineWidget::ShowContextMenu()
toggle_audio_units->setChecked(use_audio_time_units_);
connect(toggle_audio_units, &QAction::triggered, this, &TimelineWidget::SetUseAudioTimeUnits);
{
Menu *thumbnail_menu = new Menu(tr("Show Thumbnails"), &menu);
menu.addMenu(thumbnail_menu);
thumbnail_menu->AddActionWithData(tr("Disabled"), Timeline::kThumbnailOff, OLIVE_CONFIG("TimelineThumbnailMode"));
thumbnail_menu->AddActionWithData(tr("Only At In Points"), Timeline::kThumbnailInOut, OLIVE_CONFIG("TimelineThumbnailMode"));
thumbnail_menu->AddActionWithData(tr("Enabled"), Timeline::kThumbnailOn, OLIVE_CONFIG("TimelineThumbnailMode"));
connect(thumbnail_menu, &Menu::triggered, this, &TimelineWidget::SetViewThumbnailsEnabled);
}
QAction* show_waveforms = menu.addAction(tr("Show Waveforms"));
show_waveforms->setCheckable(true);
show_waveforms->setChecked(views_.first()->view()->GetShowWaveforms());
show_waveforms->setChecked(OLIVE_CONFIG("TimelineWaveformMode").toInt() == Timeline::kWaveformsEnabled);
connect(show_waveforms, &QAction::triggered, this, &TimelineWidget::SetViewWaveformsEnabled);
menu.addSeparator();
@@ -1200,9 +1233,14 @@ void TimelineWidget::AddableObjectChanged()
void TimelineWidget::SetViewWaveformsEnabled(bool e)
{
foreach (TimelineAndTrackView* tview, views_) {
tview->view()->SetShowWaveforms(e);
}
OLIVE_CONFIG("TimelineWaveformMode") = e ? Timeline::kWaveformsEnabled : Timeline::kWaveformsDisabled;
UpdateViewports();
}
void TimelineWidget::SetViewThumbnailsEnabled(QAction *action)
{
OLIVE_CONFIG("TimelineThumbnailMode") = action->data();
UpdateViewports();
}
void TimelineWidget::FrameRateChanged()
@@ -1276,6 +1314,63 @@ void TimelineWidget::TrackAboutToBeDeleted(Track *track)
}
}
void TimelineWidget::SetSelectedClipsAutocaching(bool e)
{
MultiUndoCommand *command = new MultiUndoCommand();
for (Block *b : selected_blocks_) {
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(b)) {
command->add_child(new NodeParamSetStandardValueCommand(NodeKeyframeTrackReference(NodeInput(clip, ClipBlock::kAutoCacheInput)), e));
}
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
void TimelineWidget::CacheClips()
{
for (Block *b : selected_blocks_) {
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(b)) {
clip->RequestInvalidatedFromConnected(true);
}
}
}
void TimelineWidget::CacheClipsInOut()
{
if (!this->sequence() || !this->sequence()->GetWorkArea()->enabled()) {
return;
}
TimeTargetObject tto;
tto.SetTimeTarget(this->sequence());
const TimeRange &r = this->sequence()->GetWorkArea()->range();
for (Block *b : qAsConst(selected_blocks_)) {
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(b)) {
if (Node *connected = clip->GetConnectedOutput(clip->kBufferIn)) {
TimeRange adjusted = tto.GetAdjustedTime(this->sequence(), connected, r, true);
clip->RequestInvalidatedFromConnected(true, adjusted);
}
}
}
}
void TimelineWidget::CacheDiscard()
{
if (QMessageBox::question(this, tr("Discard Cache"),
tr("This will discard all cache for this clip. "
"If the clip has auto-cache enabled, it will be recached immediately. "
"This cannot be undone.\n\n"
"Do you wish to continue?"), QMessageBox::Yes | QMessageBox::No) == QMessageBox::Yes) {
for (Block *b : selected_blocks_) {
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(b)) {
clip->DiscardCache();
}
}
}
}
void TimelineWidget::AddGhost(TimelineViewGhostItem *ghost)
{
ghost_items_.append(ghost);
@@ -423,6 +423,8 @@ private slots:
void SetViewWaveformsEnabled(bool e);
void SetViewThumbnailsEnabled(QAction *action);
void FrameRateChanged();
void SampleRateChanged();
@@ -436,6 +438,12 @@ private slots:
void TrackAboutToBeDeleted(Track *track);
void SetSelectedClipsAutocaching(bool e);
void CacheClips();
void CacheClipsInOut();
void CacheDiscard();
};
}
+9 -1
View File
@@ -401,6 +401,8 @@ void ImportTool::DropGhosts(bool insert)
}
}
std::list<ClipBlock*> imported_clips;
if (dst_graph) {
QVector<Block*> block_items(parent()->GetGhostItems().size());
@@ -471,6 +473,8 @@ void ImportTool::DropGhosts(bool insert)
Block::Link(block_items.at(j), clip);
}
}
imported_clips.push_back(clip);
} else if (track_type == Track::kSubtitle) {
Subtitle src = ghost->GetData(TimelineViewGhostItem::kAttachedFootage).value<Subtitle>();
SubtitleBlock *sub = new SubtitleBlock();
@@ -498,6 +502,11 @@ void ImportTool::DropGhosts(bool insert)
Core::instance()->undo_stack()->pushIfHasChildren(command);
while (!imported_clips.empty()) {
imported_clips.front()->RequestInvalidatedFromConnected();
imported_clips.pop_front();
}
parent()->ClearGhosts();
dragged_footage_.clear();
}
@@ -514,7 +523,6 @@ TimelineViewGhostItem* ImportTool::CreateGhost(const TimeRange &range, const rat
snap_points_.push_back(ghost->GetIn());
snap_points_.push_back(ghost->GetOut());
ghost->SetMode(Timeline::kMove);
parent()->AddGhost(ghost);
+5 -5
View File
@@ -24,7 +24,6 @@
#include <QToolTip>
#include "common/clamp.h"
#include "common/flipmodifiers.h"
#include "common/qtutils.h"
#include "common/range.h"
#include "common/timecodefunctions.h"
@@ -410,7 +409,7 @@ void PointerTool::InitiateDragInternal(Block *clicked_item,
bool multitrim_enabled = IsClipTrimmable(clicked_item, clips, trim_mode);
// Create ghosts for trimming
foreach (Block* clip_item, clips) {
for (Block* clip_item : clips) {
if (clip_item != clicked_item
&& (!multitrim_enabled || !IsClipTrimmable(clip_item, clips, trim_mode))) {
// Either multitrim is disabled or this clip is NOT the earliest/latest in its track. We
@@ -485,7 +484,7 @@ void PointerTool::InitiateDragInternal(Block *clicked_item,
// I'm only including it to prevent any potentially unintended behavior.
if (clips.size() == 1 && !(modifiers & Qt::AltModifier)) {
if (ClipBlock *adjacent_clip = dynamic_cast<ClipBlock*>(adjacent)) {
foreach (Block *adjacent_link, adjacent_clip->block_links()) {
for (Block *adjacent_link : adjacent_clip->block_links()) {
adjacent_ghosts.append(AddGhostFromBlock(adjacent_link, flipped_mode));
}
}
@@ -500,7 +499,7 @@ void PointerTool::InitiateDragInternal(Block *clicked_item,
// expected to fill the remaining space (no gap needs to be created)
ghost->SetData(TimelineViewGhostItem::kTrimIsARollEdit, static_cast<bool>(adjacent));
foreach (TimelineViewGhostItem *adjacent_ghost, adjacent_ghosts) {
for (TimelineViewGhostItem *adjacent_ghost : adjacent_ghosts) {
if (adjacent_ghost) {
if (treat_trim_as_slide) {
// We're sliding a transition rather than a pure trim/roll
@@ -572,6 +571,7 @@ void PointerTool::ProcessDrag(const TimelineCoordinate &mouse_pos)
break;
case Timeline::kTrimIn:
ghost->SetInAdjustment(time_movement);
ghost->SetMediaInAdjustment(time_movement);
break;
case Timeline::kTrimOut:
ghost->SetOutAdjustment(time_movement);
@@ -707,7 +707,7 @@ void PointerTool::FinishDrag(TimelineViewMouseEvent *event)
block = new_block;
if (ClipBlock *new_clip = dynamic_cast<ClipBlock*>(block)) {
new_clip->waveform() = static_cast<ClipBlock*>(p.block)->waveform();
new_clip->AddCachePassthroughFrom(static_cast<ClipBlock*>(p.block));
}
}
@@ -29,24 +29,20 @@ namespace olive {
//
// BlockSplitCommand
//
void BlockSplitCommand::prepare()
{
reconnect_tree_command_ = new MultiUndoCommand();
new_block_ = static_cast<Block*>(Node::CopyNodeInGraph(block_, reconnect_tree_command_));
}
void BlockSplitCommand::redo()
{
old_length_ = block_->length();
Q_ASSERT(point_ > block_->in() && point_ < block_->out());
if (!reconnect_tree_command_) {
reconnect_tree_command_ = new MultiUndoCommand();
new_block_ = static_cast<Block*>(Node::CopyNodeInGraph(block_, reconnect_tree_command_));
}
reconnect_tree_command_->redo_now();
if (ClipBlock *new_clip = dynamic_cast<ClipBlock*>(new_block_)) {
ClipBlock *old_clip = static_cast<ClipBlock*>(block_);
new_clip->waveform() = old_clip->waveform();
}
// Determine our new lengths
rational new_length = point_ - block_->in();
rational new_part_length = block_->out() - point_;
@@ -61,6 +57,11 @@ void BlockSplitCommand::redo()
// Insert new block
track->InsertBlockAfter(new_block(), block_);
if (ClipBlock *new_clip = dynamic_cast<ClipBlock*>(new_block_)) {
ClipBlock *old_clip = static_cast<ClipBlock*>(block_);
new_clip->AddCachePassthroughFrom(old_clip);
}
// If the block had an out transition, we move it to the new block
moved_transition_ = NodeInput();
@@ -54,6 +54,8 @@ public:
}
protected:
virtual void prepare() override;
virtual void redo() override;
virtual void undo() override;
+79 -12
View File
@@ -28,7 +28,6 @@
#include <QPen>
#include "config/config.h"
#include "common/flipmodifiers.h"
#include "common/qtutils.h"
#include "common/timecodefunctions.h"
#include "node/project/footage/footage.h"
@@ -47,7 +46,6 @@ TimelineView::TimelineView(Qt::Alignment vertical_alignment, QWidget *parent) :
ghosts_(nullptr),
show_beam_cursor_(false),
connected_track_list_(nullptr),
show_waveforms_(true),
transition_overlay_out_(nullptr),
transition_overlay_in_(nullptr)
{
@@ -315,9 +313,9 @@ void TimelineView::drawForeground(QPainter *painter, const QRectF &rect)
qreal old_opacity = painter->opacity();
painter->setOpacity(0.5);
rational in = ghost->GetAdjustedIn(), out = ghost->GetAdjustedOut();
DrawBlock(painter, false, attached, track_top, track_height, in, out);
DrawBlock(painter, true, attached, track_top, track_height, in, out);
rational in = ghost->GetAdjustedIn(), out = ghost->GetAdjustedOut(), media_in = ghost->GetAdjustedMediaIn();
DrawBlock(painter, false, attached, track_top, track_height, in, out, media_in);
DrawBlock(painter, true, attached, track_top, track_height, in, out, media_in);
painter->setOpacity(old_opacity);
}
@@ -466,7 +464,7 @@ void TimelineView::DrawBlocks(QPainter *painter, bool foreground)
}
}
void TimelineView::DrawBlock(QPainter *painter, bool foreground, Block *block, qreal block_top, qreal block_height, const rational &in, const rational &out)
void TimelineView::DrawBlock(QPainter *painter, bool foreground, Block *block, qreal block_top, qreal block_height, const rational &in, const rational &out, const rational &media_in)
{
if (dynamic_cast<ClipBlock*>(block) || dynamic_cast<TransitionBlock*>(block)) {
@@ -486,7 +484,6 @@ void TimelineView::DrawBlock(QPainter *painter, bool foreground, Block *block, q
int text_height = fm.height();
int text_padding = text_height/4; // This ties into the track minimum height being 1.5
int text_total_height = text_height + text_padding + text_padding;
Q_UNUSED(text_total_height)
if (foreground) {
painter->setBrush(Qt::NoBrush);
@@ -521,12 +518,61 @@ void TimelineView::DrawBlock(QPainter *painter, bool foreground, Block *block, q
painter->drawRect(r);
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(block)) {
QRect preview_rect = r.toRect();
// Draw clip thumbnails
if (clip->GetTrackType() == Track::kVideo
&& OLIVE_CONFIG("TimelineThumbnailMode").toInt() != Timeline::kThumbnailOff
&& preview_rect.height() > r.height()/3) {
if (const FrameHashCache *thumbs = clip->thumbnails()) {
// Start thumbnails underneath clip name
preview_rect.adjust(0, text_total_height, 0, 0);
QRect thumb_rect;
painter->setRenderHint(QPainter::SmoothPixmapTransform);
painter->setClipRect(preview_rect);
if (OLIVE_CONFIG("TimelineThumbnailMode") == Timeline::kThumbnailOn) {
Sequence *s = clip->track()->sequence();
int width = s->GetVideoParams().width();
int height = s->GetVideoParams().height();
int start;
if (height > 0) { // Prevent divide by zero/invalid params
double scale = double(preview_rect.height())/double(height);
thumb_rect.setWidth(width * scale);
start = (((preview_rect.left() - int(qFloor(block_in))) / thumb_rect.width()) * thumb_rect.width()) + qFloor(block_in);
} else {
start = preview_rect.left();
}
for (int i=start; i<preview_rect.right(); i+=thumb_rect.width()+1) {
rational time_here = SceneToTime(i - block_in, GetScale(), connected_track_list_->parent()->GetVideoParams().frame_rate_as_time_base()) + media_in;
DrawThumbnail(painter, thumbs, time_here, i, preview_rect, &thumb_rect);
}
} else {
rational time = clip->media_range().in();
time = Timecode::snap_time_to_timebase(time, thumbs->GetTimebase(), Timecode::kFloor);
DrawThumbnail(painter, thumbs, time, block_left, preview_rect, &thumb_rect);
}
painter->setClipping(false);
}
}
// Draw waveform
if (show_waveforms_) {
QRect waveform_rect = r.toRect();
painter->setPen(shadow_color);
AudioVisualWaveform::DrawWaveform(painter, waveform_rect, this->GetScale(), clip->waveform(),
SceneToTime(block_left - block_in, GetScale(), connected_track_list_->parent()->GetAudioParams().sample_rate_as_time_base()));
if (clip->GetTrackType() == Track::kAudio
&& OLIVE_CONFIG("TimelineWaveformMode").toInt() == Timeline::kWaveformsEnabled) {
if (const AudioWaveformCache *wave = clip->waveform()) {
rational waveform_start = SceneToTime(block_left - block_in, GetScale(), connected_track_list_->parent()->GetAudioParams().sample_rate_as_time_base()) + media_in;
painter->setPen(shadow_color);
wave->Draw(painter, preview_rect, this->GetScale(), waveform_start);
}
}
// Draw zebra stripes and markers
@@ -594,6 +640,13 @@ void TimelineView::DrawBlock(QPainter *painter, bool foreground, Block *block, q
}
}
}
if (const FrameHashCache *cache = clip->connected_video_cache()) {
if (cache->HasValidatedRanges()) {
QRect cache_rect = r.adjusted(0, r.height() - PlaybackCache::GetCacheIndicatorHeight(), 0, 0).toRect();
cache->Draw(painter, clip->media_in(), GetScale(), cache_rect);
}
}
}
// For transitions, show lines representing a transition
@@ -686,6 +739,20 @@ qreal TimelineView::GetTimelineRightBound() const
return GetTimelineLeftBound() + viewport()->width();
}
void TimelineView::DrawThumbnail(QPainter *painter, const FrameHashCache *thumbs, const rational &time, int x, const QRect &preview_rect, QRect *thumb_rect) const
{
QString thumbnail = thumbs->GetValidCacheFilename(time);
if (!thumbnail.isEmpty()) {
QImage img;
if (img.load(thumbnail, "jpg")) {
double scale = double(preview_rect.height())/double(img.height());
*thumb_rect = QRect(x, preview_rect.top(), img.width() * scale, preview_rect.height());
painter->drawImage(*thumb_rect, img);
}
}
}
int TimelineView::GetTrackY(int track_index) const
{
if (!connected_track_list_ || !connected_track_list_->GetTrackCount()) {
+5 -15
View File
@@ -73,17 +73,6 @@ public:
Block* GetItemAtScenePos(const rational& time, int track_index) const;
bool GetShowWaveforms() const
{
return show_waveforms_;
}
void SetShowWaveforms(bool e)
{
show_waveforms_ = e;
viewport()->update();
}
signals:
void MousePressed(TimelineViewMouseEvent* event);
void MouseMoved(TimelineViewMouseEvent* event);
@@ -126,10 +115,11 @@ private:
void DrawBlocks(QPainter* painter, bool foreground);
void DrawBlock(QPainter *painter, bool foreground, Block *block, qreal top, qreal height, const rational &in, const rational &out);
void DrawBlock(QPainter *painter, bool foreground, Block *block, qreal top, qreal height, const rational &in, const rational &out, const rational &media_in);
void DrawBlock(QPainter *painter, bool foreground, Block *block, qreal top, qreal height)
{
DrawBlock(painter, foreground, block, top, height, block->in(), block->out());
ClipBlock *cb = dynamic_cast<ClipBlock*>(block);
DrawBlock(painter, foreground, block, top, height, block->in(), block->out(), cb ? cb->media_in() : 0);
}
void DrawZebraStripes(QPainter *painter, const QRectF &r);
@@ -142,6 +132,8 @@ private:
qreal GetTimelineRightBound() const;
void DrawThumbnail(QPainter *painter, const FrameHashCache *thumbs, const rational &time, int x, const QRect &preview_rect, QRect *thumb_rect) const;
QHash<Track::Reference, TimeRangeList>* selections_;
QVector<TimelineViewGhostItem*>* ghosts_;
@@ -152,8 +144,6 @@ private:
TrackList* connected_track_list_;
bool show_waveforms_;
ClipBlock *transition_overlay_out_;
ClipBlock *transition_overlay_in_;
+11 -34
View File
@@ -46,7 +46,6 @@ TimeRuler::TimeRuler(bool text_visible, bool cache_status_visible, QWidget* pare
setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Maximum);
// Text height is used to calculate widget height
cache_status_height_ = text_height() / 4;
// Get the "minimum" space allowed between two line markers on the ruler (in screen pixels)
// Mediocre but reliable way of scaling UI objects by font/DPI size
@@ -180,7 +179,7 @@ void TimeRuler::drawForeground(QPainter *p, const QRectF &rect)
int line_bottom = height();
if (show_cache_status_) {
line_bottom -= cache_status_height_;
line_bottom -= PlaybackCache::GetCacheIndicatorHeight();
}
int long_height = fm.height();
@@ -252,40 +251,18 @@ void TimeRuler::drawForeground(QPainter *p, const QRectF &rect)
}
// If cache status is enabled
if (show_cache_status_ && playback_cache_) {
if (show_cache_status_ && playback_cache_ && playback_cache_->HasValidatedRanges()) {
// FIXME: Hardcoded to get video length, if we ever need audio length, this will have to change
int h = PlaybackCache::GetCacheIndicatorHeight();
QRect cache_rect(0, height() - h, width(), h);
if (ViewerOutput *viewer = dynamic_cast<ViewerOutput*>(playback_cache_->parent())) {
rational len = viewer->GetVideoLength();
int lim_left = GetScroll();
int lim_right = lim_left + width();
int right = TimeToScene(viewer->GetVideoLength());
cache_rect.setWidth(std::max(0, right));
}
int cache_screen_length = TimeToScene(len);
if (cache_screen_length > 0) {
int cache_y = height() - cache_status_height_;
p->fillRect(0, cache_y, cache_screen_length, cache_status_height_, Qt::green);
foreach (const TimeRange& range, playback_cache_->GetInvalidatedRanges(len)) {
int range_left = TimeToScene(range.in());
if (range_left >= width()) {
continue;
}
int range_right = TimeToScene(range.out());
if (range_right < 0) {
continue;
}
int adjusted_left = qMax(lim_left, range_left);
p->fillRect(adjusted_left,
cache_y,
qMin(lim_right, range_right) - adjusted_left,
cache_status_height_,
Qt::red);
}
}
if (cache_rect.width() > 0) {
playback_cache_->Draw(p, SceneToTime(GetScroll()), GetScale(), cache_rect);
}
}
@@ -337,7 +314,7 @@ void TimeRuler::UpdateHeight()
// Add cache status height
if (show_cache_status_) {
height += cache_status_height_;
height += PlaybackCache::GetCacheIndicatorHeight();
}
// Add marker height
-2
View File
@@ -53,8 +53,6 @@ private:
int CacheStatusHeight() const;
int cache_status_height_;
int minimum_gap_between_lines_;
bool text_visible_;
+10 -6
View File
@@ -47,13 +47,13 @@ AudioWaveformView::AudioWaveformView(QWidget *parent) :
setAlignment(Qt::AlignLeft | Qt::AlignTop);
}
void AudioWaveformView::SetViewer(AudioPlaybackCache *playback)
void AudioWaveformView::SetViewer(ViewerOutput *playback)
{
if (playback_) {
pool_.clear();
pool_.waitForDone();
disconnect(playback_, &AudioPlaybackCache::Validated, this, static_cast<void(AudioWaveformView::*)()>(&AudioWaveformView::update));
disconnect(playback_, &ViewerOutput::ConnectedWaveformChanged, this, static_cast<void(AudioWaveformView::*)()>(&AudioWaveformView::update));
SetTimebase(0);
}
@@ -61,9 +61,9 @@ void AudioWaveformView::SetViewer(AudioPlaybackCache *playback)
playback_ = playback;
if (playback_) {
connect(playback_, &AudioPlaybackCache::Validated, this, static_cast<void(AudioWaveformView::*)()>(&AudioWaveformView::update));
connect(playback_, &ViewerOutput::ConnectedWaveformChanged, this, static_cast<void(AudioWaveformView::*)()>(&AudioWaveformView::update));
SetTimebase(playback_->GetParameters().sample_rate_as_time_base());
SetTimebase(playback_->GetAudioParams().sample_rate_as_time_base());
}
}
@@ -75,8 +75,12 @@ void AudioWaveformView::drawForeground(QPainter *p, const QRectF &rect)
return;
}
const AudioParams& params = playback_->GetParameters();
const AudioWaveformCache *wave = playback_->GetConnectedWaveform();
if (!wave) {
return;
}
const AudioParams& params = wave->GetParameters();
if (!params.is_valid()) {
return;
}
@@ -87,7 +91,7 @@ void AudioWaveformView::drawForeground(QPainter *p, const QRectF &rect)
// Draw waveform
p->setPen(QColor(64, 255, 160)); // FIXME: Hardcoded color
AudioVisualWaveform::DrawWaveform(p, rect.toRect(), GetScale(), playback_->visual(), SceneToTime(GetScroll()));
wave->Draw(p, rect.toRect(), GetScale(), SceneToTime(GetScroll()));
// Draw playhead
p->setPen(PLAYHEAD_COLOR);
+2 -2
View File
@@ -36,7 +36,7 @@ class AudioWaveformView : public SeekableWidget
public:
AudioWaveformView(QWidget* parent = nullptr);
void SetViewer(AudioPlaybackCache *playback);
void SetViewer(ViewerOutput *playback);
protected:
virtual void drawForeground(QPainter *painter, const QRectF &rect) override;
@@ -44,7 +44,7 @@ protected:
private:
QThreadPool pool_;
AudioPlaybackCache *playback_;
ViewerOutput *playback_;
};
+32 -26
View File
@@ -147,6 +147,9 @@ ViewerWidget::ViewerWidget(QWidget *parent) :
instances_.append(this);
auto_cacher_ = new PreviewAutoCacher(this);
connect(display_widget_, &ViewerDisplayWidget::ColorProcessorChanged, auto_cacher_, &PreviewAutoCacher::SetDisplayColorProcessor);
UpdateWaveformViewFromMode();
connect(Core::instance(), &Core::ColorPickerEnabled, this, &ViewerWidget::SetSignalCursorColorEnabled);
@@ -193,7 +196,7 @@ void ViewerWidget::TimeChangedEvent(const rational &time)
}
// Send time to auto-cacher
auto_cacher_.SetPlayhead(time);
auto_cacher_->SetPlayhead(time);
last_time_ = time;
}
@@ -231,7 +234,7 @@ void ViewerWidget::ConnectNodeEvent(ViewerOutput *n)
UpdateWaveformViewFromMode();
waveform_view_->SetViewer(GetConnectedNode()->audio_playback_cache());
waveform_view_->SetViewer(GetConnectedNode());
UpdateRendererVideoParameters();
UpdateRendererAudioParameters();
@@ -278,7 +281,7 @@ void ViewerWidget::DisconnectNodeEvent(ViewerOutput *n)
void ViewerWidget::ConnectedNodeChangeEvent(ViewerOutput *n)
{
auto_cacher_.SetViewerNode(n);
auto_cacher_->SetViewerNode(n);
display_widget_->SetSubtitleTracks(dynamic_cast<Sequence*>(n));
}
@@ -382,13 +385,13 @@ void ViewerWidget::SetFullScreen(QScreen *screen)
void ViewerWidget::CacheEntireSequence()
{
auto_cacher_.ForceCacheRange(TimeRange(0, GetConnectedNode()->GetVideoLength()));
auto_cacher_->ForceCacheRange(TimeRange(0, GetConnectedNode()->GetVideoLength()));
}
void ViewerWidget::CacheSequenceInOut()
{
if (GetConnectedNode() && GetConnectedNode()->GetWorkArea()->enabled()) {
auto_cacher_.ForceCacheRange(GetConnectedNode()->GetWorkArea()->range());
auto_cacher_->ForceCacheRange(GetConnectedNode()->GetWorkArea()->range());
} else {
QMessageBox::warning(this,
tr("Error"),
@@ -455,12 +458,7 @@ void ViewerWidget::SetEmptyImage()
void ViewerWidget::UpdateAutoCacher()
{
auto_cacher_.SetPlayhead(GetTime());
}
void ViewerWidget::ClearVideoAutoCacherQueue()
{
auto_cacher_.CancelVideoTasks();
auto_cacher_->SetPlayhead(GetTime());
}
void ViewerWidget::DecrementPrequeuedAudio()
@@ -582,7 +580,7 @@ void ViewerWidget::RequestNextDryRun()
} else {
RenderTicketWatcher *watcher = new RenderTicketWatcher(this);
connect(watcher, &RenderTicketWatcher::Finished, this, &ViewerWidget::DryRunFinished);
watcher->SetTicket(auto_cacher_.GetSingleFrame(next_time, true));
watcher->SetTicket(auto_cacher_->GetSingleFrame(next_time, true));
dry_run_next_frame_ += playback_speed_;
dry_run_watchers_.append(watcher);
}
@@ -590,6 +588,11 @@ void ViewerWidget::RequestNextDryRun()
}
}
void ViewerWidget::SaveFrameAsImage()
{
Core::instance()->OpenExportDialogForViewer(GetConnectedNode(), GetTime(), true);
}
void ViewerWidget::CloseAudioProcessor()
{
audio_processor_.Close();
@@ -629,7 +632,7 @@ void ViewerWidget::QueueNextAudioBuffer()
RenderTicketWatcher *watcher = new RenderTicketWatcher(this);
connect(watcher, &RenderTicketWatcher::Finished, this, &ViewerWidget::ReceivedAudioBufferForPlayback);
audio_playback_queue_.push_back(watcher);
watcher->SetTicket(auto_cacher_.GetRangeOfAudio(TimeRange(audio_playback_queue_time_, queue_end)));
watcher->SetTicket(auto_cacher_->GetRangeOfAudio(TimeRange(audio_playback_queue_time_, queue_end)));
audio_playback_queue_time_ = queue_end;
}
@@ -746,7 +749,7 @@ void ViewerWidget::ForceRequeueFromCurrentTime()
// Allow half a second for requeue to complete
static const rational kRequeueWaitTime(1);
ClearVideoAutoCacherQueue();
auto_cacher_->ClearSingleFrameRenders();
queue_watchers_.clear();
int queue = DeterminePlaybackQueueSize();
playback_queue_next_frame_ = GetTimestamp() + playback_speed_ * Timecode::time_to_timestamp(kRequeueWaitTime, timebase(), Timecode::kFloor);;
@@ -785,9 +788,7 @@ void ViewerWidget::UpdateTextureFromNode()
nonqueue_watchers_.append(watcher);
// Clear queue because we want this frame more than any others
if (!GetConnectedNode()->video_frame_cache()->IsEnabled() && !auto_cacher_.IsRenderingCustomRange()) {
ClearVideoAutoCacherQueue();
}
auto_cacher_->ClearSingleFrameRenders();
watcher->SetTicket(GetFrame(time));
} else {
@@ -816,10 +817,8 @@ void ViewerWidget::PlayInternal(int speed, bool in_to_out_only)
foreach (ViewerWidget* viewer, instances_) {
if (viewer != this) {
viewer->PauseInternal();
viewer->ClearVideoAutoCacherQueue();
}
viewer->auto_cacher_.SetAudioPaused(true);
viewer->auto_cacher_->SetRendersPaused(true);
}
RenderManager::instance()->SetAggressiveGarbageCollection(true);
@@ -907,6 +906,7 @@ void ViewerWidget::PauseInternal()
qDeleteAll(queue_watchers_);
queue_watchers_.clear();
auto_cacher_->ClearSingleFrameRenders();
playback_backup_timer_.stop();
@@ -920,7 +920,7 @@ void ViewerWidget::PauseInternal()
UpdateAudioProcessor();
foreach (ViewerWidget* viewer, instances_) {
viewer->auto_cacher_.SetAudioPaused(false);
viewer->auto_cacher_->SetRendersPaused(false);
}
UpdateTextureFromNode();
@@ -945,7 +945,7 @@ void ViewerWidget::PushScrubbedAudio()
if (ignore_scrub_ == 0) {
// Get audio src device from renderer
const AudioParams& params = GetConnectedNode()->audio_playback_cache()->GetParameters();
const AudioParams& params = GetConnectedNode()->GetAudioParams();
if (params.is_valid()) {
// NOTE: Hardcoded scrubbing interval (20ms)
@@ -954,7 +954,7 @@ void ViewerWidget::PushScrubbedAudio()
RenderTicketWatcher *watcher = new RenderTicketWatcher();
connect(watcher, &RenderTicketWatcher::Finished, this, &ViewerWidget::ReceivedAudioBufferForScrubbing);
audio_scrub_watchers_.push_back(watcher);
watcher->SetTicket(auto_cacher_.GetRangeOfAudio(TimeRange(GetTime(), GetTime() + interval)));
watcher->SetTicket(auto_cacher_->GetRangeOfAudio(TimeRange(GetTime(), GetTime() + interval)));
}
}
}
@@ -1033,7 +1033,7 @@ RenderTicketPtr ViewerWidget::GetFrame(const rational &t)
if (!QFileInfo::exists(cache_fn)) {
// Frame hasn't been cached, start render job
return auto_cacher_.GetSingleFrame(t);
return auto_cacher_->GetSingleFrame(t);
} else {
// Frame has been cached, grab the frame
RenderTicketPtr ticket = std::make_shared<RenderTicket>();
@@ -1061,7 +1061,7 @@ void ViewerWidget::FinishPlayPreprocess()
}
prequeued_audio_.clear();
AudioMonitor::StartWaveformOnAll(&GetConnectedNode()->audio_playback_cache()->visual(),
AudioMonitor::StartWaveformOnAll(GetConnectedNode()->GetConnectedWaveform(),
GetTime(), playback_speed_);
}
@@ -1298,6 +1298,7 @@ void ViewerWidget::ShowContextMenu(const QPoint &pos)
menu.addSeparator();
/* TEMP: Hide sequence cache options. Want to see if clip caching supersedes it.
{
Menu* cache_menu = new Menu(tr("Cache"), &menu);
menu.addMenu(cache_menu);
@@ -1309,7 +1310,7 @@ void ViewerWidget::ShowContextMenu(const QPoint &pos)
// Cache In/Out Sequence
QAction* cache_inout_sequence = cache_menu->addAction(tr("Cache Sequence In/Out"));
connect(cache_inout_sequence, &QAction::triggered, this, &ViewerWidget::CacheSequenceInOut);
}
}*/
menu.addSeparator();
@@ -1389,6 +1390,11 @@ void ViewerWidget::ShowContextMenu(const QPoint &pos)
});
}
menu.addSeparator();
auto save_frame_as_image = menu.addAction(tr("Save Frame As Image"));
connect(save_frame_as_image, &QAction::triggered, this, &ViewerWidget::SaveFrameAsImage);
menu.exec(static_cast<QWidget*>(sender())->mapToGlobal(pos));
}
+3 -3
View File
@@ -226,8 +226,6 @@ private:
void UpdateAutoCacher();
void ClearVideoAutoCacherQueue();
void DecrementPrequeuedAudio();
void ArmForRecording();
@@ -274,7 +272,7 @@ private:
int prequeue_length_;
int prequeue_count_;
PreviewAutoCacher auto_cacher_;
PreviewAutoCacher *auto_cacher_;
QVector<RenderTicketWatcher*> queue_watchers_;
@@ -370,6 +368,8 @@ private slots:
void RequestNextDryRun();
void SaveFrameAsImage();
};
}
+1
View File
@@ -34,6 +34,7 @@
#include <QScreen>
#include <QTextEdit>
#include "common/define.h"
#include "common/html.h"
#include "common/qtutils.h"
#include "config/config.h"
+4
View File
@@ -183,6 +183,10 @@ MainMenu::MainMenu(MainWindow *parent) :
sequence_disk_cache_clear_item_ = sequence_menu_->AddItem("seqcacheclear", this, &MainMenu::SequenceCacheClearTriggered);
// TEMP: Hide sequence cache items for now. Want to see if clip caching will supersede it.
sequence_cache_item_->setVisible(false);
sequence_cache_in_to_out_item_->setVisible(false);
//
// WINDOW MENU
//
+2 -2
View File
@@ -86,13 +86,13 @@ OLIVE_ADD_TEST(TimeRangeListFrameIteratorSize)
ranges.insert(TimeRange(rational(1402, 20), rational(1403, 20))); // 1
ranges.insert(TimeRange(rational(10001, 40), rational(10002, 40))); // 0
ranges.insert(TimeRange(rational(10001, 40), rational(10004, 40))); // 0
ranges.insert(TimeRange(rational(10001, 40), rational(10005, 40))); // 1
ranges.insert(TimeRange(rational(10001, 40), rational(10005, 40))); // 2
TimeRangeListFrameIterator iterator(ranges, timebase);
QVector<rational> vec = iterator.ToVector();
OLIVE_ASSERT_EQUAL(vec.size(), 253);
OLIVE_ASSERT_EQUAL(vec.size(), 254);
OLIVE_ASSERT_EQUAL(iterator.size(), vec.size());
TimeRangeListFrameIterator empty(TimeRangeList(), timebase);