Files
oak-editor/app/render/videoparams.h
T
itsmattkc 97b9bcc79f nodes: merged gizmotraverser and nodetabletraverser into nodetraverser
No real reason for these other derivatives that did virtually
the same thing.
2021-04-22 12:52:10 +10:00

399 lines
7.6 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2021 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 VIDEOPARAMS_H
#define VIDEOPARAMS_H
#include <QXmlStreamReader>
#include <QXmlStreamWriter>
#include "common/rational.h"
#include "rendermodes.h"
namespace olive {
class VideoParams {
public:
enum Format {
/// Invalid or no format
kFormatInvalid = -1,
/// 8-bit unsigned integer
kFormatUnsigned8,
/// 16-bit unsigned integer
kFormatUnsigned16,
/// 16-bit half float
kFormatFloat16,
/// 32-bit full float
kFormatFloat32,
/// 64-bit double float - disabled since very, very few libs support 64-bit buffers
//kFormatFloat64,
/// Total format count
kFormatCount
};
enum Interlacing {
kInterlaceNone,
kInterlacedTopFirst,
kInterlacedBottomFirst
};
enum Type {
kVideoTypeVideo,
kVideoTypeStill,
kVideoTypeImageSequence
};
VideoParams();
VideoParams(int width, int height, Format format, int nb_channels,
const rational& pixel_aspect_ratio = 1,
Interlacing interlacing = kInterlaceNone, int divider = 1);
VideoParams(int width, int height, int depth,
Format format, int nb_channels,
const rational& pixel_aspect_ratio = 1,
Interlacing interlacing = kInterlaceNone, int divider = 1);
VideoParams(int width, int height, const rational& time_base,
Format format, int nb_channels,
const rational& pixel_aspect_ratio = 1,
Interlacing interlacing = kInterlaceNone, int divider = 1);
int width() const
{
return width_;
}
void set_width(int width)
{
width_ = width;
calculate_effective_size();
}
/**
* @brief Returns width multiplied by pixel aspect ratio where applicable
*/
int square_pixel_width() const
{
return par_width_;
}
int height() const
{
return height_;
}
void set_height(int height)
{
height_ = height;
calculate_effective_size();
}
int depth() const
{
return depth_;
}
void set_depth(int depth)
{
depth_ = depth;
calculate_effective_size();
}
const rational& time_base() const
{
return time_base_;
}
void set_time_base(const rational& r)
{
time_base_ = r;
}
rational frame_rate_as_time_base() const
{
return frame_rate_.flipped();
}
int divider() const
{
return divider_;
}
void set_divider(int d)
{
divider_ = d;
calculate_effective_size();
}
int effective_width() const
{
return effective_width_;
}
int effective_height() const
{
return effective_height_;
}
int effective_depth() const
{
return effective_depth_;
}
Format format() const
{
return format_;
}
void set_format(Format f)
{
format_ = f;
}
int channel_count() const
{
return channel_count_;
}
void set_channel_count(int c)
{
channel_count_ = c;
}
const rational& pixel_aspect_ratio() const
{
return pixel_aspect_ratio_;
}
void set_pixel_aspect_ratio(const rational& r)
{
pixel_aspect_ratio_ = r;
validate_pixel_aspect_ratio();
}
Interlacing interlacing() const
{
return interlacing_;
}
void set_interlacing(Interlacing i)
{
interlacing_ = i;
}
static int generate_auto_divider(qint64 width, qint64 height);
bool is_valid() const;
bool operator==(const VideoParams& rhs) const;
bool operator!=(const VideoParams& rhs) const;
static int GetBytesPerChannel(Format format);
int GetBytesPerChannel() const
{
return GetBytesPerChannel(format_);
}
static int GetBytesPerPixel(Format format, int channels);
int GetBytesPerPixel() const
{
return GetBytesPerPixel(format_, channel_count_);
}
static int GetBufferSize(int width, int height, Format format, int channels)
{
return width * height * GetBytesPerPixel(format, channels);
}
int GetBufferSize() const
{
return GetBufferSize(width_, height_, format_, channel_count_);
}
static bool FormatIsFloat(Format format);
static QString GetFormatName(Format format);
static const int kInternalChannelCount;
static const rational kPixelAspectSquare;
static const rational kPixelAspectNTSCStandard;
static const rational kPixelAspectNTSCWidescreen;
static const rational kPixelAspectPALStandard;
static const rational kPixelAspectPALWidescreen;
static const rational kPixelAspect1080Anamorphic;
static const QVector<rational> kSupportedFrameRates;
static const QVector<rational> kStandardPixelAspects;
static const QVector<int> kSupportedDividers;
static const int kHSVChannelCount = 3;
static const int kRGBChannelCount = 3;
static const int kRGBAChannelCount = 4;
/**
* @brief Convert rational frame rate (i.e. flipped timebase) to a user-friendly string
*/
static QString FrameRateToString(const rational& frame_rate);
static QStringList GetStandardPixelAspectRatioNames();
static QString FormatPixelAspectRatioString(const QString& format, const rational& ratio);
static int GetScaledDimension(int dim, int divider);
QByteArray toBytes() const;
bool enabled() const
{
return enabled_;
}
void set_enabled(bool e)
{
enabled_ = e;
}
int stream_index() const
{
return stream_index_;
}
void set_stream_index(int s)
{
stream_index_ = s;
}
Type video_type() const
{
return video_type_;
}
void set_video_type(Type t)
{
video_type_ = t;
}
const rational& frame_rate() const
{
return frame_rate_;
}
void set_frame_rate(const rational& frame_rate)
{
frame_rate_ = frame_rate;
}
int64_t start_time() const
{
return start_time_;
}
void set_start_time(int64_t start_time)
{
start_time_ = start_time;
}
int64_t duration() const
{
return duration_;
}
void set_duration(int64_t duration)
{
duration_ = duration;
}
bool premultiplied_alpha() const
{
return premultiplied_alpha_;
}
void set_premultiplied_alpha(bool premultiplied_alpha)
{
premultiplied_alpha_ = premultiplied_alpha;
}
const QString& colorspace() const
{
return colorspace_;
}
void set_colorspace(const QString& c)
{
colorspace_ = c;
}
int64_t get_time_in_timebase_units(const rational& time) const;
void Load(QXmlStreamReader* reader);
void Save(QXmlStreamWriter* writer) const;
private:
void calculate_effective_size();
void validate_pixel_aspect_ratio();
void set_defaults_for_footage();
void calculate_square_pixel_width();
int width_;
int height_;
int depth_;
rational time_base_;
Format format_;
int channel_count_;
rational pixel_aspect_ratio_;
Interlacing interlacing_;
int divider_;
// Cached values
int effective_width_;
int effective_height_;
int effective_depth_;
int par_width_;
bool enabled_;
int stream_index_;
Type video_type_;
rational frame_rate_;
int64_t start_time_;
int64_t duration_;
bool premultiplied_alpha_;
QString colorspace_;
};
}
Q_DECLARE_METATYPE(olive::VideoParams)
Q_DECLARE_METATYPE(olive::VideoParams::Interlacing)
#endif // VIDEOPARAMS_H