/***
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 .
***/
#ifndef NODEKEYFRAME_H
#define NODEKEYFRAME_H
#include
#include
#include
#include "common/rational.h"
#include "common/timerange.h"
#include "node/param.h"
namespace olive {
class Node;
/**
* @brief A point of data to be used at a certain time and interpolated with other data
*/
class NodeKeyframe : public QObject
{
Q_OBJECT
public:
/**
* @brief Methods of interpolation to use with this keyframe
*/
enum Type {
kInvalid = -1,
kLinear,
kHold,
kBezier
};
/**
* @brief The two types of bezier handles that are available on bezier keyframes
*/
enum BezierType {
kInHandle,
kOutHandle
};
static const Type kDefaultType;
/**
* @brief NodeKeyframe Constructor
*/
NodeKeyframe(const rational& time, const QVariant& value, Type type, int track, int element, const QString& input, QObject* parent = nullptr);
virtual ~NodeKeyframe() override;
NodeKeyframe* copy(int element, QObject* parent = nullptr) const;
NodeKeyframe* copy(QObject* parent = nullptr) const;
Node* parent() const;
const QString& input() const
{
return input_;
}
NodeKeyframeTrackReference key_track_ref() const
{
return NodeKeyframeTrackReference(NodeInput(parent(), input(), element()), track());
}
/**
* @brief The time this keyframe is set at
*/
const rational& time() const;
void set_time(const rational& time);
/**
* @brief Dummy function for TimeBasedViewSelectionManager compatibility
*
* FIXME: Once we upgrade to C++17, we won't need this because we'll be able to check types in
* TimeBasedViewSelectionManager's template functions
*/
TimeRange time_range() const { return TimeRange(time_, time_); }
/**
* @brief The value of this keyframe (i.e. the value to use at this keyframe's time)
*/
const QVariant& value() const;
void set_value(const QVariant &value);
/**
* @brief The method of interpolation to use with this keyframe
*/
const Type& type() const;
void set_type(const Type& type);
/**
* @brief For bezier interpolation, the control point leading into this keyframe
*/
const QPointF &bezier_control_in() const;
void set_bezier_control_in(const QPointF& control);
/**
* @brief For bezier interpolation, the control point leading out of this keyframe
*/
const QPointF& bezier_control_out() const;
void set_bezier_control_out(const QPointF& control);
/**
* @brief Returns a known good bezier that should be used in actual animation
*
* While users can move the bezier controls wherever they want, we have to limit their usage
* internally to prevent a situation where the animation overlaps (i.e. there can only be one Y
* value for any given X in the bezier line). This returns a value that is known good.
*/
QPointF valid_bezier_control_in() const;
QPointF valid_bezier_control_out() const;
/**
* @brief Convenience functions for retrieving/setting bezier handle information with a BezierType
*/
const QPointF& bezier_control(BezierType type) const;
void set_bezier_control(BezierType type, const QPointF& control);
/**
* @brief The track that this keyframe belongs to
*
* For the majority of keyfreames, this will be 0, but for some types, such as kVec2, this will be 0 for X keyframes
* and 1 for Y keyframes, etc.
*/
int track() const
{
return track_;
}
int element() const
{
return element_;
}
/**
* @brief Convenience function for getting the opposite handle type (e.g. kInHandle <-> kOutHandle)
*/
static BezierType get_opposing_bezier_type(BezierType type);
NodeKeyframe* previous() const
{
return previous_;
}
void set_previous(NodeKeyframe* keyframe)
{
previous_ = keyframe;
}
NodeKeyframe* next() const
{
return next_;
}
void set_next(NodeKeyframe* keyframe)
{
next_ = keyframe;
}
bool has_sibling_at_time(const rational &t) const;
signals:
/**
* @brief Signal emitted when this keyframe's time is changed
*/
void TimeChanged(const rational& time);
/**
* @brief Signal emitted when this keyframe's value is changed
*/
void ValueChanged(const QVariant& value);
/**
* @brief Signal emitted when this keyframe's value is changed
*/
void TypeChanged(const Type& type);
/**
* @brief Signal emitted when this keyframe's bezier in control point is changed
*/
void BezierControlInChanged(const QPointF& d);
/**
* @brief Signal emitted when this keyframe's bezier out control point is changed
*/
void BezierControlOutChanged(const QPointF& d);
private:
rational time_;
QVariant value_;
Type type_;
QPointF bezier_control_in_;
QPointF bezier_control_out_;
QString input_;
int track_;
int element_;
NodeKeyframe* previous_;
NodeKeyframe* next_;
};
using NodeKeyframeTrack = QVector;
}
Q_DECLARE_METATYPE(olive::NodeKeyframe::Type)
#endif // NODEKEYFRAME_H