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oak-editor/app/node/value.h
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2021-09-20 21:14:15 -07:00

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/***
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 NODEVALUE_H
#define NODEVALUE_H
#include <QString>
#include <QVariant>
#include <QVector>
namespace olive {
class Node;
class NodeValue
{
public:
/**
* @brief The types of data that can be passed between Nodes
*/
enum Type {
kNone,
/**
****************************** SPECIFIC IDENTIFIERS ******************************
*/
/**
* Integer type
*
* Resolves to int64_t.
*/
kInt,
/**
* Decimal (floating-point) type
*
* Resolves to `double`.
*/
kFloat,
/**
* Decimal (rational) type
*
* Resolves to `double`.
*/
kRational,
/**
* Boolean type
*
* Resolves to `bool`.
*/
kBoolean,
/**
* Floating-point type
*
* Resolves to `Color`.
*
* Colors passed around the nodes should always be in reference space and preferably use
*/
kColor,
/**
* Matrix type
*
* Resolves to `QMatrix4x4`.
*/
kMatrix,
/**
* Text type
*
* Resolves to `QString`.
*/
kText,
/**
* Font type
*
* Resolves to `QFont`.
*/
kFont,
/**
* File type
*
* Resolves to a `QString` containing an absolute file path.
*/
kFile,
/**
* Image buffer type
*
* True value type depends on the render engine used.
*/
kTexture,
/**
* Audio samples type
*
* Resolves to `SampleBufferPtr`.
*/
kSamples,
/**
* Two-dimensional vector (XY) type
*
* Resolves to `QVector2D`.
*/
kVec2,
/**
* Three-dimensional vector (XYZ) type
*
* Resolves to `QVector3D`.
*/
kVec3,
/**
* Four-dimensional vector (XYZW) type
*
* Resolves to `QVector4D`.
*/
kVec4,
/**
* ComboBox type
*
* Resolves to `int` - the index currently selected
*/
kCombo,
/**
* Video Parameters type
*
* Resolves to `VideoParams`
*/
kVideoParams,
/**
* Audio Parameters type
*
* Resolves to `AudioParams`
*/
kAudioParams,
/**
* Job type
*
* An internal type used to indicate to the renderer that a footage job needs to
* run. This value will usually be taken from a table and a kTexture or kSamples value will be
* pushed to take its place.
*/
kFootageJob,
/**
* Job type
*
* An internal type used to indicate to the renderer that an accelerated shader job needs to
* run. This value will usually be taken from a table and a kTexture value will be pushed to
* take its place.
*/
kShaderJob,
/**
* Job type
*
* An internal type used to indicate to the renderer that an accelerated sample job needs to
* take place. This value will usually be taken from a table and a kSamples value will be
* pushed to take its place.
*/
kSampleJob,
/**
* Job type
*
* An internal type used to indicate to the renderer that an accelerated sample job needs to
* take place. This value will usually be taken from a table and a kSamples value will be
* pushed to take its place.
*/
kGenerateJob
};
static const QVector<Type> kNumber;
static const QVector<Type> kBuffer;
static const QVector<Type> kVector;
NodeValue() :
type_(kNone),
from_(nullptr),
array_(false)
{
}
NodeValue(Type type, const QVariant& data, const Node* from = nullptr, bool array = false, const QString& tag = QString()) :
type_(type),
data_(data),
from_(from),
tag_(tag),
array_(array)
{
}
Type type() const
{
return type_;
}
const QVariant& data() const
{
return data_;
}
const QString& tag() const
{
return tag_;
}
const Node* source() const
{
return from_;
}
bool array() const
{
return array_;
}
bool operator==(const NodeValue& rhs) const
{
return type_ == rhs.type_ && tag_ == rhs.tag_ && data_ == rhs.data_;
}
static QString GetPrettyDataTypeName(Type type);
static QString ValueToString(Type data_type, const QVariant& value, bool value_is_a_key_track);
static QVariant StringToValue(Type data_type, const QString &string, bool value_is_a_key_track);
/**
* @brief Convert a value from a NodeParam into bytes
*/
static QByteArray ValueToBytes(Type type, const QVariant& value);
static QByteArray ValueToBytes(const NodeValue &value)
{
return ValueToBytes(value.type(), value.data());
}
static QVector<QVariant> split_normal_value_into_track_values(Type type, const QVariant &value);
static QVariant combine_track_values_into_normal_value(Type type, const QVector<QVariant>& split);
/**
* @brief Returns whether a data type can be interpolated or not
*/
static bool type_can_be_interpolated(NodeValue::Type type)
{
return type == kFloat
|| type == kVec2
|| type == kVec3
|| type == kVec4
|| type == kColor
|| type == kRational;
}
static bool type_is_numeric(NodeValue::Type type)
{
return kNumber.contains(type);
}
static bool type_is_vector(NodeValue::Type type)
{
return kVector.contains(type);
}
static int get_number_of_keyframe_tracks(Type type);
static void ValidateVectorString(QStringList* list, int count);
private:
Type type_;
QVariant data_;
const Node* from_;
QString tag_;
bool array_;
};
class NodeValueTable
{
public:
NodeValueTable() = default;
QVariant Get(NodeValue::Type type, const QString& tag = QString()) const
{
QVector<NodeValue::Type> types = {type};
return Get(types, tag);
}
QVariant Get(const QVector<NodeValue::Type>& type, const QString& tag = QString()) const
{
return GetWithMeta(type, tag).data();
}
NodeValue GetWithMeta(NodeValue::Type type, const QString& tag = QString()) const
{
QVector<NodeValue::Type> types = {type};
return GetWithMeta(types, tag);
}
NodeValue GetWithMeta(const QVector<NodeValue::Type>& type, const QString& tag = QString()) const;
QVariant Take(NodeValue::Type type, const QString& tag = QString())
{
QVector<NodeValue::Type> types = {type};
return Take(types, tag);
}
QVariant Take(const QVector<NodeValue::Type>& type, const QString& tag = QString())
{
return TakeWithMeta(type, tag).data();
}
NodeValue TakeWithMeta(NodeValue::Type type, const QString& tag = QString())
{
QVector<NodeValue::Type> types = {type};
return TakeWithMeta(types, tag);
}
NodeValue TakeWithMeta(const QVector<NodeValue::Type>& type, const QString& tag = QString());
void Push(const NodeValue& value)
{
values_.append(value);
}
void Push(NodeValue::Type type, const QVariant& data, const Node *from, bool array = false, const QString& tag = QString())
{
Push(NodeValue(type, data, from, array, tag));
}
void Prepend(const NodeValue& value)
{
values_.prepend(value);
}
void Prepend(NodeValue::Type type, const QVariant& data, const Node *from, bool array = false, const QString& tag = QString())
{
Prepend(NodeValue(type, data, from, array, tag));
}
const NodeValue& at(int index) const
{
return values_.at(index);
}
NodeValue TakeAt(int index)
{
return values_.takeAt(index);
}
int Count() const
{
return values_.size();
}
bool Has(NodeValue::Type type) const;
void Remove(const NodeValue& v);
void Clear()
{
values_.clear();
}
bool isEmpty() const
{
return values_.isEmpty();
}
int GetValueIndex(const QVector<NodeValue::Type> &type, const QString& tag) const;
static NodeValueTable Merge(QList<NodeValueTable> tables);
private:
QVector<NodeValue> values_;
};
using NodeValueRow = QHash<QString, NodeValue>;
}
Q_DECLARE_METATYPE(olive::NodeValue)
Q_DECLARE_METATYPE(olive::NodeValueTable)
#endif // NODEVALUE_H