/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 Olive Team
Modifications Copyright (C) 2025 mikesolar
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 .
***/
#include "timeoffsetnode.h"
#include "node/sliderdisplaytype.h"
namespace olive
{
const QString TimeOffsetNode::k_time_input = QStringLiteral("time_in");
const QString TimeOffsetNode::k_input_input = QStringLiteral("input_in");
#define super Node
TimeOffsetNode::TimeOffsetNode()
{
add_input(k_time_input, NodeValue::k_rational, QVariant::fromValue(Rational(0)),
InputFlags(k_input_flag_not_connectable));
set_input_property(k_time_input, QStringLiteral("view"), slider::k_time);
set_input_property(k_time_input, QStringLiteral("viewlock"), true);
add_input(k_input_input, NodeValue::k_none,
InputFlags(k_input_flag_not_keyframable));
}
void TimeOffsetNode::retranslate()
{
super::retranslate();
set_input_name(k_time_input, QStringLiteral("Time"));
set_input_name(k_input_input, QStringLiteral("Input"));
}
TimeRange TimeOffsetNode::input_time_adjustment(const QString &input, int element,
const TimeRange &input_time,
bool clamp) const
{
if (input == k_input_input) {
return TimeRange(get_remapped_time(input_time.in()),
get_remapped_time(input_time.out()));
} else {
return super::input_time_adjustment(input, element, input_time, clamp);
}
}
TimeRange
TimeOffsetNode::output_time_adjustment(const QString &input, int element,
const TimeRange &input_time) const
{
if (input == k_input_input) {
// The inverse of InputTimeAdjustment(): times at the input are mapped
// back to the output by subtracting the offset again
return TimeRange(get_remapped_output_time(input_time.in()),
get_remapped_output_time(input_time.out()));
} else {
return super::output_time_adjustment(input, element, input_time);
}
}
void TimeOffsetNode::value(const NodeValueRow &value,
const NodeGlobals &globals,
NodeValueTable *table) const
{
table->push(value[k_input_input]);
}
Rational TimeOffsetNode::get_remapped_time(const Rational &input) const
{
return input + get_value_at_time(k_time_input, input).value();
}
Rational TimeOffsetNode::get_remapped_output_time(const Rational &input) const
{
return input - get_value_at_time(k_time_input, input).value();
}
}