/***
Olive - Non-Linear Video Editor
Copyright (C) 2020 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 .
***/
#include "block.h"
#include
#include "node/output/track/track.h"
#include "transition/transition.h"
#include "widget/slider/floatslider.h"
namespace olive {
const QString Block::kLengthInput = QStringLiteral("length_in");
const QString Block::kMediaInInput = QStringLiteral("media_in_in");
const QString Block::kEnabledInput = QStringLiteral("enabled_in");
const QString Block::kSpeedInput = QStringLiteral("speed_in");
const QString Block::kReverseInput = QStringLiteral("reverse_in");
Block::Block() :
previous_(nullptr),
next_(nullptr),
track_(nullptr),
index_(-1),
in_transition_(nullptr),
out_transition_(nullptr)
{
AddInput(kLengthInput, NodeValue::kRational, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
SetInputProperty(kLengthInput, "min", QVariant::fromValue(rational(0, 1)));
IgnoreInvalidationsFrom(kLengthInput);
IgnoreHashingFrom(kLengthInput);
AddInput(kMediaInInput, NodeValue::kRational, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
IgnoreHashingFrom(kMediaInInput);
AddInput(kEnabledInput, NodeValue::kBoolean, true, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
AddInput(kSpeedInput, NodeValue::kFloat, 1.0, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
SetInputProperty(kSpeedInput, QStringLiteral("view"), FloatSlider::kPercentage);
SetInputProperty(kSpeedInput, QStringLiteral("min"), 0.0);
IgnoreHashingFrom(kSpeedInput);
AddInput(kReverseInput, NodeValue::kBoolean, false, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
IgnoreHashingFrom(kReverseInput);
// A block's length must be greater than 0
set_length_and_media_out(1);
}
QVector Block::Category() const
{
return {kCategoryTimeline};
}
rational Block::length() const
{
return GetStandardValue(kLengthInput).value();
}
void Block::set_length_and_media_out(const rational &length)
{
Q_ASSERT(length > 0);
if (length == this->length()) {
return;
}
if (reverse()) {
// Calculate media_in adjustment
set_media_in(SequenceToMediaTime(length - this->length(), true));
}
set_length_internal(length);
}
void Block::set_length_and_media_in(const rational &length)
{
Q_ASSERT(length > 0);
if (length == this->length()) {
return;
}
if (!reverse()) {
// Calculate media_in adjustment
set_media_in(SequenceToMediaTime(this->length() - length));
}
// Set the length without setting media out
set_length_internal(length);
}
rational Block::media_in() const
{
return GetStandardValue(kMediaInInput).value();
}
void Block::set_media_in(const rational &media_in)
{
SetStandardValue(kMediaInInput, QVariant::fromValue(media_in));
}
bool Block::is_enabled() const
{
return GetStandardValue(kEnabledInput).toBool();
}
void Block::set_enabled(bool e)
{
SetStandardValue(kEnabledInput, e);
emit EnabledChanged();
}
rational Block::SequenceToMediaTime(const rational &sequence_time, bool ignore_reverse) const
{
// These constants are not considered "values" per se, so we don't modify them
if (sequence_time == RATIONAL_MIN || sequence_time == RATIONAL_MAX) {
return sequence_time;
}
rational local_time = sequence_time;
double speed_value = speed();
if (qIsNull(speed_value)) {
// Effectively holds the frame at the in point
local_time = 0;
} else if (!qFuzzyCompare(speed_value, 1.0)) {
// Multiply time
local_time = rational::fromDouble(local_time.toDouble() * speed_value);
}
rational media_time = local_time + media_in();
if (reverse() && !ignore_reverse) {
media_time = length() - media_time;
}
return media_time;
}
rational Block::MediaToSequenceTime(const rational &media_time) const
{
// These constants are not considered "values" per se, so we don't modify them
if (media_time == RATIONAL_MIN || media_time == RATIONAL_MAX) {
return media_time;
}
rational sequence_time = media_time;
if (reverse()) {
sequence_time = length() - sequence_time;
}
sequence_time -= media_in();
double speed_value = speed();
if (qIsNull(speed_value)) {
// Effectively holds the frame at the in point, also prevents divide by zero
sequence_time = 0;
} else if (!qFuzzyCompare(speed_value, 1.0)) {
// Multiply time
sequence_time = rational::fromDouble(sequence_time.toDouble() / speed_value);
}
return sequence_time;
}
void Block::InputValueChangedEvent(const QString &input, int element)
{
Q_UNUSED(element)
if (input == kLengthInput) {
emit LengthChanged();
} else if (input == kEnabledInput) {
emit EnabledChanged();
}
}
void Block::LinkChangeEvent()
{
block_links_.clear();
foreach (Node* n, links()) {
Block* b = dynamic_cast(n);
if (b) {
block_links_.append(b);
}
}
}
void Block::set_length_internal(const rational &length)
{
SetStandardValue(kLengthInput, QVariant::fromValue(length));
}
void Block::Retranslate()
{
Node::Retranslate();
SetInputName(kLengthInput, tr("Length"));
SetInputName(kMediaInInput, tr("Media In"));
SetInputName(kEnabledInput, tr("Enabled"));
SetInputName(kSpeedInput, tr("Speed"));
SetInputName(kReverseInput, tr("Reverse"));
}
void Block::Hash(const QString &, QCryptographicHash &, const rational &) const
{
// A block does nothing by default, so we hash nothing
}
}