This makes the node system somewhat more high-level with the intent of making working with them far more flexible and stable. By making the architecture more abstracted, it becomes far less rigid which should allow us to do even more with it and make it much less crash prone.
123 lines
2.9 KiB
C++
123 lines
2.9 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2020 Olive Team
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "trigonometry.h"
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namespace olive {
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const QString TrigonometryNode::kMethodIn = QStringLiteral("method_in");
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const QString TrigonometryNode::kXIn = QStringLiteral("x_in");
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TrigonometryNode::TrigonometryNode()
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{
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AddInput(kMethodIn, NodeValue::kCombo, InputFlags(kInputFlagNotConnectable | kInputFlagNotKeyframable));
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AddInput(kXIn, NodeValue::kFloat, 0.0);
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}
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olive::Node *olive::TrigonometryNode::copy() const
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{
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return new TrigonometryNode();
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}
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QString TrigonometryNode::Name() const
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{
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return tr("Trigonometry");
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}
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QString TrigonometryNode::id() const
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{
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return QStringLiteral("org.olivevideoeditor.Olive.trigonometry");
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}
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QVector<Node::CategoryID> TrigonometryNode::Category() const
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{
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return {kCategoryMath};
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}
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QString TrigonometryNode::Description() const
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{
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return tr("Perform a trigonometry operation on a value.");
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}
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void TrigonometryNode::Retranslate()
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{
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QStringList strings = {tr("Sine"),
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tr("Cosine"),
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tr("Tangent"),
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QString(),
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tr("Inverse Sine"),
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tr("Inverse Cosine"),
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tr("Inverse Tangent"),
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QString(),
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tr("Hyperbolic Sine"),
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tr("Hyperbolic Cosine"),
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tr("Hyperbolic Tangent")};
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SetComboBoxStrings(kMethodIn, strings);
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SetInputName(kMethodIn, tr("Method"));
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}
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NodeValueTable TrigonometryNode::Value(const QString &output, NodeValueDatabase &value) const
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{
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Q_UNUSED(output)
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float x = value[kXIn].Take(NodeValue::kFloat).toFloat();
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NodeValueTable table = value.Merge();
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switch (static_cast<Operation>(GetStandardValue(kMethodIn).toInt())) {
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case kOpSine:
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x = qSin(x);
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break;
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case kOpCosine:
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x = qCos(x);
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break;
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case kOpTangent:
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x = qTan(x);
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break;
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case kOpArcSine:
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x = qAsin(x);
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break;
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case kOpArcCosine:
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x = qAcos(x);
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break;
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case kOpArcTangent:
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x = qAtan(x);
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break;
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case kOpHypSine:
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x = std::sinh(x);
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break;
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case kOpHypCosine:
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x = std::cosh(x);
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break;
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case kOpHypTangent:
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x = std::tanh(x);
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break;
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}
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table.Push(NodeValue::kFloat, x, this);
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return table;
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}
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}
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