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find -type f | # list all regular files grep -E '\.(h|cpp|mm)$' | # filter for source files grep -v '/mt_' | # filter out generated files grep -v '/vendor/' | # and vendored GL grep -v '/test/image_loader_test.cpp' | # and this file (has giant literals arrays) xargs -n 1 -P $(nproc) clang-format -i # reformat everything Co-authored-by: numzero <numzer0@yandex.ru>
103 lines
3.0 KiB
C++
103 lines
3.0 KiB
C++
// Copyright (C) 2002-2012 Nikolaus Gebhardt
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// This file is part of the "Irrlicht Engine".
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// For conditions of distribution and use, see copyright notice in irrlicht.h
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#include "CDummyTransformationSceneNode.h"
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#include "os.h"
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namespace irr
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{
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namespace scene
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{
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//! constructor
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CDummyTransformationSceneNode::CDummyTransformationSceneNode(
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ISceneNode *parent, ISceneManager *mgr, s32 id) :
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IDummyTransformationSceneNode(parent, mgr, id)
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{
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#ifdef _DEBUG
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setDebugName("CDummyTransformationSceneNode");
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#endif
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setAutomaticCulling(scene::EAC_OFF);
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}
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//! returns the axis aligned bounding box of this node
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const core::aabbox3d<f32> &CDummyTransformationSceneNode::getBoundingBox() const
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{
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return Box;
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}
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//! Returns a reference to the current relative transformation matrix.
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//! This is the matrix, this scene node uses instead of scale, translation
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//! and rotation.
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core::matrix4 &CDummyTransformationSceneNode::getRelativeTransformationMatrix()
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{
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return RelativeTransformationMatrix;
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}
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//! Returns the relative transformation of the scene node.
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core::matrix4 CDummyTransformationSceneNode::getRelativeTransformation() const
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{
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return RelativeTransformationMatrix;
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}
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//! Creates a clone of this scene node and its children.
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ISceneNode *CDummyTransformationSceneNode::clone(ISceneNode *newParent, ISceneManager *newManager)
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{
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if (!newParent)
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newParent = Parent;
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if (!newManager)
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newManager = SceneManager;
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CDummyTransformationSceneNode *nb = new CDummyTransformationSceneNode(newParent,
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newManager, ID);
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nb->cloneMembers(this, newManager);
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nb->RelativeTransformationMatrix = RelativeTransformationMatrix;
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nb->Box = Box;
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if (newParent)
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nb->drop();
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return nb;
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}
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const core::vector3df &CDummyTransformationSceneNode::getScale() const
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{
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os::Printer::log("CDummyTransformationSceneNode::getScale() does not contain the relative transformation.", ELL_DEBUG);
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return RelativeScale;
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}
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void CDummyTransformationSceneNode::setScale(const core::vector3df &scale)
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{
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os::Printer::log("CDummyTransformationSceneNode::setScale() does not affect the relative transformation.", ELL_DEBUG);
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RelativeScale = scale;
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}
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const core::vector3df &CDummyTransformationSceneNode::getRotation() const
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{
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os::Printer::log("CDummyTransformationSceneNode::getRotation() does not contain the relative transformation.", ELL_DEBUG);
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return RelativeRotation;
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}
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void CDummyTransformationSceneNode::setRotation(const core::vector3df &rotation)
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{
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os::Printer::log("CDummyTransformationSceneNode::setRotation() does not affect the relative transformation.", ELL_DEBUG);
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RelativeRotation = rotation;
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}
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const core::vector3df &CDummyTransformationSceneNode::getPosition() const
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{
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os::Printer::log("CDummyTransformationSceneNode::getPosition() does not contain the relative transformation.", ELL_DEBUG);
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return RelativeTranslation;
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}
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void CDummyTransformationSceneNode::setPosition(const core::vector3df &newpos)
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{
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os::Printer::log("CDummyTransformationSceneNode::setPosition() does not affect the relative transformation.", ELL_DEBUG);
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RelativeTranslation = newpos;
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}
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} // end namespace scene
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} // end namespace irr
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