507 lines
14 KiB
C++
507 lines
14 KiB
C++
/*
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Copyright (C) 2001-2006, William Joseph.
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All Rights Reserved.
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This file is part of GtkRadiant.
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GtkRadiant 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 2 of the License, or
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(at your option) any later version.
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GtkRadiant 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 GtkRadiant; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "cullable.h"
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#include "renderable.h"
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#include "editable.h"
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#include "selectionlib.h"
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#include "instancelib.h"
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#include "transformlib.h"
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#include "traverselib.h"
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#include "entitylib.h"
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#include "eclasslib.h"
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#include "render.h"
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#include "pivot.h"
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#include "targetable.h"
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#include "origin.h"
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#include "angles.h"
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#include "scale.h"
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#include "model.h"
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#include "filters.h"
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#include "namedentity.h"
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#include "keyobservers.h"
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#include "namekeys.h"
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#include "entity.h"
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class PropDynamic :
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public Snappable {
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EntityKeyValues m_entity;
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KeyObserverMap m_keyObservers;
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MatrixTransform m_transform;
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OriginKey m_originKey;
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Vector3 m_origin;
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AnglesKey m_anglesKey;
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Vector3 m_angles;
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ScaleKey m_scaleKey;
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Vector3 m_scale;
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SingletonModel m_model;
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ClassnameFilter m_filter;
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NamedEntity m_named;
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NameKeys m_nameKeys;
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RenderablePivot m_renderOrigin;
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RenderableNamedEntity m_renderName;
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Callback<void()> m_transformChanged;
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Callback<void()> m_evaluateTransform;
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void construct()
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{
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m_keyObservers.insert("classname", ClassnameFilter::ClassnameChangedCaller(m_filter));
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m_keyObservers.insert(Static<KeyIsName>::instance().m_nameKey, NamedEntity::IdentifierChangedCaller(m_named));
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m_keyObservers.insert("model", SingletonModel::ModelChangedCaller(m_model));
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m_keyObservers.insert("origin", OriginKey::OriginChangedCaller(m_originKey));
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m_keyObservers.insert("angle", AnglesKey::AngleChangedCaller(m_anglesKey));
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m_keyObservers.insert("angles", AnglesKey::AnglesChangedCaller(m_anglesKey));
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m_keyObservers.insert("modelscale", ScaleKey::UniformScaleChangedCaller(m_scaleKey));
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m_keyObservers.insert("modelscale_vec", ScaleKey::ScaleChangedCaller(m_scaleKey));
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}
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void updateTransform()
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{
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m_transform.localToParent() = g_matrix4_identity;
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matrix4_transform_by_euler_xyz_degrees(m_transform.localToParent(), m_origin, m_angles, m_scale);
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m_transformChanged();
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}
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// vc 2k5 compiler fix
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#if _MSC_VER >= 1400
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public:
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#endif
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void originChanged()
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{
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m_origin = m_originKey.m_origin;
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updateTransform();
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}
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typedef MemberCaller<PropDynamic, void(), &PropDynamic::originChanged> OriginChangedCaller;
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void anglesChanged()
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{
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m_angles = m_anglesKey.m_angles;
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updateTransform();
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}
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typedef MemberCaller<PropDynamic, void(), &PropDynamic::anglesChanged> AnglesChangedCaller;
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void scaleChanged()
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{
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m_scale = m_scaleKey.m_scale;
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updateTransform();
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}
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typedef MemberCaller<PropDynamic, void(), &PropDynamic::scaleChanged> ScaleChangedCaller;
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public:
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PropDynamic(EntityClass *eclass, scene::Node &node, const Callback<void()> &transformChanged,
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const Callback<void()> &evaluateTransform) :
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m_entity(eclass),
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m_originKey(OriginChangedCaller(*this)),
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m_origin(ORIGINKEY_IDENTITY),
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m_anglesKey(AnglesChangedCaller(*this)),
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m_angles(ANGLESKEY_IDENTITY),
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m_scaleKey(ScaleChangedCaller(*this)),
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m_scale(SCALEKEY_IDENTITY),
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m_filter(m_entity, node),
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m_named(m_entity),
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m_nameKeys(m_entity),
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m_renderName(m_named, g_vector3_identity),
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m_transformChanged(transformChanged),
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m_evaluateTransform(evaluateTransform)
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{
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construct();
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}
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PropDynamic(const PropDynamic &other, scene::Node &node, const Callback<void()> &transformChanged,
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const Callback<void()> &evaluateTransform) :
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m_entity(other.m_entity),
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m_originKey(OriginChangedCaller(*this)),
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m_origin(ORIGINKEY_IDENTITY),
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m_anglesKey(AnglesChangedCaller(*this)),
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m_angles(ANGLESKEY_IDENTITY),
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m_scaleKey(ScaleChangedCaller(*this)),
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m_scale(SCALEKEY_IDENTITY),
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m_filter(m_entity, node),
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m_named(m_entity),
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m_nameKeys(m_entity),
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m_renderName(m_named, g_vector3_identity),
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m_transformChanged(transformChanged),
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m_evaluateTransform(evaluateTransform)
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{
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construct();
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}
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InstanceCounter m_instanceCounter;
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void instanceAttach(const scene::Path &path)
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{
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if (++m_instanceCounter.m_count == 1) {
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m_filter.instanceAttach();
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m_entity.instanceAttach(path_find_mapfile(path.begin(), path.end()));
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m_entity.attach(m_keyObservers);
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}
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}
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void instanceDetach(const scene::Path &path)
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{
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if (--m_instanceCounter.m_count == 0) {
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m_entity.detach(m_keyObservers);
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m_entity.instanceDetach(path_find_mapfile(path.begin(), path.end()));
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m_filter.instanceDetach();
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}
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}
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EntityKeyValues &getEntity()
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{
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return m_entity;
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}
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const EntityKeyValues &getEntity() const
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{
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return m_entity;
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}
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scene::Traversable &getTraversable()
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{
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return m_model.getTraversable();
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}
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Namespaced &getNamespaced()
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{
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return m_nameKeys;
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}
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Nameable &getNameable()
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{
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return m_named;
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}
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TransformNode &getTransformNode()
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{
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return m_transform;
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}
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void attach(scene::Traversable::Observer *observer)
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{
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m_model.attach(observer);
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}
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void detach(scene::Traversable::Observer *observer)
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{
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m_model.detach(observer);
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}
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void renderSolid(Renderer &renderer, const VolumeTest &volume, const Matrix4 &localToWorld, bool selected) const
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{
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if (selected) {
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m_renderOrigin.render(renderer, volume, localToWorld);
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}
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renderer.SetState(m_entity.getEntityClass().m_state_wire, Renderer::eWireframeOnly);
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}
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void renderWireframe(Renderer &renderer, const VolumeTest &volume, const Matrix4 &localToWorld, bool selected) const
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{
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renderSolid(renderer, volume, localToWorld, selected);
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if (g_showNames) {
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renderer.addRenderable(m_renderName, localToWorld);
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}
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}
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void translate(const Vector3 &translation)
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{
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m_origin = origin_translated(m_origin, translation);
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}
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void rotate(const Quaternion &rotation)
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{
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m_angles = angles_rotated(m_angles, rotation);
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}
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void scale(const Vector3 &scaling)
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{
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m_scale = scale_scaled(m_scale, scaling);
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}
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void snapto(float snap)
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{
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m_originKey.m_origin = origin_snapped(m_originKey.m_origin, snap);
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m_originKey.write(&m_entity);
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}
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void revertTransform()
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{
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m_origin = m_originKey.m_origin;
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m_angles = m_anglesKey.m_angles;
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m_scale = m_scaleKey.m_scale;
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}
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void freezeTransform()
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{
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m_originKey.m_origin = m_origin;
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m_originKey.write(&m_entity);
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m_anglesKey.m_angles = m_angles;
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m_anglesKey.write(&m_entity);
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m_scaleKey.m_scale = m_scale;
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m_scaleKey.write(&m_entity);
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}
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void transformChanged()
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{
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revertTransform();
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m_evaluateTransform();
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updateTransform();
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}
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typedef MemberCaller<PropDynamic, void(), &PropDynamic::transformChanged> TransformChangedCaller;
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};
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class PropDynamicInstance : public TargetableInstance, public TransformModifier, public Renderable {
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class TypeCasts {
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InstanceTypeCastTable m_casts;
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public:
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TypeCasts()
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{
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m_casts = TargetableInstance::StaticTypeCasts::instance().get();
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InstanceStaticCast<PropDynamicInstance, Renderable>::install(m_casts);
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InstanceStaticCast<PropDynamicInstance, Transformable>::install(m_casts);
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InstanceIdentityCast<PropDynamicInstance>::install(m_casts);
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}
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InstanceTypeCastTable &get()
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{
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return m_casts;
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}
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};
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PropDynamic &m_contained;
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public:
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typedef LazyStatic<TypeCasts> StaticTypeCasts;
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STRING_CONSTANT(Name, "PropDynamicInstance");
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PropDynamicInstance(const scene::Path &path, scene::Instance *parent, PropDynamic &miscmodel) :
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TargetableInstance(path, parent, this, StaticTypeCasts::instance().get(), miscmodel.getEntity(), *this),
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TransformModifier(PropDynamic::TransformChangedCaller(miscmodel), ApplyTransformCaller(*this)),
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m_contained(miscmodel)
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{
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m_contained.instanceAttach(Instance::path());
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StaticRenderableConnectionLines::instance().attach(*this);
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}
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~PropDynamicInstance()
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{
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StaticRenderableConnectionLines::instance().detach(*this);
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m_contained.instanceDetach(Instance::path());
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}
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void renderSolid(Renderer &renderer, const VolumeTest &volume) const
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{
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m_contained.renderSolid(renderer, volume, Instance::localToWorld(), getSelectable().isSelected());
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}
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void renderWireframe(Renderer &renderer, const VolumeTest &volume) const
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{
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m_contained.renderWireframe(renderer, volume, Instance::localToWorld(), getSelectable().isSelected());
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}
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void evaluateTransform()
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{
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if (getType() == TRANSFORM_PRIMITIVE) {
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m_contained.translate(getTranslation());
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m_contained.rotate(getRotation());
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m_contained.scale(getScale());
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}
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}
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void applyTransform()
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{
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m_contained.revertTransform();
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evaluateTransform();
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m_contained.freezeTransform();
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}
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typedef MemberCaller<PropDynamicInstance, void(), &PropDynamicInstance::applyTransform> ApplyTransformCaller;
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};
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class PropDynamicNode :
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public scene::Node::Symbiot,
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public scene::Instantiable,
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public scene::Cloneable,
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public scene::Traversable::Observer {
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class TypeCasts {
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NodeTypeCastTable m_casts;
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public:
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TypeCasts()
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{
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NodeStaticCast<PropDynamicNode, scene::Instantiable>::install(m_casts);
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NodeStaticCast<PropDynamicNode, scene::Cloneable>::install(m_casts);
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NodeContainedCast<PropDynamicNode, scene::Traversable>::install(m_casts);
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NodeContainedCast<PropDynamicNode, Snappable>::install(m_casts);
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NodeContainedCast<PropDynamicNode, TransformNode>::install(m_casts);
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NodeContainedCast<PropDynamicNode, Entity>::install(m_casts);
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NodeContainedCast<PropDynamicNode, Nameable>::install(m_casts);
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NodeContainedCast<PropDynamicNode, Namespaced>::install(m_casts);
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}
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NodeTypeCastTable &get()
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{
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return m_casts;
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}
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};
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scene::Node m_node;
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InstanceSet m_instances;
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PropDynamic m_contained;
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void construct()
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{
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m_contained.attach(this);
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}
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void destroy()
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{
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m_contained.detach(this);
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}
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public:
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typedef LazyStatic<TypeCasts> StaticTypeCasts;
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scene::Traversable &get(NullType<scene::Traversable>)
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{
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return m_contained.getTraversable();
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}
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Snappable &get(NullType<Snappable>)
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{
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return m_contained;
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}
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TransformNode &get(NullType<TransformNode>)
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{
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return m_contained.getTransformNode();
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}
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Entity &get(NullType<Entity>)
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{
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return m_contained.getEntity();
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}
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Nameable &get(NullType<Nameable>)
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{
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return m_contained.getNameable();
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}
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Namespaced &get(NullType<Namespaced>)
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{
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return m_contained.getNamespaced();
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}
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PropDynamicNode(EntityClass *eclass) :
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m_node(this, this, StaticTypeCasts::instance().get()),
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m_contained(eclass, m_node, InstanceSet::TransformChangedCaller(m_instances),
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InstanceSetEvaluateTransform<PropDynamicInstance>::Caller(m_instances))
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{
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construct();
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}
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PropDynamicNode(const PropDynamicNode &other) :
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scene::Node::Symbiot(other),
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scene::Instantiable(other),
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scene::Cloneable(other),
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scene::Traversable::Observer(other),
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m_node(this, this, StaticTypeCasts::instance().get()),
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m_contained(other.m_contained, m_node, InstanceSet::TransformChangedCaller(m_instances),
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InstanceSetEvaluateTransform<PropDynamicInstance>::Caller(m_instances))
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{
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construct();
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}
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~PropDynamicNode()
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{
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destroy();
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}
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void release()
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{
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delete this;
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}
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scene::Node &node()
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{
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return m_node;
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}
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scene::Node &clone() const
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{
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return (new PropDynamicNode(*this))->node();
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}
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void insert(scene::Node &child)
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{
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m_instances.insert(child);
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}
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void erase(scene::Node &child)
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{
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m_instances.erase(child);
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}
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scene::Instance *create(const scene::Path &path, scene::Instance *parent)
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{
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return new PropDynamicInstance(path, parent, m_contained);
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}
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void forEachInstance(const scene::Instantiable::Visitor &visitor)
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{
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m_instances.forEachInstance(visitor);
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}
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void insert(scene::Instantiable::Observer *observer, const scene::Path &path, scene::Instance *instance)
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{
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m_instances.insert(observer, path, instance);
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}
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scene::Instance *erase(scene::Instantiable::Observer *observer, const scene::Path &path)
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{
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return m_instances.erase(observer, path);
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}
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};
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scene::Node &New_PropDynamic(EntityClass *eclass)
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{
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return (new PropDynamicNode(eclass))->node();
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}
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void PropDynamic_construct()
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{
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}
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void PropDynamic_destroy()
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{
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}
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