mirror of
https://github.com/rwengine/openrw.git
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288 lines
5.9 KiB
C++
288 lines
5.9 KiB
C++
#ifndef _LIBRW_CLUMP_HPP_
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#define _LIBRW_CLUMP_HPP_
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#include <cstddef>
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#include <cstdint>
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#include <string>
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#include <vector>
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#include <gl/DrawBuffer.hpp>
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#include <gl/GeometryBuffer.hpp>
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#include <gl/TextureData.hpp>
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#include <loaders/RWBinaryStream.hpp>
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#include <rw/forward.hpp>
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/**
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* ModelFrame stores transformation hierarchy
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*/
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class ModelFrame {
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unsigned int index;
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glm::mat3 defaultRotation;
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glm::vec3 defaultTranslation;
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glm::mat4 matrix{1.0f};
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glm::mat4 worldtransform_{1.0f};
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ModelFrame* parent_;
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std::string name;
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std::vector<ModelFramePtr> children_;
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public:
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ModelFrame(unsigned int index = 0, glm::mat3 dR = glm::mat3{1.0f},
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glm::vec3 dT = glm::vec3());
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void reset();
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void setTransform(const glm::mat4& m) {
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matrix = m;
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updateHierarchyTransform();
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}
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const glm::mat4& getTransform() const {
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return matrix;
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}
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void setName(const std::string& fname) {
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name = fname;
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}
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unsigned int getIndex() const {
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return index;
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}
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glm::vec3 getDefaultTranslation() const {
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return defaultTranslation;
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}
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glm::mat3 getDefaultRotation() const {
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return defaultRotation;
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}
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void setTranslation(const glm::vec3& t) {
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matrix[3] = glm::vec4(t, matrix[3][3]);
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updateHierarchyTransform();
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}
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void setRotation(const glm::mat3& r) {
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for (unsigned int i = 0; i < 3; i++) {
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matrix[i] = glm::vec4(r[i], matrix[i][3]);
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}
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updateHierarchyTransform();
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}
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/**
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* Updates the cached matrix
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*/
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void updateHierarchyTransform();
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/**
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* @return the cached world transformation for this Frame
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*/
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const glm::mat4& getWorldTransform() const {
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return worldtransform_;
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}
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ModelFrame* getParent() const {
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return parent_;
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}
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void addChild(const ModelFramePtr& child);
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const std::vector<ModelFramePtr>& getChildren() const {
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return children_;
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}
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const std::string& getName() const {
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return name;
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}
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ModelFrame* findDescendant(const std::string& name) const;
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ModelFramePtr cloneHierarchy() const;
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};
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/**
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* Subgeometry
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*/
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struct SubGeometry {
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size_t start = 0;
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size_t material = 0;
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std::vector<uint32_t> indices;
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size_t numIndices = 0;
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};
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struct GeometryVertex {
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glm::vec3 position{}; /* 0 */
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glm::vec3 normal{}; /* 24 */
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glm::vec2 texcoord{}; /* 48 */
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glm::u8vec4 colour{}; /* 64 */
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/** @see GeometryBuffer */
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static const AttributeList vertex_attributes() {
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return {{ATRS_Position, 3, sizeof(GeometryVertex), 0ul},
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{ATRS_Normal, 3, sizeof(GeometryVertex), sizeof(float) * 3},
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{ATRS_TexCoord, 2, sizeof(GeometryVertex), sizeof(float) * 6},
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{ATRS_Colour, 4, sizeof(GeometryVertex), sizeof(float) * 8,
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GL_UNSIGNED_BYTE}};
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}
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GeometryVertex(glm::vec3 _position, glm::vec3 _normal, glm::vec2 _texcoord, glm::u8vec4 _colour)
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: position(_position)
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, normal(_normal)
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, texcoord(_texcoord)
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, colour(_colour) {
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}
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GeometryVertex() = default;
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};
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/**
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* Geometry
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*/
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struct Geometry {
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enum FaceType { Triangles = 0, TriangleStrip = 1 };
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struct Texture {
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std::string name;
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std::string alphaName;
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TextureData* texture = nullptr;
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template<class String1, class String2>
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Texture(String1&& _name, String2&& _alphaName, TextureData* _texture)
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: name(std::forward<String1>(_name))
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, alphaName(std::forward<String2>(_alphaName))
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, texture(_texture) {
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}
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};
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enum { MTF_PrimaryColour = 1 << 0, MTF_SecondaryColour = 1 << 1 };
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struct Material {
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std::vector<Texture> textures;
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glm::u8vec4 colour{};
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uint8_t flags;
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float diffuseIntensity;
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float ambientIntensity;
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};
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DrawBuffer dbuff;
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GeometryBuffer gbuff;
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GLuint EBO;
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RW::BSGeometryBounds geometryBounds;
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uint32_t clumpNum;
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FaceType facetype;
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uint32_t flags;
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std::vector<Material> materials;
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std::vector<SubGeometry> subgeom;
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Geometry();
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~Geometry();
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};
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/**
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* @brief The Atomic struct
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*/
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class Atomic {
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ModelFramePtr frame_;
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GeometryPtr geometry_;
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uint32_t flags_;
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public:
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enum {
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// If this is set, the atomic will be rendered
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ATOMIC_RENDER = 0x04
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};
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void setFrame(const ModelFramePtr& frame) {
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frame_ = frame;
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}
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const ModelFramePtr& getFrame() const {
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return frame_;
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}
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void setGeometry(const GeometryPtr& geom) {
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geometry_ = geom;
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}
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const GeometryPtr& getGeometry() const {
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return geometry_;
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}
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void setFlags(uint32_t flags) {
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flags_ = flags;
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}
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uint32_t getFlags() const {
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return flags_;
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}
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void setFlag(uint32_t flag, bool set) {
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if (set) {
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flags_ |= flag;
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}
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else {
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flags_ &= ~flag;
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}
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}
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AtomicPtr clone() const;
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};
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/**
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* A clump is a collection of Frames and Atomics
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*/
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class Clump {
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public:
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/**
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* @brief findFrame Locates frame with name anywhere in the hierarchy
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* @param name
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* @return
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*/
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ModelFrame* findFrame(const std::string& name) const;
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~Clump();
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void recalculateMetrics();
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float getBoundingRadius() const {
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return boundingRadius;
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}
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void addAtomic(const AtomicPtr& atomic) {
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atomics_.push_back(atomic);
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}
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const AtomicList& getAtomics() const {
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return atomics_;
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}
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void setFrame(const ModelFramePtr& root) {
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rootframe_ = root;
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}
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const ModelFramePtr& getFrame() const {
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return rootframe_;
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}
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/**
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* @return A Copy of the frames and atomics in this clump
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*/
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ClumpPtr clone() const;
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private:
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float boundingRadius;
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AtomicList atomics_;
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ModelFramePtr rootframe_;
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};
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#endif
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