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111 lines
4.1 KiB
C++
111 lines
4.1 KiB
C++
#include "bulletshape.hpp"
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#include <stdexcept>
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#include <string>
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#include <BulletCollision/CollisionShapes/btBoxShape.h>
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#include <BulletCollision/CollisionShapes/btCompoundShape.h>
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#include <BulletCollision/CollisionShapes/btHeightfieldTerrainShape.h>
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#include <BulletCollision/CollisionShapes/btScaledBvhTriangleMeshShape.h>
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namespace Resource
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{
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namespace
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{
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CollisionShapePtr duplicateCollisionShape(const btCollisionShape* shape)
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{
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if (shape == nullptr)
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return nullptr;
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if (shape->isCompound())
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{
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const btCompoundShape* comp = static_cast<const btCompoundShape*>(shape);
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std::unique_ptr<btCompoundShape, DeleteCollisionShape> newShape(new btCompoundShape);
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for (int i = 0, n = comp->getNumChildShapes(); i < n; ++i)
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{
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auto child = duplicateCollisionShape(comp->getChildShape(i));
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const btTransform& trans = comp->getChildTransform(i);
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newShape->addChildShape(trans, child.release());
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}
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return newShape;
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}
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if (shape->getShapeType() == SCALED_TRIANGLE_MESH_SHAPE_PROXYTYPE)
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{
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const btScaledBvhTriangleMeshShape* trishape = static_cast<const btScaledBvhTriangleMeshShape*>(shape);
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return CollisionShapePtr(new btScaledBvhTriangleMeshShape(
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const_cast<btBvhTriangleMeshShape*>(trishape->getChildShape()), trishape->getLocalScaling()));
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}
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if (shape->getShapeType() == TRIANGLE_MESH_SHAPE_PROXYTYPE)
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{
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const btBvhTriangleMeshShape* trishape = static_cast<const btBvhTriangleMeshShape*>(shape);
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return CollisionShapePtr(new btScaledBvhTriangleMeshShape(
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const_cast<btBvhTriangleMeshShape*>(trishape), btVector3(1.f, 1.f, 1.f)));
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}
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if (shape->getShapeType() == BOX_SHAPE_PROXYTYPE)
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{
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const btBoxShape* boxshape = static_cast<const btBoxShape*>(shape);
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return CollisionShapePtr(new btBoxShape(*boxshape));
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}
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if (shape->getShapeType() == TERRAIN_SHAPE_PROXYTYPE)
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return CollisionShapePtr(
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new btHeightfieldTerrainShape(static_cast<const btHeightfieldTerrainShape&>(*shape)));
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throw std::logic_error(std::string("Unhandled Bullet shape duplication: ") + shape->getName());
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}
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void deleteShape(btCollisionShape* shape)
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{
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if (shape->isCompound())
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{
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btCompoundShape* compound = static_cast<btCompoundShape*>(shape);
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for (int i = 0, n = compound->getNumChildShapes(); i < n; i++)
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if (btCollisionShape* child = compound->getChildShape(i))
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deleteShape(child);
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}
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delete shape;
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}
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}
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void DeleteCollisionShape::operator()(btCollisionShape* shape) const
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{
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deleteShape(shape);
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}
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BulletShape::BulletShape(const BulletShape& other, const osg::CopyOp& copyOp)
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: Object(other, copyOp)
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, mCollisionShape(duplicateCollisionShape(other.mCollisionShape.get()))
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, mAvoidCollisionShape(duplicateCollisionShape(other.mAvoidCollisionShape.get()))
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, mCollisionBox(other.mCollisionBox)
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, mAnimatedShapes(other.mAnimatedShapes)
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, mFileName(other.mFileName)
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, mFileHash(other.mFileHash)
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, mVisualCollisionType(other.mVisualCollisionType)
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{
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}
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void BulletShape::setLocalScaling(const btVector3& scale)
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{
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mCollisionShape->setLocalScaling(scale);
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if (mAvoidCollisionShape)
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mAvoidCollisionShape->setLocalScaling(scale);
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}
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osg::ref_ptr<BulletShapeInstance> makeInstance(osg::ref_ptr<const BulletShape> source)
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{
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return { new BulletShapeInstance(std::move(source)) };
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}
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BulletShapeInstance::BulletShapeInstance(osg::ref_ptr<const BulletShape> source)
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: BulletShape(*source)
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, mSource(std::move(source))
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{
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}
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}
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