GL - Hax to get the world model initiated. reading spawnpoints
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26fb7a5664
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@ -189,11 +189,45 @@ bool GameState::LoadModels(std::string mapFile)
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break;
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case GameLogic::ObjectType::ObjectType_Static:
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{
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GameLogic::ObjectHeader* staticObjData = ((GameLogic::ObjectHeader*)obj);
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if((ObjectSpecialType)staticObjData->specialTypeID == ObjectSpecialType_Sky)
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{
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int i = 0;
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modelData.modelPath.assign(staticObjData->ModelFile.begin(), staticObjData->ModelFile.end());
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modelData.visible = true;
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modelData.position = Oyster::Math::Float3(0,0,0);
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modelData.rotation = Oyster::Math::Quaternion::identity;
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modelData.scale = Oyster::Math::Float3(600, 600, 600);
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modelData.id = modelId++;
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this->staticObjects.Push(new C_StaticObj());
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if(!this->staticObjects[this->staticObjects.Size() -1 ]->Init(modelData))
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{
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// the model don't exist
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this->staticObjects.Remove(this->staticObjects.Size() -1 );
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modelId--;
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}
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}
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if((ObjectSpecialType)staticObjData->specialTypeID == ObjectSpecialType_World)
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{
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modelData.modelPath.assign(staticObjData->ModelFile.begin(), staticObjData->ModelFile.end());
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modelData.visible = true;
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modelData.position = Oyster::Math::Float3(0,0,0);
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modelData.rotation = Oyster::Math::Quaternion::identity;
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modelData.scale = Oyster::Math::Float3(300,300,300);
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modelData.id = modelId++;
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this->staticObjects.Push(new C_StaticObj());
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if(!this->staticObjects[this->staticObjects.Size() -1 ]->Init(modelData))
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{
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// the model don't exist
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this->staticObjects.Remove(this->staticObjects.Size() -1 );
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modelId--;
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}
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}
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else
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{
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modelData.modelPath.assign(staticObjData->ModelFile.begin(), staticObjData->ModelFile.end());
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modelData.visible = true;
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modelData.position = staticObjData->position;
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@ -209,6 +243,7 @@ bool GameState::LoadModels(std::string mapFile)
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modelId--;
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}
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}
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}
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break;
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case GameLogic::ObjectType::ObjectType_Dynamic:
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{
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@ -43,6 +43,7 @@ Object* Level::createGameObj(ObjectHeader* obj, ICustomBody* rigidBody)
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float worldSize = ((WorldAttributes*)obj)->worldSize;
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float atmosphereSize = ((WorldAttributes*)obj)->atmoSphereSize;
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gameObj = new StaticObject(rigidBody, Object::DefaultCollisionAfter, (ObjectSpecialType)obj->specialTypeID, objID++);
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}
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break;
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@ -224,9 +225,39 @@ void Level::InitiateLevel(std::string levelPath)
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staticObjData->ModelFile;
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ICustomBody* rigidBody_Static = NULL;
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if((ObjectSpecialType)staticObjData->specialTypeID == ObjectSpecialType_Sky)
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{
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}
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if((ObjectSpecialType)staticObjData->specialTypeID == ObjectSpecialType_World)
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{
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Oyster::Math::Float3 rigidWorldPos;
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Oyster::Math::Float4 rigidWorldRotation;
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float rigidBodyMass;
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float rigidBodyRadius;
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//offset the rigidPosition from modelspace to worldspace;
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rigidWorldPos = Oyster::Math::Float3(0,0,0);
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//scales the position so the collision geomentry is in the right place
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//offset the rigidRotation from modelspace to worldspace;
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rigidWorldRotation = Oyster::Math::Float4(0,0,0,1);
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//mass scaled
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rigidBodyMass = 100;
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//Radius scaled
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rigidBodyRadius = 150;
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//create the rigid body
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rigidBody_Static = API::Instance().AddCollisionSphere( rigidBodyRadius , rigidWorldRotation , rigidWorldPos , rigidBodyMass, 1,1,1);
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}
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// collision shape
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if(staticObjData->boundingVolume.geoType == CollisionGeometryType_Sphere)
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else if(staticObjData->boundingVolume.geoType == CollisionGeometryType_Sphere)
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{
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rigidBody_Static = InitRigidBodySphere(staticObjData);
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}
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@ -289,6 +320,14 @@ void Level::InitiateLevel(std::string levelPath)
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case ObjectType::ObjectType_Light:
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// read on client
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break;
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case ObjectType::ObjectType_SpawnPoint:
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{
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Oyster::Math::Float3 pos;
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pos.x = ((SpawnPointAttributes*)obj)->position[0];
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pos.y = ((SpawnPointAttributes*)obj)->position[1];
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pos.z = ((SpawnPointAttributes*)obj)->position[2];
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spawnPoints.Push(pos);
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}
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default:
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break;
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}
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