#include "PrecompiledHeader.h" #include "Physics/PhysicsSystem.h" void dd::Systems::PhysicsSystem::RegisterComponents(ComponentFactory* cf) { cf->Register(); } void dd::Systems::PhysicsSystem::Initialize() { m_ContactListener = new ContactListener(this); m_Gravity = b2Vec2(0.f, -9.82f); m_PhysicsWorld = new b2World(m_Gravity); m_TimeStep = 1.0/60.0; m_VelocityIterations = 6; m_PositionIterations = 2; m_Accumulator = 0.0; m_PhysicsWorld->SetContactListener(m_ContactListener); InitializeWater(); EVENT_SUBSCRIBE_MEMBER(m_SetImpulse, &PhysicsSystem::SetImpulse); } void dd::Systems::PhysicsSystem::InitializeWater() { b2ParticleSystemDef m_ParticleSystemDef; m_ParticleSystemDef.radius = 0.13f; m_ParticleSystem = m_PhysicsWorld->CreateParticleSystem(&m_ParticleSystemDef); } bool dd::Systems::PhysicsSystem::SetImpulse(const Events::SetImpulse &event) { b2Body* body = m_EntitiesToBodies[event.Entity]; b2Vec2 impulse; impulse.x = event.Impulse.x; impulse.y = event.Impulse.y; b2Vec2 point; point.x = event.Point.x; point.y = event.Point.y; Impulse i; i.Body = body; i.Impulse = impulse; i.Point = point; m_Impulses.push_back(i); return true; } void dd::Systems::PhysicsSystem::Update(double dt) { m_Accumulator += dt; while(m_Accumulator >= m_TimeStep) { for (auto i : m_EntitiesToBodies) { EntityID entity = i.first; b2Body* body = i.second; auto transformComponent = m_World->GetComponent(entity); if (! transformComponent) { continue; LOG_ERROR("RigidBody with no TransformComponent"); } auto physicsComponent = m_World->GetComponent(entity); if (! physicsComponent) { continue; LOG_ERROR("RigidBody with no PhysicsComponent"); } if (body == nullptr) { LOG_ERROR("This body should not exist"); continue; } if (m_World->GetEntityParent(entity) == 0) { //TODO: Make this work with childs too b2Vec2 position; position.x = transformComponent->Position.x; position.y = transformComponent->Position.y; float angle = glm::eulerAngles(transformComponent->Orientation).z; body->SetTransform(position, angle); body->SetLinearVelocity(b2Vec2(transformComponent->Velocity.x, transformComponent->Velocity.y)); body->SetGravityScale(physicsComponent->GravityScale); b2Filter filter; filter.categoryBits = physicsComponent->Category; filter.maskBits = physicsComponent->Mask; body->GetFixtureList()->SetFilterData(filter); } } for (auto i : m_Impulses) { i.Body->ApplyLinearImpulse(i.Impulse, i.Point, true); } m_Impulses.clear(); m_PhysicsWorld->Step(m_TimeStep, m_VelocityIterations, m_PositionIterations); for (auto i : m_EntitiesToBodies) { EntityID entity = i.first; b2Body* body = i.second; if (body == nullptr) { LOG_ERROR("This body should not exist"); continue; } auto transformComponent = m_World->GetComponent(entity); if (! transformComponent) continue; auto parent = m_World->GetEntityParent(entity); if (parent == 0) { auto physicsComponent = m_World->GetComponent(entity); if (physicsComponent->Calculate) { //TODO: REPLACE THIS WITH PARTICLE COLLISION FILTERS transformComponent->Position.x = transformComponent->Position.x + (transformComponent->Velocity.x * m_TimeStep); transformComponent->Position.y = transformComponent->Position.y + (transformComponent->Velocity.y * m_TimeStep); } else { b2Vec2 position = body->GetPosition(); transformComponent->Position.x = position.x; transformComponent->Position.y = position.y; float angle = body->GetAngle(); transformComponent->Orientation = glm::quat(glm::vec3(0, 0, angle)); b2Vec2 velocity = body->GetLinearVelocity(); transformComponent->Velocity.x = velocity.x; transformComponent->Velocity.y = velocity.y; } } } b2Vec2* positionBuffer = m_ParticleSystem->GetPositionBuffer(); for (auto i : m_EntitiesToParticleHandle) { EntityID entity = i.first; b2ParticleHandle* particleH = i.second; b2Vec2 positionB2 = positionBuffer[particleH->GetIndex()]; glm::vec2 position = glm::vec2(positionB2.x, positionB2.y); EntityID entityParent = m_World->GetEntityParent(entity); auto transform = m_World->GetComponent(entity); auto transformParent = m_World->GetComponent(entityParent); transform->Position = glm::vec3(position.x, position.y, -10) - transformParent->Position; } m_Accumulator -= dt; } } void dd::Systems::PhysicsSystem::UpdateEntity(double dt, EntityID entity, EntityID parent) { } void dd::Systems::PhysicsSystem::OnEntityCommit(EntityID entity) { auto physicsComponent = m_World->GetComponent(entity); auto waterComponent = m_World->GetComponent(entity); if (physicsComponent && waterComponent) { LOG_ERROR("Entity has both water and physics component, this is illegal. The police has been alerted."); return; } if (physicsComponent) { CreateBody(entity); } else if (waterComponent) { CreateParticleGroup(entity); } } void dd::Systems::PhysicsSystem::OnEntityRemoved(EntityID entity) { auto physics = m_World->GetComponent(entity); if (physics == nullptr) { return; } b2Body* body = m_EntitiesToBodies[entity]; if (body != nullptr) { m_EntitiesToBodies.erase(entity); m_BodiesToEntities.erase(body); m_PhysicsWorld->DestroyBody(body); } } void dd::Systems::PhysicsSystem::CreateBody(EntityID entity) { auto physicsComponent = m_World->GetComponent(entity); if(!physicsComponent){ LOG_ERROR("No PhysicsComponent in CreateBody"); return; } auto transformComponent = m_World->GetComponent(entity); if(!transformComponent) { LOG_ERROR("No TransformComponent in CreateBody"); return; } auto absoluteTransform = m_World->GetSystem()->AbsoluteTransform(entity); b2BodyDef bodyDef; bodyDef.position.Set(absoluteTransform.Position.x, absoluteTransform.Position.y); bodyDef.angle = -glm::eulerAngles(absoluteTransform.Orientation).z; if (physicsComponent->Static) { bodyDef.type = b2_staticBody; } else { bodyDef.type = b2_dynamicBody; } b2Body* body = m_PhysicsWorld->CreateBody(&bodyDef); b2Shape* pShape; auto boxComponent = m_World->GetComponent(entity); if (boxComponent) { b2PolygonShape* bShape = new b2PolygonShape(); bShape->SetAsBox(absoluteTransform.Scale.x/2, absoluteTransform.Scale.y/2); pShape = bShape; } else { auto circleComponent = m_World->GetComponent(entity); if (circleComponent) { pShape = new b2CircleShape(); pShape->m_radius = absoluteTransform.Scale.x; if (absoluteTransform.Scale.x != absoluteTransform.Scale.y && absoluteTransform.Scale.y != absoluteTransform.Scale.z) { LOG_WARNING("Circles has to be of uniform scale."); } pShape->m_radius = absoluteTransform.Scale.x/2; } } b2FixtureDef fixtureDef; fixtureDef.shape = pShape; fixtureDef.filter.categoryBits = physicsComponent->Category; fixtureDef.filter.maskBits = physicsComponent->Mask; if(physicsComponent->Static) { body->CreateFixture(&fixtureDef); //Density kanske ska vara 0 p� statiska kroppar } else { fixtureDef.shape = pShape; fixtureDef.density = 10.f; fixtureDef.restitution = 1.0f; fixtureDef.friction = 0.0f; body->CreateFixture(&fixtureDef); } delete pShape; body->SetGravityScale(physicsComponent->GravityScale); m_EntitiesToBodies.insert(std::make_pair(entity, body)); m_BodiesToEntities.insert(std::make_pair(body, entity)); } void dd::Systems::PhysicsSystem::CreateParticleGroup(EntityID e) { //TODO: L�gg alla pd i en lista auto transform = m_World->GetComponent(e); if (!transform) { LOG_ERROR("No Transform component in CreateParticleGroup"); return; } b2ParticleGroupDef pd; b2PolygonShape shape; shape.SetAsBox(transform->Scale.x/2.f, transform->Scale.y/2.f); pd.shape = &shape; pd.flags = b2_tensileParticle; pd.position.Set(transform->Position.x, transform->Position.y); //TODO: PUT IN LIST t_watergroup = m_ParticleSystem->CreateParticleGroup(pd); b2Vec2* t_ParticlePositions = m_ParticleSystem->GetPositionBuffer(); for(int i = 0; i < m_ParticleSystem->GetParticleCount(); i++){ { auto t_waterparticle = m_World->CreateEntity(e); auto transformChild = m_World->AddComponent(t_waterparticle); //auto sprite = m_World->AddComponent(t_waterparticle); transformChild->Position = glm::vec3(t_ParticlePositions[i].x - transform->Position.x, t_ParticlePositions[i].y - transform->Position.y, -9.5f); transformChild->Scale = glm::vec3(m_ParticleSystem->GetRadius())/transform->Scale; //sprite->SpriteFile = "Textures/Ball.png"; m_World->CommitEntity(t_waterparticle); m_EntitiesToParticleHandle.insert(std::make_pair(t_waterparticle, m_ParticleSystem->GetParticleHandleFromIndex(i))); m_ParticleHandleToEntities.insert(std::make_pair( m_ParticleSystem->GetParticleHandleFromIndex(i), t_waterparticle)); } } LOG_INFO("ParticleCount: %i", m_ParticleSystem->GetParticleCount()); } dd::Systems::PhysicsSystem::~PhysicsSystem() { if (m_ContactListener != nullptr) { delete m_ContactListener; m_ContactListener = nullptr; } }