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squidout/include/Core/Engine.h
T

648 lines
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Executable File

/*
This file is part of Daydream Engine.
Copyright 2014 Adam Byléhn, Tobias Dahl, Simon Holmberg, Viktor Ljung
Daydream Engine is free software: you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Daydream Engine is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with Daydream Engine. If not, see <http://www.gnu.org/licenses/>.
*/
#include <string>
#include <sstream>
#include <Sound/CCollisionSound.h>
#include "ResourceManager.h"
#include "OBJ.h"
#include "Model.h"
#include "Texture.h"
#include "EventBroker.h"
#include "RenderQueue.h"
#include "Renderer.h"
#include "InputManager.h"
//TODO: Remove includes that are only here for the temporary draw solution.
#include "World.h"
#include "CTransform.h"
#include "CTemplate.h"
#include "Core/EventBroker.h"
#include "Rendering/CModel.h"
#include "Rendering/CSprite.h"
#include "Rendering/CPointLight.h"
#include "Transform/TransformSystem.h"
#include "Sound/SoundSystem.h"
#include "Sound/CCollisionSound.h"
#include "Game/LevelSystem.h"
#include "Game/PadSystem.h"
#include "Game/CBall.h"
#include "Game/CPad.h"
#include "Game/CLifebuoy.h"
#include "Game/CProjectile.h"
#include "Game/CBrick.h"
#include "Game/CStickyAim.h"
#include "Game/BallSystem.h"
#include "Game/HitLagSystem.h"
#include "Game/TravellingSystem.h"
#include "Game/LifebuoySystem.h"
#include "Game/ProjectileSystem.h"
#include "Game/Bricks/CPowerUpBrick.h"
#include "Game/BrickComponents.h"
#include "Game/EScreenShake.h"
#include "Physics/PhysicsSystem.h"
#include "Physics/CPhysics.h"
#include "Physics/CRectangleShape.h"
#include "Physics/ESetImpulse.h"
#include "Physics/CWaterVolume.h"
#include "Physics/CParticle.h"
#include "Physics/CParticleEmitter.h"
#include "Game/EGameStart.h"
#include "Sound/EPlaySound.h"
#include "GUI/Frame.h"
#include "GUI/Button.h"
#include "Game/GUI/MainMenu.h"
#include "Game/GUI/HUD.h"
namespace dd
{
class Engine
{
public:
Engine(int argc, char* argv[]) {
m_EventBroker = std::make_shared<EventBroker>();
m_Renderer = std::make_shared<Renderer>();
m_Renderer->SetFullscreen(false);
//m_Renderer->SetResolution(Rectangle(0, 0, 1920, 1080));
m_Renderer->SetResolution(Rectangle(0, 0, 675, 1080));
m_Renderer->Initialize();
m_FrameStack = new GUI::Frame(m_EventBroker.get());
m_FrameStack->Width = 675;
m_FrameStack->Height = 1080;
auto menu = new GUI::MainMenu(m_FrameStack, "MainMenu");
m_InputManager = std::make_shared<InputManager>(m_Renderer->Window(), m_EventBroker);
m_World = std::make_shared<World>(m_EventBroker);
//TODO: Move this out of engine.h
m_World->ComponentFactory.Register<Components::Transform>();
m_World->SystemFactory.Register<Systems::TransformSystem>(
[this]() { return new Systems::TransformSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::TransformSystem>();
m_World->ComponentFactory.Register<Components::Model>();
m_World->ComponentFactory.Register<Components::Template>();
m_World->ComponentFactory.Register<Components::CollisionSound>();
m_World->SystemFactory.Register<Systems::SoundSystem>(
[this]() { return new Systems::SoundSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::SoundSystem>();
m_World->ComponentFactory.Register<Components::Sprite>();
m_World->ComponentFactory.Register<Components::RectangleShape>();
m_World->ComponentFactory.Register<Components::Physics>();
m_World->ComponentFactory.Register<Components::Ball>();
m_World->ComponentFactory.Register<Components::Brick>();
m_World->ComponentFactory.Register<Components::Pad>();
m_World->ComponentFactory.Register<Components::Life>();
m_World->ComponentFactory.Register<Components::Lifebuoy>();
m_World->ComponentFactory.Register<Components::Projectile>();
m_World->ComponentFactory.Register<Components::StickyAim>();
m_World->ComponentFactory.Register<Components::PowerUp>();
m_World->ComponentFactory.Register<Components::PowerUpBrick>();
m_World->ComponentFactory.Register<Components::StandardBrick>();
m_World->ComponentFactory.Register<Components::MultiBallBrick>();
m_World->ComponentFactory.Register<Components::LifebuoyBrick>();
m_World->ComponentFactory.Register<Components::StickyBrick>();
m_World->ComponentFactory.Register<Components::InkBlasterBrick>();
m_World->ComponentFactory.Register<Components::KrakenAttackBrick>();
m_World->SystemFactory.Register<Systems::LevelSystem>(
[this]() { return new Systems::LevelSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::LevelSystem>();
m_World->SystemFactory.Register<Systems::PadSystem>(
[this]() { return new Systems::PadSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::PadSystem>();
m_World->SystemFactory.Register<Systems::BallSystem>(
[this]() { return new Systems::BallSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::BallSystem>();
m_World->SystemFactory.Register<Systems::HitLagSystem>(
[this]() { return new Systems::HitLagSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::HitLagSystem>();
m_World->SystemFactory.Register<Systems::LifebuoySystem>(
[this]() { return new Systems::LifebuoySystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::LifebuoySystem>();
m_World->SystemFactory.Register<Systems::ProjectileSystem>(
[this]() { return new Systems::ProjectileSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::ProjectileSystem>();
m_World->SystemFactory.Register<Systems::PhysicsSystem>(
[this]() { return new Systems::PhysicsSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::PhysicsSystem>();
m_World->SystemFactory.Register<Systems::TravellingSystem>(
[this]() { return new Systems::TravellingSystem(m_World.get(), m_EventBroker); });
m_World->AddSystem<Systems::TravellingSystem>();
m_World->ComponentFactory.Register<Components::Model>();
m_World->ComponentFactory.Register<Components::Template>();
m_World->ComponentFactory.Register<Components::PointLight>();
m_World->ComponentFactory.Register<Components::WaterVolume>();
m_World->ComponentFactory.Register<Components::Particle>();
m_World->ComponentFactory.Register<Components::ParticleEmitter>();
m_World->Initialize();
//PointLightTest
{
auto t_Light = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(t_Light);
transform->Position = glm::vec3(-3.f, 6.f, -5.f);
transform->Sticky = true;
auto pl = m_World->AddComponent<Components::PointLight>(t_Light);
pl->Radius = 20.f;
pl->Diffuse = glm::vec3(0.8f, 0.7f, 0.05f);
auto model = m_World->AddComponent<Components::Model>(t_Light);
model->ModelFile = "Models/Core/UnitSphere.obj";
m_World->CommitEntity(t_Light);
}
{
auto t_Light = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(t_Light);
transform->Position = glm::vec3(3.f, -5.f, -5.f);
transform->Sticky = true;
auto pl = m_World->AddComponent<Components::PointLight>(t_Light);
pl->Radius = 15.f;
pl->Diffuse = glm::vec3(0.1f, 0.5f, 0.8f);
auto model = m_World->AddComponent<Components::Model>(t_Light);
model->ModelFile = "Models/Core/UnitSphere.obj";
m_World->CommitEntity(t_Light);
}
//Halfpipe background test model.
{
auto t_halfPipe = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(t_halfPipe);
transform->Position = glm::vec3(0.f, 0.f, -15.f);
transform->Scale = glm::vec3(6.f, 6.f, 10.f);
transform->Sticky = false;
auto model = m_World->AddComponent<Components::Model>(t_halfPipe);
model->ModelFile = "Models/Test/halfpipe/Halfpipe.obj";
model->Color = glm::vec4(0.8f, 0.8f, 0.8f, 0.3f);
m_World->CommitEntity(t_halfPipe);
}
{
auto t_halfPipe = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(t_halfPipe);
transform->Position = glm::vec3(0.f, 34.6f, -15.f);
transform->Scale = glm::vec3(6.f, 6.f, 10.f);
transform->Sticky = false;
auto model = m_World->AddComponent<Components::Model>(t_halfPipe);
model->ModelFile = "Models/Test/halfpipe/Halfpipe.obj";
model->Color = glm::vec4(0.8f, 0.8f, 0.8f, 0.3f);
m_World->CommitEntity(t_halfPipe);
}
//Background
{
auto background = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(background);
transform->Position = glm::vec3(0.f, 0.f, -30.f);
transform->Scale = glm::vec3(2681.f / 50.f, 1080.f / 50.f, 1.f);
auto sprite = m_World->AddComponent<Components::Sprite>(background);
sprite->SpriteFile = "Textures/Background.png";
m_World->CommitEntity(background);
}
// auto particleEmitter= m_World->AddComponent<Components::Emitter>(Pe);
//Water test
{
auto t_waterBody = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(t_waterBody);
transform->Position = glm::vec3(0.f, -3.5f, -10.f);
transform->Scale = glm::vec3(7.0f, 1.5f, 1.f);
transform->Sticky = true;
auto water = m_World->AddComponent<Components::WaterVolume>(t_waterBody);
auto body = m_World->AddComponent<Components::RectangleShape>(t_waterBody);
m_World->CommitEntity(t_waterBody);
}
//ParticleTest
/*{
auto Pe = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(Pe);
auto particleEmitter= m_World->AddComponent<Components::ParticleEmitter>(Pe);
auto emitteSprite = m_World->AddComponent<Components::Sprite>(Pe);
transform->Position = glm::vec3(0.f, 0.f, -10.f);
emitteSprite->SpriteFile = "Textures/Test/Brick_Normal.png";
particleEmitter->GravityScale = 0.0f;
particleEmitter->SpawnRate = 1.f;
particleEmitter->NumberOfTicks = 2;
particleEmitter->Speed = 1.f;
particleEmitter->ParticlesPerTick = 5;
particleEmitter->Spread = glm::pi<float>()*2;
particleEmitter->EmittingAngle = glm::pi<float>();
particleEmitter->LifeTime = 50;
{
auto Pt = m_World->CreateEntity(Pe);
auto PtTransform = m_World->AddComponent<Components::Transform>(Pt);
auto PtSprite = m_World->AddComponent<Components::Sprite>(Pt);
auto PtParticle = m_World->AddComponent<Components::Particle>(Pt);
auto PtTemplate = m_World->AddComponent<Components::Template>(Pt);
//PtTransform->Velocity = glm::vec3(1.0f, 0.f, 0.f);
PtTransform->Position = transform->Position;
PtSprite->SpriteFile = "Textures/Background.png";
PtParticle->LifeTime = 3.f;
PtParticle->Flags = static_cast<ParticleFlags::Type>(ParticleFlags::Type::Powder | ParticleFlags::Type::ParticleContactFilter | ParticleFlags::Type::FixtureContactFilter);
}
m_World->CommitEntity(Pe);
}*/
//TODO: Why does the ball not collide with these bricks?
//BottomBox
{
auto BottomWall = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(BottomWall);
transform->Position = glm::vec3(0.f, -6.f, -10.f);
transform->Scale = glm::vec3(20.f, 0.5f, 1.f);
std::shared_ptr<Components::Sprite> sprite = m_World->AddComponent<Components::Sprite>(BottomWall);
sprite->SpriteFile = "Textures/Core/ErrorTexture.png";
std::shared_ptr<Components::RectangleShape> rectangleShape = m_World->AddComponent<Components::RectangleShape>(BottomWall);
rectangleShape->Dimensions = glm::vec2(20.f, 0.5f);
std::shared_ptr<Components::Physics> physics = m_World->AddComponent<Components::Physics>(BottomWall);
physics->CollisionType = CollisionType::Type::Static;
physics->Category = CollisionLayer::Wall;
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::LifeBuoy);
transform->Sticky = true;
m_World->CommitEntity(BottomWall);
}
{
auto topWall = m_World->CreateEntity();
std::shared_ptr<Components::Transform> transform = m_World->AddComponent<Components::Transform>(topWall);
transform->Position = glm::vec3(0.f, 6.f, -10.f);
transform->Scale = glm::vec3(20.f, 0.5f, 1.f);
std::shared_ptr<Components::Sprite> sprite = m_World->AddComponent<Components::Sprite>(topWall);
sprite->SpriteFile = "Textures/Core/ErrorTexture.png";
std::shared_ptr<Components::RectangleShape> rectangleShape = m_World->AddComponent<Components::RectangleShape>(topWall);
rectangleShape->Dimensions = glm::vec2(20.f, 0.5f);
std::shared_ptr<Components::Physics> physics = m_World->AddComponent<Components::Physics>(topWall);
physics->CollisionType = CollisionType::Type::Static;
physics->Category = CollisionLayer::Wall;
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Ball | CollisionLayer::Brick);
transform->Sticky = true;
m_World->CommitEntity(topWall);
}
{
auto leftWall = m_World->CreateEntity();
std::shared_ptr<Components::Transform> transform = m_World->AddComponent<Components::Transform>(
leftWall);
transform->Position = glm::vec3(-4.f, 1.f, -10.f);
transform->Scale = glm::vec3(0.5f, 20.f, 1.f);
std::shared_ptr<Components::Sprite> sprite = m_World->AddComponent<Components::Sprite>(leftWall);
sprite->SpriteFile = "Textures/Core/ErrorTexture.png";
std::shared_ptr<Components::RectangleShape> rectangleShape = m_World->AddComponent<Components::RectangleShape>(leftWall);
rectangleShape->Dimensions = glm::vec2(0.5f, 20.f);
std::shared_ptr<Components::Physics> physics = m_World->AddComponent<Components::Physics>(leftWall);
physics->CollisionType = CollisionType::Type::Static;
physics->Category = CollisionLayer::Wall;
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Ball | CollisionLayer::Brick);
transform->Sticky = true;
m_World->CommitEntity(leftWall);
}
{
auto rightWall = m_World->CreateEntity();
std::shared_ptr<Components::Transform> transform = m_World->AddComponent<Components::Transform>(
rightWall);
transform->Position = glm::vec3(4.f, 1.f, -10.f);
transform->Scale = glm::vec3(0.5f, 20.f, 1.f);
std::shared_ptr<Components::Sprite> sprite = m_World->AddComponent<Components::Sprite>(rightWall);
sprite->SpriteFile = "Textures/Core/ErrorTexture.png";
std::shared_ptr<Components::RectangleShape> rectangleShape = m_World->AddComponent<Components::RectangleShape>(rightWall);
rectangleShape->Dimensions = glm::vec2(0.5f, 20.f);
std::shared_ptr<Components::Physics> physics = m_World->AddComponent<Components::Physics>(rightWall);
physics->CollisionType = CollisionType::Type::Static;
physics->Category = CollisionLayer::Wall;
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Ball | CollisionLayer::Brick);
transform->Sticky = true;
m_World->CommitEntity(rightWall);
}
//EVENT_SUBSCRIBE_MEMBER(m_EGameStart, &Engine::OnGameStart);
m_EGameStart = decltype(m_EGameStart)(std::bind(&Engine::OnGameStart, this, std::placeholders::_1));
m_EventBroker->Subscribe(m_EGameStart);
m_EScreenShake = decltype(m_EScreenShake)(std::bind(&Engine::OnScreenShake, this, std::placeholders::_1));
m_EventBroker->Subscribe(m_EScreenShake);
m_LastTime = glfwGetTime();
}
bool Running() const { return !glfwWindowShouldClose(m_Renderer->Window()); }
void Tick()
{
double currentTime = glfwGetTime();
double dt = currentTime - m_LastTime;
m_LastTime = currentTime;
// Update input
m_InputManager->Update(dt);
// Swap event queues to get fresh input data in the read queue
//m_EventBroker->Swap();
//ResourceManager::Update();
if (m_GameIsRunning) {
m_World->Update(dt);
// I apologize about this.
ScreenShakeUpdate(dt);
}
m_EventBroker->Process<GUI::Frame>();
m_FrameStack->UpdateLayered(dt);
m_RendererQueue.Clear();
m_FrameStack->DrawLayered(m_RendererQueue);
//TODO Fill up the renderQueue with models (Temp fix)
if (m_GameIsRunning) {
TEMPAddToRenderQueue();
}
std::unique_ptr<dd::Camera> defaultCamera = nullptr;
// Render scene
//TODO send renderqueue to draw.
m_Renderer->Draw(m_RendererQueue);
m_EventBroker->Process<Engine>();
// Swap event queues
m_EventBroker->Swap();
glfwPollEvents();
}
std::shared_ptr<Systems::TransformSystem> m_TransformSystem;
std::shared_ptr<Systems::LevelSystem> m_LevelSystem;
//TODO: Get this out of engine.h
void TEMPAddToRenderQueue()
{
if (!m_TransformSystem)
m_TransformSystem = m_World->GetSystem<Systems::TransformSystem>();
for (auto &pair : *m_World->GetEntities())
{
EntityID entity = pair.first;
auto templateComponent = m_World->GetComponent<Components::Template>(entity);
if (templateComponent)
continue;
auto transform = m_World->GetComponent<Components::Transform>(entity);
if (!transform)
continue;
auto modelComponent = m_World->GetComponent<Components::Model>(entity);
if (modelComponent)
{
Model* modelAsset = nullptr;
modelAsset = ResourceManager::Load<Model>(modelComponent->ModelFile);
if (modelAsset)
{
Components::Transform absoluteTransform = m_TransformSystem->AbsoluteTransform(entity);
glm::mat4 modelMatrix = glm::translate(glm::mat4(), absoluteTransform.Position)
* glm::toMat4(absoluteTransform.Orientation)
* glm::scale(absoluteTransform.Scale);
EnqueueModel(modelAsset, modelMatrix, modelComponent->Transparent, modelComponent->Color, modelComponent->ModelFile);
}
}
auto pointLightComponent = m_World->GetComponent<Components::PointLight>(entity);
if (pointLightComponent)
{
Components::Transform absoluteTransform = m_TransformSystem->AbsoluteTransform(entity);
EnqueuePointLight(absoluteTransform.Position,
pointLightComponent->Diffuse,
pointLightComponent->Specular,
pointLightComponent->Radius);
}
auto parent = m_World->GetEntityParent(entity);
if(parent != 0) {
auto waterParticleComponent = m_World->GetComponent<Components::WaterVolume>(parent);
if (waterParticleComponent) {
//TODO: Remove hardcoded color.
//TODO: Do i even need modelMatrix?
Components::Transform absoluteTransform = m_TransformSystem->AbsoluteTransform(entity);
glm::mat4 modelMatrix = glm::translate(absoluteTransform.Position)
* glm::scale(absoluteTransform.Scale);
EnqueueWaterParticles(absoluteTransform.Position, glm::vec4(1.f, 1.f, 1.f, 1.f), modelMatrix, absoluteTransform.Position.z);
}
}
auto spriteComponent = m_World->GetComponent<Components::Sprite>(entity);
if (spriteComponent)
{
std::string normal = spriteComponent->NormalTexture;
std::string spec = spriteComponent->SpecularTexture;
if (normal.empty()) {
normal = "Textures/Core/NeutralNormalMap.png";
}
if (spec.empty()) {
spec = "Textures/Core/NeutralSpecularMap.png";
}
auto texturediff = ResourceManager::Load<Texture>(spriteComponent->SpriteFile);
auto texturenorm = ResourceManager::Load<Texture>(normal);
auto texturespec = ResourceManager::Load<Texture>(spec);
Components::Transform absoluteTransform = m_TransformSystem->AbsoluteTransform(entity);
glm::quat orientation2D = glm::angleAxis(glm::eulerAngles(absoluteTransform.Orientation).z, glm::vec3(0, 0, -1));
glm::mat4 modelMatrix = glm::translate(absoluteTransform.Position)
* glm::toMat4(orientation2D)
* glm::scale(absoluteTransform.Scale);
EnqueueSprite(texturediff, texturenorm, texturespec, modelMatrix, spriteComponent->Color, absoluteTransform.Position.z);
}
}
}
//TODO: Get this out of engine.h
void EnqueueModel(Model* model, glm::mat4 modelMatrix, float transparent, glm::vec4 color, std::string fileName)
{
for (auto texGroup : model->TextureGroups)
{
ModelJob job;
job.TextureID = (texGroup.Texture) ? texGroup.Texture->ResourceID : 0;
job.DiffuseTexture = (texGroup.Texture) ? *texGroup.Texture : 0;
job.NormalTexture = (texGroup.NormalMap) ? *texGroup.NormalMap : 0;
job.SpecularTexture = (texGroup.SpecularMap) ? *texGroup.SpecularMap : 0;
job.VAO = model->VAO;
job.ElementBuffer = model->ElementBuffer;
job.StartIndex = texGroup.StartIndex;
job.EndIndex = texGroup.EndIndex;
job.ModelMatrix = modelMatrix;
job.Color = color;
m_RendererQueue.Deferred.Add(job);
}
}
// TODO: Get this out of engine.h
void EnqueueSprite(Texture* texture, Texture* normalTexture, Texture* specularTexture, glm::mat4 modelMatrix, glm::vec4 color, float depth)
{
SpriteJob job;
job.TextureID = texture->ResourceID;
job.DiffuseTexture = *texture;
job.NormalTexture = *normalTexture;
job.SpecularTexture = *specularTexture;
job.ModelMatrix = modelMatrix;
job.Color = color;
job.Depth = depth;
m_RendererQueue.Forward.Add(job);
}
void EnqueuePointLight(glm::vec3 position, glm::vec3 diffuseColor, glm::vec3 specularColor, float radius)
{
PointLightJob job;
job.Position = position;
job.DiffuseColor = diffuseColor;
job.SpecularColor = specularColor;
job.Radius = radius;
m_RendererQueue.Lights.Add(job);
}
void EnqueueWaterParticles(glm::vec3 position, glm::vec4 color, glm::mat4 modelMatrix, float depth)
{
WaterParticleJob job;
job.Position = position;
job.Color = color;
job.ModelMatrix = modelMatrix;
job.Depth = depth;
m_RendererQueue.Forward.Add(job);
}
void ScreenShakeUpdate(double dt)
{
if (m_ScreenShake) {
m_ShakeTimer += dt;
if (m_ShakeTimer >= m_ShakeEndTime) {
m_ShakeRepresentativeIntensity -= m_ShakeRepresentativeIntensity * 0.1 * dt;
m_ShakeIntensity = m_ShakeRepresentativeIntensity;
if (m_ShakeRepresentativeIntensity < 0.1) {
m_ScreenShake = false;
m_Renderer->PlaceCamera(glm::vec3(0, 0, 0));
return;
}
} else {
std::cout << "Timer: " << m_ShakeTimer << " End: " << m_ShakeEndTime << std::endl;
}
//float randomX = (rand() % m_ShakeIntensity);
//float randomY = (rand() % m_ShakeIntensity);
float randomX = 0;
float randomY = 0;
std::cout << "X: " << randomX << " Y: " << randomY << std::endl;
float half = m_ShakeIntensity / 2;
//m_Renderer->PlaceCamera(glm::vec3(randomX - half, randomY - half, 0));
} else {
}
}
private:
std::shared_ptr<EventBroker> m_EventBroker;
GUI::Frame* m_FrameStack = nullptr;
std::shared_ptr<Renderer> m_Renderer;
RenderQueueCollection m_RendererQueue;
std::shared_ptr<InputManager> m_InputManager;
std::shared_ptr<World> m_World;
glm::vec3 m_CameraPosition = glm::vec3(0.f, 0.f, 0.f);
//TODO: Redo
bool m_GameIsRunning = false;
dd::EventRelay<Engine, dd::Events::GameStart> m_EGameStart;
bool OnGameStart(const dd::Events::GameStart &event)
{
m_GameIsRunning = true;
//Todo: Move this
{
dd::Events::PlaySound e;
e.FilePath = "Sounds/BGM/under-the-sea-instrumental.wav";
e.IsAmbient = true;
m_EventBroker->Publish(e);
}
{
dd::Events::PlaySound e;
e.FilePath = "Sounds/BGM/water-flowing.wav";
e.Gain = 0.3f;
e.IsAmbient = true;
m_EventBroker->Publish(e);
}
return true;
};
//TODO: Extreme Redo.
bool m_ScreenShake = false;
int m_ShakeIntensity = 0;
float m_ShakeRepresentativeIntensity = 0;
float m_ShakeTimer = 0;
float m_ShakeEndTime = 0;
dd::EventRelay<Engine, dd::Events::ScreenShake> m_EScreenShake;
bool OnScreenShake(const dd::Events::ScreenShake &event)
{
m_ScreenShake = true;
m_ShakeIntensity = event.Intensity;
m_ShakeEndTime = event.Time;
m_ShakeTimer = 0;
return true;
}
double m_LastTime;
};
}