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squidout/src/game/Game/LevelSystem.cpp.orig
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//
// Created by Adniklastrator on 2015-09-09.
//
#include "PrecompiledHeader.h"
#include "Game/LevelSystem.h"
void dd::Systems::LevelSystem::Initialize()
{
std::random_device rd;
m_RandomGenerator = std::mt19937(rd());
EVENT_SUBSCRIBE_MEMBER(m_EContact, &LevelSystem::OnContact);
EVENT_SUBSCRIBE_MEMBER(m_EScoreEvent, &LevelSystem::OnScoreEvent);
EVENT_SUBSCRIBE_MEMBER(m_EMultiBall, &LevelSystem::OnMultiBall);
EVENT_SUBSCRIBE_MEMBER(m_ECreatePowerUp, &LevelSystem::OnCreatePowerUp);
EVENT_SUBSCRIBE_MEMBER(m_EMultiBallLost, &LevelSystem::OnMultiBallLost);
EVENT_SUBSCRIBE_MEMBER(m_EPowerUpTaken, &LevelSystem::OnPowerUpTaken);
EVENT_SUBSCRIBE_MEMBER(m_EStageCleared, &LevelSystem::OnStageCleared);
EVENT_SUBSCRIBE_MEMBER(m_EArrivedAtNewStage, &LevelSystem::OnArrivedAtNewStage);
EVENT_SUBSCRIBE_MEMBER(m_EPause, &LevelSystem::OnPause);
EVENT_SUBSCRIBE_MEMBER(m_EResume, &LevelSystem::OnResume);
EVENT_SUBSCRIBE_MEMBER(m_EHitPad, &LevelSystem::OnHitPad);
EVENT_SUBSCRIBE_MEMBER(m_EBrickGenerating, &LevelSystem::OnBrickGenerating);
EVENT_SUBSCRIBE_MEMBER(m_EKrakenDefeated, &LevelSystem::OnKrakenDefeated);
m_GodMode = ResourceManager::Load<ConfigFile>("Config.ini")->GetValue("Cheat.GodMode", false);
//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);
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);
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);
auto background = m_World->AddComponent<Components::Background>(t_halfPipe);
transform->Position = glm::vec3(0.f, 0.f, -15.f);
transform->Scale = glm::vec3(6.f, 6.f, 10.f);
auto travels = m_World->AddComponent<Components::Travels>(t_halfPipe);
travels->CurrentlyTraveling = 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_halfPipe2 = m_World->CloneEntity(t_halfPipe);
auto transform2 = m_World->GetComponent<Components::Transform>(t_halfPipe);
transform2->Position = glm::vec3(0.f, 34.6f, -15.f); //Halfpipe Value
}
//Background
/*{
auto background = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(background);
auto travels = m_World->AddComponent<Components::Travels>(background);
travels->CurrentlyTraveling = false;
auto backgroundComponent = m_World->AddComponent<Components::Background>(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);
//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
{
EntityID BottomWall = m_World->CreateEntity();
auto transform = m_World->AddComponent<Components::Transform>(BottomWall);
auto wall = m_World->AddComponent<Components::Wall>(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;
if (m_GodMode) {
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::LifeBuoy | CollisionLayer::Ball);
} else {
physics->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::LifeBuoy);
}
m_World->CommitEntity(BottomWall);
m_World->SetProperty(BottomWall, "Name", "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);
auto wall = m_World->AddComponent<Components::Wall>(topWall);
//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);
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);
auto wall = m_World->AddComponent<Components::Wall>(leftWall);
//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);
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);
auto wall = m_World->AddComponent<Components::Wall>(rightWall);
//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);
m_World->CommitEntity(rightWall);
}
m_BrickTemplate = m_World->CreateEntity();
std::shared_ptr<Components::Transform> transform = m_World->AddComponent<Components::Transform>(m_BrickTemplate);
auto model = m_World->AddComponent<Components::Model>(m_BrickTemplate);
std::shared_ptr<Components::Brick> cBrick = m_World->AddComponent<Components::Brick>(m_BrickTemplate);
std::shared_ptr<Components::RectangleShape> cRec = m_World->AddComponent<Components::RectangleShape>(m_BrickTemplate);
cRec->Dimensions = glm::vec2(0.9f, 0.35f);
std::shared_ptr<Components::Physics> cPhys = m_World->AddComponent<Components::Physics>(m_BrickTemplate);
std::shared_ptr<Components::Template> cTemplate = m_World->AddComponent<Components::Template>(m_BrickTemplate);
auto travels = m_World->AddComponent<Components::Travels>(m_BrickTemplate);
travels->CurrentlyTraveling = false;
cPhys->CollisionType = CollisionType::Type::Static;
cPhys->GravityScale = 0.f;
cPhys->Category = CollisionLayer::Type::Brick;
cPhys->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Type::Ball | CollisionLayer::Type::Projectile | CollisionLayer::Type::Wall | CollisionLayer::LifeBuoy);
model->ModelFile = "Models/Brick/WhiteBrick.obj";
transform->Position = glm::vec3(50, 50, -10);
//sound
auto collisionSound = m_World->AddComponent<Components::CollisionSound>(m_BrickTemplate);
collisionSound->FilePath = "Sounds/Brick/shortbrickbreak.wav";
m_World->CommitEntity(m_BrickTemplate);
return;
}
void dd::Systems::LevelSystem::Update(double dt)
{
if (!m_Initialized) {
GetNextLevel();
CreateLevel(0);
m_Initialized = true;
}
}
void dd::Systems::LevelSystem::UpdateEntity(double dt, EntityID entity, EntityID parent)
{
if (IsPaused()) {
return;
}
auto templateCheck = m_World->GetComponent<Components::Template>(entity);
if (templateCheck != nullptr){ return; }
// Check the background.
auto background = m_World->GetComponent<Components::Background>(entity);
if (background != nullptr) {
auto transform = m_World->GetComponent<Components::Transform>(entity);
if (transform->Position.y <= -34.6) { //Halfpipe Value.
transform->Position.y = 34.6;
Events::Move e;
e.Entity = entity;
e.GoalPosition = glm::vec3(transform->Position.x, 34.6 + background->distanceLeftToCorrectTravelPosition, transform->Position.z);
e.Speed = 6.0f;
e.Queue = false;
EventBroker->Publish(e);
}
}
auto brick = m_World->GetComponent<Components::Brick>(entity);
if (brick != nullptr) {
auto transform = m_World->GetComponent<Components::Transform>(entity);
//Removes bricks that falls out of the stage.
if (transform->Position.y < -10) {
if (brick->Type == StandardBrick) {
} else if (brick->Type == MultiBallBrick) {
Events::MultiBall e;
e.padTransform = transform;
EventBroker->Publish(e);
} else if (brick->Type == LifebuoyBrick) {
Events::Lifebuoy e;
e.Transform = transform;
EventBroker->Publish(e);
} else if (brick->Type == StickyBrick) {
Events::StickyPad e;
e.Times = 3;
EventBroker->Publish(e);
} else if (brick->Type == InkBlasterBrick) {
Events::InkBlaster e;
e.Shots = 5;
e.Speed = 5;
EventBroker->Publish(e);
} else if(brick->Type == KrakenAttackBrick) {
Events::KrakenAttack e;
e.ChargeUpdate = 0;
e.KrakenStrength = 0.1;
e.PlayerStrength = 0.05;
EventBroker->Publish(e);
}
m_LooseBricks--;
m_World->RemoveEntity(entity);
}
}
auto ball = m_World->GetComponent<Components::Ball>(entity);
if (NumberOfBricks() <= 0 && m_LooseBricks <= 0 && !Restarting()) {
if (MultiBalls() <= 0 && PowerUps() <= 0) {
Events::StageCleared ec;
ec.ClearedStage = m_CurrentLevel;
ec.StageCluster = m_CurrentCluster;
ec.StagesInCluster = m_StagesInCluster;
EventBroker->Publish(ec);
} else {
if (ball != nullptr && MultiBalls() > 0) {
Events::MultiBallLost e;
EventBroker->Publish(e);
m_World->RemoveEntity(entity);
} else {
auto powerUp = m_World->GetComponent<Components::PowerUp>(entity);
if (powerUp != nullptr) {
SetPowerUps(PowerUps() - 1);
m_World->RemoveEntity(entity);
} else {
if (brick != nullptr) {
m_LooseBricks--;
m_World->RemoveEntity(entity);
}
}
}
}
}
}
bool dd::Systems::LevelSystem::OnPause(const dd::Events::Pause &event)
{
/*if (event.Type != "LevelSystem" && event.Type != "All") {
return false;
}*/
m_Pause = true;
return true;
}
bool dd::Systems::LevelSystem::OnResume(const dd::Events::Resume &event)
{
/*if (event.Type != "LevelSystem" && event.Type != "All") {
return false;
}*/
m_Pause = false;
return true;
}
void dd::Systems::LevelSystem::CreateBasicLevel(int rows, int lines, glm::vec2 spacesBetweenBricks, float spaceToEdge)
{
SetNumberOfBricks(rows * lines);
//std::cout << "You're only doing this once, right?" << std::endl;
int num = Lines();
for (int i = 0; i < rows; i++) {
num--;
for (int j = 0; j < Lines(); j++) {
CreateBrick(i, j, spacesBetweenBricks, spaceToEdge, 0, num, 1, glm::vec4(0, 0, 0, 0));
}
if (num == 1)
num = Lines();
}
SetNumberOfBricks(rows * lines);
SetRestarting(false);
return;
}
void dd::Systems::LevelSystem::CreateLevel(int aboveBasicLevel)
{
std::cout << "Loading level: " << m_CurrentLevel << std::endl;
SetNumberOfBricks(Rows() * Lines());
int num = Lines();
int getter = 0;
for (int i = 0; i < Rows(); i++) {
num--;
for (int j = 0; j < Lines(); j++) {
CreateBrick(i, j, SpaceBetweenBricks(), SpaceToEdge(), aboveBasicLevel, num, m_Bricks[getter], m_Colors[getter]);
getter++;
}
if (num == 1) {
num = Lines();
}
}
m_LooseBricks = NumberOfBricks();
SetRestarting(false);
}
EntityID dd::Systems::LevelSystem::CreateBrick(int row, int line, glm::vec2 spacesBetweenBricks, float spaceToEdge, int aboveLevel, int num, int typeInt, glm::vec4 colorVec)
{
if (typeInt == EmptyBrickSpace) {
SetNumberOfBricks(NumberOfBricks() - 1);
return NULL;
}
auto brick = m_World->CloneEntity(m_BrickTemplate);
m_World->RemoveComponent<Components::Template>(brick);
auto transform = m_World->GetComponent<Components::Transform>(brick);
auto cBrick = m_World->GetComponent<Components::Brick>(brick);
auto model = m_World->GetComponent<Components::Model>(brick);
float x = line * spacesBetweenBricks.x;
float y = row * spacesBetweenBricks.y;
transform->Position = glm::vec3(x - 3, 5 - spaceToEdge - y + aboveLevel, -10.f);
if (typeInt == StandardBrick) {
cBrick->Type = StandardBrick;
auto type = m_World->AddComponent<Components::StandardBrick>(brick);
model->Color = colorVec;
SetBrokenModel(brick);
} else if (typeInt == MultiBallBrick) {
cBrick->Type = MultiBallBrick;
auto type = m_World->AddComponent<Components::MultiBallBrick>(brick);
model->ModelFile = "Models/Brick/IceBrick.obj";
} else if (typeInt == LifebuoyBrick) {
cBrick->Type = LifebuoyBrick;
auto type = m_World->AddComponent<Components::LifebuoyBrick>(brick);
model->ModelFile = "Models/Brick/LifeBuoyBrick.obj";
} else if (typeInt == StickyBrick) {
cBrick->Type = StickyBrick;
auto type = m_World->AddComponent<Components::StickyBrick>(brick);
model->ModelFile = "Models/Brick/StickyBrick.obj";
} else if (typeInt == InkBlasterBrick) {
cBrick->Type = InkBlasterBrick;
auto type = m_World->AddComponent<Components::InkBlasterBrick>(brick);
model->Color = glm::vec4(0.1f, 0.1f, 0.1f, 1.0f);
} else if (typeInt == KrakenAttackBrick) {
cBrick->Type = KrakenAttackBrick;
auto type = m_World->AddComponent<Components::KrakenAttackBrick>(brick);
model->Color = glm::vec4(0.f, 0.5f, 1.0f, .0f);
} else if (typeInt == Kraken) {
Events::KrakenAppear e;
e.Position = transform->Position;
e.Health = 10;
EventBroker->Publish(e);
m_World->RemoveEntity(brick);
return brick;
}
cBrick->Score = 10 * num;
return brick;
}
bool dd::Systems::LevelSystem::OnBrickGenerating(const dd::Events::BrickGenerating &event)
{
GetBrickSet(event.Set);
LOG_DEBUG("This is happening.");
int rows = 2;
int lines = 7;
int getter = 0;
for (int i = 0; i < rows; i++) {
for (int j = 0; j < lines; j++) {
auto ent = CreateBrick(i, j, SpaceBetweenBricks(), SpaceToEdge(), -4, 1, m_BrickSet[getter], m_ColorSet[getter]);
if (ent != NULL) {
auto transform = m_World->GetComponent<Components::Transform>(ent);
Events::Move e;
e.GoalPosition = transform->Position;
transform->Position = event.Origin;
e.Entity = ent;
e.Speed = 6;
e.Queue = false;
EventBroker->Publish(e);
m_LooseBricks++;
SetNumberOfBricks(NumberOfBricks() + 1);
}
getter++;
}
}
return true;
}
void dd::Systems::LevelSystem::GetBrickSet(int set)
{
std::array<int, 14> level;
std::array<glm::vec4, 14> color;
// Level array indicates type of brick.
// 0 is empty space.
// 1 is standard brick.
// 2 is multiball brick.
// 3 is lifebuoy brick.
// 4 is sticky brick.
// 5 is ink blaster brick.
// 6 is kraken attack brick.
// color array determines the color of standard bricks.
// w is white.
// r is red.
// g is green.
// b is blue.
// y is yellow.
// c is cyan.
// m is magenta.
// d is dark.
// Feel free to make your own.
glm::vec4 w = glm::vec4(1, 1, 1, 0);
glm::vec4 r = glm::vec4(1, 0, 0, 0);
glm::vec4 g = glm::vec4(0, 1, 0, 0);
glm::vec4 b = glm::vec4(0, 0, 1, 0);
glm::vec4 y = glm::vec4(1, 1, 0, 0);
glm::vec4 c = glm::vec4(0, 1, 1, 0);
glm::vec4 m = glm::vec4(1, 0, 1, 0);
glm::vec4 d = glm::vec4(0, 0, 0, 0);
if (set == 1) {
level =
{1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1 };
color =
{r, r, r, r, r, r, r,
r, r, r, r, r, r, r };
}
else if (set == 2) {
level =
{2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2 };
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w };
}
else if (set == 3) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0 };
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w };
}
else if (set == 4) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0 };
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w };
}
else if (set == 5) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0 };
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w };
}
else if (set == 6) {
level =
{0, 0, 0, 1, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0 };
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w };
}
std::copy(std::begin(level), std::end(level), std::begin(m_BrickSet));
std::copy(std::begin(color), std::end(color), std::begin(m_ColorSet));
}
void dd::Systems::LevelSystem::OnEntityRemoved(EntityID entity)
{
}
bool dd::Systems::LevelSystem::OnContact(const dd::Events::Contact &event)
{
EntityID entityBrick;
EntityID entityBall;
EntityID entityShot = 0;
auto ball = m_World->GetComponent<Components::Ball>(event.Entity2);
auto brick = m_World->GetComponent<Components::Brick>(event.Entity1);
if (brick != nullptr) {
entityBrick = event.Entity1;
} else {
brick = m_World->GetComponent<Components::Brick>(event.Entity2);
if (brick != nullptr) {
entityBrick = event.Entity2;
} else {
return false;
}
}
if (ball != nullptr) {
entityBall = event.Entity2;
} else {
ball = m_World->GetComponent<Components::Ball>(event.Entity1);
if (ball != nullptr) {
entityBall = event.Entity1;
} else {
auto shot = m_World->GetComponent<Components::Projectile>(event.Entity1);
if (shot != nullptr) {
entityShot = event.Entity1;
} else {
shot = m_World->GetComponent<Components::Projectile>(event.Entity2);
if (shot != nullptr) {
entityShot = event.Entity2;
} else {
return false;
}
}
}
}
brick = m_World->GetComponent<Components::Brick>(entityBrick);
if (brick == nullptr) {
return false;
}
if (entityShot != 0) {
// For when a brick gets shot.
brick->Removed = true;
m_World->RemoveEntity(entityShot);
BrickHit(entityShot, entityBrick, 1);
//ep.Radius = 0.05;
return true;
}
if (!Restarting() && !brick->Removed) {
brick->Removed = true;
// Hit brick with ball code.
ball->Combo += 1;
Events::ComboEvent ec;
ec.Combo = ball->Combo;
ec.Ball = entityBall;
EventBroker->Publish(ec);
BrickHit(entityBall, entityBrick, ball->Combo);
}
return true;
}
void dd::Systems::LevelSystem::BrickHit(EntityID entityHitter, EntityID entityBrick, int combo)
{
auto brick = m_World->GetComponent<Components::Brick>(entityBrick);
auto physicsComponent = m_World->GetComponent<Components::Physics>(entityBrick);
//physicsComponent->CollisionType = CollisionType::Type::Dynamic;
//physicsComponent->GravityScale = 1.f;
//physicsComponent->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Water | CollisionLayer::Wall);
auto transformComponentBrick = m_World->GetComponent<Components::Transform>(entityBrick);
auto transformComponentHitter = m_World->GetComponent<Components::Transform>(entityHitter);
auto brickModel = m_World->GetComponent<Components::Model>(entityBrick);
// Check if the brick is any kind of special.
auto multi = m_World->GetComponent<Components::MultiBallBrick>(entityBrick);
if (multi != nullptr) {
Events::MultiBall e;
e.padTransform = transformComponentBrick;
EventBroker->Publish(e);
}
else {
auto buoy = m_World->GetComponent<Components::LifebuoyBrick>(entityBrick);
if (buoy != nullptr) {
Events::Lifebuoy e;
e.Transform = transformComponentBrick;
EventBroker->Publish(e);
}
else {
auto sticky = m_World->GetComponent<Components::StickyBrick>(entityBrick);
if (sticky != nullptr) {
Events::StickyPad e;
e.Transform = transformComponentBrick;
e.Times = 3;
EventBroker->Publish(e);
}
else {
auto ink = m_World->GetComponent<Components::InkBlasterBrick>(entityBrick);
if (ink != nullptr) {
Events::InkBlaster e;
e.Transform = transformComponentBrick;
e.Shots = 5;
e.Speed = 5;
EventBroker->Publish(e);
}
else {
auto kraken = m_World->GetComponent<Components::KrakenAttackBrick>(entityBrick);
if (kraken != nullptr) {
Events::KrakenAttack e;
e.ChargeUpdate = 0;
e.KrakenStrength = 0.1;
e.PlayerStrength = 0.05;
EventBroker->Publish(e);
}
else {
}
}
}
}
}
auto brickChildren = m_World->GetEntityChildren(entityBrick);
for (auto b : brickChildren)
{
auto cTransform = m_World->GetComponent<Components::Transform>(b);
cTransform->Position = cTransform->Position + transformComponentBrick->Position;
glm::vec2 ballToBrick = 4.f * glm::normalize(glm::vec2(cTransform->Position.x - transformComponentHitter->Position.x, cTransform->Position.y - transformComponentHitter->Position.y));
cTransform->Velocity = glm::vec3(ballToBrick.x, ballToBrick.y, 0.f);
std::uniform_real_distribution<float> dist(-1.5f, 1.5f);
int impulseStrength = dist(m_RandomGenerator);
Events::SetImpulse i;
i.Entity = b;
i.Impulse = glm::vec2(impulseStrength, 0.f);
i.Point = glm::vec2(cTransform->Position.x, cTransform->Position.y + 0.5f);
EventBroker->Publish(i);
auto cModel = m_World->GetComponent<Components::Model>(b);
cModel->Color = brickModel->Color;
cModel->Color *= 0.5f;
m_World->RemoveComponent<Components::Template>(b);
m_World->SetEntityParent(b, 0);
m_World->CommitEntity(b);
//Particle trail
Events::CreateParticleSequence trail;
trail.parent = b;
trail.AlphaValues.push_back(1.f);
trail.AlphaValues.push_back(0.f);
trail.ScaleValues.push_back(glm::vec3(0.08f));
trail.ScaleValues.push_back(glm::vec3(0.f));
trail.RadiusDistribution = 1;
trail.EmitterLifeTime = 2.f;
trail.ParticleLifeTime = 1.f;
trail.ParticlesPerTick = 1;
trail.SpawnRate = 0.1f;
trail.Speed = 10.f;
trail.EmittingAngle = glm::half_pi<float>();
trail.SpriteFile = "Textures/Particles/FadeBall.png";
trail.Color = brickModel->Color;
//p.Spread = ...
EventBroker->Publish(trail);
//ParticlePoof
Events::CreateParticleSequence poof;
poof.EmitterLifeTime = 4;
poof.EmittingAngle = glm::half_pi<float>();
poof.Spread = 0.5f;
poof.NumberOfTicks = 1;
poof.ParticleLifeTime = 1.5f;
poof.ParticlesPerTick = 1;
poof.Position = cTransform->Position;
poof.ScaleValues.clear();
poof.ScaleValues.push_back(glm::vec3(0.5f));
poof.ScaleValues.push_back(glm::vec3(2.f, 2.f, 0.2f));
poof.SpriteFile = "Textures/Particles/Cloud_Particle.png";
poof.Color = brickModel->Color;
poof.AlphaValues.clear();
poof.AlphaValues.push_back(1.f);
poof.AlphaValues.push_back(0.f);
poof.Speed = 10;
EventBroker->Publish(poof);
}
SetNumberOfBricks(NumberOfBricks() - 1);
Events::ScoreEvent es;
es.Score = brick->Score * combo;
EventBroker->Publish(es);
m_LooseBricks--;
m_World->RemoveEntity(entityBrick);
}
bool dd::Systems::LevelSystem::OnScoreEvent(const dd::Events::ScoreEvent &event)
{
SetScore(Score() += event.Score);
return true;
}
bool dd::Systems::LevelSystem::OnMultiBall(const dd::Events::MultiBall &event)
{
SetMultiBalls(MultiBalls()+2);
return true;
}
bool dd::Systems::LevelSystem::OnMultiBallLost(const dd::Events::MultiBallLost &event)
{
SetMultiBalls(MultiBalls()-1);
if (MultiBalls() < 0) {
SetMultiBalls(0);
}
return true;
}
bool dd::Systems::LevelSystem::OnCreatePowerUp(const dd::Events::CreatePowerUp &event)
{
SetPowerUps(PowerUps() + 1);
auto powerUp = m_World->CreateEntity();
std::shared_ptr<Components::Transform> transform = m_World->AddComponent<Components::Transform>(powerUp);
auto model = m_World->AddComponent<Components::Model>(powerUp);
std::shared_ptr<Components::CircleShape> cRec = m_World->AddComponent<Components::CircleShape>(powerUp);
std::shared_ptr<Components::Physics> cPhys = m_World->AddComponent<Components::Physics>(powerUp);
cPhys->CollisionType = CollisionType::Type::Dynamic;
cPhys->Category = CollisionLayer::Type::PowerUp;
cPhys->Mask = CollisionLayer::Type::Pad;
std::shared_ptr<Components::PowerUp> cPow = m_World->AddComponent<Components::PowerUp>(powerUp);
transform->Position = event.Position;
transform->Scale = glm::vec3(0.2, 0.2, 0.2);
transform->Velocity = glm::vec3(0, -4, 0);
model->ModelFile = "Models/Test/Ball/Ballopus.obj";
m_World->CommitEntity(powerUp);
return true;
}
bool dd::Systems::LevelSystem::OnPowerUpTaken(const dd::Events::PowerUpTaken &event)
{
SetPowerUps(PowerUps() - 1);
return true;
}
bool dd::Systems::LevelSystem::OnKrakenDefeated(const dd::Events::KrakenDefeated &event)
{
SetNumberOfBricks(NumberOfBricks() - 1);
m_LooseBricks--;
std::cout << m_LooseBricks << std::endl;
return true;
}
bool dd::Systems::LevelSystem::OnStageCleared(const dd::Events::StageCleared &event)
{
if (!m_Cleared) {
m_Cleared = true;
SetRestarting(true);
Events::ResetBall e;
EventBroker->Publish(e);
Events::ScoreEvent es;
es.Score = 500;
EventBroker->Publish(es);
m_CurrentLevel++;
if (m_CurrentLevel <= event.StagesInCluster) {
GetNextLevel();
CreateLevel(12); //NextLevelDistance
} else {
// Win
Events::ClusterClear e;
e.ClusterCleared = m_CurrentCluster;
EventBroker->Publish(e);
Events::Pause p;
p.Type = "All";
EventBroker->Publish(p);
}
}
return true;
}
bool dd::Systems::LevelSystem::OnArrivedAtNewStage(const dd::Events::ArrivedAtNewStage &event)
{
m_Cleared = false;
return true;
}
void dd::Systems::LevelSystem::GetNextLevel()
{
std::array<int, 42> level;
std::array<glm::vec4, 42> color;
// Level array indicates type of brick.
// 0 is empty space.
// 1 is standard brick.
// 2 is multiball brick.
// 3 is lifebuoy brick.
// 4 is sticky brick.
// 5 is ink blaster brick.
// 6 is kraken attack brick.
// 100 is KRAKEN!
// color array determines the color of standard bricks.
// w is white.
// r is red.
// g is green.
// b is blue.
// y is yellow.
// c is cyan.
// m is magenta.
// d is dark.
// Feel free to make your own.
glm::vec4 w = glm::vec4(1, 1, 1, 0);
glm::vec4 r = glm::vec4(1, 0, 0, 0);
glm::vec4 g = glm::vec4(0, 1, 0, 0);
glm::vec4 b = glm::vec4(0, 0, 1, 0);
glm::vec4 y = glm::vec4(1, 1, 0, 0);
glm::vec4 c = glm::vec4(0, 1, 1, 0);
glm::vec4 m = glm::vec4(1, 0, 1, 0);
glm::vec4 d = glm::vec4(0, 0, 0, 0);
//glm::vec4 p4 = glm::vec4(asd.f / 255.f, asd.f / 255.f, sad.f / 255.f, 1.f);
glm::vec4 br = glm::vec4(143.f / 255.f, 98.f / 255.f, 0.f / 255.f, 1.f);
glm::vec4 lb1 = glm::vec4(115.f / 255.f, 232.f / 255.f, 236.f / 255.f, 1.f);
glm::vec4 lb2 = glm::vec4(107.f / 255.f, 214.f / 255.f, 218.f / 255.f, 1.f);
glm::vec4 lb3 = glm::vec4(91.f / 255.f, 183.f / 255.f, 186.f / 255.f, 1.f);
glm::vec4 lb4 = glm::vec4(70.f / 255.f, 153.f / 255.f, 156.f / 255.f, 1.f);
glm::vec4 p1 = glm::vec4(255.f / 255.f, 184.f / 255.f, 254.f / 255.f, 1.f);
glm::vec4 p2 = glm::vec4(255.f / 255.f, 81.f / 255.f, 253.f / 255.f, 1.f);
glm::vec4 p3 = glm::vec4(189.f / 255.f, 0.f / 255.f, 187.f / 255.f, 1.f);
glm::vec4 p4 = glm::vec4(125.f / 255.f, 0.f / 255.f, 147.f / 255.f, 1.f);
if (m_CurrentCluster == 0) {
if (m_CurrentLevel == 1) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 1};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 2) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 100, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 3) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
1, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 4) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 1};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 5) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 1, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 6) {
level =
{0, 0, 0, 1, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
}
} else if (m_CurrentCluster == 1) {
if (m_CurrentLevel == 1) {
level =
{0, 0, 0, 0, 0, 0, 0,
1, 1, 1, 1, 1, 1, 1,
1, 0, 1, 2, 1, 0, 1,
0, 1, 0, 1, 0, 1, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
lb4, lb4, lb4, lb4, lb4, lb4, lb4,
lb3, lb3, lb3, lb3, lb3, lb3, lb3,
lb2, lb2, lb2, lb2, lb2, lb2, lb2,
lb1, lb1, lb1, lb1, lb1, lb1, lb1,
w, w, w, w, w, w, w};
} else if (m_CurrentLevel == 2) {
level =
{0, 0, 1, 0, 1, 0, 0,
0, 1, 0, 1, 0, 1, 0,
0, 0, 1, 1, 1, 0, 0,
0, 0, 0, 3, 0, 0, 0,
1, 1, 1, 0, 1, 1, 1,
1, 0, 0, 0, 0, 0, 1};
color =
{w, w, r, w, r, w, w,
w, w, w, r, w, w, w,
w, w, r, w, r, w, w,
w, w, w, w, w, w, w,
w, r, w, w, w, r, w,
r, w, w, w, w, w, r};
} else if (m_CurrentLevel == 3) {
level =
{0, 0, 0, 1, 0, 0, 0,
0, 0, 1, 1, 1, 0, 0,
0, 1, 1, 1, 1, 1, 0,
1, 1, 1, 4, 1, 1, 1,
0, 0, 0, 1, 0, 0, 0,
0, 0, 1, 1, 1, 0, 0};
color =
{g, g, g, g, g, g, g,
g, g, g, g, g, g, g,
g, g, g, g, g, g, g,
g, g, g, w, g, g, g,
w, w, w, br, w, w, w,
w, w, br, br, br, w, w};
} else if (m_CurrentLevel == 4) {
level =
{0, 0, 1, 0, 1, 0, 0,
0, 1, 1, 1, 1, 1, 0,
1, 1, 1, 1, 1, 1, 1,
0, 1, 1, 1, 1, 1, 0,
0, 0, 1, 5, 1, 0, 0,
0, 0, 0, 1, 0, 0, 0};
color =
{w, w, p1, w, p1, w, w,
w, p2, p3, p2, p3, p2, w,
p1, p2, p3, p4, p3, p2, p1,
w, p1, p2, p3, p2, p1, w,
w, w, p1, w, p1, w, w,
w, w, w, p1, w, w, w};
} else if (m_CurrentLevel == 5) {
level =
{0, 1, 0, 0, 0, 1, 0,
1, 4, 1, 1, 1, 3, 1,
0, 1, 0, 1, 0, 1, 0,
0, 1, 0, 1, 0, 1, 0,
1, 5, 1, 6, 1, 2, 1,
0, 1, 0, 0, 0, 1, 0};
color =
{w, p3, w, w, w, r, w,
p2, w, p1, g, w, w, w,
w, p4, w, g, w, r, w,
w, br, w, g, w, lb1, w,
y, w, y, d, b, w, b,
w, br, w, w, w, lb1, w};
}
else if (m_CurrentLevel == 6) {
level =
{0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 100, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 0, 0, 0};
color =
{w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w,
w, w, w, w, w, w, w};
}
} else if (m_CurrentCluster == 3) {
}
std::copy(std::begin(level), std::end(level), std::begin(m_Bricks));
std::copy(std::begin(color), std::end(color), std::begin(m_Colors));
}
bool dd::Systems::LevelSystem::OnHitPad(const dd::Events::HitPad &event)
{
m_Cleared = false;
return true;
}
void dd::Systems::LevelSystem::SetBrokenModel(EntityID entity)
{
std::uniform_int_distribution<int> dist(0, 2);
int index = dist(m_RandomGenerator);
switch (index)
{
case 0:
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/1/WhiteBrickBreak1.obj", glm::vec3(-0.29912f, 0.0082f, 0.f), glm::vec2(0.281f, 0.351f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/1/WhiteBrickBreak2.obj", glm::vec3(0.07597f, -0.02899f, 0.f), glm::vec2(0.559f, 0.351f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/1/WhiteBrickBreak3.obj", glm::vec3(0.3227f, 0.05632, 0.f), glm::vec2(0.25f, 0.25f));
break;
case 1:
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/2/WhiteBrickBreak1.obj", glm::vec3(-0.3236f, 0.0159f, 0.f), glm::vec2(0.237f, 0.327f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/2/WhiteBrickBreak2.obj", glm::vec3(0.07645f, 0.03131f, 0.f), glm::vec2(0.594f, 0.211f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/2/WhiteBrickBreak3.obj", glm::vec3(0.09468f, -0.11792f, 0.f), glm::vec2(0.692f, 0.112f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/2/WhiteBrickBreak4.obj", glm::vec3(0.33957f, 0.13079f, 0.f), glm::vec2(0.208f, 0.085f));
break;
case 2:
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/3/WhiteBrickBreak1.obj", glm::vec3(-0.34882f, 0.0564f, 0.f), glm::vec2(0.175f, 0.228f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/3/WhiteBrickBreak2.obj", glm::vec3(0.0678f, 0.07679f, 0.f), glm::vec2(0.699f, 0.183f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/3/WhiteBrickBreak3.obj", glm::vec3(-0.11862f, -0.10342, 0.f), glm::vec2(0.563f, 0.164f));
CreateBrokenModelPart(entity, "Models/Brick/BrickBreak/3/WhiteBrickBreak4.obj", glm::vec3(0.31479f, -0.06351f, 0.f), glm::vec2(0.261f, 0.21f));
break;
default:
LOG_INFO("Something went wrong with the random generator in SetBrokenModel");
break;
}
}
void dd::Systems::LevelSystem::CreateBrokenModelPart(EntityID Parent, std::string ModelPath, glm::vec3 RelativePosition, glm::vec2 Hitbox)
{
auto ent = m_World->CreateEntity(Parent);
auto cTemplate = m_World->AddComponent<Components::Template>(ent);
auto cTransform = m_World->AddComponent<Components::Transform>(ent);
cTransform->Position = RelativePosition;
auto cModel = m_World->AddComponent<Components::Model>(ent);
cModel->ModelFile = ModelPath;
auto cRec = m_World->AddComponent<Components::RectangleShape>(ent);
cRec->Dimensions = Hitbox;
auto cPhys = m_World->AddComponent<Components::Physics>(ent);
cPhys->CollisionType = CollisionType::Type::Dynamic;
cPhys->GravityScale = 1.f;
cPhys->Category = CollisionLayer::Type::Brick;
cPhys->Mask = static_cast<CollisionLayer::Type>(CollisionLayer::Type::Wall);
}