Merge remote-tracking branch 'origin/master' into AssaultBoost

# Conflicts:
#	src/Game/Game.cpp
This commit is contained in:
verysecrethero
2016-03-02 15:59:16 +01:00
195 changed files with 6820 additions and 2310 deletions
+1 -1
View File
@@ -3,7 +3,7 @@ project(TacticalZ-Engine)
find_package(OpenGL REQUIRED)
find_package(GLEW REQUIRED)
find_package(GLFW REQUIRED)
find_package(Boost REQUIRED COMPONENTS system filesystem thread chrono program_options)
find_package(Boost REQUIRED COMPONENTS system filesystem thread chrono timer program_options)
find_package(assimp REQUIRED)
find_package(ZLIB REQUIRED)
find_package(PNG REQUIRED)
+53 -7
View File
@@ -207,7 +207,7 @@ bool RayVsModel(const Ray& ray,
glm::vec3 v0 = Transform::TransformPoint(modelVertices[modelIndices[i++]].Position, modelMatrix);
glm::vec3 v1 = Transform::TransformPoint(modelVertices[modelIndices[i++]].Position, modelMatrix);
glm::vec3 v2 = Transform::TransformPoint(modelVertices[modelIndices[i++]].Position, modelMatrix);
float dist = INFINITY;
float dist = outDistance;
float u;
float v;
if (RayVsTriangle(ray, v0, v1, v2, dist, u, v)) {
@@ -366,7 +366,8 @@ bool AABBvsTriangle(const AABB& box,
float verticalStepHeight,
bool& isOnGround,
glm::vec3& boxVelocity,
glm::vec3& outResolution)
glm::vec3& outResolution,
bool resolveCollision)
{
//Check so we don't have a zero area triangle when calculating the normal.
//Also, don't check a triangle facing away from the player.
@@ -426,7 +427,7 @@ bool AABBvsTriangle(const AABB& box,
//if projections don't overlap, return false.
if (!rectangleVsTriangle(boxMin, boxMax, t2D, resolutionVector, resolutionDist, pushedFromTriangleLine)) {
return false;
} else {
} else if (resolveCollision) {
//Overwrite the smallest resolution if this is smaller.
if (resolutionDist < resolveShortest.DistanceSq) {
resolveShortest.Vector = glm::vec3(0.f);
@@ -463,6 +464,11 @@ bool AABBvsTriangle(const AABB& box,
if (glm::abs(t) > 1) {
return false;
}
if (!resolveCollision) {
return true;
}
glm::vec3 cornerResolution = (1+t) * diagonal;
//Overwrite the smallest resolution if cornerResolution is smaller.
float lenSq = glm::length2(cornerResolution);
@@ -537,7 +543,8 @@ bool AABBvsTriangles(const AABB& box,
glm::vec3& boxVelocity,
float verticalStepHeight,
bool& isOnGround,
glm::vec3& outResolutionVector)
glm::vec3& outResolutionVector,
bool resolveCollision)
{
bool hit = false;
@@ -553,7 +560,7 @@ bool AABBvsTriangles(const AABB& box,
};
glm::vec3 outVec;
bool collideWithGround = isOnGround;
if (AABBvsTriangle(newBox, triVertices, originalBoxVelocity, verticalStepHeight, collideWithGround, boxVelocity, outVec)) {
if (AABBvsTriangle(newBox, triVertices, originalBoxVelocity, verticalStepHeight, collideWithGround, boxVelocity, outVec, resolveCollision)) {
hit = true;
outResolutionVector += outVec;
newBox = AABB::FromOriginSize(newBox.Origin() + outVec, newBox.Size());
@@ -569,6 +576,44 @@ bool AABBvsTriangles(const AABB& box,
return hit;
}
bool AABBvsTriangles(const AABB& box,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix,
glm::vec3& boxVelocity,
float verticalStepHeight,
bool& isOnGround,
glm::vec3& outResolutionVector)
{
return AABBvsTriangles(box,
modelVertices,
modelIndices,
modelMatrix,
boxVelocity,
verticalStepHeight,
isOnGround,
outResolutionVector,
true);
}
bool AABBvsTriangles(const AABB& box,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix)
{
glm::vec3 vel, outres;
bool g;
return AABBvsTriangles(box,
modelVertices,
modelIndices,
modelMatrix,
vel,
0.f,
g,
outres,
false);
}
boost::optional<EntityAABB> EntityAbsoluteAABB(EntityWrapper& entity, bool takeModelBox)
{
AABB modelSpaceBox;
@@ -648,8 +693,9 @@ boost::optional<EntityAABB> EntityFirstHitByRay(const Ray& ray, std::vector<Enti
if (!entityBox.Entity.HasComponent("Model")) {
continue;
}
std::string res = entityBox.Entity["Model"]["Resource"];
if (res.empty()) {
auto& cModel = entityBox.Entity["Model"];
std::string res = cModel["Resource"];
if (res.empty() || (bool)cModel["Transparent"] || !((bool)cModel["Visible"])) {
continue;
}
Model* model;
+60 -6
View File
@@ -3,24 +3,72 @@
#include "Core/AABB.h"
#include "Rendering/Model.h"
void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& component, double dt)
void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& cPhysics, double dt)
{
if (!entity.HasComponent("Physics")) {
if (!entity.HasComponent("Collidable")) {
return;
}
ComponentWrapper& cPhysics = entity["Physics"];
boost::optional<EntityAABB> boundingBox = Collision::EntityAbsoluteAABB(entity);
if (!boundingBox) {
return;
}
ComponentWrapper& cTransform = entity["Transform"];
EntityAABB& boxA = *boundingBox;
bool everHitTheGround = false;
auto prevPosIt = m_PrevPositions.find(entity);
if (prevPosIt != m_PrevPositions.end()) {
glm::vec3 size = boxA.Size();
float diameter = std::min(size.x, size.z);
glm::vec3 prevOrigin = prevPosIt->second;
glm::vec3 toCurrentPos = boxA.Origin() - prevOrigin;
float rayLength = glm::length(toCurrentPos) + 0.5f*diameter;
//If the entity has moved farther than the size of its box, we need to handle it specially.
if (rayLength > diameter) {
Ray ray(prevOrigin, toCurrentPos);
m_OctreeResult.clear();
m_Octree->ObjectsPossiblyHitByRay(ray, m_OctreeResult);
for (auto& boxB : m_OctreeResult) {
if (boxA.Entity == boxB.Entity) {
continue;
}
bool hit;
float dist;
if (boxB.Entity.HasComponent("Model")) {
RawModel* model;
std::string res = (std::string)boxB.Entity["Model"]["Resource"];
try {
model = ResourceManager::Load<RawModel, true>(res);
} catch (const std::exception&) {
continue;
}
float u, v;
hit = Collision::RayVsModel(ray, model->Vertices(), model->m_Indices, Transform::ModelMatrix(boxB.Entity), dist, u, v);
} else {
hit = Collision::RayVsAABB(ray, boxB, dist);
}
if (hit && dist < rayLength) {
//Set the entity to where it was colliding, minus the maximum box size.
//TODO: Perhaps this should be done slightly more properly.
glm::vec3 newOriginPos = ray.Origin() + (dist - 0.707107f*diameter) * ray.Direction();
glm::vec3 resolve = newOriginPos - boxA.Origin();
(glm::vec3&)cTransform["Position"] += resolve;
boxA = *Collision::EntityAbsoluteAABB(entity);
if (resolve.y > 0) {
everHitTheGround = true;
(bool)cPhysics["IsOnGround"] = true;
((glm::vec3&)cPhysics["Velocity"]).y = 0.f;
}
break;
}
}
}
}
// Collide against octree items
m_OctreeResult.clear();
m_Octree->ObjectsInSameRegion(*boundingBox, m_OctreeResult);
bool everHitTheGround = false;
for (auto& boxB : m_OctreeResult) {
glm::vec3 resolutionVector;
if (boxA.Entity == boxB.Entity) {
@@ -39,10 +87,13 @@ void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& c
glm::mat4 modelMatrix = Transform::ModelMatrix(boxB.Entity);
glm::vec3 inOutVelocity = (glm::vec3)cPhysics["Velocity"];
bool notMovingxz = glm::all(glm::lessThan(glm::abs(glm::vec2(inOutVelocity.x, inOutVelocity.z)), glm::vec2(0.01f))) && prevPosIt != m_PrevPositions.end();
bool isOnGround = (bool)cPhysics["IsOnGround"];
float verticalStepHeight = (float)(double)cPhysics["VerticalStepHeight"];
if (Collision::AABBvsTriangles(boxA, model->Vertices(), model->m_Indices, modelMatrix, inOutVelocity, verticalStepHeight, isOnGround, resolutionVector)) {
(glm::vec3&)cTransform["Position"] += resolutionVector;
//Move the position to previous position if it is not moving in the xz-plane, else resolve with the resolution vector.
(glm::vec3&)cTransform["Position"] += notMovingxz ? prevPosIt->second - boxA.Origin() : resolutionVector;
boxA = *Collision::EntityAbsoluteAABB(entity);
cPhysics["Velocity"] = inOutVelocity;
if (isOnGround) {
everHitTheGround = true;
@@ -52,6 +103,7 @@ void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& c
} else if (Collision::AABBVsAABB(boxA, boxB, resolutionVector)) {
//Enter here if boxB has no Model.
(glm::vec3&)cTransform["Position"] += resolutionVector;
boxA = *Collision::EntityAbsoluteAABB(entity);
if (resolutionVector.y > 0) {
everHitTheGround = true;
(bool)cPhysics["IsOnGround"] = true;
@@ -64,4 +116,6 @@ void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& c
if (!everHitTheGround) {
(bool)cPhysics["IsOnGround"] = false;
}
m_PrevPositions[entity] = boxA.Origin();
}
+39 -3
View File
@@ -1,7 +1,5 @@
#include "Core/ComponentPool.h"
ComponentWrapper ComponentPoolForwardIterator::operator*() const
{
char* data = &(*m_MemoryPoolIterator);
@@ -32,6 +30,34 @@ ComponentPoolForwardIterator& ComponentPoolForwardIterator::operator++()
return *this;
}
ComponentPool::ComponentPool(const ComponentPool& other)
: m_ComponentInfo(other.m_ComponentInfo)
, m_Pool(other.m_Pool)
, m_EntityToComponent()
{
// Update EntityToComponent pointers
for (char& ptr : m_Pool) {
EntityID entity = *reinterpret_cast<EntityID*>(&ptr);
m_EntityToComponent[entity] = &ptr;
}
// Duplicate strings
for (auto& name : m_ComponentInfo.StringFields) {
for (auto& c : *this) {
std::string& val = c[name];
ComponentWrapper::SolidifyStrings(c);
}
}
}
ComponentPool::~ComponentPool()
{
// Destroy component data
for (auto& c : *this) {
ComponentWrapper::Destroy(c.Info, c.Data);
}
}
//const ::ComponentInfo& ComponentPool::ComponentInfo() const
//{
// return m_ComponentInfo;
@@ -39,10 +65,19 @@ ComponentPoolForwardIterator& ComponentPoolForwardIterator::operator++()
ComponentWrapper ComponentPool::Allocate(EntityID entity)
{
// Allocate pool data
char* data = m_Pool.Allocate();
// Copy EntityID
memcpy(data, &entity, sizeof(EntityID));
m_EntityToComponent[entity] = data;
return ComponentWrapper(m_ComponentInfo, data);
ComponentWrapper component(m_ComponentInfo, data);
// Copy defaults
memcpy(component.Data, m_ComponentInfo.Defaults.get(), m_ComponentInfo.Stride);
ComponentWrapper::SolidifyStrings(component);
return component;
}
ComponentWrapper ComponentPool::GetByEntity(EntityID ent)
@@ -57,6 +92,7 @@ bool ComponentPool::KnowsEntity(EntityID ent)
void ComponentPool::Delete(ComponentWrapper& wrapper)
{
ComponentWrapper::Destroy(wrapper.Info, wrapper.Data);
m_EntityToComponent.erase(wrapper.EntityID);
m_Pool.Free(wrapper.Data - sizeof(EntityID));
}
+4 -1
View File
@@ -185,6 +185,9 @@ void EntityFilePreprocessor::parseComponentInfo()
field.Offset = fieldOffset;
field.Stride = stride;
compInfo.FieldsInOrder.push_back(name);
if (field.Type == "string") {
compInfo.StringFields.push_back(name);
}
fieldOffset += stride;
}
@@ -201,7 +204,7 @@ void EntityFilePreprocessor::parseDefaults()
for (auto& ci : m_ComponentInfo) {
// Allocate memory for default values
ci.second.Defaults = std::shared_ptr<char>(new char[ci.second.Stride]);
ci.second.Defaults = boost::shared_array<char>(new char[ci.second.Stride], std::bind(&ComponentWrapper::Destroy, ci.second, std::placeholders::_1));
memset(ci.second.Defaults.get(), 0, ci.second.Stride);
std::string componentName = ci.first;
+79 -1
View File
@@ -51,6 +51,40 @@ EntityWrapper EntityWrapper::FirstParentWithComponent(const std::string& compone
return EntityWrapper::Invalid;
}
EntityWrapper EntityWrapper::Clone(EntityWrapper parent /*= Invalid*/)
{
if (!Valid()) {
return EntityWrapper::Invalid;
}
EntityWrapper clone = cloneRecursive(*this, EntityWrapper::Invalid);
this->World->SetParent(clone.ID, parent.ID);
return clone;
}
std::vector<EntityWrapper> EntityWrapper::ChildrenWithComponent(const std::string& componentType)
{
std::vector<EntityWrapper> childrenWithComponent;
childrenWithComponentRecursive(componentType, *this, childrenWithComponent);
return childrenWithComponent;
}
void EntityWrapper::DeleteChildren()
{
auto itPair = this->World->GetDirectChildren(this->ID);
if (itPair.first == itPair.second) {
return;
}
std::vector<EntityID> entitiesToDelete;
for (auto it = itPair.first; it != itPair.second; it++) {
entitiesToDelete.push_back(it->second);
}
for (auto& e : entitiesToDelete) {
this->World->DeleteEntity(e);
}
}
bool EntityWrapper::IsChildOf(EntityWrapper potentialParent)
{
EntityWrapper entity = *this;
@@ -90,6 +124,11 @@ ComponentWrapper EntityWrapper::operator[](const char* componentName)
}
}
ComponentWrapper EntityWrapper::operator[](const std::string& componentName)
{
return this->operator[](componentName.c_str());
}
bool EntityWrapper::operator==(const EntityWrapper& e) const
{
return (this->ID == e.ID) && (this->World == e.World);
@@ -111,7 +150,7 @@ EntityWrapper EntityWrapper::firstChildByNameRecursive(const std::string& name,
return EntityWrapper::Invalid;
}
auto itPair = this->World->GetChildren(parent);
auto itPair = this->World->GetDirectChildren(parent);
if (itPair.first == itPair.second) {
return EntityWrapper::Invalid;
}
@@ -131,3 +170,42 @@ EntityWrapper EntityWrapper::firstChildByNameRecursive(const std::string& name,
return EntityWrapper::Invalid;
}
EntityWrapper EntityWrapper::cloneRecursive(EntityWrapper entity, EntityWrapper parent)
{
EntityWrapper clone = EntityWrapper(entity.World, entity.World->CreateEntity(parent.ID));
entity.World->SetName(clone.ID, entity.Name());
// Clone components
for (auto& kv : entity.World->GetComponentPools()) {
if (kv.second->KnowsEntity(entity.ID)) {
ComponentWrapper c1 = kv.second->GetByEntity(entity.ID);
ComponentWrapper c2 = entity.World->AttachComponent(clone.ID, kv.first);
c1.Copy(c2);
}
}
// Clone children
auto children = entity.World->GetDirectChildren(entity.ID);
for (auto it = children.first; it != children.second; ++it) {
EntityWrapper child(entity.World, it->second);
cloneRecursive(child, clone);
}
return clone;
}
void EntityWrapper::childrenWithComponentRecursive(const std::string& componentType, EntityWrapper& entity, std::vector<EntityWrapper>& childrenWithComponent)
{
auto itPair = this->World->GetDirectChildren(entity.ID);
if (itPair.first == itPair.second) {
return;
}
for (auto it = itPair.first; it != itPair.second; ++it) {
EntityWrapper child = EntityWrapper(entity.World, it->second);
if (child.HasComponent(componentType)) {
childrenWithComponent.push_back(child);
}
childrenWithComponentRecursive(componentType, child, childrenWithComponent);
}
}
+76
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@@ -0,0 +1,76 @@
#include "Core/PerformanceTimer.h"
#include <ctime>
#include <fstream>
cpu_timer PerformanceTimer::m_Timer;
std::map<std::string, cpu_timer> PerformanceTimer::timers;
std::string PerformanceTimer::currentTimerRunning = "";
void PerformanceTimer::StartTimer(std::string nameOfTimer)
{
timers[nameOfTimer].stop();
timers[nameOfTimer].start();
currentTimerRunning = nameOfTimer;
}
void PerformanceTimer::StartTimerAndStopPrevious(std::string nameOfTimer)
{
//stop the current timer and start some other - useful to not have to stop timers all the time
if (currentTimerRunning != "") {
timers[currentTimerRunning].stop();
}
timers[nameOfTimer].stop();
timers[nameOfTimer].start();
currentTimerRunning = nameOfTimer;
}
void PerformanceTimer::StopTimer(std::string nameOfTimer)
{
timers[nameOfTimer].stop();
currentTimerRunning = nameOfTimer;
}
void PerformanceTimer::SetFrameNumber(int frameNumber)
{
}
void PerformanceTimer::ResetAllTimers()
{
//stop all timers
for (auto aTimer : timers)
{
aTimer.second.stop();
}
currentTimerRunning = "";
timers.clear();
}
void PerformanceTimer::CreateExcelData()
{
//get time
std::time_t t = std::time(NULL);
char tStr[16];
std::strftime(tStr, 32, " %a %H-%M-%S", std::localtime(&t));
std::string time(tStr);
std::string path("TacticalZ");
path += time + ".csv";
std::ofstream someFileStream;
someFileStream.open(path, std::ofstream::out);
someFileStream << "classname" << ',' << "walltime" << ',' << "userTime" << ',' << "systemTime" << '\n';
//write all timers to file
for (auto aTimer : timers)
{
//remove the "class" name in front of the string
auto className = aTimer.first;
if (className.find("class ") != std::string::npos) {
className.replace(0, 6, "");
}
auto wallTime = (double)aTimer.second.elapsed().wall*1e-3;
auto userTime = (double)aTimer.second.elapsed().user*1e-3;
auto systemTime = (double)aTimer.second.elapsed().system*1e-3;
someFileStream << className << "," << wallTime << ',' << userTime << ',' << systemTime << '\n';
}
someFileStream.close();
}
+2 -2
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@@ -33,8 +33,8 @@ void _LOG(_LOG_LEVEL logLevel, const char* file, const char* func, unsigned int
va_end(args);
if (logLevel == LOG_LEVEL_ERROR) {
std::cerr << file << ":" << line << " " << func << std::endl;
std::cerr << _LOG_LEVEL_PREFIX[logLevel] << message << std::endl;
//std::cerr << file << ":" << line << " " << func << std::endl;
//std::cerr << _LOG_LEVEL_PREFIX[logLevel] << message << std::endl;
} else {
std::cout << _LOG_LEVEL_PREFIX[logLevel] << message << std::endl;
}
+16 -5
View File
@@ -9,7 +9,20 @@ World::~World()
}
}
EntityID World::CreateEntity(EntityID parent /*= 0*/)
World::World(const World& other)
: m_EventBroker(other.m_EventBroker)
, m_CurrentEntityID(other.m_CurrentEntityID)
, m_EntityParents(other.m_EntityParents)
, m_EntityChildren(other.m_EntityChildren)
, m_EntityNames(other.m_EntityNames)
{
// Deep copy component pools
for (auto& kv : other.m_ComponentPools) {
m_ComponentPools[kv.first] = new ComponentPool(*kv.second);
}
}
EntityID World::CreateEntity(EntityID parent /*= EntityID_Invalid*/)
{
EntityID newEntity = generateEntityID();
if (newEntity == parent) {
@@ -44,10 +57,8 @@ ComponentWrapper World::AttachComponent(EntityID entity, const std::string& comp
ComponentPool* pool = m_ComponentPools.at(componentType);
const ComponentInfo& ci = pool->ComponentInfo();
// Allocate space for the component
// Allocate component with default values
ComponentWrapper c = pool->Allocate(entity);
// Write default values
memcpy(c.Data, ci.Defaults.get(), ci.Stride);
return c;
}
@@ -116,7 +127,7 @@ void World::SetParent(EntityID entity, EntityID parent)
m_EntityChildren.insert(std::make_pair(parent, entity));
}
const std::pair<std::unordered_multimap<EntityID, EntityID>::const_iterator, std::unordered_multimap<EntityID, EntityID>::const_iterator> World::GetChildren(EntityID entity)
const std::pair<std::unordered_multimap<EntityID, EntityID>::const_iterator, std::unordered_multimap<EntityID, EntityID>::const_iterator> World::GetDirectChildren(EntityID entity)
{
return m_EntityChildren.equal_range(entity);
}
+18
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@@ -580,6 +580,11 @@ void EditorGUI::createWidgetToolButton(WidgetMode mode)
bool EditorGUI::OnKeyDown(const Events::KeyDown& e)
{
ImGuiIO& io = ImGui::GetIO();
if (io.WantCaptureKeyboard) {
return false;
}
if (e.ModCtrl && e.KeyCode == GLFW_KEY_S) {
if (m_CurrentSelection.Valid()) {
EntityWrapper baseParent = m_CurrentSelection;
@@ -598,6 +603,19 @@ bool EditorGUI::OnKeyDown(const Events::KeyDown& e)
entityImport(m_World);
}
if (e.ModCtrl && e.KeyCode == GLFW_KEY_C) {
m_CopyTarget = m_CurrentSelection;
}
if (e.ModCtrl && e.KeyCode == GLFW_KEY_V) {
if (m_OnEntityPaste != nullptr) {
EntityWrapper copy = m_OnEntityPaste(m_CopyTarget, m_CurrentSelection);
if (copy != EntityWrapper::Invalid) {
SelectEntity(copy);
}
}
}
if (e.KeyCode == GLFW_KEY_DELETE) {
if (m_CurrentSelection.Valid()) {
entityDelete(m_CurrentSelection);
+1 -1
View File
@@ -54,7 +54,7 @@ void EditorRenderSystem::Update(double dt)
EntityWrapper entity(m_World, cModel.EntityID);
glm::mat4 modelMatrix = Transform::ModelMatrix(entity.ID, entity.World);
for (auto matGroup : model->MaterialGroups()) {
std::shared_ptr<ModelJob> modelJob = std::make_shared<ModelJob>(model, scene.Camera, modelMatrix, matGroup, cModel, entity.World, glm::vec4(0), 0.f);
std::shared_ptr<ModelJob> modelJob = std::make_shared<ModelJob>(model, scene.Camera, modelMatrix, matGroup, cModel, entity.World, glm::vec4(0), 0.f, false);
if (cModel["Transparent"]) {
scene.Jobs.TransparentObjects.push_back(modelJob);
} else {
+12
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@@ -28,6 +28,7 @@ EditorSystem::EditorSystem(SystemParams params, IRenderer* renderer, RenderFrame
m_EditorGUI->SetEntityDeleteCallback(std::bind(&EditorSystem::OnEntityDelete, this, std::placeholders::_1));
m_EditorGUI->SetEntityChangeParentCallback(std::bind(&EditorSystem::OnEntityChangeParent, this, std::placeholders::_1, std::placeholders::_2));
m_EditorGUI->SetEntityChangeNameCallback(std::bind(&EditorSystem::OnEntityChangeName, this, std::placeholders::_1, std::placeholders::_2));
m_EditorGUI->SetEntityPasteCallback(std::bind(&EditorSystem::OnEntityPaste, this, std::placeholders::_1, std::placeholders::_2));
m_EditorGUI->SetComponentAttachCallback(std::bind(&EditorSystem::OnComponentAttach, this, std::placeholders::_1, std::placeholders::_2));
m_EditorGUI->SetComponentDeleteCallback(std::bind(&EditorSystem::OnComponentDelete, this, std::placeholders::_1, std::placeholders::_2));
m_EditorGUI->SetWidgetModeCallback(std::bind(&EditorSystem::setWidgetMode, this, std::placeholders::_1));
@@ -160,6 +161,11 @@ void EditorSystem::OnEntityChangeName(EntityWrapper entity, const std::string& n
}
}
EntityWrapper EditorSystem::OnEntityPaste(EntityWrapper entityToCopy, EntityWrapper parent)
{
return entityToCopy.Clone(parent);
}
void EditorSystem::OnComponentAttach(EntityWrapper entity, const std::string& componentType)
{
if (entity.Valid()) {
@@ -225,6 +231,12 @@ bool EditorSystem::OnInputCommand(const Events::InputCommand& e)
Enable();
}
}
if (e.Command == "PerformanceTimingResetAllTimers" && e.Value > 0) {
PerformanceTimer::ResetAllTimers();
}
if (e.Command == "PerformanceTimingCreateExcelData" && e.Value > 0) {
PerformanceTimer::CreateExcelData();
}
return true;
}
+84
View File
@@ -0,0 +1,84 @@
#include "GUI/ButtonSystem.h"
ButtonSystem::ButtonSystem(SystemParams params, IRenderer* renderer)
: System(params)
, PureSystem("Button")
, m_Renderer(renderer)
{
EVENT_SUBSCRIBE_MEMBER(m_EMousePress, &ButtonSystem::OnMousePress);
EVENT_SUBSCRIBE_MEMBER(m_EMouseRelease, &ButtonSystem::OnMouseRelease);
EVENT_SUBSCRIBE_MEMBER(m_EMouseLock, &ButtonSystem::OnMouseLock);
EVENT_SUBSCRIBE_MEMBER(m_EMouseUnlock, &ButtonSystem::OnMouseUnlock);
}
bool ButtonSystem::OnMouseLock(const Events::LockMouse& e)
{
m_MouseIsLocked = true;
return true;
}
bool ButtonSystem::OnMouseUnlock(const Events::UnlockMouse& e)
{
m_MouseIsLocked = false;
return true;
}
bool ButtonSystem::OnMousePress(const Events::MousePress& e)
{
if (e.Button == GLFW_MOUSE_BUTTON_1 && !m_MouseIsLocked) {
m_PickData = m_Renderer->Pick(glm::vec2(e.X, e.Y));
if (m_PickData.Entity != EntityID_Invalid && m_PickData.World == m_World) {
if(m_World->HasComponent(m_PickData.Entity, "Button")) {
//Entity is a button, save it and send pressed event.
m_PickEntity = EntityWrapper(m_World, m_PickData.Entity);
//You have clicked on a button entity, send pressed event.
Events::ButtonPressed ePressed;
ePressed.Entity = m_PickEntity;
ePressed.EntityName = m_PickEntity.Name();
m_EventBroker->Publish(ePressed);
}
}
}
return true;
}
bool ButtonSystem::OnMouseRelease(const Events::MouseRelease& e)
{
if(!m_MouseIsLocked) {
//Mouse is not locked, send release event.
m_PickData = m_Renderer->Pick(glm::vec2(e.X, e.Y));
if(m_PickData.Entity != EntityID_Invalid && m_PickData.World == m_World) {
EntityWrapper ent = EntityWrapper(m_World, m_PickData.Entity);
Events::ButtonReleased eReleased;
eReleased.EntityName = m_PickEntity.Name();
eReleased.Entity = m_PickEntity;
m_EventBroker->Publish(eReleased);
if(m_World->HasComponent(m_PickData.Entity, "Button")) {
if (ent == m_PickEntity) {
//The entity you released the mouse button on is the same as you pressed it on. "Clicked"
Events::ButtonClicked eClicked;
eClicked.Entity = m_PickEntity;
eClicked.EntityName = m_PickEntity.Name();
m_EventBroker->Publish(eClicked);
}
}
}
}
return true;
}
void ButtonSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& cHealth, double dt)
{
}
+57
View File
@@ -0,0 +1,57 @@
#include "GUI/MainMenuSystem.h"
MainMenuSystem::MainMenuSystem(SystemParams params, IRenderer* renderer)
: System(params)
, ImpureSystem()
, m_Renderer(renderer)
{
EVENT_SUBSCRIBE_MEMBER(m_EPressed, &MainMenuSystem::OnButtonPress);
EVENT_SUBSCRIBE_MEMBER(m_EReleased, &MainMenuSystem::OnButtonRelease);
EVENT_SUBSCRIBE_MEMBER(m_EClicked, &MainMenuSystem::OnButtonClick);
}
void MainMenuSystem::Update(double dt)
{
}
bool MainMenuSystem::OnButtonClick(const Events::ButtonClicked& e)
{
if(e.EntityName == "Play") {
//Run play code
} else if(e.EntityName == "Connect") {
//Run connect code
} else if(e.EntityName == "Host") {
//Run host code
} else if(e.EntityName == "Quit") {
printf("No, you stay");
} else if (e.EntityName == "Res1080") {
glfwSetWindowSize(m_Renderer->Window(), 1920, 1080);
printf("\n1080");
} else if (e.EntityName == "Res720") {
glfwSetWindowSize(m_Renderer->Window(), 1280, 720);
glViewport(0, 0, 1280, 720);
printf("\n720");
} else if (e.EntityName == "Res480") {
glfwSetWindowSize(m_Renderer->Window(), 854, 480);
glViewport(0, 0, 854, 480);
printf("\n480");
} else if (e.EntityName == "FullScreen") {
printf("No fullscreen for now");
}
return true;
}
bool MainMenuSystem::OnButtonRelease(const Events::ButtonReleased& e)
{
return true;
}
bool MainMenuSystem::OnButtonPress(const Events::ButtonPressed& e)
{
return true;
}
+134 -16
View File
@@ -1,7 +1,7 @@
#include "Network/Client.h"
using namespace boost::asio::ip;
Client::Client(World* world, EventBroker* eventBroker)
Client::Client(World* world, EventBroker* eventBroker)
: Network(world, eventBroker)
{
// Asumes root node is EntityID_Invalid
@@ -13,6 +13,8 @@ Client::Client(World* world, EventBroker* eventBroker)
m_PlayerName = config->Get<std::string>("Networking.Name", "Raptorcopter");
m_SendInputIntervalMs = config->Get<int>("Networking.SendInputIntervalMs", 33);
LOG_INFO("Client initialized");
m_ServerlistRequest.Connect(m_PlayerName, "192.168.1.255", 32554);
}
Client::Client(World* world, EventBroker* eventBroker, std::unique_ptr<SnapshotFilter> snapshotFilter)
@@ -30,6 +32,8 @@ void Client::Connect(std::string address, int port)
EVENT_SUBSCRIBE_MEMBER(m_EInputCommand, &Client::OnInputCommand);
EVENT_SUBSCRIBE_MEMBER(m_EPlayerDamage, &Client::OnPlayerDamage);
EVENT_SUBSCRIBE_MEMBER(m_EPlayerSpawned, &Client::OnPlayerSpawned);
EVENT_SUBSCRIBE_MEMBER(m_EDoubleJump, &Client::OnDoubleJump);
EVENT_SUBSCRIBE_MEMBER(m_ESearchForServers, &Client::OnSearchForServers);
auto config = ResourceManager::Load<ConfigFile>("Config.ini");
m_Address = address;
if (address.empty()) {
@@ -66,6 +70,21 @@ void Client::Update()
}
while (m_ServerlistRequest.IsSocketAvailable()) {
Packet packet(MessageType::Invalid);
m_ServerlistRequest.Receive(packet);
if (packet.GetMessageType() == MessageType::ServerlistRequest) {
parseServerlist(packet);
}
}
if (m_SearchingForServers) {
if (m_SearchingTime < (1000* (std::clock() - m_StartSearchTime) / (double)CLOCKS_PER_SEC)) {
m_SearchingForServers = false;
displayServerlist();
}
}
if (m_IsConnected) {
// Don't send 1 input in 1 packet, bunch em up.
if (m_SendInputIntervalMs < (1000 * (std::clock() - m_TimeSinceSentInputs) / (double)CLOCKS_PER_SEC)) {
@@ -82,8 +101,7 @@ void Client::Update()
void Client::parseMessageType(Packet& packet)
{
// Pop packetSize which is used by TCP Client to
// create a packet of the correct size
// Pop packetSize
packet.ReadPrimitive<int>();
int messageType = packet.ReadPrimitive<int>();
if (messageType == -1)
@@ -122,6 +140,12 @@ void Client::parseMessageType(Packet& packet)
case MessageType::OnPlayerDamage:
parsePlayerDamage(packet);
break;
case MessageType::OnDoubleJump:
parseDoubleJump(packet);
break;
case MessageType::AmmoPickup:
parseAmmoPickup(packet);
break;
default:
break;
}
@@ -173,6 +197,22 @@ void Client::parsePing()
m_Reliable.Send(packet);
}
void Client::parseServerlist(Packet& packet)
{
// Pop size, message type, and ID
packet.ReadPrimitive<int>();
packet.ReadPrimitive<int>();
packet.ReadPrimitive<int>();
std::string address = packet.ReadString();
int port = packet.ReadPrimitive<int>();
std::string serverName = packet.ReadString();
int playersConnected = packet.ReadPrimitive<int>();
//TODO: This should not happen when a client is connected to a server
m_Serverlist.push_back({ address, port, serverName, playersConnected });
}
void Client::parseKick()
{
LOG_WARNING("You have been kicked from the server.");
@@ -190,12 +230,11 @@ void Client::parseSpawnEvents()
}
e.Player = EntityWrapper(m_World, m_ServerIDToClientID.at(m_PlayerSpawnEvents.at(i).Player.ID));
//e.Spawner = EntityWrapper(m_World, m_ServerIDToClientID.at(m_PlayerSpawnEvents.at(i).Spawner.ID));
e.PlayerID = -1;
e.PlayerID = -1;
e.PlayerName = m_PlayerSpawnEvents.at(i).PlayerName;
m_EventBroker->Publish(e);
}
m_PlayerSpawnEvents = tempSpawn;
// m_PlayerSpawnEvents.clear();
}
void Client::parsePlayersSpawned(Packet& packet)
@@ -223,8 +262,14 @@ void Client::parseEntityDeletion(Packet & packet)
if (m_ServerIDToClientID.find(entityToDelete) != m_ServerIDToClientID.end()) {
EntityID localEntity = m_ServerIDToClientID.at(entityToDelete);
if (m_World->ValidEntity(localEntity)) {
m_World->DeleteEntity(localEntity);
deleteFromServerClientMaps(entityToDelete, localEntity);
if (m_World->HasComponent(localEntity,"Player")) {
Events::PlayerDeath e;
e.Player = EntityWrapper(m_World, localEntity);
m_EventBroker->Publish(e);
} else {
m_World->DeleteEntity(localEntity);
deleteFromServerClientMaps(entityToDelete, localEntity);
}
}
}
}
@@ -238,6 +283,28 @@ void Client::parseComponentDeletion(Packet & packet)
}
}
void Client::parseDoubleJump(Packet & packet)
{
EntityID serverID = packet.ReadPrimitive<EntityID>();
if (!serverClientMapsHasEntity(serverID)) {
return;
}
Events::DoubleJump e;
e.entityID = m_ServerIDToClientID.at(serverID);
// If player is local player do not publish to prevent infinite feedback loop
if (e.entityID != m_LocalPlayer.ID) {
m_EventBroker->Publish(e);
}
}
void Client::parseAmmoPickup(Packet & packet)
{
Events::AmmoPickup e;
e.AmmoGain = packet.ReadPrimitive<int>();
e.Player = m_LocalPlayer;
m_EventBroker->Publish(e);
}
void Client::updateFields(Packet& packet, const ComponentInfo& componentInfo, const EntityID& entityID)
{
for (auto field : componentInfo.FieldsInOrder) {
@@ -312,19 +379,20 @@ void Client::parseSnapshot(Packet& packet)
if (serverClientMapsHasEntity(serverEntityID)) {
EntityID localEntityID = m_ServerIDToClientID.at(serverEntityID);
EntityWrapper localEntity(m_World, localEntityID);
// Update entity
if (m_World->HasComponent(localEntityID, componentType)) {
// TODO Fix memory leak here
SharedComponentWrapper newComponent = createSharedComponent(packet, localEntityID, componentInfo);
bool shouldApply = true;
// Apply potential filter function
if (m_SnapshotFilter != nullptr) {
shouldApply = m_SnapshotFilter->FilterComponent(localEntity, newComponent);
}
if (shouldApply) {
if (shouldApply) {
ComponentWrapper currentComponent = m_World->GetComponent(localEntityID, componentType);
memcpy(currentComponent.Data, newComponent.Data, componentInfo.Stride);
}
//if (localEntity != m_LocalPlayer && !localEntity.IsChildOf(m_LocalPlayer)) {
// updateFields(packet, componentInfo, localEntityID);
//} else {
@@ -341,7 +409,11 @@ void Client::parseSnapshot(Packet& packet)
if (serverParentID == EntityID_Invalid) {
newLocalEntityID = m_World->CreateEntity(EntityID_Invalid);
} else {
newLocalEntityID = m_World->CreateEntity(m_ServerIDToClientID.at(serverParentID));
if (serverClientMapsHasEntity(serverParentID)) {
newLocalEntityID = m_World->CreateEntity(m_ServerIDToClientID.at(serverParentID));
} else {
newLocalEntityID = m_World->CreateEntity(EntityID_Invalid);
}
}
m_World->SetName(newLocalEntityID, serverEntityName);
insertIntoServerClientMaps(serverEntityID, newLocalEntityID);
@@ -351,9 +423,11 @@ void Client::parseSnapshot(Packet& packet)
}
// Parent logic
// This should be enough beacause we know that the entities arives in pre-order (there will always be a parent)
if (serverParentID != EntityID_Invalid) {
if (serverParentID != EntityID_Invalid && serverClientMapsHasEntity(serverParentID)) {
EntityID localEntityID = m_ServerIDToClientID.at(serverEntityID);
m_World->SetParent(localEntityID, m_ServerIDToClientID.at(serverParentID));
if (m_World->GetParent(localEntityID) != m_ServerIDToClientID.at(serverParentID)) {
m_World->SetParent(localEntityID, m_ServerIDToClientID.at(serverParentID));
}
}
}
parseSpawnEvents();
@@ -371,6 +445,12 @@ void Client::disconnect()
bool Client::OnInputCommand(const Events::InputCommand & e)
{
// TEMP
if (e.Command == "SearchForServers" && e.Value > 0) {
Events::SearchForServers e;
m_EventBroker->Publish(e);
}
if (e.PlayerID != -1) {
return false;
}
@@ -415,6 +495,11 @@ bool Client::OnPlayerDamage(const Events::PlayerDamage & e)
if (e.Inflictor != m_LocalPlayer) {
return false;
}
// Could this happen?
//if (!clientServerMapsHasEntity(e.Inflictor.ID)
// || !clientServerMapsHasEntity(e.Victim.ID)) {
// return;
//}
Packet packet(MessageType::OnPlayerDamage, m_SendPacketID);
packet.WritePrimitive(m_ClientIDToServerID.at(e.Inflictor.ID));
@@ -433,15 +518,27 @@ bool Client::OnPlayerSpawned(const Events::PlayerSpawned& e)
return true;
}
bool Client::OnSearchForServers(const Events::SearchForServers& e)
{
m_SearchingForServers = true;
m_StartSearchTime = std::clock();
m_Serverlist.clear();
LOG_INFO("Searching for LAN servers...\n");
Packet packet(MessageType::ServerlistRequest);
m_ServerlistRequest.Broadcast(packet, 13); // TODO: Config
return true;
}
void Client::parsePlayerDamage(Packet& packet)
{
Events::PlayerDamage e;
PlayerID victimID = packet.ReadPrimitive<EntityID>();
if(serverClientMapsHasEntity(victimID)){
PlayerID inflictorID = packet.ReadPrimitive<EntityID>();
if (!serverClientMapsHasEntity(victimID) || !serverClientMapsHasEntity(inflictorID)) {
return;
}
e.Inflictor = EntityWrapper(m_World, m_ServerIDToClientID.at(victimID));
e.Victim = EntityWrapper(m_World, m_ServerIDToClientID.at(packet.ReadPrimitive<EntityID>()));
e.Victim = EntityWrapper(m_World, m_ServerIDToClientID.at(inflictorID));
e.Damage = packet.ReadPrimitive<double>();
// Don't rebroadcast our own player damage events or we'll have an infinite loop!
if (e.Inflictor != m_LocalPlayer) {
@@ -449,6 +546,17 @@ void Client::parsePlayerDamage(Packet& packet)
}
}
bool Client::OnDoubleJump(Events::DoubleJump & e)
{
if (!clientServerMapsHasEntity(e.entityID) || e.entityID != m_LocalPlayer.ID) {
return false;
}
Packet packet(MessageType::OnDoubleJump);
packet.WritePrimitive(m_ClientIDToServerID.at(e.entityID));
m_Reliable.Send(packet);
return true;
}
void Client::sendLocalPlayerTransform()
{
if (!m_LocalPlayer.Valid()) {
@@ -466,7 +574,7 @@ void Client::sendLocalPlayerTransform()
packet.WritePrimitive(orientation.x);
packet.WritePrimitive(orientation.y);
packet.WritePrimitive(orientation.z);
bool hasAssaultWeapon = m_LocalPlayer.HasComponent("AssaultWeapon");
packet.WritePrimitive(hasAssaultWeapon);
if (hasAssaultWeapon) {
@@ -474,7 +582,7 @@ void Client::sendLocalPlayerTransform()
packet.WritePrimitive((int)cAssaultWeapon["MagazineAmmo"]);
packet.WritePrimitive((int)cAssaultWeapon["Ammo"]);
}
m_Unreliable.Send(packet);
}
@@ -527,6 +635,16 @@ void Client::becomePlayer()
m_Reliable.Send(packet);
}
void Client::displayServerlist()
{
LOG_INFO("This is a serverlist:\n");
for (int i = 0; i < m_Serverlist.size(); i++) {
ServerInfo si = m_Serverlist[i];
LOG_INFO("%s:%i\t%s\t%i\n", si.Address.c_str(), si.Port, si.Name.c_str(), si.PlayersConnected);
}
}
bool Client::clientServerMapsHasEntity(EntityID clientEntityID)
{
if (m_ClientIDToServerID.find(clientEntityID) != m_ClientIDToServerID.end()) {
-10
View File
@@ -1,10 +0,0 @@
#include "Network/HybridClient.h"
HybridClient::HybridClient()
{
}
HybridClient::~HybridClient()
{
}
-9
View File
@@ -1,9 +0,0 @@
#include "Network/HybridServer.h"
HybridServer::HybridServer()
{
}
HybridServer::~HybridServer()
{
}
+11
View File
@@ -0,0 +1,11 @@
#include "Network/NetworkClient.h"
NetworkClient::NetworkClient()
{
m_ReadBuffer = new char[m_BufferSize];
}
NetworkClient::~NetworkClient()
{
delete[] m_ReadBuffer;
}
+11
View File
@@ -0,0 +1,11 @@
#include "Network/NetworkServer.h"
NetworkServer::NetworkServer()
{
m_ReadBuffer = new char[m_BufferSize];
}
NetworkServer::~NetworkServer()
{
delete[] m_ReadBuffer;
}
+128 -17
View File
@@ -1,7 +1,8 @@
#include "Network/Server.h"
Server::Server(World* world, EventBroker* eventBroker, int port)
Server::Server(World* world, EventBroker* eventBroker, int port)
: Network(world, eventBroker)
, m_ServerlistRequest(13)
{
ConfigFile* config = ResourceManager::Load<ConfigFile>("Config.ini");
snapshotInterval = 1000 * config->Get<float>("Networking.SnapshotInterval", 0.05f);
@@ -12,8 +13,8 @@ Server::Server(World* world, EventBroker* eventBroker, int port)
EVENT_SUBSCRIBE_MEMBER(m_EEntityDeleted, &Server::OnEntityDeleted);
EVENT_SUBSCRIBE_MEMBER(m_EComponentDeleted, &Server::OnComponentDeleted);
EVENT_SUBSCRIBE_MEMBER(m_EPlayerDamage, &Server::OnPlayerDamage);
// Bind
EVENT_SUBSCRIBE_MEMBER(m_EAmmoPickup, &Server::OnAmmoPickup);
// BindWW
if (port == 0) {
port = config->Get<float>("Networking.Port", 27666);
}
@@ -28,9 +29,8 @@ Server::~Server()
void Server::Update()
{
PlayerDefinition pd;
m_Reliable.AcceptNewConnections(m_NextPlayerID, m_ConnectedPlayers);
for (auto& kv : m_ConnectedPlayers) {
while (kv.second.TCPSocket->available()) {
// Packet will get real data in receive
@@ -46,6 +46,7 @@ void Server::Update()
}
}
PlayerDefinition pd;
while (m_Unreliable.IsSocketAvailable()) {
// Packet will get real data in receive
Packet packet(MessageType::Invalid);
@@ -58,6 +59,22 @@ void Server::Update()
parseMessageType(packet);
}
}
while (m_ServerlistRequest.IsSocketAvailable()) {
Packet packet(MessageType::Invalid);
PlayerDefinition localArea;
localArea.Endpoint = boost::asio::ip::udp::endpoint();
m_ServerlistRequest.Receive(packet, localArea);
if (packet.GetMessageType() == MessageType::ServerlistRequest) {
packet.ReadPrimitive<int>(); // Pop size
packet.ReadPrimitive<int>(); // Pop MsgType
packet.ReadPrimitive<int>(); // Pop packet ID
int port = packet.ReadPrimitive<int>();
std::string address = localArea.Endpoint.address().to_string();
parseServerlistRequest(boost::asio::ip::udp::endpoint(boost::asio::ip::address().from_string(address), port));
}
}
// Check if players have disconnected
for (int i = 0; i < m_PlayersToDisconnect.size(); i++) {
disconnect(m_PlayersToDisconnect.at(i));
@@ -75,6 +92,7 @@ void Server::Update()
sendPing();
previousePingMessage = currentTime;
}
// Time out logic
if (checkTimeOutInterval < (1000 * (currentTime - timOutTimer) / (double)CLOCKS_PER_SEC)) {
checkForTimeOuts();
@@ -84,7 +102,6 @@ void Server::Update()
if (isReadingData) {
Network::Update();
}
}
void Server::parseMessageType(Packet& packet)
@@ -121,6 +138,9 @@ void Server::parseMessageType(Packet& packet)
case MessageType::PlayerTransform:
parsePlayerTransform(packet);
break;
case MessageType::OnDoubleJump:
parseDoubleJump(packet);
break;
default:
break;
}
@@ -147,7 +167,7 @@ void Server::sendSnapshot()
{
Packet packet(MessageType::Snapshot);
addInputCommandsToPacket(packet);
addChildrenToPacket(packet, EntityID_Invalid);
addPlayersToPacket(packet, EntityID_Invalid);
unreliableBroadcast(packet);
}
@@ -164,19 +184,61 @@ void Server::addInputCommandsToPacket(Packet& packet)
m_InputCommandsToBroadcast.clear();
}
void Server::addChildrenToPacket(Packet & packet, EntityID entityID)
void Server::addPlayersToPacket(Packet & packet, EntityID entityID)
{
auto itPair = m_World->GetChildren(entityID);
auto itPair = m_World->GetDirectChildren(entityID);
std::unordered_map<std::string, ComponentPool*> worldComponentPools = m_World->GetComponentPools();
// Loop through every child
for (auto it = itPair.first; it != itPair.second; it++) {
EntityID childEntityID = it->second;
// HACK: Only sync players for now, since the map turned out to be TOO LARGE to send in one snapshot and Simon's computer shits itself
// HACK: Also checked CapturePointHUD for now. (this would get out of sync);
EntityWrapper childEntity(m_World, childEntityID);
if (!shouldSendToClient(childEntity)) {
continue;
if (shouldSendToClient(childEntity)) {
// Write EntityID and parentsID and Entity name
packet.WritePrimitive(childEntityID);
packet.WritePrimitive(entityID);
packet.WriteString(m_World->GetName(childEntityID));
// Write components to child
int numberOfComponents = 0;
for (auto& i : worldComponentPools) {
if (i.second->KnowsEntity(childEntityID)) {
numberOfComponents++;
}
}
// Write how many components should be read
packet.WritePrimitive(numberOfComponents);
for (auto& i : worldComponentPools) {
// If the entity exist in the pool
if (i.second->KnowsEntity(childEntityID)) {
ComponentWrapper componentWrapper = i.second->GetByEntity(childEntityID);
// ComponentType
packet.WriteString(componentWrapper.Info.Name);
// Loop through fields
for (auto& componentField : componentWrapper.Info.FieldsInOrder) {
ComponentInfo::Field_t fieldInfo = componentWrapper.Info.Fields.at(componentField);
if (fieldInfo.Type == "string") {
std::string& value = componentWrapper[componentField];
packet.WriteString(value);
} else {
packet.WriteData(componentWrapper.Data + fieldInfo.Offset, fieldInfo.Stride);
}
}
}
}
}
// Go to to your children
addPlayersToPacket(packet, childEntityID);
}
}
void Server::addChildrenToPacket(Packet & packet, EntityID entityID)
{
auto itPair = m_World->GetDirectChildren(entityID);
std::unordered_map<std::string, ComponentPool*> worldComponentPools = m_World->GetComponentPools();
// Loop through every child
for (auto it = itPair.first; it != itPair.second; it++) {
EntityID childEntityID = it->second;
// Write EntityID and parentsID and Entity name
packet.WritePrimitive(childEntityID);
packet.WritePrimitive(entityID);
@@ -231,6 +293,8 @@ void Server::sendPing()
reliableBroadcast(packet);
}
void Server::checkForTimeOuts()
{
double startPing = 1000 * m_StartPingTime
@@ -280,7 +344,7 @@ void Server::parseTCPConnect(Packet & packet)
// Read packet ID
m_PreviousPacketID = m_PacketID; // Set previous packet id
m_PacketID = packet.ReadPrimitive<int>(); //Read new packet id
LOG_INFO("Parsing connections");
// Check if player is already connected
// Ska vara till lagd i TCPServer receive
@@ -305,6 +369,11 @@ void Server::parseTCPConnect(Packet & packet)
connnectPacket.WritePrimitive(playerID);
m_Reliable.Send(connnectPacket);
Packet firstSnapshot(MessageType::Snapshot);
addInputCommandsToPacket(firstSnapshot);
addChildrenToPacket(firstSnapshot, EntityID_Invalid);
m_Reliable.Send(firstSnapshot);
// Send notification that a player has connected
//Packet notificationPacket(MessageType::PlayerConnected);
//broadcast(notificationPacket);
@@ -323,6 +392,17 @@ void Server::parseDisconnect()
}
}
void Server::parseServerlistRequest(boost::asio::ip::udp::endpoint endpoint)
{
Packet packet(MessageType::ServerlistRequest);
packet.WriteString(m_Reliable.Address());
packet.WritePrimitive<int>(m_Reliable.Port());
packet.WriteString("SERVERNAME");
packet.WritePrimitive<int>(m_ConnectedPlayers.size());
m_ServerlistRequest.Send(packet);
}
void Server::disconnect(PlayerID playerID)
{
//broadcast("A player disconnected");
@@ -347,6 +427,7 @@ void Server::parseOnPlayerDamage(Packet & packet)
e.Victim = EntityWrapper(m_World, packet.ReadPrimitive<EntityID>());
e.Damage = packet.ReadPrimitive<double>();
m_EventBroker->Publish(e);
//LOG_DEBUG("Server::parseOnPlayerDamage: Command is %s. Value is %f. PlayerID is %i.", e.DamageAmount, e.PlayerDamagedID, e.TypeOfDamage.c_str());
}
@@ -375,8 +456,7 @@ bool Server::OnInputCommand(const Events::InputCommand & e)
}
isReadingData = !isReadingData;
m_SaveDataTimer = std::clock();
}
if (e.Command == "KickPlayer" && e.Value > 0) {
} else if (e.Command == "KickPlayer" && e.Value > 0) {
kick(0);
}
@@ -427,7 +507,20 @@ bool Server::OnPlayerDamage(const Events::PlayerDamage& e)
packet.WritePrimitive(e.Damage);
reliableBroadcast(packet);
return false;
return true;
}
bool Server::OnAmmoPickup(const Events::AmmoPickup & e)
{
for (auto& kv : m_ConnectedPlayers) {
if (e.Player.ID == kv.second.EntityID) {
Packet packet(MessageType::AmmoPickup);
// We dont send playerID as it will be set at client to local
packet.WritePrimitive(e.AmmoGain);
m_Reliable.Send(packet, kv.second);
}
}
return true;
}
void Server::parseClientPing()
@@ -447,13 +540,21 @@ void Server::parsePing()
{
for (auto& kv : m_ConnectedPlayers) {
if (kv.second.TCPAddress == m_Address &&
kv.second.TCPPort == m_Port) {
kv.second.TCPPort == m_Port
|| (kv.second.Endpoint.address() == m_Address
&& kv.second.Endpoint.port() == m_Port)) {
kv.second.StopTime = std::clock();
break;
}
}
}
bool Server::parseDoubleJump(Packet & packet)
{
reliableBroadcast(packet);
return true;
}
void Server::parseOnInputCommand(Packet& packet)
{
PlayerID player = -1;
@@ -513,7 +614,17 @@ void Server::parsePlayerTransform(Packet& packet)
bool Server::shouldSendToClient(EntityWrapper childEntity)
{
return childEntity.HasComponent("Player") || childEntity.FirstParentWithComponent("Player").Valid();
auto children = m_World->GetDirectChildren(childEntity.ID);
for (auto it = children.first; it != children.second; it++) {
EntityWrapper child(m_World, it->second);
if (child.HasComponent("CapturePoint") || child.HasComponent("HealthPickup")
|| child.HasComponent("AmmoPickup")) {
return true;
}
}
return childEntity.HasComponent("Player") || childEntity.FirstParentWithComponent("Player").Valid()
|| childEntity.HasComponent("CapturePoint") || childEntity.HasComponent("HealthPickup")
|| childEntity.HasComponent("AmmoPickup");
}
PlayerID Server::GetPlayerIDFromEndpoint()
+19 -9
View File
@@ -56,32 +56,42 @@ void TCPClient::Disconnect()
void TCPClient::Receive(Packet& packet)
{
size_t bytesRead = readBuffer(m_ReadBuffer);
size_t bytesRead = readBuffer();
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
}
size_t TCPClient::readBuffer(char* data)
size_t TCPClient::readBuffer()
{
if (!m_Socket) {
return 0;
}
boost::system::error_code error;
// Read size of packet
size_t bytesReceived = m_Socket->read_some(boost
::asio::buffer((void*)data, sizeof(int)),
error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, data, sizeof(int));
m_Socket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
// TODO if message is huge 1 time the buffer will not decrease.
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
bytesReceived += m_Socket->read_some(boost
::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
size_t bytesReceived = m_Socket->read_some(boost
::asio::buffer((void*)(m_ReadBuffer), sizeOfPacket),
error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
+54 -37
View File
@@ -1,25 +1,38 @@
#include "Network/TCPServer.h"
using namespace boost::asio::ip;
TCPServer::TCPServer()
TCPServer::TCPServer()
{
acceptor = std::unique_ptr<tcp::acceptor>(new tcp::acceptor(m_IOService, tcp::endpoint(tcp::v4(), 27666)));
// Make the acceptor non-blocking so we wont get stuck in AcceptNewConnections().
acceptor->non_blocking(true);
m_Port = GetPort();
m_Address = GetAddress();
}
TCPServer::~TCPServer()
{
}
{ }
void TCPServer::AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers)
{
boost::system::error_code error;
boost::shared_ptr<tcp::socket> newSocket = boost::shared_ptr<tcp::socket>(new tcp::socket(m_IOService));
m_IOService.poll();
acceptor->async_accept(*newSocket,
boost::bind(&TCPServer::handle_accept, this, newSocket, boost::ref(nextPlayerID), boost::ref(connectedPlayers),
boost::asio::placeholders::error));
acceptor->accept(*newSocket, error);
// If no error occured add new tcp connection
if (!error) {
// Add tcp socket to connections
boost::asio::ip::tcp::no_delay option(true);
newSocket->set_option(option);
PlayerDefinition pd;
pd.StopTime = std::clock();
pd.TCPSocket = newSocket;
pd.TCPAddress = newSocket.get()->remote_endpoint().address();
pd.TCPPort = newSocket.get()->remote_endpoint().port();
connectedPlayers[nextPlayerID++] = pd;
}
}
PlayerID GetPlayerIDFromEndpoint(const std::map<PlayerID, PlayerDefinition>& connectedPlayers,
PlayerID TCPServer::getPlayerIDFromEndpoint(const std::map<PlayerID, PlayerDefinition>& connectedPlayers,
boost::asio::ip::address address, unsigned short port)
{
for (auto& kv : connectedPlayers) {
@@ -31,28 +44,10 @@ PlayerID GetPlayerIDFromEndpoint(const std::map<PlayerID, PlayerDefinition>& con
return -1;
}
void TCPServer::handle_accept(boost::shared_ptr<tcp::socket> socket,
int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers,
const boost::system::error_code& error)
{
if (!error && GetPlayerIDFromEndpoint(connectedPlayers, socket->remote_endpoint().address(),
socket->remote_endpoint().port()) == -1) {
// Add tcp socket to connections
boost::asio::ip::tcp::no_delay option(true);
socket->set_option(option);
PlayerDefinition pd;
pd.StopTime = std::clock();
pd.TCPSocket = socket;
pd.TCPAddress = socket.get()->remote_endpoint().address();
pd.TCPPort = socket.get()->remote_endpoint().port();
connectedPlayers[nextPlayerID++] = pd;
}
}
void TCPServer::Send(Packet & packet, PlayerDefinition & playerDefinition)
{
packet.UpdateSize();
try {
packet.UpdateSize();
int bytesSent = playerDefinition.TCPSocket->send(
boost::asio::buffer(packet.Data(), packet.Size()),
0);
@@ -73,38 +68,60 @@ void TCPServer::Send(Packet & packet)
}
void TCPServer::Disconnect()
{
{
}
int TCPServer::GetPort()
{
return acceptor->local_endpoint().port();
}
std::string TCPServer::GetAddress()
{
boost::asio::ip::tcp::resolver resolver(m_IOService);
boost::asio::ip::tcp::resolver::query query(boost::asio::ip::tcp::v4(), boost::asio::ip::host_name(), "");
boost::asio::ip::tcp::resolver::iterator it = resolver.resolve(query);
boost::asio::ip::tcp::endpoint endpoint = *it;
return endpoint.address().to_string().c_str();
}
void TCPServer::Receive(Packet & packet, PlayerDefinition & playerDefinition)
{
int bytesRead = readBuffer(m_ReadBuffer, playerDefinition);
int bytesRead = readBuffer(playerDefinition);
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
lastReceivedSocket = playerDefinition.TCPSocket;
}
int TCPServer::readBuffer(char* data, PlayerDefinition & playerDefinition)
int TCPServer::readBuffer(PlayerDefinition & playerDefinition)
{
if (!playerDefinition.TCPSocket) {
return 0;
}
boost::system::error_code error;
// Read size of packet
size_t bytesReceived = playerDefinition.TCPSocket->read_some(boost
::asio::buffer((void*)data, sizeof(int)),
error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, data, sizeof(int));
playerDefinition.TCPSocket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
bytesReceived += playerDefinition.TCPSocket->read_some(boost
::asio::buffer((void*)(data + bytesReceived), sizeOfPacket - bytesReceived),
size_t bytesReceived = playerDefinition.TCPSocket->read_some(boost
::asio::buffer((void*)(m_ReadBuffer), sizeOfPacket),
error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
+40 -8
View File
@@ -15,9 +15,9 @@ void UDPClient::Connect(std::string playerName, std::string address, int port)
if (m_Socket) {
return;
}
m_ReceiverEndpoint = udp::endpoint(boost::asio::ip::address::from_string(address), port);
m_ReceiverEndpoint = udp::endpoint(boost::asio::ip::address().from_string(address), port);
m_Socket = boost::shared_ptr<boost::asio::ip::udp::socket>(new boost::asio::ip::udp::socket(m_IOService));
m_Socket->connect(m_ReceiverEndpoint);
m_Socket->open(boost::asio::ip::udp::v4());
}
void UDPClient::Disconnect()
@@ -27,34 +27,66 @@ void UDPClient::Disconnect()
void UDPClient::Receive(Packet& packet)
{
int bytesRead = readBuffer(m_ReadBuffer);
int bytesRead = readBuffer();
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
}
int UDPClient::readBuffer(char* data)
int UDPClient::readBuffer()
{
if (!m_Socket) {
return 0;
}
boost::system::error_code error;
int bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)data, BUFFERSIZE),
m_ReceiverEndpoint,
0, error);
// Read size of packet
m_Socket->receive(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
boost::asio::ip::udp::socket::message_peek, error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
size_t availableData = m_Socket->available();
// Read the rest of the message
size_t bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)(m_ReadBuffer),
sizeOfPacket),
m_ReceiverEndpoint, 0, error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
void UDPClient::Send(Packet& packet)
{
packet.UpdateSize();
m_Socket->send_to(boost::asio::buffer(
packet.Data(),
packet.Size()),
m_ReceiverEndpoint, 0);
}
void UDPClient::Broadcast(Packet& packet, int port)
{
packet.UpdateSize();
m_Socket->set_option(boost::asio::socket_base::broadcast(true));
m_Socket->send_to(boost::asio::buffer(
packet.Data(),
packet.Size()),
udp::endpoint(boost::asio::ip::address_v4().broadcast(), port)
, 0);
m_Socket->set_option(boost::asio::socket_base::broadcast(false));
}
bool UDPClient::IsSocketAvailable()
+65 -10
View File
@@ -5,11 +5,17 @@ UDPServer::UDPServer()
m_Socket = std::unique_ptr<boost::asio::ip::udp::socket>(new boost::asio::ip::udp::socket(m_IOService, boost::asio::ip::udp::endpoint(boost::asio::ip::udp::v4(), 27666)));
}
UDPServer::UDPServer(int port)
{
m_Socket = std::unique_ptr<boost::asio::ip::udp::socket>(new boost::asio::ip::udp::socket(m_IOService, boost::asio::ip::udp::endpoint(boost::asio::ip::udp::v4(), port)));
}
UDPServer::~UDPServer()
{ }
void UDPServer::Send(Packet& packet, PlayerDefinition & playerDefinition)
{
packet.UpdateSize();
try {
int bytesSent = m_Socket->send_to(
boost::asio::buffer(packet.Data(), packet.Size()),
@@ -23,6 +29,7 @@ void UDPServer::Send(Packet& packet, PlayerDefinition & playerDefinition)
// Send back to endpoint of received packet
void UDPServer::Send(Packet & packet)
{
packet.UpdateSize();
m_Socket->send_to(
boost::asio::buffer(
packet.Data(),
@@ -31,9 +38,35 @@ void UDPServer::Send(Packet & packet)
0);
}
// Broadcasting respond specific logic
void UDPServer::Send(Packet & packet, boost::asio::ip::udp::endpoint endpoint)
{
packet.UpdateSize();
m_Socket->send_to(
boost::asio::buffer(
packet.Data(),
packet.Size()),
endpoint,
0);
}
// Broadcasting
void UDPServer::Broadcast(Packet & packet, int port)
{
packet.UpdateSize();
m_Socket->set_option(boost::asio::socket_base::broadcast(true));
m_Socket->send_to(
boost::asio::buffer(
packet.Data(),
packet.Size()),
boost::asio::ip::udp::endpoint(boost::asio::ip::address_v4().broadcast(),port),
0);
m_Socket->set_option(boost::asio::socket_base::broadcast(false));
}
void UDPServer::Receive(Packet & packet, PlayerDefinition & playerDefinition)
{
int bytesRead = readBuffer(m_ReadBuffer);
int bytesRead = readBuffer();
if (bytesRead > 0) {
packet.ReconstructFromData(m_ReadBuffer, bytesRead);
}
@@ -45,17 +78,39 @@ bool UDPServer::IsSocketAvailable()
return m_Socket->available();
}
int UDPServer::readBuffer(char* data)
int UDPServer::readBuffer()
{
boost::system::error_code error = boost::asio::error::host_not_found;
unsigned int length = m_Socket->receive_from(
boost::asio::buffer((void*)data
, BUFFERSIZE)
, m_ReceiverEndpoint, 0, error);
if (error) {
LOG_WARNING(error.message().c_str());
if (!m_Socket) {
return 0;
}
return length;
int addasdasd = m_Socket->available();
boost::system::error_code error;
// Read size of packet
m_Socket->receive_from(boost
::asio::buffer((void*)m_ReadBuffer, sizeof(int)),
m_ReceiverEndpoint, boost::asio::ip::udp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
m_ReadBuffer = new char[sizeOfPacket];
m_BufferSize = sizeOfPacket;
}
// Read the rest of the message
size_t bytesReceived = m_Socket->receive_from(boost
::asio::buffer((void*)(m_ReadBuffer),
sizeOfPacket),
m_ReceiverEndpoint, 0, error);
if (error) {
//LOG_ERROR("receive: %s", error.message().c_str());
}
if (sizeOfPacket > 1000000)
LOG_WARNING("The packets received are bigger than 1MB");
return bytesReceived;
}
void UDPServer::AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers)
+41
View File
@@ -0,0 +1,41 @@
#include "Rendering/CubeMapPass.h"
CubeMapPass::CubeMapPass(IRenderer* renderer)
:m_Renderer(renderer)
{
LoadTextures("Nevada");
}
void CubeMapPass::LoadTextures(std::string input)
{
if (m_PreviusCubeMapTexture != input) {
m_CubeMapTextures.clear();
for (int i = 0; i < 6; i++) {
std::string str;
str = "Textures/Test/CubeMap/" + input + "/CubeMapTest0" + std::to_string(i) + ".png";
Texture* img = ResourceManager::Load<Texture>(str);
m_CubeMapTextures.push_back(img);
}
GenerateCubeMapTexture();
m_PreviusCubeMapTexture = input;
}
}
void CubeMapPass::GenerateCubeMapTexture()
{
if (m_CubeMapTexture == -1) {
glGenTextures(1, &m_CubeMapTexture);
}
glBindTexture(GL_TEXTURE_CUBE_MAP, m_CubeMapTexture);
for (int i = 0; i < 6; i++) {
glTexImage2D(GL_TEXTURE_CUBE_MAP_POSITIVE_X + i, 0, GL_RGBA32F, m_CubeMapTextures[0]->Width, m_CubeMapTextures[0]->Height, 0, GL_RGBA, GL_UNSIGNED_BYTE, m_CubeMapTextures[i]->Data);
}
glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
glTexParameteri(GL_TEXTURE_CUBE_MAP, GL_TEXTURE_WRAP_R, GL_CLAMP_TO_EDGE);
GLERROR("Generate Cubemap");
}
+78 -42
View File
@@ -1,65 +1,101 @@
#include "Rendering/DrawBloomPass.h"
DrawBloomPass::DrawBloomPass(IRenderer* renderer)
DrawBloomPass::DrawBloomPass(IRenderer* renderer, ConfigFile* config)
: m_Renderer(renderer)
, m_Config(config)
{
m_Renderer = renderer;
InitializeTextures();
m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.mesh");
InitializeTextures();
InitializeBuffers();
InitializeShaderPrograms();
ChangeQuality(m_Config->Get<int>("GLOW.Quality", 2));
}
void DrawBloomPass::InitializeTextures()
{
m_WhiteTexture = CommonFunctions::LoadTexture("Textures/Core/White.png", false);
m_BlackTexture = CommonFunctions::LoadTexture("Textures/Core/Black.png", false);
}
void DrawBloomPass::ChangeQuality(int quality)
{
if (m_Quality == quality) {
return;
}
m_Quality = quality;
m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.mesh");
if (m_Quality == 0) {
CommonFunctions::DeleteTexture(&m_GaussianTexture_horiz);
CommonFunctions::DeleteTexture(&m_GaussianTexture_vert);
m_GaussianTexture_horiz = 0;
m_GaussianTexture_vert = 0;
return;
}
InitializeTextures();
InitializeBuffers();
InitializeShaderPrograms();
std::string qStr = std::to_string(m_Quality);
m_Iterations = m_Config->Get<float>("GLOW" + qStr + ".NumIterations", 0);
}
void DrawBloomPass::InitializeShaderPrograms()
{
m_GaussianProgram_horiz = ResourceManager::Load<ShaderProgram>("##GaussianProgramHoriz");
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_horiz.vert.glsl")));
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_horiz.frag.glsl")));
m_GaussianProgram_horiz->Compile();
m_GaussianProgram_horiz->Link();
if (m_GaussianProgram_horiz->GetHandle() == 0) {
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_horiz.vert.glsl")));
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_horiz.frag.glsl")));
m_GaussianProgram_horiz->Compile();
m_GaussianProgram_horiz->Link();
}
m_GaussianProgram_vert = ResourceManager::Load<ShaderProgram>("##GaussianProgramVert");
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_vert.vert.glsl")));
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_vert.frag.glsl")));
m_GaussianProgram_vert->Compile();
m_GaussianProgram_vert->Link();
m_GaussianProgram_vert = ResourceManager::Load<ShaderProgram>("##GaussianProgramVert");
if (m_GaussianProgram_vert->GetHandle() == 0) {
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_vert.vert.glsl")));
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_vert.frag.glsl")));
m_GaussianProgram_vert->Compile();
m_GaussianProgram_vert->Link();
}
}
void DrawBloomPass::InitializeBuffers()
{
GenerateTexture(&m_GaussianTexture_horiz, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
CommonFunctions::GenerateTexture(&m_GaussianTexture_horiz, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
m_GaussianFrameBuffer_horiz.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_GaussianTexture_horiz, GL_COLOR_ATTACHMENT0)));
m_GaussianFrameBuffer_horiz.Generate();
if (m_GaussianFrameBuffer_horiz.GetHandle() == 0) {
m_GaussianFrameBuffer_horiz.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_GaussianTexture_horiz, GL_COLOR_ATTACHMENT0)));
}
m_GaussianFrameBuffer_horiz.Generate();
GenerateTexture(&m_GaussianTexture_vert, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
m_GaussianFrameBuffer_vert.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_GaussianTexture_vert, GL_COLOR_ATTACHMENT0)));
m_GaussianFrameBuffer_vert.Generate();
CommonFunctions::GenerateTexture(&m_GaussianTexture_vert, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
if (m_GaussianFrameBuffer_vert.GetHandle() == 0) {
m_GaussianFrameBuffer_vert.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_GaussianTexture_vert, GL_COLOR_ATTACHMENT0)));
}
m_GaussianFrameBuffer_vert.Generate();
}
void DrawBloomPass::ClearBuffer()
{
if (m_Quality == 0) {
return;
}
GLERROR("PRE");
m_GaussianFrameBuffer_horiz.Bind();
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
glClear(GL_COLOR_BUFFER_BIT);
m_GaussianFrameBuffer_horiz.Unbind();
m_GaussianFrameBuffer_vert.Bind();
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
glClear(GL_COLOR_BUFFER_BIT);
m_GaussianFrameBuffer_vert.Unbind();
GLERROR("END");
}
void DrawBloomPass::Draw(GLuint texture)
{
if (m_Quality == 0) {
return;
}
GLERROR("DrawBloomPass::Draw: Pre");
DrawBloomPassState state;
@@ -71,39 +107,39 @@ void DrawBloomPass::Draw(GLuint texture)
//Horizontal pass, first use the given texture then save it to the horizontal framebuffer.
m_GaussianFrameBuffer_horiz.Bind();
m_GaussianProgram_horiz->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, texture);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//Iterate some times to make it more gaussian.
for (int i = 1; i < m_iterations; i++) {
for (int i = 1; i < m_Iterations; i++) {
//Vertical pass
m_GaussianFrameBuffer_vert.Bind();
m_GaussianProgram_vert->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_GaussianTexture_horiz);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//horizontal pass
m_GaussianFrameBuffer_vert.Unbind();
m_GaussianFrameBuffer_horiz.Bind();
m_GaussianProgram_horiz->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_GaussianTexture_vert);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
m_GaussianFrameBuffer_horiz.Unbind();
}
//final vertical gaussian after the iterations are done
@@ -111,8 +147,8 @@ void DrawBloomPass::Draw(GLuint texture)
m_GaussianFrameBuffer_vert.Bind();
m_GaussianProgram_vert->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_GaussianTexture_horiz);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex +1
@@ -121,14 +157,14 @@ void DrawBloomPass::Draw(GLuint texture)
GLERROR("DrawBloomPass::Draw: END");
}
void DrawBloomPass::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const
void DrawBloomPass::OnWindowResize()
{
glGenTextures(1, texture);
glBindTexture(GL_TEXTURE_2D, *texture);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filtering);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filtering);
glTexImage2D(GL_TEXTURE_2D, 0, internalFormat, dimensions.x, dimensions.y, 0, format, type, nullptr);//TODO: Renderer: Fix the precision and Resolution
GLERROR("Texture initialization failed");
if (m_Quality == 0) {
return;
}
CommonFunctions::GenerateTexture(&m_GaussianTexture_vert, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
m_GaussianFrameBuffer_vert.Generate();
CommonFunctions::GenerateTexture(&m_GaussianTexture_horiz, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RGB16F, GL_RGB, GL_FLOAT);
m_GaussianFrameBuffer_horiz.Generate();
}
@@ -18,7 +18,7 @@ void DrawColorCorrectionPass::InitializeShaderPrograms()
m_ColorCorrectionProgram->Link();
}
void DrawColorCorrectionPass::Draw(GLuint sceneTexture, GLuint bloomTexture, GLuint sceneTextureLowRes, GLuint bloomTextureLowRes, GLfloat gamma, GLfloat exposure)
void DrawColorCorrectionPass::Draw(GLuint sceneTexture, GLuint bloomTexture, GLfloat gamma, GLfloat exposure)
{
//glBindFramebuffer(GL_FRAMEBUFFER, 0);
GLERROR("DrawScreenQuadPass::Draw: Pre");
@@ -33,10 +33,6 @@ void DrawColorCorrectionPass::Draw(GLuint sceneTexture, GLuint bloomTexture, GLu
glBindTexture(GL_TEXTURE_2D, sceneTexture);
glActiveTexture(GL_TEXTURE1);
glBindTexture(GL_TEXTURE_2D, bloomTexture);
glActiveTexture(GL_TEXTURE2);
glBindTexture(GL_TEXTURE_2D, sceneTextureLowRes);
glActiveTexture(GL_TEXTURE3);
glBindTexture(GL_TEXTURE_2D, bloomTextureLowRes);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
File diff suppressed because it is too large Load Diff
+7 -8
View File
@@ -8,11 +8,12 @@ DrawFinalPassState::DrawFinalPassState(GLuint frameBuffer)
Enable(GL_BLEND);
BlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
Enable(GL_DEPTH_TEST);
DepthMask(GL_TRUE);
Enable(GL_CULL_FACE);
Enable(GL_STENCIL_TEST);
StencilFunc(GL_NOTEQUAL, 1, 0xFF);
StencilOp(GL_KEEP, GL_KEEP, GL_REPLACE);
StencilMask(0xFF);
// Enable(GL_STENCIL_TEST);
// StencilFunc(GL_NOTEQUAL, 1, 0xFF);
// StencilOp(GL_KEEP, GL_KEEP, GL_REPLACE);
// StencilMask(0xFF);
ClearColor(glm::vec4(0.f, 0.f, 0.f, 0.f));
}
@@ -24,11 +25,9 @@ DrawFinalPassState::~DrawFinalPassState()
DrawStencilState::DrawStencilState(GLuint frameBuffer)
{
BindFramebuffer(frameBuffer);
Enable(GL_STENCIL_TEST);
StencilOp(GL_KEEP, GL_KEEP, GL_REPLACE);
StencilFunc(GL_ALWAYS, 1, 0xFF);
StencilMask(0xFF);
Enable(GL_DEPTH_TEST);
DepthMask(GL_TRUE);
Enable(GL_CULL_FACE);
ClearColor(glm::vec4(0.f));
}
+23 -23
View File
@@ -42,38 +42,38 @@ void FrameBuffer::Generate()
GLERROR("PRE");
std::vector<GLenum> attachments;
glGenFramebuffers(1, &m_BufferHandle);
if (m_BufferHandle == 0) {
glGenFramebuffers(1, &m_BufferHandle);
}
glBindFramebuffer(GL_FRAMEBUFFER, m_BufferHandle);
GLERROR("1");
for (auto it = m_Resources.begin(); it != m_Resources.end(); it++) {
switch ((*it)->m_ResourceType) {
case GL_TEXTURE_2D:
glFramebufferTexture2D(GL_FRAMEBUFFER, (*it)->m_Attachment, (*it)->m_ResourceType, *(*it)->m_ResourceHandle, 0);
GLERROR("FrameBuffer generate: glFramebufferTexture2D");
for (auto it = m_Resources.begin(); it != m_Resources.end(); it++) {
switch ((*it)->m_ResourceType) {
case GL_TEXTURE_2D:
glFramebufferTexture2D(GL_FRAMEBUFFER, (*it)->m_Attachment, (*it)->m_ResourceType, *(*it)->m_ResourceHandle, 0);
GLERROR("FrameBuffer generate: glFramebufferTexture2D");
break;
case GL_RENDERBUFFER:
glFramebufferRenderbuffer(GL_FRAMEBUFFER, (*it)->m_Attachment, (*it)->m_ResourceType, *(*it)->m_ResourceHandle);
GLERROR("FrameBuffer generate: glFramebufferRenderbuffer");
break;
}
GLERROR("2");
break;
case GL_RENDERBUFFER:
glFramebufferRenderbuffer(GL_FRAMEBUFFER, (*it)->m_Attachment, (*it)->m_ResourceType, *(*it)->m_ResourceHandle);
GLERROR("FrameBuffer generate: glFramebufferRenderbuffer");
break;
}
GLERROR("2");
if ((*it)->m_Attachment != GL_DEPTH_ATTACHMENT && (*it)->m_Attachment != GL_STENCIL_ATTACHMENT && (*it)->m_Attachment != GL_DEPTH_STENCIL_ATTACHMENT) {
attachments.push_back((*it)->m_Attachment);
}
GLERROR("Attachment");
}
GLERROR("3");
if ((*it)->m_Attachment != GL_DEPTH_ATTACHMENT && (*it)->m_Attachment != GL_STENCIL_ATTACHMENT && (*it)->m_Attachment != GL_DEPTH_STENCIL_ATTACHMENT) {
attachments.push_back((*it)->m_Attachment);
}
GLERROR("Attachment");
}
GLERROR("3");
GLenum* bufferTextures = &attachments[0];
glDrawBuffers(attachments.size(), bufferTextures);
if(GLERROR("4")) {
printf("hello");
if (GLERROR("GLBufferAttachement error")) {
printf(": AttachmentSize %i", attachments.size());
}
if (GLenum frameBufferStatus = glCheckFramebufferStatus(GL_FRAMEBUFFER) != GL_FRAMEBUFFER_COMPLETE) {
+28
View File
@@ -110,6 +110,34 @@ void LightCullingPass::FillLightList(RenderScene& scene)
}
}
void LightCullingPass::OnWindowResize()
{
SetSSBOSizes();
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_FrustumSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(Frustum)*m_NumberOfTiles, nullptr, GL_DYNAMIC_COPY);
GLERROR("m_FrustumSSBO");
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(LightSource) * 200, nullptr, GL_DYNAMIC_COPY);
GLERROR("m_LightSSBO");
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightGridSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(LightGrid)*m_NumberOfTiles, nullptr, GL_DYNAMIC_COPY);
GLERROR("m_LightGridSSBO");
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightOffsetSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(m_LightOffset), &m_LightOffset, GL_DYNAMIC_COPY);
GLERROR("m_LightOffsetSSBO");
glBindBuffer(GL_SHADER_STORAGE_BUFFER, m_LightIndexSSBO);
glBufferData(GL_SHADER_STORAGE_BUFFER, sizeof(float)*m_NumberOfTiles*MAX_LIGHTS_PER_TILE, m_LightIndex, GL_DYNAMIC_COPY);
GLERROR("m_LightIndexSSBO");
glBindBuffer(GL_SHADER_STORAGE_BUFFER, 0);
}
void LightCullingPass::InitializeSSBOs()
{
glGenBuffers(1, &m_FrustumSSBO);
+67 -22
View File
@@ -15,19 +15,21 @@ PickingPass::~PickingPass()
}
void PickingPass::InitializeTextures()
{
GenerateTexture(&m_PickingTexture, GL_CLAMP_TO_BORDER, GL_LINEAR,
CommonFunctions::GenerateTexture(&m_PickingTexture, GL_CLAMP_TO_BORDER, GL_LINEAR,
glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_RG8, GL_RG, GL_UNSIGNED_BYTE);
CommonFunctions::GenerateTexture(&m_DepthBuffer, GL_CLAMP_TO_BORDER, GL_NEAREST,
glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_DEPTH_COMPONENT32, GL_DEPTH_COMPONENT, GL_UNSIGNED_INT);
}
void PickingPass::InitializeFrameBuffers()
{
glGenRenderbuffers(1, &m_DepthBuffer);
glBindRenderbuffer(GL_RENDERBUFFER, m_DepthBuffer);
glRenderbufferStorage(GL_RENDERBUFFER, GL_DEPTH_COMPONENT, m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height);
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new RenderBuffer(&m_DepthBuffer, GL_DEPTH_ATTACHMENT)));
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_DepthBuffer, GL_DEPTH_ATTACHMENT)));
m_PickingBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_PickingTexture, GL_COLOR_ATTACHMENT0)));
m_PickingBuffer.Generate();
}
@@ -53,6 +55,7 @@ void PickingPass::InitializeShaderPrograms()
void PickingPass::Draw(RenderScene& scene)
{
GLERROR("PRE");
PickingPassState* state = new PickingPassState(m_PickingBuffer.GetHandle());
//TODO: Render: Add code for more jobs than modeljobs.
@@ -61,7 +64,9 @@ void PickingPass::Draw(RenderScene& scene)
m_PickingProgram->Bind();
if (scene.ClearDepth) {
glClear(GL_DEPTH_BUFFER_BIT);
//glClear(GL_DEPTH_BUFFER_BIT);
state->Disable(GL_DEPTH_TEST);
state->DepthMask(GL_FALSE);
}
m_Camera = scene.Camera;
@@ -234,6 +239,52 @@ void PickingPass::Draw(RenderScene& scene)
}
}
for (auto& job : scene.Jobs.SpriteJob) {
auto spriteJob = std::dynamic_pointer_cast<SpriteJob>(job);
if (!spriteJob->Pickable) {
continue;
}
RenderState jobState;
if (spriteJob) {
if (spriteJob->Depth == 0) {
jobState.Disable(GL_DEPTH_TEST);
}
int pickColor[2] = { m_ColorCounter[0], m_ColorCounter[1] };
PickingInfo pickInfo;
pickInfo.Entity = spriteJob->Entity;
pickInfo.World = spriteJob->World;
pickInfo.Camera = scene.Camera;
auto color = m_EntityColors.find(std::make_tuple(pickInfo.Entity, pickInfo.World, pickInfo.Camera));
if (color != m_EntityColors.end()) {
pickColor[0] = color->second[0];
pickColor[1] = color->second[1];
} else {
m_EntityColors[std::make_tuple(pickInfo.Entity, pickInfo.World, pickInfo.Camera)] = glm::ivec2(pickColor[0], pickColor[1]);
if (m_ColorCounter[0] > 255) {
m_ColorCounter[0] = 0;
m_ColorCounter[1] += 1;
} else {
m_ColorCounter[0] += 1;
}
}
m_PickingColorsToEntity[glm::ivec2(pickColor[0], pickColor[1])] = pickInfo;
m_PickingProgram->Bind();
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "M"), 1, GL_FALSE, glm::value_ptr(spriteJob->Matrix));
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "V"), 1, GL_FALSE, glm::value_ptr(scene.Camera->ViewMatrix()));
glUniformMatrix4fv(glGetUniformLocation(shaderHandle, "P"), 1, GL_FALSE, glm::value_ptr(scene.Camera->ProjectionMatrix()));
glUniform2fv(glGetUniformLocation(shaderHandle, "PickingColor"), 1, glm::value_ptr(glm::vec2(pickColor[0], pickColor[1])));
glBindVertexArray(spriteJob->Model->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, spriteJob->Model->ElementBuffer);
glDrawElements(GL_TRIANGLES, spriteJob->EndIndex - spriteJob->StartIndex + 1, GL_UNSIGNED_INT, (void*)(spriteJob->StartIndex * sizeof(unsigned int)));
}
}
/* for (auto &job : scene.Jobs.TransparentShieldedObjects) {
auto modelJob = std::dynamic_pointer_cast<ModelJob>(job);
@@ -306,10 +357,9 @@ void PickingPass::Draw(RenderScene& scene)
delete state;
}
void PickingPass::ClearPicking()
{
GLERROR("PRE");
m_PickingColorsToEntity.clear();
m_EntityColors.clear();
m_ColorCounter[0] = 0;
@@ -317,8 +367,16 @@ void PickingPass::ClearPicking()
m_PickingBuffer.Bind();
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT | GL_STENCIL_BUFFER_BIT);
m_PickingBuffer.Unbind();
GLERROR("END");
}
void PickingPass::OnWindowResize()
{
InitializeTextures();
m_PickingBuffer.Generate();
}
PickData PickingPass::Pick(glm::vec2 screenCoord)
@@ -350,16 +408,3 @@ PickData PickingPass::Pick(glm::vec2 screenCoord)
pickData.World = pickInfo.World;
return pickData;
}
void PickingPass::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const
{
//TODO: Renderer: Make this in a sparate class
glGenTextures(1, texture);
glBindTexture(GL_TEXTURE_2D, *texture);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filtering);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filtering);
glTexImage2D(GL_TEXTURE_2D, 0, internalFormat, dimensions.x, dimensions.y, 0, format, type, nullptr);//TODO: Renderer: Fix the precision and Resolution
GLERROR("Texture initialization failed");
}
+4 -3
View File
@@ -3,16 +3,17 @@
PickingPassState::PickingPassState(GLuint frameBuffer)
{
GLERROR("---2");
GLERROR("PRE");
BindFramebuffer(frameBuffer);
GLERROR("---3");
GLERROR("Bind Framebuffer");
Enable(GL_DEPTH_TEST);
Enable(GL_CULL_FACE);
Disable(GL_BLEND);
glm::vec4 clearColor = glm::vec4(0.f);
//ClearColor(clearColor);
//Clear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
GLERROR("END");
}
PickingPassState::~PickingPassState()
+20
View File
@@ -135,6 +135,26 @@ bool RenderState::DepthMask(GLboolean flag)
return !GLERROR("DepthMask");
}
bool RenderState::DepthFunc(GLenum func)
{
GLint original;
glGetIntegerv(GL_DEPTH_FUNC, &original);
m_ResetFunctions.push_back(std::bind(glDepthFunc, original));
glDepthFunc(func);
return !GLERROR("DepthFunc");
}
bool RenderState::AlphaFunc(GLenum func, GLclampf thresholder)
{
GLint originalFunc;
glGetIntegerv(GL_ALPHA_TEST_FUNC, &originalFunc);
GLint originalRef;
glGetIntegerv(GL_ALPHA_TEST_REF, &originalRef);
m_ResetFunctions.push_back(std::bind(glAlphaFunc, originalFunc, originalRef));
glAlphaFunc(func, thresholder);
return !GLERROR("AlphaFunc");
}
RenderState::~RenderState()
{
for (auto& f : boost::adaptors::reverse(m_ResetFunctions)) {
+106 -15
View File
@@ -52,6 +52,101 @@ void RenderSystem::fillSprites(std::list<std::shared_ptr<RenderJob>>& jobs, Worl
continue;
}
glm::mat4 modelMatrix;
// See a sprite is an SpriteIndicator
bool isIndicator = false;
if (world->HasComponent(entity.ID, "SpriteIndicator"))
{
auto indicator = entity["SpriteIndicator"];
float minScale = (float)(double)indicator["MinScale"];
bool hasTeam = indicator["VisibleForSingleTeamOnly"];
isIndicator = true;
glm::vec3 pos = Transform::AbsolutePosition(entity);
EntityWrapper entityTeam;
if (hasTeam && (entity.HasComponent("Team") || entity.FirstParentWithComponent("Team").Valid()) && m_LocalPlayer.World != nullptr) {
if (!entity.HasComponent("Team")) {
entityTeam = entity.FirstParentWithComponent("Team");
}
else {
entityTeam = entity;
}
ComponentWrapper& entityTeamComponent = entityTeam["Team"];
ComponentWrapper& localComponent = m_LocalPlayer["Team"];
int entityTeamInt = entityTeamComponent["Team"];
int localComponentInt = localComponent["Team"];
int SpectatorInt = localComponent["Team"].Enum("Spectator");
if (entityTeamInt != localComponentInt && localComponentInt != SpectatorInt) {
continue;
}
}
// Code for check if sprite is inside or outside of screen
//glm::vec4 projectedPos = m_Camera->ProjectionMatrix() * m_Camera->ViewMatrix() * glm::vec4(pos, 1.0f);
//projectedPos /= projectedPos.w;
//// Check if inside of outside of screen.
//if (projectedPos.x < -1.0f || projectedPos.x > 1.0f || projectedPos.y < -1.0f || projectedPos.y > 1.0f) {
// // is outside of screen
//} else {
// // is inside of screen
//}
glm::vec3 zAxis = glm::vec3(0.0f, 1.0f, 0.0f);
glm::vec3 normal = pos - m_Camera->Position();
//float distance = glm::length(normal);
//if (distance < minDistance) {
// pos = pos - glm::normalize(normal) * (distance - minDistance);
//} else if (distance > maxDistance) {
// pos = pos - glm::normalize(normal) * (distance - maxDistance);
//}
normal.y = 0;
normal = glm::normalize(normal);
glm::vec3 right = glm::cross(normal, zAxis);
glm::vec3 up = glm::cross(right, normal);
modelMatrix[0][0] = right.x;
modelMatrix[0][1] = right.y;
modelMatrix[0][2] = right.z;
modelMatrix[0][3] = 0.0f;
modelMatrix[1][0] = zAxis.x;
modelMatrix[1][1] = zAxis.y;
modelMatrix[1][2] = zAxis.z;
modelMatrix[1][3] = 0.0f;
modelMatrix[2][0] = normal.x;
modelMatrix[2][1] = normal.y;
modelMatrix[2][2] = normal.z;
modelMatrix[2][3] = 0.0f;
modelMatrix[3][0] = pos.x;
modelMatrix[3][1] = pos.y;
modelMatrix[3][2] = pos.z;
modelMatrix[3][3] = 1.0f;
glm::mat4 tranformationMatrix = modelMatrix * glm::scale(Transform::AbsoluteScale(entity));
glm::vec4 tmp = tranformationMatrix * glm::vec4(glm::vec3(0.5, 0.5, 0), 1.0f);
glm::vec2 projectedTopRight = m_Camera->WorldToScreen(glm::vec3(tmp), m_Renderer->GetViewportSize());
tmp = tranformationMatrix * glm::vec4(glm::vec3(-0.5, -0.5, 0), 1.0f);
glm::vec2 projectedBottomLeft = m_Camera->WorldToScreen(glm::vec3(tmp), m_Renderer->GetViewportSize());
float diag = glm::length(projectedBottomLeft - projectedTopRight);
if (diag < minScale) {
tranformationMatrix = tranformationMatrix * glm::scale(glm::vec3(minScale / diag, minScale / diag, minScale / diag));
}
modelMatrix = tranformationMatrix;
}
else {
modelMatrix = Transform::ModelMatrix(entity.ID, world);
}
std::string diffuseResource = cSprite["DiffuseTexture"];
std::string glowResource = cSprite["GlowMap"];
bool depthSorted = cSprite["DepthSort"];
@@ -67,11 +162,7 @@ void RenderSystem::fillSprites(std::list<std::shared_ptr<RenderJob>>& jobs, Worl
fillColor = (glm::vec4)fillComponent["Color"];
}
glm::mat4 modelMatrix = Transform::ModelMatrix(entity.ID, world);
//modelMatrix *= m_Camera->BillboardMatrix();
std::shared_ptr<SpriteJob> spriteJob = std::shared_ptr<SpriteJob>(new SpriteJob(cSprite, m_Camera, modelMatrix, world, fillColor, fillPercentage, depthSorted));
std::shared_ptr<SpriteJob> spriteJob = std::shared_ptr<SpriteJob>(new SpriteJob(cSprite, m_Camera, modelMatrix, world, fillColor, fillPercentage, depthSorted, isIndicator));
jobs.push_back(spriteJob);
}
@@ -93,7 +184,6 @@ bool RenderSystem::isEntityVisible(EntityWrapper& entity)
) {
return false;
}
return true;
}
@@ -150,6 +240,8 @@ void RenderSystem::fillModels(RenderScene::Queues &Jobs)
fillColor = (glm::vec4)fillComponent["Color"];
}
bool isShielded = m_World->HasComponent(cModel.EntityID, "Shielded") || m_World->HasComponent(cModel.EntityID, "Player");
glm::mat4 modelMatrix = Transform::ModelMatrix(cModel.EntityID, m_World);
//Loop through all materialgroups of a model
for (auto matGroup : model->MaterialGroups()) {
@@ -165,20 +257,19 @@ void RenderSystem::fillModels(RenderScene::Queues &Jobs)
cModel,
m_World,
fillColor,
fillPercentage
fillPercentage,
isShielded
));
if (m_World->HasComponent(cModel.EntityID, "Shield")){
explosionEffectJob->CalculateHash();
Jobs.ShieldObjects.push_back(explosionEffectJob);
} else if (m_World->HasComponent(cModel.EntityID, "Shielded")
|| m_World->HasComponent(cModel.EntityID, "Player")) {
} else if (isShielded) {
if (explosionEffectJob->Color.a != 1.f || explosionEffectJob->EndColor.a != 1.f || explosionEffectJob->DiffuseColor.a != 1.f) {
cModel["Transparent"] = true;
}
if (cModel["Transparent"]) {
Jobs.TransparentShieldedObjects.push_back(explosionEffectJob);
Jobs.TransparentObjects.push_back(explosionEffectJob);
} else {
explosionEffectJob->CalculateHash();
Jobs.OpaqueShieldedObjects.push_back(explosionEffectJob);
@@ -204,20 +295,20 @@ void RenderSystem::fillModels(RenderScene::Queues &Jobs)
cModel,
m_World,
fillColor,
fillPercentage
fillPercentage,
isShielded
));
if (m_World->HasComponent(cModel.EntityID, "Shield")) {
modelJob->CalculateHash();
Jobs.ShieldObjects.push_back(modelJob);
} else if (m_World->HasComponent(cModel.EntityID, "Shielded")
|| m_World->HasComponent(cModel.EntityID, "Player")) {
} else if (isShielded) {
if (modelJob->Color.a != 1.f || modelJob->DiffuseColor.a != 1.f) {
cModel["Transparent"] = true;
}
if (cModel["Transparent"]) {
Jobs.TransparentShieldedObjects.push_back(modelJob);
Jobs.TransparentObjects.push_back(modelJob);
} else {
modelJob->CalculateHash();
Jobs.OpaqueShieldedObjects.push_back(modelJob);
+82 -24
View File
@@ -1,7 +1,11 @@
#include "Rendering/Renderer.h"
std::unordered_map<GLFWwindow*, Renderer*> Renderer::m_WindowToRenderer;
void Renderer::Initialize()
{
m_SSAO_Quality = m_Config->Get<int>("SSAO.Quality", 0);
m_GLOW_Quality = m_Config->Get<int>("GLOW.Quality", 0);
InitializeWindow();
InitializeRenderPasses();
@@ -12,7 +16,6 @@ void Renderer::Initialize()
m_TextPass = new TextPass();
m_TextPass->Initialize();
/* m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.obj");
m_UnitQuad = ResourceManager::Load<Model>("Models/Core/UnitQuad.obj");
m_UnitSphere = ResourceManager::Load<Model>("Models/Core/UnitSphere.obj");*/
@@ -20,6 +23,18 @@ void Renderer::Initialize()
m_ImGuiRenderPass = new ImGuiRenderPass(this, m_EventBroker);
}
void Renderer::glfwFrameBufferCallback(GLFWwindow* window, int width, int height)
{
glViewport(0, 0, width, height);
Renderer* currentRenderer = m_WindowToRenderer[window];
currentRenderer->m_ViewportSize = Rectangle(width, height);
currentRenderer->m_PickingPass->OnWindowResize();
currentRenderer->m_DrawFinalPass->OnWindowResize();
currentRenderer->m_LightCullingPass->OnWindowResize();
currentRenderer->m_DrawBloomPass->OnWindowResize();
currentRenderer->m_SSAOPass->OnWindowResize();
}
void Renderer::InitializeWindow()
{
// Initialize GLFW
@@ -39,6 +54,7 @@ void Renderer::InitializeWindow()
LOG_ERROR("GLFW: Failed to create window");
exit(EXIT_FAILURE);
}
glfwSetFramebufferSizeCallback(m_Window, &glfwFrameBufferCallback);
glfwMakeContextCurrent(m_Window);
// GL version info
@@ -59,8 +75,10 @@ void Renderer::InitializeWindow()
exit(EXIT_FAILURE);
}
m_WindowToRenderer[m_Window] = this;
int windowSize[2];
glfwGetWindowSize(m_Window, &windowSize[0], &windowSize[1]);
glfwGetFramebufferSize(m_Window, &windowSize[0], &windowSize[1]);
m_ViewportSize = Rectangle(windowSize[0], windowSize[1]);
}
@@ -73,9 +91,6 @@ void Renderer::InitializeShaders()
//m_ExplosionEffectProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/ExplosionEffect.frag.glsl")));
//m_ExplosionEffectProgram->Compile();
//m_ExplosionEffectProgram->Link();
}
void Renderer::InputUpdate(double dt)
@@ -93,40 +108,77 @@ void Renderer::Update(double dt)
void Renderer::Draw(RenderFrame& frame)
{
ImGui::Combo("Draw textures", &m_DebugTextureToDraw, "Final\0Scene\0Bloom\0SceneLowRes\0BloomLowRes\0Gaussian\0Picking");
GLERROR("PRE");
glBindFramebuffer(GL_FRAMEBUFFER, 0);
ImGui::Combo("Draw textures", &m_DebugTextureToDraw, "Final\0Scene\0Bloom\0Gaussian\0Picking\0Ambient Occlusion");
ImGui::Combo("CubeMap", &m_CubeMapTexture, "Nevada(512)\0Sky(1024)");
if(m_CubeMapTexture == 0) {
m_CubeMapPass->LoadTextures("Nevada");
} else if (m_CubeMapTexture == 1) {
m_CubeMapPass->LoadTextures("Sky");
}
ImGui::SliderInt("SSAO Quality", &m_SSAO_Quality, 0, 3);
ImGui::SliderInt("Glow Quality", &m_GLOW_Quality, 0, 3);
m_SSAOPass->ChangeQuality(m_SSAO_Quality);
m_DrawBloomPass->ChangeQuality(m_GLOW_Quality);
GLERROR("SSAO Settings");
//clear buffer 0
glClearColor(0.f, 0.f, 0.f, 0.f);
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
//Clear other buffers
//Clear other buffers
PerformanceTimer::StartTimer("Renderer-ClearBuffers");
m_PickingPass->ClearPicking();
m_DrawFinalPass->ClearBuffer();
m_DrawBloomPass->ClearBuffer();
m_SSAOPass->ClearBuffer();
PerformanceTimer::StopTimer("Renderer-ClearBuffers");
GLERROR("ClearBuffers");
for (auto scene : frame.RenderScenes) {
PerformanceTimer::StartTimer("Renderer-PickingPass");
m_PickingPass->Draw(*scene);
GLERROR("Drawing pickingpass");
PerformanceTimer::StopTimer("Renderer-PickingPass");
}
PerformanceTimer::StartTimer("Renderer-AO generation");
m_SSAOPass->Draw(*m_PickingPass->DepthBuffer(), frame.RenderScenes.front()->Camera);
PerformanceTimer::StopTimer("Renderer-AO generation");
for (auto scene : frame.RenderScenes){
PerformanceTimer::StartTimer("Renderer-Depth");
SortRenderJobsByDepth(*scene);
GLERROR("SortByDepth");
m_PickingPass->Draw(*scene);
GLERROR("Drawing pickingpass");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Generate Frustrums");
m_LightCullingPass->GenerateNewFrustum(*scene);
GLERROR("Generate frustums");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Filling Light List");
m_LightCullingPass->FillLightList(*scene);
GLERROR("Filling light list");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Light Culling");
m_LightCullingPass->CullLights(*scene);
GLERROR("LightCulling");
m_DrawFinalPass->Draw(*scene);
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Draw Geometry+Light");
m_DrawFinalPass->Draw(*scene);
GLERROR("Draw Geometry+Light");
//m_DrawScenePass->Draw(*scene);
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Draw Text");
m_TextPass->Draw(*scene, *m_DrawFinalPass->FinalPassFrameBuffer());
GLERROR("Draw Text");
PerformanceTimer::StopTimer("Renderer-Draw Text");
}
}
PerformanceTimer::StartTimer("Renderer-Draw Bloom");
m_DrawBloomPass->Draw(m_DrawFinalPass->BloomTexture());
PerformanceTimer::StopTimer("Renderer-Draw Bloom");
if (m_DebugTextureToDraw == 0) {
m_DrawColorCorrectionPass->Draw(m_DrawFinalPass->SceneTexture(), m_DrawBloomPass->GaussianTexture(), m_DrawFinalPass->SceneTextureLowRes(), m_DrawFinalPass->BloomTextureLowRes(), frame.Gamma, frame.Exposure);
PerformanceTimer::StartTimer("Renderer-Color Correction Pass");
m_DrawColorCorrectionPass->Draw(m_DrawFinalPass->SceneTexture(), m_DrawBloomPass->GaussianTexture(), frame.Gamma, frame.Exposure);
PerformanceTimer::StopTimer("Renderer-Color Correction Pass");
}
PerformanceTimer::StartTimer("Renderer-Misc Debug Draws");
if (m_DebugTextureToDraw == 1) {
m_DrawScreenQuadPass->Draw(m_DrawFinalPass->SceneTexture());
}
@@ -134,21 +186,24 @@ void Renderer::Draw(RenderFrame& frame)
m_DrawScreenQuadPass->Draw(m_DrawFinalPass->BloomTexture());
}
if (m_DebugTextureToDraw == 3) {
m_DrawScreenQuadPass->Draw(m_DrawFinalPass->SceneTextureLowRes());
}
if (m_DebugTextureToDraw == 4) {
m_DrawScreenQuadPass->Draw(m_DrawFinalPass->BloomTextureLowRes());
}
if (m_DebugTextureToDraw == 5) {
m_DrawScreenQuadPass->Draw(m_DrawBloomPass->GaussianTexture());
}
if (m_DebugTextureToDraw == 6) {
if (m_DebugTextureToDraw == 4) {
m_DrawScreenQuadPass->Draw(m_PickingPass->PickingTexture());
}
if (m_DebugTextureToDraw == 5) {
m_DrawScreenQuadPass->Draw(m_SSAOPass->SSAOTexture());
}
PerformanceTimer::StopTimer("Renderer-Misc Debug Draws");
PerformanceTimer::StartTimer("Renderer-ImGuiRenderPass");
m_ImGuiRenderPass->Draw();
GLERROR("Imgui draw");
PerformanceTimer::StopTimer("Renderer-ImGuiRenderPass");
PerformanceTimer::StartTimer("Renderer-SwapBuffer");
glfwSwapBuffers(m_Window);
PerformanceTimer::StopTimer("Renderer-SwapBuffer");
}
PickData Renderer::Pick(glm::vec2 screenCoord)
@@ -187,8 +242,11 @@ void Renderer::InitializeRenderPasses()
{
m_PickingPass = new PickingPass(this, m_EventBroker);
m_LightCullingPass = new LightCullingPass(this);
m_DrawFinalPass = new DrawFinalPass(this, m_LightCullingPass);
m_CubeMapPass = new CubeMapPass(this);
m_SSAOPass = new SSAOPass(this, m_Config);
m_DrawFinalPass = new DrawFinalPass(this, m_LightCullingPass, m_CubeMapPass, m_SSAOPass);
m_DrawScreenQuadPass = new DrawScreenQuadPass(this);
m_DrawBloomPass = new DrawBloomPass(this);
m_DrawBloomPass = new DrawBloomPass(this, m_Config);
m_DrawColorCorrectionPass = new DrawColorCorrectionPass(this);
}
}
+288
View File
@@ -0,0 +1,288 @@
#include "Rendering/SSAOPass.h"
SSAOPass::SSAOPass(IRenderer* renderer, ConfigFile* config)
: m_Renderer(renderer)
, m_Config(config)
{
m_WhiteTexture = CommonFunctions::LoadTexture("Textures/Core/White.png", false);
ChangeQuality(m_Config->Get<int>("SSAO.Quality", 0));
}
void SSAOPass::ChangeQuality(int quality)
{
if (m_Quality == quality) {
return;
}
m_Quality = quality;
if (m_Quality == 0) {
CommonFunctions::DeleteTexture(&m_SSAOTexture);
CommonFunctions::DeleteTexture(&m_SSAOViewSpaceZTexture);
CommonFunctions::DeleteTexture(&m_Gaussian_horiz);
CommonFunctions::DeleteTexture(&m_Gaussian_vert);
return;
}
std::string qStr = std::to_string(m_Quality);
Setting(
m_Config->Get<float>("SSAO" + qStr + ".Radius", 0.01),
m_Config->Get<float>("SSAO" + qStr + ".Bias", 0.012),
m_Config->Get<float>("SSAO" + qStr + ".Contrast", 1.0),
m_Config->Get<float>("SSAO" + qStr + ".Intensity", 1.0),
m_Config->Get<int>("SSAO" + qStr + ".NumSamples", 0),
m_Config->Get<int>("SSAO" + qStr + ".NumTurns", 0),
m_Config->Get<int>("SSAO" + qStr + ".NumIterations", 0),
m_Config->Get<int>("SSAO" + qStr + ".TextureQuality", 4)
);
m_ScreenQuad = ResourceManager::Load<Model>("Models/Core/ScreenQuad.mesh");
InitializeTexture();
InitializeBuffer();
InitializeShaderProgram();
}
void SSAOPass::InitializeShaderProgram()
{
m_SSAOProgram = ResourceManager::Load<ShaderProgram>("##SSAOProgram");
if (m_SSAOProgram->GetHandle() == 0) {
m_SSAOProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/SSAO.vert.glsl")));
m_SSAOProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/SSAO.frag.glsl")));
m_SSAOProgram->Compile();
m_SSAOProgram->Link();
}
m_SSAOViewSpaceZProgram = ResourceManager::Load<ShaderProgram>("##SSAOViewSpaceZProgram");
if (m_SSAOViewSpaceZProgram->GetHandle() == 0) {
m_SSAOViewSpaceZProgram->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/SSAO.vert.glsl")));
m_SSAOViewSpaceZProgram->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/SSAOViewSpaceZ.frag.glsl")));
m_SSAOViewSpaceZProgram->Compile();
m_SSAOViewSpaceZProgram->Link();
}
m_GaussianProgram_horiz = ResourceManager::Load<ShaderProgram>("##GaussianProgramHoriz");
if (m_GaussianProgram_horiz->GetHandle() == 0) {
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_horiz.vert.glsl")));
m_GaussianProgram_horiz->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_horiz.frag.glsl")));
m_GaussianProgram_horiz->Compile();
m_GaussianProgram_horiz->Link();
}
m_GaussianProgram_vert = ResourceManager::Load<ShaderProgram>("##GaussianProgramVert");
if (m_GaussianProgram_vert->GetHandle() == 0) {
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new VertexShader("Shaders/Gaussian_vert.vert.glsl")));
m_GaussianProgram_vert->AddShader(std::shared_ptr<Shader>(new FragmentShader("Shaders/Gaussian_vert.frag.glsl")));
m_GaussianProgram_vert->Compile();
m_GaussianProgram_vert->Link();
}
}
void SSAOPass::InitializeTexture() {
CommonFunctions::GenerateTexture(&m_SSAOTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width >> m_TextureQuality, m_Renderer->GetViewportSize().Height >> m_TextureQuality), GL_R8, GL_RED, GL_FLOAT);
CommonFunctions::GenerateTexture(&m_SSAOViewSpaceZTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width >> m_TextureQuality, m_Renderer->GetViewportSize().Height >> m_TextureQuality), GL_R32F, GL_RED, GL_FLOAT);
CommonFunctions::GenerateTexture(&m_Gaussian_horiz, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width >> m_TextureQuality, m_Renderer->GetViewportSize().Height >> m_TextureQuality), GL_R8, GL_RED, GL_FLOAT);
CommonFunctions::GenerateTexture(&m_Gaussian_vert, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width >> m_TextureQuality, m_Renderer->GetViewportSize().Height >> m_TextureQuality), GL_R8, GL_RED, GL_FLOAT);
}
void SSAOPass::InitializeBuffer()
{
if (m_SSAOFramBuffer.GetHandle() == 0) {
m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
}
m_SSAOFramBuffer.Generate();
if (m_SSAOViewSpaceZFramBuffer.GetHandle() == 0) {
m_SSAOViewSpaceZFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOViewSpaceZTexture, GL_COLOR_ATTACHMENT0)));
}
m_SSAOViewSpaceZFramBuffer.Generate();
if (m_GaussianFrameBuffer_horiz.GetHandle() == 0) {
m_GaussianFrameBuffer_horiz.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_Gaussian_horiz, GL_COLOR_ATTACHMENT0)));
}
m_GaussianFrameBuffer_horiz.Generate();
if (m_GaussianFrameBuffer_vert.GetHandle() == 0) {
m_GaussianFrameBuffer_vert.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_Gaussian_vert, GL_COLOR_ATTACHMENT0)));
}
m_GaussianFrameBuffer_vert.Generate();
}
void SSAOPass::ClearBuffer()
{
if (m_Quality == 0) {
return;
}
m_SSAOFramBuffer.Bind();
glClearColor(1.f, 1.f, 1.f, 1.f);
glClear(GL_COLOR_BUFFER_BIT);
m_SSAOFramBuffer.Unbind();
m_SSAOViewSpaceZFramBuffer.Bind();
glClearColor(1.f, 1.f, 1.f, 1.f);
glClear(GL_COLOR_BUFFER_BIT);
m_SSAOViewSpaceZFramBuffer.Unbind();
m_GaussianFrameBuffer_horiz.Bind();
glClearColor(1.f, 1.f, 1.f, 1.f);
glClear(GL_COLOR_BUFFER_BIT);
m_GaussianFrameBuffer_horiz.Unbind();
m_GaussianFrameBuffer_vert.Bind();
glClearColor(1.f, 1.f, 1.f, 1.f);
glClear(GL_COLOR_BUFFER_BIT);
m_GaussianFrameBuffer_vert.Unbind();
}
void SSAOPass::Setting(float radius, float bias, float contrast, float intensityScale, int numOfSamples, int numOfTurns, int iterations, int quality) {
m_Radius = radius;
m_Bias = bias;
m_Contrast = contrast;
m_IntensityScale = intensityScale;
m_NumOfSamples = numOfSamples;
m_NumOfTurns = numOfTurns;
m_Iterations = iterations;
m_TextureQuality = quality;
}
void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
{
if (m_Quality == 0) {
return;
}
SSAOPassState state;
GLuint viewSpaceZPShaderHandle = m_SSAOViewSpaceZProgram->GetHandle();
GLuint SSAOShaderHandle = m_SSAOProgram->GetHandle();
m_SSAOViewSpaceZFramBuffer.Bind();
m_SSAOViewSpaceZProgram->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, depthBuffer);
glm::vec3 clipInfo = glm::vec3(
(camera->NearClip() * camera->FarClip()),
(camera->NearClip() - camera->FarClip()),
(camera->FarClip())
);
/*glm::vec3 clipInfo = glm::vec3(
(camera->NearClip()),
(-1.0f),
(+1.0f)
);*/
glViewport(0, 0, (m_Renderer->GetViewportSize().Width >> m_TextureQuality), (m_Renderer->GetViewportSize().Height >> m_TextureQuality)); //JOHAN TODO: Get this into state
glUniform3fv(glGetUniformLocation(viewSpaceZPShaderHandle, "ClipInfo"), 1, glm::value_ptr(clipInfo));
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
glm::vec4 projInfo = glm::vec4(
((1.0 - camera->ProjectionMatrix()[0][2]) / camera->ProjectionMatrix()[0][0]),
(-2.0 / ((m_Renderer->GetViewportSize().Width >> m_TextureQuality) * camera->ProjectionMatrix()[0][0])),
((1.0 + camera->ProjectionMatrix()[1][2]) / camera->ProjectionMatrix()[1][1]),
(-2.0 / ((m_Renderer->GetViewportSize().Height >> m_TextureQuality) * camera->ProjectionMatrix()[1][1]))
);
m_SSAOFramBuffer.Bind();
m_SSAOProgram->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_SSAOViewSpaceZTexture);
// How many pixel there are in a 1m long object 1m away from the camera
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uProjScale"), (m_Renderer->GetViewportSize().Height >> m_TextureQuality) / (-2.0f * glm::tan(camera->FOV() * 0.5f)));
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uRadius"), m_Radius);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uBias"), m_Bias);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uContrast"), m_Contrast);
glUniform1f(glGetUniformLocation(SSAOShaderHandle, "uIntensityScale"), m_IntensityScale);
glUniform1i(glGetUniformLocation(SSAOShaderHandle, "uNumOfSamples"), m_NumOfSamples);
glUniform1i(glGetUniformLocation(SSAOShaderHandle, "uNumOfTurns"), m_NumOfTurns);
glUniform4fv(glGetUniformLocation(SSAOShaderHandle, "uProjInfo"), 1, glm::value_ptr(projInfo));
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
DrawBloomPassState BloomState;
GLuint shaderHandle_horiz = m_GaussianProgram_horiz->GetHandle();
GLuint shaderHandle_vert = m_GaussianProgram_vert->GetHandle();
m_GaussianFrameBuffer_horiz.Bind();
m_GaussianProgram_horiz->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_SSAOTexture);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//Iterate some times to make it more gaussian.
for (int i = 1; i < m_Iterations; i++) {
//Vertical pass
m_GaussianFrameBuffer_vert.Bind();
m_GaussianProgram_vert->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_Gaussian_horiz);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
//horizontal pass
m_GaussianFrameBuffer_vert.Unbind();
m_GaussianFrameBuffer_horiz.Bind();
m_GaussianProgram_horiz->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_Gaussian_vert);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
m_GaussianFrameBuffer_horiz.Unbind();
}
//final vertical gaussian after the iterations are done
m_GaussianFrameBuffer_vert.Bind();
m_GaussianProgram_vert->Bind();
glActiveTexture(GL_TEXTURE0);
glBindTexture(GL_TEXTURE_2D, m_Gaussian_horiz);
glBindVertexArray(m_ScreenQuad->VAO);
glBindBuffer(GL_ELEMENT_ARRAY_BUFFER, m_ScreenQuad->ElementBuffer);
glDrawElementsBaseVertex(GL_TRIANGLES, m_ScreenQuad->MaterialGroups()[0].material->EndIndex - m_ScreenQuad->MaterialGroups()[0].material->StartIndex + 1
, GL_UNSIGNED_INT, 0, m_ScreenQuad->MaterialGroups()[0].material->StartIndex);
m_GaussianFrameBuffer_vert.Unbind();
glViewport(0, 0, (m_Renderer->GetViewportSize().Width), (m_Renderer->GetViewportSize().Height));
}
void SSAOPass::OnWindowResize() {
if (m_Quality == 0) {
return;
}
InitializeTexture();
InitializeBuffer();
}
+16
View File
@@ -0,0 +1,16 @@
#include "Rendering/SSAOPassState.h"
SSAOPassState::SSAOPassState()
{
//BindFramebuffer(0);
Disable(GL_BLEND);
Disable(GL_DEPTH_TEST);
Disable(GL_CULL_FACE);
}
SSAOPassState::~SSAOPassState()
{
}
+1 -2
View File
@@ -98,8 +98,7 @@ void ShaderProgram::AddShader(std::shared_ptr<Shader> shader)
void ShaderProgram::Compile()
{
if (m_ShaderProgramHandle == 0)
{
if (m_ShaderProgramHandle == 0) {
m_ShaderProgramHandle = glCreateProgram();
}
+2
View File
@@ -18,6 +18,7 @@ Texture::Texture(std::string path)
this->Width = img->Width;
this->Height = img->Height;
this->Data = img->Data;
GLint format;
switch (img->Format) {
@@ -28,6 +29,7 @@ Texture::Texture(std::string path)
format = GL_RGBA;
break;
}
// Construct the OpenGL texture
glGenTextures(1, &m_Texture);
@@ -17,3 +17,46 @@ Texture* CommonFunctions::LoadTexture(std::string path, bool threaded)
return img;
}
void CommonFunctions::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type)
{
glDeleteTextures(1, texture);
glGenTextures(1, texture);
glBindTexture(GL_TEXTURE_2D, *texture);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, filtering);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, filtering);
glTexImage2D(GL_TEXTURE_2D, 0, internalFormat, dimensions.x, dimensions.y, 0, format, type, nullptr);
GLERROR("Texture initialization failed");
}
void CommonFunctions::GenerateMultiSampleTexture(GLuint* texture, int numSamples, glm::vec2 dimensions, GLint internalFormat)
{
glDeleteTextures(1, texture);
glGenTextures(1, texture);
glBindTexture(GL_TEXTURE_2D_MULTISAMPLE, *texture);
glTexImage2DMultisample(GL_TEXTURE_2D_MULTISAMPLE, numSamples, internalFormat, dimensions.x, dimensions.y, false);
GLERROR("Texture initialization failed");
}
void CommonFunctions::GenerateMipMapTexture(GLuint* texture, GLenum wrapping, glm::vec2 dimensions, GLint format, GLenum type, GLint numMipMaps)
{
glGenTextures(1, texture);
glBindTexture(GL_TEXTURE_2D, *texture);
glTexStorage2D(GL_TEXTURE_2D, numMipMaps, GL_RGBA8, dimensions.x, dimensions.y);
glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, dimensions.x, dimensions.y, format, type, texture);
glGenerateMipmap(GL_TEXTURE_2D);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, wrapping);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR_MIPMAP_LINEAR);
GLERROR("MipMap Texture initialization failed");
}
void CommonFunctions::DeleteTexture(GLuint* texture)
{
glDeleteTextures(1, texture);
*texture = 0;
}
+7 -2
View File
@@ -31,22 +31,27 @@ glm::vec3 ScreenCoords::ToWorldPos(glm::vec2 screenCoord, float depth, float scr
ScreenCoords::PixelData ScreenCoords::ToPixelData(float x, float y, FrameBuffer* PickDataBuffer, GLuint DepthBuffer)
{
GLERROR("Pre");
PickDataBuffer->Bind();
unsigned char pdata[3];
glReadPixels(x, y, 1, 1, GL_RGB, GL_UNSIGNED_BYTE, &pdata);
GLERROR("glReadPixels(pdata) Error");
PickDataBuffer->Unbind();
glBindFramebuffer(GL_FRAMEBUFFER, DepthBuffer);
glBindFramebuffer(GL_FRAMEBUFFER, DepthBuffer);
GLERROR("glBindFramebuffer(DepthBuffer) Error");
float depthData;
glReadPixels(x, y, 1, 1, GL_DEPTH_COMPONENT, GL_FLOAT, &depthData);
GLERROR("glReadPixels(depthData) Error");
glBindFramebuffer(GL_FRAMEBUFFER, 0);
GLERROR("glBindFramebuffer(0) Error");
PixelData p;
p.Color[0] = (int)pdata[0];
p.Color[1] = (int)pdata[1];
p.Depth = depthData;
GLERROR("ScreenCoords::ToPixelData Error");
GLERROR("End");
return p;
}
+30 -11
View File
@@ -16,7 +16,7 @@
#include "Game/Systems/PickupSpawnSystem.h"
#include "Game/Systems/AmmoPickupSystem.h"
#include "Game/Systems/DamageIndicatorSystem.h"
#include "Game/Systems/Weapon/WeaponSystem.h"
#include "Game/Systems/Weapon/DefenderWeaponBehaviour.h"
#include "Rendering/AnimationSystem.h"
#include "Game/Systems/HealthHUDSystem.h"
#include "Rendering/BoneAttachmentSystem.h"
@@ -27,6 +27,8 @@
#include "Game/Systems/AmmunitionHUDSystem.h"
#include "Game/Systems/KillFeedSystem.h"
#include "Game/Systems/BoostSystem.h"
#include "GUI/ButtonSystem.h"
#include "GUI/MainMenuSystem.h"
Game::Game(int argc, char* argv[])
@@ -47,13 +49,12 @@ Game::Game(int argc, char* argv[])
ResourceManager::UseThreading = m_Config->Get<bool>("Multithreading.ResourceLoading", true);
DisableMemoryPool::Value = m_Config->Get<bool>("Debug.DisableMemoryPool", false);
LOG_LEVEL = static_cast<_LOG_LEVEL>(m_Config->Get<int>("Debug.LogLevel", 1));
PlayerSpawnSystem::SetRespawnTime(m_Config->Get<float>("Debug.RespawnTime", 15.0f));
// Create the core event broker
m_EventBroker = new EventBroker();
// Create the renderer
m_Renderer = new Renderer(m_EventBroker);
m_Renderer = new Renderer(m_EventBroker, m_Config);
m_Renderer->SetFullscreen(m_Config->Get<bool>("Video.Fullscreen", false));
m_Renderer->SetVSYNC(m_Config->Get<bool>("Video.VSYNC", false));
m_Renderer->SetResolution(Rectangle::Rectangle(
@@ -73,11 +74,6 @@ Game::Game(int argc, char* argv[])
m_InputProxy->AddHandler<MouseInputHandler>();
m_InputProxy->LoadBindings("Input.ini");
// Create the root level GUI frame
m_FrameStack = new GUI::Frame(m_EventBroker);
m_FrameStack->Width = m_Renderer->Resolution().Width;
m_FrameStack->Height = m_Renderer->Resolution().Height;
// Create a world
m_World = new World(m_EventBroker);
std::string mapToLoad = m_Config->Get<std::string>("Debug.LoadMap", "");
@@ -102,6 +98,10 @@ Game::Game(int argc, char* argv[])
m_NetworkClient->Connect(m_NetworkAddress, m_NetworkPort);
m_Renderer->SetWindowTitle(m_Renderer->WindowTitle() + " CLIENT");
}
} else {
// If network is disabled, pretend we're a server
m_IsClient = true;
m_IsServer = true;
}
// Create Octrees
@@ -124,7 +124,15 @@ Game::Game(int argc, char* argv[])
m_SystemPipeline->AddSystem<PlayerMovementSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<SpawnerSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<PlayerSpawnSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<WeaponSystem>(updateOrderLevel, m_Renderer, m_OctreeCollision);
m_SystemPipeline->AddSystem<DefenderWeaponBehaviour>(updateOrderLevel, m_Renderer, m_OctreeCollision);
m_SystemPipeline->AddSystem<LifetimeSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CapturePointSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CapturePointHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<PickupSpawnSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<AmmoPickupSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<DamageIndicatorSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<AmmunitionHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<KillFeedSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<LifetimeSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CapturePointSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CapturePointHUDSystem>(updateOrderLevel);
@@ -134,11 +142,12 @@ Game::Game(int argc, char* argv[])
m_SystemPipeline->AddSystem<AmmunitionHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<KillFeedSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<BoostSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<ButtonSystem>(updateOrderLevel, m_Renderer);
m_SystemPipeline->AddSystem<MainMenuSystem>(updateOrderLevel, m_Renderer);
// Populate Octree with collidables
++updateOrderLevel;
m_SystemPipeline->AddSystem<FillOctreeSystem>(updateOrderLevel, m_OctreeCollision, "Collidable");
m_SystemPipeline->AddSystem<FillOctreeSystem>(updateOrderLevel, m_OctreeTrigger, "Player");
m_SystemPipeline->AddSystem<FillFrustumOctreeSystem>(updateOrderLevel, m_OctreeFrustrumCulling);
m_SystemPipeline->AddSystem<AnimationSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<UniformScaleSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<HealthHUDSystem>(updateOrderLevel);
@@ -148,6 +157,9 @@ Game::Game(int argc, char* argv[])
m_SystemPipeline->AddSystem<BoneAttachmentSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CollisionSystem>(updateOrderLevel, m_OctreeCollision);
m_SystemPipeline->AddSystem<TriggerSystem>(updateOrderLevel, m_OctreeTrigger);
// Octree for frustum culling must be updated after collisions, otherwise players frustum may be moved after tree is filled, and wrong things are culled.
++updateOrderLevel;
m_SystemPipeline->AddSystem<FillFrustumOctreeSystem>(updateOrderLevel, m_OctreeFrustrumCulling);
++updateOrderLevel;
m_SystemPipeline->AddSystem<RenderSystem>(updateOrderLevel, m_Renderer, m_RenderFrame, m_OctreeFrustrumCulling);
++updateOrderLevel;
@@ -170,7 +182,6 @@ Game::~Game()
delete m_NetworkServer;
}
delete m_World;
delete m_FrameStack;
delete m_InputProxy;
delete m_InputManager;
delete m_RenderFrame;
@@ -189,16 +200,20 @@ void Game::Tick()
// Handle input in a weird looking but responsive way
m_EventBroker->Process<InputManager>();
m_EventBroker->Swap();
PerformanceTimer::StartTimer("InputManager");
m_InputManager->Update(dt);
m_EventBroker->Swap();
PerformanceTimer::StartTimerAndStopPrevious("InputProxy");
m_InputProxy->Update(dt);
m_EventBroker->Swap();
m_InputProxy->Process();
m_EventBroker->Swap();
PerformanceTimer::StartTimerAndStopPrevious("SoundManager");
m_SoundManager->Update(dt);
// Update network
PerformanceTimer::StartTimerAndStopPrevious("Network");
m_EventBroker->Process<MultiplayerSnapshotFilter>();
if (m_NetworkClient != nullptr) {
m_NetworkClient->Update();
@@ -209,10 +224,14 @@ void Game::Tick()
//m_SoundManager->Update(dt);
// Iterate through systems and update world!
PerformanceTimer::StartTimerAndStopPrevious("SystemPipeline");
m_EventBroker->Process<SystemPipeline>();
m_SystemPipeline->Update(dt);
PerformanceTimer::StartTimerAndStopPrevious("RendererUpdate");
m_Renderer->Update(dt);
PerformanceTimer::StartTimerAndStopPrevious("RendererDraw");
m_Renderer->Draw(*m_RenderFrame);
PerformanceTimer::StopTimer("RendererDraw");
m_RenderFrame->Clear();
m_EventBroker->Swap();
m_EventBroker->Clear();
@@ -13,6 +13,7 @@ bool MultiplayerSnapshotFilter::FilterComponent(EntityWrapper entity, SharedComp
component.Info.Name == "Transform"
|| component.Info.Name == "Physics"
|| component.Info.Name == "AssaultWeapon"
|| component.Info.Name == "DefenderWeapon"
|| component.Info.Name == "Animation"
|| component.Info.Name == "AnimationOffset"
|| entity.Name() == "PlayerName"
+58 -27
View File
@@ -3,36 +3,43 @@
AmmoPickupSystem::AmmoPickupSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &AmmoPickupSystem::OnTriggerTouch);
if (IsServer) {
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &AmmoPickupSystem::OnTriggerTouch);
}
if (IsClient) {
EVENT_SUBSCRIBE_MEMBER(m_EAmmoPickup, &AmmoPickupSystem::OnAmmoPickup);
}
}
void AmmoPickupSystem::Update(double dt)
{
for (auto it = m_ETriggerTouchVector.begin(); it != m_ETriggerTouchVector.end(); ++it)
{
auto& ammoPickupPosition = *it;
//set the double timer value (value 3)
ammoPickupPosition.DecreaseThisRespawnTimer -= dt;
if (ammoPickupPosition.DecreaseThisRespawnTimer < 0.0) {
//spawn and delete the vector item
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/AmmoPickup.xml");
EntityFileParser parser(entityFile);
EntityID ammoPickupID = parser.MergeEntities(m_World);
if (IsServer) {
for (auto it = m_ETriggerTouchVector.begin(); it != m_ETriggerTouchVector.end(); ++it) {
auto& ammoPickupPosition = *it;
//set the double timer value (value 3)
ammoPickupPosition.DecreaseThisRespawnTimer -= dt;
if (ammoPickupPosition.DecreaseThisRespawnTimer < 0.0) {
//spawn and delete the vector item
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/AmmoPickup.xml");
EntityFileParser parser(entityFile);
EntityID ammoPickupID = parser.MergeEntities(m_World);
//let the world know a pickup has spawned (graphics effects, etc)
Events::PickupSpawned ePickupSpawned;
ePickupSpawned.Pickup = EntityWrapper(m_World, ammoPickupID);
m_EventBroker->Publish(ePickupSpawned);
//let the world know a pickup has spawned (graphics effects, etc)
Events::PickupSpawned ePickupSpawned;
ePickupSpawned.Pickup = EntityWrapper(m_World, ammoPickupID);
m_EventBroker->Publish(ePickupSpawned);
//set values from the old entity to the new entity
auto& newAmmoPickupEntity = EntityWrapper(m_World, ammoPickupID);
newAmmoPickupEntity["Transform"]["Position"] = ammoPickupPosition.Pos;
newAmmoPickupEntity["AmmoPickup"]["AmmoGain"] = ammoPickupPosition.AmmoGain;
newAmmoPickupEntity["AmmoPickup"]["RespawnTimer"] = ammoPickupPosition.RespawnTimer;
//set values from the old entity to the new entity
auto& newAmmoPickupEntity = EntityWrapper(m_World, ammoPickupID);
newAmmoPickupEntity["Transform"]["Position"] = ammoPickupPosition.Pos;
newAmmoPickupEntity["AmmoPickup"]["AmmoGain"] = ammoPickupPosition.AmmoGain;
newAmmoPickupEntity["AmmoPickup"]["RespawnTimer"] = ammoPickupPosition.RespawnTimer;
m_World->SetParent(newAmmoPickupEntity.ID, ammoPickupPosition.parentID);
//erase the current element (AmmoPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
//erase the current element (AmmoPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
}
}
}
}
@@ -40,7 +47,11 @@ void AmmoPickupSystem::Update(double dt)
bool AmmoPickupSystem::OnTriggerTouch(Events::TriggerTouch& e)
{
if (e.Entity != LocalPlayer) {
/*if (e.Entity != LocalPlayer) {
return false;
}*/
if (!e.Entity.Valid()) {
return false;
}
//TODO: add other weapontypes
@@ -65,14 +76,34 @@ bool AmmoPickupSystem::OnTriggerTouch(Events::TriggerTouch& e)
ePlayerAmmoPickup.Player = e.Entity;
m_EventBroker->Publish(ePlayerAmmoPickup);
//immediately give the player the ammo
currentAmmo = std::min(currentAmmo + ammoGiven, maxWeaponAmmo);
//currentAmmo = std::min(currentAmmo + ammoGiven, maxWeaponAmmo);
//copy position, ammogain, respawntimer (twice since one of the values will be counted down to 0, the other will be set in the new object)
//we need to copy all values since each value can be different for each ammoPickup
m_ETriggerTouchVector.push_back({ (glm::vec3)e.Trigger["Transform"]["Position"] ,e.Trigger["AmmoPickup"]["AmmoGain"],
e.Trigger["AmmoPickup"]["RespawnTimer"],e.Trigger["AmmoPickup"]["RespawnTimer"] });
m_ETriggerTouchVector.push_back({ e.Trigger["Transform"]["Position"], e.Trigger["AmmoPickup"]["AmmoGain"],
e.Trigger["AmmoPickup"]["RespawnTimer"], e.Trigger["AmmoPickup"]["RespawnTimer"], m_World->GetParent(e.Trigger.ID) });
//delete the ammopickup
m_World->DeleteEntity(e.Trigger.ID);
return true;
}
bool AmmoPickupSystem::OnAmmoPickup(Events::AmmoPickup & e)
{
if (!e.Player.Valid()) {
return false;
}
//TODO: add other weapontypes
if (!e.Player.HasComponent("AssaultWeapon")) {
return false;
}
int maxWeaponAmmo = (int)e.Player["AssaultWeapon"]["MaxAmmo"];
int& currentAmmo = (int)e.Player["AssaultWeapon"]["Ammo"];
//cant pick up ammopacks if you are already at MaxAmmo
if (currentAmmo >= maxWeaponAmmo) {
return false;
}
currentAmmo = std::min(currentAmmo + e.AmmoGain, maxWeaponAmmo);
return false;
}
+31 -26
View File
@@ -1,32 +1,39 @@
#include "Systems/CapturePointSystem.h"
#include <algorithm>
CapturePointSystem::CapturePointSystem(SystemParams params)
CapturePointSystem::CapturePointSystem(SystemParams params)
: System(params)
, PureSystem("CapturePoint")
{
//subscribe/listenTo playerdamage,healthpickup events (using the eventBroker)
if (IsClient) {
if (IsServer) {
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &CapturePointSystem::OnTriggerTouch);
EVENT_SUBSCRIBE_MEMBER(m_ETriggerLeave, &CapturePointSystem::OnTriggerLeave);
EVENT_SUBSCRIBE_MEMBER(m_ECaptured, &CapturePointSystem::OnCaptured);
}
}
//here all capturepoints will update their component
//NOTE: needs to run each frame, since we're possibly modifying the captureTimer for the capturePoints by dt
void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, ComponentWrapper& cCapturePoint, double dt)
{
if (!IsClient) {
if (!IsServer) {
return;
}
if (m_WinnerWasFound) {
return;
}
const int capturePointNumber = cCapturePoint["CapturePointNumber"];
const bool hasTeamComponent = capturePointEntity.HasComponent("Team");
if (m_NumberOfCapturePoints != 0) {
if (!m_CapturePointNumberToEntityMap[0].HasComponent("CapturePoint")) {
//if map has changed, the capturepoints has changed, now have to redo them
m_NumberOfCapturePoints = 0;
m_CapturePointNumberToEntityMap.clear();
}
}
//if point doesnt have a teamComponent yet, add one. since:
//what if capture point has no team -> we cant get/use the team enum from it...
if (!hasTeamComponent) {
@@ -71,8 +78,7 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
std::map<std::string, int> nextPossibleCapturePoint;
nextPossibleCapturePoint["Red"] = -1;
nextPossibleCapturePoint["Blue"] = -1;
for (int i = 0; i < m_NumberOfCapturePoints; i++)
{
for (int i = 0; i < m_NumberOfCapturePoints; i++) {
if (!m_CapturePointNumberToEntityMap[i].HasComponent("Team")) {
continue;
}
@@ -84,8 +90,7 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
nextPossibleCapturePoint["Blue"] = i + 1;
}
}
for (int i = m_NumberOfCapturePoints - 1; i >= 0; i--)
{
for (int i = m_NumberOfCapturePoints - 1; i >= 0; i--) {
if (!m_CapturePointNumberToEntityMap[i].HasComponent("Team")) {
continue;
}
@@ -97,11 +102,17 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
nextPossibleCapturePoint["Blue"] = i - 1;
}
}
if (m_RecentlyCapturedNeedNextCapturePointNow) {
m_CapturedEvent.NextCapturePoint = m_CapturedEvent.TeamNumberThatCapturedCapturePoint == blueTeam ?
m_CapturePointNumberToEntityMap[nextPossibleCapturePoint["Blue"]] :
m_CapturePointNumberToEntityMap[nextPossibleCapturePoint["Red"]];
m_EventBroker->Publish(m_CapturedEvent);
m_RecentlyCapturedNeedNextCapturePointNow = false;
}
//reset timers and reset the bool that triggers this
if (m_ResetTimers) {
for (int i = 0; i < m_NumberOfCapturePoints; i++)
{
for (int i = 0; i < m_NumberOfCapturePoints; i++) {
ComponentWrapper& capturePoint = m_CapturePointNumberToEntityMap[i]["CapturePoint"];
if ((int)capturePoint["CapturePointNumber"] != nextPossibleCapturePoint["Red"] &&
(int)capturePoint["CapturePointNumber"] != nextPossibleCapturePoint["Blue"]) {
@@ -116,8 +127,7 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
}
//check how many players are standing inside and are healthy
for (size_t i = m_ETriggerTouchVector.size(); i > 0; i--)
{
for (size_t i = m_ETriggerTouchVector.size(); i > 0; i--) {
auto triggerTouched = m_ETriggerTouchVector[i - 1];
if (std::get<1>(triggerTouched) == capturePointEntity) {
//some player has touched this - lets figure out: what team, health
@@ -176,8 +186,8 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
cCapturePoint["CaptureTimer"] = (double)cCapturePoint["CaptureTimer"] + timerDeltaChange;
}
//if capturePoint is owned by the team, and the other team has been trying to take it, then increase/decrease the timer towards 0.0
if ((ownedBy == currentTeam && currentTeam == redTeam && (double)cCapturePoint["CaptureTimer"] < 0.0) ||
(ownedBy == currentTeam && currentTeam == blueTeam && (double)cCapturePoint["CaptureTimer"] > 0.0)) {
if ((ownedBy == currentTeam && currentTeam == redTeam && (double)cCapturePoint["CaptureTimer"] < captureTimeToTakeOver) ||
(ownedBy == currentTeam && currentTeam == blueTeam && (double)cCapturePoint["CaptureTimer"] > -captureTimeToTakeOver)) {
cCapturePoint["CaptureTimer"] = (double)cCapturePoint["CaptureTimer"] + timerDeltaChange;
}
//check if captureTimer > captureTimeToTakeOver and if so change owner and publish the eCaptured event
@@ -185,27 +195,23 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
teamComponent["Team"] = currentTeam;
cCapturePoint["CaptureTimer"] = glm::sign((double)cCapturePoint["CaptureTimer"])*captureTimeToTakeOver;
//publish Captured event
Events::Captured e;
e.CapturePointID = cCapturePoint.EntityID;
e.TeamNumberThatCapturedCapturePoint = currentTeam;
m_EventBroker->Publish(e);
m_RecentlyCapturedNeedNextCapturePointNow = true;
m_CapturedEvent.CapturePointTakenID = cCapturePoint.EntityID;
m_CapturedEvent.TeamNumberThatCapturedCapturePoint = currentTeam;
//NextPossibleCapturePoint will be calculated in the next update...
}
}
//check for possible winCondition = check if the homebase is owned by the other team
bool checkForWinner = false;
if (capturePointNumber == m_RedTeamHomeCapturePoint && ownedBy != redTeam)
{
if (capturePointNumber == m_RedTeamHomeCapturePoint && ownedBy != redTeam) {
checkForWinner = true;
}
if (capturePointNumber == m_BlueTeamHomeCapturePoint && ownedBy != blueTeam)
{
if (capturePointNumber == m_BlueTeamHomeCapturePoint && ownedBy != blueTeam) {
checkForWinner = true;
}
if (checkForWinner && !m_WinnerWasFound)
{
if (checkForWinner && !m_WinnerWasFound) {
//publish Win event
Events::Win e;
e.TeamThatWon = ownedBy;
@@ -224,8 +230,7 @@ bool CapturePointSystem::OnTriggerTouch(const Events::TriggerTouch& e)
bool CapturePointSystem::OnTriggerLeave(const Events::TriggerLeave& e)
{
for (size_t i = 0; i < m_ETriggerTouchVector.size(); i++)
{
for (size_t i = 0; i < m_ETriggerTouchVector.size(); i++) {
auto triggerTouched = m_ETriggerTouchVector[i];
if (std::get<0>(triggerTouched) == e.Entity && std::get<1>(triggerTouched) == e.Trigger) {
m_ETriggerTouchVector.erase(m_ETriggerTouchVector.begin() + i);
+104 -31
View File
@@ -12,51 +12,41 @@ DamageIndicatorSystem::DamageIndicatorSystem(SystemParams params)
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DamageIndicator.xml");
}
void DamageIndicatorSystem::Update(double dt) {
if (!IsServer && LocalPlayer.Valid()) {
for (auto& iter = updateDamageIndicatorVector.begin(); iter != updateDamageIndicatorVector.end(); iter++) {
if (!iter->spriteEntity.Valid()) {
updateDamageIndicatorVector.erase(iter);
break;
}
auto angleBetweenVectors = CalculateAngle(LocalPlayer, iter->enemyPosition);
//simply set the rotation z-wise to the angleBetweenVectors
iter->spriteEntity["Transform"]["Orientation"] = glm::vec3(0, 0, angleBetweenVectors);
}
}
}
bool DamageIndicatorSystem::OnPlayerDamage(Events::PlayerDamage& e)
{
if (m_CurrentCamera == EntityID_Invalid) {
return false;
}
//if (e.Victim != LocalPlayer) {
// return false;
//}
if (e.Victim.Valid() && e.Victim != LocalPlayer && !e.Victim.IsChildOf(LocalPlayer)) {
return false;
}
if (!e.Inflictor.Valid() || !e.Victim.Valid()) {
return false;
return false;
}
//grab players direction
auto playerOrientation = glm::quat((glm::vec3)e.Victim["Transform"]["Orientation"]);
glm::vec3 inflictorPos = e.Inflictor["Transform"]["Position"];
//if testing
#ifdef INDICATOR_TEST
inflictorPos = DamageIndicatorTest(e.Victim);
#endif
//get the position vectors, but ignore the y-height
auto enemyPosition = (glm::vec3)e.Inflictor["Transform"]["Position"];
auto playerPosition = (glm::vec3)e.Victim["Transform"]["Position"];
enemyPosition.y = 0.0f;
playerPosition.y = 0.0f;
//calculate the enemy to player vector
auto enemyPlayerVector = glm::normalize(playerPosition - enemyPosition);
//get angle from players current rotation, this angle is how much you rotate around the y-axis
auto playerAngle = glm::angle(playerOrientation);
auto playerRotationVector = glm::normalize(glm::rotateY(glm::vec3(0, 0, 1), playerAngle));
//dot product of players direction-vector and enemys-to-playervector will give the cos of the angle between the vectors
auto playerRotationDot = glm::dot(playerRotationVector, enemyPlayerVector);
//to get the angle between the vectors just do cos-inverse
auto angleBetweenVectors = glm::acos(playerRotationDot);
//rotate the direction-vector 90 degrees to get the players side-vector
auto playerSideVector = glm::normalize(glm::rotateY(glm::vec3(0, 0, 1), playerAngle + 1.57f));
//dot of sidevector positive = enemy is on the right side, dot sidevector negative = left side
auto playerSideVectorDot = glm::dot(playerSideVector, enemyPlayerVector);
if (playerSideVectorDot < 0) {
angleBetweenVectors = -angleBetweenVectors;
}
float angleBetweenVectors = CalculateAngle(e.Victim, inflictorPos);
//load & set the "2d" sprite
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DamageIndicator.xml");
@@ -67,6 +57,10 @@ bool DamageIndicatorSystem::OnPlayerDamage(Events::PlayerDamage& e)
//simply set the rotation z-wise to the angleBetweenVectors
spriteWrapper["Transform"]["Orientation"] = glm::vec3(0, 0, angleBetweenVectors);
if (!IsServer) {
updateDamageIndicatorVector.emplace_back(spriteWrapper, inflictorPos);
}
return true;
}
@@ -74,3 +68,82 @@ bool DamageIndicatorSystem::OnSetCamera(const Events::SetCamera& e) {
m_CurrentCamera = e.CameraEntity.ID;
return true;
}
float DamageIndicatorSystem::CalculateAngle(EntityWrapper player, glm::vec3 enemyPos) {
//grab players direction
auto playerOrientation = glm::quat((glm::vec3)player["Transform"]["Orientation"]);
//get the position vectors, but ignore the y-height
auto enemyPosition = enemyPos;
auto playerPosition = (glm::vec3)player["Transform"]["Position"];
enemyPosition.y = 0.0f;
playerPosition.y = 0.0f;
//calculate the enemy to player vector
auto enemyPlayerVector = glm::normalize(playerPosition - enemyPosition);
//get the rotationvector relative to the z-axis
auto rotationVectorVec3 = glm::vec3(glm::toMat4(Transform::AbsoluteOrientation(player))*glm::vec4(0, 0, 1, 0));
//rotate the direction-vector 90 degrees to get the players side-vector
auto playerSideVector = glm::vec3(glm::rotateY(rotationVectorVec3, 1.57f));
//dot product of players direction-vector and enemys-to-playervector will give the cos of the angle between the vectors
auto playerRotationDot = glm::dot(rotationVectorVec3, enemyPlayerVector);
//to get the angle between the vectors just do cos-inverse
auto angleBetweenVectors = glm::acos(playerRotationDot);
//dot of sidevector positive = enemy is on the right side, dot sidevector negative = left side
auto playerSideVectorDot = glm::dot(playerSideVector, enemyPlayerVector);
if (playerSideVectorDot < 0) {
angleBetweenVectors = -angleBetweenVectors;
}
return angleBetweenVectors;
}
#ifdef INDICATOR_TEST
glm::vec3 DamageIndicatorSystem::DamageIndicatorTest(EntityWrapper player) {
auto currentPos = (glm::vec3)player["Transform"]["Position"];
auto testVar = 1;
auto testVar2 = 1;
if (m_TestVar % 4 == 0) {
testVar = -1;
testVar2 = 1;
}
if (m_TestVar % 4 == 1) {
testVar = 1;
testVar2 = 1;
}
if (m_TestVar % 4 == 2) {
testVar *= -1;
testVar2 = -1;
}
if (m_TestVar % 4 == 3) {
testVar = 1;
testVar2 = -1;
}
m_TestVar++;
auto inflictorPos = glm::vec3(currentPos.x + testVar*6.0f, currentPos.y, currentPos.z + testVar2*6.0f);
//load the explosioneffect XML
auto deathEffect = ResourceManager::Load<EntityFile>("Schema/Entities/PlayerDeathExplosionWithCamera.xml");
EntityFileParser parser(deathEffect);
EntityID deathEffectID = parser.MergeEntities(m_World);
EntityWrapper deathEffectEW = EntityWrapper(m_World, deathEffectID);
//components that we need from player
auto playerModel = player.FirstChildByName("PlayerModel");
auto playerEntityModel = playerModel["Model"];
auto playerEntityAnimation = playerModel["Animation"];
//copy the data from player to explosioneffectmodel
playerEntityModel.Copy(deathEffectEW["Model"]);
playerEntityAnimation.Copy(deathEffectEW["Animation"]);
//copy the models position,orientation
deathEffectEW["Transform"]["Position"] = inflictorPos;
deathEffectEW["Transform"]["Orientation"] = (glm::vec3)player["Transform"]["Orientation"];
return inflictorPos;
}
#endif
+1 -1
View File
@@ -24,7 +24,7 @@ void HealthSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& cHea
bool HealthSystem::OnPlayerDamaged(Events::PlayerDamage& e)
{
if (!IsServer && m_NetworkEnabled) {
if (!IsServer && m_NetworkEnabled || !e.Victim.Valid()) {
return false;
}
+29 -25
View File
@@ -3,36 +3,40 @@
PickupSpawnSystem::PickupSpawnSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &PickupSpawnSystem::OnTriggerTouch);
if (IsServer) {
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &PickupSpawnSystem::OnTriggerTouch);
}
}
void PickupSpawnSystem::Update(double dt)
{
for (auto it = m_ETriggerTouchVector.begin(); it != m_ETriggerTouchVector.end(); ++it)
{
auto& healthPickupPosition = *it;
//set the double timer value (value 3)
healthPickupPosition.DecreaseThisRespawnTimer -= dt;
if (healthPickupPosition.DecreaseThisRespawnTimer < 0) {
//spawn and delete the vector item
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/HealthPickup.xml");
EntityFileParser parser(entityFile);
EntityID healthPickupID = parser.MergeEntities(m_World);
if (IsServer) {
for (auto it = m_ETriggerTouchVector.begin(); it != m_ETriggerTouchVector.end(); ++it) {
auto& healthPickupPosition = *it;
//set the double timer value (value 3)
healthPickupPosition.DecreaseThisRespawnTimer -= dt;
if (healthPickupPosition.DecreaseThisRespawnTimer < 0) {
//spawn and delete the vector item
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/HealthPickup.xml");
EntityFileParser parser(entityFile);
EntityID healthPickupID = parser.MergeEntities(m_World);
//let the world know a pickup has spawned (graphics effects, etc)
Events::PickupSpawned ePickupSpawned;
ePickupSpawned.Pickup = EntityWrapper(m_World, healthPickupID);
m_EventBroker->Publish(ePickupSpawned);
//let the world know a pickup has spawned (graphics effects, etc)
Events::PickupSpawned ePickupSpawned;
ePickupSpawned.Pickup = EntityWrapper(m_World, healthPickupID);
m_EventBroker->Publish(ePickupSpawned);
//set values from the old entity to the new entity
auto& newHealthPickupEntity = EntityWrapper(m_World, healthPickupID);
newHealthPickupEntity["Transform"]["Position"] = healthPickupPosition.Pos;
newHealthPickupEntity["HealthPickup"]["HealthGain"] = healthPickupPosition.HealthGain;
newHealthPickupEntity["HealthPickup"]["RespawnTimer"] = healthPickupPosition.RespawnTimer;
//set values from the old entity to the new entity
auto& newHealthPickupEntity = EntityWrapper(m_World, healthPickupID);
newHealthPickupEntity["Transform"]["Position"] = healthPickupPosition.Pos;
newHealthPickupEntity["HealthPickup"]["HealthGain"] = healthPickupPosition.HealthGain;
newHealthPickupEntity["HealthPickup"]["RespawnTimer"] = healthPickupPosition.RespawnTimer;
m_World->SetParent(newHealthPickupEntity.ID, healthPickupPosition.parentID);
//erase the current element (healthPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
//erase the current element (healthPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
}
}
}
}
@@ -57,8 +61,8 @@ bool PickupSpawnSystem::OnTriggerTouch(Events::TriggerTouch& e)
//copy position, healthgain, respawntimer (twice since one of the values will be counted down to 0, the other will be set in the new object)
//we need to copy all values since each value can be different for each healthPickup
m_ETriggerTouchVector.push_back({ (glm::vec3)e.Trigger["Transform"]["Position"] ,e.Trigger["HealthPickup"]["HealthGain"],
e.Trigger["HealthPickup"]["RespawnTimer"],e.Trigger["HealthPickup"]["RespawnTimer"] });
m_ETriggerTouchVector.push_back({ (glm::vec3)e.Trigger["Transform"]["Position"], e.Trigger["HealthPickup"]["HealthGain"],
e.Trigger["HealthPickup"]["RespawnTimer"], e.Trigger["HealthPickup"]["RespawnTimer"], m_World->GetParent(e.Trigger.ID) });
//delete the healthpickup
m_World->DeleteEntity(e.Trigger.ID);
+2 -3
View File
@@ -33,9 +33,8 @@ void PlayerDeathSystem::createDeathEffect(EntityWrapper player)
EntityWrapper deathEffectEW = EntityWrapper(m_World, deathEffectID);
//components that we need from player
auto playerCamera = player.FirstChildByName("Camera");
auto playerModel = player.FirstChildByName("PlayerModel");
if (!playerCamera.Valid() || !playerModel.Valid()) {
if (!playerModel.Valid()) {
return;
}
if (!playerModel.HasComponent("Model") || !playerModel.HasComponent("Animation")) {
@@ -44,7 +43,7 @@ void PlayerDeathSystem::createDeathEffect(EntityWrapper player)
auto playerEntityModel = playerModel["Model"];
auto playerEntityAnimation = playerModel["Animation"];
//copy the data from player to explisioneffectmodel
//copy the data from player to explosioneffectmodel
playerEntityModel.Copy(deathEffectEW["Model"]);
playerEntityAnimation.Copy(deathEffectEW["Animation"]);
//freeze the animation
+54 -22
View File
@@ -4,6 +4,7 @@ PlayerMovementSystem::PlayerMovementSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_EPlayerSpawned, &PlayerMovementSystem::OnPlayerSpawned);
EVENT_SUBSCRIBE_MEMBER(m_EDoubleJump, &PlayerMovementSystem::OnDoubleJump);
}
PlayerMovementSystem::~PlayerMovementSystem()
@@ -16,7 +17,15 @@ PlayerMovementSystem::~PlayerMovementSystem()
void PlayerMovementSystem::Update(double dt)
{
updateMovementControllers(dt);
updateVelocity(dt);
if (IsServer) {
for (auto& kv : m_PlayerInputControllers) {
updateVelocity(kv.first, dt);
}
} else {
if (LocalPlayer.Valid()) {
updateVelocity(LocalPlayer, dt);
}
}
}
void PlayerMovementSystem::updateMovementControllers(double dt)
@@ -28,7 +37,6 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
if (!player.Valid()) {
continue;
}
// Aim pitch
EntityWrapper cameraEntity = player.FirstChildByName("Camera");
if (cameraEntity.Valid()) {
@@ -40,7 +48,7 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
EntityWrapper playerModel = player.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
ComponentWrapper cAnimationOffset = playerModel["AnimationOffset"];
float pitch = cameraOrientation.x + 0.2;
float pitch = cameraOrientation.x + 0.2f;
double time = (pitch + glm::half_pi<float>()) / glm::pi<float>();
cAnimationOffset["Time"] = time;
}
@@ -64,7 +72,7 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
ComponentWrapper cPhysics = player["Physics"];
//Assault Dash Check
if (player.HasComponent("DashAbility")) {
controller->AssaultDashCheck(dt, ((glm::vec3)cPhysics["Velocity"]).y != 0.0f, player["DashAbility"]["CoolDownMaxTimer"]);
controller->AssaultDashCheck(dt, ((glm::vec3)cPhysics["Velocity"]).y != 0.0f, player["DashAbility"]["CoolDownMaxTimer"], player["DashAbility"]["CoolDownTimer"]);
}
wishDirection = controller->Movement() * glm::inverse(glm::quat(ori));
//this makes sure you can only dash in the 4 directions: forw,backw,left,right
@@ -118,25 +126,29 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
ImGui::Text("velocity: (%f, %f, %f) |%f|", velocity.x, velocity.y, velocity.z, glm::length(velocity));
}
//you cant jump and dash at the same time - since there is no friction in the air and we would thus dash much further in the air
if (!controller->PlayerIsDashing() && controller->Jumping() && !controller->Crouching() && (isOnGround || !controller->DoubleJumping())) {
(bool)cPhysics["IsOnGround"] = false;
if (isOnGround) {
controller->SetDoubleJumping(false);
}
//If player presses Jump and is not crouching.
if (controller->Jumping() && !controller->Crouching()) {
if (isOnGround) {
controller->SetDoubleJumping(false);
} else {
(bool)cPhysics["IsOnGround"] = false;
velocity.y = player["Player"]["JumpSpeed"];
} else if (player.HasComponent("DoubleJump") && !controller->DoubleJumping()) {
//Enter here if player can double jump and is doing so.
(bool)cPhysics["IsOnGround"] = false;
velocity.y = player["DoubleJump"]["DoubleJumpSpeed"];
// If IsServer and network is off this will not work
if (IsClient) {
//put a hexagon at the players feet
auto hexagonEffect = ResourceManager::Load<EntityFile>("Schema/Entities/DoubleJumpHexagon.xml");
EntityFileParser parser(hexagonEffect);
EntityID hexagonEffectID = parser.MergeEntities(m_World);
EntityWrapper hexagonEW = EntityWrapper(m_World, hexagonEffectID);
hexagonEW["Transform"]["Position"] = (glm::vec3)player["Transform"]["Position"];
spawnHexagon(player);
controller->SetDoubleJumping(true);
// Publish event for client to listen to
Events::DoubleJump e;
e.entityID = player.ID;
m_EventBroker->Publish(e);
}
}
velocity.y = 4.f;
}
if (player.HasComponent("AABB")) {
@@ -231,15 +243,11 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
}
void PlayerMovementSystem::updateVelocity(double dt)
void PlayerMovementSystem::updateVelocity(EntityWrapper player, double dt)
{
// Only apply velocity to local player
if (!LocalPlayer.Valid()) {
return;
}
ComponentWrapper& cTransform = LocalPlayer["Transform"];
ComponentWrapper& cPhysics = LocalPlayer["Physics"];
ComponentWrapper& cTransform = player["Transform"];
ComponentWrapper& cPhysics = player["Physics"];
glm::vec3& velocity = cPhysics["Velocity"];
bool isOnGround = (bool)cPhysics["IsOnGround"];
@@ -301,3 +309,27 @@ bool PlayerMovementSystem::OnPlayerSpawned(Events::PlayerSpawned& e)
}
return true;
}
bool PlayerMovementSystem::OnDoubleJump(Events::DoubleJump & e)
{
// If entity does not exist, exit
if (!EntityWrapper(m_World, e.entityID).Valid()) {
return false;
}
// If entity IsLocalPlayer, exit
if (e.entityID == m_LocalPlayer.ID) {
return false;
}
spawnHexagon(EntityWrapper(m_World, e.entityID));
return true;
}
void PlayerMovementSystem::spawnHexagon(EntityWrapper target)
{
//put a hexagon at the entitys... feet?
auto hexagonEffect = ResourceManager::Load<EntityFile>("Schema/Entities/DoubleJumpHexagon.xml");
EntityFileParser parser(hexagonEffect);
EntityID hexagonEffectID = parser.MergeEntities(m_World);
EntityWrapper hexagonEW = EntityWrapper(m_World, hexagonEffectID);
hexagonEW["Transform"]["Position"] = (glm::vec3)target["Transform"]["Position"];
}
+25 -14
View File
@@ -1,29 +1,40 @@
#include "Systems/PlayerSpawnSystem.h"
//This should be set by the config anyway.
float PlayerSpawnSystem::m_RespawnTime = 15.0f;
PlayerSpawnSystem::PlayerSpawnSystem(SystemParams params)
PlayerSpawnSystem::PlayerSpawnSystem(SystemParams params)
: System(params)
, m_Timer(0.f)
, m_DbgConfigForceRespawn(false)
{
EVENT_SUBSCRIBE_MEMBER(m_OnInputCommand, &PlayerSpawnSystem::OnInputCommand);
EVENT_SUBSCRIBE_MEMBER(m_OnPlayerSpawnerd, &PlayerSpawnSystem::OnPlayerSpawned);
EVENT_SUBSCRIBE_MEMBER(m_OnPlayerDeath, &PlayerSpawnSystem::OnPlayerDeath);
m_NetworkEnabled = ResourceManager::Load<ConfigFile>("Config.ini")->Get("Networking.StartNetwork", false);
ConfigFile* config = ResourceManager::Load<ConfigFile>("Config.ini");
m_NetworkEnabled = config->Get("Networking.StartNetwork", false);
m_ForcedRespawnTime = config->Get("Debug.RespawnTime", -1.0f);
m_DbgConfigForceRespawn = m_ForcedRespawnTime > 0;
}
void PlayerSpawnSystem::Update(double dt)
{
//Increase timer.
m_Timer += dt;
if (m_Timer < m_RespawnTime) {
return;
// If there are no CapturePointGameMode components we will just spawn immediately.
// Should be able to support older maps with this.
// TODO: In the future we might want to return instead, to avoid spawning in the menu for instance.
auto pool = m_World->GetComponents("CapturePointGameMode");
if (pool != nullptr && pool->size() > 0)
{
// Take the first CapturePointGameMode component found.
ComponentWrapper& modeComponent = *pool->begin();
// Increase timer.
double& timer = (double&)modeComponent["RespawnTime"];
timer += dt;
double maxRespawnTime = m_DbgConfigForceRespawn ? m_ForcedRespawnTime : (double)modeComponent["MaxRespawnTime"];
if (timer < maxRespawnTime) {
return;
}
// If respawn time has passed, we spawn all players that have requested to be spawned.
timer = 0;
}
//If respawn time has passed, we spawn all players that have requested to be spawned.
m_Timer = 0.f;
//If there are no spawn requests, return immediately, if we are client the SpawnRequests should always be empty.
// If there are no spawn requests, return immediately, if we are client the SpawnRequests should always be empty.
if (m_SpawnRequests.size() == 0) {
return;
}
@@ -49,7 +60,7 @@ void PlayerSpawnSystem::Update(double dt)
}
// Spawn the player!
EntityWrapper player = SpawnerSystem::Spawn(spawner);
EntityWrapper player = SpawnerSystem::Spawn(spawner, EntityWrapper::Invalid, "Player");
// Set the player team affiliation
player["Team"]["Team"] = req.Team;
+21 -4
View File
@@ -14,6 +14,7 @@ SoundSystem::SoundSystem(SystemParams params)
EVENT_SUBSCRIBE_MEMBER(m_EPlayerDamage, &SoundSystem::OnPlayerDamage);
EVENT_SUBSCRIBE_MEMBER(m_ECaptured, &SoundSystem::OnCaptured);
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &SoundSystem::OnTriggerTouch);
EVENT_SUBSCRIBE_MEMBER(m_EPlayerDeath, &SoundSystem::OnPlayerDeath);
}
}
@@ -90,7 +91,10 @@ bool SoundSystem::drumTimer(double dt)
bool SoundSystem::OnCaptured(const Events::Captured & e)
{
int homeTeam = (int)m_World->GetComponent(e.CapturePointID, "Team")["Team"];
if (!LocalPlayer.Valid()) {
return false;
}
int homeTeam = (int)m_World->GetComponent(e.CapturePointTakenID, "Team")["Team"];
int team = (int)m_World->GetComponent(LocalPlayer.ID, "Team")["Team"];
Events::PlaySoundOnEntity ev;
if (team == homeTeam) {
@@ -108,7 +112,12 @@ bool SoundSystem::OnCaptured(const Events::Captured & e)
// Testing purposes atm...
bool SoundSystem::OnPlayerDamage(const Events::PlayerDamage & e)
{
// Should check for only local players here...
if (!IsClient) { // Only play for clients
return false;
}
if (LocalPlayer.ID = e.Victim.ID) { // You're local player was the one who took dmg
return false;
}
std::uniform_int_distribution<int> dist(1, 12);
int rand = dist(generator);
std::vector<std::string> paths;
@@ -128,8 +137,16 @@ bool SoundSystem::OnPlayerDamage(const Events::PlayerDamage & e)
bool SoundSystem::OnPlayerDeath(const Events::PlayerDeath & e)
{
Events::PlaySoundOnEntity ev;
ev.EmitterID = LocalPlayer.ID;
if (e.Player.ID != LocalPlayer.ID) {
return false;
}
if (!IsClient) {
return false;
}
// The local player is dead. The local player might be invalid?
// Play the sound from the listener.
// TODO: We might want to hear other players die.
Events::PlayBackgroundMusic ev;
ev.FilePath = "Audio/die/die2.wav";
m_EventBroker->Publish(ev);
return false;
+78 -17
View File
@@ -1,12 +1,13 @@
#include "Systems/SpawnerSystem.h"
#include "Collision/Collision.h"
SpawnerSystem::SpawnerSystem(SystemParams params)
SpawnerSystem::SpawnerSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_OnSpawnerSpawn, &SpawnerSystem::OnSpawnerSpawn);
}
EntityWrapper SpawnerSystem::Spawn(EntityWrapper spawner, EntityWrapper parent /*= EntityWrapper::Invalid*/)
EntityWrapper SpawnerSystem::Spawn(EntityWrapper spawner, EntityWrapper parent /*= EntityWrapper::Invalid*/, const std::string& dontCollideComponent)
{
// Spawn the entity in the parent's world if it exists, otherwise in the spawner's world
World* world = parent.World;
@@ -14,17 +15,41 @@ EntityWrapper SpawnerSystem::Spawn(EntityWrapper spawner, EntityWrapper parent /
world = spawner.World;
}
// Load the entity file and parse it
const std::string& entityFilePath = spawner["Spawner"]["EntityFile"];
auto entityFile = ResourceManager::Load<EntityFile>(entityFilePath);
if (entityFile == nullptr) {
return EntityWrapper::Invalid;
}
EntityFileParser parser(entityFile);
EntityWrapper spawnedEntity(world, parser.MergeEntities(world, parent.ID));
//If the spawned entity is collideable, then we must not spawn it where it collides with something that
//has a dontCollideComponent attached.
bool spawnOnCollidable = dontCollideComponent.empty() || !spawnedEntity.HasComponent("Collidable");
if (!spawnOnCollidable) {
boost::optional<EntityAABB> optBox = Collision::EntityAbsoluteAABB(spawnedEntity);
//If we can't calculate the box for some reason, then just spawn somewhere anyway.
if (!optBox) {
spawnOnCollidable = true;
}
}
// Find any SpawnPoints existing as children of spawner
auto children = spawner.World->GetChildren(spawner.ID);
auto children = spawner.World->GetDirectChildren(spawner.ID);
std::vector<EntityWrapper> spawnPoints;
for (auto kv = children.first; kv != children.second; ++kv) {
const EntityID& child = kv->second;
if (spawner.World->HasComponent(child, "SpawnPoint")) {
spawnPoints.push_back(EntityWrapper(spawner.World, child));
EntityWrapper spawnPoint = EntityWrapper(spawner.World, child);
if (spawnOnCollidable || !spawnedEntityIsColliding(spawnedEntity, spawnPoint, dontCollideComponent)) {
spawnPoints.push_back(spawnPoint);
}
}
}
// Choose a random SpawnPoint
// If there are no children, or if they are all blocked, then the entity will be spawned at the spawner itself.
EntityWrapper spawnPoint = spawner;
if (!spawnPoints.empty()) {
if (spawnPoints.size() > 1) {
@@ -39,25 +64,61 @@ EntityWrapper SpawnerSystem::Spawn(EntityWrapper spawner, EntityWrapper parent /
}
}
// Load the entity file and parse it
const std::string& entityFilePath = spawner["Spawner"]["EntityFile"];
auto entityFile = ResourceManager::Load<EntityFile>(entityFilePath);
if (entityFile == nullptr) {
return EntityWrapper::Invalid;
}
EntityFileParser parser(entityFile);
EntityWrapper spawnedEntity(world, parser.MergeEntities(world, parent.ID));
if (spawnPoint != parent) {
// Set its position and orientation to that of the SpawnPoint
spawnedEntity["Transform"]["Position"] = Transform::AbsolutePosition(spawnPoint.World, spawnPoint.ID);
// TODO: Quaternions, bitch
spawnedEntity["Transform"]["Orientation"] = glm::eulerAngles(Transform::AbsoluteOrientation(spawnPoint));
transformEntityToSpawnPoint(spawnedEntity, spawnPoint);
}
return spawnedEntity;
}
void SpawnerSystem::transformEntityToSpawnPoint(EntityWrapper spawnedEntity, EntityWrapper spawnPoint)
{
// Set its position and orientation to that of the SpawnPoint
spawnedEntity["Transform"]["Position"] = Transform::AbsolutePosition(spawnPoint.World, spawnPoint.ID);
// TODO: Quaternions, bitch
spawnedEntity["Transform"]["Orientation"] = glm::eulerAngles(Transform::AbsoluteOrientation(spawnPoint));
}
bool SpawnerSystem::spawnedEntityIsColliding(EntityWrapper spawnedEntity, EntityWrapper spawnPoint, const std::string& dontCollideComponent)
{
transformEntityToSpawnPoint(spawnedEntity, spawnPoint);
//Check if the spawned entity collides with anything, and if so, continue to the next spawnpoint.
EntityAABB spawnedBox = *Collision::EntityAbsoluteAABB(spawnedEntity);
const ComponentPool* otherSpawnedEntities = spawnPoint.World->GetComponents(dontCollideComponent);
for (const auto& obj : *otherSpawnedEntities) {
if (spawnedEntity.ID == obj.EntityID) {
continue;
}
EntityWrapper otherEntity = EntityWrapper(spawnPoint.World, obj.EntityID);
if (!otherEntity.HasComponent("Collidable")) {
continue;
}
auto otherBox = Collision::EntityAbsoluteAABB(otherEntity);
if (!otherBox) {
continue;
}
if (Collision::AABBVsAABB(spawnedBox, *otherBox)) {
if (!spawnedBox.Entity.HasComponent("Model")) {
return true;
}
RawModel* model = nullptr;
try {
model = ResourceManager::Load<RawModel, true>(otherEntity["Model"]["Resource"]);
} catch (const std::exception&) {
}
if (model != nullptr && Collision::AABBvsTriangles(
spawnedBox,
model->Vertices(),
model->m_Indices,
Transform::ModelMatrix(otherEntity))) {
return true;
}
}
}
return false;
}
bool SpawnerSystem::OnSpawnerSpawn(Events::SpawnerSpawn& e)
{
EntityWrapper spawnedEntity = Spawn(e.Spawner, e.Parent);
@@ -1,13 +1,5 @@
#include "Systems/Weapon/AssaultWeaponBehaviour.h"
AssaultWeaponBehaviour::AssaultWeaponBehaviour(SystemParams systemParams, IRenderer* renderer, Octree<EntityAABB>* collisionOctree, EntityWrapper player)
: WeaponBehaviour(systemParams, renderer, collisionOctree, player)
{
m_FirstPersonModel = m_Player.FirstChildByName("Hands");
m_ThirdPersonModel = m_Player.FirstChildByName("PlayerModel");
EVENT_SUBSCRIBE_MEMBER(m_EAnimationComplete, &AssaultWeaponBehaviour::OnAnimationComplete);
}
void AssaultWeaponBehaviour::Fire()
{
m_TimeSinceLastFire = 0.0;
@@ -36,7 +28,7 @@ void AssaultWeaponBehaviour::Reload()
return;
}
// Don't reload if we're completly out of ammo
// Don't reload if we're completely out of ammo
if (ammo == 0) {
playEmptySound();
m_TimeSinceLastFire = -0.0f; // HACK: To make empty sound play with interval
@@ -56,14 +48,14 @@ void AssaultWeaponBehaviour::Update(double dt)
{
if (m_Reloading) {
m_ReloadTimer -= dt;
// Re-enable glow on reload impersonator half-way through the animation
// Re-enable glow on reload impostor half-way through the animation
if (IsClient) {
if (m_ReloadTimer <= (double)m_Player["AssaultWeapon"]["ReloadTime"] / 2.0) {
if (m_FirstPersonReloadImpersonator.Valid()) {
m_FirstPersonReloadImpersonator["Model"]["GlowMap"] = true;
if (m_FirstPersonReloadImpostor.Valid()) {
m_FirstPersonReloadImpostor["Model"]["GlowMap"] = true;
}
if (m_ThirdPersonReloadImpersonator.Valid()) {
m_ThirdPersonReloadImpersonator["Model"]["GlowMap"] = true;
if (m_ThirdPersonReloadImpostor.Valid()) {
m_ThirdPersonReloadImpostor["Model"]["GlowMap"] = true;
}
}
}
@@ -96,21 +88,6 @@ void AssaultWeaponBehaviour::Update(double dt)
}
}
bool AssaultWeaponBehaviour::OnAnimationComplete(Events::AnimationComplete& e)
{
if (e.Entity != m_FirstPersonModel) {
return false;
}
//if (e.Name == "ShootRifle") {
// if (!m_Firing) {
// playIdleAnimation();
// }
//}
return true;
}
bool AssaultWeaponBehaviour::hasAmmo()
{
ComponentWrapper& cAssaultWeapon = m_Player["AssaultWeapon"];
@@ -177,7 +154,6 @@ void AssaultWeaponBehaviour::spawnTracer()
float AssaultWeaponBehaviour::traceRayDistance(glm::vec3 origin, glm::vec3 direction)
{
// TODO: Cast a ray and size tracer appropriately
float distance;
glm::vec3 pos;
auto entity = Collision::EntityFirstHitByRay(Ray(origin, direction), m_CollisionOctree, distance, pos);
@@ -215,6 +191,12 @@ void AssaultWeaponBehaviour::playEmptySound()
void AssaultWeaponBehaviour::viewPunch()
{
// Since we send absolute client orientations to server, running this server side would
// cause aim desync.
if (!IsClient) {
return;
}
EntityWrapper playerCamera = m_Player.FirstChildByName("Camera");
if (!playerCamera.Valid()) {
return;
@@ -323,8 +305,8 @@ void AssaultWeaponBehaviour::playReloadAnimation()
EntityWrapper firstPersonWeaponModel = m_Player.FirstChildByName("WeaponModel");
EntityWrapper reloadSpawner = m_Player.FirstChildByName("FirstPersonReloadSpawner");
if (IsClient) {
m_FirstPersonReloadImpersonator = SpawnerSystem::Spawn(reloadSpawner, reloadSpawner);
firstPersonWeaponModel["Model"].Copy(m_FirstPersonReloadImpersonator["Model"]);
m_FirstPersonReloadImpostor = SpawnerSystem::Spawn(reloadSpawner, reloadSpawner);
firstPersonWeaponModel["Model"].Copy(m_FirstPersonReloadImpostor["Model"]);
}
firstPersonWeaponModel["Model"]["Visible"] = false;
}
@@ -332,8 +314,8 @@ void AssaultWeaponBehaviour::playReloadAnimation()
EntityWrapper thirdPersonWeaponModel = m_Player.FirstChildByName("ThirdPersonWeaponModel");
EntityWrapper reloadSpawner = m_Player.FirstChildByName("ThirdPersonReloadSpawner");
if (IsClient) {
m_ThirdPersonReloadImpersonator = SpawnerSystem::Spawn(reloadSpawner, reloadSpawner);
thirdPersonWeaponModel["Model"].Copy(m_ThirdPersonReloadImpersonator["Model"]);
m_ThirdPersonReloadImpostor = SpawnerSystem::Spawn(reloadSpawner, reloadSpawner);
thirdPersonWeaponModel["Model"].Copy(m_ThirdPersonReloadImpostor["Model"]);
}
thirdPersonWeaponModel["Model"]["Visible"] = false;
}
@@ -371,7 +353,7 @@ bool AssaultWeaponBehaviour::shoot(double damage)
return false;
}
// Don't let us shoot ourselves in the foot
// Don't let us shoot ourselves in the foot somehow
if (victim == LocalPlayer) {
return false;
}
@@ -0,0 +1,188 @@
#include "Systems/Weapon/DefenderWeaponBehaviour.h"
void DefenderWeaponBehaviour::UpdateComponent(EntityWrapper& entity, ComponentWrapper& cWeapon, double dt)
{
(double&)cWeapon["TimeSinceLastFire"] += dt;
WeaponBehaviour::UpdateComponent(entity, cWeapon, dt);
}
void DefenderWeaponBehaviour::UpdateWeapon(WeaponInfo& wi, double dt)
{
ComponentWrapper cWeapon = wi.GetComponent();
bool isFiring = cWeapon["IsFiring"];
bool cooldownPassed = (double)cWeapon["TimeSinceLastFire"] >= (60.0 / (double)cWeapon["RPM"]);
bool isNotShielding = wi.Player.ChildrenWithComponent("Shield").size() == 0;
if (isFiring && cooldownPassed && isNotShielding) {
fireShell(wi);
}
}
void DefenderWeaponBehaviour::OnPrimaryFire(WeaponInfo& wi)
{
ComponentWrapper cWeapon = wi.GetComponent();
cWeapon["IsFiring"] = true;
bool cooldownPassed = (double)cWeapon["TimeSinceLastFire"] >= (60.0 / (double)cWeapon["RPM"]);
bool isNotShielding = wi.Player.ChildrenWithComponent("Shield").size() == 0;
if (cooldownPassed && isNotShielding) {
fireShell(wi);
}
}
void DefenderWeaponBehaviour::OnCeasePrimaryFire(WeaponInfo& wi)
{
ComponentWrapper cWeapon = wi.GetComponent();
cWeapon["IsFiring"] = false;
}
bool DefenderWeaponBehaviour::OnInputCommand(WeaponInfo& wi, const Events::InputCommand& e)
{
if (e.Command == "SpecialAbility" && IsServer) {
EntityWrapper attachment = wi.Player.FirstChildByName("ShieldAttachment");
if (attachment.Valid()) {
if (e.Value > 0) {
SpawnerSystem::Spawn(attachment, attachment);
} else {
attachment.DeleteChildren();
}
}
}
return false;
}
bool DefenderWeaponBehaviour::OnSetCamera(const Events::SetCamera& e)
{
m_CurrentCamera = e.CameraEntity;
return true;
}
void DefenderWeaponBehaviour::fireShell(WeaponInfo& wi)
{
ComponentWrapper cWeapon = wi.GetComponent();
cWeapon["TimeSinceLastFire"] = 0.0;
int numPellets = cWeapon["NumPellets"];
float spreadAngle = cWeapon["SpreadAngle"];
std::uniform_real_distribution<float> randomSpreadAngle(-spreadAngle, spreadAngle);
// Calculate pellet angles
// HACK: Random for now?
// TODO: Make distribution even for each quadrant
std::vector<glm::vec2> pelletAngles;
for (int i = 0; i < numPellets; i++) {
pelletAngles.push_back(glm::vec2(randomSpreadAngle(m_RandomEngine), randomSpreadAngle(m_RandomEngine)));
LOG_DEBUG("%f %f", pelletAngles[i].x, pelletAngles[i].y);
}
double pelletDamage = (double)cWeapon["BaseDamage"] / numPellets;
// Tracers
EntityWrapper weaponModelEntity;
if (wi.Player == LocalPlayer) {
weaponModelEntity = wi.FirstPersonEntity;
} else {
weaponModelEntity = wi.ThirdPersonEntity;
}
if (weaponModelEntity.Valid()) {
EntityWrapper spawner = weaponModelEntity.FirstChildByName("WeaponMuzzle");
for (auto& angles : pelletAngles) {
glm::vec3 direction = Transform::AbsoluteOrientation(spawner) * glm::quat(glm::vec3(angles, 0.f)) * glm::vec3(0, 0, -1);
float distance = traceRayDistance(Transform::AbsolutePosition(spawner), direction);
EntityWrapper ray = SpawnerSystem::Spawn(spawner);
((glm::vec3&)ray["Transform"]["Scale"]).z = (distance / 100.f);
glm::vec3& orientation = ray["Transform"]["Orientation"];
orientation.x += angles.x;
orientation.y += angles.y;
glm::vec3 trajectory = direction * distance;
dealDamage(wi, direction, pelletDamage);
}
}
}
void DefenderWeaponBehaviour::dealDamage(WeaponInfo& wi, glm::vec3 direction, double damage)
{
// Only deal damage client side
if (!IsClient) {
return;
}
// Only handle shooting for the local player
if (wi.Player != LocalPlayer) {
return;
}
// Make sure the player isn't shooting from the grave
if (!wi.Player.Valid()) {
return;
}
glm::vec3 maxRange = direction * 2.f;
EntityWrapper camera = wi.Player.FirstChildByName("Camera");
glm::vec3 cameraPosition = Transform::AbsolutePosition(camera);
if (!camera.Valid()) {
return;
}
Rectangle screenResolution = m_Renderer->GetViewportSize();
glm::vec2 centerScreen = glm::vec2(screenResolution.Width / 2, screenResolution.Height / 2);
glm::vec2 screenCoords = cameraFromEntity(m_CurrentCamera).WorldToScreen(cameraPosition + maxRange, m_Renderer->GetViewportSize());
PickData pickData = m_Renderer->Pick(centerScreen + screenCoords);
EntityWrapper victim(m_World, pickData.Entity);
if (!victim.Valid()) {
return;
}
// Don't let us shoot ourselves in the foot somehow
if (victim == LocalPlayer) {
return;
}
// Only care about players being hit
if (!victim.HasComponent("Player")) {
victim = victim.FirstParentWithComponent("Player");
}
if (!victim.Valid()) {
return;
}
// Check for friendly fire
if ((ComponentInfo::EnumType)victim["Team"]["Team"] == (ComponentInfo::EnumType)wi.Player["Team"]["Team"]) {
return;
}
// Deal damage!
Events::PlayerDamage ePlayerDamage;
ePlayerDamage.Inflictor = wi.Player;
ePlayerDamage.Victim = victim;
ePlayerDamage.Damage = damage;
m_EventBroker->Publish(ePlayerDamage);
LOG_DEBUG("Damage: %f", damage);
}
float DefenderWeaponBehaviour::traceRayDistance(glm::vec3 origin, glm::vec3 direction)
{
float distance;
glm::vec3 pos;
auto entity = Collision::EntityFirstHitByRay(Ray(origin, direction), m_CollisionOctree, distance, pos);
if (entity) {
return distance;
} else {
return 100.f;
}
}
Camera DefenderWeaponBehaviour::cameraFromEntity(EntityWrapper camera)
{
ComponentWrapper cTransform = camera["Transform"];
ComponentWrapper cCamera = camera["Camera"];
Camera cam(
(float)m_Renderer->Resolution().Width / m_Renderer->Resolution().Height,
(double)cCamera["FOV"],
(double)cCamera["NearClip"],
(double)cCamera["FarClip"]
);
cam.SetPosition(cTransform["Position"]);
cam.SetOrientation(glm::quat((const glm::vec3&)cTransform["Orientation"]));
return cam;
}
@@ -13,7 +13,7 @@ WeaponSystem::WeaponSystem(SystemParams params, IRenderer* renderer, Octree<Enti
void WeaponSystem::Update(double dt)
{
// TODO: Clear inactive weapons
}
void WeaponSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& cPlayer, double dt)
@@ -72,20 +72,64 @@ bool WeaponSystem::OnInputCommand(Events::InputCommand& e)
void WeaponSystem::selectWeapon(EntityWrapper player, ComponentInfo::EnumType slot)
{
std::vector<EntityWrapper> weaponAttachments = player.ChildrenWithComponent("WeaponAttachment");
// Find the weapon attachments matching the slot selected
EntityWrapper firstPersonAttachment;
EntityWrapper thirdPersonAttachment;
for (auto& attachment : weaponAttachments) {
ComponentWrapper cWeaponAttachment = attachment["WeaponAttachment"];
if ((ComponentInfo::EnumType)cWeaponAttachment["Slot"] == slot) {
ComponentWrapper::SubscriptProxy person = cWeaponAttachment["Person"];
if (person == person.Enum("FirstPerson")) {
firstPersonAttachment = attachment;
} else if (person == person.Enum("ThirdPerson")) {
thirdPersonAttachment = attachment;
}
}
}
if (firstPersonAttachment.Valid() && thirdPersonAttachment.Valid()) {
LOG_WARNING("No weapon attachment found for slot %i of player #%i", slot, player.ID);
return;
}
// TODO: Delete old weapons
// Spawn the weapon(s)
EntityWrapper firstPersonWeapon;
EntityWrapper thirdPersonWeapon;
if (firstPersonAttachment.Valid()) {
firstPersonWeapon = SpawnerSystem::Spawn(firstPersonAttachment, firstPersonAttachment);
}
if (thirdPersonAttachment.Valid()) {
firstPersonWeapon = SpawnerSystem::Spawn(thirdPersonAttachment, thirdPersonAttachment);
}
// Create the correct behaviour
if (firstPersonWeapon.Valid()) {
if (firstPersonWeapon.HasComponent("AssaultWeapon") {
}
}
// Primary
if (slot == 1) {
// TODO: if class...
if (m_ActiveWeapons.count(player) == 0) {
m_ActiveWeapons.insert(std::make_pair(player, std::make_shared<AssaultWeaponBehaviour>(m_SystemParams, m_Renderer, m_CollisionOctree, player)));
} else {
//m_ActiveWeapons.erase(player);
}
nextBehaviour = std::make_shared<AssaultWeaponBehaviour>(m_SystemParams, m_Renderer, m_CollisionOctree, player);
}
// Secondary
if (slot == 2) {
//m_ActiveWeapons[player] = std::make_shared<PistolWeaponBehaviour>();
}
if (nextBehaviour != nullptr) {
// TODO: Destroy previous behaviour and make new
if (m_ActiveWeapons.count(player) == 0) {
m_ActiveWeapons[player] = nextBehaviour;
}
}
}
bool WeaponSystem::OnPlayerSpawned(Events::PlayerSpawned& e)
+2
View File
@@ -9,7 +9,9 @@ int main(int argc, char* argv[])
Game game(argc, argv);
while (game.Running()) {
PerformanceTimer::StartTimer("Game-Tick");
game.Tick();
PerformanceTimer::StopTimer("Game-Tick");
}
return 0;
+1 -1
View File
@@ -94,7 +94,7 @@ CapturePointTest::CapturePointTest(int runTestNumber)
m_World = new World();
// Create system pipeline
m_SystemPipeline = new SystemPipeline(m_World,m_EventBroker);
m_SystemPipeline = new SystemPipeline(m_World,m_EventBroker, true, false);
m_SystemPipeline->AddSystem<HealthSystem>(0);
m_SystemPipeline->AddSystem<CapturePointSystem>(1);
+9 -9
View File
@@ -33,10 +33,10 @@ void RayTest(std::string fileName) {
ResourceManager::RegisterType<RawModel>("RawModel");
auto unitBox = ResourceManager::Load<RawModel>(fileName);
BOOST_REQUIRE(unitBox != nullptr);
bool hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
bool hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
BOOST_CHECK(hit);
ray.SetDirection(glm::vec3(-1, 0, 0));
hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
BOOST_CHECK(!hit);
}
@@ -146,12 +146,12 @@ BOOST_AUTO_TEST_CASE(rayVsModelTest2)
z = Collision::RayVsAABB(ray, someAABB);
if (z) {
//hit
bool hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
bool hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices,glm::mat4(1));
if (!hit) {
//if rayvsaabb hit but rayvvmodel didnt hit, we get to here
glm::vec3 outtttttttt;
hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices, outtttttttt);
hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
glm::mat4 outtttttttt;
hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
}
else {
hit = hit;
@@ -163,7 +163,7 @@ BOOST_AUTO_TEST_CASE(rayVsModelTest2)
// z = z;
//}
//
bool hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
bool hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
////breakpoint test
//if (!hit) {
// hit = hit;
@@ -175,8 +175,8 @@ BOOST_AUTO_TEST_CASE(rayVsModelTest2)
//if rayvsmodel hit but rayvsaabb didnt hit then we get to here
z = Collision::RayVsAABB(ray, someAABB);
glm::vec3 outtttttttt;
hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices, outtttttttt);
hit = Collision::RayVsModel(ray, unitBox->m_Vertices, unitBox->m_Indices);
hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
hit = Collision::RayVsModel(ray, unitBox->Vertices(), unitBox->m_Indices, glm::mat4(1));
}
else {
z = z;
+17 -13
View File
@@ -48,26 +48,21 @@ GameHealthSystemTest::GameHealthSystemTest()
fp.MergeEntities(m_World);
// Create system pipeline
m_SystemPipeline = new SystemPipeline(m_World, m_EventBroker);
m_SystemPipeline = new SystemPipeline(m_World, m_EventBroker, false, false);
m_SystemPipeline->AddSystem<HealthSystem>(0);
//The Test
//create entity which has transform,player,model,health in it. i.e. is a player
EntityID playerID = m_World->CreateEntity();
ComponentWrapper player = m_World->AttachComponent(playerID, "Player");
ComponentWrapper health = m_World->AttachComponent(playerID, "Health");
healthsID = playerID;
ComponentWrapper& health = m_World->AttachComponent(playerID, "Health");
health["Health"] = 100.0;
m_PlayersID = playerID;
EntityID playerID2 = m_World->CreateEntity();
ComponentWrapper player2 = m_World->AttachComponent(playerID2, "Player");
ComponentWrapper health2 = m_World->AttachComponent(playerID2, "Health");
//heal player with 40
Events::PlayerHealthPickup e3;
e3.HealthAmount = 40.0f;
e3.Player = EntityWrapper(m_World, player.EntityID);
m_EventBroker->Publish(e3);
//damage player with 50
Events::PlayerDamage e;
e.Damage = 50.0f;
@@ -103,9 +98,18 @@ void GameHealthSystemTest::Tick()
m_EventBroker->Swap();
m_EventBroker->Clear();
//if health reaches 90 then we know the test has succeeded (start with 100hp, remove 50hp, add 40hp)
double currentHealth = (double)m_World->GetComponent(healthsID, "Health")["Health"];
if (currentHealth == 90)
double currentHealth = (double)m_World->GetComponent(m_PlayersID, "Health")["Health"];
//if players health reach 50 means he got damaged by 50
if (currentHealth == 50.0) {
m_TestStage1Success = true;
//heal player with 40
Events::PlayerHealthPickup e3;
e3.HealthAmount = 40.0f;
e3.Player = EntityWrapper(m_World, m_PlayersID);
m_EventBroker->Publish(e3);
}
if (m_TestStage1Success && currentHealth == 90.0f) {
TestSucceeded = true;
}
}
+3 -2
View File
@@ -6,7 +6,6 @@
#include "Core/EventBroker.h"
#include "Rendering/Renderer.h"
#include "Core/InputManager.h"
#include "GUI/Frame.h"
#include "Core/World.h"
#include "Input/InputProxy.h"
#include "Input/KeyboardInputHandler.h"
@@ -31,7 +30,9 @@ private:
EventBroker* m_EventBroker;
World* m_World;
SystemPipeline* m_SystemPipeline;
int healthsID;
int m_PlayersID;
bool m_TestStage1Success = false;
};
#endif
+214
View File
@@ -0,0 +1,214 @@
#include <boost/test/unit_test.hpp>
using boost::unit_test_framework::test_suite;
using boost::unit_test_framework::test_case;
#include "PickupSpawnTest.h"
BOOST_AUTO_TEST_SUITE(PickupSpawnTestSuite)
//dont use the same name as the classname in test cases...
BOOST_AUTO_TEST_CASE(PickupSpawnTest_HealthPickupRespawns_PlayerHealthPickupEventTriggers)
{
PickupSpawnTest game(1);
bool success = game.Game_Loop_OneHundredTimes();
BOOST_TEST(success);
}
BOOST_AUTO_TEST_CASE(PickupSpawnTest_APlayerAtMaxHealth_CantTakeHealthPickup)
{
PickupSpawnTest game(2);
bool success = game.Game_Loop_OneHundredTimes();
BOOST_TEST(success);
}
BOOST_AUTO_TEST_CASE(PickupSpawnTest_APickupCanRespawnSlowly)
{
PickupSpawnTest game(3);
bool success = game.Game_Loop_OneHundredTimes();
BOOST_TEST(success);
}
BOOST_AUTO_TEST_SUITE_END()
PickupSpawnTest::PickupSpawnTest(int runTestNumber)
{
ResourceManager::RegisterType<ConfigFile>("ConfigFile");
ResourceManager::RegisterType<EntityFile>("EntityFile");
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
LOG_LEVEL = static_cast<_LOG_LEVEL>(m_Config->Get<int>("Debug.LogLevel", 1));
m_EventBroker = new EventBroker();
m_World = new World();
// Create system pipeline
m_SystemPipeline = new SystemPipeline(m_World, m_EventBroker, false, false);
m_SystemPipeline->AddSystem<HealthSystem>(0);
m_SystemPipeline->AddSystem<PickupSpawnSystem>(1);
//must register components (Components.xsd), else you cant create entities. Easiest done by loading a test xsd file
auto file = ResourceManager::Load<EntityFile>("Schema/Entities/HealthPickup.xml");
EntityFilePreprocessor fpp(file);
fpp.RegisterComponents(m_World);
EntityFileParser fp(file);
//connect the healthpickup to the world
m_HealthPickupID = fp.MergeEntities(m_World);
//create a player
m_PlayerID = m_World->CreateEntity();
auto& player = m_World->AttachComponent(m_PlayerID, "Player");
m_RunTestNumber = runTestNumber;
//further testsetups
TestSetup(m_RunTestNumber);
//init glfw so dt works
glfwInit();
//listen to the 2 events that are related to PickupSpawn
EVENT_SUBSCRIBE_MEMBER(m_HP, &PickupSpawnTest::OnHealthPickup);
EVENT_SUBSCRIBE_MEMBER(m_PS, &PickupSpawnTest::OnPickupSpawned);
}
bool PickupSpawnTest::OnHealthPickup(Events::PlayerHealthPickup& e) {
switch (m_RunTestNumber)
{
case 1:
//verify that the event has the correct healthgain number and playerid
if (e.HealthAmount == 22.0 && e.Player.ID == m_PlayerID) {
m_TestStage1Success = true;
}
break;
case 2:
m_TestStage1Success = false;
break;
case 3:
//verify that the event has the correct healthgain number and playerid
if (e.HealthAmount == 50.0 && e.Player.ID == m_PlayerID) {
m_TestStage1Success = true;
}
break;
}
return true;
}
bool PickupSpawnTest::OnPickupSpawned(Events::PickupSpawned& e) {
switch (m_RunTestNumber)
{
case 1:
//verify that the newly spawned pickup has the same variable values as the original one
if ((double)e.Pickup["HealthPickup"]["HealthGain"] == 22.0 && (double)e.Pickup["HealthPickup"]["RespawnTimer"] == 2.0) {
m_TestStage2Success = true;
}
break;
case 2:
m_TestStage2Success = false;
break;
case 3:
m_TestStage2Success = false;
break;
}
return true;
}
void PickupSpawnTest::TestSetup(int testNumber)
{
switch (m_RunTestNumber)
{
case 1:
{
//PickupSpawnTest_HealthPickupRespawns_PlayerHealthPickupEventTriggers
auto& healthPickupEW = EntityWrapper(m_World, m_HealthPickupID);
healthPickupEW["HealthPickup"]["RespawnTimer"] = 2.0;
healthPickupEW["HealthPickup"]["HealthGain"] = 22.0;
//create a player
auto& health = m_World->AttachComponent(m_PlayerID, "Health");
health["Health"] = 20.0;
health["MaxHealth"] = 100.0;
}
break;
case 2:
{
//PickupSpawnTest_APlayerAtMaxHealth_CantTakeHealthPickup
auto& healthPickupEW = EntityWrapper(m_World, m_HealthPickupID);
healthPickupEW["HealthPickup"]["RespawnTimer"] = 1.0;
healthPickupEW["HealthPickup"]["HealthGain"] = 50.0;
//create a player at max health
auto& health = m_World->AttachComponent(m_PlayerID, "Health");
health["Health"] = 100.0;
health["MaxHealth"] = 100.0;
}
break;
case 3:
{
//PickupSpawnTest_APickupCanRespawnSlowly
auto& healthPickupEW = EntityWrapper(m_World, m_HealthPickupID);
healthPickupEW["HealthPickup"]["RespawnTimer"] = 100.0;
healthPickupEW["HealthPickup"]["HealthGain"] = 50.0;
//create a player
auto& health = m_World->AttachComponent(m_PlayerID, "Health");
health["Health"] = 1.0;
health["MaxHealth"] = 100.0;
}
break;
default:
break;
}
//do the triggerTouch event to get the pickupSpawnTest started
Events::TriggerTouch eTriggerTouch;
DoTouchEvent(m_PlayerID, m_HealthPickupID);
}
//generic stuff
void PickupSpawnTest::Tick()
{
glfwPollEvents();
//just set dt to 1.0 since we want fast testing
double dt = 1.0;
// Iterate through systems and update world!
m_SystemPipeline->Update(dt);
m_EventBroker->Swap();
m_EventBroker->Clear();
//verify that healthgain event has been published and pickup has respawned
if (m_RunTestNumber == 1 && m_TestStage1Success && m_TestStage2Success) {
m_TestSucceeded = true;
}
//verify that no healthgain event has been published and that no pickup has respawned
if (m_NumLoops > 90 && m_RunTestNumber == 2 && !m_TestStage1Success && !m_TestStage2Success) {
m_TestSucceeded = true;
}
//3: verify that the pickup hasnt spawned
if (m_NumLoops > 90 && m_RunTestNumber == 3 && m_TestStage1Success && !m_TestStage2Success) {
m_TestSucceeded = true;
}
}
bool PickupSpawnTest::Game_Loop_OneHundredTimes() {
//100 loops will be more than enough to do the test
int loops = 100;
bool success = false;
while (loops > 0) {
Tick();
m_NumLoops++;
if (m_TestSucceeded) {
success = true;
break;
}
loops--;
}
return success;
}
PickupSpawnTest::~PickupSpawnTest()
{
delete m_SystemPipeline;
delete m_World;
}
void PickupSpawnTest::DoTouchEvent(EntityID whoDidSomething, EntityID onWhatObject) {
Events::TriggerTouch touchEvent;
touchEvent.Entity = EntityWrapper(m_World, whoDidSomething);
touchEvent.Trigger = EntityWrapper(m_World, onWhatObject);
m_EventBroker->Publish(touchEvent);
}
+72
View File
@@ -0,0 +1,72 @@
#ifndef PickupSpawnTest_h__
#define PickupSpawnTest_h__
#include "Core/ResourceManager.h"
#include "Core/ConfigFile.h"
#include "Core/EventBroker.h"
#include "Core/World.h"
#include "Input/InputProxy.h"
#include "Input/KeyboardInputHandler.h"
#include "Input/MouseInputHandler.h"
#include "Core/EKeyDown.h"
#include "Core/EntityFile.h"
#include "Core/SystemPipeline.h"
#include "Core/EntityFilePreprocessor.h"
#include "Core/EntityFileParser.h"
#include "Core/EntityFileWriter.h"
#include "Engine/Collision/ETrigger.h"
//#include "Core/System.h"
//#include "Core/Transform.h"
//#include "Core/ResourceManager.h"
//#include "Core/EntityFileParser.h"
//#include "Core/EPickupSpawned.h"
//#include "Core/EPlayerHealthPickup.h"
#include "Engine/Collision/ETrigger.h"
//#include "Common.h"
//#include <tuple>
#include "Collision/TriggerSystem.h"
#include "Collision/CollisionSystem.h"
#include "Core/EntityFileWriter.h"
#include "Game/Systems/HealthSystem.h"
#include "Game/Systems/PickupSpawnSystem.h"
#include "Core/ResourceManager.h"
class PickupSpawnTest
{
public:
PickupSpawnTest(int runTestNumber);
~PickupSpawnTest();
void Tick();
bool Game_Loop_OneHundredTimes();
void TestSetup(int testNumber);
void DoTouchEvent(EntityID whoDidSomething, EntityID onWhatObject);
private:
double m_LastTime;
ConfigFile* m_Config = nullptr;
EventBroker* m_EventBroker;
World* m_World;
SystemPipeline* m_SystemPipeline;
EntityID m_PlayerID, m_HealthPickupID;
int m_RunTestNumber;
EventRelay<PickupSpawnSystem, Events::PlayerHealthPickup> m_HP;
bool OnHealthPickup(Events::PlayerHealthPickup& e);
EventRelay<PickupSpawnSystem, Events::PickupSpawned> m_PS;
bool OnPickupSpawned(Events::PickupSpawned& e);
bool m_TestStage1Success = false;
bool m_TestStage2Success = false;
bool m_TestSucceeded = false;
int m_NumLoops = 0;
};
#endif
+44
View File
@@ -69,3 +69,47 @@ BOOST_AUTO_TEST_CASE(WorldTestMultipleAllocations, * utf::tolerance(0.00001))
i++;
}
}
BOOST_AUTO_TEST_CASE(WorldCopy, *utf::tolerance(0.00001))
{
World w1;
// Create a test component
auto testComponent = ComponentWrapperFactory("Test", 2);
testComponent.AddProperty("TestInteger", 1337);
testComponent.AddProperty("TestDouble", 13.37);
testComponent.AddProperty("TestString", std::string("DefaultString"));
testComponent.AddProperty("TestVec3", glm::vec3(1.f, 2.f, 3.f));
w1.RegisterComponent(testComponent);
// Create a test entity
EntityID w1_e1 = w1.CreateEntity();
auto w1_c1 = w1.AttachComponent(w1_e1, "Test");
// Create a child
EntityID w1_e2 = w1.CreateEntity(w1_e1);
auto w1_c2 = w1.AttachComponent(w1_e2, "Test");
w1_c2["TestString"] = "NonDefaultString";
// Copy the world!
World w2 = w1;
// Fetch the components
auto w2_c1 = w2.GetComponent(w1_e1, "Test");
auto w2_c2 = w2.GetComponent(w1_e2, "Test");
// Check that built-in types are copied but don't reside in the same memory
BOOST_CHECK((int)w1_c1["TestInteger"] == (int)w2_c1["TestInteger"]);
BOOST_CHECK(&(int&)w1_c1["TestInteger"] != &(int&)w2_c1["TestInteger"]);
BOOST_CHECK((double)w1_c1["TestDouble"] == (double)w2_c1["TestDouble"]);
BOOST_CHECK(&(int&)w1_c1["TestDouble"] != &(int&)w2_c1["TestDouble"]);
BOOST_CHECK((int)w1_c2["TestInteger"] == (int)w2_c2["TestInteger"]);
BOOST_CHECK(&(int&)w1_c2["TestInteger"] != &(int&)w2_c2["TestInteger"]);
BOOST_CHECK((double)w1_c2["TestDouble"] == (double)w2_c2["TestDouble"]);
BOOST_CHECK(&(int&)w1_c2["TestDouble"] != &(int&)w2_c2["TestDouble"]);
// Check that specially handled strings are fine
BOOST_CHECK((std::string)w1_c1["TestString"] == (std::string)w2_c1["TestString"]);
BOOST_CHECK(&(std::string&)w1_c1["TestString"] != &(std::string&)w2_c1["TestString"]);
BOOST_CHECK((std::string)w1_c2["TestString"] == (std::string)w2_c2["TestString"]);
BOOST_CHECK(&(std::string&)w1_c2["TestString"] != &(std::string&)w2_c2["TestString"]);
}