Merge remote-tracking branch 'origin/master' into Kill-streak-sounds

# Conflicts:
#	resources/DefaultConfig.ini
This commit is contained in:
stiffly
2016-03-03 17:32:04 +01:00
154 changed files with 24530 additions and 1614 deletions
+84 -79
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@@ -12,107 +12,112 @@ void CollisionSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& c
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&) {
if (entity == LocalPlayer) {
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;
}
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;
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;
}
break;
}
}
}
}
// Collide against octree items
m_OctreeResult.clear();
m_Octree->ObjectsInSameRegion(*boundingBox, m_OctreeResult);
for (auto& boxB : m_OctreeResult) {
glm::vec3 resolutionVector;
if (boxA.Entity == boxB.Entity) {
continue;
}
if (boxB.Entity.HasComponent("Model") && Collision::AABBVsAABB(boxA, boxB)) {
//Here we know boxB is a entity with Collideable, AABB, and Model.
RawModel* model;
try {
model = ResourceManager::Load<RawModel, true>(boxB.Entity["Model"]["Resource"]);
} catch (const std::exception&) {
// Collide against octree items
m_OctreeResult.clear();
m_Octree->ObjectsInSameRegion(*boundingBox, m_OctreeResult);
for (auto& boxB : m_OctreeResult) {
glm::vec3 resolutionVector;
if (boxA.Entity == boxB.Entity) {
continue;
}
glm::mat4 modelMatrix = Transform::ModelMatrix(boxB.Entity);
if (boxB.Entity.HasComponent("Model") && Collision::AABBVsAABB(boxA, boxB)) {
//Here we know boxB is a entity with Collideable, AABB, and Model.
RawModel* model;
try {
model = ResourceManager::Load<RawModel, true>(boxB.Entity["Model"]["Resource"]);
} catch (const std::exception&) {
continue;
}
glm::vec3 inOutVelocity = (glm::vec3)cPhysics["Velocity"];
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::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)) {
//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;
(bool)cPhysics["IsOnGround"] = true;
}
}
} else if (Collision::AABBVsAABB(boxA, boxB, resolutionVector)) {
//Enter here if boxB has no Model.
(glm::vec3&)cTransform["Position"] += resolutionVector;
boxA = *Collision::EntityAbsoluteAABB(entity);
cPhysics["Velocity"] = inOutVelocity;
if (isOnGround) {
if (resolutionVector.y > 0) {
everHitTheGround = true;
(bool)cPhysics["IsOnGround"] = true;
((glm::vec3&)cPhysics["Velocity"]).y = 0.f;
}
}
} 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;
((glm::vec3&)cPhysics["Velocity"]).y = 0.f;
}
}
}
//This should apply air friction and such, iff zero models were hit.
if (!everHitTheGround) {
(bool)cPhysics["IsOnGround"] = false;
}
//This should apply air friction and such, iff zero models were hit.
if (!everHitTheGround) {
(bool)cPhysics["IsOnGround"] = false;
}
m_PrevPositions[entity] = boxA.Origin();
m_PrevPositions[entity] = boxA.Origin();
}
}
+14 -280
View File
@@ -1,291 +1,25 @@
#include "Core/EntityFile.h"
EntityFile::EntityFile(boost::filesystem::path path)
: m_FilePath(path)
EntityFile::EntityFile(std::string path)
{
using namespace xercesc;
XMLPlatformUtils::Initialize();
m_GrammarPool = new XMLGrammarPoolImpl();
m_SAX2XMLReader = XMLReaderFactory::createXMLReader(XMLPlatformUtils::fgMemoryManager, m_GrammarPool);
}
EntityXMLFile* xml = ResourceManager::Load<EntityXMLFile>(path);
EntityFile::~EntityFile()
{
delete m_SAX2XMLReader;
delete m_GrammarPool;
xercesc::XMLPlatformUtils::Terminate();
}
EntityXMLFilePreprocessor preprocessor(xml);
preprocessor.RegisterComponents(this);
void EntityFile::Parse(const EntityFileHandler* handler) const
{
using namespace xercesc;
EntityXMLFileParser parser(xml);
m_RootEntity = parser.MergeEntities(this);
EntityFileSAXHandler saxHandler(handler, m_SAX2XMLReader);
setReaderFeatures(m_SAX2XMLReader);
m_SAX2XMLReader->setContentHandler(&saxHandler);
m_SAX2XMLReader->setErrorHandler(&saxHandler);
m_SAX2XMLReader->setDeclarationHandler(&saxHandler);
m_SAX2XMLReader->parse(m_FilePath.string().c_str());
}
void EntityFile::setReaderFeatures(xercesc::SAX2XMLReader* reader)
{
using namespace xercesc;
reader->setFeature(XMLUni::fgXercesCacheGrammarFromParse, true);
reader->setFeature(XMLUni::fgXercesUseCachedGrammarInParse, true);
reader->setFeature(XMLUni::fgSAX2CoreValidation, true);
reader->setFeature(XMLUni::fgSAX2CoreNameSpaces, true);
reader->setFeature(XMLUni::fgXercesSchema, true);
reader->setFeature(XMLUni::fgXercesSchemaFullChecking, true);
reader->setFeature(XMLUni::fgXercesCalculateSrcOfs, true);
reader->setFeature(XMLUni::fgXercesIdentityConstraintChecking, true);
}
unsigned int EntityFile::GetTypeStride(std::string typeName)
{
std::map<std::string, unsigned int> typeStrides{
{ "bool", sizeof(bool) },
{ "int", sizeof(int) },
{ "float", sizeof(float) },
{ "double", sizeof(double) },
{ "string", sizeof(std::string) },
{ "enum", sizeof(ComponentInfo::EnumType) },
{ "Vector", sizeof(glm::vec3) },
{ "Quaternion", sizeof(glm::quat) },
{ "Color", sizeof(glm::vec4) }
};
auto it = typeStrides.find(typeName);
return (it != typeStrides.end()) ? it->second : 0;
}
void EntityFile::WriteAttributeData(char* outData, const ComponentInfo::Field_t& field, const std::map<std::string, std::string>& attributes)
{
if (field.Type == "Vector") {
glm::vec3 vec;
vec.x = boost::lexical_cast<float>(attributes.at("X"));
vec.y = boost::lexical_cast<float>(attributes.at("Y"));
vec.z = boost::lexical_cast<float>(attributes.at("Z"));
memcpy(outData, reinterpret_cast<char*>(&vec), field.Stride);
} else if (field.Type == "Color") {
glm::vec4 vec;
vec.r = boost::lexical_cast<float>(attributes.at("R"));
vec.g = boost::lexical_cast<float>(attributes.at("G"));
vec.b = boost::lexical_cast<float>(attributes.at("B"));
vec.a = boost::lexical_cast<float>(attributes.at("A"));
memcpy(outData, reinterpret_cast<char*>(&vec), field.Stride);
} else if (field.Type == "Quaternion") {
glm::quat q;
q.x = boost::lexical_cast<float>(attributes.at("X"));
q.y = boost::lexical_cast<float>(attributes.at("Y"));
q.z = boost::lexical_cast<float>(attributes.at("Z"));
q.w = boost::lexical_cast<float>(attributes.at("W"));
memcpy(outData, reinterpret_cast<char*>(&q), field.Stride);
} else if (!attributes.empty()) {
LOG_WARNING("%i attributes not handled by any type conversion!", attributes.size());
}
}
void EntityFile::WriteValueData(char* outData, const ComponentInfo::Field_t& field, const char* valueData)
{
// Catch and ignore casting errors so whitespace around string enums won't mess anything up
try {
if (field.Type == "int") {
int value = boost::lexical_cast<int>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "enum") {
ComponentInfo::EnumType value = boost::lexical_cast<ComponentInfo::EnumType>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "float") {
float value = boost::lexical_cast<float>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "double") {
double value = boost::lexical_cast<double>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "bool") {
bool value = (valueData[0] == 't'); // Lazy bool evaluation
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "string") {
new (outData) std::string(valueData);
} else {
LOG_WARNING("Unknown value data type: %s", field.Type.c_str());
}
} catch (const boost::bad_lexical_cast&) { }
}
EntityFileSAXHandler::EntityFileSAXHandler(const EntityFileHandler* handler, xercesc::SAX2XMLReader* reader)
: m_Handler(handler)
, m_Reader(reader)
{
// 0 is imaginary base parent
m_EntityStack.push(0);
m_StateStack.push(State::Unknown);
}
void EntityFileSAXHandler::startElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname, const xercesc::Attributes& attrs)
{
std::string name = XS::ToString(_localName);
if (m_StateStack.top() == State::Unknown || m_StateStack.top() == State::Entity) {
if (name == "Entity") {
m_StateStack.push(State::Entity);
onStartEntity(attrs);
return;
}
if (name == "EntityRef") {
onStartEntityRef(attrs);
return;
}
if (m_RootEntity == EntityID_Invalid) {
ResourceManager::Release("EntityXMLFile", path);
throw Resource::FailedLoadingException("Failed to merge entities; root entity is invalid");
}
std::string uri = XS::ToString(_uri);
if (m_StateStack.top() == State::Entity) {
if (uri == "components") {
m_StateStack.push(State::Component);
onStartComponent(name);
return;
}
}
if (m_StateStack.top() == State::Component) {
m_StateStack.push(State::ComponentField);
onStartComponentField(name, attrs);
return;
}
ResourceManager::Release("EntityXMLFile", path);
}
void EntityFileSAXHandler::endElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname)
EntityWrapper EntityFile::MergeInto(World* other)
{
std::string name = XS::ToString(_localName);
if (m_StateStack.top() == State::Entity) {
if (name == "Entity") {
m_StateStack.pop();
onEndEntity();
return;
}
}
std::string uri = XS::ToString(_uri);
if (m_StateStack.top() == State::Component) {
//if (uri == "components") {
m_StateStack.pop();
onEndComponent(name);
return;
//}
}
if (m_StateStack.top() == State::ComponentField && name == m_CurrentField) {
m_StateStack.pop();
onEndComponentField(name);
return;
}
}
void EntityFileSAXHandler::characters(const XMLCh* const chars, const XMLSize_t length)
{
if (m_StateStack.top() == State::ComponentField) {
char* transcoded = xercesc::XMLString::transcode(chars);
onFieldData(transcoded);
}
}
void EntityFileSAXHandler::fatalError(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tFatal Error: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::error(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tError: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::warning(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tWarning: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::onStartEntity(const xercesc::Attributes& attrs)
{
EntityID parent = m_EntityStack.top();
if (m_Handler->m_OnStartEntityCallback) {
std::string name;
auto xName = attrs.getValue(XS::ToXMLCh("name"));
if (xName != nullptr) {
name = XS::ToString(xName);
}
m_Handler->m_OnStartEntityCallback(m_NextEntityID, parent, name);
}
m_EntityStack.push(m_NextEntityID);
m_NextEntityID++;
}
void EntityFileSAXHandler::onEndEntity()
{
m_EntityStack.pop();
}
void EntityFileSAXHandler::onStartEntityRef(const xercesc::Attributes& attrs)
{
std::string path = XS::ToString(attrs.getValue(XS::ToXMLCh("file")));
xercesc::SAX2XMLReader* reader = xercesc::XMLReaderFactory::createXMLReader();
EntityFile::setReaderFeatures(reader);
reader->setContentHandler(this);
reader->setErrorHandler(this);
reader->parse(path.c_str());
delete reader;
}
void EntityFileSAXHandler::onStartComponentField(const std::string& field, const xercesc::Attributes& attrs)
{
//LOG_DEBUG(" Field: %s", field.c_str());
m_CurrentField = field;
m_CurrentAttributes.clear();
for (int i = 0; i < attrs.getLength(); i++) {
auto name = attrs.getQName(i);
auto value = attrs.getValue(name);
//LOG_DEBUG(" %s = %s", (char*)XS::ToString(name), (char*)XS::ToString(value));
m_CurrentAttributes[XS::ToString(name).operator std::string()] = XS::ToString(value).operator std::string();
}
if (m_Handler->m_OnStartFieldCallback) {
m_Handler->m_OnStartFieldCallback(m_EntityStack.top(), m_CurrentComponent, field, m_CurrentAttributes);
}
}
void EntityFileSAXHandler::onEndComponent(const std::string& name) { }
void EntityFileSAXHandler::onStartComponent(const std::string& name)
{
//LOG_DEBUG(" Component: %s", name.c_str());
m_CurrentComponent = name;
if (m_Handler->m_OnStartComponentCallback) {
m_Handler->m_OnStartComponentCallback(m_EntityStack.top(), name);
}
}
void EntityFileSAXHandler::onEndComponentField(const std::string& field) { }
void EntityFileSAXHandler::onFieldData(char* data)
{
//LOG_DEBUG(" Data: %s", data);
if (m_Handler->m_OnStartFieldDataCallback) {
m_Handler->m_OnStartFieldDataCallback(m_EntityStack.top(), m_CurrentComponent, m_CurrentField, data);
}
xercesc::XMLString::release(&data);
}
auto mapping = other->Merge(this);
return EntityWrapper(other, mapping.at(m_RootEntity));
}
-74
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@@ -1,74 +0,0 @@
#include "Core/EntityFileParser.h"
EntityFileParser::EntityFileParser(const EntityFile* entityFile)
: m_EntityFile(entityFile)
{
m_Handler.SetStartEntityCallback(std::bind(&EntityFileParser::onStartEntity, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3));
m_Handler.SetStartComponentCallback(std::bind(&EntityFileParser::onStartComponent, this, std::placeholders::_1, std::placeholders::_2));
m_Handler.SetStartFieldCallback(std::bind(&EntityFileParser::onStartComponentField, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4));
m_Handler.SetStartFieldDataCallback(std::bind(&EntityFileParser::onFieldData, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4));
}
EntityID EntityFileParser::MergeEntities(World* world, EntityID baseParent /*= EntityID_Invalid */)
{
m_World = world;
m_EntityIDMapper[0] = baseParent;
m_EntityFile->Parse(&m_Handler);
return m_FirstEntity;
}
void EntityFileParser::onStartEntity(EntityID entity, EntityID parent, const std::string& name)
{
EntityID realParent = m_EntityIDMapper.at(parent);
EntityID realEntity = m_World->CreateEntity(realParent);
if (m_FirstEntity == EntityID_Invalid) {
m_FirstEntity = realEntity;
}
if (!name.empty()) {
m_World->SetName(realEntity, name);
}
m_EntityIDMapper[entity] = realEntity;
//LOG_DEBUG("Created entity #%i (%i) with parent %i (%i)", entity, realEntity, parent, realParent);
}
void EntityFileParser::onStartComponent(EntityID entity, const std::string& component)
{
EntityID realEntity = m_EntityIDMapper.at(entity);
m_World->AttachComponent(realEntity, component);
//LOG_DEBUG("Attached component of type \"%s\" to entity #%i (%i)", component.c_str(), entity, realEntity);
}
void EntityFileParser::onStartComponentField(EntityID entity, const std::string& componentType, const std::string& fieldName, const std::map<std::string, std::string>& attributes)
{
EntityID realEntity = m_EntityIDMapper.at(entity);
ComponentWrapper component = m_World->GetComponent(realEntity, componentType);
auto fieldIt = component.Info.Fields.find(fieldName);
if (fieldIt == component.Info.Fields.end()) {
LOG_ERROR("Tried to set unknown field \"%s\" of component type \"%s\"! Ignoring.", fieldName.c_str(), componentType.c_str());
return;
}
auto& field = fieldIt->second;
//LOG_DEBUG("Field \"%s\" type \"%s\"", fieldName.c_str(), field.Type.c_str());
//LOG_DEBUG("Attributes:");
//for (auto& kv : attributes) {
// LOG_DEBUG("\t%s = %s", kv.first.c_str(), kv.second.c_str());
//}
char* data = component.Data + field.Offset;
EntityFile::WriteAttributeData(data, field, attributes);
}
void EntityFileParser::onFieldData(EntityID entity, const std::string& componentType, const std::string& fieldName, const char* fieldData)
{
EntityID realEntity = m_EntityIDMapper.at(entity);
ComponentWrapper component = m_World->GetComponent(realEntity, componentType);
auto fieldIt = component.Info.Fields.find(fieldName);
if (fieldIt == component.Info.Fields.end()) {
return;
}
auto& field = fieldIt->second;
char* data = component.Data + field.Offset;
EntityFile::WriteValueData(data, field, fieldData);
}
+291
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@@ -0,0 +1,291 @@
#include "Core/EntityXMLFile.h"
EntityXMLFile::EntityXMLFile(boost::filesystem::path path)
: m_FilePath(path)
{
using namespace xercesc;
XMLPlatformUtils::Initialize();
m_GrammarPool = new XMLGrammarPoolImpl();
m_SAX2XMLReader = XMLReaderFactory::createXMLReader(XMLPlatformUtils::fgMemoryManager, m_GrammarPool);
}
EntityXMLFile::~EntityXMLFile()
{
delete m_SAX2XMLReader;
delete m_GrammarPool;
xercesc::XMLPlatformUtils::Terminate();
}
void EntityXMLFile::Parse(const EntityFileHandler* handler) const
{
using namespace xercesc;
EntityFileSAXHandler saxHandler(handler, m_SAX2XMLReader);
setReaderFeatures(m_SAX2XMLReader);
m_SAX2XMLReader->setContentHandler(&saxHandler);
m_SAX2XMLReader->setErrorHandler(&saxHandler);
m_SAX2XMLReader->setDeclarationHandler(&saxHandler);
m_SAX2XMLReader->parse(m_FilePath.string().c_str());
}
void EntityXMLFile::setReaderFeatures(xercesc::SAX2XMLReader* reader)
{
using namespace xercesc;
reader->setFeature(XMLUni::fgXercesCacheGrammarFromParse, true);
reader->setFeature(XMLUni::fgXercesUseCachedGrammarInParse, true);
reader->setFeature(XMLUni::fgSAX2CoreValidation, true);
reader->setFeature(XMLUni::fgSAX2CoreNameSpaces, true);
reader->setFeature(XMLUni::fgXercesSchema, true);
reader->setFeature(XMLUni::fgXercesSchemaFullChecking, true);
reader->setFeature(XMLUni::fgXercesCalculateSrcOfs, true);
reader->setFeature(XMLUni::fgXercesIdentityConstraintChecking, true);
}
unsigned int EntityXMLFile::GetTypeStride(std::string typeName)
{
std::map<std::string, unsigned int> typeStrides{
{ "bool", sizeof(bool) },
{ "int", sizeof(int) },
{ "float", sizeof(float) },
{ "double", sizeof(double) },
{ "string", sizeof(std::string) },
{ "enum", sizeof(ComponentInfo::EnumType) },
{ "Vector", sizeof(glm::vec3) },
{ "Quaternion", sizeof(glm::quat) },
{ "Color", sizeof(glm::vec4) }
};
auto it = typeStrides.find(typeName);
return (it != typeStrides.end()) ? it->second : 0;
}
void EntityXMLFile::WriteAttributeData(char* outData, const ComponentInfo::Field_t& field, const std::map<std::string, std::string>& attributes)
{
if (field.Type == "Vector") {
glm::vec3 vec;
vec.x = boost::lexical_cast<float>(attributes.at("X"));
vec.y = boost::lexical_cast<float>(attributes.at("Y"));
vec.z = boost::lexical_cast<float>(attributes.at("Z"));
memcpy(outData, reinterpret_cast<char*>(&vec), field.Stride);
} else if (field.Type == "Color") {
glm::vec4 vec;
vec.r = boost::lexical_cast<float>(attributes.at("R"));
vec.g = boost::lexical_cast<float>(attributes.at("G"));
vec.b = boost::lexical_cast<float>(attributes.at("B"));
vec.a = boost::lexical_cast<float>(attributes.at("A"));
memcpy(outData, reinterpret_cast<char*>(&vec), field.Stride);
} else if (field.Type == "Quaternion") {
glm::quat q;
q.x = boost::lexical_cast<float>(attributes.at("X"));
q.y = boost::lexical_cast<float>(attributes.at("Y"));
q.z = boost::lexical_cast<float>(attributes.at("Z"));
q.w = boost::lexical_cast<float>(attributes.at("W"));
memcpy(outData, reinterpret_cast<char*>(&q), field.Stride);
} else if (!attributes.empty()) {
LOG_WARNING("%i attributes not handled by any type conversion!", attributes.size());
}
}
void EntityXMLFile::WriteValueData(char* outData, const ComponentInfo::Field_t& field, const char* valueData)
{
// Catch and ignore casting errors so whitespace around string enums won't mess anything up
try {
if (field.Type == "int") {
int value = boost::lexical_cast<int>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "enum") {
ComponentInfo::EnumType value = boost::lexical_cast<ComponentInfo::EnumType>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "float") {
float value = boost::lexical_cast<float>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "double") {
double value = boost::lexical_cast<double>(valueData);
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "bool") {
bool value = (valueData[0] == 't'); // Lazy bool evaluation
memcpy(outData, reinterpret_cast<char*>(&value), field.Stride);
} else if (field.Type == "string") {
new (outData) std::string(valueData);
} else {
LOG_WARNING("Unknown value data type: %s", field.Type.c_str());
}
} catch (const boost::bad_lexical_cast&) { }
}
EntityFileSAXHandler::EntityFileSAXHandler(const EntityFileHandler* handler, xercesc::SAX2XMLReader* reader)
: m_Handler(handler)
, m_Reader(reader)
{
// 0 is imaginary base parent
m_EntityStack.push(0);
m_StateStack.push(State::Unknown);
}
void EntityFileSAXHandler::startElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname, const xercesc::Attributes& attrs)
{
std::string name = XS::ToString(_localName);
if (m_StateStack.top() == State::Unknown || m_StateStack.top() == State::Entity) {
if (name == "Entity") {
m_StateStack.push(State::Entity);
onStartEntity(attrs);
return;
}
if (name == "EntityRef") {
onStartEntityRef(attrs);
return;
}
}
std::string uri = XS::ToString(_uri);
if (m_StateStack.top() == State::Entity) {
if (uri == "components") {
m_StateStack.push(State::Component);
onStartComponent(name);
return;
}
}
if (m_StateStack.top() == State::Component) {
m_StateStack.push(State::ComponentField);
onStartComponentField(name, attrs);
return;
}
}
void EntityFileSAXHandler::endElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname)
{
std::string name = XS::ToString(_localName);
if (m_StateStack.top() == State::Entity) {
if (name == "Entity") {
m_StateStack.pop();
onEndEntity();
return;
}
}
std::string uri = XS::ToString(_uri);
if (m_StateStack.top() == State::Component) {
//if (uri == "components") {
m_StateStack.pop();
onEndComponent(name);
return;
//}
}
if (m_StateStack.top() == State::ComponentField && name == m_CurrentField) {
m_StateStack.pop();
onEndComponentField(name);
return;
}
}
void EntityFileSAXHandler::characters(const XMLCh* const chars, const XMLSize_t length)
{
if (m_StateStack.top() == State::ComponentField) {
char* transcoded = xercesc::XMLString::transcode(chars);
onFieldData(transcoded);
}
}
void EntityFileSAXHandler::fatalError(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tFatal Error: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::error(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tError: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::warning(const xercesc::SAXParseException& e)
{
std::string message = XS::ToString(e.getMessage());
std::string systemId = XS::ToString(e.getSystemId());
XMLFileLoc line = e.getLineNumber();
XMLFileLoc column = e.getColumnNumber();
LOG_ERROR("SAXParseException\n\tLocation: %s:%i:%i\n\tWarning: %s", systemId.c_str(), line, column, message.c_str());
}
void EntityFileSAXHandler::onStartEntity(const xercesc::Attributes& attrs)
{
EntityID parent = m_EntityStack.top();
if (m_Handler->m_OnStartEntityCallback) {
std::string name;
auto xName = attrs.getValue(XS::ToXMLCh("name"));
if (xName != nullptr) {
name = XS::ToString(xName);
}
m_Handler->m_OnStartEntityCallback(m_NextEntityID, parent, name);
}
m_EntityStack.push(m_NextEntityID);
m_NextEntityID++;
}
void EntityFileSAXHandler::onEndEntity()
{
m_EntityStack.pop();
}
void EntityFileSAXHandler::onStartEntityRef(const xercesc::Attributes& attrs)
{
std::string path = XS::ToString(attrs.getValue(XS::ToXMLCh("file")));
xercesc::SAX2XMLReader* reader = xercesc::XMLReaderFactory::createXMLReader();
EntityXMLFile::setReaderFeatures(reader);
reader->setContentHandler(this);
reader->setErrorHandler(this);
reader->parse(path.c_str());
delete reader;
}
void EntityFileSAXHandler::onStartComponentField(const std::string& field, const xercesc::Attributes& attrs)
{
//LOG_DEBUG(" Field: %s", field.c_str());
m_CurrentField = field;
m_CurrentAttributes.clear();
for (int i = 0; i < attrs.getLength(); i++) {
auto name = attrs.getQName(i);
auto value = attrs.getValue(name);
//LOG_DEBUG(" %s = %s", (char*)XS::ToString(name), (char*)XS::ToString(value));
m_CurrentAttributes[XS::ToString(name).operator std::string()] = XS::ToString(value).operator std::string();
}
if (m_Handler->m_OnStartFieldCallback) {
m_Handler->m_OnStartFieldCallback(m_EntityStack.top(), m_CurrentComponent, field, m_CurrentAttributes);
}
}
void EntityFileSAXHandler::onEndComponent(const std::string& name) { }
void EntityFileSAXHandler::onStartComponent(const std::string& name)
{
//LOG_DEBUG(" Component: %s", name.c_str());
m_CurrentComponent = name;
if (m_Handler->m_OnStartComponentCallback) {
m_Handler->m_OnStartComponentCallback(m_EntityStack.top(), name);
}
}
void EntityFileSAXHandler::onEndComponentField(const std::string& field) { }
void EntityFileSAXHandler::onFieldData(char* data)
{
//LOG_DEBUG(" Data: %s", data);
if (m_Handler->m_OnStartFieldDataCallback) {
m_Handler->m_OnStartFieldDataCallback(m_EntityStack.top(), m_CurrentComponent, m_CurrentField, data);
}
xercesc::XMLString::release(&data);
}
+84
View File
@@ -0,0 +1,84 @@
#include "Core/EntityXMLFileParser.h"
EntityXMLFileParser::EntityXMLFileParser(const EntityXMLFile* entityFile)
: m_EntityFile(entityFile)
{
m_Handler.SetStartEntityCallback(std::bind(&EntityXMLFileParser::onStartEntity, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3));
m_Handler.SetStartComponentCallback(std::bind(&EntityXMLFileParser::onStartComponent, this, std::placeholders::_1, std::placeholders::_2));
m_Handler.SetStartFieldCallback(std::bind(&EntityXMLFileParser::onStartComponentField, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4));
m_Handler.SetStartFieldDataCallback(std::bind(&EntityXMLFileParser::onFieldData, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4));
}
EntityID EntityXMLFileParser::MergeEntities(World* world, EntityID baseParent /*= EntityID_Invalid */)
{
m_World = world;
m_EntityIDMapper[0] = baseParent;
m_EntityFile->Parse(&m_Handler);
return m_FirstEntity;
}
void EntityXMLFileParser::onStartEntity(EntityID entity, EntityID parent, const std::string& name)
{
EntityID realParent = m_EntityIDMapper.at(parent);
EntityID realEntity = m_World->CreateEntity(realParent);
if (m_FirstEntity == EntityID_Invalid) {
m_FirstEntity = realEntity;
}
if (!name.empty()) {
m_World->SetName(realEntity, name);
}
m_EntityIDMapper[entity] = realEntity;
//LOG_DEBUG("Created entity #%i (%i) with parent %i (%i)", entity, realEntity, parent, realParent);
}
void EntityXMLFileParser::onStartComponent(EntityID entity, const std::string& component)
{
if (m_World->GetComponentPools().count(component) != 0) {
EntityID realEntity = m_EntityIDMapper.at(entity);
m_World->AttachComponent(realEntity, component);
} else {
LOG_ERROR("Tried to attach unregistered component \"%s\"! to entity #%i. Ignoring.", component.c_str(), entity);
}
//LOG_DEBUG("Attached component of type \"%s\" to entity #%i (%i)", component.c_str(), entity, realEntity);
}
void EntityXMLFileParser::onStartComponentField(EntityID entity, const std::string& componentType, const std::string& fieldName, const std::map<std::string, std::string>& attributes)
{
if (m_World->GetComponentPools().count(componentType) == 0) {
return;
}
EntityID realEntity = m_EntityIDMapper.at(entity);
ComponentWrapper component = m_World->GetComponent(realEntity, componentType);
auto fieldIt = component.Info.Fields.find(fieldName);
if (fieldIt == component.Info.Fields.end()) {
LOG_ERROR("Tried to set unknown field \"%s\" of component type \"%s\"! Ignoring.", fieldName.c_str(), componentType.c_str());
return;
}
auto& field = fieldIt->second;
//LOG_DEBUG("Field \"%s\" type \"%s\"", fieldName.c_str(), field.Type.c_str());
//LOG_DEBUG("Attributes:");
//for (auto& kv : attributes) {
// LOG_DEBUG("\t%s = %s", kv.first.c_str(), kv.second.c_str());
//}
char* data = component.Data + field.Offset;
EntityXMLFile::WriteAttributeData(data, field, attributes);
}
void EntityXMLFileParser::onFieldData(EntityID entity, const std::string& componentType, const std::string& fieldName, const char* fieldData)
{
if (m_World->GetComponentPools().count(componentType) == 0) {
return;
}
EntityID realEntity = m_EntityIDMapper.at(entity);
ComponentWrapper component = m_World->GetComponent(realEntity, componentType);
auto fieldIt = component.Info.Fields.find(fieldName);
if (fieldIt == component.Info.Fields.end()) {
return;
}
auto& field = fieldIt->second;
char* data = component.Data + field.Offset;
EntityXMLFile::WriteValueData(data, field, fieldData);
}
@@ -1,10 +1,10 @@
#include "Core/EntityFilePreprocessor.h"
#include "Core/EntityXMLFilePreprocessor.h"
EntityFilePreprocessor::EntityFilePreprocessor(const EntityFile* entityFile)
EntityXMLFilePreprocessor::EntityXMLFilePreprocessor(const EntityXMLFile* entityFile)
: m_EntityFile(entityFile)
{
EntityFileHandler handler;
handler.SetStartComponentCallback(std::bind(&EntityFilePreprocessor::onStartComponent, this, std::placeholders::_1, std::placeholders::_2));
handler.SetStartComponentCallback(std::bind(&EntityXMLFilePreprocessor::onStartComponent, this, std::placeholders::_1, std::placeholders::_2));
m_EntityFile->Parse(&handler);
//LOG_DEBUG("___ COMPONENT DEFINITIONS ___");
@@ -28,20 +28,20 @@ EntityFilePreprocessor::EntityFilePreprocessor(const EntityFile* entityFile)
parseDefaults();
}
void EntityFilePreprocessor::RegisterComponents(World* world)
void EntityXMLFilePreprocessor::RegisterComponents(World* world)
{
for (auto& kv : m_ComponentInfo) {
world->RegisterComponent(kv.second);
}
}
void EntityFilePreprocessor::onStartComponent(EntityID entity, std::string type)
void EntityXMLFilePreprocessor::onStartComponent(EntityID entity, std::string type)
{
//LOG_DEBUG("Component: %s", type.c_str());
m_ComponentCounts[type]++;
}
void EntityFilePreprocessor::parseComponentInfo()
void EntityXMLFilePreprocessor::parseComponentInfo()
{
using namespace xercesc;
EntityFileXMLErrorHandler errorHandler;
@@ -141,9 +141,9 @@ void EntityFilePreprocessor::parseComponentInfo()
std::string baseType = XS::ToString(elementDeclaration->getTypeDefinition()->getBaseType()->getName());
std::string effectiveType = type;
unsigned int stride = EntityFile::GetTypeStride(type);
unsigned int stride = EntityXMLFile::GetTypeStride(type);
if (stride == 0) {
stride = EntityFile::GetTypeStride(baseType);
stride = EntityXMLFile::GetTypeStride(baseType);
if (stride == 0) {
LOG_WARNING("Field \"%s\" in component \"%s\" uses unexpected field type \"%s\" with base type \"%s\". Skipping.", name.c_str(), compInfo.Name.c_str(), type.c_str(), baseType.c_str());
continue;
@@ -196,7 +196,7 @@ void EntityFilePreprocessor::parseComponentInfo()
}
}
void EntityFilePreprocessor::parseDefaults()
void EntityXMLFilePreprocessor::parseDefaults()
{
using namespace xercesc;
@@ -261,7 +261,7 @@ void EntityFilePreprocessor::parseDefaults()
auto attribItem = attributeMap->item(i);
attributes[XS::ToString(attribItem->getNodeName())] = XS::ToString(attribItem->getNodeValue());
}
EntityFile::WriteAttributeData(data, field, attributes);
EntityXMLFile::WriteAttributeData(data, field, attributes);
}
auto childNode = fieldElement->getFirstChild();
@@ -278,14 +278,14 @@ void EntityFilePreprocessor::parseDefaults()
// Handle potential field values
if (childNode->getNodeType() == DOMNode::TEXT_NODE) {
char* cstrValue = XMLString::transcode(childNode->getNodeValue());
EntityFile::WriteValueData(data, field, cstrValue);
EntityXMLFile::WriteValueData(data, field, cstrValue);
XMLString::release(&cstrValue);
}
}
}
}
std::string EntityFilePreprocessor::parseAnnotationXML(const XMLCh* xml)
std::string EntityXMLFilePreprocessor::parseAnnotationXML(const XMLCh* xml)
{
using namespace xercesc;
@@ -1,13 +1,13 @@
#include "Core/EntityFileWriter.h"
#include "Core/EntityXMLFileWriter.h"
#define X(str) XS::ToXMLCh(str)
void EntityFileWriter::WriteWorld(World* world)
void EntityXMLFileWriter::WriteWorld(World* world)
{
WriteEntity(world, 0);
}
void EntityFileWriter::WriteEntity(World* world, EntityID entity)
void EntityXMLFileWriter::WriteEntity(World* world, EntityID entity)
{
using namespace xercesc;
DOMDocument* doc = m_DOMImplementation->createDocument(nullptr, X("Entity"), nullptr);
@@ -41,7 +41,7 @@ void EntityFileWriter::WriteEntity(World* world, EntityID entity)
doc->release();
}
void EntityFileWriter::appendEntityChildren(xercesc::DOMElement* parentElement, const World* world, EntityID entity)
void EntityXMLFileWriter::appendEntityChildren(xercesc::DOMElement* parentElement, const World* world, EntityID entity)
{
using namespace xercesc;
DOMDocument* doc = parentElement->getOwnerDocument();
@@ -67,7 +67,7 @@ void EntityFileWriter::appendEntityChildren(xercesc::DOMElement* parentElement,
}
}
void EntityFileWriter::appentEntityComponents(xercesc::DOMElement* parentElement, const World* world, EntityID entity)
void EntityXMLFileWriter::appentEntityComponents(xercesc::DOMElement* parentElement, const World* world, EntityID entity)
{
using namespace xercesc;
DOMDocument* doc = parentElement->getOwnerDocument();
+2 -2
View File
@@ -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;
}
+58 -1
View File
@@ -1,6 +1,7 @@
#include "Core/World.h"
#include "Core/EEntityDeleted.h"
#include "Core/EComponentDeleted.h"
#include "Core/EntityWrapper.h"
World::~World()
{
@@ -44,7 +45,7 @@ bool World::ValidEntity(EntityID entity) const
return m_EntityParents.find(entity) != m_EntityParents.end();
}
void World::RegisterComponent(ComponentInfo& ci)
void World::RegisterComponent(const ComponentInfo& ci)
{
if (m_ComponentPools.find(ci.Name) == m_ComponentPools.end()) {
m_ComponentPools[ci.Name] = new ComponentPool(ci);
@@ -151,6 +152,62 @@ std::string World::GetName(EntityID entity) const
}
}
EntityWrapper World::GetFirstEntityByName(const std::string& name)
{
auto itPair = GetDirectChildren(EntityID_Invalid);
for (auto it = itPair.first; it != itPair.second; it++) {
EntityID childEntityID = it->second;
EntityWrapper childEntity(this, childEntityID);
if (!childEntity.Valid()) {
continue;
}
EntityWrapper entityWithName = childEntity.Name() == name ? childEntity : childEntity.FirstChildByName(name);
if (entityWithName.Valid()) {
return entityWithName;
}
}
return EntityWrapper::Invalid;
}
std::unordered_map<EntityID, EntityID> World::Merge(const World* other)
{
std::unordered_map<EntityID, EntityID> oldToNew;
// Create new entities
for (auto& kv : other->m_EntityParents) {
EntityID entity = kv.first;
EntityID newEntity = CreateEntity();
SetName(newEntity, other->GetName(entity));
oldToNew[entity] = newEntity;
}
// Fix relationships
for (auto& kv : other->m_EntityParents) {
EntityID entity = kv.first;
EntityID parent = kv.second;
if (parent != EntityID_Invalid) {
SetParent(oldToNew.at(entity), oldToNew.at(parent));
}
}
// Transfer components
for (auto& kv : other->m_ComponentPools) {
auto& componentType = kv.first;
ComponentPool* pool = kv.second;
// Register pool if it's not present in world
if (m_ComponentPools.count(componentType) == 0) {
RegisterComponent(pool->ComponentInfo());
}
// Copy components
for (auto component : *pool) {
ComponentWrapper newComponent = AttachComponent(oldToNew.at(component.EntityID), componentType);
component.Copy(newComponent);
}
}
return oldToNew;
}
EntityID World::generateEntityID()
{
// TODO: Make EntityID generation smarter
+5
View File
@@ -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;
+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 {
+7 -7
View File
@@ -2,6 +2,7 @@
#include "Core/UniformScaleSystem.h"
#include "Editor/EditorRenderSystem.h"
#include "Editor/EditorWidgetSystem.h"
#include "Core/EntityFile.h"
EditorSystem::EditorSystem(SystemParams params, IRenderer* renderer, RenderFrame* renderFrame)
: System(params)
@@ -129,7 +130,7 @@ void EditorSystem::OnEntitySelected(EntityWrapper entity)
void EditorSystem::OnEntitySave(EntityWrapper entity, boost::filesystem::path filePath)
{
EntityFileWriter writer(filePath);
EntityXMLFileWriter writer(filePath);
writer.WriteEntity(entity.World, entity.ID);
}
@@ -260,12 +261,11 @@ EntityWrapper EditorSystem::importEntity(EntityWrapper parent, boost::filesystem
try {
auto entityFile = ResourceManager::Load<EntityFile>(filePath.string());
EntityFilePreprocessor fpp(entityFile);
fpp.RegisterComponents(parent.World);
EntityFileParser fp(entityFile);
EntityID newEntity = fp.MergeEntities(parent.World, parent.ID);
return EntityWrapper(parent.World, newEntity);
} catch (const std::exception&) {
EntityWrapper newEntity = entityFile->MergeInto(parent.World);
parent.World->SetParent(newEntity.ID, parent.ID);
return newEntity;
} catch (const std::exception& e) {
LOG_ERROR("Failed to import entity \"%s\": \"%s\"", filePath.string().c_str(), e.what());
return EntityWrapper::Invalid;
}
}
+44 -5
View File
@@ -33,6 +33,7 @@ void Client::Connect(std::string address, int port)
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_EDashAbility, &Client::OnDashAbility);
EVENT_SUBSCRIBE_MEMBER(m_ESearchForServers, &Client::OnSearchForServers);
auto config = ResourceManager::Load<ConfigFile>("Config.ini");
m_Address = address;
@@ -101,8 +102,7 @@ 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)
@@ -144,6 +144,12 @@ void Client::parseMessageType(Packet& packet)
case MessageType::OnDoubleJump:
parseDoubleJump(packet);
break;
case MessageType::OnDashEffect:
parseDashEffect(packet);
break;
case MessageType::AmmoPickup:
parseAmmoPickup(packet);
break;
default:
break;
}
@@ -233,7 +239,6 @@ void Client::parseSpawnEvents()
m_EventBroker->Publish(e);
}
m_PlayerSpawnEvents = tempSpawn;
// m_PlayerSpawnEvents.clear();
}
void Client::parsePlayersSpawned(Packet& packet)
@@ -261,7 +266,7 @@ void Client::parseEntityDeletion(Packet & packet)
if (m_ServerIDToClientID.find(entityToDelete) != m_ServerIDToClientID.end()) {
EntityID localEntity = m_ServerIDToClientID.at(entityToDelete);
if (m_World->ValidEntity(localEntity)) {
if (m_World->HasComponent(localEntity,"Player")) {
if (m_World->HasComponent(localEntity, "Player")) {
Events::PlayerDeath e;
e.Player = EntityWrapper(m_World, localEntity);
m_EventBroker->Publish(e);
@@ -296,6 +301,28 @@ void Client::parseDoubleJump(Packet & packet)
}
}
void Client::parseDashEffect(Packet& packet)
{
EntityID serverID = packet.ReadPrimitive<EntityID>();
if (!serverClientMapsHasEntity(serverID)) {
return;
}
Events::DashAbility e;
e.Player = m_ServerIDToClientID.at(serverID);
if (e.Player != 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) {
@@ -379,7 +406,7 @@ void Client::parseSnapshot(Packet& packet)
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);
}
@@ -509,6 +536,18 @@ bool Client::OnPlayerSpawned(const Events::PlayerSpawned& e)
return true;
}
bool Client::OnDashAbility(const Events::DashAbility& e)
{
if (!clientServerMapsHasEntity(e.Player) || e.Player != m_LocalPlayer.ID) {
return false;
}
Packet packet(MessageType::OnDashEffect);
packet.WritePrimitive(m_ClientIDToServerID.at(e.Player));
m_Reliable.Send(packet);
return true;
}
bool Client::OnSearchForServers(const Events::SearchForServers& e)
{
m_SearchingForServers = true;
+10 -4
View File
@@ -49,18 +49,24 @@ void Packet::WriteString(const std::string& str)
// Message, add one extra byte for null terminator
size_t sizeOfString = str.size() + 1;
if (m_Offset + sizeOfString > m_MaxPacketSize) {
//LOG_WARNING("Package::WriteString(): Data size in packet exceeded maximum package size. New size is %i bytes\n", m_MaxPacketSize*2);
if (m_MaxPacketSize >= 32000) {
LOG_WARNING("Package::WriteString(): New size is huge %i bytes\n", m_MaxPacketSize*2);
}
resizeData();
}
memcpy(m_Data + m_Offset, str.data(), sizeOfString * sizeof(char));
m_Offset += sizeOfString * sizeof(char);
memcpy(m_Data + m_Offset, str.data(), str.size() * sizeof(char));
m_Offset += str.size() * sizeof(char);
m_Data[m_Offset] = '\0';
m_Offset += 1;
}
void Packet::WriteData(char * data, int sizeOfData)
{
if (m_Offset + sizeOfData > m_MaxPacketSize) {
//LOG_WARNING("Packet::WriteData(): Data size in packet exceeded maximum packet size. New size is %i bytes\n", m_MaxPacketSize*2);
if (m_MaxPacketSize >= 32000) {
LOG_WARNING("Package::WriteData(): New size is huge %i bytes\n", m_MaxPacketSize*2);
}
while (m_Offset + sizeOfData > m_MaxPacketSize) {
resizeData();
}
+26 -3
View File
@@ -13,7 +13,7 @@ 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);
EVENT_SUBSCRIBE_MEMBER(m_EAmmoPickup, &Server::OnAmmoPickup);
// BindWW
if (port == 0) {
port = config->Get<float>("Networking.Port", 27666);
@@ -141,6 +141,9 @@ void Server::parseMessageType(Packet& packet)
case MessageType::OnDoubleJump:
parseDoubleJump(packet);
break;
case MessageType::OnDashEffect:
parseDashEffect(packet);
break;
default:
break;
}
@@ -510,6 +513,19 @@ bool Server::OnPlayerDamage(const Events::PlayerDamage& e)
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()
{
LOG_INFO("%i: Parsing ping", m_PacketID);
@@ -542,6 +558,11 @@ bool Server::parseDoubleJump(Packet & packet)
return true;
}
void Server::parseDashEffect(Packet& packet)
{
reliableBroadcast(packet);
}
void Server::parseOnInputCommand(Packet& packet)
{
PlayerID player = -1;
@@ -604,12 +625,14 @@ bool Server::shouldSendToClient(EntityWrapper childEntity)
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")) {
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("CapturePoint") || childEntity.HasComponent("HealthPickup")
|| childEntity.HasComponent("AmmoPickup");
}
PlayerID Server::GetPlayerIDFromEndpoint()
+4 -1
View File
@@ -74,7 +74,10 @@ size_t TCPClient::readBuffer()
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
if (sizeOfPacket > m_Socket->available()) {
LOG_WARNING("TCPClient::readBuffer(): We haven't got the whole packet yet.");
return 0;
}
// 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) {
+4 -1
View File
@@ -106,7 +106,10 @@ int TCPServer::readBuffer(PlayerDefinition & playerDefinition)
boost::asio::ip::tcp::socket::message_peek, error);
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
if (sizeOfPacket > playerDefinition.TCPSocket->available()) {
LOG_WARNING("TCPServer::readBuffer(): We haven't got the whole packet yet.");
return 0;
}
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
+4 -1
View File
@@ -45,7 +45,10 @@ int UDPClient::readBuffer()
boost::asio::ip::udp::socket::message_peek, error);
int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
if (sizeOfPacket > m_Socket->available()) {
LOG_WARNING("UDPClient::readBuffer(): We haven't got the whole packet yet.");
return 0;
}
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
+5
View File
@@ -92,6 +92,11 @@ int UDPServer::readBuffer()
unsigned int sizeOfPacket = 0;
memcpy(&sizeOfPacket, m_ReadBuffer, sizeof(int));
if (sizeOfPacket > m_Socket->available()) {
LOG_WARNING("UDPServer::readBuffer(): We haven't got the whole packet yet.");
return 0;
}
// if the buffer is to small increase the size of it
if (sizeOfPacket > m_BufferSize) {
delete[] m_ReadBuffer;
+59 -33
View File
@@ -1,19 +1,41 @@
#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()
@@ -35,37 +57,45 @@ void DrawBloomPass::InitializeShaderPrograms()
}
}
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;
@@ -84,11 +114,12 @@ void DrawBloomPass::Draw(GLuint texture)
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);
@@ -96,16 +127,19 @@ void DrawBloomPass::Draw(GLuint texture)
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
@@ -113,6 +147,7 @@ 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);
@@ -125,20 +160,11 @@ void DrawBloomPass::Draw(GLuint texture)
void DrawBloomPass::OnWindowResize()
{
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_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();
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.Generate();
}
void DrawBloomPass::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const
{
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");
}
@@ -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));
}
+22 -22
View File
@@ -42,35 +42,35 @@ 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");
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");
}
GLERROR("3");
GLenum* bufferTextures = &attachments[0];
GLenum* bufferTextures = attachments.data();
glDrawBuffers(attachments.size(), bufferTextures);
if (GLERROR("GLBufferAttachement error")) {
printf(": AttachmentSize %i", attachments.size());
+5 -17
View File
@@ -19,15 +19,16 @@ 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);
GenerateTexture(&m_DepthBuffer, GL_CLAMP_TO_BORDER, GL_NEAREST,
glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_DEPTH24_STENCIL8, GL_DEPTH_STENCIL, GL_UNSIGNED_INT_24_8);
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()
{
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();
@@ -366,7 +367,7 @@ 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");
}
@@ -407,16 +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");
}
+1 -1
View File
@@ -9,11 +9,11 @@ PickingPassState::PickingPassState(GLuint 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)) {
+10 -9
View File
@@ -240,6 +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()) {
@@ -255,20 +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);
@@ -294,20 +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);
+30 -34
View File
@@ -4,6 +4,8 @@ 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();
@@ -26,9 +28,9 @@ 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_PickingPass->OnWindowResize();
currentRenderer->m_DrawBloomPass->OnWindowResize();
currentRenderer->m_SSAOPass->OnWindowResize();
}
@@ -107,7 +109,8 @@ void Renderer::Update(double dt)
void Renderer::Draw(RenderFrame& frame)
{
GLERROR("PRE");
ImGui::Combo("Draw textures", &m_DebugTextureToDraw, "Final\0Scene\0Bloom\0SceneLowRes\0BloomLowRes\0Gaussian\0Picking\0Ambient Occlusion");
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");
@@ -115,19 +118,16 @@ void Renderer::Draw(RenderFrame& frame)
m_CubeMapPass->LoadTextures("Sky");
}
ImGui::SliderFloat("SSAO sample radius", &m_SSAO_Radius, 0.01f, 5.0f);
ImGui::SliderFloat("SSAO bias", &m_SSAO_Bias, 0.0f, 0.1f);
ImGui::SliderFloat("SSAO contrast", &m_SSAO_Contrast, 0.0f, 10.0f);
ImGui::SliderFloat("SSAO IntensityScale", &m_SSAO_IntensityScale, 0.0f, 10.0f);
ImGui::SliderInt("SSAO Number of Samples", &m_SSAO_NumOfSamples, 2, 100);
ImGui::SliderInt("SSAO Number of Turns", &m_SSAO_NumOfTurns, 0, 50);
m_SSAOPass->Setting(m_SSAO_Radius, m_SSAO_Bias, m_SSAO_Contrast, m_SSAO_IntensityScale, m_SSAO_NumOfSamples, m_SSAO_NumOfTurns);
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();
@@ -136,18 +136,16 @@ void Renderer::Draw(RenderFrame& frame)
PerformanceTimer::StopTimer("Renderer-ClearBuffers");
GLERROR("ClearBuffers");
for (auto scene : frame.RenderScenes) {
PerformanceTimer::StartTimer("Renderer-Depth");
PerformanceTimer::StartTimer("Renderer-PickingPass");
m_PickingPass->Draw(*scene);
GLERROR("Drawing pickingpass");
PerformanceTimer::StopTimer("Renderer-Depth");
PerformanceTimer::StopTimer("Renderer-PickingPass");
}
PerformanceTimer::StartTimer("AO generation");
m_SSAOPass->Draw(m_PickingPass->DepthBuffer(), frame.RenderScenes.front()->Camera);
GLuint ao = m_SSAOPass->SSAOTexture();
PerformanceTimer::StopTimer("AO generation");
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-Drawing PickingPass");
PerformanceTimer::StartTimer("Renderer-Depth");
SortRenderJobsByDepth(*scene);
GLERROR("SortByDepth");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Generate Frustrums");
@@ -159,8 +157,8 @@ void Renderer::Draw(RenderFrame& frame)
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Light Culling");
m_LightCullingPass->CullLights(*scene);
GLERROR("LightCulling");
m_DrawFinalPass->Draw(*scene, ao);
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Draw Geometry+Light");
PerformanceTimer::StartTimerAndStopPrevious("Renderer-Draw Geometry+Light");
m_DrawFinalPass->Draw(*scene);
GLERROR("Draw Geometry+Light");
//m_DrawScenePass->Draw(*scene);
@@ -176,7 +174,7 @@ void Renderer::Draw(RenderFrame& frame)
if (m_DebugTextureToDraw == 0) {
PerformanceTimer::StartTimer("Renderer-Color Correction Pass");
m_DrawColorCorrectionPass->Draw(m_DrawFinalPass->SceneTexture(), m_DrawBloomPass->GaussianTexture(), m_DrawFinalPass->SceneTextureLowRes(), m_DrawFinalPass->BloomTextureLowRes(), frame.Gamma, frame.Exposure);
m_DrawColorCorrectionPass->Draw(m_DrawFinalPass->SceneTexture(), m_DrawBloomPass->GaussianTexture(), frame.Gamma, frame.Exposure);
PerformanceTimer::StopTimer("Renderer-Color Correction Pass");
}
@@ -188,18 +186,12 @@ 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 == 7) {
if (m_DebugTextureToDraw == 5) {
m_DrawScreenQuadPass->Draw(m_SSAOPass->SSAOTexture());
}
PerformanceTimer::StopTimer("Renderer-Misc Debug Draws");
@@ -207,8 +199,11 @@ void Renderer::Draw(RenderFrame& frame)
PerformanceTimer::StartTimer("Renderer-ImGuiRenderPass");
m_ImGuiRenderPass->Draw();
GLERROR("Imgui draw");
PerformanceTimer::StopTimer("Renderer-ImGuiRenderPass");
PerformanceTimer::StartTimer("Renderer-SwapBuffer");
glfwSwapBuffers(m_Window);
PerformanceTimer::StopTimer("Renderer-ImGuiRenderPass");
PerformanceTimer::StopTimer("Renderer-SwapBuffer");
}
PickData Renderer::Pick(glm::vec2 screenCoord)
@@ -248,9 +243,10 @@ void Renderer::InitializeRenderPasses()
m_PickingPass = new PickingPass(this, m_EventBroker);
m_LightCullingPass = new LightCullingPass(this);
m_CubeMapPass = new CubeMapPass(this);
m_DrawFinalPass = new DrawFinalPass(this, m_LightCullingPass, m_CubeMapPass);
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);
m_SSAOPass = new SSAOPass(this);
}
}
+184 -41
View File
@@ -1,84 +1,168 @@
#include "Rendering/SSAOPass.h"
SSAOPass::SSAOPass(IRenderer* renderer)
SSAOPass::SSAOPass(IRenderer* renderer, ConfigFile* config)
: m_Renderer(renderer)
, m_Config(config)
{
m_Renderer = renderer;
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();
Setting(0.1f, 0.012f, 1.0f, 1.0f, 13, 7);
m_DrawBloomPass = new DrawBloomPass(renderer);
}
void SSAOPass::InitializeShaderProgram()
{
m_SSAOProgram = ResourceManager::Load<ShaderProgram>("##SSAOProgram");
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();
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");
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();
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() {
GenerateTexture(&m_SSAOTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_R8, GL_RED, GL_FLOAT);
GenerateTexture(&m_SSAOViewSpaceZTexture, GL_CLAMP_TO_EDGE, GL_LINEAR, glm::vec2(m_Renderer->GetViewportSize().Width, m_Renderer->GetViewportSize().Height), GL_R32F, GL_RED, GL_FLOAT);
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()
{
m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
if (m_SSAOFramBuffer.GetHandle() == 0) {
m_SSAOFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOTexture, GL_COLOR_ATTACHMENT0)));
}
m_SSAOFramBuffer.Generate();
m_SSAOViewSpaceZFramBuffer.AddResource(std::shared_ptr<BufferResource>(new Texture2D(&m_SSAOViewSpaceZTexture, GL_COLOR_ATTACHMENT0)));
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 | GL_DEPTH_BUFFER_BIT);
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 | GL_DEPTH_BUFFER_BIT);
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) {
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;
}
void SSAOPass::GenerateTexture(GLuint* texture, GLenum wrapping, GLenum filtering, glm::vec2 dimensions, GLint internalFormat, GLint format, GLenum type) const
{
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");
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();
@@ -98,6 +182,7 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
(-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);
@@ -107,9 +192,9 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
glm::vec4 projInfo = glm::vec4(
((1.0 - camera->ProjectionMatrix()[0][2]) / camera->ProjectionMatrix()[0][0]),
(-2.0 / (m_Renderer->GetViewportSize().Width * 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 * camera->ProjectionMatrix()[1][1]))
(-2.0 / ((m_Renderer->GetViewportSize().Height >> m_TextureQuality) * camera->ProjectionMatrix()[1][1]))
);
@@ -120,26 +205,84 @@ void SSAOPass::Draw(GLuint depthBuffer, Camera* camera)
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 / (-2.0f * glm::tan(camera->FOV() * 0.5f)));
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);;
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);
m_DrawBloomPass->ClearBuffer();
m_DrawBloomPass->Draw(m_SSAOTexture);
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() {
m_DrawBloomPass->OnWindowResize();
if (m_Quality == 0) {
return;
}
InitializeTexture();
m_SSAOFramBuffer.Generate();
m_SSAOViewSpaceZFramBuffer.Generate();
InitializeBuffer();
}
@@ -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;
}
+1 -1
View File
@@ -363,7 +363,7 @@ bool SoundManager::OnPlayerSpawned(const Events::PlayerSpawned &e)
if (m_TempPleaseDeleteMeASAP) {
return true;
}
m_CurrentBGMCombo = createSource("Audio/bgm/layer2.wav");
m_CurrentBGMCombo = createSource("Audio/BGM/Layer2.wav");
m_CurrentBGMCombo->Type = SoundType::BGM;
alSourcei(m_CurrentBGMCombo->ALsource, AL_LOOPING, 1);
setGain(m_CurrentBGMCombo, 0);
+26 -8
View File
@@ -10,7 +10,9 @@
#include "Systems/SpawnerSystem.h"
#include "Systems/PlayerSpawnSystem.h"
#include "Systems/PlayerDeathSystem.h"
#include "Core/EntityFileWriter.h"
#include "Systems/FloatingEffectSystem.h"
#include "Core/EntityFile.h"
#include "Core/EntityXMLFileWriter.h"
#include "Game/Systems/CapturePointSystem.h"
#include "Game/Systems/CapturePointHUDSystem.h"
#include "Game/Systems/PickupSpawnSystem.h"
@@ -25,7 +27,11 @@
#include "Rendering/AnimationSystem.h"
#include "Network/MultiplayerSnapshotFilter.h"
#include "Game/Systems/AmmunitionHUDSystem.h"
#include "Game/Systems/AbilityCooldownHUDSystem.h"
#include "Game/Systems/CapturePointArrowHUDSystem.h"
#include "Game/Systems/KillFeedSystem.h"
#include "Game/Systems/BoostSystem.h"
#include "Game/Systems/BoostIconsHUDSystem.h"
#include "GUI/ButtonSystem.h"
#include "GUI/MainMenuSystem.h"
@@ -42,19 +48,19 @@ Game::Game(int argc, char* argv[])
ResourceManager::RegisterType<PNG>("Png");
ResourceManager::RegisterType<ShaderProgram>("ShaderProgram");
ResourceManager::RegisterType<EntityFile>("EntityFile");
ResourceManager::RegisterType<EntityXMLFile>("EntityXMLFile");
ResourceManager::RegisterType<Font>("FontFile");
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
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(
@@ -79,10 +85,7 @@ Game::Game(int argc, char* argv[])
std::string mapToLoad = m_Config->Get<std::string>("Debug.LoadMap", "");
if (!mapToLoad.empty()) {
auto file = ResourceManager::Load<EntityFile>(mapToLoad);
EntityFilePreprocessor fpp(file);
fpp.RegisterComponents(m_World);
EntityFileParser fp(file);
fp.MergeEntities(m_World);
file->MergeInto(m_World);
}
// Create the sound manager
@@ -119,6 +122,7 @@ Game::Game(int argc, char* argv[])
++updateOrderLevel;
m_SystemPipeline->AddSystem<SoundSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<RaptorCopterSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<FloatingEffectSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<ExplosionEffectSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<HealthSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<PlayerMovementSystem>(updateOrderLevel);
@@ -132,14 +136,25 @@ Game::Game(int argc, char* argv[])
m_SystemPipeline->AddSystem<AmmoPickupSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<DamageIndicatorSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<AmmunitionHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<AbilityCooldownHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<CapturePointArrowHUDSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<KillFeedSystem>(updateOrderLevel);
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<BoostSystem>(updateOrderLevel);
m_SystemPipeline->AddSystem<ButtonSystem>(updateOrderLevel, m_Renderer);
m_SystemPipeline->AddSystem<MainMenuSystem>(updateOrderLevel, m_Renderer);
m_SystemPipeline->AddSystem<BoostIconsHUDSystem>(updateOrderLevel);
// 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);
@@ -149,6 +164,9 @@ 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;
@@ -0,0 +1,30 @@
#include "Game/Systems/AbilityCooldownHUDSystem.h"
void AbilityCooldownHUDSystem::Update(double dt)
{
//HUD element for tracking cooldown on the parent entity with Dashability TODO: Make sure it support other abilities when they are made.
auto abilityHUDs = m_World->GetComponents("AbilityCooldownHUD");
if (abilityHUDs == nullptr)
return;
for (auto& abilityHUDC : *abilityHUDs) {
EntityWrapper entity = EntityWrapper(m_World, abilityHUDC.EntityID);
EntityWrapper abilityEntity = entity.FirstParentWithComponent("DashAbility");
if (!abilityEntity.Valid())
return;
EntityWrapper cooldownTextEntity = entity.FirstChildByName("Cooldown");
if(cooldownTextEntity.Valid()) {
if(cooldownTextEntity.HasComponent("Text"))
{
double maxAbilityCD = (double)abilityEntity["DashAbility"]["CoolDownMaxTimer"];
double currentAbilityCD = (double)abilityEntity["DashAbility"]["CoolDownTimer"];
currentAbilityCD = currentAbilityCD >= 0.0 ? currentAbilityCD : 0.0;
std::string t = (std::string&)cooldownTextEntity["Text"]["Content"] = std::to_string(currentAbilityCD).substr(0, 3);
if(entity.HasComponent("Fill")) {
entity["Fill"]["Percentage"] = currentAbilityCD/maxAbilityCD; //TODO: current time needs to be in the component.
}
}
}
}
}
+93 -36
View File
@@ -3,45 +3,63 @@
AmmoPickupSystem::AmmoPickupSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &AmmoPickupSystem::OnTriggerTouch);
if (IsServer) {
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &AmmoPickupSystem::OnTriggerTouch);
EVENT_SUBSCRIBE_MEMBER(m_ETriggerLeave, &AmmoPickupSystem::OnTriggerLeave);
}
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) {
auto it = m_ETriggerTouchVector.begin();
while (it != m_ETriggerTouchVector.end()) {
auto& somePickup = *it;
somePickup.DecreaseThisRespawnTimer -= dt;
if (somePickup.DecreaseThisRespawnTimer < 0.0) {
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/AmmoPickup.xml");
EntityWrapper ammoPickup = entityFile->MergeInto(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
Events::PickupSpawned ePickupSpawned;
ePickupSpawned.Pickup = ammoPickup;
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;
m_World->SetParent(newAmmoPickupEntity.ID, ammoPickupPosition.parentID);
//copy values from the old entity to the new entity
auto& newAmmoPickupEntity = ammoPickup;
newAmmoPickupEntity["Transform"]["Position"] = somePickup.Pos;
newAmmoPickupEntity["AmmoPickup"]["AmmoGain"] = somePickup.AmmoGain;
newAmmoPickupEntity["AmmoPickup"]["RespawnTimer"] = somePickup.RespawnTimer;
m_World->SetParent(newAmmoPickupEntity.ID, somePickup.parentID);
//erase the current element (AmmoPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
//erase the current element (somePickup)
it = m_ETriggerTouchVector.erase(it);
}
else {
it++;
}
}
//still touching m_PickupAtMaximum?
for (auto& it = m_PickupAtMaximum.begin(); it != m_PickupAtMaximum.end(); ++it) {
if (!it->player.Valid()) {
m_PickupAtMaximum.erase(it);
break;
}
if ((int)it->player["AssaultWeapon"]["Ammo"] < (int)it->player["AssaultWeapon"]["MaxAmmo"]) {
DoPickup(it->player, it->trigger);
m_PickupAtMaximum.erase(it);
break;
}
}
}
}
bool AmmoPickupSystem::OnTriggerTouch(Events::TriggerTouch& e)
{
if (e.Entity != LocalPlayer) {
if (!e.Entity.Valid()) {
return false;
}
//TODO: add other weapontypes
@@ -51,29 +69,68 @@ bool AmmoPickupSystem::OnTriggerTouch(Events::TriggerTouch& e)
if (!e.Trigger.HasComponent("AmmoPickup")) {
return false;
}
int maxWeaponAmmo = (int)e.Entity["AssaultWeapon"]["MaxAmmo"];
int& currentAmmo = (int)e.Entity["AssaultWeapon"]["Ammo"];
int ammoGiven = 0.01*(double)e.Trigger["AmmoPickup"]["AmmoGain"] * maxWeaponAmmo;
//if at maxammo, save the trigger-touch to a vector since standing inside it will not re-trigger the trigger
if ((int)e.Entity["AssaultWeapon"]["Ammo"] >= (int)e.Entity["AssaultWeapon"]["MaxAmmo"]) {
m_PickupAtMaximum.push_back({ e.Entity, e.Trigger });
return false;
}
DoPickup(e.Entity, e.Trigger);
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;
}
//personEntered = e.Entity, thingEntered = e.Trigger
currentAmmo = std::min(currentAmmo + e.AmmoGain, maxWeaponAmmo);
return false;
}
bool AmmoPickupSystem::OnTriggerLeave(Events::TriggerLeave& e) {
if (!e.Trigger.HasComponent("AmmoPickup")) {
return false;
}
//triggerleave erases possible m_PickupAtMaximum
for (auto& it = m_PickupAtMaximum.begin(); it != m_PickupAtMaximum.end(); ++it) {
if (it->trigger.ID == e.Trigger.ID && it->player.ID == e.Entity.ID) {
m_PickupAtMaximum.erase(it);
break;
}
}
return true;
}
void AmmoPickupSystem::DoPickup(EntityWrapper &player, EntityWrapper &trigger) {
int maxWeaponAmmo = (int)player["AssaultWeapon"]["MaxAmmo"];
int& currentAmmo = (int)player["AssaultWeapon"]["Ammo"];
int ammoGiven = 0.01*(double)trigger["AmmoPickup"]["AmmoGain"] * maxWeaponAmmo;
Events::AmmoPickup ePlayerAmmoPickup;
ePlayerAmmoPickup.AmmoGain = ammoGiven;
ePlayerAmmoPickup.Player = e.Entity;
ePlayerAmmoPickup.Player = player;
m_EventBroker->Publish(ePlayerAmmoPickup);
//immediately give the player the ammo
//immediately give the player the ammo (on server)
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({ e.Trigger["Transform"]["Position"], e.Trigger["AmmoPickup"]["AmmoGain"],
e.Trigger["AmmoPickup"]["RespawnTimer"], e.Trigger["AmmoPickup"]["RespawnTimer"], m_World->GetParent(e.Trigger.ID) });
m_ETriggerTouchVector.push_back({ (glm::vec3)trigger["Transform"]["Position"], trigger["AmmoPickup"]["AmmoGain"],
trigger["AmmoPickup"]["RespawnTimer"], trigger["AmmoPickup"]["RespawnTimer"], m_World->GetParent(trigger.ID) });
//delete the ammopickup
m_World->DeleteEntity(e.Trigger.ID);
return true;
m_World->DeleteEntity(trigger.ID);
}
+42
View File
@@ -0,0 +1,42 @@
#include "Game/Systems/BoostIconsHUDSystem.h"
void BoostIconsHUDSystem::UpdateComponent(EntityWrapper& entity, ComponentWrapper& capturePoint, double dt)
{
EntityWrapper assaultEntity = entity.FirstChildByName("Assault");
EntityWrapper defenderEntity = entity.FirstChildByName("Defender");
EntityWrapper sniperEntity = entity.FirstChildByName("Sniper");
if(assaultEntity.Valid()) {
if (assaultEntity.HasComponent("Fill")) {
EntityWrapper parentWithAssaultBoost = assaultEntity.FirstParentWithComponent("BoostAssault");
if (parentWithAssaultBoost.Valid()) {
(double&)assaultEntity["Fill"]["Percentage"] = 1.0;
} else {
(double&)assaultEntity["Fill"]["Percentage"] = 0.0;
}
}
}
if (defenderEntity.Valid()) {
if (defenderEntity.HasComponent("Fill")) {
EntityWrapper parentWithAssaultBoost = defenderEntity.FirstParentWithComponent("BoostDefender");
if (parentWithAssaultBoost.Valid()) {
(double&)defenderEntity["Fill"]["Percentage"] = 1.0;
} else {
(double&)defenderEntity["Fill"]["Percentage"] = 0.0;
}
}
}
if (sniperEntity.Valid()) {
if (sniperEntity.HasComponent("Fill")) {
EntityWrapper parentWithAssaultBoost = sniperEntity.FirstParentWithComponent("BoostSniper");
if (parentWithAssaultBoost.Valid()) {
(double&)sniperEntity["Fill"]["Percentage"] = 1.0;
} else {
(double&)sniperEntity["Fill"]["Percentage"] = 0.0;
}
}
}
}
+62
View File
@@ -0,0 +1,62 @@
#include "Systems/BoostSystem.h"
BoostSystem::BoostSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_EPlayerDamage, &BoostSystem::OnPlayerDamage);
}
bool BoostSystem::OnPlayerDamage(Events::PlayerDamage& e)
{
if (e.Victim.ID == e.Inflictor.ID) {
return false;
}
if (!e.Victim.Valid() && e.Victim != LocalPlayer && !e.Victim.IsChildOf(LocalPlayer)) {
return false;
}
if (!e.Inflictor.Valid() || !e.Victim.Valid()) {
return false;
}
//if its not friendly fire, return
if ((int)m_World->GetComponent(e.Inflictor.ID, "Team")["Team"] != (int)m_World->GetComponent(e.Victim.ID, "Team")["Team"]) {
return false;
}
//determine the inflictors class
auto className = DetermineClass(e.Inflictor);
if (className == "") {
return false;
}
//get the XML file, example: "Schema/Entities/BoostclassName.xml"
std::string classXML = "Schema/Entities/" + className + ".xml";
//check if player already has a child with the component, if so delete that child
auto playerBoostAssaultEntity = e.Victim.FirstChildByName(className);
if (playerBoostAssaultEntity.Valid()) {
m_World->DeleteEntity(playerBoostAssaultEntity.ID);
}
//load boost XML file, set it entity parented with the victim player
auto entityFile = ResourceManager::Load<EntityFile>(classXML);
EntityWrapper boostAssaultEntity = entityFile->MergeInto(m_World);
m_World->SetName(boostAssaultEntity.ID, className);
m_World->SetParent(boostAssaultEntity.ID, e.Victim.ID);
return true;
}
std::string BoostSystem::DetermineClass(EntityWrapper inflictorPlayer)
{
//determine the class based on what component the inflictor-player has
if (m_World->HasComponent(inflictorPlayer.ID, "DashAbility")) {
return "BoostAssault";
}
if (m_World->HasComponent(inflictorPlayer.ID, "ShieldAbility")) {
return "BoostDefender";
}
if (m_World->HasComponent(inflictorPlayer.ID, "SprintAbility")) {
return "BoostSniper";
}
return "";
}
@@ -0,0 +1,183 @@
#include "Systems/CapturePointArrowHUDSystem.h"
CapturePointArrowHUDSystem::CapturePointArrowHUDSystem(SystemParams params)
: System(params)
, ImpureSystem()
{
EVENT_SUBSCRIBE_MEMBER(m_ECapturedEvent, &CapturePointArrowHUDSystem::OnCapturePointCaptured);
}
void CapturePointArrowHUDSystem::Update(double dt)
{
bool loadCheck = true;
int redTeamEnum;
int blueTeamEnum;
int spectatorTeamEnum;
//Get list for all CapturePointArrowHUDComponents
auto arrowHUDs = m_World->GetComponents("CapturePointArrowHUD");
auto capturePoints = m_World->GetComponents("CapturePoint");
if(arrowHUDs == nullptr) {
return;
}
for(auto& cArrowHUD : *arrowHUDs) {
//Get what team the current arrow corresponds to
EntityWrapper arrowEntity = EntityWrapper(m_World, cArrowHUD.EntityID);
if (!arrowEntity.Valid()) {
continue;
}
if(!arrowEntity.HasComponent("Team")) {
continue;
}
auto cTeam = arrowEntity["Team"];
int currentTeam = (int)cTeam["Team"];
if (loadCheck) {
redTeamEnum = (int)cTeam["Team"].Enum("Red");
blueTeamEnum = (int)cTeam["Team"].Enum("Blue");
spectatorTeamEnum = (int)cTeam["Team"].Enum("Spectator");
loadCheck = false;
if (!m_InitialtargetsSet) {
std::unordered_map<int, glm::vec3> blueTargets, redTargets;
EntityWrapper homeBlue, homeRed;
int lastCP = -INFINITY;
int firstCP = INFINITY;
for (auto& cCP : *capturePoints) {
auto homePointTeam = (int)cCP["HomePointForTeam"];
EntityWrapper capturePointEntity = EntityWrapper(m_World, cCP.EntityID);
int capturePointID = (int)capturePointEntity["CapturePoint"]["CapturePointNumber"];
if(capturePointID < firstCP) {
firstCP = capturePointID;
}
if(capturePointID > lastCP) {
lastCP = capturePointID;
}
if (!capturePointEntity.HasComponent("Team")) {
continue;
}
int currentOwner = (int)capturePointEntity["Team"]["Team"];
if(currentOwner != redTeamEnum) {
//This capturePoint is not owned by the red team and is therefor an eligible target for red team
glm::vec3 targetPos = Transform::AbsolutePosition(capturePointEntity);
redTargets.insert(std::pair<int, glm::vec3>(capturePointID, targetPos));
}
if(currentOwner != blueTeamEnum) {
//This capturePoint is not owned by the blue team and is therefor an eligible target for blue team
glm::vec3 targetPos = Transform::AbsolutePosition(capturePointEntity);
blueTargets.insert(std::pair<int, glm::vec3>(capturePointID, targetPos));
}
if(homePointTeam == blueTeamEnum) {
//CP is the home point for blue team.
homeBlue = capturePointEntity;
} else if (homePointTeam == redTeamEnum) {
//CP is the home point for red team.
homeRed = capturePointEntity;
}
}
if(!homeRed.Valid() || !homeBlue.Valid()) {
//One or both teams have no home point, cant continue
return;
}
std::unordered_map<int, glm::vec3>::const_iterator got;
//Find next target for red team.
if((int)homeRed["CapturePoint"]["CapturePointNumber"] == lastCP) {
//Red home base is the last capture point, count back from lastCP and find next target
for (int i = lastCP; i >= firstCP; i--) {
got = redTargets.find(i);
if(got == redTargets.end()) {
continue;
} else {
m_RedTeamCurrentTarget = got->second;
break;
}
}
} else if ((int)homeRed["CapturePoint"]["CapturePointNumber"] == firstCP) {
//Red home is the first capture point, count forward from firstCP and find next target.
for (int i = firstCP; i <= lastCP; i++) {
got = redTargets.find(i);
if(got == redTargets.end()) {
//Target was not found, try the next one after that.
continue;
} else {
m_RedTeamCurrentTarget = got->second;
break;
}
}
}
//Find next target for blue team
if ((int)homeBlue["CapturePoint"]["CapturePointNumber"] == lastCP) {
//Red home base is the last capture point, count back from lastCP and find next target
for (int i = lastCP; i >= firstCP; i--) {
got = blueTargets.find(i);
if (got == blueTargets.end()) {
continue;
} else {
m_BlueTeamCurrentTarget = got->second;
break;
}
}
} else if ((int)homeBlue["CapturePoint"]["CapturePointNumber"] == firstCP) {
//Red home is the first capture point, count forward from firstCP and find next target.
for (int i = firstCP; i <= lastCP; i++) {
got = blueTargets.find(i);
if (got == blueTargets.end()) {
//Target was not found, try the next one after that.
continue;
} else {
m_BlueTeamCurrentTarget = got->second;
break;
}
}
}
}
}
//if red team, get red team next point, otherwise blue team next point.
//Untill this is awailable we will just use the hardcoded value in the component.
//This will also give us a position, so we wont need to loop through all capturePoints.
glm::vec3 pos;
if(currentTeam == redTeamEnum) {
pos = m_RedTeamCurrentTarget;
} else if (currentTeam == blueTeamEnum) {
pos = m_BlueTeamCurrentTarget;
}
glm::vec3& arrowOri = arrowEntity["Transform"]["Orientation"];
glm::vec3 lookVector = glm::normalize(Transform::AbsolutePosition(arrowEntity) - pos); //Maybe should be player instead
float pitch = std::asin(-lookVector.y);
float yaw = std::atan2(lookVector.x, lookVector.z);
arrowOri.x = pitch;
arrowOri.y = yaw;
arrowOri.z = 0.f;
EntityWrapper parent = arrowEntity.Parent();
if (parent.Valid()) {
arrowOri -= Transform::AbsoluteOrientationEuler(parent);
}
}
}
bool CapturePointArrowHUDSystem::OnCapturePointCaptured(Events::Captured& e)
{
if(!e.BlueTeamNextCapturePoint.Valid() || !e.RedTeamNextCapturePoint.Valid()) {
return 0;
}
m_RedTeamCurrentTarget = Transform::AbsolutePosition(e.RedTeamNextCapturePoint);
m_BlueTeamCurrentTarget = Transform::AbsolutePosition(e.BlueTeamNextCapturePoint);
m_InitialtargetsSet = true;
return 0;
}
+11 -6
View File
@@ -6,7 +6,7 @@ CapturePointSystem::CapturePointSystem(SystemParams 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);
@@ -18,7 +18,7 @@ CapturePointSystem::CapturePointSystem(SystemParams params)
//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) {
@@ -102,6 +102,12 @@ void CapturePointSystem::UpdateComponent(EntityWrapper& capturePointEntity, Comp
nextPossibleCapturePoint["Blue"] = i - 1;
}
}
if (m_RecentlyCapturedNeedNextCapturePointNow) {
m_CapturedEvent.BlueTeamNextCapturePoint = m_CapturePointNumberToEntityMap[nextPossibleCapturePoint["Blue"]];
m_CapturedEvent.RedTeamNextCapturePoint = m_CapturePointNumberToEntityMap[nextPossibleCapturePoint["Red"]];
m_EventBroker->Publish(m_CapturedEvent);
m_RecentlyCapturedNeedNextCapturePointNow = false;
}
//reset timers and reset the bool that triggers this
if (m_ResetTimers) {
@@ -188,10 +194,9 @@ 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...
}
}
+7 -9
View File
@@ -9,7 +9,7 @@ DamageIndicatorSystem::DamageIndicatorSystem(SystemParams params)
//load texture to cache
auto texture = CommonFunctions::LoadTexture("Textures/DamageIndicator.png", false);
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DamageIndicator.xml");
auto entityFile = ResourceManager::Load<EntityXMLFile>("Schema/Entities/DamageIndicator.xml");
}
void DamageIndicatorSystem::Update(double dt) {
@@ -50,15 +50,13 @@ bool DamageIndicatorSystem::OnPlayerDamage(Events::PlayerDamage& e)
//load & set the "2d" sprite
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DamageIndicator.xml");
EntityFileParser parser(entityFile);
EntityID spriteID = parser.MergeEntities(m_World);
m_World->SetParent(spriteID, m_CurrentCamera);
auto spriteWrapper = EntityWrapper(m_World, spriteID);
EntityWrapper sprite = entityFile->MergeInto(m_World);
m_World->SetParent(sprite.ID, m_CurrentCamera);
//simply set the rotation z-wise to the angleBetweenVectors
spriteWrapper["Transform"]["Orientation"] = glm::vec3(0, 0, angleBetweenVectors);
sprite["Transform"]["Orientation"] = glm::vec3(0, 0, angleBetweenVectors);
if (!IsServer) {
updateDamageIndicatorVector.emplace_back(spriteWrapper, inflictorPos);
updateDamageIndicatorVector.emplace_back(sprite, inflictorPos);
}
return true;
@@ -127,8 +125,8 @@ glm::vec3 DamageIndicatorSystem::DamageIndicatorTest(EntityWrapper player) {
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);
auto deathEffect = ResourceManager::Load<EntityXMLFile>("Schema/Entities/PlayerDeathExplosionWithCamera.xml");
EntityXMLFileParser parser(deathEffect);
EntityID deathEffectID = parser.MergeEntities(m_World);
EntityWrapper deathEffectEW = EntityWrapper(m_World, deathEffectID);
+5
View File
@@ -30,6 +30,11 @@ bool HealthSystem::OnPlayerDamaged(Events::PlayerDamage& e)
ComponentWrapper cHealth = e.Victim["Health"];
double& health = cHealth["Health"];
//if player has the boost from a defender, subtract the damage taken by StrengthOfEffect amount
auto playerBoostDefenderEntity = e.Victim.FirstChildByName("BoostDefender");
if (playerBoostDefenderEntity.Valid()) {
e.Damage -= (double)playerBoostDefenderEntity["BoostDefender"]["StrengthOfEffect"];
}
health -= e.Damage;
return true;
+68 -34
View File
@@ -3,65 +3,99 @@
PickupSpawnSystem::PickupSpawnSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &PickupSpawnSystem::OnTriggerTouch);
if (IsServer) {
EVENT_SUBSCRIBE_MEMBER(m_ETriggerTouch, &PickupSpawnSystem::OnTriggerTouch);
EVENT_SUBSCRIBE_MEMBER(m_ETriggerLeave, &PickupSpawnSystem::OnTriggerLeave);
}
}
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) {
auto it = m_ETriggerTouchVector.begin();
while (it != m_ETriggerTouchVector.end()) {
auto& somePickup = *it;
somePickup.DecreaseThisRespawnTimer -= dt;
if (somePickup.DecreaseThisRespawnTimer < 0.0) {
//spawn the new healthPickup
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/HealthPickup.xml");
EntityWrapper healthPickup = entityFile->MergeInto(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 = healthPickup;
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;
m_World->SetParent(newHealthPickupEntity.ID, healthPickupPosition.parentID);
//copy values from the old entity to the new entity
auto& newHealthPickupEntity = healthPickup;
newHealthPickupEntity["Transform"]["Position"] = somePickup.Pos;
newHealthPickupEntity["HealthPickup"]["HealthGain"] = somePickup.HealthGain;
newHealthPickupEntity["HealthPickup"]["RespawnTimer"] = somePickup.RespawnTimer;
m_World->SetParent(newHealthPickupEntity.ID, somePickup.parentID);
//erase the current element (healthPickupPosition)
m_ETriggerTouchVector.erase(it);
break;
//erase the current element (somePickup)
it = m_ETriggerTouchVector.erase(it);
} else {
it++;
}
}
//still touching PickupAtMaximum?
for (auto& it = m_PickupAtMaximum.begin(); it != m_PickupAtMaximum.end(); ++it) {
if (!it->player.Valid()) {
m_PickupAtMaximum.erase(it);
break;
}
if ((double)it->player["Health"]["Health"] < (double)it->player["Health"]["MaxHealth"]) {
DoPickup(it->player, it->trigger);
m_PickupAtMaximum.erase(it);
break;
}
}
}
}
bool PickupSpawnSystem::OnTriggerTouch(Events::TriggerTouch& e)
{
if (!e.Trigger.HasComponent("HealthPickup")) {
return false;
}
double healthGiven = 0.01*(double)e.Trigger["HealthPickup"]["HealthGain"] * (double)e.Entity["Health"]["MaxHealth"];
//cant pick up healthpacks if you are already at MaxHealth
//if at maxhealth, save the trigger-touch to a vector since standing inside it will not re-trigger the trigger
if ((double)e.Entity["Health"]["Health"] >= (double)e.Entity["Health"]["MaxHealth"]) {
m_PickupAtMaximum.push_back({ e.Entity, e.Trigger });
return false;
}
//personEntered = e.Entity, thingEntered = e.Trigger
DoPickup(e.Entity, e.Trigger);
return true;
}
bool PickupSpawnSystem::OnTriggerLeave(Events::TriggerLeave& e)
{
if (!e.Trigger.HasComponent("HealthPickup")) {
return false;
}
//triggerleave erases possible m_PickupAtMaximum
for (auto& it = m_PickupAtMaximum.begin(); it != m_PickupAtMaximum.end(); ++it) {
if (it->trigger.ID == e.Trigger.ID && it->player.ID == e.Entity.ID) {
m_PickupAtMaximum.erase(it);
break;
}
}
return true;
}
void PickupSpawnSystem::DoPickup(EntityWrapper &player, EntityWrapper &trigger)
{
double healthGiven = 0.01*(double)trigger["HealthPickup"]["HealthGain"] * (double)player["Health"]["MaxHealth"];
//only the server will increase the players hp and set it in the next delta
Events::PlayerHealthPickup ePlayerHealthPickup;
ePlayerHealthPickup.HealthAmount = healthGiven;
ePlayerHealthPickup.Player = e.Entity;
ePlayerHealthPickup.Player = player;
m_EventBroker->Publish(ePlayerHealthPickup);
//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_World->GetParent(e.Trigger.ID) });
m_ETriggerTouchVector.push_back({ (glm::vec3)trigger["Transform"]["Position"], trigger["HealthPickup"]["HealthGain"],
trigger["HealthPickup"]["RespawnTimer"], trigger["HealthPickup"]["RespawnTimer"], m_World->GetParent(trigger.ID) });
//delete the healthpickup
m_World->DeleteEntity(e.Trigger.ID);
return true;
m_World->DeleteEntity(trigger.ID);
}
+22 -4
View File
@@ -4,6 +4,7 @@ PlayerDeathSystem::PlayerDeathSystem(SystemParams params)
: System(params)
{
EVENT_SUBSCRIBE_MEMBER(m_OnPlayerDeath, &PlayerDeathSystem::OnPlayerDeath);
EVENT_SUBSCRIBE_MEMBER(m_EEntityDeleted, &PlayerDeathSystem::OnEntityDeleted);
}
void PlayerDeathSystem::Update(double dt)
@@ -27,10 +28,8 @@ bool PlayerDeathSystem::OnPlayerDeath(Events::PlayerDeath& e)
void PlayerDeathSystem::createDeathEffect(EntityWrapper player)
{
//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);
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/PlayerDeathExplosionWithCamera.xml");
EntityWrapper deathEffectEW = entityFile->MergeInto(m_World);
//components that we need from player
auto playerModel = player.FirstChildByName("PlayerModel");
@@ -59,9 +58,28 @@ void PlayerDeathSystem::createDeathEffect(EntityWrapper player)
//camera (with lifetime) behind the player
if (player == LocalPlayer) {
m_LocalPlayerDeathEffect = deathEffectEW;
auto cam = deathEffectEW.FirstChildByName("Camera");
Events::SetCamera eSetCamera;
eSetCamera.CameraEntity = cam;
m_EventBroker->Publish(eSetCamera);
}
}
bool PlayerDeathSystem::OnEntityDeleted(Events::EntityDeleted& e)
{
// We only care about when the local players death effect is removed.
if (m_LocalPlayerDeathEffect.ID != e.DeletedEntity) {
return false;
}
// Look for the spectator camera entity in the level.
EntityWrapper spectatorCam = m_World->GetFirstEntityByName("SpectatorCamera");
if (!spectatorCam.Valid() || !spectatorCam.HasComponent("Camera") || LocalPlayer.Valid()) {
return false;
}
Events::SetCamera eSetCamera;
eSetCamera.CameraEntity = spectatorCam;
m_EventBroker->Publish(eSetCamera);
return true;
}
+58 -24
View File
@@ -5,6 +5,7 @@ PlayerMovementSystem::PlayerMovementSystem(SystemParams params)
{
EVENT_SUBSCRIBE_MEMBER(m_EPlayerSpawned, &PlayerMovementSystem::OnPlayerSpawned);
EVENT_SUBSCRIBE_MEMBER(m_EDoubleJump, &PlayerMovementSystem::OnDoubleJump);
EVENT_SUBSCRIBE_MEMBER(m_EDashAbility, &PlayerMovementSystem::OnDashAbility);
}
PlayerMovementSystem::~PlayerMovementSystem()
@@ -17,14 +18,9 @@ PlayerMovementSystem::~PlayerMovementSystem()
void PlayerMovementSystem::Update(double dt)
{
updateMovementControllers(dt);
if (IsServer) {
for (auto& kv : m_PlayerInputControllers) {
updateVelocity(kv.first, dt);
}
} else {
if (LocalPlayer.Valid()) {
updateVelocity(LocalPlayer, dt);
}
// Only do physics calculations on client and only for themselves.
if (IsClient && LocalPlayer.Valid()) {
updateVelocity(LocalPlayer, dt);
}
}
@@ -48,7 +44,7 @@ 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;
}
@@ -61,12 +57,18 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
float playerMovementSpeed = player["Player"]["MovementSpeed"];
float playerCrouchSpeed = player["Player"]["CrouchSpeed"];
glm::vec3& wishDirection = player["Player"]["CurrentWishDirection"];
auto playerBoostAssaultEntity = player.FirstChildByName("BoostAssault");
if (playerBoostAssaultEntity.Valid()) {
playerMovementSpeed *= (double)playerBoostAssaultEntity["BoostAssault"]["StrengthOfEffect"];
playerCrouchSpeed *= (double)playerBoostAssaultEntity["BoostAssault"]["StrengthOfEffect"];
}
if (player.HasComponent("Physics")) {
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"], player.ID);
}
wishDirection = controller->Movement() * glm::inverse(glm::quat(ori));
//this makes sure you can only dash in the 4 directions: forw,backw,left,right
@@ -112,16 +114,26 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
//if doubleTapped do Assault Dash - but only boost maximum 50.0f
float doubleTapDashBoost = controller->AssaultDashDoubleTapped() ? 40.0f : 1.0f;
accelerationSpeed = glm::min(doubleTapDashBoost*glm::min(accelerationSpeed, addSpeed), 50.0f);
//if player has Boost from an Assault class, accelerate the player faster
if (playerBoostAssaultEntity.Valid()) {
accelerationSpeed *= (double)playerBoostAssaultEntity["BoostAssault"]["StrengthOfEffect"];
}
velocity += accelerationSpeed * wishDirection;
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
@@ -133,7 +145,6 @@ void PlayerMovementSystem::updateMovementControllers(double dt)
m_EventBroker->Publish(e);
}
}
velocity.y = 4.f;
}
if (player.HasComponent("AABB")) {
@@ -298,22 +309,45 @@ bool PlayerMovementSystem::OnPlayerSpawned(Events::PlayerSpawned& e)
bool PlayerMovementSystem::OnDoubleJump(Events::DoubleJump & e)
{
// If entity does not exist, exit
if (!EntityWrapper(m_World, e.entityID).Valid()) {
if (!EntityWrapper(m_World, e.entityID).Valid()) {
return false;
}
// If entity IsLocalPlayer, exit
if (e.entityID == m_LocalPlayer.ID) {
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);
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DoubleJumpHexagon.xml");
EntityWrapper hexagonEW = entityFile->MergeInto(m_World);
hexagonEW["Transform"]["Position"] = (glm::vec3)target["Transform"]["Position"];
}
}
bool PlayerMovementSystem::OnDashAbility(Events::DashAbility & e)
{
EntityWrapper player(m_World, e.Player);
if (!player.Valid() || !IsClient || player.ID == LocalPlayer.ID) {
return false;
}
auto entityFile = ResourceManager::Load<EntityFile>("Schema/Entities/DashEffect.xml");
EntityWrapper dashEffect = entityFile->MergeInto(m_World);
auto playerModel = player.FirstChildByName("PlayerModel");
auto playerEntityModel = playerModel["Model"];
auto playerEntityAnimation = playerModel["Animation"];
playerEntityModel.Copy(dashEffect["Model"]);
playerEntityAnimation.Copy(dashEffect["Animation"]);
dashEffect["ExplosionEffect"]["EndColor"] = (glm::vec4)playerEntityModel["Color"];
((glm::vec4&)dashEffect["ExplosionEffect"]["EndColor"]).w = 0.f;
dashEffect["Animation"]["Speed1"] = 0.0;
dashEffect["Animation"]["Speed2"] = 0.0;
dashEffect["Animation"]["Speed3"] = 0.0;
dashEffect["Transform"]["Position"] = (glm::vec3)player["Transform"]["Position"];
dashEffect["Transform"]["Orientation"] = (glm::vec3)player["Transform"]["Orientation"];
return true;
}
+67 -30
View File
@@ -1,29 +1,54 @@
#include "Systems/PlayerSpawnSystem.h"
//This should be set by the config anyway.
float PlayerSpawnSystem::m_RespawnTime = 15.0f;
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 && IsServer;
}
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;
if (m_DbgConfigForceRespawn) {
(double&)modeComponent["MaxRespawnTime"] = m_ForcedRespawnTime;
}
double maxRespawnTime = (double)modeComponent["MaxRespawnTime"];
EntityWrapper spectatorCam = m_World->GetFirstEntityByName("SpectatorCamera");
if (spectatorCam.Valid()) {
EntityWrapper HUD = spectatorCam.FirstChildByName("SpectatorHUD");
if (HUD.Valid()) {
EntityWrapper respawnTimer = spectatorCam.FirstChildByName("RespawnTimer");
if (respawnTimer.Valid()) {
//Update respawn time in the HUD element.
respawnTimer["Text"]["Content"] = std::to_string(1 + (int)(maxRespawnTime - timer));
}
}
}
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;
}
@@ -43,7 +68,14 @@ void PlayerSpawnSystem::Update(double dt)
// If the spawner has a team affiliation, check it
if (spawner.HasComponent("Team")) {
if ((int)spawner["Team"]["Team"] != req.Team) {
auto cSpawnerTeam = spawner["Team"];
if ((int)cSpawnerTeam["Team"] != req.Team) {
// Increase num spawned players if someone picks spectator, since it is valid to pick spectator
// but don't spawn anything, goto next spawnrequest.
if (req.Team == (int)cSpawnerTeam["Team"].Enum("Spectator")) {
++numSpawnedPlayers;
break;
}
continue;
}
}
@@ -64,9 +96,9 @@ void PlayerSpawnSystem::Update(double dt)
}
}
if (numSpawnedPlayers != (int)m_SpawnRequests.size()) {
LOG_DEBUG("%i players were supposed to be spawned, but %i was spawned.", (int)m_SpawnRequests.size(), numSpawnedPlayers);
LOG_DEBUG("%i players were supposed to be spawned or set as spectator, but only %i was handled.", (int)m_SpawnRequests.size(), numSpawnedPlayers);
} else {
LOG_DEBUG("%i players were spawned.", numSpawnedPlayers);
LOG_DEBUG("%i players were spawned or set as spectator.", numSpawnedPlayers);
}
m_SpawnRequests.clear();
}
@@ -77,24 +109,29 @@ bool PlayerSpawnSystem::OnInputCommand(Events::InputCommand& e)
return false;
}
if (e.Value == 0) {
return false;
}
// A dead client should be able to swap to the spectator camera.
if (IsClient && !LocalPlayer.Valid()) {
// Set the spectator camera as active, if it exists.
// Find the camera.
EntityWrapper spectatorCam = m_World->GetFirstEntityByName("SpectatorCamera");
if (spectatorCam.Valid() && spectatorCam.HasComponent("Camera")) {
Events::SetCamera eSetCamera;
eSetCamera.CameraEntity = spectatorCam;
m_EventBroker->Publish(eSetCamera);
}
}
// Team picks should be processed ONLY server-side!
// Don't make a spawn request if we're the client.
if (!IsServer && m_NetworkEnabled) {
return false;
}
if (e.Value == 0) {
return false;
}
//TODO: Spectating?
//Right now, return if someone picks spectator.
//1 signifies spectator here, could not get Playerteam component since it may be invalid or without team comp.
if ((ComponentInfo::EnumType)e.Value == 1) {
return false;
}
//Check if the player already requested spawn.
// Check if the player already requested spawn.
auto iter = m_SpawnRequests.begin();
for (; iter != m_SpawnRequests.end(); ++iter) {
if (iter->PlayerID == e.PlayerID) {
@@ -103,11 +140,11 @@ bool PlayerSpawnSystem::OnInputCommand(Events::InputCommand& e)
}
if (iter != m_SpawnRequests.end()) {
//If player is in queue to spawn, then change their team affiliation in the request.
// If player is in queue to spawn, then change their team affiliation in the request.
iter->Team = (ComponentInfo::EnumType)e.Value;
} else if (m_PlayerEntities.count(e.PlayerID) == 0 || !m_PlayerEntities[e.PlayerID].Valid()) {
//If player is not in queue to spawn, then create a spawn request,
//but only if they are spectating and/or just connected.
// If player is not in queue to spawn, then create a spawn request,
// but only if they are spectating and/or just connected.
SpawnRequest req;
req.PlayerID = e.PlayerID;
req.Team = (ComponentInfo::EnumType)e.Value;
+10 -10
View File
@@ -31,12 +31,12 @@ bool SoundSystem::OnPlayerSpawned(const Events::PlayerSpawned &e)
if (e.PlayerID == -1) { // Local player
m_World->AttachComponent(e.Player.ID, "Listener");
Events::PlayAnonuncerVoice go;
go.FilePath = "Audio/announcer/" + m_Announcer + "/go.wav";
go.FilePath = "Audio/Announcer/" + m_Announcer + "/Go.wav";
m_EventBroker->Publish(go);
// TEMP: starts bgm
{
Events::PlayBackgroundMusic ev;
ev.FilePath = "Audio/bgm/layer1.wav";
ev.FilePath = "Audio/BGM/Layer1.wav";
m_EventBroker->Publish(ev);
}
}
@@ -78,7 +78,7 @@ void SoundSystem::playerJumps()
if (grounded) {
Events::PlaySoundOnEntity e;
e.EmitterID = LocalPlayer.ID;
e.FilePath = "Audio/jump/jump1.wav";
e.FilePath = "Audio/Jump/Jump1.wav";
m_EventBroker->Publish(e);
}
}
@@ -88,13 +88,13 @@ bool SoundSystem::OnCaptured(const Events::Captured & e)
if (!LocalPlayer.Valid()) {
return false;
}
int homeTeam = (int)m_World->GetComponent(e.CapturePointID, "Team")["Team"];
int homeTeam = (int)m_World->GetComponent(e.CapturePointTakenID, "Team")["Team"];
int team = (int)m_World->GetComponent(LocalPlayer.ID, "Team")["Team"];
Events::PlayAnonuncerVoice ev;
if (team == homeTeam) {
ev.FilePath = "Audio/announcer/" + m_Announcer + "/objective_achieved.wav";
ev.FilePath = "Audio/Announcer/" + m_Announcer + "/ObjectiveAchieved.wav";
} else {
ev.FilePath = "Audio/announcer/" + m_Announcer + "/objective_failed.wav"; // have not been tested
ev.FilePath = "Audio/Announcer/" + m_Announcer + "/ObjectiveFailed.wav";
}
m_EventBroker->Publish(ev);
return false;
@@ -112,7 +112,7 @@ bool SoundSystem::OnPlayerDamage(const Events::PlayerDamage & e)
std::uniform_int_distribution<int> dist(1, 12);
int rand = dist(generator);
std::vector<std::string> paths;
paths.push_back("Audio/hurt/hurt" + std::to_string(rand) + ".wav");
paths.push_back("Audio/Hurt/Hurt" + std::to_string(rand) + ".wav");
Events::PlayQueueOnEntity ev;
ev.Emitter = LocalPlayer;
@@ -133,7 +133,7 @@ bool SoundSystem::OnPlayerDeath(const Events::PlayerDeath & e)
// Play the sound from the listener.
// TODO: We might want to hear other players die.
Events::PlayBackgroundMusic ev;
ev.FilePath = "Audio/die/die2.wav";
ev.FilePath = "Audio/Die/Die2.wav";
m_EventBroker->Publish(ev);
return false;
}
@@ -142,7 +142,7 @@ bool SoundSystem::OnPlayerHealthPickup(const Events::PlayerHealthPickup & e)
{
Events::PlaySoundOnEntity ev;
ev.EmitterID = LocalPlayer.ID;
ev.FilePath = "Audio/pickup/pickup2.wav";
ev.FilePath = "Audio/Pickup/Pickup2.wav";
m_EventBroker->Publish(ev);
return false;
}
@@ -157,7 +157,7 @@ bool SoundSystem::OnDoubleJump(const Events::DoubleJump & e)
}
Events::PlaySoundOnEntity ev;
ev.EmitterID = e.entityID;
ev.FilePath = "Audio/jump/jump2.wav";
ev.FilePath = "Audio/Jump/Jump2.wav";
m_EventBroker->Publish(ev);
return false;
}
+8 -6
View File
@@ -17,15 +17,17 @@ 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) {
EntityWrapper spawnedEntity;
try {
auto entityFile = ResourceManager::Load<EntityFile>(entityFilePath);
spawnedEntity = entityFile->MergeInto(world);
world->SetParent(spawnedEntity.ID, parent.ID);
} catch (const Resource::FailedLoadingException& e) {
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.
// If the spawned entity is collidable, 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);
@@ -366,9 +366,10 @@ bool AssaultWeaponBehaviour::shoot(double damage)
return false;
}
// Check for friendly fire
// If friendly fire - reduce damage to 0 (needed to make Boosts, Ammosharing work)
if ((ComponentInfo::EnumType)victim["Team"]["Team"] == (ComponentInfo::EnumType)m_Player["Team"]["Team"]) {
return false;
damage = 0;
}
// Deal damage!
@@ -88,7 +88,7 @@ void DefenderWeaponBehaviour::fireShell(WeaponInfo& wi)
EntityWrapper spawner = weaponModelEntity.FirstChildByName("WeaponMuzzle");
Events::PlaySoundOnEntity e;
e.EmitterID = weaponModelEntity.ID;
e.FilePath = "Audio/laser/laser1.wav";
e.FilePath = "Audio/weapon/Shotgun/ShotgunFire.wav";
m_EventBroker->Publish(e);
for (auto& angles : pelletAngles) {
glm::vec3 direction = Transform::AbsoluteOrientation(spawner) * glm::quat(glm::vec3(angles, 0.f)) * glm::vec3(0, 0, -1);
+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;
+5 -5
View File
@@ -7,7 +7,7 @@ using boost::unit_test_framework::test_case;
#include "Collision/TriggerSystem.h"
#include "Collision/CollisionSystem.h"
#include "Core/EntityFileWriter.h"
#include "Core/EntityXMLFileWriter.h"
#include "Game/Systems/CapturePointSystem.h"
BOOST_AUTO_TEST_SUITE(CapturePointTestSuite)
@@ -82,7 +82,7 @@ bool CapturePointTest::CapturePoint_Game_Loop_OneHundredTimes() {
CapturePointTest::CapturePointTest(int runTestNumber)
{
ResourceManager::RegisterType<ConfigFile>("ConfigFile");
ResourceManager::RegisterType<EntityFile>("EntityFile");
ResourceManager::RegisterType<EntityXMLFile>("EntityFile");
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
LOG_LEVEL = static_cast<_LOG_LEVEL>(m_Config->Get<int>("Debug.LogLevel", 1));
@@ -99,10 +99,10 @@ CapturePointTest::CapturePointTest(int runTestNumber)
m_SystemPipeline->AddSystem<CapturePointSystem>(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/TeamTest.xml");
EntityFilePreprocessor fpp(file);
auto file = ResourceManager::Load<EntityXMLFile>("Schema/Entities/TeamTest.xml");
EntityXMLFilePreprocessor fpp(file);
fpp.RegisterComponents(m_World);
EntityFileParser fp(file);
EntityXMLFileParser fp(file);
fp.MergeEntities(m_World);
EntityID playerID = m_World->CreateEntity();
+4 -4
View File
@@ -9,12 +9,12 @@
#include "Input/KeyboardInputHandler.h"
#include "Input/MouseInputHandler.h"
#include "Core/EKeyDown.h"
#include "Core/EntityFile.h"
#include "Core/EntityXMLFile.h"
#include "Core/SystemPipeline.h"
#include "Core/EntityFilePreprocessor.h"
#include "Core/EntityFileParser.h"
#include "Core/EntityFileWriter.h"
#include "Core/EntityXMLFilePreprocessor.h"
#include "Core/EntityXMLFileParser.h"
#include "Core/EntityXMLFileWriter.h"
#include "Engine/Collision/ETrigger.h"
+4 -4
View File
@@ -30,7 +30,7 @@ BOOST_AUTO_TEST_SUITE_END()
GameHealthSystemTest::GameHealthSystemTest()
{
ResourceManager::RegisterType<ConfigFile>("ConfigFile");
ResourceManager::RegisterType<EntityFile>("EntityFile");
ResourceManager::RegisterType<EntityXMLFile>("EntityFile");
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
LOG_LEVEL = static_cast<_LOG_LEVEL>(m_Config->Get<int>("Debug.LogLevel", 1));
@@ -41,10 +41,10 @@ GameHealthSystemTest::GameHealthSystemTest()
// Create a world
m_World = new World();
auto file = ResourceManager::Load<EntityFile>("Schema/Entities/TeamTest.xml");
EntityFilePreprocessor fpp(file);
auto file = ResourceManager::Load<EntityXMLFile>("Schema/Entities/TeamTest.xml");
EntityXMLFilePreprocessor fpp(file);
fpp.RegisterComponents(m_World);
EntityFileParser fp(file);
EntityXMLFileParser fp(file);
fp.MergeEntities(m_World);
// Create system pipeline
+1 -1
View File
@@ -11,7 +11,7 @@
#include "Input/KeyboardInputHandler.h"
#include "Input/MouseInputHandler.h"
#include "Core/EKeyDown.h"
#include "Core/EntityFile.h"
#include "Core/EntityXMLFile.h"
#include "Core/SystemPipeline.h"
#include "Editor/EditorSystem.h"
+4 -4
View File
@@ -30,7 +30,7 @@ BOOST_AUTO_TEST_SUITE_END()
PickupSpawnTest::PickupSpawnTest(int runTestNumber)
{
ResourceManager::RegisterType<ConfigFile>("ConfigFile");
ResourceManager::RegisterType<EntityFile>("EntityFile");
ResourceManager::RegisterType<EntityXMLFile>("EntityFile");
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
LOG_LEVEL = static_cast<_LOG_LEVEL>(m_Config->Get<int>("Debug.LogLevel", 1));
@@ -44,10 +44,10 @@ PickupSpawnTest::PickupSpawnTest(int runTestNumber)
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);
auto file = ResourceManager::Load<EntityXMLFile>("Schema/Entities/HealthPickup.xml");
EntityXMLFilePreprocessor fpp(file);
fpp.RegisterComponents(m_World);
EntityFileParser fp(file);
EntityXMLFileParser fp(file);
//connect the healthpickup to the world
m_HealthPickupID = fp.MergeEntities(m_World);
+5 -5
View File
@@ -9,12 +9,12 @@
#include "Input/KeyboardInputHandler.h"
#include "Input/MouseInputHandler.h"
#include "Core/EKeyDown.h"
#include "Core/EntityFile.h"
#include "Core/EntityXMLFile.h"
#include "Core/SystemPipeline.h"
#include "Core/EntityFilePreprocessor.h"
#include "Core/EntityFileParser.h"
#include "Core/EntityFileWriter.h"
#include "Core/EntityXMLFilePreprocessor.h"
#include "Core/EntityXMLFileParser.h"
#include "Core/EntityXMLFileWriter.h"
#include "Engine/Collision/ETrigger.h"
@@ -29,7 +29,7 @@
//#include <tuple>
#include "Collision/TriggerSystem.h"
#include "Collision/CollisionSystem.h"
#include "Core/EntityFileWriter.h"
#include "Core/EntityXMLFileWriter.h"
#include "Game/Systems/HealthSystem.h"
#include "Game/Systems/PickupSpawnSystem.h"