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2 Commits

Author SHA1 Message Date
Jace 589ca45936 Removed debug output 2015-12-12 13:47:08 +01:00
Jace 0cff07101c Xbox Controller support 2015-12-12 13:42:46 +01:00
553 changed files with 3353 additions and 51145 deletions
-11
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@@ -4,14 +4,3 @@ bin/
lib/ lib/
# Because apparently nobody has any self control # Because apparently nobody has any self control
*.orig *.orig
*.suo
*.sdf
tools/MayaExporter/MayaExporter/x64/Debug/
tools/MayaExporter/x64/Debug/
tools/MayaExporter/MayaExporter/Debug/
tools/MayaExporter/MayaExporter/GeneratedFiles/
tools/MayaExporter/MayaExporter/x64/*
tools/MayaExporter/x64/*
-9
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@@ -14,9 +14,6 @@ endif()
if(CMAKE_COMPILER_IS_GNUCXX) if(CMAKE_COMPILER_IS_GNUCXX)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -std=c++14") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -std=c++14")
elseif(MSVC)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} /MP")
add_definitions(-D_CRT_SECURE_NO_WARNINGS)
endif() endif()
#set(BUILD_SHARED_LIBS FALSE) #set(BUILD_SHARED_LIBS FALSE)
@@ -37,12 +34,6 @@ foreach(OUTPUTCONFIG ${CMAKE_CONFIGURATION_TYPES})
set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY_${OUTPUTCONFIG} ${CMAKE_ARCHIVE_OUTPUT_DIRECTORY}) set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY_${OUTPUTCONFIG} ${CMAKE_ARCHIVE_OUTPUT_DIRECTORY})
endforeach(OUTPUTCONFIG CMAKE_CONFIGURATION_TYPES) endforeach(OUTPUTCONFIG CMAKE_CONFIGURATION_TYPES)
# DEBUG definition
set_property(DIRECTORY APPEND PROPERTY COMPILE_DEFINITIONS
$<$<CONFIG:Debug>:DEBUG>
$<$<CONFIG:RelWithDebInfo>:DEBUG>
)
include(cotire) include(cotire)
add_subdirectory(src/Engine) add_subdirectory(src/Engine)
add_subdirectory(src/Game) add_subdirectory(src/Game)
+10 -13
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@@ -1,22 +1,19 @@
#### Bundled libraries #### Bundled libraries
Libraries bundled along with binaries for Windows (MSVC14), available as a submodule in the *deps* directory of the source tree. Libraries bundled along with binaries for Windows (MSVC14), available as a submodule in the *deps* directory of the source tree.
| Project | Version | License | | Project | Version | License |
| ---------------------------------------------------------------- | ------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | | ------------------------------------------------------------- | ------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| **[GLFW](http://www.glfw.org)** | 3.1.2 | [zlib/libpng License](http://www.glfw.org/license.html) | | **[GLFW](http://www.glfw.org)** | 3.1.2 | [zlib/libpng License](http://www.glfw.org/license.html) |
| **[GLM](http://glm.g-truc.net/0.9.5/index.html)** | 0.9.7.1 | [MIT License](http://glm.g-truc.net/copying.txt) | | **[GLM](http://glm.g-truc.net/0.9.5/index.html)** | 0.9.7.1 | [MIT License](http://glm.g-truc.net/copying.txt) |
| **[GLEW](http://glew.sourceforge.net)** | 1.13.0 | [Modified BSD License](http://glew.sourceforge.net/glew.txt), [Mesa 3-D License](http://glew.sourceforge.net/mesa.txt), [Khronos License](http://glew.sourceforge.net/khronos.txt) | | **[GLEW](http://glew.sourceforge.net)** | 1.13.0 | [Modified BSD License](http://glew.sourceforge.net/glew.txt), [Mesa 3-D License](http://glew.sourceforge.net/mesa.txt), [Khronos License](http://glew.sourceforge.net/khronos.txt) |
| **[Assimp](http://assimp.sourceforge.net)** | 3.1.1 | [BSD 3-Clause License](http://assimp.sourceforge.net/main_license.html) | | **[Assimp](http://assimp.sourceforge.net)** | 3.1.1 | [BSD 3-Clause License](http://assimp.sourceforge.net/main_license.html) |
| **[zlib](http://www.zlib.net)** | 1.28 | [zlib License](http://www.zlib.net/zlib_license.html) | | **[zlib](http://www.zlib.net)** | 1.28 | [zlib License](http://www.zlib.net/zlib_license.html) |
| **[libpng](http://www.libpng.org/pub/png/libpng.html)** | 1.6.19 | [libpng License](http://www.libpng.org/pub/png/src/libpng-LICENSE.txt) | | **[libpng](http://www.libpng.org/pub/png/libpng.html)** | 1.6.19 | [libpng License](http://www.libpng.org/pub/png/src/libpng-LICENSE.txt) |
| **[Xerces-C++](https://xerces.apache.org/xerces-c)** | 3.1.2 | [Apache License Version 2.0](https://www.apache.org/licenses/LICENSE-2.0) | | **[Xerces-C++](https://xerces.apache.org/xerces-c)** | 3.1.2 | [Apache License Version 2.0](https://www.apache.org/licenses/LICENSE-2.0) |
| **[ImGui](https://github.com/ocornut/imgui)** | 2015-12-12 | [MIT License](https://github.com/ocornut/imgui/blob/de3a154f3801de22c8e0bd2aeabf663a70c05972/LICENSE) |
| **[nativefiledialog](https://github.com/mlabbe/nativefiledialog)** | 2016-01-08 | [nativefiledialog Licence](https://github.com/mlabbe/nativefiledialog/blob/master/LICENSE) |
| **[OpenAL](https://www.openal.org/)** | 1.1 | [OpenAL License](resources/Licenses/OpenAL.txt)
#### External libraries #### External libraries
Libraries that are too big to be bundled with the project. Libraries that are too big to be bundled with the project.
| Project | Version | License | Root folder environment variable (Windows) | | Project | Version | License | Root folder environment variable (Windows) |
| ---------------------------------------------------------- | ----------- | --------------------------------------------------------------------------- | ------------------------------------------ | | ---------------------------------------------------------- | ----------- | --------------------------------------------------------------------------- | ------------------------------------------ |
| **[Boost](http://www.boost.org)** | 1.60.0+ | [Boost Software License, Version 1.0](http://www.boost.org/LICENSE_1_0.txt) | BOOST_ROOT | | **[Boost](http://www.boost.org)** | 1.59.0+ | [Boost Software License, Version 1.0](http://www.boost.org/LICENSE_1_0.txt) | BOOST_ROOT |
+1 -1
Submodule assets updated: 1e7adc749e...b37468222e
+1 -1
Submodule deps updated: ed45883a44...1b478d3159
-108
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@@ -1,108 +0,0 @@
#ifndef Collision_h__
#define Collision_h__
//NOTE: Collision.h needs to be #included before <GLFW/glfw3.h>,
//because Collision #includes "RawModel.h", which has "Texture.h", which has "OpenGL.h" which must be #included first
//or you will get "fatal error C1189: #error: gl.h included before glew.h"
#include <vector>
#include <boost/optional.hpp>
#include "../Core/Ray.h"
#include "../Core/AABB.h"
#include "Rendering/RawModelCustom.h"
//#include "Rendering/RawModelAssimp.h"
#include "../Core/Transform.h"
#include "../Core/Entity.h"
#include "../Core/EntityWrapper.h"
#include "EntityAABB.h"
class World;
struct ComponentWrapper;
template<typename T>
class Octree;
namespace Collision
{
//Return true if the ray hits the box.
bool RayAABBIntr(const Ray& ray, const AABB& box);
bool RayVsAABB(const Ray& ray, const AABB& box);
//Return true if the ray hits the box, also outputs distance from ray origin to intersection point in [outDistance].
bool RayVsAABB(const Ray& ray, const AABB& box, float& outDistance);
//Return true if the ray hits the triangle.
bool RayVsTriangle(const Ray& ray,
const glm::vec3& v0,
const glm::vec3& v1,
const glm::vec3& v2,
bool trueOnNegativeDistance = false);
//Return true if the ray hits the triangle, and the distance is less than outDistance.
bool RayVsTriangle(const Ray& ray,
const glm::vec3& v0,
const glm::vec3& v1,
const glm::vec3& v2,
float& outDistance,
float& outUCoord,
float& outVCoord,
bool trueOnNegativeDistance = false);
//Return true if the ray hits any of the triangles in the model. Stops checking when a hit is detected.
bool RayVsModel(const Ray& ray,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix);
//Return true if the ray hits any of the triangles in the model.
//Also returns the position of the intersection point. Will loop through all the whole model indices.
bool RayVsModel(const Ray& ray,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix,
glm::vec3& outHitPosition);
//Return true if the ray hits any of the triangles in the model.
//Also returns the distance from the ray origin to the closest
//intersection point, and the barycentric u,v-coordinates. Will loop through all the whole model indices.
bool RayVsModel(const Ray& ray,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix,
float& outDistance,
float& outUCoord,
float& outVCoord);
bool AABBvsTriangles(const AABB& box,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix,
glm::vec3& boxVelocity,
float verticalStepHeight,
bool& isOnGround,
glm::vec3& outResolutionVector);
//Detects collision, but does not resolve.
bool AABBvsTriangles(const AABB& box,
const RawModel::Vertex* modelVertices,
const std::vector<unsigned int>& modelIndices,
const glm::mat4& modelMatrix);
//Return true if the boxes are intersecting.
bool AABBVsAABB(const AABB& a, const AABB& b);
//Return true if the boxes are intersecting.
//Also outputs the minimum translation that box [a] would need in order to resolve collision.
bool AABBVsAABB(const AABB& a, const AABB& b, glm::vec3& minimumTranslation);
// Calculates an absolute AABB from an entity AABB component or Model component.
// if takeModelBox is true, the AABB component will be ignored and box is calculated from Model.
// if takeModelBox is false, the AABB component will be prefered, if it exists.
boost::optional<EntityAABB> EntityAbsoluteAABB(EntityWrapper& entity, bool takeModelBox = false);
boost::optional<EntityAABB> AbsoluteAABBExplosionEffect(EntityWrapper& entity);
//Returns the first entity hit by the input ray. entitiesPotentiallyHitSorted needs to be sorted
//by their distance to the ray, e.g. result from Octree<EntityAABB>::ObjectsPossiblyHitByRay.
//Returns boost::none if none was hit. outDistance will be the distance to the intersection point if the ray intersects.
boost::optional<EntityAABB> EntityFirstHitByRay(const Ray& ray, std::vector<EntityAABB> entitiesPotentiallyHitSorted, float& outDistance, glm::vec3& outIntersectPos);
//Returns the first entity hit by the input ray that exists in the octree.
//outDistance will be the distance to the intersection point if the ray intersects.
boost::optional<EntityAABB> EntityFirstHitByRay(const Ray& ray, Octree<EntityAABB>* octree, float& outDistance, glm::vec3& outIntersectPos);
}
#endif
@@ -1,29 +0,0 @@
#ifndef CollisionSystem_h__
#define CollisionSystem_h__
#include <GLFW/glfw3.h>
#include <glm/common.hpp>
#include "../Common.h"
#include "../Core/System.h"
#include "../Core/EventBroker.h"
#include "../Core/Octree.h"
#include "EntityAABB.h"
class CollisionSystem : public PureSystem
{
public:
CollisionSystem(SystemParams params, Octree<EntityAABB>* octree)
: System(params)
, PureSystem("Physics")
, m_Octree(octree)
{ }
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& cPhysics, double dt) override;
private:
Octree<EntityAABB>* m_Octree;
std::vector<EntityAABB> m_OctreeResult;
};
#endif
-39
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@@ -1,39 +0,0 @@
#ifndef Events_TriggerEnter_h__
#define Events_TriggerEnter_h__
#include "../Core/EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
/** Thrown once, when an entity is only touching a trigger. */
struct TriggerTouch : Event
{
/** The id of the entity that touches the trigger. */
EntityWrapper Entity;
/** The id of the trigger entity. */
EntityWrapper Trigger;
};
/** Thrown once, when an entity has completely left a trigger. */
struct TriggerLeave : Event
{
/** The id of the entity that left the trigger. */
EntityWrapper Entity;
/** The id of the trigger entity. */
EntityWrapper Trigger;
};
/** Thrown once, when an entity is completely contained inside a trigger. */
struct TriggerEnter : Event
{
/** The id of the entity that entered the trigger. */
EntityWrapper Entity;
/** The id of the trigger entity. */
EntityWrapper Trigger;
};
}
#endif
-22
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@@ -1,22 +0,0 @@
#ifndef EntityAABB_h__
#define EntityAABB_h__
#include "../Core/AABB.h"
#include "../Core/EntityWrapper.h"
struct EntityAABB : AABB
{
EntityAABB() = default;
EntityAABB(const glm::vec3& minPos, const glm::vec3& maxPos)
: AABB(minPos, maxPos)
{ }
EntityAABB(const AABB& aabb)
: AABB(aabb)
{ }
EntityWrapper Entity;
};
#endif
@@ -1,25 +0,0 @@
#ifndef FillFrustumOctreeSystem_h__
#define FillFrustumOctreeSystem_h__
#include "../Core/System.h"
#include "../Core/Octree.h"
#include "Collision.h"
#include "EntityAABB.h"
class FillFrustumOctreeSystem : public ImpureSystem, public PureSystem
{
public:
FillFrustumOctreeSystem(SystemParams params, Octree<EntityAABB>* octree)
: System(params)
, PureSystem("Model")
, m_Octree(octree)
{ }
virtual void Update(double dt) override;
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& component, double dt) override;
private:
Octree<EntityAABB>* m_Octree;
};
#endif
@@ -1,25 +0,0 @@
#ifndef FillOctreeSystem_h__
#define FillOctreeSystem_h__
#include "../Core/System.h"
#include "../Core/Octree.h"
#include "Collision.h"
#include "EntityAABB.h"
class FillOctreeSystem : public ImpureSystem, public PureSystem
{
public:
FillOctreeSystem(SystemParams params, Octree<EntityAABB>* octree, const std::string& fillComponentType)
: System(params)
, PureSystem(fillComponentType)
, m_Octree(octree)
{ }
virtual void Update(double dt) override;
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& component, double dt) override;
private:
Octree<EntityAABB>* m_Octree;
};
#endif
-56
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@@ -1,56 +0,0 @@
#ifndef TriggerSystem_h__
#define TriggerSystem_h__
#include <glm/common.hpp>
#include <unordered_set>
#include "../Core/System.h"
#include "../Core/EventBroker.h"
#include "../Core/Octree.h"
#include "ETrigger.h"
#include "EntityAABB.h"
class AABB;
class TriggerSystem : public PureSystem
{
public:
TriggerSystem(SystemParams params, Octree<EntityAABB>* octree)
: System(params)
, PureSystem("Trigger")
, m_Octree(octree)
{
EVENT_SUBSCRIBE_MEMBER(m_ETouch, &TriggerSystem::OnTouch);
EVENT_SUBSCRIBE_MEMBER(m_EEnter, &TriggerSystem::OnEnter);
EVENT_SUBSCRIBE_MEMBER(m_ELeave, &TriggerSystem::OnLeave);
}
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& component, double dt) override;
private:
Octree<EntityAABB>* m_Octree;
std::vector<EntityAABB> m_OctreeOut;
std::unordered_map<EntityWrapper, std::unordered_set<EntityWrapper>> m_EntitiesTouchingTrigger;
std::unordered_map<EntityWrapper, std::unordered_set<EntityWrapper>> m_EntitiesCompletelyInTrigger;
//TODO: Only exists for debug purposes, remove later.
EventRelay<TriggerSystem, Events::TriggerEnter> m_EEnter;
bool OnEnter(const Events::TriggerEnter &event);
EventRelay<TriggerSystem, Events::TriggerTouch> m_ETouch;
bool OnTouch(const Events::TriggerTouch &event);
EventRelay<TriggerSystem, Events::TriggerLeave> m_ELeave;
bool OnLeave(const Events::TriggerLeave &event);
//True if leave event was thrown.
bool throwLeaveIfWasInTrigger(std::unordered_set<EntityWrapper>& triggerSet, EntityWrapper colliderENtity, EntityWrapper triggerEntity);
template<typename Event>
void publish(EntityWrapper collider, EntityWrapper trigger)
{
Event e;
e.Trigger = trigger;
e.Entity = collider;
m_EventBroker->Publish(e);
}
};
#endif
+1 -5
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@@ -1,11 +1,7 @@
#include <memory> #include <memory>
#include <string> #include <string>
#include <sstream>
#include <vector> #include <vector>
#include <map> #include <map>
#include <unordered_map> #include <unordered_map>
#include <algorithm>
#include <array>
#include "Core/Util/Logging.h" #include "Core/Util/Logging.h"
#include "Core/Util/IfDebug.h"
-28
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@@ -1,28 +0,0 @@
#ifndef AABB_h__
#define AABB_h__
#include "../GLM.h"
class AABB
{
public:
AABB() = default;
//No checks are made. Values in minPos must be less than values in maxPos, i.e. min.x < max.x, etc.
AABB(const glm::vec3& minPos, const glm::vec3& maxPos);
//No checks are made. Size must consist of non-negative numbers.
static AABB FromOriginSize(const glm::vec3& origin, const glm::vec3& size);
virtual ~AABB();
const glm::vec3& MinCorner() const { return m_MinCorner; }
const glm::vec3& MaxCorner() const { return m_MaxCorner; }
const glm::vec3& Origin() const { return m_Origin; }
const glm::vec3 Size() const { return 2.0f * m_HalfSize; }
const glm::vec3& HalfSize() const { return m_HalfSize; }
private:
glm::vec3 m_MinCorner;
glm::vec3 m_MaxCorner;
glm::vec3 m_Origin;
glm::vec3 m_HalfSize;
};
#endif
+5 -20
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@@ -2,36 +2,21 @@
#define ComponentInfo_h__ #define ComponentInfo_h__
#include "../Common.h" #include "../Common.h"
#include <boost/shared_array.hpp>
struct ComponentInfo struct ComponentInfo
{ {
typedef int EnumType;
struct Meta_t struct Meta_t
{ {
std::string Annotation; std::string Annotation;
unsigned int Allocation = 0; unsigned int Allocation = 0;
std::map<std::string, std::string> FieldAnnotations; unsigned int Stride = 0;
std::map<std::string, std::map<std::string, EnumType>> FieldEnumDefinitions;
bool NetworkReplicated = true;
}; };
struct Field_t
{
std::string Name;
std::string Type;
unsigned int Offset;
unsigned int Stride;
};
std::string Name; std::string Name;
std::unordered_map<std::string, Field_t> Fields; std::unordered_map<std::string, std::string> FieldTypes;
std::vector<std::string> FieldsInOrder; std::unordered_map<std::string, unsigned int> FieldOffsets;
std::vector<std::string> StringFields; Meta_t Meta;
unsigned int Stride = 0; std::shared_ptr<char> Defaults = nullptr;
boost::shared_array<char> Defaults = nullptr;
std::shared_ptr<Meta_t> Meta = nullptr;
}; };
template<> template<>
+3 -8
View File
@@ -1,7 +1,6 @@
#ifndef ComponentPool_h__ #ifndef ComponentPool_h__
#define ComponentPool_h__ #define ComponentPool_h__
#include <set>
#include "MemoryPool.h" #include "MemoryPool.h"
#include "ComponentInfo.h" #include "ComponentInfo.h"
#include "ComponentWrapper.h" #include "ComponentWrapper.h"
@@ -21,7 +20,7 @@ public:
~ComponentPoolForwardIterator() = default; ~ComponentPoolForwardIterator() = default;
ComponentPoolForwardIterator& operator=(const ComponentPoolForwardIterator& other) = default; ComponentPoolForwardIterator& operator=(const ComponentPoolForwardIterator& other) = default;
ComponentPoolForwardIterator& operator++(); ComponentPoolForwardIterator& operator++();
ComponentPoolForwardIterator operator++(int); ComponentPoolForwardIterator& operator++(int);
bool operator!=(const ComponentPoolForwardIterator& other) const; bool operator!=(const ComponentPoolForwardIterator& other) const;
bool operator==(const ComponentPoolForwardIterator& other) const; bool operator==(const ComponentPoolForwardIterator& other) const;
ComponentWrapper operator*() const; ComponentWrapper operator*() const;
@@ -44,10 +43,9 @@ public:
ComponentPool(const ::ComponentInfo& ci) ComponentPool(const ::ComponentInfo& ci)
: m_ComponentInfo(ci) : m_ComponentInfo(ci)
, m_Pool(ci.Meta->Allocation, sizeof(EntityID) + ci.Stride) , m_Pool(ci.Meta.Allocation, sizeof(EntityID) + ci.Meta.Stride)
{ } { }
~ComponentPool(); ComponentPool(const ComponentPool& other) = delete;
ComponentPool(const ComponentPool& other);
ComponentPool(const ComponentPool&& other) = delete; ComponentPool(const ComponentPool&& other) = delete;
const ::ComponentInfo& ComponentInfo() const { return m_ComponentInfo; } const ::ComponentInfo& ComponentInfo() const { return m_ComponentInfo; }
@@ -56,14 +54,11 @@ public:
ComponentWrapper Allocate(EntityID entity); ComponentWrapper Allocate(EntityID entity);
// Get the component belonging to a specific entity // Get the component belonging to a specific entity
ComponentWrapper GetByEntity(EntityID ent); ComponentWrapper GetByEntity(EntityID ent);
// Returns true if the pool contains a component for the specified entity
bool KnowsEntity(EntityID ent);
// Delete a component and free its memory // Delete a component and free its memory
void Delete(ComponentWrapper& wrapper); void Delete(ComponentWrapper& wrapper);
iterator begin() const; iterator begin() const;
iterator end() const; iterator end() const;
size_t size() const;
//Dumps information about what the pool memory looks like right now //Dumps information about what the pool memory looks like right now
//into an output stream (e.g. file/std::cout, anything that has an operator<<) //into an output stream (e.g. file/std::cout, anything that has an operator<<)
+25 -111
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@@ -1,30 +1,11 @@
#ifndef ComponentWrapper_h__ #ifndef ComponentWrapper_h__
#define ComponentWrapper_h__ #define ComponentWrapper_h__
#include <boost/shared_array.hpp>
#include <boost/any.hpp>
#include "../Common.h" #include "../Common.h"
#include "Entity.h" #include "Entity.h"
#include "ComponentInfo.h" #include "ComponentInfo.h"
#include "Util/Any.h" #include "Util/Any.h"
template <typename T, typename Enable = void>
struct ComponentField { };
template <typename T>
struct ComponentField<T, typename std::enable_if<std::is_trivially_copyable<T>::value>::type>
{
static T& Get(const ComponentInfo::Field_t& info, char* data) { return *reinterpret_cast<T*>(data); }
static void Set(const ComponentInfo::Field_t& info, char* data, const T& value) { Get(data) = value; }
};
template <>
struct ComponentField<std::string, void>
{
static std::string& Get(const ComponentInfo::Field_t& info, char* data) { return **reinterpret_cast<std::string**>(data); }
static void Set(const ComponentInfo::Field_t& info, char* data, const std::string& value) { Get(info, data) = value; }
};
struct ComponentWrapper struct ComponentWrapper
{ {
ComponentWrapper(const ComponentInfo& componentInfo, char* data) ComponentWrapper(const ComponentInfo& componentInfo, char* data)
@@ -37,61 +18,22 @@ struct ComponentWrapper
const ::EntityID EntityID; const ::EntityID EntityID;
char* Data; char* Data;
ComponentInfo::EnumType Enum(const char* fieldName, const char* enumKey) template <typename T>
T& Property(std::string name)
{ {
return Info.Meta->FieldEnumDefinitions.at(fieldName).at(enumKey); unsigned int offset = Info.FieldOffsets.at(name);
return *reinterpret_cast<T*>(&Data[offset]);
} }
template <typename T> template <typename T>
T& Field(std::string name) void SetProperty(std::string name, const T value) { Property<T>(name) = value; }
{
const ComponentInfo::Field_t& field = Info.Fields.at(name);
if (sizeof(T) > field.Stride) {
std::stringstream message;
message << "Type size of \"" << typeid(T).name() << "\" doesn't match size of component field \"" << Info.Name << "." << name << "\"!";
throw new std::runtime_error(message.str().c_str());
}
return *reinterpret_cast<T*>(&Data[field.Offset]);
}
template <typename T>
void SetField(std::string name, const T value) { Field<T>(name) = value; }
//template <typename T> //template <typename T>
//void SetField(std::string name, T& value) { Field<T>(name) = value; } //void SetProperty(std::string name, T& value) { Property<T>(name) = value; }
// Specialization for string literals // Specialization for string literals
template <std::size_t N> template <std::size_t N>
void SetField(std::string name, const char(&value)[N]) { Field<std::string>(name) = std::string(value); } void SetProperty(std::string name, const char(&value)[N]) { Property<std::string>(name) = std::string(value); }
void Copy(ComponentWrapper& destination)
{
// Copy trivial data
memcpy(destination.Data, Data, Info.Stride);
// Duplicate strings
SolidifyStrings(destination);
}
// When component data has been copied, strings need to be reconstructed or they'll refer to the same data!
static void SolidifyStrings(ComponentWrapper& component)
{
for (auto& name : component.Info.StringFields) {
std::size_t offset = component.Info.Fields.at(name).Offset;
std::string value = *reinterpret_cast<const std::string*>(component.Data + offset);
new (component.Data + offset) std::string(value);
}
}
// This needs to be called to properly free component data, because strings.
static void Destroy(ComponentInfo info, char* data)
{
// Call std::string destructors
for (auto& name : info.StringFields) {
std::size_t offset = info.Fields.at(name).Offset;
auto field = reinterpret_cast<std::string*>(data + offset);
field->~basic_string();
}
}
struct SubscriptProxy struct SubscriptProxy
{ {
friend struct ComponentWrapper; friend struct ComponentWrapper;
@@ -105,77 +47,49 @@ struct ComponentWrapper
std::string m_PropertyName; std::string m_PropertyName;
public: public:
// Return the integer value of an enum type key for this field template <typename T>
ComponentInfo::EnumType Enum(const char* enumKey) { return m_Component->Enum(m_PropertyName.c_str(), enumKey); } operator T&() { return m_Component->Property<T>(m_PropertyName); }
template <typename T> template <typename T>
operator T&() { return m_Component->Field<T>(m_PropertyName); } void operator=(const T val) { m_Component->SetProperty<T>(m_PropertyName, val); }
template <typename T>
void operator=(const T val) { m_Component->SetField<T>(m_PropertyName, val); }
// TODO: Pass by reference and rvalue (universal reference?) // TODO: Pass by reference and rvalue (universal reference?)
//template <typename T> //template <typename T>
//void operator=(T& val) { m_Component->SetField<T>(m_PropertyName, val); } //void operator=(T& val) { m_Component->SetProperty<T>(m_PropertyName, val); }
// Specialization for string literals // Specialization for string literals
template <std::size_t N> template<std::size_t N>
void operator=(const char(&val)[N]) { m_Component->SetField<N>(m_PropertyName, val); } void operator=(const char(&val)[N]) { m_Component->SetProperty<N>(m_PropertyName, val); }
}; };
SubscriptProxy operator[](std::string propertyName) { return SubscriptProxy(this, propertyName); } SubscriptProxy operator[](std::string propertyName) { return SubscriptProxy(this, propertyName); }
}; };
// A component wrapper that "owns" its data through a shared pointer
struct SharedComponentWrapper : ComponentWrapper
{
SharedComponentWrapper(const ComponentInfo& componentInfo, boost::shared_array<char> data)
: ComponentWrapper(componentInfo, data.get())
, m_DataReference(data)
{ }
private:
boost::shared_array<char> m_DataReference;
};
// TODO: Move this to Tests once entity importing is finished // TODO: Move this to Tests once entity importing is finished
class ComponentWrapperFactory class ComponentWrapperFactory
{ {
public: public:
ComponentWrapperFactory() = default; ComponentWrapperFactory() = default;
ComponentWrapperFactory(std::string componentTypeName, unsigned int allocation = 0) ComponentWrapperFactory(std::string componentTypeName, std::size_t allocation = 0)
{ {
m_ComponentInfo.Name = componentTypeName; m_ComponentInfo.Name = componentTypeName;
m_ComponentInfo.Meta = std::make_shared<ComponentInfo::Meta_t>(); m_ComponentInfo.Meta.Allocation = allocation;
m_ComponentInfo.Meta->Allocation = allocation;
} }
template <typename T> template <typename T>
void AddProperty(std::string fieldName, T defaultValue) void AddProperty(std::string fieldName, T defaultValue)
{ {
auto& field = m_ComponentInfo.Fields[fieldName]; m_DefaultValues.push_back(defaultValue);
field.Name = fieldName; m_ComponentInfo.FieldTypes[fieldName] = typeid(T).name();
field.Type = typeid(T).name(); m_ComponentInfo.FieldOffsets[fieldName] = m_ComponentInfo.Meta.Stride;
field.Offset = m_ComponentInfo.Stride; m_ComponentInfo.Meta.Stride += sizeof(T);
field.Stride = sizeof(T);
m_ComponentInfo.FieldsInOrder.push_back(field.Name);
if (field.Type == typeid(std::string).name()) {
field.Type = "string";
m_ComponentInfo.StringFields.push_back(field.Name);
}
m_ComponentInfo.Stride += sizeof(T);
m_DefaultValues.push_back(std::make_pair(field, defaultValue));
} }
ComponentInfo& Finalize() ComponentInfo& Finalize()
{ {
m_ComponentInfo.Defaults = boost::shared_array<char>(new char[m_ComponentInfo.Stride]); m_ComponentInfo.Defaults = std::shared_ptr<char>(new char[m_ComponentInfo.Meta.Stride]);
std::size_t offset = 0; std::size_t offset = 0;
for (auto& pair : m_DefaultValues) { for (auto& val : m_DefaultValues) {
if (pair.first.Type == "string") { memcpy(m_ComponentInfo.Defaults.get() + offset, val.Data.get(), val.Size);
new (m_ComponentInfo.Defaults.get() + offset) std::string(*reinterpret_cast<std::string*>(pair.second.Data.get())); offset += val.Size;
} else {
memcpy(m_ComponentInfo.Defaults.get() + offset, pair.second.Data.get(), pair.second.Size);
}
offset += pair.second.Size;
} }
return m_ComponentInfo; return m_ComponentInfo;
@@ -185,7 +99,7 @@ public:
private: private:
ComponentInfo m_ComponentInfo; ComponentInfo m_ComponentInfo;
std::vector<std::pair<ComponentInfo::Field_t, Any>> m_DefaultValues; std::vector<Any> m_DefaultValues;
}; };
#endif #endif
-18
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@@ -1,18 +0,0 @@
#ifndef EAmmoPickup_h__
#define EAmmoPickup_h__
#include "EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
struct AmmoPickup : Event
{
EntityWrapper Player;
int AmmoGain;
};
}
#endif
-20
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@@ -1,20 +0,0 @@
#ifndef ECaptured_h__
#define ECaptured_h__
#include "EventBroker.h"
#include "../Core/Entity.h"
#include "Engine/GLM.h"
namespace Events
{
//triggers when a capturePoint has been taken over
struct Captured : Event
{
int TeamNumberThatCapturedCapturePoint;
EntityID CapturePointID;
};
}
#endif
-20
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@@ -1,20 +0,0 @@
#ifndef EComponentAttached_h__
#define EComponentAttached_h__
#include "EventBroker.h"
#include "World.h"
#include "Entity.h"
#include "ComponentWrapper.h"
namespace Events
{
struct ComponentAttached : Event
{
EntityWrapper Entity;
ComponentWrapper Component;
};
}
#endif
-21
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@@ -1,21 +0,0 @@
#ifndef EComponentDeleted_h__
#define EComponentDeleted_h__
#include "../Common.h"
#include "Event.h"
#include "Entity.h"
namespace Events
{
struct ComponentDeleted : Event
{
EntityID Entity;
std::string ComponentType;
// True if the component was deleted as a result of the entity it was attached to being deleted
bool Cascaded;
};
}
#endif
-19
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@@ -1,19 +0,0 @@
#ifndef EEntityDeleted_h__
#define EEntityDeleted_h__
#include "Event.h"
#include "Entity.h"
namespace Events
{
struct EntityDeleted : Event
{
EntityID DeletedEntity;
// True if the entity deletion was triggered because the entity's parent was deleted before it
bool Cascaded;
};
}
#endif
-16
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@@ -1,16 +0,0 @@
#ifndef EFileDropped_h__
#define EFileDropped_h__
#include "EventBroker.h"
namespace Events
{
struct FileDropped : Event
{
std::string Path;
};
}
#endif
-3
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@@ -11,9 +11,6 @@ struct KeyDown : Event
{ {
/** GLFW key code */ /** GLFW key code */
int KeyCode; int KeyCode;
bool ModCtrl;
bool ModAlt;
bool ModShift;
}; };
} }
-3
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@@ -11,9 +11,6 @@ struct KeyUp : Event
{ {
/** GLFW key code */ /** GLFW key code */
int KeyCode; int KeyCode;
bool ModCtrl;
bool ModAlt;
bool ModShift;
}; };
} }
-17
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@@ -1,17 +0,0 @@
#ifndef Events_KeyboardChar_h__
#define Events_KeyboardChar_h__
#include "EventBroker.h"
namespace Events
{
struct KeyboardChar : Event
{
double Timestamp = 0.f;
unsigned int Char = 0;
};
}
#endif
-17
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@@ -1,17 +0,0 @@
#ifndef Events_MouseScroll_h__
#define Events_MouseScroll_h__
#include "EventBroker.h"
namespace Events
{
struct MouseScroll : Event
{
double DeltaX;
double DeltaY;
};
}
#endif
-22
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@@ -1,22 +0,0 @@
#ifndef EPause_h__
#define EPause_h__
#include "EventBroker.h"
#include "World.h"
namespace Events
{
struct Pause : Event
{
::World* World;
};
struct Resume : Event
{
::World* World;
};
}
#endif
-17
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@@ -1,17 +0,0 @@
#ifndef EPickupSpawned_h__
#define EPickupSpawned_h__
#include "Core/Event.h"
#include "Core/EntityWrapper.h"
namespace Events
{
struct PickupSpawned : Event
{
EntityWrapper Pickup;
};
}
#endif
-19
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@@ -1,19 +0,0 @@
#ifndef EPlayerDamage_h__
#define EPlayerDamage_h__
#include "EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
struct PlayerDamage : Event
{
EntityWrapper Inflictor;
EntityWrapper Victim;
double Damage;
};
}
#endif
-19
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@@ -1,19 +0,0 @@
#ifndef EPlayerDeath_h__
#define EPlayerDeath_h__
#include "EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
struct PlayerDeath : Event
{
//KilledBy,KilledByWhat is optional for now. It might be used later in the playerlog-system
EntityWrapper Player;
std::string KilledByWhat;
};
}
#endif
-18
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@@ -1,18 +0,0 @@
#ifndef EPlayerHealthPickup_h__
#define EPlayerHealthPickup_h__
#include "EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
struct PlayerHealthPickup : Event
{
EntityWrapper Player;
double HealthAmount;
};
}
#endif
-20
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@@ -1,20 +0,0 @@
#ifndef EPlayerSpawned_h__
#define EPlayerSpawned_h__
#include "Core/Event.h"
#include "Core/EntityWrapper.h"
namespace Events
{
struct PlayerSpawned : Event
{
int PlayerID;
EntityWrapper Player;
EntityWrapper Spawner;
std::string PlayerName;
};
}
#endif
-18
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@@ -1,18 +0,0 @@
#ifndef EShoot_h__
#define EShoot_h__
#include "EventBroker.h"
#include "../Core/EntityWrapper.h"
namespace Events
{
struct Shoot : Event
{
EntityWrapper Inflictor;
double Damage;
};
}
#endif
-20
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@@ -1,20 +0,0 @@
#ifndef EWin_h__
#define EWin_h__
#include "EventBroker.h"
#include "../Core/Entity.h"
#include "Engine/GLM.h"
namespace Events
{
//triggers when a team has captured all capturePoints
struct Win : Event
{
//can be 0 = none, 1,2
int TeamThatWon;
};
}
#endif
-2
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@@ -2,7 +2,5 @@
#define Entity_h__ #define Entity_h__
typedef unsigned int EntityID; typedef unsigned int EntityID;
const static unsigned int EntityID_Invalid = -1;
#endif #endif
+8 -8
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@@ -285,7 +285,7 @@ private:
XSValue::Status status; XSValue::Status status;
XSValue* val = XSValue::getActualValue(child->getNodeValue(), XSValue::dt_integer, status); XSValue* val = XSValue::getActualValue(child->getNodeValue(), XSValue::dt_integer, status);
compInfo.Meta->Allocation += val->fData.fValue.f_int; compInfo.Meta.Allocation += val->fData.fValue.f_int;
} }
// Save documentation string // Save documentation string
@@ -293,11 +293,11 @@ private:
if (documentationTags->getLength() != 0) { if (documentationTags->getLength() != 0) {
auto child = documentationTags->item(0)->getFirstChild(); auto child = documentationTags->item(0)->getFirstChild();
if (child != nullptr) { if (child != nullptr) {
compInfo.Meta->Annotation = XSTR(child->getNodeValue()); compInfo.Meta.Annotation = XSTR(child->getNodeValue());
} }
} }
// TODO: Parse annotation string XML // TODO: Parse annotation string XML
// compInfo.Meta->Allocation = ... // compInfo.Meta.Allocation = ...
} else { } else {
std::cout << "Warning: Component is missing an annotation!" << std::endl; std::cout << "Warning: Component is missing an annotation!" << std::endl;
} }
@@ -344,7 +344,7 @@ private:
fieldOffset += getTypeStride(type); fieldOffset += getTypeStride(type);
} }
compInfo.Stride = fieldOffset; compInfo.Meta.Stride = fieldOffset;
m_ComponentInfo[compInfo.Name] = compInfo; m_ComponentInfo[compInfo.Name] = compInfo;
} }
} }
@@ -367,14 +367,14 @@ private:
std::string componentName = XSTR(component->getLocalName()); std::string componentName = XSTR(component->getLocalName());
auto& compInfo = m_ComponentInfo.at(componentName); auto& compInfo = m_ComponentInfo.at(componentName);
compInfo.Meta->Allocation += 1; compInfo.Meta.Allocation += 1;
} }
std::cout << "COMPONENT INFO" << std::endl; std::cout << "COMPONENT INFO" << std::endl;
for (auto& pair : m_ComponentInfo) { for (auto& pair : m_ComponentInfo) {
ComponentInfo& ci = pair.second; ComponentInfo& ci = pair.second;
std::cout << "Component: " << ci.Name << " (" << ci.Meta->Annotation << ")" << std::endl; std::cout << "Component: " << ci.Name << " (" << ci.Meta.Annotation << ")" << std::endl;
std::cout << " Allocation: " << ci.Meta->Allocation << std::endl; std::cout << " Allocation: " << ci.Meta.Allocation << std::endl;
std::cout << " Fields:" << std::endl; std::cout << " Fields:" << std::endl;
// Calculate component size // Calculate component size
@@ -393,7 +393,7 @@ private:
cs.ComponentName = ci.Name; cs.ComponentName = ci.Name;
cs.Stride = stride; cs.Stride = stride;
cs.Info = ci; cs.Info = ci;
cs.Data = new char[stride*ci.Meta->Allocation]; cs.Data = new char[stride*ci.Meta.Allocation];
m_ComponentStore[cs.ComponentName] = cs; m_ComponentStore[cs.ComponentName] = cs;
} }
} }
-164
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@@ -1,164 +0,0 @@
#ifndef EntityFile_h__
#define EntityFile_h__
#include <stack>
#include <boost/lexical_cast.hpp>
#include <xercesc/util/XercesDefs.hpp>
#include <xercesc/util/PlatformUtils.hpp>
#include <xercesc/sax2/SAX2XMLReader.hpp>
#include <xercesc/sax2/XMLReaderFactory.hpp>
#include <xercesc/sax2/DefaultHandler.hpp>
#include <xercesc/sax2/Attributes.hpp>
#include <xercesc/util/XMLString.hpp>
#include <xercesc/util/XMLChar.hpp>
#include <xercesc/sax2/DefaultHandler.hpp>
#include <xercesc/framework/XMLDocumentHandler.hpp>
#include <xercesc/framework/psvi/XSElementDeclaration.hpp>
#include <xercesc/framework/psvi/XSComplexTypeDefinition.hpp>
#include <xercesc/framework/psvi/XSParticle.hpp>
#include <xercesc/framework/psvi/XSModelGroup.hpp>
#include <xercesc/framework/psvi/XSAnnotation.hpp>
#include <xercesc/framework/psvi/XSValue.hpp>
#include <xercesc/framework/XMLGrammarPoolImpl.hpp>
#include <xercesc/dom/DOM.hpp>
#include <xercesc/dom/DOMLSInput.hpp>
#include <xercesc/dom/DOMElement.hpp>
#include "../GLM.h"
#include "Util/XercesString.h"
#include "ResourceManager.h"
#include "Entity.h"
#include "ComponentInfo.h"
class EntityFileHandler
{
friend class EntityFileSAXHandler;
public:
// @param EntityID The entity found
// @param EntityID The parent of the entity
typedef std::function<void(EntityID, EntityID, const std::string&)> OnStartEntityCallback;
void SetStartEntityCallback(OnStartEntityCallback c) { m_OnStartEntityCallback = c; }
// @param EntityID The entity the component corresponds to
// @param std::string Type name of the component
typedef std::function<void(EntityID, const std::string&)> OnStartComponentCallback;
void SetStartComponentCallback(OnStartComponentCallback c) { m_OnStartComponentCallback = c; }
// @param EntityID Entity
// @param std::string Component name
// @param std::string Field name
// @param std::map<std::string, std::string> Field attribute names and values
typedef std::function<void(EntityID, const std::string&, const std::string&, const std::map<std::string, std::string>&)> OnStartFieldCallback;
void SetStartFieldCallback(OnStartFieldCallback c) { m_OnStartFieldCallback = c; }
// @param EntityID Entity
// @param std::string Component name
// @param std::string Field name
// @param char* Field data
typedef std::function<void(EntityID, const std::string&, const std::string&, const char*)> OnStartFieldDataCallback;
void SetStartFieldDataCallback(OnStartFieldDataCallback c) { m_OnStartFieldDataCallback = c; }
private:
OnStartEntityCallback m_OnStartEntityCallback = nullptr;
OnStartComponentCallback m_OnStartComponentCallback = nullptr;
OnStartFieldCallback m_OnStartFieldCallback = nullptr;
OnStartFieldDataCallback m_OnStartFieldDataCallback = nullptr;
};
class EntityFileSAXHandler : public xercesc::DefaultHandler
{
public:
enum class State
{
Unknown,
Entity,
Component,
ComponentField
};
EntityFileSAXHandler(const EntityFileHandler* handler, xercesc::SAX2XMLReader* reader);
void startElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname, const xercesc::Attributes& attrs) override;
void characters(const XMLCh* const chars, const XMLSize_t length) override;
void endElement(const XMLCh* const _uri, const XMLCh* const _localName, const XMLCh* const _qname) override;
void warning(const xercesc::SAXParseException& e);
void error(const xercesc::SAXParseException& e);
void fatalError(const xercesc::SAXParseException& e);
private:
const EntityFileHandler* m_Handler;
xercesc::XMLGrammarPool* m_GrammarPool;
xercesc::SAX2XMLReader* m_Reader;
//State m_CurrentScope = State::Unknown;
std::stack<State> m_StateStack;
unsigned int m_NextEntityID = 0;
std::stack<EntityID> m_EntityStack;
std::string m_CurrentComponent;
std::string m_CurrentField;
std::map<std::string, std::string> m_CurrentAttributes;
void onStartEntity(const xercesc::Attributes& attrs);
void onEndEntity();
void onStartEntityRef(const xercesc::Attributes& attrs);
void onStartComponent(const std::string& name);
void onEndComponent(const std::string& name);
void onStartComponentField(const std::string& field, const xercesc::Attributes& attrs);
void onEndComponentField(const std::string& field);
void onFieldData(char* data);
};
class EntityFileXMLErrorHandler : public xercesc::ErrorHandler
{
public:
void warning(const xercesc::SAXParseException& e) override
{
reportParseException("Warning", e);
}
void error(const xercesc::SAXParseException& e) override
{
reportParseException("Error", e);
}
void fatalError(const xercesc::SAXParseException& e) override
{
reportParseException("FATAL ERROR", e);
}
void resetErrors() override { }
private:
void reportParseException(std::string type, const xercesc::SAXParseException& e)
{
char* message = xercesc::XMLString::transcode(e.getMessage());
char* systemID = xercesc::XMLString::transcode(e.getSystemId());
std::cerr << systemID << ":" << e.getLineNumber() << ":" << e.getColumnNumber() << std::endl;
std::cerr << type << ": " << message << std::endl;
xercesc::XMLString::release(&systemID);
xercesc::XMLString::release(&message);
}
};
class EntityFile : public Resource
{
friend class ResourceManager;
friend class EntityFileSAXHandler;
private:
EntityFile(boost::filesystem::path path);
~EntityFile();
public:
static unsigned int GetTypeStride(std::string typeName);
static void WriteAttributeData(char* outData, const ComponentInfo::Field_t& field, const std::map<std::string, std::string>& attributes);
static void WriteValueData(char* outData, const ComponentInfo::Field_t& field, const char* valueData);
xercesc::XMLGrammarPool* GrammarPool() const { return m_GrammarPool; }
void Parse(const EntityFileHandler* handler) const;
private:
boost::filesystem::path m_FilePath;
xercesc::XMLGrammarPool* m_GrammarPool;
xercesc::SAX2XMLReader* m_SAX2XMLReader;
//std::map<std::string, ::ComponentInfo> m_ComponentInfo;
//std::vector<std::string> m_EntityReferences;
static void setReaderFeatures(xercesc::SAX2XMLReader* reader);
};
#endif
-29
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@@ -1,29 +0,0 @@
#ifndef EntityFileParser_h__
#define EntityFileParser_h__
#include "EntityFile.h"
#include "World.h"
class EntityFileParser
{
public:
EntityFileParser(const EntityFile* entityFile);
EntityID MergeEntities(World* world, EntityID baseParent = EntityID_Invalid);
private:
const EntityFile* m_EntityFile;
EntityFileHandler m_Handler;
World* m_World = nullptr;
EntityID m_FirstEntity = EntityID_Invalid;
// Maps EntityIDs local to the file to real IDs in the world after they've been
// created in order to resolve parent-child relationships.
std::map<EntityID, EntityID> m_EntityIDMapper;
void onStartEntity(EntityID entity, EntityID parent, const std::string& name);
void onStartComponent(EntityID entity, const std::string& component);
void onStartComponentField(EntityID entity, const std::string& componentType, const std::string& fieldName, const std::map<std::string, std::string>& attributes);
void onFieldData(EntityID entity, const std::string& componentType, const std::string& fieldName, const char* fieldData);
};
#endif
@@ -1,40 +0,0 @@
#ifndef EntityFilePreprocessor_h__
#define EntityFilePreprocessor_h__
#include <xercesc/framework/psvi/XSElementDeclaration.hpp>
#include <xercesc/framework/psvi/XSComplexTypeDefinition.hpp>
#include <xercesc/framework/psvi/XSAttributeUse.hpp>
#include <xercesc/framework/psvi/XSAttributeDeclaration.hpp>
#include <xercesc/framework/psvi/XSParticle.hpp>
#include <xercesc/framework/psvi/XSModelGroup.hpp>
#include <xercesc/framework/psvi/XSModelGroupDefinition.hpp>
#include <xercesc/framework/psvi/XSAnnotation.hpp>
#include <xercesc/framework/psvi/XSValue.hpp>
#include <xercesc/framework/MemBufFormatTarget.hpp>
#include <xercesc/framework/MemBufInputSource.hpp>
#include <xercesc/parsers/XercesDOMParser.hpp>
#include "Util/XercesString.h"
#include "ResourceManager.h"
#include "World.h"
#include "EntityFile.h"
class EntityFilePreprocessor
{
public:
EntityFilePreprocessor(const EntityFile* entityFile);
void RegisterComponents(World* world);
private:
const EntityFile* m_EntityFile;
std::map<std::string, unsigned int> m_ComponentCounts;
std::map<std::string, ComponentInfo> m_ComponentInfo;
void onStartComponent(EntityID entity, std::string type);
void parseComponentInfo();
void parseDefaults();
std::string parseAnnotationXML(const XMLCh* xml);
};
#endif
-39
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@@ -1,39 +0,0 @@
#ifndef EntityFileWriter_h__
#define EntityFileWriter_h__
#include <boost/filesystem.hpp>
#include <xercesc/dom/DOM.hpp>
#include <xercesc/util/XMLString.hpp>
#include <xercesc/util/PlatformUtils.hpp>
#include <xercesc/framework/LocalFileFormatTarget.hpp>
#include "Util/XercesString.h"
#include "EntityFile.h"
#include "World.h"
class EntityFileWriter
{
public:
EntityFileWriter(boost::filesystem::path file)
: m_FilePath(file)
{
using namespace xercesc;
m_DOMImplementation = DOMImplementationRegistry::getDOMImplementation(XS::ToXMLCh("LS"));
m_DOMLSSerializer = static_cast<DOMImplementationLS*>(m_DOMImplementation)->createLSSerializer();
m_DOMLSSerializer->getDomConfig()->setParameter(XMLUni::fgDOMWRTDiscardDefaultContent, true);
m_DOMLSSerializer->getDomConfig()->setParameter(XMLUni::fgDOMWRTFormatPrettyPrint, true);
}
void WriteWorld(World* world);
void WriteEntity(World* world, EntityID entity);
private:
boost::filesystem::path m_FilePath;
xercesc::DOMImplementation* m_DOMImplementation;
xercesc::DOMLSSerializer* m_DOMLSSerializer;
void appendEntityChildren(xercesc::DOMElement* parentElement, const World* world, EntityID entity);
void appentEntityComponents(xercesc::DOMElement* parentElemetn, const World* world, EntityID entity);
};
#endif
-58
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@@ -1,58 +0,0 @@
#ifndef EntityWrapper_h__
#define EntityWrapper_h__
#include <boost/optional.hpp>
#include <boost/functional/hash.hpp>
#include "ComponentWrapper.h"
class World;
struct EntityWrapper
{
EntityWrapper()
: World(nullptr)
, ID(EntityID_Invalid)
{ }
EntityWrapper(::World* world, EntityID id)
: World(world)
, ID(id)
{ }
::World* World;
EntityID ID;
static const EntityWrapper Invalid;
const std::string Name();
bool HasComponent(const std::string& componentType);
void AttachComponent(const char* componentName);
EntityWrapper Parent();
EntityWrapper FirstChildByName(const std::string& name);
EntityWrapper FirstParentWithComponent(const std::string& componentType);
bool IsChildOf(EntityWrapper potentialParent);
bool Valid() const;
ComponentWrapper operator[](const char* componentName);
bool operator==(const EntityWrapper& e) const;
bool operator!=(const EntityWrapper& e) const;
explicit operator EntityID() const;
private:
EntityWrapper firstChildByNameRecursive(const std::string& name, EntityID parent);
};
namespace std
{
template<> struct hash<EntityWrapper>
{
std::size_t operator()(const EntityWrapper& e) const
{
std::size_t seed = 0;
boost::hash_combine(seed, e.World);
boost::hash_combine(seed, e.ID);
return seed;
}
};
}
#endif
+141
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@@ -0,0 +1,141 @@
#ifndef EntityXMLFile_h__
#define EntityXMLFile_h__
#include <sstream>
#include "../Common.h"
#include "../GLM.h"
#include <xercesc/dom/DOM.hpp>
#include <xercesc/dom/DOMLSInput.hpp>
#include <xercesc/dom/DOMElement.hpp>
#include <xercesc/framework/Wrapper4InputSource.hpp>
#include <xercesc/framework/LocalFileInputSource.hpp>
#include <xercesc/framework/LocalFileFormatTarget.hpp>
#include <xercesc/framework/MemBufFormatTarget.hpp>
#include <xercesc/framework/MemBufInputSource.hpp>
#include <xercesc/sax/HandlerBase.hpp>
#include <xercesc/util/PlatformUtils.hpp>
#include <xercesc/util/XMLFloat.hpp>
#include <xercesc/framework/XMLGrammarPoolImpl.hpp>
#include <xercesc/parsers/XercesDOMParser.hpp>
#include <xercesc/framework/psvi/XSElementDeclaration.hpp>
#include <xercesc/framework/psvi/XSComplexTypeDefinition.hpp>
#include <xercesc/framework/psvi/XSParticle.hpp>
#include <xercesc/framework/psvi/XSModelGroup.hpp>
#include <xercesc/framework/psvi/XSAnnotation.hpp>
#include <xercesc/framework/psvi/XSValue.hpp>
#include <xercesc/framework/XMLValidator.hpp>
#include "ResourceManager.h"
#include "Entity.h"
#include "ComponentInfo.h"
class World;
class EntityPreprocessorXMLErrorHandler : public xercesc::DOMErrorHandler
{
public:
bool handleError(const xercesc::DOMError &e) override
{
char* message = xercesc::XMLString::transcode(e.getMessage());
std::cerr << "Preprocessor DOMError: " << message << std::endl;
xercesc::XMLString::release(&message);
return false;
}
};
class EntityParserXMLErrorHandler : public xercesc::ErrorHandler
{
public:
void warning(const xercesc::SAXParseException& e) override
{
reportParseException("Warning", e);
}
void error(const xercesc::SAXParseException& e) override
{
reportParseException("Error", e);
}
void fatalError(const xercesc::SAXParseException& e) override
{
reportParseException("FATAL ERROR", e);
}
void resetErrors() override { }
private:
void reportParseException(std::string type, const xercesc::SAXParseException& e)
{
char* message = xercesc::XMLString::transcode(e.getMessage());
char* systemID = xercesc::XMLString::transcode(e.getSystemId());
std::cerr << systemID << ":" << e.getLineNumber() << ":" << e.getColumnNumber() << std::endl;
std::cerr << type << ": " << message << std::endl;
xercesc::XMLString::release(&systemID);
xercesc::XMLString::release(&message);
}
};
class XSTR
{
public:
XSTR(const XMLCh* const xmlString)
{
m_AsChar = xercesc::XMLString::transcode(xmlString);
}
XSTR(const char* normalString)
{
m_AsXMLCh = xercesc::XMLString::transcode(normalString);
}
~XSTR()
{
if (m_AsChar != nullptr) {
xercesc::XMLString::release(&m_AsChar);
}
if (m_AsXMLCh != nullptr) {
xercesc::XMLString::release(&m_AsXMLCh);
}
}
operator const char*() const { return m_AsChar; }
operator const XMLCh*() const { return m_AsXMLCh; }
private:
char* m_AsChar = nullptr;
XMLCh* m_AsXMLCh = nullptr;
};
class EntityXMLFile : public Resource
{
friend class ResourceManager;
private:
EntityXMLFile(std::string path);
public:
~EntityXMLFile();
void PopulateWorld(World* world);
private:
static unsigned int InstanceCount;
std::string m_EntityFile;
xercesc::XMLGrammarPool* m_GrammarPool = nullptr;
EntityParserXMLErrorHandler* m_ErrorHandler = nullptr;
xercesc::XercesDOMParser* m_DOMParser = nullptr;
xercesc::DOMDocument* m_DOMDocument = nullptr;
std::map<std::string, ComponentInfo> m_ComponentInfo;
// Preprocesses the entity file to insert include-by-copy child entities
// TODO: Make this work in memory instead of saving to file
void preprocess(std::string inPath, std::string outPath);
void parseComponentInfo();
void parseDefaults();
void predictComponentAllocation();
void parseEntityGraph(World* world, xercesc::DOMElement* parent, EntityID parentEntity);
std::size_t getTypeStride(std::string typeName);
float getFloatAttribute(const xercesc::DOMElement* element, const char* attribute) const;
void writeData(const xercesc::DOMElement* element, std::string typeName, char* outData);
};
#endif
+4 -9
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@@ -5,7 +5,6 @@
#include <functional> #include <functional>
#include <list> #include <list>
#include <tuple> #include <tuple>
#include <set>
#include "../Common.h" #include "../Common.h"
#include "Event.h" #include "Event.h"
@@ -14,8 +13,6 @@
relay = decltype(relay)(std::bind(handler, this, std::placeholders::_1)); \ relay = decltype(relay)(std::bind(handler, this, std::placeholders::_1)); \
m_EventBroker->Subscribe(relay); m_EventBroker->Subscribe(relay);
typedef unsigned int EventID;
class EventBroker; class EventBroker;
class BaseEventRelay class BaseEventRelay
@@ -34,7 +31,6 @@ public:
virtual bool Receive(const std::shared_ptr<Event> event) = 0; virtual bool Receive(const std::shared_ptr<Event> event) = 0;
protected: protected:
EventID m_EventID;
std::string m_ContextTypeName; std::string m_ContextTypeName;
std::string m_EventTypeName; std::string m_EventTypeName;
EventBroker* m_Broker; EventBroker* m_Broker;
@@ -44,7 +40,7 @@ template <typename ContextType, typename EventType>
class EventRelay : public BaseEventRelay class EventRelay : public BaseEventRelay
{ {
public: public:
typedef std::function<bool(EventType&)> CallbackType; typedef std::function<bool(const EventType&)> CallbackType;
EventRelay() EventRelay()
: m_Callback(nullptr) : m_Callback(nullptr)
@@ -66,7 +62,7 @@ template <typename ContextType, typename EventType>
bool EventRelay<ContextType, EventType>::Receive(const std::shared_ptr<Event> event) bool EventRelay<ContextType, EventType>::Receive(const std::shared_ptr<Event> event)
{ {
if (m_Callback != nullptr) { if (m_Callback != nullptr) {
return m_Callback(*static_cast<EventType*>(event.get())); return m_Callback(*static_cast<const EventType*>(event.get()));
} else { } else {
return false; return false;
} }
@@ -99,7 +95,6 @@ public:
private: private:
bool m_IsProcessing = false; bool m_IsProcessing = false;
EventID m_NextEventID = 0;
typedef std::string ContextTypeName_t; // typeid(ContextType).name() typedef std::string ContextTypeName_t; // typeid(ContextType).name()
typedef std::string EventTypeName_t; // typeid(EventType).name() typedef std::string EventTypeName_t; // typeid(EventType).name()
@@ -108,14 +103,14 @@ private:
typedef std::unordered_map<ContextTypeName_t, EventRelays_t> ContextRelays_t; typedef std::unordered_map<ContextTypeName_t, EventRelays_t> ContextRelays_t;
ContextRelays_t m_ContextRelays; ContextRelays_t m_ContextRelays;
std::vector<BaseEventRelay*> m_RelaysToSubscribe; std::vector<BaseEventRelay*> m_RelaysToSubscribe;
std::unordered_map<BaseEventRelay*, std::tuple<EventID, ContextTypeName_t, EventTypeName_t>> m_RelaysToUnsubscribe; std::vector<BaseEventRelay*> m_RelaysToUnsubscribe;
typedef std::list<std::pair<EventTypeName_t, std::shared_ptr<Event>>> EventQueue_t; typedef std::list<std::pair<EventTypeName_t, std::shared_ptr<Event>>> EventQueue_t;
std::shared_ptr<EventQueue_t> m_EventQueueRead; std::shared_ptr<EventQueue_t> m_EventQueueRead;
std::shared_ptr<EventQueue_t> m_EventQueueWrite; std::shared_ptr<EventQueue_t> m_EventQueueWrite;
void subscribeImmediate(BaseEventRelay& relay); void subscribeImmediate(BaseEventRelay& relay);
void unsubscribeImmediate(std::tuple<EventID, ContextTypeName_t, EventTypeName_t> identifier); void unsubscribeImmediate(BaseEventRelay& relay);
}; };
template <typename EventType> template <typename EventType>
-77
View File
@@ -1,77 +0,0 @@
#ifndef Frustum_h__
#define Frustum_h__
#include "../GLM.h"
#include "AABB.h"
#include <bitset>
//A frustum defined by 6 planes.
struct Frustum
{
//Contains points P in: dot(normal, P) + d = 0
struct Plane
{
glm::vec3 Normal;
float Distance;
};
enum class Output
{
Inside,
Outside,
Intersects
};
Plane Planes[6];
Frustum() = default;
Frustum(glm::mat4x4 viewProjMatrix)
{
//Order: Right, left, top, bottom, far, near.
int sign = 1;
for (int i = 0; i < 6; ++i) {
sign = -sign;
int index = i / 2;
Plane& plane = Planes[i];
plane.Normal.x = viewProjMatrix[0].w + sign * viewProjMatrix[0][index];
plane.Normal.y = viewProjMatrix[1].w + sign * viewProjMatrix[1][index];
plane.Normal.z = viewProjMatrix[2].w + sign * viewProjMatrix[2][index];
plane.Distance = viewProjMatrix[3].w + sign * viewProjMatrix[3][index];
float divByNormalLength = 1.0f / glm::length(plane.Normal);
plane.Normal *= divByNormalLength;
plane.Distance *= divByNormalLength;
}
}
Output VsAABB(const AABB& box) const
{
const glm::vec3& maxCorner = box.MaxCorner();
const glm::vec3& minCorner = box.MinCorner();
bool completelyInside = true;
for (const Plane& p : Planes) {
bool anyWasInside = false;
bool anyWasOutside = false;
//If points are on both sides of the plane, we can stop.
for (int i = 0; i < 8 && (!anyWasInside || !anyWasOutside); ++i) {
std::bitset<3> bits(i);
glm::vec3 corner;
corner.x = bits.test(0) ? maxCorner.x : minCorner.x;
corner.y = bits.test(1) ? maxCorner.y : minCorner.y;
corner.z = bits.test(2) ? maxCorner.z : minCorner.z;
if (glm::dot(p.Normal, corner) > -p.Distance) {
anyWasInside = true;
} else {
anyWasOutside = true;
}
}
if (!anyWasInside) {
return Output::Outside;
}
if (anyWasOutside) {
completelyInside = false;
}
}
return completelyInside ? Output::Inside : Output::Intersects;
}
};
#endif
+4 -16
View File
@@ -8,15 +8,12 @@
#include "EventBroker.h" #include "EventBroker.h"
#include "EKeyDown.h" #include "EKeyDown.h"
#include "EKeyUp.h" #include "EKeyUp.h"
#include "EKeyboardChar.h"
#include "EMousePress.h" #include "EMousePress.h"
#include "EMouseRelease.h" #include "EMouseRelease.h"
#include "EMouseMove.h" #include "EMouseMove.h"
#include "EMouseScroll.h"
#include "ELockMouse.h" #include "ELockMouse.h"
#include "EGamepadAxis.h" #include "EGamepadAxis.h"
#include "EGamepadButton.h" #include "EGamepadButton.h"
#include "EFileDropped.h"
class InputManager class InputManager
{ {
@@ -36,7 +33,6 @@ public:
void Initialize(); void Initialize();
static const short MAX_GAMEPADS = 4;
void Update(double dt); void Update(double dt);
@@ -53,12 +49,6 @@ private:
std::array<int, GLFW_KEY_LAST+1> m_LastKeyState; std::array<int, GLFW_KEY_LAST+1> m_LastKeyState;
std::array<int, GLFW_MOUSE_BUTTON_LAST+1> m_CurrentMouseState; std::array<int, GLFW_MOUSE_BUTTON_LAST+1> m_CurrentMouseState;
std::array<int, GLFW_MOUSE_BUTTON_LAST+1> m_LastMouseState; std::array<int, GLFW_MOUSE_BUTTON_LAST+1> m_LastMouseState;
typedef std::array<float, static_cast<int>(Gamepad::Axis::LAST) + 1> GamepadAxisState;
std::array<GamepadAxisState, MAX_GAMEPADS> m_CurrentGamepadAxisState;
std::array<GamepadAxisState, MAX_GAMEPADS> m_LastGamepadAxisState;
typedef std::array<bool, static_cast<int>(Gamepad::Button::LAST) + 1> GamepadButtonState;
std::array<GamepadButtonState, MAX_GAMEPADS> m_CurrentGamepadButtonState;
std::array<GamepadButtonState, MAX_GAMEPADS> m_LastGamepadButtonState;
double m_CurrentMouseX, m_CurrentMouseY; double m_CurrentMouseX, m_CurrentMouseY;
double m_LastMouseX, m_LastMouseY; double m_LastMouseX, m_LastMouseY;
@@ -68,12 +58,10 @@ private:
void PublishGamepadAxisIfChanged(int gamepadID, Gamepad::Axis axis); void PublishGamepadAxisIfChanged(int gamepadID, Gamepad::Axis axis);
void PublishGamepadButtonIfChanged(int gamepadID, Gamepad::Button button); void PublishGamepadButtonIfChanged(int gamepadID, Gamepad::Button button);
static std::vector<unsigned int> GLFWCharCallbackQueue; static void GLFWMouseButtonCallback(GLFWwindow* window, int button, int action, int mods)
static void GLFWCharCallback(GLFWwindow* window, unsigned int c); {
static std::vector<std::pair<double, double>> GLFWScrollCallbackQueue; LOG_DEBUG("Click! %i %i %i", button, action, mods);
static void GLFWScrollCallback(GLFWwindow* window, double xoffset, double yoffset); }
static std::vector<std::string> GLFWDropCallbackQueue;
static void GLFWDropCallback(GLFWwindow* window, int count, const char* paths[]);
}; };
#endif #endif
+10 -37
View File
@@ -5,14 +5,6 @@
template <typename T> template <typename T>
class MemoryPoolForwardIterator; class MemoryPoolForwardIterator;
namespace DisableMemoryPool
{
//if true -> Pool allocation is not used when calling Allocate/Free, just use regular dynamic allocation.
//if false -> Use pool allocation.
//Should default to false, unless the DisableMemoryPool is true in the Config.ini files.
extern bool Value;
}
//This is the class to use if you want to allocate blocks (slots) of raw memory, with a fixed maximum size (stride). //This is the class to use if you want to allocate blocks (slots) of raw memory, with a fixed maximum size (stride).
//Additionally, if you know that every memory-block will contain one object of a specific type, (i.e. the stride for the slot //Additionally, if you know that every memory-block will contain one object of a specific type, (i.e. the stride for the slot
//will the size of the object type) you should use ObjectPool<T> instead, your life will become easier. //will the size of the object type) you should use ObjectPool<T> instead, your life will become easier.
@@ -66,25 +58,9 @@ public:
, m_LowestAllocatedSlot(m_NumSlots) , m_LowestAllocatedSlot(m_NumSlots)
{ } { }
MemoryPool(const MemoryPool<T>& other) //We may get problems with memory being released
: m_StartAddress(new char[other.m_NumSlots*other.m_Stride]) //prematurely, etc. if we allow copies.
, m_SlotIsAllocated(other.m_SlotIsAllocated) MemoryPool(const MemoryPool<T>& other) = delete;
, m_ExtraMemory()
, m_NumSlots(other.m_NumSlots)
, m_LowestAllocatedSlot(other.m_LowestAllocatedSlot)
, m_NumAllocatedSlots(other.m_NumAllocatedSlots)
, m_Stride(other.m_Stride)
, m_CurrentAllocSlot(other.m_CurrentAllocSlot)
{
// Copy statically allocated pool
memcpy(m_StartAddress, other.m_StartAddress, m_NumSlots*m_Stride);
// Copy dynamically allocated memory
for (char* otherAddr : other.m_ExtraMemory) {
char* addr = (char*)malloc(m_Stride);
memcpy(addr, otherAddr, m_Stride);
m_ExtraMemory.push_back(addr);
}
}
MemoryPool(const MemoryPool<T>&& other) = delete; MemoryPool(const MemoryPool<T>&& other) = delete;
//Free all memory that has been allocated. //Free all memory that has been allocated.
@@ -94,9 +70,8 @@ public:
delete[] m_StartAddress; delete[] m_StartAddress;
m_StartAddress = nullptr; m_StartAddress = nullptr;
} }
for (char* addr : m_ExtraMemory) { for (char* addr : m_ExtraMemory)
free(addr); free(addr);
}
m_ExtraMemory.clear(); m_ExtraMemory.clear();
} }
@@ -105,8 +80,8 @@ public:
//If element cannot be allocated in the pool, because the memory ran out, memory is allocated dynamically with malloc() "outside the pool". //If element cannot be allocated in the pool, because the memory ran out, memory is allocated dynamically with malloc() "outside the pool".
char* Allocate() char* Allocate()
{ {
for (; m_CurrentAllocSlot < m_NumSlots && m_SlotIsAllocated[m_CurrentAllocSlot] && !DisableMemoryPool::Value; ++m_CurrentAllocSlot); for (; m_CurrentAllocSlot < m_NumSlots && m_SlotIsAllocated[m_CurrentAllocSlot]; ++m_CurrentAllocSlot);
if (m_CurrentAllocSlot < m_NumSlots && !DisableMemoryPool::Value) { if (m_CurrentAllocSlot < m_NumSlots) {
if (m_LowestAllocatedSlot > m_CurrentAllocSlot) if (m_LowestAllocatedSlot > m_CurrentAllocSlot)
m_LowestAllocatedSlot = m_CurrentAllocSlot; m_LowestAllocatedSlot = m_CurrentAllocSlot;
//Mark the slot as allocated. //Mark the slot as allocated.
@@ -118,9 +93,7 @@ public:
else { else {
m_ExtraMemory.push_back((char*)malloc(m_Stride)); m_ExtraMemory.push_back((char*)malloc(m_Stride));
//We should preferably not enter here to avoid performance issues. Set more numMaxElements in constructor instead. //We should preferably not enter here to avoid performance issues. Set more numMaxElements in constructor instead.
if (!DisableMemoryPool::Value) { LOG_WARNING("Allocated slots exceed Pool size, extra memory allocated dynamically. Pool size: %u, dynamic size: %u.", m_NumSlots, m_ExtraMemory.size());
LOG_DEBUG("Allocated slots exceed Pool size, extra memory allocated dynamically. Pool size: %u, dynamic size: %u.", m_NumSlots, m_ExtraMemory.size());
}
return m_ExtraMemory.back(); return m_ExtraMemory.back();
} }
} }
@@ -135,7 +108,7 @@ public:
//(i.e. IsAllocatedInPool may give false positives) //(i.e. IsAllocatedInPool may give false positives)
//if it was malloc():ed //if it was malloc():ed
//so, we may enter here even if we shouldn't. //so, we may enter here even if we shouldn't.
if (!DisableMemoryPool::Value && IsAllocatedInPool(obj)) { if (IsAllocatedInPool(obj)) {
--m_NumAllocatedSlots; --m_NumAllocatedSlots;
const size_t freeSlot = (obj - m_StartAddress) / m_Stride; const size_t freeSlot = (obj - m_StartAddress) / m_Stride;
m_SlotIsAllocated[freeSlot] = false; m_SlotIsAllocated[freeSlot] = false;
@@ -280,7 +253,7 @@ public:
} }
//Postfix increment i.e. iter++. Prefer pre-increment (++iter) for efficiency. //Postfix increment i.e. iter++. Prefer pre-increment (++iter) for efficiency.
MemoryPoolForwardIterator operator++(int) MemoryPoolForwardIterator& operator++(int)
{ {
MemoryPoolForwardIterator<T> copyIter(*this); MemoryPoolForwardIterator<T> copyIter(*this);
operator++(); operator++();
-360
View File
@@ -1,360 +0,0 @@
#ifndef Octree_h__
#define Octree_h__
#include <type_traits>
#include "../Common.h"
#include "AABB.h"
#include "Frustum.h"
#include "Ray.h"
namespace OctSpace
{
struct Output;
struct ContainedObject;
struct Child;
}
//T needs to be AABB, or inherit from AABB.
//T also needs to have a default constructor.
template<typename T>
class Octree
{
public:
Octree() = delete;
~Octree();
//For the root Octree, [octreeBounds] should be a box containing the entire level.
Octree(const AABB& octreeBounds, int subDivisions);
//We cannot copy the Octree as of now, because of the recursive dynamic allocation.
//Define these if the Octree suddenly needs to be copied, think of the children Child* ptrs.
Octree(const Octree& other) = delete;
Octree(const Octree&& other) = delete;
Octree& operator= (const Octree& other) = delete;
//Add a dynamic object (one that moves around) into the tree.
void AddDynamicObject(const T& object);
//Add a static object (that does not move) into the tree.
void AddStaticObject(const T& object);
//Get the objects that are in the same area as the input [box], the objects are put in [outObjects].
//The type Box must be AABB, or inherit from AABB.
template<typename Box>
void ObjectsInSameRegion(const Box& box, std::vector<T>& outObjects);
//Get the objects that are inside the frustum, the objects are put in outObjects.
void ObjectsInFrustum(const Frustum& frustum, std::vector<T>& outObjects);
//Get objects, which AABB the input ray intersects, the objects are put in outObjects.
void ObjectsPossiblyHitByRay(const Ray& ray, std::vector<T>& outObjects);
//Empty the tree of all objects, static and dynamic.
void ClearObjects();
//Empty the tree of all dynamic objects. Static objects remain in the tree.
void ClearDynamicObjects();
//Returns true if the ray collides with something in the tree. Result is written to [data].
bool RayCollides(const Ray& ray, OctSpace::Output& data);
//Returns true if the box collides with something in the tree.
//On collision with a box, that box is written to [outBoxIntersected].
//Note: More efficient than calling ObjectsInSameRegion from outside and testing there.
bool BoxCollides(const AABB& boxToTest, AABB& outBoxIntersected);
private:
OctSpace::Child* m_Root;
std::vector<OctSpace::ContainedObject> m_StaticObjects;
std::vector<OctSpace::ContainedObject> m_DynamicObjects;
void falsifyObjectChecks();
};
namespace OctSpace
{
struct Output
{
float CollideDistance;
};
struct ContainedObject
{
ContainedObject()
: Box(nullptr)
, Checked(false)
{}
template<typename BoxlikeObject>
ContainedObject(const BoxlikeObject& box)
: Box(new BoxlikeObject(box))
, Checked(false)
{}
std::unique_ptr<AABB> Box;
bool Checked;
};
struct Child
{
~Child();
Child(const AABB& octTreeBounds,
int subDivisions,
std::vector<ContainedObject>& staticObjects,
std::vector<ContainedObject>& dynamicObjects);
Child(const Child& other) = delete;
Child(const Child&& other) = delete;
Child& operator= (const Child& other) = delete;
void AddDynamicObject(const AABB& box);
void AddStaticObject(const AABB& box);
template<typename T, typename Box>
void ObjectsInSameRegion(const Box& box, std::vector<T>& outObjects) const;
template<typename T>
void ObjectsInFrustum(const Frustum& frustum, std::vector<T>& outObjects, bool takeAllDontTest) const;
template<typename T>
void ObjectsPossiblyHitByRay(const Ray& ray, std::vector<T>& outObjects) const;
void ClearObjects();
void ClearDynamicObjects();
bool RayCollides(const Ray& ray, Output& data) const;
bool BoxCollides(const AABB& boxToTest, AABB& outBoxIntersected) const;
Child* m_Children[8];
//Indices into the lists in Octree.
std::vector<int> m_StaticObjIndices;
std::vector<int> m_DynamicObjIndices;
AABB m_Box;
//Reference to the lists in Octree.
std::vector<ContainedObject>& m_StaticObjectsRef;
std::vector<ContainedObject>& m_DynamicObjectsRef;
inline bool hasChildren() const { return m_Children[0] != nullptr; }
int childIndexContainingPoint(const glm::vec3& point) const;
std::vector<int> childIndicesContainingBox(const AABB& box) const;
};
//To be able to sort child nodes and contained objects based on distance to ray origin.
struct RaySorterInfo
{
int Index;
float Distance;
};
bool isFirstLower(const RaySorterInfo& first, const RaySorterInfo& second);
}
template<typename T>
Octree<T>::Octree(const AABB& octTreeBounds, int subDivisions)
: m_Root(new OctSpace::Child(octTreeBounds, subDivisions, m_StaticObjects, m_DynamicObjects))
{
static_assert(std::is_base_of<AABB, T>::value, "template argument type T in Octree must be a subclass of AABB.");
}
template<typename T>
Octree<T>::~Octree()
{
delete m_Root;
}
template<typename T>
void Octree<T>::AddDynamicObject(const T& object)
{
m_Root->AddDynamicObject(object);
m_DynamicObjects.emplace_back(object);
}
template<typename T>
void Octree<T>::AddStaticObject(const T& object)
{
m_Root->AddStaticObject(object);
m_StaticObjects.emplace_back(object);
}
template<typename T>
template<typename Box>
void Octree<T>::ObjectsInSameRegion(const Box& box, std::vector<T>& outObjects)
{
static_assert(std::is_base_of<AABB, Box>::value, "template argument type Box in Octree<T>::ObjectsInSameRegion must be a subclass of AABB.");
falsifyObjectChecks();
m_Root->ObjectsInSameRegion(box, outObjects);
}
template<typename T>
void Octree<T>::ObjectsInFrustum(const Frustum& frustum, std::vector<T>& outObjects)
{
falsifyObjectChecks();
m_Root->ObjectsInFrustum(frustum, outObjects, false);
}
template<typename T>
void Octree<T>::ObjectsPossiblyHitByRay(const Ray& ray, std::vector<T>& outObjects)
{
falsifyObjectChecks();
m_Root->ObjectsPossiblyHitByRay(ray, outObjects);
}
template<typename T>
void Octree<T>::ClearObjects()
{
m_StaticObjects.clear();
m_DynamicObjects.clear();
m_Root->ClearObjects();
}
template<typename T>
void Octree<T>::ClearDynamicObjects()
{
m_DynamicObjects.clear();
m_Root->ClearDynamicObjects();
}
template<typename T>
bool Octree<T>::RayCollides(const Ray& ray, OctSpace::Output& data)
{
falsifyObjectChecks();
data.CollideDistance = -1;
return m_Root->RayCollides(ray, data);
}
template<typename T>
bool Octree<T>::BoxCollides(const AABB& boxToTest, AABB& outBoxIntersected)
{
falsifyObjectChecks();
return m_Root->BoxCollides(boxToTest, outBoxIntersected);
}
template<typename T>
void Octree<T>::falsifyObjectChecks()
{
for (auto& obj : m_StaticObjects) {
obj.Checked = false;
}
for (auto& obj : m_DynamicObjects) {
obj.Checked = false;
}
}
template<typename T, typename Box>
void OctSpace::Child::ObjectsInSameRegion(const Box& box, std::vector<T>& outObjects) const
{
if (hasChildren()) {
for (auto i : childIndicesContainingBox(box)) {
m_Children[i]->ObjectsInSameRegion(box, outObjects);
}
} else {
size_t startIndex = outObjects.size();
int numDuplicates = 0;
outObjects.resize(outObjects.size() + m_StaticObjIndices.size() + m_DynamicObjIndices.size());
for (size_t i = 0; i < m_StaticObjIndices.size(); ++i) {
ContainedObject& obj = m_StaticObjectsRef[m_StaticObjIndices[i]];
if (obj.Checked) {
++numDuplicates;
} else {
obj.Checked = true;
outObjects[startIndex + i - numDuplicates] = *static_cast<T*>(obj.Box.get());
}
}
for (size_t i = 0; i < m_DynamicObjIndices.size(); ++i) {
ContainedObject& obj = m_DynamicObjectsRef[m_DynamicObjIndices[i]];
if (obj.Checked) {
++numDuplicates;
} else {
obj.Checked = true;
outObjects[startIndex + i - numDuplicates] = *static_cast<T*>(obj.Box.get());
}
}
for (size_t i = 0; i < numDuplicates; ++i) {
outObjects.pop_back();
}
}
}
template<typename T>
void OctSpace::Child::ObjectsInFrustum(const Frustum& frustum, std::vector<T>& outObjects, bool takeAllDontTest) const
{
if (hasChildren()) {
for (const Child* c : m_Children) {
Frustum::Output out = Frustum::Output::Inside;
if (!takeAllDontTest) {
out = frustum.VsAABB(c->m_Box);
if (out == Frustum::Output::Outside) {
continue;
}
}
c->ObjectsInFrustum(frustum, outObjects, out == Frustum::Output::Inside);
}
} else {
size_t startIndex = outObjects.size();
int numDuplicates = 0;
outObjects.resize(outObjects.size() + m_StaticObjIndices.size() + m_DynamicObjIndices.size());
for (size_t i = 0; i < m_StaticObjIndices.size(); ++i) {
ContainedObject& obj = m_StaticObjectsRef[m_StaticObjIndices[i]];
if (obj.Checked || frustum.VsAABB(*obj.Box) == Frustum::Output::Outside) {
++numDuplicates;
} else {
obj.Checked = true;
outObjects[startIndex + i - numDuplicates] = *static_cast<T*>(obj.Box.get());
}
}
for (size_t i = 0; i < m_DynamicObjIndices.size(); ++i) {
ContainedObject& obj = m_DynamicObjectsRef[m_DynamicObjIndices[i]];
if (obj.Checked || frustum.VsAABB(*obj.Box) == Frustum::Output::Outside) {
++numDuplicates;
} else {
obj.Checked = true;
outObjects[startIndex + i - numDuplicates] = *static_cast<T*>(obj.Box.get());
}
}
for (size_t i = 0; i < numDuplicates; ++i) {
outObjects.pop_back();
}
}
}
template<typename T>
void OctSpace::Child::ObjectsPossiblyHitByRay(const Ray& ray, std::vector<T>& outObjects) const
{
//If the node AABB is missed, everything it contains is missed.
if (Collision::RayAABBIntr(ray, m_Box)) {
//If the ray shoots the tree, and it is a parent.
if (hasChildren()) {
//Sort children according to their distance from the ray origin.
std::vector<RaySorterInfo> childInfos;
childInfos.resize(8);
for (int i = 0; i < 8; ++i) {
childInfos[i] = { i, glm::distance(ray.Origin(), m_Children[i]->m_Box.Origin()) };
}
std::sort(childInfos.begin(), childInfos.end(), isFirstLower);
//Loop through the children, starting with the one closest to the ray origin. I.e the first to be hit.
for (const RaySorterInfo& info : childInfos) {
m_Children[info.Index]->ObjectsPossiblyHitByRay(ray, outObjects);
}
} else {
//Check against boxes in the node.
bool intersected = false;
float dist;
//Sort all contained objects according to the distance from the ray origin to
//the intersection, if they are intersecting.
std::vector<RaySorterInfo> objectHitInfos;
objectHitInfos.reserve(m_StaticObjIndices.size() + m_DynamicObjIndices.size());
for (int i : m_StaticObjIndices) {
//If we haven't tested against this object before, and the ray hits.
if (!m_StaticObjectsRef[i].Checked &&
Collision::RayVsAABB(ray, *m_StaticObjectsRef[i].Box, dist)) {
objectHitInfos.push_back({ i, dist });
}
m_StaticObjectsRef[i].Checked = true;
}
for (int i : m_DynamicObjIndices) {
//If we haven't tested against this object before, and the ray hits.
if (!m_DynamicObjectsRef[i].Checked &&
Collision::RayVsAABB(ray, *m_DynamicObjectsRef[i].Box, dist)) {
objectHitInfos.push_back({ i + (int)m_StaticObjIndices.size(), dist });
}
m_DynamicObjectsRef[i].Checked = true;
}
std::sort(objectHitInfos.begin(), objectHitInfos.end(), isFirstLower);
int startSize = (int)outObjects.size();
outObjects.resize(startSize + objectHitInfos.size());
for (int i = 0; i < objectHitInfos.size(); ++i) {
outObjects[startSize + i] = (objectHitInfos[i].Index < m_StaticObjIndices.size()) ?
*static_cast<T*>(m_StaticObjectsRef[objectHitInfos[i].Index].Box.get()) :
*static_cast<T*>(m_DynamicObjectsRef[objectHitInfos[i].Index - m_StaticObjIndices.size()].Box.get());
}
}
}
}
#endif
-25
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@@ -1,25 +0,0 @@
#ifndef PerformanceTimer_h__
#define PerformanceTimer_h__
#include "../Common.h"
#include <boost/timer/timer.hpp>
using boost::timer::cpu_timer;
class PerformanceTimer
{
public:
static void StartTimer(std::string nameOfTimer);
static void StartTimerAndStopPrevious(std::string nameOfTimer);
static void StopTimer(std::string nameOfTimer);
static void SetFrameNumber(int frameNumber);
static void ResetAllTimers();
static void CreateExcelData();
private:
static std::map<std::string, cpu_timer> timers;
static cpu_timer m_Timer;
static std::string currentTimerRunning;
};
#endif
-35
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@@ -1,35 +0,0 @@
#ifndef Ray_h__
#define Ray_h__
#include "../GLM.h"
#include "../Common.h"
class Ray
{
public:
Ray()
: m_Origin(glm::vec3(0.f))
, m_Direction(glm::vec3(0, 0, 1))
{}
Ray(const glm::vec3& origin, const glm::vec3& dir)
: m_Origin(origin)
, m_Direction(glm::normalize(dir))
{
DEBUG_IF(true) {
if (glm::any(glm::isnan(m_Direction))) {
LOG_WARNING("Ray Direction was set to the zero-vector, expect unknown side effects and/or crashes.");
}
}
}
const glm::vec3& Origin() const { return m_Origin; }
const glm::vec3& Direction() const { return m_Direction; }
//Sets the ray origin at parameter.
void SetOrigin(const glm::vec3& origin) { m_Origin = origin; }
//Normalizes the parameter and sets direction to it.
void SetDirection(const glm::vec3& direction) { m_Direction = glm::normalize(direction); }
private:
glm::vec3 m_Origin;
glm::vec3 m_Direction;
};
#endif // Ray_h__
+39 -135
View File
@@ -12,6 +12,7 @@
/** Base Resource class. /** Base Resource class.
Implement this class for every resource to be handled by the resource manager. Implement this class for every resource to be handled by the resource manager.
Implement Create() to return a new object of that type.
*/ */
class Resource class Resource
{ {
@@ -21,23 +22,6 @@ protected:
Resource() { } Resource() { }
public: public:
//Should be thrown in a Resource's constructor if it cannot complete because another resource is still loading.
//Not actually an error, just a message to the ResourceManager.
struct StillLoadingException : public std::exception
{
virtual const char* what() const throw()
{
return "Resource is still loading.";
}
};
struct FailedLoadingException : public std::exception
{
FailedLoadingException(char const* const _Message)
: std::exception(_Message)
{ }
FailedLoadingException() :std::exception("Resource failed to load.") { };
};
// Pretend that this is a pure virtual function that you have to implement // Pretend that this is a pure virtual function that you have to implement
// FIXME: Why did we do this again instead of just using the constructor? // FIXME: Why did we do this again instead of just using the constructor?
// static Resource* Create(std::string resourceName); // static Resource* Create(std::string resourceName);
@@ -49,15 +33,6 @@ public:
unsigned int ResourceID; unsigned int ResourceID;
}; };
//Any class inheriting from this class will always be loaded on the master thread, not on a parallel worker thread.
//This is important in case some instructions must be executed on the main thread, e.g. OpenGL commands, like glBindBuffer.
//This resource can still be loaded asyncronously, but it will not be loaded in a thread, instead it's constructor will
//be called once on every ResourceManager::Load, just throw StillLoadingException in the constructor if it is not done yet.
class ThreadUnsafeResource : public Resource
{
friend class ResourceManager;
};
/** Singleton resource manager to keep track of and cache any external engine assets */ /** Singleton resource manager to keep track of and cache any external engine assets */
class ResourceManager class ResourceManager
{ {
@@ -65,7 +40,6 @@ private:
ResourceManager(); ResourceManager();
public: public:
static bool UseThreading;
/*static ResourceManager& Instance() /*static ResourceManager& Instance()
{ {
static ResourceManager s; static ResourceManager s;
@@ -75,6 +49,15 @@ public:
template <typename T> template <typename T>
static void RegisterType(std::string typeName); static void RegisterType(std::string typeName);
/** Preloads a resource and caches it for future use
@tparam T Resource type.
@param resourceName Fully qualified name of the resource to preload.
*/
template <typename T>
static void Preload(std::string resourceName);
static void Preload(std::string resourceType, std::string resourceName);
/** Checks if a resource is in cache /** Checks if a resource is in cache
@param resourceType Resource type as string. @param resourceType Resource type as string.
@@ -82,20 +65,15 @@ public:
*/ */
// TODO: Templateify // TODO: Templateify
static bool IsResourceLoaded(std::string resourceType, std::string resourceName); static bool IsResourceLoaded(std::string resourceType, std::string resourceName);
/** Return value should always be a valid pointer, will throw an exception on error.
If the resource has been loaded already, returns a pointer to it.
If Async is false: Hot-loads a resource, caches it for future use, and returns a pointer to it. /** Hot-loads a resource and caches it for future use
If Async is true: If the resource is not loaded yet, starts loading the resource
in the background and throws Resource::StillLoadingException immediately.
@tparam T Resource type. @tparam T Resource type.
@tparam async Set this to true if the resource should be loaded asyncronously.
@param resourceName Fully qualified name of the resource to load. @param resourceName Fully qualified name of the resource to load.
*/ */
template <typename T, bool async = false> template <typename T>
static T* Load(const std::string& resourceName, Resource* parent = nullptr); static T* Load(std::string resourceName, Resource* parent = nullptr);
static Resource* Load(std::string resourceType, std::string resourceName, Resource* parent = nullptr);
/** Reloads an already loaded resource, keeping its resource ID intact. /** Reloads an already loaded resource, keeping its resource ID intact.
@@ -109,31 +87,19 @@ public:
static void Update(); static void Update();
private: private:
//This is a haxy way to make sure that IsMainThread is run when the program starts, so the master thread id is set.
struct MasterThreadChecker
{
MasterThreadChecker()
{
ResourceManager::IsMainThread();
}
};
const static MasterThreadChecker m_Checker;
static std::unordered_map<std::string, std::string> m_CompilerTypenameToResourceType; static std::unordered_map<std::string, std::string> m_CompilerTypenameToResourceType;
static std::unordered_map<std::string, std::function<Resource*(std::string)>> m_FactoryFunctions; // type -> factory function static std::unordered_map<std::string, std::function<Resource*(std::string)>> m_FactoryFunctions; // type -> factory function
static std::unordered_map<std::pair<std::string, std::string>, Resource*> m_ResourceCache; // (type, name) -> resource static std::unordered_map<std::pair<std::string, std::string>, Resource*> m_ResourceCache; // (type, name) -> resource
static std::unordered_map<std::string, Resource*> m_ResourceFromName; // name -> resource static std::unordered_map<std::string, Resource*> m_ResourceFromName; // name -> resource
static std::unordered_map<Resource*, Resource*> m_ResourceParents; // resource -> parent resource static std::unordered_map<Resource*, Resource*> m_ResourceParents; // resource -> parent resource
static std::unordered_map<std::pair<std::string, std::string>, boost::thread> m_LoadingThreads; // (type, name) -> loading thread
static std::unordered_map<std::pair<std::string, std::string>, std::exception_ptr> m_LoadingThreadExceptions; // (type, name) -> exceptions
static boost::recursive_mutex m_Mutex;
// TODO: Getters for IDs // TODO: Getters for IDs
static unsigned int m_CurrentResourceTypeID; static unsigned int m_CurrentResourceTypeID;
static std::unordered_map<std::string, unsigned int> m_ResourceTypeIDs; static std::unordered_map<std::string, unsigned int> m_ResourceTypeIDs;
// Number of resources of a type. Doubles as local ID. // Number of resources of a type. Doubles as local ID.
static std::unordered_map<unsigned int, unsigned int> m_ResourceCount; static std::unordered_map<unsigned int, unsigned int> m_ResourceCount;
// Flag to suppress hot-load warnings when a preloading resource chain loads another resource
static bool m_Preloading;
static FileWatcher m_FileWatcher; static FileWatcher m_FileWatcher;
static void fileWatcherCallback(std::string path, FileWatcher::FileEventFlags flags); static void fileWatcherCallback(std::string path, FileWatcher::FileEventFlags flags);
@@ -142,13 +108,22 @@ private:
static unsigned int GetNewResourceID(unsigned int typeID); static unsigned int GetNewResourceID(unsigned int typeID);
// Internal: Create a resource and cache it // Internal: Create a resource and cache it
static Resource* createResourceThrowing(const std::string& resourceType, const std::string& resourceName, Resource* parent); static Resource* CreateResource(std::string resourceType, std::string resourceName, Resource* parent);
static Resource* createResource(const std::string& resourceType, const std::string& resourceName, Resource* parent, std::exception_ptr& exception);
static Resource* cacheResource(Resource* resource, const std::string& resourceType, const std::string& resourceName, Resource* parent);
static bool IsMainThread();
}; };
template <typename T>
T* ResourceManager::Load(std::string resourceName, Resource* parent /* = nullptr */)
{
auto resourceTypename = typeid(T).name();
auto it = m_CompilerTypenameToResourceType.find(resourceTypename);
if (it == m_CompilerTypenameToResourceType.end()) {
LOG_ERROR("Failed to load resource \"%s\" of type \"%s\": type not registered", resourceName.c_str(), resourceTypename);
return nullptr;
}
return static_cast<T*>(Load(it->second, resourceName, parent));
}
template <typename T> template <typename T>
void ResourceManager::RegisterType(std::string typeName) void ResourceManager::RegisterType(std::string typeName)
{ {
@@ -156,88 +131,17 @@ void ResourceManager::RegisterType(std::string typeName)
m_FactoryFunctions[typeName] = [](std::string resourceName) { return new T(resourceName); }; m_FactoryFunctions[typeName] = [](std::string resourceName) { return new T(resourceName); };
} }
template <typename T, bool async> template <typename T>
static T* ResourceManager::Load(const std::string& resourceName, Resource* parent /* = nullptr */) void ResourceManager::Preload(std::string resourceName)
{ {
auto resourceTypename = typeid(T).name(); auto resourceTypename = typeid(T).name();
auto iter = m_CompilerTypenameToResourceType.find(resourceTypename); auto it = m_CompilerTypenameToResourceType.find(resourceTypename);
if (iter == m_CompilerTypenameToResourceType.end()) { if (it == m_CompilerTypenameToResourceType.end()) {
LOG_ERROR("Failed to load resource \"%s\" of type \"%s\": type not registered", resourceName.c_str(), resourceTypename); LOG_ERROR("Failed to load resource \"%s\" of type \"%s\": type not registered", resourceName.c_str(), resourceTypename);
throw Resource::FailedLoadingException(); return;
} }
std::string resourceType = iter->second; Preload(it->second, resourceName);
constexpr bool mustNotLoadInThread = std::is_base_of<ThreadUnsafeResource, T>::value;
if (mustNotLoadInThread && !IsMainThread()) {
LOG_ERROR("Failed to Load \"%s\": ThreadUnsafeResource type \"%s\" load in the constructor of another resource that is loaded asyncronously.", resourceName.c_str(), iter->second.c_str());
throw Resource::FailedLoadingException();
}
auto cacheKey = std::make_pair(resourceType, resourceName);
decltype(m_ResourceCache)::iterator it;
//If a thread has already been launched to load this resource.
auto tIt = m_LoadingThreads.find(cacheKey);
if (UseThreading && tIt != m_LoadingThreads.end()) {
if (async) {
//Throw StillLoadingException if the thread is still working.
if (!tIt->second.try_join_for(boost::chrono::nanoseconds(1))) {
throw Resource::StillLoadingException();
}
//Else we know the thread has completed.
} else {
//Wait for the thread to finish loading.
tIt->second.join();
}
//When the thread is done, delete the thread.
m_LoadingThreads.erase(tIt);
//Rethrow the thread exception if it threw any.
auto excIt = m_LoadingThreadExceptions.find(cacheKey);
std::exception_ptr exception = excIt->second;
m_LoadingThreadExceptions.erase(excIt);
if (exception) {
std::rethrow_exception(exception);
}
}
//If resource has already been cached and completely loaded.
{
boost::lock_guard<decltype(m_Mutex)> guard(m_Mutex);
it = m_ResourceCache.find(cacheKey);
if (it != m_ResourceCache.end()) {
if (it->second != nullptr) {
return static_cast<T*>(it->second);
} else {
//Don't return null on failure, exception instead.
throw Resource::FailedLoadingException();
}
}
}
//If resource is not cached..
if (UseThreading && async) {
if (mustNotLoadInThread) {
try {
return static_cast<T*>(createResourceThrowing(resourceType, resourceName, parent));
} catch (const Resource::StillLoadingException&) {
throw;
}
} else {
//Create a thread that loads the resource into cache.
m_LoadingThreads[cacheKey] = boost::thread(createResource, resourceType, resourceName, parent, m_LoadingThreadExceptions[cacheKey]);
throw Resource::StillLoadingException();
}
} else {
//load and return the resource.
while (true) {
try {
return static_cast<T*>(createResourceThrowing(resourceType, resourceName, parent));
} catch (const Resource::StillLoadingException&) {
continue;
} catch (const std::exception&) {
throw;
}
}
}
} }
#endif #endif
+7 -67
View File
@@ -3,83 +3,23 @@
#include "EventBroker.h" #include "EventBroker.h"
#include "World.h" #include "World.h"
#include "EntityWrapper.h"
#include "ComponentWrapper.h" #include "ComponentWrapper.h"
#include "EPlayerSpawned.h"
struct SystemParams
{
SystemParams(::World* World, ::EventBroker* EventBroker, bool IsClient, bool IsServer)
: World(World)
, EventBroker(EventBroker)
, IsClient(IsClient)
, IsServer(IsServer)
{ }
::World* World;
::EventBroker* EventBroker;
bool IsClient = false;
bool IsServer = false;
};
class System class System
{ {
friend class SystemPipeline; friend class SystemPipeline;
protected: public:
System(SystemParams params) System(EventBroker* eventBroker, std::string componentType)
: m_World(params.World) : m_EventBroker(eventBroker)
, m_EventBroker(params.EventBroker) , m_ComponentType(componentType)
, IsClient(params.IsClient)
, IsServer(params.IsServer)
{
if (IsClient) {
EVENT_SUBSCRIBE_MEMBER(m_EPlayerSpawned, &System::setLocalPlayer);
}
}
virtual ~System() = default;
World* m_World;
EventBroker* m_EventBroker;
bool IsClient = false;
bool IsServer = false;
EntityWrapper LocalPlayer = EntityWrapper::Invalid;
private:
EventRelay<System, Events::PlayerSpawned> m_EPlayerSpawned;
virtual bool setLocalPlayer(Events::PlayerSpawned& e)
{
if (e.PlayerID == -1) {
LocalPlayer = e.Player;
}
return true;
}
};
class PureSystem : public virtual System
{
friend class SystemPipeline;
protected:
PureSystem(std::string componentType)
: m_ComponentType(componentType)
{ } { }
virtual ~PureSystem() = default;
const std::string m_ComponentType; virtual void Update(World* world, ComponentWrapper& component, double dt) = 0;
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& cPlayer, double dt) = 0;
};
class ImpureSystem : public virtual System
{
friend class SystemPipeline;
protected: protected:
ImpureSystem() = default; std::string m_ComponentType;
virtual ~ImpureSystem() = default; EventBroker* m_EventBroker;
virtual void Update(double dt) = 0;
}; };
#endif #endif
+24 -97
View File
@@ -5,127 +5,54 @@
#include "EventBroker.h" #include "EventBroker.h"
#include "System.h" #include "System.h"
#include "World.h" #include "World.h"
#include "EPause.h"
#include "PerformanceTimer.h"
class SystemPipeline class SystemPipeline
{ {
public: public:
SystemPipeline(World* world, EventBroker* eventBroker, bool isClient, bool isServer) SystemPipeline(EventBroker* eventBroker)
: m_World(world) : m_EventBroker(eventBroker)
, m_EventBroker(eventBroker) { }
, m_IsClient(isClient)
, m_IsServer(isServer)
{
EVENT_SUBSCRIBE_MEMBER(m_EPause, &SystemPipeline::OnPause);
EVENT_SUBSCRIBE_MEMBER(m_EResume, &SystemPipeline::OnResume);
}
~SystemPipeline() ~SystemPipeline()
{ {
for (UnorderedSystems& group : m_OrderedSystemGroups) { for (auto& pair : m_Systems) {
for (auto& pair : group.Systems) { for (auto& system : pair.second) {
delete pair.second; delete system;
} }
} }
} }
template <typename T, typename... Arguments> template <typename T, typename... Arguments>
//All systems with orderlevel 0 will be updated first, then 1, 2, etc. void AddSystem(Arguments... args)
void AddSystem(int updateOrderLevel, Arguments... args)
{ {
if (updateOrderLevel + 1 > m_OrderedSystemGroups.size()) { System* system = new T(m_EventBroker, args...);
m_OrderedSystemGroups.resize(updateOrderLevel + 1); if (!system->m_ComponentType.empty()) {
} m_Systems[system->m_ComponentType].push_back(system);
UnorderedSystems& group = m_OrderedSystemGroups[updateOrderLevel]; } else {
System* system = new T(SystemParams(m_World, m_EventBroker, m_IsClient, m_IsServer), args...); LOG_ERROR("Failed to add system \"%s\": Missing component type!", typeid(T).name());
group.Systems[typeid(T).name()] = system; delete system;
PureSystem* pureSystem = dynamic_cast<PureSystem*>(system);
if (pureSystem != nullptr) {
if (!pureSystem->m_ComponentType.empty()) {
group.PureSystems[pureSystem->m_ComponentType].push_back(pureSystem);
} else {
LOG_ERROR("Failed to add pure system \"%s\": Missing component type!", typeid(T).name());
}
}
ImpureSystem* impureSystem = dynamic_cast<ImpureSystem*>(system);
if (impureSystem != nullptr) {
group.ImpureSystems.push_back(impureSystem);
} }
} }
void Update(double dt) void Update(World* world, double dt)
{ {
if (m_Paused) { for (auto& pair : m_Systems) {
dt = 0.0; const std::string& componentName = pair.first;
} auto& systems = pair.second;
const ComponentPool* pool = world->GetComponents(componentName);
// Process utility events for the System base class if (pool == nullptr) {
m_EventBroker->Process<System>(); continue;
for (UnorderedSystems& group : m_OrderedSystemGroups) {
// Process events
for (auto& pair : group.Systems) {
m_EventBroker->Process(pair.first);
} }
for (auto& component : *pool) {
// Update for (auto& system : systems) {
for (auto& system : group.ImpureSystems) { system->Update(world, component, dt);
auto className = (std::string)typeid(*system).name();
PerformanceTimer::StartTimer(className);
system->Update(dt);
PerformanceTimer::StopTimer(className);
}
for (auto& pair : group.PureSystems) {
const std::string& componentName = pair.first;
auto& systems = pair.second;
const ComponentPool* pool = m_World->GetComponents(componentName);
if (pool == nullptr) {
continue;
}
for (auto& component : *pool) {
for (auto& system : systems) {
auto className = (std::string)typeid(*system).name();
PerformanceTimer::StartTimer(className);
system->UpdateComponent(EntityWrapper(m_World, component.EntityID), component, dt);
PerformanceTimer::StopTimer(className);
}
} }
} }
} }
} }
private: private:
World* m_World;
EventBroker* m_EventBroker; EventBroker* m_EventBroker;
bool m_IsClient = false; std::unordered_map<std::string, std::vector<System*>> m_Systems;
bool m_IsServer = false;
bool m_Paused = false;
struct UnorderedSystems
{
std::map<std::string, System*> Systems;
std::map<std::string, std::vector<PureSystem*>> PureSystems;
std::vector<ImpureSystem*> ImpureSystems;
};
std::vector<UnorderedSystems> m_OrderedSystemGroups;
EventRelay<SystemPipeline, Events::Pause> m_EPause;
bool OnPause(const Events::Pause& e) {
if (e.World == m_World) {
m_Paused = true;
}
return true;
}
EventRelay<SystemPipeline, Events::Resume> m_EResume;
bool OnResume(const Events::Resume& e) {
if (e.World == m_World) {
m_Paused = false;
}
return true;
}
}; };
#endif #endif
-25
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@@ -1,25 +0,0 @@
#ifndef Transform_h__
#define Transform_h__
#include "../GLM.h"
#include "World.h"
#include "EntityWrapper.h"
namespace Transform
{
glm::mat4 AbsoluteTransformation(EntityWrapper entity);
glm::vec3 AbsolutePosition(EntityWrapper entity);
glm::vec3 AbsolutePosition(World* world, EntityID entity);
glm::vec3 AbsoluteOrientationEuler(EntityWrapper entity);
glm::quat AbsoluteOrientation(EntityWrapper entity);
glm::quat AbsoluteOrientation(World* world, EntityID entity);
glm::vec3 AbsoluteScale(EntityWrapper entity);
glm::vec3 AbsoluteScale(World* world, EntityID entity);
glm::mat4 ModelMatrix(EntityWrapper entity);
glm::mat4 ModelMatrix(EntityID entity, World* world);
glm::vec3 TransformPoint(const glm::vec3& point, const glm::mat4& matrix);
}
#endif
-22
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@@ -1,22 +0,0 @@
#ifndef UniformScaleSystem_h__
#define UniformScaleSystem_h__
#include "../GLM.h"
#include "System.h"
#include "../Rendering/ESetCamera.h"
class UniformScaleSystem : public PureSystem
{
public:
UniformScaleSystem(SystemParams params);
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& cUniformScale, double dt) override;
private:
EntityWrapper m_Camera = EntityWrapper::Invalid;
EventRelay<UniformScaleSystem, Events::SetCamera> m_ESetCamera;
bool OnSetCamera(const Events::SetCamera& e);
};
#endif
+3 -4
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@@ -2,7 +2,6 @@
#define Util_Any_h__ #define Util_Any_h__
#include <memory> #include <memory>
#include <boost/shared_array.hpp>
struct Any struct Any
{ {
@@ -11,7 +10,7 @@ struct Any
template <typename T> template <typename T>
Any(const T& value) Any(const T& value)
{ {
Data = boost::shared_array<char>(new char[sizeof(T)]); Data = std::shared_ptr<char>(new char[sizeof(T)]);
Size = sizeof(T); Size = sizeof(T);
memcpy(Data.get(), &value, Size); memcpy(Data.get(), &value, Size);
} }
@@ -19,7 +18,7 @@ struct Any
template <typename T> template <typename T>
Any(T&& value) Any(T&& value)
{ {
Data = boost::shared_array<char>(new char[sizeof(T)]); Data = std::shared_ptr<char>(new char[sizeof(T)]);
Size = sizeof(T); Size = sizeof(T);
memcpy(Data.get(), &value, Size); memcpy(Data.get(), &value, Size);
} }
@@ -36,7 +35,7 @@ struct Any
return Any(value); return Any(value);
} }
boost::shared_array<char> Data = nullptr; std::shared_ptr<char> Data = nullptr;
std::size_t Size = 0; std::size_t Size = 0;
}; };
+2 -2
View File
@@ -42,7 +42,7 @@ enum class FileWatcher::FileEventFlags
}; };
inline FileWatcher::FileEventFlags operator|(FileWatcher::FileEventFlags a, FileWatcher::FileEventFlags b) { return static_cast<FileWatcher::FileEventFlags>(static_cast<int>(a) | static_cast<int>(b)); } inline FileWatcher::FileEventFlags operator|(FileWatcher::FileEventFlags a, FileWatcher::FileEventFlags b) { return static_cast<FileWatcher::FileEventFlags>(static_cast<int>(a) | static_cast<int>(b)); }
inline bool operator&(FileWatcher::FileEventFlags a, FileWatcher::FileEventFlags b) { return (static_cast<int>(a) & static_cast<int>(b)) != 0; } inline bool operator&(FileWatcher::FileEventFlags a, FileWatcher::FileEventFlags b) { return static_cast<int>(a)& static_cast<int>(b); }
class FileWatcher::Worker class FileWatcher::Worker
{ {
@@ -54,7 +54,7 @@ public:
private: private:
struct FileInfo struct FileInfo
{ {
std::size_t Size; int Size;
std::time_t Timestamp; std::time_t Timestamp;
}; };
-12
View File
@@ -1,12 +0,0 @@
// Example:
// DEBUG_IF(condition) {
// // This code is executed only in debug mode and if condition is true.
// }
// NOTE: condition statement is not executed at all in release mode.
#ifndef DEBUG_IF
#ifdef DEBUG
#define DEBUG_IF(c) if(c)
#else
#define DEBUG_IF(c) if(false)
#endif
#endif
+34 -6
View File
@@ -29,9 +29,41 @@ enum _LOG_LEVEL
extern _LOG_LEVEL LOG_LEVEL; extern _LOG_LEVEL LOG_LEVEL;
extern const char* _LOG_LEVEL_PREFIX[]; const static char* _LOG_LEVEL_PREFIX[] =
{
"EE: ",
"",
"WW: ",
"DD: "
};
extern void _LOG(_LOG_LEVEL logLevel, const char* file, const char* func, unsigned int line, const char* format, ...); static void _LOG(_LOG_LEVEL logLevel, const char* file, const char* func, unsigned int line, const char* format, ...)
{
if (logLevel > LOG_LEVEL) {
return;
}
char* message = nullptr;
va_list args;
va_start(args, format);
size_t size = vsnprintf(message, 0, format, args) + 1;
va_end(args);
va_start(args, format);
message = new char[size];
vsnprintf(message, size, format, args);
va_end(args);
if (logLevel == LOG_LEVEL_ERROR) {
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;
}
delete[] message;
}
#define LOG(logLevel, format, ...) \ #define LOG(logLevel, format, ...) \
_LOG(logLevel, __BASE_FILE__, __func__, __LINE__, format, ##__VA_ARGS__) _LOG(logLevel, __BASE_FILE__, __func__, __LINE__, format, ##__VA_ARGS__)
@@ -45,11 +77,7 @@ extern void _LOG(_LOG_LEVEL logLevel, const char* file, const char* func, unsign
#define LOG_INFO(format, ...) \ #define LOG_INFO(format, ...) \
LOG(LOG_LEVEL_INFO, format, ##__VA_ARGS__) LOG(LOG_LEVEL_INFO, format, ##__VA_ARGS__)
#ifdef DEBUG
#define LOG_DEBUG(format, ...) \ #define LOG_DEBUG(format, ...) \
LOG(LOG_LEVEL_DEBUG, format, ##__VA_ARGS__) LOG(LOG_LEVEL_DEBUG, format, ##__VA_ARGS__)
#else
#define LOG_DEBUG(format, ...)
#endif
#endif // Logging_h__ #endif // Logging_h__
-46
View File
@@ -1,46 +0,0 @@
#ifndef Util_XercesString_h__
#define Util_XercesString_h__
#include <string>
#include <xercesc/util/XercesDefs.hpp>
#include <xercesc/util/XMLString.hpp>
namespace XS
{
class ToString
{
public:
ToString(const XMLCh* const str) { m_AsChar = xercesc::XMLString::transcode(str); }
~ToString()
{
if (m_AsChar != nullptr) {
xercesc::XMLString::release(&m_AsChar);
}
}
operator std::string() const { return std::string(m_AsChar); }
private:
char* m_AsChar = nullptr;
};
class ToXMLCh
{
public:
ToXMLCh(const std::string str) { m_Transcoded = xercesc::XMLString::transcode(str.c_str()); }
ToXMLCh(const char* str) { m_Transcoded = xercesc::XMLString::transcode(str); }
~ToXMLCh()
{
if (m_Transcoded != nullptr) {
xercesc::XMLString::release(&m_Transcoded);
}
}
operator const XMLCh*() const { return m_Transcoded; }
private:
XMLCh* m_Transcoded = nullptr;
};
}
#endif
+5 -33
View File
@@ -5,63 +5,35 @@
#include "Entity.h" #include "Entity.h"
#include "ObjectPool.h" #include "ObjectPool.h"
#include "ComponentPool.h" #include "ComponentPool.h"
#include "EventBroker.h"
class World class World
{ {
public: public:
World() = default; World() = default;
World(EventBroker* eventBroker)
: m_EventBroker(eventBroker)
{ }
~World(); ~World();
World(const World& other);
// Create empty entity // Create empty entity
EntityID CreateEntity(EntityID parent = 0); EntityID CreateEntity(EntityID parent = 0);
// Delete entity and all components within
void DeleteEntity(EntityID entity);
// Check if an entity exists
bool ValidEntity(EntityID entity) const;
// Register a component type and allocate space for it // Register a component type and allocate space for it
void RegisterComponent(ComponentInfo& ci); void RegisterComponent(ComponentInfo& ci);
// Attach a component to an entity and fill it with default values // Attach a component to an entity and fill it with default values
ComponentWrapper AttachComponent(EntityID entity, const std::string& componentType); ComponentWrapper AttachComponent(EntityID entity, std::string componentType);
// Check if an entity has a component
bool HasComponent(EntityID entity, const std::string& componentType) const;
// Get a component of an entity // Get a component of an entity
ComponentWrapper GetComponent(EntityID entity, const std::string& componentType); ComponentWrapper GetComponent(EntityID entity, std::string componentType);
// Delete a component off an entity
void DeleteComponent(EntityID entity, const std::string& componentType);
// Get all components of the specified type // Get all components of the specified type
const ComponentPool* GetComponents(const std::string& componentType); const ComponentPool* GetComponents(std::string componentType);
// Get entity parent // Get entity parent
EntityID GetParent(EntityID entity); EntityID GetParent(EntityID entity);
// Change the parent of an entity
void SetParent(EntityID entity, EntityID parent);
// Get children of an entity
const std::pair<std::unordered_multimap<EntityID, EntityID>::const_iterator, std::unordered_multimap<EntityID, EntityID>::const_iterator> GetChildren(EntityID entity);
// Get all component pools
const std::unordered_map<std::string, ComponentPool*>& GetComponentPools() const { return m_ComponentPools; }
// Get the entity children map
const std::unordered_multimap<EntityID, EntityID>& GetEntityChildren() const { return m_EntityChildren; }
// Set the textual name of an entity
void SetName(EntityID entity, const std::string& name);
// Get the textual name of an entity
std::string GetName(EntityID entity) const;
private: private:
EventBroker* m_EventBroker = nullptr; EntityID m_CurrentEntityID = 1;
EntityID m_CurrentEntityID = 0;
std::unordered_map<EntityID, EntityID> m_EntityParents; std::unordered_map<EntityID, EntityID> m_EntityParents;
// TODO: This should be a more effective structure
std::unordered_multimap<EntityID, EntityID> m_EntityChildren; std::unordered_multimap<EntityID, EntityID> m_EntityChildren;
std::unordered_map<std::string, ComponentPool*> m_ComponentPools; std::unordered_map<std::string, ComponentPool*> m_ComponentPools;
std::unordered_map<EntityID, std::string> m_EntityNames;
EntityID generateEntityID(); EntityID generateEntityID();
void deleteEntityRecursive(EntityID entity, bool cascaded = false);
}; };
#endif #endif
@@ -1,115 +0,0 @@
#ifndef EditorCameraInputController_h__
#define EditorCameraInputController_h__
#include <imgui/imgui.h>
#include "../Input/FirstPersonInputController.h"
#include "../Core/EMousePress.h"
#include "../Core/EMouseRelease.h"
#include "../Core/EMouseScroll.h"
#include "../Core/ConfigFile.h"
template <typename EventContext>
class EditorCameraInputController : public FirstPersonInputController<EventContext>
{
public:
EditorCameraInputController(EventBroker* eventBroker, unsigned int playerID)
: FirstPersonInputController(eventBroker, playerID)
{
EVENT_SUBSCRIBE_MEMBER(m_EMousePress, &EditorCameraInputController::OnMousePress);
EVENT_SUBSCRIBE_MEMBER(m_EMouseRelease, &EditorCameraInputController::OnMouseRelease);
EVENT_SUBSCRIBE_MEMBER(m_EMouseScroll, &EditorCameraInputController::OnMouseScroll);
m_Config = ResourceManager::Load<ConfigFile>("Config.ini");
m_SpeedMultiplier = m_Config->Get<float>("Editor.CameraSpeed", 3.f);
}
virtual const glm::vec3 Movement() const override { return m_Movement * static_cast<float>(m_SpeedMultiplier); }
void Enable() { m_Enabled = true; }
void Disable() { m_Enabled = false; }
virtual bool OnCommand(const Events::InputCommand& e) override
{
if (glm::abs(e.Value) > 0 && !m_MouseLocked) {
return false;
}
ImGuiIO& io = ImGui::GetIO();
if (glm::abs(e.Value) > 0 && (io.WantCaptureKeyboard || io.WantCaptureMouse)) {
return false;
}
if (e.Command == "Jump") {
if (e.Value > 0) {
m_Movement.y = glm::max(e.Value, 1.f);
} else {
m_Movement.y = 0.f;
}
}
if (e.Command == "Crouch") {
if (e.Value > 0) {
m_Movement.y = glm::min(-e.Value, -1.f);
} else {
m_Movement.y = 0.f;
}
}
if (e.Command == "Sprint") {
if (e.Value > 0) {
m_SpeedMultiplier *= 2.f;
} else {
m_SpeedMultiplier /= 2.f;
}
}
return FirstPersonInputController::OnCommand(e);
}
protected:
ConfigFile* m_Config;
bool m_Enabled = false;
double m_SpeedMultiplier = 1.f;
EventRelay<EventContext, Events::MousePress> m_EMousePress;
bool OnMousePress(const Events::MousePress& e)
{
if (!m_Enabled) {
return false;
}
if (e.Button == GLFW_MOUSE_BUTTON_2) {
ImGuiIO& io = ImGui::GetIO();
if (!io.WantCaptureMouse) {
LockMouse();
}
}
return true;
}
EventRelay<EventContext, Events::MouseRelease> m_EMouseRelease;
bool OnMouseRelease(const Events::MouseRelease& e)
{
if (!m_Enabled) {
return false;
}
if (e.Button == GLFW_MOUSE_BUTTON_2) {
UnlockMouse();
}
return true;
}
EventRelay<EventContext, Events::MouseScroll> m_EMouseScroll;
bool OnMouseScroll(const Events::MouseScroll& e)
{
if (!m_Enabled) {
return false;
}
m_SpeedMultiplier += e.DeltaY * (0.1 * m_SpeedMultiplier);
m_Config->Set("Editor.CameraSpeed", m_SpeedMultiplier);
m_Config->SaveToDisk();
return true;
}
};
#endif
-183
View File
@@ -1,183 +0,0 @@
#ifndef EditorGUI_h__
#define EditorGUI_h__
#include <imgui/imgui.h>
#define IMGUI_DEFINE_MATH_OPERATORS
#include <imgui/imgui_internal.h>
#include <nativefiledialog/nfd.h>
#include <boost/filesystem.hpp>
#include <boost/any.hpp>
#include <boost/algorithm/string/replace.hpp>
#include "../Common.h"
#include "../GLM.h"
#include <glm/gtx/common.hpp>
#include "EditorWidgetSystem.h"
#include "../Core/EventBroker.h"
#include "../Core/World.h"
#include "../Core/EntityWrapper.h"
#include "../Core/ResourceManager.h"
#include "../Core/EPause.h"
#include "../Core/EKeyDown.h"
#include "../Core/ELockMouse.h"
#include "../Core/EFileDropped.h"
#include "../Rendering/Texture.h"
class EditorGUI
{
public:
EditorGUI(World* world, EventBroker* eventBroker);
enum class WidgetMode
{
Translate,
Rotate,
Scale
};
enum class WidgetSpace
{
Global,
Local
};
void Draw();
void SelectEntity(EntityWrapper entity);
void SetDirty(EntityWrapper entity);
// Called when an entity is selected in the entity tree
typedef std::function<void(EntityWrapper)> OnEntitySelectedCallback_t;
void SetEntitySelectedCallback(OnEntitySelectedCallback_t f) { m_OnEntitySelected = f; }
// Called when the user means to import an entity file.
// @param EntityWrapper The entity to parent the imported entity to. The entity will be imported into the world of this entity.
// @param boost::filesystem::path The path to the entity to import
// @return EntityWrapper The newly created entity
typedef std::function<EntityWrapper(EntityWrapper, boost::filesystem::path)> OnEntityImport_t;
void SetEntityImportCallback(OnEntityImport_t f) { m_OnEntityImport = f; }
// Called when the user means to save an entity to file.
// Permitted to throw exceptions on save failure.
typedef std::function<void(EntityWrapper, boost::filesystem::path)> OnEntitySave_t;
void SetEntitySaveCallback(OnEntitySave_t f) { m_OnEntitySave = f; }
// Called when the user means to create a new entity.
// @param EntityWrapper The parent of the entity to be created
// @return EntityWrapper The newly created entity
typedef std::function<EntityWrapper(EntityWrapper)> OnEntityCreate_t;
void SetEntityCreateCallback(OnEntityCreate_t f) { m_OnEntityCreate = f; }
// Called when the user means to delete an entity.
typedef std::function<void(EntityWrapper)> OnEntityDelete_t;
void SetEntityDeleteCallback(OnEntityDelete_t f) { m_OnEntityDelete = f; }
// Called when the user means to change the parent of an entity.
typedef std::function<void(EntityWrapper, EntityWrapper)> OnEntityChangeParent_t;
void SetEntityChangeParentCallback(OnEntityChangeParent_t f) { m_OnEntityChangeParent = f; }
// Called when the user means to rename an entity.
typedef std::function<void(EntityWrapper, const std::string&)> OnEntityChangeName_t;
void SetEntityChangeNameCallback(OnEntityChangeName_t f) { m_OnEntityChangeName = f; }
// Called when the user means to attach a new component to an entity.
typedef std::function<void(EntityWrapper, const std::string&)> OnComponentAttach_t;
void SetComponentAttachCallback(OnComponentAttach_t f) { m_OnComponentAttach = f; }
// Called when the user means to delete a component off an entity.
typedef std::function<void(EntityWrapper, const std::string&)> OnComponentDelete_t;
void SetComponentDeleteCallback(OnComponentDelete_t f) { m_OnComponentDelete = f; }
// Called when the user selects a widget mode.
typedef std::function<void(WidgetMode)> OnWidgetMode_t;
void SetWidgetModeCallback(OnWidgetMode_t f) { m_OnWidgetMode = f; }
// Called when the user selects a widget space.
typedef std::function<void(WidgetSpace)> OnWidgetSpace_t;
void SetWidgetSpaceCallback(OnWidgetSpace_t f) { m_OnWidgetSpace = f; }
private:
World* m_World;
EventBroker* m_EventBroker;
struct EntityFileInfo
{
boost::filesystem::path Path;
bool Dirty = false;
};
// Config variables
const boost::filesystem::path m_DefaultEntityPath = boost::filesystem::path("Schema") / boost::filesystem::path("Entities");
// State
EntityWrapper m_CurrentSelection = EntityWrapper::Invalid;
std::unordered_map<EntityWrapper, EntityFileInfo> m_EntityFiles;
EntityWrapper m_CurrentlyDragging = EntityWrapper::Invalid;
std::string m_LastErrorMessage;
WidgetMode m_CurrentWidgetMode = WidgetMode::Translate;
WidgetSpace m_CurrentWidgetSpace = WidgetSpace::Global;
std::set<std::string> m_ModalsToOpen;
std::map<std::string, boost::any> m_ModalData;
std::string m_DroppedFile = "";
bool m_Paused = false;
bool m_MouseLocked = false;
// Callbacks
OnEntitySelectedCallback_t m_OnEntitySelected = nullptr;
OnEntityImport_t m_OnEntityImport = nullptr;
OnEntitySave_t m_OnEntitySave = nullptr;
OnEntityCreate_t m_OnEntityCreate = nullptr;
OnEntityDelete_t m_OnEntityDelete = nullptr;
OnEntityChangeParent_t m_OnEntityChangeParent = nullptr;
OnEntityChangeName_t m_OnEntityChangeName = nullptr;
OnComponentAttach_t m_OnComponentAttach = nullptr;
OnComponentDelete_t m_OnComponentDelete = nullptr;
OnWidgetMode_t m_OnWidgetMode = nullptr;
OnWidgetSpace_t m_OnWidgetSpace = nullptr;
// Events
EventRelay<EditorGUI, Events::KeyDown> m_EKeyDown;
bool OnKeyDown(const Events::KeyDown& e);
EventRelay<EditorGUI, Events::FileDropped> m_EFileDropped;
bool OnFileDropped(const Events::FileDropped& e);
EventRelay<EditorGUI, Events::Pause> m_EPause;
bool OnPause(const Events::Pause& e);
EventRelay<EditorGUI, Events::Resume> m_EResume;
bool OnResume(const Events::Resume& e);
EventRelay<EditorGUI, Events::LockMouse> m_ELockMouse;
bool OnLockMouse(const Events::LockMouse& e);
EventRelay<EditorGUI, Events::UnlockMouse> m_EUnlockMouse;
bool OnUnlockMouse(const Events::UnlockMouse& e);
// Utility functions
boost::filesystem::path fileOpenDialog();
boost::filesystem::path fileSaveDialog();
const std::string formatEntityName(EntityWrapper entity);
GLuint tryLoadTexture(std::string filePath);
void openModal(const std::string& modal);
void setWidgetMode(WidgetMode mode);
void toggleWidgetSpace();
static bool compareCharArray(const char* c1, const char* c2);
// Entity file handling methods
void entityImport(World* world);
void entitySave(EntityWrapper entity, bool saveAs = false);
void entityCreate(World* world, EntityWrapper parent);
void entityDelete(EntityWrapper entity);
void entityChangeParent(EntityWrapper entity, EntityWrapper parent);
// UI drawing methods
void drawMenu();
void drawTools();
void drawEntities(World* world);
void drawEntitiesRecursive(World* world, EntityID parent);
bool drawEntityNode(EntityWrapper entity);
void drawComponents(EntityWrapper entity);
bool drawComponentNode(EntityWrapper entity, const ComponentInfo& componentType);
bool drawComponentField(ComponentWrapper& c, const ComponentInfo::Field_t& field);
bool drawComponentField_Vector(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_Color(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_int(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_enum(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_float(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_double(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_bool(ComponentWrapper &c, const ComponentInfo::Field_t &field);
bool drawComponentField_string(ComponentWrapper &c, const ComponentInfo::Field_t &field);
void drawModals();
// Custom UI elements
bool createDeleteButton(const std::string& componentType);
void createWidgetToolButton(WidgetMode mode);
};
#endif
@@ -1,27 +0,0 @@
#ifndef EditorRenderSystem_h__
#define EditorRenderSystem_h__
#include "../Core/System.h"
#include "../Rendering/IRenderer.h"
#include "../Rendering/ModelJob.h"
#include "../Rendering/Camera.h"
#include "../Rendering/ESetCamera.h"
class EditorRenderSystem : public ImpureSystem
{
public:
EditorRenderSystem(SystemParams params, IRenderer* renderer, RenderFrame* renderFrame);
virtual void Update(double dt) override;
private:
IRenderer* m_Renderer;
RenderFrame* m_RenderFrame;
Camera* m_EditorCamera;
EntityWrapper m_CurrentCamera = EntityWrapper::Invalid;
EventRelay<EditorRenderSystem, Events::SetCamera> m_ESetCamera;
bool OnSetCamera(Events::SetCamera& e);
};
#endif
-29
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@@ -1,29 +0,0 @@
#include <numeric>
#include <iomanip>
#include <imgui/imgui.h>
#include "../Common.h"
#include "../GLM.h"
#include "../OpenGL.h"
class EditorStats
{
public:
EditorStats();
void Draw(double dt);
private:
// FPS graph
const unsigned int m_SampleSize = 100;
unsigned int m_FrameCount = 0;
std::vector<double> m_FrameTimes;
double m_TimeAccumulator = 0.0;
double m_AveragedSamplesPerSecond = 10.0;
const unsigned int m_AveragedSampleSize = 100;
unsigned int m_CurrentAveragedSampleIndex = 0;
std::vector<double> m_AveragedSamples;
void drawFPSGraph(double dt);
void drawRAMUsage(double dt);
void drawVRAMStats(double dt);
};
-72
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@@ -1,72 +0,0 @@
#include "../Core/System.h"
#include "../Rendering/IRenderer.h"
#include "../Rendering/Camera.h"
#include "../Rendering/ESetCamera.h"
#include "../Core/World.h"
#include "../Core/SystemPipeline.h"
#include "../Core/ResourceManager.h"
#include "../Core/EntityFilePreprocessor.h"
#include "../Core/EntityFileParser.h"
#include "../Core/EntityFileWriter.h"
#include "../Core/EMousePress.h"
#include "../Input/EInputCommand.h"
#include "EditorGUI.h"
#include "EditorStats.h"
#include "EditorCameraInputController.h"
class EditorSystem : public ImpureSystem
{
public:
EditorSystem(SystemParams params, IRenderer* renderer, RenderFrame* renderFrame);
~EditorSystem();
void Update(double dt);
void Enable();
void Disable();
private:
IRenderer* m_Renderer;
RenderFrame* m_RenderFrame;
World* m_EditorWorld;
SystemPipeline* m_EditorWorldSystemPipeline;
//Camera* m_EditorCamera;
EntityWrapper m_EditorCamera = EntityWrapper::Invalid;
EntityWrapper m_ActualCamera = EntityWrapper::Invalid;
EditorCameraInputController<EditorSystem>* m_EditorCameraInputController;
EditorGUI* m_EditorGUI;
EditorStats* m_EditorStats;
// State
double m_LastTime = 0.f;
bool m_Enabled = true;
EditorGUI::WidgetMode m_WidgetMode = EditorGUI::WidgetMode::Translate;
EditorGUI::WidgetSpace m_WidgetSpace = EditorGUI::WidgetSpace::Global;
EntityWrapper m_Widget = EntityWrapper::Invalid;
EntityWrapper m_CurrentSelection = EntityWrapper::Invalid;
// Utility functions
EntityWrapper importEntity(EntityWrapper parent, boost::filesystem::path filePath);
void setWidgetMode(EditorGUI::WidgetMode mode);
// GUI callbacks
void OnEntitySelected(EntityWrapper entity);
void OnEntitySave(EntityWrapper entity, boost::filesystem::path filePath);
EntityWrapper OnEntityCreate(EntityWrapper parent);
void OnEntityDelete(EntityWrapper entity);
void OnEntityChangeParent(EntityWrapper entity, EntityWrapper parent);
void OnEntityChangeName(EntityWrapper entity, const std::string& name);
void OnComponentAttach(EntityWrapper entity, const std::string& componentType);
void OnComponentDelete(EntityWrapper entity, const std::string& componentType);
void OnWidgetSpace(EditorGUI::WidgetSpace widgetSpace);
// Events
EventRelay<EditorSystem, Events::MousePress> m_EMousePress;
bool OnMousePress(const Events::MousePress& e);
EventRelay<EditorSystem, Events::WidgetDelta> m_EWidgetDelta;
bool OnWidgetDelta(const Events::WidgetDelta& e);
EventRelay<EditorSystem, Events::InputCommand> m_EInputCommand;
bool OnInputCommand(const Events::InputCommand& e);
EventRelay<EditorSystem, Events::SetCamera> m_ESetCamera;
bool OnSetCamera(const Events::SetCamera& e);
};
@@ -1,49 +0,0 @@
#ifndef EditorWidgetSystem_h__
#define EditorWidgetSystem_h__
#include <imgui/imgui.h>
#include "../GLM.h"
#include "../Core/System.h"
#include "../Rendering/IRenderer.h"
#include "../Rendering/Util/ScreenCoords.h"
#include "../Core/EMouseMove.h"
#include "../Core/EMousePress.h"
#include "../Core/EMouseRelease.h"
namespace Events
{
struct WidgetDelta : Event
{
glm::vec3 Translation;
glm::vec3 Rotation;
glm::vec3 Scale;
};
}
class EditorWidgetSystem : public ImpureSystem, PureSystem
{
public:
EditorWidgetSystem(SystemParams params, IRenderer* renderer);
virtual void Update(double dt) override;
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& cEditorWidget, double dt) override;
private:
IRenderer* m_Renderer;
// State
EntityWrapper m_PickEntity = EntityWrapper::Invalid;
PickData m_PickData;
glm::vec2 m_MouseDelta;
EventRelay<EditorWidgetSystem, Events::MouseMove> m_EMouseMove;
bool OnMouseMove(const Events::MouseMove& e);
EventRelay<EditorWidgetSystem, Events::MousePress> m_EMousePress;
bool OnMousePress(const Events::MousePress& e);
EventRelay<EditorWidgetSystem, Events::MouseRelease> m_EMouseRelease;
bool OnMouseRelease(const Events::MouseRelease& e);
};
#endif
+1 -2
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@@ -7,5 +7,4 @@
#include <glm/gtx/rotate_vector.hpp> #include <glm/gtx/rotate_vector.hpp>
#include <glm/gtc/quaternion.hpp> #include <glm/gtc/quaternion.hpp>
#include <glm/gtx/quaternion.hpp> #include <glm/gtx/quaternion.hpp>
#include <glm/gtc/type_ptr.hpp> #include <glm/gtc/type_ptr.hpp>
#include <glm/gtx/projection.hpp>
+165
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@@ -0,0 +1,165 @@
#ifndef GUI_BUTTON_H__
#define GUI_BUTTON_H__
#include "GUI/TextureFrame.h"
#include "GUI/EButtonEnter.h"
#include "GUI/EButtonLeave.h"
#include "GUI/EButtonPress.h"
#include "GUI/EButtonRelease.h"
#include "Core/EMouseMove.h"
#include "Core/EMousePress.h"
#include "Core/EMouseRelease.h"
namespace dd
{
namespace GUI
{
class Button : public TextureFrame
{
public:
Button(Frame* parent, std::string name)
: TextureFrame(parent, name)
{
EVENT_SUBSCRIBE_MEMBER(m_EMouseMove, &Button::OnMouseMove);
EVENT_SUBSCRIBE_MEMBER(m_EMousePress, &Button::OnMousePress);
EVENT_SUBSCRIBE_MEMBER(m_EMouseRelease, &Button::OnMouseRelease);
}
void SetTextureHover(std::string resourceName)
{
m_TextureHover = resourceName;
}
void SetTextureReleased(std::string resourceName)
{
m_TextureReleased = resourceName;
SetTexture(resourceName);
}
void SetTexturePressed(std::string resourceName)
{
m_TexturePressed = resourceName;
}
void Draw(RenderQueueCollection& rq) override
{
if (m_Texture == nullptr && !m_TextureReleased.empty()) {
SetTexture(m_TextureReleased);
}
TextureFrame::Draw(rq);
}
virtual void OnEnter() { }
virtual void OnLeave() { }
virtual void OnPress() { }
virtual void OnRelease() { }
protected:
bool m_MouseIsOver = false;
bool m_IsDown = false;
virtual bool OnMouseMove(const Events::MouseMove& event)
{
if (Hidden()) {
return false;
}
bool isOver = Rectangle::Intersects(AbsoluteRectangle(), Rectangle(event.X, event.Y, 1, 1));
if (isOver && !m_MouseIsOver) { // Enter
if (!m_IsDown) {
if (!m_TextureHover.empty()) {
SetTexture(m_TextureHover);
}
}
OnEnter();
Events::ButtonEnter e;
e.FrameName = m_Name;
EventBroker->Publish(e);
Events::PlaySound soundEvent;
soundEvent.FilePath = "Sounds/GUI/hover-n.wav";
EventBroker->Publish(soundEvent);
} else if (!isOver && m_MouseIsOver) { // Leave
if (!m_IsDown) {
if (!m_TextureReleased.empty()) {
SetTexture(m_TextureReleased);
}
}
OnLeave();
Events::ButtonLeave e;
e.FrameName = m_Name;
EventBroker->Publish(e);
}
m_MouseIsOver = isOver;
return true;
}
virtual bool OnMousePress(const Events::MousePress& event)
{
if (Hidden()) {
//LOG_DEBUG("Pressed hidden button");
return false;
}
if (!Rectangle::Intersects(AbsoluteRectangle(), Rectangle(event.X, event.Y, 1, 1))) {
return false;
}
if (!m_TexturePressed.empty()) {
SetTexture(m_TexturePressed);
}
m_IsDown = true;
OnPress();
Events::ButtonPress e;
e.FrameName = m_Name;
e.Button = this;
EventBroker->Publish(e);
return true;
}
virtual bool OnMouseRelease(const Events::MouseRelease& event)
{
if (Hidden()) {
//LOG_DEBUG("Released hidden button");
return false;
}
bool isOver = Rectangle::Intersects(AbsoluteRectangle(), Rectangle(event.X, event.Y, 1, 1));
if (!isOver && !m_IsDown) {
return false;
}
if (m_MouseIsOver) {
if (!m_TextureHover.empty()) {
SetTexture(m_TextureHover);
}
} else {
if (!m_TextureReleased.empty()) {
SetTexture(m_TextureReleased);
}
}
m_IsDown = false;
OnRelease();
Events::ButtonRelease e;
e.FrameName = m_Name;
e.Button = this;
EventBroker->Publish(e);
return true;
}
private:
EventRelay<Frame, Events::MouseMove> m_EMouseMove;
EventRelay<Frame, Events::MousePress> m_EMousePress;
EventRelay<Frame, Events::MouseRelease> m_EMouseRelease;
std::string m_TextureHover;
std::string m_TexturePressed;
std::string m_TextureReleased;
};
}
}
#endif
-44
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@@ -1,44 +0,0 @@
#ifndef ButtonSystem_h__
#define ButtonSystem_h__
#include "../Rendering/IRenderer.h"
#include "../Core/ConfigFile.h"
#include "../Rendering/PickingPass.h"
#include "../Core/ResourceManager.h"
#include "../Core/System.h"
#include "../Core/Event.h"
#include "../Core/EMousePress.h"
#include "../Core/EMouseRelease.h"
#include "../Core/ELockMouse.h"
#include "EButtonPressed.h"
#include "EButtonReleased.h"
#include "EButtonClicked.h"
class ButtonSystem : public PureSystem
{
public:
ButtonSystem(SystemParams params, IRenderer* renderer);
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& component, double dt) override;
private:
IRenderer* m_Renderer;
bool m_MouseIsLocked = false;
EntityWrapper m_PickEntity = EntityWrapper::Invalid;
PickData m_PickData;
EventRelay<ButtonSystem, Events::LockMouse> m_EMouseLock;
bool OnMouseLock(const Events::LockMouse& e);
EventRelay<ButtonSystem, Events::UnlockMouse> m_EMouseUnlock;
bool OnMouseUnlock(const Events::UnlockMouse& e);
EventRelay<ButtonSystem, Events::MousePress> m_EMousePress;
bool OnMousePress(const Events::MousePress& e);
EventRelay<ButtonSystem, Events::MouseRelease> m_EMouseRelease;
bool OnMouseRelease(const Events::MouseRelease& e);
};
#endif
-16
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@@ -1,16 +0,0 @@
#ifndef Events_ButtonClicked_h__
#define Events_ButtonClicked_h__
#include "Core/Event.h"
namespace Events
{
struct ButtonClicked : public Event {
std::string EntityName;
EntityWrapper Entity;
};
}
#endif
+17
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@@ -0,0 +1,17 @@
#ifndef Events_ButtonEnter_h__
#define Events_ButtonEnter_h__
#include "../Core/EventBroker.h"
namespace Events
{
/** Thrown on GUI button hover. */
struct ButtonEnter : Event
{
std::string FrameName;
};
}
#endif
+17
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@@ -0,0 +1,17 @@
#ifndef Events_ButtonLeave_h__
#define Events_ButtonLeave_h__
#include "../Core/EventBroker.h"
namespace Events
{
/** Thrown on GUI button hover. */
struct ButtonLeave : Event
{
std::string FrameName;
};
}
#endif
+20
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@@ -0,0 +1,20 @@
#ifndef Events_ButtonPress_h__
#define Events_ButtonPress_h__
#include "../Core/EventBroker.h"
namespace GUI { class Button; }
namespace Events
{
/** Thrown on GUI button press. */
struct ButtonPress : Event
{
std::string FrameName;
GUI::Button* Button;
};
}
#endif
-16
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@@ -1,16 +0,0 @@
#ifndef Events_ButtonPressed_h__
#define Events_ButtonPressed_h__
#include "Core/Event.h"
namespace Events
{
struct ButtonPressed : public Event {
std::string EntityName;
EntityWrapper Entity;
};
}
#endif
+20
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@@ -0,0 +1,20 @@
#ifndef Events_ButtonRelease_h__
#define Events_ButtonRelease_h__
#include "../Core/EventBroker.h"
namespace GUI { class Button; }
namespace Events
{
/** Thrown on GUI button release. */
struct ButtonRelease : Event
{
std::string FrameName;
GUI::Button* Button;
};
}
#endif
-16
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@@ -1,16 +0,0 @@
#ifndef Events_ButtonReleased_h__
#define Events_ButtonReleased_h__
#include "Core/Event.h"
namespace Events
{
struct ButtonReleased : public Event {
std::string EntityName;
EntityWrapper Entity;
};
}
#endif
+261
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@@ -0,0 +1,261 @@
#ifndef GUI_Frame_h__
#define GUI_Frame_h__
#include "../Common.h"
#include "../Core/Util/Rectangle.h"
#include "../Core/EventBroker.h"
#include "../Core/EKeyDown.h"
#include "../Core/EKeyUp.h"
#include "../Core/ResourceManager.h"
#include "../Rendering/RenderQueue.h"
#include "../Rendering/Texture.h"
#include "../Input/EInputCommand.h"
namespace GUI
{
class Frame : public Rectangle
{
public:
enum class Anchor
{
Left,
Right,
Top,
Bottom
};
static const int BaseWidth = 1280;
static const int BaseHeight = 720;
// Set up a base frame with an event broker
Frame(EventBroker* eventBroker)
: m_EventBroker(eventBroker)
, BaseFrame(this)
, m_Name("UIParent")
, Rectangle() { }
// Create a frame as a child
Frame(Frame* parent, std::string name)
: m_Name(name)
{
SetParent(parent);
Width = parent->Width;
Height = parent->Height;
EVENT_SUBSCRIBE_MEMBER(m_EKeyDown, &Frame::OnKeyDown);
EVENT_SUBSCRIBE_MEMBER(m_EKeyUp, &Frame::OnKeyUp);
EVENT_SUBSCRIBE_MEMBER(m_EInputCommand, &Frame::OnCommand);
}
~Frame()
{
/*for (auto layer : m_Children)
{
for (auto child : layer.second)
{
delete child.second;
}
}
if (m_Parent)
{
m_Parent->RemoveChild(this);
}*/
}
Frame* Parent() const { return m_Parent; }
void SetParent(Frame* parent)
{
if (parent == nullptr) {
LOG_ERROR("Failed to parent frame \"%s\": Invalid parent", m_Name.c_str());
return;
}
m_Layer = parent->Layer() + 1;
parent->AddChild(this);
m_Parent = parent;
m_EventBroker = parent->m_EventBroker;
BaseFrame = parent->BaseFrame;
}
void AddChild(Frame* child)
{
m_Children[child->m_Layer].insert(std::make_pair(child->Name(), child));
if (m_Parent) {
m_Parent->AddChild(child);
}
}
void RemoveChild(Frame* child)
{
auto it = m_Children.find(child->m_Layer);
if (it != m_Children.end()) {
m_Children.erase(it);
}
if (m_Parent) {
m_Parent->RemoveChild(child);
}
}
std::string Name() const { return m_Name; }
void SetName(std::string val) { m_Name = val; }
int Layer() const { return m_Layer; }
bool Hidden() const
{
if (m_Parent)
return m_Parent->Hidden() || m_Hidden;
else
return m_Hidden;
}
bool Visible() const
{
return !Hidden();
}
virtual void Hide() { m_Hidden = true; }
virtual void Show() { m_Hidden = false; }
int Left() const override
{
if (m_Parent)
return m_Parent->Left() + X;
else
return X;
}
void SetLeft(int absLeft) override
{
if (m_Parent) {
X = absLeft - m_Parent->Left();
} else {
X = absLeft;
}
}
int Right() const override
{
return Left() + Width;
}
void SetRight(int absRight) override
{
if (m_Parent) {
X = absRight - Width - m_Parent->Left();
} else {
X = absRight - Width;
}
}
int Top() const override
{
if (m_Parent)
return m_Parent->Top() + Y;
else
return Y;
}
void SetTop(int absTop) override
{
if (m_Parent) {
Y = absTop - m_Parent->Top();
} else {
Y = absTop;
}
}
int Bottom() const override
{
return Top() + Height;
}
void SetBottom(int absBottom) override
{
if (m_Parent) {
Y = absBottom - Height - m_Parent->Top();
} else {
Y = absBottom - Height;
}
}
glm::vec2 Scale()
{
if (m_Parent)
return m_Parent->Scale();
else
return glm::vec2(Width, Height) / glm::vec2(BaseWidth, BaseHeight);
}
Rectangle AbsoluteRectangle()
{
int left = Left();
if (m_Parent)
left = std::max(left, m_Parent->Left());
int top = Top();
if (m_Parent)
top = std::max(top, m_Parent->Top());
int width = Right() - left;
int height = Bottom() - top;
return Rectangle(left, top, width, height);
}
void UpdateLayered(double dt)
{
// Update ourselves
this->Update(dt);
// Update children
for (auto& pairLayer : m_Children) {
auto children = pairLayer.second;
for (auto& pairChild : children) {
auto child = pairChild.second;
child->Update(dt);
}
}
}
virtual void Update(double dt) { }
void DrawLayered(RenderQueueCollection& rq)
{
if (this->Hidden())
return;
// Draw ourselves
this->Draw(rq);
// Draw children
for (auto& pairLayer : m_Children) {
auto children = pairLayer.second;
for (auto& pairChild : children) {
auto child = pairChild.second;
if (child->Hidden())
continue;
child->Draw(rq);
}
}
}
virtual void Draw(RenderQueueCollection& rq) { }
protected:
::EventBroker* m_EventBroker;
Frame* BaseFrame = nullptr;
std::string m_Name = "Unnamed";
int m_Layer = 0;
bool m_Hidden = false;
Frame* m_Parent = nullptr;
typedef std::multimap<std::string, Frame*> Children_t; // name -> frame
std::map<int, Children_t> m_Children; // layer -> Children_t
virtual bool OnKeyDown(const Events::KeyDown& event) { return false; }
virtual bool OnKeyUp(const Events::KeyUp& event) { return false; }
virtual bool OnCommand(const Events::InputCommand& event) { return false; }
private:
EventRelay<Frame, Events::KeyDown> m_EKeyDown;
EventRelay<Frame, Events::KeyUp> m_EKeyUp;
EventRelay<Frame, Events::InputCommand> m_EInputCommand;
};
}
#endif
-33
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@@ -1,33 +0,0 @@
#ifndef MainMenuSystem_h__
#define MainMenuSystem_h__
#include "../Core/System.h"
#include "../Rendering/IRenderer.h"
#include "../Core/ResourceManager.h"
#include "../Core/Event.h"
#include "EButtonClicked.h"
#include "EButtonPressed.h"
#include "EButtonReleased.h"
class MainMenuSystem : public ImpureSystem
{
public:
MainMenuSystem(SystemParams params, IRenderer* renderer);
virtual void Update(double dt) override;
private:
IRenderer* m_Renderer;
EventRelay<MainMenuSystem, Events::ButtonClicked> m_EClicked;
bool OnButtonClick(const Events::ButtonClicked& e);
EventRelay<MainMenuSystem, Events::ButtonReleased> m_EReleased;
bool OnButtonRelease(const Events::ButtonReleased& e);
EventRelay<MainMenuSystem, Events::ButtonPressed> m_EPressed;
bool OnButtonPress(const Events::ButtonPressed& e);
};
#endif
+111
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@@ -0,0 +1,111 @@
#ifndef GUI_TextureFrame_h__
#define GUI_TextureFrame_h__
#include "Frame.h"
#include "../Rendering/Texture.h"
namespace GUI
{
class TextureFrame : public Frame
{
public:
TextureFrame(Frame* parent, std::string name)
: Frame(parent, name) { }
void EnableScissor() { m_ScissorEnabled = true; }
void DisableScissor() { m_ScissorEnabled = false; }
void Draw(RenderQueueCollection& rq) override
{
if (m_Texture == nullptr)
return;
// Texture while fading
if (m_FadeTexture && m_CurrentFade < 1) {
FrameJob job;
job.Scissor = (m_ScissorEnabled) ? m_Parent->AbsoluteRectangle() : Rectangle();
job.Viewport = Rectangle(Left(), Top(), Width, Height);
job.TextureID = m_FadeTexture->ResourceID;
job.DiffuseTexture = m_FadeTexture;
job.Color = glm::vec4(m_Color.r, m_Color.g, m_Color.b, m_Color.a);
job.Name = Name();
rq.GUI.Add(job);
}
// Main texture
{
FrameJob job;
job.Scissor = (m_ScissorEnabled) ? m_Parent->AbsoluteRectangle() : Rectangle();
job.Viewport = Rectangle(Left(), Top(), Width, Height);
job.TextureID = m_Texture->ResourceID;
job.DiffuseTexture = m_Texture;
job.Color = glm::vec4(m_Color.r, m_Color.g, m_Color.b, m_Color.a * m_CurrentFade);
job.Name = Name();
rq.GUI.Add(job);
}
}
std::string Texture() const { return m_TextureName; }
void SetTexture(std::string resourceName)
{
if (resourceName.empty()) {
m_Texture = nullptr;
return;
}
m_Texture = ResourceManager::Load<Texture>(resourceName);
m_TextureName = resourceName;
if (m_Texture == nullptr) {
m_Texture = ResourceManager::Load<Texture>("Textures/Core/ErrorTexture.png");
}
SizeToTexture();
}
void SizeToTexture()
{
if (m_Texture != nullptr) {
this->Width = m_Texture->Width;
this->Height = m_Texture->Height;
}
}
void FadeToTexture(std::string resourceName, double duration)
{
m_FadeTexture = m_Texture;
SetTexture(resourceName);
m_FadeDuration = duration;
m_CurrentFade = 0.f;
}
void Update(double dt) override
{
if (m_CurrentFade < 1) {
m_CurrentFade += dt / m_FadeDuration;
if (m_CurrentFade > 1) {
m_FadeTexture = nullptr;
m_CurrentFade = 1;
m_FadeDuration = 0;
}
}
}
glm::vec4 Color() const { return m_Color; }
void SetColor(glm::vec4 val) { m_Color = val; }
protected:
bool m_ScissorEnabled = true;
Texture* m_Texture = nullptr;
std::string m_TextureName;
Texture* m_FadeTexture = nullptr;
glm::vec4 m_Color = glm::vec4(1.f, 1.f, 1.f, 1.f);
float m_FadeDuration = 0.f;
float m_CurrentFade = 1.f;
};
}
#endif
+1 -3
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@@ -2,7 +2,6 @@
#define Events_InputCommand_h__ #define Events_InputCommand_h__
#include "Core/EventBroker.h" #include "Core/EventBroker.h"
#include "Core/EntityWrapper.h"
namespace Events namespace Events
{ {
@@ -10,8 +9,7 @@ namespace Events
struct InputCommand : Event struct InputCommand : Event
{ {
/** Numerical ID of the player. */ /** Numerical ID of the player. */
int PlayerID; unsigned int PlayerID;
EntityWrapper Player;
/** The command that was sent. */ /** The command that was sent. */
std::string Command; std::string Command;
/** The value of the command. */ /** The value of the command. */
+47 -221
View File
@@ -4,241 +4,67 @@
#include "../GLM.h" #include "../GLM.h"
#include "../Core/InputController.h" #include "../Core/InputController.h"
#include "../Core/ELockMouse.h" #include "../Core/ELockMouse.h"
#include "../Game/Events/EDashAbility.h"
#include "InputHandler.h"
template <typename EventContext> template <typename EventContext>
class FirstPersonInputController : public InputController<EventContext> class FirstPersonInputController : public InputController<EventContext>
{ {
public: public:
FirstPersonInputController(EventBroker* eventBroker, int playerID); FirstPersonInputController(EventBroker* eventBroker, unsigned int playerID)
: InputController(eventBroker)
virtual const glm::vec3 Movement() const { return m_Movement; } , m_PlayerID(playerID)
virtual const glm::vec3 Rotation() const { return m_Rotation; } {
virtual bool Jumping() const { return m_Jumping; } EVENT_SUBSCRIBE_MEMBER(m_ELockMouse, &FirstPersonInputController::OnLockMouse);
virtual bool Crouching() const { return m_Crouching; } EVENT_SUBSCRIBE_MEMBER(m_EUnlockMouse, &FirstPersonInputController::OnUnlockMouse);
virtual bool DoubleJumping() const { return m_DoubleJumping; }
virtual void SetDoubleJumping(bool isDoubleJumping) {
m_DoubleJumping = isDoubleJumping;
} }
void LockMouse(); const glm::quat Orientation() const { return m_Orientation; }
void UnlockMouse();
virtual bool OnCommand(const Events::InputCommand& e) override; void LockMouse()
virtual void Reset(); {
Events::LockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = true;
}
void AssaultDashCheck(double dt, bool isJumping, double assaultDashCoolDownMaxTimer); void UnlockMouse()
virtual bool AssaultDashDoubleTapped() const { return m_AssaultDashDoubleTapped; } {
virtual bool PlayerIsDashing() const { return m_PlayerIsDashing; } Events::UnlockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = false;
}
protected: virtual bool OnCommand(const Events::InputCommand& e) override
const int m_PlayerID; {
bool m_MouseLocked = false; if (m_PlayerID != e.PlayerID) {
glm::vec3 m_Rotation; return false;
glm::vec3 m_Movement; }
bool m_Jumping = false;
bool m_DoubleJumping = false;
bool m_Crouching = false;
//assault dash membervariables - needed to calculate the doubletap- and dashlogic
double m_AssaultDashDoubleTapDeltaTime = 0.0;
double m_AssaultDashCoolDownTimer = 0.0;
//i will let m_AssaultDashDoubleTapSensitivityTimer stay hardcoded, its not really a gamevariable (more an inputvariable),
//and its very unlikely that someone wants to change that value
const float m_AssaultDashDoubleTapSensitivityTimer = 0.25f;
std::string m_AssaultDashTapDirection = "";
std::string m_CurrentDirectionVector = "";
bool m_AssaultDashDoubleTapped = false;
bool m_PlayerIsDashing = false;
bool m_ShiftDashing = false;
bool m_ValidDoubleTap = false;
//specialabilitys if (m_MouseLocked) {
bool m_MovementKeyDown = false; if (e.Command == "Pitch") {
bool m_SpecialAbilityKeyDown = false; float val = glm::radians(e.Value);
int m_NumberOfMovementKeysDown = 0; m_Orientation = m_Orientation * glm::angleAxis<float>(-val, glm::vec3(1, 0, 0));
return true;
}
EventRelay<EventContext, Events::LockMouse> m_ELockMouse; if (e.Command == "Yaw") {
bool OnLockMouse(const Events::LockMouse& e); float val = glm::radians(e.Value);
EventRelay<EventContext, Events::UnlockMouse> m_EUnlockMouse; m_Orientation = glm::angleAxis<float>(-val, glm::vec3(0, 1, 0)) * m_Orientation;
bool OnUnlockMouse(const Events::UnlockMouse& e); return true;
}; }
}
template <typename EventContext>
FirstPersonInputController<EventContext>::FirstPersonInputController(EventBroker* eventBroker, int playerID)
: InputController(eventBroker)
, m_PlayerID(playerID)
{
EVENT_SUBSCRIBE_MEMBER(m_ELockMouse, &FirstPersonInputController::OnLockMouse);
EVENT_SUBSCRIBE_MEMBER(m_EUnlockMouse, &FirstPersonInputController::OnUnlockMouse);
}
template <typename EventContext>
void FirstPersonInputController<EventContext>::Reset()
{
m_Rotation = glm::vec3(0.f, 0.f, 0.f);
m_Jumping = false;
}
template <typename EventContext>
void FirstPersonInputController<EventContext>::LockMouse()
{
Events::LockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = true;
}
template <typename EventContext>
void FirstPersonInputController<EventContext>::UnlockMouse()
{
Events::UnlockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = false;
}
template <typename EventContext>
bool FirstPersonInputController<EventContext>::OnCommand(const Events::InputCommand& e)
{
if (m_PlayerID != e.PlayerID) {
return false; return false;
} }
if (e.Command == "Pitch") { protected:
float val = glm::radians(e.Value); const unsigned int m_PlayerID;
m_Rotation.x += -val; glm::quat m_Orientation;
//m_Rotation.x = glm::clamp(m_Rotation.x, -glm::half_pi<float>(), glm::half_pi<float>()); bool m_MouseLocked = false;
}
EventRelay<EventContext, Events::LockMouse> m_ELockMouse;
if (e.Command == "Yaw") { bool OnLockMouse(const Events::LockMouse& e) { m_MouseLocked = true; return true; }
float val = glm::radians(e.Value); EventRelay<EventContext, Events::UnlockMouse> m_EUnlockMouse;
m_Rotation.y += -val; bool OnUnlockMouse(const Events::UnlockMouse& e) { m_MouseLocked = false; return true; }
} };
if (e.Command == "Forward" || e.Command == "Right") {
if (e.Command == "Forward") {
float val = glm::clamp(e.Value, -1.f, 1.f);
m_Movement.z = -val;
}
if (e.Command == "Right") {
float val = glm::clamp(e.Value, -1.f, 1.f);
m_Movement.x = val;
}
if (glm::length2(m_Movement) > 0) {
m_Movement = glm::normalize(m_Movement);
}
}
if (e.Command == "Forward" || e.Command == "Right") {
if (e.Value != 0) {
m_CurrentDirectionVector = e.Command == "Right" ? (e.Value > 0 ? "Right" : "Left") : (e.Value > 0 ? "Forward" : "Backward");
}
//if value = 0 then you have just released this key
if (e.Value != 0) {
m_NumberOfMovementKeysDown++;
m_MovementKeyDown = true;
//if you pressed the same key within m_AssaultDashDoubleTapSensitivityTimer then you have doubletapped it
if (m_AssaultDashDoubleTapDeltaTime < m_AssaultDashDoubleTapSensitivityTimer && m_AssaultDashTapDirection == m_CurrentDirectionVector) {
m_ValidDoubleTap = true;
}
} else {
//== 0
m_NumberOfMovementKeysDown--;
if (m_NumberOfMovementKeysDown == 0) {
m_MovementKeyDown = false;
}
//you have just released the key, store what key it was and reset the doubletap-sensitivity-timer
m_AssaultDashTapDirection = m_CurrentDirectionVector;
m_AssaultDashDoubleTapDeltaTime = 0.f;
}
}
if (e.Command == "Jump") {
m_Jumping = e.Value > 0;
}
if (e.Command == "Crouch") {
m_Crouching = e.Value > 0;
}
if (e.Command == "SpecialAbility") {
if (e.Value > 0) {
m_SpecialAbilityKeyDown = true;
} else {
m_SpecialAbilityKeyDown = false;
}
}
if (m_SpecialAbilityKeyDown && m_MovementKeyDown) {
m_ShiftDashing = true;
} else {
m_ShiftDashing = false;
}
return true;
}
template <typename EventContext>
bool FirstPersonInputController<EventContext>::OnUnlockMouse(const Events::UnlockMouse& e)
{
m_MouseLocked = false;
return true;
}
template <typename EventContext>
bool FirstPersonInputController<EventContext>::OnLockMouse(const Events::LockMouse& e)
{
m_MouseLocked = true;
return true;
}
template <typename EventContext>
void FirstPersonInputController<EventContext>::AssaultDashCheck(double dt, bool isJumping, double assaultDashCoolDownMaxTimer) {
m_AssaultDashDoubleTapDeltaTime += dt;
m_AssaultDashCoolDownTimer -= dt;
//cooldown = assaultDashCoolDownMaxTimer sec, pretend the dash lasts 0.25 sec (for friction to do its work)
if (m_AssaultDashCoolDownTimer > (assaultDashCoolDownMaxTimer - 0.25f)) {
m_PlayerIsDashing = true;
} else {
m_PlayerIsDashing = false;
}
//dashing with shift
if (m_ShiftDashing && m_AssaultDashCoolDownTimer <= 0.0f) {
//player is dashing with shift
//the wanted-direction is set in playermovement already so we dont need to check what direction we want to dash in!
m_AssaultDashCoolDownTimer = assaultDashCoolDownMaxTimer;
m_AssaultDashDoubleTapped = true;
m_AssaultDashDoubleTapDeltaTime = 0.f;
return;
}
//reset the DoubleTapped state in case we recently doubleTapped (doubletap will only happen during 1 frame)
if (m_AssaultDashDoubleTapped) {
m_AssaultDashDoubleTapped = false;
}
//dashing with doubletap - check if doubletap to dash enabled
if (!ResourceManager::Load<ConfigFile>("Input.ini")->Get<bool>("Keyboard.DoubleTapToDash", false)) {
return;
}
//check if we have received a valid doubletap
if (!m_ValidDoubleTap) {
return;
}
m_ValidDoubleTap = false;
if (!(m_AssaultDashCoolDownTimer <= 0.0f)) {
//if we cant dash at the moment, then just reset the tap-sensitivity-timer
m_AssaultDashDoubleTapDeltaTime = 0.f;
return;
}
//ok, we have a valid tap, lets do it
m_AssaultDashDoubleTapped = true;
m_AssaultDashDoubleTapDeltaTime = 0.f;
m_AssaultDashCoolDownTimer = assaultDashCoolDownMaxTimer;
Events::DashAbility e;
m_EventBroker->Publish(e);
}
#endif #endif
-1
View File
@@ -1,7 +1,6 @@
#ifndef InputProxy_h__ #ifndef InputProxy_h__
#define InputProxy_h__ #define InputProxy_h__
#include <boost/tokenizer.hpp>
#include "../Common.h" #include "../Common.h"
#include "../Core/ResourceManager.h" #include "../Core/ResourceManager.h"
#include "../Core/ConfigFile.h" #include "../Core/ConfigFile.h"
@@ -0,0 +1,40 @@
#ifndef XboxControllerInputHandler_h__
#define XboxControllerInputHandler_h__
#include "InputHandler.h"
#include "Core/EKeyDown.h"
#include "Core/EKeyUp.h"
struct _XINPUT_STATE;
typedef _XINPUT_STATE XINPUT_STATE;
class XboxControllerInputHandler : public InputHandler
{
public:
XboxControllerInputHandler(EventBroker* eventBroker, InputProxy* inputProxy);
bool BindOrigin(std::string origin, std::string command, float value) override;
void Update(double dt) override;
virtual float GetCommandValue(std::string command) override;
private:
std::unordered_map<std::string, int> m_OriginButtons;
std::unordered_map<std::string, int> m_OriginAxes;
std::unordered_map<int, std::tuple<std::string, float>> m_ButtonBindings; // GLFW_KEY... -> command string & value
std::unordered_map<int, std::tuple<std::string, float>> m_AxisBindings; // GLFW_KEY... -> command string & value
std::unordered_map<std::string, float> m_CommandValues;
static const short MAX_GAMEPADS = 4;
float getAxisValue(XINPUT_STATE& state, int axis);
//typedef std::array<float, static_cast<int>(Gamepad::Axis::LAST) + 1> GamepadAxisState;
//std::array<GamepadAxisState, MAX_GAMEPADS> m_CurrentGamepadAxisState;
//std::array<GamepadAxisState, MAX_GAMEPADS> m_LastGamepadAxisState;
//typedef std::array<bool, static_cast<int>(Gamepad::Button::LAST) + 1> GamepadButtonState;
//std::array<GamepadButtonState, MAX_GAMEPADS> m_CurrentGamepadButtonState;
//std::array<GamepadButtonState, MAX_GAMEPADS> m_LastGamepadButtonState;
};
#endif
+4 -108
View File
@@ -1,118 +1,14 @@
#ifndef Client_h__ #ifndef Client_h__
#define Client_h__ #define Client_h__
#include <string> #include <boost\asio.hpp>
#include <ctime>
#include <limits>
#include <queue>
#include <glm/common.hpp> class Client
#include <boost/asio.hpp>
#include <boost/shared_array.hpp>
#include "Network/Network.h"
#include "Network/MessageType.h"
#include "Network/PlayerDefinition.h"
#include "Network/UDPClient.h"
#include "Network/TCPClient.h"
#include "Network/SnapshotDefinitions.h"
#include "Core/World.h"
#include "Core/EventBroker.h"
#include "Core/ConfigFile.h"
#include "Input/EInputCommand.h"
#include "Core/EPlayerDamage.h"
#include "Network/EInterpolate.h"
#include "Network/SnapshotFilter.h"
#include "Core/EPlayerSpawned.h"
class Client : public Network
{ {
public: Client();
Client(World* world, EventBroker* eventBroker); ~Client();
Client(World* world, EventBroker* eventBroker, std::unique_ptr<SnapshotFilter> snapshotFilter);
~Client();
void Connect(std::string address, int port);
void Update() override;
std::vector<Events::PlayerSpawned> m_PlayerSpawnEvents;
void parseSpawnEvents();
// Save for children
std::unique_ptr<SnapshotFilter> m_SnapshotFilter = nullptr;
std::string m_Address;
int m_Port = 0;
// Sending message to server logic
size_t bytesRead = 0;
// Packet loss logic
PacketID m_PacketID = 0;
PacketID m_PreviousPacketID = 0;
PacketID m_SendPacketID = 0;
// Game logic
std::string m_PlayerName;
PlayerID m_PlayerID = -1;
bool m_IsConnected = false;
EntityWrapper m_LocalPlayer = EntityWrapper::Invalid;
// Server Client Lookup map
// Assumes that root node for client and server is EntityID 0.
// Don't Add items to these two maps with insert, use insertIntoServerClientMaps(EntityID, EntityID)!!!!
std::unordered_map<EntityID, EntityID> m_ServerIDToClientID;
std::unordered_map<EntityID, EntityID> m_ClientIDToServerID;
// Network logic
PlayerDefinition m_PlayerDefinitions[8];
SnapshotDefinitions m_NextSnapshot;
double m_DurationOfPingTime;
std::clock_t m_StartPingTime;
std::clock_t m_TimeSinceSentInputs;
unsigned int m_SendInputIntervalMs;
std::vector<Events::InputCommand> m_InputCommandBuffer;
// Private member functions
size_t receive(char* data);
void disconnect();
void parseMessageType(Packet& packet);
void updateFields(Packet& packet, const ComponentInfo& componentInfo, const EntityID& entityID);
SharedComponentWrapper createSharedComponent(Packet& packet, EntityID entityID, const ComponentInfo& componentInfo);
void ignoreFields(Packet& packet, const ComponentInfo& componentInfo);
void parseUDPConnect(Packet& packet);
void parseTCPConnect(Packet& packet);
void parsePlayerConnected(Packet& packet);
void parsePing();
void parseKick();
void parsePlayersSpawned(Packet& packet);
void parseEntityDeletion(Packet& packet);
void parseComponentDeletion(Packet& packet);
void InterpolateFields(Packet & packet, const ComponentInfo & componentInfo, const EntityID & entityID, const std::string & componentType);
void parseSnapshot(Packet& packet);
void identifyPacketLoss();
void hasServerTimedOut();
EntityID createPlayer();
void sendInputCommands();
void sendLocalPlayerTransform();
void becomePlayer();
// Mapping Logic
// Returns if local EntityID exist in map
bool clientServerMapsHasEntity(EntityID clientEntityID);
// Returns if server EntityID exist in map
bool serverClientMapsHasEntity(EntityID serverEntityID);
void insertIntoServerClientMaps(EntityID serverEntityID, EntityID clientEntityID);
void deleteFromServerClientMaps(EntityID serverEntityID, EntityID clientEntityID);
// Events
EventRelay<Client, Events::InputCommand> m_EInputCommand;
bool OnInputCommand(const Events::InputCommand& e);
EventRelay<Client, Events::PlayerDamage> m_EPlayerDamage;
bool OnPlayerDamage(const Events::PlayerDamage& e);
EventRelay<Client, Events::PlayerSpawned> m_EPlayerSpawned;
bool OnPlayerSpawned(const Events::PlayerSpawned& e);
void parsePlayerDamage(Packet& packet);
private:
UDPClient m_Unreliable;
TCPClient m_Reliable;
}; };
#endif #endif
-25
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@@ -1,25 +0,0 @@
#ifndef Events_Interpolate_h__
#define Events_Interpolate_h__
#include <boost/shared_array.hpp>
#include "Core/EventBroker.h"
#include "Core/Entity.h"
namespace Events
{
struct Interpolate : Event
{
Interpolate(EntityWrapper Entity, SharedComponentWrapper Component)
: Entity(Entity)
, Component(Component)
{ }
EntityWrapper Entity;
SharedComponentWrapper Component;
};
}
#endif
@@ -1,18 +0,0 @@
#ifndef Events_PlayerDisconnected
#define Events_PlayerDisconnected
#include "Core/EventBroker.h"
#include "Core/Entity.h"
namespace Events
{
struct PlayerDisconnected : public Event
{
unsigned int PlayerID;
EntityID Entity;
};
}
#endif
-13
View File
@@ -1,13 +0,0 @@
#ifndef HybridClient_h__
#define HybridClient_h__
class HybridClient
{
public:
HybridClient();
~HybridClient();
private:
};
#endif
-12
View File
@@ -1,12 +0,0 @@
#ifndef HybridServer_h__
#define HybridServer_h__
class HybridServer
{
public:
HybridServer();
~HybridServer();
private:
};
#endif
-25
View File
@@ -1,25 +0,0 @@
#ifndef MessageType_h__
#define MessageType_h__
// Message types used by both server and client.
// Used to determine what type of message was sent.
enum class MessageType
{
Connect,
Disconnect,
Ping,
Message,
Snapshot,
OnInputCommand,
OnPlayerDamage,
PlayerConnected,
BecomePlayer,
Kick,
OnPlayerSpawned,
EntityDeleted,
ComponentDeleted,
PlayerTransform,
Invalid
};
#endif
-44
View File
@@ -1,44 +0,0 @@
#ifndef Network_h__
#define Network_h__
#include <ctime>
#include "Core/World.h"
#include "Core/EventBroker.h"
#include "Network/Packet.h"
#include "Network/NetworkData.h"
#include "Core/ResourceManager.h"
#include "Core/ConfigFile.h"
#include <fstream>
#include <iostream>
#define BUFFERSIZE 32000
typedef unsigned int PlayerID;
typedef unsigned int PacketID;
class Network
{
public:
Network(World* world, EventBroker* eventBroker);
virtual ~Network() { };
virtual void Update() = 0;
protected:
World* m_World;
EventBroker* m_EventBroker;
// For Debug
bool isReadingData = false;
NetworkData m_NetworkData;
unsigned int m_SaveDataIntervalMs = 1000;
std::clock_t m_SaveDataTimer;
unsigned int m_MaxConnections;
double m_TimeoutMs;
void logSentData(int bytesSent);
void logReceivedData(int bytesReceived);
void saveToFile();
void updateNetworkData();
};
#endif
-21
View File
@@ -1,21 +0,0 @@
#ifndef NetworkClient_h__
#define NetworkClient_h__
#include "Network/Packet.h"
#define BUFFERSIZE 64000
typedef unsigned int PlayerID;
typedef unsigned int PacketID;
class NetworkClient
{
public:
virtual void Connect(std::string playerName, std::string address, int port) = 0;
virtual void Disconnect() = 0;
virtual void Receive(Packet& packet) = 0;
virtual void Send(Packet & packet) = 0;
virtual bool IsSocketAvailable() = 0;
protected:
char m_ReadBuffer[BUFFERSIZE] = { 0 };
};
#endif
-18
View File
@@ -1,18 +0,0 @@
#ifndef NetworkData_h__
#define NetworkData_h__
#include <vector>
struct NetworkData {
double TotalTime = 0;
size_t TotalDataReceived = 0;
size_t TotalDataSent = 0;
size_t AmountOfMessagesReceived = 0;
unsigned int AmountOfMessagesSent = 0;
// Interval based
size_t DataReceivedThisInterval = 0;
size_t DataSentThisInterval = 0;
// pair: first=reveived, second=send
std::vector<std::pair<size_t, size_t>> BandwidthBytes;
};
#endif
-21
View File
@@ -1,21 +0,0 @@
#ifndef NetworkServer_h__
#define NetworkServer_h__
#include <boost/asio.hpp>
#include "Network/Packet.h"
#include "Network/PlayerDefinition.h"
#define BUFFERSIZE 64000
typedef unsigned int PlayerID;
typedef unsigned int PacketID;
class NetworkServer
{
public:
virtual void AcceptNewConnections(int& nextPlayerID, std::map<PlayerID, PlayerDefinition>& connectedPlayers) = 0;
virtual void Receive(Packet & packet, PlayerDefinition & playerDefinition) = 0;
virtual void Send(Packet & packet, PlayerDefinition & playerDefinition) = 0;
virtual void Send(Packet & packet) = 0;
protected:
char m_ReadBuffer[BUFFERSIZE] = { 0 };
};
#endif
-75
View File
@@ -1,75 +0,0 @@
#ifndef Packet_h__
#define Packet_h__
#include <string>
#include "Network/MessageType.h"
#include "Core/Util/Logging.h"
// Defines the
class Packet
{
public:
// arg1: Type of message (Connect, Disconnect...)
// arg2: PacketID for identifying packet loss.
Packet(MessageType type, unsigned int& packetID);
// Used to create packet from already existing data buffer.
Packet(char* data, const size_t sizeOfPacket);
Packet(MessageType type);
~Packet();
void Init(MessageType type, unsigned int& packetID);
// Add primitive types like int, float, char...
template<typename T>
void WritePrimitive(T val)
{
// Check if we are trying to add more than the package can fit.
if (m_MaxPacketSize < m_Offset + sizeof(T)) {
LOG_WARNING("Packet AddPrimitive(): You are trying to add more than we have allocated for! New size is %i bytes\n", m_MaxPacketSize*2);
resizeData();
}
memcpy(m_Data + m_Offset, &val, sizeof(T));
m_Offset += sizeof(T);
}
// Pops the first element as if it was a primitive.
template<typename T>
T ReadPrimitive()
{
if (m_Offset < m_ReturnDataOffset + sizeof(T)) {
LOG_WARNING("Packet PopFrontPrimitive(): You are trying to remove more than what exists in this packet!");
return -1;
}
T returnValue;
memcpy(&returnValue, m_Data + m_ReturnDataOffset, sizeof(T));
m_ReturnDataOffset += sizeof(T);
return returnValue;
}
// Add a string to the message
void WriteString(const std::string& str);
// Add data to the message
void WriteData(char* data, int sizeOfData);
// Pops the first element as if it was a string.
std::string ReadString();
// Construct a packet
void ReconstructFromData(char* data, size_t SizeOfData);
// Update size of packet variable in header
void UpdateSize();
char* ReadData(int SizeOfData);
void ChangePacketID(unsigned int& packetID);
size_t Size() { return m_Offset; };
char* Data() { return m_Data; };
MessageType GetMessageType();
size_t DataReadSize() { return m_ReturnDataOffset; }
size_t MaxSize() { return m_MaxPacketSize; }
size_t HeaderSize() { return m_HeaderSize; }
private:
char* m_Data;
size_t m_ReturnDataOffset = 0;
size_t m_Offset = 0;
size_t m_MaxPacketSize = 512;
size_t m_HeaderSize = 0;
void resizeData();
void resizeData(int size);
};
#endif
-19
View File
@@ -1,19 +0,0 @@
#ifndef PlayerDefinition_h__
#define PlayerDefinition_h__
#include <string>
#include "../Core/Entity.h"
#include <boost/asio.hpp>
struct PlayerDefinition {
::EntityID EntityID = EntityID_Invalid;
std::string Name = "";
boost::asio::ip::udp::endpoint Endpoint;
unsigned int PacketID;
std::clock_t StopTime;
boost::asio::ip::address TCPAddress;
unsigned short TCPPort;
// use for tcp connections
boost::shared_ptr<boost::asio::ip::tcp::socket> TCPSocket;
};
#endif
+4 -91
View File
@@ -1,99 +1,12 @@
#ifndef Server_h__ #ifndef Server_h__
#define Server_h__ #define Server_h__
#include <string> #include <boost\asio.hpp>
#include <ctime>
#include <glm/common.hpp> class Server
#include "Network/TCPServer.h"
#include "Network/UDPServer.h"
#include "Network/MessageType.h"
#include "Network/PlayerDefinition.h"
#include "Core/World.h"
#include "Core/EventBroker.h"
#include "../Network/Network.h"
#include "Input/EInputCommand.h"
#include "Core/EPlayerDamage.h"
#include "Network/EPlayerDisconnected.h"
#include "Core/EPlayerSpawned.h"
#include "Core/EEntityDeleted.h"
#include "Core/EComponentDeleted.h"
class Server : public Network
{ {
public: Server();
Server(World* world, EventBroker* eventBroker, int port); ~Server();
~Server();
void Update() override;
private:
// Network channels
TCPServer m_Reliable;
UDPServer m_Unreliable;
// dont forget to set these in the childrens receive logic
boost::asio::ip::address m_Address;
int m_Port = 27666;
// Sending messages to client logic
std::map<PlayerID, PlayerDefinition> m_ConnectedPlayers;
std::vector<PlayerID> m_PlayersToDisconnect;
// HACK: Fix INPUTSIZE
char readBuffer[BUFFERSIZE] = { 0 };
size_t bytesRead = 0;
// time for previouse message
std::clock_t previousePingMessage = std::clock();
std::clock_t previousSnapshotMessage = std::clock();
std::clock_t timOutTimer = std::clock();
// How often we send messages (milliseconds)
float pingIntervalMs;
float snapshotInterval;
int checkTimeOutInterval = 100;
int m_NextPlayerID = 0;
std::vector<Events::InputCommand> m_InputCommandsToBroadcast;
//Timers
std::clock_t m_StartPingTime;
// Packet loss logic
PacketID m_PacketID = 0;
PacketID m_PreviousPacketID = 0;
// Private member functions
//int receive(char* data);
void reliableBroadcast(Packet& packet);
void unreliableBroadcast(Packet& packet);
void sendSnapshot();
void addChildrenToPacket(Packet& packet, EntityID entityID);
void addInputCommandsToPacket(Packet& packet);
void sendPing();
void checkForTimeOuts();
void disconnect(PlayerID playerID);
void parseMessageType(Packet& packet);
void parseOnPlayerDamage(Packet& packet);
void identifyPacketLoss();
void kick(PlayerID player);
PlayerID GetPlayerIDFromEndpoint();
void parsePlayerTransform(Packet& packet);
void parseOnInputCommand(Packet& packet);
void parseClientPing();
void parsePing();
void parseUDPConnect(Packet & packet);
void parseTCPConnect(Packet & packet);
void parseDisconnect();
bool shouldSendToClient(EntityWrapper childEntity);
// Debug event
EventRelay<Server, Events::InputCommand> m_EInputCommand;
bool OnInputCommand(const Events::InputCommand& e);
EventRelay<Server, Events::PlayerSpawned> m_EPlayerSpawned;
bool OnPlayerSpawned(const Events::PlayerSpawned& e);
EventRelay<Server, Events::EntityDeleted> m_EEntityDeleted;
bool OnEntityDeleted(const Events::EntityDeleted& e);
EventRelay<Server, Events::ComponentDeleted> m_EComponentDeleted;
bool OnComponentDeleted(const Events::ComponentDeleted& e);
EventRelay<Server, Events::PlayerDamage> m_EPlayerDamage;
bool OnPlayerDamage(const Events::PlayerDamage& e);
}; };
#endif #endif
@@ -1,12 +0,0 @@
#ifndef SnapshotDefinitions_h__
#define SnapshotDefinitions_h__
struct SnapshotDefinitions
{
// "+Forward" is 8 characters * sizeof(char) = 8
std::string InputForward;
// "+Right" is 6 characters * sizeof(char) = 6
std::string InputRight;
};
#endif
-19
View File
@@ -1,19 +0,0 @@
#ifndef SnapshotFilter_h__
#define SnapshotFilter_h__
#include "../Core/EntityWrapper.h"
#include "../Core/ComponentWrapper.h"
class SnapshotFilter
{
public:
// Filters an incoming snapshot.
// Modify the component and return true if the component snapshot should be applied.
// Otherwise return false and it will be ignored.
virtual bool FilterComponent(EntityWrapper entity, SharedComponentWrapper& component)
{
return true;
}
};
#endif
-28
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@@ -1,28 +0,0 @@
#ifndef TCPClient_h__
#define TCPClient_h__
#include <boost/asio.hpp>
#include "NetworkClient.h"
class TCPClient : public NetworkClient
{
public:
TCPClient();
~TCPClient();
void Connect(std::string playerName, std::string address, int port);
void Disconnect();
void Receive(Packet& packet);
void Send(Packet & packet);
bool IsSocketAvailable();
private:
// Assio TCP logic
boost::asio::ip::tcp::endpoint m_Endpoint;
boost::asio::io_service m_IOService;
std::unique_ptr<boost::asio::ip::tcp::socket> m_Socket;
size_t readBuffer(char* data);
PacketID m_SendPacketID = 0;
bool m_IsConnected = false;
};
#endif

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