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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
690 changed files with 3374 additions and 143373 deletions
-11
View File
@@ -4,14 +4,3 @@ bin/
lib/
# Because apparently nobody has any self control
*.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)
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()
#set(BUILD_SHARED_LIBS FALSE)
@@ -37,12 +34,6 @@ foreach(OUTPUTCONFIG ${CMAKE_CONFIGURATION_TYPES})
set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY_${OUTPUTCONFIG} ${CMAKE_ARCHIVE_OUTPUT_DIRECTORY})
endforeach(OUTPUTCONFIG CMAKE_CONFIGURATION_TYPES)
# DEBUG definition
set_property(DIRECTORY APPEND PROPERTY COMPILE_DEFINITIONS
$<$<CONFIG:Debug>:DEBUG>
$<$<CONFIG:RelWithDebInfo>:DEBUG>
)
include(cotire)
add_subdirectory(src/Engine)
add_subdirectory(src/Game)
+10 -13
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@@ -1,22 +1,19 @@
#### Bundled libraries
Libraries bundled along with binaries for Windows (MSVC14), available as a submodule in the *deps* directory of the source tree.
| Project | Version | License |
| ---------------------------------------------------------------- | ------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| **[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) |
| **[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) |
| **[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) |
| **[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)
| Project | Version | License |
| ------------------------------------------------------------- | ------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| **[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) |
| **[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) |
| **[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) |
| **[Xerces-C++](https://xerces.apache.org/xerces-c)** | 3.1.2 | [Apache License Version 2.0](https://www.apache.org/licenses/LICENSE-2.0) |
#### External libraries
Libraries that are too big to be bundled with the project.
| 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: 3af64d8b1f...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
@@ -1,30 +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;
std::unordered_map<EntityWrapper, glm::vec3> m_PrevPositions;
};
#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 <string>
#include <sstream>
#include <vector>
#include <map>
#include <unordered_map>
#include <algorithm>
#include <array>
#include "Core/Util/Logging.h"
#include "Core/Util/IfDebug.h"
#include "Core/Util/Logging.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__
#include "../Common.h"
#include <boost/shared_array.hpp>
struct ComponentInfo
{
typedef int EnumType;
struct Meta_t
{
std::string Annotation;
unsigned int Allocation = 0;
std::map<std::string, std::string> FieldAnnotations;
std::map<std::string, std::map<std::string, EnumType>> FieldEnumDefinitions;
bool NetworkReplicated = true;
unsigned int Stride = 0;
};
struct Field_t
{
std::string Name;
std::string Type;
unsigned int Offset;
unsigned int Stride;
};
std::string Name;
std::unordered_map<std::string, Field_t> Fields;
std::vector<std::string> FieldsInOrder;
std::vector<std::string> StringFields;
unsigned int Stride = 0;
boost::shared_array<char> Defaults = nullptr;
std::shared_ptr<Meta_t> Meta = nullptr;
std::unordered_map<std::string, std::string> FieldTypes;
std::unordered_map<std::string, unsigned int> FieldOffsets;
Meta_t Meta;
std::shared_ptr<char> Defaults = nullptr;
};
template<>
+3 -8
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@@ -1,7 +1,6 @@
#ifndef ComponentPool_h__
#define ComponentPool_h__
#include <set>
#include "MemoryPool.h"
#include "ComponentInfo.h"
#include "ComponentWrapper.h"
@@ -21,7 +20,7 @@ public:
~ComponentPoolForwardIterator() = default;
ComponentPoolForwardIterator& operator=(const ComponentPoolForwardIterator& other) = default;
ComponentPoolForwardIterator& operator++();
ComponentPoolForwardIterator operator++(int);
ComponentPoolForwardIterator& operator++(int);
bool operator!=(const ComponentPoolForwardIterator& other) const;
bool operator==(const ComponentPoolForwardIterator& other) const;
ComponentWrapper operator*() const;
@@ -44,10 +43,9 @@ public:
ComponentPool(const ::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);
ComponentPool(const ComponentPool& other) = delete;
ComponentPool(const ComponentPool&& other) = delete;
const ::ComponentInfo& ComponentInfo() const { return m_ComponentInfo; }
@@ -56,14 +54,11 @@ public:
ComponentWrapper Allocate(EntityID entity);
// Get the component belonging to a specific entity
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
void Delete(ComponentWrapper& wrapper);
iterator begin() const;
iterator end() const;
size_t size() const;
//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<<)
+25 -111
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@@ -1,30 +1,11 @@
#ifndef ComponentWrapper_h__
#define ComponentWrapper_h__
#include <boost/shared_array.hpp>
#include <boost/any.hpp>
#include "../Common.h"
#include "Entity.h"
#include "ComponentInfo.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
{
ComponentWrapper(const ComponentInfo& componentInfo, char* data)
@@ -37,61 +18,22 @@ struct ComponentWrapper
const ::EntityID EntityID;
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>
T& Field(std::string name)
{
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; }
void SetProperty(std::string name, const T value) { Property<T>(name) = value; }
//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
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
{
friend struct ComponentWrapper;
@@ -105,77 +47,49 @@ struct ComponentWrapper
std::string m_PropertyName;
public:
// Return the integer value of an enum type key for this field
ComponentInfo::EnumType Enum(const char* enumKey) { return m_Component->Enum(m_PropertyName.c_str(), enumKey); }
template <typename T>
operator T&() { return m_Component->Property<T>(m_PropertyName); }
template <typename T>
operator T&() { return m_Component->Field<T>(m_PropertyName); }
template <typename T>
void operator=(const T val) { m_Component->SetField<T>(m_PropertyName, val); }
void operator=(const T val) { m_Component->SetProperty<T>(m_PropertyName, val); }
// TODO: Pass by reference and rvalue (universal reference?)
//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
template <std::size_t N>
void operator=(const char(&val)[N]) { m_Component->SetField<N>(m_PropertyName, val); }
template<std::size_t N>
void operator=(const char(&val)[N]) { m_Component->SetProperty<N>(m_PropertyName, val); }
};
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
class ComponentWrapperFactory
{
public:
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.Meta = std::make_shared<ComponentInfo::Meta_t>();
m_ComponentInfo.Meta->Allocation = allocation;
m_ComponentInfo.Meta.Allocation = allocation;
}
template <typename T>
void AddProperty(std::string fieldName, T defaultValue)
{
auto& field = m_ComponentInfo.Fields[fieldName];
field.Name = fieldName;
field.Type = typeid(T).name();
field.Offset = m_ComponentInfo.Stride;
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));
m_DefaultValues.push_back(defaultValue);
m_ComponentInfo.FieldTypes[fieldName] = typeid(T).name();
m_ComponentInfo.FieldOffsets[fieldName] = m_ComponentInfo.Meta.Stride;
m_ComponentInfo.Meta.Stride += sizeof(T);
}
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;
for (auto& pair : m_DefaultValues) {
if (pair.first.Type == "string") {
new (m_ComponentInfo.Defaults.get() + offset) std::string(*reinterpret_cast<std::string*>(pair.second.Data.get()));
} else {
memcpy(m_ComponentInfo.Defaults.get() + offset, pair.second.Data.get(), pair.second.Size);
}
offset += pair.second.Size;
for (auto& val : m_DefaultValues) {
memcpy(m_ComponentInfo.Defaults.get() + offset, val.Data.get(), val.Size);
offset += val.Size;
}
return m_ComponentInfo;
@@ -185,7 +99,7 @@ public:
private:
ComponentInfo m_ComponentInfo;
std::vector<std::pair<ComponentInfo::Field_t, Any>> m_DefaultValues;
std::vector<Any> m_DefaultValues;
};
#endif
-18
View File
@@ -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
-22
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@@ -1,22 +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 CapturePointTakenID;
EntityWrapper BlueTeamNextCapturePoint;
EntityWrapper RedTeamNextCapturePoint;
};
}
#endif
-20
View File
@@ -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
View File
@@ -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
View File
@@ -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
View File
@@ -1,16 +0,0 @@
#ifndef EFileDropped_h__
#define EFileDropped_h__
#include "EventBroker.h"
namespace Events
{
struct FileDropped : Event
{
std::string Path;
};
}
#endif
-3
View File
@@ -11,9 +11,6 @@ struct KeyDown : Event
{
/** GLFW key code */
int KeyCode;
bool ModCtrl;
bool ModAlt;
bool ModShift;
};
}
-3
View File
@@ -11,9 +11,6 @@ struct KeyUp : Event
{
/** GLFW key code */
int KeyCode;
bool ModCtrl;
bool ModAlt;
bool ModShift;
};
}
-17
View File
@@ -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
View File
@@ -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
View File
@@ -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
View File
@@ -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
View File
@@ -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
-20
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@@ -1,20 +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 = EntityWrapper::Invalid;
EntityWrapper Killer = EntityWrapper::Invalid;
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
View File
@@ -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
View File
@@ -2,7 +2,5 @@
#define Entity_h__
typedef unsigned int EntityID;
const static unsigned int EntityID_Invalid = -1;
#endif
+8 -8
View File
@@ -285,7 +285,7 @@ private:
XSValue::Status 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
@@ -293,11 +293,11 @@ private:
if (documentationTags->getLength() != 0) {
auto child = documentationTags->item(0)->getFirstChild();
if (child != nullptr) {
compInfo.Meta->Annotation = XSTR(child->getNodeValue());
compInfo.Meta.Annotation = XSTR(child->getNodeValue());
}
}
// TODO: Parse annotation string XML
// compInfo.Meta->Allocation = ...
// compInfo.Meta.Allocation = ...
} else {
std::cout << "Warning: Component is missing an annotation!" << std::endl;
}
@@ -344,7 +344,7 @@ private:
fieldOffset += getTypeStride(type);
}
compInfo.Stride = fieldOffset;
compInfo.Meta.Stride = fieldOffset;
m_ComponentInfo[compInfo.Name] = compInfo;
}
}
@@ -367,14 +367,14 @@ private:
std::string componentName = XSTR(component->getLocalName());
auto& compInfo = m_ComponentInfo.at(componentName);
compInfo.Meta->Allocation += 1;
compInfo.Meta.Allocation += 1;
}
std::cout << "COMPONENT INFO" << std::endl;
for (auto& pair : m_ComponentInfo) {
ComponentInfo& ci = pair.second;
std::cout << "Component: " << ci.Name << " (" << ci.Meta->Annotation << ")" << std::endl;
std::cout << " Allocation: " << ci.Meta->Allocation << std::endl;
std::cout << "Component: " << ci.Name << " (" << ci.Meta.Annotation << ")" << std::endl;
std::cout << " Allocation: " << ci.Meta.Allocation << std::endl;
std::cout << " Fields:" << std::endl;
// Calculate component size
@@ -393,7 +393,7 @@ private:
cs.ComponentName = ci.Name;
cs.Stride = stride;
cs.Info = ci;
cs.Data = new char[stride*ci.Meta->Allocation];
cs.Data = new char[stride*ci.Meta.Allocation];
m_ComponentStore[cs.ComponentName] = cs;
}
}
-21
View File
@@ -1,21 +0,0 @@
#ifndef EntityFile_h__
#define EntityFile_h__
#include "World.h"
#include "EntityXMLFile.h"
#include "EntityXMLFilePreprocessor.h"
#include "EntityXMLFileParser.h"
#include "EntityWrapper.h"
class EntityFile : private World, public Resource
{
public:
EntityFile(std::string path);
EntityWrapper MergeInto(World* other);
private:
EntityID m_RootEntity = EntityID_Invalid;
};
#endif
-66
View File
@@ -1,66 +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() const;
bool HasComponent(const std::string& componentType);
void AttachComponent(const char* componentName);
EntityWrapper Parent();
EntityWrapper FirstParentByName(const std::string& parentEntityName);
EntityWrapper FirstChildByName(const std::string& name);
EntityWrapper FirstLevelChildByName(const std::string& name);
EntityWrapper FirstParentWithComponent(const std::string& componentType);
EntityWrapper Clone(EntityWrapper parent = EntityWrapper::Invalid);
std::vector<EntityWrapper> ChildrenWithComponent(const std::string& componentType);
void DeleteChildren();
bool IsChildOf(EntityWrapper potentialParent);
bool Valid() const;
ComponentWrapper operator[](const char* componentName);
ComponentWrapper operator[](const std::string& 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);
EntityWrapper cloneRecursive(EntityWrapper entity, EntityWrapper parent);
void childrenWithComponentRecursive(const std::string& componentType, EntityWrapper& entity, std::vector<EntityWrapper>& childrenWithComponent);
};
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
+82 -105
View File
@@ -1,111 +1,49 @@
#ifndef EntityXMLFile_h__
#define EntityXMLFile_h__
#include <stack>
#include <boost/lexical_cast.hpp>
#include <xercesc/util/XercesDefs.hpp>
#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/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/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/XMLGrammarPoolImpl.hpp>
#include <xercesc/dom/DOM.hpp>
#include <xercesc/dom/DOMLSInput.hpp>
#include <xercesc/dom/DOMElement.hpp>
#include <xercesc/framework/XMLValidator.hpp>
#include "../GLM.h"
#include "Util/XercesString.h"
#include "ResourceManager.h"
#include "Entity.h"
#include "ComponentInfo.h"
class World;
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
class EntityPreprocessorXMLErrorHandler : public xercesc::DOMErrorHandler
{
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);
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 EntityFileXMLErrorHandler : public xercesc::ErrorHandler
class EntityParserXMLErrorHandler : public xercesc::ErrorHandler
{
public:
void warning(const xercesc::SAXParseException& e) override
@@ -134,31 +72,70 @@ private:
}
};
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;
friend class EntityFileSAXHandler;
friend class ResourceManager;
private:
EntityXMLFile(boost::filesystem::path path);
~EntityXMLFile();
EntityXMLFile(std::string path);
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);
~EntityXMLFile();
xercesc::XMLGrammarPool* GrammarPool() const { return m_GrammarPool; }
void Parse(const EntityFileHandler* handler) const;
void PopulateWorld(World* world);
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 unsigned int InstanceCount;
static void setReaderFeatures(xercesc::SAX2XMLReader* reader);
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
-30
View File
@@ -1,30 +0,0 @@
#ifndef EntityXMLFileParser_h__
#define EntityXMLFileParser_h__
#include "EntityXMLFile.h"
#include "World.h"
class EntityXMLFileParser
{
friend class EntityFile;
public:
EntityXMLFileParser(const EntityXMLFile* entityFile);
private:
EntityID MergeEntities(World* world, EntityID baseParent = EntityID_Invalid);
const EntityXMLFile* 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
@@ -1,41 +0,0 @@
#ifndef EntityXMLFilePreprocessor_h__
#define EntityXMLFilePreprocessor_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 "EntityXMLFile.h"
class EntityXMLFilePreprocessor
{
friend class EntityFile;
public:
EntityXMLFilePreprocessor(const EntityXMLFile* entityFile);
private:
void RegisterComponents(World* world);
const EntityXMLFile* 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
View File
@@ -1,39 +0,0 @@
#ifndef EntityXMLFileWriter_h__
#define EntityXMLFileWriter_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 "EntityXMLFile.h"
#include "World.h"
class EntityXMLFileWriter
{
public:
EntityXMLFileWriter(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
+4 -9
View File
@@ -5,7 +5,6 @@
#include <functional>
#include <list>
#include <tuple>
#include <set>
#include "../Common.h"
#include "Event.h"
@@ -14,8 +13,6 @@
relay = decltype(relay)(std::bind(handler, this, std::placeholders::_1)); \
m_EventBroker->Subscribe(relay);
typedef unsigned int EventID;
class EventBroker;
class BaseEventRelay
@@ -34,7 +31,6 @@ public:
virtual bool Receive(const std::shared_ptr<Event> event) = 0;
protected:
EventID m_EventID;
std::string m_ContextTypeName;
std::string m_EventTypeName;
EventBroker* m_Broker;
@@ -44,7 +40,7 @@ template <typename ContextType, typename EventType>
class EventRelay : public BaseEventRelay
{
public:
typedef std::function<bool(EventType&)> CallbackType;
typedef std::function<bool(const EventType&)> CallbackType;
EventRelay()
: m_Callback(nullptr)
@@ -66,7 +62,7 @@ template <typename ContextType, typename EventType>
bool EventRelay<ContextType, EventType>::Receive(const std::shared_ptr<Event> event)
{
if (m_Callback != nullptr) {
return m_Callback(*static_cast<EventType*>(event.get()));
return m_Callback(*static_cast<const EventType*>(event.get()));
} else {
return false;
}
@@ -99,7 +95,6 @@ public:
private:
bool m_IsProcessing = false;
EventID m_NextEventID = 0;
typedef std::string ContextTypeName_t; // typeid(ContextType).name()
typedef std::string EventTypeName_t; // typeid(EventType).name()
@@ -108,14 +103,14 @@ private:
typedef std::unordered_map<ContextTypeName_t, EventRelays_t> ContextRelays_t;
ContextRelays_t m_ContextRelays;
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;
std::shared_ptr<EventQueue_t> m_EventQueueRead;
std::shared_ptr<EventQueue_t> m_EventQueueWrite;
void subscribeImmediate(BaseEventRelay& relay);
void unsubscribeImmediate(std::tuple<EventID, ContextTypeName_t, EventTypeName_t> identifier);
void unsubscribeImmediate(BaseEventRelay& relay);
};
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 "EKeyDown.h"
#include "EKeyUp.h"
#include "EKeyboardChar.h"
#include "EMousePress.h"
#include "EMouseRelease.h"
#include "EMouseMove.h"
#include "EMouseScroll.h"
#include "ELockMouse.h"
#include "EGamepadAxis.h"
#include "EGamepadButton.h"
#include "EFileDropped.h"
class InputManager
{
@@ -36,7 +33,6 @@ public:
void Initialize();
static const short MAX_GAMEPADS = 4;
void Update(double dt);
@@ -53,12 +49,6 @@ private:
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_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_LastMouseX, m_LastMouseY;
@@ -68,12 +58,10 @@ private:
void PublishGamepadAxisIfChanged(int gamepadID, Gamepad::Axis axis);
void PublishGamepadButtonIfChanged(int gamepadID, Gamepad::Button button);
static std::vector<unsigned int> GLFWCharCallbackQueue;
static void GLFWCharCallback(GLFWwindow* window, unsigned int c);
static std::vector<std::pair<double, double>> GLFWScrollCallbackQueue;
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[]);
static void GLFWMouseButtonCallback(GLFWwindow* window, int button, int action, int mods)
{
LOG_DEBUG("Click! %i %i %i", button, action, mods);
}
};
#endif
+10 -34
View File
@@ -5,14 +5,6 @@
template <typename T>
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).
//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.
@@ -66,25 +58,9 @@ public:
, m_LowestAllocatedSlot(m_NumSlots)
{ }
MemoryPool(const MemoryPool<T>& other)
: m_StartAddress(new char[other.m_NumSlots*other.m_Stride])
, m_SlotIsAllocated(other.m_SlotIsAllocated)
, 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);
}
}
//We may get problems with memory being released
//prematurely, etc. if we allow copies.
MemoryPool(const MemoryPool<T>& other) = delete;
MemoryPool(const MemoryPool<T>&& other) = delete;
//Free all memory that has been allocated.
@@ -94,9 +70,8 @@ public:
delete[] m_StartAddress;
m_StartAddress = nullptr;
}
for (char* addr : m_ExtraMemory) {
free(addr);
}
for (char* addr : m_ExtraMemory)
free(addr);
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".
char* Allocate()
{
for (; m_CurrentAllocSlot < m_NumSlots && m_SlotIsAllocated[m_CurrentAllocSlot] && !DisableMemoryPool::Value; ++m_CurrentAllocSlot);
if (m_CurrentAllocSlot < m_NumSlots && !DisableMemoryPool::Value) {
for (; m_CurrentAllocSlot < m_NumSlots && m_SlotIsAllocated[m_CurrentAllocSlot]; ++m_CurrentAllocSlot);
if (m_CurrentAllocSlot < m_NumSlots) {
if (m_LowestAllocatedSlot > m_CurrentAllocSlot)
m_LowestAllocatedSlot = m_CurrentAllocSlot;
//Mark the slot as allocated.
@@ -118,6 +93,7 @@ public:
else {
m_ExtraMemory.push_back((char*)malloc(m_Stride));
//We should preferably not enter here to avoid performance issues. Set more numMaxElements in constructor instead.
LOG_WARNING("Allocated slots exceed Pool size, extra memory allocated dynamically. Pool size: %u, dynamic size: %u.", m_NumSlots, m_ExtraMemory.size());
return m_ExtraMemory.back();
}
}
@@ -132,7 +108,7 @@ public:
//(i.e. IsAllocatedInPool may give false positives)
//if it was malloc():ed
//so, we may enter here even if we shouldn't.
if (!DisableMemoryPool::Value && IsAllocatedInPool(obj)) {
if (IsAllocatedInPool(obj)) {
--m_NumAllocatedSlots;
const size_t freeSlot = (obj - m_StartAddress) / m_Stride;
m_SlotIsAllocated[freeSlot] = false;
@@ -277,7 +253,7 @@ public:
}
//Postfix increment i.e. iter++. Prefer pre-increment (++iter) for efficiency.
MemoryPoolForwardIterator operator++(int)
MemoryPoolForwardIterator& operator++(int)
{
MemoryPoolForwardIterator<T> copyIter(*this);
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
View File
@@ -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
View File
@@ -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.
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
{
@@ -21,23 +22,6 @@ protected:
Resource() { }
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
// FIXME: Why did we do this again instead of just using the constructor?
// static Resource* Create(std::string resourceName);
@@ -49,15 +33,6 @@ public:
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 */
class ResourceManager
{
@@ -65,7 +40,6 @@ private:
ResourceManager();
public:
static bool UseThreading;
/*static ResourceManager& Instance()
{
static ResourceManager s;
@@ -75,6 +49,15 @@ public:
template <typename T>
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
@param resourceType Resource type as string.
@@ -82,20 +65,15 @@ public:
*/
// TODO: Templateify
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.
If Async is true: If the resource is not loaded yet, starts loading the resource
in the background and throws Resource::StillLoadingException immediately.
/** Hot-loads a resource and caches it for future use
@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.
*/
template <typename T, bool async = false>
static T* Load(const std::string& resourceName, Resource* parent = nullptr);
template <typename T>
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.
@@ -109,31 +87,19 @@ public:
static void Update();
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::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::string, Resource*> m_ResourceFromName; // name -> 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
static unsigned int m_CurrentResourceTypeID;
static std::unordered_map<std::string, unsigned int> m_ResourceTypeIDs;
// Number of resources of a type. Doubles as local ID.
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 void fileWatcherCallback(std::string path, FileWatcher::FileEventFlags flags);
@@ -142,13 +108,22 @@ private:
static unsigned int GetNewResourceID(unsigned int typeID);
// Internal: Create a resource and cache it
static Resource* createResourceThrowing(const std::string& resourceType, const 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();
static Resource* CreateResource(std::string resourceType, std::string resourceName, Resource* parent);
};
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>
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); };
}
template <typename T, bool async>
static T* ResourceManager::Load(const std::string& resourceName, Resource* parent /* = nullptr */)
template <typename T>
void ResourceManager::Preload(std::string resourceName)
{
auto resourceTypename = typeid(T).name();
auto iter = m_CompilerTypenameToResourceType.find(resourceTypename);
if (iter == m_CompilerTypenameToResourceType.end()) {
LOG_ERROR("Failed to load resource \"%s\" of type \"%s\": type not registered", resourceName.c_str(), resourceTypename);
throw Resource::FailedLoadingException();
}
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;
}
std::string resourceType = iter->second;
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;
}
}
}
Preload(it->second, resourceName);
}
#endif
+7 -67
View File
@@ -3,83 +3,23 @@
#include "EventBroker.h"
#include "World.h"
#include "EntityWrapper.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
{
friend class SystemPipeline;
protected:
System(SystemParams params)
: m_World(params.World)
, m_EventBroker(params.EventBroker)
, 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)
public:
System(EventBroker* eventBroker, std::string componentType)
: m_EventBroker(eventBroker)
, m_ComponentType(componentType)
{ }
virtual ~PureSystem() = default;
const std::string m_ComponentType;
virtual void UpdateComponent(EntityWrapper& entity, ComponentWrapper& scoreScreen, double dt) = 0;
};
class ImpureSystem : public virtual System
{
friend class SystemPipeline;
virtual void Update(World* world, ComponentWrapper& component, double dt) = 0;
protected:
ImpureSystem() = default;
virtual ~ImpureSystem() = default;
virtual void Update(double dt) = 0;
std::string m_ComponentType;
EventBroker* m_EventBroker;
};
#endif
+24 -97
View File
@@ -5,127 +5,54 @@
#include "EventBroker.h"
#include "System.h"
#include "World.h"
#include "EPause.h"
#include "PerformanceTimer.h"
class SystemPipeline
{
public:
SystemPipeline(World* world, EventBroker* eventBroker, bool isClient, bool isServer)
: m_World(world)
, m_EventBroker(eventBroker)
, m_IsClient(isClient)
, m_IsServer(isServer)
{
EVENT_SUBSCRIBE_MEMBER(m_EPause, &SystemPipeline::OnPause);
EVENT_SUBSCRIBE_MEMBER(m_EResume, &SystemPipeline::OnResume);
}
SystemPipeline(EventBroker* eventBroker)
: m_EventBroker(eventBroker)
{ }
~SystemPipeline()
{
for (UnorderedSystems& group : m_OrderedSystemGroups) {
for (auto& pair : group.Systems) {
delete pair.second;
for (auto& pair : m_Systems) {
for (auto& system : pair.second) {
delete system;
}
}
}
template <typename T, typename... Arguments>
//All systems with orderlevel 0 will be updated first, then 1, 2, etc.
void AddSystem(int updateOrderLevel, Arguments... args)
void AddSystem(Arguments... args)
{
if (updateOrderLevel + 1 > m_OrderedSystemGroups.size()) {
m_OrderedSystemGroups.resize(updateOrderLevel + 1);
}
UnorderedSystems& group = m_OrderedSystemGroups[updateOrderLevel];
System* system = new T(SystemParams(m_World, m_EventBroker, m_IsClient, m_IsServer), args...);
group.Systems[typeid(T).name()] = 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);
System* system = new T(m_EventBroker, args...);
if (!system->m_ComponentType.empty()) {
m_Systems[system->m_ComponentType].push_back(system);
} else {
LOG_ERROR("Failed to add system \"%s\": Missing component type!", typeid(T).name());
delete system;
}
}
void Update(double dt)
void Update(World* world, double dt)
{
if (m_Paused) {
dt = 0.0;
}
// Process utility events for the System base class
m_EventBroker->Process<System>();
for (UnorderedSystems& group : m_OrderedSystemGroups) {
// Process events
for (auto& pair : group.Systems) {
m_EventBroker->Process(pair.first);
for (auto& pair : m_Systems) {
const std::string& componentName = pair.first;
auto& systems = pair.second;
const ComponentPool* pool = world->GetComponents(componentName);
if (pool == nullptr) {
continue;
}
// Update
for (auto& system : group.ImpureSystems) {
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);
}
for (auto& component : *pool) {
for (auto& system : systems) {
system->Update(world, component, dt);
}
}
}
}
private:
World* m_World;
EventBroker* m_EventBroker;
bool m_IsClient = false;
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;
}
std::unordered_map<std::string, std::vector<System*>> m_Systems;
};
#endif
-25
View File
@@ -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
View File
@@ -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
View File
@@ -2,7 +2,6 @@
#define Util_Any_h__
#include <memory>
#include <boost/shared_array.hpp>
struct Any
{
@@ -11,7 +10,7 @@ struct Any
template <typename T>
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);
memcpy(Data.get(), &value, Size);
}
@@ -19,7 +18,7 @@ struct Any
template <typename T>
Any(T&& value)
{
Data = boost::shared_array<char>(new char[sizeof(T)]);
Data = std::shared_ptr<char>(new char[sizeof(T)]);
Size = sizeof(T);
memcpy(Data.get(), &value, Size);
}
@@ -36,7 +35,7 @@ struct Any
return Any(value);
}
boost::shared_array<char> Data = nullptr;
std::shared_ptr<char> Data = nullptr;
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 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
{
@@ -54,7 +54,7 @@ public:
private:
struct FileInfo
{
std::size_t Size;
int Size;
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 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, ...) \
_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, ...) \
LOG(LOG_LEVEL_INFO, format, ##__VA_ARGS__)
#ifdef DEBUG
#define LOG_DEBUG(format, ...) \
LOG(LOG_LEVEL_DEBUG, format, ##__VA_ARGS__)
#else
#define LOG_DEBUG(format, ...)
#endif
#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
+7 -42
View File
@@ -5,70 +5,35 @@
#include "Entity.h"
#include "ObjectPool.h"
#include "ComponentPool.h"
#include "EventBroker.h"
struct EntityWrapper;
class World
{
public:
World() = default;
World(EventBroker* eventBroker)
: m_EventBroker(eventBroker)
{ }
~World();
World(const World& other);
// Create empty entity
EntityID CreateEntity(EntityID parent = EntityID_Invalid);
// Delete entity and all components within
void DeleteEntity(EntityID entity);
// Check if an entity exists
bool ValidEntity(EntityID entity) const;
EntityID CreateEntity(EntityID parent = 0);
// Register a component type and allocate space for it
void RegisterComponent(const ComponentInfo& ci);
void RegisterComponent(ComponentInfo& ci);
// Attach a component to an entity and fill it with default values
ComponentWrapper AttachComponent(EntityID entity, const std::string& componentType);
// Check if an entity has a component
bool HasComponent(EntityID entity, const std::string& componentType) const;
ComponentWrapper AttachComponent(EntityID entity, std::string componentType);
// Get a component of an entity
ComponentWrapper GetComponent(EntityID entity, const std::string& componentType);
// Delete a component off an entity
void DeleteComponent(EntityID entity, const std::string& componentType);
ComponentWrapper GetComponent(EntityID entity, std::string componentType);
// Get all components of the specified type
const ComponentPool* GetComponents(const std::string& componentType);
const ComponentPool* GetComponents(std::string componentType);
// Get entity parent
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> GetDirectChildren(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;
// Get the first entity in the world with the name.
EntityWrapper GetFirstEntityByName(const std::string& name);
// Merge another world into this one
// Returns a map that maps entities from the other world to their copies in this one
std::unordered_map<EntityID, EntityID> Merge(const World* other);
private:
EventBroker* m_EventBroker = nullptr;
EntityID m_CurrentEntityID = 0;
EntityID m_CurrentEntityID = 1;
std::unordered_map<EntityID, EntityID> m_EntityParents;
// TODO: This should be a more effective structure
std::unordered_multimap<EntityID, EntityID> m_EntityChildren;
std::unordered_map<std::string, ComponentPool*> m_ComponentPools;
std::unordered_map<EntityID, std::string> m_EntityNames;
EntityID generateEntityID();
void deleteEntityRecursive(EntityID entity, bool cascaded = false);
};
#endif
@@ -1,120 +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, EntityWrapper playerEntity)
: FirstPersonInputController(eventBroker, playerID, playerEntity)
{
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;
}
ImGuiIO& io = ImGui::GetIO();
if (io.WantCaptureMouse || io.WantCaptureKeyboard) {
return false;
}
m_SpeedMultiplier += e.DeltaY * (0.1 * m_SpeedMultiplier);
m_Config->Set("Editor.CameraSpeed", m_SpeedMultiplier);
m_Config->SaveToDisk();
return true;
}
};
#endif
-192
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@@ -1,192 +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"
#include "Game/Events/ESpawnerSpawn.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 pastes an entity previously "copied"
// @param EntityWrapper The entity to copy
// @param EntityWrapper The entity to parent the new copy to
// @return The new copy of the entity
typedef std::function<EntityWrapper(EntityWrapper, EntityWrapper)> OnEntityPaste_t;
void SetEntityPasteCallback(OnEntityPaste_t f) { m_OnEntityPaste = 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;
EntityWrapper m_CopyTarget = EntityWrapper::Invalid;
// 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;
OnEntityPaste_t m_OnEntityPaste = 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);
};
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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/EntityFile.h"
#include "../Core/EntityXMLFileWriter.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);
EntityWrapper OnEntityPaste(EntityWrapper entityToCopy, EntityWrapper parent);
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/gtc/quaternion.hpp>
#include <glm/gtx/quaternion.hpp>
#include <glm/gtc/type_ptr.hpp>
#include <glm/gtx/projection.hpp>
#include <glm/gtc/type_ptr.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
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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
+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__
#include "Core/EventBroker.h"
#include "Core/EntityWrapper.h"
namespace Events
{
@@ -10,8 +9,7 @@ namespace Events
struct InputCommand : Event
{
/** Numerical ID of the player. */
int PlayerID;
EntityWrapper Player;
unsigned int PlayerID;
/** The command that was sent. */
std::string Command;
/** The value of the command. */
+47 -390
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@@ -4,410 +4,67 @@
#include "../GLM.h"
#include "../Core/InputController.h"
#include "../Core/ELockMouse.h"
#include "../Game/Events/EDashAbility.h"
#include "InputHandler.h"
#include "Rendering/EAutoAnimationBlend.h"
#include "Rendering/ESetBlendWeight.h"
template <typename EventContext>
class FirstPersonInputController : public InputController<EventContext>
{
public:
FirstPersonInputController(EventBroker* eventBroker, int playerID, EntityWrapper playerEntity);
virtual const glm::vec3 Movement() const { return m_Movement; }
virtual const glm::vec3 Rotation() const { return m_Rotation; }
virtual bool Jumping() const { return m_Jumping; }
virtual bool Crouching() const { return m_Crouching; }
virtual bool DoubleJumping() const { return m_DoubleJumping; }
virtual void SetDoubleJumping(bool isDoubleJumping) {
m_DoubleJumping = isDoubleJumping;
FirstPersonInputController(EventBroker* eventBroker, unsigned int playerID)
: InputController(eventBroker)
, m_PlayerID(playerID)
{
EVENT_SUBSCRIBE_MEMBER(m_ELockMouse, &FirstPersonInputController::OnLockMouse);
EVENT_SUBSCRIBE_MEMBER(m_EUnlockMouse, &FirstPersonInputController::OnUnlockMouse);
}
void LockMouse();
void UnlockMouse();
virtual bool OnCommand(const Events::InputCommand& e) override;
virtual void Reset();
const glm::quat Orientation() const { return m_Orientation; }
void LockMouse()
{
Events::LockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = true;
}
void AssaultDashCheck(double dt, bool isJumping, double assaultDashCoolDownMaxTimer, double& assaultDashCoolDownTimer, EntityID playerID);
virtual bool AssaultDashDoubleTapped() const { return m_AssaultDashDoubleTapped; }
virtual bool PlayerIsDashing() const { return m_PlayerIsDashing; }
bool SpecialAbilityKeyDown() const { return m_SpecialAbilityKeyDown; }
void UnlockMouse()
{
Events::UnlockMouse e;
m_EventBroker->Publish(e);
m_MouseLocked = false;
}
protected:
const int m_PlayerID;
EntityWrapper m_PlayerEntity;
virtual bool OnCommand(const Events::InputCommand& e) override
{
if (m_PlayerID != e.PlayerID) {
return false;
}
bool m_MouseLocked = false;
glm::vec3 m_Rotation;
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;
//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;
if (m_MouseLocked) {
if (e.Command == "Pitch") {
float val = glm::radians(e.Value);
m_Orientation = m_Orientation * glm::angleAxis<float>(-val, glm::vec3(1, 0, 0));
return true;
}
//specialabilities
bool m_MovementKeyDown = false;
bool m_SpecialAbilityKeyDown = false;
int m_NumberOfMovementKeysDown = 0;
if (e.Command == "Yaw") {
float val = glm::radians(e.Value);
m_Orientation = glm::angleAxis<float>(-val, glm::vec3(0, 1, 0)) * m_Orientation;
return true;
}
}
EventRelay<EventContext, Events::LockMouse> m_ELockMouse;
bool OnLockMouse(const Events::LockMouse& e);
EventRelay<EventContext, Events::UnlockMouse> m_EUnlockMouse;
bool OnUnlockMouse(const Events::UnlockMouse& e);
};
template <typename EventContext>
FirstPersonInputController<EventContext>::FirstPersonInputController(EventBroker* eventBroker, int playerID, EntityWrapper playerEntity)
: InputController(eventBroker)
, m_PlayerID(playerID)
, m_PlayerEntity(playerEntity)
{
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;
}
if (e.Command == "Pitch") {
float val = glm::radians(e.Value);
m_Rotation.x += -val;
}
if (e.Command == "Yaw") {
float val = glm::radians(e.Value);
m_Rotation.y += -val;
}
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;
//Animation
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
if (val > 0) { // Walk/Run
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
if (m_Crouching) {
aeb.NodeName = "Walk";
} else {
aeb.NodeName = "Run";
}
aeb.RootNode = playerModel;
aeb.Start = true;
aeb.SingleLevelBlend = true;
m_EventBroker->Publish(aeb);
} else if (val < 0) { // Walk/run Backwards
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
if (m_Crouching) {
aeb.NodeName = "Walk";
} else {
aeb.NodeName = "Run";
}
aeb.RootNode = playerModel;
aeb.Start = true;
aeb.SingleLevelBlend = true;
aeb.Reverse = true;
m_EventBroker->Publish(aeb);
}
}
EntityWrapper firstPersonModel = m_PlayerEntity.FirstChildByName("Hands");
if (firstPersonModel.Valid()) {
if (val > 0) { // Walk/Run
if (!m_Crouching) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Run";
aeb.RootNode = firstPersonModel;
aeb.Start = true;
m_EventBroker->Publish(aeb);
}
} else if (val < 0) { // Walk/run Backwards
if (!m_Crouching) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Run";
aeb.RootNode = firstPersonModel;
aeb.Start = true;
aeb.Reverse = true;
m_EventBroker->Publish(aeb);
}
}
}
}
}
if (e.Command == "Right") {
float val = glm::clamp(e.Value, -1.f, 1.f);
m_Movement.x = val;
//Animation
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) { //Right Strafe
if (val > 0) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Right";
aeb.RootNode = playerModel;
aeb.SingleLevelBlend = true;
aeb.Start = true;
m_EventBroker->Publish(aeb);
} else if (val < 0) { //LeftStrafe
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Left";
aeb.RootNode = playerModel;
aeb.SingleLevelBlend = true;
aeb.Start = true;
m_EventBroker->Publish(aeb);
}
}
}
}
}
//Animation
if (glm::length2(m_Movement) < 0.25f) {
//Blend to Idle
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Idle";
aeb.RootNode = playerModel;
aeb.Start = true;
m_EventBroker->Publish(aeb);
}
EntityWrapper firstPersonModel = m_PlayerEntity.FirstChildByName("Hands");
if (firstPersonModel.Valid()) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "Idle";
aeb.RootNode = firstPersonModel;
aeb.Start = true;
m_EventBroker->Publish(aeb);
}
}
} else {
//Blend to movement
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.1;
aeb.NodeName = "DirectionBlend";
aeb.RootNode = playerModel;
m_EventBroker->Publish(aeb);
}
}
}
if (glm::length2(m_Movement) > 0) {
m_Movement = glm::normalize(m_Movement);
//Animation
// movement direction blend
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
glm::vec2 direction = glm::normalize(glm::vec2(m_Movement.x, m_Movement.z));
double weight = glm::abs(glm::dot(glm::vec2(1, 0), direction));
Events::SetBlendWeight sbw;
sbw.NodeName = "DirectionBlend";
sbw.Weight = weight;
sbw.RootNode = playerModel;
m_EventBroker->Publish(sbw);
}
}
}
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;
//Animation
if (m_PlayerEntity.Valid()) {
EntityWrapper playerModel = m_PlayerEntity.FirstChildByName("PlayerModel");
if (playerModel.Valid()) {
if (e.Value == 0.f) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.3;
aeb.NodeName = "StandMovement";
aeb.RootNode = playerModel;
aeb.Start = true;
aeb.Restart = true;
aeb.SingleLevelBlend = true;
m_EventBroker->Publish(aeb);
} else if(e.Value == 1.0f) {
Events::AutoAnimationBlend aeb;
aeb.Duration = 0.3;
aeb.NodeName = "CrouchMovement";
aeb.RootNode = playerModel;
aeb.Start = true;
aeb.Restart = true;
aeb.SingleLevelBlend = true;
m_EventBroker->Publish(aeb);
}
}
}
}
if (e.Command == "SpecialAbility") {
m_SpecialAbilityKeyDown = e.Value > 0;
}
m_ShiftDashing = m_SpecialAbilityKeyDown && m_MovementKeyDown;
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, double& assaultDashCoolDownTimer, EntityID playerID) {
m_AssaultDashDoubleTapDeltaTime += dt;
assaultDashCoolDownTimer -= dt;
//cooldown = assaultDashCoolDownMaxTimer sec, pretend the dash lasts 0.25 sec (for friction to do its work)
if (assaultDashCoolDownTimer > (assaultDashCoolDownMaxTimer - 0.25f)) {
m_PlayerIsDashing = true;
} else {
m_PlayerIsDashing = false;
}
//dashing with shift
if (m_ShiftDashing && 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!
assaultDashCoolDownTimer = assaultDashCoolDownMaxTimer;
m_AssaultDashDoubleTapped = true;
m_AssaultDashDoubleTapDeltaTime = 0.f;
Events::DashAbility e;
e.Player = playerID;
m_EventBroker->Publish(e);
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 (!(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;
assaultDashCoolDownTimer = assaultDashCoolDownMaxTimer;
Events::DashAbility e;
e.Player = playerID;
m_EventBroker->Publish(e);
}
protected:
const unsigned int m_PlayerID;
glm::quat m_Orientation;
bool m_MouseLocked = false;
EventRelay<EventContext, Events::LockMouse> m_ELockMouse;
bool OnLockMouse(const Events::LockMouse& e) { m_MouseLocked = true; return true; }
EventRelay<EventContext, Events::UnlockMouse> m_EUnlockMouse;
bool OnUnlockMouse(const Events::UnlockMouse& e) { m_MouseLocked = false; return true; }
};
#endif
+1 -2
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@@ -1,7 +1,6 @@
#ifndef InputProxy_h__
#define InputProxy_h__
#include <boost/tokenizer.hpp>
#include "../Common.h"
#include "../Core/ResourceManager.h"
#include "../Core/ConfigFile.h"
@@ -18,7 +17,7 @@ public:
void LoadBindings(std::string file);
void Update(double dt);
void Process(bool suppressNewEvents = false);
void Process();
template <typename T>
void AddHandler();
void Publish(const Events::InputCommand& e);
@@ -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 -135
View File
@@ -1,145 +1,14 @@
#ifndef Client_h__
#define Client_h__
#include <string>
#include <ctime>
#include <limits>
#include <queue>
#include <boost\asio.hpp>
#include <glm/common.hpp>
#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/EntityFile.h"
#include "Core/EventBroker.h"
#include "Core/ConfigFile.h"
#include "Core/EPlayerDeath.h"
#include "Input/EInputCommand.h"
#include "Core/EPlayerDamage.h"
#include "../Game/Events/EDoubleJump.h"
#include "Network/EInterpolate.h"
#include "Network/SnapshotFilter.h"
#include "Core/EPlayerSpawned.h"
#include "Core/EAmmoPickup.h"
#include "Network/ESearchForServers.h"
#include "../Game/Events/EDashAbility.h"
#include "Network/EDisplayServerlist.h"
#include "Network/EConnectRequest.h"
class Client : public Network
class Client
{
public:
Client(World* world, EventBroker* eventBroker);
Client(World* world, EventBroker* eventBroker, std::unique_ptr<SnapshotFilter> snapshotFilter);
~Client();
Client();
~Client();
void Connect(std::string address, int port);
void Update() override;
private:
//UDPClient m_Unreliable;
TCPClient m_Reliable;
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 parseServerlist(Packet& packet);
void parseKick();
void parsePlayersSpawned(Packet& packet);
void parseEntityDeletion(Packet& packet);
void parsePlayerDamage(Packet& packet);
void parseComponentDeletion(Packet& packet);
void parseDoubleJump(Packet& packet);
void parseDashEffect(Packet& packet);
void parseAmmoPickup(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();
void displayServerlist();
void removeWorld();
void createMainMenu();
// 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);
EventRelay< Client, Events::SearchForServers> m_ESearchForServers;
EventRelay<Client, Events::DoubleJump> m_EDoubleJump;
bool OnDoubleJump(Events::DoubleJump & e);
EventRelay<Client, Events::DashAbility> m_EDashAbility;
bool OnDashAbility(const Events::DashAbility& e);
EventRelay<Client, Events::ConnectRequest> m_EConnectRequest;
bool OnConnectRequest(const Events::ConnectRequest& e);
bool OnSearchForServers(const Events::SearchForServers& e);
UDPClient m_ServerlistRequest;
std::vector<ServerInfo> m_Serverlist;
bool m_SearchingForServers = false;
std::clock_t m_StartSearchTime;
double m_SearchingTime = 2000; // Config I guess
};
#endif
-17
View File
@@ -1,17 +0,0 @@
#ifndef Events_ConnectRequest_h__
#define Events_ConnectRequest_h__
#include "Core/EventBroker.h"
namespace Events
{
struct ConnectRequest : public Event
{
std::string IP = "";
int Port = 0;
};
}
#endif
@@ -1,29 +0,0 @@
#ifndef Events_DisplayServerlist_h__
#define Events_DisplayServerlist_h__
#include <string>
#include <vector>
#include "Core/Event.h"
struct ServerInfo
{
ServerInfo(std::string address, int port, std::string name, int players)
{
Address = address; Port = port; Name = name; PlayersConnected = players;
}
std::string Address = "";
int Port = 0;
std::string Name = "";
int PlayersConnected = 0;
};
namespace Events
{
struct DisplayServerlist : public Event
{
std::vector<ServerInfo> Serverlist;
};
}
#endif
-25
View File
@@ -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
-19
View File
@@ -1,19 +0,0 @@
#ifndef Events_KillDeath_h__
#define Events_KillDeath_h__
#include "Core/EventBroker.h"
typedef unsigned int PlayerID;
namespace Events
{
struct KillDeath : public Event
{
PlayerID Casualty = -1;
PlayerID Killer = -1;
};
}
#endif
-17
View File
@@ -1,17 +0,0 @@
#ifndef Events_PlayerConnected
#define Events_PlayerConnected
#include "Core/EventBroker.h"
namespace Events
{
struct PlayerConnected : public Event
{
std::string PlayerName = "";
int PlayerID = -1;
};
}
#endif // !Events_PlayerConnected
@@ -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
@@ -1,12 +0,0 @@
#ifndef Events_SearchForServers_h__
#define Events_SearchForServers_h__
#include "Core/Event.h"
namespace Events
{
struct SearchForServers : public Event { };
}
#endif
-29
View File
@@ -1,29 +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,
OnDoubleJump,
OnDashEffect,
ServerlistRequest,
AmmoPickup,
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
-24
View File
@@ -1,24 +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:
NetworkClient();
virtual ~NetworkClient();
virtual bool 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;
unsigned int m_BufferSize = BUFFERSIZE;
};
#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
-24
View File
@@ -1,24 +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:
NetworkServer();
virtual ~NetworkServer();
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;
unsigned int m_BufferSize = BUFFERSIZE;
};
#endif
-77
View File
@@ -1,77 +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)) {
if (m_MaxPacketSize >= 32000) {
LOG_WARNING("Package::WritePrimitive(): New size is huge %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 -107
View File
@@ -1,115 +1,12 @@
#ifndef Server_h__
#define Server_h__
#include <string>
#include <ctime>
#include <boost\asio.hpp>
#include <glm/common.hpp>
#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 "../Game/Events/EDoubleJump.h"
#include "Core/EEntityDeleted.h"
#include "Core/EComponentDeleted.h"
#include "Core/EAmmoPickup.h"
#include "Core/EPlayerDeath.h"
#include "Network/EPlayerConnected.h"
#include "Network/EKillDeath.h"
class Server : public Network
class Server
{
public:
Server(World* world, EventBroker* eventBroker, int port);
~Server();
void Update() override;
private:
// Network channels
TCPServer m_Reliable;
//UDPServer m_Unreliable;
UDPServer m_ServerlistRequest;
// 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;
std::string m_ServerName = "";
// 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 addPlayersToPacket(Packet& packet, EntityID entityID);
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();
PlayerID getPlayerIDFromEntityID(EntityID entityID);
void parsePlayerTransform(Packet& packet);
void parseOnInputCommand(Packet& packet);
void parseClientPing();
void parsePing();
bool parseDoubleJump(Packet& packet);
void parseDashEffect(Packet& packet);
void parseUDPConnect(Packet& packet);
void parseTCPConnect(Packet& packet);
void parseDisconnect();
void parseServerlistRequest(boost::asio::ip::udp::endpoint endpoint);
bool shouldSendToClient(EntityWrapper childEntity);
// Events
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);
EventRelay<Server, Events::AmmoPickup> m_EAmmoPickup;
bool OnAmmoPickup(const Events::AmmoPickup& e);
EventRelay<Server, Events::PlayerDeath> m_EPlayerDeath;
bool OnPlayerDeath(const Events::PlayerDeath& e);
Server();
~Server();
};
#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

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