ITS REWRITE TIME

This commit is contained in:
Ben
2019-10-04 17:30:57 +01:00
parent b32024ec68
commit b315cc8951
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#ifndef __khrplatform_h_
#define __khrplatform_h_
/*
** Copyright (c) 2008-2018 The Khronos Group Inc.
**
** Permission is hereby granted, free of charge, to any person obtaining a
** copy of this software and/or associated documentation files (the
** "Materials"), to deal in the Materials without restriction, including
** without limitation the rights to use, copy, modify, merge, publish,
** distribute, sublicense, and/or sell copies of the Materials, and to
** permit persons to whom the Materials are furnished to do so, subject to
** the following conditions:
**
** The above copyright notice and this permission notice shall be included
** in all copies or substantial portions of the Materials.
**
** THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
** EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
** MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
** IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
** CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
** TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
** MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
*/
/* Khronos platform-specific types and definitions.
*
* The master copy of khrplatform.h is maintained in the Khronos EGL
* Registry repository at https://github.com/KhronosGroup/EGL-Registry
* The last semantic modification to khrplatform.h was at commit ID:
* 67a3e0864c2d75ea5287b9f3d2eb74a745936692
*
* Adopters may modify this file to suit their platform. Adopters are
* encouraged to submit platform specific modifications to the Khronos
* group so that they can be included in future versions of this file.
* Please submit changes by filing pull requests or issues on
* the EGL Registry repository linked above.
*
*
* See the Implementer's Guidelines for information about where this file
* should be located on your system and for more details of its use:
* http://www.khronos.org/registry/implementers_guide.pdf
*
* This file should be included as
* #include <KHR/khrplatform.h>
* by Khronos client API header files that use its types and defines.
*
* The types in khrplatform.h should only be used to define API-specific types.
*
* Types defined in khrplatform.h:
* khronos_int8_t signed 8 bit
* khronos_uint8_t unsigned 8 bit
* khronos_int16_t signed 16 bit
* khronos_uint16_t unsigned 16 bit
* khronos_int32_t signed 32 bit
* khronos_uint32_t unsigned 32 bit
* khronos_int64_t signed 64 bit
* khronos_uint64_t unsigned 64 bit
* khronos_intptr_t signed same number of bits as a pointer
* khronos_uintptr_t unsigned same number of bits as a pointer
* khronos_ssize_t signed size
* khronos_usize_t unsigned size
* khronos_float_t signed 32 bit floating point
* khronos_time_ns_t unsigned 64 bit time in nanoseconds
* khronos_utime_nanoseconds_t unsigned time interval or absolute time in
* nanoseconds
* khronos_stime_nanoseconds_t signed time interval in nanoseconds
* khronos_boolean_enum_t enumerated boolean type. This should
* only be used as a base type when a client API's boolean type is
* an enum. Client APIs which use an integer or other type for
* booleans cannot use this as the base type for their boolean.
*
* Tokens defined in khrplatform.h:
*
* KHRONOS_FALSE, KHRONOS_TRUE Enumerated boolean false/true values.
*
* KHRONOS_SUPPORT_INT64 is 1 if 64 bit integers are supported; otherwise 0.
* KHRONOS_SUPPORT_FLOAT is 1 if floats are supported; otherwise 0.
*
* Calling convention macros defined in this file:
* KHRONOS_APICALL
* KHRONOS_APIENTRY
* KHRONOS_APIATTRIBUTES
*
* These may be used in function prototypes as:
*
* KHRONOS_APICALL void KHRONOS_APIENTRY funcname(
* int arg1,
* int arg2) KHRONOS_APIATTRIBUTES;
*/
/*-------------------------------------------------------------------------
* Definition of KHRONOS_APICALL
*-------------------------------------------------------------------------
* This precedes the return type of the function in the function prototype.
*/
#if defined(_WIN32) && !defined(__SCITECH_SNAP__)
# define KHRONOS_APICALL __declspec(dllimport)
#elif defined (__SYMBIAN32__)
# define KHRONOS_APICALL IMPORT_C
#elif defined(__ANDROID__)
# define KHRONOS_APICALL __attribute__((visibility("default")))
#else
# define KHRONOS_APICALL
#endif
/*-------------------------------------------------------------------------
* Definition of KHRONOS_APIENTRY
*-------------------------------------------------------------------------
* This follows the return type of the function and precedes the function
* name in the function prototype.
*/
#if defined(_WIN32) && !defined(_WIN32_WCE) && !defined(__SCITECH_SNAP__)
/* Win32 but not WinCE */
# define KHRONOS_APIENTRY __stdcall
#else
# define KHRONOS_APIENTRY
#endif
/*-------------------------------------------------------------------------
* Definition of KHRONOS_APIATTRIBUTES
*-------------------------------------------------------------------------
* This follows the closing parenthesis of the function prototype arguments.
*/
#if defined (__ARMCC_2__)
#define KHRONOS_APIATTRIBUTES __softfp
#else
#define KHRONOS_APIATTRIBUTES
#endif
/*-------------------------------------------------------------------------
* basic type definitions
*-----------------------------------------------------------------------*/
#if (defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L) || defined(__GNUC__) || defined(__SCO__) || defined(__USLC__)
/*
* Using <stdint.h>
*/
#include <stdint.h>
typedef int32_t khronos_int32_t;
typedef uint32_t khronos_uint32_t;
typedef int64_t khronos_int64_t;
typedef uint64_t khronos_uint64_t;
#define KHRONOS_SUPPORT_INT64 1
#define KHRONOS_SUPPORT_FLOAT 1
#elif defined(__VMS ) || defined(__sgi)
/*
* Using <inttypes.h>
*/
#include <inttypes.h>
typedef int32_t khronos_int32_t;
typedef uint32_t khronos_uint32_t;
typedef int64_t khronos_int64_t;
typedef uint64_t khronos_uint64_t;
#define KHRONOS_SUPPORT_INT64 1
#define KHRONOS_SUPPORT_FLOAT 1
#elif defined(_WIN32) && !defined(__SCITECH_SNAP__)
/*
* Win32
*/
typedef __int32 khronos_int32_t;
typedef unsigned __int32 khronos_uint32_t;
typedef __int64 khronos_int64_t;
typedef unsigned __int64 khronos_uint64_t;
#define KHRONOS_SUPPORT_INT64 1
#define KHRONOS_SUPPORT_FLOAT 1
#elif defined(__sun__) || defined(__digital__)
/*
* Sun or Digital
*/
typedef int khronos_int32_t;
typedef unsigned int khronos_uint32_t;
#if defined(__arch64__) || defined(_LP64)
typedef long int khronos_int64_t;
typedef unsigned long int khronos_uint64_t;
#else
typedef long long int khronos_int64_t;
typedef unsigned long long int khronos_uint64_t;
#endif /* __arch64__ */
#define KHRONOS_SUPPORT_INT64 1
#define KHRONOS_SUPPORT_FLOAT 1
#elif 0
/*
* Hypothetical platform with no float or int64 support
*/
typedef int khronos_int32_t;
typedef unsigned int khronos_uint32_t;
#define KHRONOS_SUPPORT_INT64 0
#define KHRONOS_SUPPORT_FLOAT 0
#else
/*
* Generic fallback
*/
#include <stdint.h>
typedef int32_t khronos_int32_t;
typedef uint32_t khronos_uint32_t;
typedef int64_t khronos_int64_t;
typedef uint64_t khronos_uint64_t;
#define KHRONOS_SUPPORT_INT64 1
#define KHRONOS_SUPPORT_FLOAT 1
#endif
/*
* Types that are (so far) the same on all platforms
*/
typedef signed char khronos_int8_t;
typedef unsigned char khronos_uint8_t;
typedef signed short int khronos_int16_t;
typedef unsigned short int khronos_uint16_t;
/*
* Types that differ between LLP64 and LP64 architectures - in LLP64,
* pointers are 64 bits, but 'long' is still 32 bits. Win64 appears
* to be the only LLP64 architecture in current use.
*/
#ifdef _WIN64
typedef signed long long int khronos_intptr_t;
typedef unsigned long long int khronos_uintptr_t;
typedef signed long long int khronos_ssize_t;
typedef unsigned long long int khronos_usize_t;
#else
typedef signed long int khronos_intptr_t;
typedef unsigned long int khronos_uintptr_t;
typedef signed long int khronos_ssize_t;
typedef unsigned long int khronos_usize_t;
#endif
#if KHRONOS_SUPPORT_FLOAT
/*
* Float type
*/
typedef float khronos_float_t;
#endif
#if KHRONOS_SUPPORT_INT64
/* Time types
*
* These types can be used to represent a time interval in nanoseconds or
* an absolute Unadjusted System Time. Unadjusted System Time is the number
* of nanoseconds since some arbitrary system event (e.g. since the last
* time the system booted). The Unadjusted System Time is an unsigned
* 64 bit value that wraps back to 0 every 584 years. Time intervals
* may be either signed or unsigned.
*/
typedef khronos_uint64_t khronos_utime_nanoseconds_t;
typedef khronos_int64_t khronos_stime_nanoseconds_t;
#endif
/*
* Dummy value used to pad enum types to 32 bits.
*/
#ifndef KHRONOS_MAX_ENUM
#define KHRONOS_MAX_ENUM 0x7FFFFFFF
#endif
/*
* Enumerated boolean type
*
* Values other than zero should be considered to be true. Therefore
* comparisons should not be made against KHRONOS_TRUE.
*/
typedef enum {
KHRONOS_FALSE = 0,
KHRONOS_TRUE = 1,
KHRONOS_BOOLEAN_ENUM_FORCE_SIZE = KHRONOS_MAX_ENUM
} khronos_boolean_enum_t;
#endif /* __khrplatform_h_ */

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#ifndef INCLUDE_LOGGER_H_
#define INCLUDE_LOGGER_H_
#include <iostream>
#include <string>
#include <sstream>
#include <map>
#ifdef _WIN32
#include <Windows.h>
typedef enum {
CONSOLE_COLOUR_FG_BLACK = 0,
CONSOLE_COLOUR_FG_BLUE = FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_GREEN = FOREGROUND_GREEN,
CONSOLE_COLOUR_FG_CYAN = FOREGROUND_GREEN | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_RED = FOREGROUND_RED,
CONSOLE_COLOUR_FG_MAGENTA = FOREGROUND_RED | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_YELLOW = FOREGROUND_RED | FOREGROUND_GREEN,
CONSOLE_COLOUR_FG_GRAY = FOREGROUND_RED | FOREGROUND_GREEN | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_LIGHT_GRAY = FOREGROUND_INTENSITY,
CONSOLE_COLOUR_FG_LIGHT_BLUE = FOREGROUND_INTENSITY | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_LIGHT_GREEN = FOREGROUND_INTENSITY | FOREGROUND_GREEN,
CONSOLE_COLOUR_FG_LIGHT_CYAN = FOREGROUND_INTENSITY | FOREGROUND_GREEN | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_LIGHT_RED = FOREGROUND_INTENSITY | FOREGROUND_RED,
CONSOLE_COLOUR_FG_LIGHT_MAGENTA = FOREGROUND_INTENSITY | FOREGROUND_RED | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_LIGHT_YELLOW = FOREGROUND_INTENSITY | FOREGROUND_RED | FOREGROUND_GREEN,
CONSOLE_COLOUR_FG_WHITE = FOREGROUND_INTENSITY | FOREGROUND_RED | FOREGROUND_GREEN | FOREGROUND_BLUE,
CONSOLE_COLOUR_FG_DEFAULT = FOREGROUND_INTENSITY | FOREGROUND_RED | FOREGROUND_GREEN | FOREGROUND_BLUE,
CONSOLE_COLOUR_BG_DEFAULT = 0
} ConsoleColour;
#ifdef _WIN32
static HANDLE h = GetStdHandle(STD_OUTPUT_HANDLE);
static WORD wOldColorAttrs;
static CONSOLE_SCREEN_BUFFER_INFO csbiInfo;
#endif
#else
typedef enum {
CONSOLE_COLOUR_FG_DEFAULT = 39,
CONSOLE_COLOUR_FG_BLACK = 30,
CONSOLE_COLOUR_FG_RED = 31,
CONSOLE_COLOUR_FG_GREEN = 32,
CONSOLE_COLOUR_FG_YELLOW = 33,
CONSOLE_COLOUR_FG_BLUE = 34,
CONSOLE_COLOUR_FG_MAGENTA = 35,
CONSOLE_COLOUR_FG_CYAN = 36,
CONSOLE_COLOUR_FG_LIGHT_GRAY = 37,
CONSOLE_COLOUR_FG_DARK_GRAY = 90,
CONSOLE_COLOUR_FG_LIGHT_RED = 91,
CONSOLE_COLOUR_FG_LIGHT_GREEN = 92,
CONSOLE_COLOUR_FG_LIGHT_YELLOW = 93,
CONSOLE_COLOUR_FG_LIGHT_BLUE = 94,
CONSOLE_COLOUR_FG_LIGHT_MAGENTA = 95,
CONSOLE_COLOUR_FG_LIGHT_CYAN = 96,
CONSOLE_COLOUR_FG_WHITE = 97,
CONSOLE_COLOUR_BG_RED = 41,
CONSOLE_COLOUR_BG_GREEN = 42,
CONSOLE_COLOUR_BG_BLUE = 44,
CONSOLE_COLOUR_BG_DEFAULT = 49
} ConsoleColour;
#endif
class Colour {
public:
static void resetColour();
template<typename T>
static void consoleColour(T colour) {
#ifdef _WIN32
SetConsoleTextAttribute(h, colour);
#else
std::cout << "\033[" << colour << "m";
#endif
}
};
typedef enum {
LOGGER_INFO = CONSOLE_COLOUR_FG_GREEN,
LOGGER_WARN = CONSOLE_COLOUR_FG_YELLOW,
LOGGER_ERROR = CONSOLE_COLOUR_FG_LIGHT_RED,
LOGGER_PANIC = CONSOLE_COLOUR_FG_RED,
LOGGER_DEBUG = CONSOLE_COLOUR_FG_BLUE
} LogType;
typedef enum {
LOGGER_EXIT,
LOGGER_ENDL
} LogAction;
class Logger {
public:
std::stringstream outStream;
std::map<LogType, std::string> lookupTable;
Logger();
Logger& operator<< (const LogType type) {
std::cout << "[";
Colour::consoleColour(type);
std::cout << lookupTable[type];
Colour::consoleColour(CONSOLE_COLOUR_FG_DEFAULT);
std::cout << "] ";
return *this;
}
Logger& operator<< (const LogAction action) {
if (action == LOGGER_ENDL) {
std::cout << outStream.str() << std::endl;
outStream.str(std::string());;
outStream.flush();
}
if (action == LOGGER_EXIT)
exit(0);
return *this;
}
template<typename T>
Logger& operator<< (const T& data) {
outStream << data;
return *this;
}
};
#endif
#ifdef LOGGER_DEFINITION
#undef LOGGER_DEFINITION
void Colour::resetColour() {
#ifdef _WIN32
SetConsoleTextAttribute(h, CONSOLE_COLOUR_BG_DEFAULT);
SetConsoleTextAttribute(h, CONSOLE_COLOUR_FG_DEFAULT);
#else
std::cout
<< "\033[" << CONSOLE_COLOUR_BG_DEFAULT << "m"
<< "\033[" << CONSOLE_COLOUR_FG_DEFAULT << "m";
#endif
}
Logger::Logger() {
#ifdef _WIN32
GetConsoleScreenBufferInfo(h, &csbiInfo);
wOldColorAttrs = csbiInfo.wAttributes;
#endif
lookupTable[LOGGER_INFO] = "INFO";
lookupTable[LOGGER_WARN] = "WARN";
lookupTable[LOGGER_ERROR] = "ERROR";
lookupTable[LOGGER_PANIC] = "PANIC";
lookupTable[LOGGER_DEBUG] = "DEBUG";
}
#endif

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// General includes
#include <chrono>
#include <vector>
// #include <glm/glm.hpp>
// #include <glm/gtc/matrix_transform.hpp>
// #include <glm/gtc/type_ptr.hpp>
// Custom includes
#define LOGGER_DEFINITION
#include <logger.h>
#include "display.h"
#include "camera.h"
#include "shader.h"
#include "model.h"
int main (int argc, char** argv) {
std::cout << "-----------------------------\n"
<< "----- SMH Render Engine -----\n"
<< "-------- Version 0.0 --------\n"
<< "----- ©Benjamin Kyd 2019 ----\n"
<< "-----------------------------\n\n";
Logger logger;
Display display{"SMH Engine", logger, 1280, 720, MXAA_16X, VSYNC_ENABLED};
Camera camera;
camera.mouseSensitivity = 0.0012f;
camera.cameraSpeed = 1.0f;
Shader shader;
shader.load("./resources/shaders/phong").attatch().link().use();
Mesh mesh{ "./resources/lucy.obj" };
mesh.setup();
SDL_Event e;
while (!display.isClosed) {
camera.moveCamera();
while (SDL_PollEvent(&e)) {
if (e.type == SDL_QUIT)
display.isClosed = true;
//if (e.key.keysym.sym == SDLK_t) {
// SDL_SetRelativeMouseMode(SDL_GetRelativeMouseMode() == SDL_TRUE ? SDL_FALSE : SDL_TRUE);
//}
camera.handleMouse(e);
}
const Uint8* state = SDL_GetKeyboardState(NULL);
if (state[SDL_SCANCODE_Q]) {
mesh.rotation += -1.5f;
}
if (state[SDL_SCANCODE_E]) {
mesh.rotation += 1.5f;
}
mesh.bind();
mesh.render(shader, camera);
mesh.unbind();
display.update();
}
return 0;
}

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// General includes
#include <chrono>
#include <vector>
// #include <glm/glm.hpp>
// #include <glm/gtc/matrix_transform.hpp>
// #include <glm/gtc/type_ptr.hpp>
// Custom includes
#define LOGGER_DEFINITION
#include <logger.h>
#include "display.h"
#include "camera.h"
#include "shader.h"
#include "model.h"
#include <iostream>
int main(int argc, char** argv) {
std::cout << "-----------------------------\n"
<< "----- SMH Render Engine -----\n"
<< "-------- Version 0.0 --------\n"
<< "----- ©Benjamin Kyd 2019 ----\n"
<< "-----------------------------\n\n";
Logger logger;
Display display{"SMH Engine", logger, 1280, 720, MXAA_16X, VSYNC_ENABLED};
Camera camera;
camera.mouseSensitivity = 0.0012f;
camera.cameraSpeed = 1.0f;
Shader shader;
shader.load("./resources/shaders/phong").attatch().link().use();
Mesh mesh{ "./resources/lucy.obj" };
mesh.setup();
SDL_Event e;
while (!display.isClosed) {
camera.moveCamera();
while (SDL_PollEvent(&e)) {
if (e.type == SDL_QUIT)
display.isClosed = true;
//if (e.key.keysym.sym == SDLK_t) {
// SDL_SetRelativeMouseMode(SDL_GetRelativeMouseMode() == SDL_TRUE ? SDL_FALSE : SDL_TRUE);
//}
camera.handleMouse(e);
}
const Uint8* state = SDL_GetKeyboardState(NULL);
if (state[SDL_SCANCODE_Q]) {
mesh.rotation += -1.5f;
}
if (state[SDL_SCANCODE_E]) {
mesh.rotation += 1.5f;
}
mesh.bind();
mesh.render(shader, camera);
mesh.unbind();
display.update();
}
std::cout << "bruh" << std::endl;
return 0;
}