tibia-client/src/framework/graphics/graphics.cpp

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/*
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* Copyright (c) 2010-2012 OTClient <https://github.com/edubart/otclient>
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*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* 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 Software.
*
* THE SOFTWARE IS 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 SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
*/
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#include "fontmanager.h"
#if OPENGL_ES==2
#include "painterogl2.h"
#elif OPENGL_ES==1
#include "painterogl1.h"
#else
#include "painterogl1.h"
#include "painterogl2.h"
#endif
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#include <framework/graphics/graphics.h>
#include <framework/graphics/texture.h>
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#include <framework/platform/platformwindow.h>
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Graphics g_graphics;
Graphics::Graphics()
{
m_maxTextureSize = -1;
m_selectedPainterEngine = Painter_Any;
}
void Graphics::init()
{
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g_logger.info(stdext::format("GPU %s", glGetString(GL_RENDERER)));
g_logger.info(stdext::format("OpenGL %s", glGetString(GL_VERSION)));
#if OPENGL_ES==2
g_painterOGL2 = new PainterOGL2;
#elif OPENGL_ES==1
g_painterOGL1 = new PainterOGL1;
#else
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// init GL extensions
GLenum err = glewInit();
if(err != GLEW_OK)
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g_logger.fatal(stdext::format("Unable to init GLEW: %s", glewGetErrorString(err)));
// overwrite framebuffer API if needed
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if(GLEW_EXT_framebuffer_object && !GLEW_ARB_framebuffer_object) {
glGenFramebuffers = glGenFramebuffersEXT;
glDeleteFramebuffers = glDeleteFramebuffersEXT;
glBindFramebuffer = glBindFramebufferEXT;
glFramebufferTexture2D = glFramebufferTexture2DEXT;
glCheckFramebufferStatus = glCheckFramebufferStatusEXT;
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glGenerateMipmap = glGenerateMipmapEXT;
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}
// opengl 1 is always supported
g_painterOGL1 = new PainterOGL1;
// opengl 2 is only supported in newer hardware
if(GLEW_VERSION_2_0)
g_painterOGL2 = new PainterOGL2;
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#endif
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// blending is always enabled
glEnable(GL_BLEND);
// determine max texture size
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GLint maxTextureSize = 0;
glGetIntegerv(GL_MAX_TEXTURE_SIZE, &maxTextureSize);
if(m_maxTextureSize == -1 || m_maxTextureSize > maxTextureSize)
m_maxTextureSize = maxTextureSize;
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m_alphaBits = 0;
glGetIntegerv(GL_ALPHA_BITS, &m_alphaBits);
selectPainterEngine(m_prefferedPainterEngine);
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m_emptyTexture = TexturePtr(new Texture);
}
void Graphics::terminate()
{
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g_fonts.releaseFonts();
#ifdef PAINTER_OGL2
if(g_painterOGL2) {
delete g_painterOGL2;
g_painterOGL2 = nullptr;
}
#endif
#ifdef PAINTER_OGL1
if(g_painterOGL1) {
delete g_painterOGL1;
g_painterOGL1 = nullptr;
}
#endif
g_painter = nullptr;
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m_emptyTexture.reset();
}
bool Graphics::parseOption(const std::string& option)
{
if(option == "-no-draw-arrays")
m_useDrawArrays = false;
else if(option == "-no-fbos")
m_useFBO = false;
else if(option == "-no-mipmaps")
m_useMipmaps = false;
else if(option == "-no-hardware-mipmaps")
m_useHardwareMipmaps = false;
else if(option == "-no-smooth")
m_useBilinearFiltering = false;
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else if(option == "-hardware-buffers")
m_useHardwareBuffers = true;
else if(option == "-no-non-power-of-two-textures")
m_useNonPowerOfTwoTextures = false;
else if(option == "-no-clamp-to-edge")
m_useClampToEdge = false;
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else if(option == "-no-backbuffer-cache")
m_cacheBackbuffer = false;
else if(option == "-opengl1")
m_prefferedPainterEngine = Painter_OpenGL1;
else if(option == "-opengl2")
m_prefferedPainterEngine = Painter_OpenGL2;
else
return false;
return true;
}
bool Graphics::isPainterEngineAvailable(Graphics::PainterEngine painterEngine)
{
#ifdef PAINTER_OGL2
if(g_painterOGL2 && painterEngine == Painter_OpenGL2)
return true;
#endif
#ifdef PAINTER_OGL1
if(g_painterOGL1 && painterEngine == Painter_OpenGL1)
return true;
#endif
return false;
}
bool Graphics::selectPainterEngine(PainterEngine painterEngine)
{
Painter *painter = nullptr;
#ifdef PAINTER_OGL2
// always prefer OpenGL 2 over OpenGL 1
if(!painter && g_painterOGL2 && (painterEngine == Painter_OpenGL2 || painterEngine == Painter_Any)) {
m_selectedPainterEngine = Painter_OpenGL2;
painter = g_painterOGL2;
}
#endif
#ifdef PAINTER_OGL1
// fallback to OpenGL 1 in older hardwares
if(!painter && g_painterOGL1 && (painterEngine == Painter_OpenGL1 || painterEngine == Painter_Any)) {
m_selectedPainterEngine = Painter_OpenGL1;
painter = g_painterOGL1;
}
#endif
// switch painters GL state
if(painter && painter != g_painter) {
if(g_painter)
g_painter->unbind();
painter->bind();
g_painter = painter;
if(painterEngine == Painter_Any)
return true;
} else
g_logger.fatal("Neither OpenGL 1.0 nor OpenGL 2.0 painter engine is supported by your platform, "
"try updating your graphics drivers or your hardware and then run again.");
return m_selectedPainterEngine == painterEngine;
}
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void Graphics::resize(const Size& size)
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{
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setViewportSize(size);
// The projection matrix converts from Painter's coordinate system to GL's coordinate system
// * GL's viewport is 2x2, Painter's is width x height
// * GL has +y -> -y going from bottom -> top, Painter is the other way round
// * GL has [0,0] in the center, Painter has it in the top-left
//
// This results in the Projection matrix below.
//
// Projection Matrix
// Painter Coord ------------------------------------------------ GL Coord
// ------------- | 2.0 / width | 0.0 | 0.0 | ---------------
// | x y 1 | * | 0.0 | -2.0 / height | 0.0 | = | x' y' 1 |
// ------------- | -1.0 | 1.0 | 1.0 | ---------------
// ------------------------------------------------
Matrix3 projectionMatrix = { 2.0f/size.width(), 0.0f, 0.0f,
0.0f, -2.0f/size.height(), 0.0f,
-1.0f, 1.0f, 1.0f };
#ifdef PAINTER_OGL1
if(g_painterOGL1)
g_painterOGL1->setProjectionMatrix(projectionMatrix);
#endif
#ifdef PAINTER_OGL2
if(g_painterOGL2)
g_painterOGL2->setProjectionMatrix(projectionMatrix);
#endif
}
void Graphics::beginRender()
{
//g_painter->clear(Color::black);
}
void Graphics::endRender()
{
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}
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void Graphics::setViewportSize(const Size& size)
{
glViewport(0, 0, size.width(), size.height());
m_viewportSize = size;
}
bool Graphics::canUseDrawArrays()
{
#ifdef OPENGL_ES
return true;
#else
// glDrawArrays is supported by OpenGL 1.1
if(!GLEW_VERSION_1_1)
return false;
return m_useDrawArrays;
#endif
}
bool Graphics::canUseShaders()
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{
#if OPENGL_ES==2
return true;
#elif OPENGL_ES==1
return false;
#else
// fragment and vertex programs are supported by OpenGL 2.0
if(GLEW_ARB_vertex_program && GLEW_ARB_vertex_shader && GLEW_ARB_fragment_shader)
return true;
return false;
#endif
}
bool Graphics::canUseFBO()
{
#if OPENGL_ES==2
return m_useFBO;
#elif OPENGL_ES==1
return false;
#else
// FBOs are supported by OpenGL 3.0
// or by OpenGL 2.0 with EXT_framebuffer_object (most of the OpenGL 2.0 implementations have this extension)
if(!GLEW_ARB_framebuffer_object || !GLEW_EXT_framebuffer_object)
return false;
return m_useFBO;
#endif
}
bool Graphics::canUseBilinearFiltering()
{
// bilinear filtering is supported by any OpenGL implementation
return m_useBilinearFiltering;
}
bool Graphics::canUseHardwareBuffers()
{
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#if OPENGL_ES==2
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return m_useHardwareBuffers;
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#elif OPENGL_ES==1
// OpenGL ES 1.1 supports it but OpenGL ES 1.0 not
return false;
#else
// vertex buffer objects is supported by OpenGL 1.5
if(!GLEW_ARB_vertex_buffer_object)
return false;
#endif
return m_useHardwareBuffers;
}
bool Graphics::canUseNonPowerOfTwoTextures()
{
#if OPENGL_ES==2
return m_useNonPowerOfTwoTextures;
#elif OPENGL_ES==1
return false;
#else
// power of two textures is supported by OpenGL 2.0
if(!GLEW_ARB_texture_non_power_of_two)
return false;
return m_useNonPowerOfTwoTextures;
#endif
}
bool Graphics::canUseMipmaps()
{
// mipmaps is supported by any OpenGL implementation
return m_useMipmaps;
}
bool Graphics::canUseHardwareMipmaps()
{
#if OPENGL_ES==2
return m_useHardwareMipmaps;
#elif OPENGL_ES==1
return false;
#else
// glGenerateMipmap is supported when FBOs are
if(!GLEW_ARB_framebuffer_object || !GLEW_EXT_framebuffer_object)
return false;
return m_useHardwareMipmaps;
#endif
}
bool Graphics::canUseClampToEdge()
{
#ifdef OPENGL_ES
return m_useClampToEdge;
#else
// GL_CLAMP_TO_EDGE is present in OpenGL 1.2
if(!GLEW_VERSION_1_2)
return false;
return m_useClampToEdge;
#endif
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}
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bool Graphics::canUseBlendFuncSeparate()
{
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#if OPENGL_ES==2
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return true;
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#elif OPENGL_ES==1
return false;
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#else
if(!GLEW_VERSION_1_4)
return false;
return true;
#endif
}
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bool Graphics::canCacheBackbuffer()
{
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if(!m_alphaBits)
return false;
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#if OPENGL_ES==2
return m_cacheBackbuffer;
#elif OPENGL_ES==1
return false;
#else
if(!GLEW_VERSION_1_4)
return false;
return m_cacheBackbuffer;
#endif
}