mirror of
https://github.com/glfw/glfw.git
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519 lines
16 KiB
C
519 lines
16 KiB
C
//========================================================================
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// GLFW 3.1 EGL - www.glfw.org
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//------------------------------------------------------------------------
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// Copyright (c) 2002-2006 Marcus Geelnard
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// Copyright (c) 2006-2010 Camilla Berglund <elmindreda@elmindreda.org>
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//
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// This software is provided 'as-is', without any express or implied
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// warranty. In no event will the authors be held liable for any damages
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// arising from the use of this software.
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//
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// Permission is granted to anyone to use this software for any purpose,
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// including commercial applications, and to alter it and redistribute it
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// freely, subject to the following restrictions:
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//
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// 1. The origin of this software must not be misrepresented; you must not
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// claim that you wrote the original software. If you use this software
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// in a product, an acknowledgment in the product documentation would
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// be appreciated but is not required.
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//
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// 2. Altered source versions must be plainly marked as such, and must not
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// be misrepresented as being the original software.
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//
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// 3. This notice may not be removed or altered from any source
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// distribution.
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//
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//========================================================================
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#include "internal.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <assert.h>
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// Return a description of the specified EGL error
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//
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static const char* getErrorString(EGLint error)
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{
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switch (error)
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{
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case EGL_SUCCESS:
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return "Success";
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case EGL_NOT_INITIALIZED:
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return "EGL is not or could not be initialized";
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case EGL_BAD_ACCESS:
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return "EGL cannot access a requested resource";
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case EGL_BAD_ALLOC:
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return "EGL failed to allocate resources for the requested operation";
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case EGL_BAD_ATTRIBUTE:
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return "An unrecognized attribute or attribute value was passed in the attribute list";
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case EGL_BAD_CONTEXT:
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return "An EGLContext argument does not name a valid EGL rendering context";
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case EGL_BAD_CONFIG:
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return "An EGLConfig argument does not name a valid EGL frame buffer configuration";
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case EGL_BAD_CURRENT_SURFACE:
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return "The current surface of the calling thread is a window, pixel buffer or pixmap that is no longer valid";
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case EGL_BAD_DISPLAY:
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return "An EGLDisplay argument does not name a valid EGL display connection";
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case EGL_BAD_SURFACE:
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return "An EGLSurface argument does not name a valid surface configured for GL rendering";
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case EGL_BAD_MATCH:
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return "Arguments are inconsistent";
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case EGL_BAD_PARAMETER:
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return "One or more argument values are invalid";
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case EGL_BAD_NATIVE_PIXMAP:
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return "A NativePixmapType argument does not refer to a valid native pixmap";
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case EGL_BAD_NATIVE_WINDOW:
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return "A NativeWindowType argument does not refer to a valid native window";
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case EGL_CONTEXT_LOST:
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return "The application must destroy all contexts and reinitialise";
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}
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return "UNKNOWN EGL ERROR";
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}
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// Returns the specified attribute of the specified EGLConfig
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//
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static int getConfigAttrib(EGLConfig config, int attrib)
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{
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int value;
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eglGetConfigAttrib(_glfw.egl.display, config, attrib, &value);
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return value;
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}
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// Return a list of available and usable framebuffer configs
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//
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static GLboolean chooseFBConfigs(const _GLFWctxconfig* ctxconfig,
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const _GLFWfbconfig* desired,
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EGLConfig* result)
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{
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EGLConfig* nativeConfigs;
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_GLFWfbconfig* usableConfigs;
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const _GLFWfbconfig* closest;
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int i, nativeCount, usableCount;
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eglGetConfigs(_glfw.egl.display, NULL, 0, &nativeCount);
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if (!nativeCount)
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{
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_glfwInputError(GLFW_API_UNAVAILABLE, "EGL: No EGLConfigs returned");
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return GL_FALSE;
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}
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nativeConfigs = calloc(nativeCount, sizeof(EGLConfig));
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eglGetConfigs(_glfw.egl.display, nativeConfigs, nativeCount, &nativeCount);
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usableConfigs = calloc(nativeCount, sizeof(_GLFWfbconfig));
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usableCount = 0;
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for (i = 0; i < nativeCount; i++)
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{
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const EGLConfig n = nativeConfigs[i];
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_GLFWfbconfig* u = usableConfigs + usableCount;
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#if defined(_GLFW_X11)
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// Only consider EGLConfigs with associated visuals
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if (!getConfigAttrib(n, EGL_NATIVE_VISUAL_ID))
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continue;
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#endif // _GLFW_X11
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// Only consider RGB(A) EGLConfigs
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if (!(getConfigAttrib(n, EGL_COLOR_BUFFER_TYPE) & EGL_RGB_BUFFER))
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continue;
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// Only consider window EGLConfigs
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if (!(getConfigAttrib(n, EGL_SURFACE_TYPE) & EGL_WINDOW_BIT))
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continue;
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if (ctxconfig->api == GLFW_OPENGL_ES_API)
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{
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if (ctxconfig->major == 1)
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{
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if (!(getConfigAttrib(n, EGL_RENDERABLE_TYPE) & EGL_OPENGL_ES_BIT))
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continue;
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}
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else
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{
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if (!(getConfigAttrib(n, EGL_RENDERABLE_TYPE) & EGL_OPENGL_ES2_BIT))
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continue;
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}
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}
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else if (ctxconfig->api == GLFW_OPENGL_API)
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{
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if (!(getConfigAttrib(n, EGL_RENDERABLE_TYPE) & EGL_OPENGL_BIT))
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continue;
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}
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u->redBits = getConfigAttrib(n, EGL_RED_SIZE);
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u->greenBits = getConfigAttrib(n, EGL_GREEN_SIZE);
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u->blueBits = getConfigAttrib(n, EGL_BLUE_SIZE);
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u->alphaBits = getConfigAttrib(n, EGL_ALPHA_SIZE);
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u->depthBits = getConfigAttrib(n, EGL_DEPTH_SIZE);
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u->stencilBits = getConfigAttrib(n, EGL_STENCIL_SIZE);
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u->samples = getConfigAttrib(n, EGL_SAMPLES);
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u->doublebuffer = GL_TRUE;
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u->egl = n;
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usableCount++;
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}
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closest = _glfwChooseFBConfig(desired, usableConfigs, usableCount);
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if (closest)
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*result = closest->egl;
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free(nativeConfigs);
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free(usableConfigs);
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return closest ? GL_TRUE : GL_FALSE;
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}
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//////////////////////////////////////////////////////////////////////////
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////// GLFW internal API //////
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//////////////////////////////////////////////////////////////////////////
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// Initialize EGL
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//
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int _glfwInitContextAPI(void)
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{
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if (!_glfwCreateContextTLS())
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return GL_FALSE;
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_glfw.egl.display = eglGetDisplay((EGLNativeDisplayType)_GLFW_EGL_NATIVE_DISPLAY);
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if (_glfw.egl.display == EGL_NO_DISPLAY)
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{
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_glfwInputError(GLFW_API_UNAVAILABLE,
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"EGL: Failed to get EGL display: %s",
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getErrorString(eglGetError()));
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return GL_FALSE;
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}
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if (!eglInitialize(_glfw.egl.display, &_glfw.egl.major, &_glfw.egl.minor))
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{
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_glfwInputError(GLFW_API_UNAVAILABLE,
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"EGL: Failed to initialize EGL: %s",
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getErrorString(eglGetError()));
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return GL_FALSE;
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}
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if (_glfwPlatformExtensionSupported("EGL_KHR_create_context"))
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_glfw.egl.KHR_create_context = GL_TRUE;
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return GL_TRUE;
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}
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// Terminate EGL
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//
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void _glfwTerminateContextAPI(void)
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{
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eglTerminate(_glfw.egl.display);
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_glfwDestroyContextTLS();
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}
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#define setEGLattrib(attribName, attribValue) \
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{ \
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attribs[index++] = attribName; \
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attribs[index++] = attribValue; \
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assert((size_t) index < sizeof(attribs) / sizeof(attribs[0])); \
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}
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// Create the OpenGL or OpenGL ES context
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//
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int _glfwCreateContext(_GLFWwindow* window,
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const _GLFWctxconfig* ctxconfig,
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const _GLFWfbconfig* fbconfig)
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{
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int attribs[40];
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EGLConfig config;
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EGLContext share = NULL;
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if (ctxconfig->share)
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share = ctxconfig->share->egl.context;
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if (!chooseFBConfigs(ctxconfig, fbconfig, &config))
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{
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_glfwInputError(GLFW_PLATFORM_ERROR,
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"EGL: Failed to find a suitable EGLConfig");
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return GL_FALSE;
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}
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#if defined(_GLFW_X11)
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// Retrieve the visual corresponding to the chosen EGL config
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{
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EGLint count = 0;
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int mask;
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EGLint redBits, greenBits, blueBits, alphaBits, visualID = 0;
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XVisualInfo info;
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eglGetConfigAttrib(_glfw.egl.display, config,
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EGL_NATIVE_VISUAL_ID, &visualID);
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info.screen = _glfw.x11.screen;
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mask = VisualScreenMask;
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if (visualID)
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{
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// The X window visual must match the EGL config
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info.visualid = visualID;
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mask |= VisualIDMask;
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}
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else
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{
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// Some EGL drivers do not implement the EGL_NATIVE_VISUAL_ID
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// attribute, so attempt to find the closest match
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eglGetConfigAttrib(_glfw.egl.display, config,
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EGL_RED_SIZE, &redBits);
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eglGetConfigAttrib(_glfw.egl.display, config,
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EGL_GREEN_SIZE, &greenBits);
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eglGetConfigAttrib(_glfw.egl.display, config,
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EGL_BLUE_SIZE, &blueBits);
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eglGetConfigAttrib(_glfw.egl.display, config,
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EGL_ALPHA_SIZE, &alphaBits);
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info.depth = redBits + greenBits + blueBits + alphaBits;
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mask |= VisualDepthMask;
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}
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window->egl.visual = XGetVisualInfo(_glfw.x11.display,
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mask, &info, &count);
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if (!window->egl.visual)
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{
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_glfwInputError(GLFW_PLATFORM_ERROR,
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"EGL: Failed to retrieve visual for EGLConfig");
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return GL_FALSE;
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}
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}
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#endif // _GLFW_X11
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if (ctxconfig->api == GLFW_OPENGL_ES_API)
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{
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if (!eglBindAPI(EGL_OPENGL_ES_API))
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{
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_glfwInputError(GLFW_API_UNAVAILABLE,
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"EGL: Failed to bind OpenGL ES: %s",
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getErrorString(eglGetError()));
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return GL_FALSE;
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}
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}
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else
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{
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if (!eglBindAPI(EGL_OPENGL_API))
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{
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_glfwInputError(GLFW_API_UNAVAILABLE,
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"EGL: Failed to bind OpenGL: %s",
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getErrorString(eglGetError()));
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return GL_FALSE;
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}
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}
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if (_glfw.egl.KHR_create_context)
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{
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int index = 0, mask = 0, flags = 0;
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if (ctxconfig->api == GLFW_OPENGL_API)
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{
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if (ctxconfig->forward)
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flags |= EGL_CONTEXT_OPENGL_FORWARD_COMPATIBLE_BIT_KHR;
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if (ctxconfig->profile == GLFW_OPENGL_CORE_PROFILE)
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mask |= EGL_CONTEXT_OPENGL_CORE_PROFILE_BIT_KHR;
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else if (ctxconfig->profile == GLFW_OPENGL_COMPAT_PROFILE)
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mask |= EGL_CONTEXT_OPENGL_COMPATIBILITY_PROFILE_BIT_KHR;
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}
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if (ctxconfig->debug)
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flags |= EGL_CONTEXT_OPENGL_DEBUG_BIT_KHR;
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if (ctxconfig->robustness)
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{
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if (ctxconfig->robustness == GLFW_NO_RESET_NOTIFICATION)
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{
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setEGLattrib(EGL_CONTEXT_OPENGL_RESET_NOTIFICATION_STRATEGY_KHR,
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EGL_NO_RESET_NOTIFICATION_KHR);
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}
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else if (ctxconfig->robustness == GLFW_LOSE_CONTEXT_ON_RESET)
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{
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setEGLattrib(EGL_CONTEXT_OPENGL_RESET_NOTIFICATION_STRATEGY_KHR,
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EGL_LOSE_CONTEXT_ON_RESET_KHR);
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}
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flags |= EGL_CONTEXT_OPENGL_ROBUST_ACCESS_BIT_KHR;
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}
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if (ctxconfig->major != 1 || ctxconfig->minor != 0)
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{
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setEGLattrib(EGL_CONTEXT_MAJOR_VERSION_KHR, ctxconfig->major);
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setEGLattrib(EGL_CONTEXT_MINOR_VERSION_KHR, ctxconfig->minor);
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}
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if (mask)
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setEGLattrib(EGL_CONTEXT_OPENGL_PROFILE_MASK_KHR, mask);
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if (flags)
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setEGLattrib(EGL_CONTEXT_FLAGS_KHR, flags);
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setEGLattrib(EGL_NONE, EGL_NONE);
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}
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else
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{
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int index = 0;
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if (ctxconfig->api == GLFW_OPENGL_ES_API)
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setEGLattrib(EGL_CONTEXT_CLIENT_VERSION, ctxconfig->major);
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setEGLattrib(EGL_NONE, EGL_NONE);
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}
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// Context release behaviors (GL_KHR_context_flush_control) are not yet
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// supported on EGL but are not a hard constraint, so ignore and continue
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window->egl.context = eglCreateContext(_glfw.egl.display,
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config, share, attribs);
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if (window->egl.context == EGL_NO_CONTEXT)
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{
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_glfwInputError(GLFW_VERSION_UNAVAILABLE,
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"EGL: Failed to create context: %s",
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getErrorString(eglGetError()));
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return GL_FALSE;
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}
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window->egl.config = config;
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return GL_TRUE;
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}
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#undef setEGLattrib
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// Destroy the OpenGL context
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//
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void _glfwDestroyContext(_GLFWwindow* window)
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{
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#if defined(_GLFW_X11)
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if (window->egl.visual)
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{
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XFree(window->egl.visual);
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window->egl.visual = NULL;
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}
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#endif // _GLFW_X11
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if (window->egl.surface)
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{
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eglDestroySurface(_glfw.egl.display, window->egl.surface);
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window->egl.surface = EGL_NO_SURFACE;
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}
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if (window->egl.context)
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{
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eglDestroyContext(_glfw.egl.display, window->egl.context);
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window->egl.context = EGL_NO_CONTEXT;
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}
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}
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// Analyzes the specified context for possible recreation
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//
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int _glfwAnalyzeContext(const _GLFWwindow* window,
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const _GLFWctxconfig* ctxconfig,
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const _GLFWfbconfig* fbconfig)
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{
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#if defined(_GLFW_WIN32)
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return _GLFW_RECREATION_NOT_NEEDED;
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#else
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return 0;
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#endif
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}
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//////////////////////////////////////////////////////////////////////////
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////// GLFW platform API //////
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//////////////////////////////////////////////////////////////////////////
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void _glfwPlatformMakeContextCurrent(_GLFWwindow* window)
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{
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if (window)
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{
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if (window->egl.surface == EGL_NO_SURFACE)
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{
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window->egl.surface = eglCreateWindowSurface(_glfw.egl.display,
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window->egl.config,
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(EGLNativeWindowType)_GLFW_EGL_NATIVE_WINDOW,
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NULL);
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if (window->egl.surface == EGL_NO_SURFACE)
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{
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_glfwInputError(GLFW_PLATFORM_ERROR,
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"EGL: Failed to create window surface: %s",
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getErrorString(eglGetError()));
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}
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}
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eglMakeCurrent(_glfw.egl.display,
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window->egl.surface,
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window->egl.surface,
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window->egl.context);
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}
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else
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{
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eglMakeCurrent(_glfw.egl.display,
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EGL_NO_SURFACE, EGL_NO_SURFACE, EGL_NO_CONTEXT);
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}
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_glfwSetContextTLS(window);
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}
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void _glfwPlatformSwapBuffers(_GLFWwindow* window)
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{
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eglSwapBuffers(_glfw.egl.display, window->egl.surface);
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}
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void _glfwPlatformSwapInterval(int interval)
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{
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eglSwapInterval(_glfw.egl.display, interval);
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}
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int _glfwPlatformExtensionSupported(const char* extension)
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{
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const char* extensions = eglQueryString(_glfw.egl.display, EGL_EXTENSIONS);
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if (extensions)
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{
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if (_glfwStringInExtensionString(extension, extensions))
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return GL_TRUE;
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}
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return GL_FALSE;
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}
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GLFWglproc _glfwPlatformGetProcAddress(const char* procname)
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{
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return eglGetProcAddress(procname);
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}
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//////////////////////////////////////////////////////////////////////////
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////// GLFW native API //////
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//////////////////////////////////////////////////////////////////////////
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GLFWAPI EGLDisplay glfwGetEGLDisplay(void)
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{
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_GLFW_REQUIRE_INIT_OR_RETURN(EGL_NO_DISPLAY);
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return _glfw.egl.display;
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}
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GLFWAPI EGLContext glfwGetEGLContext(GLFWwindow* handle)
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{
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_GLFWwindow* window = (_GLFWwindow*) handle;
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_GLFW_REQUIRE_INIT_OR_RETURN(EGL_NO_CONTEXT);
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return window->egl.context;
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}
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GLFWAPI EGLSurface glfwGetEGLSurface(GLFWwindow* handle)
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{
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_GLFWwindow* window = (_GLFWwindow*) handle;
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_GLFW_REQUIRE_INIT_OR_RETURN(EGL_NO_SURFACE);
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return window->egl.surface;
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}
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