mirror of
https://github.com/gnif/LookingGlass.git
synced 2024-11-25 23:07:18 +00:00
bca54ab1f6
This changes the method of the memory copy from the host application to the guest. Instead of performing a full copy from the capture device into shared memory, and then flagging the new frame, we instead set a write pointer, flag the client that there is a new frame and then copy in chunks of 1024 bytes until the entire frame is copied. The client upon seeing the new frame flag begins to poll at high frequency the write pointer and upon each update copies as much as it can into the texture. This should improve latency but also slightly increase CPU usage on the client due to the high frequency polling.
569 lines
14 KiB
C
569 lines
14 KiB
C
/*
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Looking Glass - KVM FrameRelay (KVMFR) Client
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Copyright (C) 2017-2019 Geoffrey McRae <geoff@hostfission.com>
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https://looking-glass.hostfission.com
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This program is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free Software
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Foundation; either version 2 of the License, or (at your option) any later
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version.
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This program is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A
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PARTICULAR PURPOSE. See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along with
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this program; if not, write to the Free Software Foundation, Inc., 59 Temple
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Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include "interface/renderer.h"
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#include "common/debug.h"
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#include "common/option.h"
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#include "common/sysinfo.h"
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#include "utils.h"
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#include "dynamic/fonts.h"
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#include <SDL2/SDL_syswm.h>
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#include <SDL2/SDL_egl.h>
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#if defined(SDL_VIDEO_DRIVER_WAYLAND)
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#include <wayland-egl.h>
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#endif
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#include "model.h"
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#include "shader.h"
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#include "desktop.h"
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#include "cursor.h"
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#include "fps.h"
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#include "splash.h"
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#include "alert.h"
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#define SPLASH_FADE_TIME 1000000
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#define ALERT_TIMEOUT 2000000
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struct Options
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{
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bool vsync;
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};
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struct Inst
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{
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LG_RendererParams params;
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struct Options opt;
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EGLNativeDisplayType nativeDisp;
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EGLNativeWindowType nativeWind;
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EGLDisplay display;
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EGLConfig configs;
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EGLSurface surface;
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EGLContext context;
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EGL_Desktop * desktop; // the desktop
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EGL_Cursor * cursor; // the mouse cursor
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EGL_FPS * fps; // the fps display
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EGL_Splash * splash; // the splash screen
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EGL_Alert * alert; // the alert display
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LG_RendererFormat format;
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bool sourceChanged;
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uint64_t waitFadeTime;
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bool waitDone;
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bool showAlert;
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uint64_t alertTimeout;
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bool useCloseFlag;
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bool closeFlag;
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int width, height;
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LG_RendererRect destRect;
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float translateX , translateY;
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float scaleX , scaleY;
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float splashRatio;
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float screenScaleX, screenScaleY;
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bool useNearest;
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bool cursorVisible;
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int cursorX , cursorY;
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float mouseWidth , mouseHeight;
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float mouseScaleX, mouseScaleY;
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const LG_Font * font;
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LG_FontObj fontObj;
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};
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static struct Option egl_options[] =
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{
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{
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.module = "egl",
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.name = "vsync",
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.description = "Enable vsync",
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.type = OPTION_TYPE_BOOL,
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.value.x_bool = false
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},
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{
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.module = "egl",
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.name = "doubleBuffer",
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.description = "Enable double buffering",
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.type = OPTION_TYPE_BOOL,
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.value.x_bool = true
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},
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{
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.module = "egl",
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.name = "multisample",
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.description = "Enable Multisampling",
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.type = OPTION_TYPE_BOOL,
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.value.x_bool = true
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},
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{
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.module = "egl",
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.name = "nvGainMax",
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.description = "The maximum night vision gain",
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.type = OPTION_TYPE_INT,
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.value.x_int = 1
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},
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{
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.module = "egl",
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.name = "nvGain",
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.description = "The initial night vision gain at startup",
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.type = OPTION_TYPE_INT,
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.value.x_int = 0
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},
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{0}
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};
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void update_mouse_shape(struct Inst * this);
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const char * egl_get_name()
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{
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return "EGL";
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}
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void egl_setup()
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{
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option_register(egl_options);
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}
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bool egl_create(void ** opaque, const LG_RendererParams params)
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{
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// create our local storage
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*opaque = malloc(sizeof(struct Inst));
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if (!*opaque)
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{
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DEBUG_INFO("Failed to allocate %lu bytes", sizeof(struct Inst));
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return false;
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}
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memset(*opaque, 0, sizeof(struct Inst));
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// safe off parameteres and init our default option values
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struct Inst * this = (struct Inst *)*opaque;
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memcpy(&this->params, ¶ms, sizeof(LG_RendererParams));
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this->opt.vsync = option_get_bool("egl", "vsync");
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this->translateX = 0;
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this->translateY = 0;
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this->scaleX = 1.0f;
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this->scaleY = 1.0f;
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this->screenScaleX = 1.0f;
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this->screenScaleY = 1.0f;
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this->font = LG_Fonts[0];
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if (!this->font->create(&this->fontObj, NULL, 16))
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{
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DEBUG_ERROR("Failed to create a font instance");
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return false;
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}
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return true;
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}
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bool egl_initialize(void * opaque, Uint32 * sdlFlags)
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{
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const bool doubleBuffer = option_get_bool("egl", "doubleBuffer");
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DEBUG_INFO("Double buffering is %s", doubleBuffer ? "on" : "off");
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*sdlFlags = SDL_WINDOW_OPENGL;
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SDL_GL_SetAttribute(SDL_GL_DOUBLEBUFFER , doubleBuffer ? 1 : 0);
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SDL_GL_SetAttribute(SDL_GL_CONTEXT_PROFILE_MASK, SDL_GL_CONTEXT_PROFILE_CORE);
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if (option_get_bool("egl", "multisample"))
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{
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int maxSamples = sysinfo_gfx_max_multisample();
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if (maxSamples > 1)
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{
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if (maxSamples > 4)
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maxSamples = 4;
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DEBUG_INFO("Multsampling enabled, max samples: %d", maxSamples);
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SDL_GL_SetAttribute(SDL_GL_MULTISAMPLEBUFFERS, 1);
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SDL_GL_SetAttribute(SDL_GL_MULTISAMPLESAMPLES, maxSamples);
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}
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}
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return true;
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}
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void egl_deinitialize(void * opaque)
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{
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struct Inst * this = (struct Inst *)opaque;
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if (this->font && this->fontObj)
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this->font->destroy(this->fontObj);
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egl_desktop_free(&this->desktop);
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egl_cursor_free (&this->cursor);
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egl_fps_free (&this->fps );
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egl_splash_free (&this->splash);
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egl_alert_free (&this->alert );
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free(this);
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}
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void egl_on_resize(void * opaque, const int width, const int height, const LG_RendererRect destRect)
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{
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struct Inst * this = (struct Inst *)opaque;
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this->width = width;
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this->height = height;
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memcpy(&this->destRect, &destRect, sizeof(LG_RendererRect));
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glViewport(0, 0, width, height);
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if (destRect.valid)
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{
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this->translateX = 1.0f - (((destRect.w / 2) + destRect.x) * 2) / (float)width;
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this->translateY = 1.0f - (((destRect.h / 2) + destRect.y) * 2) / (float)height;
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this->scaleX = (float)destRect.w / (float)width;
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this->scaleY = (float)destRect.h / (float)height;
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}
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this->mouseScaleX = 2.0f / this->format.width ;
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this->mouseScaleY = 2.0f / this->format.height;
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egl_cursor_set_size(this->cursor,
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(this->mouseWidth * (1.0f / this->format.width )) * this->scaleX,
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(this->mouseHeight * (1.0f / this->format.height)) * this->scaleY
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);
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this->splashRatio = (float)width / (float)height;
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this->screenScaleX = 1.0f / width;
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this->screenScaleY = 1.0f / height;
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egl_cursor_set_state(
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this->cursor,
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this->cursorVisible,
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(((float)this->cursorX * this->mouseScaleX) - 1.0f) * this->scaleX,
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(((float)this->cursorY * this->mouseScaleY) - 1.0f) * this->scaleY
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);
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}
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bool egl_on_mouse_shape(void * opaque, const LG_RendererCursor cursor, const int width, const int height, const int pitch, const uint8_t * data)
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{
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struct Inst * this = (struct Inst *)opaque;
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if (!egl_cursor_set_shape(this->cursor, cursor, width, height, pitch, data))
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{
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DEBUG_ERROR("Failed to update the cursor shape");
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return false;
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}
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this->mouseWidth = width;
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this->mouseHeight = height;
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egl_cursor_set_size(this->cursor,
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(this->mouseWidth * (1.0f / this->format.width )) * this->scaleX,
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(this->mouseHeight * (1.0f / this->format.height)) * this->scaleY
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);
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return true;
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}
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bool egl_on_mouse_event(void * opaque, const bool visible, const int x, const int y)
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{
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struct Inst * this = (struct Inst *)opaque;
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this->cursorVisible = visible;
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this->cursorX = x;
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this->cursorY = y;
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egl_cursor_set_state(
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this->cursor,
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this->cursorVisible,
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(((float)this->cursorX * this->mouseScaleX) - 1.0f) * this->scaleX,
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(((float)this->cursorY * this->mouseScaleY) - 1.0f) * this->scaleY
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);
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return true;
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}
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bool egl_on_frame_event(void * opaque, const LG_RendererFormat format, const FrameBuffer frame)
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{
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struct Inst * this = (struct Inst *)opaque;
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this->sourceChanged = (
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this->sourceChanged ||
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this->format.type != format.type ||
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this->format.width != format.width ||
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this->format.height != format.height ||
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this->format.pitch != format.pitch
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);
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if (this->sourceChanged)
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memcpy(&this->format, &format, sizeof(LG_RendererFormat));
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this->useNearest = this->width < format.width || this->height < format.height;
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if (!egl_desktop_prepare_update(this->desktop, this->sourceChanged, format, frame))
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{
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DEBUG_INFO("Failed to prepare to update the desktop");
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return false;
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}
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return true;
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}
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void egl_on_alert(void * opaque, const LG_MsgAlert alert, const char * message, bool ** closeFlag)
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{
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struct Inst * this = (struct Inst *)opaque;
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static const uint32_t colors[] =
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{
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0x0000CCCC, // LG_ALERT_INFO
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0x00CC00CC, // LG_ALERT_SUCCESS
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0xCC7F00CC, // LG_ALERT_WARNING
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0xFF0000CC // LG_ALERT_ERROR
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};
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if (alert > LG_ALERT_ERROR || alert < 0)
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{
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DEBUG_ERROR("Invalid alert value");
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return;
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}
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egl_alert_set_color(this->alert, colors[alert]);
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egl_alert_set_text (this->alert, message );
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if (closeFlag)
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{
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this->useCloseFlag = true;
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*closeFlag = &this->closeFlag;
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}
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else
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{
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this->useCloseFlag = false;
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this->alertTimeout = microtime() + ALERT_TIMEOUT;
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}
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this->showAlert = true;
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}
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bool egl_render_startup(void * opaque, SDL_Window * window)
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{
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struct Inst * this = (struct Inst *)opaque;
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SDL_SysWMinfo wminfo;
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SDL_VERSION(&wminfo.version);
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if (!SDL_GetWindowWMInfo(window, &wminfo))
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{
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DEBUG_ERROR("SDL_GetWindowWMInfo failed");
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return false;
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}
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switch(wminfo.subsystem)
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{
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case SDL_SYSWM_X11:
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{
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this->nativeDisp = (EGLNativeDisplayType)wminfo.info.x11.display;
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this->nativeWind = (EGLNativeWindowType)wminfo.info.x11.window;
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break;
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}
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#if defined(SDL_VIDEO_DRIVER_WAYLAND)
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case SDL_SYSWM_WAYLAND:
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{
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int width, height;
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SDL_GetWindowSize(window, &width, &height);
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this->nativeDisp = (EGLNativeDisplayType)wminfo.info.wl.display;
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this->nativeWind = (EGLNativeWindowType)wl_egl_window_create(wminfo.info.wl.surface, width, height);
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break;
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}
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#endif
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default:
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DEBUG_ERROR("Unsupported subsystem");
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return false;
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}
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this->display = eglGetDisplay(this->nativeDisp);
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if (this->display == EGL_NO_DISPLAY)
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{
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DEBUG_ERROR("eglGetDisplay failed");
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return false;
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}
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if (!eglInitialize(this->display, NULL, NULL))
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{
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DEBUG_ERROR("Unable to initialize EGL");
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return false;
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}
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EGLint attr[] =
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{
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EGL_BUFFER_SIZE , 32,
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EGL_RENDERABLE_TYPE, EGL_OPENGL_ES2_BIT,
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EGL_SAMPLE_BUFFERS , 1,
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EGL_SAMPLES , 4,
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EGL_NONE
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};
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EGLint num_config;
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if (!eglChooseConfig(this->display, attr, &this->configs, 1, &num_config))
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{
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DEBUG_ERROR("Failed to choose config (eglError: 0x%x)", eglGetError());
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return false;
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}
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this->surface = eglCreateWindowSurface(this->display, this->configs, this->nativeWind, NULL);
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if (this->surface == EGL_NO_SURFACE)
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{
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DEBUG_ERROR("Failed to create EGL surface (eglError: 0x%x)", eglGetError());
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return false;
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}
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EGLint ctxattr[] =
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{
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EGL_CONTEXT_CLIENT_VERSION, 2,
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EGL_NONE
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};
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this->context = eglCreateContext(this->display, this->configs, EGL_NO_CONTEXT, ctxattr);
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if (this->context == EGL_NO_CONTEXT)
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{
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DEBUG_ERROR("Failed to create EGL context (eglError: 0x%x)", eglGetError());
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return false;
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}
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eglMakeCurrent(this->display, this->surface, this->surface, this->context);
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DEBUG_INFO("Vendor : %s", glGetString(GL_VENDOR ));
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DEBUG_INFO("Renderer: %s", glGetString(GL_RENDERER));
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DEBUG_INFO("Version : %s", glGetString(GL_VERSION ));
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eglSwapInterval(this->display, this->opt.vsync ? 1 : 0);
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if (!egl_desktop_init(&this->desktop))
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{
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DEBUG_ERROR("Failed to initialize the desktop");
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return false;
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}
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if (!egl_cursor_init(&this->cursor))
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{
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DEBUG_ERROR("Failed to initialize the cursor");
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return false;
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}
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if (!egl_fps_init(&this->fps, this->font, this->fontObj))
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{
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DEBUG_ERROR("Failed to initialize the FPS display");
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return false;
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}
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if (!egl_splash_init(&this->splash))
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{
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DEBUG_ERROR("Failed to initialize the splash screen");
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return false;
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}
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if (!egl_alert_init(&this->alert, this->font, this->fontObj))
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{
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DEBUG_ERROR("Failed to initialize the alert display");
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return false;
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}
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return true;
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}
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bool egl_render(void * opaque, SDL_Window * window)
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{
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struct Inst * this = (struct Inst *)opaque;
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glClearColor(0.0f, 0.0f, 0.0f, 1.0f);
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glClear(GL_COLOR_BUFFER_BIT);
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if (egl_desktop_render(this->desktop, this->translateX, this->translateY, this->scaleX, this->scaleY, this->useNearest))
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{
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if (!this->waitFadeTime)
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this->waitFadeTime = microtime() + SPLASH_FADE_TIME;
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egl_cursor_render(this->cursor);
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}
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if (!this->waitDone)
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{
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float a = 1.0f;
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if (!this->waitFadeTime)
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a = 1.0f;
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else
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{
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uint64_t t = microtime();
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if (t > this->waitFadeTime)
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this->waitDone = true;
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else
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{
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uint64_t delta = this->waitFadeTime - t;
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a = 1.0f / SPLASH_FADE_TIME * delta;
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}
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}
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if (!this->waitDone)
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egl_splash_render(this->splash, a, this->splashRatio);
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}
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if (this->showAlert)
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{
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bool close = false;
|
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if (this->useCloseFlag)
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close = this->closeFlag;
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else if (this->alertTimeout < microtime())
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close = true;
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if (close)
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this->showAlert = false;
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else
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egl_alert_render(this->alert, this->screenScaleX, this->screenScaleY);
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}
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egl_fps_render(this->fps, this->screenScaleX, this->screenScaleY);
|
|
eglSwapBuffers(this->display, this->surface);
|
|
|
|
// defer texture uploads until after the flip to avoid stalling
|
|
egl_desktop_perform_update(this->desktop, this->sourceChanged);
|
|
|
|
this->sourceChanged = false;
|
|
return true;
|
|
}
|
|
|
|
void egl_update_fps(void * opaque, const float avgUPS, const float avgFPS)
|
|
{
|
|
struct Inst * this = (struct Inst *)opaque;
|
|
if (!this->params.showFPS)
|
|
return;
|
|
|
|
egl_fps_update(this->fps, avgUPS, avgFPS);
|
|
}
|
|
|
|
struct LG_Renderer LGR_EGL =
|
|
{
|
|
.get_name = egl_get_name,
|
|
.setup = egl_setup,
|
|
.create = egl_create,
|
|
.initialize = egl_initialize,
|
|
.deinitialize = egl_deinitialize,
|
|
.on_resize = egl_on_resize,
|
|
.on_mouse_shape = egl_on_mouse_shape,
|
|
.on_mouse_event = egl_on_mouse_event,
|
|
.on_frame_event = egl_on_frame_event,
|
|
.on_alert = egl_on_alert,
|
|
.render_startup = egl_render_startup,
|
|
.render = egl_render,
|
|
.update_fps = egl_update_fps
|
|
}; |