mirror of
https://github.com/nzp-team/fteqw.git
synced 2024-11-29 23:22:01 +00:00
8c02fb26b3
splitscreen can now properly be configured via build configs, and potentially more than just 4 seats. fix splitscreen and enemycolour forcing. forcing now works, but only when all seats are on/spectating the same team. fix demo playback issue with http urls with webgl that don't allow streaming. srgb fixes for the scoreboard. git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@5229 fc73d0e0-1445-4013-8a0c-d673dee63da5
364 lines
8.2 KiB
C
364 lines
8.2 KiB
C
/*
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Copyright (C) 1996-1997 Id Software, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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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
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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// screen.c -- master for refresh, status bar, console, chat, notify, etc
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#include "quakedef.h"
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extern qboolean gammaworks;
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#ifdef GLQUAKE
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#include "glquake.h"
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#include "shader.h"
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#include "gl_draw.h"
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#include <time.h>
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qboolean GLSCR_UpdateScreen (void);
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extern qboolean scr_drawdialog;
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extern cvar_t vid_triplebuffer;
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extern cvar_t scr_fov;
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extern qboolean scr_initialized;
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extern float oldsbar;
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extern qboolean scr_drawloading;
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extern cvar_t vid_conautoscale;
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extern qboolean scr_con_forcedraw;
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extern qboolean depthcleared;
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/*
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==================
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SCR_UpdateScreen
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This is called every frame, and can also be called explicitly to flush
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text to the screen.
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WARNING: be very careful calling this from elsewhere, because the refresh
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needs almost the entire 256k of stack space!
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==================
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*/
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void SCR_DrawCursor(void);
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qboolean GLSCR_UpdateScreen (void)
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{
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int uimenu;
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qboolean nohud;
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qboolean noworld;
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extern cvar_t vid_srgb;
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r_refdef.pxrect.maxheight = vid.pixelheight;
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vid.numpages = 2 + vid_triplebuffer.value;
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R2D_Font_Changed();
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if (vid_srgb.modified)
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{
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vid_srgb.modified = false;
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//vid_srgb can be changed between 0 and 1, but other values need texture reloads. do that without too much extra weirdness.
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if ((vid.flags & VID_SRGB_CAPABLE) && gl_config.arb_framebuffer_srgb)
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{ //srgb-capable
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if (vid_srgb.ival > 1 && (vid.flags & VID_SRGBAWARE))
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{ //full srgb wanted (and textures are loaded)
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qglEnable(GL_FRAMEBUFFER_SRGB);
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vid.flags |= VID_SRGB_FB_LINEAR;
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}
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else if (vid_srgb.ival==1 || (vid.flags & VID_SRGBAWARE))
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{ //srgb wanted only for the framebuffer, for gamma tricks.
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qglEnable(GL_FRAMEBUFFER_SRGB);
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vid.flags |= VID_SRGB_FB_LINEAR;
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}
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else
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{ //srgb not wanted...
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qglDisable(GL_FRAMEBUFFER_SRGB);
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vid.flags &= ~VID_SRGB_FB_LINEAR;
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}
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}
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}
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if (!scr_initialized || !con_initialized)
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{
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return false; // not initialized yet
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}
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if (scr_disabled_for_loading)
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{
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extern float scr_disabled_time;
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if (Sys_DoubleTime() - scr_disabled_time > 60 || !Key_Dest_Has(~kdm_game))
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{
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//FIXME: instead of reenabling the screen, we should just draw the relevent things skipping only the game.
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scr_disabled_for_loading = false;
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}
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else
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{
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// scr_drawloading = true;
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SCR_DrawLoading (true);
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SCR_SetUpToDrawConsole();
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if (Key_Dest_Has(kdm_console))
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SCR_DrawConsole(false);
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// scr_drawloading = false;
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if (R2D_Flush)
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R2D_Flush();
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VID_SwapBuffers();
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return true;
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}
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}
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Shader_DoReload();
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qglDisable(GL_SCISSOR_TEST);
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#ifdef VM_UI
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uimenu = UI_MenuState();
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#else
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uimenu = 0;
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#endif
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#ifdef TEXTEDITOR
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if (editormodal)
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{
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Editor_Draw();
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V_UpdatePalette (false);
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Media_RecordFrame();
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R2D_BrightenScreen();
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if (key_dest_mask & kdm_console)
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Con_DrawConsole(vid.height/2, false);
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else
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Con_DrawConsole(0, false);
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SCR_DrawCursor();
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if (R2D_Flush)
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R2D_Flush();
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VID_SwapBuffers();
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return true;
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}
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#endif
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if (Media_ShowFilm())
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{
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M_Draw(0);
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V_UpdatePalette (false);
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R2D_BrightenScreen();
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Media_RecordFrame();
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if (R2D_Flush)
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R2D_Flush();
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GL_Set2D (false);
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VID_SwapBuffers();
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return true;
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}
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//
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// do 3D refresh drawing, and then update the screen
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//
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SCR_SetUpToDrawConsole ();
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noworld = false;
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nohud = false;
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if (r_clear.ival)
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{
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GL_ForceDepthWritable();
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qglClearColor((r_clear.ival&1)?1:0, (r_clear.ival&2)?1:0, (r_clear.ival&4)?1:0, 1);
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qglClear (GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
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depthcleared = true;
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}
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#ifdef VM_CG
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if (CG_Refresh())
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nohud = true;
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else
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#endif
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#ifdef CSQC_DAT
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if (CSQC_DrawView())
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nohud = true;
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else
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#endif
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{
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if (uimenu != 1)
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{
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if (r_worldentity.model && cls.state == ca_active)
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V_RenderView ();
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else
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{
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noworld = true;
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}
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}
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}
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GL_Set2D (false);
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scr_con_forcedraw = false;
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if (noworld)
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{
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extern char levelshotname[];
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//draw the levelshot or the conback fullscreen
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if (*levelshotname)
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R2D_ScalePic(0, 0, vid.width, vid.height, R2D_SafeCachePic (levelshotname));
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else if (scr_con_current != vid.height)
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R2D_ConsoleBackground(0, vid.height, true);
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else
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scr_con_forcedraw = true;
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nohud = true;
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}
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SCR_DrawTwoDimensional(uimenu, nohud);
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V_UpdatePalette (false);
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R2D_BrightenScreen();
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Media_RecordFrame();
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RSpeedShow();
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if (R2D_Flush)
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R2D_Flush();
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{
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RSpeedMark();
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VID_SwapBuffers();
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RSpeedEnd(RSPEED_PRESENT);
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}
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//gl 4.5 / GL_ARB_robustness / GL_KHR_robustness
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if (qglGetGraphicsResetStatus)
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{
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GLenum err = qglGetGraphicsResetStatus();
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switch(err)
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{
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case GL_NO_ERROR:
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break;
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case GL_GUILTY_CONTEXT_RESET: //we did it
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case GL_INNOCENT_CONTEXT_RESET: //something else broke the hardware and broke our ram
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case GL_UNKNOWN_CONTEXT_RESET: //whodunit
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default:
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Con_Printf("OpenGL reset detected\n");
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Sys_Sleep(3.0);
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Cmd_ExecuteString("vid_restart", RESTRICT_LOCAL);
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break;
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}
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}
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return true;
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}
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char *GLVID_GetRGBInfo(int *bytestride, int *truewidth, int *trueheight, enum uploadfmt *fmt)
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{ //returns a BZ_Malloced array
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extern qboolean gammaworks;
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int i, c;
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qbyte *ret;
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extern qboolean r2d_canhwgamma;
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*bytestride = 0;
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*truewidth = vid.fbpwidth;
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*trueheight = vid.fbpheight;
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/*if (1)
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{
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float *p;
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p = BZ_Malloc(vid.pixelwidth*vid.pixelheight*sizeof(float));
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qglReadPixels (0, 0, vid.pixelwidth, vid.pixelheight, GL_DEPTH_COMPONENT, GL_FLOAT, p);
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ret = BZ_Malloc(vid.pixelwidth*vid.pixelheight*3);
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c = vid.pixelwidth*vid.pixelheight;
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for (i = 1; i < c; i++)
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{
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ret[i*3+0]=p[i]*p[i]*p[i]*255;
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ret[i*3+1]=p[i]*p[i]*p[i]*255;
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ret[i*3+2]=p[i]*p[i]*p[i]*255;
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}
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BZ_Free(p);
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}
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else*/ if (gl_config.gles || (*truewidth&3))
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{
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qbyte *p;
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//gles:
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//Only two format/type parameter pairs are accepted.
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//GL_RGBA/GL_UNSIGNED_BYTE is always accepted, and the other acceptable pair can be discovered by querying GL_IMPLEMENTATION_COLOR_READ_FORMAT and GL_IMPLEMENTATION_COLOR_READ_TYPE.
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//thus its simpler to only use GL_RGBA/GL_UNSIGNED_BYTE
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//desktopgl:
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//total line byte length must be aligned to GL_PACK_ALIGNMENT. by reading rgba instead of rgb, we can ensure the line is a multiple of 4 bytes.
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ret = BZ_Malloc((*truewidth)*(*trueheight)*4);
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qglReadPixels (0, 0, (*truewidth), (*trueheight), GL_RGBA, GL_UNSIGNED_BYTE, ret);
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*bytestride = *truewidth*-3;
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*fmt = TF_RGB24;
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c = (*truewidth)*(*trueheight);
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p = ret;
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for (i = 1; i < c; i++)
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{
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p[i*3+0]=p[i*4+0];
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p[i*3+1]=p[i*4+1];
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p[i*3+2]=p[i*4+2];
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}
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ret = BZ_Realloc(ret, (*truewidth)*(*trueheight)*3);
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}
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#if 1//def _DEBUG
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else if (!gl_config.gles && sh_config.texfmt[PTI_BGRA8])
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{
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*fmt = TF_BGRA32;
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ret = BZ_Malloc((*truewidth)*(*trueheight)*4);
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qglReadPixels (0, 0, (*truewidth), (*trueheight), GL_BGRA_EXT, GL_UNSIGNED_INT_8_8_8_8_REV, ret);
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*bytestride = *truewidth*-4;
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}
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#endif
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else
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{
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*fmt = TF_RGB24;
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ret = BZ_Malloc((*truewidth)*(*trueheight)*3);
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qglReadPixels (0, 0, (*truewidth), (*trueheight), GL_RGB, GL_UNSIGNED_BYTE, ret);
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*bytestride = *truewidth*-3;
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}
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if (gammaworks && r2d_canhwgamma)
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{
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if (*fmt == TF_BGRA32 || *fmt == TF_RGBA32)
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{
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c = (*truewidth)*(*trueheight)*4;
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for (i=0 ; i<c ; i+=4)
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{
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extern qbyte gammatable[256];
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ret[i+0] = gammatable[ret[i+0]];
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ret[i+1] = gammatable[ret[i+1]];
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ret[i+2] = gammatable[ret[i+2]];
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}
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}
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else
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{
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c = (*truewidth)*(*trueheight)*3;
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for (i=0 ; i<c ; i+=3)
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{
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extern qbyte gammatable[256];
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ret[i+0] = gammatable[ret[i+0]];
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ret[i+1] = gammatable[ret[i+1]];
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ret[i+2] = gammatable[ret[i+2]];
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}
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}
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}
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return ret;
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}
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#endif
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