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Content of commit was originally written by Sal, but as a monolithic commit. The author of this commit is chunking it up for easier review. Simple inversion on the face of things, but with a long tail of consequences, including 19 changed files. Forced uppercase has been applied in a handful of locations where it was aesthetically imperative. Most menus will follow in another commit, so that that may be reverted if we change the default menu font.
772 lines
22 KiB
C
772 lines
22 KiB
C
// SONIC ROBO BLAST 2
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//-----------------------------------------------------------------------------
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// Copyright (C) 1998-2000 by DooM Legacy Team.
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// Copyright (C) 1999-2020 by Sonic Team Junior.
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//
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// This program is free software distributed under the
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// terms of the GNU General Public License, version 2.
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// See the 'LICENSE' file for more details.
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//-----------------------------------------------------------------------------
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/// \file screen.c
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/// \brief Handles multiple resolutions, 8bpp/16bpp(highcolor) modes
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#include "doomdef.h"
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#include "doomstat.h"
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#include "screen.h"
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#include "console.h"
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#include "am_map.h"
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#include "i_time.h"
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#include "i_system.h"
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#include "i_video.h"
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#include "r_local.h"
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#include "r_sky.h"
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#include "m_argv.h"
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#include "m_misc.h"
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#include "v_video.h"
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#include "st_stuff.h"
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#include "hu_stuff.h"
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#include "z_zone.h"
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#include "d_main.h"
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#include "d_clisrv.h"
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#include "f_finale.h"
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#include "y_inter.h" // usebuffer
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#include "i_sound.h" // closed captions
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#include "s_sound.h" // ditto
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#include "g_game.h" // ditto
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#include "p_local.h" // P_AutoPause()
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#ifdef HWRENDER
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#include "hardware/hw_main.h"
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#include "hardware/hw_light.h"
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#include "hardware/hw_model.h"
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#endif
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// SRB2Kart
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#include "r_fps.h" // R_GetFramerateCap
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#if defined (USEASM) && !defined (NORUSEASM)//&& (!defined (_MSC_VER) || (_MSC_VER <= 1200))
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#define RUSEASM //MSC.NET can't patch itself
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#endif
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// --------------------------------------------
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// assembly or c drawer routines for 8bpp/16bpp
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// --------------------------------------------
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void (*colfunc)(void);
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void (*colfuncs[COLDRAWFUNC_MAX])(void);
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#ifdef USE_COL_SPAN_ASM
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void (*colfuncs_asm[COLDRAWFUNC_MAX])(void);
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#endif
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int colfunctype;
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void (*spanfunc)(void);
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void (*spanfuncs[SPANDRAWFUNC_MAX])(void);
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void (*spanfuncs_npo2[SPANDRAWFUNC_MAX])(void);
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#ifdef USE_COL_SPAN_ASM
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void (*spanfuncs_asm[SPANDRAWFUNC_MAX])(void);
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#endif
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void (*spanfuncs_flat[SPANDRAWFUNC_MAX])(void);
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// ------------------
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// global video state
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// ------------------
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viddef_t vid;
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INT32 setmodeneeded; //video mode change needed if > 0 (the mode number to set + 1)
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UINT8 setrenderneeded = 0;
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//added : 03-02-98: default screen mode, as loaded/saved in config
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consvar_t cv_scr_width = CVAR_INIT ("scr_width", "640", CV_SAVE, CV_Unsigned, NULL);
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consvar_t cv_scr_height = CVAR_INIT ("scr_height", "400", CV_SAVE, CV_Unsigned, NULL);
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static CV_PossibleValue_t scr_depth_cons_t[] = {{8, "8 bits"}, {16, "16 bits"}, {24, "24 bits"}, {32, "32 bits"}, {0, NULL}};
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consvar_t cv_scr_depth = CVAR_INIT ("scr_depth", "16 bits", CV_SAVE, scr_depth_cons_t, NULL);
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consvar_t cv_renderview = CVAR_INIT ("renderview", "On", 0, CV_OnOff, NULL);
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consvar_t cv_vhseffect = CVAR_INIT ("vhspause", "On", CV_SAVE, CV_OnOff, NULL);
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static CV_PossibleValue_t shittyscreen_cons_t[] = {{0, "Okay"}, {1, "Shitty"}, {2, "Extra Shitty"}, {0, NULL}};
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consvar_t cv_shittyscreen = CVAR_INIT ("televisionsignal", "Okay", CV_NOSHOWHELP, shittyscreen_cons_t, NULL);
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CV_PossibleValue_t cv_renderer_t[] = {
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{1, "Software"},
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#ifdef HWRENDER
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{2, "OpenGL"},
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#endif
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{0, NULL}
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};
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consvar_t cv_renderer = CVAR_INIT ("renderer", "Software", CV_SAVE|CV_NOLUA|CV_CALL, cv_renderer_t, SCR_ChangeRenderer);
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static void SCR_ChangeFullscreen(void);
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consvar_t cv_fullscreen = CVAR_INIT ("fullscreen", "Yes", CV_SAVE|CV_CALL, CV_YesNo, SCR_ChangeFullscreen);
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// =========================================================================
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// SCREEN VARIABLES
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// =========================================================================
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INT32 scr_bpp; // current video mode bytes per pixel
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UINT8 *scr_borderpatch; // flat used to fill the reduced view borders set at ST_Init()
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// =========================================================================
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// Short and Tall sky drawer, for the current color mode
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void (*walldrawerfunc)(void);
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boolean R_ASM = true;
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boolean R_486 = false;
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boolean R_586 = false;
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boolean R_MMX = false;
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boolean R_SSE = false;
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boolean R_3DNow = false;
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boolean R_MMXExt = false;
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boolean R_SSE2 = false;
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void SCR_SetDrawFuncs(void)
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{
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//
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// setup the right draw routines for either 8bpp or 16bpp
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//
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if (true)//vid.bpp == 1) //Always run in 8bpp. todo: remove all 16bpp code?
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{
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colfuncs[BASEDRAWFUNC] = R_DrawColumn_8;
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spanfuncs[BASEDRAWFUNC] = R_DrawSpan_8;
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colfuncs[COLDRAWFUNC_FUZZY] = R_DrawTranslucentColumn_8;
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colfuncs[COLDRAWFUNC_TRANS] = R_DrawTranslatedColumn_8;
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colfuncs[COLDRAWFUNC_SHADE] = R_DrawShadeColumn_8;
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colfuncs[COLDRAWFUNC_SHADOWED] = R_DrawColumnShadowed_8;
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colfuncs[COLDRAWFUNC_TRANSTRANS] = R_DrawTranslatedTranslucentColumn_8;
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colfuncs[COLDRAWFUNC_TWOSMULTIPATCH] = R_Draw2sMultiPatchColumn_8;
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colfuncs[COLDRAWFUNC_TWOSMULTIPATCHTRANS] = R_Draw2sMultiPatchTranslucentColumn_8;
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colfuncs[COLDRAWFUNC_FOG] = R_DrawFogColumn_8;
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colfuncs[COLDRAWFUNC_DROPSHADOW] = R_DrawDropShadowColumn_8;
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spanfuncs[SPANDRAWFUNC_TRANS] = R_DrawTranslucentSpan_8;
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spanfuncs[SPANDRAWFUNC_TILTED] = R_DrawTiltedSpan_8;
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spanfuncs[SPANDRAWFUNC_TILTEDTRANS] = R_DrawTiltedTranslucentSpan_8;
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spanfuncs[SPANDRAWFUNC_SPLAT] = R_DrawSplat_8;
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spanfuncs[SPANDRAWFUNC_TRANSSPLAT] = R_DrawTranslucentSplat_8;
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spanfuncs[SPANDRAWFUNC_TILTEDSPLAT] = R_DrawTiltedSplat_8;
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spanfuncs[SPANDRAWFUNC_SPRITE] = R_DrawFloorSprite_8;
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spanfuncs[SPANDRAWFUNC_TRANSSPRITE] = R_DrawTranslucentFloorSprite_8;
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spanfuncs[SPANDRAWFUNC_TILTEDSPRITE] = R_DrawTiltedFloorSprite_8;
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spanfuncs[SPANDRAWFUNC_TILTEDTRANSSPRITE] = R_DrawTiltedTranslucentFloorSprite_8;
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spanfuncs[SPANDRAWFUNC_WATER] = R_DrawTranslucentWaterSpan_8;
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spanfuncs[SPANDRAWFUNC_TILTEDWATER] = R_DrawTiltedTranslucentWaterSpan_8;
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spanfuncs[SPANDRAWFUNC_FOG] = R_DrawFogSpan_8;
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// Lactozilla: Non-powers-of-two
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spanfuncs_npo2[BASEDRAWFUNC] = R_DrawSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TRANS] = R_DrawTranslucentSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTED] = R_DrawTiltedSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTEDTRANS] = R_DrawTiltedTranslucentSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_SPLAT] = R_DrawSplat_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TRANSSPLAT] = R_DrawTranslucentSplat_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTEDSPLAT] = R_DrawTiltedSplat_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_SPRITE] = R_DrawFloorSprite_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TRANSSPRITE] = R_DrawTranslucentFloorSprite_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTEDSPRITE] = R_DrawTiltedFloorSprite_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTEDTRANSSPRITE] = R_DrawTiltedTranslucentFloorSprite_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_WATER] = R_DrawTranslucentWaterSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_TILTEDWATER] = R_DrawTiltedTranslucentWaterSpan_NPO2_8;
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spanfuncs_npo2[SPANDRAWFUNC_FOG] = NULL; // Not needed
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// Debugging - highlight surfaces in flat colors
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spanfuncs_flat[BASEDRAWFUNC] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TRANS] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTED] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTEDTRANS] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_SPLAT] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TRANSSPLAT] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTEDSPLAT] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_SPRITE] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TRANSSPRITE] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTEDSPRITE] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTEDTRANSSPRITE] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_WATER] = R_DrawSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_TILTEDWATER] = R_DrawTiltedSpan_Flat_8;
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spanfuncs_flat[SPANDRAWFUNC_FOG] = R_DrawSpan_Flat_8; // Not needed
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#if (defined(RUSEASM) && defined(USE_COL_SPAN_ASM))
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if (R_ASM)
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{
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if (R_MMX)
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{
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colfuncs_asm[BASEDRAWFUNC] = R_DrawColumn_8_MMX;
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//colfuncs_asm[COLDRAWFUNC_SHADE] = R_DrawShadeColumn_8_ASM;
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//colfuncs_asm[COLDRAWFUNC_FUZZY] = R_DrawTranslucentColumn_8_ASM;
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colfuncs_asm[COLDRAWFUNC_TWOSMULTIPATCH] = R_Draw2sMultiPatchColumn_8_MMX;
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spanfuncs_asm[BASEDRAWFUNC] = R_DrawSpan_8_MMX;
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}
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else
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{
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colfuncs_asm[BASEDRAWFUNC] = R_DrawColumn_8_ASM;
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//colfuncs_asm[COLDRAWFUNC_SHADE] = R_DrawShadeColumn_8_ASM;
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//colfuncs_asm[COLDRAWFUNC_FUZZY] = R_DrawTranslucentColumn_8_ASM;
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colfuncs_asm[COLDRAWFUNC_TWOSMULTIPATCH] = R_Draw2sMultiPatchColumn_8_ASM;
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}
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}
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#endif
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R_SetColumnFunc(BASEDRAWFUNC, false);
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R_SetSpanFunc(BASEDRAWFUNC, false, false);
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}
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/* else if (vid.bpp > 1)
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{
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I_OutputMsg("using highcolor mode\n");
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spanfunc = basespanfunc = R_DrawSpan_16;
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transcolfunc = R_DrawTranslatedColumn_16;
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transtransfunc = R_DrawTranslucentColumn_16; // No 16bit operation for this function
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colfunc = basecolfunc = R_DrawColumn_16;
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shadecolfunc = NULL; // detect error if used somewhere..
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fuzzcolfunc = R_DrawTranslucentColumn_16;
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walldrawerfunc = R_DrawWallColumn_16;
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}*/
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else
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I_Error("unknown bytes per pixel mode %d\n", vid.bpp);
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/*
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if (SCR_IsAspectCorrect(vid.width, vid.height))
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CONS_Alert(CONS_WARNING, M_GetText("Resolution is not aspect-correct!\nUse a multiple of %dx%d\n"), BASEVIDWIDTH, BASEVIDHEIGHT);
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*/
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}
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void R_SetColumnFunc(size_t id, boolean brightmapped)
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{
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I_Assert(id < COLDRAWFUNC_MAX);
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colfunctype = id;
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if (debugrender_highlight != 0)
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{
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colfunc = R_DrawColumn_Flat_8;
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}
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#ifdef USE_COL_SPAN_ASM
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else if (colfuncs_asm[id] != NULL && brightmapped == false)
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{
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colfunc = colfuncs_asm[id];
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}
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#endif
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else
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{
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colfunc = colfuncs[id];
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}
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}
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void R_SetSpanFunc(size_t id, boolean npo2, boolean brightmapped)
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{
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I_Assert(id < SPANDRAWFUNC_MAX);
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if (spanfuncs_flat[id] != NULL && debugrender_highlight != 0)
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{
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spanfunc = spanfuncs_flat[id];
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}
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else if (spanfuncs_npo2[id] != NULL && npo2 == true)
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{
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spanfunc = spanfuncs_npo2[id];
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}
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#ifdef USE_COL_SPAN_ASM
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else if (spanfuncs_asm[id] != NULL && brightmapped == false)
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{
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spanfunc = spanfuncs_asm[id];
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}
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#endif
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else
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{
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spanfunc = spanfuncs[id];
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}
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}
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boolean R_CheckColumnFunc(size_t id)
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{
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size_t i;
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if (colfunc == NULL)
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{
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// Shouldn't happen.
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return false;
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}
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for (i = 0; i < COLDRAWFUNC_MAX; i++)
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{
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if (colfunc == colfuncs[id] || colfunc == colfuncs_asm[id])
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{
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return true;
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}
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}
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return false;
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}
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void SCR_SetMode(void)
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{
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if (dedicated)
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return;
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if (!(setmodeneeded || setrenderneeded) || WipeInAction)
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return; // should never happen and don't change it during a wipe, BAD!
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// Lactozilla: Renderer switching
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if (setrenderneeded)
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{
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// stop recording movies (APNG only)
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if (setrenderneeded && (moviemode == MM_APNG))
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M_StopMovie();
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// VID_SetMode will call VID_CheckRenderer itself,
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// so no need to do this in here.
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if (!setmodeneeded)
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VID_CheckRenderer();
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vid.recalc = 1;
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}
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// Set the video mode in the video interface.
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if (setmodeneeded)
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VID_SetMode(setmodeneeded - 1);
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V_SetPalette(0);
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SCR_SetDrawFuncs();
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// set the apprpriate drawer for the sky (tall or INT16)
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setmodeneeded = 0;
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setrenderneeded = 0;
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}
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// do some initial settings for the game loading screen
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//
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void SCR_Startup(void)
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{
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const CPUInfoFlags *RCpuInfo = I_CPUInfo();
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if (!M_CheckParm("-NOCPUID") && RCpuInfo)
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{
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#if defined (__i386__) || defined (_M_IX86) || defined (__WATCOMC__)
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R_486 = true;
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#endif
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if (RCpuInfo->RDTSC)
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R_586 = true;
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if (RCpuInfo->MMX)
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R_MMX = true;
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if (RCpuInfo->AMD3DNow)
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R_3DNow = true;
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if (RCpuInfo->MMXExt)
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R_MMXExt = true;
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if (RCpuInfo->SSE)
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R_SSE = true;
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if (RCpuInfo->SSE2)
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R_SSE2 = true;
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CONS_Printf("CPU Info: 486: %i, 586: %i, MMX: %i, 3DNow: %i, MMXExt: %i, SSE2: %i\n", R_486, R_586, R_MMX, R_3DNow, R_MMXExt, R_SSE2);
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}
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if (M_CheckParm("-noASM"))
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R_ASM = false;
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if (M_CheckParm("-486"))
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R_486 = true;
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if (M_CheckParm("-586"))
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R_586 = true;
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if (M_CheckParm("-MMX"))
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R_MMX = true;
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if (M_CheckParm("-3DNow"))
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R_3DNow = true;
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if (M_CheckParm("-MMXExt"))
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R_MMXExt = true;
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if (M_CheckParm("-SSE"))
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R_SSE = true;
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if (M_CheckParm("-noSSE"))
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R_SSE = false;
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if (M_CheckParm("-SSE2"))
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R_SSE2 = true;
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M_SetupMemcpy();
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if (dedicated)
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{
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V_Init();
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V_SetPalette(0);
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return;
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}
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vid.modenum = 0;
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V_Init();
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V_Recalc();
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CV_RegisterVar(&cv_ticrate);
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CV_RegisterVar(&cv_constextsize);
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V_SetPalette(0);
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}
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// Called at new frame, if the video mode has changed
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//
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void SCR_Recalc(void)
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{
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if (dedicated)
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return;
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// bytes per pixel quick access
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scr_bpp = vid.bpp;
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V_Recalc();
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// toggle off (then back on) the automap because some screensize-dependent values will
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// be calculated next time the automap is activated.
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if (automapactive)
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{
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am_recalc = true;
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AM_Start();
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}
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// set the screen[x] ptrs on the new vidbuffers
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V_Init();
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// scr_viewsize doesn't change, neither detailLevel, but the pixels
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// per screenblock is different now, since we've changed resolution.
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R_SetViewSize(); //just set setsizeneeded true now ..
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// vid.recalc lasts only for the next refresh...
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con_recalc = true;
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am_recalc = true;
|
|
}
|
|
|
|
// Check for screen cmd-line parms: to force a resolution.
|
|
//
|
|
// Set the video mode to set at the 1st display loop (setmodeneeded)
|
|
//
|
|
|
|
void SCR_CheckDefaultMode(void)
|
|
{
|
|
INT32 scr_forcex, scr_forcey; // resolution asked from the cmd-line
|
|
|
|
if (dedicated)
|
|
return;
|
|
|
|
// 0 means not set at the cmd-line
|
|
scr_forcex = scr_forcey = 0;
|
|
|
|
if (M_CheckParm("-width") && M_IsNextParm())
|
|
scr_forcex = atoi(M_GetNextParm());
|
|
|
|
if (M_CheckParm("-height") && M_IsNextParm())
|
|
scr_forcey = atoi(M_GetNextParm());
|
|
|
|
if (scr_forcex && scr_forcey)
|
|
{
|
|
CONS_Printf(M_GetText("Using resolution: %d x %d\n"), scr_forcex, scr_forcey);
|
|
// returns -1 if not found, thus will be 0 (no mode change) if not found
|
|
setmodeneeded = VID_GetModeForSize(scr_forcex, scr_forcey) + 1;
|
|
}
|
|
else
|
|
{
|
|
CONS_Printf(M_GetText("Default resolution: %d x %d (%d bits)\n"), cv_scr_width.value,
|
|
cv_scr_height.value, cv_scr_depth.value);
|
|
// see note above
|
|
setmodeneeded = VID_GetModeForSize(cv_scr_width.value, cv_scr_height.value) + 1;
|
|
}
|
|
|
|
if (cv_renderer.value != (signed)rendermode)
|
|
{
|
|
if (chosenrendermode == render_none) // nothing set at command line
|
|
SCR_ChangeRenderer();
|
|
else
|
|
{
|
|
// Set cv_renderer to the current render mode
|
|
CV_StealthSetValue(&cv_renderer, rendermode);
|
|
}
|
|
}
|
|
}
|
|
|
|
// sets the modenum as the new default video mode to be saved in the config file
|
|
void SCR_SetDefaultMode(void)
|
|
{
|
|
// remember the default screen size
|
|
CV_SetValue(&cv_scr_width, vid.width);
|
|
CV_SetValue(&cv_scr_height, vid.height);
|
|
CV_SetValue(&cv_scr_depth, vid.bpp*8);
|
|
}
|
|
|
|
// Change fullscreen on/off according to cv_fullscreen
|
|
void SCR_ChangeFullscreen(void)
|
|
{
|
|
#ifdef DIRECTFULLSCREEN
|
|
// allow_fullscreen is set by VID_PrepareModeList
|
|
// it is used to prevent switching to fullscreen during startup
|
|
if (!allow_fullscreen)
|
|
return;
|
|
|
|
if (graphics_started)
|
|
{
|
|
VID_PrepareModeList();
|
|
setmodeneeded = VID_GetModeForSize(vid.width, vid.height) + 1;
|
|
}
|
|
return;
|
|
#endif
|
|
}
|
|
|
|
void SCR_ChangeRenderer(void)
|
|
{
|
|
if (chosenrendermode != render_none
|
|
|| (signed)rendermode == cv_renderer.value)
|
|
return;
|
|
|
|
#ifdef HWRENDER
|
|
// Check if OpenGL loaded successfully (or wasn't disabled) before switching to it.
|
|
if ((vid.glstate == VID_GL_LIBRARY_ERROR)
|
|
&& (cv_renderer.value == render_opengl))
|
|
{
|
|
if (M_CheckParm("-nogl"))
|
|
CONS_Alert(CONS_ERROR, "OpenGL rendering was disabled!\n");
|
|
else
|
|
CONS_Alert(CONS_ERROR, "OpenGL never loaded\n");
|
|
return;
|
|
}
|
|
|
|
if (rendermode == render_opengl && (vid.glstate == VID_GL_LIBRARY_LOADED)) // Clear these out before switching to software
|
|
HWR_ClearAllTextures();
|
|
|
|
#endif
|
|
|
|
// Set the new render mode
|
|
setrenderneeded = cv_renderer.value;
|
|
}
|
|
|
|
boolean SCR_IsAspectCorrect(INT32 width, INT32 height)
|
|
{
|
|
return
|
|
( width % BASEVIDWIDTH == 0
|
|
&& height % BASEVIDHEIGHT == 0
|
|
&& width / BASEVIDWIDTH == height / BASEVIDHEIGHT
|
|
);
|
|
}
|
|
|
|
double averageFPS = 0.0f;
|
|
|
|
#define USE_FPS_SAMPLES
|
|
|
|
#ifdef USE_FPS_SAMPLES
|
|
#define FPS_SAMPLE_RATE (0.05) // How often to update FPS samples, in seconds
|
|
#define NUM_FPS_SAMPLES (16) // Number of samples to store
|
|
|
|
static double fps_samples[NUM_FPS_SAMPLES];
|
|
static double updateElapsed = 0.0;
|
|
#endif
|
|
|
|
static boolean fps_init = false;
|
|
static precise_t fps_enter = 0;
|
|
|
|
void SCR_CalculateFPS(void)
|
|
{
|
|
precise_t fps_finish = 0;
|
|
|
|
double frameElapsed = 0.0;
|
|
|
|
if (fps_init == false)
|
|
{
|
|
fps_enter = I_GetPreciseTime();
|
|
fps_init = true;
|
|
}
|
|
|
|
fps_finish = I_GetPreciseTime();
|
|
frameElapsed = (double)((INT64)(fps_finish - fps_enter)) / I_GetPrecisePrecision();
|
|
fps_enter = fps_finish;
|
|
|
|
#ifdef USE_FPS_SAMPLES
|
|
updateElapsed += frameElapsed;
|
|
|
|
if (updateElapsed >= FPS_SAMPLE_RATE)
|
|
{
|
|
static int sampleIndex = 0;
|
|
int i;
|
|
|
|
fps_samples[sampleIndex] = frameElapsed;
|
|
|
|
sampleIndex++;
|
|
if (sampleIndex >= NUM_FPS_SAMPLES)
|
|
sampleIndex = 0;
|
|
|
|
averageFPS = 0.0;
|
|
for (i = 0; i < NUM_FPS_SAMPLES; i++)
|
|
{
|
|
averageFPS += fps_samples[i];
|
|
}
|
|
|
|
if (averageFPS > 0.0)
|
|
{
|
|
averageFPS = 1.0 / (averageFPS / NUM_FPS_SAMPLES);
|
|
}
|
|
}
|
|
|
|
while (updateElapsed >= FPS_SAMPLE_RATE)
|
|
{
|
|
updateElapsed -= FPS_SAMPLE_RATE;
|
|
}
|
|
#else
|
|
// Direct, unsampled counter.
|
|
averageFPS = 1.0 / frameElapsed;
|
|
#endif
|
|
}
|
|
|
|
void SCR_DisplayTicRate(void)
|
|
{
|
|
const UINT8 *ticcntcolor = NULL;
|
|
UINT32 cap = R_GetFramerateCap();
|
|
UINT32 benchmark = (cap == 0) ? I_GetRefreshRate() : cap;
|
|
INT32 x = 318;
|
|
double fps = round(averageFPS);
|
|
|
|
// draw "FPS"
|
|
V_DrawFixedPatch(306<<FRACBITS, 183<<FRACBITS, FRACUNIT, V_SNAPTOBOTTOM|V_SNAPTORIGHT, framecounter, R_GetTranslationColormap(TC_RAINBOW, SKINCOLOR_YELLOW, GTC_CACHE));
|
|
|
|
if (fps > (benchmark * 0.9))
|
|
ticcntcolor = R_GetTranslationColormap(TC_RAINBOW, SKINCOLOR_MINT, GTC_CACHE);
|
|
else if (fps < (benchmark * 0.5))
|
|
ticcntcolor = R_GetTranslationColormap(TC_RAINBOW, SKINCOLOR_RASPBERRY, GTC_CACHE);
|
|
|
|
if (cap != 0)
|
|
{
|
|
UINT32 digits = 1;
|
|
UINT32 c2 = cap;
|
|
|
|
while (c2 > 0)
|
|
{
|
|
c2 = c2 / 10;
|
|
digits++;
|
|
}
|
|
|
|
// draw total frame:
|
|
V_DrawPingNum(x<<FRACBITS, 190<<FRACBITS, V_SNAPTOBOTTOM|V_SNAPTORIGHT, cap, ticcntcolor);
|
|
x -= digits * 4;
|
|
|
|
// draw "/"
|
|
V_DrawFixedPatch(x<<FRACBITS, 190<<FRACBITS, FRACUNIT, V_SNAPTOBOTTOM|V_SNAPTORIGHT, frameslash, ticcntcolor);
|
|
}
|
|
|
|
// draw our actual framerate
|
|
V_DrawPingNum(x<<FRACBITS, 190<<FRACBITS, V_SNAPTOBOTTOM|V_SNAPTORIGHT, fps, ticcntcolor);
|
|
}
|
|
|
|
// SCR_DisplayLocalPing
|
|
// Used to draw the user's local ping next to the framerate for a quick check without having to hold TAB for instance. By default, it only shows up if your ping is too high and risks getting you kicked.
|
|
|
|
void SCR_DisplayLocalPing(void)
|
|
{
|
|
boolean offline;
|
|
|
|
UINT32 ping = playerpingtable[consoleplayer]; // consoleplayer's ping is everyone's ping in a splitnetgame :P
|
|
if (! r_splitscreen && ( cv_showping.value == 1 || (cv_showping.value == 2 && ping > servermaxping) )) // only show 2 (warning) if our ping is at a bad level
|
|
{
|
|
INT32 dispy = cv_ticrate.value ? 160 : 181;
|
|
offline = (consoleplayer == serverplayer);
|
|
HU_drawPing(307 * FRACUNIT, dispy * FRACUNIT, ping, V_SNAPTORIGHT | V_SNAPTOBOTTOM | V_HUDTRANS, offline, 0);
|
|
}
|
|
}
|
|
|
|
|
|
void SCR_ClosedCaptions(void)
|
|
{
|
|
UINT8 i;
|
|
boolean gamestopped = (paused || P_AutoPause());
|
|
INT32 basey = BASEVIDHEIGHT;
|
|
|
|
if (gamestate != wipegamestate)
|
|
return;
|
|
|
|
if (gamestate == GS_LEVEL)
|
|
{
|
|
if (promptactive)
|
|
basey -= 42;
|
|
else if (splitscreen)
|
|
basey -= 8;
|
|
}
|
|
|
|
for (i = 0; i < NUMCAPTIONS; i++)
|
|
{
|
|
INT32 flags, y;
|
|
char dot;
|
|
boolean music;
|
|
|
|
if (!closedcaptions[i].s)
|
|
continue;
|
|
|
|
music = (closedcaptions[i].s-S_sfx == sfx_None);
|
|
|
|
if (music && !gamestopped && (closedcaptions[i].t < flashingtics) && (closedcaptions[i].t & 1))
|
|
continue;
|
|
|
|
flags = V_SNAPTORIGHT|V_SNAPTOBOTTOM;
|
|
y = basey-((i + 2)*10);
|
|
|
|
if (closedcaptions[i].b)
|
|
{
|
|
y -= closedcaptions[i].b * vid.dupy;
|
|
if (renderisnewtic)
|
|
{
|
|
closedcaptions[i].b--;
|
|
}
|
|
}
|
|
|
|
if (closedcaptions[i].t < CAPTIONFADETICS)
|
|
flags |= (((CAPTIONFADETICS-closedcaptions[i].t)/2)*V_10TRANS);
|
|
|
|
if (music)
|
|
dot = '\x19';
|
|
else if (closedcaptions[i].c && closedcaptions[i].c->origin)
|
|
dot = '\x1E';
|
|
else
|
|
dot = ' ';
|
|
|
|
V_DrawRightAlignedString(BASEVIDWIDTH - 20, y, flags,
|
|
va("%c [%s]", dot, (closedcaptions[i].s->caption[0] ? closedcaptions[i].s->caption : closedcaptions[i].s->name)));
|
|
}
|
|
}
|
|
|
|
void SCR_DisplayMarathonInfo(void)
|
|
{
|
|
INT32 flags = V_SNAPTOBOTTOM;
|
|
static tic_t entertic, oldentertics = 0, antisplice[2] = {48,0};
|
|
const char *str;
|
|
#if 0 // eh, this probably isn't going to be a problem
|
|
if (((signed)marathontime) < 0)
|
|
{
|
|
flags |= V_REDMAP;
|
|
str = "No waiting out the clock to submit a bogus time.";
|
|
}
|
|
else
|
|
#endif
|
|
{
|
|
entertic = I_GetTime();
|
|
if (gamecomplete)
|
|
flags |= V_YELLOWMAP;
|
|
else if (marathonmode & MA_INGAME)
|
|
; // see also G_Ticker
|
|
else if (marathonmode & MA_INIT)
|
|
marathonmode &= ~MA_INIT;
|
|
else
|
|
marathontime += entertic - oldentertics;
|
|
|
|
// Create a sequence of primes such that their LCM is nice and big.
|
|
#define PRIMEV1 13
|
|
#define PRIMEV2 17 // I can't believe it! I'm on TV!
|
|
antisplice[0] += (entertic - oldentertics)*PRIMEV2;
|
|
antisplice[0] %= PRIMEV1*((vid.width/vid.dupx)+1);
|
|
antisplice[1] += (entertic - oldentertics)*PRIMEV1;
|
|
antisplice[1] %= PRIMEV1*((vid.width/vid.dupx)+1);
|
|
str = va("%i:%02i:%02i.%02i",
|
|
G_TicsToHours(marathontime),
|
|
G_TicsToMinutes(marathontime, false),
|
|
G_TicsToSeconds(marathontime),
|
|
G_TicsToCentiseconds(marathontime));
|
|
oldentertics = entertic;
|
|
}
|
|
V_DrawFill((antisplice[0]/PRIMEV1)-1, BASEVIDHEIGHT-8, 1, 8, V_SNAPTOBOTTOM|V_SNAPTOLEFT);
|
|
V_DrawFill((antisplice[0]/PRIMEV1), BASEVIDHEIGHT-8, 1, 8, V_SNAPTOBOTTOM|V_SNAPTOLEFT|31);
|
|
V_DrawFill(BASEVIDWIDTH-((antisplice[1]/PRIMEV1)-1), BASEVIDHEIGHT-8, 1, 8, V_SNAPTOBOTTOM|V_SNAPTORIGHT);
|
|
V_DrawFill(BASEVIDWIDTH-((antisplice[1]/PRIMEV1)), BASEVIDHEIGHT-8, 1, 8, V_SNAPTOBOTTOM|V_SNAPTORIGHT|31);
|
|
#undef PRIMEV1
|
|
#undef PRIMEV2
|
|
V_DrawPromptBack(-8, cons_backcolor.value);
|
|
V_DrawCenteredString(BASEVIDWIDTH/2, BASEVIDHEIGHT-8, flags, str);
|
|
}
|