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440 lines
12 KiB
C++
440 lines
12 KiB
C++
//-------------------------------------------------------------------------
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/*
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Copyright (C) 1996, 2003 - 3D Realms Entertainment
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This file is part of Duke Nukem 3D version 1.5 - Atomic Edition
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Duke Nukem 3D 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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Original Source: 1996 - Todd Replogle
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Prepared for public release: 03/21/2003 - Charlie Wiederhold, 3D Realms
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Modifications for JonoF's port by Jonathon Fowler (jf@jonof.id.au)
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*/
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//-------------------------------------------------------------------------
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#include "ns.h"
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#include "duke3d.h"
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#include "build.h"
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#include "v_video.h"
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#include "prediction.h"
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#include "automap.h"
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#include "dukeactor.h"
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#include "interpolate.h"
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#include "render.h"
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#include "glbackend/glbackend.h"
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#include "_polymost.cpp"
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// temporary hack to pass along RRRA's global fog. Needs to be done better later.
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extern PalEntry GlobalMapFog;
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extern float GlobalFogDensity;
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EXTERN_CVAR(Bool, testnewrenderer)
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BEGIN_DUKE_NS
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//---------------------------------------------------------------------------
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//
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// Floor Over Floor
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// If standing in sector with SE42
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// then draw viewing to SE41 and raise all =hi SE43 cielings.
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// If standing in sector with SE43
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// then draw viewing to SE40 and lower all =hi SE42 floors.
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// If standing in sector with SE44
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// then draw viewing to SE40.
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// If standing in sector with SE45
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// then draw viewing to SE41.
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//
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//---------------------------------------------------------------------------
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void renderView(spritetype* playersprite, sectortype* sect, int x, int y, int z, binangle a, fixedhoriz h, binangle rotscrnang, int smoothratio)
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{
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if (!testnewrenderer)
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{
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// do screen rotation.
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renderSetRollAngle((float)rotscrnang.asbuildf());
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se40code(x, y, z, a, h, smoothratio);
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renderMirror(x, y, z, a, h, smoothratio);
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renderDrawRoomsQ16(x, y, z, a.asq16(), h.asq16(), sect, false);
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fi.animatesprites(pm_tsprite, pm_spritesortcnt, x, y, a.asbuild(), smoothratio);
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renderDrawMasks();
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}
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else
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{
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render_drawrooms(playersprite, { x, y, z }, sectnum(sect), a, h, rotscrnang, smoothratio);
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}
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}
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//---------------------------------------------------------------------------
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//
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//
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//
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//---------------------------------------------------------------------------
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void GameInterface::UpdateCameras(double smoothratio)
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{
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const int VIEWSCREEN_ACTIVE_DISTANCE = 8192;
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if (camsprite == nullptr)
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return;
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auto p = &ps[screenpeek];
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if (p->newOwner != nullptr) camsprite->SetOwner(p->newOwner);
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if (camsprite->GetOwner() && dist(p->GetActor(), camsprite) < VIEWSCREEN_ACTIVE_DISTANCE)
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{
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auto tex = tileGetTexture(camsprite->spr.picnum);
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TileFiles.MakeCanvas(TILE_VIEWSCR, (int)tex->GetDisplayWidth(), (int)tex->GetDisplayHeight());
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auto canvas = renderSetTarget(TILE_VIEWSCR);
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if (!canvas) return;
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screen->RenderTextureView(canvas, [=](IntRect& rect)
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{
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auto camera = &camsprite->GetOwner()->spr;
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auto ang = buildang(camera->interpolatedang(smoothratio));
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display_mirror = 1; // should really be 'display external view'.
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if (!testnewrenderer)
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{
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// Note: no ROR or camera here - Polymost has no means to detect these things before rendering the scene itself.
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renderDrawRoomsQ16(camera->x, camera->y, camera->z, ang.asq16(), IntToFixed(camera->shade), camera->sector(), false); // why 'shade'...?
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fi.animatesprites(pm_tsprite, pm_spritesortcnt, camera->x, camera->y, ang.asbuild(), (int)smoothratio);
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renderDrawMasks();
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}
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else
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{
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render_camtex(camera, camera->pos, camera->sector(), ang, buildhoriz(camera->shade), buildang(0), tex, rect, smoothratio);
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}
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display_mirror = 0;
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});
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renderRestoreTarget();
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}
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}
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void GameInterface::EnterPortal(spritetype* viewer, int type)
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{
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if (type == PORTAL_WALL_MIRROR) display_mirror++;
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}
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void GameInterface::LeavePortal(spritetype* viewer, int type)
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{
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if (type == PORTAL_WALL_MIRROR) display_mirror--;
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}
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bool GameInterface::GetGeoEffect(GeoEffect* eff, sectortype* viewsector)
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{
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if (isRR() && viewsector->lotag == 848)
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{
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eff->geocnt = geocnt;
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eff->geosector = geosector;
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eff->geosectorwarp = geosectorwarp;
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eff->geosectorwarp2 = geosectorwarp2;
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eff->geox = geox;
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eff->geoy = geoy;
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eff->geox2 = geox2;
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eff->geoy2 = geoy2;
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return true;
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}
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return false;
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}
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//---------------------------------------------------------------------------
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//
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// RRRA's drug distortion effect
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//
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//---------------------------------------------------------------------------
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int DrugTimer;
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static int getdrugmode(player_struct *p, int oyrepeat)
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{
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int now = I_GetBuildTime() >> 1; // this function works on a 60 fps setup.
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if (playrunning() && p->DrugMode > 0)
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{
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if (now - DrugTimer > 4 || now - DrugTimer < 0) DrugTimer = now - 1;
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while (DrugTimer < now)
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{
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DrugTimer++;
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int var_8c;
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if (p->drug_stat[0] == 0)
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{
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p->drug_stat[1]++;
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var_8c = oyrepeat + p->drug_stat[1] * 5000;
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if (oyrepeat * 3 < var_8c)
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{
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p->drug_aspect = oyrepeat * 3;
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p->drug_stat[0] = 2;
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}
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else
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{
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p->drug_aspect = var_8c;
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}
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}
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else if (p->drug_stat[0] == 3)
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{
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p->drug_stat[1]--;
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var_8c = oyrepeat + p->drug_stat[1] * 5000;
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if (var_8c < oyrepeat)
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{
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p->DrugMode = 0;
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p->drug_stat[0] = 0;
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p->drug_stat[2] = 0;
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p->drug_stat[1] = 0;
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p->drug_aspect = oyrepeat;
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}
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else
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{
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p->drug_aspect = var_8c;
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}
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}
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else if (p->drug_stat[0] == 2)
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{
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if (p->drug_stat[2] > 30)
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{
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p->drug_stat[0] = 1;
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}
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else
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{
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p->drug_stat[2]++;
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p->drug_aspect = oyrepeat * 3 + p->drug_stat[2] * 500;
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}
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}
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else
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{
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if (p->drug_stat[2] < 1)
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{
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p->drug_stat[0] = 2;
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p->DrugMode--;
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if (p->DrugMode == 1)
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p->drug_stat[0] = 3;
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}
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else
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{
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p->drug_stat[2]--;
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p->drug_aspect = oyrepeat * 3 + p->drug_stat[2] * 500;
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}
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}
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}
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return p->drug_aspect;
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}
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else
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{
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DrugTimer = now;
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return oyrepeat;
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}
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}
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//---------------------------------------------------------------------------
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//
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//
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//
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//---------------------------------------------------------------------------
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void displayrooms(int snum, double smoothratio)
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{
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int cposx, cposy, cposz, fz, cz;
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binangle cang, rotscrnang;
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fixedhoriz choriz;
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struct player_struct* p;
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p = &ps[snum];
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pm_smoothratio = (int)smoothratio;
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if (automapMode == am_full || !p->insector())
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return;
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// Do not light up the fog in RRRA's E2L1. Ideally this should apply to all foggy levels but all others use lookup table hacks for their fog.
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if (isRRRA() && fogactive)
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{
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p->visibility = ud.const_visibility;
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}
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g_visibility = p->visibility;
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videoSetCorrectedAspect();
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auto sect = p->cursector;
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GlobalMapFog = fogactive ? 0x999999 : 0;
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GlobalFogDensity = fogactive ? 350.f : 0.f;
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GLInterface.SetMapFog(fogactive != 0);
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DoInterpolations(smoothratio / 65536.);
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setgamepalette(BASEPAL);
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if (!testnewrenderer) gi->UpdateCameras(smoothratio); // Only Polymost does this here. The new renderer calls this internally.
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if (ud.cameraactor)
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{
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spritetype* s = &ud.cameraactor->spr;
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if (s->yvel < 0) s->yvel = -100;
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else if (s->yvel > 199) s->yvel = 300;
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cang = buildang(interpolatedangle(ud.cameraactor->tempang, s->ang, smoothratio));
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auto bh = buildhoriz(s->yvel);
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renderView(s, s->sector(), s->x, s->y, s->z - (4 << 8), cang, bh, buildang(0), (int)smoothratio);
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}
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else
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{
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// Fixme: This should get the aspect ratio from the backend, not the current viewport size.
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int i = DivScale(1, isRR() ? 64 : p->GetActor()->spr.yrepeat + 28, 22);
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int viewingaspect = !isRRRA() || !p->DrugMode ? xs_CRoundToInt(double(i) * tan(r_fov * (pi::pi() / 360.))) : getdrugmode(p, i);
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renderSetAspect(MulScale(viewingaspect, viewingrange, 16), yxaspect);
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// The camera texture must be rendered with the base palette, so this is the only place where the current global palette can be set.
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// The setting here will be carried over to the rendering of the weapon sprites, but other 2D content will always default to the main palette.
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setgamepalette(setpal(p));
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// set screen rotation.
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rotscrnang = !SyncInput() ? p->angle.rotscrnang : p->angle.interpolatedrotscrn(smoothratio);
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#if 0
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if ((snum == myconnectindex) && (numplayers > 1))
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{
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cposx = interpolatedvalue(omyx, myx, smoothratio);
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cposy = interpolatedvalue(omyy, myy, smoothratio);
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cposz = interpolatedvalue(omyz, myz, smoothratio);
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if (SyncInput())
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{
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choriz = interpolatedhorizon(omyhoriz + omyhorizoff, myhoriz + myhorizoff, smoothratio);
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cang = interpolatedangle(omyang, myang, smoothratio);
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}
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else
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{
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cang = myang;
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choriz = myhoriz + myhorizoff;
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}
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sect = mycursectnum;
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}
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else
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#endif
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{
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cposx = interpolatedvalue(p->oposx, p->pos.X, smoothratio);
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cposy = interpolatedvalue(p->oposy, p->pos.Y, smoothratio);
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cposz = interpolatedvalue(p->oposz, p->pos.Z, smoothratio);;
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if (SyncInput())
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{
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// Original code for when the values are passed through the sync struct
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choriz = p->horizon.interpolatedsum(smoothratio);
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cang = p->angle.interpolatedsum(smoothratio);
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}
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else
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{
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// This is for real time updating of the view direction.
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cang = p->angle.sum();
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choriz = p->horizon.sum();
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}
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}
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spritetype* viewer;
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if (p->newOwner != nullptr)
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{
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auto spr = &p->newOwner->spr;
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cang = buildang(spr->interpolatedang(smoothratio));
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choriz = buildhoriz(spr->shade);
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cposx = spr->pos.X;
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cposy = spr->pos.Y;
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cposz = spr->pos.Z;
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sect = spr->sector();
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rotscrnang = buildang(0);
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smoothratio = MaxSmoothRatio;
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viewer = spr;
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}
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else if (p->over_shoulder_on == 0)
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{
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if (cl_viewbob) cposz += interpolatedvalue(p->opyoff, p->pyoff, smoothratio);
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viewer = &p->GetActor()->spr;
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}
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else
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{
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cposz -= isRR() ? 3840 : 3072;
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viewer = &p->GetActor()->spr;
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if (!calcChaseCamPos(&cposx, &cposy, &cposz, viewer, §, cang, choriz, smoothratio))
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{
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cposz += isRR() ? 3840 : 3072;
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calcChaseCamPos(&cposx, &cposy, &cposz, viewer, §, cang, choriz, smoothratio);
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}
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}
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cz = p->GetActor()->ceilingz;
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fz = p->GetActor()->floorz;
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if (earthquaketime > 0 && p->on_ground == 1)
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{
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cposz += 256 - (((earthquaketime) & 1) << 9);
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cang += buildang((2 - ((earthquaketime) & 2)) << 2);
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}
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if (p->GetActor()->spr.pal == 1) cposz -= (18 << 8);
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else if (p->spritebridge == 0 && p->newOwner == nullptr)
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{
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if (cposz < (p->truecz + (4 << 8))) cposz = cz + (4 << 8);
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else if (cposz > (p->truefz - (4 << 8))) cposz = fz - (4 << 8);
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}
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if (sect)
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{
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getzsofslopeptr(sect, cposx, cposy, &cz, &fz);
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if (cposz < cz + (4 << 8)) cposz = cz + (4 << 8);
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if (cposz > fz - (4 << 8)) cposz = fz - (4 << 8);
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}
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choriz = clamp(choriz, q16horiz(gi->playerHorizMin()), q16horiz(gi->playerHorizMax()));
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if (isRR() && sect->lotag == 848 && !testnewrenderer)
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{
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renderSetRollAngle((float)rotscrnang.asbuildf());
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geometryEffect(cposx, cposy, cposz, cang, choriz, sectnum(sect), (int)smoothratio);
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}
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else
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{
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renderView(viewer, sect, cposx, cposy, cposz, cang, choriz, rotscrnang, (int)smoothratio);
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}
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}
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//GLInterface.SetMapFog(false);
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RestoreInterpolations();
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if (!isRRRA() || !fogactive)
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{
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if (PlayClock < lastvisinc)
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{
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if (abs(p->visibility - ud.const_visibility) > 8)
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p->visibility += (ud.const_visibility - p->visibility) >> 2;
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}
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else p->visibility = ud.const_visibility;
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}
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}
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bool GameInterface::GenerateSavePic()
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{
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displayrooms(myconnectindex, MaxSmoothRatio);
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return true;
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}
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void GameInterface::processSprites(tspritetype* tsprite, int& spritesortcnt, int viewx, int viewy, int viewz, binangle viewang, double smoothRatio)
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{
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fi.animatesprites(tsprite, spritesortcnt, viewx, viewy, viewang.asbuild(), int(smoothRatio));
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}
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END_DUKE_NS
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