mirror of
https://git.code.sf.net/p/quake/quakeforge-old
synced 2024-11-26 22:01:31 +00:00
c3f5581b0a
Unchained, Ultimate, Ultra, Up Yours, Underworld, Underground, Unified, Unity, etc. You know the drill. This takes care of the "standalone" problem with the wrong name, and the recent snafu with multiple developers working on the same files simultaneously...expect me (and probably others) to start locking dirs when updates are taking place. And yes, this update is really as large as it looks. Software only at the moment, but I will have the makefile updated to build the GL builds as well.
331 lines
7.4 KiB
C
331 lines
7.4 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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// d_edge.c
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#include "quakedef.h"
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#include "d_local.h"
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static int miplevel;
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float scale_for_mip;
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int screenwidth;
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int ubasestep, errorterm, erroradjustup, erroradjustdown;
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int vstartscan;
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// FIXME: should go away
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extern void R_RotateBmodel (void);
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extern void R_TransformFrustum (void);
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vec3_t transformed_modelorg;
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/*
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==============
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D_DrawPoly
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==============
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*/
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void D_DrawPoly (void)
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{
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// this driver takes spans, not polygons
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}
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/*
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=============
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D_MipLevelForScale
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=============
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*/
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int D_MipLevelForScale (float scale)
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{
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int lmiplevel;
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if (scale >= d_scalemip[0] )
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lmiplevel = 0;
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else if (scale >= d_scalemip[1] )
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lmiplevel = 1;
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else if (scale >= d_scalemip[2] )
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lmiplevel = 2;
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else
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lmiplevel = 3;
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if (lmiplevel < d_minmip)
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lmiplevel = d_minmip;
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return lmiplevel;
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}
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/*
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==============
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D_DrawSolidSurface
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==============
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*/
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// FIXME: clean this up
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void D_DrawSolidSurface (surf_t *surf, int color)
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{
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espan_t *span;
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byte *pdest;
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int u, u2, pix;
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pix = (color<<24) | (color<<16) | (color<<8) | color;
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for (span=surf->spans ; span ; span=span->pnext)
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{
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pdest = (byte *)d_viewbuffer + screenwidth*span->v;
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u = span->u;
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u2 = span->u + span->count - 1;
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((byte *)pdest)[u] = pix;
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if (u2 - u < 8)
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{
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for (u++ ; u <= u2 ; u++)
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((byte *)pdest)[u] = pix;
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}
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else
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{
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for (u++ ; u & 3 ; u++)
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((byte *)pdest)[u] = pix;
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u2 -= 4;
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for ( ; u <= u2 ; u+=4)
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*(int *)((byte *)pdest + u) = pix;
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u2 += 4;
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for ( ; u <= u2 ; u++)
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((byte *)pdest)[u] = pix;
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}
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}
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}
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/*
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==============
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D_CalcGradients
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==============
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*/
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void D_CalcGradients (msurface_t *pface)
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{
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mplane_t *pplane;
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float mipscale;
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vec3_t p_temp1;
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vec3_t p_saxis, p_taxis;
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float t;
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pplane = pface->plane;
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mipscale = 1.0 / (float)(1 << miplevel);
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TransformVector (pface->texinfo->vecs[0], p_saxis);
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TransformVector (pface->texinfo->vecs[1], p_taxis);
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t = xscaleinv * mipscale;
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d_sdivzstepu = p_saxis[0] * t;
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d_tdivzstepu = p_taxis[0] * t;
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t = yscaleinv * mipscale;
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d_sdivzstepv = -p_saxis[1] * t;
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d_tdivzstepv = -p_taxis[1] * t;
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d_sdivzorigin = p_saxis[2] * mipscale - xcenter * d_sdivzstepu -
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ycenter * d_sdivzstepv;
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d_tdivzorigin = p_taxis[2] * mipscale - xcenter * d_tdivzstepu -
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ycenter * d_tdivzstepv;
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VectorScale (transformed_modelorg, mipscale, p_temp1);
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t = 0x10000*mipscale;
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sadjust = ((fixed16_t)(DotProduct (p_temp1, p_saxis) * 0x10000 + 0.5)) -
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((pface->texturemins[0] << 16) >> miplevel)
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+ pface->texinfo->vecs[0][3]*t;
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tadjust = ((fixed16_t)(DotProduct (p_temp1, p_taxis) * 0x10000 + 0.5)) -
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((pface->texturemins[1] << 16) >> miplevel)
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+ pface->texinfo->vecs[1][3]*t;
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//
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// -1 (-epsilon) so we never wander off the edge of the texture
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//
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bbextents = ((pface->extents[0] << 16) >> miplevel) - 1;
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bbextentt = ((pface->extents[1] << 16) >> miplevel) - 1;
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}
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/*
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==============
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D_DrawSurfaces
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==============
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*/
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void D_DrawSurfaces (void)
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{
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surf_t *s;
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msurface_t *pface;
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surfcache_t *pcurrentcache;
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vec3_t world_transformed_modelorg;
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vec3_t local_modelorg;
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currententity = &cl_entities[0];
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TransformVector (modelorg, transformed_modelorg);
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VectorCopy (transformed_modelorg, world_transformed_modelorg);
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// TODO: could preset a lot of this at mode set time
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if (r_drawflat.value)
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{
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for (s = &surfaces[1] ; s<surface_p ; s++)
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{
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if (!s->spans)
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continue;
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d_zistepu = s->d_zistepu;
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d_zistepv = s->d_zistepv;
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d_ziorigin = s->d_ziorigin;
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D_DrawSolidSurface (s, (int)s->data & 0xFF);
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D_DrawZSpans (s->spans);
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}
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}
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else
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{
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for (s = &surfaces[1] ; s<surface_p ; s++)
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{
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if (!s->spans)
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continue;
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r_drawnpolycount++;
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d_zistepu = s->d_zistepu;
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d_zistepv = s->d_zistepv;
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d_ziorigin = s->d_ziorigin;
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if (s->flags & SURF_DRAWSKY)
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{
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if (!r_skymade)
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{
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R_MakeSky ();
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}
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D_DrawSkyScans8 (s->spans);
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D_DrawZSpans (s->spans);
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}
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else if (s->flags & SURF_DRAWBACKGROUND)
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{
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// set up a gradient for the background surface that places it
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// effectively at infinity distance from the viewpoint
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d_zistepu = 0;
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d_zistepv = 0;
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d_ziorigin = -0.9;
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D_DrawSolidSurface (s, (int)r_clearcolor.value & 0xFF);
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D_DrawZSpans (s->spans);
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}
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else if (s->flags & SURF_DRAWTURB)
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{
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pface = s->data;
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miplevel = 0;
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cacheblock = (pixel_t *)
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((byte *)pface->texinfo->texture +
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pface->texinfo->texture->offsets[0]);
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cachewidth = 64;
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if (s->insubmodel)
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{
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// FIXME: we don't want to do all this for every polygon!
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// TODO: store once at start of frame
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currententity = s->entity; //FIXME: make this passed in to
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// R_RotateBmodel ()
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VectorSubtract (r_origin, currententity->origin,
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local_modelorg);
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TransformVector (local_modelorg, transformed_modelorg);
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R_RotateBmodel (); // FIXME: don't mess with the frustum,
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// make entity passed in
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}
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D_CalcGradients (pface);
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Turbulent8 (s->spans);
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D_DrawZSpans (s->spans);
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if (s->insubmodel)
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{
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//
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// restore the old drawing state
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// FIXME: we don't want to do this every time!
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// TODO: speed up
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//
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currententity = &cl_entities[0];
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VectorCopy (world_transformed_modelorg,
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transformed_modelorg);
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VectorCopy (base_vpn, vpn);
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VectorCopy (base_vup, vup);
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VectorCopy (base_vright, vright);
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VectorCopy (base_modelorg, modelorg);
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R_TransformFrustum ();
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}
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}
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else
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{
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if (s->insubmodel)
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{
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// FIXME: we don't want to do all this for every polygon!
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// TODO: store once at start of frame
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currententity = s->entity; //FIXME: make this passed in to
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// R_RotateBmodel ()
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VectorSubtract (r_origin, currententity->origin, local_modelorg);
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TransformVector (local_modelorg, transformed_modelorg);
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R_RotateBmodel (); // FIXME: don't mess with the frustum,
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// make entity passed in
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}
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pface = s->data;
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miplevel = D_MipLevelForScale (s->nearzi * scale_for_mip
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* pface->texinfo->mipadjust);
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// FIXME: make this passed in to D_CacheSurface
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pcurrentcache = D_CacheSurface (pface, miplevel);
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cacheblock = (pixel_t *)pcurrentcache->data;
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cachewidth = pcurrentcache->width;
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D_CalcGradients (pface);
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(*d_drawspans) (s->spans);
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D_DrawZSpans (s->spans);
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if (s->insubmodel)
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{
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//
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// restore the old drawing state
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// FIXME: we don't want to do this every time!
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// TODO: speed up
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//
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currententity = &cl_entities[0];
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VectorCopy (world_transformed_modelorg,
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transformed_modelorg);
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VectorCopy (base_vpn, vpn);
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VectorCopy (base_vup, vup);
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VectorCopy (base_vright, vright);
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VectorCopy (base_modelorg, modelorg);
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R_TransformFrustum ();
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}
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}
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}
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}
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}
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