mirror of
https://git.code.sf.net/p/quake/quakeforge
synced 2024-11-23 12:52:46 +00:00
21c7b84379
I spent way too long trying to figure out why triangle order wasn't making any difference... :P
396 lines
7.6 KiB
C
396 lines
7.6 KiB
C
/*
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glsl_main.c
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GLSL rendering
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Copyright (C) 2011 Bill Currie <bill@taniwha.org>
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Author: Bill Currie <bill@taniwha.org>
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Date: 2011/12/23
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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:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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static __attribute__ ((used)) const char rcsid[] = "$Id$";
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#ifdef HAVE_STRING_H
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# include "string.h"
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#endif
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#ifdef HAVE_STRINGS_H
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# include "strings.h"
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#endif
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#include "QF/cvar.h"
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#include "QF/image.h"
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#include "QF/render.h"
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#include "QF/screen.h"
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#include "QF/skin.h"
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#include "QF/sys.h"
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#include "QF/GLSL/defines.h"
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#include "QF/GLSL/funcs.h"
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#include "QF/GLSL/qf_alias.h"
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#include "QF/GLSL/qf_textures.h"
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#include "gl_draw.h"
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#include "r_cvar.h"
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#include "r_dynamic.h"
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#include "r_local.h"
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#include "r_screen.h"
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mat4_t glsl_projection;
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mat4_t glsl_view;
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VISIBLE vec3_t r_origin, vpn, vright, vup;
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VISIBLE refdef_t r_refdef;
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qboolean r_cache_thrash;
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int r_init;
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int r_framecount;
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int d_lightstylevalue[256];
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int r_visframecount;
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entity_t r_worldentity;
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entity_t *currententity;
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void
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gl_overbright_f (cvar_t *var)
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{
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}
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VISIBLE void
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R_ViewChanged (float aspect)
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{
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double xmin, xmax, ymin, ymax;
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float fovx, fovy, neard, fard;
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vec_t *proj = glsl_projection;
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fovx = r_refdef.fov_x;
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fovy = r_refdef.fov_y;
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neard = r_nearclip->value;
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fard = r_farclip->value;
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ymax = neard * tan (fovy * M_PI / 360); // fov_2 / 2
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ymin = -ymax;
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xmax = neard * tan (fovx * M_PI / 360); // fov_2 / 2
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xmin = -xmax;
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proj[0] = (2 * neard) / (xmax - xmin);
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proj[4] = 0;
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proj[8] = (xmax + xmin) / (xmax - xmin);
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proj[12] = 0;
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proj[1] = 0;
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proj[5] = (2 * neard) / (ymax - ymin);
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proj[9] = (ymax + ymin) / (ymax - ymin);
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proj[13] = 0;
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proj[2] = 0;
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proj[6] = 0;
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proj[10] = (fard + neard) / (neard - fard);
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proj[14] = (2 * fard + neard) / (neard - fard);
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proj[3] = 0;
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proj[7] = 0;
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proj[11] = -1;
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proj[15] = 0;
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}
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void
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R_SetupFrame (void)
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{
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R_ClearEnts ();
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r_framecount++;
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VectorCopy (r_refdef.vieworg, r_origin);
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AngleVectors (r_refdef.viewangles, vpn, vright, vup);
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}
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static void
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R_SetupView (void)
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{
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float x, y, w, h;
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mat4_t mat;
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static mat4_t z_up = {
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0, 0, -1, 0,
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-1, 0, 0, 0,
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0, 1, 0, 0,
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0, 0, 0, 1,
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};
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x = r_refdef.vrect.x;
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y = (vid.height - (r_refdef.vrect.y + r_refdef.vrect.height));
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w = r_refdef.vrect.width;
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h = r_refdef.vrect.height;
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qfglViewport (x, y, w, h);
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Mat4Zero (mat);
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VectorCopy (vpn, mat + 0);
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VectorNegate (vright, mat + 4); // we want vleft
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VectorCopy (vup, mat + 8);
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mat[15] = 1;
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Mat4Transpose (mat, mat);//AngleVectors gives the transpose of what we want
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Mat4Mult (z_up, mat, glsl_view);
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Mat4Identity (mat);
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VectorNegate (r_refdef.vieworg, mat + 12);
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Mat4Mult (glsl_view, mat, glsl_view);
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qfglEnable (GL_CULL_FACE);
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qfglEnable (GL_DEPTH_TEST);
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}
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static void
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R_RenderEntities (void)
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{
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entity_t *ent;
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if (!r_drawentities->int_val)
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return;
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R_AliasBegin ();
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for (ent = r_ent_queue; ent; ent = ent->next) {
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if (ent->model->type != mod_alias)
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continue;
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currententity = ent;
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R_DrawAlias ();
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}
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R_AliasEnd ();
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R_SpriteBegin ();
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for (ent = r_ent_queue; ent; ent = ent->next) {
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if (ent->model->type != mod_sprite)
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continue;
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currententity = ent;
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R_DrawSprite ();
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}
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R_SpriteEnd ();
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}
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static inline void
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visit_leaf (mleaf_t *leaf)
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{
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// deal with model fragments in this leaf
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if (leaf->efrags)
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R_StoreEfrags (leaf->efrags);
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}
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static inline int
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get_side (mnode_t *node)
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{
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// find which side of the node we are on
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plane_t *plane = node->plane;
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if (plane->type < 3)
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return (r_origin[plane->type] - plane->dist) < 0;
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return (DotProduct (r_origin, plane->normal) - plane->dist) < 0;
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}
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static inline void
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visit_node (mnode_t *node, int side)
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{
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int c;
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msurface_t *surf;
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// sneaky hack for side = side ? SURF_PLANEBACK : 0;
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side = (~side + 1) & SURF_PLANEBACK;
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// draw stuff
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if ((c = node->numsurfaces)) {
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surf = r_worldentity.model->surfaces + node->firstsurface;
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for (; c; c--, surf++) {
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if (surf->visframe != r_visframecount)
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continue;
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// side is either 0 or SURF_PLANEBACK
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if (side ^ (surf->flags & SURF_PLANEBACK))
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continue; // wrong side
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//chain_surface (surf, 0, 0);
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}
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}
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}
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static inline int
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test_node (mnode_t *node)
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{
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if (node->contents < 0)
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return 0;
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if (node->visframe != r_visframecount)
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return 0;
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if (R_CullBox (node->minmaxs, node->minmaxs + 3))
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return 0;
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return 1;
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}
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static void
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R_VisitWorldNodes (mnode_t *node)
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{
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#define NODE_STACK 1024
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struct {
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mnode_t *node;
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int side;
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} *node_ptr, node_stack[NODE_STACK];
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mnode_t *front;
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int side;
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node_ptr = node_stack;
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while (1) {
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while (test_node (node)) {
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side = get_side (node);
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front = node->children[side];
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if (test_node (front)) {
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if (node_ptr - node_stack == NODE_STACK)
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Sys_Error ("node_stack overflow");
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node_ptr->node = node;
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node_ptr->side = side;
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node_ptr++;
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node = front;
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continue;
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}
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if (front->contents < 0 && front->contents != CONTENTS_SOLID)
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visit_leaf ((mleaf_t *) front);
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visit_node (node, side);
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node = node->children[!side];
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}
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if (node->contents < 0 && node->contents != CONTENTS_SOLID)
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visit_leaf ((mleaf_t *) node);
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if (node_ptr != node_stack) {
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node_ptr--;
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node = node_ptr->node;
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side = node_ptr->side;
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visit_node (node, side);
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node = node->children[!side];
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continue;
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}
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break;
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}
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if (node->contents < 0 && node->contents != CONTENTS_SOLID)
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visit_leaf ((mleaf_t *) node);
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}
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static void
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R_DrawWorld (void)
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{
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entity_t worldent;
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memset (&worldent, 0, sizeof (worldent));
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worldent.model = r_worldentity.model;
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currententity = &worldent;
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R_VisitWorldNodes (worldent.model->nodes);
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}
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VISIBLE void
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R_RenderView (void)
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{
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R_SetupFrame ();
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R_SetupView ();
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R_DrawWorld ();
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R_RenderEntities ();
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}
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VISIBLE void
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R_Init (void)
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{
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R_InitParticles ();
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R_InitAlias ();
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R_InitSprites ();
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}
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VISIBLE void
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R_NewMap (model_t *worldmodel, struct model_s **models, int num_models)
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{
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memset (&r_worldentity, 0, sizeof (r_worldentity));
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r_worldentity.model = worldmodel;
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R_FreeAllEntities ();
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R_ClearParticles ();
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}
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VISIBLE void
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R_LoadSkys (const char *sky)
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{
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}
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VISIBLE void
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Fog_Update (float density, float red, float green, float blue, float time)
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{
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}
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VISIBLE void
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Fog_ParseWorldspawn (struct plitem_s *worldspawn)
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{
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}
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VISIBLE void
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Skin_Player_Model (model_t *model)
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{
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}
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VISIBLE void
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Skin_Set_Translate (int top, int bottom, void *_dest)
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{
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}
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VISIBLE void
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Skin_Do_Translation (skin_t *player_skin, int slot, skin_t *skin)
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{
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}
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VISIBLE void
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Skin_Do_Translation_Model (struct model_s *model, int skinnum, int slot,
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skin_t *skin)
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{
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}
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VISIBLE void
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Skin_Process (skin_t *skin, struct tex_s * tex)
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{
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}
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VISIBLE void
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Skin_Init_Translation (void)
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{
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}
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VISIBLE void
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R_LineGraph (int x, int y, int *h_vals, int count)
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{
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}
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VISIBLE int
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GL_LoadTexture (const char *identifier, int width, int height, byte *data,
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qboolean mipmap, qboolean alpha, int bytesperpixel)
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{
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return 0;
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}
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VISIBLE void
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R_ClearState (void)
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{
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R_ClearEfrags ();
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R_ClearDlights ();
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R_ClearParticles ();
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}
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