477 lines
15 KiB
C
Executable file
477 lines
15 KiB
C
Executable file
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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This file is part of Quake III Arena source code.
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Quake III Arena source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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Quake III Arena source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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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 Foobar; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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#if defined(WIN32) || defined(_WIN32)
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#include <io.h>
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#endif
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#include <malloc.h>
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#include "l_cmd.h"
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#include "l_math.h"
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#include "l_poly.h"
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#include "l_threads.h"
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#include "../botlib/l_script.h"
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#include "l_bsp_ent.h"
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#include "q2files.h"
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#include "l_mem.h"
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#include "l_utils.h"
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#include "l_log.h"
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#include "l_qfiles.h"
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#define BSPC_VERSION "2.1h"
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#define ME
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#define DEBUG
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#define NODELIST
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#define SIN
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#define MAX_BRUSH_SIDES 128 //maximum number of sides per brush
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#define CLIP_EPSILON 0.1
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#define MAX_MAP_BOUNDS 65535
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#define BOGUS_RANGE (MAX_MAP_BOUNDS+128) //somewhere outside the map
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#define TEXINFO_NODE -1 //side is allready on a node
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#define PLANENUM_LEAF -1 //used for leaf nodes
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#define MAXEDGES 20 //maximum number of face edges
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#define MAX_NODE_BRUSHES 8 //maximum brushes in a node
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//side flags
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#define SFL_TESTED 1
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#define SFL_VISIBLE 2
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#define SFL_BEVEL 4
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#define SFL_TEXTURED 8
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#define SFL_CURVE 16
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//map plane
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typedef struct plane_s
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{
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vec3_t normal;
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vec_t dist;
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int type;
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int signbits;
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struct plane_s *hash_chain;
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} plane_t;
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//brush texture
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typedef struct
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{
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vec_t shift[2];
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vec_t rotate;
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vec_t scale[2];
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char name[32];
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int flags;
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int value;
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} brush_texture_t;
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//brush side
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typedef struct side_s
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{
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int planenum; // map plane this side is in
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int texinfo; // texture reference
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winding_t *winding; // winding of this side
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struct side_s *original; // bspbrush_t sides will reference the mapbrush_t sides
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int lightinfo; // for SIN only
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int contents; // from miptex
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int surf; // from miptex
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unsigned short flags; // side flags
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} side_t; //sizeof(side_t) = 36
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//map brush
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typedef struct mapbrush_s
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{
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int entitynum;
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int brushnum;
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int contents;
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#ifdef ME
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int expansionbbox; //bbox used for expansion of the brush
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int leafnum;
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int modelnum;
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#endif
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vec3_t mins, maxs;
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int numsides;
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side_t *original_sides;
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} mapbrush_t;
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//bsp face
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typedef struct face_s
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{
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struct face_s *next; // on node
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// the chain of faces off of a node can be merged or split,
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// but each face_t along the way will remain in the chain
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// until the entire tree is freed
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struct face_s *merged; // if set, this face isn't valid anymore
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struct face_s *split[2]; // if set, this face isn't valid anymore
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struct portal_s *portal;
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int texinfo;
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#ifdef SIN
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int lightinfo;
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#endif
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int planenum;
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int contents; // faces in different contents can't merge
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int outputnumber;
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winding_t *w;
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int numpoints;
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qboolean badstartvert; // tjunctions cannot be fixed without a midpoint vertex
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int vertexnums[MAXEDGES];
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} face_t;
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//bsp brush
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typedef struct bspbrush_s
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{
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struct bspbrush_s *next;
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vec3_t mins, maxs;
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int side, testside; // side of node during construction
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mapbrush_t *original;
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int numsides;
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side_t sides[6]; // variably sized
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} bspbrush_t; //sizeof(bspbrush_t) = 44 + numsides * sizeof(side_t)
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//bsp node
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typedef struct node_s
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{
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//both leafs and nodes
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int planenum; // -1 = leaf node
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struct node_s *parent;
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vec3_t mins, maxs; // valid after portalization
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bspbrush_t *volume; // one for each leaf/node
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// nodes only
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qboolean detail_seperator; // a detail brush caused the split
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side_t *side; // the side that created the node
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struct node_s *children[2];
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face_t *faces;
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// leafs only
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bspbrush_t *brushlist; // fragments of all brushes in this leaf
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int contents; // OR of all brush contents
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int occupied; // 1 or greater can reach entity
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entity_t *occupant; // for leak file testing
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int cluster; // for portalfile writing
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int area; // for areaportals
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struct portal_s *portals; // also on nodes during construction
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#ifdef NODELIST
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struct node_s *next; //next node in the nodelist
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#endif
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#ifdef ME
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int expansionbboxes; //OR of all bboxes used for expansion of the brushes
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int modelnum;
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#endif
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} node_t; //sizeof(node_t) = 80 bytes
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//bsp portal
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typedef struct portal_s
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{
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plane_t plane;
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node_t *onnode; // NULL = outside box
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node_t *nodes[2]; // [0] = front side of plane
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struct portal_s *next[2];
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winding_t *winding;
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qboolean sidefound; // false if ->side hasn't been checked
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side_t *side; // NULL = non-visible
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face_t *face[2]; // output face in bsp file
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#ifdef ME
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struct tmp_face_s *tmpface; //pointer to the tmpface created for this portal
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int planenum; //number of the map plane used by the portal
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#endif
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} portal_t;
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//bsp tree
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typedef struct
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{
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node_t *headnode;
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node_t outside_node;
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vec3_t mins, maxs;
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} tree_t;
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//=============================================================================
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// bspc.c
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//=============================================================================
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extern qboolean noprune;
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extern qboolean nodetail;
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extern qboolean fulldetail;
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extern qboolean nomerge;
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extern qboolean nosubdiv;
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extern qboolean nowater;
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extern qboolean noweld;
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extern qboolean noshare;
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extern qboolean notjunc;
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extern qboolean onlyents;
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#ifdef ME
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extern qboolean nocsg;
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extern qboolean create_aas;
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extern qboolean freetree;
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extern qboolean lessbrushes;
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extern qboolean nobrushmerge;
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extern qboolean cancelconversion;
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extern qboolean noliquids;
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extern qboolean capsule_collision;
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#endif //ME
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extern float subdivide_size;
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extern vec_t microvolume;
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extern char outbase[32];
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extern char source[1024];
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//=============================================================================
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// map.c
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//=============================================================================
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#define MAX_MAPFILE_PLANES 256000
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#define MAX_MAPFILE_BRUSHES 65535
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#define MAX_MAPFILE_BRUSHSIDES (MAX_MAPFILE_BRUSHES*8)
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#define MAX_MAPFILE_TEXINFO 8192
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extern int entity_num;
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extern plane_t mapplanes[MAX_MAPFILE_PLANES];
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extern int nummapplanes;
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extern int mapplaneusers[MAX_MAPFILE_PLANES];
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extern int nummapbrushes;
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extern mapbrush_t mapbrushes[MAX_MAPFILE_BRUSHES];
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extern vec3_t map_mins, map_maxs;
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extern int nummapbrushsides;
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extern side_t brushsides[MAX_MAPFILE_BRUSHSIDES];
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extern brush_texture_t side_brushtextures[MAX_MAPFILE_BRUSHSIDES];
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#ifdef ME
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typedef struct
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{
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float vecs[2][4]; // [s/t][xyz offset]
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int flags; // miptex flags + overrides
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int value;
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char texture[64]; // texture name (textures/*.wal)
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int nexttexinfo; // for animations, -1 = end of chain
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} map_texinfo_t;
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extern map_texinfo_t map_texinfo[MAX_MAPFILE_TEXINFO];
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extern int map_numtexinfo;
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#define NODESTACKSIZE 1024
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#define MAPTYPE_QUAKE1 1
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#define MAPTYPE_QUAKE2 2
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#define MAPTYPE_QUAKE3 3
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#define MAPTYPE_HALFLIFE 4
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#define MAPTYPE_SIN 5
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extern int nodestack[NODESTACKSIZE];
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extern int *nodestackptr;
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extern int nodestacksize;
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extern int brushmodelnumbers[MAX_MAPFILE_BRUSHES];
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extern int dbrushleafnums[MAX_MAPFILE_BRUSHES];
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extern int dplanes2mapplanes[MAX_MAPFILE_PLANES];
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extern int loadedmaptype;
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#endif //ME
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extern int c_boxbevels;
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extern int c_edgebevels;
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extern int c_areaportals;
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extern int c_clipbrushes;
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extern int c_squattbrushes;
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//finds a float plane for the given normal and distance
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int FindFloatPlane(vec3_t normal, vec_t dist);
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//returns the plane type for the given normal
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int PlaneTypeForNormal(vec3_t normal);
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//returns the plane defined by the three given points
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int PlaneFromPoints(int *p0, int *p1, int *p2);
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//add bevels to the map brush
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void AddBrushBevels(mapbrush_t *b);
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//makes brush side windings for the brush
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qboolean MakeBrushWindings(mapbrush_t *ob);
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//marks brush bevels of the brush as bevel
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void MarkBrushBevels(mapbrush_t *brush);
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//returns true if the map brush already exists
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int BrushExists(mapbrush_t *brush);
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//loads a map from a bsp file
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int LoadMapFromBSP(struct quakefile_s *qf);
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//resets map loading
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void ResetMapLoading(void);
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//print some map info
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void PrintMapInfo(void);
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//writes a map file (type depending on loaded map type)
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void WriteMapFile(char *filename);
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//=============================================================================
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// map_q2.c
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//=============================================================================
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void Q2_ResetMapLoading(void);
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//loads a Quake2 map file
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void Q2_LoadMapFile(char *filename);
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//loads a map from a Quake2 bsp file
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void Q2_LoadMapFromBSP(char *filename, int offset, int length);
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//=============================================================================
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// map_q1.c
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//=============================================================================
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void Q1_ResetMapLoading(void);
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//loads a Quake2 map file
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void Q1_LoadMapFile(char *filename);
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//loads a map from a Quake1 bsp file
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void Q1_LoadMapFromBSP(char *filename, int offset, int length);
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//=============================================================================
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// map_q3.c
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//=============================================================================
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void Q3_ResetMapLoading(void);
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//loads a map from a Quake3 bsp file
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void Q3_LoadMapFromBSP(struct quakefile_s *qf);
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//=============================================================================
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// map_sin.c
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//=============================================================================
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void Sin_ResetMapLoading(void);
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//loads a Sin map file
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void Sin_LoadMapFile(char *filename);
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//loads a map from a Sin bsp file
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void Sin_LoadMapFromBSP(char *filename, int offset, int length);
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//=============================================================================
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// map_hl.c
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//=============================================================================
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void HL_ResetMapLoading(void);
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//loads a Half-Life map file
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void HL_LoadMapFile(char *filename);
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//loads a map from a Half-Life bsp file
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void HL_LoadMapFromBSP(char *filename, int offset, int length);
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//=============================================================================
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// textures.c
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//=============================================================================
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typedef struct
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{
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char name[64];
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int flags;
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int value;
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int contents;
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char animname[64];
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} textureref_t;
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#define MAX_MAP_TEXTURES 1024
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extern textureref_t textureref[MAX_MAP_TEXTURES];
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int FindMiptex(char *name);
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int TexinfoForBrushTexture(plane_t *plane, brush_texture_t *bt, vec3_t origin);
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void TextureAxisFromPlane(plane_t *pln, vec3_t xv, vec3_t yv);
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//=============================================================================
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// csg
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//=============================================================================
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bspbrush_t *MakeBspBrushList(int startbrush, int endbrush, vec3_t clipmins, vec3_t clipmaxs);
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bspbrush_t *ChopBrushes(bspbrush_t *head);
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bspbrush_t *InitialBrushList(bspbrush_t *list);
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bspbrush_t *OptimizedBrushList(bspbrush_t *list);
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void WriteBrushMap(char *name, bspbrush_t *list);
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void CheckBSPBrush(bspbrush_t *brush);
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void BSPBrushWindings(bspbrush_t *brush);
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bspbrush_t *TryMergeBrushes(bspbrush_t *brush1, bspbrush_t *brush2);
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tree_t *ProcessWorldBrushes(int brush_start, int brush_end);
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//=============================================================================
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// brushbsp
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//=============================================================================
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#define PSIDE_FRONT 1
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#define PSIDE_BACK 2
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#define PSIDE_BOTH (PSIDE_FRONT|PSIDE_BACK)
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#define PSIDE_FACING 4
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void WriteBrushList(char *name, bspbrush_t *brush, qboolean onlyvis);
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bspbrush_t *CopyBrush(bspbrush_t *brush);
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void SplitBrush(bspbrush_t *brush, int planenum, bspbrush_t **front, bspbrush_t **back);
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node_t *AllocNode(void);
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bspbrush_t *AllocBrush(int numsides);
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int CountBrushList(bspbrush_t *brushes);
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void FreeBrush(bspbrush_t *brushes);
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vec_t BrushVolume(bspbrush_t *brush);
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void BoundBrush(bspbrush_t *brush);
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void FreeBrushList(bspbrush_t *brushes);
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tree_t *BrushBSP(bspbrush_t *brushlist, vec3_t mins, vec3_t maxs);
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bspbrush_t *BrushFromBounds(vec3_t mins, vec3_t maxs);
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int BrushMostlyOnSide(bspbrush_t *brush, plane_t *plane);
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qboolean WindingIsHuge(winding_t *w);
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qboolean WindingIsTiny(winding_t *w);
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void ResetBrushBSP(void);
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//=============================================================================
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// portals.c
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//=============================================================================
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int VisibleContents (int contents);
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void MakeHeadnodePortals (tree_t *tree);
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void MakeNodePortal (node_t *node);
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void SplitNodePortals (node_t *node);
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qboolean Portal_VisFlood (portal_t *p);
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qboolean FloodEntities (tree_t *tree);
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void FillOutside (node_t *headnode);
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void FloodAreas (tree_t *tree);
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void MarkVisibleSides (tree_t *tree, int start, int end);
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void FreePortal (portal_t *p);
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void EmitAreaPortals (node_t *headnode);
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void MakeTreePortals (tree_t *tree);
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//=============================================================================
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// glfile.c
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//=============================================================================
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void OutputWinding(winding_t *w, FILE *glview);
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void WriteGLView(tree_t *tree, char *source);
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//=============================================================================
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// gldraw.c
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//=============================================================================
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extern vec3_t draw_mins, draw_maxs;
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extern qboolean drawflag;
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void Draw_ClearWindow (void);
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void DrawWinding (winding_t *w);
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void GLS_BeginScene (void);
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void GLS_Winding (winding_t *w, int code);
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void GLS_EndScene (void);
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//=============================================================================
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// leakfile.c
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//=============================================================================
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void LeakFile (tree_t *tree);
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//=============================================================================
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// tree.c
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//=============================================================================
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tree_t *Tree_Alloc(void);
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void Tree_Free(tree_t *tree);
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void Tree_Free_r(node_t *node);
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void Tree_Print_r(node_t *node, int depth);
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void Tree_FreePortals_r(node_t *node);
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void Tree_PruneNodes_r(node_t *node);
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void Tree_PruneNodes(node_t *node);
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