merge changes from the defunct ubot
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/***
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*
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* Copyright (c) 1999-2005, Valve Corporation. All rights reserved.
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*
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* This product contains software technology licensed from Id
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* Software, Inc. ("Id Technology"). Id Technology (c) 1996 Id Software, Inc.
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* All Rights Reserved.
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*
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* This source code contains proprietary and confidential information of
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* Valve LLC and its suppliers. Access to this code is restricted to
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* persons who have executed a written SDK license with Valve. Any access,
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* use or distribution of this code by or to any unlicensed person is illegal.
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*
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****/
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// stripped down version of com_model.h & pm_info.h
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#ifndef MODEL_H
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#define MODEL_H
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typedef struct mplane_s {
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vec3_t normal;
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float dist;
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byte type; // for fast side tests
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byte signbits; // signx + (signy<<1) + (signz<<1)
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byte pad[2];
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} mplane_t;
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typedef struct {
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vec3_t position;
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} mvertex_t;
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typedef struct {
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float vecs[2][4]; // [s/t] unit vectors in world space [i][3] is the s/t offset relative to the origin s or t = dot( 3Dpoint, vecs[i] ) + vecs[i][3]
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float mipadjust; // mipmap limits for very small surfaces
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struct texture_t *texture;
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int flags; // sky or slime, no lightmap or 256 subdivision
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} mtexinfo_t;
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typedef struct mnode_hw_s {
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int contents; // 0, to differentiate from leafs
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int visframe; // node needs to be traversed if current
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float minmaxs[6]; // for bounding box culling
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struct mnode_s *parent;
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mplane_t *plane;
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struct mnode_s *children[2];
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unsigned short firstsurface;
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unsigned short numsurfaces;
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} mnode_hw_t;
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typedef struct mnode_s {
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int contents; // 0, to differentiate from leafs
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int visframe; // node needs to be traversed if current
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short minmaxs[6]; // for bounding box culling
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struct mnode_s *parent;
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mplane_t *plane;
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struct mnode_s *children[2];
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unsigned short firstsurface;
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unsigned short numsurfaces;
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} mnode_t;
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typedef struct {
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byte r, g, b;
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} color24;
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typedef struct msurface_hw_s {
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int visframe; // should be drawn when node is crossed
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mplane_t *plane; // pointer to shared plane
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int flags; // see SURF_ #defines
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int firstedge; // look up in model->surfedges[], negative numbers
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int numedges; // are backwards edges
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short texturemins[2];
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short extents[2];
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int light_s, light_t; // gl lightmap coordinates
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struct glpoly_t *polys; // multiple if warped
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struct msurface_s *texturechain;
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mtexinfo_t *texinfo;
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int dlightframe; // last frame the surface was checked by an animated light
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int dlightbits; // dynamically generated. Indicates if the surface illumination is modified by an animated light.
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int lightmaptexturenum;
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byte styles[MAXLIGHTMAPS];
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int cached_light[MAXLIGHTMAPS]; // values currently used in lightmap
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qboolean cached_dlight; // true if dynamic light in cache
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color24 *samples; // note: this is the actual lightmap data for this surface
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struct decal_t *pdecals;
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} msurface_hw_t;
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typedef struct msurface_s {
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int visframe; // should be drawn when node is crossed
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int dlightframe; // last frame the surface was checked by an animated light
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int dlightbits; // dynamically generated. Indicates if the surface illumination is modified by an animated light.
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mplane_t *plane; // pointer to shared plane
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int flags; // see SURF_ #defines
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int firstedge; // look up in model->surfedges[], negative numbers
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int numedges; // are backwards edges
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struct surfcache_s *cachespots[4]; // surface generation data
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short texturemins[2]; // smallest s/t position on the surface.
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short extents[2]; // ?? s/t texture size, 1..256 for all non-sky surfaces
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mtexinfo_t *texinfo;
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byte styles[MAXLIGHTMAPS]; // index into d_lightstylevalue[] for animated lights no one surface can be effected by more than 4 animated lights.
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color24 *samples;
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struct decal_t *pdecals;
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} msurface_t;
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typedef struct cache_user_s {
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void* data; // extradata
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} cache_user_t;
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typedef struct hull_s {
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struct dclipnode_t *clipnodes;
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mplane_t *planes;
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int firstclipnode;
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int lastclipnode;
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vec3_t clip_mins;
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vec3_t clip_maxs;
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} hull_t;
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typedef struct model_s {
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char name[64]; // model name
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qboolean needload; // bmodels and sprites don't cache normally
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int type; // model type
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int numframes; // sprite's framecount
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byte *mempool; // private mempool (was synctype)
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int flags; // hl compatibility
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vec3_t mins, maxs; // bounding box at angles '0 0 0'
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float radius;
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int firstmodelsurface;
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int nummodelsurfaces;
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int numsubmodels;
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struct dmodel_t *submodels; // or studio animations
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int numplanes;
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mplane_t *planes;
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int numleafs; // number of visible leafs, not counting 0
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struct mleaf_t *leafs;
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int numvertexes;
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mvertex_t *vertexes;
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int numedges;
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struct medge_t *edges;
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int numnodes;
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mnode_t *nodes;
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int numtexinfo;
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mtexinfo_t *texinfo;
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int numsurfaces;
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msurface_t *surfaces;
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int numsurfedges;
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int *surfedges;
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int numclipnodes;
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struct dclipnode_t *clipnodes;
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int nummarksurfaces;
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msurface_t **marksurfaces;
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hull_t hulls[MAX_MAP_HULLS];
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int numtextures;
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texture_t **textures;
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byte *visdata;
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color24 *lightdata;
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char *entities;
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cache_user_t cache; // only access through Mod_Extradata
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} model_t;
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struct lightstyle_t {
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int length;
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char map[MAX_LIGHTSTYLES];
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};
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typedef struct physent_s {
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char name[32]; // name of model, or "player" or "world".
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int player;
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vec3_t origin; // model's origin in world coordinates.
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struct model_s* model; // only for bsp models
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} physent_t;
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typedef struct playermove_s {
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int player_index; // So we don't try to run the PM_CheckStuck nudging too quickly.
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qboolean server; // For debugging, are we running physics code on server side?
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qboolean multiplayer; // 1 == multiplayer server
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float time; // realtime on host, for reckoning duck timing
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float frametime; // Duration of this frame
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vec3_t forward, right, up; // Vectors for angles
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vec3_t origin; // Movement origin.
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vec3_t angles; // Movement view angles.
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vec3_t oldangles; // Angles before movement view angles were looked at.
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vec3_t velocity; // Current movement direction.
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vec3_t movedir; // For waterjumping, a forced forward velocity so we can fly over lip of ledge.
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vec3_t basevelocity; // Velocity of the conveyor we are standing, e.g.
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vec3_t view_ofs; // Our eye position.
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float flDuckTime; // Time we started duck
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qboolean bInDuck; // In process of ducking or ducked already?
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int flTimeStepSound; // Next time we can play a step sound
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int iStepLeft;
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float flFallVelocity;
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vec3_t punchangle;
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float flSwimTime;
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float flNextPrimaryAttack;
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int effects; // MUZZLE FLASH, e.g.
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int flags; // FL_ONGROUND, FL_DUCKING, etc.
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int usehull; // 0 = regular player hull, 1 = ducked player hull, 2 = point hull
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float gravity; // Our current gravity and friction.
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float friction;
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int oldbuttons; // Buttons last usercmd
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float waterjumptime; // Amount of time left in jumping out of water cycle.
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qboolean dead; // Are we a dead player?
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int deadflag;
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int spectator; // Should we use spectator physics model?
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int movetype; // Our movement type, NOCLIP, WALK, FLY
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int onground;
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int waterlevel;
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int watertype;
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int oldwaterlevel;
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char sztexturename[256];
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char chtexturetype;
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float maxspeed;
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float clientmaxspeed; // Player specific maxspeed
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int iuser1;
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int iuser2;
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int iuser3;
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int iuser4;
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float fuser1;
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float fuser2;
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float fuser3;
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float fuser4;
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vec3_t vuser1;
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vec3_t vuser2;
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vec3_t vuser3;
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vec3_t vuser4;
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int numphysent;
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physent_t physents[MAX_PHYSENTS];
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} playermove_t;
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#endif
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