mirror of
https://github.com/nzp-team/fteqw.git
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e7c1f9a490
make the 'identify' command assume that a single decimal number is not an address (allowing it to be handled as a user id). qcc: support default initialisers in function calls. tweak filesystem code to try to flush individual files instead of discarding the entire fs hash. fix 'snap' stuff. other tweaks... git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@5058 fc73d0e0-1445-4013-8a0c-d673dee63da5
695 lines
25 KiB
C
695 lines
25 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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// refresh.h -- public interface to refresh functions
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// default soldier colors
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#define TOP_DEFAULT 1
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#define BOTTOM_DEFAULT 6
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#define TOP_RANGE (TOP_DEFAULT<<4)
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#define BOTTOM_RANGE (BOTTOM_DEFAULT<<4)
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extern int r_framecount;
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struct msurface_s;
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struct batch_s;
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struct model_s;
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struct texnums_s;
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struct texture_s;
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static const texid_t r_nulltex = NULL;
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//GLES2 requires GL_UNSIGNED_SHORT
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//geforce4 only does shorts. gffx can do ints, but with a performance hit (like most things on that gpu)
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//ati is generally more capable, but generally also has a smaller market share
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//desktop-gl will generally cope with ints, but expect a performance hit from that with old gpus (so we don't bother)
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//vulkan+dx10 can cope with ints, but might be 24bit
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//either way, all renderers in the same build need to use the same thing.
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#if (defined(GLQUAKE) && !defined(NOLEGACY)) || defined(MINIMAL) || defined(D3D9QUAKE) || defined(ANDROID)
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#define sizeof_index_t 2
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#endif
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#if sizeof_index_t == 2
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#define GL_INDEX_TYPE GL_UNSIGNED_SHORT
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#define D3DFMT_QINDEX D3DFMT_INDEX16
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#define DXGI_FORMAT_INDEX_UINT DXGI_FORMAT_R16_UINT
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#define VK_INDEX_TYPE VK_INDEX_TYPE_UINT16
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typedef unsigned short index_t;
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#define MAX_INDICIES 0xffffu
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#else
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#define GL_INDEX_TYPE GL_UNSIGNED_INT
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#define D3DFMT_QINDEX D3DFMT_INDEX32
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#define DXGI_FORMAT_INDEX_UINT DXGI_FORMAT_R32_UINT
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#define VK_INDEX_TYPE VK_INDEX_TYPE_UINT32
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typedef unsigned int index_t;
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#define MAX_INDICIES 0x00ffffffu
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#endif
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//=============================================================================
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//the eye doesn't see different colours in the same proportion.
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//must add to slightly less than 1
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#define NTSC_RED 0.299
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#define NTSC_GREEN 0.587
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#define NTSC_BLUE 0.114
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#define NTSC_SUM (NTSC_RED + NTSC_GREEN + NTSC_BLUE)
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typedef enum {
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RT_MODEL,
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RT_POLY,
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RT_SPRITE,
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RT_BEAM,
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RT_RAIL_CORE,
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RT_RAIL_RINGS,
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RT_LIGHTNING,
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RT_PORTALSURFACE, // doesn't draw anything, just info for portals
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RT_MAX_REF_ENTITY_TYPE
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} refEntityType_t;
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typedef unsigned int skinid_t; //skin 0 is 'unused'
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struct dlight_s;
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typedef struct entity_s
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{
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//FIXME: instancing somehow. separate visentity+visinstance. only viable with full glsl though.
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//will need to generate a vbo somehow for the instances.
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int keynum; // for matching entities in different frames
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vec3_t origin;
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vec3_t angles; // fixme: should be redundant.
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vec3_t axis[3];
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vec4_t shaderRGBAf; /*colormod+alpha, available for shaders to mix*/
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float shaderTime; /*timestamp, for syncing shader times to spawns*/
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vec3_t glowmod; /*meant to be a multiplier for the fullbrights*/
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int light_known; /*bsp lighting has been calced*/
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vec3_t light_avg; /*midpoint level*/
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vec3_t light_range; /*avg + this = max, avg - this = min*/
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vec3_t light_dir;
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vec3_t oldorigin; /*for q2/q3 beams*/
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struct model_s *model; // NULL = no model
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int skinnum; // for Alias models
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skinid_t customskin; // quake3 style skins
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int playerindex; //for qw skins
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int topcolour; //colourmapping
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int bottomcolour; //colourmapping
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#ifdef HEXEN2
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int h2playerclass; //hexen2's quirky colourmapping
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#endif
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// struct efrag_s *efrag; // linked list of efrags (FIXME)
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// int visframe; // last frame this entity was
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// found in an active leaf
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// only used for static objects
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// int dlightframe; // dynamic lighting
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// int dlightbits;
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// FIXME: could turn these into a union
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// int trivial_accept;
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// struct mnode_s *topnode; // for bmodels, first world node
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// that splits bmodel, or NULL if
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// not split
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framestate_t framestate;
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int flags;
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refEntityType_t rtype;
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float rotation;
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struct shader_s *forcedshader;
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#ifdef PEXT_SCALE
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float scale;
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#endif
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#ifdef PEXT_FATNESS
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float fatness;
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#endif
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#ifdef HEXEN2
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int drawflags;
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int abslight;
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#endif
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} entity_t;
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#define MAX_GEOMSETS 32
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#define Q1UNSPECIFIED 0x00ffffff //0xffRRGGBB or 0x0000000V are both valid values. so this is an otherwise-illegal value to say its not been set.
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typedef struct
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{
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char skinname[MAX_QPATH];
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int nummappings;
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int maxmappings;
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qbyte geomset[MAX_GEOMSETS]; //allows selecting a single set of geometry from alternatives. this might be a can of worms.
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char qwskinname[MAX_QPATH];
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struct qwskin_s *qwskin;
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unsigned int q1upper; //Q1UNSPECIFIED
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unsigned int q1lower; //Q1UNSPECIFIED
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struct
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{
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char surface[MAX_QPATH];
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shader_t *shader;
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texnums_t texnums;
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int needsfree; //which textures need to be freed.
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} mappings[1];
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} skinfile_t;
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// plane_t structure
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typedef struct mplane_s
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{
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vec3_t normal;
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float dist;
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qbyte type; // for texture axis selection and fast side tests
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qbyte signbits; // signx + signy<<1 + signz<<1
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qbyte pad[2];
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} mplane_t;
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#define MAXFRUSTUMPLANES 7 //4 side, 1 near, 1 far (fog), 1 water plane.
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typedef struct
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{
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//note: uniforms expect specific padding/ordering. be really careful with reordering this
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vec3_t colour; //w_fog[0].xyz
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float alpha; //w_fog[0].w scales clamped fog value
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float density; //w_fog[1].x egads, everyone has a different opinion.
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float depthbias; //w_fog[1].y distance until the fog actually starts
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float glslpad1; //w_fog[1].z
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float glslpad2; //w_fog[1].w
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// float alpha;
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// float start;
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// float end;
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// float height;
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// float fadedepth;
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float time; //timestamp for when its current.
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} fogstate_t;
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void CL_BlendFog(fogstate_t *result, fogstate_t *oldf, float time, fogstate_t *newf);
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void CL_ResetFog(int fogtype);
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typedef enum {
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STEREO_OFF,
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STEREO_QUAD,
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STEREO_RED_CYAN,
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STEREO_RED_BLUE,
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STEREO_RED_GREEN,
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STEREO_CROSSEYED,
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#ifdef FTE_TARGET_WEB
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STEREO_WEBVR,
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#endif
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//these are internal methods and do not form part of any public API
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STEREO_LEFTONLY,
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STEREO_RIGHTONLY
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} stereomethod_t;
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typedef enum
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{
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PROJ_STANDARD = 0,
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PROJ_STEREOGRAPHIC = 1, //aka panini
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PROJ_FISHEYE = 2, //standard fisheye
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PROJ_PANORAMA = 3, //for nice panoramas
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PROJ_LAEA = 4, //lambert azimuthal equal-area
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PROJ_EQUIRECTANGULAR = 5 //projects a sphere into 2d. used by vr screenshots.
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} qprojection_t;
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typedef struct {
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char texname[MAX_QPATH];
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} rtname_t;
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#define R_MAX_RENDERTARGETS 8
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#ifndef R_MAX_RECURSE
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#define R_MAX_RECURSE 6
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#endif
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#define RDFD_FOV 1
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typedef struct
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{
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vrect_t grect; // game rectangle. fullscreen except for csqc/splitscreen/hud.
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vrect_t vrect; // subwindow in grect for 3d view. equal to grect if no hud.
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vec3_t pvsorigin; /*render the view using this point for pvs (useful for mirror views)*/
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vec3_t vieworg; /*logical view center*/
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vec3_t viewangles;
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vec3_t viewaxis[3]; /*forward, left, up (NOT RIGHT)*/
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vec3_t headaxis[3]; /*this is for head mounted displays. this is relative to the view*/
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vec3_t eyeoffset; /*world space, for vr screenies*/
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float fov_x, fov_y, afov;
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float mindist, maxdist; //maxdist may be 0, for 'infinite', in which case mindist probably isn't valid either.
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qboolean drawsbar;
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qboolean drawcrosshair;
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int flags; //(Q2)RDF_ flags
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int dirty;
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playerview_t *playerview;
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// int currentplayernum;
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float time;
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// float waterheight; //updated by the renderer. stuff sitting at this height generate ripple effects
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float m_projection[16];
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float m_view[16];
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qbyte *scenevis; /*this is the vis that's currently being draw*/
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mplane_t frustum[MAXFRUSTUMPLANES];
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int frustum_numworldplanes; //all but far, which isn't culled because this wouldn't cover the entire screen.
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int frustum_numplanes; //includes far plane (which is reduced with fog).
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fogstate_t globalfog;
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float hdr_value;
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pxrect_t pxrect; /*vrect, but in pixels rather than virtual coords*/
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qboolean externalview; /*draw external models and not viewmodels*/
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int recurse; /*in a mirror/portal/half way through drawing something else*/
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qboolean forcevis; /*if true, vis comes from the forcedvis field instead of recalculated*/
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unsigned int flipcull; /*reflected/flipped view, requires inverted culling (should be set to SHADER_CULL_FLIPPED or 0)*/
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qboolean useperspective; /*not orthographic*/
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stereomethod_t stereomethod;
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rtname_t rt_destcolour[R_MAX_RENDERTARGETS]; /*used for 2d. written by 3d*/
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rtname_t rt_sourcecolour; /*read by 2d. not used for 3d. */
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rtname_t rt_depth; /*read by 2d. used by 3d (renderbuffer used if not set)*/
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rtname_t rt_ripplemap; /*read by 2d. used by 3d (internal ripplemap buffer used if not set)*/
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rtname_t nearenvmap; /*provides a fallback endmap cubemap to render with*/
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qbyte *forcedvis; /*set if forcevis is set*/
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qboolean areabitsknown;
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qbyte areabits[MAX_MAP_AREA_BYTES];
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} refdef_t;
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extern refdef_t r_refdef;
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extern vec3_t r_origin, vpn, vright, vup;
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extern struct texture_s *r_notexture_mip;
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extern entity_t r_worldentity;
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void BE_GenModelBatches(struct batch_s **batches, const struct dlight_s *dl, unsigned int bemode); //if dl, filters based upon the dlight.
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//gl_alias.c
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void R_GAliasFlushSkinCache(qboolean final);
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void R_GAlias_DrawBatch(struct batch_s *batch);
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void R_GAlias_GenerateBatches(entity_t *e, struct batch_s **batches);
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void R_LightArraysByte_BGR(const entity_t *entity, vecV_t *coords, byte_vec4_t *colours, int vertcount, vec3_t *normals);
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void R_LightArrays(const entity_t *entity, vecV_t *coords, vec4_t *colours, int vertcount, vec3_t *normals, float scale);
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qboolean R_DrawSkyChain (struct batch_s *batch); /*called from the backend, and calls back into it*/
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void R_InitSky (shader_t *shader, const char *skyname, qbyte *src, unsigned int width, unsigned int height); /*generate q1 sky texnums*/
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void R_Clutter_Emit(struct batch_s **batches);
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void R_Clutter_Purge(void);
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//r_surf.c
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void Surf_NewMap (void);
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void Surf_PreNewMap(void);
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void Surf_SetupFrame(void); //determine pvs+viewcontents
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void Surf_DrawWorld(void);
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void Surf_GenBrushBatches(struct batch_s **batches, entity_t *ent);
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void Surf_StainSurf(struct msurface_s *surf, float *parms);
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void Surf_AddStain(vec3_t org, float red, float green, float blue, float radius);
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void Surf_LessenStains(void);
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void Surf_WipeStains(void);
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void Surf_DeInit(void);
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void Surf_Clear(struct model_s *mod);
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void Surf_BuildLightmaps(void); //enables Surf_BuildModelLightmaps, calls it for each bsp.
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void Surf_ClearLightmaps(void); //stops Surf_BuildModelLightmaps from working.
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void Surf_BuildModelLightmaps (struct model_s *m); //rebuild lightmaps for a single bsp. beware of submodels.
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void Surf_RenderDynamicLightmaps (struct msurface_s *fa);
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void Surf_RenderAmbientLightmaps (struct msurface_s *fa, int ambient);
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int Surf_LightmapShift (struct model_s *model);
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#define LMBLOCK_SIZE_MAX 2048 //single axis
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typedef struct glRect_s {
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unsigned short l,t,r,b;
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} glRect_t;
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typedef unsigned char stmap;
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struct mesh_s;
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typedef struct {
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texid_t lightmap_texture;
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qboolean modified;
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qboolean external;
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qboolean hasdeluxe;
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int width;
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int height;
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glRect_t rectchange;
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qbyte *lightmaps;//[4*LMBLOCK_WIDTH*LMBLOCK_HEIGHT];
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stmap *stainmaps;//[3*LMBLOCK_WIDTH*LMBLOCK_HEIGHT]; //rgb no a. added to lightmap for added (hopefully) speed.
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} lightmapinfo_t;
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extern lightmapinfo_t **lightmap;
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extern int numlightmaps;
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//extern texid_t *lightmap_textures;
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//extern texid_t *deluxmap_textures;
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extern int lightmap_bytes; // 1, 3, or 4
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extern qboolean lightmap_bgra; /*true=bgra, false=rgba*/
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void QDECL Surf_RebuildLightmap_Callback (struct cvar_s *var, char *oldvalue);
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void R_SetSky(char *skyname); /*override all sky shaders*/
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#if defined(GLQUAKE)
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void GLR_Init (void);
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void GLR_InitTextures (void);
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void GLR_InitEfrags (void);
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void GLR_RenderView (void); // must set r_refdef first
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// called whenever r_refdef or vid change
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void GLR_DrawPortal(struct batch_s *batch, struct batch_s **blist, struct batch_s *depthmasklist[2], int portaltype);
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void GLR_PushDlights (void);
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void GLR_DrawWaterSurfaces (void);
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void GLVID_DeInit (void);
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void GLR_DeInit (void);
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void GLSCR_DeInit (void);
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void GLVID_Console_Resize(void);
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#endif
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int R_LightPoint (vec3_t p);
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void R_RenderDlights (void);
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enum imageflags
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{
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/*warning: many of these flags only apply the first time it is requested*/
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IF_CLAMP = 1<<0, //disable texture coord wrapping.
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IF_NOMIPMAP = 1<<1, //disable mipmaps.
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IF_NEAREST = 1<<2, //force nearest
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IF_LINEAR = 1<<3, //force linear
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IF_UIPIC = 1<<4, //subject to texturemode2d
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/*WARNING: If the above are changed, be sure to change shader pass flags*/
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IF_NOPICMIP = 1<<5,
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IF_NOALPHA = 1<<6, /*hint rather than requirement*/
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IF_NOGAMMA = 1<<7,
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IF_3DMAP = 1<<8, /*waning - don't test directly*/
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IF_CUBEMAP = 1<<9, /*waning - don't test directly*/
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IF_TEXTYPE = (1<<8) | (1<<9), /*0=2d, 1=3d, 2=cubeface, 3=?*/
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IF_TEXTYPESHIFT = 8, /*0=2d, 1=3d, 2-7=cubeface*/
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IF_MIPCAP = 1<<10,
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IF_PREMULTIPLYALPHA = 1<<12, //rgb *= alpha
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IF_PALETTIZE = 1<<21,
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IF_NOPURGE = 1<<22,
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IF_HIGHPRIORITY = 1<<23,
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IF_LOWPRIORITY = 1<<24,
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IF_LOADNOW = 1<<25, /*hit the disk now, and delay the gl load until its actually needed. this is used only so that the width+height are known in advance*/
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IF_NOPCX = 1<<26, /*block pcx format. meaning qw skins can use team colours and cropping*/
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IF_TRYBUMP = 1<<27, /*attempt to load _bump if the specified _norm texture wasn't found*/
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IF_RENDERTARGET = 1<<28, /*never loaded from disk, loading can't fail*/
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IF_EXACTEXTENSION = 1<<29, /*don't mangle extensions, use what is specified and ONLY that*/
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IF_NOREPLACE = 1<<30, /*don't load a replacement, for some reason*/
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IF_NOWORKER = 1u<<31 /*don't pass the work to a loader thread. this gives fully synchronous loading. only valid from the main thread.*/
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};
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#define R_LoadTexture8(id,w,h,d,f,t) Image_GetTexture(id, NULL, f, d, NULL, w, h, t?TF_TRANS8:TF_SOLID8)
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#define R_LoadTexture32(id,w,h,d,f) Image_GetTexture(id, NULL, f, d, NULL, w, h, TF_RGBA32)
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#define R_LoadTextureFB(id,w,h,d,f) Image_GetTexture(id, NULL, f, d, NULL, w, h, TF_TRANS8_FULLBRIGHT)
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#define R_LoadTexture(id,w,h,fmt,d,fl) Image_GetTexture(id, NULL, fl, d, NULL, w, h, fmt)
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image_t *Image_FindTexture (const char *identifier, const char *subpath, unsigned int flags);
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image_t *Image_CreateTexture(const char *identifier, const char *subpath, unsigned int flags);
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image_t *Image_GetTexture (const char *identifier, const char *subpath, unsigned int flags, void *fallbackdata, void *fallbackpalette, int fallbackwidth, int fallbackheight, uploadfmt_t fallbackfmt);
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qboolean Image_UnloadTexture(image_t *tex); //true if it did something.
|
|
void Image_DestroyTexture (image_t *tex);
|
|
qboolean Image_LoadTextureFromMemory(texid_t tex, int flags, const char *iname, char *fname, qbyte *filedata, int filesize); //intended really for worker threads, but should be fine from the main thread too
|
|
void Image_Upload (texid_t tex, uploadfmt_t fmt, void *data, void *palette, int width, int height, unsigned int flags);
|
|
void Image_Purge(void); //purge any textures which are not needed any more (releases memory, but doesn't give null pointers).
|
|
void Image_Init(void);
|
|
void Image_Shutdown(void);
|
|
|
|
image_t *Image_LoadTexture (const char *identifier, int width, int height, uploadfmt_t fmt, void *data, unsigned int flags);
|
|
|
|
#ifdef D3D9QUAKE
|
|
void D3D9_UpdateFiltering (image_t *imagelist, int filtermip[3], int filterpic[3], int mipcap[2], float anis);
|
|
qboolean D3D9_LoadTextureMips (texid_t tex, struct pendingtextureinfo *mips);
|
|
void D3D9_DestroyTexture (texid_t tex);
|
|
#endif
|
|
#ifdef D3D11QUAKE
|
|
void D3D11_UpdateFiltering (image_t *imagelist, int filtermip[3], int filterpic[3], int mipcap[2], float anis);
|
|
qboolean D3D11_LoadTextureMips (texid_t tex, struct pendingtextureinfo *mips);
|
|
void D3D11_DestroyTexture (texid_t tex);
|
|
#endif
|
|
|
|
//extern int image_width, image_height;
|
|
texid_t R_LoadReplacementTexture(const char *name, const char *subpath, unsigned int flags, void *lowres, int lowreswidth, int lowresheight, uploadfmt_t fmt);
|
|
texid_tf R_LoadHiResTexture(const char *name, const char *subpath, unsigned int flags);
|
|
texid_tf R_LoadBumpmapTexture(const char *name, const char *subpath);
|
|
void R_LoadNumberedLightTexture(struct dlight_s *dl, int cubetexnum);
|
|
|
|
qbyte *Read32BitImageFile(qbyte *buf, int len, int *width, int *height, qboolean *hasalpha, const char *fname);
|
|
|
|
extern texid_t particletexture;
|
|
extern texid_t particlecqtexture;
|
|
extern texid_t explosiontexture;
|
|
extern texid_t balltexture;
|
|
extern texid_t beamtexture;
|
|
extern texid_t ptritexture;
|
|
|
|
skinid_t Mod_RegisterSkinFile(const char *skinname);
|
|
skinid_t Mod_ReadSkinFile(const char *skinname, const char *skintext);
|
|
void Mod_WipeSkin(skinid_t id);
|
|
skinfile_t *Mod_LookupSkin(skinid_t id);
|
|
|
|
void Mod_Init (qboolean initial);
|
|
void Mod_Shutdown (qboolean final);
|
|
int Mod_TagNumForName(struct model_s *model, const char *name);
|
|
int Mod_SkinNumForName(struct model_s *model, int surfaceidx, const char *name);
|
|
int Mod_FrameNumForName(struct model_s *model, int surfaceidx, const char *name);
|
|
float Mod_GetFrameDuration(struct model_s *model, int surfaceidx, int frameno);
|
|
|
|
void Mod_ResortShaders(void);
|
|
void Mod_ClearAll (void);
|
|
struct model_s *Mod_FindName (const char *name);
|
|
void *Mod_Extradata (struct model_s *mod); // handles caching
|
|
void Mod_TouchModel (const char *name);
|
|
void Mod_RebuildLightmaps (void);
|
|
|
|
typedef struct
|
|
{
|
|
unsigned int *offsets;
|
|
unsigned short *extents;
|
|
unsigned char *styles;
|
|
unsigned char *shifts;
|
|
} lightmapoverrides_t;
|
|
void Mod_LoadLighting (struct model_s *loadmodel, qbyte *mod_base, lump_t *l, qboolean interleaveddeluxe, lightmapoverrides_t *overrides);
|
|
|
|
struct mleaf_s *Mod_PointInLeaf (struct model_s *model, float *p);
|
|
|
|
void Mod_Think (void);
|
|
void Mod_NowLoadExternal(struct model_s *loadmodel);
|
|
void GLR_LoadSkys (void);
|
|
void R_BloomRegister(void);
|
|
|
|
int Mod_RegisterModelFormatText(void *module, const char *formatname, char *magictext, qboolean (QDECL *load) (struct model_s *mod, void *buffer, size_t fsize));
|
|
int Mod_RegisterModelFormatMagic(void *module, const char *formatname, unsigned int magic, qboolean (QDECL *load) (struct model_s *mod, void *buffer, size_t fsize));
|
|
void Mod_UnRegisterModelFormat(void *module, int idx);
|
|
void Mod_UnRegisterAllModelFormats(void *module);
|
|
void Mod_ModelLoaded(void *ctx, void *data, size_t a, size_t b);
|
|
|
|
#ifdef RUNTIMELIGHTING
|
|
struct relight_ctx_s;
|
|
struct llightinfo_s;
|
|
void LightFace (struct relight_ctx_s *ctx, struct llightinfo_s *threadctx, int surfnum); //version that is aware of bsp trees
|
|
void LightPlane (struct relight_ctx_s *ctx, struct llightinfo_s *threadctx, qbyte surf_styles[4], qbyte *surf_rgbsamples, qbyte *surf_deluxesamples, vec4_t surf_plane, vec4_t surf_texplanes[2], vec2_t exactmins, vec2_t exactmaxs, int texmins[2], int texsize[2], float lmscale); //special version that doesn't know what a face is or anything.
|
|
struct relight_ctx_s *LightStartup(struct relight_ctx_s *ctx, struct model_s *model, qboolean shadows);
|
|
void LightReloadEntities(struct relight_ctx_s *ctx, const char *entstring, qboolean ignorestyles);
|
|
void LightShutdown(struct relight_ctx_s *ctx, struct model_s *mod);
|
|
extern const size_t lightthreadctxsize;
|
|
#endif
|
|
|
|
|
|
extern struct model_s *currentmodel;
|
|
|
|
qboolean Media_ShowFilm(void);
|
|
void Media_CaptureDemoEnd(void);
|
|
void Media_RecordFrame (void);
|
|
qboolean Media_PausedDemo (qboolean fortiming);
|
|
int Media_Capturing (void);
|
|
double Media_TweekCaptureFrameTime(double oldtime, double time);
|
|
void Media_WriteCurrentTrack(sizebuf_t *buf);
|
|
|
|
void MYgluPerspective(double fovx, double fovy, double zNear, double zFar);
|
|
|
|
void R_PushDlights (void);
|
|
qbyte *R_MarkLeaves_Q1 (qboolean getvisonly);
|
|
qbyte *R_CalcVis_Q1 (void);
|
|
qbyte *R_MarkLeaves_Q2 (void);
|
|
qbyte *R_MarkLeaves_Q3 (void);
|
|
void R_SetFrustum (float projmat[16], float viewmat[16]);
|
|
void R_SetRenderer(rendererinfo_t *ri);
|
|
void R_AnimateLight (void);
|
|
void R_UpdateHDR(vec3_t org);
|
|
void R_UpdateLightStyle(unsigned int style, const char *stylestring, float r, float g, float b);
|
|
struct texture_s *R_TextureAnimation (int frame, struct texture_s *base); //mostly deprecated, only lingers for rtlights so world only.
|
|
struct texture_s *R_TextureAnimation_Q2 (struct texture_s *base); //mostly deprecated, only lingers for rtlights so world only.
|
|
void RQ_Init(void);
|
|
void RQ_Shutdown(void);
|
|
|
|
void WritePCXfile (const char *filename, enum fs_relative fsroot, qbyte *data, int width, int height, int rowbytes, qbyte *palette, qboolean upload); //data is 8bit.
|
|
qbyte *ReadPCXFile(qbyte *buf, int length, int *width, int *height);
|
|
qbyte *ReadTargaFile(qbyte *buf, int length, int *width, int *height, qboolean *hasalpha, int asgrey);
|
|
qbyte *ReadJPEGFile(qbyte *infile, int length, int *width, int *height);
|
|
qbyte *ReadPNGFile(qbyte *buf, int length, int *width, int *height, const char *name);
|
|
qbyte *ReadPCXPalette(qbyte *buf, int len, qbyte *out);
|
|
void Image_ResampleTexture (unsigned *in, int inwidth, int inheight, unsigned *out, int outwidth, int outheight);
|
|
|
|
void BoostGamma(qbyte *rgba, int width, int height);
|
|
void SaturateR8G8B8(qbyte *data, int size, float sat);
|
|
void AddOcranaLEDsIndexed (qbyte *image, int h, int w);
|
|
|
|
void Renderer_Init(void);
|
|
void Renderer_Start(void);
|
|
qboolean Renderer_Started(void);
|
|
void R_ShutdownRenderer(qboolean videotoo);
|
|
void R_RestartRenderer_f (void);//this goes here so we can save some stack when first initing the sw renderer.
|
|
|
|
//used to live in glquake.h
|
|
qbyte GetPaletteIndex(int red, int green, int blue);
|
|
extern cvar_t r_norefresh;
|
|
extern cvar_t r_drawentities;
|
|
extern cvar_t r_drawworld;
|
|
extern cvar_t r_drawviewmodel;
|
|
extern cvar_t r_drawviewmodelinvis;
|
|
extern cvar_t r_speeds;
|
|
extern cvar_t r_waterwarp;
|
|
extern cvar_t r_fullbright;
|
|
extern cvar_t r_lightmap;
|
|
extern cvar_t r_glsl_offsetmapping;
|
|
extern cvar_t r_shadow_playershadows;
|
|
extern cvar_t r_shadow_realtime_dlight, r_shadow_realtime_dlight_shadows;
|
|
extern cvar_t r_shadow_realtime_dlight_ambient;
|
|
extern cvar_t r_shadow_realtime_dlight_diffuse;
|
|
extern cvar_t r_shadow_realtime_dlight_specular;
|
|
extern cvar_t r_shadow_realtime_world, r_shadow_realtime_world_shadows, r_shadow_realtime_world_lightmaps;
|
|
extern cvar_t r_shadow_shadowmapping;
|
|
extern cvar_t r_editlights_import_radius;
|
|
extern cvar_t r_editlights_import_ambient;
|
|
extern cvar_t r_editlights_import_diffuse;
|
|
extern cvar_t r_editlights_import_specular;
|
|
extern cvar_t r_mirroralpha;
|
|
extern cvar_t r_wateralpha;
|
|
extern cvar_t r_lavaalpha;
|
|
extern cvar_t r_slimealpha;
|
|
extern cvar_t r_telealpha;
|
|
extern cvar_t r_waterstyle;
|
|
extern cvar_t r_lavastyle;
|
|
extern cvar_t r_slimestyle;
|
|
extern cvar_t r_telestyle;
|
|
extern cvar_t r_dynamic;
|
|
extern cvar_t r_novis;
|
|
extern cvar_t r_netgraph;
|
|
extern cvar_t r_deluxemapping_cvar;
|
|
extern qboolean r_deluxemapping;
|
|
extern cvar_t r_softwarebanding_cvar;
|
|
extern qboolean r_softwarebanding;
|
|
extern cvar_t r_lightprepass_cvar;
|
|
extern int r_lightprepass; //0=off,1=16bit,2=32bit
|
|
|
|
#ifdef R_XFLIP
|
|
extern cvar_t r_xflip;
|
|
#endif
|
|
|
|
extern cvar_t gl_mindist, gl_maxdist;
|
|
extern cvar_t r_clear;
|
|
extern cvar_t gl_poly;
|
|
extern cvar_t gl_affinemodels;
|
|
extern cvar_t r_renderscale;
|
|
extern cvar_t gl_nohwblend;
|
|
extern cvar_t r_coronas, r_coronas_occlusion, r_coronas_mindist, r_coronas_fadedist, r_flashblend, r_flashblendscale;
|
|
extern cvar_t r_lightstylesmooth;
|
|
extern cvar_t r_lightstylesmooth_limit;
|
|
extern cvar_t r_lightstylespeed;
|
|
extern cvar_t r_lightstylescale;
|
|
extern cvar_t gl_nocolors;
|
|
extern cvar_t gl_load24bit;
|
|
extern cvar_t gl_finish;
|
|
|
|
extern cvar_t gl_max_size;
|
|
extern cvar_t gl_playermip;
|
|
|
|
extern cvar_t r_lightmap_saturation;
|
|
|
|
enum {
|
|
RSPEED_TOTALREFRESH,
|
|
RSPEED_LINKENTITIES,
|
|
RSPEED_PROTOCOL,
|
|
RSPEED_WORLDNODE,
|
|
RSPEED_WORLD,
|
|
RSPEED_DRAWENTITIES,
|
|
RSPEED_STENCILSHADOWS,
|
|
RSPEED_FULLBRIGHTS,
|
|
RSPEED_DYNAMIC,
|
|
RSPEED_PARTICLES,
|
|
RSPEED_PARTICLESDRAW,
|
|
RSPEED_PALETTEFLASHES,
|
|
RSPEED_2D,
|
|
RSPEED_SERVER,
|
|
RSPEED_SETUP,
|
|
RSPEED_SUBMIT,
|
|
RSPEED_PRESENT,
|
|
RSPEED_ACQUIRE,
|
|
|
|
RSPEED_MAX
|
|
};
|
|
extern int rspeeds[RSPEED_MAX];
|
|
|
|
enum {
|
|
RQUANT_MSECS, //old r_speeds
|
|
RQUANT_PRIMITIVEINDICIES,
|
|
RQUANT_DRAWS,
|
|
RQUANT_ENTBATCHES,
|
|
RQUANT_WORLDBATCHES,
|
|
RQUANT_2DBATCHES,
|
|
|
|
RQUANT_SHADOWINDICIES,
|
|
RQUANT_SHADOWEDGES,
|
|
RQUANT_SHADOWSIDES,
|
|
RQUANT_LITFACES,
|
|
|
|
RQUANT_RTLIGHT_DRAWN,
|
|
RQUANT_RTLIGHT_CULL_FRUSTUM,
|
|
RQUANT_RTLIGHT_CULL_PVS,
|
|
RQUANT_RTLIGHT_CULL_SCISSOR,
|
|
|
|
RQUANT_MAX
|
|
};
|
|
extern int rquant[RQUANT_MAX];
|
|
|
|
#define RQuantAdd(type,quant) rquant[type] += quant
|
|
|
|
#if 0//defined(NDEBUG) || !defined(_WIN32)
|
|
#define RSpeedLocals()
|
|
#define RSpeedMark()
|
|
#define RSpeedRemark()
|
|
#define RSpeedEnd(spt)
|
|
#else
|
|
#define RSpeedLocals() double rsp
|
|
#define RSpeedMark() double rsp = (r_speeds.ival>1)?Sys_DoubleTime()*1000000:0
|
|
#define RSpeedRemark() rsp = (r_speeds.ival>1)?Sys_DoubleTime()*1000000:0
|
|
|
|
#if defined(_WIN32) && defined(GLQUAKE)
|
|
extern void (_stdcall *qglFinish) (void);
|
|
#define RSpeedEnd(spt) do {if(r_speeds.ival > 1){if(r_speeds.ival > 2 && qglFinish)qglFinish(); rspeeds[spt] += (double)(Sys_DoubleTime()*1000000) - rsp;}}while (0)
|
|
#else
|
|
#define RSpeedEnd(spt) rspeeds[spt] += (r_speeds.ival>1)?Sys_DoubleTime()*1000000 - rsp:0
|
|
#endif
|
|
#endif
|