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https://github.com/ZDoom/gzdoom-gles.git
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440 lines
11 KiB
C++
440 lines
11 KiB
C++
#pragma once
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//==========================================================================
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//
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// One wall segment in the draw list
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//
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//==========================================================================
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#include "r_defs.h"
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#include "r_data/renderstyle.h"
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#include "textures/textures.h"
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#include "r_data/colormaps.h"
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#ifdef _MSC_VER
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#pragma warning(disable:4244)
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#endif
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struct GLHorizonInfo;
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struct GLSkyInfo;
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struct F3DFloor;
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class FMaterial;
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struct FTexCoordInfo;
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struct FSectorPortalGroup;
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struct FFlatVertex;
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struct FLinePortalSpan;
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struct FDynLightData;
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class VSMatrix;
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struct FSpriteModelFrame;
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struct particle_t;
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enum area_t : int;
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enum HWRenderStyle
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{
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STYLEHW_Normal, // default
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STYLEHW_Solid, // drawn solid (needs special treatment for sprites)
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STYLEHW_NoAlphaTest, // disable alpha test
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};
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enum WallTypes
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{
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RENDERWALL_NONE,
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RENDERWALL_TOP,
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RENDERWALL_M1S,
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RENDERWALL_M2S,
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RENDERWALL_BOTTOM,
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RENDERWALL_FOGBOUNDARY,
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RENDERWALL_MIRRORSURFACE,
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RENDERWALL_M2SNF,
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RENDERWALL_COLOR,
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RENDERWALL_FFBLOCK,
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// Insert new types at the end!
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};
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enum PortalTypes
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{
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PORTALTYPE_SKY,
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PORTALTYPE_HORIZON,
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PORTALTYPE_SKYBOX,
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PORTALTYPE_SECTORSTACK,
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PORTALTYPE_PLANEMIRROR,
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PORTALTYPE_MIRROR,
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PORTALTYPE_LINETOLINE,
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};
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//==========================================================================
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//
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// One sector plane, still in fixed point
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//
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//==========================================================================
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struct GLSectorPlane
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{
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FTextureID texture;
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secplane_t plane;
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float Texheight;
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float Angle;
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FVector2 Offs;
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FVector2 Scale;
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void GetFromSector(sector_t * sec, int ceiling)
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{
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Offs.X = (float)sec->GetXOffset(ceiling);
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Offs.Y = (float)sec->GetYOffset(ceiling);
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Scale.X = (float)sec->GetXScale(ceiling);
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Scale.Y = (float)sec->GetYScale(ceiling);
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Angle = (float)sec->GetAngle(ceiling).Degrees;
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texture = sec->GetTexture(ceiling);
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plane = sec->GetSecPlane(ceiling);
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Texheight = (float)((ceiling == sector_t::ceiling)? plane.fD() : -plane.fD());
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}
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};
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struct GLSeg
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{
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float x1,x2;
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float y1,y2;
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float fracleft, fracright; // fractional offset of the 2 vertices on the linedef
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FVector3 Normal() const
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{
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// we do not use the vector math inlines here because they are not optimized for speed but accuracy in the playsim and this is called quite frequently.
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float x = y2 - y1;
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float y = x1 - x2;
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float ilength = 1.f / sqrtf(x*x + y*y);
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return FVector3(x * ilength, 0, y * ilength);
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}
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};
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struct texcoord
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{
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float u,v;
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};
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struct HWDrawInfo;
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class GLWall
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{
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public:
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static const char passflag[];
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enum
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{
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GLWF_CLAMPX=1,
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GLWF_CLAMPY=2,
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GLWF_SKYHACK=4,
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GLWF_GLOW=8, // illuminated by glowing flats
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GLWF_NOSPLITUPPER=16,
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GLWF_NOSPLITLOWER=32,
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GLWF_NOSPLIT=64,
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GLWF_TRANSLUCENT = 128
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};
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enum
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{
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RWF_BLANK = 0,
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RWF_TEXTURED = 1, // actually not being used anymore because with buffers it's even less efficient not writing the texture coordinates - but leave it here
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RWF_NOSPLIT = 4,
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RWF_NORENDER = 8,
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};
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enum
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{
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LOLFT,
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UPLFT,
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UPRGT,
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LORGT,
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};
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friend struct HWDrawList;
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friend class GLPortal;
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vertex_t * vertexes[2]; // required for polygon splitting
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FMaterial *gltexture;
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TArray<lightlist_t> *lightlist;
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GLSeg glseg;
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float ztop[2],zbottom[2];
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texcoord tcs[4];
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float alpha;
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FColormap Colormap;
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ERenderStyle RenderStyle;
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float ViewDistance;
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int lightlevel;
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uint8_t type;
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uint8_t flags;
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short rellight;
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float topglowcolor[4];
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float bottomglowcolor[4];
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int dynlightindex;
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union
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{
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// it's either one of them but never more!
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FSectorPortal *secportal; // sector portal (formerly skybox)
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GLSkyInfo * sky; // for normal sky
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GLHorizonInfo * horizon; // for horizon information
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FSectorPortalGroup * portal; // stacked sector portals
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secplane_t * planemirror; // for plane mirrors
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FLinePortalSpan *lineportal; // line-to-line portals
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};
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secplane_t topplane, bottomplane; // we need to save these to pass them to the shader for calculating glows.
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// these are not the same as ytop and ybottom!!!
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float zceil[2];
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float zfloor[2];
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unsigned int vertindex;
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unsigned int vertcount;
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public:
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seg_t * seg; // this gives the easiest access to all other structs involved
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subsector_t * sub; // For polyobjects
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//private:
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void PutWall(HWDrawInfo *di, bool translucent);
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void PutPortal(HWDrawInfo *di, int ptype);
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void CheckTexturePosition(FTexCoordInfo *tci);
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void Put3DWall(HWDrawInfo *di, lightlist_t * lightlist, bool translucent);
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bool SplitWallComplex(HWDrawInfo *di, sector_t * frontsector, bool translucent, float& maplightbottomleft, float& maplightbottomright);
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void SplitWall(HWDrawInfo *di, sector_t * frontsector, bool translucent);
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void SetupLights(HWDrawInfo *di, FDynLightData &lightdata);
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void MakeVertices(HWDrawInfo *di, bool nosplit);
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void SkyPlane(HWDrawInfo *di, sector_t *sector, int plane, bool allowmirror);
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void SkyLine(HWDrawInfo *di, sector_t *sec, line_t *line);
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void SkyNormal(HWDrawInfo *di, sector_t * fs,vertex_t * v1,vertex_t * v2);
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void SkyTop(HWDrawInfo *di, seg_t * seg,sector_t * fs,sector_t * bs,vertex_t * v1,vertex_t * v2);
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void SkyBottom(HWDrawInfo *di, seg_t * seg,sector_t * fs,sector_t * bs,vertex_t * v1,vertex_t * v2);
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bool DoHorizon(HWDrawInfo *di, seg_t * seg,sector_t * fs, vertex_t * v1,vertex_t * v2);
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bool SetWallCoordinates(seg_t * seg, FTexCoordInfo *tci, float ceilingrefheight,
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float topleft, float topright, float bottomleft, float bottomright, float t_ofs);
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void DoTexture(HWDrawInfo *di, int type,seg_t * seg,int peg,
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float ceilingrefheight, float floorrefheight,
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float CeilingHeightstart,float CeilingHeightend,
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float FloorHeightstart,float FloorHeightend,
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float v_offset);
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void DoMidTexture(HWDrawInfo *di, seg_t * seg, bool drawfogboundary,
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sector_t * front, sector_t * back,
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sector_t * realfront, sector_t * realback,
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float fch1, float fch2, float ffh1, float ffh2,
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float bch1, float bch2, float bfh1, float bfh2);
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void GetPlanePos(F3DFloor::planeref * planeref, float & left, float & right);
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void BuildFFBlock(HWDrawInfo *di, seg_t * seg, F3DFloor * rover,
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float ff_topleft, float ff_topright,
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float ff_bottomleft, float ff_bottomright);
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void InverseFloors(HWDrawInfo *di, seg_t * seg, sector_t * frontsector,
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float topleft, float topright,
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float bottomleft, float bottomright);
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void ClipFFloors(HWDrawInfo *di, seg_t * seg, F3DFloor * ffloor, sector_t * frontsector,
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float topleft, float topright,
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float bottomleft, float bottomright);
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void DoFFloorBlocks(HWDrawInfo *di, seg_t * seg, sector_t * frontsector, sector_t * backsector,
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float fch1, float fch2, float ffh1, float ffh2,
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float bch1, float bch2, float bfh1, float bfh2);
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void ProcessDecal(HWDrawInfo *di, DBaseDecal *decal, const FVector3 &normal);
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void ProcessDecals(HWDrawInfo *di);
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void CreateVertices(FFlatVertex *&ptr, bool nosplit);
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void SplitLeftEdge (FFlatVertex *&ptr);
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void SplitRightEdge(FFlatVertex *&ptr);
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void SplitUpperEdge(FFlatVertex *&ptr);
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void SplitLowerEdge(FFlatVertex *&ptr);
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int CountVertices();
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public:
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GLWall() {}
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GLWall(const GLWall &other)
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{
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memcpy(this, &other, sizeof(GLWall));
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}
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GLWall & operator=(const GLWall &other)
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{
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memcpy(this, &other, sizeof(GLWall));
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return *this;
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}
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void Process(HWDrawInfo *di, seg_t *seg, sector_t *frontsector, sector_t *backsector);
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void ProcessLowerMiniseg(HWDrawInfo *di, seg_t *seg, sector_t *frontsector, sector_t *backsector);
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float PointOnSide(float x,float y)
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{
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return -((y-glseg.y1)*(glseg.x2-glseg.x1)-(x-glseg.x1)*(glseg.y2-glseg.y1));
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}
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};
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//==========================================================================
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//
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// One flat plane in the draw list
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//
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//==========================================================================
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class GLFlat
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{
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public:
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sector_t * sector;
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float dz; // z offset for rendering hacks
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float z; // the z position of the flat (only valid for non-sloped planes)
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FMaterial *gltexture;
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FColormap Colormap; // light and fog
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PalEntry FlatColor;
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ERenderStyle renderstyle;
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float alpha;
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GLSectorPlane plane;
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int lightlevel;
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bool stack;
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bool ceiling;
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uint8_t renderflags;
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int vboindex;
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//int vboheight;
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int dynlightindex;
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bool SetupSubsectorLights(int pass, subsector_t * sub, FDynLightData &lightdata);
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void PutFlat(HWDrawInfo *di, bool fog = false);
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void Process(HWDrawInfo *di, sector_t * model, int whichplane, bool notexture);
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void SetFrom3DFloor(F3DFloor *rover, bool top, bool underside);
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void ProcessSector(HWDrawInfo *di, sector_t * frontsector);
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GLFlat() {}
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GLFlat(const GLFlat &other)
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{
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memcpy(this, &other, sizeof(GLFlat));
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}
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GLFlat & operator=(const GLFlat &other)
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{
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memcpy(this, &other, sizeof(GLFlat));
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return *this;
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}
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};
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//==========================================================================
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//
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// One sprite in the draw list
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//
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//==========================================================================
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class GLSprite
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{
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public:
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int lightlevel;
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uint8_t foglevel;
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uint8_t hw_styleflags;
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bool fullbright;
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PalEntry ThingColor; // thing's own color
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FColormap Colormap;
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FSpriteModelFrame * modelframe;
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FRenderStyle RenderStyle;
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int OverrideShader;
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int translation;
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int index;
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int depth;
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float topclip;
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float bottomclip;
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float x,y,z; // needed for sorting!
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float ul,ur;
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float vt,vb;
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float x1,y1,z1;
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float x2,y2,z2;
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FMaterial *gltexture;
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float trans;
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AActor * actor;
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particle_t * particle;
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TArray<lightlist_t> *lightlist;
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DRotator Angles;
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int dynlightindex;
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void SplitSprite(HWDrawInfo *di, sector_t * frontsector, bool translucent);
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void PerformSpriteClipAdjustment(AActor *thing, const DVector2 &thingpos, float spriteheight);
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bool CalculateVertices(HWDrawInfo *di, FVector3 *v);
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public:
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GLSprite() {}
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void PutSprite(HWDrawInfo *di, bool translucent);
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void Process(HWDrawInfo *di, AActor* thing,sector_t * sector, area_t in_area, int thruportal = false);
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void ProcessParticle (HWDrawInfo *di, particle_t *particle, sector_t *sector);//, int shade, int fakeside)
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GLSprite(const GLSprite &other)
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{
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memcpy(this, &other, sizeof(GLSprite));
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}
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GLSprite & operator=(const GLSprite &other)
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{
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memcpy(this, &other, sizeof(GLSprite));
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return *this;
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}
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};
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struct DecalVertex
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{
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float x, y, z;
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float u, v;
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};
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struct GLDecal
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{
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FMaterial *gltexture;
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TArray<lightlist_t> *lightlist;
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DBaseDecal *decal;
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DecalVertex dv[4];
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float zcenter;
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unsigned int vertindex;
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FRenderStyle renderstyle;
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int lightlevel;
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int rellight;
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float alpha;
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FColormap Colormap;
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secplane_t bottomplane;
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FVector3 Normal;
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};
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inline float Dist2(float x1,float y1,float x2,float y2)
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{
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return sqrtf((x1-x2)*(x1-x2)+(y1-y2)*(y1-y2));
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}
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bool hw_SetPlaneTextureRotation(const GLSectorPlane * secplane, FMaterial * gltexture, VSMatrix &mat);
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void hw_GetDynModelLight(AActor *self, FDynLightData &modellightdata);
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extern const float LARGE_VALUE;
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