mirror of
https://github.com/ZDoom/gzdoom-gles.git
synced 2024-11-18 02:11:27 +00:00
- implemented line-to-line portal rendering. So far working for two-sided portal lines - one-sided yet to come.
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parent
760db90d71
commit
3683a8ac58
4 changed files with 65 additions and 34 deletions
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@ -46,6 +46,7 @@
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#include "doomstat.h"
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#include "a_sharedglobal.h"
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#include "r_sky.h"
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#include "portal.h"
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#include "gl/system/gl_interface.h"
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#include "gl/system/gl_framebuffer.h"
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@ -959,14 +960,14 @@ int GLMirrorPortal::ClipSubsector(subsector_t *sub)
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// this seg is completely behind the mirror!
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for(unsigned int i=0;i<sub->numlines;i++)
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{
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if (P_PointOnLineSide(sub->firstline[i].v1->x, sub->firstline[i].v1->y, linedef) == 0) return PClip_Inside;
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if (P_PointOnLineSidePrecise(sub->firstline[i].v1->x, sub->firstline[i].v1->y, linedef) == 0) return PClip_Inside;
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}
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return PClip_InFront;
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}
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int GLMirrorPortal::ClipPoint(fixed_t x, fixed_t y)
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{
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if (P_PointOnLineSide(x, y, linedef))
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if (P_PointOnLineSidePrecise(x, y, linedef))
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{
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return PClip_InFront;
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}
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@ -984,6 +985,47 @@ int GLMirrorPortal::ClipPoint(fixed_t x, fixed_t y)
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//-----------------------------------------------------------------------------
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//-----------------------------------------------------------------------------
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static void glTranslatePortal(line_t* src, line_t* dst, fixed_t& x, fixed_t& y, angle_t & angle)
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{
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// Get the angle between the two linedefs, for rotating
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// orientation and velocity. Rotate 180 degrees, and flip
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// the position across the exit linedef, if reversed.
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double xangle = atan2(double(dst->dy), double(dst->dx)) - atan2(double(src->dy), double(src->dx)) + M_PI;
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double s = sin(xangle);
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double c = cos(xangle);
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fixed_t nposx = x - src->v1->x;
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fixed_t nposy = y - src->v1->y;
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// Rotate position along normal to match exit linedef
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x = xs_RoundToInt(nposx * c - nposy * s) + dst->v2->x;
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y = xs_RoundToInt(nposy * c + nposx * s) + dst->v2->y;
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angle += xs_CRoundToInt(xangle * (ANGLE_180 / M_PI));
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}
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void GLLineToLineInfo::init(line_t *line)
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{
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static const divline_t divlx = { 0, 0, 128 * FRACUNIT, 0 };
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static const divline_t divly = { 0, 0, 0, 128 * FRACUNIT };
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// store some info about the portal line
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divline_t divl;
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P_MakeDivline(line, &divl);
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x0 = P_InterceptVector(&divlx, &divl);
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y0 = P_InterceptVector(&divly, &divl);
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lineangle = R_PointToAnglePrecise(line->v1->x, line->v1->y, line->v2->x, line->v2->y);
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// and some info about the viewpoint translation
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viewx = ::viewx;
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viewy = ::viewy;
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viewz = ::viewz;
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viewangle = ::viewangle;
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glTranslatePortal(line, line->getPortalDestination(), viewx, viewy, viewangle);
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P_TranslatePortalZ(line, line->getPortalDestination(), viewz);
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}
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//-----------------------------------------------------------------------------
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//
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//
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@ -1000,14 +1042,15 @@ void GLLineToLinePortal::DrawContents()
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GLRenderer->mCurrentPortal = this;
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viewx += l2l->xDisplacement;
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viewy += l2l->yDisplacement;
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viewx = l2l->viewx;
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viewy = l2l->viewy;
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viewz = l2l->viewz;
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viewangle = l2l->viewangle;
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SaveMapSection();
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for (unsigned i = 0; i < lines.Size(); i++)
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{
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ASkyViewpoint *pt = lines[i].seg->linedef->skybox;
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int mapsection = lines[i].seg->Subsector->mapsection;
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int mapsection = lines[i].seg->linedef->getPortalDestination()->frontsector->subsectors[0]->mapsection;
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currentmapsection[mapsection >> 3] |= 1 << (mapsection & 7);
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}
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@ -1023,10 +1066,13 @@ void GLLineToLinePortal::DrawContents()
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int GLLineToLinePortal::ClipSeg(seg_t *seg)
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{
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line_t *masterline = lines[0].seg->linedef->getPortalDestination();
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line_t *linedef = lines[0].seg->linedef->getPortalDestination();
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// this seg is completely behind the portal
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if (P_PointOnLineSide(seg->v1->x, seg->v1->y, masterline) &&
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P_PointOnLineSide(seg->v2->x, seg->v2->y, masterline))
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//we cannot use P_PointOnLineSide here because it loses the special meaning of 0 == 'on the line'.
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int side1 = DMulScale32(seg->v1->y - linedef->v1->y, linedef->dx, linedef->v1->x - seg->v1->x, linedef->dy);
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int side2 = DMulScale32(seg->v2->y - linedef->v1->y, linedef->dx, linedef->v1->x - seg->v2->x, linedef->dy);
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if (side1 >= 0 && side2 >= 0)
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{
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return PClip_InFront;
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}
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@ -1039,7 +1085,7 @@ int GLLineToLinePortal::ClipSubsector(subsector_t *sub)
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for(unsigned int i=0;i<sub->numlines;i++)
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{
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if (P_PointOnLineSide(sub->firstline[i].v1->x, sub->firstline[i].v1->y, masterline) == 0) return PClip_Inside;
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if (P_PointOnLineSidePrecise(sub->firstline[i].v1->x, sub->firstline[i].v1->y, masterline) == 0) return PClip_Inside;
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}
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return PClip_InFront;
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}
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@ -1047,7 +1093,7 @@ int GLLineToLinePortal::ClipSubsector(subsector_t *sub)
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int GLLineToLinePortal::ClipPoint(fixed_t x, fixed_t y)
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{
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line_t *masterline = lines[0].seg->linedef->getPortalDestination();
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if (P_PointOnLineSide(x, y, masterline))
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if (P_PointOnLineSidePrecise(x, y, masterline))
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{
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return PClip_InFront;
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}
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@ -53,12 +53,13 @@ struct GLHorizonInfo
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struct GLLineToLineInfo
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{
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fixed_t xDisplacement;
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fixed_t yDisplacement;
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fixed_t turnangle;
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fixed_t angle;
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fixed_t x0;
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fixed_t y0;
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angle_t viewangle;
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fixed_t viewx;
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fixed_t viewy;
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fixed_t viewz;
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fixed_t x0, y0;
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angle_t lineangle;
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void init(line_t *line);
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};
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@ -130,22 +130,6 @@ void GLSkyInfo::init(int sky1, PalEntry FadeColor)
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}
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void GLLineToLineInfo::init(line_t *line)
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{
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/*
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static const divline_t divlx = { 0, 0, 128 * FRACUNIT, 0 };
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static const divline_t divly = { 0, 0, 0, 128 * FRACUNIT };
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xDisplacement = line->skybox->scaleX;
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yDisplacement = line->skybox->scaleY;
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angle = R_PointToAnglePrecise(line->v1->x, line->v1->y, line->v2->x, line->v2->y);
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divline_t divl;
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P_MakeDivline(line, &divl);
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x0 = P_InterceptVector(&divlx, &divl);
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y0 = P_InterceptVector(&divly, &divl);
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*/
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}
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//==========================================================================
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//
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// Calculate sky texture for ceiling or floor
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@ -1595,7 +1595,7 @@ void GLWall::Process(seg_t *seg, sector_t * frontsector, sector_t * backsector)
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zbottom[0] = FIXED2FLOAT(bfh1);
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zbottom[1] = FIXED2FLOAT(bfh2);
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//SkyLine(frontsector, seg->linedef);
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SkyLine(frontsector, seg->linedef);
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}
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else if (backsector->e->XFloor.ffloors.Size() || frontsector->e->XFloor.ffloors.Size())
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{
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