28      Seg_t(
Int_t i1=-1, 
Int_t i2=-1) : fV1(i1), fV2(i2) {}
 
   31   typedef std::list<Seg_t>           LSeg_t;
 
   32   typedef std::list<Seg_t>::iterator LSegIt_t;
 
  110   if (
fBuff == 0) 
return;
 
  137   for (
Int_t i = 0; i < buffN; ++i)
 
  140      projection->
ProjectPoint(pnts[i].fX, pnts[i].fY, pnts[i].fZ, 0,
 
  190   if (pp.size() <= 2) 
return 0;
 
  192   Float_t bbox[4] = { 1e6, -1e6, 1e6, -1e6 };
 
  193   for (std::list<Int_t>::iterator u = pp.begin(); u != pp.end(); ++u)
 
  203   if ((bbox[1]-bbox[0]) < eps || (bbox[3]-bbox[2]) < eps) 
return 0;
 
  206   for (
vpPolygon_i poi = pols.begin(); poi != pols.end(); ++poi)
 
  216      if (++start_idx >= refP.
fNPnts) start_idx = 0;
 
  220         std::list<Int_t>::iterator u = ++pp.begin();
 
  221         Int_t pidx = start_idx;
 
  222         while (u != pp.end())
 
  224            if ((*u) != refP.
fPnts[pidx])
 
  227            if (++pidx >= refP.
fNPnts) pidx = 0;
 
  229         if (u == pp.end()) 
return 0;
 
  233         std::list<Int_t>::iterator u = --pp.end();
 
  234         Int_t pidx = start_idx;
 
  235         while (u != pp.begin())
 
  237            if ((*u) != refP.
fPnts[pidx])
 
  240            if (++pidx >= refP.
fNPnts) pidx = 0;
 
  242         if (u == pp.begin()) 
return 0;
 
  248   for (std::list<Int_t>::iterator u = pp.begin(); u != pp.end(); ++u)
 
  255   pols.back().fNPnts =  pp.size();
 
  256   pols.back().fPnts  = &pv[0];
 
  258   return (bbox[1]-bbox[0]) * (bbox[3]-bbox[2]);
 
  273      Int_t  *seg  = &bpols[2];
 
  289      for (
UInt_t s = 1; s < segN; ++s)
 
  292      for (LSegIt_t it = 
segs.begin(); it != 
segs.end(); ++it)
 
  294         Int_t mv1 = idxMap[(*it).fV1];
 
  295         Int_t mv2 = idxMap[(*it).fV2];
 
  302         if (tail != pp.back()) pp.push_back(tail);
 
  303         tail = (mv1 == tail) ? mv2 : mv1;
 
  309         if (pp.front() == pp.back()) pp.pop_front();
 
  337      if (vor1 == vor2) 
continue;
 
  339      for (it = 
segs.begin(); it != 
segs.end(); ++it)
 
  341         Int_t vv1 = (*it).fV1;
 
  342         Int_t vv2 = (*it).fV2;
 
  343         if((vv1 == vor1 && vv2 == vor2) || (vv1 == vor2 && vv2 == vor1))
 
  350         segs.push_back(Seg_t(vor1, vor2));
 
  353   while ( ! 
segs.empty())
 
  356      pp.push_back(
segs.front().fV1);
 
  360      while (match && ! 
segs.empty())
 
  362         for (LSegIt_t k = 
segs.begin(); k != 
segs.end(); ++k)
 
  364            Int_t cv1 = (*k).fV1;
 
  365            Int_t cv2 = (*k).fV2;
 
  366            if (cv1 == tail || cv2 == tail)
 
  369               tail = (cv1 == tail) ? cv2 : cv1;
 
  379         if (tail == pp.front())
 
  441   for (
Int_t i = 0; i < nPnts - 1; ++i)
 
  455   printf(
"TEvePolygonSetProjected %d polygons\n", (
Int_t)
fPols.size());
 
  459      Int_t nPnts = (*i).fNPnts;
 
  460      printf(
"Points of polygon %d [Np = %d]:\n", ++cnt, nPnts);
 
  461      for (
Int_t vi = 0; vi<nPnts; ++vi) {
 
  462         Int_t pi = (*i).fPnts[vi];
 
  479      printf(
"%d polygon of %d has %d segments \n", pi, 
fBuff->
NbPols(), segN);
 
  481      Int_t* seg =  &bpols[2];
 
  486         printf(
"(%d, %d) \n", a1, a2);
 
  487         printf(
"ORIG points :(%f, %f, %f)  (%f, %f, %f)\n",
 
winID h TVirtualViewer3D TVirtualGLPainter p
Option_t Option_t TPoint TPoint const char mode
void BBoxCheckPoint(Float_t x, Float_t y, Float_t z)
void BBoxZero(Float_t epsilon=0, Float_t x=0, Float_t y=0, Float_t z=0)
Create cube of volume (2*epsilon)^3 at (x,y,z).
void BBoxInit(Float_t infinity=1e6)
Dynamic Float_t[6] X(min,max), Y(min,max), Z(min,max)
Wrapper for TGeoShape with absolute positioning and color attributes allowing display of extracted TG...
virtual TBuffer3D * MakeBuffer3D()
Create a TBuffer3D suitable for presentation of the shape.
A set of projected polygons.
void SetDepthLocal(Float_t d) override
Set depth (z-coordinate) of the projected points.
~TEvePolygonSetProjected() override
Destructor.
void DumpBuffer3D()
Dump information about currently projected buffer.
vpPolygon_t::iterator vpPolygon_i
vpPolygon_t::const_iterator vpPolygon_ci
Int_t * ProjectAndReducePoints()
Project and reduce buffer points.
Float_t MakePolygonsFromBS(Int_t *idxMap)
Build polygons from the set of buffer segments.
std::list< Polygon_t > vpPolygon_t
void UpdateProjection() override
This is virtual method from base-class TEveProjected.
Float_t MakePolygonsFromBP(Int_t *idxMap)
Build polygons from list of buffer polygons.
TEvePolygonSetProjected(const TEvePolygonSetProjected &)=delete
Float_t PolygonSurfaceXY(const Polygon_t &poly) const
Calculate XY surface of a polygon.
void SetProjection(TEveProjectionManager *mng, TEveProjectable *model) override
This is virtual method from base-class TEveProjected.
void ProjectBuffer3D()
Project current buffer.
void ComputeBBox() override
Override of virtual method from TAttBBox.
Float_t AddPolygon(std::list< Int_t, std::allocator< Int_t > > &pp, std::list< Polygon_t, std::allocator< Polygon_t > > &p)
Check if polygon has dimensions above TEveProjection::fgEps and add it to a list if it is not a dupli...
virtual void DumpPolys() const
Dump information about built polygons.
Bool_t IsFirstIdxHead(Int_t s0, Int_t s1)
Compare the two segments and check if the first index of first segment is starting.
Abstract base-class for non-linear projectable objects.
TEveProjectionManager * fManager
virtual void SetProjection(TEveProjectionManager *mng, TEveProjectable *model)
Sets projection manager and reference in the projectable object.
void SetDepthCommon(Float_t d, TEveElement *el, Float_t *bbox)
Utility function to update the z-values of the bounding-box.
Manager class for steering of projections and managing projected objects.
TEveProjection * GetProjection()
Base-class for non-linear projections.
virtual void ProjectPoint(Float_t &x, Float_t &y, Float_t &z, Float_t d, EPProc_e p=kPP_Full)=0
EGeoMode_e GetGeoMode() const
virtual Bool_t AcceptSegment(TEveVector &, TEveVector &, Float_t) const
Abstract base-class for 2D/3D shapes.
void CopyVizParams(const TEveElement *el) override
Copy visualization parameters from element el.
void Set(const Float_t *v)
Short_t Abs(Short_t d)
Returns the absolute value of parameter Short_t d.
Int_t FindPoint(Int_t pi)