94   vx0   = 
v[0] * 
m[0] + 
v[1] * 
m[1] + 
v[2] * 
m[2];
 
   95   vy0   = 
v[0] * 
m[3] + 
v[1] * 
m[4] + 
v[2] * 
m[5];
 
   96   vz0   = 
v[0] * 
m[6] + 
v[1] * 
m[7] + 
v[2] * 
m[8];
 
  100   fX0   = xyz[0] * 
m[0] +  xyz[1] * 
m[1] +  xyz[2] * 
m[2];
 
  101   fY0   = xyz[0] * 
m[3] +  xyz[1] * 
m[4] +  xyz[2] * 
m[5];
 
  102   fZ0   = xyz[0] * 
m[6] +  xyz[1] * 
m[7] +  xyz[2] * 
m[8];
 
 
  164      r[0] = 0.0;        
r[1] = 1.0;
 
 
  214      for(
Int_t i=0; i<3; i++)
 
  218      for(
Int_t i=0; i<2; i++)
 
 
  258   for (
Int_t i=0; i<3; i++)
 
  262      delete ((
THelix&)obj).fRotMat;
 
 
  292   std::cout <<
"    THelix Printing N=" <<
fN<<
" Option="<<
option<<std::endl;
 
 
  308   out<<
"helix = new THelix("<<
fX0<<
","<<
fY0<<
","<<
fZ0<<
"," 
  316   out<<
"   helix->Draw();"<<std::endl;
 
 
  328         Error(
"SetAxis()", 
"Impossible! axis length %lf <= 0!", 
len);
 
 
  350   Double_t axis[3];    axis[0] = 
x;    axis[1] = 
y;    axis[2] = z;
 
 
  367   if ( 
fW != 0 && 
fVz != 0 ) {         
 
  373            for (i=0; i<2; i++ ) {
 
  375               if ( 
a[i] < -1 || 
a[i] > 1 ) {
 
  377                        "range out of bound (%lf:%lf): %lf.  Default used: %lf",
 
  387            for (i=0; i<2; i++ ) {
 
  389               if ( 
a[i] < -1 || 
a[i] > 1 ) {
 
  391                        "range out of bound (%lf:%lf): %lf.  Default used: %lf",
 
  402               for (i=0; i<2; i++ ) {
 
  407                     "Vz = 0 and attempts to set range along helix axis!");
 
  415            printf(
"setting range in lab axes is not implemented yet\n");
 
  418            Error(
"SetRange()",
"unknown range type %d", 
rType);
 
  421   } 
else if ( 
fW == 0 ) {                
 
  432                     "Vx = 0 and attempts to set range on helix x axis!");
 
  442                     "Vy = 0 and attempts to set range on helix y axis!");
 
  452                     "Vz = 0 and attempts to set range on helix z axis!");
 
  459            printf(
"setting range in lab axes is not implemented yet\n");
 
  462            Error(
"SetRange()",
"unknown range type %d", 
rType);
 
  465   } 
else if ( 
fVz == 0 ) {               
 
  475                     "Vx = 0 and attempts to set range on helix x axis!");
 
  485                     "Vy = 0 and attempts to set range on helix y axis!");
 
  491                  "Vz = 0 and attempts to set range on helix z axis!");
 
  496            printf(
"setting range in lab axes is not implemented yet\n");
 
  499            Error(
"SetRange()",
"unknown range type %d", 
rType);
 
  523   for (i=0; i<=
nSeg; i++) {                    
 
  537   for (i=0; i<=
nSeg; i++) {                    
 
  544   delete[] 
xl;  
delete[] 
yl;    
delete[] 
zl;
 
 
  623   if (
R__b.IsReading()) {
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
winID h TVirtualViewer3D TVirtualGLPainter p
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t r
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h Atom_t Int_t ULong_t ULong_t unsigned char prop_list Atom_t Atom_t Atom_t Time_t UChar_t len
void Copy(TAttLine &attline) const
Copy this line attributes to a new TAttLine.
virtual void SaveLineAttributes(std::ostream &out, const char *name, Int_t coldef=1, Int_t stydef=1, Int_t widdef=1)
Save line attributes as C++ statement(s) on output stream out.
Buffer base class used for serializing objects.
THelix has two different constructors.
void Print(Option_t *option="") const override
Dump this helix with its attributes.
void Copy(TObject &helix) const override
Copy this helix to obj.
void SetHelix(Double_t const *xyz, Double_t const *v, Double_t w, Double_t const *range=nullptr, EHelixRangeType type=kUnchanged, Double_t const *axis=nullptr)
Set all helix parameters.
THelix & operator=(const THelix &)
assignment operator
~THelix() override
Helix destructor.
virtual void SetAxis(Double_t const *axis)
Set a new axis for the helix. This will make a new rotation matrix.
TClass * IsA() const override
void Streamer(TBuffer &) override
Stream an object of class THelix.
virtual void SetRange(Double_t *range, EHelixRangeType rtype=kHelixZ)
Set a new range for the helix. This will remake the polyline.
THelix()
Helix default constructor.
Double_t FindClosestPhase(Double_t phi0, Double_t cosine)
Finds the closest phase to phi0 that gives cos(phase) = cosine.
void SetRotMatrix()
Set the rotational matrix according to the helix axis.
void SavePrimitive(std::ostream &out, Option_t *option="") override
Save primitive as a C++ statement(s) on output stream out.
void Draw(Option_t *option="") override
Draw this helix with its current attributes.
Mother of all ROOT objects.
virtual void AppendPad(Option_t *option="")
Append graphics object to current pad.
virtual void Copy(TObject &object) const
Copy this to obj.
virtual void Error(const char *method, const char *msgfmt,...) const
Issue error message.
A 3-dimensional polyline.
TPolyLine3D & operator=(const TPolyLine3D &polylin)
assignment operator
virtual void SetPoint(Int_t point, Double_t x, Double_t y, Double_t z)
Set point n to x, y, z.
Int_t fN
Number of points.
virtual void SetPolyLine(Int_t n, Option_t *option="")
Re-initialize polyline with n points (0,0,0).
void Streamer(TBuffer &) override
Stream a 3-D polyline object.
Manages a detector rotation matrix.
virtual Double_t * GetMatrix()
Double_t ACos(Double_t)
Returns the principal value of the arc cosine of x, expressed in radians.
Double_t ATan2(Double_t y, Double_t x)
Returns the principal value of the arc tangent of y/x, expressed in radians.
Double_t Sqrt(Double_t x)
Returns the square root of x.
Double_t Cos(Double_t)
Returns the cosine of an angle of x radians.
Double_t Sin(Double_t)
Returns the sine of an angle of x radians.
Short_t Abs(Short_t d)
Returns the absolute value of parameter Short_t d.