41template<
class Element>
 
   44   const int incs[] = {1,5,19,41,109,209,505,929,2161,3905,8929,16001,
INT_MAX};
 
   58         const Element tmp = 
data[k];
 
   65               first [
j] = first [
j-
inc];
 
   66               second[
j] = second[
j-
inc];
 
 
   80template<
class Element>
 
   84   const int incs[] = {1,5,19,41,109,209,505,929,2161,3905,8929,16001,
INT_MAX};
 
  131                  second[
j] = second[
j-
inc];
 
  187template<
class Element>
 
  195   Element *
elem = GetMatrixArray();
 
  215template<
class Element>
 
  220   if ((fNrows != fNcols) || (fRowLwb != fColLwb))
 
  223   const Element * 
const elem = GetMatrixArray();
 
 
  244template<
class Element>
 
  252   const Element * 
const elem = GetMatrixArray();
 
 
  270template<
class Element>
 
  279         Error(
"InsertRow",
"row %d out of matrix range",
rown);
 
  284         Error(
"InsertRow",
"column %d out of matrix range",
coln);
 
  289         Error(
"InsertRow",
"row length %d out of range",
nr);
 
  295   Element * 
const elem = GetMatrixArray()+off;
 
 
  304template<
class Element>
 
  313         Error(
"ExtractRow",
"row %d out of matrix range",
rown);
 
  318         Error(
"ExtractRow",
"column %d out of matrix range",
coln);
 
  323         Error(
"ExtractRow",
"row length %d out of range",
nr);
 
  329   const Element * 
const elem = GetMatrixArray()+off;
 
 
  338template<
class Element>
 
  350template<
class Element>
 
  354   memset(this->GetMatrixArray(),0,fNelems*
sizeof(Element));
 
 
  362template<
class Element>
 
  367         Element *
ep = this->GetMatrixArray();
 
  368   const Element * 
const fp = 
ep+fNelems;
 
 
  380template<
class Element>
 
  385         Element *
ep = this->GetMatrixArray();
 
  386   const Element * 
const fp = 
ep+fNelems;
 
 
  398template<
class Element>
 
  403         Element *
ep = this->GetMatrixArray();
 
  404   const Element * 
const fp = 
ep+fNelems;
 
 
  416template<
class Element>
 
  421   Element *
ep = this->GetMatrixArray();
 
  422   memset(
ep,0,fNelems*
sizeof(Element));
 
  423   for (
Int_t i = fRowLwb; i <= fRowLwb+fNrows-1; i++)
 
  424      for (
Int_t j = fColLwb; 
j <= fColLwb+fNcols-1; 
j++)
 
  425         *
ep++ = (i==
j ? 1.0 : 0.0);
 
 
  435template<
class Element>
 
  443      if (
v.GetNoElements() < 
nMax) {
 
  444         Error(
"NormByDiag",
"vector shorter than matrix diagonal");
 
  453   const Element *
pV = 
v.GetMatrixArray();
 
  454         Element *
mp = this->GetMatrixArray();
 
  464                  Error(
"NormbyDiag",
"vector element %d is zero",
icol);
 
  469            Error(
"NormbyDiag",
"vector element %d is zero",
irow);
 
 
  489template<
class Element>
 
  494   const Element *       
ep = GetMatrixArray();
 
  495   const Element * 
const fp = 
ep+fNelems;
 
 
  516template<
class Element>
 
  521   const Element *       
ep = GetMatrixArray();
 
  522   const Element * 
const fp = 
ep+fNcols;
 
  529      for (
Int_t i = 0; i < fNrows; i++,
ep += fNcols)
 
 
  543template<
class Element>
 
  548   const Element *       
ep = GetMatrixArray();
 
  549   const Element * 
const fp = 
ep+fNelems;
 
  552   for ( ; 
ep < fp; 
ep++)
 
  553      sum += (*
ep) * (*ep);
 
 
  561template<
class Element>
 
  567   const Element *
ep = this->GetMatrixArray();
 
  568   const Element * 
const fp = 
ep+fNelems;
 
 
  578template<
class Element>
 
  584   const Element *
ep = this->GetMatrixArray();
 
  585   const Element * 
const fp = 
ep+fNelems;
 
 
  595template<
class Element>
 
  600   const Element * 
const ep = this->GetMatrixArray();
 
 
  608template<
class Element>
 
  613   const Element * 
const ep = this->GetMatrixArray();
 
 
  622template<
class Element>
 
  625   gROOT->ProcessLine(
Form(
"THistPainter::PaintSpecialObjects((TObject*)0x%zx,\"%s\");",
 
 
  635template<
class Element>
 
  639      Error(
"Print",
"Matrix is invalid");
 
  644   const char *
format = 
"%11.4g ";
 
  662   printf(
"\n%dx%d matrix is as follows",fNrows,fNcols);
 
  678      if (fNelems <= 0) 
continue;
 
 
  692template<
class Element>
 
  697   if (val == 0. && fNelems == 0)
 
  700   const Element *       
ep = GetMatrixArray();
 
  701   const Element * 
const fp = 
ep+fNelems;
 
  702   for (; 
ep < fp; 
ep++)
 
 
  712template<
class Element>
 
  717   if (val == 0. && fNelems == 0)
 
  720   const Element *       
ep = GetMatrixArray();
 
  721   const Element * 
const fp = 
ep+fNelems;
 
  722   for (; 
ep < fp; 
ep++)
 
 
  732template<
class Element>
 
  737   const Element *       
ep = GetMatrixArray();
 
  738   const Element * 
const fp = 
ep+fNelems;
 
  739   for (; 
ep < fp; 
ep++)
 
 
  749template<
class Element>
 
  754   const Element *       
ep = GetMatrixArray();
 
  755   const Element * 
const fp = 
ep+fNelems;
 
  756   for (; 
ep < fp; 
ep++)
 
 
  766template<
class Element>
 
  771   const Element *       
ep = GetMatrixArray();
 
  772   const Element * 
const fp = 
ep+fNelems;
 
  773   for (; 
ep < fp; 
ep++)
 
 
  783template<
class Element>
 
  788   const Element *       
ep = GetMatrixArray();
 
  789   const Element * 
const fp = 
ep+fNelems;
 
  790   for (; 
ep < fp; 
ep++)
 
 
  800template<
class Element>
 
  805   Element *
ep = this->GetMatrixArray();
 
  806   const Element * 
const ep_last = 
ep+fNelems;
 
 
  817template<
class Element>
 
  822   Element *
ep = this->GetMatrixArray();
 
 
  835template<
class Element>
 
  840   const Element 
scale = beta-alpha;
 
  841   const Element shift = alpha/
scale;
 
  843         Element *       
ep = GetMatrixArray();
 
  844   const Element * 
const fp = 
ep+fNelems;
 
 
  854template<
class Element>
 
  858   return (
memcmp(m1.GetMatrixArray(),m2.GetMatrixArray(),
 
  859                   m1.GetNoElements()*
sizeof(Element)) == 0);
 
 
  865template<
class Element>
 
  869      ::Error(
"E2Norm",
"matrices not compatible");
 
  873   const Element *        
mp1 = m1.GetMatrixArray();
 
  874   const Element *        
mp2 = m2.GetMatrixArray();
 
  875   const Element * 
const fmp1 = 
mp1+m1.GetNoElements();
 
 
  887template<
class Element1,
class Element2>
 
  892         ::Error(
"AreCompatible", 
"matrix 1 not valid");
 
  897         ::Error(
"AreCompatible", 
"matrix 2 not valid");
 
  901   if (m1.GetNrows()  != m2.GetNrows()  || m1.GetNcols()  != m2.GetNcols() ||
 
  902       m1.GetRowLwb() != m2.GetRowLwb() || m1.GetColLwb() != m2.GetColLwb()) {
 
  904         ::Error(
"AreCompatible", 
"matrices 1 and 2 not compatible");
 
 
  914template<
class Element>
 
  918      Error(
"Compare(const TMatrixTBase<Element> &,const TMatrixTBase<Element> &)",
"matrices are incompatible");
 
  922   printf(
"\n\nComparison of two TMatrices:\n");
 
  931   for (
Int_t i = m1.GetRowLwb(); i <= m1.GetRowUpb(); i++) {
 
  932      for (
Int_t j = m1.GetColLwb(); 
j < m1.GetColUpb(); 
j++) {
 
  933         const Element 
mv1 = m1(i,
j);
 
  934         const Element 
mv2 = m2(i,
j);
 
  952   printf(
"\n Matrix 1 element is    \t\t%g", 
mv1);
 
  953   printf(
"\n Matrix 2 element is    \t\t%g", 
mv2);
 
  955   printf(
"\n Relative error\t\t\t\t%g\n",
 
  961   printf(
"\n||Matrix1-Matrix2||/sqrt(||Matrix1|| ||Matrix2||)\t%g\n\n",
 
 
  968template<
class Element>
 
  981      maxDevAllow = std::numeric_limits<Element>::epsilon();
 
  983   for (
Int_t i = 
m.GetRowLwb(); i <= 
m.GetRowUpb(); i++) {
 
  984      for (
Int_t j = 
m.GetColLwb(); 
j <= 
m.GetColUpb(); 
j++) {
 
 
 1011template<
class Element>
 
 1018   if (m1 == 0 && m2 == 0)
 
 1026      maxDevAllow = std::numeric_limits<Element>::epsilon();
 
 1028   for (
Int_t i = m1.GetRowLwb(); i <= m1.GetRowUpb(); i++) {
 
 1029      for (
Int_t j = m1.GetColLwb(); 
j <= m1.GetColUpb(); 
j++) {
 
 1043      printf(
"Largest dev for (%d,%d); dev = |%g - %g| = %g\n",
 
 
 1057template<
class Element>
 
 1060   if (
R__b.IsReading()) {
 
 1066         Error(
"TMatrixTBase<Element>::Streamer",
"Unknown version number: %d",
R__v);
 
 1069      if (
R__v < 4) MakeValid();
 
 
 
 1076template<
class Element>
 
 1085template<
class Element>
 
 
 1096template Bool_t   TMatrixTAutoloadOps::AreCompatible<Float_t,Float_t>
 
 1098template Bool_t   TMatrixTAutoloadOps::AreCompatible<Float_t,Double_t>
 
 1111template Bool_t   TMatrixTAutoloadOps::AreCompatible<Double_t,Double_t>
 
 1113template Bool_t   TMatrixTAutoloadOps::AreCompatible<Double_t,Float_t>
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
#define templateClassImp(name)
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
 
void Error(const char *location, const char *msgfmt,...)
Use this function in case an error occurred.
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void data
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t index
 
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 format
 
R__EXTERN Int_t gMatrixCheck
 
Double_t Drand(Double_t &ix)
Random number generator [0....1] with seed ix.
 
char * Form(const char *fmt,...)
Formats a string in a circular formatting buffer.
 
Buffer base class used for serializing objects.
 
virtual Element Sum() const
Compute sum of elements.
 
virtual Element RowNorm() const
Row matrix norm, MAX{ SUM{ |M(i,j)|, over j}, over i}.
 
virtual Element ColNorm() const
Column matrix norm, MAX{ SUM{ |M(i,j)|, over i}, over j}.
 
virtual TMatrixTBase< Element > & Randomize(Element alpha, Element beta, Double_t &seed)
Randomize matrix element values.
 
virtual TMatrixTBase< Element > & Sqr()
Square each element of the matrix.
 
virtual TMatrixTBase< Element > & UnitMatrix()
Make a unit matrix (matrix need not be a square one).
 
Bool_t operator!=(Element val) const
Are all matrix elements not equal to val?
 
virtual TMatrixTBase< Element > & Zero()
Set matrix elements to zero.
 
void Print(Option_t *name="") const override
Print the matrix as a table of elements.
 
virtual Int_t NonZeros() const
Compute the number of elements != 0.0.
 
virtual Element E2Norm() const
Square of the Euclidean norm, SUM{ m(i,j)^2 }.
 
virtual TMatrixTBase< Element > & Apply(const TElementActionT< Element > &action)
Apply action to each matrix element.
 
virtual Element Min() const
return minimum matrix element value
 
virtual Element Max() const
return maximum vector element value
 
virtual void GetMatrix2Array(Element *data, Option_t *option="") const
Copy matrix data to array .
 
Bool_t operator<(Element val) const
Are all matrix elements < val?
 
void Draw(Option_t *option="") override
Draw this matrix The histogram is named "TMatrixT" by default and no title.
 
virtual TMatrixTBase< Element > & InsertRow(Int_t row, Int_t col, const Element *v, Int_t n=-1)
Copy n elements from array v to row rown starting at column coln.
 
static Element & NaNValue()
 
static void DoubleLexSort(Int_t n, Int_t *first, Int_t *second, Element *data)
default kTRUE, when Use array kFALSE
 
Bool_t operator>(Element val) const
Are all matrix elements > val?
 
virtual TMatrixTBase< Element > & Sqrt()
Take square root of all elements.
 
Bool_t operator==(Element val) const
Are all matrix elements equal to val?
 
virtual TMatrixTBase< Element > & Abs()
Take an absolute value of a matrix, i.e. apply Abs() to each element.
 
virtual TMatrixTBase< Element > & Shift(Int_t row_shift, Int_t col_shift)
Shift the row index by adding row_shift and the column index by adding col_shift, respectively.
 
static void IndexedLexSort(Int_t n, Int_t *first, Int_t swapFirst, Int_t *second, Int_t swapSecond, Int_t *index)
Lexical sort on array data using indices first and second.
 
Bool_t operator<=(Element val) const
Are all matrix elements <= val?
 
void Streamer(TBuffer &) override
Stream an object of class TMatrixTBase<Element>.
 
virtual Bool_t IsSymmetric() const
Check whether matrix is symmetric.
 
virtual TMatrixTBase< Element > & SetMatrixArray(const Element *data, Option_t *option="")
Copy array data to matrix .
 
Bool_t operator>=(Element val) const
Are all matrix elements >= val?
 
virtual void ExtractRow(Int_t row, Int_t col, Element *v, Int_t n=-1) const
Store in array v, n matrix elements of row rown starting at column coln.
 
virtual TMatrixTBase< Element > & NormByDiag(const TVectorT< Element > &v, Option_t *option="D")
option:
 
void ToUpper()
Change string to upper case.
 
Bool_t Contains(const char *pat, ECaseCompare cmp=kExact) const
 
Long64_t LocMin(Long64_t n, const T *a)
Returns index of array with the minimum element.
 
Short_t Max(Short_t a, Short_t b)
Returns the largest of a and b.
 
Long64_t LocMax(Long64_t n, const T *a)
Returns index of array with the maximum element.
 
Double_t Sqrt(Double_t x)
Returns the square root of x.
 
Short_t Min(Short_t a, Short_t b)
Returns the smallest of a and b.
 
Double_t Log10(Double_t x)
Returns the common (base-10) logarithm of x.
 
Short_t Abs(Short_t d)
Returns the absolute value of parameter Short_t d.
 
Bool_t VerifyMatrixIdentity(const TMatrixTBase< Element > &m1, const TMatrixTBase< Element > &m2, Int_t verbose, Element maxDevAllow)
Verify that elements of the two matrices are equal within MaxDevAllow .
 
void Compare(const TMatrixTBase< Element > &m1, const TMatrixTBase< Element > &m2)
Compare two matrices and print out the result of the comparison.
 
Bool_t VerifyMatrixValue(const TMatrixTBase< Element > &m, Element val, Int_t verbose, Element maxDevAllow)
Validate that all elements of matrix have value val within maxDevAllow.
 
Bool_t operator==(const TMatrixTBase< Element > &m1, const TMatrixTBase< Element > &m2)
Check to see if two matrices are identical.
 
Element E2Norm(const TMatrixTBase< Element > &m1, const TMatrixTBase< Element > &m2)
Square of the Euclidean norm of the difference between two matrices.
 
Bool_t AreCompatible(const TMatrixTBase< Element1 > &m1, const TMatrixTBase< Element2 > &m2, Int_t verbose=0)
Check that matrice sm1 and m2 areboth valid and have identical shapes .
 
static uint64_t sum(uint64_t i)