source: Sophya/trunk/SophyaLib/NTools/tmatrix.h@ 459

Last change on this file since 459 was 307, checked in by ansari, 26 years ago

FIO_... + grosses modifs cmv 19/5/99

File size: 11.1 KB
Line 
1// This may look like C code, but it is really -*- C++ -*-
2// C.Magneville 04/99
3#ifndef TMATRIX_SEEN
4#define TMATRIX_SEEN
5
6#include "machdefs.h"
7#include <stdio.h>
8#include <iostream.h>
9#include <complex>
10#include "ppersist.h"
11#include "anydataobj.h"
12#include "ndatablock.h"
13
14namespace PlanckDPC {
15
16class GeneralFit;
17template <class T> class TVector;
18template <class T> class TMatrixRC;
19
20template <class T>
21class TMatrix : public AnyDataObj {
22 friend class TMatrixRC<T>;
23 friend class TVector<T>;
24public:
25
26 // Creation / destruction
27 TMatrix();
28 TMatrix(uint_4 r,uint_4 c);
29 TMatrix(uint_4 r,uint_4 c,T* values,Bridge* br=NULL);
30 TMatrix(const TMatrix<T>& a);
31 TMatrix(const TMatrix<T>& a,bool share);
32 virtual ~TMatrix();
33
34 // Temporaire?
35 inline bool IsTemp(void) const {return mNDBlock.IsTemp();}
36 inline void SetTemp(bool temp=false) const {mNDBlock.SetTemp(temp);}
37
38 // Gestion taille/Remplissage
39 inline void Clone(const TMatrix<T>& a) // Clone: copie des donnees de "a"
40 {mNDBlock.Clone(a.mNDBlock); mNr = a.mNr; mNc = a.mNc;}
41 inline void Reset(T v=0) {mNDBlock.Reset(v);}
42 inline void ReSize(uint_4 r,uint_4 c) // Reallocation de place
43 {if(r==0||c==0) throw(SzMismatchError("TMatrix::ReSize r ou c==0\n"));
44 mNr = r; mNc = c; mNDBlock.ReSize(r*c);}
45
46 // Informations pointeur/data
47 inline uint_4 NRows() const {return mNr;}
48 inline uint_4 NCols() const {return mNc;}
49 inline T const& operator()(uint_4 r,uint_4 c) const
50 {return *(mNDBlock.Begin()+r*mNc+c);}
51 inline T& operator()(uint_4 r,uint_4 c)
52 {return *(mNDBlock.Begin()+r*mNc+c);}
53 inline T const& operator[](uint_4 ip) const
54 {return *(mNDBlock.Begin()+ip);}
55 inline T& operator[](uint_4 ip)
56 {return *(mNDBlock.Begin()+ip);}
57 inline T* Data() {return mNDBlock.Begin();}
58 inline const T* Data() const {return mNDBlock.Begin();}
59 inline NDataBlock<T>& DataBlock() {return mNDBlock;}
60 inline const NDataBlock<T>& DataBlock() const {return mNDBlock;}
61
62 // Operations matricielles
63 TMatrix<T> Transpose(void) const;
64
65 // Operateur d'affectation
66 // A = x (matrice diagonale x*Identite)
67 inline TMatrix<T>& operator = (T x)
68 {if(mNr!=mNc || mNr==0) throw(SzMismatchError("TMatrix::operator= mNc!=mNr ou ==0\n"));
69 for(uint_4 r=0;r<mNr;r++) for(uint_4 c=0;c<mNc;c++) (*this)(r,c)=(r==c)?x:0;
70 return *this;}
71 // A = B : partage les donnees si "a" est temporaire, clone sinon.
72 inline TMatrix<T>& operator = (const TMatrix<T>& a)
73 {if(this == &a) return *this; CloneOrShare(a); return *this;}
74
75 // Impression
76 void Print(ostream& os,int lp=0,uint_4 i0=0,uint_4 ni=10,uint_4 j0=0,uint_4 nj=10) const;
77 inline void Print(int lp=0,uint_4 i0=0,uint_4 ni=10,uint_4 j0=0,uint_4 nj=10) const
78 {Print(cout,lp,i0,ni,j0,nj);}
79
80 // Surcharge d'operateurs INPLACE: A (+=,-=,*=,/=) (T) x
81 inline TMatrix<T>& operator += (T b) {mNDBlock += b; return *this;}
82 inline TMatrix<T>& operator -= (T b) {mNDBlock -= b; return *this;}
83 inline TMatrix<T>& operator *= (T b) {mNDBlock *= b; return *this;}
84 inline TMatrix<T>& operator /= (T b) {mNDBlock /= b; return *this;}
85
86 // Surcharge d'operateurs INPLACE: A (+=,-=,*=,/=) B
87 inline TMatrix<T>& operator += (const TMatrix<T>& a)
88 {if(mNr==0 || mNc==0 || mNr!=a.mNr || mNc!=a.mNc)
89 throw(SzMismatchError("TMatrix::operator+=A size mismatch"));
90 mNDBlock += a.mNDBlock; return *this;}
91 inline TMatrix<T>& operator -= (const TMatrix<T>& a)
92 {if(mNr==0 || mNc==0 || mNr!=a.mNr || mNc!=a.mNc)
93 throw(SzMismatchError("TMatrix::operator-=A size mismatch"));
94 mNDBlock -= a.mNDBlock; return *this;}
95 TMatrix<T>& operator *= (const TMatrix<T>& a);
96
97 // Pour surcharge d'operateurs C = A (+,-,*) B
98 TMatrix<T> Add(const TMatrix<T>& b) const;
99 TMatrix<T> Sub(const TMatrix<T>& b) const;
100 TMatrix<T> Mul(const TMatrix<T>& b) const;
101
102 // Pivot de Gauss : diagonalise la matrice A, en effectuant les memes
103 // operations sur la matrice B
104 TMatrix<T> Inverse() const;
105 static T GausPiv(TMatrix<T>& A, TMatrix<T>& B);
106
107 // Residus et fonction fittees.
108 TMatrix<T> FitResidus(GeneralFit& gfit
109 ,double xorg=0.,double yorg=0.,double dx=1.,double dy=1.);
110 TMatrix<T> FitFunction(GeneralFit& gfit
111 ,double xorg=0.,double yorg=0.,double dx=1.,double dy=1.);
112
113 // Acces aux rangees et colonnes
114 TMatrixRC<T> Row(uint_4 r) const;
115 TMatrixRC<T> Col(uint_4 c) const;
116 TMatrixRC<T> Diag() const;
117
118protected:
119 // partage les donnees si "a" temporaire, clone sinon.
120 inline void CloneOrShare(const TMatrix<T>& a)
121 {mNDBlock.CloneOrShare(a.mNDBlock); mNr=a.mNr; mNc=a.mNc;}
122 // Share: partage les donnees de "a"
123 inline void Share(const TMatrix<T>& a)
124 {mNDBlock.Share(a.mNDBlock); mNr=a.mNr; mNc=a.mNc;}
125
126 uint_4 mNr,mNc;
127 NDataBlock<T> mNDBlock;
128};
129
130////////////////////////////////////////////////////////////////
131// Impression
132
133template <class T>
134inline ostream& operator << (ostream& os, const TMatrix<T>& a)
135 {a.Print(os); return(os);}
136
137////////////////////////////////////////////////////////////////
138// Surcharge d'operateurs A (+=,-=,*=,/=) (T) x
139
140template <class T> inline TMatrix<T> operator + (const TMatrix<T>& a, T b)
141 {TMatrix<T> result(a); result.SetTemp(true); result += b; return result;}
142
143template <class T> inline TMatrix<T> operator + (T b,const TMatrix<T>& a)
144 {TMatrix<T> result(a); result.SetTemp(true); result += b; return result;}
145
146template <class T> inline TMatrix<T> operator - (const TMatrix<T>& a, T b)
147 {TMatrix<T> result(a); result.SetTemp(true); result -= b; return result;}
148
149template <class T> inline TMatrix<T> operator - (T b,const TMatrix<T>& a)
150 {TMatrix<T> result(a); result.SetTemp(true);
151 result.DataBlock() = b-result.DataBlock(); return result;}
152
153template <class T> inline TMatrix<T> operator * (const TMatrix<T>& a, T b)
154 {TMatrix<T> result(a); result.SetTemp(true); result *= b; return result;}
155
156template <class T> inline TMatrix<T> operator * (T b,const TMatrix<T>& a)
157 {TMatrix<T> result(a); result.SetTemp(true); result *= b; return result;}
158
159template <class T> inline TMatrix<T> operator / (const TMatrix<T>& a, T b)
160 {TMatrix<T> result(a); result.SetTemp(true); result /= b; return result;}
161
162////////////////////////////////////////////////////////////////
163// Surcharge d'operateurs C = A (+,-,*,/) B
164
165template <class T>
166inline TMatrix<T> operator + (const TMatrix<T>& a,const TMatrix<T>& b)
167 {return a.Add(b);}
168
169template <class T>
170inline TMatrix<T> operator - (const TMatrix<T>& a,const TMatrix<T>& b)
171 {return a.Sub(b);}
172
173template <class T>
174inline TMatrix<T> operator * (const TMatrix<T>& a,const TMatrix<T>& b)
175 {return a.Mul(b);}
176
177
178/////////////////////////////////////////////////////////////////////////
179// Classe pour la gestion de persistance
180template <class T>
181class FIO_TMatrix : public PPersist {
182public:
183 FIO_TMatrix();
184 FIO_TMatrix(string const & filename);
185 FIO_TMatrix(const TMatrix<T> & obj);
186 FIO_TMatrix(TMatrix<T> * obj);
187 virtual ~FIO_TMatrix();
188 virtual AnyDataObj* DataObj();
189 inline operator TMatrix<T>() { return(*dobj); }
190protected :
191 virtual void ReadSelf(PInPersist&);
192 virtual void WriteSelf(POutPersist&) const;
193 TMatrix<T> * dobj;
194 bool ownobj;
195};
196
197/////////////////////////////////////////////////////////////////////////
198// Classe de lignes/colonnes de matrices
199enum TRCKind {TmatrixRow=0, TmatrixCol=1, TmatrixDiag=2};
200template <class T>
201class TMatrixRC {
202 friend class TVector<T>;
203 friend class TMatrix<T>;
204public:
205 TMatrixRC();
206
207 virtual ~TMatrixRC() {}
208
209 int_4 Next();
210 int_4 Prev();
211 int_4 SetCol(int_4 c);
212 int_4 SetRow(int_4 r);
213 int_4 SetDiag();
214
215 static uint_4 Step(const TMatrix<T>& m, TRCKind rckind);
216 static T* Org(const TMatrix<T>&, TRCKind rckind, uint_4 ind=0);
217
218 uint_4 NElts() const;
219 T& operator()(uint_4 i);
220 T operator()(uint_4 i) const;
221
222 TMatrixRC<T>& operator = (const TMatrixRC<T>& rc);
223 TVector<T> GetVect() const;
224
225 TMatrixRC<T>& operator += (const TMatrixRC<T>& rc);
226 TMatrixRC<T>& operator -= (const TMatrixRC<T>& rc);
227
228 TMatrixRC<T>& operator *= (T x);
229 TMatrixRC<T>& operator /= (T x);
230 TMatrixRC<T>& operator -= (T x);
231 TMatrixRC<T>& operator += (T x);
232
233 TMatrixRC<T>& LinComb(T a, T b, const TMatrixRC& rc, uint_4 first=0);
234 TMatrixRC<T>& LinComb(T b, const TMatrixRC<T>& rc, uint_4 first=0);
235
236 uint_4 IMaxAbs(uint_4 first=0);
237
238 static void Swap(TMatrixRC<T>& rc1, TMatrixRC<T>& rc2);
239
240protected:
241 TMatrixRC(TMatrix<T>& m, TRCKind kind, uint_4 index=0);
242 TMatrix<T>* matrix;
243 inline static double Abs_Value(uint_1 v) {return (double) v;}
244 inline static double Abs_Value(uint_2 v) {return (double) v;}
245 inline static double Abs_Value(int_2 v) {return (v>0)? (double) v: (double) -v;}
246 inline static double Abs_Value(int_4 v) {return (v>0)? (double) v: (double) -v;}
247 inline static double Abs_Value(int_8 v) {return (v>0)? (double) v: (double) -v;}
248 inline static double Abs_Value(uint_4 v) {return (double) v;}
249 inline static double Abs_Value(uint_8 v) {return (double) v;}
250 inline static double Abs_Value(r_4 v) {return (double) fabsf(v);}
251 inline static double Abs_Value(r_8 v) {return fabs(v);}
252 inline static double Abs_Value(complex<float> v)
253 {return sqrt(v.real()*v.real()+v.imag()*v.imag());}
254 inline static double Abs_Value(complex<double> v)
255 {return sqrt(v.real()*v.real()+v.imag()*v.imag());}
256
257 T* data;
258 int_4 index;
259 uint_4 step;
260 TRCKind kind;
261};
262
263
264template <class T> inline T operator * (const TMatrixRC<T>& a, const TMatrixRC<T>& b)
265 {
266 if ( a.NElts() != b.NElts() )
267 throw(SzMismatchError("TMatrixRC::operator * size mismatch\n"));
268 if ( a.kind != b.kind )
269 throw(SzMismatchError("TMatrixRC::operator * type mismatch\n"));
270 T sum = 0;
271 for(uint_4 i=0; i<a.NElts(); i++) sum += a(i)*b(i);
272 return sum;
273 }
274
275template <class T>
276inline uint_4 TMatrixRC<T>::Step(const TMatrix<T>& m, TRCKind rckind)
277 { switch (rckind) { case TmatrixRow : return 1;
278 case TmatrixCol : return m.mNc;
279 case TmatrixDiag : return m.mNc+1; }
280 return 0; }
281
282template <class T>
283inline T* TMatrixRC<T>::Org(const TMatrix<T>& m, TRCKind rckind, uint_4 index)
284 { switch (rckind) { case TmatrixRow : return const_cast<T *>(m.Data()) + index * m.mNc;
285 case TmatrixCol : return const_cast<T *>(m.Data()) + index;
286 case TmatrixDiag : return const_cast<T *>(m.Data()); }
287 return NULL; }
288
289template <class T> inline uint_4 TMatrixRC<T>::NElts() const
290 { if (!matrix) return 0;
291 switch (kind) { case TmatrixRow : return matrix->mNc;
292 case TmatrixCol : return matrix->mNr;
293 case TmatrixDiag : return matrix->mNc; }
294 return 0; }
295
296template <class T>
297inline T& TMatrixRC<T>::operator()(uint_4 i) {return data[i*step];}
298template <class T>
299inline T TMatrixRC<T>::operator()(uint_4 i) const {return data[i*step];}
300
301} // Fin du namespace
302
303#endif
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