source: Sophya/trunk/SophyaLib/TArray/utilarr.cc@ 1554

Last change on this file since 1554 was 1550, checked in by ansari, 24 years ago

Extension de l'interface TArray/BaseArray/EnumeratedSequence pour permettre la lecture de fichier ASCII - Reza 27/6/2001

File size: 4.9 KB
Line 
1// Utility classes for template numerical arrays
2// R. Ansari, C.Magneville 03/2000
3
4#include "machdefs.h"
5#include "utilarr.h"
6#include "srandgen.h"
7
8// Classe utilitaires
9
10Sequence::~Sequence()
11{
12}
13
14//////////////////////////////////////////////////////////
15/*!
16 \class SOPHYA::RandomSequence
17 \ingroup TArray
18 Base class to generate a sequence of random values
19*/
20
21//! Constructor
22/*!
23 \param typ : generator type
24 \param m : mean parameter of the generator (if needed)
25 \param s : sigma parameter of the generator (if needed)
26 */
27RandomSequence::RandomSequence(int typ, double m, double s)
28{
29 typ_ = (typ == Flat) ? Flat : Gaussian;
30 mean_ = m;
31 sig_ = s;
32}
33RandomSequence::~RandomSequence()
34{
35}
36
37//! Return random sequence values.
38/*!
39 \return If typ = Flat : return [-1,+1]*sig + mean
40 \return If typ = Gaussian : return gaussian distributed
41 with \b mean mean and sigma \b sig
42 */
43double RandomSequence::Rand()
44{
45 if (typ_ == Flat)
46 return(drandpm1()*sig_ + mean_);
47 else return(GauRnd(mean_, sig_));
48}
49
50MuTyV & RandomSequence::Value(sa_size_t k) const
51{
52 if (typ_ == Flat) retv_ = drandpm1()*sig_ + mean_;
53 else retv_ = GauRnd(mean_, sig_);
54 return retv_;
55}
56
57
58//////////////////////////////////////////////////////////
59/*!
60 \class SOPHYA::RegularSequence
61 \ingroup TArray
62 Class to generate a sequence of values
63*/
64
65//! Constructor
66/*!
67 \param start : start value
68 \param step : step value
69 \param f : pointer to the sequence function (default = NULL, f(x)=x )
70
71 See \ref RegularSequenceOperat "operator()"
72 */
73RegularSequence::RegularSequence(double start, double step, Arr_DoubleFunctionOfX f)
74{
75 start_ = start;
76 step_ = step;
77 myf_ = f;
78}
79
80RegularSequence::~RegularSequence()
81{
82}
83
84//! Get the \b k th value
85/*!
86 \param k : index of the value
87 \anchor RegularSequenceOperat
88
89 \return f(start+k*step)
90
91 */
92
93MuTyV & RegularSequence::Value (sa_size_t k) const
94{
95 double x = start_+(double)k*step_;
96 if (myf_) x = myf_(x);
97 retv_ = x;
98 return(retv_);
99}
100
101/*!
102 \class SOPHYA::EnumeratedSequence
103 \ingroup TArray
104 Explicitly defined sequence of values. The comma operator has
105 been redefined to let an easy definition of sequences.
106
107 \code
108 // Initializing a sequence
109 EnumeratedSequence es;
110 es = 11, 22, 33, 44, 55, 66;
111
112 for(int k=0; k<8; k++)
113 cout << " k= " << k << " es(k)= " << es(k) << endl;
114 \endcode
115*/
116
117EnumeratedSequence::EnumeratedSequence()
118{
119}
120
121EnumeratedSequence::~EnumeratedSequence()
122{
123}
124
125//! Return the k th value in the sequence (default = 0)
126MuTyV & EnumeratedSequence::Value (sa_size_t k) const
127{
128 if (k >= vecv_.size()) retv_ = 0;
129 else retv_ = vecv_[k];
130 return(retv_);
131}
132
133EnumeratedSequence & EnumeratedSequence::operator , (MuTyV const & v)
134{
135 vecv_.push_back(v);
136 return(*this);
137}
138
139EnumeratedSequence & EnumeratedSequence::operator = (MuTyV const & v)
140{
141 vecv_.clear();
142 vecv_.push_back(v);
143 return(*this);
144}
145
146EnumeratedSequence & EnumeratedSequence::Merge(EnumeratedSequence const & seq)
147{
148 for(int k=0; k<seq.vecv_.size(); k++)
149 vecv_.push_back(seq.vecv_[k]);
150 return(*this);
151}
152
153void EnumeratedSequence::Print(ostream& os) const
154{
155 os << " EnumeratedSequence::Print() - Size()= " << Size() << endl;
156 for(int k=0; k<vecv_.size(); k++) {
157 os << vecv_[k];
158 if ((k > 0) && (k%10 == 0)) os << endl;
159 else os << " " ;
160 }
161 return;
162}
163
164sa_size_t EnumeratedSequence::FillFromString(string const & str)
165{
166 cerr << " EnumeratedSequence::FillFromString() pas implemente !" << endl;
167 return (0);
168}
169
170sa_size_t EnumeratedSequence::FillFromFile(istream& is,
171 sa_size_t& nr, sa_size_t& nc)
172{
173 cerr << " EnumeratedSequence::FillFromFile() pas implemente !" << endl;
174 return (0);
175}
176
177//////////////////////////////////////////////////////////
178/*!
179 \class SOPHYA::Range
180 \ingroup TArray
181 Class to define a range of indexes
182*/
183
184//! Constructor
185/*!
186 Define a range of indexes
187 \param start : start index (inclusive)
188 \param end : end index (inclusive)
189 \param size : size (number of elements, used if end \<= start)
190 \param step : step (or stride)
191
192 \warning If \b end \> \b start, \b size is computed automatically
193 \warning If not \b size is fixed and \b end recomputed
194 */
195Range::Range(sa_size_t start, sa_size_t end, sa_size_t size, sa_size_t step)
196{
197 start_ = start;
198 step_ = (step > 0) ? step : 1;
199 if (end > start) { // Taille calcule automatiquement
200 end_ = end;
201 if (step_ > ((end_-start_)+1)) size_ = 1;
202 else size_ = ((end-start)+1)/step_;
203 }
204 else { // Taille fixee
205 size_ = size;
206 end_ = start_+size_*step_;
207 }
208}
209
210/*
211Range & Range::operator = (sa_size_t start)
212{
213 start_ = start;
214 size_ = 1;
215 step_ = 1;
216 return (*this);
217}
218*/
219
220
221//////////////////////////////////////////////////////////
222/*!
223 \class SOPHYA::IdentityMatrix
224 \ingroup TArray
225 Class to define an identity matrix
226*/
227
228//! Constructor of a (n,n) diagonal matrix with value diag on the diagonal
229IdentityMatrix::IdentityMatrix(double diag, sa_size_t n)
230{
231 size_ = n;
232 diag_ = diag;
233}
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