1 | // This may look like C code, but it is really -*- C++ -*-
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2 | // Utility classes for template numerical arrays
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3 | // R. Ansari, C.Magneville 03/2000
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4 |
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5 | #ifndef UtilArray_SEEN
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6 | #define UtilArray_SEEN
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7 |
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8 | #include "machdefs.h"
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9 | #include <stdlib.h>
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10 |
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11 | namespace SOPHYA {
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12 |
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13 | /* Quelques utilitaires pour les tableaux (Array) */
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14 |
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15 | /*! \ingroup TArray
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16 | \typedef Arr_DoubleFunctionOfX
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17 | \brief define a function of float which returns a double
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18 | */
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19 | typedef double (* Arr_DoubleFunctionOfX) (double x);
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20 | /*! \ingroup TArray
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21 | \typedef Arr_FloatFunctionOfX
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22 | \brief define a function of float which returns a double
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23 | */
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24 | typedef float (* Arr_FloatFunctionOfX) (float x);
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25 |
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26 | //////////////////////////////////////////////////////////
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27 | //! Class to generate a random sequence of values
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28 | class RandomSequence {
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29 | public:
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30 | //! to define the generator type
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31 | enum {
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32 | Gaussian = 0, //!< gaussian generator
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33 | Flat = 1 //!< Flat generator
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34 | };
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35 |
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36 | RandomSequence(int typ = RandomSequence::Gaussian, double m=0., double s=1.);
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37 | double Rand();
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38 | protected:
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39 | int typ_; //!< random generation type
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40 | double mean_, sig_; //!< generation parameters mean and sigma (if needed)
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41 | };
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42 |
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43 |
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44 | //////////////////////////////////////////////////////////
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45 | //! Class to generate a sequence of values
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46 | class Sequence {
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47 | public:
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48 | explicit Sequence (double start=0., double step=1., Arr_DoubleFunctionOfX f=NULL);
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49 | explicit Sequence (RandomSequence rseq);
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50 |
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51 | //! return start value of the sequence
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52 | inline double & Start() { return start_; }
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53 | //! return step value of the sequence
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54 | inline double & Step() { return step_; }
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55 | double operator () (uint_4 k);
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56 | protected:
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57 | double start_; //!< start value of the sequence
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58 | double step_; //!< step value of the sequence
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59 | Arr_DoubleFunctionOfX myf_; //!< pointer to the sequence function
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60 | bool fgrseq_; //!< true if RandomSequence is used
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61 | RandomSequence rseq_; //!< RandomSequence
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62 | };
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63 |
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64 | //////////////////////////////////////////////////////////
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65 | //! Class to define a range of indexes
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66 | class Range {
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67 | public:
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68 | explicit Range(uint_4 start=0, uint_4 end=0, uint_4 size=1, uint_4 step=1);
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69 | //! Return the start index
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70 | inline uint_4 & Start() { return start_; }
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71 | //! Return the last index
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72 | inline uint_4 & End() { return end_; }
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73 | //! Return the size
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74 | inline uint_4 & Size() { return size_; }
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75 | //! Return the step
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76 | inline uint_4 & Step() { return step_; }
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77 | protected:
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78 | uint_4 start_; //!< start index
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79 | uint_4 end_; //!< end index
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80 | uint_4 size_; //!< size
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81 | uint_4 step_; //!< step
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82 | };
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83 |
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84 | //////////////////////////////////////////////////////////
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85 | //! Class to define an identity matrix
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86 | class IdentityMatrix {
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87 | public:
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88 | explicit IdentityMatrix(double diag=1., uint_4 n=0);
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89 | //! return the size of the identity matrix
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90 | inline uint_4 Size() { return size_; }
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91 | //! return the value of the diagonal elements
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92 | inline double Diag() { return diag_; }
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93 | protected:
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94 | uint_4 size_; //!< size of the matrix
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95 | double diag_; //!< value of the diagonal elements
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96 | };
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97 |
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98 | } // Fin du namespace
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99 |
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100 | #endif
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