Blockstructured Adaptive Mesh Refinement in object-oriented C++
#include "CompConf.h"
#include "generic.h"
#include <iostream.h>
#include <assert.h>
Include dependency graph for Vector26.h:
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Compounds | |
class | Vector |
Vector implementation. More... | |
Defines | |
#define | Vector(dim) name2(Vector,dim) |
#define | VectorName |
#define | Vector_Vector_Operator(ope, op) |
#define | Vector_Scalar_Operator(ope, op) |
#define | Vector_Vector_RelOperator(op) |
#define | Vector_Vector_RelOperator(op) |
#define | Vector_Scalar_RelOperator(op) |
#define | Vector_Scalar_RelOperator(op) |
#define | Global_Vector_Scalar_Operator(op) |
#define | Global_Vector_Function(fct) |
#define | Vector_Vector_Functions(NameTo, NameFrom, ope) |
Functions | |
template<class DataType> ostream & | operator<< (ostream &os, const Vector< DataType > &v) |
template<class DataType> Vector< DataType > | operator+ (const DataType &v, const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | operator- (const DataType &v, const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | operator * (const DataType &v, const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | operator/ (const DataType &v, const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | fabs (const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | sqrt (const Vector< DataType > &x) |
template<class DataType> Vector< DataType > | Min (const Vector< DataType > &x, const Vector< DataType > &y) |
template<class DataType> Vector< DataType > | Max (const Vector< DataType > &x, const Vector< DataType > &y) |
template<class DataType> double | abs (const Vector< DataType > &x) |
template<class DataType> DataType | mincomp (const Vector< DataType > &x) |
template<class DataType> DataType | maxcomp (const Vector< DataType > &x) |
template<class DataType, class VectorType> void | equals_to (Vector< DataType > &x, const VectorType &y) |
template<class DataType, class VectorType> void | equals_from (VectorType &x, const Vector< DataType > &y) |
template<class DataType, class VectorType> void | plus_to (Vector< DataType > &x, const VectorType &y) |
template<class DataType, class VectorType> void | plus_from (VectorType &x, const Vector< DataType > &y) |
template<class DataType, class VectorType> void | minus_to (Vector< DataType > &x, const VectorType &y) |
template<class DataType, class VectorType> void | minus_from (VectorType &x, const Vector< DataType > &y) |
template<class DataType, class VectorType> void | multiply_to (Vector< DataType > &x, const VectorType &y) |
template<class DataType, class VectorType> void | multiply_from (VectorType &x, const Vector< DataType > &y) |
template<class DataType, class VectorType> void | divide_to (Vector< DataType > &x, const VectorType &y) |
template<class DataType, class VectorType> void | divide_from (VectorType &x, const Vector< DataType > &y) |
Definition in file Vector26.h.
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Value: template <class DataType> \ inline Vector(26)<DataType> fct(const Vector(26)<DataType> &x) \ { \ Vector(26)<DataType> ret; \ for (int n=0; n<26; n++) \ ret[n] = fct(x[n]); \ return(ret); \ } Definition at line 256 of file Vector26.h. |
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Value: template <class DataType> \ inline Vector(26)<DataType> operator op (const DataType &v, \ const Vector(26)<DataType> &x) \ { return(x op v); } Definition at line 243 of file Vector26.h. |
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Value: inline TVector& operator ope (const DataType &v) \ { \ for (int n=0; n<26; n++) \ data_[n] ope v; \ return(*this); \ } \ inline TVector operator op (const DataType &v) const \ { \ TVector ret(*this); \ for (int n=0; n<26; n++) \ ret.data_[n] ope v; \ return(ret); \ } Definition at line 107 of file Vector26.h. |
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Value: inline int operator op (const DataType &v) const \ { \ bool ret = (data_[0] op v); \ for (int n=1; n<26; n++) \ ret = ret || (data_[n] op v); \ return(ret); \ } Definition at line 177 of file Vector26.h. |
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Value: inline int operator op (const DataType &v) const \ { \ bool ret = (data_[0] op v); \ for (int n=1; n<26; n++) \ ret = ret && (data_[n] op v); \ return(ret); \ } Definition at line 177 of file Vector26.h. |
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Value: template <class DataType, class VectorType> \ inline void NameTo (Vector(26)<DataType> &x, const VectorType &y) \ { \ for (int n=0; n<26; n++) \ x(n) ope y(n); \ } \ template <class DataType, class VectorType> \ inline void NameFrom (VectorType &x, const Vector(26)<DataType> &y) \ { \ for (int n=0; n<26; n++) \ x(n) ope y(n); \ } Definition at line 294 of file Vector26.h. |
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Value: inline TVector& operator ope (const TVector &x) \ { \ for (int n=0; n<26; n++) \ data_[n] ope x.data_[n]; \ return(*this); \ } \ inline TVector operator op (const TVector &x) const \ { \ TVector ret(*this); \ for (int n=0; n<26; n++) \ ret.data_[n] ope x.data_[n]; \ return(ret); \ } Definition at line 87 of file Vector26.h. |
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Value: inline int operator op (const TVector &x) const \ { \ bool ret = (data_[0] op x.data_[0]); \ for (int n=1; n<26; n++) \ ret = ret || (data_[n] op x.data_[n]); \ return(ret); \ } Definition at line 149 of file Vector26.h. |
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Value: inline int operator op (const TVector &x) const \ { \ bool ret = (data_[0] op x.data_[0]); \ for (int n=1; n<26; n++) \ ret = ret && (data_[n] op x.data_[n]); \ return(ret); \ } Definition at line 149 of file Vector26.h. |
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