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_zhematrix-_zgbmatrix.hpp
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1 //=============================================================================
2 /*! _zhematrix+_zgbmatrix operator */
3 inline _zgematrix operator+(const _zhematrix& matA, const _zgbmatrix& matB)
4 {CPPL_VERBOSE_REPORT;
5 #ifdef CPPL_DEBUG
6  if(matA.n!=matB.n || matA.n!=matB.m){
7  ERROR_REPORT;
8  std::cerr << "These two matrises can not make a summation." << std::endl
9  << "Your input was (" << matA.n << "x" << matA.n << ") + (" << matB.m << "x" << matB.n << ")." << std::endl;
10  exit(1);
11  }
12 #endif//CPPL_DEBUG
13 
14  zgematrix newmat(matA.n, matA.n);
15 
16  for(CPPL_INT i=0; i<matB.m; i++){
17  for(CPPL_INT j=0; j<matA.n; j++){
18  newmat(i,j) =matA(i,j);
19  }
20  const CPPL_INT jmax =std::min(matB.n,i+matB.ku+1);
21  for(CPPL_INT j=std::max(CPPL_INT(0),i-matB.kl); j<jmax; j++){
22  newmat(i,j)+=matB(i,j);
23  }
24  }
25 
26  matA.destroy();
27  matB.destroy();
28  return _(newmat);
29 }
30 
31 //=============================================================================
32 /*! _zhematrix-_zgbmatrix operator */
33 inline _zgematrix operator-(const _zhematrix& matA, const _zgbmatrix& matB)
34 {CPPL_VERBOSE_REPORT;
35 #ifdef CPPL_DEBUG
36  if(matA.n!=matB.n || matA.n!=matB.m){
37  ERROR_REPORT;
38  std::cerr << "These two matrises can not make a summation." << std::endl
39  << "Your input was (" << matA.n << "x" << matA.n << ") + (" << matB.m << "x" << matB.n << ")." << std::endl;
40  exit(1);
41  }
42 #endif//CPPL_DEBUG
43 
44  zgematrix newmat(matA.n, matA.n);
45 
46  for(CPPL_INT i=0; i<matB.m; i++){
47  for(CPPL_INT j=0; j<matA.n; j++){
48  newmat(i,j) =matA(i,j);
49  }
50  const CPPL_INT jmax =std::min(matB.n,i+matB.ku+1);
51  for(CPPL_INT j=std::max(CPPL_INT(0),i-matB.kl); j<jmax; j++){
52  newmat(i,j)-=matB(i,j);
53  }
54  }
55 
56  matA.destroy();
57  matB.destroy();
58  return _(newmat);
59 }
60 
61 //=============================================================================
62 /*! _zhematrix*_zgbmatrix operator */
63 inline _zgematrix operator*(const _zhematrix& matA, const _zgbmatrix& matB)
64 {CPPL_VERBOSE_REPORT;
65 #ifdef CPPL_DEBUG
66  if(matA.n!=matB.m){
67  ERROR_REPORT;
68  std::cerr << "These two matrises can not make a product." << std::endl
69  << "Your input was (" << matA.n << "x" << matA.n << ") * (" << matB.m << "x" << matB.n << ")." << std::endl;
70  exit(1);
71  }
72 #endif//CPPL_DEBUG
73 
74  zgematrix newmat( matA.n, matB.n );
75  newmat.zero();
76 
77  for(CPPL_INT i=0; i<newmat.m; i++){
78  for(CPPL_INT j=0; j<newmat.n; j++){
79  const CPPL_INT kmax =std::min(matB.m,j+matB.kl+1);
80  for(CPPL_INT k=std::max(CPPL_INT(0),j-matB.ku); k<kmax; k++){
81  newmat(i,j)+=matA(i,k)*matB(k,j);
82  }
83  }
84  }
85 
86  matA.destroy();
87  matB.destroy();
88  return _(newmat);
89 }
CPPL_INT ku
upper band width
Definition: _zgbmatrix.hpp:12
(DO NOT USE) Smart-temporary Complex Double-precision Hermitian Matrix Class
Definition: _zhematrix.hpp:3
CPPL_INT kl
lower band width
Definition: _zgbmatrix.hpp:11
CPPL_INT n
matrix column size
Definition: _zhematrix.hpp:11
_dgematrix i(const _dgbmatrix &mat)
void destroy() const
CPPL_INT n
matrix column size
Definition: zgematrix.hpp:10
Complex Double-precision General Dence Matrix Class.
Definition: zgematrix.hpp:3
zgematrix & zero()
(DO NOT USE) Smart-temporary Complex Double-precision General Dence Matrix Class
Definition: _zgematrix.hpp:3
void destroy() const
CPPL_INT m
matrix row size
Definition: zgematrix.hpp:9
(DO NOT USE) Smart-temporary Complex Double-precision General Band Matrix Class
Definition: _zgbmatrix.hpp:3
CPPL_INT m
matrix row size
Definition: _zgbmatrix.hpp:9
_zgematrix operator+(const _zhematrix &matA, const _zgbmatrix &matB)
CPPL_INT n
matrix column size
Definition: _zgbmatrix.hpp:10
_zgematrix operator*(const _zhematrix &matA, const _zgbmatrix &matB)
_dcovector _(dcovector &vec)
_zgematrix operator-(const _zhematrix &matA, const _zgbmatrix &matB)