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314 lines (233 loc) · 6.3 KB
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#ifndef WITH_CMAKE
#include "ester-config.h"
#endif
#include "matrix.h"
using namespace std;
matrix_map_elem::operator double_map() {
double_map res;
matrix_map_elem::iterator it;
for(it=begin();it!=end();it++) {
res[it->first]=*(it->second);
}
return res;
}
matrix_map_elem &matrix_map_elem::operator=(const double_map &a) {
matrix_map_elem::iterator it;
for(it=begin();it!=end();it++) {
if (a.count(it->first))
*(it->second)=a[it->first];
}
return *this;
}
matrix_map_elem &matrix_map_elem::operator=(double a) {
matrix_map_elem::iterator it;
for(it=begin();it!=end();it++) {
*(it->second)=a;
}
return *this;
}
matrix_map_elem &matrix_map_elem::operator=(matrix_map_elem &a) {
double_map b(a);
return *this=b;
}
matrix_map_elem matrix_map::operator()(int nfil, int ncol) {
matrix_map_elem elem;
matrix_map::iterator it;
for(it=begin();it!=end();it++) {
elem[it->first]=&(it->second)(nfil,ncol);
}
return elem;
}
matrix_map_elem matrix_map::operator()(int ielem) {
matrix_map_elem elem;
matrix_map::iterator it;
for(it=begin();it!=end();it++) {
elem[it->first]=&(it->second)(ielem);
}
return elem;
}
const double_map matrix_map::operator()(int nfil, int ncol) const {
double_map elem;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++) {
elem[it->first]=(it->second)(nfil,ncol);
}
return elem;
}
const double_map matrix_map::operator()(int ielem) const {
double_map elem;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++) {
elem[it->first]=(it->second)(ielem);
}
return elem;
}
const matrix_map matrix_map::row(int irow) const {
matrix_map res;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++)
res[it->first]=(it->second).row(irow);
return res;
}
const matrix_map matrix_map::col(int icol) const {
matrix_map res;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++)
res[it->first]=(it->second).col(icol);
return res;
}
const matrix_map matrix_map::block(int irow1,int irow2,int icol1,int icol2) const {
matrix_map res;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++)
res[it->first]=(it->second).block(irow1,irow2,icol1,icol2);
return res;
}
const matrix_map matrix_map::block_step(int irow1,int irow2,int drow,int icol1,int icol2,int dcol) const {
matrix_map res;
matrix_map::const_iterator it;
for(it=begin();it!=end();it++)
res[it->first]=(it->second).block_step(irow1,irow2,drow,icol1,icol2,dcol);
return res;
}
matrix_map &matrix_map::setrow(int irow,const matrix_map &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
if (a.count(it->first))
(it->second).setrow(irow,a[it->first]);
return *this;
}
matrix_map &matrix_map::setcol(int icol,const matrix_map &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
if (a.count(it->first))
(it->second).setcol(icol,a[it->first]);
return *this;
}
matrix_map &matrix_map::setblock(int irow1,int irow2,int icol1,int icol2,const matrix_map &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
if (a.count(it->first))
(it->second).setblock(irow1,irow2,icol1,icol2,a[it->first]);
return *this;
}
matrix_map &matrix_map::setblock_step(int irow1,int irow2,int drow,int icol1,int icol2,int dcol,const matrix_map &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
if (a.count(it->first))
(it->second).setblock_step(irow1,irow2,drow,icol1,icol2,dcol,a[it->first]);
return *this;
}
matrix_map &matrix_map::setrow(int irow,const matrix &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
(it->second).setrow(irow,a);
return *this;
}
matrix_map &matrix_map::setcol(int icol,const matrix &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
(it->second).setcol(icol,a);
return *this;
}
matrix_map &matrix_map::setblock(int irow1,int irow2,int icol1,int icol2,const matrix &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
(it->second).setblock(irow1,irow2,icol1,icol2,a);
return *this;
}
matrix_map &matrix_map::setblock_step(int irow1,int irow2,int drow,int icol1,int icol2,int dcol,const matrix &a) {
matrix_map::iterator it;
for(it=begin();it!=end();it++)
(it->second).setblock_step(irow1,irow2,drow,icol1,icol2,dcol,a);
return *this;
}
matrix matrix_map::sum() {
matrix res(zeros(1,1));
matrix_map::iterator it;
for(it=begin();it!=end();it++)
res+=it->second;
return res;
}
double double_map::sum() {
double res=0;
double_map::iterator it;
for(it=begin();it!=end();it++)
res+=it->second;
return res;
}
matrix_map matrix_map::operator*(double d) const {
matrix_map::const_iterator it;
matrix_map A;
for(it=begin();it!=end();it++)
A[it->first]=(it->second)*d;
return A;
}
matrix_map matrix_map::operator*(const matrix &m) const {
matrix_map::const_iterator it;
matrix_map A;
for(it=begin();it!=end();it++)
A[it->first]=(it->second)*m;
return A;
}
matrix_map operator*(const double_map &d,const matrix &m) {
double_map::const_iterator it;
matrix_map A;
for(it=d.begin();it!=d.end();it++)
A[it->first]=(it->second)*m;
return A;
}
matrix_map &matrix_map::operator*=(const double_map &d) {
double_map::const_iterator it;
for(it=d.begin();it!=d.end();it++) {
if(count(it->first)) {
(*this)[it->first]*=(it->second);
}
}
return *this;
}
matrix_map &matrix_map::operator/=(const double_map &d) {
double_map::const_iterator it;
for(it=d.begin();it!=d.end();it++) {
if(count(it->first)) {
(*this)[it->first]/=(it->second);
}
}
return *this;
}
matrix_map &matrix_map::operator+=(const matrix_map &m) {
matrix_map::const_iterator it;
for(it=m.begin();it!=m.end();it++) {
if(count(it->first)) {
(*this)[it->first]+=(it->second);
}
}
return *this;
}
matrix_map &matrix_map::operator-=(const matrix_map &m) {
matrix_map::const_iterator it;
for(it=m.begin();it!=m.end();it++) {
if(count(it->first)) {
(*this)[it->first]-=(it->second);
}
}
return *this;
}
matrix_map &matrix_map::operator*=(const matrix_map &m) {
matrix_map::const_iterator it;
for(it=m.begin();it!=m.end();it++) {
if(count(it->first)) {
(*this)[it->first]*=(it->second);
}
}
return *this;
}
matrix_map &matrix_map::operator/=(const matrix_map &m) {
matrix_map::const_iterator it;
for(it=m.begin();it!=m.end();it++) {
if(count(it->first)) {
(*this)[it->first]/=(it->second);
}
}
return *this;
}