11 #ifndef EIGEN_SPARSE_MARKET_IO_H
12 #define EIGEN_SPARSE_MARKET_IO_H
20 template <
typename Scalar>
21 inline bool GetMarketLine (std::stringstream& line,
int& M,
int& N,
int& i,
int& j, Scalar& value)
23 line >> i >> j >> value;
26 if(i>=0 && j>=0 && i<M && j<N)
33 template <
typename Scalar>
34 inline bool GetMarketLine (std::stringstream& line,
int& M,
int& N,
int& i,
int& j, std::complex<Scalar>& value)
37 line >> i >> j >> valR >> valI;
40 if(i>=0 && j>=0 && i<M && j<N)
42 value = std::complex<Scalar>(valR, valI);
49 template <
typename RealScalar>
50 inline void GetVectorElt (
const std::string& line, RealScalar& val)
52 std::istringstream newline(line);
56 template <
typename RealScalar>
57 inline void GetVectorElt (
const std::string& line, std::complex<RealScalar>& val)
59 RealScalar valR, valI;
60 std::istringstream newline(line);
61 newline >> valR >> valI;
62 val = std::complex<RealScalar>(valR, valI);
65 template<
typename Scalar>
66 inline void putMarketHeader(std::string& header,
int sym)
68 header=
"%%MatrixMarket matrix coordinate ";
69 if(internal::is_same<Scalar, std::complex<float> >::value || internal::is_same<Scalar, std::complex<double> >::value)
72 if(sym == Symmetric) header +=
" symmetric";
73 else if (sym == SelfAdjoint) header +=
" Hermitian";
74 else header +=
" general";
79 if(sym == Symmetric) header +=
" symmetric";
80 else header +=
" general";
84 template<
typename Scalar>
85 inline void PutMatrixElt(Scalar value,
int row,
int col, std::ofstream& out)
87 out << row <<
" "<< col <<
" " << value <<
"\n";
89 template<
typename Scalar>
90 inline void PutMatrixElt(std::complex<Scalar> value,
int row,
int col, std::ofstream& out)
92 out << row <<
" " << col <<
" " << value.real() <<
" " << value.imag() <<
"\n";
96 template<
typename Scalar>
97 inline void putVectorElt(Scalar value, std::ofstream& out)
101 template<
typename Scalar>
102 inline void putVectorElt(std::complex<Scalar> value, std::ofstream& out)
104 out << value.real <<
" " << value.imag()<<
"\n";
109 inline bool getMarketHeader(
const std::string& filename,
int& sym,
bool& iscomplex,
bool& isvector)
113 std::ifstream in(filename.c_str(),std::ios::in);
119 std::getline(in, line); eigen_assert(in.good());
121 std::stringstream fmtline(line);
122 std::string substr[5];
123 fmtline>> substr[0] >> substr[1] >> substr[2] >> substr[3] >> substr[4];
124 if(substr[2].compare(
"array") == 0) isvector =
true;
125 if(substr[3].compare(
"complex") == 0) iscomplex =
true;
126 if(substr[4].compare(
"symmetric") == 0) sym = Symmetric;
127 else if (substr[4].compare(
"Hermitian") == 0) sym = SelfAdjoint;
132 template<
typename SparseMatrixType>
133 bool loadMarket(SparseMatrixType& mat,
const std::string& filename)
135 typedef typename SparseMatrixType::Scalar Scalar;
136 std::ifstream input(filename.c_str(),std::ios::in);
140 const int maxBuffersize = 2048;
141 char buffer[maxBuffersize];
143 bool readsizes =
false;
145 typedef Triplet<Scalar,int> T;
146 std::vector<T> elements;
148 int M(-1), N(-1), NNZ(-1);
150 while(input.getline(buffer, maxBuffersize))
157 std::stringstream line(buffer);
161 line >> M >> N >> NNZ;
162 if(M > 0 && N > 0 && NNZ > 0)
165 std::cout <<
"sizes: " << M <<
"," << N <<
"," << NNZ <<
"\n";
174 if( internal::GetMarketLine(line, M, N, i, j, value) )
177 elements.push_back(T(i,j,value));
180 std::cerr <<
"Invalid read: " << i <<
"," << j <<
"\n";
183 mat.setFromTriplets(elements.begin(), elements.end());
185 std::cerr << count <<
"!=" << NNZ <<
"\n";
191 template<
typename VectorType>
192 bool loadMarketVector(VectorType& vec,
const std::string& filename)
194 typedef typename VectorType::Scalar Scalar;
195 std::ifstream in(filename.c_str(), std::ios::in);
203 std::getline(in, line); eigen_assert(in.good());
204 }
while (line[0] ==
'%');
205 std::istringstream newline(line);
207 eigen_assert(n>0 && col>0);
211 while ( std::getline(in, line) && (i < n) ){
212 internal::GetVectorElt(line, value);
217 std::cerr<<
"Unable to read all elements from file " << filename <<
"\n";
223 template<
typename SparseMatrixType>
224 bool saveMarket(
const SparseMatrixType& mat,
const std::string& filename,
int sym = 0)
226 typedef typename SparseMatrixType::Scalar Scalar;
227 std::ofstream out(filename.c_str(),std::ios::out);
231 out.flags(std::ios_base::scientific);
234 internal::putMarketHeader<Scalar>(header, sym);
235 out << header << std::endl;
236 out << mat.rows() <<
" " << mat.cols() <<
" " << mat.nonZeros() <<
"\n";
238 for(
int j=0; j<mat.outerSize(); ++j)
239 for(
typename SparseMatrixType::InnerIterator it(mat,j); it; ++it)
242 internal::PutMatrixElt(it.value(), it.row()+1, it.col()+1, out);
249 template<
typename VectorType>
250 bool saveMarketVector (
const VectorType& vec,
const std::string& filename)
252 typedef typename VectorType::Scalar Scalar;
253 std::ofstream out(filename.c_str(),std::ios::out);
257 out.flags(std::ios_base::scientific);
259 if(internal::is_same<Scalar, std::complex<float> >::value || internal::is_same<Scalar, std::complex<double> >::value)
260 out <<
"%%MatrixMarket matrix array complex general\n";
262 out <<
"%%MatrixMarket matrix array real general\n";
263 out << vec.size() <<
" "<< 1 <<
"\n";
264 for (
int i=0; i < vec.size(); i++){
265 internal::putVectorElt(vec(i), out);
273 #endif // EIGEN_SPARSE_MARKET_IO_H