// This file is part of Eigen, a lightweight C++ template library // for linear algebra. // // Copyright (C) 2009-2010 Gael Guennebaud // // Eigen is free software; you can redistribute it and/or // modify it under the terms of the GNU Lesser General Public // License as published by the Free Software Foundation; either // version 3 of the License, or (at your option) any later version. // // Alternatively, you can redistribute it and/or // modify it under the terms of the GNU General Public License as // published by the Free Software Foundation; either version 2 of // the License, or (at your option) any later version. // // Eigen is distributed in the hope that it will be useful, but WITHOUT ANY // WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS // FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License or the // GNU General Public License for more details. // // You should have received a copy of the GNU Lesser General Public // License and a copy of the GNU General Public License along with // Eigen. If not, see . #ifndef EIGEN_BLAS_COMMON_H #define EIGEN_BLAS_COMMON_H #include #include #ifndef SCALAR #error the token SCALAR must be defined to compile this file #endif #ifdef __cplusplus extern "C" { #endif #include "../bench/btl/libs/C_BLAS/blas.h" #ifdef __cplusplus } #endif #define NOTR 0 #define TR 1 #define ADJ 2 #define LEFT 0 #define RIGHT 1 #define UP 0 #define LO 1 #define NUNIT 0 #define UNIT 1 #define INVALID 0xff #define OP(X) ( ((X)=='N' || (X)=='n') ? NOTR \ : ((X)=='T' || (X)=='t') ? TR \ : ((X)=='C' || (X)=='c') ? ADJ \ : INVALID) #define SIDE(X) ( ((X)=='L' || (X)=='l') ? LEFT \ : ((X)=='R' || (X)=='r') ? RIGHT \ : INVALID) #define UPLO(X) ( ((X)=='U' || (X)=='u') ? UP \ : ((X)=='L' || (X)=='l') ? LO \ : INVALID) #define DIAG(X) ( ((X)=='N' || (X)=='N') ? NUNIT \ : ((X)=='U' || (X)=='u') ? UNIT \ : INVALID) inline bool check_op(const char* op) { return OP(*op)!=0xff; } inline bool check_side(const char* side) { return SIDE(*side)!=0xff; } inline bool check_uplo(const char* uplo) { return UPLO(*uplo)!=0xff; } #include #include using namespace Eigen; typedef SCALAR Scalar; typedef NumTraits::Real RealScalar; typedef std::complex Complex; enum { IsComplex = Eigen::NumTraits::IsComplex, Conj = IsComplex }; typedef Map, 0, OuterStride<> > MatrixType; typedef Map, 0, InnerStride > StridedVectorType; typedef Map > CompactVectorType; template Map, 0, OuterStride<> > matrix(T* data, int rows, int cols, int stride) { return Map, 0, OuterStride<> >(data, rows, cols, OuterStride<>(stride)); } template Map, 0, InnerStride > vector(T* data, int size, int incr) { return Map, 0, InnerStride >(data, size, InnerStride(incr)); } template Map > vector(T* data, int size) { return Map >(data, size); } template T* get_compact_vector(T* x, int n, int incx) { if(incx==1) return x; T* ret = new Scalar[n]; if(incx<0) vector(ret,n) = vector(x,n,-incx).reverse(); else vector(ret,n) = vector(x,n, incx); return ret; } template T* copy_back(T* x_cpy, T* x, int n, int incx) { if(x_cpy==x) return 0; if(incx<0) vector(x,n,-incx).reverse() = vector(x_cpy,n); else vector(x,n, incx) = vector(x_cpy,n); return x_cpy; } #define EIGEN_BLAS_FUNC(X) EIGEN_CAT(SCALAR_SUFFIX,X##_) #endif // EIGEN_BLAS_COMMON_H