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							145 lines
						
					
					
						
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							145 lines
						
					
					
						
							3.5 KiB
						
					
					
				
								// This file is part of Eigen, a lightweight C++ template library
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								// for linear algebra.
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								//
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								// Copyright (C) 2009-2010 Gael Guennebaud <gael.guennebaud@inria.fr>
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								//
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								// This Source Code Form is subject to the terms of the Mozilla
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								// Public License v. 2.0. If a copy of the MPL was not distributed
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								// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
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								#ifndef EIGEN_BLAS_COMMON_H
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								#define EIGEN_BLAS_COMMON_H
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								#include <Eigen/Core>
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								#include <Eigen/Jacobi>
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								#include <iostream>
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								#include <complex>
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								#ifndef SCALAR
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								#error the token SCALAR must be defined to compile this file
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								#endif
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								#include <Eigen/src/misc/blas.h>
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								#define NOTR    0
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								#define TR      1
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								#define ADJ     2
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								#define LEFT    0
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								#define RIGHT   1
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								#define UP      0
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								#define LO      1
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								#define NUNIT   0
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								#define UNIT    1
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								#define INVALID 0xff
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								#define OP(X)   (   ((X)=='N' || (X)=='n') ? NOTR   \
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								                  : ((X)=='T' || (X)=='t') ? TR     \
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								                  : ((X)=='C' || (X)=='c') ? ADJ    \
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								                  : INVALID)
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								#define SIDE(X) (   ((X)=='L' || (X)=='l') ? LEFT   \
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								                  : ((X)=='R' || (X)=='r') ? RIGHT  \
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								                  : INVALID)
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								#define UPLO(X) (   ((X)=='U' || (X)=='u') ? UP     \
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								                  : ((X)=='L' || (X)=='l') ? LO     \
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								                  : INVALID)
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								#define DIAG(X) (   ((X)=='N' || (X)=='n') ? NUNIT  \
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								                  : ((X)=='U' || (X)=='u') ? UNIT   \
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								                  : INVALID)
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								inline bool check_op(const char* op)
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								{
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								  return OP(*op)!=0xff;
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								}
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								inline bool check_side(const char* side)
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								{
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								  return SIDE(*side)!=0xff;
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								}
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								inline bool check_uplo(const char* uplo)
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								{
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								  return UPLO(*uplo)!=0xff;
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								}
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								namespace Eigen {
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								#include "BandTriangularSolver.h"
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								#include "GeneralRank1Update.h"
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								#include "PackedSelfadjointProduct.h"
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								#include "PackedTriangularMatrixVector.h"
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								#include "PackedTriangularSolverVector.h"
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								#include "Rank2Update.h"
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								}
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								using namespace Eigen;
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								typedef SCALAR Scalar;
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								typedef NumTraits<Scalar>::Real RealScalar;
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								typedef std::complex<RealScalar> Complex;
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								enum
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								{
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								  IsComplex = Eigen::NumTraits<SCALAR>::IsComplex,
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								  Conj = IsComplex
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								};
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								typedef Matrix<Scalar,Dynamic,Dynamic,ColMajor> PlainMatrixType;
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								typedef Map<Matrix<Scalar,Dynamic,Dynamic,ColMajor>, 0, OuterStride<> > MatrixType;
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								typedef Map<Matrix<Scalar,Dynamic,1>, 0, InnerStride<Dynamic> > StridedVectorType;
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								typedef Map<Matrix<Scalar,Dynamic,1> > CompactVectorType;
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								template<typename T>
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								Map<Matrix<T,Dynamic,Dynamic,ColMajor>, 0, OuterStride<> >
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								matrix(T* data, int rows, int cols, int stride)
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								{
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								  return Map<Matrix<T,Dynamic,Dynamic,ColMajor>, 0, OuterStride<> >(data, rows, cols, OuterStride<>(stride));
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								}
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								template<typename T>
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								Map<Matrix<T,Dynamic,1>, 0, InnerStride<Dynamic> > vector(T* data, int size, int incr)
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								{
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								  return Map<Matrix<T,Dynamic,1>, 0, InnerStride<Dynamic> >(data, size, InnerStride<Dynamic>(incr));
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								}
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								template<typename T>
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								Map<Matrix<T,Dynamic,1> > vector(T* data, int size)
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								{
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								  return Map<Matrix<T,Dynamic,1> >(data, size);
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								}
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								template<typename T>
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								T* get_compact_vector(T* x, int n, int incx)
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								{
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								  if(incx==1)
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								    return x;
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								  T* ret = new Scalar[n];
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								  if(incx<0) vector(ret,n) = vector(x,n,-incx).reverse();
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								  else       vector(ret,n) = vector(x,n, incx);
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								  return ret;
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								}
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								template<typename T>
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								T* copy_back(T* x_cpy, T* x, int n, int incx)
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								{
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								  if(x_cpy==x)
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								    return 0;
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								  if(incx<0) vector(x,n,-incx).reverse() = vector(x_cpy,n);
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								  else       vector(x,n, incx)           = vector(x_cpy,n);
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								  return x_cpy;
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								}
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								#define EIGEN_BLAS_FUNC(X) EIGEN_CAT(SCALAR_SUFFIX,X##_)
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								#endif // EIGEN_BLAS_COMMON_H
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