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eigen/Eigen/src/Core/OperatorEquals.h

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// This file is part of Eigen, a lightweight C++ template library
// for linear algebra. Eigen itself is part of the KDE project.
//
// Copyright (C) 2007 Michael Olbrich <michael.olbrich@gmx.net>
// Copyright (C) 2006-2008 Benoit Jacob <jacob@math.jussieu.fr>
//
// Eigen is free software; 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 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 General Public License for more
// details.
//
// You should have received a copy of the GNU General Public License along
// with Eigen; if not, write to the Free Software Foundation, Inc., 51
// Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
//
// As a special exception, if other files instantiate templates or use macros
// or functions from this file, or you compile this file and link it
// with other works to produce a work based on this file, this file does not
// by itself cause the resulting work to be covered by the GNU General Public
// License. This exception does not invalidate any other reasons why a work
// based on this file might be covered by the GNU General Public License.
#ifndef EIGEN_OPERATOREQUALS_H
#define EIGEN_OPERATOREQUALS_H
template<typename Derived1, typename Derived2, int UnrollCount>
struct MatrixOperatorEqualsUnroller
{
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enum {
col = (UnrollCount-1) / Derived1::Traits::RowsAtCompileTime,
row = (UnrollCount-1) % Derived1::Traits::RowsAtCompileTime
};
static void run(Derived1 &dst, const Derived2 &src)
{
MatrixOperatorEqualsUnroller<Derived1, Derived2, UnrollCount-1>::run(dst, src);
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dst.coeffRef(row, col) = src.coeff(row, col);
}
};
template<typename Derived1, typename Derived2>
struct MatrixOperatorEqualsUnroller<Derived1, Derived2, 1>
{
static void run(Derived1 &dst, const Derived2 &src)
{
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dst.coeffRef(0, 0) = src.coeff(0, 0);
}
};
// prevent buggy user code from causing an infinite recursion
template<typename Derived1, typename Derived2>
struct MatrixOperatorEqualsUnroller<Derived1, Derived2, 0>
{
static void run(Derived1 &, const Derived2 &) {}
};
template<typename Derived1, typename Derived2>
struct MatrixOperatorEqualsUnroller<Derived1, Derived2, Dynamic>
{
static void run(Derived1 &, const Derived2 &) {}
};
template<typename Derived1, typename Derived2, int UnrollCount>
struct VectorOperatorEqualsUnroller
{
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enum { index = UnrollCount - 1 };
static void run(Derived1 &dst, const Derived2 &src)
{
VectorOperatorEqualsUnroller<Derived1, Derived2, UnrollCount-1>::run(dst, src);
dst.coeffRef(index) = src.coeff(index);
}
};
// prevent buggy user code from causing an infinite recursion
template<typename Derived1, typename Derived2>
struct VectorOperatorEqualsUnroller<Derived1, Derived2, 0>
{
static void run(Derived1 &, const Derived2 &) {}
};
template<typename Derived1, typename Derived2>
struct VectorOperatorEqualsUnroller<Derived1, Derived2, 1>
{
static void run(Derived1 &dst, const Derived2 &src)
{
dst.coeffRef(0) = src.coeff(0);
}
};
template<typename Derived1, typename Derived2>
struct VectorOperatorEqualsUnroller<Derived1, Derived2, Dynamic>
{
static void run(Derived1 &, const Derived2 &) {}
};
template<typename Scalar, typename Derived>
template<typename OtherDerived>
Derived& MatrixBase<Scalar, Derived>
::operator=(const MatrixBase<Scalar, OtherDerived>& other)
{
if(Traits::IsVectorAtCompileTime && OtherDerived::Traits::IsVectorAtCompileTime)
// copying a vector expression into a vector
{
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assert(coeffs() == other.coeffs());
if(EIGEN_UNROLLED_LOOPS && Traits::SizeAtCompileTime != Dynamic && Traits::SizeAtCompileTime <= 25)
VectorOperatorEqualsUnroller
<Derived, OtherDerived, Traits::SizeAtCompileTime>::run
(*static_cast<Derived*>(this), *static_cast<const OtherDerived*>(&other));
else
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for(int i = 0; i < coeffs(); i++)
coeffRef(i) = other.coeff(i);
return *static_cast<Derived*>(this);
}
else // copying a matrix expression into a matrix
{
assert(rows() == other.rows() && cols() == other.cols());
if(EIGEN_UNROLLED_LOOPS && Traits::SizeAtCompileTime != Dynamic && Traits::SizeAtCompileTime <= 25)
MatrixOperatorEqualsUnroller
<Derived, OtherDerived, Traits::SizeAtCompileTime>::run
(*static_cast<Derived*>(this), *static_cast<const OtherDerived*>(&other));
else
for(int j = 0; j < cols(); j++)
for(int i = 0; i < rows(); i++)
coeffRef(i, j) = other.coeff(i, j);
return *static_cast<Derived*>(this);
}
}
#endif // EIGEN_OPERATOREQUALS_H