split the coeffs accessors/mutators into a separate Coeffs.h file

This commit is contained in:
Benoit Jacob
2007-12-18 16:02:14 +00:00
parent 3380429e3a
commit 8bb98a80b4
4 changed files with 148 additions and 53 deletions

View File

@@ -139,62 +139,26 @@ template<typename Scalar, typename Derived> class MatrixBase
Derived& operator/=(const std::complex<float>& other);
Derived& operator/=(const std::complex<double>& other);
Scalar coeff(int row, int col, AssertLevel assertLevel = InternalDebugging) const
{
eigen_assert(assertLevel, row >= 0 && row < rows()
&& col >= 0 && col < cols());
return static_cast<const Derived *>(this)->_coeff(row, col);
}
Scalar operator()(int row, int col) const { return coeff(row, col, UserDebugging); }
Scalar coeff(int row, int col, AssertLevel assertLevel) const;
Scalar operator()(int row, int col) const;
Scalar& coeffRef(int row, int col, AssertLevel assertLevel = InternalDebugging)
{
eigen_assert(assertLevel, row >= 0 && row < rows()
&& col >= 0 && col < cols());
return static_cast<Derived *>(this)->_coeffRef(row, col);
}
Scalar& operator()(int row, int col) { return coeffRef(row, col, UserDebugging); }
Scalar& coeffRef(int row, int col, AssertLevel assertLevel);
Scalar& operator()(int row, int col);
Scalar coeff(int index, AssertLevel assertLevel = InternalDebugging) const
{
eigen_assert(assertLevel, IsVector);
if(RowsAtCompileTime == 1)
{
eigen_assert(assertLevel, index >= 0 && index < cols());
return coeff(0, index);
}
else
{
eigen_assert(assertLevel, index >= 0 && index < rows());
return coeff(index, 0);
}
}
Scalar operator[](int index) const { return coeff(index, UserDebugging); }
Scalar coeff(int index, AssertLevel assertLevel) const;
Scalar operator[](int index) const;
Scalar& coeffRef(int index, AssertLevel assertLevel = InternalDebugging)
{
eigen_assert(assertLevel, IsVector);
if(RowsAtCompileTime == 1)
{
eigen_assert(assertLevel, index >= 0 && index < cols());
return coeffRef(0, index);
}
else
{
eigen_assert(assertLevel, index >= 0 && index < rows());
return coeffRef(index, 0);
}
}
Scalar& operator[](int index) { return coeffRef(index, UserDebugging); }
Scalar& coeffRef(int index, AssertLevel assertLevel);
Scalar& operator[](int index);
Scalar x() const { return coeff(0, UserDebugging); }
Scalar y() const { return coeff(1, UserDebugging); }
Scalar z() const { return coeff(2, UserDebugging); }
Scalar w() const { return coeff(3, UserDebugging); }
Scalar& x() { return coeffRef(0, UserDebugging); }
Scalar& y() { return coeffRef(1, UserDebugging); }
Scalar& z() { return coeffRef(2, UserDebugging); }
Scalar& w() { return coeffRef(3, UserDebugging); }
Scalar x() const;
Scalar y() const;
Scalar z() const;
Scalar w() const;
Scalar& x();
Scalar& y();
Scalar& z();
Scalar& w();
Eval<Derived> eval() const EIGEN_ALWAYS_INLINE;
};