forked from M-Labs/nalgebra
Formatting
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@ -16,8 +16,8 @@ use crate::base::dimension::{
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use crate::base::iter::{MatrixIter, MatrixIterMut};
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use crate::base::iter::{MatrixIter, MatrixIterMut};
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use crate::base::storage::{IsContiguous, RawStorage, RawStorageMut};
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use crate::base::storage::{IsContiguous, RawStorage, RawStorageMut};
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use crate::base::{
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use crate::base::{
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ArrayStorage, DVectorView, DVectorViewMut, DefaultAllocator, Matrix, MatrixView,
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ArrayStorage, DVectorView, DVectorViewMut, DefaultAllocator, Matrix, MatrixView, MatrixViewMut,
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MatrixViewMut, OMatrix, Scalar,
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OMatrix, Scalar,
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};
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};
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#[cfg(any(feature = "std", feature = "alloc"))]
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#[cfg(any(feature = "std", feature = "alloc"))]
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use crate::base::{DVector, RowDVector, VecStorage};
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use crate::base::{DVector, RowDVector, VecStorage};
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@ -380,10 +380,8 @@ where
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RStride: Dim,
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RStride: Dim,
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CStride: Dim,
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CStride: Dim,
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S: RawStorage<T, R, C>,
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S: RawStorage<T, R, C>,
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ShapeConstraint: DimEq<R, RView>
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ShapeConstraint:
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+ DimEq<C, CView>
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DimEq<R, RView> + DimEq<C, CView> + DimEq<RStride, S::RStride> + DimEq<CStride, S::CStride>,
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+ DimEq<RStride, S::RStride>
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+ DimEq<CStride, S::CStride>,
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{
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{
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fn from(m: &'a Matrix<T, R, C, S>) -> Self {
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fn from(m: &'a Matrix<T, R, C, S>) -> Self {
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let (row, col) = m.shape_generic();
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let (row, col) = m.shape_generic();
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@ -416,10 +414,8 @@ where
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RStride: Dim,
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RStride: Dim,
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CStride: Dim,
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CStride: Dim,
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S: RawStorage<T, R, C>,
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S: RawStorage<T, R, C>,
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ShapeConstraint: DimEq<R, RView>
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ShapeConstraint:
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+ DimEq<C, CView>
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DimEq<R, RView> + DimEq<C, CView> + DimEq<RStride, S::RStride> + DimEq<CStride, S::CStride>,
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+ DimEq<RStride, S::RStride>
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+ DimEq<CStride, S::CStride>,
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{
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{
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fn from(m: &'a mut Matrix<T, R, C, S>) -> Self {
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fn from(m: &'a mut Matrix<T, R, C, S>) -> Self {
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let (row, col) = m.shape_generic();
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let (row, col) = m.shape_generic();
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@ -452,10 +448,8 @@ where
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RStride: Dim,
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RStride: Dim,
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CStride: Dim,
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CStride: Dim,
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S: RawStorageMut<T, R, C>,
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S: RawStorageMut<T, R, C>,
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ShapeConstraint: DimEq<R, RView>
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ShapeConstraint:
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+ DimEq<C, CView>
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DimEq<R, RView> + DimEq<C, CView> + DimEq<RStride, S::RStride> + DimEq<CStride, S::CStride>,
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+ DimEq<RStride, S::RStride>
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+ DimEq<CStride, S::CStride>,
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{
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{
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fn from(m: &'a mut Matrix<T, R, C, S>) -> Self {
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fn from(m: &'a mut Matrix<T, R, C, S>) -> Self {
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let (row, col) = m.shape_generic();
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let (row, col) = m.shape_generic();
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@ -1122,13 +1122,18 @@ where
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/// let dynamic_view: DMatrixSlice<f64> = matrix.as_view();
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/// let dynamic_view: DMatrixSlice<f64> = matrix.as_view();
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/// let static_view_from_dyn: SMatrixView<f64, 3, 3> = dynamic_view.as_view();
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/// let static_view_from_dyn: SMatrixView<f64, 3, 3> = dynamic_view.as_view();
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/// ```
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/// ```
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pub fn as_view<RView, CView, RViewStride, CViewStride>(&self) -> MatrixView<'_, T, RView, CView, RViewStride, CViewStride>
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pub fn as_view<RView, CView, RViewStride, CViewStride>(
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&self,
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) -> MatrixView<'_, T, RView, CView, RViewStride, CViewStride>
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where
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where
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RView: Dim,
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RView: Dim,
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CView: Dim,
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CView: Dim,
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RViewStride: Dim,
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RViewStride: Dim,
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CViewStride: Dim,
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CViewStride: Dim,
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ShapeConstraint: DimEq<R, RView> + DimEq<C, CView> + DimEq<RViewStride, S::RStride> + DimEq<CViewStride, S::CStride>
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ShapeConstraint: DimEq<R, RView>
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+ DimEq<C, CView>
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+ DimEq<RViewStride, S::RStride>
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+ DimEq<CViewStride, S::CStride>,
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{
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{
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// Defer to (&matrix).into()
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// Defer to (&matrix).into()
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self.into()
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self.into()
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@ -1164,13 +1169,18 @@ where
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/// let mut dynamic_view: DMatrixViewMut<f64> = matrix.as_view_mut();
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/// let mut dynamic_view: DMatrixViewMut<f64> = matrix.as_view_mut();
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/// let static_view_from_dyn: SMatrixViewMut<f64, 3, 3> = dynamic_view.as_view_mut();
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/// let static_view_from_dyn: SMatrixViewMut<f64, 3, 3> = dynamic_view.as_view_mut();
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/// ```
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/// ```
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pub fn as_view_mut<RView, CView, RViewStride, CViewStride>(&mut self) -> MatrixViewMut<'_, T, RView, CView, RViewStride, CViewStride>
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pub fn as_view_mut<RView, CView, RViewStride, CViewStride>(
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&mut self,
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) -> MatrixViewMut<'_, T, RView, CView, RViewStride, CViewStride>
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where
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where
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RView: Dim,
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RView: Dim,
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CView: Dim,
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CView: Dim,
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RViewStride: Dim,
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RViewStride: Dim,
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CViewStride: Dim,
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CViewStride: Dim,
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ShapeConstraint: DimEq<R, RView> + DimEq<C, CView> + DimEq<RViewStride, S::RStride> + DimEq<CViewStride, S::CStride>
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ShapeConstraint: DimEq<R, RView>
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+ DimEq<C, CView>
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+ DimEq<RViewStride, S::RStride>
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+ DimEq<CViewStride, S::CStride>,
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{
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{
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// Defer to (&mut matrix).into()
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// Defer to (&mut matrix).into()
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self.into()
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self.into()
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@ -211,10 +211,12 @@ where
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{
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{
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let mut work = work.rows_mut(0, end + 1);
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let mut work = work.rows_mut(0, end + 1);
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refl.reflect(&mut t.generic_view_mut(
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refl.reflect(
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&mut t.generic_view_mut(
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(m, m),
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(m, m),
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(Const::<2>, Dynamic::new(dim.value() - m)),
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(Const::<2>, Dynamic::new(dim.value() - m)),
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));
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),
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);
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refl.reflect_rows(
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refl.reflect_rows(
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&mut t.generic_view_mut((0, m), (Dynamic::new(end + 1), Const::<2>)),
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&mut t.generic_view_mut((0, m), (Dynamic::new(end + 1), Const::<2>)),
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&mut work,
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&mut work,
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@ -222,10 +224,7 @@ where
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}
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}
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if let Some(ref mut q) = q {
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if let Some(ref mut q) = q {
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refl.reflect_rows(
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refl.reflect_rows(&mut q.generic_view_mut((0, m), (dim, Const::<2>)), work);
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&mut q.generic_view_mut((0, m), (dim, Const::<2>)),
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work,
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);
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}
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}
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}
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}
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} else {
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} else {
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@ -3,8 +3,8 @@
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use na::{
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use na::{
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DMatrix, DMatrixView, DMatrixViewMut, Matrix2, Matrix2x3, Matrix2x4, Matrix2x6, Matrix3,
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DMatrix, DMatrixView, DMatrixViewMut, Matrix2, Matrix2x3, Matrix2x4, Matrix2x6, Matrix3,
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Matrix3x2, Matrix3x4, Matrix4x2, Matrix6x2, MatrixView2, MatrixView2x3, MatrixView2xX,
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Matrix3x2, Matrix3x4, Matrix4x2, Matrix6x2, MatrixView2, MatrixView2x3, MatrixView2xX,
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MatrixView3, MatrixView3x2, MatrixViewMut2, MatrixViewMut2x3, MatrixViewMut2xX,
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MatrixView3, MatrixView3x2, MatrixViewMut2, MatrixViewMut2x3, MatrixViewMut2xX, MatrixViewMut3,
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MatrixViewMut3, MatrixViewMut3x2, MatrixViewMutXx3, MatrixViewXx3, RowVector4, Vector3,
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MatrixViewMut3x2, MatrixViewMutXx3, MatrixViewXx3, RowVector4, Vector3,
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};
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};
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#[test]
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#[test]
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