Add Transform × UnitComplex & friends
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@ -12,7 +12,7 @@ use crate::base::{Const, DefaultAllocator, OMatrix, SVector, Scalar};
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use crate::geometry::{
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use crate::geometry::{
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Isometry, Point, Rotation, Similarity, SubTCategoryOf, SuperTCategoryOf, TAffine, TCategory,
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Isometry, Point, Rotation, Similarity, SubTCategoryOf, SuperTCategoryOf, TAffine, TCategory,
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TCategoryMul, TGeneral, TProjective, Transform, Translation, UnitQuaternion,
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TCategoryMul, TGeneral, TProjective, Transform, Translation, UnitComplex, UnitQuaternion,
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};
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};
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/*
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/*
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@ -30,7 +30,7 @@ use crate::geometry::{
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* Transform × Similarity
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* Transform × Similarity
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* Transform × Transform
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* Transform × Transform
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* Transform × UnitQuaternion
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* Transform × UnitQuaternion
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* TODO: Transform × UnitComplex
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* Transform × UnitComplex
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* Transform × Translation
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* Transform × Translation
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* Transform × Vector
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* Transform × Vector
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* Transform × Point
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* Transform × Point
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@ -40,7 +40,7 @@ use crate::geometry::{
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* Similarity × Transform
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* Similarity × Transform
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* Translation × Transform
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* Translation × Transform
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* UnitQuaternion × Transform
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* UnitQuaternion × Transform
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* TODO: UnitComplex × Transform
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* UnitComplex × Transform
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*
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*
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* TODO: Transform ÷ Isometry
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* TODO: Transform ÷ Isometry
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* Transform ÷ Rotation
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* Transform ÷ Rotation
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@ -65,7 +65,7 @@ use crate::geometry::{
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* Transform ×= Isometry
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* Transform ×= Isometry
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* Transform ×= Rotation
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* Transform ×= Rotation
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* Transform ×= UnitQuaternion
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* Transform ×= UnitQuaternion
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* TODO: Transform ×= UnitComplex
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* Transform ×= UnitComplex
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* Transform ×= Translation
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* Transform ×= Translation
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*
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*
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* Transform ÷= Transform
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* Transform ÷= Transform
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@ -73,7 +73,7 @@ use crate::geometry::{
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* TODO: Transform ÷= Isometry
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* TODO: Transform ÷= Isometry
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* Transform ÷= Rotation
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* Transform ÷= Rotation
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* Transform ÷= UnitQuaternion
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* Transform ÷= UnitQuaternion
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* TODO: Transform ÷= UnitComplex
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* Transform ÷= UnitComplex
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*
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*
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*/
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*/
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@ -225,6 +225,20 @@ md_impl_all!(
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[ref ref] => Self::Output::from_matrix_unchecked(self.matrix() * rhs.to_homogeneous());
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[ref ref] => Self::Output::from_matrix_unchecked(self.matrix() * rhs.to_homogeneous());
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);
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);
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// Transform × UnitComplex
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md_impl_all!(
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Mul, mul where T: RealField;
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(U3, U3), (U2, U1)
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const;
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for C;
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where C: TCategoryMul<TAffine>;
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self: Transform<T, C, 2>, rhs: UnitComplex<T>, Output = Transform<T, C::Representative, 2>;
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[val val] => Self::Output::from_matrix_unchecked(self.into_inner() * rhs.to_homogeneous());
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[ref val] => Self::Output::from_matrix_unchecked(self.matrix() * rhs.to_homogeneous());
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[val ref] => Self::Output::from_matrix_unchecked(self.into_inner() * rhs.to_homogeneous());
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[ref ref] => Self::Output::from_matrix_unchecked(self.matrix() * rhs.to_homogeneous());
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);
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// UnitQuaternion × Transform
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// UnitQuaternion × Transform
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md_impl_all!(
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md_impl_all!(
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Mul, mul where T: RealField;
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Mul, mul where T: RealField;
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@ -239,6 +253,20 @@ md_impl_all!(
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[ref ref] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.matrix());
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[ref ref] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.matrix());
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);
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);
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// UnitComplex × Transform
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md_impl_all!(
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Mul, mul where T: RealField;
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(U2, U1), (U3, U3)
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const;
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for C;
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where C: TCategoryMul<TAffine>;
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self: UnitComplex<T>, rhs: Transform<T, C, 2>, Output = Transform<T, C::Representative, 2>;
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[val val] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.into_inner());
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[ref val] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.into_inner());
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[val ref] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.matrix());
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[ref ref] => Self::Output::from_matrix_unchecked(self.to_homogeneous() * rhs.matrix());
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);
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// Transform × Isometry
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// Transform × Isometry
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md_impl_all!(
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md_impl_all!(
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Mul, mul where T: RealField;
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Mul, mul where T: RealField;
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@ -579,6 +607,18 @@ md_assign_impl_all!(
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[ref] => *self.matrix_mut_unchecked() *= rhs.to_homogeneous();
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[ref] => *self.matrix_mut_unchecked() *= rhs.to_homogeneous();
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);
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);
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// Transform ×= UnitComplex
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md_assign_impl_all!(
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MulAssign, mul_assign where T: RealField;
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(U3, U3), (U2, U1)
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const;
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for C;
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where C: TCategory;
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self: Transform<T, C, 2>, rhs: UnitComplex<T>;
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[val] => *self.matrix_mut_unchecked() *= rhs.to_homogeneous();
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[ref] => *self.matrix_mut_unchecked() *= rhs.to_homogeneous();
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);
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// Transform ÷= Transform
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// Transform ÷= Transform
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md_assign_impl_all!(
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md_assign_impl_all!(
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DivAssign, div_assign where T: RealField;
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DivAssign, div_assign where T: RealField;
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@ -650,3 +690,15 @@ md_assign_impl_all!(
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[val] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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[val] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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[ref] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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[ref] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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);
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);
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// Transform ÷= UnitComplex
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md_assign_impl_all!(
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DivAssign, div_assign where T: RealField;
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(U3, U3), (U2, U1)
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const;
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for C;
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where C: TCategory;
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self: Transform<T, C, 2>, rhs: UnitComplex<T>;
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[val] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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[ref] => #[allow(clippy::suspicious_op_assign_impl)] { *self *= rhs.inverse() };
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);
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