420 lines
20 KiB
C++
420 lines
20 KiB
C++
// 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) 2015 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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#ifdef EIGEN_TEST_PART_1
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#define EIGEN_UNALIGNED_VECTORIZE 1
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#endif
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#ifdef EIGEN_TEST_PART_2
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#define EIGEN_UNALIGNED_VECTORIZE 0
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#endif
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#ifdef EIGEN_DEFAULT_TO_ROW_MAJOR
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#undef EIGEN_DEFAULT_TO_ROW_MAJOR
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#endif
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#define EIGEN_DEBUG_ASSIGN
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#include "main.h"
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#include <typeinfo>
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using internal::demangle_flags;
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using internal::demangle_traversal;
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using internal::demangle_unrolling;
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template<typename Dst, typename Src>
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bool test_assign(const Dst&, const Src&, int traversal, int unrolling)
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{
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typedef internal::copy_using_evaluator_traits<internal::evaluator<Dst>,internal::evaluator<Src>, internal::assign_op<typename Dst::Scalar,typename Src::Scalar> > traits;
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bool res = traits::Traversal==traversal;
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if(unrolling==InnerUnrolling+CompleteUnrolling)
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res = res && (int(traits::Unrolling)==InnerUnrolling || int(traits::Unrolling)==CompleteUnrolling);
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else
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res = res && int(traits::Unrolling)==unrolling;
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if(!res)
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{
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std::cerr << "Src: " << demangle_flags(Src::Flags) << std::endl;
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std::cerr << " " << demangle_flags(internal::evaluator<Src>::Flags) << std::endl;
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std::cerr << "Dst: " << demangle_flags(Dst::Flags) << std::endl;
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std::cerr << " " << demangle_flags(internal::evaluator<Dst>::Flags) << std::endl;
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traits::debug();
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std::cerr << " Expected Traversal == " << demangle_traversal(traversal)
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<< " got " << demangle_traversal(traits::Traversal) << "\n";
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std::cerr << " Expected Unrolling == " << demangle_unrolling(unrolling)
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<< " got " << demangle_unrolling(traits::Unrolling) << "\n";
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}
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return res;
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}
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template<typename Dst, typename Src>
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bool test_assign(int traversal, int unrolling)
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{
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typedef internal::copy_using_evaluator_traits<internal::evaluator<Dst>,internal::evaluator<Src>, internal::assign_op<typename Dst::Scalar,typename Src::Scalar> > traits;
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bool res = traits::Traversal==traversal && traits::Unrolling==unrolling;
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if(!res)
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{
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std::cerr << "Src: " << demangle_flags(Src::Flags) << std::endl;
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std::cerr << " " << demangle_flags(internal::evaluator<Src>::Flags) << std::endl;
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std::cerr << "Dst: " << demangle_flags(Dst::Flags) << std::endl;
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std::cerr << " " << demangle_flags(internal::evaluator<Dst>::Flags) << std::endl;
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traits::debug();
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std::cerr << " Expected Traversal == " << demangle_traversal(traversal)
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<< " got " << demangle_traversal(traits::Traversal) << "\n";
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std::cerr << " Expected Unrolling == " << demangle_unrolling(unrolling)
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<< " got " << demangle_unrolling(traits::Unrolling) << "\n";
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}
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return res;
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}
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template<typename Xpr>
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bool test_redux(const Xpr&, int traversal, int unrolling)
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{
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typedef typename Xpr::Scalar Scalar;
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typedef internal::redux_traits<internal::scalar_sum_op<Scalar,Scalar>,internal::redux_evaluator<Xpr> > traits;
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bool res = traits::Traversal==traversal && traits::Unrolling==unrolling;
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if(!res)
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{
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std::cerr << demangle_flags(Xpr::Flags) << std::endl;
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std::cerr << demangle_flags(internal::evaluator<Xpr>::Flags) << std::endl;
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traits::debug();
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std::cerr << " Expected Traversal == " << demangle_traversal(traversal)
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<< " got " << demangle_traversal(traits::Traversal) << "\n";
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std::cerr << " Expected Unrolling == " << demangle_unrolling(unrolling)
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<< " got " << demangle_unrolling(traits::Unrolling) << "\n";
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}
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return res;
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}
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template<typename Scalar, bool Enable = internal::packet_traits<Scalar>::Vectorizable>
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struct vectorization_logic
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{
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typedef internal::packet_traits<Scalar> PacketTraits;
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typedef typename internal::packet_traits<Scalar>::type PacketType;
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typedef typename internal::unpacket_traits<PacketType>::half HalfPacketType;
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enum {
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PacketSize = internal::unpacket_traits<PacketType>::size,
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HalfPacketSize = internal::unpacket_traits<HalfPacketType>::size
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};
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static void run()
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{
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typedef Matrix<Scalar,PacketSize,1> Vector1;
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typedef Matrix<Scalar,Dynamic,1> VectorX;
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typedef Matrix<Scalar,Dynamic,Dynamic> MatrixXX;
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typedef Matrix<Scalar,PacketSize,PacketSize> Matrix11;
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typedef Matrix<Scalar,2*PacketSize,2*PacketSize> Matrix22;
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typedef Matrix<Scalar,(Matrix11::Flags&RowMajorBit)?16:4*PacketSize,(Matrix11::Flags&RowMajorBit)?4*PacketSize:16> Matrix44;
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typedef Matrix<Scalar,(Matrix11::Flags&RowMajorBit)?16:4*PacketSize,(Matrix11::Flags&RowMajorBit)?4*PacketSize:16,DontAlign|EIGEN_DEFAULT_MATRIX_STORAGE_ORDER_OPTION> Matrix44u;
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typedef Matrix<Scalar,4*PacketSize,4*PacketSize,ColMajor> Matrix44c;
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typedef Matrix<Scalar,4*PacketSize,4*PacketSize,RowMajor> Matrix44r;
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 2 : PacketSize==2 ? 1 : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 2 : PacketSize==4 ? 2 : PacketSize==2 ? 2 : /*PacketSize==1 ?*/ 1)
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> Matrix1;
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 2 : PacketSize==2 ? 1 : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 2 : PacketSize==4 ? 2 : PacketSize==2 ? 2 : /*PacketSize==1 ?*/ 1),
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DontAlign|((Matrix1::Flags&RowMajorBit)?RowMajor:ColMajor)> Matrix1u;
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// this type is made such that it can only be vectorized when viewed as a linear 1D vector
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 6 : PacketSize==2 ? ((Matrix11::Flags&RowMajorBit)?2:3) : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 6 : PacketSize==4 ? 2 : PacketSize==2 ? ((Matrix11::Flags&RowMajorBit)?3:2) : /*PacketSize==1 ?*/ 3)
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> Matrix3;
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#if !EIGEN_GCC_AND_ARCH_DOESNT_WANT_STACK_ALIGNMENT
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VERIFY(test_assign(Vector1(),Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1()+Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().cwiseProduct(Vector1()),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().template cast<Scalar>(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1()+Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().cwiseProduct(Vector1()),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix44(),Matrix44()+Matrix44(),
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InnerVectorizedTraversal,InnerUnrolling));
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VERIFY(test_assign(Matrix44u(),Matrix44()+Matrix44(),
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EIGEN_UNALIGNED_VECTORIZE ? InnerVectorizedTraversal : LinearTraversal,
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EIGEN_UNALIGNED_VECTORIZE ? InnerUnrolling : NoUnrolling));
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VERIFY(test_assign(Matrix1(),Matrix1()+Matrix1(),
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(Matrix1::InnerSizeAtCompileTime % PacketSize)==0 ? InnerVectorizedTraversal : LinearVectorizedTraversal,
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CompleteUnrolling));
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VERIFY(test_assign(Matrix1u(),Matrix1()+Matrix1(),
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EIGEN_UNALIGNED_VECTORIZE ? ((Matrix1::InnerSizeAtCompileTime % PacketSize)==0 ? InnerVectorizedTraversal : LinearVectorizedTraversal)
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: LinearTraversal, CompleteUnrolling));
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VERIFY(test_assign(Matrix44c().col(1),Matrix44c().col(2)+Matrix44c().col(3),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix44r().row(2),Matrix44r().row(1)+Matrix44r().row(1),
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InnerVectorizedTraversal,CompleteUnrolling));
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if(PacketSize>1)
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{
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typedef Matrix<Scalar,3,3,ColMajor> Matrix33c;
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typedef Matrix<Scalar,3,1,ColMajor> Vector3;
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VERIFY(test_assign(Matrix33c().row(2),Matrix33c().row(1)+Matrix33c().row(1),
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LinearTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector3(),Vector3()+Vector3(),
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EIGEN_UNALIGNED_VECTORIZE ? (HalfPacketSize==1 ? InnerVectorizedTraversal : LinearVectorizedTraversal) : (HalfPacketSize==1 ? InnerVectorizedTraversal : LinearTraversal), CompleteUnrolling));
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VERIFY(test_assign(Matrix33c().col(0),Matrix33c().col(1)+Matrix33c().col(1),
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EIGEN_UNALIGNED_VECTORIZE ? (HalfPacketSize==1 ? InnerVectorizedTraversal : LinearVectorizedTraversal) : (HalfPacketSize==1 ? SliceVectorizedTraversal : LinearTraversal),
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((!EIGEN_UNALIGNED_VECTORIZE) && HalfPacketSize==1) ? NoUnrolling : CompleteUnrolling));
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VERIFY(test_assign(Matrix3(),Matrix3().cwiseProduct(Matrix3()),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix<Scalar,17,17>(),Matrix<Scalar,17,17>()+Matrix<Scalar,17,17>(),
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HalfPacketSize==1 ? InnerVectorizedTraversal :
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EIGEN_UNALIGNED_VECTORIZE ? LinearVectorizedTraversal :
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LinearTraversal,
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NoUnrolling));
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VERIFY(test_assign(Matrix11(), Matrix11()+Matrix11(),InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix11(),Matrix<Scalar,17,17>().template block<PacketSize,PacketSize>(2,3)+Matrix<Scalar,17,17>().template block<PacketSize,PacketSize>(8,4),
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(EIGEN_UNALIGNED_VECTORIZE) ? InnerVectorizedTraversal : DefaultTraversal, CompleteUnrolling|InnerUnrolling));
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VERIFY(test_assign(Vector1(),Matrix11()*Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix11(),Matrix11().lazyProduct(Matrix11()),
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InnerVectorizedTraversal,InnerUnrolling+CompleteUnrolling));
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}
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VERIFY(test_redux(Vector1(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix<Scalar,PacketSize,3>(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix3(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix44(),
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LinearVectorizedTraversal,NoUnrolling));
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VERIFY(test_redux(Matrix44().template block<(Matrix1::Flags&RowMajorBit)?4:PacketSize,(Matrix1::Flags&RowMajorBit)?PacketSize:4>(1,2),
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DefaultTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix44c().template block<2*PacketSize,1>(1,2),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix44r().template block<1,2*PacketSize>(2,1),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY((test_assign<
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Map<Matrix22, AlignedMax, OuterStride<3*PacketSize> >,
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Matrix22
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>(InnerVectorizedTraversal,CompleteUnrolling)));
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VERIFY((test_assign<
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Map<Matrix<Scalar,EIGEN_PLAIN_ENUM_MAX(2,PacketSize),EIGEN_PLAIN_ENUM_MAX(2,PacketSize)>, AlignedMax, InnerStride<3*PacketSize> >,
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Matrix<Scalar,EIGEN_PLAIN_ENUM_MAX(2,PacketSize),EIGEN_PLAIN_ENUM_MAX(2,PacketSize)>
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>(DefaultTraversal,PacketSize>=8?InnerUnrolling:CompleteUnrolling)));
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VERIFY((test_assign(Matrix11(), Matrix<Scalar,PacketSize,EIGEN_PLAIN_ENUM_MIN(2,PacketSize)>()*Matrix<Scalar,EIGEN_PLAIN_ENUM_MIN(2,PacketSize),PacketSize>(),
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InnerVectorizedTraversal, CompleteUnrolling)));
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#endif
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VERIFY(test_assign(MatrixXX(10,10),MatrixXX(20,20).block(10,10,2,3),
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SliceVectorizedTraversal,NoUnrolling));
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VERIFY(test_redux(VectorX(10),
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LinearVectorizedTraversal,NoUnrolling));
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}
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};
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template<typename Scalar> struct vectorization_logic<Scalar,false>
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{
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static void run() {}
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};
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template<typename Scalar, bool Enable = !internal::is_same<typename internal::unpacket_traits<typename internal::packet_traits<Scalar>::type>::half,
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typename internal::packet_traits<Scalar>::type>::value >
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struct vectorization_logic_half
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{
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typedef internal::packet_traits<Scalar> PacketTraits;
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typedef typename internal::unpacket_traits<typename internal::packet_traits<Scalar>::type>::half PacketType;
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enum {
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PacketSize = internal::unpacket_traits<PacketType>::size
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};
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static void run()
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{
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typedef Matrix<Scalar,PacketSize,1> Vector1;
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typedef Matrix<Scalar,PacketSize,PacketSize> Matrix11;
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typedef Matrix<Scalar,5*PacketSize,7,ColMajor> Matrix57;
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typedef Matrix<Scalar,3*PacketSize,5,ColMajor> Matrix35;
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typedef Matrix<Scalar,5*PacketSize,7,DontAlign|ColMajor> Matrix57u;
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// typedef Matrix<Scalar,(Matrix11::Flags&RowMajorBit)?16:4*PacketSize,(Matrix11::Flags&RowMajorBit)?4*PacketSize:16> Matrix44;
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// typedef Matrix<Scalar,(Matrix11::Flags&RowMajorBit)?16:4*PacketSize,(Matrix11::Flags&RowMajorBit)?4*PacketSize:16,DontAlign|EIGEN_DEFAULT_MATRIX_STORAGE_ORDER_OPTION> Matrix44u;
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// typedef Matrix<Scalar,4*PacketSize,4*PacketSize,ColMajor> Matrix44c;
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// typedef Matrix<Scalar,4*PacketSize,4*PacketSize,RowMajor> Matrix44r;
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 2 : PacketSize==2 ? 1 : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 2 : PacketSize==4 ? 2 : PacketSize==2 ? 2 : /*PacketSize==1 ?*/ 1)
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> Matrix1;
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 2 : PacketSize==2 ? 1 : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 2 : PacketSize==4 ? 2 : PacketSize==2 ? 2 : /*PacketSize==1 ?*/ 1),
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DontAlign|((Matrix1::Flags&RowMajorBit)?RowMajor:ColMajor)> Matrix1u;
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// this type is made such that it can only be vectorized when viewed as a linear 1D vector
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typedef Matrix<Scalar,
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(PacketSize==8 ? 4 : PacketSize==4 ? 6 : PacketSize==2 ? ((Matrix11::Flags&RowMajorBit)?2:3) : /*PacketSize==1 ?*/ 1),
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(PacketSize==8 ? 6 : PacketSize==4 ? 2 : PacketSize==2 ? ((Matrix11::Flags&RowMajorBit)?3:2) : /*PacketSize==1 ?*/ 3)
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> Matrix3;
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#if !EIGEN_GCC_AND_ARCH_DOESNT_WANT_STACK_ALIGNMENT
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VERIFY(test_assign(Vector1(),Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1()+Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().template segment<PacketSize>(0).derived(),
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EIGEN_UNALIGNED_VECTORIZE ? InnerVectorizedTraversal : LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Scalar(2.1)*Vector1()-Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),(Scalar(2.1)*Vector1().template segment<PacketSize>(0)-Vector1().template segment<PacketSize>(0)).derived(),
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EIGEN_UNALIGNED_VECTORIZE ? InnerVectorizedTraversal : LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().cwiseProduct(Vector1()),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().template cast<Scalar>(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1()+Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Vector1().cwiseProduct(Vector1()),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix57(),Matrix57()+Matrix57(),
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InnerVectorizedTraversal,InnerUnrolling));
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VERIFY(test_assign(Matrix57u(),Matrix57()+Matrix57(),
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EIGEN_UNALIGNED_VECTORIZE ? InnerVectorizedTraversal : LinearTraversal,
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EIGEN_UNALIGNED_VECTORIZE ? InnerUnrolling : NoUnrolling));
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VERIFY(test_assign(Matrix1u(),Matrix1()+Matrix1(),
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EIGEN_UNALIGNED_VECTORIZE ? ((Matrix1::InnerSizeAtCompileTime % PacketSize)==0 ? InnerVectorizedTraversal : LinearVectorizedTraversal) : LinearTraversal,CompleteUnrolling));
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if(PacketSize>1)
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{
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typedef Matrix<Scalar,3,3,ColMajor> Matrix33c;
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VERIFY(test_assign(Matrix33c().row(2),Matrix33c().row(1)+Matrix33c().row(1),
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LinearTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix33c().col(0),Matrix33c().col(1)+Matrix33c().col(1),
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EIGEN_UNALIGNED_VECTORIZE ? (PacketSize==1 ? InnerVectorizedTraversal : LinearVectorizedTraversal) : LinearTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix3(),Matrix3().cwiseQuotient(Matrix3()),
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PacketTraits::HasDiv ? LinearVectorizedTraversal : LinearTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix<Scalar,17,17>(),Matrix<Scalar,17,17>()+Matrix<Scalar,17,17>(),
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EIGEN_UNALIGNED_VECTORIZE ? (PacketSize==1 ? InnerVectorizedTraversal : LinearVectorizedTraversal) : LinearTraversal,
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NoUnrolling));
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VERIFY(test_assign(Matrix11(),Matrix<Scalar,17,17>().template block<PacketSize,PacketSize>(2,3)+Matrix<Scalar,17,17>().template block<PacketSize,PacketSize>(8,4),
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EIGEN_UNALIGNED_VECTORIZE ? InnerVectorizedTraversal : DefaultTraversal,PacketSize>4?InnerUnrolling:CompleteUnrolling));
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VERIFY(test_assign(Vector1(),Matrix11()*Vector1(),
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InnerVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_assign(Matrix11(),Matrix11().lazyProduct(Matrix11()),
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InnerVectorizedTraversal,InnerUnrolling+CompleteUnrolling));
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}
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VERIFY(test_redux(Vector1(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix<Scalar,PacketSize,3>(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix3(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix35(),
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LinearVectorizedTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix57().template block<PacketSize,3>(1,0),
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DefaultTraversal,CompleteUnrolling));
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VERIFY((test_assign<
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Map<Matrix<Scalar,EIGEN_PLAIN_ENUM_MAX(2,PacketSize),EIGEN_PLAIN_ENUM_MAX(2,PacketSize)>, AlignedMax, InnerStride<3*PacketSize> >,
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Matrix<Scalar,EIGEN_PLAIN_ENUM_MAX(2,PacketSize),EIGEN_PLAIN_ENUM_MAX(2,PacketSize)>
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>(DefaultTraversal,CompleteUnrolling)));
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VERIFY((test_assign(Matrix57(), Matrix<Scalar,5*PacketSize,3>()*Matrix<Scalar,3,7>(),
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InnerVectorizedTraversal, InnerUnrolling|CompleteUnrolling)));
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#endif
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}
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};
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template<typename Scalar> struct vectorization_logic_half<Scalar,false>
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{
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static void run() {}
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};
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void test_vectorization_logic()
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{
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#ifdef EIGEN_VECTORIZE
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CALL_SUBTEST( vectorization_logic<int>::run() );
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CALL_SUBTEST( vectorization_logic<float>::run() );
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CALL_SUBTEST( vectorization_logic<double>::run() );
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CALL_SUBTEST( vectorization_logic<std::complex<float> >::run() );
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CALL_SUBTEST( vectorization_logic<std::complex<double> >::run() );
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CALL_SUBTEST( vectorization_logic_half<int>::run() );
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CALL_SUBTEST( vectorization_logic_half<float>::run() );
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CALL_SUBTEST( vectorization_logic_half<double>::run() );
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CALL_SUBTEST( vectorization_logic_half<std::complex<float> >::run() );
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CALL_SUBTEST( vectorization_logic_half<std::complex<double> >::run() );
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if(internal::packet_traits<float>::Vectorizable)
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{
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VERIFY(test_assign(Matrix<float,3,3>(),Matrix<float,3,3>()+Matrix<float,3,3>(),
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EIGEN_UNALIGNED_VECTORIZE ? LinearVectorizedTraversal : LinearTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix<float,5,2>(),
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EIGEN_UNALIGNED_VECTORIZE ? LinearVectorizedTraversal : DefaultTraversal,CompleteUnrolling));
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}
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if(internal::packet_traits<double>::Vectorizable)
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{
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VERIFY(test_assign(Matrix<double,3,3>(),Matrix<double,3,3>()+Matrix<double,3,3>(),
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EIGEN_UNALIGNED_VECTORIZE ? LinearVectorizedTraversal : LinearTraversal,CompleteUnrolling));
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VERIFY(test_redux(Matrix<double,7,3>(),
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EIGEN_UNALIGNED_VECTORIZE ? LinearVectorizedTraversal : DefaultTraversal,CompleteUnrolling));
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}
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#endif // EIGEN_VECTORIZE
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}
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