90 lines
3.6 KiB
C++
90 lines
3.6 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) 2010 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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#include "main.h"
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#define CHECK_MMTR(DEST, TRI, OP) { \
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ref2 = ref1 = DEST; \
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DEST.template triangularView<TRI>() OP; \
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ref1 OP; \
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ref2.template triangularView<TRI>() \
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= ref1.template triangularView<TRI>(); \
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VERIFY_IS_APPROX(DEST,ref2); \
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}
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template<typename Scalar> void mmtr(int size)
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{
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typedef Matrix<Scalar,Dynamic,Dynamic,ColMajor> MatrixColMaj;
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typedef Matrix<Scalar,Dynamic,Dynamic,RowMajor> MatrixRowMaj;
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DenseIndex othersize = internal::random<DenseIndex>(1,200);
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MatrixColMaj matc = MatrixColMaj::Zero(size, size);
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MatrixRowMaj matr = MatrixRowMaj::Zero(size, size);
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MatrixColMaj ref1(size, size), ref2(size, size);
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MatrixColMaj soc(size,othersize); soc.setRandom();
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MatrixColMaj osc(othersize,size); osc.setRandom();
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MatrixRowMaj sor(size,othersize); sor.setRandom();
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MatrixRowMaj osr(othersize,size); osr.setRandom();
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MatrixColMaj sqc(size,size); sqc.setRandom();
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MatrixRowMaj sqr(size,size); sqr.setRandom();
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Scalar s = internal::random<Scalar>();
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CHECK_MMTR(matc, Lower, = s*soc*sor.adjoint());
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CHECK_MMTR(matc, Upper, = s*(soc*soc.adjoint()));
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CHECK_MMTR(matr, Lower, = s*soc*soc.adjoint());
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CHECK_MMTR(matr, Upper, = soc*(s*sor.adjoint()));
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CHECK_MMTR(matc, Lower, += s*soc*soc.adjoint());
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CHECK_MMTR(matc, Upper, += s*(soc*sor.transpose()));
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CHECK_MMTR(matr, Lower, += s*sor*soc.adjoint());
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CHECK_MMTR(matr, Upper, += soc*(s*soc.adjoint()));
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CHECK_MMTR(matc, Lower, -= s*soc*soc.adjoint());
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CHECK_MMTR(matc, Upper, -= s*(osc.transpose()*osc.conjugate()));
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CHECK_MMTR(matr, Lower, -= s*soc*soc.adjoint());
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CHECK_MMTR(matr, Upper, -= soc*(s*soc.adjoint()));
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CHECK_MMTR(matc, Lower, -= s*sqr*sqc.template triangularView<Upper>());
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CHECK_MMTR(matc, Upper, = s*sqc*sqr.template triangularView<Upper>());
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CHECK_MMTR(matc, Lower, += s*sqr*sqc.template triangularView<Lower>());
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CHECK_MMTR(matc, Upper, = s*sqc*sqc.template triangularView<Lower>());
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CHECK_MMTR(matc, Lower, = (s*sqr).template triangularView<Upper>()*sqc);
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CHECK_MMTR(matc, Upper, -= (s*sqc).template triangularView<Upper>()*sqc);
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CHECK_MMTR(matc, Lower, = (s*sqr).template triangularView<Lower>()*sqc);
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CHECK_MMTR(matc, Upper, += (s*sqc).template triangularView<Lower>()*sqc);
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// check aliasing
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ref2 = ref1 = matc;
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ref1 = sqc.adjoint() * matc * sqc;
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ref2.template triangularView<Upper>() = ref1.template triangularView<Upper>();
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matc.template triangularView<Upper>() = sqc.adjoint() * matc * sqc;
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VERIFY_IS_APPROX(matc, ref2);
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ref2 = ref1 = matc;
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ref1 = sqc * matc * sqc.adjoint();
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ref2.template triangularView<Lower>() = ref1.template triangularView<Lower>();
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matc.template triangularView<Lower>() = sqc * matc * sqc.adjoint();
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VERIFY_IS_APPROX(matc, ref2);
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}
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void test_product_mmtr()
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{
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for(int i = 0; i < g_repeat ; i++)
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{
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CALL_SUBTEST_1((mmtr<float>(internal::random<int>(1,EIGEN_TEST_MAX_SIZE))));
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CALL_SUBTEST_2((mmtr<double>(internal::random<int>(1,EIGEN_TEST_MAX_SIZE))));
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CALL_SUBTEST_3((mmtr<std::complex<float> >(internal::random<int>(1,EIGEN_TEST_MAX_SIZE/2))));
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CALL_SUBTEST_4((mmtr<std::complex<double> >(internal::random<int>(1,EIGEN_TEST_MAX_SIZE/2))));
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}
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}
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