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/*
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Copyright © 2010 Vladimír Vondruš <mosra@centrum.cz>
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This file is part of Magnum.
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Magnum is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License version 3
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only, as published by the Free Software Foundation.
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Magnum is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License version 3 for more details.
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*/
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#include "MatrixTest.h"
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#include <QtTest/QTest>
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#include "Matrix.h"
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QTEST_APPLESS_MAIN(Magnum::Math::Test::MatrixTest)
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namespace Magnum { namespace Math { namespace Test {
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typedef Matrix<float, 4> Matrix4;
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typedef Matrix<float, 3> Matrix3;
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void MatrixTest::constructIdentity() {
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Matrix4 identity;
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float identityExpected[] = {
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1.0f, 0.0f, 0.0f, 0.0f,
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0.0f, 1.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 1.0f, 0.0f,
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0.0f, 0.0f, 0.0f, 1.0f
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};
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QVERIFY(identity == Matrix4(identityExpected));
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}
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void MatrixTest::constructZero() {
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Matrix4 zero(false);
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float zeroExpected[] = {
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0.0f, 0.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 0.0f, 0.0f
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};
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QVERIFY(zero == Matrix4(zeroExpected));
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}
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void MatrixTest::data() {
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Matrix4 m(false);
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m.set(1, 2, 1.0f);
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m.set(2, 1, 1.0f);
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m.add(2, 1, 0.5f);
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QVERIFY(m.at(1, 2) == 1.0f);
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float expected[] = {
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0.0f, 0.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 1.5f, 0.0f,
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0.0f, 1.0f, 0.0f, 0.0f,
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0.0f, 0.0f, 0.0f, 0.0f
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};
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QVERIFY(m == Matrix4(expected));
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}
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void MatrixTest::copy() {
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Matrix4 m1(false);
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m1.set(3, 2, 1.0f);
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/* Copy */
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Matrix4 m2(m1);
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Matrix4 m3;
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m3.set(0, 0, 1.0f); /* this line is here so it's not optimized to Matrix4 m3(m1) */
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m3 = m1;
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/* Change original */
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m1.set(2, 3, 1.0f);
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/* Verify the copy is the same as original */
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Matrix4 original(false);
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original.set(3, 2, 1.0f);
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QVERIFY(m2 == original);
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QVERIFY(m3 == original);
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}
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void MatrixTest::multiplyIdentity() {
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float values[] = {
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0.0f, 1.0f, 2.0f, 3.0f,
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4.0f, 5.0f, 6.0f, 7.0f,
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8.0f, 9.0f, 10.0f, 11.0f,
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12.0f, 13.0f, 14.0f, 15.0f
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};
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QVERIFY(Matrix4()*Matrix4(values) == Matrix4(values));
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QVERIFY(Matrix4(values)*Matrix4() == Matrix4(values));
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}
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void MatrixTest::multiply() {
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int left[] = {
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-3, -3, -1, 3, -5,
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-1, -3, -5, 2, 3,
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-1, -4, 3, -1, -2,
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-5, -5, -1, -4, -1,
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1, 3, -3, -4, -1
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};
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int right[] = {
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0, 5, 3, 4, 4,
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5, 5, 0, 0, -2,
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3, 2, -4, -3, 0,
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-3, 0, -1, 2, -1,
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0, -1, -4, 4, 3
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};
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int expected[] = {
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-24, -35, -32, -25, 1,
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-22, -36, -24, 33, -8,
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8, 16, -22, 29, 2,
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-1, 0, 1, -12, 16,
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-12, 8, -20, -26, -2
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};
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bool is = (Matrix<int, 5>(left)*Matrix<int, 5>(right) == Matrix<int, 5>(expected));
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QVERIFY(is);
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}
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void MatrixTest::multiplyVector() {
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int matrix[] = {
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-3, -3, -1, 3, -5,
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-1, -3, -5, 2, 3,
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-1, -4, 3, -1, -2,
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-5, -5, -1, -4, -1,
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1, 3, -3, -4, -1
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};
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int vector[] = { 0, 5, 3, 4, 4 };
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int expected[] = { -24, -35, -32, -25, 1 };
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bool is = (Matrix<int, 5>(matrix)*Vector<int, 5>(vector) == Vector<int, 5>(expected));
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QVERIFY(is);
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}
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void MatrixTest::transposed() {
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float original[] = {
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0.0f, 1.0f, 2.0f, 3.0f,
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4.0f, 5.0f, 6.0f, 7.0f,
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8.0f, 9.0f, 10.0f, 11.0f,
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12.0f, 13.0f, 14.0f, 15.0f
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};
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float transposed[] = {
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0.0f, 4.0f, 8.0f, 12.0f,
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1.0f, 5.0f, 9.0f, 13.0f,
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2.0f, 6.0f, 10.0f, 14.0f,
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3.0f, 7.0f, 11.0f, 15.0f
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};
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QVERIFY(Matrix4(original).transposed() == Matrix4(transposed));
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}
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void MatrixTest::ij() {
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float original[] = {
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0.0f, 1.0f, 2.0f, 3.0f,
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4.0f, 5.0f, 6.0f, 7.0f,
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8.0f, 9.0f, 10.0f, 11.0f,
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12.0f, 13.0f, 14.0f, 15.0f
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};
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float skipped[] = {
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0.0f, 1.0f, 3.0f,
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8.0f, 9.0f, 11.0f,
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12.0f, 13.0f, 15.0f
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};
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QVERIFY(Matrix4(original).ij(2, 1) == Matrix3(skipped));
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}
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void MatrixTest::determinant() {
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int m[] = {
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1, 2, 2, 1, 0,
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2, 3, 2, 1, -2,
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1, 1, 1, 1, 0,
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2, 0, 0, 1, 2,
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3, 1, 0, 1, -2
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};
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int d = Matrix<int, 5>(m).determinant();
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QVERIFY(d == -2);
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}
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void MatrixTest::inverse() {
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float m[] = {
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3, 5, 8, 4,
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4, 4, 7, 3,
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7, -1, 8, 0,
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9, 4, 5, 9
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};
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float inverse[] = {
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-60/103.0f, 71/103.0f, -4/103.0f, 3/103.0f,
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-66/103.0f, 109/103.0f, -25/103.0f, -7/103.0f,
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177/412.0f, -97/206.0f, 53/412.0f, -7/206.0f,
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259/412.0f, -185/206.0f, 31/412.0f, 27/206.0f
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};
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Matrix4 _inverse = Matrix4(m).inverse();
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QVERIFY(_inverse == Matrix4(inverse));
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QVERIFY(_inverse*Matrix4(m) == Matrix4());
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}
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}}}
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