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Add isApprox() and cast() functions.
test cases included
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@@ -13,6 +13,13 @@
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using namespace Eigen;
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// Unfortunately, we need to specialize it in order to work. (We could add it in main.h test framework)
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template <typename Scalar, class System>
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bool verifyIsApprox(const Eigen::EulerAngles<Scalar, System>& a, const Eigen::EulerAngles<Scalar, System>& b)
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{
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return verifyIsApprox(a.angles(), b.angles());
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}
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// Verify that x is in the approxed range [a, b]
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#define VERIFY_APPROXED_RANGE(a, x, b) \
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do { \
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@@ -24,7 +31,7 @@ const char X = EULER_X;
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const char Y = EULER_Y;
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const char Z = EULER_Z;
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template<typename Scalar, typename EulerSystem>
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template<typename Scalar, class EulerSystem>
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void verify_euler(const EulerAngles<Scalar, EulerSystem>& e)
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{
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typedef EulerAngles<Scalar, EulerSystem> EulerAnglesType;
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@@ -68,6 +75,11 @@ void verify_euler(const EulerAngles<Scalar, EulerSystem>& e)
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const Vector3 I = EulerAnglesType::AlphaAxisVector();
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const Vector3 J = EulerAnglesType::BetaAxisVector();
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const Vector3 K = EulerAnglesType::GammaAxisVector();
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// Is approx checks
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VERIFY(e.isApprox(e));
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VERIFY_IS_APPROX(e, e);
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VERIFY_IS_NOT_APPROX(e, EulerAnglesType(e.alpha() + ONE, e.beta() + ONE, e.gamma() + ONE));
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const Matrix3 m(e);
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VERIFY_IS_APPROX(Scalar(m.determinant()), ONE);
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@@ -108,6 +120,11 @@ void verify_euler(const EulerAngles<Scalar, EulerSystem>& e)
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const QuaternionType qbis(AngleAxisType(eabis[0], I) * AngleAxisType(eabis[1], J) * AngleAxisType(eabis[2], K));
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VERIFY(internal::isApprox<Scalar>(std::abs(q.dot(qbis)), ONE, precision));
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//VERIFY_IS_APPROX(eabis, eabis2);// Verify that the euler angles are still the same
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// A suggestion for simple product test when will be supported.
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/*EulerAnglesType e2(PI/2, PI/2, PI/2);
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Matrix3 m2(e2);
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VERIFY_IS_APPROX(e*e2, m*m2);*/
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}
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template<signed char A, signed char B, signed char C, typename Scalar>
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@@ -250,6 +267,11 @@ template<typename Scalar> void eulerangles_rand()
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void test_EulerAngles()
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{
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// Simple cast test
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EulerAnglesXYZd onesEd(1, 1, 1);
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EulerAnglesXYZf onesEf = onesEd.cast<float>();
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VERIFY_IS_APPROX(onesEd, onesEf.cast<double>());
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CALL_SUBTEST_1( eulerangles_manual<float>() );
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CALL_SUBTEST_2( eulerangles_manual<double>() );
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