fix extractPoint2/3 and added C++ tests
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@ -0,0 +1,64 @@
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/* ----------------------------------------------------------------------------
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* GTSAM Copyright 2010, Georgia Tech Research Corporation,
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* Atlanta, Georgia 30332-0415
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* All Rights Reserved
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* Authors: Frank Dellaert, et al. (see THANKS for the full author list)
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* See LICENSE for the license information
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* -------------------------------------------------------------------------- */
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/*
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* @file testUtilities.cpp
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* @date Aug 19, 2021
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* @author Varun Agrawal
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* @brief Tests for the utilities.
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*/
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#include <CppUnitLite/TestHarness.h>
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#include <gtsam/base/Testable.h>
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#include <gtsam/geometry/Point2.h>
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#include <gtsam/geometry/Pose3.h>
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#include <gtsam/inference/Symbol.h>
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#include <gtsam/nonlinear/NonlinearFactorGraph.h>
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#include <gtsam/nonlinear/utilities.h>
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using namespace gtsam;
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using gtsam::symbol_shorthand::L;
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using gtsam::symbol_shorthand::R;
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using gtsam::symbol_shorthand::X;
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/* ************************************************************************* */
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TEST(Utilities, ExtractPoint2) {
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Point2 p0(0, 0), p1(1, 0);
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Values values;
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values.insert<Point2>(L(0), p0);
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values.insert<Point2>(L(1), p1);
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values.insert<Rot3>(R(0), Rot3());
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values.insert<Pose3>(X(0), Pose3());
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Matrix all_points = utilities::extractPoint2(values);
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EXPECT_LONGS_EQUAL(2, all_points.rows());
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}
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/* ************************************************************************* */
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TEST(Utilities, ExtractPoint3) {
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Point3 p0(0, 0, 0), p1(1, 0, 0);
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Values values;
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values.insert<Point3>(L(0), p0);
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values.insert<Point3>(L(1), p1);
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values.insert<Rot3>(R(0), Rot3());
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values.insert<Pose3>(X(0), Pose3());
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Matrix all_points = utilities::extractPoint3(values);
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EXPECT_LONGS_EQUAL(2, all_points.rows());
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}
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/* ************************************************************************* */
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int main() {
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srand(time(nullptr));
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TestResult tr;
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return TestRegistry::runAllTests(tr);
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}
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/* ************************************************************************* */
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@ -89,21 +89,41 @@ KeySet createKeySet(std::string s, const Vector& I) {
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/// Extract all Point2 values into a single matrix [x y]
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Matrix extractPoint2(const Values& values) {
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Values::ConstFiltered<gtsam::Point2> points = values.filter<gtsam::Point2>();
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// Point2 is aliased as a gtsam::Vector in the wrapper
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Values::ConstFiltered<gtsam::Vector> points2 = values.filter<gtsam::Vector>();
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Matrix result(points.size() + points2.size(), 2);
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size_t j = 0;
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Values::ConstFiltered<Point2> points = values.filter<Point2>();
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Matrix result(points.size(), 2);
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for(const auto& key_value: points)
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for (const auto& key_value : points) {
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result.row(j++) = key_value.value;
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}
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for (const auto& key_value : points2) {
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if (key_value.value.rows() == 2) {
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result.row(j++) = key_value.value;
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}
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}
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return result;
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}
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/// Extract all Point3 values into a single matrix [x y z]
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Matrix extractPoint3(const Values& values) {
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Values::ConstFiltered<Point3> points = values.filter<Point3>();
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Matrix result(points.size(), 3);
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Values::ConstFiltered<gtsam::Point3> points = values.filter<gtsam::Point3>();
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// Point3 is aliased as a gtsam::Vector in the wrapper
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Values::ConstFiltered<gtsam::Vector> points2 = values.filter<gtsam::Vector>();
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Matrix result(points.size() + points2.size(), 3);
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size_t j = 0;
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for(const auto& key_value: points)
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for (const auto& key_value : points) {
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result.row(j++) = key_value.value;
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}
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for (const auto& key_value : points2) {
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if (key_value.value.rows() == 3) {
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result.row(j++) = key_value.value;
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}
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}
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return result;
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}
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