removed SLAM namespace from testGaussianJunctionTreeB
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0863b4148d
commit
fb33b8a609
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@ -16,14 +16,18 @@
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*/
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#include <tests/smallExample.h>
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#include <gtsam/slam/planarSLAM.h>
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#include <gtsam/slam/pose2SLAM.h>
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#include <gtsam/slam/PriorFactor.h>
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#include <gtsam/slam/BetweenFactor.h>
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#include <gtsam/slam/BearingRangeFactor.h>
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#include <gtsam/nonlinear/NonlinearFactorGraph.h>
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#include <gtsam/nonlinear/Values.h>
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#include <gtsam/nonlinear/Ordering.h>
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#include <gtsam/nonlinear/Symbol.h>
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#include <gtsam/linear/GaussianJunctionTree.h>
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#include <gtsam/linear/GaussianSequentialSolver.h>
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#include <gtsam/linear/GaussianMultifrontalSolver.h>
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#include <gtsam/inference/BayesTree-inl.h>
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#include <gtsam/inference/BayesTree.h>
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#include <gtsam/geometry/Pose2.h>
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#include <gtsam/base/TestableAssertions.h>
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#include <gtsam/base/debug.h>
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#include <gtsam/base/cholesky.h>
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@ -128,29 +132,29 @@ TEST( GaussianJunctionTreeB, optimizeMultiFrontal2)
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/* ************************************************************************* */
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TEST(GaussianJunctionTreeB, slamlike) {
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Values init;
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planarSLAM::Graph newfactors;
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planarSLAM::Graph fullgraph;
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NonlinearFactorGraph newfactors;
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NonlinearFactorGraph fullgraph;
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SharedDiagonal odoNoise = noiseModel::Diagonal::Sigmas(Vector_(3, 0.1, 0.1, M_PI/100.0));
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SharedDiagonal brNoise = noiseModel::Diagonal::Sigmas(Vector_(2, M_PI/100.0, 0.1));
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size_t i = 0;
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newfactors = planarSLAM::Graph();
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newfactors.addPosePrior(X(0), Pose2(0.0, 0.0, 0.0), odoNoise);
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newfactors = NonlinearFactorGraph();
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newfactors.add(PriorFactor<Pose2>(X(0), Pose2(0.0, 0.0, 0.0), odoNoise));
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init.insert(X(0), Pose2(0.01, 0.01, 0.01));
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fullgraph.push_back(newfactors);
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for( ; i<5; ++i) {
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newfactors = planarSLAM::Graph();
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newfactors.addRelativePose(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise);
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newfactors = NonlinearFactorGraph();
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newfactors.add(BetweenFactor<Pose2>(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise));
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init.insert(X(i+1), Pose2(double(i+1)+0.1, -0.1, 0.01));
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fullgraph.push_back(newfactors);
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}
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newfactors = planarSLAM::Graph();
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newfactors.addRelativePose(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise);
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newfactors.addBearingRange(X(i), L(0), Rot2::fromAngle(M_PI/4.0), 5.0, brNoise);
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newfactors.addBearingRange(X(i), L(1), Rot2::fromAngle(-M_PI/4.0), 5.0, brNoise);
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newfactors = NonlinearFactorGraph();
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newfactors.add(BetweenFactor<Pose2>(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise));
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newfactors.add(BearingRangeFactor<Pose2,Point2>(X(i), L(0), Rot2::fromAngle(M_PI/4.0), 5.0, brNoise));
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newfactors.add(BearingRangeFactor<Pose2,Point2>(X(i), L(1), Rot2::fromAngle(-M_PI/4.0), 5.0, brNoise));
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init.insert(X(i+1), Pose2(1.01, 0.01, 0.01));
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init.insert(L(0), Point2(5.0/sqrt(2.0), 5.0/sqrt(2.0)));
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init.insert(L(1), Point2(5.0/sqrt(2.0), -5.0/sqrt(2.0)));
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@ -158,16 +162,16 @@ TEST(GaussianJunctionTreeB, slamlike) {
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++ i;
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for( ; i<5; ++i) {
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newfactors = planarSLAM::Graph();
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newfactors.addRelativePose(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise);
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newfactors = NonlinearFactorGraph();
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newfactors.add(BetweenFactor<Pose2>(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise));
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init.insert(X(i+1), Pose2(double(i+1)+0.1, -0.1, 0.01));
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fullgraph.push_back(newfactors);
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}
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newfactors = planarSLAM::Graph();
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newfactors.addRelativePose(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise);
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newfactors.addBearingRange(X(i), L(0), Rot2::fromAngle(M_PI/4.0 + M_PI/16.0), 4.5, brNoise);
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newfactors.addBearingRange(X(i), L(1), Rot2::fromAngle(-M_PI/4.0 + M_PI/16.0), 4.5, brNoise);
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newfactors = NonlinearFactorGraph();
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newfactors.add(BetweenFactor<Pose2>(X(i), X(i+1), Pose2(1.0, 0.0, 0.0), odoNoise));
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newfactors.add(BearingRangeFactor<Pose2,Point2>(X(i), L(0), Rot2::fromAngle(M_PI/4.0 + M_PI/16.0), 4.5, brNoise));
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newfactors.add(BearingRangeFactor<Pose2,Point2>(X(i), L(1), Rot2::fromAngle(-M_PI/4.0 + M_PI/16.0), 4.5, brNoise));
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init.insert(X(i+1), Pose2(6.9, 0.1, 0.01));
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fullgraph.push_back(newfactors);
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++ i;
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@ -193,9 +197,9 @@ TEST(GaussianJunctionTreeB, simpleMarginal) {
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typedef BayesTree<GaussianConditional> GaussianBayesTree;
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// Create a simple graph
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pose2SLAM::Graph fg;
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fg.addPosePrior(X(0), Pose2(), noiseModel::Isotropic::Sigma(3, 10.0));
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fg.addRelativePose(X(0), X(1), Pose2(1.0, 0.0, 0.0), noiseModel::Diagonal::Sigmas(Vector_(3, 10.0, 1.0, 1.0)));
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NonlinearFactorGraph fg;
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fg.add(PriorFactor<Pose2>(X(0), Pose2(), noiseModel::Isotropic::Sigma(3, 10.0)));
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fg.add(BetweenFactor<Pose2>(X(0), X(1), Pose2(1.0, 0.0, 0.0), noiseModel::Diagonal::Sigmas(Vector_(3, 10.0, 1.0, 1.0))));
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Values init;
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init.insert(X(0), Pose2());
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