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										 |  |  | /* ----------------------------------------------------------------------------
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							|  |  |  |  * GTSAM Copyright 2010, Georgia Tech Research Corporation, | 
					
						
							|  |  |  |  * Atlanta, Georgia 30332-0415 | 
					
						
							|  |  |  |  * All Rights Reserved | 
					
						
							|  |  |  |  * 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   testSubgraphSolver.cpp | 
					
						
							|  |  |  |  *  @brief  Unit tests for SubgraphSolver | 
					
						
							|  |  |  |  *  @author Yong-Dian Jian | 
					
						
							|  |  |  |  **/ | 
					
						
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										 |  |  | #include <CppUnitLite/TestHarness.h>
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							|  |  |  | #if 0
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										 |  |  | #include <tests/smallExample.h>
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										 |  |  | #include <gtsam/inference/Symbol.h>
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										 |  |  | #include <gtsam/linear/GaussianBayesNet.h>
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										 |  |  | #include <gtsam/linear/iterative.h>
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										 |  |  | #include <gtsam/linear/GaussianFactorGraph.h>
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										 |  |  | #include <gtsam/linear/SubgraphSolver.h>
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										 |  |  | #include <gtsam/inference/Ordering.h>
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										 |  |  | #include <gtsam/base/numericalDerivative.h>
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							|  |  |  | #include <boost/tuple/tuple.hpp>
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							|  |  |  | #include <boost/assign/std/list.hpp>
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							|  |  |  | using namespace boost::assign; | 
					
						
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							|  |  |  | using namespace std; | 
					
						
							|  |  |  | using namespace gtsam; | 
					
						
							|  |  |  | using namespace example; | 
					
						
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							|  |  |  | /* ************************************************************************* */ | 
					
						
							|  |  |  | /** unnormalized error */ | 
					
						
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										 |  |  | static double error(const GaussianFactorGraph& fg, const VectorValues& x) { | 
					
						
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										 |  |  |   double total_error = 0.; | 
					
						
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										 |  |  |   for(const GaussianFactor::shared_ptr& factor: fg) | 
					
						
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										 |  |  |     total_error += factor->error(x); | 
					
						
							|  |  |  |   return total_error; | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | /* ************************************************************************* */ | 
					
						
							|  |  |  | TEST( SubgraphSolver, constructor1 ) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |   // Build a planar graph
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										 |  |  |   GaussianFactorGraph Ab; | 
					
						
							|  |  |  |   VectorValues xtrue; | 
					
						
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										 |  |  |   size_t N = 3; | 
					
						
							|  |  |  |   boost::tie(Ab, xtrue) = planarGraph(N); // A*x-b
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										 |  |  |   // The first constructor just takes a factor graph (and parameters)
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							|  |  |  |   // and it will split the graph into A1 and A2, where A1 is a spanning tree
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										 |  |  |   SubgraphSolverParameters parameters; | 
					
						
							|  |  |  |   SubgraphSolver solver(Ab, parameters); | 
					
						
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										 |  |  |   VectorValues optimized = solver.optimize(); // does PCG optimization
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										 |  |  |   DOUBLES_EQUAL(0.0, error(Ab, optimized), 1e-5); | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | /* ************************************************************************* */ | 
					
						
							|  |  |  | TEST( SubgraphSolver, constructor2 ) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |   // Build a planar graph
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										 |  |  |   GaussianFactorGraph Ab; | 
					
						
							|  |  |  |   VectorValues xtrue; | 
					
						
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										 |  |  |   size_t N = 3; | 
					
						
							|  |  |  |   boost::tie(Ab, xtrue) = planarGraph(N); // A*x-b
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							|  |  |  |   // Get the spanning tree and corresponding ordering
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										 |  |  |   GaussianFactorGraph Ab1_, Ab2_; // A1*x-b1 and A2*x-b2
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										 |  |  |   boost::tie(Ab1_, Ab2_) = splitOffPlanarTree(N, Ab); | 
					
						
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										 |  |  |   // The second constructor takes two factor graphs,
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							|  |  |  |   // so the caller can specify the preconditioner (Ab1) and the constraints that are left out (Ab2)
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										 |  |  |   SubgraphSolverParameters parameters; | 
					
						
							|  |  |  |   SubgraphSolver solver(Ab1_, Ab2_, parameters); | 
					
						
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										 |  |  |   VectorValues optimized = solver.optimize(); | 
					
						
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										 |  |  |   DOUBLES_EQUAL(0.0, error(Ab, optimized), 1e-5); | 
					
						
							|  |  |  | } | 
					
						
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							|  |  |  | /* ************************************************************************* */ | 
					
						
							|  |  |  | TEST( SubgraphSolver, constructor3 ) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |   // Build a planar graph
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										 |  |  |   GaussianFactorGraph Ab; | 
					
						
							|  |  |  |   VectorValues xtrue; | 
					
						
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										 |  |  |   size_t N = 3; | 
					
						
							|  |  |  |   boost::tie(Ab, xtrue) = planarGraph(N); // A*x-b
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							|  |  |  |   // Get the spanning tree and corresponding ordering
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										 |  |  |   GaussianFactorGraph Ab1_, Ab2_; // A1*x-b1 and A2*x-b2
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										 |  |  |   boost::tie(Ab1_, Ab2_) = splitOffPlanarTree(N, Ab); | 
					
						
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										 |  |  |   // The caller solves |A1*x-b1|^2 == |R1*x-c1|^2 via QR factorization, where R1 is square UT
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										 |  |  |   GaussianBayesNet::shared_ptr Rc1 = //
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							|  |  |  |       EliminationTree<GaussianFactor>::Create(Ab1_)->eliminate(&EliminateQR); | 
					
						
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										 |  |  |   // The third constructor allows the caller to pass an already solved preconditioner Rc1_
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							|  |  |  |   // as a Bayes net, in addition to the "loop closing constraints" Ab2, as before
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										 |  |  |   SubgraphSolverParameters parameters; | 
					
						
							|  |  |  |   SubgraphSolver solver(Rc1, Ab2_, parameters); | 
					
						
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										 |  |  |   VectorValues optimized = solver.optimize(); | 
					
						
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										 |  |  |   DOUBLES_EQUAL(0.0, error(Ab, optimized), 1e-5); | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | #endif
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										 |  |  | /* ************************************************************************* */ | 
					
						
							|  |  |  | int main() { TestResult tr; return TestRegistry::runAllTests(tr); } | 
					
						
							|  |  |  | /* ************************************************************************* */ |