2016-06-19 14:13:59 +08:00
										 
									 
								 
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								/* ----------------------------------------------------------------------------
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											2019-02-11 22:39:48 +08:00
										 
									 
								 
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								 * GTSAM Copyright 2010, Georgia Tech Research Corporation,
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											2016-06-19 14:13:59 +08:00
										 
									 
								 
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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    timeCholesky.cpp
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								 * @brief   time Cholesky factorization
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								 * @author  Frank Dellaert
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								 * @date    March 4, 2016
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								 */
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								#include <gtsam/base/cholesky.h>
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								#include <time.h>
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								#include <iostream>
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								#include <iomanip>      // std::setprecision
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								using namespace std;
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								using namespace gtsam;
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								//#define TERNARY
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								int main() {
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								  Matrix top = (Matrix(7,7) <<
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								                      4.0375,   3.4584,   3.5735,   2.4815,   2.1471,   2.7400,   2.2063,
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								                          0.,   4.7267,   3.8423,   2.3624,   2.8091,   2.9579,   2.5914,
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								                          0.,       0.,   5.1600,   2.0797,   3.4690,   3.2419,   2.9992,
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								                          0.,       0.,       0.,   1.8786,   1.0535,   1.4250,   1.3347,
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								                          0.,       0.,       0.,       0.,   3.0788,   2.6283,   2.3791,
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								                          0.,       0.,       0.,       0.,       0.,   2.9227,   2.4056,
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								                          0.,       0.,       0.,       0.,       0.,       0.,   2.5776).finished();
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								  Matrix ABC(100,100);
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								  ABC.topLeftCorner<7,7>() = top;
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								  cout << setprecision(3);
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								  size_t n = 100000;
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								  for (size_t nFrontal = 1; nFrontal <= 7; nFrontal++) {
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								    auto timeLog = clock();
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								    for (size_t i = 0; i < n; i++) {
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								      Matrix RSL(ABC);
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								      choleskyPartial(RSL, nFrontal);
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								    }
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								    auto timeLog2 = clock();
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								    auto seconds = (double)(timeLog2 - timeLog) / CLOCKS_PER_SEC;
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								    cout << "partialCholesky " << nFrontal << ": ";
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								    auto ms = ((double)seconds * 1000000 / n);
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								    cout << ms << " ms, " << ms/nFrontal << " ms/dim" << endl;
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								  }
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								  return 0;
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								}
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