126 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			C++
		
	
	
			
		
		
	
	
			126 lines
		
	
	
		
			4.7 KiB
		
	
	
	
		
			C++
		
	
	
| /* ----------------------------------------------------------------------------
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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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| 
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|  * See LICENSE for the license information
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| 
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|  * -------------------------------------------------------------------------- */
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| 
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| /**
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|  * @file   SmartStereoProjectionFactorPP.h
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|  * @brief  Smart stereo factor on poses and extrinsic calibration
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|  * @author Luca Carlone
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|  * @author Frank Dellaert
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|  */
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| 
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| #include <gtsam_unstable/slam/SmartStereoProjectionFactorPP.h>
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| 
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| namespace gtsam {
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| 
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| SmartStereoProjectionFactorPP::SmartStereoProjectionFactorPP(
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|     const SharedNoiseModel& sharedNoiseModel,
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|     const SmartStereoProjectionParams& params)
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|     : Base(sharedNoiseModel, params) {} // note: no extrinsic specified!
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| 
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| void SmartStereoProjectionFactorPP::add(
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|     const StereoPoint2& measured,
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|     const Key& w_P_body_key, const Key& body_P_cam_key,
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|     const boost::shared_ptr<Cal3_S2Stereo>& K) {
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|   // we index by cameras..
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|   Base::add(measured, w_P_body_key);
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|   // but we also store the extrinsic calibration keys in the same order
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|   world_P_body_keys_.push_back(w_P_body_key);
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|   body_P_cam_keys_.push_back(body_P_cam_key);
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| 
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|   // pose keys are assumed to be unique (1 observation per time stamp), but calibration can be shared
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|   if(std::find(keys_.begin(), keys_.end(), body_P_cam_key) == keys_.end())
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|       keys_.push_back(body_P_cam_key); // add only unique keys
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| 
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|   K_all_.push_back(K);
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| }
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| 
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| void SmartStereoProjectionFactorPP::add(
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|     const std::vector<StereoPoint2>& measurements,
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|     const KeyVector& world_P_body_keys, const KeyVector& body_P_cam_keys,
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|     const std::vector<boost::shared_ptr<Cal3_S2Stereo>>& Ks) {
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|   assert(world_P_body_keys.size() == measurements.size());
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|   assert(world_P_body_keys.size() == body_P_cam_keys.size());
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|   assert(world_P_body_keys.size() == Ks.size());
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|   for (size_t i = 0; i < measurements.size(); i++) {
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|       Base::add(measurements[i], world_P_body_keys[i]);
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|       // pose keys are assumed to be unique (1 observation per time stamp), but calibration can be shared
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|       if(std::find(keys_.begin(), keys_.end(), body_P_cam_keys[i]) == keys_.end())
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|           keys_.push_back(body_P_cam_keys[i]); // add only unique keys
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| 
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|       world_P_body_keys_.push_back(world_P_body_keys[i]);
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|       body_P_cam_keys_.push_back(body_P_cam_keys[i]);
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| 
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|       K_all_.push_back(Ks[i]);
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|     }
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| }
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| 
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| void SmartStereoProjectionFactorPP::add(
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|     const std::vector<StereoPoint2>& measurements,
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|     const KeyVector& world_P_body_keys, const KeyVector& body_P_cam_keys,
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|     const boost::shared_ptr<Cal3_S2Stereo>& K) {
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|   assert(world_P_body_keys.size() == measurements.size());
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|   assert(world_P_body_keys.size() == body_P_cam_keys.size());
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|   for (size_t i = 0; i < measurements.size(); i++) {
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|     Base::add(measurements[i], world_P_body_keys[i]);
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|     // pose keys are assumed to be unique (1 observation per time stamp), but calibration can be shared
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|     if(std::find(keys_.begin(), keys_.end(), body_P_cam_keys[i]) == keys_.end())
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|       keys_.push_back(body_P_cam_keys[i]); // add only unique keys
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| 
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|     world_P_body_keys_.push_back(world_P_body_keys[i]);
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|     body_P_cam_keys_.push_back(body_P_cam_keys[i]);
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| 
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|     K_all_.push_back(K);
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|   }
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| }
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| 
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| void SmartStereoProjectionFactorPP::print(
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|     const std::string& s, const KeyFormatter& keyFormatter) const {
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|   std::cout << s << "SmartStereoProjectionFactorPP: \n ";
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|   for (size_t i = 0; i < K_all_.size(); i++) {
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|     K_all_[i]->print("calibration = ");
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|     std::cout << " extrinsic pose key: " << keyFormatter(body_P_cam_keys_[i]) << std::endl;
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|   }
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|   Base::print("", keyFormatter);
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| }
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| 
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| bool SmartStereoProjectionFactorPP::equals(const NonlinearFactor& p,
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|                                              double tol) const {
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|   const SmartStereoProjectionFactorPP* e =
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|       dynamic_cast<const SmartStereoProjectionFactorPP*>(&p);
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| 
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|   return e && Base::equals(p, tol) &&
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|       body_P_cam_keys_ == e->getExtrinsicPoseKeys();
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| }
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| 
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| double SmartStereoProjectionFactorPP::error(const Values& values) const {
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|   if (this->active(values)) {
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|     return this->totalReprojectionError(cameras(values));
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|   } else {  // else of active flag
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|     return 0.0;
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|   }
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| }
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| 
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| SmartStereoProjectionFactorPP::Base::Cameras
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| SmartStereoProjectionFactorPP::cameras(const Values& values) const {
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|   assert(world_P_body_keys_.size() == K_all_.size());
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|   assert(world_P_body_keys_.size() == body_P_cam_keys_.size());
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|   Base::Cameras cameras;
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|   for (size_t i = 0; i < world_P_body_keys_.size(); i++) {
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|     Pose3 w_P_body = values.at<Pose3>(world_P_body_keys_[i]);
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|     Pose3 body_P_cam = values.at<Pose3>(body_P_cam_keys_[i]);
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|     Pose3 w_P_cam = w_P_body.compose(body_P_cam);
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|     cameras.push_back(StereoCamera(w_P_cam, K_all_[i]));
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|   }
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|   return cameras;
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| }
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| 
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| }  // \ namespace gtsam
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