687 lines
21 KiB
C++
687 lines
21 KiB
C++
/*
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Copyright (c) 2010-2016, Mathieu Labbe - IntRoLab - Universite de Sherbrooke
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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* Neither the name of the Universite de Sherbrooke nor the
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names of its contributors may be used to endorse or promote products
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derived from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY
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DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <ros/ros.h>
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#include <sensor_msgs/Image.h>
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#include <sensor_msgs/image_encodings.h>
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#include <sensor_msgs/PointCloud2.h>
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#include <sensor_msgs/LaserScan.h>
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#include <sensor_msgs/CameraInfo.h>
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#include <sensor_msgs/NavSatFix.h>
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#include <geometry_msgs/PoseWithCovarianceStamped.h>
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#include <rosgraph_msgs/Clock.h>
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#include <pcl_conversions/pcl_conversions.h>
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#include <nav_msgs/Odometry.h>
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#ifdef PRE_ROS_IRON
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#include <cv_bridge/cv_bridge.h>
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#else
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#include <cv_bridge/cv_bridge.hpp>
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#endif
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#include <image_transport/image_transport.h>
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#include <tf2_ros/transform_broadcaster.h>
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#include <std_srvs/Empty.h>
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#include <rtabmap_conversions/MsgConversion.h>
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#include <rtabmap_msgs/SetGoal.h>
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#include <rtabmap/utilite/ULogger.h>
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#include <rtabmap/utilite/UStl.h>
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#include <rtabmap/utilite/UThread.h>
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#include <rtabmap/utilite/UDirectory.h>
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#include <rtabmap/utilite/UConversion.h>
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#include <rtabmap/core/util3d.h>
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#include <rtabmap/core/DBReader.h>
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#include <rtabmap/core/OdometryEvent.h>
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#include <cmath>
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#ifndef _WIN32
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#include <sys/ioctl.h>
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#include <termios.h>
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bool spacehit()
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{
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bool charAvailable = true;
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bool hit = false;
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while(charAvailable)
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{
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termios term;
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tcgetattr(0, &term);
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termios term2 = term;
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term2.c_lflag &= ~ICANON;
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term2.c_lflag &= ~ECHO;
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term2.c_lflag &= ~ISIG;
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term2.c_cc[VMIN] = 0;
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term2.c_cc[VTIME] = 0;
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tcsetattr(0, TCSANOW, &term2);
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int c = getchar();
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if(c != EOF)
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{
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if(c == ' ')
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{
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hit = true;
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}
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}
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else
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{
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charAvailable = false;
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}
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tcsetattr(0, TCSANOW, &term);
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}
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return hit;
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}
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#endif
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bool paused = false;
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bool pauseCallback(std_srvs::Empty::Request&, std_srvs::Empty::Response&)
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{
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if(paused)
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{
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ROS_WARN("Already paused!");
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}
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else
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{
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paused = true;
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ROS_INFO("paused!");
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}
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return true;
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}
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bool resumeCallback(std_srvs::Empty::Request&, std_srvs::Empty::Response&)
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{
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if(!paused)
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{
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ROS_WARN("Already running!");
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}
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else
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{
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paused = false;
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ROS_INFO("resumed!");
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}
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return true;
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}
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int main(int argc, char** argv)
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{
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ros::init(argc, argv, "data_player");
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//ULogger::setType(ULogger::kTypeConsole);
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//ULogger::setLevel(ULogger::kDebug);
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//ULogger::setEventLevel(ULogger::kWarning);
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bool publishClock = false;
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for(int i=1;i<argc;++i)
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{
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if(strcmp(argv[i], "--clock") == 0)
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{
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publishClock = true;
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}
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}
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ros::NodeHandle nh;
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ros::NodeHandle pnh("~");
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std::string frameId = "base_link";
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std::string odomFrameId = "odom";
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std::string cameraFrameId = "camera_optical_link";
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std::string scanFrameId = "base_laser_link";
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double rate = 1.0f;
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std::string databasePath = "";
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bool publishTf = true;
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int startId = 0;
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bool useDbStamps = true;
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pnh.param("frame_id", frameId, frameId);
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pnh.param("odom_frame_id", odomFrameId, odomFrameId);
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pnh.param("camera_frame_id", cameraFrameId, cameraFrameId);
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pnh.param("scan_frame_id", scanFrameId, scanFrameId);
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pnh.param("rate", rate, rate); // Ratio of the database stamps
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pnh.param("database", databasePath, databasePath);
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pnh.param("publish_tf", publishTf, publishTf);
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pnh.param("start_id", startId, startId);
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// A general 360 lidar with 0.5 deg increment
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double scanAngleMin, scanAngleMax, scanAngleIncrement, scanRangeMin, scanRangeMax;
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pnh.param<double>("scan_angle_min", scanAngleMin, -M_PI);
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pnh.param<double>("scan_angle_max", scanAngleMax, M_PI);
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pnh.param<double>("scan_angle_increment", scanAngleIncrement, M_PI / 720.0);
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pnh.param<double>("scan_range_min", scanRangeMin, 0.0);
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pnh.param<double>("scan_range_max", scanRangeMax, 60);
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ROS_INFO("frame_id = %s", frameId.c_str());
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ROS_INFO("odom_frame_id = %s", odomFrameId.c_str());
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ROS_INFO("camera_frame_id = %s", cameraFrameId.c_str());
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ROS_INFO("scan_frame_id = %s", scanFrameId.c_str());
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ROS_INFO("rate = %f", rate);
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ROS_INFO("publish_tf = %s", publishTf?"true":"false");
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ROS_INFO("start_id = %d", startId);
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ROS_INFO("Publish clock (--clock): %s", publishClock?"true":"false");
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if(databasePath.empty())
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{
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ROS_ERROR("Parameter \"database\" must be set (path to a RTAB-Map database).");
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return -1;
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}
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databasePath = uReplaceChar(databasePath, '~', UDirectory::homeDir());
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if(databasePath.size() && databasePath.at(0) != '/')
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{
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databasePath = UDirectory::currentDir(true) + databasePath;
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}
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ROS_INFO("database = %s", databasePath.c_str());
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rtabmap::DBReader reader(databasePath, -rate, false, false, false, startId);
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if(!reader.init())
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{
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ROS_ERROR("Cannot open database \"%s\".", databasePath.c_str());
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return -1;
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}
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ros::ServiceServer pauseSrv = pnh.advertiseService("pause", pauseCallback);
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ros::ServiceServer resumeSrv = pnh.advertiseService("resume", resumeCallback);
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image_transport::ImageTransport it(nh);
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image_transport::Publisher imagePub;
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image_transport::Publisher rgbPub;
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image_transport::Publisher depthPub;
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image_transport::Publisher leftPub;
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image_transport::Publisher rightPub;
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ros::Publisher rgbCamInfoPub;
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ros::Publisher depthCamInfoPub;
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ros::Publisher leftCamInfoPub;
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ros::Publisher rightCamInfoPub;
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ros::Publisher odometryPub;
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ros::Publisher scanPub;
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ros::Publisher scanCloudPub;
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ros::Publisher globalPosePub;
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ros::Publisher gpsFixPub;
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ros::Publisher clockPub;
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tf2_ros::TransformBroadcaster tfBroadcaster;
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if(publishClock)
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{
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clockPub = nh.advertise<rosgraph_msgs::Clock>("/clock", 1);
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}
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UTimer timer;
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rtabmap::CameraInfo cameraInfo;
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rtabmap::SensorData data = reader.takeImage(&cameraInfo);
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rtabmap::OdometryInfo odomInfo;
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odomInfo.reg.covariance = cameraInfo.odomCovariance;
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rtabmap::OdometryEvent odom(data, cameraInfo.odomPose, odomInfo);
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double acquisitionTime = timer.ticks();
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while(ros::ok() && odom.data().id())
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{
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ROS_INFO("Reading sensor data %d...", odom.data().id());
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ros::Time time(odom.data().stamp());
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if(publishClock)
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{
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rosgraph_msgs::Clock msg;
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msg.clock = time;
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clockPub.publish(msg);
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}
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sensor_msgs::CameraInfo camInfoA; //rgb or left
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sensor_msgs::CameraInfo camInfoB; //depth or right
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camInfoA.K.assign(0);
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camInfoA.K[0] = camInfoA.K[4] = camInfoA.K[8] = 1;
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camInfoA.R.assign(0);
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camInfoA.R[0] = camInfoA.R[4] = camInfoA.R[8] = 1;
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camInfoA.P.assign(0);
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camInfoA.P[10] = 1;
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camInfoA.header.frame_id = cameraFrameId;
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camInfoA.header.stamp = time;
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camInfoB = camInfoA;
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int type = -1;
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if(!odom.data().depthRaw().empty() && (odom.data().depthRaw().type() == CV_32FC1 || odom.data().depthRaw().type() == CV_16UC1))
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{
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if(odom.data().cameraModels().size() > 1)
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{
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ROS_WARN("Multi-cameras detected in database but this node cannot send multi-images yet...");
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}
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else
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{
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//depth
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if(odom.data().cameraModels().size())
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{
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camInfoA.D.resize(5,0);
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camInfoA.P[0] = odom.data().cameraModels()[0].fx();
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camInfoA.K[0] = odom.data().cameraModels()[0].fx();
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camInfoA.P[5] = odom.data().cameraModels()[0].fy();
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camInfoA.K[4] = odom.data().cameraModels()[0].fy();
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camInfoA.P[2] = odom.data().cameraModels()[0].cx();
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camInfoA.K[2] = odom.data().cameraModels()[0].cx();
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camInfoA.P[6] = odom.data().cameraModels()[0].cy();
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camInfoA.K[5] = odom.data().cameraModels()[0].cy();
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camInfoB = camInfoA;
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}
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type=0;
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if(rgbPub.getTopic().empty()) rgbPub = it.advertise("rgb/image", 1);
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if(depthPub.getTopic().empty()) depthPub = it.advertise("depth_registered/image", 1);
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if(rgbCamInfoPub.getTopic().empty()) rgbCamInfoPub = nh.advertise<sensor_msgs::CameraInfo>("rgb/camera_info", 1);
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if(depthCamInfoPub.getTopic().empty()) depthCamInfoPub = nh.advertise<sensor_msgs::CameraInfo>("depth_registered/camera_info", 1);
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}
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}
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else if(!odom.data().rightRaw().empty() && odom.data().rightRaw().type() == CV_8U)
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{
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if(odom.data().stereoCameraModels().size() > 1)
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{
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ROS_WARN("Multi-cameras detected in database but this node cannot send multi-images yet...");
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}
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else
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{
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//stereo
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if(odom.data().stereoCameraModels()[0].isValidForProjection())
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{
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camInfoA.D.resize(8,0);
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camInfoA.P[0] = odom.data().stereoCameraModels()[0].left().fx();
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camInfoA.K[0] = odom.data().stereoCameraModels()[0].left().fx();
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camInfoA.P[5] = odom.data().stereoCameraModels()[0].left().fy();
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camInfoA.K[4] = odom.data().stereoCameraModels()[0].left().fy();
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camInfoA.P[2] = odom.data().stereoCameraModels()[0].left().cx();
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camInfoA.K[2] = odom.data().stereoCameraModels()[0].left().cx();
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camInfoA.P[6] = odom.data().stereoCameraModels()[0].left().cy();
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camInfoA.K[5] = odom.data().stereoCameraModels()[0].left().cy();
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camInfoB = camInfoA;
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camInfoB.P[3] = odom.data().stereoCameraModels()[0].right().Tx(); // Right_Tx = -baseline*fx
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}
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type=1;
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if(leftPub.getTopic().empty()) leftPub = it.advertise("left/image", 1);
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if(rightPub.getTopic().empty()) rightPub = it.advertise("right/image", 1);
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if(leftCamInfoPub.getTopic().empty()) leftCamInfoPub = nh.advertise<sensor_msgs::CameraInfo>("left/camera_info", 1);
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if(rightCamInfoPub.getTopic().empty()) rightCamInfoPub = nh.advertise<sensor_msgs::CameraInfo>("right/camera_info", 1);
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}
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}
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else
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{
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if(imagePub.getTopic().empty()) imagePub = it.advertise("image", 1);
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}
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camInfoA.height = odom.data().imageRaw().rows;
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camInfoA.width = odom.data().imageRaw().cols;
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camInfoB.height = odom.data().depthOrRightRaw().rows;
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camInfoB.width = odom.data().depthOrRightRaw().cols;
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if(!odom.data().laserScanRaw().isEmpty())
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{
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if(scanPub.getTopic().empty() && odom.data().laserScanRaw().is2d())
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{
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scanPub = nh.advertise<sensor_msgs::LaserScan>("scan", 1);
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if(odom.data().laserScanRaw().angleIncrement() > 0.0f)
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{
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ROS_INFO("Scan will be published.");
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}
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else
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{
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ROS_INFO("Scan will be published with those parameters:");
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ROS_INFO(" scan_angle_min=%f", scanAngleMin);
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ROS_INFO(" scan_angle_max=%f", scanAngleMax);
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ROS_INFO(" scan_angle_increment=%f", scanAngleIncrement);
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ROS_INFO(" scan_range_min=%f", scanRangeMin);
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ROS_INFO(" scan_range_max=%f", scanRangeMax);
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}
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}
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else if(scanCloudPub.getTopic().empty())
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{
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scanCloudPub = nh.advertise<sensor_msgs::PointCloud2>("scan_cloud", 1);
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ROS_INFO("Scan cloud will be published.");
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}
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}
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if(!odom.data().globalPose().isNull() &&
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odom.data().globalPoseCovariance().cols==6 &&
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odom.data().globalPoseCovariance().rows==6)
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{
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if(globalPosePub.getTopic().empty())
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{
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globalPosePub = nh.advertise<geometry_msgs::PoseWithCovarianceStamped>("global_pose", 1);
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ROS_INFO("Global pose will be published.");
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}
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}
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if(odom.data().gps().stamp() > 0.0)
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{
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if(gpsFixPub.getTopic().empty())
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{
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gpsFixPub = nh.advertise<sensor_msgs::NavSatFix>("gps/fix", 1);
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ROS_INFO("GPS will be published.");
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}
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}
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// publish transforms first
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if(publishTf)
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{
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rtabmap::Transform localTransform;
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if(odom.data().cameraModels().size() == 1)
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{
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localTransform = odom.data().cameraModels()[0].localTransform();
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}
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else if(odom.data().stereoCameraModels().size() == 1)
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{
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localTransform = odom.data().stereoCameraModels()[0].left().localTransform();
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}
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if(!localTransform.isNull())
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{
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geometry_msgs::TransformStamped baseToCamera;
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baseToCamera.child_frame_id = cameraFrameId;
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baseToCamera.header.frame_id = frameId;
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baseToCamera.header.stamp = time;
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rtabmap_conversions::transformToGeometryMsg(localTransform, baseToCamera.transform);
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tfBroadcaster.sendTransform(baseToCamera);
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}
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if(!odom.pose().isNull())
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{
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geometry_msgs::TransformStamped odomToBase;
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odomToBase.child_frame_id = frameId;
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odomToBase.header.frame_id = odomFrameId;
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odomToBase.header.stamp = time;
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rtabmap_conversions::transformToGeometryMsg(odom.pose(), odomToBase.transform);
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tfBroadcaster.sendTransform(odomToBase);
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}
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if(!scanPub.getTopic().empty() || !scanCloudPub.getTopic().empty())
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{
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geometry_msgs::TransformStamped baseToLaserScan;
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baseToLaserScan.child_frame_id = scanFrameId;
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baseToLaserScan.header.frame_id = frameId;
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baseToLaserScan.header.stamp = time;
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rtabmap_conversions::transformToGeometryMsg(odom.data().laserScanCompressed().localTransform(), baseToLaserScan.transform);
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tfBroadcaster.sendTransform(baseToLaserScan);
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}
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}
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if(!odom.pose().isNull())
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{
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if(odometryPub.getTopic().empty()) odometryPub = nh.advertise<nav_msgs::Odometry>("odom", 1);
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if(odometryPub.getNumSubscribers())
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{
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nav_msgs::Odometry odomMsg;
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odomMsg.child_frame_id = frameId;
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odomMsg.header.frame_id = odomFrameId;
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odomMsg.header.stamp = time;
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rtabmap_conversions::transformToPoseMsg(odom.pose(), odomMsg.pose.pose);
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UASSERT(odomMsg.pose.covariance.size() == 36 &&
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odom.covariance().total() == 36 &&
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odom.covariance().type() == CV_64FC1);
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memcpy(odomMsg.pose.covariance.begin(), odom.covariance().data, 36*sizeof(double));
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odometryPub.publish(odomMsg);
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}
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}
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// Publish async topics first (so that they can catched by rtabmap before the image topics)
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if(globalPosePub.getNumSubscribers() > 0 &&
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!odom.data().globalPose().isNull() &&
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odom.data().globalPoseCovariance().cols==6 &&
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odom.data().globalPoseCovariance().rows==6)
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{
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geometry_msgs::PoseWithCovarianceStamped msg;
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rtabmap_conversions::transformToPoseMsg(odom.data().globalPose(), msg.pose.pose);
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memcpy(msg.pose.covariance.data(), odom.data().globalPoseCovariance().data, 36*sizeof(double));
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msg.header.frame_id = frameId;
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msg.header.stamp = time;
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|
globalPosePub.publish(msg);
|
|
}
|
|
|
|
if(odom.data().gps().stamp() > 0.0)
|
|
{
|
|
sensor_msgs::NavSatFix msg;
|
|
msg.longitude = odom.data().gps().longitude();
|
|
msg.latitude = odom.data().gps().latitude();
|
|
msg.altitude = odom.data().gps().altitude();
|
|
msg.position_covariance_type = sensor_msgs::NavSatFix::COVARIANCE_TYPE_DIAGONAL_KNOWN;
|
|
msg.position_covariance.at(0) = msg.position_covariance.at(4) = msg.position_covariance.at(8)= odom.data().gps().error()* odom.data().gps().error();
|
|
msg.header.frame_id = frameId;
|
|
msg.header.stamp.fromSec(odom.data().gps().stamp());
|
|
gpsFixPub.publish(msg);
|
|
}
|
|
|
|
if(type >= 0)
|
|
{
|
|
if(rgbCamInfoPub.getNumSubscribers() && type == 0)
|
|
{
|
|
rgbCamInfoPub.publish(camInfoA);
|
|
}
|
|
if(leftCamInfoPub.getNumSubscribers() && type == 1)
|
|
{
|
|
leftCamInfoPub.publish(camInfoA);
|
|
}
|
|
if(depthCamInfoPub.getNumSubscribers() && type == 0)
|
|
{
|
|
depthCamInfoPub.publish(camInfoB);
|
|
}
|
|
if(rightCamInfoPub.getNumSubscribers() && type == 1)
|
|
{
|
|
rightCamInfoPub.publish(camInfoB);
|
|
}
|
|
}
|
|
|
|
if(imagePub.getNumSubscribers() || rgbPub.getNumSubscribers() || leftPub.getNumSubscribers())
|
|
{
|
|
cv_bridge::CvImage img;
|
|
if(odom.data().imageRaw().channels() == 1)
|
|
{
|
|
img.encoding = sensor_msgs::image_encodings::MONO8;
|
|
}
|
|
else
|
|
{
|
|
img.encoding = sensor_msgs::image_encodings::BGR8;
|
|
}
|
|
img.image = odom.data().imageRaw();
|
|
sensor_msgs::ImagePtr imageRosMsg = img.toImageMsg();
|
|
imageRosMsg->header.frame_id = cameraFrameId;
|
|
imageRosMsg->header.stamp = time;
|
|
|
|
if(imagePub.getNumSubscribers())
|
|
{
|
|
imagePub.publish(imageRosMsg);
|
|
}
|
|
if(rgbPub.getNumSubscribers() && type == 0)
|
|
{
|
|
rgbPub.publish(imageRosMsg);
|
|
}
|
|
if(leftPub.getNumSubscribers() && type == 1)
|
|
{
|
|
leftPub.publish(imageRosMsg);
|
|
leftCamInfoPub.publish(camInfoA);
|
|
}
|
|
}
|
|
|
|
if(depthPub.getNumSubscribers() && !odom.data().depthRaw().empty() && type==0)
|
|
{
|
|
cv_bridge::CvImage img;
|
|
if(odom.data().depthRaw().type() == CV_32FC1)
|
|
{
|
|
img.encoding = sensor_msgs::image_encodings::TYPE_32FC1;
|
|
}
|
|
else
|
|
{
|
|
img.encoding = sensor_msgs::image_encodings::TYPE_16UC1;
|
|
}
|
|
img.image = odom.data().depthRaw();
|
|
sensor_msgs::ImagePtr imageRosMsg = img.toImageMsg();
|
|
imageRosMsg->header.frame_id = cameraFrameId;
|
|
imageRosMsg->header.stamp = time;
|
|
|
|
depthPub.publish(imageRosMsg);
|
|
depthCamInfoPub.publish(camInfoB);
|
|
}
|
|
|
|
if(rightPub.getNumSubscribers() && !odom.data().rightRaw().empty() && type==1)
|
|
{
|
|
cv_bridge::CvImage img;
|
|
img.encoding = sensor_msgs::image_encodings::MONO8;
|
|
img.image = odom.data().rightRaw();
|
|
sensor_msgs::ImagePtr imageRosMsg = img.toImageMsg();
|
|
imageRosMsg->header.frame_id = cameraFrameId;
|
|
imageRosMsg->header.stamp = time;
|
|
|
|
rightPub.publish(imageRosMsg);
|
|
rightCamInfoPub.publish(camInfoB);
|
|
}
|
|
|
|
if(!odom.data().laserScanRaw().isEmpty())
|
|
{
|
|
if(scanPub.getNumSubscribers() && odom.data().laserScanRaw().is2d())
|
|
{
|
|
//inspired from pointcloud_to_laserscan package
|
|
sensor_msgs::LaserScan msg;
|
|
msg.header.frame_id = scanFrameId;
|
|
msg.header.stamp = time;
|
|
|
|
msg.angle_min = scanAngleMin;
|
|
msg.angle_max = scanAngleMax;
|
|
msg.angle_increment = scanAngleIncrement;
|
|
msg.time_increment = 0.0;
|
|
msg.scan_time = 0;
|
|
msg.range_min = scanRangeMin;
|
|
msg.range_max = scanRangeMax;
|
|
if(odom.data().laserScanRaw().angleIncrement() > 0.0f)
|
|
{
|
|
msg.angle_min = odom.data().laserScanRaw().angleMin();
|
|
msg.angle_max = odom.data().laserScanRaw().angleMax();
|
|
msg.angle_increment = odom.data().laserScanRaw().angleIncrement();
|
|
msg.range_min = odom.data().laserScanRaw().rangeMin();
|
|
msg.range_max = odom.data().laserScanRaw().rangeMax();
|
|
}
|
|
|
|
uint32_t rangesSize = std::ceil((msg.angle_max - msg.angle_min) / msg.angle_increment);
|
|
msg.ranges.assign(rangesSize, 0.0);
|
|
|
|
const cv::Mat & scan = odom.data().laserScanRaw().data();
|
|
for (int i=0; i<scan.cols; ++i)
|
|
{
|
|
const float * ptr = scan.ptr<float>(0,i);
|
|
double range = hypot(ptr[0], ptr[1]);
|
|
if (range >= msg.range_min && range <=msg.range_max)
|
|
{
|
|
double angle = atan2(ptr[1], ptr[0]);
|
|
if (angle >= msg.angle_min && angle <= msg.angle_max)
|
|
{
|
|
int index = (angle - msg.angle_min) / msg.angle_increment;
|
|
if (index>=0 && index<rangesSize && (range < msg.ranges[index] || msg.ranges[index]==0))
|
|
{
|
|
msg.ranges[index] = range;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
scanPub.publish(msg);
|
|
}
|
|
else if(scanCloudPub.getNumSubscribers())
|
|
{
|
|
sensor_msgs::PointCloud2 msg;
|
|
pcl_conversions::moveFromPCL(*rtabmap::util3d::laserScanToPointCloud2(odom.data().laserScanRaw()), msg);
|
|
msg.header.frame_id = scanFrameId;
|
|
msg.header.stamp = time;
|
|
scanCloudPub.publish(msg);
|
|
}
|
|
}
|
|
|
|
if(odom.data().userDataRaw().type() == CV_8SC1 &&
|
|
odom.data().userDataRaw().cols >= 7 && // including null str ending
|
|
odom.data().userDataRaw().rows == 1 &&
|
|
memcmp(odom.data().userDataRaw().data, "GOAL:", 5) == 0)
|
|
{
|
|
//GOAL format detected, remove it from the user data and send it as goal event
|
|
std::string goalStr = (const char *)odom.data().userDataRaw().data;
|
|
if(!goalStr.empty())
|
|
{
|
|
std::list<std::string> strs = uSplit(goalStr, ':');
|
|
if(strs.size() == 2)
|
|
{
|
|
int goalId = atoi(strs.rbegin()->c_str());
|
|
|
|
if(goalId > 0)
|
|
{
|
|
ROS_WARN("Goal %d detected, calling rtabmap's set_goal service!", goalId);
|
|
rtabmap_msgs::SetGoal setGoalSrv;
|
|
setGoalSrv.request.node_id = goalId;
|
|
setGoalSrv.request.node_label = "";
|
|
if(!ros::service::call("set_goal", setGoalSrv))
|
|
{
|
|
ROS_ERROR("Can't call \"set_goal\" service");
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
ros::spinOnce();
|
|
|
|
while(ros::ok())
|
|
{
|
|
#ifndef _WIN32
|
|
if (spacehit()) {
|
|
paused = !paused;
|
|
if(paused)
|
|
{
|
|
ROS_INFO("paused!");
|
|
}
|
|
else
|
|
{
|
|
ROS_INFO("resumed!");
|
|
}
|
|
}
|
|
#endif
|
|
|
|
if(!paused)
|
|
{
|
|
break;
|
|
}
|
|
|
|
uSleep(100);
|
|
ros::spinOnce();
|
|
}
|
|
|
|
timer.restart();
|
|
cameraInfo = rtabmap::CameraInfo();
|
|
data = reader.takeImage(&cameraInfo);
|
|
odomInfo.reg.covariance = cameraInfo.odomCovariance;
|
|
odom = rtabmap::OdometryEvent(data, cameraInfo.odomPose, odomInfo);
|
|
acquisitionTime = timer.ticks();
|
|
}
|
|
|
|
|
|
return 0;
|
|
}
|