source: ntrip/trunk/BNC/src/PPP/pppMain.cpp@ 5975

Last change on this file since 5975 was 5975, checked in by mervart, 10 years ago
File size: 7.6 KB
Line 
1
2// Part of BNC, a utility for retrieving decoding and
3// converting GNSS data streams from NTRIP broadcasters.
4//
5// Copyright (C) 2007
6// German Federal Agency for Cartography and Geodesy (BKG)
7// http://www.bkg.bund.de
8// Czech Technical University Prague, Department of Geodesy
9// http://www.fsv.cvut.cz
10//
11// Email: euref-ip@bkg.bund.de
12//
13// This program is free software; you can redistribute it and/or
14// modify it under the terms of the GNU General Public License
15// as published by the Free Software Foundation, version 2.
16//
17// This program is distributed in the hope that it will be useful,
18// but WITHOUT ANY WARRANTY; without even the implied warranty of
19// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20// GNU General Public License for more details.
21//
22// You should have received a copy of the GNU General Public License
23// along with this program; if not, write to the Free Software
24// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
25
26/* -------------------------------------------------------------------------
27 * BKG NTRIP Client
28 * -------------------------------------------------------------------------
29 *
30 * Class: t_pppMain
31 *
32 * Purpose: Start of the PPP client(s)
33 *
34 * Author: L. Mervart
35 *
36 * Created: 29-Jul-2014
37 *
38 * Changes:
39 *
40 * -----------------------------------------------------------------------*/
41
42#include <iostream>
43
44#include "pppMain.h"
45#include "pppCrdFile.h"
46#include "bncsettings.h"
47
48using namespace BNC_PPP;
49using namespace std;
50
51// Constructor
52//////////////////////////////////////////////////////////////////////////////
53t_pppMain::t_pppMain() {
54 cout << "t_pppMain" << endl;
55 _running = false;
56}
57
58// Destructor
59//////////////////////////////////////////////////////////////////////////////
60t_pppMain::~t_pppMain() {
61 cout << "~t_pppMain" << endl;
62 stop();
63 QListIterator<t_pppOptions*> iOpt(_options);
64 while (iOpt.hasNext()) {
65 delete iOpt.next();
66 }
67}
68
69//
70//////////////////////////////////////////////////////////////////////////////
71void t_pppMain::start() {
72 if (_running) {
73 return;
74 }
75
76 try {
77 readOptions();
78
79 QListIterator<t_pppOptions*> iOpt(_options);
80 while (iOpt.hasNext()) {
81 const t_pppOptions* opt = iOpt.next();
82 t_pppThread* pppThread = new t_pppThread(opt);
83 pppThread->start();
84 _pppThreads << pppThread;
85 _running = true;
86 }
87 }
88 catch (t_except exc) {
89 _running = true;
90 stop();
91 }
92}
93
94//
95//////////////////////////////////////////////////////////////////////////////
96void t_pppMain::stop() {
97
98 cout << "t_pppMain::stop" << endl;
99
100 if (!_running) {
101 return;
102 }
103
104 if (_realTime) {
105 QListIterator<t_pppThread*> it(_pppThreads);
106 while (it.hasNext()) {
107 t_pppThread* pppThread = it.next();
108 pppThread->exit();
109 }
110 _pppThreads.clear();
111 }
112
113 _running = false;
114}
115
116//
117//////////////////////////////////////////////////////////////////////////////
118void t_pppMain::readOptions() {
119
120 QListIterator<t_pppOptions*> iOpt(_options);
121 while (iOpt.hasNext()) {
122 delete iOpt.next();
123 }
124 _options.clear();
125
126 bncSettings settings;
127
128 _logFile = settings.value("PPP/logFile").toString();
129 _nmeaFile = settings.value("PPP/nmeaFile").toString();
130 _nmeaPort = settings.value("PPP/nmeaPort").toInt();
131
132 _realTime = false;
133 if (settings.value("PPP/dataSource").toString() == "Real-Time Streams") {
134 _realTime = true;
135 }
136 else if (settings.value("PPP/dataSource").toString() == "RINEX Files") {
137 _realTime = false;
138 }
139 else {
140 return;
141 }
142
143 QListIterator<QString> iSta(settings.value("PPP/staTable").toStringList());
144 while (iSta.hasNext()) {
145 QStringList hlp = iSta.next().split(",");
146
147 if (hlp.size() < 9) {
148 throw t_except("pppMain: wrong option staTable");
149 }
150
151 t_pppOptions* opt = new t_pppOptions();
152
153 opt->_realTime = _realTime;
154 opt->_roverName = hlp[0].toAscii().data();
155 opt->_aprSigCrd[0] = hlp[1].toDouble();
156 opt->_aprSigCrd[1] = hlp[2].toDouble();
157 opt->_aprSigCrd[2] = hlp[3].toDouble();
158 opt->_noiseCrd[0] = hlp[4].toDouble();
159 opt->_noiseCrd[1] = hlp[5].toDouble();
160 opt->_noiseCrd[2] = hlp[6].toDouble();
161 opt->_aprSigTrp = hlp[7].toDouble();
162 opt->_noiseTrp = hlp[8].toDouble();
163
164 if (_realTime) {
165 opt->_corrMount = settings.value("PPP/corrMount").toString().toAscii().data();
166 }
167 else {
168 opt->_rinexObs = settings.value("PPP/rinexObs").toString().toAscii().data();
169 opt->_rinexNav = settings.value("PPP/rinexNav").toString().toAscii().data();
170 opt->_corrFile = settings.value("PPP/corrFile").toString().toAscii().data();
171 }
172
173 opt->_crdFile = settings.value("PPP/crdFile").toString().toAscii().data();
174 opt->_antexFileName = settings.value("PPP/antexFile").toString().toAscii().data();
175
176 opt->_sigmaC1 = settings.value("PPP/sigmaC1").toDouble();
177 opt->_sigmaL1 = settings.value("PPP/sigmaL1").toDouble();
178 opt->_corrWaitTime = settings.value("PPP/corrWaitTime").toDouble();
179
180 if (settings.value("PPP/lcGPS").toString() == "P3") {
181 opt->_LCsGPS.push_back(t_lc::cIF);
182 }
183 else if (settings.value("PPP/lcGPS").toString() == "L3") {
184 opt->_LCsGPS.push_back(t_lc::lIF);
185 }
186 else if (settings.value("PPP/lcGPS").toString() == "P3&L3") {
187 opt->_LCsGPS.push_back(t_lc::cIF);
188 opt->_LCsGPS.push_back(t_lc::lIF);
189 }
190
191 if (settings.value("PPP/lcGLONASS").toString() == "P3") {
192 opt->_LCsGLONASS.push_back(t_lc::cIF);
193 }
194 else if (settings.value("PPP/lcGLONASS").toString() == "L3") {
195 opt->_LCsGLONASS.push_back(t_lc::lIF);
196 }
197 else if (settings.value("PPP/lcGLONASS").toString() == "P3&L3") {
198 opt->_LCsGLONASS.push_back(t_lc::cIF);
199 opt->_LCsGLONASS.push_back(t_lc::lIF);
200 }
201
202 if (settings.value("PPP/lcGalileo").toString() == "P3") {
203 opt->_LCsGalileo.push_back(t_lc::cIF);
204 }
205 else if (settings.value("PPP/lcGalileo").toString() == "L3") {
206 opt->_LCsGalileo.push_back(t_lc::lIF);
207 }
208 else if (settings.value("PPP/lcGalileo").toString() == "P3&L3") {
209 opt->_LCsGalileo.push_back(t_lc::cIF);
210 opt->_LCsGalileo.push_back(t_lc::lIF);
211 }
212
213 // Information from the coordinate file
214 // ------------------------------------
215 string crdFileName(settings.value("PPP/crdFile").toString().toAscii().data());
216 if (!crdFileName.empty()) {
217 vector<t_pppCrdFile::t_staInfo> staInfoVec;
218 t_pppCrdFile::readCrdFile(crdFileName, staInfoVec);
219 for (unsigned ii = 0; ii < staInfoVec.size(); ii++) {
220 const t_pppCrdFile::t_staInfo& staInfo = staInfoVec[ii];
221 if (staInfo._name == opt->_roverName) {
222 opt->_xyzAprRover[0] = staInfo._xyz[0];
223 opt->_xyzAprRover[1] = staInfo._xyz[1];
224 opt->_xyzAprRover[2] = staInfo._xyz[2];
225 opt->_neuEccRover[0] = staInfo._neuAnt[0];
226 opt->_neuEccRover[1] = staInfo._neuAnt[1];
227 opt->_neuEccRover[2] = staInfo._neuAnt[2];
228 opt->_antNameRover = staInfo._antenna;
229 break;
230 }
231 }
232 }
233
234 opt->_minObs = settings.value("PPP/minObs").toInt();
235 opt->_minEle = settings.value("PPP/minEle").toDouble() * M_PI / 180.0;
236 opt->_maxResC1 = settings.value("PPP/maxResC1").toDouble();
237 opt->_maxResL1 = settings.value("PPP/maxResL1").toDouble();
238 opt->_eleWgtCode = (settings.value("PPP/eleWgtCode").toInt() != 0);
239 opt->_eleWgtPhase = (settings.value("PPP/eleWgtPhase").toInt() != 0);
240 opt->_seedingTime = settings.value("PPP/seedingTime").toDouble();
241
242 // Some default values
243 // -------------------
244 opt->_aprSigAmb = 100.0;
245 opt->_noiseClk = 1000.0;
246
247 _options << opt;
248 }
249}
250
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