source: ntrip/trunk/BNC/src/RTCM/RTCM2Decoder.cpp@ 10792

Last change on this file since 10792 was 10692, checked in by stuerze, 5 months ago

RTCM message 1230 (on-change) and the size of each RTCM message is added in scanRTCM

File size: 12.7 KB
RevLine 
[297]1// Part of BNC, a utility for retrieving decoding and
[464]2// converting GNSS data streams from NTRIP broadcasters.
[242]3//
[464]4// Copyright (C) 2007
[297]5// German Federal Agency for Cartography and Geodesy (BKG)
6// http://www.bkg.bund.de
[464]7// Czech Technical University Prague, Department of Geodesy
[297]8// http://www.fsv.cvut.cz
9//
10// Email: euref-ip@bkg.bund.de
11//
12// This program is free software; you can redistribute it and/or
13// modify it under the terms of the GNU General Public License
14// as published by the Free Software Foundation, version 2.
15//
16// This program is distributed in the hope that it will be useful,
17// but WITHOUT ANY WARRANTY; without even the implied warranty of
18// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19// GNU General Public License for more details.
20//
21// You should have received a copy of the GNU General Public License
22// along with this program; if not, write to the Free Software
23// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
[242]24
[464]25/* -------------------------------------------------------------------------
26 * BKG NTRIP Client
27 * -------------------------------------------------------------------------
28 *
29 * Class: RTCM2Decoder
30 *
31 * Purpose: RTCM2 Decoder
32 *
33 * Author: L. Mervart
34 *
35 * Created: 24-Aug-2006
36 *
[7528]37 * Changes:
[464]38 *
39 * -----------------------------------------------------------------------*/
40
[1044]41#include <math.h>
42#include <sstream>
43#include <iomanip>
[1218]44#include <set>
[1044]45
[242]46#include "../bncutils.h"
[1044]47#include "rtcm_utils.h"
[243]48#include "RTCM2Decoder.h"
[242]49
50using namespace std;
[1044]51using namespace rtcm2;
[242]52
[7528]53//
[242]54// Constructor
[7528]55//
[242]56
[6443]57RTCM2Decoder::RTCM2Decoder(const std::string& ID) : _ephUser(true) {
[1044]58 _ID = ID;
[242]59}
60
[7528]61//
[242]62// Destructor
[7528]63//
[242]64
65RTCM2Decoder::~RTCM2Decoder() {
66}
67
68//
[1044]69t_irc RTCM2Decoder::getStaCrd(double& xx, double& yy, double& zz) {
[6703]70 if (!_msg03.validMsg) {
[1044]71 return failure;
72 }
[6703]73
[1044]74 xx = _msg03.x + (_msg22.validMsg ? _msg22.dL1[0] : 0.0);
75 yy = _msg03.y + (_msg22.validMsg ? _msg22.dL1[1] : 0.0);
76 zz = _msg03.z + (_msg22.validMsg ? _msg22.dL1[2] : 0.0);
[242]77
[1044]78 return success;
79}
80
[1167]81//
[6703]82t_irc RTCM2Decoder::getStaCrd(double& xx, double& yy, double& zz, double& dx1,
83 double& dy1, double& dz1, double& dx2, double& dy2, double& dz2) {
[1167]84 xx = _msg03.x;
85 yy = _msg03.y;
86 zz = _msg03.z;
[1044]87
[1167]88 dx1 = (_msg22.validMsg ? _msg22.dL1[0] : 0.0);
89 dy1 = (_msg22.validMsg ? _msg22.dL1[1] : 0.0);
90 dz1 = (_msg22.validMsg ? _msg22.dL1[2] : 0.0);
91
92 dx2 = (_msg22.validMsg ? _msg22.dL2[0] : 0.0);
93 dy2 = (_msg22.validMsg ? _msg22.dL2[1] : 0.0);
94 dz2 = (_msg22.validMsg ? _msg22.dL2[2] : 0.0);
95
96 return success;
97}
98
[1044]99//
[1218]100t_irc RTCM2Decoder::Decode(char* buffer, int bufLen, vector<string>& errmsg) {
[242]101
[1218]102 errmsg.clear();
103
[242]104 _buffer.append(buffer, bufLen);
[6703]105 int refWeek;
[242]106 double refSecs;
107 currentGPSWeeks(refWeek, refSecs);
[702]108 bool decoded = false;
[242]109
[6703]110 while (true) {
[242]111 _PP.getPacket(_buffer);
112 if (!_PP.valid()) {
[702]113 if (decoded) {
114 return success;
115 } else {
116 return failure;
117 }
[242]118 }
[6703]119
[10692]120 // Store _message number
[10688]121 _typeList.push_back(t_typeInfo());
[10692]122 _typeList.back()._type = _PP.ID();
[10688]123 //_typeList.back().size = 0;
[242]124
[6703]125 if (_PP.ID() == 18 || _PP.ID() == 19) {
[242]126
127 _ObsBlock.extract(_PP);
128
129 if (_ObsBlock.valid()) {
[702]130 decoded = true;
[242]131
[6703]132 int epochWeek;
[242]133 double epochSecs;
134 _ObsBlock.resolveEpoch(refWeek, refSecs, epochWeek, epochSecs);
[6703]135
136 for (int iSat = 0; iSat < _ObsBlock.nSat; iSat++) {
[6137]137 t_satObs obs;
[10599]138 char sys;
139 int num, flag;
[341]140 if (_ObsBlock.PRN[iSat] > 100) {
[10599]141 sys = 'R';
142 num = _ObsBlock.PRN[iSat] % 100;
[6703]143 }
[10599]144 else {
145 sys = 'G';
146 num = _ObsBlock.PRN[iSat];
147 }
148 flag = t_corrSSR::getSsrNavTypeFlag(sys, num);
149 obs._prn.set(sys, num, flag);
[6137]150 obs._time.set(epochWeek, epochSecs);
[6703]151
[6137]152 t_frqObs* frqObs1C = new t_frqObs;
[6703]153 frqObs1C->_rnxType2ch = "1C";
[8025]154 frqObs1C->_codeValid = true;
[6703]155 frqObs1C->_code = _ObsBlock.rng_C1[iSat];
[6137]156 obs._obs.push_back(frqObs1C);
[2711]157
[6137]158 t_frqObs* frqObs1P = new t_frqObs;
[6703]159 frqObs1P->_rnxType2ch = (sys == 'G') ? "1W" : "1P";
[8025]160 frqObs1P->_codeValid = true;
[6703]161 frqObs1P->_code = _ObsBlock.rng_P1[iSat];
[8025]162 frqObs1P->_phaseValid = true;
[6703]163 frqObs1P->_phase = _ObsBlock.resolvedPhase_L1(iSat);
[9088]164 frqObs1P->_slipCounter = _ObsBlock.slip_L1[iSat];
[6137]165 obs._obs.push_back(frqObs1P);
166
167 t_frqObs* frqObs2P = new t_frqObs;
[6703]168 frqObs2P->_rnxType2ch = (sys == 'G') ? "2W" : "2P";
[8025]169 frqObs2P->_codeValid = true;
[6703]170 frqObs2P->_code = _ObsBlock.rng_P2[iSat];
[8025]171 frqObs2P->_phaseValid = true;
[6703]172 frqObs2P->_phase = _ObsBlock.resolvedPhase_L2(iSat);
[9088]173 frqObs2P->_slipCounter = _ObsBlock.slip_L2[iSat];
[6137]174 obs._obs.push_back(frqObs2P);
175
[2711]176 _obsList.push_back(obs);
[242]177 }
178 _ObsBlock.clear();
179 }
180 }
[8025]181
[6703]182 else if (_PP.ID() == 20 || _PP.ID() == 21) {
[1044]183 _msg2021.extract(_PP);
184
185 if (_msg2021.valid()) {
[1045]186 decoded = true;
[6703]187 translateCorr2Obs(errmsg);
188 }
[1044]189 }
190
[6703]191 else if (_PP.ID() == 3) {
[1044]192 _msg03.extract(_PP);
193 }
194
[6703]195 else if (_PP.ID() == 22) {
[1044]196 _msg22.extract(_PP);
197 }
[1268]198
[6703]199 else if (_PP.ID() == 23) {
[1269]200 _msg23.extract(_PP);
201 }
[1268]202
[6703]203 else if (_PP.ID() == 24) {
[1269]204 _msg24.extract(_PP);
205 }
[1268]206
[1269]207 // Output for RTCM scan
[6703]208 if (_PP.ID() == 3) {
209 if (_msg03.validMsg) {
[8234]210 _antList.push_back(t_antRefPoint());
[6703]211
[10692]212 this->getStaCrd(_antList.back()._xx, _antList.back()._yy, _antList.back()._zz);
[6703]213
[10692]214 _antList.back()._type = t_antRefPoint::APC;
215 _antList.back()._message = _PP.ID();
[1269]216 }
[6703]217 } else if (_PP.ID() == 23) {
[8234]218 if (_msg23.validMsg) {
219 int antlen = strlen(_msg23.antType.c_str());
220 int serlen = strlen(_msg23.antSN.c_str());
221 if ((antlen) &&
[10692]222 (_antType.empty() || strncmp(_antType.back()._descriptor, _msg23.antType.c_str(), antlen) != 0)) {
[8234]223 _antType.push_back(t_antInfo());
[10692]224 memcpy(_antType.back()._descriptor, _msg23.antType.c_str(), antlen);
225 _antType.back()._descriptor[antlen] = 0;
[8234]226 if (serlen) {
[10692]227 memcpy(_antType.back()._serialnumber, _msg23.antSN.c_str(), serlen);
228 _antType.back()._serialnumber[serlen] = 0;
[8234]229 }
230 }
[1269]231 }
[6703]232 } else if (_PP.ID() == 24) {
233 if (_msg24.validMsg) {
[8234]234 _antList.push_back(t_antRefPoint());
[3594]235
[10692]236 _antList.back()._xx = _msg24.x;
237 _antList.back()._yy = _msg24.y;
238 _antList.back()._zz = _msg24.z;
[6703]239
[10692]240 _antList.back()._height_f = true;
241 _antList.back()._height = _msg24.h;
[6703]242
[10692]243 _antList.back()._type = t_antRefPoint::ARP;
244 _antList.back()._message = _PP.ID();
[1269]245 }
246 }
[242]247 }
[649]248 return success;
[242]249}
250
[1218]251void RTCM2Decoder::translateCorr2Obs(vector<string>& errmsg) {
[1044]252
[3580]253 QMutexLocker locker(&_mutex);
254
[6703]255 if (!_msg03.validMsg || !_msg2021.valid()) {
[1044]256 return;
257 }
258
259 double stax = _msg03.x + (_msg22.validMsg ? _msg22.dL1[0] : 0.0);
260 double stay = _msg03.y + (_msg22.validMsg ? _msg22.dL1[1] : 0.0);
261 double staz = _msg03.z + (_msg22.validMsg ? _msg22.dL1[2] : 0.0);
262
[6703]263 int refWeek;
[1044]264 double refSecs;
265 currentGPSWeeks(refWeek, refSecs);
266
[10692]267 // Resolve receiver time of measurement (see RTCM 2.3, page 4-42, message 18, Note 1)
[1044]268 // ----------------------------------------------------------------------------------
[6703]269 double hoursec_est = _msg2021.hoursec(); // estimated time of measurement
270 double hoursec_rcv = rint(hoursec_est * 1e2) / 1e2; // receiver clock reading at hoursec_est
[1044]271 double rcv_clk_bias = (hoursec_est - hoursec_rcv) * c_light;
272
[6703]273 int GPSWeek;
[1044]274 double GPSWeeks;
[6703]275 resolveEpoch(hoursec_est, refWeek, refSecs, GPSWeek, GPSWeeks);
[1044]276
[6703]277 int GPSWeek_rcv;
[1044]278 double GPSWeeks_rcv;
[6703]279 resolveEpoch(hoursec_rcv, refWeek, refSecs, GPSWeek_rcv, GPSWeeks_rcv);
[1044]280
281 // Loop over all satellites
282 // ------------------------
283 for (RTCM2_2021::data_iterator icorr = _msg2021.data.begin();
[6703]284 icorr != _msg2021.data.end(); icorr++) {
[1044]285 const RTCM2_2021::HiResCorr* corr = icorr->second;
286
[1218]287 // beg test
[6703]288 if (corr->PRN >= 200) {
[1218]289 continue;
290 }
291 // end test
292
[10599]293 t_prn prn;
[6703]294 char sys;
[10599]295 int num, flag;
[3562]296 if (corr->PRN < 200) {
[6194]297 sys = 'G';
[10599]298 num = corr->PRN;
299 }
300 else {
[6194]301 sys = 'R';
[10599]302 num = corr->PRN - 200;
[3562]303 }
[10599]304 flag = t_corrSSR::getSsrNavTypeFlag(sys, num);
305 prn.set(sys, num, flag);
[1218]306
[1044]307 double L1 = 0;
308 double L2 = 0;
309 double P1 = 0;
310 double P2 = 0;
311 string obsT = "";
312
313 // new observation
[7528]314 t_satObs new_obs;
[1044]315
[6137]316 t_frqObs* frqObs1C = new t_frqObs;
[6703]317 frqObs1C->_rnxType2ch = "1C";
[7528]318 new_obs._obs.push_back(frqObs1C);
[6137]319
320 t_frqObs* frqObs1P = new t_frqObs;
[6703]321 frqObs1P->_rnxType2ch = (sys == 'G') ? "1W" : "1P";
[7528]322 new_obs._obs.push_back(frqObs1P);
[6137]323
324 t_frqObs* frqObs2P = new t_frqObs;
[6703]325 frqObs2P->_rnxType2ch = (sys == 'G') ? "2W" : "2P";
[7528]326 new_obs._obs.push_back(frqObs2P);
[6137]327
[1218]328 // missing IOD
329 vector<string> missingIOD;
[6703]330 vector<string> hasIOD;
[1044]331 for (unsigned ii = 0; ii < 4; ii++) {
[7169]332 unsigned int IODcorr = 0;
[6703]333 double corrVal = 0;
334 const t_eph* eph = 0;
335 double* obsVal = 0;
[1044]336
337 switch (ii) {
[6703]338 case 0: // --- L1 ---
339 IODcorr = corr->IODp1;
340 corrVal = corr->phase1 * LAMBDA_1;
341 obsVal = &L1;
342 obsT = "L1";
343 break;
344 case 1: // --- L2 ---
345 IODcorr = corr->IODp2;
346 corrVal = corr->phase2 * LAMBDA_2;
347 obsVal = &L2;
348 obsT = "L2";
349 break;
350 case 2: // --- P1 ---
351 IODcorr = corr->IODr1;
352 corrVal = corr->range1;
353 obsVal = &P1;
354 obsT = "P1";
355 break;
356 case 3: // --- P2 ---
357 IODcorr = corr->IODr2;
358 corrVal = corr->range2;
359 obsVal = &P2;
360 obsT = "P2";
361 break;
362 default:
363 continue;
[1044]364 }
365
[1299]366 // Select corresponding ephemerides
[10599]367 QString prnInternalStr(prn.toInternalString().c_str());
368 const t_eph* ephLast = _ephUser.ephLast(prnInternalStr);
369 const t_eph* ephPrev = _ephUser.ephPrev(prnInternalStr);
[6703]370 if (ephLast && ephLast->IOD() == IODcorr) {
[6443]371 eph = ephLast;
[6703]372 } else if (ephPrev && ephPrev->IOD() == IODcorr) {
[6443]373 eph = ephPrev;
[6442]374 }
[1218]375
[6703]376 if (eph) {
[1218]377 ostringstream msg;
378 msg << obsT << ':' << setw(3) << eph->IOD();
379 hasIOD.push_back(msg.str());
380
[6703]381 int GPSWeek_tot;
382 double GPSWeeks_tot;
383 double rho, xSat, ySat, zSat, clkSat;
384 cmpRho(eph, stax, stay, staz, GPSWeek, GPSWeeks, rho, GPSWeek_tot,
385 GPSWeeks_tot, xSat, ySat, zSat, clkSat);
[1218]386
[6703]387 *obsVal = rho - corrVal + rcv_clk_bias - clkSat;
[1044]388
[6703]389 if (*obsVal == 0)
390 *obsVal = ZEROVALUE;
[10599]391 char sys;
392 int num, flag;
[7528]393 if (corr->PRN < 200) {
[10599]394 sys = 'G';
395 num = corr->PRN;
[6703]396 }
[10599]397 else {
398 sys = 'R';
399 num = corr->PRN - 200;
400 }
401 flag = t_corrSSR::getSsrNavTypeFlag(sys, num);
402 new_obs._prn.set(sys, num, flag);
[7528]403 new_obs._time.set(GPSWeek_rcv, GPSWeeks_rcv);
[6703]404
405 // Store estimated measurements
406 // ----------------------------
407 switch (ii) {
408 case 0: // --- L1 ---
409 frqObs1P->_phaseValid = true;
410 frqObs1P->_phase = *obsVal / LAMBDA_1;
[7835]411 //frqObs1P->_slipCounter = corr->lock1;
412 frqObs1P->_slipCounter = -1; // because RTCM2 definition is vice versa to RTCM3
[6703]413 break;
414 case 1: // --- L2 ---
415 frqObs2P->_phaseValid = true;
416 frqObs2P->_phase = *obsVal / LAMBDA_2;
[7835]417 //frqObs2P->_slipCounter = corr->lock2;
418 frqObs2P->_slipCounter = -1; // because RTCM2 definition is vice versa to RTCM3
[6703]419 break;
420 case 2: // --- C1 / P1 ---
421 if (corr->Pind1) {
422 frqObs1P->_codeValid = true;
423 frqObs1P->_code = *obsVal;
424 } else {
425 frqObs1C->_codeValid = true;
426 frqObs1C->_code = *obsVal;
427 }
428 break;
429 case 3: // --- C2 / P2 ---
430 if (corr->Pind2) {
431 frqObs2P->_codeValid = true;
432 frqObs2P->_code = *obsVal;
433 }
434 break;
435 default:
436 continue;
437 }
438 } else if (IODcorr != 0) {
[1218]439 ostringstream msg;
440 msg << obsT << ':' << setw(3) << IODcorr;
441 missingIOD.push_back(msg.str());
442 }
[1044]443 } // loop over frequencies
[6703]444
[1218]445 // Error report
[6703]446 if (missingIOD.size()) {
[1218]447 ostringstream missingIODstr;
448
[6703]449 copy(missingIOD.begin(), missingIOD.end(),
450 ostream_iterator<string>(missingIODstr, " "));
[1218]451
[6703]452 errmsg.push_back(
[10599]453 "missing eph for " + prn.toString() + " , IODs "
[6703]454 + missingIODstr.str());
[1218]455 }
456
457 // Store new observation
[7528]458 if (new_obs._time.mjd() > 0) {
459 _obsList.push_back(new_obs);
[1044]460 }
461 }
462}
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