source: ntrip/trunk/BNC/src/RTCM/GPSDecoder.cpp@ 5549

Last change on this file since 5549 was 5549, checked in by mervart, 10 years ago
File size: 6.4 KB
Line 
1// Part of BNC, a utility for retrieving decoding and
2// converting GNSS data streams from NTRIP broadcasters.
3//
4// Copyright (C) 2007
5// German Federal Agency for Cartography and Geodesy (BKG)
6// http://www.bkg.bund.de
7// Czech Technical University Prague, Department of Geodesy
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.
24
25/* -------------------------------------------------------------------------
26 * BKG NTRIP Client
27 * -------------------------------------------------------------------------
28 *
29 * Class: GPSDecoder
30 *
31 * Purpose: Decoder Base Class
32 *
33 * Author: L. Mervart
34 *
35 * Created: 16-Dec-2011
36 *
37 * Changes:
38 *
39 * -----------------------------------------------------------------------*/
40
41#include <iomanip>
42#include <cmath>
43
44#include "GPSDecoder.h"
45#include "bncsettings.h"
46
47extern "C" {
48#include "rtcm3torinex.h"
49}
50
51using namespace std;
52
53// Constructor
54//////////////////////////////////////////////////////////////////////////////
55GPSDecoder::GPSDecoder() {
56 _rnx = 0;
57}
58
59// Initialize RINEX Writer
60//////////////////////////////////////////////////////////////////////////////
61void GPSDecoder::initRinex(const QByteArray& staID, const QUrl& mountPoint,
62 const QByteArray& latitude,
63 const QByteArray& longitude, const QByteArray& nmea,
64 const QByteArray& ntripVersion) {
65 if (_rnx) {
66 return;
67 }
68 bncSettings settings;
69 if ( !settings.value("rnxPath").toString().isEmpty() ) {
70 _rnx = new bncRinex(staID, mountPoint, latitude, longitude,
71 nmea, ntripVersion);
72 }
73}
74
75// Write RINEX Epoch
76//////////////////////////////////////////////////////////////////////////////
77void GPSDecoder::dumpRinexEpoch(const t_obs& obs, const QByteArray& format) {
78 if (_rnx) {
79 long iSec = long(floor(obs.GPSWeeks+0.5));
80 long obsTime = obs.GPSWeek * 7*24*3600 + iSec;
81 if (_rnx->samplingRate() == 0 || iSec % _rnx->samplingRate() == 0) {
82 _rnx->deepCopy(obs);
83 }
84 _rnx->dumpEpoch(format, obsTime);
85 }
86}
87
88// Set RINEX Reconnect Flag
89//////////////////////////////////////////////////////////////////////////////
90void GPSDecoder::setRinexReconnectFlag(bool flag) {
91 if (_rnx) {
92 _rnx->setReconnectFlag(flag);
93 }
94}
95
96//
97//////////////////////////////////////////////////////////////////////////////
98void t_obs::setMeasdata(QString rnxStr, float rnxVers, double value) {
99
100 if (rnxVers < 3.0) {
101 if (rnxStr == "C1") rnxStr = "C1C";
102 else if (rnxStr == "P1") rnxStr = "C1P";
103 else if (rnxStr == "C2") rnxStr = "C2C";
104 else if (rnxStr == "P2") rnxStr = "C2P";
105 }
106
107 int ie = iEntry(rnxStr);
108
109 if (ie != -1) {
110 _codetype[ie] = rnxStr.mid(1);
111 _measdata[ie] = value;
112 }
113}
114
115//
116//////////////////////////////////////////////////////////////////////////////
117double t_obs::measdata(const QString& rnxStr, float rnxVers) const {
118
119 QString rnxStr_l = rnxStr;
120
121 if (rnxVers < 3.0) {
122 if (rnxStr_l == "C1") rnxStr_l = "C1C";
123 else if (rnxStr_l == "P1") rnxStr_l = "C1P";
124 else if (rnxStr_l == "C2") rnxStr_l = "C2C";
125 else if (rnxStr_l == "P2") rnxStr_l = "C2P";
126 }
127
128 int ie = iEntry(rnxStr_l);
129 if (ie != -1) {
130 return _measdata[ie];
131 }
132
133 return 0.0;
134}
135
136//
137//////////////////////////////////////////////////////////////////////////////
138QString t_obs::rnxStr(int iEntry) const {
139 QString str(1,' ');
140 switch(iEntry & 3) {
141 case GNSSENTRY_CODE: str[0] = 'C'; break;
142 case GNSSENTRY_PHASE: str[0] = 'L'; break;
143 case GNSSENTRY_DOPPLER: str[0] = 'D'; break;
144 case GNSSENTRY_SNR: str[0] = 'S'; break;
145 }
146 str += _codetype[iEntry];
147 return str.trimmed();
148}
149
150//
151//////////////////////////////////////////////////////////////////////////////
152int t_obs::iEntry(QString rnxStr) const {
153
154 int res = 0;
155
156 // Observation Type (Code, Phase, Doppler, SNR)
157 // --------------------------------------------
158 if (rnxStr[0] == 'C') {
159 res += GNSSENTRY_CODE;
160 }
161 else if (rnxStr[0] == 'L') {
162 res += GNSSENTRY_PHASE;
163 }
164 else if (rnxStr[0] == 'D') {
165 res += GNSSENTRY_DOPPLER;
166 }
167 else if (rnxStr[0] == 'S') {
168 res += GNSSENTRY_SNR;
169 }
170 else {
171 return -1;
172 }
173
174 // Frequency
175 // ---------
176 if (rnxStr[1] == '1') {
177 if (rnxStr.length() < 3) {
178 res += GNSSENTRY_TYPEC1;
179 }
180 else if (QString("ABCIQ").indexOf(rnxStr[2]) != -1) {
181 res += GNSSENTRY_TYPEC1;
182 }
183 else if (QString("SL").indexOf(rnxStr[2]) != -1) {
184 res += GNSSENTRY_TYPEC1N;
185 }
186 else if (QString("PWY").indexOf(rnxStr[2]) != -1) {
187 res += GNSSENTRY_TYPEP1;
188 }
189 else if (rnxStr[2] == 'Z') {
190 res += GNSSENTRY_TYPECSAIF;
191 }
192 else if (rnxStr[2] == 'X') {
193 if (satSys == 'C' || satSys == 'E') {
194 res += GNSSENTRY_TYPEC1;
195 }
196 else {
197 res += GNSSENTRY_TYPEC1N;
198 }
199 }
200 else {
201 return -1;
202 }
203 }
204 else if (rnxStr[1] == '2') {
205 if (rnxStr.length() < 3) {
206 res += GNSSENTRY_TYPEC2;
207 }
208 else if (QString("PWY").indexOf(rnxStr[2]) != -1) {
209 res += GNSSENTRY_TYPEP2;
210 }
211 else if (QString("CSLX").indexOf(rnxStr[2]) != -1) {
212 res += GNSSENTRY_TYPEC2;
213 }
214 else if (rnxStr[2] == 'I') {
215 if (satSys == 'C') {
216 res += GNSSENTRY_TYPEC1; // Compass: RINEX 3.01 "2I" corresponds to "1I" RINEX 3.02
217 }
218 else {
219 res += GNSSENTRY_TYPEC2;
220 }
221 }
222 else if (rnxStr[2] == 'Q') {
223 res += GNSSENTRY_TYPEC2;
224 }
225 else {
226 return -1;
227 }
228 }
229 else if (rnxStr[1] == '5') {
230 res += GNSSENTRY_TYPEC5;
231 }
232 else if (rnxStr[1] == '6') {
233 res += GNSSENTRY_TYPEC6;
234 }
235 else if (rnxStr[1] == '7') {
236 res += GNSSENTRY_TYPEC5B;
237 }
238 else if (rnxStr[1] == '8') {
239 res += GNSSENTRY_TYPEC5AB;
240 }
241 else {
242 return -1;
243 }
244
245 return res;
246}
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