Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 1 | /* Copyright (c) 2017-2021 The Linux Foundation. All rights reserved. |
| 2 | * |
| 3 | * Redistribution and use in source and binary forms, with or without |
| 4 | * modification, are permitted provided that the following conditions are |
| 5 | * met: |
| 6 | * * Redistributions of source code must retain the above copyright |
| 7 | * notice, this list of conditions and the following disclaimer. |
| 8 | * * Redistributions in binary form must reproduce the above |
| 9 | * copyright notice, this list of conditions and the following |
| 10 | * disclaimer in the documentation and/or other materials provided |
| 11 | * with the distribution. |
| 12 | * * Neither the name of The Linux Foundation, nor the names of its |
| 13 | * contributors may be used to endorse or promote products derived |
| 14 | * from this software without specific prior written permission. |
| 15 | * |
| 16 | * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED |
| 17 | * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF |
| 18 | * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT |
| 19 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS |
| 20 | * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
| 21 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
| 22 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR |
| 23 | * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, |
| 24 | * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE |
| 25 | * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN |
| 26 | * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
| 27 | * |
| 28 | */ |
| 29 | #define LOG_NDEBUG 0 |
| 30 | #define LOG_TAG "LocSvc_GnssAdapter" |
| 31 | |
| 32 | #include <inttypes.h> |
| 33 | #include <sys/stat.h> |
| 34 | #include <errno.h> |
| 35 | #include <ctype.h> |
| 36 | #include <cutils/properties.h> |
| 37 | #include <math.h> |
| 38 | #include <arpa/inet.h> |
| 39 | #include <netinet/in.h> |
| 40 | #include <netdb.h> |
| 41 | #include <GnssAdapter.h> |
| 42 | #include <string> |
| 43 | #include <sstream> |
| 44 | #include <loc_log.h> |
| 45 | #include <loc_nmea.h> |
| 46 | #include <Agps.h> |
| 47 | #include <SystemStatus.h> |
| 48 | #include <vector> |
| 49 | #include <loc_misc_utils.h> |
| 50 | #include <gps_extended_c.h> |
| 51 | |
| 52 | #define RAD2DEG (180.0 / M_PI) |
| 53 | #define DEG2RAD (M_PI / 180.0) |
| 54 | #define PROCESS_NAME_ENGINE_SERVICE "engine-service" |
| 55 | #define MIN_TRACKING_INTERVAL (100) // 100 msec |
| 56 | |
| 57 | #define BILLION_NSEC (1000000000ULL) |
| 58 | #define NMEA_MIN_THRESHOLD_MSEC (99) |
| 59 | #define NMEA_MAX_THRESHOLD_MSEC (975) |
| 60 | |
| 61 | #define DGNSS_RANGE_UPDATE_TIME_10MIN_IN_MILLI 600000 |
| 62 | |
| 63 | using namespace loc_core; |
| 64 | |
| 65 | static int loadEngHubForExternalEngine = 0; |
| 66 | static loc_param_s_type izatConfParamTable[] = { |
| 67 | {"LOAD_ENGHUB_FOR_EXTERNAL_ENGINE", &loadEngHubForExternalEngine, nullptr,'n'} |
| 68 | }; |
| 69 | |
| 70 | /* Method to fetch status cb from loc_net_iface library */ |
| 71 | typedef AgpsCbInfo& (*LocAgpsGetAgpsCbInfo)(LocAgpsOpenResultCb openResultCb, |
| 72 | LocAgpsCloseResultCb closeResultCb, void* userDataPtr); |
| 73 | |
| 74 | static void agpsOpenResultCb (bool isSuccess, AGpsExtType agpsType, const char* apn, |
| 75 | AGpsBearerType bearerType, void* userDataPtr); |
| 76 | static void agpsCloseResultCb (bool isSuccess, AGpsExtType agpsType, void* userDataPtr); |
| 77 | |
| 78 | typedef const CdfwInterface* (*getCdfwInterface)(); |
| 79 | |
| 80 | typedef void getPdnTypeFromWds(const std::string& apnName, std::function<void(int)> pdnCb); |
| 81 | |
| 82 | inline bool GnssReportLoggerUtil::isLogEnabled() { |
| 83 | return (mLogLatency != nullptr); |
| 84 | } |
| 85 | |
| 86 | inline void GnssReportLoggerUtil::log(const GnssLatencyInfo& gnssLatencyMeasInfo) { |
| 87 | if (mLogLatency != nullptr) { |
| 88 | mLogLatency(gnssLatencyMeasInfo); |
| 89 | } |
| 90 | } |
| 91 | |
| 92 | GnssAdapter::GnssAdapter() : |
| 93 | LocAdapterBase(0, |
| 94 | LocContext::getLocContext(LocContext::mLocationHalName), |
| 95 | true, nullptr, true), |
| 96 | mEngHubProxy(new EngineHubProxyBase()), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 97 | mNHzNeeded(false), |
| 98 | mSPEAlreadyRunningAtHighestInterval(false), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 99 | mLocPositionMode(), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 100 | mGnssSvIdUsedInPosition(), |
| 101 | mGnssSvIdUsedInPosAvail(false), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 102 | mGnssMbSvIdUsedInPosition{}, |
| 103 | mGnssMbSvIdUsedInPosAvail(false), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 104 | mControlCallbacks(), |
| 105 | mAfwControlId(0), |
| 106 | mNmeaMask(0), |
| 107 | mGnssSvIdConfig(), |
| 108 | mGnssSeconaryBandConfig(), |
| 109 | mGnssSvTypeConfig(), |
| 110 | mGnssSvTypeConfigCb(nullptr), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 111 | mSupportNfwControl(true), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 112 | mLocConfigInfo{}, |
| 113 | mNiData(), |
| 114 | mAgpsManager(), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 115 | mNfwCb(NULL), |
| 116 | mIsE911Session(NULL), |
| 117 | mIsMeasCorrInterfaceOpen(false), |
| 118 | mIsAntennaInfoInterfaceOpened(false), |
| 119 | mQDgnssListenerHDL(nullptr), |
| 120 | mCdfwInterface(nullptr), |
| 121 | mDGnssNeedReport(false), |
| 122 | mDGnssDataUsage(false), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 123 | mOdcpiRequestCb(nullptr), |
| 124 | mOdcpiRequestActive(false), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 125 | mCallbackPriority(OdcpiPrioritytype::ODCPI_HANDLER_PRIORITY_LOW), |
Michael Bestas | f2732b9 | 2024-08-31 05:34:13 +0300 | [diff] [blame] | 126 | mOdcpiStateMask(0), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 127 | mOdcpiTimer(this), |
| 128 | mOdcpiRequest(), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 129 | mLastDeleteAidingDataTime(0), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 130 | mSystemStatus(SystemStatus::getInstance(mMsgTask)), |
| 131 | mServerUrl(":"), |
| 132 | mXtraObserver(mSystemStatus->getOsObserver(), mMsgTask), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 133 | mLocSystemInfo{}, |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 134 | mSystemPowerState(POWER_STATE_UNKNOWN), |
| 135 | mBlockCPIInfo{}, |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 136 | mPowerOn(false), |
| 137 | mAllowFlpNetworkFixes(0), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 138 | mDreIntEnabled(false), |
| 139 | mNativeAgpsHandler(mSystemStatus->getOsObserver(), *this), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 140 | mGnssEnergyConsumedCb(nullptr), |
| 141 | mPowerStateCb(nullptr), |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 142 | mSendNmeaConsent(false), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 143 | mDgnssState(0), |
| 144 | mDgnssLastNmeaBootTimeMilli(0) |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 145 | { |
| 146 | LOC_LOGD("%s]: Constructor %p", __func__, this); |
| 147 | mLocPositionMode.mode = LOC_POSITION_MODE_INVALID; |
| 148 | |
| 149 | pthread_condattr_t condAttr; |
| 150 | pthread_condattr_init(&condAttr); |
| 151 | pthread_condattr_setclock(&condAttr, CLOCK_MONOTONIC); |
| 152 | pthread_cond_init(&mNiData.session.tCond, &condAttr); |
| 153 | pthread_cond_init(&mNiData.sessionEs.tCond, &condAttr); |
| 154 | pthread_condattr_destroy(&condAttr); |
| 155 | |
| 156 | /* Set ATL open/close callbacks */ |
| 157 | AgpsAtlOpenStatusCb atlOpenStatusCb = |
| 158 | [this](int handle, int isSuccess, char* apn, uint32_t apnLen, |
| 159 | AGpsBearerType bearerType, AGpsExtType agpsType, LocApnTypeMask mask) { |
| 160 | |
| 161 | mLocApi->atlOpenStatus( |
| 162 | handle, isSuccess, apn, apnLen, bearerType, agpsType, mask); |
| 163 | }; |
| 164 | AgpsAtlCloseStatusCb atlCloseStatusCb = |
| 165 | [this](int handle, int isSuccess) { |
| 166 | |
| 167 | mLocApi->atlCloseStatus(handle, isSuccess); |
| 168 | }; |
| 169 | mAgpsManager.registerATLCallbacks(atlOpenStatusCb, atlCloseStatusCb); |
| 170 | |
| 171 | readConfigCommand(); |
| 172 | initDefaultAgpsCommand(); |
| 173 | initEngHubProxyCommand(); |
| 174 | |
| 175 | // at last step, let us inform adapater base that we are done |
| 176 | // with initialization, e.g.: ready to process handleEngineUpEvent |
| 177 | doneInit(); |
| 178 | } |
| 179 | |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 180 | void GnssAdapter::setControlCallbacksCommand(LocationControlCallbacks& controlCallbacks) |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 181 | { |
| 182 | struct MsgSetControlCallbacks : public LocMsg { |
| 183 | GnssAdapter& mAdapter; |
| 184 | const LocationControlCallbacks mControlCallbacks; |
| 185 | inline MsgSetControlCallbacks(GnssAdapter& adapter, |
| 186 | LocationControlCallbacks& controlCallbacks) : |
| 187 | LocMsg(), |
| 188 | mAdapter(adapter), |
| 189 | mControlCallbacks(controlCallbacks) {} |
| 190 | inline virtual void proc() const { |
| 191 | mAdapter.setControlCallbacks(mControlCallbacks); |
| 192 | } |
| 193 | }; |
| 194 | |
| 195 | sendMsg(new MsgSetControlCallbacks(*this, controlCallbacks)); |
| 196 | } |
| 197 | |
| 198 | void |
| 199 | GnssAdapter::convertOptions(LocPosMode& out, const TrackingOptions& trackingOptions) |
| 200 | { |
| 201 | switch (trackingOptions.mode) { |
| 202 | case GNSS_SUPL_MODE_MSB: |
| 203 | out.mode = LOC_POSITION_MODE_MS_BASED; |
| 204 | break; |
| 205 | case GNSS_SUPL_MODE_MSA: |
| 206 | out.mode = LOC_POSITION_MODE_MS_ASSISTED; |
| 207 | break; |
| 208 | default: |
| 209 | out.mode = LOC_POSITION_MODE_STANDALONE; |
| 210 | break; |
| 211 | } |
| 212 | out.share_position = true; |
| 213 | out.min_interval = trackingOptions.minInterval; |
| 214 | out.powerMode = trackingOptions.powerMode; |
| 215 | out.timeBetweenMeasurements = trackingOptions.tbm; |
| 216 | } |
| 217 | |
| 218 | bool |
| 219 | GnssAdapter::checkAndSetSPEToRunforNHz(TrackingOptions & out) { |
| 220 | |
| 221 | // first check if NHz meas is needed at all, if not, just return false |
| 222 | // if a NHz capable engine is subscribed for NHz measurement or NHz positions, |
| 223 | // always run the SPE only session at 100ms TBF. |
| 224 | // If SPE session is already set to highest interval, no need to start it again. |
| 225 | |
| 226 | bool isSPERunningAtHighestInterval = false; |
| 227 | |
| 228 | if (!mNHzNeeded) { |
| 229 | LOC_LOGd("No nHz session needed."); |
| 230 | } else if (mSPEAlreadyRunningAtHighestInterval) { |
| 231 | LOC_LOGd("SPE is already running at highest interval."); |
| 232 | isSPERunningAtHighestInterval = true; |
| 233 | } else if (out.minInterval > MIN_TRACKING_INTERVAL) { |
| 234 | out.minInterval = MIN_TRACKING_INTERVAL; |
| 235 | LOC_LOGd("nHz session is needed, starting SPE only session at 100ms TBF."); |
| 236 | mSPEAlreadyRunningAtHighestInterval = true; |
| 237 | } |
| 238 | |
| 239 | return isSPERunningAtHighestInterval; |
| 240 | } |
| 241 | |
| 242 | |
| 243 | void |
| 244 | GnssAdapter::convertLocation(Location& out, const UlpLocation& ulpLocation, |
| 245 | const GpsLocationExtended& locationExtended) |
| 246 | { |
| 247 | memset(&out, 0, sizeof(Location)); |
| 248 | out.size = sizeof(Location); |
| 249 | if (LOC_GPS_LOCATION_HAS_LAT_LONG & ulpLocation.gpsLocation.flags) { |
| 250 | out.flags |= LOCATION_HAS_LAT_LONG_BIT; |
| 251 | out.latitude = ulpLocation.gpsLocation.latitude; |
| 252 | out.longitude = ulpLocation.gpsLocation.longitude; |
| 253 | } |
| 254 | if (LOC_GPS_LOCATION_HAS_ALTITUDE & ulpLocation.gpsLocation.flags) { |
| 255 | out.flags |= LOCATION_HAS_ALTITUDE_BIT; |
| 256 | out.altitude = ulpLocation.gpsLocation.altitude; |
| 257 | } |
| 258 | if (LOC_GPS_LOCATION_HAS_SPEED & ulpLocation.gpsLocation.flags) { |
| 259 | out.flags |= LOCATION_HAS_SPEED_BIT; |
| 260 | out.speed = ulpLocation.gpsLocation.speed; |
| 261 | } |
| 262 | if (LOC_GPS_LOCATION_HAS_BEARING & ulpLocation.gpsLocation.flags) { |
| 263 | out.flags |= LOCATION_HAS_BEARING_BIT; |
| 264 | out.bearing = ulpLocation.gpsLocation.bearing; |
| 265 | } |
| 266 | if (LOC_GPS_LOCATION_HAS_ACCURACY & ulpLocation.gpsLocation.flags) { |
| 267 | out.flags |= LOCATION_HAS_ACCURACY_BIT; |
| 268 | out.accuracy = ulpLocation.gpsLocation.accuracy; |
| 269 | } |
| 270 | if (GPS_LOCATION_EXTENDED_HAS_VERT_UNC & locationExtended.flags) { |
| 271 | out.flags |= LOCATION_HAS_VERTICAL_ACCURACY_BIT; |
| 272 | out.verticalAccuracy = locationExtended.vert_unc; |
| 273 | } |
| 274 | if (GPS_LOCATION_EXTENDED_HAS_SPEED_UNC & locationExtended.flags) { |
| 275 | out.flags |= LOCATION_HAS_SPEED_ACCURACY_BIT; |
| 276 | out.speedAccuracy = locationExtended.speed_unc; |
| 277 | } |
| 278 | if (GPS_LOCATION_EXTENDED_HAS_BEARING_UNC & locationExtended.flags) { |
| 279 | out.flags |= LOCATION_HAS_BEARING_ACCURACY_BIT; |
| 280 | out.bearingAccuracy = locationExtended.bearing_unc; |
| 281 | } |
| 282 | if (GPS_LOCATION_EXTENDED_HAS_CONFORMITY_INDEX & locationExtended.flags) { |
| 283 | out.flags |= LOCATION_HAS_CONFORMITY_INDEX_BIT; |
| 284 | out.conformityIndex = locationExtended.conformityIndex; |
| 285 | } |
| 286 | out.timestamp = ulpLocation.gpsLocation.timestamp; |
| 287 | if (LOC_POS_TECH_MASK_SATELLITE & locationExtended.tech_mask) { |
| 288 | out.techMask |= LOCATION_TECHNOLOGY_GNSS_BIT; |
| 289 | } |
| 290 | if (LOC_POS_TECH_MASK_CELLID & locationExtended.tech_mask) { |
| 291 | out.techMask |= LOCATION_TECHNOLOGY_CELL_BIT; |
| 292 | } |
| 293 | if (LOC_POS_TECH_MASK_WIFI & locationExtended.tech_mask) { |
| 294 | out.techMask |= LOCATION_TECHNOLOGY_WIFI_BIT; |
| 295 | } |
| 296 | if (LOC_POS_TECH_MASK_SENSORS & locationExtended.tech_mask) { |
| 297 | out.techMask |= LOCATION_TECHNOLOGY_SENSORS_BIT; |
| 298 | } |
| 299 | if (LOC_POS_TECH_MASK_REFERENCE_LOCATION & locationExtended.tech_mask) { |
| 300 | out.techMask |= LOCATION_TECHNOLOGY_REFERENCE_LOCATION_BIT; |
| 301 | } |
| 302 | if (LOC_POS_TECH_MASK_INJECTED_COARSE_POSITION & locationExtended.tech_mask) { |
| 303 | out.techMask |= LOCATION_TECHNOLOGY_INJECTED_COARSE_POSITION_BIT; |
| 304 | } |
| 305 | if (LOC_POS_TECH_MASK_AFLT & locationExtended.tech_mask) { |
| 306 | out.techMask |= LOCATION_TECHNOLOGY_AFLT_BIT; |
| 307 | } |
| 308 | if (LOC_POS_TECH_MASK_HYBRID & locationExtended.tech_mask) { |
| 309 | out.techMask |= LOCATION_TECHNOLOGY_HYBRID_BIT; |
| 310 | } |
| 311 | if (LOC_POS_TECH_MASK_PPE & locationExtended.tech_mask) { |
| 312 | out.techMask |= LOCATION_TECHNOLOGY_PPE_BIT; |
| 313 | } |
| 314 | if (LOC_POS_TECH_MASK_VEH & locationExtended.tech_mask) { |
| 315 | out.techMask |= LOCATION_TECHNOLOGY_VEH_BIT; |
| 316 | } |
| 317 | if (LOC_POS_TECH_MASK_VIS & locationExtended.tech_mask) { |
| 318 | out.techMask |= LOCATION_TECHNOLOGY_VIS_BIT; |
| 319 | } |
| 320 | if (LOC_NAV_MASK_DGNSS_CORRECTION & locationExtended.navSolutionMask) { |
| 321 | out.techMask |= LOCATION_TECHNOLOGY_DGNSS_BIT; |
| 322 | } |
| 323 | |
| 324 | if (LOC_GPS_LOCATION_HAS_SPOOF_MASK & ulpLocation.gpsLocation.flags) { |
| 325 | out.flags |= LOCATION_HAS_SPOOF_MASK; |
| 326 | out.spoofMask = ulpLocation.gpsLocation.spoof_mask; |
| 327 | } |
| 328 | if (LOC_GPS_LOCATION_HAS_ELAPSED_REAL_TIME & ulpLocation.gpsLocation.flags) { |
| 329 | out.flags |= LOCATION_HAS_ELAPSED_REAL_TIME; |
| 330 | out.elapsedRealTime = ulpLocation.gpsLocation.elapsedRealTime; |
| 331 | out.elapsedRealTimeUnc = ulpLocation.gpsLocation.elapsedRealTimeUnc; |
| 332 | } |
| 333 | } |
| 334 | |
| 335 | /* This is utility routine that computes number of SV used |
| 336 | in the fix from the svUsedIdsMask. |
| 337 | */ |
| 338 | #define MAX_SV_CNT_SUPPORTED_IN_ONE_CONSTELLATION 64 |
| 339 | uint16_t GnssAdapter::getNumSvUsed(uint64_t svUsedIdsMask, |
| 340 | int totalSvCntInThisConstellation) |
| 341 | { |
| 342 | if (totalSvCntInThisConstellation > MAX_SV_CNT_SUPPORTED_IN_ONE_CONSTELLATION) { |
| 343 | LOC_LOGe ("error: total SV count in this constellation %d exceeded limit of %d", |
| 344 | totalSvCntInThisConstellation, MAX_SV_CNT_SUPPORTED_IN_ONE_CONSTELLATION); |
| 345 | return 0; |
| 346 | } |
| 347 | |
| 348 | uint16_t numSvUsed = 0; |
| 349 | uint64_t mask = 0x1; |
| 350 | for (int i = 0; i < totalSvCntInThisConstellation; i++) { |
| 351 | if (svUsedIdsMask & mask) { |
| 352 | numSvUsed++; |
| 353 | } |
| 354 | mask <<= 1; |
| 355 | } |
| 356 | |
| 357 | return numSvUsed; |
| 358 | } |
| 359 | |
| 360 | void |
| 361 | GnssAdapter::convertLocationInfo(GnssLocationInfoNotification& out, |
| 362 | const GpsLocationExtended& locationExtended, |
| 363 | enum loc_sess_status status) |
| 364 | { |
| 365 | out.size = sizeof(GnssLocationInfoNotification); |
| 366 | if (GPS_LOCATION_EXTENDED_HAS_ALTITUDE_MEAN_SEA_LEVEL & locationExtended.flags) { |
| 367 | out.flags |= GNSS_LOCATION_INFO_ALTITUDE_MEAN_SEA_LEVEL_BIT; |
| 368 | out.altitudeMeanSeaLevel = locationExtended.altitudeMeanSeaLevel; |
| 369 | } |
| 370 | if (GPS_LOCATION_EXTENDED_HAS_EXT_DOP & locationExtended.flags) { |
| 371 | out.flags |= (GNSS_LOCATION_INFO_DOP_BIT|GNSS_LOCATION_INFO_EXT_DOP_BIT); |
| 372 | out.pdop = locationExtended.extDOP.PDOP; |
| 373 | out.hdop = locationExtended.extDOP.HDOP; |
| 374 | out.vdop = locationExtended.extDOP.VDOP; |
| 375 | out.gdop = locationExtended.extDOP.GDOP; |
| 376 | out.tdop = locationExtended.extDOP.TDOP; |
| 377 | } else if (GPS_LOCATION_EXTENDED_HAS_DOP & locationExtended.flags) { |
| 378 | out.flags |= GNSS_LOCATION_INFO_DOP_BIT; |
| 379 | out.pdop = locationExtended.pdop; |
| 380 | out.hdop = locationExtended.hdop; |
| 381 | out.vdop = locationExtended.vdop; |
| 382 | } |
| 383 | if (GPS_LOCATION_EXTENDED_HAS_MAG_DEV & locationExtended.flags) { |
| 384 | out.flags |= GNSS_LOCATION_INFO_MAGNETIC_DEVIATION_BIT; |
| 385 | out.magneticDeviation = locationExtended.magneticDeviation; |
| 386 | } |
| 387 | if (GPS_LOCATION_EXTENDED_HAS_HOR_RELIABILITY & locationExtended.flags) { |
| 388 | out.flags |= GNSS_LOCATION_INFO_HOR_RELIABILITY_BIT; |
| 389 | switch (locationExtended.horizontal_reliability) { |
| 390 | case LOC_RELIABILITY_VERY_LOW: |
| 391 | out.horReliability = LOCATION_RELIABILITY_VERY_LOW; |
| 392 | break; |
| 393 | case LOC_RELIABILITY_LOW: |
| 394 | out.horReliability = LOCATION_RELIABILITY_LOW; |
| 395 | break; |
| 396 | case LOC_RELIABILITY_MEDIUM: |
| 397 | out.horReliability = LOCATION_RELIABILITY_MEDIUM; |
| 398 | break; |
| 399 | case LOC_RELIABILITY_HIGH: |
| 400 | out.horReliability = LOCATION_RELIABILITY_HIGH; |
| 401 | break; |
| 402 | default: |
| 403 | out.horReliability = LOCATION_RELIABILITY_NOT_SET; |
| 404 | break; |
| 405 | } |
| 406 | } |
| 407 | if (GPS_LOCATION_EXTENDED_HAS_VERT_RELIABILITY & locationExtended.flags) { |
| 408 | out.flags |= GNSS_LOCATION_INFO_VER_RELIABILITY_BIT; |
| 409 | switch (locationExtended.vertical_reliability) { |
| 410 | case LOC_RELIABILITY_VERY_LOW: |
| 411 | out.verReliability = LOCATION_RELIABILITY_VERY_LOW; |
| 412 | break; |
| 413 | case LOC_RELIABILITY_LOW: |
| 414 | out.verReliability = LOCATION_RELIABILITY_LOW; |
| 415 | break; |
| 416 | case LOC_RELIABILITY_MEDIUM: |
| 417 | out.verReliability = LOCATION_RELIABILITY_MEDIUM; |
| 418 | break; |
| 419 | case LOC_RELIABILITY_HIGH: |
| 420 | out.verReliability = LOCATION_RELIABILITY_HIGH; |
| 421 | break; |
| 422 | default: |
| 423 | out.verReliability = LOCATION_RELIABILITY_NOT_SET; |
| 424 | break; |
| 425 | } |
| 426 | } |
| 427 | if (GPS_LOCATION_EXTENDED_HAS_HOR_ELIP_UNC_MAJOR & locationExtended.flags) { |
| 428 | out.flags |= GNSS_LOCATION_INFO_HOR_ACCURACY_ELIP_SEMI_MAJOR_BIT; |
| 429 | out.horUncEllipseSemiMajor = locationExtended.horUncEllipseSemiMajor; |
| 430 | } |
| 431 | if (GPS_LOCATION_EXTENDED_HAS_HOR_ELIP_UNC_MINOR & locationExtended.flags) { |
| 432 | out.flags |= GNSS_LOCATION_INFO_HOR_ACCURACY_ELIP_SEMI_MINOR_BIT; |
| 433 | out.horUncEllipseSemiMinor = locationExtended.horUncEllipseSemiMinor; |
| 434 | } |
| 435 | if (GPS_LOCATION_EXTENDED_HAS_HOR_ELIP_UNC_AZIMUTH & locationExtended.flags) { |
| 436 | out.flags |= GNSS_LOCATION_INFO_HOR_ACCURACY_ELIP_AZIMUTH_BIT; |
| 437 | out.horUncEllipseOrientAzimuth = locationExtended.horUncEllipseOrientAzimuth; |
| 438 | } |
| 439 | if (GPS_LOCATION_EXTENDED_HAS_NORTH_STD_DEV & locationExtended.flags) { |
| 440 | out.flags |= GNSS_LOCATION_INFO_NORTH_STD_DEV_BIT; |
| 441 | out.northStdDeviation = locationExtended.northStdDeviation; |
| 442 | } |
| 443 | if (GPS_LOCATION_EXTENDED_HAS_EAST_STD_DEV & locationExtended.flags) { |
| 444 | out.flags |= GNSS_LOCATION_INFO_EAST_STD_DEV_BIT; |
| 445 | out.eastStdDeviation = locationExtended.eastStdDeviation; |
| 446 | } |
| 447 | if (GPS_LOCATION_EXTENDED_HAS_NORTH_VEL & locationExtended.flags) { |
| 448 | out.flags |= GNSS_LOCATION_INFO_NORTH_VEL_BIT; |
| 449 | out.northVelocity = locationExtended.northVelocity; |
| 450 | } |
| 451 | if (GPS_LOCATION_EXTENDED_HAS_NORTH_VEL_UNC & locationExtended.flags) { |
| 452 | out.flags |= GNSS_LOCATION_INFO_NORTH_VEL_UNC_BIT; |
| 453 | out.northVelocityStdDeviation = locationExtended.northVelocityStdDeviation; |
| 454 | } |
| 455 | if (GPS_LOCATION_EXTENDED_HAS_EAST_VEL & locationExtended.flags) { |
| 456 | out.flags |= GNSS_LOCATION_INFO_EAST_VEL_BIT; |
| 457 | out.eastVelocity = locationExtended.eastVelocity; |
| 458 | } |
| 459 | if (GPS_LOCATION_EXTENDED_HAS_EAST_VEL_UNC & locationExtended.flags) { |
| 460 | out.flags |= GNSS_LOCATION_INFO_EAST_VEL_UNC_BIT; |
| 461 | out.eastVelocityStdDeviation = locationExtended.eastVelocityStdDeviation; |
| 462 | } |
| 463 | if (GPS_LOCATION_EXTENDED_HAS_UP_VEL & locationExtended.flags) { |
| 464 | out.flags |= GNSS_LOCATION_INFO_UP_VEL_BIT; |
| 465 | out.upVelocity = locationExtended.upVelocity; |
| 466 | } |
| 467 | if (GPS_LOCATION_EXTENDED_HAS_UP_VEL_UNC & locationExtended.flags) { |
| 468 | out.flags |= GNSS_LOCATION_INFO_UP_VEL_UNC_BIT; |
| 469 | out.upVelocityStdDeviation = locationExtended.upVelocityStdDeviation; |
| 470 | } |
| 471 | if (GPS_LOCATION_EXTENDED_HAS_GNSS_SV_USED_DATA & locationExtended.flags) { |
| 472 | out.flags |= GNSS_LOCATION_INFO_GNSS_SV_USED_DATA_BIT; |
| 473 | out.svUsedInPosition.gpsSvUsedIdsMask = |
| 474 | locationExtended.gnss_sv_used_ids.gps_sv_used_ids_mask; |
| 475 | out.svUsedInPosition.gloSvUsedIdsMask = |
| 476 | locationExtended.gnss_sv_used_ids.glo_sv_used_ids_mask; |
| 477 | out.svUsedInPosition.galSvUsedIdsMask = |
| 478 | locationExtended.gnss_sv_used_ids.gal_sv_used_ids_mask; |
| 479 | out.svUsedInPosition.bdsSvUsedIdsMask = |
| 480 | locationExtended.gnss_sv_used_ids.bds_sv_used_ids_mask; |
| 481 | out.svUsedInPosition.qzssSvUsedIdsMask = |
| 482 | locationExtended.gnss_sv_used_ids.qzss_sv_used_ids_mask; |
| 483 | out.svUsedInPosition.navicSvUsedIdsMask = |
| 484 | locationExtended.gnss_sv_used_ids.navic_sv_used_ids_mask; |
| 485 | |
| 486 | out.flags |= GNSS_LOCATION_INFO_NUM_SV_USED_IN_POSITION_BIT; |
| 487 | out.numSvUsedInPosition = getNumSvUsed(out.svUsedInPosition.gpsSvUsedIdsMask, |
| 488 | GPS_SV_PRN_MAX - GPS_SV_PRN_MIN + 1); |
| 489 | out.numSvUsedInPosition += getNumSvUsed(out.svUsedInPosition.gloSvUsedIdsMask, |
| 490 | GLO_SV_PRN_MAX - GLO_SV_PRN_MIN + 1); |
| 491 | out.numSvUsedInPosition += getNumSvUsed(out.svUsedInPosition.qzssSvUsedIdsMask, |
| 492 | QZSS_SV_PRN_MAX - QZSS_SV_PRN_MIN + 1); |
| 493 | out.numSvUsedInPosition += getNumSvUsed(out.svUsedInPosition.bdsSvUsedIdsMask, |
| 494 | BDS_SV_PRN_MAX - BDS_SV_PRN_MIN + 1); |
| 495 | out.numSvUsedInPosition += getNumSvUsed(out.svUsedInPosition.galSvUsedIdsMask, |
| 496 | GAL_SV_PRN_MAX - GAL_SV_PRN_MIN + 1); |
| 497 | out.numSvUsedInPosition += getNumSvUsed(out.svUsedInPosition.navicSvUsedIdsMask, |
| 498 | NAVIC_SV_PRN_MAX - NAVIC_SV_PRN_MIN + 1); |
| 499 | |
| 500 | out.numOfMeasReceived = locationExtended.numOfMeasReceived; |
| 501 | for (int idx =0; idx < locationExtended.numOfMeasReceived; idx++) { |
| 502 | out.measUsageInfo[idx].gnssSignalType = |
| 503 | locationExtended.measUsageInfo[idx].gnssSignalType; |
| 504 | out.measUsageInfo[idx].gnssSvId = |
| 505 | locationExtended.measUsageInfo[idx].gnssSvId; |
| 506 | out.measUsageInfo[idx].gnssConstellation = |
| 507 | locationExtended.measUsageInfo[idx].gnssConstellation; |
| 508 | } |
| 509 | } |
| 510 | if (GPS_LOCATION_EXTENDED_HAS_NAV_SOLUTION_MASK & locationExtended.flags) { |
| 511 | out.flags |= GNSS_LOCATION_INFO_NAV_SOLUTION_MASK_BIT; |
| 512 | out.navSolutionMask = locationExtended.navSolutionMask; |
| 513 | } |
| 514 | if (GPS_LOCATION_EXTENDED_HAS_POS_DYNAMICS_DATA & locationExtended.flags) { |
| 515 | out.flags |= GPS_LOCATION_EXTENDED_HAS_POS_DYNAMICS_DATA; |
| 516 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 517 | LOCATION_NAV_DATA_HAS_LONG_ACCEL_BIT) { |
| 518 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_LONG_ACCEL_BIT; |
| 519 | } |
| 520 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 521 | LOCATION_NAV_DATA_HAS_LAT_ACCEL_BIT) { |
| 522 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_LAT_ACCEL_BIT; |
| 523 | } |
| 524 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 525 | LOCATION_NAV_DATA_HAS_VERT_ACCEL_BIT) { |
| 526 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_VERT_ACCEL_BIT; |
| 527 | } |
| 528 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 529 | LOCATION_NAV_DATA_HAS_YAW_RATE_BIT) { |
| 530 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_YAW_RATE_BIT; |
| 531 | } |
| 532 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 533 | LOCATION_NAV_DATA_HAS_PITCH_BIT) { |
| 534 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_PITCH_BIT; |
| 535 | } |
| 536 | |
| 537 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 538 | LOCATION_NAV_DATA_HAS_LONG_ACCEL_UNC_BIT) { |
| 539 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_LONG_ACCEL_UNC_BIT; |
| 540 | } |
| 541 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 542 | LOCATION_NAV_DATA_HAS_LAT_ACCEL_UNC_BIT) { |
| 543 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_LAT_ACCEL_UNC_BIT; |
| 544 | } |
| 545 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 546 | LOCATION_NAV_DATA_HAS_VERT_ACCEL_UNC_BIT) { |
| 547 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_VERT_ACCEL_UNC_BIT; |
| 548 | } |
| 549 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 550 | LOCATION_NAV_DATA_HAS_YAW_RATE_UNC_BIT) { |
| 551 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_YAW_RATE_UNC_BIT; |
| 552 | } |
| 553 | if (locationExtended.bodyFrameData.bodyFrameDataMask & |
| 554 | LOCATION_NAV_DATA_HAS_PITCH_UNC_BIT) { |
| 555 | out.bodyFrameData.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_PITCH_UNC_BIT; |
| 556 | } |
| 557 | |
| 558 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 559 | LOCATION_NAV_DATA_HAS_PITCH_RATE_BIT) { |
| 560 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_PITCH_RATE_BIT; |
| 561 | } |
| 562 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 563 | LOCATION_NAV_DATA_HAS_PITCH_RATE_UNC_BIT) { |
| 564 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_PITCH_RATE_UNC_BIT; |
| 565 | } |
| 566 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 567 | LOCATION_NAV_DATA_HAS_ROLL_BIT) { |
| 568 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_ROLL_BIT; |
| 569 | } |
| 570 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 571 | LOCATION_NAV_DATA_HAS_ROLL_UNC_BIT) { |
| 572 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_ROLL_UNC_BIT; |
| 573 | } |
| 574 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 575 | LOCATION_NAV_DATA_HAS_ROLL_RATE_BIT) { |
| 576 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_ROLL_RATE_BIT; |
| 577 | } |
| 578 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 579 | LOCATION_NAV_DATA_HAS_ROLL_RATE_UNC_BIT) { |
| 580 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_ROLL_RATE_UNC_BIT; |
| 581 | } |
| 582 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 583 | LOCATION_NAV_DATA_HAS_YAW_BIT) { |
| 584 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_YAW_BIT; |
| 585 | } |
| 586 | if (locationExtended.bodyFrameDataExt.bodyFrameDataMask & |
| 587 | LOCATION_NAV_DATA_HAS_YAW_UNC_BIT) { |
| 588 | out.bodyFrameDataExt.bodyFrameDataMask |= LOCATION_NAV_DATA_HAS_YAW_UNC_BIT; |
| 589 | } |
| 590 | |
| 591 | out.bodyFrameData.longAccel = locationExtended.bodyFrameData.longAccel; |
| 592 | out.bodyFrameData.latAccel = locationExtended.bodyFrameData.latAccel; |
| 593 | out.bodyFrameData.vertAccel = locationExtended.bodyFrameData.vertAccel; |
| 594 | out.bodyFrameData.yawRate = locationExtended.bodyFrameData.yawRate; |
| 595 | out.bodyFrameData.pitch = locationExtended.bodyFrameData.pitch; |
| 596 | out.bodyFrameData.longAccelUnc = locationExtended.bodyFrameData.longAccelUnc; |
| 597 | out.bodyFrameData.latAccelUnc = locationExtended.bodyFrameData.latAccelUnc; |
| 598 | out.bodyFrameData.vertAccelUnc = locationExtended.bodyFrameData.vertAccelUnc; |
| 599 | out.bodyFrameData.yawRateUnc = locationExtended.bodyFrameData.yawRateUnc; |
| 600 | out.bodyFrameData.pitchUnc = locationExtended.bodyFrameData.pitchUnc; |
| 601 | |
| 602 | out.bodyFrameDataExt.pitchRate = locationExtended.bodyFrameDataExt.pitchRate; |
| 603 | out.bodyFrameDataExt.pitchRateUnc = locationExtended.bodyFrameDataExt.pitchRateUnc; |
| 604 | out.bodyFrameDataExt.roll = locationExtended.bodyFrameDataExt.roll; |
| 605 | out.bodyFrameDataExt.rollUnc = locationExtended.bodyFrameDataExt.rollUnc; |
| 606 | out.bodyFrameDataExt.rollRate = locationExtended.bodyFrameDataExt.rollRate; |
| 607 | out.bodyFrameDataExt.rollRateUnc = locationExtended.bodyFrameDataExt.rollRateUnc; |
| 608 | out.bodyFrameDataExt.yaw = locationExtended.bodyFrameDataExt.yaw; |
| 609 | out.bodyFrameDataExt.yawUnc = locationExtended.bodyFrameDataExt.yawUnc; |
| 610 | } |
| 611 | |
| 612 | // Validity of this structure is established from the timeSrc of the GnssSystemTime structure. |
| 613 | out.gnssSystemTime = locationExtended.gnssSystemTime; |
| 614 | |
| 615 | if (GPS_LOCATION_EXTENDED_HAS_LEAP_SECONDS & locationExtended.flags) { |
| 616 | out.flags |= GNSS_LOCATION_INFO_LEAP_SECONDS_BIT; |
| 617 | out.leapSeconds = locationExtended.leapSeconds; |
| 618 | } |
| 619 | |
| 620 | if (GPS_LOCATION_EXTENDED_HAS_TIME_UNC & locationExtended.flags) { |
| 621 | out.flags |= GNSS_LOCATION_INFO_TIME_UNC_BIT; |
| 622 | out.timeUncMs = locationExtended.timeUncMs; |
| 623 | } |
| 624 | |
| 625 | if (GPS_LOCATION_EXTENDED_HAS_CALIBRATION_CONFIDENCE & locationExtended.flags) { |
| 626 | out.flags |= GNSS_LOCATION_INFO_CALIBRATION_CONFIDENCE_BIT; |
| 627 | out.calibrationConfidence = locationExtended.calibrationConfidence; |
| 628 | } |
| 629 | |
| 630 | if (GPS_LOCATION_EXTENDED_HAS_CALIBRATION_STATUS & locationExtended.flags) { |
| 631 | out.flags |= GNSS_LOCATION_INFO_CALIBRATION_STATUS_BIT; |
| 632 | out.calibrationStatus = locationExtended.calibrationStatus; |
| 633 | } |
| 634 | |
| 635 | if (GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_TYPE & locationExtended.flags) { |
| 636 | out.flags |= GNSS_LOCATION_INFO_OUTPUT_ENG_TYPE_BIT; |
| 637 | out.locOutputEngType = locationExtended.locOutputEngType; |
| 638 | } |
| 639 | |
| 640 | if (GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_MASK & locationExtended.flags) { |
| 641 | out.flags |= GNSS_LOCATION_INFO_OUTPUT_ENG_MASK_BIT; |
| 642 | out.locOutputEngMask = locationExtended.locOutputEngMask; |
| 643 | } |
| 644 | |
| 645 | if (GPS_LOCATION_EXTENDED_HAS_CONFORMITY_INDEX & locationExtended.flags) { |
| 646 | out.flags |= GNSS_LOCATION_INFO_CONFORMITY_INDEX_BIT; |
| 647 | out.conformityIndex = locationExtended.conformityIndex; |
| 648 | } |
| 649 | |
| 650 | if (GPS_LOCATION_EXTENDED_HAS_LLA_VRP_BASED & locationExtended.flags) { |
| 651 | out.flags |= GNSS_LOCATION_INFO_LLA_VRP_BASED_BIT; |
| 652 | out.llaVRPBased = locationExtended.llaVRPBased; |
| 653 | } |
| 654 | |
| 655 | if (GPS_LOCATION_EXTENDED_HAS_ENU_VELOCITY_LLA_VRP_BASED & locationExtended.flags) { |
| 656 | out.flags |= GNSS_LOCATION_INFO_ENU_VELOCITY_VRP_BASED_BIT; |
| 657 | // copy over east, north and up vrp based velocity |
| 658 | out.enuVelocityVRPBased[0] = locationExtended.enuVelocityVRPBased[0]; |
| 659 | out.enuVelocityVRPBased[1] = locationExtended.enuVelocityVRPBased[1]; |
| 660 | out.enuVelocityVRPBased[2] = locationExtended.enuVelocityVRPBased[2]; |
| 661 | } |
| 662 | |
| 663 | if (GPS_LOCATION_EXTENDED_HAS_DR_SOLUTION_STATUS_MASK & locationExtended.flags) { |
| 664 | out.flags |= GNSS_LOCATION_INFO_DR_SOLUTION_STATUS_MASK_BIT; |
| 665 | out.drSolutionStatusMask = locationExtended.drSolutionStatusMask; |
| 666 | } |
| 667 | |
| 668 | if (GPS_LOCATION_EXTENDED_HAS_ALTITUDE_ASSUMED & locationExtended.flags) { |
| 669 | out.flags |= GNSS_LOCATION_INFO_ALTITUDE_ASSUMED_BIT; |
| 670 | out.altitudeAssumed = locationExtended.altitudeAssumed; |
| 671 | } |
| 672 | |
| 673 | out.flags |= GNSS_LOCATION_INFO_SESSION_STATUS_BIT; |
| 674 | out.sessionStatus = status; |
| 675 | } |
| 676 | |
| 677 | inline uint32_t |
| 678 | GnssAdapter::convertSuplVersion(const GnssConfigSuplVersion suplVersion) |
| 679 | { |
| 680 | switch (suplVersion) { |
| 681 | case GNSS_CONFIG_SUPL_VERSION_2_0_4: |
| 682 | return 0x00020004; |
| 683 | case GNSS_CONFIG_SUPL_VERSION_2_0_0: |
| 684 | return 0x00020000; |
| 685 | case GNSS_CONFIG_SUPL_VERSION_2_0_2: |
| 686 | return 0x00020002; |
| 687 | case GNSS_CONFIG_SUPL_VERSION_1_0_0: |
| 688 | default: |
| 689 | return 0x00010000; |
| 690 | } |
| 691 | } |
| 692 | |
| 693 | uint32_t |
| 694 | GnssAdapter::convertLppeCp(const GnssConfigLppeControlPlaneMask lppeControlPlaneMask) |
| 695 | { |
| 696 | uint32_t mask = 0; |
| 697 | if (GNSS_CONFIG_LPPE_CONTROL_PLANE_DBH_BIT & lppeControlPlaneMask) { |
| 698 | mask |= (1<<0); |
| 699 | } |
| 700 | if (GNSS_CONFIG_LPPE_CONTROL_PLANE_WLAN_AP_MEASUREMENTS_BIT & lppeControlPlaneMask) { |
| 701 | mask |= (1<<1); |
| 702 | } |
| 703 | if (GNSS_CONFIG_LPPE_CONTROL_PLANE_SRN_AP_MEASUREMENTS_BIT & lppeControlPlaneMask) { |
| 704 | mask |= (1<<2); |
| 705 | } |
| 706 | if (GNSS_CONFIG_LPPE_CONTROL_PLANE_SENSOR_BARO_MEASUREMENTS_BIT & lppeControlPlaneMask) { |
| 707 | mask |= (1<<3); |
| 708 | } |
| 709 | return mask; |
| 710 | } |
| 711 | |
| 712 | uint32_t |
| 713 | GnssAdapter::convertLppeUp(const GnssConfigLppeUserPlaneMask lppeUserPlaneMask) |
| 714 | { |
| 715 | uint32_t mask = 0; |
| 716 | if (GNSS_CONFIG_LPPE_USER_PLANE_DBH_BIT & lppeUserPlaneMask) { |
| 717 | mask |= (1<<0); |
| 718 | } |
| 719 | if (GNSS_CONFIG_LPPE_USER_PLANE_WLAN_AP_MEASUREMENTS_BIT & lppeUserPlaneMask) { |
| 720 | mask |= (1<<1); |
| 721 | } |
| 722 | if (GNSS_CONFIG_LPPE_USER_PLANE_SRN_AP_MEASUREMENTS_BIT & lppeUserPlaneMask) { |
| 723 | mask |= (1<<2); |
| 724 | } |
| 725 | if (GNSS_CONFIG_LPPE_USER_PLANE_SENSOR_BARO_MEASUREMENTS_BIT & lppeUserPlaneMask) { |
| 726 | mask |= (1<<3); |
| 727 | } |
| 728 | return mask; |
| 729 | } |
| 730 | |
| 731 | uint32_t |
| 732 | GnssAdapter::convertAGloProt(const GnssConfigAGlonassPositionProtocolMask aGloPositionProtocolMask) |
| 733 | { |
| 734 | uint32_t mask = 0; |
| 735 | if (GNSS_CONFIG_RRC_CONTROL_PLANE_BIT & aGloPositionProtocolMask) { |
| 736 | mask |= (1<<0); |
| 737 | } |
| 738 | if (GNSS_CONFIG_RRLP_USER_PLANE_BIT & aGloPositionProtocolMask) { |
| 739 | mask |= (1<<1); |
| 740 | } |
| 741 | if (GNSS_CONFIG_LLP_USER_PLANE_BIT & aGloPositionProtocolMask) { |
| 742 | mask |= (1<<2); |
| 743 | } |
| 744 | if (GNSS_CONFIG_LLP_CONTROL_PLANE_BIT & aGloPositionProtocolMask) { |
| 745 | mask |= (1<<3); |
| 746 | } |
| 747 | return mask; |
| 748 | } |
| 749 | |
| 750 | uint32_t |
| 751 | GnssAdapter::convertEP4ES(const GnssConfigEmergencyPdnForEmergencySupl emergencyPdnForEmergencySupl) |
| 752 | { |
| 753 | switch (emergencyPdnForEmergencySupl) { |
| 754 | case GNSS_CONFIG_EMERGENCY_PDN_FOR_EMERGENCY_SUPL_YES: |
| 755 | return 1; |
| 756 | case GNSS_CONFIG_EMERGENCY_PDN_FOR_EMERGENCY_SUPL_NO: |
| 757 | default: |
| 758 | return 0; |
| 759 | } |
| 760 | } |
| 761 | |
| 762 | uint32_t |
| 763 | GnssAdapter::convertSuplEs(const GnssConfigSuplEmergencyServices suplEmergencyServices) |
| 764 | { |
| 765 | switch (suplEmergencyServices) { |
| 766 | case GNSS_CONFIG_SUPL_EMERGENCY_SERVICES_YES: |
| 767 | return 1; |
| 768 | case GNSS_CONFIG_SUPL_EMERGENCY_SERVICES_NO: |
| 769 | default: |
| 770 | return 0; |
| 771 | } |
| 772 | } |
| 773 | |
| 774 | uint32_t |
| 775 | GnssAdapter::convertSuplMode(const GnssConfigSuplModeMask suplModeMask) |
| 776 | { |
| 777 | uint32_t mask = 0; |
| 778 | if (GNSS_CONFIG_SUPL_MODE_MSB_BIT & suplModeMask) { |
| 779 | mask |= (1<<0); |
| 780 | } |
| 781 | if (GNSS_CONFIG_SUPL_MODE_MSA_BIT & suplModeMask) { |
| 782 | mask |= (1<<1); |
| 783 | } |
| 784 | return mask; |
| 785 | } |
| 786 | |
| 787 | void |
| 788 | GnssAdapter::readConfigCommand() |
| 789 | { |
| 790 | LOC_LOGD("%s]: ", __func__); |
| 791 | |
| 792 | struct MsgReadConfig : public LocMsg { |
| 793 | GnssAdapter* mAdapter; |
| 794 | ContextBase& mContext; |
| 795 | inline MsgReadConfig(GnssAdapter* adapter, |
| 796 | ContextBase& context) : |
| 797 | LocMsg(), |
| 798 | mAdapter(adapter), |
| 799 | mContext(context) {} |
| 800 | inline virtual void proc() const { |
| 801 | static bool confReadDone = false; |
| 802 | if (!confReadDone) { |
| 803 | confReadDone = true; |
| 804 | // reads config into mContext->mGps_conf |
| 805 | mContext.readConfig(); |
| 806 | |
| 807 | uint32_t allowFlpNetworkFixes = 0; |
| 808 | static const loc_param_s_type flp_conf_param_table[] = |
| 809 | { |
| 810 | {"ALLOW_NETWORK_FIXES", &allowFlpNetworkFixes, NULL, 'n'}, |
| 811 | }; |
| 812 | UTIL_READ_CONF(LOC_PATH_FLP_CONF, flp_conf_param_table); |
| 813 | LOC_LOGd("allowFlpNetworkFixes %u", allowFlpNetworkFixes); |
| 814 | mAdapter->setAllowFlpNetworkFixes(allowFlpNetworkFixes); |
| 815 | } |
| 816 | } |
| 817 | }; |
| 818 | |
| 819 | if (mContext != NULL) { |
| 820 | sendMsg(new MsgReadConfig(this, *mContext)); |
| 821 | } |
| 822 | } |
| 823 | |
| 824 | void |
| 825 | GnssAdapter::setSuplHostServer(const char* server, int port, LocServerType type) |
| 826 | { |
| 827 | if (ContextBase::mGps_conf.AGPS_CONFIG_INJECT) { |
| 828 | char serverUrl[MAX_URL_LEN] = {}; |
| 829 | int32_t length = -1; |
| 830 | const char noHost[] = "NONE"; |
| 831 | |
| 832 | if ((NULL == server) || (server[0] == 0) || |
| 833 | (strncasecmp(noHost, server, sizeof(noHost)) == 0)) { |
| 834 | serverUrl[0] = '\0'; |
| 835 | length = 0; |
| 836 | } else if (port > 0) { |
| 837 | length = snprintf(serverUrl, sizeof(serverUrl), "%s:%u", server, port); |
| 838 | } |
| 839 | if (LOC_AGPS_SUPL_SERVER != type && LOC_AGPS_MO_SUPL_SERVER != type) { |
| 840 | LOC_LOGe("Invalid type=%d", type); |
| 841 | } else if (length >= 0) { |
| 842 | if (LOC_AGPS_SUPL_SERVER == type) { |
| 843 | getServerUrl().assign(serverUrl); |
| 844 | strlcpy(ContextBase::mGps_conf.SUPL_HOST, |
| 845 | (nullptr == server) ? serverUrl : server, |
| 846 | LOC_MAX_PARAM_STRING); |
| 847 | ContextBase::mGps_conf.SUPL_PORT = port; |
| 848 | } else { |
| 849 | if (strncasecmp(getMoServerUrl().c_str(), serverUrl, sizeof(serverUrl)) != 0) { |
| 850 | getMoServerUrl().assign(serverUrl); |
| 851 | } |
| 852 | } |
| 853 | } |
| 854 | } |
| 855 | } |
| 856 | |
| 857 | void |
| 858 | GnssAdapter::setConfig() |
| 859 | { |
| 860 | LOC_LOGD("%s]: ", __func__); |
| 861 | |
| 862 | // set nmea mask type |
| 863 | uint32_t mask = 0; |
| 864 | if (NMEA_PROVIDER_MP == ContextBase::mGps_conf.NMEA_PROVIDER) { |
| 865 | mask |= LOC_NMEA_ALL_GENERAL_SUPPORTED_MASK; |
| 866 | if (ContextBase::mGps_conf.NMEA_TAG_BLOCK_GROUPING_ENABLED) { |
| 867 | mask |= LOC_NMEA_MASK_TAGBLOCK_V02; |
| 868 | } |
| 869 | } |
| 870 | if (ContextBase::isFeatureSupported(LOC_SUPPORTED_FEATURE_DEBUG_NMEA_V02)) { |
| 871 | mask |= LOC_NMEA_MASK_DEBUG_V02; |
| 872 | } |
| 873 | if (mNmeaMask != mask) { |
| 874 | mNmeaMask = mask; |
| 875 | if (mNmeaMask) { |
| 876 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 877 | if ((it->second.gnssNmeaCb != nullptr)) { |
| 878 | updateEvtMask(LOC_API_ADAPTER_BIT_NMEA_1HZ_REPORT, |
| 879 | LOC_REGISTRATION_MASK_ENABLED); |
| 880 | break; |
| 881 | } |
| 882 | } |
| 883 | } |
| 884 | } |
| 885 | |
| 886 | std::string oldMoServerUrl = getMoServerUrl(); |
| 887 | setSuplHostServer(ContextBase::mGps_conf.SUPL_HOST, |
| 888 | ContextBase::mGps_conf.SUPL_PORT, |
| 889 | LOC_AGPS_SUPL_SERVER); |
| 890 | setSuplHostServer(ContextBase::mGps_conf.MO_SUPL_HOST, |
| 891 | ContextBase::mGps_conf.MO_SUPL_PORT, |
| 892 | LOC_AGPS_MO_SUPL_SERVER); |
| 893 | |
| 894 | std::string moServerUrl = getMoServerUrl(); |
| 895 | std::string serverUrl = getServerUrl(); |
| 896 | // inject the configurations into modem |
| 897 | loc_gps_cfg_s gpsConf = ContextBase::mGps_conf; |
| 898 | loc_sap_cfg_s_type sapConf = ContextBase::mSap_conf; |
| 899 | |
| 900 | //cache the injected configuration with GnssConfigRequested struct |
| 901 | GnssConfig gnssConfigRequested = {}; |
| 902 | gnssConfigRequested.flags |= GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT | |
| 903 | GNSS_CONFIG_FLAGS_BLACKLISTED_SV_IDS_BIT; |
| 904 | /* Here we process an SSR. We need to set the GPS_LOCK to the proper values, as follows: |
| 905 | 1. Q behavior. This is identified by mSupportNfwControl being 1. In this case |
| 906 | ContextBase::mGps_conf.GPS_LOCK is a "state", meaning it should reflect the |
| 907 | NV value. Therefore we will set the NV to ContextBase::mGps_conf.GPS_LOCK |
| 908 | 2. P behavior. This is identified by mSupportNfwControl being 0. In this case |
| 909 | ContextBase::mGps_conf.GPS_LOCK is a "configuration", meaning it should hold |
| 910 | the "mask" for NI. There are two subcases: |
| 911 | a. Location enabled in GUI (1 == getAfwControlId()). We need to set |
| 912 | the NV to GNSS_CONFIG_GPS_LOCK_NONE (both MO and NI enabled) |
| 913 | b. Location disabled in GUI (0 == getAfwControlId()). We need to set |
| 914 | the NV to ContextBase::mGps_conf.GPS_LOCK (the "mask", which is SIM-card |
| 915 | specific) |
| 916 | */ |
| 917 | if (mSupportNfwControl || (0 == getAfwControlId())) { |
| 918 | gnssConfigRequested.gpsLock = gpsConf.GPS_LOCK; |
| 919 | } else { |
| 920 | gnssConfigRequested.gpsLock = GNSS_CONFIG_GPS_LOCK_NONE; |
| 921 | } |
| 922 | gnssConfigRequested.flags |= GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT | |
| 923 | GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT | |
| 924 | GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT | |
| 925 | GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT; |
| 926 | gnssConfigRequested.suplVersion = mLocApi->convertSuplVersion(gpsConf.SUPL_VER); |
| 927 | gnssConfigRequested.lppProfileMask = gpsConf.LPP_PROFILE; |
| 928 | gnssConfigRequested.aGlonassPositionProtocolMask = gpsConf.A_GLONASS_POS_PROTOCOL_SELECT; |
| 929 | if (gpsConf.LPPE_CP_TECHNOLOGY) { |
| 930 | gnssConfigRequested.flags |= GNSS_CONFIG_FLAGS_LPPE_CONTROL_PLANE_VALID_BIT; |
| 931 | gnssConfigRequested.lppeControlPlaneMask = |
| 932 | mLocApi->convertLppeCp(gpsConf.LPPE_CP_TECHNOLOGY); |
| 933 | } |
| 934 | |
| 935 | if (gpsConf.LPPE_UP_TECHNOLOGY) { |
| 936 | gnssConfigRequested.flags |= GNSS_CONFIG_FLAGS_LPPE_USER_PLANE_VALID_BIT; |
| 937 | gnssConfigRequested.lppeUserPlaneMask = |
| 938 | mLocApi->convertLppeUp(gpsConf.LPPE_UP_TECHNOLOGY); |
| 939 | } |
| 940 | gnssConfigRequested.blacklistedSvIds.assign(mBlacklistedSvIds.begin(), |
| 941 | mBlacklistedSvIds.end()); |
| 942 | mLocApi->sendMsg(new LocApiMsg( |
| 943 | [this, gpsConf, sapConf, oldMoServerUrl, moServerUrl, |
| 944 | serverUrl, gnssConfigRequested] () mutable { |
| 945 | gnssUpdateConfig(oldMoServerUrl, moServerUrl, serverUrl, |
| 946 | gnssConfigRequested, gnssConfigRequested); |
| 947 | |
| 948 | // set nmea mask type |
| 949 | uint32_t mask = 0; |
| 950 | if (NMEA_PROVIDER_MP == gpsConf.NMEA_PROVIDER) { |
| 951 | mask |= LOC_NMEA_ALL_GENERAL_SUPPORTED_MASK; |
| 952 | if (gpsConf.NMEA_TAG_BLOCK_GROUPING_ENABLED) { |
| 953 | mask |= LOC_NMEA_MASK_TAGBLOCK_V02; |
| 954 | } |
| 955 | } |
| 956 | if (ContextBase::isFeatureSupported(LOC_SUPPORTED_FEATURE_DEBUG_NMEA_V02)) { |
| 957 | mask |= LOC_NMEA_MASK_DEBUG_V02; |
| 958 | } |
| 959 | |
| 960 | if (mask != 0) { |
| 961 | mLocApi->setNMEATypesSync(mask); |
| 962 | } |
| 963 | |
| 964 | // load tunc configuration from config file on first boot-up, |
| 965 | // e.g.: adapter.mLocConfigInfo.tuncConfigInfo.isValid is false |
| 966 | if (mLocConfigInfo.tuncConfigInfo.isValid == false) { |
| 967 | mLocConfigInfo.tuncConfigInfo.isValid = true; |
| 968 | mLocConfigInfo.tuncConfigInfo.enable = |
| 969 | (gpsConf.CONSTRAINED_TIME_UNCERTAINTY_ENABLED == 1); |
| 970 | mLocConfigInfo.tuncConfigInfo.tuncThresholdMs = |
| 971 | (float)gpsConf.CONSTRAINED_TIME_UNCERTAINTY_THRESHOLD; |
| 972 | mLocConfigInfo.tuncConfigInfo.energyBudget = |
| 973 | gpsConf.CONSTRAINED_TIME_UNCERTAINTY_ENERGY_BUDGET; |
| 974 | } |
| 975 | |
| 976 | mLocApi->setConstrainedTuncMode( |
| 977 | mLocConfigInfo.tuncConfigInfo.enable, |
| 978 | mLocConfigInfo.tuncConfigInfo.tuncThresholdMs, |
| 979 | mLocConfigInfo.tuncConfigInfo.energyBudget); |
| 980 | |
| 981 | // load pace configuration from config file on first boot-up, |
| 982 | // e.g.: adapter.mLocConfigInfo.paceConfigInfo.isValid is false |
| 983 | if (mLocConfigInfo.paceConfigInfo.isValid == false) { |
| 984 | mLocConfigInfo.paceConfigInfo.isValid = true; |
| 985 | mLocConfigInfo.paceConfigInfo.enable = |
| 986 | (gpsConf.POSITION_ASSISTED_CLOCK_ESTIMATOR_ENABLED==1); |
| 987 | } |
| 988 | mLocApi->setPositionAssistedClockEstimatorMode( |
| 989 | mLocConfigInfo.paceConfigInfo.enable); |
| 990 | |
| 991 | // we do not support control robust location from gps.conf |
| 992 | if (mLocConfigInfo.robustLocationConfigInfo.isValid == true) { |
| 993 | mLocApi->configRobustLocation( |
| 994 | mLocConfigInfo.robustLocationConfigInfo.enable, |
| 995 | mLocConfigInfo.robustLocationConfigInfo.enableFor911); |
| 996 | } |
| 997 | |
| 998 | if (sapConf.GYRO_BIAS_RANDOM_WALK_VALID || |
| 999 | sapConf.ACCEL_RANDOM_WALK_SPECTRAL_DENSITY_VALID || |
| 1000 | sapConf.ANGLE_RANDOM_WALK_SPECTRAL_DENSITY_VALID || |
| 1001 | sapConf.RATE_RANDOM_WALK_SPECTRAL_DENSITY_VALID || |
| 1002 | sapConf.VELOCITY_RANDOM_WALK_SPECTRAL_DENSITY_VALID ) { |
| 1003 | mLocApi->setSensorPropertiesSync( |
| 1004 | sapConf.GYRO_BIAS_RANDOM_WALK_VALID, |
| 1005 | sapConf.GYRO_BIAS_RANDOM_WALK, |
| 1006 | sapConf.ACCEL_RANDOM_WALK_SPECTRAL_DENSITY_VALID, |
| 1007 | sapConf.ACCEL_RANDOM_WALK_SPECTRAL_DENSITY, |
| 1008 | sapConf.ANGLE_RANDOM_WALK_SPECTRAL_DENSITY_VALID, |
| 1009 | sapConf.ANGLE_RANDOM_WALK_SPECTRAL_DENSITY, |
| 1010 | sapConf.RATE_RANDOM_WALK_SPECTRAL_DENSITY_VALID, |
| 1011 | sapConf.RATE_RANDOM_WALK_SPECTRAL_DENSITY, |
| 1012 | sapConf.VELOCITY_RANDOM_WALK_SPECTRAL_DENSITY_VALID, |
| 1013 | sapConf.VELOCITY_RANDOM_WALK_SPECTRAL_DENSITY); |
| 1014 | } |
| 1015 | mLocApi->setSensorPerfControlConfigSync( |
| 1016 | sapConf.SENSOR_CONTROL_MODE, |
| 1017 | sapConf.SENSOR_ACCEL_SAMPLES_PER_BATCH, |
| 1018 | sapConf.SENSOR_ACCEL_BATCHES_PER_SEC, |
| 1019 | sapConf.SENSOR_GYRO_SAMPLES_PER_BATCH, |
| 1020 | sapConf.SENSOR_GYRO_BATCHES_PER_SEC, |
| 1021 | sapConf.SENSOR_ACCEL_SAMPLES_PER_BATCH_HIGH, |
| 1022 | sapConf.SENSOR_ACCEL_BATCHES_PER_SEC_HIGH, |
| 1023 | sapConf.SENSOR_GYRO_SAMPLES_PER_BATCH_HIGH, |
| 1024 | sapConf.SENSOR_GYRO_BATCHES_PER_SEC_HIGH, |
| 1025 | sapConf.SENSOR_ALGORITHM_CONFIG_MASK); |
| 1026 | } )); |
| 1027 | // deal with Measurement Corrections |
| 1028 | if (true == mIsMeasCorrInterfaceOpen) { |
| 1029 | initMeasCorr(true); |
| 1030 | } |
| 1031 | } |
| 1032 | |
| 1033 | std::vector<LocationError> GnssAdapter::gnssUpdateConfig(const std::string& oldMoServerUrl, |
| 1034 | const std::string& moServerUrl, const std::string& serverUrl, |
| 1035 | GnssConfig& gnssConfigRequested, GnssConfig& gnssConfigNeedEngineUpdate, size_t count) { |
| 1036 | loc_gps_cfg_s gpsConf = ContextBase::mGps_conf; |
| 1037 | size_t index = 0; |
| 1038 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 1039 | std::vector<LocationError> errsList = {err}; |
| 1040 | if (count > 0) { |
| 1041 | errsList.insert(errsList.begin(), count, LOCATION_ERROR_SUCCESS); |
| 1042 | } |
| 1043 | |
| 1044 | int serverUrlLen = serverUrl.length(); |
| 1045 | int moServerUrlLen = moServerUrl.length(); |
| 1046 | |
| 1047 | if (!ContextBase::mGps_conf.AGPS_CONFIG_INJECT) { |
| 1048 | LOC_LOGd("AGPS_CONFIG_INJECT is 0. Not setting flags for AGPS configurations"); |
| 1049 | gnssConfigRequested.flags &= ~(GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT | |
| 1050 | GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT | |
| 1051 | GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT | |
| 1052 | GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT); |
| 1053 | } |
| 1054 | |
| 1055 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT) { |
| 1056 | if (gnssConfigNeedEngineUpdate.flags & GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT) { |
| 1057 | err = mLocApi->setGpsLockSync(gnssConfigRequested.gpsLock); |
| 1058 | if (index < count) { |
| 1059 | errsList[index] = err; |
| 1060 | } |
| 1061 | } |
| 1062 | index++; |
| 1063 | } |
| 1064 | |
| 1065 | if (gnssConfigRequested.flags & |
| 1066 | GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT) { |
| 1067 | if (gnssConfigNeedEngineUpdate.flags & |
| 1068 | GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT) { |
| 1069 | if (gnssConfigNeedEngineUpdate.assistanceServer.type == |
| 1070 | GNSS_ASSISTANCE_TYPE_SUPL) { |
| 1071 | err = mLocApi->setServerSync( |
| 1072 | serverUrl.c_str(), serverUrlLen, LOC_AGPS_SUPL_SERVER); |
| 1073 | if (index < count) { |
| 1074 | errsList[index] = err; |
| 1075 | } |
| 1076 | if (0 != oldMoServerUrl.compare(moServerUrl)) { |
| 1077 | LocationError locErr = |
| 1078 | mLocApi->setServerSync(moServerUrl.c_str(), |
| 1079 | moServerUrlLen, |
| 1080 | LOC_AGPS_MO_SUPL_SERVER); |
| 1081 | if (locErr != LOCATION_ERROR_SUCCESS) { |
| 1082 | LOC_LOGe("Error while setting MO SUPL_HOST server:%s", |
| 1083 | moServerUrl.c_str()); |
| 1084 | } |
| 1085 | } |
| 1086 | } else if (gnssConfigNeedEngineUpdate.assistanceServer.type == |
| 1087 | GNSS_ASSISTANCE_TYPE_C2K) { |
| 1088 | struct in_addr addr; |
| 1089 | struct hostent* hp; |
| 1090 | bool resolveAddrSuccess = true; |
| 1091 | |
| 1092 | hp = gethostbyname( |
| 1093 | gnssConfigNeedEngineUpdate.assistanceServer.hostName); |
| 1094 | if (hp != NULL) { /* DNS OK */ |
| 1095 | memcpy(&addr, hp->h_addr_list[0], hp->h_length); |
| 1096 | } else { |
| 1097 | /* Try IP representation */ |
| 1098 | if (inet_aton( |
| 1099 | gnssConfigNeedEngineUpdate.assistanceServer.hostName, |
| 1100 | &addr) == 0) { |
| 1101 | /* IP not valid */ |
| 1102 | LOC_LOGE("%s]: hostname '%s' cannot be resolved ", |
| 1103 | __func__, |
| 1104 | gnssConfigNeedEngineUpdate.assistanceServer.hostName); |
| 1105 | if (index < count) { |
| 1106 | errsList[index] = LOCATION_ERROR_INVALID_PARAMETER; |
| 1107 | } |
| 1108 | } else { |
| 1109 | resolveAddrSuccess = false; |
| 1110 | } |
| 1111 | } |
| 1112 | |
| 1113 | if (resolveAddrSuccess) { |
| 1114 | unsigned int ip = htonl(addr.s_addr); |
| 1115 | err = mLocApi->setServerSync(ip, |
| 1116 | gnssConfigNeedEngineUpdate.assistanceServer.port, |
| 1117 | LOC_AGPS_CDMA_PDE_SERVER); |
| 1118 | if (index < count) { |
| 1119 | errsList[index] = err; |
| 1120 | } |
| 1121 | } |
| 1122 | } |
| 1123 | } |
| 1124 | index++; |
| 1125 | } |
| 1126 | |
| 1127 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT) { |
| 1128 | if (gnssConfigNeedEngineUpdate.flags & |
| 1129 | GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT) { |
| 1130 | err = mLocApi->setSUPLVersionSync(gnssConfigRequested.suplVersion); |
| 1131 | if (index < count) { |
| 1132 | errsList[index] = err; |
| 1133 | } |
| 1134 | } |
| 1135 | index++; |
| 1136 | } |
| 1137 | |
| 1138 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT) { |
| 1139 | if (gnssConfigNeedEngineUpdate.flags & |
| 1140 | GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT) { |
| 1141 | err = mLocApi->setLPPConfigSync(gnssConfigRequested.lppProfileMask); |
| 1142 | if (index < count) { |
| 1143 | errsList[index] = err; |
| 1144 | } |
| 1145 | } |
| 1146 | index++; |
| 1147 | } |
| 1148 | |
| 1149 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPPE_CONTROL_PLANE_VALID_BIT) { |
| 1150 | if (gnssConfigNeedEngineUpdate.flags & |
| 1151 | GNSS_CONFIG_FLAGS_LPPE_CONTROL_PLANE_VALID_BIT) { |
| 1152 | err = mLocApi->setLPPeProtocolCpSync( |
| 1153 | gnssConfigRequested.lppeControlPlaneMask); |
| 1154 | if (index < count) { |
| 1155 | errsList[index] = err; |
| 1156 | } |
| 1157 | } |
| 1158 | index++; |
| 1159 | } |
| 1160 | |
| 1161 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPPE_USER_PLANE_VALID_BIT) { |
| 1162 | if (gnssConfigNeedEngineUpdate.flags & |
| 1163 | GNSS_CONFIG_FLAGS_LPPE_USER_PLANE_VALID_BIT) { |
| 1164 | err = mLocApi->setLPPeProtocolUpSync( |
| 1165 | gnssConfigRequested.lppeUserPlaneMask); |
| 1166 | if (index < count) { |
| 1167 | errsList[index] = err; |
| 1168 | } |
| 1169 | } |
| 1170 | index++; |
| 1171 | } |
| 1172 | |
| 1173 | if (gnssConfigRequested.flags & |
| 1174 | GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT) { |
| 1175 | if (gnssConfigNeedEngineUpdate.flags & |
| 1176 | GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT) { |
| 1177 | err = mLocApi->setAGLONASSProtocolSync( |
| 1178 | gnssConfigRequested.aGlonassPositionProtocolMask); |
| 1179 | if (index < count) { |
| 1180 | errsList[index] = err; |
| 1181 | } |
| 1182 | } |
| 1183 | index++; |
| 1184 | } |
| 1185 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_BLACKLISTED_SV_IDS_BIT) { |
| 1186 | // Check if feature is supported |
| 1187 | if (!ContextBase::isFeatureSupported( |
| 1188 | LOC_SUPPORTED_FEATURE_CONSTELLATION_ENABLEMENT_V02)) { |
| 1189 | LOC_LOGe("Feature constellation enablement not supported."); |
| 1190 | err = LOCATION_ERROR_NOT_SUPPORTED; |
| 1191 | } else { |
| 1192 | // Send the SV ID Config to Modem |
| 1193 | mBlacklistedSvIds.assign(gnssConfigRequested.blacklistedSvIds.begin(), |
| 1194 | gnssConfigRequested.blacklistedSvIds.end()); |
| 1195 | err = gnssSvIdConfigUpdateSync(gnssConfigRequested.blacklistedSvIds); |
| 1196 | if (LOCATION_ERROR_SUCCESS != err) { |
| 1197 | LOC_LOGe("Failed to send config to modem, err %d", err); |
| 1198 | } |
| 1199 | } |
| 1200 | if (index < count) { |
| 1201 | errsList[index] = err; |
| 1202 | } |
| 1203 | index++; |
| 1204 | } |
| 1205 | if (gnssConfigRequested.flags & |
| 1206 | GNSS_CONFIG_FLAGS_EMERGENCY_EXTENSION_SECONDS_BIT) { |
| 1207 | if (gnssConfigNeedEngineUpdate.flags & |
| 1208 | GNSS_CONFIG_FLAGS_EMERGENCY_EXTENSION_SECONDS_BIT) { |
| 1209 | err = mLocApi->setEmergencyExtensionWindowSync( |
| 1210 | gnssConfigRequested.emergencyExtensionSeconds); |
| 1211 | if (index < count) { |
| 1212 | errsList[index] = err; |
| 1213 | } |
| 1214 | } |
| 1215 | index++; |
| 1216 | } |
| 1217 | |
| 1218 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_MIN_SV_ELEVATION_BIT) { |
| 1219 | GnssConfig gnssConfig = {}; |
| 1220 | gnssConfig.flags = GNSS_CONFIG_FLAGS_MIN_SV_ELEVATION_BIT; |
| 1221 | gnssConfig.minSvElevation = gnssConfigRequested.minSvElevation; |
| 1222 | err = mLocApi->setParameterSync(gnssConfig); |
| 1223 | if (index < count) { |
| 1224 | errsList[index] = err; |
| 1225 | } |
| 1226 | index++; |
| 1227 | } |
| 1228 | |
| 1229 | return errsList; |
| 1230 | } |
| 1231 | |
| 1232 | uint32_t* |
| 1233 | GnssAdapter::gnssUpdateConfigCommand(const GnssConfig& config) |
| 1234 | { |
| 1235 | // count the number of bits set |
| 1236 | GnssConfigFlagsMask flagsCopy = config.flags; |
| 1237 | size_t count = 0; |
| 1238 | while (flagsCopy > 0) { |
| 1239 | if (flagsCopy & 1) { |
| 1240 | count++; |
| 1241 | } |
| 1242 | flagsCopy >>= 1; |
| 1243 | } |
| 1244 | std::string idsString = "["; |
| 1245 | uint32_t* ids = NULL; |
| 1246 | if (count > 0) { |
| 1247 | ids = new uint32_t[count]; |
| 1248 | if (ids == nullptr) { |
| 1249 | LOC_LOGE("%s] new allocation failed, fatal error.", __func__); |
| 1250 | return nullptr; |
| 1251 | } |
| 1252 | for (size_t i=0; i < count; ++i) { |
| 1253 | ids[i] = generateSessionId(); |
| 1254 | IF_LOC_LOGD { |
| 1255 | idsString += std::to_string(ids[i]) + " "; |
| 1256 | } |
| 1257 | } |
| 1258 | } |
| 1259 | idsString += "]"; |
| 1260 | |
| 1261 | LOC_LOGD("%s]: ids %s flags 0x%X", __func__, idsString.c_str(), config.flags); |
| 1262 | |
| 1263 | struct MsgGnssUpdateConfig : public LocMsg { |
| 1264 | GnssAdapter& mAdapter; |
| 1265 | LocApiBase& mApi; |
| 1266 | GnssConfig mConfig; |
| 1267 | size_t mCount; |
| 1268 | uint32_t* mIds; |
| 1269 | inline MsgGnssUpdateConfig(GnssAdapter& adapter, |
| 1270 | LocApiBase& api, |
| 1271 | GnssConfig config, |
| 1272 | uint32_t* ids, |
| 1273 | size_t count) : |
| 1274 | LocMsg(), |
| 1275 | mAdapter(adapter), |
| 1276 | mApi(api), |
| 1277 | mConfig(config), |
| 1278 | mCount(count), |
| 1279 | mIds(nullptr) { |
| 1280 | if (mCount > 0) { |
| 1281 | mIds = new uint32_t[count]; |
| 1282 | if (mIds) { |
| 1283 | for (uint32_t index = 0; index < count; index++) { |
| 1284 | mIds[index] = ids[index]; |
| 1285 | } |
| 1286 | } else { |
| 1287 | LOC_LOGe("memory allocation for mIds failed"); |
| 1288 | } |
| 1289 | } |
| 1290 | } |
| 1291 | |
| 1292 | inline MsgGnssUpdateConfig(const MsgGnssUpdateConfig& obj) : |
| 1293 | MsgGnssUpdateConfig(obj.mAdapter, obj.mApi, obj.mConfig, |
| 1294 | obj.mIds, obj.mCount) {} |
| 1295 | |
| 1296 | inline virtual ~MsgGnssUpdateConfig() |
| 1297 | { |
| 1298 | if (nullptr != mIds) delete[] mIds; |
| 1299 | } |
| 1300 | |
| 1301 | inline virtual void proc() const { |
| 1302 | if (!mAdapter.isEngineCapabilitiesKnown()) { |
| 1303 | mAdapter.mPendingMsgs.push_back(new MsgGnssUpdateConfig(*this)); |
| 1304 | return; |
| 1305 | } |
| 1306 | GnssAdapter& adapter = mAdapter; |
| 1307 | size_t countOfConfigs = mCount; |
| 1308 | GnssConfig gnssConfigRequested = mConfig; |
| 1309 | GnssConfig gnssConfigNeedEngineUpdate = mConfig; |
| 1310 | |
| 1311 | std::vector<uint32_t> sessionIds; |
| 1312 | sessionIds.assign(mIds, mIds + mCount); |
| 1313 | std::vector<LocationError> errs(mCount, LOCATION_ERROR_SUCCESS); |
| 1314 | int index = 0; |
| 1315 | bool needSuspendResume = false; |
| 1316 | |
| 1317 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT) { |
| 1318 | GnssConfigGpsLock newGpsLock = gnssConfigRequested.gpsLock; |
| 1319 | |
| 1320 | newGpsLock |= GNSS_CONFIG_GPS_LOCK_MO; |
| 1321 | ContextBase::mGps_conf.GPS_LOCK = newGpsLock; |
| 1322 | /* If we get here it means that the changes in the framework to request for |
| 1323 | 'P' behavior were made, and therefore we need to "behave" as in 'P' |
| 1324 | However, we need to determine if enableCommand function has already been |
| 1325 | called, since it could get called before this function.*/ |
| 1326 | if (0 != mAdapter.getAfwControlId()) { |
| 1327 | /* enableCommand function has already been called since getAfwControlId |
| 1328 | returns non zero. Now there are two possible cases: |
| 1329 | 1. This is the first time this function is called |
| 1330 | (mSupportNfwControl is true). We need to behave as in 'P', but |
| 1331 | for the first time, meaning MO was enabled, but NI was not, so |
| 1332 | we need to unlock NI |
| 1333 | 2. This is not the first time this function is called, meaning we |
| 1334 | are already behaving as in 'P'. No need to update the configuration |
| 1335 | in this case (return to 'P' code) */ |
| 1336 | if (mAdapter.mSupportNfwControl) { |
| 1337 | // case 1 above |
| 1338 | newGpsLock = GNSS_CONFIG_GPS_LOCK_NONE; |
| 1339 | } else { |
| 1340 | // case 2 above |
| 1341 | gnssConfigNeedEngineUpdate.flags &= ~(GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT); |
| 1342 | } |
| 1343 | } |
| 1344 | gnssConfigRequested.gpsLock = newGpsLock; |
| 1345 | mAdapter.mSupportNfwControl = false; |
| 1346 | index++; |
| 1347 | } |
| 1348 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT) { |
| 1349 | uint32_t newSuplVersion = |
| 1350 | mAdapter.convertSuplVersion(gnssConfigRequested.suplVersion); |
| 1351 | ContextBase::mGps_conf.SUPL_VER = newSuplVersion; |
| 1352 | index++; |
| 1353 | } |
| 1354 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT) { |
| 1355 | if (GNSS_ASSISTANCE_TYPE_SUPL == mConfig.assistanceServer.type) { |
| 1356 | mAdapter.setSuplHostServer(mConfig.assistanceServer.hostName, |
| 1357 | mConfig.assistanceServer.port, |
| 1358 | LOC_AGPS_SUPL_SERVER); |
| 1359 | } else { |
| 1360 | LOC_LOGE("%s]: Not a valid gnss assistance type %u", |
| 1361 | __func__, mConfig.assistanceServer.type); |
| 1362 | errs.at(index) = LOCATION_ERROR_INVALID_PARAMETER; |
| 1363 | gnssConfigNeedEngineUpdate.flags &= |
| 1364 | ~(GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT); |
| 1365 | } |
| 1366 | index++; |
| 1367 | } |
| 1368 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT) { |
| 1369 | uint32_t newLppProfileMask = gnssConfigRequested.lppProfileMask; |
| 1370 | ContextBase::mGps_conf.LPP_PROFILE = newLppProfileMask; |
| 1371 | index++; |
| 1372 | } |
| 1373 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPPE_CONTROL_PLANE_VALID_BIT) { |
| 1374 | uint32_t newLppeControlPlaneMask = |
| 1375 | mAdapter.convertLppeCp(gnssConfigRequested.lppeControlPlaneMask); |
| 1376 | ContextBase::mGps_conf.LPPE_CP_TECHNOLOGY = newLppeControlPlaneMask; |
| 1377 | index++; |
| 1378 | } |
| 1379 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_LPPE_USER_PLANE_VALID_BIT) { |
| 1380 | uint32_t newLppeUserPlaneMask = |
| 1381 | mAdapter.convertLppeUp(gnssConfigRequested.lppeUserPlaneMask); |
| 1382 | ContextBase::mGps_conf.LPPE_UP_TECHNOLOGY = newLppeUserPlaneMask; |
| 1383 | index++; |
| 1384 | } |
| 1385 | if (gnssConfigRequested.flags & |
| 1386 | GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT) { |
| 1387 | uint32_t newAGloProtMask = |
| 1388 | mAdapter.convertAGloProt(gnssConfigRequested.aGlonassPositionProtocolMask); |
| 1389 | ContextBase::mGps_conf.A_GLONASS_POS_PROTOCOL_SELECT = newAGloProtMask; |
| 1390 | index++; |
| 1391 | } |
| 1392 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_EM_PDN_FOR_EM_SUPL_VALID_BIT) { |
| 1393 | uint32_t newEP4ES = mAdapter.convertEP4ES( |
| 1394 | gnssConfigRequested.emergencyPdnForEmergencySupl); |
| 1395 | if (newEP4ES != ContextBase::mGps_conf.USE_EMERGENCY_PDN_FOR_EMERGENCY_SUPL) { |
| 1396 | ContextBase::mGps_conf.USE_EMERGENCY_PDN_FOR_EMERGENCY_SUPL = newEP4ES; |
| 1397 | } |
| 1398 | index++; |
| 1399 | } |
| 1400 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_SUPL_EM_SERVICES_BIT) { |
| 1401 | uint32_t newSuplEs = mAdapter.convertSuplEs( |
| 1402 | gnssConfigRequested.suplEmergencyServices); |
| 1403 | if (newSuplEs != ContextBase::mGps_conf.SUPL_ES) { |
| 1404 | ContextBase::mGps_conf.SUPL_ES = newSuplEs; |
| 1405 | } |
| 1406 | index++; |
| 1407 | } |
| 1408 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_SUPL_MODE_BIT) { |
| 1409 | uint32_t newSuplMode = mAdapter.convertSuplMode(gnssConfigRequested.suplModeMask); |
| 1410 | ContextBase::mGps_conf.SUPL_MODE = newSuplMode; |
| 1411 | mAdapter.broadcastCapabilities(mAdapter.getCapabilities()); |
| 1412 | index++; |
| 1413 | } |
| 1414 | |
| 1415 | if (gnssConfigRequested.flags & GNSS_CONFIG_FLAGS_MIN_SV_ELEVATION_BIT) { |
| 1416 | needSuspendResume = true; |
| 1417 | index++; |
| 1418 | } |
| 1419 | |
| 1420 | if (needSuspendResume == true) { |
| 1421 | mAdapter.suspendSessions(); |
| 1422 | } |
| 1423 | LocApiCollectiveResponse *configCollectiveResponse = new LocApiCollectiveResponse( |
| 1424 | *adapter.getContext(), |
| 1425 | [&adapter, sessionIds, countOfConfigs] (std::vector<LocationError> errs) { |
| 1426 | |
| 1427 | std::vector<uint32_t> ids(sessionIds); |
| 1428 | adapter.reportResponse(countOfConfigs, errs.data(), ids.data()); |
| 1429 | }); |
| 1430 | |
| 1431 | std::string moServerUrl = adapter.getMoServerUrl(); |
| 1432 | std::string serverUrl = adapter.getServerUrl(); |
| 1433 | mApi.sendMsg(new LocApiMsg( |
| 1434 | [&adapter, gnssConfigRequested, gnssConfigNeedEngineUpdate, |
| 1435 | moServerUrl, serverUrl, countOfConfigs, configCollectiveResponse, |
| 1436 | errs] () mutable { |
| 1437 | std::vector<LocationError> errsList = adapter.gnssUpdateConfig("", |
| 1438 | moServerUrl, serverUrl, |
| 1439 | gnssConfigRequested, gnssConfigNeedEngineUpdate, countOfConfigs); |
| 1440 | |
| 1441 | configCollectiveResponse->returnToSender(errsList); |
| 1442 | })); |
| 1443 | |
| 1444 | if (needSuspendResume == true) { |
| 1445 | mAdapter.restartSessions(); |
| 1446 | } |
| 1447 | } |
| 1448 | }; |
| 1449 | |
| 1450 | if (NULL != ids) { |
| 1451 | sendMsg(new MsgGnssUpdateConfig(*this, *mLocApi, config, ids, count)); |
| 1452 | } else { |
| 1453 | LOC_LOGE("%s]: No GNSS config items to update", __func__); |
| 1454 | } |
| 1455 | |
| 1456 | return ids; |
| 1457 | } |
| 1458 | |
| 1459 | void |
| 1460 | GnssAdapter::gnssSvIdConfigUpdate(const std::vector<GnssSvIdSource>& blacklistedSvIds) |
| 1461 | { |
| 1462 | // Clear the existing config |
| 1463 | memset(&mGnssSvIdConfig, 0, sizeof(GnssSvIdConfig)); |
| 1464 | |
| 1465 | // Convert the sv id lists to masks |
| 1466 | bool convertSuccess = convertToGnssSvIdConfig(blacklistedSvIds, mGnssSvIdConfig); |
| 1467 | |
| 1468 | // Now send to Modem if conversion successful |
| 1469 | if (convertSuccess) { |
| 1470 | gnssSvIdConfigUpdate(); |
| 1471 | } else { |
| 1472 | LOC_LOGe("convertToGnssSvIdConfig failed"); |
| 1473 | } |
| 1474 | } |
| 1475 | |
| 1476 | void |
| 1477 | GnssAdapter::gnssSvIdConfigUpdate() |
| 1478 | { |
| 1479 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 |
| 1480 | ", qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", navic 0x%" PRIx64, |
| 1481 | mGnssSvIdConfig.bdsBlacklistSvMask, mGnssSvIdConfig.gloBlacklistSvMask, |
| 1482 | mGnssSvIdConfig.qzssBlacklistSvMask, mGnssSvIdConfig.galBlacklistSvMask, |
| 1483 | mGnssSvIdConfig.sbasBlacklistSvMask, mGnssSvIdConfig.navicBlacklistSvMask); |
| 1484 | // Now set required blacklisted SVs |
| 1485 | mLocApi->setBlacklistSv(mGnssSvIdConfig); |
| 1486 | } |
| 1487 | |
| 1488 | LocationError |
| 1489 | GnssAdapter::gnssSvIdConfigUpdateSync(const std::vector<GnssSvIdSource>& blacklistedSvIds) |
| 1490 | { |
| 1491 | // Clear the existing config |
| 1492 | memset(&mGnssSvIdConfig, 0, sizeof(GnssSvIdConfig)); |
| 1493 | |
| 1494 | // Convert the sv id lists to masks |
| 1495 | convertToGnssSvIdConfig(blacklistedSvIds, mGnssSvIdConfig); |
| 1496 | |
| 1497 | // Now send to Modem |
| 1498 | return gnssSvIdConfigUpdateSync(); |
| 1499 | } |
| 1500 | |
| 1501 | LocationError |
| 1502 | GnssAdapter::gnssSvIdConfigUpdateSync() |
| 1503 | { |
| 1504 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 |
| 1505 | ", qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", navic 0x%" PRIx64, |
| 1506 | mGnssSvIdConfig.bdsBlacklistSvMask, mGnssSvIdConfig.gloBlacklistSvMask, |
| 1507 | mGnssSvIdConfig.qzssBlacklistSvMask, mGnssSvIdConfig.galBlacklistSvMask, |
| 1508 | mGnssSvIdConfig.sbasBlacklistSvMask, mGnssSvIdConfig.navicBlacklistSvMask); |
| 1509 | |
| 1510 | // Now set required blacklisted SVs |
| 1511 | return mLocApi->setBlacklistSvSync(mGnssSvIdConfig); |
| 1512 | } |
| 1513 | |
| 1514 | void |
| 1515 | GnssAdapter::gnssSecondaryBandConfigUpdate(LocApiResponse* locApiResponse) |
| 1516 | { |
| 1517 | LOC_LOGd("secondary band config, size %d, enabled constellation 0x%" PRIx64 "," |
| 1518 | "disabled constellation 0x%" PRIx64 "", mGnssSeconaryBandConfig.size, |
| 1519 | mGnssSeconaryBandConfig.enabledSvTypesMask, |
| 1520 | mGnssSeconaryBandConfig.blacklistedSvTypesMask); |
| 1521 | if (mGnssSeconaryBandConfig.size == sizeof(mGnssSeconaryBandConfig)) { |
| 1522 | // Now set required secondary band config |
| 1523 | mLocApi->configConstellationMultiBand(mGnssSeconaryBandConfig, locApiResponse); |
| 1524 | } |
| 1525 | } |
| 1526 | |
| 1527 | uint32_t* |
| 1528 | GnssAdapter::gnssGetConfigCommand(GnssConfigFlagsMask configMask) { |
| 1529 | |
| 1530 | // count the number of bits set |
| 1531 | GnssConfigFlagsMask flagsCopy = configMask; |
| 1532 | size_t count = 0; |
| 1533 | while (flagsCopy > 0) { |
| 1534 | if (flagsCopy & 1) { |
| 1535 | count++; |
| 1536 | } |
| 1537 | flagsCopy >>= 1; |
| 1538 | } |
| 1539 | std::string idsString = "["; |
| 1540 | uint32_t* ids = NULL; |
| 1541 | if (count > 0) { |
| 1542 | ids = new uint32_t[count]; |
| 1543 | if (nullptr == ids) { |
| 1544 | LOC_LOGe("new allocation failed, fatal error."); |
| 1545 | return nullptr; |
| 1546 | } |
| 1547 | for (size_t i=0; i < count; ++i) { |
| 1548 | ids[i] = generateSessionId(); |
| 1549 | IF_LOC_LOGD { |
| 1550 | idsString += std::to_string(ids[i]) + " "; |
| 1551 | } |
| 1552 | } |
| 1553 | } |
| 1554 | idsString += "]"; |
| 1555 | |
| 1556 | LOC_LOGd("ids %s flags 0x%X", idsString.c_str(), configMask); |
| 1557 | |
| 1558 | struct MsgGnssGetConfig : public LocMsg { |
| 1559 | GnssAdapter& mAdapter; |
| 1560 | LocApiBase& mApi; |
| 1561 | GnssConfigFlagsMask mConfigMask; |
| 1562 | uint32_t* mIds; |
| 1563 | size_t mCount; |
| 1564 | inline MsgGnssGetConfig(GnssAdapter& adapter, |
| 1565 | LocApiBase& api, |
| 1566 | GnssConfigFlagsMask configMask, |
| 1567 | uint32_t* ids, |
| 1568 | size_t count) : |
| 1569 | LocMsg(), |
| 1570 | mAdapter(adapter), |
| 1571 | mApi(api), |
| 1572 | mConfigMask(configMask), |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 1573 | mIds(nullptr), |
| 1574 | mCount(count) { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 1575 | if (mCount > 0) { |
| 1576 | mIds = new uint32_t[count]; |
| 1577 | if (mIds) { |
| 1578 | for (uint32_t index = 0; index < count; index++) { |
| 1579 | mIds[index] = ids[index]; |
| 1580 | } |
| 1581 | } else { |
| 1582 | LOC_LOGe("memory allocation for mIds failed"); |
| 1583 | } |
| 1584 | } |
| 1585 | } |
| 1586 | |
| 1587 | inline MsgGnssGetConfig(const MsgGnssGetConfig& obj) : |
| 1588 | MsgGnssGetConfig(obj.mAdapter, obj.mApi, obj.mConfigMask, |
| 1589 | obj.mIds, obj.mCount) {} |
| 1590 | |
| 1591 | inline virtual ~MsgGnssGetConfig() |
| 1592 | { |
| 1593 | if (nullptr != mIds) delete[] mIds; |
| 1594 | } |
| 1595 | inline virtual void proc() const { |
| 1596 | if (!mAdapter.isEngineCapabilitiesKnown()) { |
| 1597 | mAdapter.mPendingMsgs.push_back(new MsgGnssGetConfig(*this)); |
| 1598 | return; |
| 1599 | } |
| 1600 | LocationError* errs = new LocationError[mCount]; |
| 1601 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 1602 | uint32_t index = 0; |
| 1603 | |
| 1604 | if (nullptr == errs) { |
| 1605 | LOC_LOGE("%s] new allocation failed, fatal error.", __func__); |
| 1606 | return; |
| 1607 | } |
| 1608 | |
| 1609 | if (mConfigMask & GNSS_CONFIG_FLAGS_GPS_LOCK_VALID_BIT) { |
| 1610 | if (index < mCount) { |
| 1611 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1612 | } |
| 1613 | } |
| 1614 | if (mConfigMask & GNSS_CONFIG_FLAGS_SUPL_VERSION_VALID_BIT) { |
| 1615 | if (index < mCount) { |
| 1616 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1617 | } |
| 1618 | } |
| 1619 | if (mConfigMask & GNSS_CONFIG_FLAGS_SET_ASSISTANCE_DATA_VALID_BIT) { |
| 1620 | if (index < mCount) { |
| 1621 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1622 | } |
| 1623 | } |
| 1624 | if (mConfigMask & GNSS_CONFIG_FLAGS_LPP_PROFILE_VALID_BIT) { |
| 1625 | if (index < mCount) { |
| 1626 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1627 | } |
| 1628 | } |
| 1629 | if (mConfigMask & GNSS_CONFIG_FLAGS_LPPE_CONTROL_PLANE_VALID_BIT) { |
| 1630 | if (index < mCount) { |
| 1631 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1632 | } |
| 1633 | } |
| 1634 | if (mConfigMask & GNSS_CONFIG_FLAGS_LPPE_USER_PLANE_VALID_BIT) { |
| 1635 | if (index < mCount) { |
| 1636 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1637 | } |
| 1638 | } |
| 1639 | if (mConfigMask & GNSS_CONFIG_FLAGS_AGLONASS_POSITION_PROTOCOL_VALID_BIT) { |
| 1640 | if (index < mCount) { |
| 1641 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1642 | } |
| 1643 | } |
| 1644 | if (mConfigMask & GNSS_CONFIG_FLAGS_EM_PDN_FOR_EM_SUPL_VALID_BIT) { |
| 1645 | if (index < mCount) { |
| 1646 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1647 | } |
| 1648 | } |
| 1649 | if (mConfigMask & GNSS_CONFIG_FLAGS_SUPL_EM_SERVICES_BIT) { |
| 1650 | if (index < mCount) { |
| 1651 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1652 | } |
| 1653 | } |
| 1654 | if (mConfigMask & GNSS_CONFIG_FLAGS_SUPL_MODE_BIT) { |
| 1655 | err = LOCATION_ERROR_NOT_SUPPORTED; |
| 1656 | if (index < mCount) { |
| 1657 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1658 | } |
| 1659 | } |
| 1660 | if (mConfigMask & GNSS_CONFIG_FLAGS_BLACKLISTED_SV_IDS_BIT) { |
| 1661 | // Check if feature is supported |
| 1662 | if (!ContextBase::isFeatureSupported( |
| 1663 | LOC_SUPPORTED_FEATURE_CONSTELLATION_ENABLEMENT_V02)) { |
| 1664 | LOC_LOGe("Feature not supported."); |
| 1665 | err = LOCATION_ERROR_NOT_SUPPORTED; |
| 1666 | } else { |
| 1667 | // Send request to Modem to fetch the config |
| 1668 | mApi.getBlacklistSv(); |
| 1669 | err = LOCATION_ERROR_SUCCESS; |
| 1670 | } |
| 1671 | if (index < mCount) { |
| 1672 | errs[index++] = err; |
| 1673 | } |
| 1674 | } |
| 1675 | if (mConfigMask & GNSS_CONFIG_FLAGS_EMERGENCY_EXTENSION_SECONDS_BIT) { |
| 1676 | err = LOCATION_ERROR_NOT_SUPPORTED; |
| 1677 | if (index < mCount) { |
| 1678 | errs[index++] = LOCATION_ERROR_NOT_SUPPORTED; |
| 1679 | } |
| 1680 | } |
| 1681 | if (mConfigMask & GNSS_CONFIG_FLAGS_ROBUST_LOCATION_BIT) { |
| 1682 | uint32_t sessionId = *(mIds+index); |
| 1683 | LocApiResponse* locApiResponse = |
| 1684 | new LocApiResponse(*mAdapter.getContext(), |
| 1685 | [this, sessionId] (LocationError err) { |
| 1686 | mAdapter.reportResponse(err, sessionId);}); |
| 1687 | if (!locApiResponse) { |
| 1688 | LOC_LOGe("memory alloc failed"); |
| 1689 | mAdapter.reportResponse(LOCATION_ERROR_GENERAL_FAILURE, sessionId); |
| 1690 | } else { |
| 1691 | mApi.getRobustLocationConfig(sessionId, locApiResponse); |
| 1692 | } |
| 1693 | } |
| 1694 | |
| 1695 | if (mConfigMask & GNSS_CONFIG_FLAGS_MIN_GPS_WEEK_BIT) { |
| 1696 | uint32_t sessionId = *(mIds+index); |
| 1697 | LocApiResponse* locApiResponse = |
| 1698 | new LocApiResponse(*mAdapter.getContext(), |
| 1699 | [this, sessionId] (LocationError err) { |
| 1700 | mAdapter.reportResponse(err, sessionId);}); |
| 1701 | if (!locApiResponse) { |
| 1702 | LOC_LOGe("memory alloc failed"); |
| 1703 | mAdapter.reportResponse(LOCATION_ERROR_GENERAL_FAILURE, sessionId); |
| 1704 | } else { |
| 1705 | mApi.getMinGpsWeek(sessionId, locApiResponse); |
| 1706 | } |
| 1707 | } |
| 1708 | |
| 1709 | if (mConfigMask & GNSS_CONFIG_FLAGS_MIN_SV_ELEVATION_BIT) { |
| 1710 | uint32_t sessionId = *(mIds+index); |
| 1711 | LocApiResponse* locApiResponse = |
| 1712 | new LocApiResponse(*mAdapter.getContext(), |
| 1713 | [this, sessionId] (LocationError err) { |
| 1714 | mAdapter.reportResponse(err, sessionId);}); |
| 1715 | if (!locApiResponse) { |
| 1716 | LOC_LOGe("memory alloc failed"); |
| 1717 | mAdapter.reportResponse(LOCATION_ERROR_GENERAL_FAILURE, sessionId); |
| 1718 | } else { |
| 1719 | mApi.getParameter(sessionId, GNSS_CONFIG_FLAGS_MIN_SV_ELEVATION_BIT, |
| 1720 | locApiResponse); |
| 1721 | } |
| 1722 | } |
| 1723 | |
| 1724 | mAdapter.reportResponse(index, errs, mIds); |
| 1725 | delete[] errs; |
| 1726 | |
| 1727 | } |
| 1728 | }; |
| 1729 | |
| 1730 | if (NULL != ids) { |
| 1731 | sendMsg(new MsgGnssGetConfig(*this, *mLocApi, configMask, ids, count)); |
| 1732 | } else { |
| 1733 | LOC_LOGe("No GNSS config items to Get"); |
| 1734 | } |
| 1735 | |
| 1736 | return ids; |
| 1737 | } |
| 1738 | |
| 1739 | bool |
| 1740 | GnssAdapter::convertToGnssSvIdConfig( |
| 1741 | const std::vector<GnssSvIdSource>& blacklistedSvIds, GnssSvIdConfig& config) |
| 1742 | { |
| 1743 | bool retVal = false; |
| 1744 | config.size = sizeof(GnssSvIdConfig); |
| 1745 | |
| 1746 | // Empty vector => Clear any previous blacklisted SVs |
| 1747 | if (0 == blacklistedSvIds.size()) { |
| 1748 | config.gloBlacklistSvMask = 0; |
| 1749 | config.bdsBlacklistSvMask = 0; |
| 1750 | config.qzssBlacklistSvMask = 0; |
| 1751 | config.galBlacklistSvMask = 0; |
| 1752 | config.sbasBlacklistSvMask = 0; |
| 1753 | config.navicBlacklistSvMask = 0; |
| 1754 | retVal = true; |
| 1755 | } else { |
| 1756 | // Parse the vector and convert SV IDs to mask values |
| 1757 | for (GnssSvIdSource source : blacklistedSvIds) { |
| 1758 | uint64_t* svMaskPtr = NULL; |
| 1759 | GnssSvId initialSvId = 0; |
| 1760 | uint16_t svIndexOffset = 0; |
| 1761 | switch(source.constellation) { |
| 1762 | case GNSS_SV_TYPE_GLONASS: |
| 1763 | svMaskPtr = &config.gloBlacklistSvMask; |
| 1764 | initialSvId = GNSS_SV_CONFIG_GLO_INITIAL_SV_ID; |
| 1765 | break; |
| 1766 | case GNSS_SV_TYPE_BEIDOU: |
| 1767 | svMaskPtr = &config.bdsBlacklistSvMask; |
| 1768 | initialSvId = GNSS_SV_CONFIG_BDS_INITIAL_SV_ID; |
| 1769 | break; |
| 1770 | case GNSS_SV_TYPE_QZSS: |
| 1771 | svMaskPtr = &config.qzssBlacklistSvMask; |
| 1772 | initialSvId = GNSS_SV_CONFIG_QZSS_INITIAL_SV_ID; |
| 1773 | break; |
| 1774 | case GNSS_SV_TYPE_GALILEO: |
| 1775 | svMaskPtr = &config.galBlacklistSvMask; |
| 1776 | initialSvId = GNSS_SV_CONFIG_GAL_INITIAL_SV_ID; |
| 1777 | break; |
| 1778 | case GNSS_SV_TYPE_SBAS: |
| 1779 | // SBAS does not support enable/disable whole constellation |
| 1780 | // so do not set up svTypeMask for SBAS |
| 1781 | svMaskPtr = &config.sbasBlacklistSvMask; |
| 1782 | // SBAS currently has two ranges, [120, 158] and [183, 191] |
| 1783 | if (0 == source.svId) { |
| 1784 | LOC_LOGd("blacklist all SBAS SV"); |
| 1785 | } else if (source.svId >= GNSS_SV_CONFIG_SBAS_INITIAL2_SV_ID) { |
| 1786 | // handle SV id in range [183, 191] |
| 1787 | initialSvId = GNSS_SV_CONFIG_SBAS_INITIAL2_SV_ID; |
| 1788 | svIndexOffset = GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH; |
| 1789 | } else if ((source.svId >= GNSS_SV_CONFIG_SBAS_INITIAL_SV_ID) && |
| 1790 | (source.svId < (GNSS_SV_CONFIG_SBAS_INITIAL_SV_ID + |
| 1791 | GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH))){ |
| 1792 | // handle SV id in range of [120, 158] |
| 1793 | initialSvId = GNSS_SV_CONFIG_SBAS_INITIAL_SV_ID; |
| 1794 | } else { |
| 1795 | LOC_LOGe("invalid SBAS sv id %d", source.svId); |
| 1796 | svMaskPtr = nullptr; |
| 1797 | } |
| 1798 | break; |
| 1799 | case GNSS_SV_TYPE_NAVIC: |
| 1800 | svMaskPtr = &config.navicBlacklistSvMask; |
| 1801 | initialSvId = GNSS_SV_CONFIG_NAVIC_INITIAL_SV_ID; |
| 1802 | break; |
| 1803 | default: |
| 1804 | break; |
| 1805 | } |
| 1806 | |
| 1807 | if (NULL == svMaskPtr) { |
| 1808 | LOC_LOGe("Invalid constellation %d", source.constellation); |
| 1809 | } else { |
| 1810 | // SV ID 0 = All SV IDs |
| 1811 | if (0 == source.svId) { |
| 1812 | *svMaskPtr = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 1813 | } else if (source.svId < initialSvId || source.svId >= initialSvId + 64) { |
| 1814 | LOC_LOGe("Invalid sv id %d for sv type %d", |
| 1815 | source.svId, source.constellation); |
| 1816 | } else { |
| 1817 | uint32_t shiftCnt = source.svId + svIndexOffset - initialSvId; |
| 1818 | *svMaskPtr |= (1ULL << shiftCnt); |
| 1819 | } |
| 1820 | } |
| 1821 | } |
| 1822 | |
| 1823 | // Return true if any one source is valid |
| 1824 | if (0 != config.gloBlacklistSvMask || |
| 1825 | 0 != config.bdsBlacklistSvMask || |
| 1826 | 0 != config.galBlacklistSvMask || |
| 1827 | 0 != config.qzssBlacklistSvMask || |
| 1828 | 0 != config.sbasBlacklistSvMask || |
| 1829 | 0 != config.navicBlacklistSvMask) { |
| 1830 | retVal = true; |
| 1831 | } |
| 1832 | } |
| 1833 | |
| 1834 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 |
| 1835 | ", qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", navic 0x%" PRIx64, |
| 1836 | config.bdsBlacklistSvMask, config.gloBlacklistSvMask, |
| 1837 | config.qzssBlacklistSvMask, config.galBlacklistSvMask, |
| 1838 | config.sbasBlacklistSvMask, config.navicBlacklistSvMask); |
| 1839 | |
| 1840 | return retVal; |
| 1841 | } |
| 1842 | |
| 1843 | void GnssAdapter::convertFromGnssSvIdConfig( |
| 1844 | const GnssSvIdConfig& svConfig, std::vector<GnssSvIdSource>& blacklistedSvIds) |
| 1845 | { |
| 1846 | // Convert blacklisted SV mask values to vectors |
| 1847 | if (svConfig.bdsBlacklistSvMask) { |
| 1848 | convertGnssSvIdMaskToList( |
| 1849 | svConfig.bdsBlacklistSvMask, blacklistedSvIds, |
| 1850 | GNSS_SV_CONFIG_BDS_INITIAL_SV_ID, GNSS_SV_TYPE_BEIDOU); |
| 1851 | } |
| 1852 | if (svConfig.galBlacklistSvMask) { |
| 1853 | convertGnssSvIdMaskToList( |
| 1854 | svConfig.galBlacklistSvMask, blacklistedSvIds, |
| 1855 | GNSS_SV_CONFIG_GAL_INITIAL_SV_ID, GNSS_SV_TYPE_GALILEO); |
| 1856 | } |
| 1857 | if (svConfig.gloBlacklistSvMask) { |
| 1858 | convertGnssSvIdMaskToList( |
| 1859 | svConfig.gloBlacklistSvMask, blacklistedSvIds, |
| 1860 | GNSS_SV_CONFIG_GLO_INITIAL_SV_ID, GNSS_SV_TYPE_GLONASS); |
| 1861 | } |
| 1862 | if (svConfig.qzssBlacklistSvMask) { |
| 1863 | convertGnssSvIdMaskToList( |
| 1864 | svConfig.qzssBlacklistSvMask, blacklistedSvIds, |
| 1865 | GNSS_SV_CONFIG_QZSS_INITIAL_SV_ID, GNSS_SV_TYPE_QZSS); |
| 1866 | } |
| 1867 | if (svConfig.sbasBlacklistSvMask) { |
| 1868 | // SBAS - SV 120 to 158, maps to 0 to 38 |
| 1869 | // SV 183 to 191, maps to 39 to 47 |
| 1870 | uint64_t sbasBlacklistSvMask = svConfig.sbasBlacklistSvMask; |
| 1871 | // operate on 120 and 158 first |
| 1872 | sbasBlacklistSvMask <<= (64 - GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH); |
| 1873 | sbasBlacklistSvMask >>= (64 - GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH); |
| 1874 | convertGnssSvIdMaskToList( |
| 1875 | sbasBlacklistSvMask, blacklistedSvIds, |
| 1876 | GNSS_SV_CONFIG_SBAS_INITIAL_SV_ID, GNSS_SV_TYPE_SBAS); |
| 1877 | // operate on the second range |
| 1878 | sbasBlacklistSvMask = svConfig.sbasBlacklistSvMask; |
| 1879 | sbasBlacklistSvMask >>= GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH; |
| 1880 | convertGnssSvIdMaskToList( |
| 1881 | sbasBlacklistSvMask, blacklistedSvIds, |
| 1882 | GNSS_SV_CONFIG_SBAS_INITIAL2_SV_ID, GNSS_SV_TYPE_SBAS); |
| 1883 | } |
| 1884 | if (svConfig.navicBlacklistSvMask) { |
| 1885 | convertGnssSvIdMaskToList( |
| 1886 | svConfig.navicBlacklistSvMask, blacklistedSvIds, |
| 1887 | GNSS_SV_CONFIG_NAVIC_INITIAL_SV_ID, GNSS_SV_TYPE_NAVIC); |
| 1888 | } |
| 1889 | } |
| 1890 | |
| 1891 | void GnssAdapter::convertGnssSvIdMaskToList( |
| 1892 | uint64_t svIdMask, std::vector<GnssSvIdSource>& svIds, |
| 1893 | GnssSvId initialSvId, GnssSvType svType) |
| 1894 | { |
| 1895 | GnssSvIdSource source = {}; |
| 1896 | source.size = sizeof(GnssSvIdSource); |
| 1897 | source.constellation = svType; |
| 1898 | |
| 1899 | // SV ID 0 => All SV IDs in mask |
| 1900 | if (GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK == svIdMask) { |
| 1901 | LOC_LOGd("blacklist all SVs in constellation %d", source.constellation); |
| 1902 | source.svId = 0; |
| 1903 | svIds.push_back(source); |
| 1904 | return; |
| 1905 | } |
| 1906 | |
| 1907 | // Convert each bit in svIdMask to vector entry |
| 1908 | uint32_t bitNumber = 0; |
| 1909 | while (svIdMask > 0) { |
| 1910 | if (svIdMask & 0x1) { |
| 1911 | source.svId = bitNumber + initialSvId; |
| 1912 | // SBAS has two ranges: |
| 1913 | // SBAS - SV 120 to 158, maps to 0 to 38 |
| 1914 | // SV 183 to 191, maps to 39 to 47 |
| 1915 | // #define GNSS_SV_CONFIG_SBAS_INITIAL_SV_ID 120 |
| 1916 | // #define GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH 39 |
| 1917 | // #define GNSS_SV_CONFIG_SBAS_INITIAL2_SV_ID 183 |
| 1918 | if (svType == GNSS_SV_TYPE_SBAS) { |
| 1919 | if (bitNumber >= GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH) { |
| 1920 | source.svId = bitNumber - GNSS_SV_CONFIG_SBAS_INITIAL_SV_LENGTH + |
| 1921 | GNSS_SV_CONFIG_SBAS_INITIAL2_SV_ID; |
| 1922 | } |
| 1923 | } |
| 1924 | svIds.push_back(source); |
| 1925 | } |
| 1926 | bitNumber++; |
| 1927 | svIdMask >>= 1; |
| 1928 | } |
| 1929 | } |
| 1930 | |
| 1931 | void GnssAdapter::reportGnssSvIdConfigEvent(const GnssSvIdConfig& config) |
| 1932 | { |
| 1933 | struct MsgReportGnssSvIdConfig : public LocMsg { |
| 1934 | GnssAdapter& mAdapter; |
| 1935 | const GnssSvIdConfig mConfig; |
| 1936 | inline MsgReportGnssSvIdConfig(GnssAdapter& adapter, |
| 1937 | const GnssSvIdConfig& config) : |
| 1938 | LocMsg(), |
| 1939 | mAdapter(adapter), |
| 1940 | mConfig(config) {} |
| 1941 | inline virtual void proc() const { |
| 1942 | mAdapter.reportGnssSvIdConfig(mConfig); |
| 1943 | } |
| 1944 | }; |
| 1945 | |
| 1946 | sendMsg(new MsgReportGnssSvIdConfig(*this, config)); |
| 1947 | } |
| 1948 | |
| 1949 | void GnssAdapter::reportGnssSvIdConfig(const GnssSvIdConfig& svIdConfig) |
| 1950 | { |
| 1951 | GnssConfig config = {}; |
| 1952 | config.size = sizeof(GnssConfig); |
| 1953 | |
| 1954 | // Invoke control clients config callback |
| 1955 | if (nullptr != mControlCallbacks.gnssConfigCb && |
| 1956 | svIdConfig.size == sizeof(GnssSvIdConfig)) { |
| 1957 | |
| 1958 | convertFromGnssSvIdConfig(svIdConfig, config.blacklistedSvIds); |
| 1959 | if (config.blacklistedSvIds.size() > 0) { |
| 1960 | config.flags |= GNSS_CONFIG_FLAGS_BLACKLISTED_SV_IDS_BIT; |
| 1961 | } |
| 1962 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 ", " |
| 1963 | "qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", navic 0x%" PRIx64, |
| 1964 | svIdConfig.bdsBlacklistSvMask, svIdConfig.gloBlacklistSvMask, |
| 1965 | svIdConfig.qzssBlacklistSvMask, svIdConfig.galBlacklistSvMask, |
| 1966 | svIdConfig.sbasBlacklistSvMask, svIdConfig.navicBlacklistSvMask); |
| 1967 | // use 0 session id to indicate that receiver does not yet care about session id |
| 1968 | mControlCallbacks.gnssConfigCb(0, config); |
| 1969 | } else { |
| 1970 | LOC_LOGe("Failed to report, size %d", (uint32_t)config.size); |
| 1971 | } |
| 1972 | } |
| 1973 | |
| 1974 | void |
| 1975 | GnssAdapter::gnssUpdateSvTypeConfigCommand(GnssSvTypeConfig config) |
| 1976 | { |
| 1977 | struct MsgGnssUpdateSvTypeConfig : public LocMsg { |
| 1978 | GnssAdapter* mAdapter; |
| 1979 | LocApiBase* mApi; |
| 1980 | GnssSvTypeConfig mConfig; |
| 1981 | inline MsgGnssUpdateSvTypeConfig( |
| 1982 | GnssAdapter* adapter, |
| 1983 | LocApiBase* api, |
| 1984 | GnssSvTypeConfig& config) : |
| 1985 | LocMsg(), |
| 1986 | mAdapter(adapter), |
| 1987 | mApi(api), |
| 1988 | mConfig(config) {} |
| 1989 | inline virtual void proc() const { |
| 1990 | if (!mAdapter->isEngineCapabilitiesKnown()) { |
| 1991 | mAdapter->mPendingMsgs.push_back(new MsgGnssUpdateSvTypeConfig(*this)); |
| 1992 | return; |
| 1993 | } |
| 1994 | // Check if feature is supported |
| 1995 | if (!ContextBase::isFeatureSupported( |
| 1996 | LOC_SUPPORTED_FEATURE_CONSTELLATION_ENABLEMENT_V02)) { |
| 1997 | LOC_LOGe("Feature not supported."); |
| 1998 | } else { |
| 1999 | // Send update request to modem |
| 2000 | mAdapter->gnssSvTypeConfigUpdate(mConfig); |
| 2001 | } |
| 2002 | } |
| 2003 | }; |
| 2004 | |
| 2005 | sendMsg(new MsgGnssUpdateSvTypeConfig(this, mLocApi, config)); |
| 2006 | } |
| 2007 | |
| 2008 | void |
| 2009 | GnssAdapter::gnssSvTypeConfigUpdate(const GnssSvTypeConfig& config) |
| 2010 | { |
| 2011 | // Gather bits removed from enabled mask |
| 2012 | GnssSvTypesMask enabledRemoved = mGnssSvTypeConfig.enabledSvTypesMask & |
| 2013 | (mGnssSvTypeConfig.enabledSvTypesMask ^ config.enabledSvTypesMask); |
| 2014 | // Send reset if any constellation is removed from the enabled list |
| 2015 | bool sendReset = (enabledRemoved != 0); |
| 2016 | // Save new config and update |
| 2017 | gnssSetSvTypeConfig(config); |
| 2018 | gnssSvTypeConfigUpdate(sendReset); |
| 2019 | } |
| 2020 | |
| 2021 | void |
| 2022 | GnssAdapter::gnssSvTypeConfigUpdate(bool sendReset) |
| 2023 | { |
| 2024 | LOC_LOGd("size %" PRIu32" constellations blacklisted 0x%" PRIx64 ", enabled 0x%" PRIx64 |
| 2025 | ", sendReset %d", |
| 2026 | mGnssSvTypeConfig.size, mGnssSvTypeConfig.blacklistedSvTypesMask, |
| 2027 | mGnssSvTypeConfig.enabledSvTypesMask, sendReset); |
| 2028 | |
| 2029 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 |
| 2030 | ", qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", Navic 0x%" PRIx64, |
| 2031 | mGnssSvIdConfig.bdsBlacklistSvMask, mGnssSvIdConfig.gloBlacklistSvMask, |
| 2032 | mGnssSvIdConfig.qzssBlacklistSvMask, mGnssSvIdConfig.galBlacklistSvMask, |
| 2033 | mGnssSvIdConfig.sbasBlacklistSvMask, mGnssSvIdConfig.navicBlacklistSvMask); |
| 2034 | |
| 2035 | LOC_LOGd("blacklist bds 0x%" PRIx64 ", glo 0x%" PRIx64 |
| 2036 | ", qzss 0x%" PRIx64 ", gal 0x%" PRIx64 ", sbas 0x%" PRIx64 ", Navic 0x%" PRIx64, |
| 2037 | mGnssSvIdConfig.bdsBlacklistSvMask, mGnssSvIdConfig.gloBlacklistSvMask, |
| 2038 | mGnssSvIdConfig.qzssBlacklistSvMask, mGnssSvIdConfig.galBlacklistSvMask, |
| 2039 | mGnssSvIdConfig.sbasBlacklistSvMask, mGnssSvIdConfig.navicBlacklistSvMask); |
| 2040 | |
| 2041 | if (mGnssSvTypeConfig.size == sizeof(mGnssSvTypeConfig)) { |
| 2042 | |
| 2043 | if (sendReset) { |
| 2044 | mLocApi->resetConstellationControl(); |
| 2045 | } |
| 2046 | |
| 2047 | GnssSvIdConfig blacklistConfig = {}; |
| 2048 | // Revert to previously blacklisted SVs for each enabled constellation |
| 2049 | blacklistConfig = mGnssSvIdConfig; |
| 2050 | // Blacklist all SVs for each disabled constellation |
| 2051 | if (mGnssSvTypeConfig.blacklistedSvTypesMask) { |
| 2052 | if (mGnssSvTypeConfig.blacklistedSvTypesMask & GNSS_SV_TYPES_MASK_GLO_BIT) { |
| 2053 | blacklistConfig.gloBlacklistSvMask = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 2054 | } |
| 2055 | if (mGnssSvTypeConfig.blacklistedSvTypesMask & GNSS_SV_TYPES_MASK_BDS_BIT) { |
| 2056 | blacklistConfig.bdsBlacklistSvMask = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 2057 | } |
| 2058 | if (mGnssSvTypeConfig.blacklistedSvTypesMask & GNSS_SV_TYPES_MASK_QZSS_BIT) { |
| 2059 | blacklistConfig.qzssBlacklistSvMask = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 2060 | } |
| 2061 | if (mGnssSvTypeConfig.blacklistedSvTypesMask & GNSS_SV_TYPES_MASK_GAL_BIT) { |
| 2062 | blacklistConfig.galBlacklistSvMask = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 2063 | } |
| 2064 | if (mGnssSvTypeConfig.blacklistedSvTypesMask & GNSS_SV_TYPES_MASK_NAVIC_BIT) { |
| 2065 | blacklistConfig.navicBlacklistSvMask = GNSS_SV_CONFIG_ALL_BITS_ENABLED_MASK; |
| 2066 | } |
| 2067 | } |
| 2068 | |
| 2069 | // Send blacklist info |
| 2070 | mLocApi->setBlacklistSv(blacklistConfig); |
| 2071 | |
| 2072 | // Send only enabled constellation config |
| 2073 | if (mGnssSvTypeConfig.enabledSvTypesMask) { |
| 2074 | GnssSvTypeConfig svTypeConfig = {sizeof(GnssSvTypeConfig), 0, 0}; |
| 2075 | svTypeConfig.enabledSvTypesMask = mGnssSvTypeConfig.enabledSvTypesMask; |
| 2076 | mLocApi->setConstellationControl(svTypeConfig); |
| 2077 | } |
| 2078 | } |
| 2079 | } |
| 2080 | |
| 2081 | void |
| 2082 | GnssAdapter::gnssGetSvTypeConfigCommand(GnssSvTypeConfigCallback callback) |
| 2083 | { |
| 2084 | struct MsgGnssGetSvTypeConfig : public LocMsg { |
| 2085 | GnssAdapter* mAdapter; |
| 2086 | LocApiBase* mApi; |
| 2087 | GnssSvTypeConfigCallback mCallback; |
| 2088 | inline MsgGnssGetSvTypeConfig( |
| 2089 | GnssAdapter* adapter, |
| 2090 | LocApiBase* api, |
| 2091 | GnssSvTypeConfigCallback callback) : |
| 2092 | LocMsg(), |
| 2093 | mAdapter(adapter), |
| 2094 | mApi(api), |
| 2095 | mCallback(callback) {} |
| 2096 | inline virtual void proc() const { |
| 2097 | if (!mAdapter->isEngineCapabilitiesKnown()) { |
| 2098 | mAdapter->mPendingMsgs.push_back(new MsgGnssGetSvTypeConfig(*this)); |
| 2099 | return; |
| 2100 | } |
| 2101 | if (!ContextBase::isFeatureSupported( |
| 2102 | LOC_SUPPORTED_FEATURE_CONSTELLATION_ENABLEMENT_V02)) { |
| 2103 | LOC_LOGe("Feature not supported."); |
| 2104 | } else { |
| 2105 | // Save the callback |
| 2106 | mAdapter->gnssSetSvTypeConfigCallback(mCallback); |
| 2107 | // Send GET request to modem |
| 2108 | mApi->getConstellationControl(); |
| 2109 | } |
| 2110 | } |
| 2111 | }; |
| 2112 | |
| 2113 | sendMsg(new MsgGnssGetSvTypeConfig(this, mLocApi, callback)); |
| 2114 | } |
| 2115 | |
| 2116 | void |
| 2117 | GnssAdapter::gnssResetSvTypeConfigCommand() |
| 2118 | { |
| 2119 | struct MsgGnssResetSvTypeConfig : public LocMsg { |
| 2120 | GnssAdapter* mAdapter; |
| 2121 | LocApiBase* mApi; |
| 2122 | inline MsgGnssResetSvTypeConfig( |
| 2123 | GnssAdapter* adapter, |
| 2124 | LocApiBase* api) : |
| 2125 | LocMsg(), |
| 2126 | mAdapter(adapter), |
| 2127 | mApi(api) {} |
| 2128 | inline virtual void proc() const { |
| 2129 | if (!mAdapter->isEngineCapabilitiesKnown()) { |
| 2130 | mAdapter->mPendingMsgs.push_back(new MsgGnssResetSvTypeConfig(*this)); |
| 2131 | return; |
| 2132 | } |
| 2133 | if (!ContextBase::isFeatureSupported( |
| 2134 | LOC_SUPPORTED_FEATURE_CONSTELLATION_ENABLEMENT_V02)) { |
| 2135 | LOC_LOGe("Feature not supported."); |
| 2136 | } else { |
| 2137 | // Reset constellation config |
| 2138 | mAdapter->gnssSetSvTypeConfig({sizeof(GnssSvTypeConfig), 0, 0}); |
| 2139 | // Re-enforce SV blacklist config |
| 2140 | mAdapter->gnssSvIdConfigUpdate(); |
| 2141 | // Send reset request to modem |
| 2142 | mApi->resetConstellationControl(); |
| 2143 | } |
| 2144 | } |
| 2145 | }; |
| 2146 | |
| 2147 | sendMsg(new MsgGnssResetSvTypeConfig(this, mLocApi)); |
| 2148 | } |
| 2149 | |
| 2150 | void GnssAdapter::reportGnssSvTypeConfigEvent(const GnssSvTypeConfig& config) |
| 2151 | { |
| 2152 | struct MsgReportGnssSvTypeConfig : public LocMsg { |
| 2153 | GnssAdapter& mAdapter; |
| 2154 | const GnssSvTypeConfig mConfig; |
| 2155 | inline MsgReportGnssSvTypeConfig(GnssAdapter& adapter, |
| 2156 | const GnssSvTypeConfig& config) : |
| 2157 | LocMsg(), |
| 2158 | mAdapter(adapter), |
| 2159 | mConfig(config) {} |
| 2160 | inline virtual void proc() const { |
| 2161 | mAdapter.reportGnssSvTypeConfig(mConfig); |
| 2162 | } |
| 2163 | }; |
| 2164 | |
| 2165 | sendMsg(new MsgReportGnssSvTypeConfig(*this, config)); |
| 2166 | } |
| 2167 | |
| 2168 | void GnssAdapter::reportGnssSvTypeConfig(const GnssSvTypeConfig& config) |
| 2169 | { |
| 2170 | // Invoke Get SV Type Callback |
| 2171 | if (NULL != mGnssSvTypeConfigCb && |
| 2172 | config.size == sizeof(GnssSvTypeConfig)) { |
| 2173 | LOC_LOGd("constellations blacklisted 0x%" PRIx64 ", enabled 0x%" PRIx64, |
| 2174 | config.blacklistedSvTypesMask, config.enabledSvTypesMask); |
| 2175 | mGnssSvTypeConfigCb(config); |
| 2176 | } else { |
| 2177 | LOC_LOGe("Failed to report, size %d", (uint32_t)config.size); |
| 2178 | } |
| 2179 | } |
| 2180 | |
| 2181 | void GnssAdapter::deleteAidingData(const GnssAidingData &data, uint32_t sessionId) { |
| 2182 | struct timespec bootDeleteAidingDataTime; |
| 2183 | int64_t bootDeleteTimeMs; |
| 2184 | if (clock_gettime(CLOCK_BOOTTIME, &bootDeleteAidingDataTime) == 0) { |
| 2185 | bootDeleteTimeMs = bootDeleteAidingDataTime.tv_sec * 1000000; |
| 2186 | int64_t diffTimeBFirSecDelete = bootDeleteTimeMs - mLastDeleteAidingDataTime; |
| 2187 | if (diffTimeBFirSecDelete > DELETE_AIDING_DATA_EXPECTED_TIME_MS) { |
| 2188 | mLocApi->deleteAidingData(data, new LocApiResponse(*getContext(), |
| 2189 | [this, sessionId] (LocationError err) { |
| 2190 | reportResponse(err, sessionId); |
| 2191 | })); |
| 2192 | mLastDeleteAidingDataTime = bootDeleteTimeMs; |
| 2193 | } |
| 2194 | } |
| 2195 | } |
| 2196 | |
| 2197 | uint32_t |
| 2198 | GnssAdapter::gnssDeleteAidingDataCommand(GnssAidingData& data) |
| 2199 | { |
| 2200 | uint32_t sessionId = generateSessionId(); |
| 2201 | LOC_LOGD("%s]: id %u", __func__, sessionId); |
| 2202 | |
| 2203 | struct MsgDeleteAidingData : public LocMsg { |
| 2204 | GnssAdapter& mAdapter; |
| 2205 | uint32_t mSessionId; |
| 2206 | GnssAidingData mData; |
| 2207 | inline MsgDeleteAidingData(GnssAdapter& adapter, |
| 2208 | uint32_t sessionId, |
| 2209 | GnssAidingData& data) : |
| 2210 | LocMsg(), |
| 2211 | mAdapter(adapter), |
| 2212 | mSessionId(sessionId), |
| 2213 | mData(data) {} |
| 2214 | inline virtual void proc() const { |
| 2215 | if ((mData.posEngineMask & STANDARD_POSITIONING_ENGINE) != 0) { |
| 2216 | mAdapter.deleteAidingData(mData, mSessionId); |
| 2217 | SystemStatus* s = mAdapter.getSystemStatus(); |
| 2218 | if ((nullptr != s) && (mData.deleteAll)) { |
| 2219 | s->setDefaultGnssEngineStates(); |
| 2220 | } |
| 2221 | } |
| 2222 | |
| 2223 | bool retVal = mAdapter.mEngHubProxy->gnssDeleteAidingData(mData); |
| 2224 | // When SPE engine is invoked, responseCb will be invoked |
| 2225 | // from QMI Loc API call. |
| 2226 | // When SPE engine is not invoked, we also need to deliver responseCb |
| 2227 | if ((mData.posEngineMask & STANDARD_POSITIONING_ENGINE) == 0) { |
| 2228 | LocationError err = LOCATION_ERROR_NOT_SUPPORTED; |
| 2229 | if (retVal == true) { |
| 2230 | err = LOCATION_ERROR_SUCCESS; |
| 2231 | } |
| 2232 | mAdapter.reportResponse(err, mSessionId); |
| 2233 | } |
| 2234 | } |
| 2235 | }; |
| 2236 | |
| 2237 | sendMsg(new MsgDeleteAidingData(*this, sessionId, data)); |
| 2238 | return sessionId; |
| 2239 | } |
| 2240 | |
| 2241 | void |
| 2242 | GnssAdapter::gnssUpdateXtraThrottleCommand(const bool enabled) |
| 2243 | { |
| 2244 | LOC_LOGD("%s] enabled:%d", __func__, enabled); |
| 2245 | |
| 2246 | struct UpdateXtraThrottleMsg : public LocMsg { |
| 2247 | GnssAdapter& mAdapter; |
| 2248 | const bool mEnabled; |
| 2249 | inline UpdateXtraThrottleMsg(GnssAdapter& adapter, const bool enabled) : |
| 2250 | LocMsg(), |
| 2251 | mAdapter(adapter), |
| 2252 | mEnabled(enabled) {} |
| 2253 | inline virtual void proc() const { |
| 2254 | mAdapter.mXtraObserver.updateXtraThrottle(mEnabled); |
| 2255 | } |
| 2256 | }; |
| 2257 | |
| 2258 | sendMsg(new UpdateXtraThrottleMsg(*this, enabled)); |
| 2259 | } |
| 2260 | |
| 2261 | void |
| 2262 | GnssAdapter::injectLocationCommand(double latitude, double longitude, float accuracy) |
| 2263 | { |
| 2264 | LOC_LOGD("%s]: latitude %8.4f longitude %8.4f accuracy %8.4f", |
| 2265 | __func__, latitude, longitude, accuracy); |
| 2266 | |
| 2267 | struct MsgInjectLocation : public LocMsg { |
| 2268 | LocApiBase& mApi; |
| 2269 | ContextBase& mContext; |
| 2270 | BlockCPIInfo& mBlockCPI; |
| 2271 | double mLatitude; |
| 2272 | double mLongitude; |
| 2273 | float mAccuracy; |
| 2274 | bool mOnDemandCpi; |
| 2275 | inline MsgInjectLocation(LocApiBase& api, |
| 2276 | ContextBase& context, |
| 2277 | BlockCPIInfo& blockCPIInfo, |
| 2278 | double latitude, |
| 2279 | double longitude, |
| 2280 | float accuracy, |
| 2281 | bool onDemandCpi) : |
| 2282 | LocMsg(), |
| 2283 | mApi(api), |
| 2284 | mContext(context), |
| 2285 | mBlockCPI(blockCPIInfo), |
| 2286 | mLatitude(latitude), |
| 2287 | mLongitude(longitude), |
| 2288 | mAccuracy(accuracy), |
| 2289 | mOnDemandCpi(onDemandCpi) {} |
| 2290 | inline virtual void proc() const { |
| 2291 | if ((uptimeMillis() <= mBlockCPI.blockedTillTsMs) && |
| 2292 | (fabs(mLatitude-mBlockCPI.latitude) <= mBlockCPI.latLonDiffThreshold) && |
| 2293 | (fabs(mLongitude-mBlockCPI.longitude) <= mBlockCPI.latLonDiffThreshold)) { |
| 2294 | |
| 2295 | LOC_LOGD("%s]: positon injection blocked: lat: %f, lon: %f, accuracy: %f", |
| 2296 | __func__, mLatitude, mLongitude, mAccuracy); |
| 2297 | |
| 2298 | } else { |
| 2299 | mApi.injectPosition(mLatitude, mLongitude, mAccuracy, mOnDemandCpi); |
| 2300 | } |
| 2301 | } |
| 2302 | }; |
| 2303 | |
| 2304 | sendMsg(new MsgInjectLocation(*mLocApi, *mContext, mBlockCPIInfo, |
| 2305 | latitude, longitude, accuracy, mOdcpiRequestActive)); |
| 2306 | } |
| 2307 | |
| 2308 | void |
| 2309 | GnssAdapter::injectLocationExtCommand(const GnssLocationInfoNotification &locationInfo) |
| 2310 | { |
| 2311 | LOC_LOGd("latitude %8.4f longitude %8.4f accuracy %8.4f, tech mask 0x%x", |
| 2312 | locationInfo.location.latitude, locationInfo.location.longitude, |
| 2313 | locationInfo.location.accuracy, locationInfo.location.techMask); |
| 2314 | |
| 2315 | struct MsgInjectLocationExt : public LocMsg { |
| 2316 | LocApiBase& mApi; |
| 2317 | ContextBase& mContext; |
| 2318 | GnssLocationInfoNotification mLocationInfo; |
| 2319 | inline MsgInjectLocationExt(LocApiBase& api, |
| 2320 | ContextBase& context, |
| 2321 | GnssLocationInfoNotification locationInfo) : |
| 2322 | LocMsg(), |
| 2323 | mApi(api), |
| 2324 | mContext(context), |
| 2325 | mLocationInfo(locationInfo) {} |
| 2326 | inline virtual void proc() const { |
| 2327 | // false to indicate for none-ODCPI |
| 2328 | mApi.injectPosition(mLocationInfo, false); |
| 2329 | } |
| 2330 | }; |
| 2331 | |
| 2332 | sendMsg(new MsgInjectLocationExt(*mLocApi, *mContext, locationInfo)); |
| 2333 | } |
| 2334 | |
| 2335 | void |
| 2336 | GnssAdapter::injectTimeCommand(int64_t time, int64_t timeReference, int32_t uncertainty) |
| 2337 | { |
| 2338 | LOC_LOGD("%s]: time %lld timeReference %lld uncertainty %d", |
| 2339 | __func__, (long long)time, (long long)timeReference, uncertainty); |
| 2340 | |
| 2341 | struct MsgInjectTime : public LocMsg { |
| 2342 | LocApiBase& mApi; |
| 2343 | ContextBase& mContext; |
| 2344 | int64_t mTime; |
| 2345 | int64_t mTimeReference; |
| 2346 | int32_t mUncertainty; |
| 2347 | inline MsgInjectTime(LocApiBase& api, |
| 2348 | ContextBase& context, |
| 2349 | int64_t time, |
| 2350 | int64_t timeReference, |
| 2351 | int32_t uncertainty) : |
| 2352 | LocMsg(), |
| 2353 | mApi(api), |
| 2354 | mContext(context), |
| 2355 | mTime(time), |
| 2356 | mTimeReference(timeReference), |
| 2357 | mUncertainty(uncertainty) {} |
| 2358 | inline virtual void proc() const { |
| 2359 | mApi.setTime(mTime, mTimeReference, mUncertainty); |
| 2360 | } |
| 2361 | }; |
| 2362 | |
| 2363 | sendMsg(new MsgInjectTime(*mLocApi, *mContext, time, timeReference, uncertainty)); |
| 2364 | } |
| 2365 | |
| 2366 | // This command is to called to block the position to be injected to the modem. |
| 2367 | // This can happen for network position that comes from modem. |
| 2368 | void |
| 2369 | GnssAdapter::blockCPICommand(double latitude, double longitude, |
| 2370 | float accuracy, int blockDurationMsec, |
| 2371 | double latLonDiffThreshold) |
| 2372 | { |
| 2373 | struct MsgBlockCPI : public LocMsg { |
| 2374 | BlockCPIInfo& mDstCPIInfo; |
| 2375 | BlockCPIInfo mSrcCPIInfo; |
| 2376 | |
| 2377 | inline MsgBlockCPI(BlockCPIInfo& dstCPIInfo, |
| 2378 | BlockCPIInfo& srcCPIInfo) : |
| 2379 | mDstCPIInfo(dstCPIInfo), |
| 2380 | mSrcCPIInfo(srcCPIInfo) {} |
| 2381 | inline virtual void proc() const { |
| 2382 | // in the same hal thread, save the cpi to be blocked |
| 2383 | // the global variable |
| 2384 | mDstCPIInfo = mSrcCPIInfo; |
| 2385 | } |
| 2386 | }; |
| 2387 | |
| 2388 | // construct the new block CPI info and queue on the same thread |
| 2389 | // for processing |
| 2390 | BlockCPIInfo blockCPIInfo; |
| 2391 | blockCPIInfo.latitude = latitude; |
| 2392 | blockCPIInfo.longitude = longitude; |
| 2393 | blockCPIInfo.accuracy = accuracy; |
| 2394 | blockCPIInfo.blockedTillTsMs = uptimeMillis() + blockDurationMsec; |
| 2395 | blockCPIInfo.latLonDiffThreshold = latLonDiffThreshold; |
| 2396 | |
| 2397 | LOC_LOGD("%s]: block CPI lat: %f, lon: %f ", __func__, latitude, longitude); |
| 2398 | // send a message to record down the coarse position |
| 2399 | // to be blocked from injection in the master copy (mBlockCPIInfo) |
| 2400 | sendMsg(new MsgBlockCPI(mBlockCPIInfo, blockCPIInfo)); |
| 2401 | } |
| 2402 | |
| 2403 | void |
| 2404 | GnssAdapter::updateSystemPowerState(PowerStateType systemPowerState) { |
| 2405 | if (POWER_STATE_UNKNOWN != systemPowerState) { |
| 2406 | mSystemPowerState = systemPowerState; |
| 2407 | mLocApi->updateSystemPowerState(mSystemPowerState); |
| 2408 | } |
| 2409 | } |
| 2410 | |
| 2411 | void |
| 2412 | GnssAdapter::updateSystemPowerStateCommand(PowerStateType systemPowerState) { |
| 2413 | LOC_LOGd("power event %d", systemPowerState); |
| 2414 | |
| 2415 | struct MsgUpdatePowerState : public LocMsg { |
| 2416 | GnssAdapter& mAdapter; |
| 2417 | PowerStateType mSystemPowerState; |
| 2418 | |
| 2419 | inline MsgUpdatePowerState(GnssAdapter& adapter, |
| 2420 | PowerStateType systemPowerState) : |
| 2421 | LocMsg(), |
| 2422 | mAdapter(adapter), |
| 2423 | mSystemPowerState(systemPowerState) {} |
| 2424 | inline virtual void proc() const { |
| 2425 | mAdapter.updateSystemPowerState(mSystemPowerState); |
| 2426 | } |
| 2427 | }; |
| 2428 | |
| 2429 | sendMsg(new MsgUpdatePowerState(*this, systemPowerState)); |
| 2430 | } |
| 2431 | |
| 2432 | void |
| 2433 | GnssAdapter::addClientCommand(LocationAPI* client, const LocationCallbacks& callbacks) |
| 2434 | { |
| 2435 | LOC_LOGD("%s]: client %p", __func__, client); |
| 2436 | |
| 2437 | struct MsgAddClient : public LocMsg { |
| 2438 | GnssAdapter& mAdapter; |
| 2439 | LocationAPI* mClient; |
| 2440 | const LocationCallbacks mCallbacks; |
| 2441 | inline MsgAddClient(GnssAdapter& adapter, |
| 2442 | LocationAPI* client, |
| 2443 | const LocationCallbacks& callbacks) : |
| 2444 | LocMsg(), |
| 2445 | mAdapter(adapter), |
| 2446 | mClient(client), |
| 2447 | mCallbacks(callbacks) {} |
| 2448 | inline virtual void proc() const { |
| 2449 | // check whether we need to notify client of cached location system info |
| 2450 | mAdapter.notifyClientOfCachedLocationSystemInfo(mClient, mCallbacks); |
| 2451 | mAdapter.saveClient(mClient, mCallbacks); |
| 2452 | } |
| 2453 | }; |
| 2454 | |
| 2455 | sendMsg(new MsgAddClient(*this, client, callbacks)); |
| 2456 | } |
| 2457 | |
| 2458 | void |
| 2459 | GnssAdapter::stopClientSessions(LocationAPI* client) |
| 2460 | { |
| 2461 | LOC_LOGD("%s]: client %p", __func__, client); |
| 2462 | |
| 2463 | /* Time-based Tracking */ |
| 2464 | std::vector<LocationSessionKey> vTimeBasedTrackingClient; |
| 2465 | for (auto it : mTimeBasedTrackingSessions) { |
| 2466 | if (client == it.first.client) { |
| 2467 | vTimeBasedTrackingClient.emplace_back(it.first.client, it.first.id); |
| 2468 | } |
| 2469 | } |
| 2470 | for (auto key : vTimeBasedTrackingClient) { |
| 2471 | stopTimeBasedTrackingMultiplex(key.client, key.id); |
| 2472 | eraseTrackingSession(key.client, key.id); |
| 2473 | } |
| 2474 | |
| 2475 | /* Distance-based Tracking */ |
| 2476 | for (auto it = mDistanceBasedTrackingSessions.begin(); |
| 2477 | it != mDistanceBasedTrackingSessions.end(); /* no increment here*/) { |
| 2478 | if (client == it->first.client) { |
| 2479 | mLocApi->stopDistanceBasedTracking(it->first.id, new LocApiResponse(*getContext(), |
| 2480 | [this, client, id=it->first.id] (LocationError err) { |
| 2481 | if (LOCATION_ERROR_SUCCESS == err) { |
| 2482 | eraseTrackingSession(client, id); |
| 2483 | } |
| 2484 | } |
| 2485 | )); |
| 2486 | } |
| 2487 | ++it; // increment only when not erasing an iterator |
| 2488 | } |
| 2489 | |
| 2490 | } |
| 2491 | |
| 2492 | void |
| 2493 | GnssAdapter::updateClientsEventMask() |
| 2494 | { |
| 2495 | // need to register for leap second info |
| 2496 | // for proper nmea generation |
| 2497 | LOC_API_ADAPTER_EVENT_MASK_T mask = LOC_API_ADAPTER_BIT_LOC_SYSTEM_INFO | |
| 2498 | LOC_API_ADAPTER_BIT_EVENT_REPORT_INFO; |
| 2499 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 2500 | if (it->second.trackingCb != nullptr || |
| 2501 | it->second.gnssLocationInfoCb != nullptr || |
| 2502 | it->second.engineLocationsInfoCb != nullptr) { |
| 2503 | mask |= LOC_API_ADAPTER_BIT_PARSED_POSITION_REPORT; |
| 2504 | } |
| 2505 | if (it->second.gnssSvCb != nullptr) { |
| 2506 | mask |= LOC_API_ADAPTER_BIT_SATELLITE_REPORT; |
| 2507 | } |
| 2508 | if ((it->second.gnssNmeaCb != nullptr) && (mNmeaMask)) { |
| 2509 | mask |= LOC_API_ADAPTER_BIT_NMEA_1HZ_REPORT; |
| 2510 | } |
| 2511 | if (it->second.gnssMeasurementsCb != nullptr) { |
| 2512 | mask |= LOC_API_ADAPTER_BIT_GNSS_MEASUREMENT; |
| 2513 | } |
| 2514 | if (it->second.gnssDataCb != nullptr) { |
| 2515 | mask |= LOC_API_ADAPTER_BIT_PARSED_POSITION_REPORT; |
| 2516 | mask |= LOC_API_ADAPTER_BIT_NMEA_1HZ_REPORT; |
| 2517 | updateNmeaMask(mNmeaMask | LOC_NMEA_MASK_DEBUG_V02); |
| 2518 | } |
| 2519 | } |
| 2520 | |
| 2521 | /* |
| 2522 | ** For Automotive use cases we need to enable MEASUREMENT, POLY and EPHEMERIS |
| 2523 | ** when QDR is enabled (e.g.: either enabled via conf file or |
| 2524 | ** engine hub is loaded successfully). |
| 2525 | ** Note: this need to be called from msg queue thread. |
| 2526 | */ |
| 2527 | if((1 == ContextBase::mGps_conf.EXTERNAL_DR_ENABLED) || |
| 2528 | (true == initEngHubProxy())) { |
| 2529 | mask |= LOC_API_ADAPTER_BIT_GNSS_MEASUREMENT; |
| 2530 | mask |= LOC_API_ADAPTER_BIT_GNSS_SV_POLYNOMIAL_REPORT; |
| 2531 | mask |= LOC_API_ADAPTER_BIT_PARSED_UNPROPAGATED_POSITION_REPORT; |
| 2532 | mask |= LOC_API_ADAPTER_BIT_GNSS_SV_EPHEMERIS_REPORT; |
| 2533 | |
| 2534 | // Nhz measurement bit is set based on callback from loc eng hub |
| 2535 | // for Nhz engines. |
| 2536 | mask |= checkMask(LOC_API_ADAPTER_BIT_GNSS_NHZ_MEASUREMENT); |
| 2537 | |
| 2538 | LOC_LOGd("Auto usecase, Enable MEAS/POLY/EPHEMERIS - mask 0x%" PRIx64 "", |
| 2539 | mask); |
| 2540 | } |
| 2541 | |
| 2542 | if (mAgpsManager.isRegistered()) { |
| 2543 | mask |= LOC_API_ADAPTER_BIT_LOCATION_SERVER_REQUEST; |
| 2544 | } |
| 2545 | // Add ODCPI handling |
| 2546 | if (nullptr != mOdcpiRequestCb) { |
| 2547 | mask |= LOC_API_ADAPTER_BIT_REQUEST_WIFI; |
| 2548 | } |
| 2549 | |
| 2550 | // need to register for leap second info |
| 2551 | // for proper nmea generation |
| 2552 | mask |= LOC_API_ADAPTER_BIT_LOC_SYSTEM_INFO; |
| 2553 | |
| 2554 | // always register for NI NOTIFY VERIFY to handle internally in HAL |
| 2555 | mask |= LOC_API_ADAPTER_BIT_NI_NOTIFY_VERIFY_REQUEST; |
| 2556 | |
| 2557 | // Enable the latency report |
| 2558 | if (mask & LOC_API_ADAPTER_BIT_GNSS_MEASUREMENT) { |
| 2559 | if (mLogger.isLogEnabled()) { |
| 2560 | mask |= LOC_API_ADAPTER_BIT_LATENCY_INFORMATION; |
| 2561 | } |
| 2562 | } |
| 2563 | |
| 2564 | updateEvtMask(mask, LOC_REGISTRATION_MASK_SET); |
| 2565 | } |
| 2566 | |
| 2567 | void |
| 2568 | GnssAdapter::handleEngineUpEvent() |
| 2569 | { |
| 2570 | LOC_LOGD("%s]: ", __func__); |
| 2571 | |
| 2572 | struct MsgHandleEngineUpEvent : public LocMsg { |
| 2573 | GnssAdapter& mAdapter; |
| 2574 | inline MsgHandleEngineUpEvent(GnssAdapter& adapter) : |
| 2575 | LocMsg(), |
| 2576 | mAdapter(adapter) {} |
| 2577 | virtual void proc() const { |
| 2578 | mAdapter.setEngineCapabilitiesKnown(true); |
| 2579 | mAdapter.broadcastCapabilities(mAdapter.getCapabilities()); |
| 2580 | // must be called only after capabilities are known |
| 2581 | mAdapter.setConfig(); |
| 2582 | mAdapter.gnssSvIdConfigUpdate(); |
| 2583 | mAdapter.gnssSvTypeConfigUpdate(); |
| 2584 | mAdapter.updateSystemPowerState(mAdapter.getSystemPowerState()); |
| 2585 | mAdapter.gnssSecondaryBandConfigUpdate(); |
| 2586 | // start CDFW service |
| 2587 | mAdapter.initCDFWService(); |
| 2588 | // restart sessions |
| 2589 | mAdapter.restartSessions(true); |
| 2590 | for (auto msg: mAdapter.mPendingMsgs) { |
| 2591 | mAdapter.sendMsg(msg); |
| 2592 | } |
| 2593 | mAdapter.mPendingMsgs.clear(); |
| 2594 | } |
| 2595 | }; |
| 2596 | |
| 2597 | readConfigCommand(); |
| 2598 | sendMsg(new MsgHandleEngineUpEvent(*this)); |
| 2599 | } |
| 2600 | |
| 2601 | void |
| 2602 | GnssAdapter::restartSessions(bool modemSSR) |
| 2603 | { |
| 2604 | LOC_LOGi(":enter"); |
| 2605 | |
| 2606 | if (modemSSR) { |
| 2607 | // odcpi session is no longer active after restart |
| 2608 | mOdcpiRequestActive = false; |
| 2609 | } |
| 2610 | |
| 2611 | // SPE will be restarted now, so set this variable to false. |
| 2612 | mSPEAlreadyRunningAtHighestInterval = false; |
| 2613 | |
| 2614 | if (false == mTimeBasedTrackingSessions.empty()) { |
| 2615 | // inform engine hub that GNSS session is about to start |
| 2616 | mEngHubProxy->gnssSetFixMode(mLocPositionMode); |
| 2617 | mEngHubProxy->gnssStartFix(); |
| 2618 | checkUpdateDgnssNtrip(false); |
| 2619 | } |
| 2620 | |
| 2621 | checkAndRestartSPESession(); |
| 2622 | } |
| 2623 | |
| 2624 | void GnssAdapter::checkAndRestartSPESession() |
| 2625 | { |
| 2626 | LOC_LOGD("%s]: ", __func__); |
| 2627 | |
| 2628 | // SPE will be restarted now, so set this variable to false. |
| 2629 | mSPEAlreadyRunningAtHighestInterval = false; |
| 2630 | |
| 2631 | checkAndRestartTimeBasedSession(); |
| 2632 | |
| 2633 | for (auto it = mDistanceBasedTrackingSessions.begin(); |
| 2634 | it != mDistanceBasedTrackingSessions.end(); ++it) { |
| 2635 | mLocApi->startDistanceBasedTracking(it->first.id, it->second, |
| 2636 | new LocApiResponse(*getContext(), |
| 2637 | [] (LocationError /*err*/) {})); |
| 2638 | } |
| 2639 | } |
| 2640 | |
| 2641 | // suspend all on-going sessions |
| 2642 | void |
| 2643 | GnssAdapter::suspendSessions() |
| 2644 | { |
| 2645 | LOC_LOGi(":enter"); |
| 2646 | |
| 2647 | if (!mTimeBasedTrackingSessions.empty()) { |
| 2648 | // inform engine hub that GNSS session has stopped |
| 2649 | mEngHubProxy->gnssStopFix(); |
| 2650 | mLocApi->stopFix(nullptr); |
| 2651 | if (isDgnssNmeaRequired()) { |
| 2652 | mDgnssState &= ~DGNSS_STATE_NO_NMEA_PENDING; |
| 2653 | } |
| 2654 | stopDgnssNtrip(); |
| 2655 | mSPEAlreadyRunningAtHighestInterval = false; |
| 2656 | } |
| 2657 | } |
| 2658 | |
| 2659 | void GnssAdapter::checkAndRestartTimeBasedSession() |
| 2660 | { |
| 2661 | LOC_LOGD("%s]: ", __func__); |
| 2662 | |
| 2663 | if (!mTimeBasedTrackingSessions.empty()) { |
| 2664 | // get the LocationOptions that has the smallest interval, which should be the active one |
| 2665 | TrackingOptions smallestIntervalOptions; // size is zero until set for the first time |
| 2666 | TrackingOptions highestPowerTrackingOptions; |
| 2667 | memset(&smallestIntervalOptions, 0, sizeof(smallestIntervalOptions)); |
| 2668 | memset(&highestPowerTrackingOptions, 0, sizeof(highestPowerTrackingOptions)); |
| 2669 | for (auto it = mTimeBasedTrackingSessions.begin(); |
| 2670 | it != mTimeBasedTrackingSessions.end(); ++it) { |
| 2671 | // size of zero means we havent set it yet |
| 2672 | if (0 == smallestIntervalOptions.size || |
| 2673 | it->second.minInterval < smallestIntervalOptions.minInterval) { |
| 2674 | smallestIntervalOptions = it->second; |
| 2675 | } |
| 2676 | GnssPowerMode powerMode = it->second.powerMode; |
| 2677 | // Size of zero means we havent set it yet |
| 2678 | if (0 == highestPowerTrackingOptions.size || |
| 2679 | (GNSS_POWER_MODE_INVALID != powerMode && |
| 2680 | powerMode < highestPowerTrackingOptions.powerMode)) { |
| 2681 | highestPowerTrackingOptions = it->second; |
| 2682 | } |
| 2683 | } |
| 2684 | |
| 2685 | highestPowerTrackingOptions.setLocationOptions(smallestIntervalOptions); |
| 2686 | // want to run SPE session at a fixed min interval in some automotive scenarios |
| 2687 | if(!checkAndSetSPEToRunforNHz(highestPowerTrackingOptions)) { |
| 2688 | mLocApi->startTimeBasedTracking(highestPowerTrackingOptions, nullptr); |
| 2689 | } |
| 2690 | } |
| 2691 | } |
| 2692 | |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 2693 | void |
| 2694 | GnssAdapter::notifyClientOfCachedLocationSystemInfo( |
| 2695 | LocationAPI* client, const LocationCallbacks& callbacks) { |
| 2696 | |
| 2697 | if (mLocSystemInfo.systemInfoMask) { |
| 2698 | // client need to be notified if client has not yet previously registered |
| 2699 | // for the info but now register for it. |
| 2700 | bool notifyClientOfSystemInfo = false; |
| 2701 | // check whether we need to notify client of cached location system info |
| 2702 | // |
| 2703 | // client need to be notified if client has not yet previously registered |
| 2704 | // for the info but now register for it. |
| 2705 | if (callbacks.locationSystemInfoCb) { |
| 2706 | notifyClientOfSystemInfo = true; |
| 2707 | auto it = mClientData.find(client); |
| 2708 | if (it != mClientData.end()) { |
| 2709 | LocationCallbacks oldCallbacks = it->second; |
| 2710 | if (oldCallbacks.locationSystemInfoCb) { |
| 2711 | notifyClientOfSystemInfo = false; |
| 2712 | } |
| 2713 | } |
| 2714 | } |
| 2715 | |
| 2716 | if (notifyClientOfSystemInfo) { |
| 2717 | callbacks.locationSystemInfoCb(mLocSystemInfo); |
| 2718 | } |
| 2719 | } |
| 2720 | } |
| 2721 | |
| 2722 | bool |
| 2723 | GnssAdapter::isTimeBasedTrackingSession(LocationAPI* client, uint32_t sessionId) |
| 2724 | { |
| 2725 | LocationSessionKey key(client, sessionId); |
| 2726 | return (mTimeBasedTrackingSessions.find(key) != mTimeBasedTrackingSessions.end()); |
| 2727 | } |
| 2728 | |
| 2729 | bool |
| 2730 | GnssAdapter::isDistanceBasedTrackingSession(LocationAPI* client, uint32_t sessionId) |
| 2731 | { |
| 2732 | LocationSessionKey key(client, sessionId); |
| 2733 | return (mDistanceBasedTrackingSessions.find(key) != mDistanceBasedTrackingSessions.end()); |
| 2734 | } |
| 2735 | |
| 2736 | bool |
| 2737 | GnssAdapter::hasCallbacksToStartTracking(LocationAPI* client) |
| 2738 | { |
| 2739 | bool allowed = false; |
| 2740 | auto it = mClientData.find(client); |
| 2741 | if (it != mClientData.end()) { |
| 2742 | if (it->second.trackingCb || it->second.gnssLocationInfoCb || |
| 2743 | it->second.engineLocationsInfoCb || it->second.gnssMeasurementsCb || |
| 2744 | it->second.gnssDataCb || it->second.gnssSvCb || it->second.gnssNmeaCb) { |
| 2745 | allowed = true; |
| 2746 | } else { |
| 2747 | LOC_LOGi("missing right callback to start tracking") |
| 2748 | } |
| 2749 | } else { |
| 2750 | LOC_LOGi("client %p not found", client) |
| 2751 | } |
| 2752 | return allowed; |
| 2753 | } |
| 2754 | |
| 2755 | bool |
| 2756 | GnssAdapter::isTrackingSession(LocationAPI* client, uint32_t sessionId) |
| 2757 | { |
| 2758 | LocationSessionKey key(client, sessionId); |
| 2759 | return (mTimeBasedTrackingSessions.find(key) != mTimeBasedTrackingSessions.end()); |
| 2760 | } |
| 2761 | |
| 2762 | void |
| 2763 | GnssAdapter::reportPowerStateIfChanged() |
| 2764 | { |
| 2765 | bool newPowerOn = !mTimeBasedTrackingSessions.empty() || |
| 2766 | !mDistanceBasedTrackingSessions.empty(); |
| 2767 | if (newPowerOn != mPowerOn) { |
| 2768 | mPowerOn = newPowerOn; |
| 2769 | if (mPowerStateCb != nullptr) { |
| 2770 | mPowerStateCb(mPowerOn); |
| 2771 | } |
| 2772 | } |
| 2773 | } |
| 2774 | |
| 2775 | void |
| 2776 | GnssAdapter::getPowerStateChangesCommand(std::function<void(bool)> powerStateCb) |
| 2777 | { |
| 2778 | LOC_LOGD("%s]: ", __func__); |
| 2779 | |
| 2780 | struct MsgReportLocation : public LocMsg { |
| 2781 | GnssAdapter& mAdapter; |
| 2782 | std::function<void(bool)> mPowerStateCb; |
| 2783 | inline MsgReportLocation(GnssAdapter& adapter, |
| 2784 | std::function<void(bool)> powerStateCb) : |
| 2785 | LocMsg(), |
| 2786 | mAdapter(adapter), |
| 2787 | mPowerStateCb(powerStateCb) {} |
| 2788 | inline virtual void proc() const { |
| 2789 | mAdapter.savePowerStateCallback(mPowerStateCb); |
| 2790 | mPowerStateCb(mAdapter.getPowerState()); |
| 2791 | } |
| 2792 | }; |
| 2793 | |
| 2794 | sendMsg(new MsgReportLocation(*this, powerStateCb)); |
| 2795 | } |
| 2796 | |
| 2797 | void |
| 2798 | GnssAdapter::saveTrackingSession(LocationAPI* client, uint32_t sessionId, |
| 2799 | const TrackingOptions& options) |
| 2800 | { |
| 2801 | LocationSessionKey key(client, sessionId); |
| 2802 | if ((options.minDistance > 0) && |
| 2803 | ContextBase::isMessageSupported(LOC_API_ADAPTER_MESSAGE_DISTANCE_BASE_TRACKING)) { |
| 2804 | mDistanceBasedTrackingSessions[key] = options; |
| 2805 | } else { |
| 2806 | mTimeBasedTrackingSessions[key] = options; |
| 2807 | } |
| 2808 | reportPowerStateIfChanged(); |
| 2809 | } |
| 2810 | |
| 2811 | void |
| 2812 | GnssAdapter::eraseTrackingSession(LocationAPI* client, uint32_t sessionId) |
| 2813 | { |
| 2814 | LocationSessionKey key(client, sessionId); |
| 2815 | auto it = mTimeBasedTrackingSessions.find(key); |
| 2816 | if (it != mTimeBasedTrackingSessions.end()) { |
| 2817 | mTimeBasedTrackingSessions.erase(it); |
| 2818 | } else { |
| 2819 | auto itr = mDistanceBasedTrackingSessions.find(key); |
| 2820 | if (itr != mDistanceBasedTrackingSessions.end()) { |
| 2821 | mDistanceBasedTrackingSessions.erase(itr); |
| 2822 | } |
| 2823 | } |
| 2824 | reportPowerStateIfChanged(); |
| 2825 | } |
| 2826 | |
| 2827 | bool GnssAdapter::setLocPositionMode(const LocPosMode& mode) { |
| 2828 | if (!mLocPositionMode.equals(mode)) { |
| 2829 | mLocPositionMode = mode; |
| 2830 | return true; |
| 2831 | } else { |
| 2832 | return false; |
| 2833 | } |
| 2834 | } |
| 2835 | |
| 2836 | void |
| 2837 | GnssAdapter::reportResponse(LocationAPI* client, LocationError err, uint32_t sessionId) |
| 2838 | { |
| 2839 | LOC_LOGD("%s]: client %p id %u err %u", __func__, client, sessionId, err); |
| 2840 | |
| 2841 | auto it = mClientData.find(client); |
| 2842 | if (it != mClientData.end() && it->second.responseCb != nullptr) { |
| 2843 | it->second.responseCb(err, sessionId); |
| 2844 | } else { |
| 2845 | LOC_LOGW("%s]: client %p id %u not found in data", __func__, client, sessionId); |
| 2846 | } |
| 2847 | } |
| 2848 | |
| 2849 | void |
| 2850 | GnssAdapter::reportResponse(LocationError err, uint32_t sessionId) |
| 2851 | { |
| 2852 | LOC_LOGD("%s]: id %u err %u", __func__, sessionId, err); |
| 2853 | |
| 2854 | if (mControlCallbacks.size > 0 && mControlCallbacks.responseCb != nullptr) { |
| 2855 | mControlCallbacks.responseCb(err, sessionId); |
| 2856 | } else { |
| 2857 | LOC_LOGW("%s]: control client response callback not found", __func__); |
| 2858 | } |
| 2859 | } |
| 2860 | |
| 2861 | void |
| 2862 | GnssAdapter::reportResponse(size_t count, LocationError* errs, uint32_t* ids) |
| 2863 | { |
| 2864 | IF_LOC_LOGD { |
| 2865 | std::string idsString = "["; |
| 2866 | std::string errsString = "["; |
| 2867 | if (NULL != ids && NULL != errs) { |
| 2868 | for (size_t i=0; i < count; ++i) { |
| 2869 | idsString += std::to_string(ids[i]) + " "; |
| 2870 | errsString += std::to_string(errs[i]) + " "; |
| 2871 | } |
| 2872 | } |
| 2873 | idsString += "]"; |
| 2874 | errsString += "]"; |
| 2875 | |
| 2876 | LOC_LOGD("%s]: ids %s errs %s", |
| 2877 | __func__, idsString.c_str(), errsString.c_str()); |
| 2878 | } |
| 2879 | |
| 2880 | if (mControlCallbacks.size > 0 && mControlCallbacks.collectiveResponseCb != nullptr) { |
| 2881 | mControlCallbacks.collectiveResponseCb(count, errs, ids); |
| 2882 | } else { |
| 2883 | LOC_LOGW("%s]: control client callback not found", __func__); |
| 2884 | } |
| 2885 | } |
| 2886 | |
| 2887 | uint32_t |
| 2888 | GnssAdapter::startTrackingCommand(LocationAPI* client, TrackingOptions& options) |
| 2889 | { |
| 2890 | uint32_t sessionId = generateSessionId(); |
| 2891 | LOC_LOGD("%s]: client %p id %u minInterval %u minDistance %u mode %u powermode %u tbm %u", |
| 2892 | __func__, client, sessionId, options.minInterval, options.minDistance, options.mode, |
| 2893 | options.powerMode, options.tbm); |
| 2894 | |
| 2895 | struct MsgStartTracking : public LocMsg { |
| 2896 | GnssAdapter& mAdapter; |
| 2897 | LocApiBase& mApi; |
| 2898 | LocationAPI* mClient; |
| 2899 | uint32_t mSessionId; |
| 2900 | mutable TrackingOptions mOptions; |
| 2901 | inline MsgStartTracking(GnssAdapter& adapter, |
| 2902 | LocApiBase& api, |
| 2903 | LocationAPI* client, |
| 2904 | uint32_t sessionId, |
| 2905 | TrackingOptions options) : |
| 2906 | LocMsg(), |
| 2907 | mAdapter(adapter), |
| 2908 | mApi(api), |
| 2909 | mClient(client), |
| 2910 | mSessionId(sessionId), |
| 2911 | mOptions(options) {} |
| 2912 | inline virtual void proc() const { |
| 2913 | // distance based tracking will need to know engine capabilities before it can start |
| 2914 | if (!mAdapter.isEngineCapabilitiesKnown() && mOptions.minDistance > 0) { |
| 2915 | mAdapter.mPendingMsgs.push_back(new MsgStartTracking(*this)); |
| 2916 | return; |
| 2917 | } |
| 2918 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 2919 | if (!mAdapter.hasCallbacksToStartTracking(mClient)) { |
| 2920 | err = LOCATION_ERROR_CALLBACK_MISSING; |
| 2921 | } else if (0 == mOptions.size) { |
| 2922 | err = LOCATION_ERROR_INVALID_PARAMETER; |
| 2923 | } else { |
| 2924 | if (mOptions.minInterval < MIN_TRACKING_INTERVAL) { |
| 2925 | mOptions.minInterval = MIN_TRACKING_INTERVAL; |
| 2926 | } |
| 2927 | if (mOptions.minDistance > 0 && |
| 2928 | ContextBase::isMessageSupported( |
| 2929 | LOC_API_ADAPTER_MESSAGE_DISTANCE_BASE_TRACKING)) { |
| 2930 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 2931 | mApi.startDistanceBasedTracking(mSessionId, mOptions, |
| 2932 | new LocApiResponse(*mAdapter.getContext(), |
| 2933 | [&mAdapter = mAdapter, mSessionId = mSessionId, mClient = mClient] |
| 2934 | (LocationError err) { |
| 2935 | if (LOCATION_ERROR_SUCCESS != err) { |
| 2936 | mAdapter.eraseTrackingSession(mClient, mSessionId); |
| 2937 | } |
| 2938 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 2939 | })); |
| 2940 | } else { |
| 2941 | if (GNSS_POWER_MODE_M4 == mOptions.powerMode && |
| 2942 | mOptions.tbm > TRACKING_TBM_THRESHOLD_MILLIS) { |
| 2943 | LOC_LOGd("TBM (%d) > %d Falling back to M2 power mode", |
| 2944 | mOptions.tbm, TRACKING_TBM_THRESHOLD_MILLIS); |
| 2945 | mOptions.powerMode = GNSS_POWER_MODE_M2; |
| 2946 | } |
| 2947 | // Api doesn't support multiple clients for time based tracking, so mutiplex |
| 2948 | bool reportToClientWithNoWait = |
| 2949 | mAdapter.startTimeBasedTrackingMultiplex(mClient, mSessionId, mOptions); |
| 2950 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 2951 | |
| 2952 | if (reportToClientWithNoWait) { |
| 2953 | mAdapter.reportResponse(mClient, LOCATION_ERROR_SUCCESS, mSessionId); |
| 2954 | } |
| 2955 | } |
| 2956 | } |
| 2957 | } |
| 2958 | }; |
| 2959 | |
| 2960 | sendMsg(new MsgStartTracking(*this, *mLocApi, client, sessionId, options)); |
| 2961 | return sessionId; |
| 2962 | |
| 2963 | } |
| 2964 | |
| 2965 | bool |
| 2966 | GnssAdapter::startTimeBasedTrackingMultiplex(LocationAPI* client, uint32_t sessionId, |
| 2967 | const TrackingOptions& options) |
| 2968 | { |
| 2969 | bool reportToClientWithNoWait = true; |
| 2970 | |
| 2971 | if (mTimeBasedTrackingSessions.empty()) { |
| 2972 | /*Reset previous NMEA reported time stamp */ |
| 2973 | mPrevNmeaRptTimeNsec = 0; |
| 2974 | startTimeBasedTracking(client, sessionId, options); |
| 2975 | // need to wait for QMI callback |
| 2976 | reportToClientWithNoWait = false; |
| 2977 | } else { |
| 2978 | // find the smallest interval and powerMode |
| 2979 | TrackingOptions multiplexedOptions = {}; // size is 0 until set for the first time |
| 2980 | GnssPowerMode multiplexedPowerMode = GNSS_POWER_MODE_INVALID; |
| 2981 | memset(&multiplexedOptions, 0, sizeof(multiplexedOptions)); |
| 2982 | for (auto it = mTimeBasedTrackingSessions.begin(); it != mTimeBasedTrackingSessions.end(); ++it) { |
| 2983 | // if not set or there is a new smallest interval, then set the new interval |
| 2984 | if (0 == multiplexedOptions.size || |
| 2985 | it->second.minInterval < multiplexedOptions.minInterval) { |
| 2986 | multiplexedOptions = it->second; |
| 2987 | } |
| 2988 | // if session is not the one we are updating and either powerMode |
| 2989 | // is not set or there is a new smallest powerMode, then set the new powerMode |
| 2990 | if (GNSS_POWER_MODE_INVALID == multiplexedPowerMode || |
| 2991 | it->second.powerMode < multiplexedPowerMode) { |
| 2992 | multiplexedPowerMode = it->second.powerMode; |
| 2993 | } |
| 2994 | } |
| 2995 | bool updateOptions = false; |
| 2996 | // if session we are starting has smaller interval then next smallest |
| 2997 | if (options.minInterval < multiplexedOptions.minInterval) { |
| 2998 | multiplexedOptions.minInterval = options.minInterval; |
| 2999 | updateOptions = true; |
| 3000 | } |
| 3001 | |
| 3002 | // if session we are starting has smaller powerMode then next smallest |
| 3003 | if (options.powerMode < multiplexedPowerMode) { |
| 3004 | multiplexedOptions.powerMode = options.powerMode; |
| 3005 | updateOptions = true; |
| 3006 | } |
| 3007 | if (updateOptions) { |
| 3008 | // restart time based tracking with the newly updated options |
| 3009 | |
| 3010 | startTimeBasedTracking(client, sessionId, multiplexedOptions); |
| 3011 | // need to wait for QMI callback |
| 3012 | reportToClientWithNoWait = false; |
| 3013 | } |
| 3014 | // else part: no QMI call is made, need to report back to client right away |
| 3015 | } |
| 3016 | |
| 3017 | return reportToClientWithNoWait; |
| 3018 | } |
| 3019 | |
| 3020 | void |
| 3021 | GnssAdapter::startTimeBasedTracking(LocationAPI* client, uint32_t sessionId, |
| 3022 | const TrackingOptions& trackingOptions) |
| 3023 | { |
| 3024 | LOC_LOGd("minInterval %u minDistance %u mode %u powermode %u tbm %u", |
| 3025 | trackingOptions.minInterval, trackingOptions.minDistance, |
| 3026 | trackingOptions.mode, trackingOptions.powerMode, trackingOptions.tbm); |
| 3027 | LocPosMode locPosMode = {}; |
| 3028 | convertOptions(locPosMode, trackingOptions); |
| 3029 | // save position mode parameters |
| 3030 | setLocPositionMode(locPosMode); |
| 3031 | // inform engine hub that GNSS session is about to start |
| 3032 | mEngHubProxy->gnssSetFixMode(mLocPositionMode); |
| 3033 | mEngHubProxy->gnssStartFix(); |
| 3034 | |
| 3035 | // want to run SPE session at a fixed min interval in some automotive scenarios |
| 3036 | // use a local copy of TrackingOptions as the TBF may get modified in the |
| 3037 | // checkAndSetSPEToRunforNHz function |
| 3038 | TrackingOptions tempOptions(trackingOptions); |
| 3039 | if (!checkAndSetSPEToRunforNHz(tempOptions)) { |
| 3040 | mLocApi->startTimeBasedTracking(tempOptions, new LocApiResponse(*getContext(), |
| 3041 | [this, client, sessionId] (LocationError err) { |
| 3042 | if (LOCATION_ERROR_SUCCESS != err) { |
| 3043 | eraseTrackingSession(client, sessionId); |
| 3044 | } else { |
| 3045 | checkUpdateDgnssNtrip(false); |
| 3046 | } |
| 3047 | |
| 3048 | reportResponse(client, err, sessionId); |
| 3049 | } |
| 3050 | )); |
| 3051 | } else { |
| 3052 | reportResponse(client, LOCATION_ERROR_SUCCESS, sessionId); |
| 3053 | } |
| 3054 | |
| 3055 | } |
| 3056 | |
| 3057 | void |
| 3058 | GnssAdapter::updateTracking(LocationAPI* client, uint32_t sessionId, |
| 3059 | const TrackingOptions& updatedOptions, const TrackingOptions& oldOptions) |
| 3060 | { |
| 3061 | LocPosMode locPosMode = {}; |
| 3062 | convertOptions(locPosMode, updatedOptions); |
| 3063 | // save position mode parameters |
| 3064 | setLocPositionMode(locPosMode); |
| 3065 | |
| 3066 | // inform engine hub that GNSS session is about to start |
| 3067 | mEngHubProxy->gnssSetFixMode(mLocPositionMode); |
| 3068 | mEngHubProxy->gnssStartFix(); |
| 3069 | |
| 3070 | // want to run SPE session at a fixed min interval in some automotive scenarios |
| 3071 | // use a local copy of TrackingOptions as the TBF may get modified in the |
| 3072 | // checkAndSetSPEToRunforNHz function |
| 3073 | TrackingOptions tempOptions(updatedOptions); |
| 3074 | if(!checkAndSetSPEToRunforNHz(tempOptions)) { |
| 3075 | mLocApi->startTimeBasedTracking(tempOptions, new LocApiResponse(*getContext(), |
| 3076 | [this, client, sessionId, oldOptions] (LocationError err) { |
| 3077 | if (LOCATION_ERROR_SUCCESS != err) { |
| 3078 | // restore the old LocationOptions |
| 3079 | saveTrackingSession(client, sessionId, oldOptions); |
| 3080 | } |
| 3081 | reportResponse(client, err, sessionId); |
| 3082 | } |
| 3083 | )); |
| 3084 | } else { |
| 3085 | reportResponse(client, LOCATION_ERROR_SUCCESS, sessionId); |
| 3086 | } |
| 3087 | } |
| 3088 | |
| 3089 | void |
| 3090 | GnssAdapter::updateTrackingOptionsCommand(LocationAPI* client, uint32_t id, |
| 3091 | TrackingOptions& options) |
| 3092 | { |
| 3093 | LOC_LOGD("%s]: client %p id %u minInterval %u mode %u", |
| 3094 | __func__, client, id, options.minInterval, options.mode); |
| 3095 | |
| 3096 | struct MsgUpdateTracking : public LocMsg { |
| 3097 | GnssAdapter& mAdapter; |
| 3098 | LocApiBase& mApi; |
| 3099 | LocationAPI* mClient; |
| 3100 | uint32_t mSessionId; |
| 3101 | mutable TrackingOptions mOptions; |
| 3102 | inline MsgUpdateTracking(GnssAdapter& adapter, |
| 3103 | LocApiBase& api, |
| 3104 | LocationAPI* client, |
| 3105 | uint32_t sessionId, |
| 3106 | TrackingOptions options) : |
| 3107 | LocMsg(), |
| 3108 | mAdapter(adapter), |
| 3109 | mApi(api), |
| 3110 | mClient(client), |
| 3111 | mSessionId(sessionId), |
| 3112 | mOptions(options) {} |
| 3113 | inline virtual void proc() const { |
| 3114 | // distance based tracking will need to know engine capabilities before it can start |
| 3115 | if (!mAdapter.isEngineCapabilitiesKnown() && mOptions.minDistance > 0) { |
| 3116 | mAdapter.mPendingMsgs.push_back(new MsgUpdateTracking(*this)); |
| 3117 | return; |
| 3118 | } |
| 3119 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 3120 | bool isTimeBased = mAdapter.isTimeBasedTrackingSession(mClient, mSessionId); |
| 3121 | bool isDistanceBased = mAdapter.isDistanceBasedTrackingSession(mClient, mSessionId); |
| 3122 | if (!isTimeBased && !isDistanceBased) { |
| 3123 | err = LOCATION_ERROR_ID_UNKNOWN; |
| 3124 | } else if (0 == mOptions.size) { |
| 3125 | err = LOCATION_ERROR_INVALID_PARAMETER; |
| 3126 | } |
| 3127 | if (LOCATION_ERROR_SUCCESS != err) { |
| 3128 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 3129 | } else { |
| 3130 | if (GNSS_POWER_MODE_M4 == mOptions.powerMode && |
| 3131 | mOptions.tbm > TRACKING_TBM_THRESHOLD_MILLIS) { |
| 3132 | LOC_LOGd("TBM (%d) > %d Falling back to M2 power mode", |
| 3133 | mOptions.tbm, TRACKING_TBM_THRESHOLD_MILLIS); |
| 3134 | mOptions.powerMode = GNSS_POWER_MODE_M2; |
| 3135 | } |
| 3136 | if (mOptions.minInterval < MIN_TRACKING_INTERVAL) { |
| 3137 | mOptions.minInterval = MIN_TRACKING_INTERVAL; |
| 3138 | } |
| 3139 | // Now update session as required |
| 3140 | if (isTimeBased && mOptions.minDistance > 0) { |
| 3141 | // switch from time based to distance based |
| 3142 | // Api doesn't support multiple clients for time based tracking, so mutiplex |
| 3143 | bool reportToClientWithNoWait = |
| 3144 | mAdapter.stopTimeBasedTrackingMultiplex(mClient, mSessionId); |
| 3145 | // erases the time based Session |
| 3146 | mAdapter.eraseTrackingSession(mClient, mSessionId); |
| 3147 | if (reportToClientWithNoWait) { |
| 3148 | mAdapter.reportResponse(mClient, LOCATION_ERROR_SUCCESS, mSessionId); |
| 3149 | } |
| 3150 | // saves as distance based Session |
| 3151 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 3152 | mApi.startDistanceBasedTracking(mSessionId, mOptions, |
| 3153 | new LocApiResponse(*mAdapter.getContext(), |
| 3154 | [] (LocationError /*err*/) {})); |
| 3155 | } else if (isDistanceBased && mOptions.minDistance == 0) { |
| 3156 | // switch from distance based to time based |
| 3157 | mAdapter.eraseTrackingSession(mClient, mSessionId); |
| 3158 | mApi.stopDistanceBasedTracking(mSessionId, new LocApiResponse( |
| 3159 | *mAdapter.getContext(), |
| 3160 | [&mAdapter = mAdapter, mSessionId = mSessionId, mOptions = mOptions, |
| 3161 | mClient = mClient] (LocationError /*err*/) { |
| 3162 | // Api doesn't support multiple clients for time based tracking, |
| 3163 | // so mutiplex |
| 3164 | bool reportToClientWithNoWait = |
| 3165 | mAdapter.startTimeBasedTrackingMultiplex(mClient, mSessionId, |
| 3166 | mOptions); |
| 3167 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 3168 | |
| 3169 | if (reportToClientWithNoWait) { |
| 3170 | mAdapter.reportResponse(mClient, LOCATION_ERROR_SUCCESS, mSessionId); |
| 3171 | } |
| 3172 | })); |
| 3173 | } else if (isTimeBased) { |
| 3174 | // update time based tracking |
| 3175 | // Api doesn't support multiple clients for time based tracking, so mutiplex |
| 3176 | bool reportToClientWithNoWait = |
| 3177 | mAdapter.updateTrackingMultiplex(mClient, mSessionId, mOptions); |
| 3178 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 3179 | |
| 3180 | if (reportToClientWithNoWait) { |
| 3181 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 3182 | } |
| 3183 | } else if (isDistanceBased) { |
| 3184 | // restart distance based tracking |
| 3185 | mApi.stopDistanceBasedTracking(mSessionId, new LocApiResponse( |
| 3186 | *mAdapter.getContext(), |
| 3187 | [&mAdapter = mAdapter, mSessionId = mSessionId, mOptions = mOptions, |
| 3188 | mClient = mClient, &mApi = mApi] (LocationError err) { |
| 3189 | if (LOCATION_ERROR_SUCCESS == err) { |
| 3190 | mApi.startDistanceBasedTracking(mSessionId, mOptions, |
| 3191 | new LocApiResponse(*mAdapter.getContext(), |
| 3192 | [&mAdapter, mClient, mSessionId, mOptions] |
| 3193 | (LocationError err) { |
| 3194 | if (LOCATION_ERROR_SUCCESS == err) { |
| 3195 | mAdapter.saveTrackingSession(mClient, mSessionId, mOptions); |
| 3196 | } |
| 3197 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 3198 | })); |
| 3199 | } |
| 3200 | })); |
| 3201 | } |
| 3202 | } |
| 3203 | } |
| 3204 | }; |
| 3205 | |
| 3206 | sendMsg(new MsgUpdateTracking(*this, *mLocApi, client, id, options)); |
| 3207 | } |
| 3208 | |
| 3209 | bool |
| 3210 | GnssAdapter::updateTrackingMultiplex(LocationAPI* client, uint32_t id, |
| 3211 | const TrackingOptions& trackingOptions) |
| 3212 | { |
| 3213 | bool reportToClientWithNoWait = true; |
| 3214 | |
| 3215 | LocationSessionKey key(client, id); |
| 3216 | // get the session we are updating |
| 3217 | auto it = mTimeBasedTrackingSessions.find(key); |
| 3218 | |
| 3219 | // cache the clients existing LocationOptions |
| 3220 | TrackingOptions oldOptions = it->second; |
| 3221 | |
| 3222 | // if session we are updating exists and the minInterval or powerMode has changed |
| 3223 | if (it != mTimeBasedTrackingSessions.end() && |
| 3224 | (it->second.minInterval != trackingOptions.minInterval || |
| 3225 | it->second.powerMode != trackingOptions.powerMode)) { |
| 3226 | // find the smallest interval and powerMode, other than the session we are updating |
| 3227 | TrackingOptions multiplexedOptions = {}; // size is 0 until set for the first time |
| 3228 | GnssPowerMode multiplexedPowerMode = GNSS_POWER_MODE_INVALID; |
| 3229 | memset(&multiplexedOptions, 0, sizeof(multiplexedOptions)); |
| 3230 | for (auto it2 = mTimeBasedTrackingSessions.begin(); |
| 3231 | it2 != mTimeBasedTrackingSessions.end(); ++it2) { |
| 3232 | // if session is not the one we are updating and either interval |
| 3233 | // is not set or there is a new smallest interval, then set the new interval |
| 3234 | if (it2->first != key && (0 == multiplexedOptions.size || |
| 3235 | it2->second.minInterval < multiplexedOptions.minInterval)) { |
| 3236 | multiplexedOptions = it2->second; |
| 3237 | } |
| 3238 | // if session is not the one we are updating and either powerMode |
| 3239 | // is not set or there is a new smallest powerMode, then set the new powerMode |
| 3240 | if (it2->first != key && (GNSS_POWER_MODE_INVALID == multiplexedPowerMode || |
| 3241 | it2->second.powerMode < multiplexedPowerMode)) { |
| 3242 | multiplexedPowerMode = it2->second.powerMode; |
| 3243 | } |
| 3244 | // else part: no QMI call is made, need to report back to client right away |
| 3245 | } |
| 3246 | bool updateOptions = false; |
| 3247 | // if session we are updating has smaller interval then next smallest |
| 3248 | if (trackingOptions.minInterval < multiplexedOptions.minInterval) { |
| 3249 | multiplexedOptions.minInterval = trackingOptions.minInterval; |
| 3250 | updateOptions = true; |
| 3251 | } |
| 3252 | // if session we are updating has smaller powerMode then next smallest |
| 3253 | if (trackingOptions.powerMode < multiplexedPowerMode) { |
| 3254 | multiplexedOptions.powerMode = trackingOptions.powerMode; |
| 3255 | updateOptions = true; |
| 3256 | } |
| 3257 | // if only one session exists, then tracking should be updated with it |
| 3258 | if (1 == mTimeBasedTrackingSessions.size()) { |
| 3259 | multiplexedOptions = trackingOptions; |
| 3260 | updateOptions = true; |
| 3261 | } |
| 3262 | if (updateOptions) { |
| 3263 | // restart time based tracking with the newly updated options |
| 3264 | updateTracking(client, id, multiplexedOptions, oldOptions); |
| 3265 | // need to wait for QMI callback |
| 3266 | reportToClientWithNoWait = false; |
| 3267 | } |
| 3268 | } |
| 3269 | |
| 3270 | return reportToClientWithNoWait; |
| 3271 | } |
| 3272 | |
| 3273 | void |
| 3274 | GnssAdapter::stopTrackingCommand(LocationAPI* client, uint32_t id) |
| 3275 | { |
| 3276 | LOC_LOGD("%s]: client %p id %u", __func__, client, id); |
| 3277 | |
| 3278 | struct MsgStopTracking : public LocMsg { |
| 3279 | GnssAdapter& mAdapter; |
| 3280 | LocApiBase& mApi; |
| 3281 | LocationAPI* mClient; |
| 3282 | uint32_t mSessionId; |
| 3283 | inline MsgStopTracking(GnssAdapter& adapter, |
| 3284 | LocApiBase& api, |
| 3285 | LocationAPI* client, |
| 3286 | uint32_t sessionId) : |
| 3287 | LocMsg(), |
| 3288 | mAdapter(adapter), |
| 3289 | mApi(api), |
| 3290 | mClient(client), |
| 3291 | mSessionId(sessionId) {} |
| 3292 | inline virtual void proc() const { |
| 3293 | bool isTimeBased = mAdapter.isTimeBasedTrackingSession(mClient, mSessionId); |
| 3294 | bool isDistanceBased = mAdapter.isDistanceBasedTrackingSession(mClient, mSessionId); |
| 3295 | if (isTimeBased || isDistanceBased) { |
| 3296 | if (isTimeBased) { |
| 3297 | // Api doesn't support multiple clients for time based tracking, so mutiplex |
| 3298 | bool reportToClientWithNoWait = |
| 3299 | mAdapter.stopTimeBasedTrackingMultiplex(mClient, mSessionId); |
| 3300 | mAdapter.eraseTrackingSession(mClient, mSessionId); |
| 3301 | |
| 3302 | if (reportToClientWithNoWait) { |
| 3303 | mAdapter.reportResponse(mClient, LOCATION_ERROR_SUCCESS, mSessionId); |
| 3304 | } |
| 3305 | } else if (isDistanceBased) { |
| 3306 | mApi.stopDistanceBasedTracking(mSessionId, new LocApiResponse( |
| 3307 | *mAdapter.getContext(), |
| 3308 | [&mAdapter = mAdapter, mSessionId = mSessionId, mClient = mClient] |
| 3309 | (LocationError err) { |
| 3310 | if (LOCATION_ERROR_SUCCESS == err) { |
| 3311 | mAdapter.eraseTrackingSession(mClient, mSessionId); |
| 3312 | } |
| 3313 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 3314 | })); |
| 3315 | } |
| 3316 | } else { |
| 3317 | mAdapter.reportResponse(mClient, LOCATION_ERROR_ID_UNKNOWN, mSessionId); |
| 3318 | } |
| 3319 | |
| 3320 | } |
| 3321 | }; |
| 3322 | |
| 3323 | sendMsg(new MsgStopTracking(*this, *mLocApi, client, id)); |
| 3324 | } |
| 3325 | |
| 3326 | bool |
| 3327 | GnssAdapter::stopTimeBasedTrackingMultiplex(LocationAPI* client, uint32_t id) |
| 3328 | { |
| 3329 | bool reportToClientWithNoWait = true; |
| 3330 | |
| 3331 | if (1 == mTimeBasedTrackingSessions.size()) { |
| 3332 | stopTracking(client, id); |
| 3333 | // need to wait for QMI callback |
| 3334 | reportToClientWithNoWait = false; |
| 3335 | } else { |
| 3336 | LocationSessionKey key(client, id); |
| 3337 | |
| 3338 | // get the session we are stopping |
| 3339 | auto it = mTimeBasedTrackingSessions.find(key); |
| 3340 | if (it != mTimeBasedTrackingSessions.end()) { |
| 3341 | // find the smallest interval and powerMode, other than the session we are stopping |
| 3342 | TrackingOptions multiplexedOptions = {}; // size is 0 until set for the first time |
| 3343 | GnssPowerMode multiplexedPowerMode = GNSS_POWER_MODE_INVALID; |
| 3344 | memset(&multiplexedOptions, 0, sizeof(multiplexedOptions)); |
| 3345 | for (auto it2 = mTimeBasedTrackingSessions.begin(); |
| 3346 | it2 != mTimeBasedTrackingSessions.end(); ++it2) { |
| 3347 | // if session is not the one we are stopping and either interval |
| 3348 | // is not set or there is a new smallest interval, then set the new interval |
| 3349 | if (it2->first != key && (0 == multiplexedOptions.size || |
| 3350 | it2->second.minInterval < multiplexedOptions.minInterval)) { |
| 3351 | multiplexedOptions = it2->second; |
| 3352 | } |
| 3353 | // if session is not the one we are stopping and either powerMode |
| 3354 | // is not set or there is a new smallest powerMode, then set the new powerMode |
| 3355 | if (it2->first != key && (GNSS_POWER_MODE_INVALID == multiplexedPowerMode || |
| 3356 | it2->second.powerMode < multiplexedPowerMode)) { |
| 3357 | multiplexedPowerMode = it2->second.powerMode; |
| 3358 | } |
| 3359 | } |
| 3360 | // if session we are stopping has smaller interval then next smallest or |
| 3361 | // if session we are stopping has smaller powerMode then next smallest |
| 3362 | if (it->second.minInterval < multiplexedOptions.minInterval || |
| 3363 | it->second.powerMode < multiplexedPowerMode) { |
| 3364 | multiplexedOptions.powerMode = multiplexedPowerMode; |
| 3365 | // restart time based tracking with the newly updated options |
| 3366 | startTimeBasedTracking(client, id, multiplexedOptions); |
| 3367 | // need to wait for QMI callback |
| 3368 | reportToClientWithNoWait = false; |
| 3369 | } |
| 3370 | // else part: no QMI call is made, need to report back to client right away |
| 3371 | } |
| 3372 | } |
| 3373 | return reportToClientWithNoWait; |
| 3374 | } |
| 3375 | |
| 3376 | void |
| 3377 | GnssAdapter::stopTracking(LocationAPI* client, uint32_t id) |
| 3378 | { |
| 3379 | // inform engine hub that GNSS session has stopped |
| 3380 | mEngHubProxy->gnssStopFix(); |
| 3381 | |
| 3382 | mLocApi->stopFix(new LocApiResponse(*getContext(), |
| 3383 | [this, client, id] (LocationError err) { |
| 3384 | reportResponse(client, err, id); |
| 3385 | })); |
| 3386 | |
| 3387 | if (isDgnssNmeaRequired()) { |
| 3388 | mDgnssState &= ~DGNSS_STATE_NO_NMEA_PENDING; |
| 3389 | } |
| 3390 | stopDgnssNtrip(); |
| 3391 | |
| 3392 | mSPEAlreadyRunningAtHighestInterval = false; |
| 3393 | } |
| 3394 | |
| 3395 | bool |
| 3396 | GnssAdapter::hasNiNotifyCallback(LocationAPI* client) |
| 3397 | { |
| 3398 | auto it = mClientData.find(client); |
| 3399 | return (it != mClientData.end() && it->second.gnssNiCb); |
| 3400 | } |
| 3401 | |
| 3402 | void |
| 3403 | GnssAdapter::gnssNiResponseCommand(LocationAPI* client, |
| 3404 | uint32_t id, |
| 3405 | GnssNiResponse response) |
| 3406 | { |
| 3407 | LOC_LOGD("%s]: client %p id %u response %u", __func__, client, id, response); |
| 3408 | |
| 3409 | struct MsgGnssNiResponse : public LocMsg { |
| 3410 | GnssAdapter& mAdapter; |
| 3411 | LocationAPI* mClient; |
| 3412 | uint32_t mSessionId; |
| 3413 | GnssNiResponse mResponse; |
| 3414 | inline MsgGnssNiResponse(GnssAdapter& adapter, |
| 3415 | LocationAPI* client, |
| 3416 | uint32_t sessionId, |
| 3417 | GnssNiResponse response) : |
| 3418 | LocMsg(), |
| 3419 | mAdapter(adapter), |
| 3420 | mClient(client), |
| 3421 | mSessionId(sessionId), |
| 3422 | mResponse(response) {} |
| 3423 | inline virtual void proc() const { |
| 3424 | NiData& niData = mAdapter.getNiData(); |
| 3425 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 3426 | if (!mAdapter.hasNiNotifyCallback(mClient)) { |
| 3427 | err = LOCATION_ERROR_ID_UNKNOWN; |
| 3428 | } else { |
| 3429 | NiSession* pSession = NULL; |
| 3430 | if (mSessionId == niData.sessionEs.reqID && |
| 3431 | NULL != niData.sessionEs.rawRequest) { |
| 3432 | pSession = &niData.sessionEs; |
| 3433 | // ignore any SUPL NI non-Es session if a SUPL NI ES is accepted |
| 3434 | if (mResponse == GNSS_NI_RESPONSE_ACCEPT && |
| 3435 | NULL != niData.session.rawRequest) { |
| 3436 | pthread_mutex_lock(&niData.session.tLock); |
| 3437 | niData.session.resp = GNSS_NI_RESPONSE_IGNORE; |
| 3438 | niData.session.respRecvd = true; |
| 3439 | pthread_cond_signal(&niData.session.tCond); |
| 3440 | pthread_mutex_unlock(&niData.session.tLock); |
| 3441 | } |
| 3442 | } else if (mSessionId == niData.session.reqID && |
| 3443 | NULL != niData.session.rawRequest) { |
| 3444 | pSession = &niData.session; |
| 3445 | } |
| 3446 | |
| 3447 | if (pSession) { |
| 3448 | LOC_LOGI("%s]: gnssNiResponseCommand: send user mResponse %u for id %u", |
| 3449 | __func__, mResponse, mSessionId); |
| 3450 | pthread_mutex_lock(&pSession->tLock); |
| 3451 | pSession->resp = mResponse; |
| 3452 | pSession->respRecvd = true; |
| 3453 | pthread_cond_signal(&pSession->tCond); |
| 3454 | pthread_mutex_unlock(&pSession->tLock); |
| 3455 | } else { |
| 3456 | err = LOCATION_ERROR_ID_UNKNOWN; |
| 3457 | LOC_LOGE("%s]: gnssNiResponseCommand: id %u not an active session", |
| 3458 | __func__, mSessionId); |
| 3459 | } |
| 3460 | } |
| 3461 | mAdapter.reportResponse(mClient, err, mSessionId); |
| 3462 | } |
| 3463 | }; |
| 3464 | |
| 3465 | sendMsg(new MsgGnssNiResponse(*this, client, id, response)); |
| 3466 | |
| 3467 | } |
| 3468 | |
| 3469 | void |
| 3470 | GnssAdapter::gnssNiResponseCommand(GnssNiResponse response, void* rawRequest) |
| 3471 | { |
| 3472 | LOC_LOGD("%s]: response %u", __func__, response); |
| 3473 | |
| 3474 | struct MsgGnssNiResponse : public LocMsg { |
| 3475 | GnssAdapter& mAdapter; |
| 3476 | LocApiBase& mApi; |
| 3477 | const GnssNiResponse mResponse; |
| 3478 | const void* mPayload; |
| 3479 | inline MsgGnssNiResponse(GnssAdapter& adapter, |
| 3480 | LocApiBase& api, |
| 3481 | const GnssNiResponse response, |
| 3482 | const void* rawRequest) : |
| 3483 | LocMsg(), |
| 3484 | mAdapter(adapter), |
| 3485 | mApi(api), |
| 3486 | mResponse(response), |
| 3487 | mPayload(rawRequest) {} |
| 3488 | inline virtual ~MsgGnssNiResponse() { |
| 3489 | } |
| 3490 | inline virtual void proc() const { |
| 3491 | mApi.informNiResponse(mResponse, mPayload); |
| 3492 | } |
| 3493 | }; |
| 3494 | |
| 3495 | sendMsg(new MsgGnssNiResponse(*this, *mLocApi, response, rawRequest)); |
| 3496 | |
| 3497 | } |
| 3498 | |
| 3499 | uint32_t |
| 3500 | GnssAdapter::enableCommand(LocationTechnologyType techType) |
| 3501 | { |
| 3502 | uint32_t sessionId = generateSessionId(); |
| 3503 | LOC_LOGD("%s]: id %u techType %u", __func__, sessionId, techType); |
| 3504 | |
| 3505 | struct MsgEnableGnss : public LocMsg { |
| 3506 | GnssAdapter& mAdapter; |
| 3507 | LocApiBase& mApi; |
| 3508 | ContextBase& mContext; |
| 3509 | uint32_t mSessionId; |
| 3510 | LocationTechnologyType mTechType; |
| 3511 | inline MsgEnableGnss(GnssAdapter& adapter, |
| 3512 | LocApiBase& api, |
| 3513 | ContextBase& context, |
| 3514 | uint32_t sessionId, |
| 3515 | LocationTechnologyType techType) : |
| 3516 | LocMsg(), |
| 3517 | mAdapter(adapter), |
| 3518 | mApi(api), |
| 3519 | mContext(context), |
| 3520 | mSessionId(sessionId), |
| 3521 | mTechType(techType) {} |
| 3522 | inline virtual void proc() const { |
| 3523 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 3524 | uint32_t afwControlId = mAdapter.getAfwControlId(); |
| 3525 | if (mTechType != LOCATION_TECHNOLOGY_TYPE_GNSS) { |
| 3526 | err = LOCATION_ERROR_INVALID_PARAMETER; |
| 3527 | } else if (afwControlId > 0) { |
| 3528 | err = LOCATION_ERROR_ALREADY_STARTED; |
| 3529 | } else { |
| 3530 | mContext.modemPowerVote(true); |
| 3531 | mAdapter.setAfwControlId(mSessionId); |
| 3532 | |
| 3533 | GnssConfigGpsLock gpsLock = GNSS_CONFIG_GPS_LOCK_NONE; |
| 3534 | if (mAdapter.mSupportNfwControl) { |
| 3535 | ContextBase::mGps_conf.GPS_LOCK &= GNSS_CONFIG_GPS_LOCK_NI; |
| 3536 | gpsLock = ContextBase::mGps_conf.GPS_LOCK; |
| 3537 | } |
| 3538 | mApi.sendMsg(new LocApiMsg([&mApi = mApi, gpsLock]() { |
| 3539 | mApi.setGpsLockSync(gpsLock); |
| 3540 | })); |
| 3541 | mAdapter.mXtraObserver.updateLockStatus(gpsLock); |
| 3542 | } |
| 3543 | mAdapter.reportResponse(err, mSessionId); |
| 3544 | } |
| 3545 | }; |
| 3546 | |
| 3547 | if (mContext != NULL) { |
| 3548 | sendMsg(new MsgEnableGnss(*this, *mLocApi, *mContext, sessionId, techType)); |
| 3549 | } else { |
| 3550 | LOC_LOGE("%s]: Context is NULL", __func__); |
| 3551 | } |
| 3552 | |
| 3553 | return sessionId; |
| 3554 | } |
| 3555 | |
| 3556 | void |
| 3557 | GnssAdapter::disableCommand(uint32_t id) |
| 3558 | { |
| 3559 | LOC_LOGD("%s]: id %u", __func__, id); |
| 3560 | |
| 3561 | struct MsgDisableGnss : public LocMsg { |
| 3562 | GnssAdapter& mAdapter; |
| 3563 | LocApiBase& mApi; |
| 3564 | ContextBase& mContext; |
| 3565 | uint32_t mSessionId; |
| 3566 | inline MsgDisableGnss(GnssAdapter& adapter, |
| 3567 | LocApiBase& api, |
| 3568 | ContextBase& context, |
| 3569 | uint32_t sessionId) : |
| 3570 | LocMsg(), |
| 3571 | mAdapter(adapter), |
| 3572 | mApi(api), |
| 3573 | mContext(context), |
| 3574 | mSessionId(sessionId) {} |
| 3575 | inline virtual void proc() const { |
| 3576 | LocationError err = LOCATION_ERROR_SUCCESS; |
| 3577 | uint32_t afwControlId = mAdapter.getAfwControlId(); |
| 3578 | if (afwControlId != mSessionId) { |
| 3579 | err = LOCATION_ERROR_ID_UNKNOWN; |
| 3580 | } else { |
| 3581 | mContext.modemPowerVote(false); |
| 3582 | mAdapter.setAfwControlId(0); |
| 3583 | |
| 3584 | if (mAdapter.mSupportNfwControl) { |
| 3585 | /* We need to disable MO (AFW) */ |
| 3586 | ContextBase::mGps_conf.GPS_LOCK |= GNSS_CONFIG_GPS_LOCK_MO; |
| 3587 | } |
| 3588 | GnssConfigGpsLock gpsLock = ContextBase::mGps_conf.GPS_LOCK; |
| 3589 | mApi.sendMsg(new LocApiMsg([&mApi = mApi, gpsLock]() { |
| 3590 | mApi.setGpsLockSync(gpsLock); |
| 3591 | })); |
| 3592 | mAdapter.mXtraObserver.updateLockStatus(gpsLock); |
| 3593 | } |
| 3594 | mAdapter.reportResponse(err, mSessionId); |
| 3595 | } |
| 3596 | }; |
| 3597 | |
| 3598 | if (mContext != NULL) { |
| 3599 | sendMsg(new MsgDisableGnss(*this, *mLocApi, *mContext, id)); |
| 3600 | } |
| 3601 | |
| 3602 | } |
| 3603 | |
| 3604 | // This function computes the VRP based latitude, longitude and alittude, and |
| 3605 | // north, east and up velocity and save the result into EHubTechReport. |
| 3606 | void |
| 3607 | GnssAdapter::computeVRPBasedLla(const UlpLocation& loc, GpsLocationExtended& locExt, |
| 3608 | const LeverArmConfigInfo& leverArmConfigInfo) { |
| 3609 | |
| 3610 | float leverArm[3]; |
| 3611 | float rollPitchYaw[3]; |
| 3612 | double lla[3]; |
| 3613 | |
| 3614 | uint16_t locFlags = loc.gpsLocation.flags; |
| 3615 | uint64_t locExtFlags = locExt.flags; |
| 3616 | |
| 3617 | // check for SPE fix |
| 3618 | if (!((locExtFlags & GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_TYPE) && |
| 3619 | (locExt.locOutputEngType == LOC_OUTPUT_ENGINE_SPE))){ |
| 3620 | LOC_LOGv("not SPE fix, return"); |
| 3621 | return; |
| 3622 | } |
| 3623 | |
| 3624 | // we can only do translation if we have VRP based lever ARM info |
| 3625 | LeverArmTypeMask leverArmFlags = leverArmConfigInfo.leverArmValidMask; |
| 3626 | if (!(leverArmFlags & LEVER_ARM_TYPE_GNSS_TO_VRP_BIT)) { |
| 3627 | LOC_LOGd("no VRP based lever ARM info"); |
| 3628 | return; |
| 3629 | } |
| 3630 | |
| 3631 | leverArm[0] = leverArmConfigInfo.gnssToVRP.forwardOffsetMeters; |
| 3632 | leverArm[1] = leverArmConfigInfo.gnssToVRP.sidewaysOffsetMeters; |
| 3633 | leverArm[2] = leverArmConfigInfo.gnssToVRP.upOffsetMeters; |
| 3634 | |
| 3635 | if ((locFlags & LOC_GPS_LOCATION_HAS_LAT_LONG) && |
| 3636 | (locFlags & LOC_GPS_LOCATION_HAS_ALTITUDE) && |
| 3637 | (locFlags & LOCATION_HAS_BEARING_BIT)) { |
| 3638 | |
| 3639 | lla[0] = loc.gpsLocation.latitude * DEG2RAD; |
| 3640 | lla[1] = loc.gpsLocation.longitude * DEG2RAD; |
| 3641 | lla[2] = loc.gpsLocation.altitude; |
| 3642 | |
| 3643 | rollPitchYaw[0] = 0.0f; |
| 3644 | rollPitchYaw[1] = 0.0f; |
| 3645 | rollPitchYaw[2] = loc.gpsLocation.bearing * DEG2RAD; |
| 3646 | |
| 3647 | loc_convert_lla_gnss_to_vrp(lla, rollPitchYaw, leverArm); |
| 3648 | |
| 3649 | // assign the converted value into position report and |
| 3650 | // set up valid mask |
| 3651 | locExt.llaVRPBased.latitude = lla[0] * RAD2DEG; |
| 3652 | locExt.llaVRPBased.longitude = lla[1] * RAD2DEG; |
| 3653 | locExt.llaVRPBased.altitude = lla[2]; |
| 3654 | locExt.flags |= GPS_LOCATION_EXTENDED_HAS_LLA_VRP_BASED; |
| 3655 | } else { |
| 3656 | LOC_LOGd("SPE fix missing latitude/longitude/alitutde"); |
| 3657 | return; |
| 3658 | } |
| 3659 | } |
| 3660 | |
| 3661 | void |
| 3662 | GnssAdapter::reportPositionEvent(const UlpLocation& ulpLocation, |
| 3663 | const GpsLocationExtended& locationExtended, |
| 3664 | enum loc_sess_status status, |
| 3665 | LocPosTechMask techMask, |
| 3666 | GnssDataNotification* pDataNotify, |
| 3667 | int msInWeek) |
| 3668 | { |
| 3669 | // this position is from QMI LOC API, then send report to engine hub |
| 3670 | // also, send out SPE fix promptly to the clients that have registered |
| 3671 | // with SPE report |
| 3672 | LOC_LOGd("reportPositionEvent, eng type: %d, unpro %d, sess status %d msInWeek %d", |
| 3673 | locationExtended.locOutputEngType, |
| 3674 | ulpLocation.unpropagatedPosition, status, msInWeek); |
| 3675 | |
| 3676 | struct MsgReportSPEPosition : public LocMsg { |
| 3677 | GnssAdapter& mAdapter; |
| 3678 | mutable UlpLocation mUlpLocation; |
| 3679 | mutable GpsLocationExtended mLocationExtended; |
| 3680 | enum loc_sess_status mStatus; |
| 3681 | LocPosTechMask mTechMask; |
| 3682 | mutable GnssDataNotification mDataNotify; |
| 3683 | int mMsInWeek; |
| 3684 | |
| 3685 | inline MsgReportSPEPosition(GnssAdapter& adapter, |
| 3686 | const UlpLocation& ulpLocation, |
| 3687 | const GpsLocationExtended& locationExtended, |
| 3688 | enum loc_sess_status status, |
| 3689 | LocPosTechMask techMask, |
| 3690 | GnssDataNotification dataNotify, |
| 3691 | int msInWeek) : |
| 3692 | LocMsg(), |
| 3693 | mAdapter(adapter), |
| 3694 | mUlpLocation(ulpLocation), |
| 3695 | mLocationExtended(locationExtended), |
| 3696 | mStatus(status), |
| 3697 | mTechMask(techMask), |
| 3698 | mDataNotify(dataNotify), |
| 3699 | mMsInWeek(msInWeek) {} |
| 3700 | inline virtual void proc() const { |
| 3701 | if (mAdapter.mTimeBasedTrackingSessions.empty() && |
| 3702 | mAdapter.mDistanceBasedTrackingSessions.empty()) { |
| 3703 | LOC_LOGd("reportPositionEvent, no session on-going, throw away the SPE reports"); |
| 3704 | return; |
| 3705 | } |
| 3706 | |
| 3707 | if (false == mUlpLocation.unpropagatedPosition && mDataNotify.size != 0) { |
| 3708 | if (mMsInWeek >= 0) { |
| 3709 | mAdapter.getDataInformation((GnssDataNotification&)mDataNotify, |
| 3710 | mMsInWeek); |
| 3711 | } |
| 3712 | mAdapter.reportData(mDataNotify); |
| 3713 | } |
| 3714 | |
| 3715 | if (true == mAdapter.initEngHubProxy()){ |
| 3716 | // send the SPE fix to engine hub |
| 3717 | mAdapter.mEngHubProxy->gnssReportPosition(mUlpLocation, mLocationExtended, mStatus); |
| 3718 | // report out all SPE fix if it is not propagated, even for failed fix |
| 3719 | if (false == mUlpLocation.unpropagatedPosition) { |
| 3720 | EngineLocationInfo engLocationInfo = {}; |
| 3721 | engLocationInfo.location = mUlpLocation; |
| 3722 | engLocationInfo.locationExtended = mLocationExtended; |
| 3723 | engLocationInfo.sessionStatus = mStatus; |
| 3724 | |
| 3725 | // obtain the VRP based latitude/longitude/altitude for SPE fix |
| 3726 | computeVRPBasedLla(engLocationInfo.location, |
| 3727 | engLocationInfo.locationExtended, |
| 3728 | mAdapter.mLocConfigInfo.leverArmConfigInfo); |
| 3729 | mAdapter.reportEnginePositions(1, &engLocationInfo); |
| 3730 | } |
| 3731 | return; |
| 3732 | } |
| 3733 | |
| 3734 | // unpropagated report: is only for engine hub to consume and no need |
| 3735 | // to send out to the clients |
| 3736 | if (true == mUlpLocation.unpropagatedPosition) { |
| 3737 | return; |
| 3738 | } |
| 3739 | |
| 3740 | // extract bug report info - this returns true if consumed by systemstatus |
| 3741 | SystemStatus* s = mAdapter.getSystemStatus(); |
| 3742 | if ((nullptr != s) && |
| 3743 | ((LOC_SESS_SUCCESS == mStatus) || (LOC_SESS_INTERMEDIATE == mStatus))){ |
| 3744 | s->eventPosition(mUlpLocation, mLocationExtended); |
| 3745 | } |
| 3746 | |
| 3747 | mAdapter.reportPosition(mUlpLocation, mLocationExtended, mStatus, mTechMask); |
| 3748 | } |
| 3749 | }; |
| 3750 | |
| 3751 | if (mContext != NULL) { |
| 3752 | GnssDataNotification dataNotifyCopy = {}; |
| 3753 | if (pDataNotify) { |
| 3754 | dataNotifyCopy = *pDataNotify; |
| 3755 | dataNotifyCopy.size = sizeof(dataNotifyCopy); |
| 3756 | } |
| 3757 | sendMsg(new MsgReportSPEPosition(*this, ulpLocation, locationExtended, |
| 3758 | status, techMask, dataNotifyCopy, msInWeek)); |
| 3759 | } |
| 3760 | } |
| 3761 | |
| 3762 | void |
| 3763 | GnssAdapter::reportEnginePositionsEvent(unsigned int count, |
| 3764 | EngineLocationInfo* locationArr) |
| 3765 | { |
| 3766 | struct MsgReportEnginePositions : public LocMsg { |
| 3767 | GnssAdapter& mAdapter; |
| 3768 | unsigned int mCount; |
| 3769 | EngineLocationInfo mEngLocInfo[LOC_OUTPUT_ENGINE_COUNT]; |
| 3770 | inline MsgReportEnginePositions(GnssAdapter& adapter, |
| 3771 | unsigned int count, |
| 3772 | EngineLocationInfo* locationArr) : |
| 3773 | LocMsg(), |
| 3774 | mAdapter(adapter), |
| 3775 | mCount(count) { |
| 3776 | if (mCount > LOC_OUTPUT_ENGINE_COUNT) { |
| 3777 | mCount = LOC_OUTPUT_ENGINE_COUNT; |
| 3778 | } |
| 3779 | if (mCount > 0) { |
| 3780 | memcpy(mEngLocInfo, locationArr, sizeof(EngineLocationInfo)*mCount); |
| 3781 | } |
| 3782 | } |
| 3783 | inline virtual void proc() const { |
| 3784 | mAdapter.reportEnginePositions(mCount, mEngLocInfo); |
| 3785 | } |
| 3786 | }; |
| 3787 | |
| 3788 | sendMsg(new MsgReportEnginePositions(*this, count, locationArr)); |
| 3789 | } |
| 3790 | |
| 3791 | bool |
| 3792 | GnssAdapter::needReportForGnssClient(const UlpLocation& ulpLocation, |
| 3793 | enum loc_sess_status status, |
| 3794 | LocPosTechMask techMask) { |
| 3795 | bool reported = false; |
| 3796 | |
| 3797 | // if engine hub is enabled, aka, any of the engine services is enabled, |
| 3798 | // then always output position reported by engine hub to requesting client |
| 3799 | if (true == initEngHubProxy()) { |
| 3800 | reported = true; |
| 3801 | } else { |
| 3802 | reported = LocApiBase::needReport(ulpLocation, status, techMask); |
| 3803 | } |
| 3804 | return reported; |
| 3805 | } |
| 3806 | |
| 3807 | bool |
| 3808 | GnssAdapter::needReportForFlpClient(enum loc_sess_status status, |
| 3809 | LocPosTechMask techMask) { |
| 3810 | if (((LOC_SESS_INTERMEDIATE == status) && !(techMask & LOC_POS_TECH_MASK_SENSORS) && |
| 3811 | (!getAllowFlpNetworkFixes())) || |
| 3812 | (LOC_SESS_FAILURE == status)) { |
| 3813 | return false; |
| 3814 | } else { |
| 3815 | return true; |
| 3816 | } |
| 3817 | } |
| 3818 | |
| 3819 | bool |
| 3820 | GnssAdapter::isFlpClient(LocationCallbacks& locationCallbacks) |
| 3821 | { |
| 3822 | return (locationCallbacks.gnssLocationInfoCb == nullptr && |
| 3823 | locationCallbacks.gnssSvCb == nullptr && |
| 3824 | locationCallbacks.gnssNmeaCb == nullptr && |
| 3825 | locationCallbacks.gnssDataCb == nullptr && |
| 3826 | locationCallbacks.gnssMeasurementsCb == nullptr); |
| 3827 | } |
| 3828 | |
| 3829 | bool GnssAdapter::needToGenerateNmeaReport(const uint32_t &gpsTimeOfWeekMs, |
| 3830 | const struct timespec32_t &apTimeStamp) |
| 3831 | { |
| 3832 | bool retVal = false; |
| 3833 | uint64_t currentTimeNsec = 0; |
| 3834 | |
| 3835 | if (NMEA_PROVIDER_AP == ContextBase::mGps_conf.NMEA_PROVIDER && !mTimeBasedTrackingSessions.empty()) { |
| 3836 | currentTimeNsec = (apTimeStamp.tv_sec * BILLION_NSEC + apTimeStamp.tv_nsec); |
| 3837 | if ((GNSS_NMEA_REPORT_RATE_NHZ == ContextBase::sNmeaReportRate) || |
| 3838 | (GPS_DEFAULT_FIX_INTERVAL_MS <= mLocPositionMode.min_interval)) { |
| 3839 | retVal = true; |
| 3840 | } else { /*tbf is less than 1000 milli-seconds and NMEA reporting rate is set to 1Hz */ |
| 3841 | /* Always send NMEA string for first position report |
| 3842 | * Send when gpsTimeOfWeekMs is closely aligned with integer boundary |
| 3843 | */ |
| 3844 | if ((0 == mPrevNmeaRptTimeNsec) || |
Albert I | c861b41 | 2021-06-25 19:46:27 +0800 | [diff] [blame] | 3845 | ((0 != gpsTimeOfWeekMs) && (NMEA_MIN_THRESHOLD_MSEC >= (gpsTimeOfWeekMs % 1000)))) { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 3846 | retVal = true; |
| 3847 | } else { |
| 3848 | uint64_t timeDiffMsec = ((currentTimeNsec - mPrevNmeaRptTimeNsec) / 1000000); |
| 3849 | // Send when the delta time becomes >= 1 sec |
| 3850 | if (NMEA_MAX_THRESHOLD_MSEC <= timeDiffMsec) { |
| 3851 | retVal = true; |
| 3852 | } |
| 3853 | } |
| 3854 | } |
| 3855 | if (true == retVal) { |
| 3856 | mPrevNmeaRptTimeNsec = currentTimeNsec; |
| 3857 | } |
| 3858 | } |
| 3859 | return retVal; |
| 3860 | } |
| 3861 | |
| 3862 | void |
| 3863 | GnssAdapter::logLatencyInfo() |
| 3864 | { |
| 3865 | if (0 == mGnssLatencyInfoQueue.size()) { |
| 3866 | LOC_LOGv("mGnssLatencyInfoQueue.size is 0"); |
| 3867 | return; |
| 3868 | } |
| 3869 | mGnssLatencyInfoQueue.front().hlosQtimer5 = getQTimerTickCount(); |
| 3870 | if (0 == mGnssLatencyInfoQueue.front().hlosQtimer3) { |
| 3871 | /* if SPE from engine hub is not reported then hlosQtimer3 = 0, set it |
| 3872 | equal to hlosQtimer2 to make sense */ |
| 3873 | LOC_LOGv("hlosQtimer3 is 0, setting it to hlosQtimer2"); |
| 3874 | mGnssLatencyInfoQueue.front().hlosQtimer3 = mGnssLatencyInfoQueue.front().hlosQtimer2; |
| 3875 | } |
| 3876 | if (0 == mGnssLatencyInfoQueue.front().hlosQtimer4) { |
| 3877 | /* if PPE from engine hub is not reported then hlosQtimer4 = 0, set it |
| 3878 | equal to hlosQtimer3 to make sense */ |
| 3879 | LOC_LOGv("hlosQtimer4 is 0, setting it to hlosQtimer3"); |
| 3880 | mGnssLatencyInfoQueue.front().hlosQtimer4 = mGnssLatencyInfoQueue.front().hlosQtimer3; |
| 3881 | } |
| 3882 | if (mGnssLatencyInfoQueue.front().hlosQtimer4 < mGnssLatencyInfoQueue.front().hlosQtimer3) { |
| 3883 | /* hlosQtimer3 is timestamped when SPE from engine hub is reported, |
| 3884 | and hlosQtimer4 is timestamped when PPE from engine hub is reported. |
| 3885 | The order is random though, hence making sure the timestamps are sorted */ |
| 3886 | LOC_LOGv("hlosQtimer4 is < hlosQtimer3, swapping them"); |
| 3887 | std::swap(mGnssLatencyInfoQueue.front().hlosQtimer3, |
| 3888 | mGnssLatencyInfoQueue.front().hlosQtimer4); |
| 3889 | } |
| 3890 | LOC_LOGv("meQtimer1=%" PRIi64 " " |
| 3891 | "meQtimer2=%" PRIi64 " " |
| 3892 | "meQtimer3=%" PRIi64 " " |
| 3893 | "peQtimer1=%" PRIi64 " " |
| 3894 | "peQtimer2=%" PRIi64 " " |
| 3895 | "peQtimer3=%" PRIi64 " " |
| 3896 | "smQtimer1=%" PRIi64 " " |
| 3897 | "smQtimer2=%" PRIi64 " " |
| 3898 | "smQtimer3=%" PRIi64 " " |
| 3899 | "locMwQtimer=%" PRIi64 " " |
| 3900 | "hlosQtimer1=%" PRIi64 " " |
| 3901 | "hlosQtimer2=%" PRIi64 " " |
| 3902 | "hlosQtimer3=%" PRIi64 " " |
| 3903 | "hlosQtimer4=%" PRIi64 " " |
| 3904 | "hlosQtimer5=%" PRIi64 " ", |
| 3905 | mGnssLatencyInfoQueue.front().meQtimer1, mGnssLatencyInfoQueue.front().meQtimer2, |
| 3906 | mGnssLatencyInfoQueue.front().meQtimer3, mGnssLatencyInfoQueue.front().peQtimer1, |
| 3907 | mGnssLatencyInfoQueue.front().peQtimer2, mGnssLatencyInfoQueue.front().peQtimer3, |
| 3908 | mGnssLatencyInfoQueue.front().smQtimer1, mGnssLatencyInfoQueue.front().smQtimer2, |
| 3909 | mGnssLatencyInfoQueue.front().smQtimer3, mGnssLatencyInfoQueue.front().locMwQtimer, |
| 3910 | mGnssLatencyInfoQueue.front().hlosQtimer1, mGnssLatencyInfoQueue.front().hlosQtimer2, |
| 3911 | mGnssLatencyInfoQueue.front().hlosQtimer3, mGnssLatencyInfoQueue.front().hlosQtimer4, |
| 3912 | mGnssLatencyInfoQueue.front().hlosQtimer5); |
| 3913 | mLogger.log(mGnssLatencyInfoQueue.front()); |
| 3914 | mGnssLatencyInfoQueue.pop(); |
| 3915 | LOC_LOGv("mGnssLatencyInfoQueue.size after pop=%zu", mGnssLatencyInfoQueue.size()); |
| 3916 | } |
| 3917 | |
| 3918 | // only fused report (when engine hub is enabled) or |
| 3919 | // SPE report (when engine hub is disabled) will reach this function |
| 3920 | void |
| 3921 | GnssAdapter::reportPosition(const UlpLocation& ulpLocation, |
| 3922 | const GpsLocationExtended& locationExtended, |
| 3923 | enum loc_sess_status status, |
| 3924 | LocPosTechMask techMask) |
| 3925 | { |
| 3926 | bool reportToGnssClient = needReportForGnssClient(ulpLocation, status, techMask); |
| 3927 | bool reportToFlpClient = needReportForFlpClient(status, techMask); |
| 3928 | |
| 3929 | if (reportToGnssClient || reportToFlpClient) { |
| 3930 | GnssLocationInfoNotification locationInfo = {}; |
| 3931 | convertLocationInfo(locationInfo, locationExtended, status); |
| 3932 | convertLocation(locationInfo.location, ulpLocation, locationExtended); |
| 3933 | logLatencyInfo(); |
| 3934 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 3935 | if ((reportToFlpClient && isFlpClient(it->second)) || |
| 3936 | (reportToGnssClient && !isFlpClient(it->second))) { |
| 3937 | if (nullptr != it->second.gnssLocationInfoCb) { |
| 3938 | it->second.gnssLocationInfoCb(locationInfo); |
| 3939 | } else if ((nullptr != it->second.engineLocationsInfoCb) && |
| 3940 | (false == initEngHubProxy())) { |
| 3941 | // if engine hub is disabled, this is SPE fix from modem |
| 3942 | // we need to mark one copy marked as fused and one copy marked as PPE |
| 3943 | // and dispatch it to the engineLocationsInfoCb |
| 3944 | GnssLocationInfoNotification engLocationsInfo[2]; |
| 3945 | engLocationsInfo[0] = locationInfo; |
| 3946 | engLocationsInfo[0].locOutputEngType = LOC_OUTPUT_ENGINE_FUSED; |
| 3947 | engLocationsInfo[0].flags |= GNSS_LOCATION_INFO_OUTPUT_ENG_TYPE_BIT; |
| 3948 | engLocationsInfo[1] = locationInfo; |
| 3949 | it->second.engineLocationsInfoCb(2, engLocationsInfo); |
| 3950 | } else if (nullptr != it->second.trackingCb) { |
| 3951 | it->second.trackingCb(locationInfo.location); |
| 3952 | } |
| 3953 | } |
| 3954 | } |
| 3955 | |
| 3956 | mGnssSvIdUsedInPosAvail = false; |
| 3957 | mGnssMbSvIdUsedInPosAvail = false; |
| 3958 | if (reportToGnssClient) { |
| 3959 | if (locationExtended.flags & GPS_LOCATION_EXTENDED_HAS_GNSS_SV_USED_DATA) { |
| 3960 | mGnssSvIdUsedInPosAvail = true; |
| 3961 | mGnssSvIdUsedInPosition = locationExtended.gnss_sv_used_ids; |
| 3962 | if (locationExtended.flags & GPS_LOCATION_EXTENDED_HAS_MULTIBAND) { |
| 3963 | mGnssMbSvIdUsedInPosAvail = true; |
| 3964 | mGnssMbSvIdUsedInPosition = locationExtended.gnss_mb_sv_used_ids; |
| 3965 | } |
| 3966 | } |
| 3967 | |
| 3968 | // if PACE is enabled |
| 3969 | if ((true == mLocConfigInfo.paceConfigInfo.isValid) && |
| 3970 | (true == mLocConfigInfo.paceConfigInfo.enable)) { |
| 3971 | // If fix has sensor contribution, and it is fused fix with DRE engine |
| 3972 | // contributing to the fix, inject to modem |
| 3973 | if ((LOC_POS_TECH_MASK_SENSORS & techMask) && |
| 3974 | (locationInfo.flags & GNSS_LOCATION_INFO_OUTPUT_ENG_TYPE_BIT) && |
| 3975 | (locationInfo.locOutputEngType == LOC_OUTPUT_ENGINE_FUSED) && |
| 3976 | (locationInfo.flags & GNSS_LOCATION_INFO_OUTPUT_ENG_MASK_BIT) && |
| 3977 | (locationInfo.locOutputEngMask & DEAD_RECKONING_ENGINE)) { |
| 3978 | mLocApi->injectPosition(locationInfo, false); |
| 3979 | } |
| 3980 | } |
| 3981 | } |
| 3982 | } |
| 3983 | |
| 3984 | if (needToGenerateNmeaReport(locationExtended.gpsTime.gpsTimeOfWeekMs, |
| 3985 | locationExtended.timeStamp.apTimeStamp)) { |
| 3986 | /*Only BlankNMEA sentence needs to be processed and sent, if both lat, long is 0 & |
| 3987 | horReliability is not set. */ |
| 3988 | bool blank_fix = ((0 == ulpLocation.gpsLocation.latitude) && |
| 3989 | (0 == ulpLocation.gpsLocation.longitude) && |
| 3990 | (LOC_RELIABILITY_NOT_SET == locationExtended.horizontal_reliability)); |
| 3991 | uint8_t generate_nmea = (reportToGnssClient && status != LOC_SESS_FAILURE && !blank_fix); |
| 3992 | bool custom_nmea_gga = (1 == ContextBase::mGps_conf.CUSTOM_NMEA_GGA_FIX_QUALITY_ENABLED); |
| 3993 | bool isTagBlockGroupingEnabled = |
| 3994 | (1 == ContextBase::mGps_conf.NMEA_TAG_BLOCK_GROUPING_ENABLED); |
| 3995 | std::vector<std::string> nmeaArraystr; |
| 3996 | int indexOfGGA = -1; |
| 3997 | loc_nmea_generate_pos(ulpLocation, locationExtended, mLocSystemInfo, generate_nmea, |
| 3998 | custom_nmea_gga, nmeaArraystr, indexOfGGA, isTagBlockGroupingEnabled); |
| 3999 | stringstream ss; |
| 4000 | for (auto itor = nmeaArraystr.begin(); itor != nmeaArraystr.end(); ++itor) { |
| 4001 | ss << *itor; |
| 4002 | } |
| 4003 | string s = ss.str(); |
| 4004 | reportNmea(s.c_str(), s.length()); |
| 4005 | |
| 4006 | /* DgnssNtrip */ |
| 4007 | if (-1 != indexOfGGA && isDgnssNmeaRequired()) { |
| 4008 | mDgnssState |= DGNSS_STATE_NO_NMEA_PENDING; |
| 4009 | mStartDgnssNtripParams.nmea = std::move(nmeaArraystr[indexOfGGA]); |
| 4010 | bool isLocationValid = (0 != ulpLocation.gpsLocation.latitude) || |
| 4011 | (0 != ulpLocation.gpsLocation.longitude); |
| 4012 | checkUpdateDgnssNtrip(isLocationValid); |
| 4013 | } |
| 4014 | } |
| 4015 | } |
| 4016 | |
| 4017 | void |
| 4018 | GnssAdapter::reportLatencyInfoEvent(const GnssLatencyInfo& gnssLatencyInfo) |
| 4019 | { |
| 4020 | struct MsgReportLatencyInfo : public LocMsg { |
| 4021 | GnssAdapter& mAdapter; |
| 4022 | GnssLatencyInfo mGnssLatencyInfo; |
| 4023 | inline MsgReportLatencyInfo(GnssAdapter& adapter, |
| 4024 | const GnssLatencyInfo& gnssLatencyInfo) : |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 4025 | mAdapter(adapter), |
| 4026 | mGnssLatencyInfo(gnssLatencyInfo) {} |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4027 | inline virtual void proc() const { |
| 4028 | mAdapter.mGnssLatencyInfoQueue.push(mGnssLatencyInfo); |
| 4029 | LOC_LOGv("mGnssLatencyInfoQueue.size after push=%zu", |
| 4030 | mAdapter.mGnssLatencyInfoQueue.size()); |
| 4031 | } |
| 4032 | }; |
| 4033 | sendMsg(new MsgReportLatencyInfo(*this, gnssLatencyInfo)); |
| 4034 | } |
| 4035 | |
| 4036 | void |
| 4037 | GnssAdapter::reportEnginePositions(unsigned int count, |
| 4038 | const EngineLocationInfo* locationArr) |
| 4039 | { |
| 4040 | bool needReportEnginePositions = false; |
| 4041 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4042 | if (nullptr != it->second.engineLocationsInfoCb) { |
| 4043 | needReportEnginePositions = true; |
| 4044 | break; |
| 4045 | } |
| 4046 | } |
| 4047 | |
| 4048 | GnssLocationInfoNotification locationInfo[LOC_OUTPUT_ENGINE_COUNT] = {}; |
| 4049 | for (unsigned int i = 0; i < count; i++) { |
| 4050 | const EngineLocationInfo* engLocation = (locationArr+i); |
| 4051 | // if it is fused/default location, call reportPosition maintain legacy behavior |
| 4052 | if ((GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_TYPE & engLocation->locationExtended.flags) && |
| 4053 | (LOC_OUTPUT_ENGINE_FUSED == engLocation->locationExtended.locOutputEngType)) { |
| 4054 | reportPosition(engLocation->location, |
| 4055 | engLocation->locationExtended, |
| 4056 | engLocation->sessionStatus, |
| 4057 | engLocation->location.tech_mask); |
| 4058 | } |
| 4059 | |
| 4060 | if (needReportEnginePositions) { |
| 4061 | convertLocationInfo(locationInfo[i], engLocation->locationExtended, |
| 4062 | engLocation->sessionStatus); |
| 4063 | convertLocation(locationInfo[i].location, |
| 4064 | engLocation->location, |
| 4065 | engLocation->locationExtended); |
| 4066 | } |
| 4067 | } |
| 4068 | |
| 4069 | const EngineLocationInfo* engLocation = locationArr; |
| 4070 | LOC_LOGv("engLocation->locationExtended.locOutputEngType=%d", |
| 4071 | engLocation->locationExtended.locOutputEngType); |
| 4072 | |
| 4073 | if (0 != mGnssLatencyInfoQueue.size()) { |
| 4074 | if ((GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_TYPE & engLocation->locationExtended.flags) && |
| 4075 | (LOC_OUTPUT_ENGINE_SPE == engLocation->locationExtended.locOutputEngType)) { |
| 4076 | mGnssLatencyInfoQueue.front().hlosQtimer3 = getQTimerTickCount(); |
| 4077 | LOC_LOGv("SPE hlosQtimer3=%" PRIi64 " ", mGnssLatencyInfoQueue.front().hlosQtimer3); |
| 4078 | } |
| 4079 | if ((GPS_LOCATION_EXTENDED_HAS_OUTPUT_ENG_TYPE & engLocation->locationExtended.flags) && |
| 4080 | (LOC_OUTPUT_ENGINE_PPE == engLocation->locationExtended.locOutputEngType)) { |
| 4081 | mGnssLatencyInfoQueue.front().hlosQtimer4 = getQTimerTickCount(); |
| 4082 | LOC_LOGv("PPE hlosQtimer4=%" PRIi64 " ", mGnssLatencyInfoQueue.front().hlosQtimer4); |
| 4083 | } |
| 4084 | } |
| 4085 | if (needReportEnginePositions) { |
| 4086 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4087 | if (nullptr != it->second.engineLocationsInfoCb) { |
| 4088 | it->second.engineLocationsInfoCb(count, locationInfo); |
| 4089 | } |
| 4090 | } |
| 4091 | } |
| 4092 | } |
| 4093 | |
| 4094 | void |
| 4095 | GnssAdapter::reportSvEvent(const GnssSvNotification& svNotify, |
| 4096 | bool fromEngineHub) |
| 4097 | { |
| 4098 | if (!fromEngineHub) { |
| 4099 | mEngHubProxy->gnssReportSv(svNotify); |
| 4100 | if (true == initEngHubProxy()){ |
| 4101 | return; |
| 4102 | } |
| 4103 | } |
| 4104 | |
| 4105 | struct MsgReportSv : public LocMsg { |
| 4106 | GnssAdapter& mAdapter; |
| 4107 | const GnssSvNotification mSvNotify; |
| 4108 | inline MsgReportSv(GnssAdapter& adapter, |
| 4109 | const GnssSvNotification& svNotify) : |
| 4110 | LocMsg(), |
| 4111 | mAdapter(adapter), |
| 4112 | mSvNotify(svNotify) {} |
| 4113 | inline virtual void proc() const { |
| 4114 | mAdapter.reportSv((GnssSvNotification&)mSvNotify); |
| 4115 | } |
| 4116 | }; |
| 4117 | |
| 4118 | sendMsg(new MsgReportSv(*this, svNotify)); |
| 4119 | } |
| 4120 | |
| 4121 | void |
| 4122 | GnssAdapter::reportSv(GnssSvNotification& svNotify) |
| 4123 | { |
| 4124 | int numSv = svNotify.count; |
| 4125 | uint16_t gnssSvId = 0; |
| 4126 | uint64_t svUsedIdMask = 0; |
| 4127 | for (int i=0; i < numSv; i++) { |
| 4128 | svUsedIdMask = 0; |
| 4129 | gnssSvId = svNotify.gnssSvs[i].svId; |
| 4130 | GnssSignalTypeMask signalTypeMask = svNotify.gnssSvs[i].gnssSignalTypeMask; |
| 4131 | switch (svNotify.gnssSvs[i].type) { |
| 4132 | case GNSS_SV_TYPE_GPS: |
| 4133 | if (mGnssSvIdUsedInPosAvail) { |
| 4134 | if (mGnssMbSvIdUsedInPosAvail) { |
| 4135 | switch (signalTypeMask) { |
| 4136 | case GNSS_SIGNAL_GPS_L1CA: |
| 4137 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gps_l1ca_sv_used_ids_mask; |
| 4138 | break; |
| 4139 | case GNSS_SIGNAL_GPS_L1C: |
| 4140 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gps_l1c_sv_used_ids_mask; |
| 4141 | break; |
| 4142 | case GNSS_SIGNAL_GPS_L2: |
| 4143 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gps_l2_sv_used_ids_mask; |
| 4144 | break; |
| 4145 | case GNSS_SIGNAL_GPS_L5: |
| 4146 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gps_l5_sv_used_ids_mask; |
| 4147 | break; |
| 4148 | } |
| 4149 | } else { |
| 4150 | svUsedIdMask = mGnssSvIdUsedInPosition.gps_sv_used_ids_mask; |
| 4151 | } |
| 4152 | } |
| 4153 | break; |
| 4154 | case GNSS_SV_TYPE_GLONASS: |
| 4155 | if (mGnssSvIdUsedInPosAvail) { |
| 4156 | if (mGnssMbSvIdUsedInPosAvail) { |
| 4157 | switch (signalTypeMask) { |
| 4158 | case GNSS_SIGNAL_GLONASS_G1: |
| 4159 | svUsedIdMask = mGnssMbSvIdUsedInPosition.glo_g1_sv_used_ids_mask; |
| 4160 | break; |
| 4161 | case GNSS_SIGNAL_GLONASS_G2: |
| 4162 | svUsedIdMask = mGnssMbSvIdUsedInPosition.glo_g2_sv_used_ids_mask; |
| 4163 | break; |
| 4164 | } |
| 4165 | } else { |
| 4166 | svUsedIdMask = mGnssSvIdUsedInPosition.glo_sv_used_ids_mask; |
| 4167 | } |
| 4168 | } |
| 4169 | // map the svid to respective constellation range 1..xx |
| 4170 | // then repective constellation svUsedIdMask map correctly to svid |
| 4171 | gnssSvId = gnssSvId - GLO_SV_PRN_MIN + 1; |
| 4172 | break; |
| 4173 | case GNSS_SV_TYPE_BEIDOU: |
| 4174 | if (mGnssSvIdUsedInPosAvail) { |
| 4175 | if (mGnssMbSvIdUsedInPosAvail) { |
| 4176 | switch (signalTypeMask) { |
| 4177 | case GNSS_SIGNAL_BEIDOU_B1I: |
| 4178 | svUsedIdMask = mGnssMbSvIdUsedInPosition.bds_b1i_sv_used_ids_mask; |
| 4179 | break; |
| 4180 | case GNSS_SIGNAL_BEIDOU_B1C: |
| 4181 | svUsedIdMask = mGnssMbSvIdUsedInPosition.bds_b1c_sv_used_ids_mask; |
| 4182 | break; |
| 4183 | case GNSS_SIGNAL_BEIDOU_B2I: |
| 4184 | svUsedIdMask = mGnssMbSvIdUsedInPosition.bds_b2i_sv_used_ids_mask; |
| 4185 | break; |
| 4186 | case GNSS_SIGNAL_BEIDOU_B2AI: |
| 4187 | svUsedIdMask = mGnssMbSvIdUsedInPosition.bds_b2ai_sv_used_ids_mask; |
| 4188 | break; |
| 4189 | case GNSS_SIGNAL_BEIDOU_B2AQ: |
| 4190 | svUsedIdMask = mGnssMbSvIdUsedInPosition.bds_b2aq_sv_used_ids_mask; |
| 4191 | break; |
| 4192 | } |
| 4193 | } else { |
| 4194 | svUsedIdMask = mGnssSvIdUsedInPosition.bds_sv_used_ids_mask; |
| 4195 | } |
| 4196 | } |
| 4197 | gnssSvId = gnssSvId - BDS_SV_PRN_MIN + 1; |
| 4198 | break; |
| 4199 | case GNSS_SV_TYPE_GALILEO: |
| 4200 | if (mGnssSvIdUsedInPosAvail) { |
| 4201 | if (mGnssMbSvIdUsedInPosAvail) { |
| 4202 | switch (signalTypeMask) { |
| 4203 | case GNSS_SIGNAL_GALILEO_E1: |
| 4204 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gal_e1_sv_used_ids_mask; |
| 4205 | break; |
| 4206 | case GNSS_SIGNAL_GALILEO_E5A: |
| 4207 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gal_e5a_sv_used_ids_mask; |
| 4208 | break; |
| 4209 | case GNSS_SIGNAL_GALILEO_E5B: |
| 4210 | svUsedIdMask = mGnssMbSvIdUsedInPosition.gal_e5b_sv_used_ids_mask; |
| 4211 | break; |
| 4212 | } |
| 4213 | } else { |
| 4214 | svUsedIdMask = mGnssSvIdUsedInPosition.gal_sv_used_ids_mask; |
| 4215 | } |
| 4216 | } |
| 4217 | gnssSvId = gnssSvId - GAL_SV_PRN_MIN + 1; |
| 4218 | break; |
| 4219 | case GNSS_SV_TYPE_QZSS: |
| 4220 | if (mGnssSvIdUsedInPosAvail) { |
| 4221 | if (mGnssMbSvIdUsedInPosAvail) { |
| 4222 | switch (signalTypeMask) { |
| 4223 | case GNSS_SIGNAL_QZSS_L1CA: |
| 4224 | svUsedIdMask = mGnssMbSvIdUsedInPosition.qzss_l1ca_sv_used_ids_mask; |
| 4225 | break; |
| 4226 | case GNSS_SIGNAL_QZSS_L1S: |
| 4227 | svUsedIdMask = mGnssMbSvIdUsedInPosition.qzss_l1s_sv_used_ids_mask; |
| 4228 | break; |
| 4229 | case GNSS_SIGNAL_QZSS_L2: |
| 4230 | svUsedIdMask = mGnssMbSvIdUsedInPosition.qzss_l2_sv_used_ids_mask; |
| 4231 | break; |
| 4232 | case GNSS_SIGNAL_QZSS_L5: |
| 4233 | svUsedIdMask = mGnssMbSvIdUsedInPosition.qzss_l5_sv_used_ids_mask; |
| 4234 | break; |
| 4235 | } |
| 4236 | } else { |
| 4237 | svUsedIdMask = mGnssSvIdUsedInPosition.qzss_sv_used_ids_mask; |
| 4238 | } |
| 4239 | } |
| 4240 | gnssSvId = gnssSvId - QZSS_SV_PRN_MIN + 1; |
| 4241 | break; |
| 4242 | case GNSS_SV_TYPE_NAVIC: |
| 4243 | if (mGnssSvIdUsedInPosAvail) { |
| 4244 | svUsedIdMask = mGnssSvIdUsedInPosition.navic_sv_used_ids_mask; |
| 4245 | } |
| 4246 | gnssSvId = gnssSvId - NAVIC_SV_PRN_MIN + 1; |
| 4247 | break; |
| 4248 | default: |
| 4249 | svUsedIdMask = 0; |
| 4250 | break; |
| 4251 | } |
| 4252 | |
| 4253 | // If SV ID was used in previous position fix, then set USED_IN_FIX |
| 4254 | // flag, else clear the USED_IN_FIX flag. |
| 4255 | if (svFitsMask(svUsedIdMask, gnssSvId) && (svUsedIdMask & (1ULL << (gnssSvId - 1)))) { |
| 4256 | svNotify.gnssSvs[i].gnssSvOptionsMask |= GNSS_SV_OPTIONS_USED_IN_FIX_BIT; |
| 4257 | } |
| 4258 | } |
| 4259 | |
| 4260 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4261 | if (nullptr != it->second.gnssSvCb) { |
| 4262 | it->second.gnssSvCb(svNotify); |
| 4263 | } |
| 4264 | } |
| 4265 | |
| 4266 | if (NMEA_PROVIDER_AP == ContextBase::mGps_conf.NMEA_PROVIDER && |
| 4267 | !mTimeBasedTrackingSessions.empty()) { |
| 4268 | std::vector<std::string> nmeaArraystr; |
| 4269 | loc_nmea_generate_sv(svNotify, nmeaArraystr); |
| 4270 | stringstream ss; |
| 4271 | for (auto itor = nmeaArraystr.begin(); itor != nmeaArraystr.end(); ++itor) { |
| 4272 | ss << *itor; |
| 4273 | } |
| 4274 | string s = ss.str(); |
| 4275 | reportNmea(s.c_str(), s.length()); |
| 4276 | } |
| 4277 | |
| 4278 | mGnssSvIdUsedInPosAvail = false; |
| 4279 | mGnssMbSvIdUsedInPosAvail = false; |
| 4280 | } |
| 4281 | |
| 4282 | void |
| 4283 | GnssAdapter::reportNmeaEvent(const char* nmea, size_t length) |
| 4284 | { |
| 4285 | if (NMEA_PROVIDER_AP == ContextBase::mGps_conf.NMEA_PROVIDER && |
| 4286 | !loc_nmea_is_debug(nmea, length)) { |
| 4287 | return; |
| 4288 | } |
| 4289 | |
| 4290 | struct MsgReportNmea : public LocMsg { |
| 4291 | GnssAdapter& mAdapter; |
| 4292 | const char* mNmea; |
| 4293 | size_t mLength; |
| 4294 | inline MsgReportNmea(GnssAdapter& adapter, |
| 4295 | const char* nmea, |
| 4296 | size_t length) : |
| 4297 | LocMsg(), |
| 4298 | mAdapter(adapter), |
| 4299 | mNmea(new char[length+1]), |
| 4300 | mLength(length) { |
| 4301 | if (mNmea == nullptr) { |
| 4302 | LOC_LOGE("%s] new allocation failed, fatal error.", __func__); |
| 4303 | return; |
| 4304 | } |
| 4305 | strlcpy((char*)mNmea, nmea, length+1); |
| 4306 | } |
| 4307 | inline virtual ~MsgReportNmea() |
| 4308 | { |
| 4309 | delete[] mNmea; |
| 4310 | } |
| 4311 | inline virtual void proc() const { |
| 4312 | // extract bug report info - this returns true if consumed by systemstatus |
| 4313 | bool ret = false; |
| 4314 | SystemStatus* s = mAdapter.getSystemStatus(); |
| 4315 | if (nullptr != s) { |
| 4316 | ret = s->setNmeaString(mNmea, mLength); |
| 4317 | } |
| 4318 | if (false == ret) { |
| 4319 | // forward NMEA message to upper layer |
| 4320 | mAdapter.reportNmea(mNmea, mLength); |
| 4321 | // DgnssNtrip |
| 4322 | mAdapter.reportGGAToNtrip(mNmea); |
| 4323 | } |
| 4324 | } |
| 4325 | }; |
| 4326 | |
| 4327 | sendMsg(new MsgReportNmea(*this, nmea, length)); |
| 4328 | } |
| 4329 | |
| 4330 | void |
| 4331 | GnssAdapter::reportNmea(const char* nmea, size_t length) |
| 4332 | { |
| 4333 | GnssNmeaNotification nmeaNotification = {}; |
| 4334 | nmeaNotification.size = sizeof(GnssNmeaNotification); |
| 4335 | |
| 4336 | struct timeval tv; |
| 4337 | gettimeofday(&tv, (struct timezone *) NULL); |
| 4338 | int64_t now = tv.tv_sec * 1000LL + tv.tv_usec / 1000; |
| 4339 | nmeaNotification.timestamp = now; |
| 4340 | nmeaNotification.nmea = nmea; |
| 4341 | nmeaNotification.length = length; |
| 4342 | |
| 4343 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4344 | if (nullptr != it->second.gnssNmeaCb) { |
| 4345 | it->second.gnssNmeaCb(nmeaNotification); |
| 4346 | } |
| 4347 | } |
| 4348 | |
| 4349 | if (isNMEAPrintEnabled()) { |
| 4350 | LOC_LOGd("[%" PRId64 ", %zu] %s", now, length, nmea); |
| 4351 | } |
| 4352 | } |
| 4353 | |
| 4354 | void |
| 4355 | GnssAdapter::reportDataEvent(const GnssDataNotification& dataNotify, |
| 4356 | int msInWeek) |
| 4357 | { |
| 4358 | struct MsgReportData : public LocMsg { |
| 4359 | GnssAdapter& mAdapter; |
| 4360 | GnssDataNotification mDataNotify; |
| 4361 | int mMsInWeek; |
| 4362 | inline MsgReportData(GnssAdapter& adapter, |
| 4363 | const GnssDataNotification& dataNotify, |
| 4364 | int msInWeek) : |
| 4365 | LocMsg(), |
| 4366 | mAdapter(adapter), |
| 4367 | mDataNotify(dataNotify), |
| 4368 | mMsInWeek(msInWeek) { |
| 4369 | } |
| 4370 | inline virtual void proc() const { |
| 4371 | if (mMsInWeek >= 0) { |
| 4372 | mAdapter.getDataInformation((GnssDataNotification&)mDataNotify, |
| 4373 | mMsInWeek); |
| 4374 | } |
| 4375 | mAdapter.reportData((GnssDataNotification&)mDataNotify); |
| 4376 | } |
| 4377 | }; |
| 4378 | |
| 4379 | sendMsg(new MsgReportData(*this, dataNotify, msInWeek)); |
| 4380 | } |
| 4381 | |
| 4382 | void |
| 4383 | GnssAdapter::reportData(GnssDataNotification& dataNotify) |
| 4384 | { |
| 4385 | for (int sig = 0; sig < GNSS_LOC_MAX_NUMBER_OF_SIGNAL_TYPES; sig++) { |
| 4386 | if (GNSS_LOC_DATA_JAMMER_IND_BIT == |
| 4387 | (dataNotify.gnssDataMask[sig] & GNSS_LOC_DATA_JAMMER_IND_BIT)) { |
| 4388 | LOC_LOGv("jammerInd[%d]=%f", sig, dataNotify.jammerInd[sig]); |
| 4389 | } |
| 4390 | if (GNSS_LOC_DATA_AGC_BIT == |
| 4391 | (dataNotify.gnssDataMask[sig] & GNSS_LOC_DATA_AGC_BIT)) { |
| 4392 | LOC_LOGv("agc[%d]=%f", sig, dataNotify.agc[sig]); |
| 4393 | } |
| 4394 | } |
| 4395 | for (auto it = mClientData.begin(); it != mClientData.end(); ++it) { |
| 4396 | if (nullptr != it->second.gnssDataCb) { |
| 4397 | it->second.gnssDataCb(dataNotify); |
| 4398 | } |
| 4399 | } |
| 4400 | } |
| 4401 | |
| 4402 | bool |
| 4403 | GnssAdapter::requestNiNotifyEvent(const GnssNiNotification ¬ify, const void* data, |
| 4404 | const LocInEmergency emergencyState) |
| 4405 | { |
| 4406 | LOC_LOGI("%s]: notif_type: %d, timeout: %d, default_resp: %d" |
| 4407 | "requestor_id: %s (encoding: %d) text: %s text (encoding: %d) extras: %s", |
| 4408 | __func__, notify.type, notify.timeout, notify.timeoutResponse, |
| 4409 | notify.requestor, notify.requestorEncoding, |
| 4410 | notify.message, notify.messageEncoding, notify.extras); |
| 4411 | |
| 4412 | struct MsgReportNiNotify : public LocMsg { |
| 4413 | GnssAdapter& mAdapter; |
| 4414 | LocApiBase& mApi; |
| 4415 | const GnssNiNotification mNotify; |
| 4416 | const void* mData; |
| 4417 | const LocInEmergency mEmergencyState; |
| 4418 | inline MsgReportNiNotify(GnssAdapter& adapter, |
| 4419 | LocApiBase& api, |
| 4420 | const GnssNiNotification& notify, |
| 4421 | const void* data, |
| 4422 | const LocInEmergency emergencyState) : |
| 4423 | LocMsg(), |
| 4424 | mAdapter(adapter), |
| 4425 | mApi(api), |
| 4426 | mNotify(notify), |
| 4427 | mData(data), |
| 4428 | mEmergencyState(emergencyState) {} |
| 4429 | inline virtual void proc() const { |
| 4430 | bool bIsInEmergency = false; |
| 4431 | bool bInformNiAccept = false; |
| 4432 | |
| 4433 | bIsInEmergency = ((LOC_IN_EMERGENCY_UNKNOWN == mEmergencyState) && |
| 4434 | mAdapter.getE911State()) || // older modems |
| 4435 | (LOC_IN_EMERGENCY_SET == mEmergencyState); // newer modems |
| 4436 | |
| 4437 | if ((mAdapter.mSupportNfwControl || 0 == mAdapter.getAfwControlId()) && |
| 4438 | (GNSS_NI_TYPE_SUPL == mNotify.type || GNSS_NI_TYPE_EMERGENCY_SUPL == mNotify.type) |
| 4439 | && !bIsInEmergency && |
| 4440 | !(GNSS_NI_OPTIONS_PRIVACY_OVERRIDE_BIT & mNotify.options) && |
| 4441 | (GNSS_CONFIG_GPS_LOCK_NI & ContextBase::mGps_conf.GPS_LOCK) && |
| 4442 | 1 == ContextBase::mGps_conf.NI_SUPL_DENY_ON_NFW_LOCKED) { |
| 4443 | /* If all these conditions are TRUE, then deny the NI Request: |
| 4444 | -'Q' Lock behavior OR 'P' Lock behavior and GNSS is Locked |
| 4445 | -NI SUPL Request type or NI SUPL Emergency Request type |
| 4446 | -NOT in an Emergency Call Session |
| 4447 | -NOT Privacy Override option |
| 4448 | -NFW is locked and config item NI_SUPL_DENY_ON_NFW_LOCKED = 1 */ |
| 4449 | mApi.informNiResponse(GNSS_NI_RESPONSE_DENY, mData); |
| 4450 | } else if (GNSS_NI_TYPE_EMERGENCY_SUPL == mNotify.type) { |
| 4451 | bInformNiAccept = bIsInEmergency || |
| 4452 | (GNSS_CONFIG_SUPL_EMERGENCY_SERVICES_NO == ContextBase::mGps_conf.SUPL_ES); |
| 4453 | |
| 4454 | if (bInformNiAccept) { |
| 4455 | mAdapter.requestNiNotify(mNotify, mData, bInformNiAccept); |
| 4456 | } else { |
| 4457 | mApi.informNiResponse(GNSS_NI_RESPONSE_DENY, mData); |
| 4458 | } |
| 4459 | } else if (GNSS_NI_TYPE_CONTROL_PLANE == mNotify.type) { |
| 4460 | if (bIsInEmergency && (1 == ContextBase::mGps_conf.CP_MTLR_ES)) { |
| 4461 | mApi.informNiResponse(GNSS_NI_RESPONSE_ACCEPT, mData); |
| 4462 | } |
| 4463 | else { |
| 4464 | mAdapter.requestNiNotify(mNotify, mData, false); |
| 4465 | } |
| 4466 | } else { |
| 4467 | mAdapter.requestNiNotify(mNotify, mData, false); |
| 4468 | } |
| 4469 | } |
| 4470 | }; |
| 4471 | |
| 4472 | sendMsg(new MsgReportNiNotify(*this, *mLocApi, notify, data, emergencyState)); |
| 4473 | |
| 4474 | return true; |
| 4475 | } |
| 4476 | |
| 4477 | void |
| 4478 | GnssAdapter::reportLocationSystemInfoEvent(const LocationSystemInfo & locationSystemInfo) { |
| 4479 | |
| 4480 | // send system info to engine hub |
| 4481 | mEngHubProxy->gnssReportSystemInfo(locationSystemInfo); |
| 4482 | |
| 4483 | struct MsgLocationSystemInfo : public LocMsg { |
| 4484 | GnssAdapter& mAdapter; |
| 4485 | LocationSystemInfo mSystemInfo; |
| 4486 | inline MsgLocationSystemInfo(GnssAdapter& adapter, |
| 4487 | const LocationSystemInfo& systemInfo) : |
| 4488 | LocMsg(), |
| 4489 | mAdapter(adapter), |
| 4490 | mSystemInfo(systemInfo) {} |
| 4491 | inline virtual void proc() const { |
| 4492 | mAdapter.reportLocationSystemInfo(mSystemInfo); |
| 4493 | } |
| 4494 | }; |
| 4495 | |
| 4496 | sendMsg(new MsgLocationSystemInfo(*this, locationSystemInfo)); |
| 4497 | } |
| 4498 | |
| 4499 | void |
| 4500 | GnssAdapter::reportLocationSystemInfo(const LocationSystemInfo & locationSystemInfo) { |
| 4501 | // save the info into the master copy piece by piece, as other system info |
| 4502 | // may come at different time |
| 4503 | if (locationSystemInfo.systemInfoMask & LOCATION_SYS_INFO_LEAP_SECOND) { |
| 4504 | mLocSystemInfo.systemInfoMask |= LOCATION_SYS_INFO_LEAP_SECOND; |
| 4505 | |
| 4506 | const LeapSecondSystemInfo &srcLeapSecondSysInfo = locationSystemInfo.leapSecondSysInfo; |
| 4507 | LeapSecondSystemInfo &dstLeapSecondSysInfo = mLocSystemInfo.leapSecondSysInfo; |
| 4508 | if (srcLeapSecondSysInfo.leapSecondInfoMask & |
| 4509 | LEAP_SECOND_SYS_INFO_CURRENT_LEAP_SECONDS_BIT) { |
| 4510 | dstLeapSecondSysInfo.leapSecondInfoMask |= |
| 4511 | LEAP_SECOND_SYS_INFO_CURRENT_LEAP_SECONDS_BIT; |
| 4512 | dstLeapSecondSysInfo.leapSecondCurrent = srcLeapSecondSysInfo.leapSecondCurrent; |
| 4513 | } |
| 4514 | // once leap second change event is complete, modem may send up event invalidate the leap |
| 4515 | // second change info while AP is still processing report during leap second transition |
| 4516 | // so, we choose to keep this info around even though it is old |
| 4517 | if (srcLeapSecondSysInfo.leapSecondInfoMask & LEAP_SECOND_SYS_INFO_LEAP_SECOND_CHANGE_BIT) { |
| 4518 | dstLeapSecondSysInfo.leapSecondInfoMask |= LEAP_SECOND_SYS_INFO_LEAP_SECOND_CHANGE_BIT; |
| 4519 | dstLeapSecondSysInfo.leapSecondChangeInfo = srcLeapSecondSysInfo.leapSecondChangeInfo; |
| 4520 | } |
| 4521 | } |
| 4522 | |
| 4523 | // we received new info, inform client of the newly received info |
| 4524 | if (locationSystemInfo.systemInfoMask) { |
| 4525 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4526 | if (it->second.locationSystemInfoCb != nullptr) { |
| 4527 | it->second.locationSystemInfoCb(locationSystemInfo); |
| 4528 | } |
| 4529 | } |
| 4530 | } |
| 4531 | } |
| 4532 | |
| 4533 | static void* niThreadProc(void *args) |
| 4534 | { |
| 4535 | NiSession* pSession = (NiSession*)args; |
| 4536 | int rc = 0; /* return code from pthread calls */ |
| 4537 | |
| 4538 | struct timespec present_time; |
| 4539 | struct timespec expire_time; |
| 4540 | |
| 4541 | pthread_mutex_lock(&pSession->tLock); |
| 4542 | /* Calculate absolute expire time */ |
| 4543 | clock_gettime(CLOCK_MONOTONIC, &present_time); |
| 4544 | expire_time.tv_sec = present_time.tv_sec + pSession->respTimeLeft; |
| 4545 | expire_time.tv_nsec = present_time.tv_nsec; |
| 4546 | LOC_LOGD("%s]: time out set for abs time %ld with delay %d sec", |
| 4547 | __func__, (long)expire_time.tv_sec, pSession->respTimeLeft); |
| 4548 | |
| 4549 | while (!pSession->respRecvd) { |
| 4550 | rc = pthread_cond_timedwait(&pSession->tCond, |
| 4551 | &pSession->tLock, |
| 4552 | &expire_time); |
| 4553 | if (rc == ETIMEDOUT) { |
| 4554 | pSession->resp = GNSS_NI_RESPONSE_NO_RESPONSE; |
| 4555 | LOC_LOGD("%s]: time out after valting for specified time. Ret Val %d", |
| 4556 | __func__, rc); |
| 4557 | break; |
| 4558 | } |
| 4559 | } |
| 4560 | LOC_LOGD("%s]: Java layer has sent us a user response and return value from " |
| 4561 | "pthread_cond_timedwait = %d pSession->resp is %u", __func__, rc, pSession->resp); |
| 4562 | pSession->respRecvd = false; /* Reset the user response flag for the next session*/ |
| 4563 | |
| 4564 | // adding this check to support modem restart, in which case, we need the thread |
| 4565 | // to exit without calling sending data. We made sure that rawRequest is NULL in |
| 4566 | // loc_eng_ni_reset_on_engine_restart() |
| 4567 | GnssAdapter* adapter = pSession->adapter; |
| 4568 | GnssNiResponse resp; |
| 4569 | void* rawRequest = NULL; |
| 4570 | bool sendResponse = false; |
| 4571 | |
| 4572 | if (NULL != pSession->rawRequest) { |
| 4573 | if (pSession->resp != GNSS_NI_RESPONSE_IGNORE) { |
| 4574 | resp = pSession->resp; |
| 4575 | rawRequest = pSession->rawRequest; |
| 4576 | sendResponse = true; |
| 4577 | } else { |
| 4578 | free(pSession->rawRequest); |
| 4579 | } |
| 4580 | pSession->rawRequest = NULL; |
| 4581 | } |
| 4582 | pthread_mutex_unlock(&pSession->tLock); |
| 4583 | |
| 4584 | pSession->respTimeLeft = 0; |
| 4585 | pSession->reqID = 0; |
| 4586 | |
| 4587 | if (sendResponse) { |
| 4588 | adapter->gnssNiResponseCommand(resp, rawRequest); |
| 4589 | } |
| 4590 | |
| 4591 | return NULL; |
| 4592 | } |
| 4593 | |
| 4594 | bool |
| 4595 | GnssAdapter::requestNiNotify(const GnssNiNotification& notify, const void* data, |
| 4596 | const bool bInformNiAccept) |
| 4597 | { |
| 4598 | NiSession* pSession = NULL; |
| 4599 | gnssNiCallback gnssNiCb = nullptr; |
| 4600 | |
| 4601 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4602 | if (nullptr != it->second.gnssNiCb) { |
| 4603 | gnssNiCb = it->second.gnssNiCb; |
| 4604 | break; |
| 4605 | } |
| 4606 | } |
| 4607 | if (nullptr == gnssNiCb) { |
| 4608 | if (GNSS_NI_TYPE_EMERGENCY_SUPL == notify.type) { |
| 4609 | if (bInformNiAccept) { |
| 4610 | mLocApi->informNiResponse(GNSS_NI_RESPONSE_ACCEPT, data); |
| 4611 | NiData& niData = getNiData(); |
| 4612 | // ignore any SUPL NI non-Es session if a SUPL NI ES is accepted |
| 4613 | if (NULL != niData.session.rawRequest) { |
| 4614 | pthread_mutex_lock(&niData.session.tLock); |
| 4615 | niData.session.resp = GNSS_NI_RESPONSE_IGNORE; |
| 4616 | niData.session.respRecvd = true; |
| 4617 | pthread_cond_signal(&niData.session.tCond); |
| 4618 | pthread_mutex_unlock(&niData.session.tLock); |
| 4619 | } |
| 4620 | } |
| 4621 | } |
| 4622 | EXIT_LOG(%s, "no clients with gnssNiCb."); |
| 4623 | return false; |
| 4624 | } |
| 4625 | |
| 4626 | if (notify.type == GNSS_NI_TYPE_EMERGENCY_SUPL) { |
| 4627 | if (NULL != mNiData.sessionEs.rawRequest) { |
| 4628 | LOC_LOGI("%s]: supl es NI in progress, new supl es NI ignored, type: %d", |
| 4629 | __func__, notify.type); |
| 4630 | if (NULL != data) { |
| 4631 | free((void*)data); |
| 4632 | } |
| 4633 | } else { |
| 4634 | pSession = &mNiData.sessionEs; |
| 4635 | } |
| 4636 | } else { |
| 4637 | if (NULL != mNiData.session.rawRequest || |
| 4638 | NULL != mNiData.sessionEs.rawRequest) { |
| 4639 | LOC_LOGI("%s]: supl NI in progress, new supl NI ignored, type: %d", |
| 4640 | __func__, notify.type); |
| 4641 | if (NULL != data) { |
| 4642 | free((void*)data); |
| 4643 | } |
| 4644 | } else { |
| 4645 | pSession = &mNiData.session; |
| 4646 | } |
| 4647 | } |
| 4648 | |
| 4649 | if (pSession) { |
| 4650 | /* Save request */ |
| 4651 | pSession->rawRequest = (void*)data; |
| 4652 | pSession->reqID = ++mNiData.reqIDCounter; |
| 4653 | pSession->adapter = this; |
| 4654 | |
| 4655 | int sessionId = pSession->reqID; |
| 4656 | |
| 4657 | /* For robustness, spawn a thread at this point to timeout to clear up the notification |
| 4658 | * status, even though the OEM layer in java does not do so. |
| 4659 | **/ |
| 4660 | pSession->respTimeLeft = |
| 4661 | 5 + (notify.timeout != 0 ? notify.timeout : LOC_NI_NO_RESPONSE_TIME); |
| 4662 | |
| 4663 | int rc = 0; |
| 4664 | rc = pthread_create(&pSession->thread, NULL, niThreadProc, pSession); |
| 4665 | if (rc) { |
| 4666 | LOC_LOGE("%s]: Loc NI thread is not created.", __func__); |
| 4667 | } |
| 4668 | rc = pthread_detach(pSession->thread); |
| 4669 | if (rc) { |
| 4670 | LOC_LOGE("%s]: Loc NI thread is not detached.", __func__); |
| 4671 | } |
| 4672 | |
| 4673 | if (nullptr != gnssNiCb) { |
| 4674 | gnssNiCb(sessionId, notify); |
| 4675 | } |
| 4676 | } |
| 4677 | |
| 4678 | return true; |
| 4679 | } |
| 4680 | |
| 4681 | void |
| 4682 | GnssAdapter::reportGnssMeasurementsEvent(const GnssMeasurements& gnssMeasurements, |
| 4683 | int msInWeek) |
| 4684 | { |
| 4685 | LOC_LOGD("%s]: msInWeek=%d", __func__, msInWeek); |
| 4686 | |
| 4687 | if (0 != gnssMeasurements.gnssMeasNotification.count) { |
| 4688 | struct MsgReportGnssMeasurementData : public LocMsg { |
| 4689 | GnssAdapter& mAdapter; |
| 4690 | GnssMeasurements mGnssMeasurements; |
| 4691 | GnssMeasurementsNotification mMeasurementsNotify; |
| 4692 | inline MsgReportGnssMeasurementData(GnssAdapter& adapter, |
| 4693 | const GnssMeasurements& gnssMeasurements, |
| 4694 | int msInWeek) : |
| 4695 | LocMsg(), |
| 4696 | mAdapter(adapter), |
| 4697 | mMeasurementsNotify(gnssMeasurements.gnssMeasNotification) { |
| 4698 | if (-1 != msInWeek) { |
| 4699 | mAdapter.getAgcInformation(mMeasurementsNotify, msInWeek); |
| 4700 | } |
| 4701 | } |
| 4702 | inline virtual void proc() const { |
| 4703 | mAdapter.reportGnssMeasurementData(mMeasurementsNotify); |
| 4704 | } |
| 4705 | }; |
| 4706 | |
| 4707 | sendMsg(new MsgReportGnssMeasurementData(*this, gnssMeasurements, msInWeek)); |
| 4708 | } |
| 4709 | mEngHubProxy->gnssReportSvMeasurement(gnssMeasurements.gnssSvMeasurementSet); |
| 4710 | if (mDGnssNeedReport) { |
| 4711 | reportDGnssDataUsable(gnssMeasurements.gnssSvMeasurementSet); |
| 4712 | } |
| 4713 | } |
| 4714 | |
| 4715 | void |
| 4716 | GnssAdapter::reportGnssMeasurementData(const GnssMeasurementsNotification& measurements) |
| 4717 | { |
| 4718 | for (auto it=mClientData.begin(); it != mClientData.end(); ++it) { |
| 4719 | if (nullptr != it->second.gnssMeasurementsCb) { |
| 4720 | it->second.gnssMeasurementsCb(measurements); |
| 4721 | } |
| 4722 | } |
| 4723 | } |
| 4724 | |
| 4725 | void |
| 4726 | GnssAdapter::reportDGnssDataUsable(const GnssSvMeasurementSet &svMeasurementSet) |
| 4727 | { |
| 4728 | uint32_t i; |
| 4729 | bool preDGnssDataUsage = mDGnssDataUsage; |
| 4730 | |
| 4731 | mDGnssDataUsage = false; |
| 4732 | for (i = 0; i < svMeasurementSet.svMeasCount; i++) { |
| 4733 | const Gnss_SVMeasurementStructType& svMeas = svMeasurementSet.svMeas[i]; |
| 4734 | if (svMeas.dgnssSvMeas.dgnssMeasStatus) { |
| 4735 | mDGnssDataUsage = true; |
| 4736 | break; |
| 4737 | } |
| 4738 | } |
| 4739 | if (mDGnssDataUsage != preDGnssDataUsage) { |
| 4740 | if (mCdfwInterface) { |
| 4741 | mCdfwInterface->reportUsable(mQDgnssListenerHDL, mDGnssDataUsage); |
| 4742 | } |
| 4743 | } |
| 4744 | } |
| 4745 | |
| 4746 | void |
| 4747 | GnssAdapter::reportSvPolynomialEvent(GnssSvPolynomial &svPolynomial) |
| 4748 | { |
| 4749 | LOC_LOGD("%s]: ", __func__); |
| 4750 | mEngHubProxy->gnssReportSvPolynomial(svPolynomial); |
| 4751 | } |
| 4752 | |
| 4753 | void |
| 4754 | GnssAdapter::reportSvEphemerisEvent(GnssSvEphemerisReport & svEphemeris) |
| 4755 | { |
| 4756 | LOC_LOGD("%s]:", __func__); |
| 4757 | mEngHubProxy->gnssReportSvEphemeris(svEphemeris); |
| 4758 | } |
| 4759 | |
| 4760 | |
| 4761 | bool |
| 4762 | GnssAdapter::requestOdcpiEvent(OdcpiRequestInfo& request) |
| 4763 | { |
| 4764 | struct MsgRequestOdcpi : public LocMsg { |
| 4765 | GnssAdapter& mAdapter; |
| 4766 | OdcpiRequestInfo mOdcpiRequest; |
| 4767 | inline MsgRequestOdcpi(GnssAdapter& adapter, OdcpiRequestInfo& request) : |
| 4768 | LocMsg(), |
| 4769 | mAdapter(adapter), |
| 4770 | mOdcpiRequest(request) {} |
| 4771 | inline virtual void proc() const { |
| 4772 | mAdapter.requestOdcpi(mOdcpiRequest); |
| 4773 | } |
| 4774 | }; |
| 4775 | |
| 4776 | sendMsg(new MsgRequestOdcpi(*this, request)); |
| 4777 | return true; |
| 4778 | } |
| 4779 | |
| 4780 | void GnssAdapter::requestOdcpi(const OdcpiRequestInfo& request) |
| 4781 | { |
| 4782 | if (nullptr != mOdcpiRequestCb) { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4783 | bool sendEmergencyCallStatusEvent = false; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4784 | LOC_LOGd("request: type %d, tbf %d, isEmergency %d" |
| 4785 | " requestActive: %d timerActive: %d", |
| 4786 | request.type, request.tbfMillis, request.isEmergencyMode, |
| 4787 | mOdcpiRequestActive, mOdcpiTimer.isActive()); |
| 4788 | // ODCPI START and ODCPI STOP from modem can come in quick succession |
| 4789 | // so the mOdcpiTimer helps avoid spamming the framework as well as |
| 4790 | // extending the odcpi session past 30 seconds if needed |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4791 | |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4792 | if (ODCPI_REQUEST_TYPE_START == request.type) { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4793 | if (!(mOdcpiStateMask & ODCPI_REQ_ACTIVE) && false == mOdcpiTimer.isActive()) { |
| 4794 | fireOdcpiRequest(request); |
| 4795 | mOdcpiStateMask |= ODCPI_REQ_ACTIVE; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4796 | mOdcpiTimer.start(); |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4797 | sendEmergencyCallStatusEvent = true; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4798 | // if the current active odcpi session is non-emergency, and the new |
| 4799 | // odcpi request is emergency, replace the odcpi request with new request |
| 4800 | // and restart the timer |
| 4801 | } else if (false == mOdcpiRequest.isEmergencyMode && |
| 4802 | true == request.isEmergencyMode) { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4803 | fireOdcpiRequest(request); |
| 4804 | mOdcpiStateMask |= ODCPI_REQ_ACTIVE; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4805 | if (true == mOdcpiTimer.isActive()) { |
| 4806 | mOdcpiTimer.restart(); |
| 4807 | } else { |
| 4808 | mOdcpiTimer.start(); |
| 4809 | } |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4810 | sendEmergencyCallStatusEvent = true; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4811 | // if ODCPI request is not active but the timer is active, then |
| 4812 | // just update the active state and wait for timer to expire |
| 4813 | // before requesting new ODCPI to avoid spamming ODCPI requests |
| 4814 | } else if (false == mOdcpiRequestActive && true == mOdcpiTimer.isActive()) { |
| 4815 | mOdcpiRequestActive = true; |
| 4816 | } |
| 4817 | mOdcpiRequest = request; |
| 4818 | // the request is being stopped, but allow timer to expire first |
| 4819 | // before stopping the timer just in case more ODCPI requests come |
| 4820 | // to avoid spamming more odcpi requests to the framework |
| 4821 | } else if (ODCPI_REQUEST_TYPE_STOP == request.type) { |
| 4822 | LOC_LOGd("request: type %d, isEmergency %d", request.type, request.isEmergencyMode); |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4823 | fireOdcpiRequest(request); |
| 4824 | mOdcpiStateMask = 0; |
| 4825 | sendEmergencyCallStatusEvent = true; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4826 | } else { |
| 4827 | LOC_LOGE("Invalid ODCPI request type.."); |
| 4828 | } |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4829 | |
| 4830 | // Raise InEmergencyCall event |
| 4831 | if (sendEmergencyCallStatusEvent && request.isEmergencyMode) { |
| 4832 | SystemStatus* systemstatus = getSystemStatus(); |
| 4833 | if (nullptr != systemstatus) { |
| 4834 | systemstatus->eventInEmergencyCall(0 != mOdcpiStateMask); |
| 4835 | } else { |
| 4836 | LOC_LOGe("Failed to get system status instance."); |
| 4837 | } |
| 4838 | } |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4839 | } else { |
| 4840 | LOC_LOGw("ODCPI request not supported"); |
| 4841 | } |
| 4842 | } |
| 4843 | |
| 4844 | bool GnssAdapter::reportDeleteAidingDataEvent(GnssAidingData& aidingData) |
| 4845 | { |
| 4846 | LOC_LOGD("%s]:", __func__); |
| 4847 | mEngHubProxy->gnssDeleteAidingData(aidingData); |
| 4848 | return true; |
| 4849 | } |
| 4850 | |
| 4851 | bool GnssAdapter::reportKlobucharIonoModelEvent(GnssKlobucharIonoModel & ionoModel) |
| 4852 | { |
| 4853 | LOC_LOGD("%s]:", __func__); |
| 4854 | mEngHubProxy->gnssReportKlobucharIonoModel(ionoModel); |
| 4855 | return true; |
| 4856 | } |
| 4857 | |
| 4858 | bool GnssAdapter::reportGnssAdditionalSystemInfoEvent( |
| 4859 | GnssAdditionalSystemInfo & additionalSystemInfo) |
| 4860 | { |
| 4861 | LOC_LOGD("%s]:", __func__); |
| 4862 | mEngHubProxy->gnssReportAdditionalSystemInfo(additionalSystemInfo); |
| 4863 | return true; |
| 4864 | } |
| 4865 | |
| 4866 | bool GnssAdapter::reportQwesCapabilities( |
| 4867 | const std::unordered_map<LocationQwesFeatureType, bool> &featureMap) |
| 4868 | { |
| 4869 | struct MsgReportQwesFeatureStatus : public LocMsg { |
| 4870 | GnssAdapter& mAdapter; |
| 4871 | const std::unordered_map<LocationQwesFeatureType, bool> mFeatureMap; |
| 4872 | inline MsgReportQwesFeatureStatus(GnssAdapter& adapter, |
| 4873 | const std::unordered_map<LocationQwesFeatureType, bool> &featureMap) : |
| 4874 | LocMsg(), |
| 4875 | mAdapter(adapter), |
| 4876 | mFeatureMap(std::move(featureMap)) {} |
| 4877 | inline virtual void proc() const { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4878 | LOC_LOGi("ReportQwesFeatureStatus After caps %" PRIx64 " ", |
| 4879 | mAdapter.getCapabilities()); |
| 4880 | mAdapter.broadcastCapabilities(mAdapter.getCapabilities()); |
| 4881 | } |
| 4882 | }; |
| 4883 | |
| 4884 | sendMsg(new MsgReportQwesFeatureStatus(*this, featureMap)); |
| 4885 | return true; |
| 4886 | } |
| 4887 | |
| 4888 | void GnssAdapter::initOdcpiCommand(const OdcpiRequestCallback& callback, |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4889 | OdcpiPrioritytype priority, |
| 4890 | OdcpiCallbackTypeMask typeMask) |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4891 | { |
| 4892 | struct MsgInitOdcpi : public LocMsg { |
| 4893 | GnssAdapter& mAdapter; |
| 4894 | OdcpiRequestCallback mOdcpiCb; |
| 4895 | OdcpiPrioritytype mPriority; |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4896 | OdcpiCallbackTypeMask mTypeMask; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4897 | inline MsgInitOdcpi(GnssAdapter& adapter, |
| 4898 | const OdcpiRequestCallback& callback, |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4899 | OdcpiPrioritytype priority, |
| 4900 | OdcpiCallbackTypeMask typeMask) : |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4901 | LocMsg(), |
| 4902 | mAdapter(adapter), |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4903 | mOdcpiCb(callback), mPriority(priority), |
| 4904 | mTypeMask(typeMask) {} |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4905 | inline virtual void proc() const { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4906 | mAdapter.initOdcpi(mOdcpiCb, mPriority, mTypeMask); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4907 | } |
| 4908 | }; |
| 4909 | |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4910 | sendMsg(new MsgInitOdcpi(*this, callback, priority, typeMask)); |
| 4911 | } |
| 4912 | |
| 4913 | void GnssAdapter::deRegisterOdcpiCommand(OdcpiPrioritytype priority, |
| 4914 | OdcpiCallbackTypeMask typeMask) { |
| 4915 | struct MsgDeRegisterNonEsOdcpi : public LocMsg { |
| 4916 | GnssAdapter& mAdapter; |
| 4917 | OdcpiPrioritytype mPriority; |
| 4918 | OdcpiCallbackTypeMask mTypeMask; |
| 4919 | inline MsgDeRegisterNonEsOdcpi(GnssAdapter& adapter, |
| 4920 | OdcpiPrioritytype priority, |
| 4921 | OdcpiCallbackTypeMask typeMask) : |
| 4922 | LocMsg(), |
| 4923 | mAdapter(adapter), |
| 4924 | mPriority(priority), |
| 4925 | mTypeMask(typeMask) {} |
| 4926 | inline virtual void proc() const { |
| 4927 | mAdapter.deRegisterOdcpi(mPriority, mTypeMask); |
| 4928 | } |
| 4929 | }; |
| 4930 | |
| 4931 | sendMsg(new MsgDeRegisterNonEsOdcpi(*this, priority, typeMask)); |
| 4932 | } |
| 4933 | |
| 4934 | void GnssAdapter::fireOdcpiRequest(const OdcpiRequestInfo& request) { |
| 4935 | if (request.isEmergencyMode) { |
| 4936 | mOdcpiRequestCb(request); |
| 4937 | } else { |
| 4938 | std::unordered_map<OdcpiPrioritytype, OdcpiRequestCallback>::iterator iter; |
| 4939 | for (int priority = ODCPI_HANDLER_PRIORITY_HIGH; |
| 4940 | priority >= ODCPI_HANDLER_PRIORITY_LOW && iter == mNonEsOdcpiReqCbMap.end(); |
| 4941 | priority--) { |
| 4942 | iter = mNonEsOdcpiReqCbMap.find((OdcpiPrioritytype)priority); |
| 4943 | } |
| 4944 | if (iter != mNonEsOdcpiReqCbMap.end()) { |
| 4945 | iter->second(request); |
| 4946 | } |
| 4947 | } |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4948 | } |
| 4949 | |
| 4950 | void GnssAdapter::initOdcpi(const OdcpiRequestCallback& callback, |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 4951 | OdcpiPrioritytype priority, OdcpiCallbackTypeMask typeMask) { |
| 4952 | if (typeMask & EMERGENCY_ODCPI) { |
| 4953 | LOC_LOGd("In priority: %d, Curr priority: %d", priority, mCallbackPriority); |
| 4954 | if (priority >= mCallbackPriority) { |
| 4955 | mOdcpiRequestCb = callback; |
| 4956 | mCallbackPriority = priority; |
| 4957 | /* Register for WIFI request */ |
| 4958 | updateEvtMask(LOC_API_ADAPTER_BIT_REQUEST_WIFI, |
| 4959 | LOC_REGISTRATION_MASK_ENABLED); |
| 4960 | } |
| 4961 | } |
| 4962 | if (typeMask & NON_EMERGENCY_ODCPI) { |
| 4963 | //If this is for non emergency odcpi, |
| 4964 | //Only set callback to mNonEsOdcpiReqCbMap according to its priority |
| 4965 | //Will overwrite callback with same priority in this map |
| 4966 | mNonEsOdcpiReqCbMap[priority] = callback; |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 4967 | } |
| 4968 | } |
| 4969 | |
| 4970 | void GnssAdapter::injectOdcpiCommand(const Location& location) |
| 4971 | { |
| 4972 | struct MsgInjectOdcpi : public LocMsg { |
| 4973 | GnssAdapter& mAdapter; |
| 4974 | Location mLocation; |
| 4975 | inline MsgInjectOdcpi(GnssAdapter& adapter, const Location& location) : |
| 4976 | LocMsg(), |
| 4977 | mAdapter(adapter), |
| 4978 | mLocation(location) {} |
| 4979 | inline virtual void proc() const { |
| 4980 | mAdapter.injectOdcpi(mLocation); |
| 4981 | } |
| 4982 | }; |
| 4983 | |
| 4984 | sendMsg(new MsgInjectOdcpi(*this, location)); |
| 4985 | } |
| 4986 | |
| 4987 | void GnssAdapter::injectOdcpi(const Location& location) |
| 4988 | { |
| 4989 | LOC_LOGd("ODCPI Injection: requestActive: %d timerActive: %d" |
| 4990 | "lat %.7f long %.7f", |
| 4991 | mOdcpiRequestActive, mOdcpiTimer.isActive(), |
| 4992 | location.latitude, location.longitude); |
| 4993 | |
| 4994 | mLocApi->injectPosition(location, true); |
| 4995 | } |
| 4996 | |
| 4997 | // Called in the context of LocTimer thread |
| 4998 | void OdcpiTimer::timeOutCallback() |
| 4999 | { |
| 5000 | if (nullptr != mAdapter) { |
| 5001 | mAdapter->odcpiTimerExpireEvent(); |
| 5002 | } |
| 5003 | } |
| 5004 | |
| 5005 | // Called in the context of LocTimer thread |
| 5006 | void GnssAdapter::odcpiTimerExpireEvent() |
| 5007 | { |
| 5008 | struct MsgOdcpiTimerExpire : public LocMsg { |
| 5009 | GnssAdapter& mAdapter; |
| 5010 | inline MsgOdcpiTimerExpire(GnssAdapter& adapter) : |
| 5011 | LocMsg(), |
| 5012 | mAdapter(adapter) {} |
| 5013 | inline virtual void proc() const { |
| 5014 | mAdapter.odcpiTimerExpire(); |
| 5015 | } |
| 5016 | }; |
| 5017 | sendMsg(new MsgOdcpiTimerExpire(*this)); |
| 5018 | } |
| 5019 | void GnssAdapter::odcpiTimerExpire() |
| 5020 | { |
| 5021 | LOC_LOGd("requestActive: %d timerActive: %d", |
| 5022 | mOdcpiRequestActive, mOdcpiTimer.isActive()); |
| 5023 | |
| 5024 | // if ODCPI request is still active after timer |
| 5025 | // expires, request again and restart timer |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 5026 | if (mOdcpiStateMask & ODCPI_REQ_ACTIVE) { |
| 5027 | fireOdcpiRequest(mOdcpiRequest); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5028 | mOdcpiTimer.restart(); |
| 5029 | } else { |
| 5030 | mOdcpiTimer.stop(); |
| 5031 | } |
| 5032 | } |
| 5033 | |
| 5034 | void |
| 5035 | GnssAdapter::invokeGnssEnergyConsumedCallback(uint64_t energyConsumedSinceFirstBoot) { |
| 5036 | if (mGnssEnergyConsumedCb) { |
| 5037 | mGnssEnergyConsumedCb(energyConsumedSinceFirstBoot); |
| 5038 | mGnssEnergyConsumedCb = nullptr; |
| 5039 | } |
| 5040 | } |
| 5041 | |
| 5042 | bool |
| 5043 | GnssAdapter::reportGnssEngEnergyConsumedEvent(uint64_t energyConsumedSinceFirstBoot){ |
| 5044 | LOC_LOGD("%s]: %" PRIu64 " ", __func__, energyConsumedSinceFirstBoot); |
| 5045 | |
| 5046 | struct MsgReportGnssGnssEngEnergyConsumed : public LocMsg { |
| 5047 | GnssAdapter& mAdapter; |
| 5048 | uint64_t mGnssEnergyConsumedSinceFirstBoot; |
| 5049 | inline MsgReportGnssGnssEngEnergyConsumed(GnssAdapter& adapter, |
| 5050 | uint64_t energyConsumed) : |
| 5051 | LocMsg(), |
| 5052 | mAdapter(adapter), |
| 5053 | mGnssEnergyConsumedSinceFirstBoot(energyConsumed) {} |
| 5054 | inline virtual void proc() const { |
| 5055 | mAdapter.invokeGnssEnergyConsumedCallback(mGnssEnergyConsumedSinceFirstBoot); |
| 5056 | } |
| 5057 | }; |
| 5058 | |
| 5059 | sendMsg(new MsgReportGnssGnssEngEnergyConsumed(*this, energyConsumedSinceFirstBoot)); |
| 5060 | return true; |
| 5061 | } |
| 5062 | |
| 5063 | void GnssAdapter::initDefaultAgps() { |
| 5064 | LOC_LOGD("%s]: ", __func__); |
| 5065 | void *handle = nullptr; |
| 5066 | |
| 5067 | LocAgpsGetAgpsCbInfo getAgpsCbInfo = |
| 5068 | (LocAgpsGetAgpsCbInfo)dlGetSymFromLib(handle, "libloc_net_iface.so", |
| 5069 | "LocNetIfaceAgps_getAgpsCbInfo"); |
| 5070 | // Below step is to make sure we init nativeAgpsHandler |
| 5071 | // for Android platforms only |
| 5072 | AgpsCbInfo cbInfo = {}; |
| 5073 | if (nullptr != getAgpsCbInfo) { |
| 5074 | cbInfo = getAgpsCbInfo(agpsOpenResultCb, agpsCloseResultCb, this); |
| 5075 | } else { |
| 5076 | cbInfo = mNativeAgpsHandler.getAgpsCbInfo(); |
| 5077 | } |
| 5078 | |
| 5079 | if (cbInfo.statusV4Cb == nullptr) { |
| 5080 | LOC_LOGE("%s]: statusV4Cb is nullptr!", __func__); |
| 5081 | dlclose(handle); |
| 5082 | return; |
| 5083 | } |
| 5084 | |
| 5085 | initAgps(cbInfo); |
| 5086 | } |
| 5087 | |
| 5088 | void GnssAdapter::initDefaultAgpsCommand() { |
| 5089 | LOC_LOGD("%s]: ", __func__); |
| 5090 | |
| 5091 | struct MsgInitDefaultAgps : public LocMsg { |
| 5092 | GnssAdapter& mAdapter; |
| 5093 | inline MsgInitDefaultAgps(GnssAdapter& adapter) : |
| 5094 | LocMsg(), |
| 5095 | mAdapter(adapter) { |
| 5096 | } |
| 5097 | inline virtual void proc() const { |
| 5098 | mAdapter.initDefaultAgps(); |
| 5099 | } |
| 5100 | }; |
| 5101 | |
| 5102 | sendMsg(new MsgInitDefaultAgps(*this)); |
| 5103 | } |
| 5104 | |
| 5105 | /* INIT LOC AGPS MANAGER */ |
| 5106 | |
| 5107 | void GnssAdapter::initAgps(const AgpsCbInfo& cbInfo) { |
| 5108 | LOC_LOGD("%s]:cbInfo.atlType - %d", __func__, cbInfo.atlType); |
| 5109 | |
| 5110 | if (!((ContextBase::mGps_conf.CAPABILITIES & LOC_GPS_CAPABILITY_MSB) || |
| 5111 | (ContextBase::mGps_conf.CAPABILITIES & LOC_GPS_CAPABILITY_MSA))) { |
| 5112 | return; |
| 5113 | } |
| 5114 | |
| 5115 | mAgpsManager.createAgpsStateMachines(cbInfo); |
| 5116 | /* Register for AGPS event mask */ |
| 5117 | updateEvtMask(LOC_API_ADAPTER_BIT_LOCATION_SERVER_REQUEST, |
| 5118 | LOC_REGISTRATION_MASK_ENABLED); |
| 5119 | } |
| 5120 | |
| 5121 | void GnssAdapter::initAgpsCommand(const AgpsCbInfo& cbInfo){ |
| 5122 | LOC_LOGI("GnssAdapter::initAgpsCommand"); |
| 5123 | |
| 5124 | /* Message to initialize AGPS module */ |
| 5125 | struct AgpsMsgInit: public LocMsg { |
| 5126 | const AgpsCbInfo mCbInfo; |
| 5127 | GnssAdapter& mAdapter; |
| 5128 | |
| 5129 | inline AgpsMsgInit(const AgpsCbInfo& cbInfo, |
| 5130 | GnssAdapter& adapter) : |
| 5131 | LocMsg(), mCbInfo(cbInfo), mAdapter(adapter) { |
| 5132 | LOC_LOGV("AgpsMsgInit"); |
| 5133 | } |
| 5134 | |
| 5135 | inline virtual void proc() const { |
| 5136 | LOC_LOGV("AgpsMsgInit::proc()"); |
| 5137 | mAdapter.initAgps(mCbInfo); |
| 5138 | } |
| 5139 | }; |
| 5140 | |
| 5141 | /* Send message to initialize AGPS Manager */ |
| 5142 | sendMsg(new AgpsMsgInit(cbInfo, *this)); |
| 5143 | } |
| 5144 | |
| 5145 | void GnssAdapter::initNfwCommand(const NfwCbInfo& cbInfo) { |
| 5146 | LOC_LOGi("GnssAdapter::initNfwCommand"); |
| 5147 | |
| 5148 | /* Message to initialize NFW */ |
| 5149 | struct MsgInitNfw : public LocMsg { |
| 5150 | const NfwCbInfo mCbInfo; |
| 5151 | GnssAdapter& mAdapter; |
| 5152 | |
| 5153 | inline MsgInitNfw(const NfwCbInfo& cbInfo, |
| 5154 | GnssAdapter& adapter) : |
| 5155 | LocMsg(), mCbInfo(cbInfo), mAdapter(adapter) { |
| 5156 | LOC_LOGv("MsgInitNfw"); |
| 5157 | } |
| 5158 | |
| 5159 | inline virtual void proc() const { |
| 5160 | LOC_LOGv("MsgInitNfw::proc()"); |
| 5161 | mAdapter.initNfw(mCbInfo); |
| 5162 | } |
| 5163 | }; |
| 5164 | |
| 5165 | /* Send message to initialize NFW */ |
| 5166 | sendMsg(new MsgInitNfw(cbInfo, *this)); |
| 5167 | } |
| 5168 | |
| 5169 | void GnssAdapter::reportNfwNotificationEvent(GnssNfwNotification& notification) { |
| 5170 | LOC_LOGi("GnssAdapter::reportNfwNotificationEvent"); |
| 5171 | |
| 5172 | struct MsgReportNfwNotification : public LocMsg { |
| 5173 | const GnssNfwNotification mNotification; |
| 5174 | GnssAdapter& mAdapter; |
| 5175 | |
| 5176 | inline MsgReportNfwNotification(const GnssNfwNotification& notification, |
| 5177 | GnssAdapter& adapter) : |
| 5178 | LocMsg(), mNotification(notification), mAdapter(adapter) { |
| 5179 | LOC_LOGv("MsgReportNfwNotification"); |
| 5180 | } |
| 5181 | |
| 5182 | inline virtual void proc() const { |
| 5183 | LOC_LOGv("MsgReportNfwNotification::proc()"); |
| 5184 | mAdapter.reportNfwNotification(mNotification); |
| 5185 | } |
| 5186 | }; |
| 5187 | |
| 5188 | sendMsg(new MsgReportNfwNotification(notification, *this)); |
| 5189 | } |
| 5190 | |
| 5191 | /* GnssAdapter::requestATL |
| 5192 | * Method triggered in QMI thread as part of handling below message: |
| 5193 | * eQMI_LOC_SERVER_REQUEST_OPEN_V02 |
| 5194 | * Triggers the AGPS state machine to setup AGPS call for below WWAN types: |
| 5195 | * eQMI_LOC_WWAN_TYPE_INTERNET_V02 |
| 5196 | * eQMI_LOC_WWAN_TYPE_AGNSS_V02 |
| 5197 | * eQMI_LOC_WWAN_TYPE_AGNSS_EMERGENCY_V02 */ |
| 5198 | bool GnssAdapter::requestATL(int connHandle, LocAGpsType agpsType, |
| 5199 | LocApnTypeMask apnTypeMask){ |
| 5200 | |
| 5201 | LOC_LOGI("GnssAdapter::requestATL handle=%d agpsType=0x%X apnTypeMask=0x%X", |
| 5202 | connHandle, agpsType, apnTypeMask); |
| 5203 | |
| 5204 | sendMsg( new AgpsMsgRequestATL( |
| 5205 | &mAgpsManager, connHandle, (AGpsExtType)agpsType, |
| 5206 | apnTypeMask)); |
| 5207 | |
| 5208 | return true; |
| 5209 | } |
| 5210 | |
| 5211 | /* GnssAdapter::releaseATL |
| 5212 | * Method triggered in QMI thread as part of handling below message: |
| 5213 | * eQMI_LOC_SERVER_REQUEST_CLOSE_V02 |
| 5214 | * Triggers teardown of an existing AGPS call */ |
| 5215 | bool GnssAdapter::releaseATL(int connHandle){ |
| 5216 | |
| 5217 | LOC_LOGI("GnssAdapter::releaseATL"); |
| 5218 | |
| 5219 | /* Release SUPL/INTERNET/SUPL_ES ATL */ |
| 5220 | struct AgpsMsgReleaseATL: public LocMsg { |
| 5221 | |
| 5222 | AgpsManager* mAgpsManager; |
| 5223 | int mConnHandle; |
| 5224 | |
| 5225 | inline AgpsMsgReleaseATL(AgpsManager* agpsManager, int connHandle) : |
| 5226 | LocMsg(), mAgpsManager(agpsManager), mConnHandle(connHandle) { |
| 5227 | |
| 5228 | LOC_LOGV("AgpsMsgReleaseATL"); |
| 5229 | } |
| 5230 | |
| 5231 | inline virtual void proc() const { |
| 5232 | |
| 5233 | LOC_LOGV("AgpsMsgReleaseATL::proc()"); |
| 5234 | mAgpsManager->releaseATL(mConnHandle); |
| 5235 | } |
| 5236 | }; |
| 5237 | |
| 5238 | sendMsg( new AgpsMsgReleaseATL(&mAgpsManager, connHandle)); |
| 5239 | |
| 5240 | return true; |
| 5241 | } |
| 5242 | |
| 5243 | void GnssAdapter::reportPdnTypeFromWds(int pdnType, AGpsExtType agpsType, std::string apnName, |
| 5244 | AGpsBearerType bearerType) { |
| 5245 | LOC_LOGd("pdnType from WDS QMI: %d, agpsType: %d, apnName: %s, bearerType: %d", |
| 5246 | pdnType, agpsType, apnName.c_str(), bearerType); |
| 5247 | |
| 5248 | struct MsgReportAtlPdn : public LocMsg { |
| 5249 | GnssAdapter& mAdapter; |
| 5250 | int mPdnType; |
| 5251 | AgpsManager* mAgpsManager; |
| 5252 | AGpsExtType mAgpsType; |
| 5253 | string mApnName; |
| 5254 | AGpsBearerType mBearerType; |
| 5255 | |
| 5256 | inline MsgReportAtlPdn(GnssAdapter& adapter, int pdnType, |
| 5257 | AgpsManager* agpsManager, AGpsExtType agpsType, |
| 5258 | const string& apnName, AGpsBearerType bearerType) : |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 5259 | LocMsg(), mAdapter(adapter), mPdnType(pdnType), |
| 5260 | mAgpsManager(agpsManager), mAgpsType(agpsType), |
| 5261 | mApnName(apnName), mBearerType(bearerType) {} |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5262 | inline virtual void proc() const { |
| 5263 | mAgpsManager->reportAtlOpenSuccess(mAgpsType, |
| 5264 | const_cast<char*>(mApnName.c_str()), |
| 5265 | mApnName.length(), mPdnType<=0? mBearerType:mPdnType); |
| 5266 | } |
| 5267 | }; |
| 5268 | |
| 5269 | AGpsBearerType atlPdnType = (pdnType+1) & 3; // convert WDS QMI pdn type to AgpsBearerType |
| 5270 | sendMsg(new MsgReportAtlPdn(*this, atlPdnType, &mAgpsManager, |
| 5271 | agpsType, apnName, bearerType)); |
| 5272 | } |
| 5273 | |
| 5274 | |
| 5275 | void GnssAdapter::dataConnOpenCommand( |
| 5276 | AGpsExtType agpsType, |
| 5277 | const char* apnName, int apnLen, AGpsBearerType bearerType){ |
| 5278 | |
| 5279 | LOC_LOGI("GnssAdapter::frameworkDataConnOpen"); |
| 5280 | |
| 5281 | struct AgpsMsgAtlOpenSuccess: public LocMsg { |
| 5282 | GnssAdapter& mAdapter; |
| 5283 | AgpsManager* mAgpsManager; |
| 5284 | AGpsExtType mAgpsType; |
| 5285 | char* mApnName; |
| 5286 | AGpsBearerType mBearerType; |
| 5287 | |
| 5288 | inline AgpsMsgAtlOpenSuccess(GnssAdapter& adapter, AgpsManager* agpsManager, |
| 5289 | AGpsExtType agpsType, const char* apnName, int apnLen, AGpsBearerType bearerType) : |
Albert I | b8416c9 | 2021-06-25 19:34:31 +0800 | [diff] [blame] | 5290 | LocMsg(), mAdapter(adapter), mAgpsManager(agpsManager), mAgpsType(agpsType), |
| 5291 | mApnName(new char[apnLen + 1]), mBearerType(bearerType) { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5292 | |
| 5293 | LOC_LOGV("AgpsMsgAtlOpenSuccess"); |
| 5294 | if (mApnName == nullptr) { |
| 5295 | LOC_LOGE("%s] new allocation failed, fatal error.", __func__); |
| 5296 | // Reporting the failure here |
| 5297 | mAgpsManager->reportAtlClosed(mAgpsType); |
| 5298 | return; |
| 5299 | } |
| 5300 | memcpy(mApnName, apnName, apnLen); |
| 5301 | mApnName[apnLen] = 0; |
| 5302 | } |
| 5303 | |
| 5304 | inline ~AgpsMsgAtlOpenSuccess() { |
| 5305 | delete[] mApnName; |
| 5306 | } |
| 5307 | |
| 5308 | inline virtual void proc() const { |
| 5309 | LOC_LOGv("AgpsMsgAtlOpenSuccess::proc()"); |
| 5310 | string apn(mApnName); |
| 5311 | //Use QMI WDS API to query IP Protocol from modem profile |
| 5312 | void* libHandle = nullptr; |
| 5313 | getPdnTypeFromWds* getPdnTypeFunc = (getPdnTypeFromWds*)dlGetSymFromLib(libHandle, |
| 5314 | #ifdef USE_GLIB |
| 5315 | "libloc_api_wds.so", "_Z10getPdnTypeRKNSt7__cxx1112basic_string"\ |
| 5316 | "IcSt11char_traitsIcESaIcEEESt8functionIFviEE"); |
| 5317 | #else |
| 5318 | "libloc_api_wds.so", "_Z10getPdnTypeRKNSt3__112basic_stringIcNS_11char_traits"\ |
| 5319 | "IcEENS_9allocatorIcEEEENS_8functionIFviEEE"); |
| 5320 | #endif |
| 5321 | |
| 5322 | std::function<void(int)> wdsPdnTypeCb = std::bind(&GnssAdapter::reportPdnTypeFromWds, |
| 5323 | &mAdapter, std::placeholders::_1, mAgpsType, apn, mBearerType); |
| 5324 | if (getPdnTypeFunc != nullptr) { |
| 5325 | LOC_LOGv("dlGetSymFromLib success"); |
| 5326 | (*getPdnTypeFunc)(apn, wdsPdnTypeCb); |
| 5327 | } else { |
| 5328 | mAgpsManager->reportAtlOpenSuccess(mAgpsType, mApnName, apn.length(), mBearerType); |
| 5329 | } |
| 5330 | } |
| 5331 | }; |
| 5332 | // Added inital length checks for apnlen check to avoid security issues |
| 5333 | // In case of failure reporting the same |
| 5334 | if (NULL == apnName || apnLen > MAX_APN_LEN || (strlen(apnName) != apnLen)) { |
| 5335 | LOC_LOGe("%s]: incorrect apnlen length or incorrect apnName", __func__); |
| 5336 | mAgpsManager.reportAtlClosed(agpsType); |
| 5337 | } else { |
| 5338 | sendMsg( new AgpsMsgAtlOpenSuccess(*this, |
| 5339 | &mAgpsManager, agpsType, apnName, apnLen, bearerType)); |
| 5340 | } |
| 5341 | } |
| 5342 | |
| 5343 | void GnssAdapter::dataConnClosedCommand(AGpsExtType agpsType){ |
| 5344 | |
| 5345 | LOC_LOGI("GnssAdapter::frameworkDataConnClosed"); |
| 5346 | |
| 5347 | struct AgpsMsgAtlClosed: public LocMsg { |
| 5348 | |
| 5349 | AgpsManager* mAgpsManager; |
| 5350 | AGpsExtType mAgpsType; |
| 5351 | |
| 5352 | inline AgpsMsgAtlClosed(AgpsManager* agpsManager, AGpsExtType agpsType) : |
| 5353 | LocMsg(), mAgpsManager(agpsManager), mAgpsType(agpsType) { |
| 5354 | |
| 5355 | LOC_LOGV("AgpsMsgAtlClosed"); |
| 5356 | } |
| 5357 | |
| 5358 | inline virtual void proc() const { |
| 5359 | |
| 5360 | LOC_LOGV("AgpsMsgAtlClosed::proc()"); |
| 5361 | mAgpsManager->reportAtlClosed(mAgpsType); |
| 5362 | } |
| 5363 | }; |
| 5364 | |
| 5365 | sendMsg( new AgpsMsgAtlClosed(&mAgpsManager, (AGpsExtType)agpsType)); |
| 5366 | } |
| 5367 | |
| 5368 | void GnssAdapter::dataConnFailedCommand(AGpsExtType agpsType){ |
| 5369 | |
| 5370 | LOC_LOGI("GnssAdapter::frameworkDataConnFailed"); |
| 5371 | |
| 5372 | struct AgpsMsgAtlOpenFailed: public LocMsg { |
| 5373 | |
| 5374 | AgpsManager* mAgpsManager; |
| 5375 | AGpsExtType mAgpsType; |
| 5376 | |
| 5377 | inline AgpsMsgAtlOpenFailed(AgpsManager* agpsManager, AGpsExtType agpsType) : |
| 5378 | LocMsg(), mAgpsManager(agpsManager), mAgpsType(agpsType) { |
| 5379 | |
| 5380 | LOC_LOGV("AgpsMsgAtlOpenFailed"); |
| 5381 | } |
| 5382 | |
| 5383 | inline virtual void proc() const { |
| 5384 | |
| 5385 | LOC_LOGV("AgpsMsgAtlOpenFailed::proc()"); |
| 5386 | mAgpsManager->reportAtlOpenFailed(mAgpsType); |
| 5387 | } |
| 5388 | }; |
| 5389 | |
| 5390 | sendMsg( new AgpsMsgAtlOpenFailed(&mAgpsManager, (AGpsExtType)agpsType)); |
| 5391 | } |
| 5392 | |
| 5393 | void GnssAdapter::convertSatelliteInfo(std::vector<GnssDebugSatelliteInfo>& out, |
| 5394 | const GnssSvType& in_constellation, |
| 5395 | const SystemStatusReports& in) |
| 5396 | { |
| 5397 | uint64_t sv_mask = 0ULL; |
| 5398 | uint32_t svid_min = 0; |
| 5399 | uint32_t svid_num = 0; |
| 5400 | uint32_t svid_idx = 0; |
| 5401 | |
| 5402 | uint64_t eph_health_good_mask = 0ULL; |
| 5403 | uint64_t eph_health_bad_mask = 0ULL; |
| 5404 | uint64_t server_perdiction_available_mask = 0ULL; |
| 5405 | float server_perdiction_age = 0.0f; |
| 5406 | |
| 5407 | // set constellationi based parameters |
| 5408 | switch (in_constellation) { |
| 5409 | case GNSS_SV_TYPE_GPS: |
| 5410 | svid_min = GNSS_BUGREPORT_GPS_MIN; |
| 5411 | svid_num = GPS_NUM; |
| 5412 | svid_idx = 0; |
| 5413 | if (!in.mSvHealth.empty()) { |
| 5414 | eph_health_good_mask = in.mSvHealth.back().mGpsGoodMask; |
| 5415 | eph_health_bad_mask = in.mSvHealth.back().mGpsBadMask; |
| 5416 | } |
| 5417 | if (!in.mXtra.empty()) { |
| 5418 | server_perdiction_available_mask = in.mXtra.back().mGpsXtraValid; |
| 5419 | server_perdiction_age = (float)(in.mXtra.back().mGpsXtraAge); |
| 5420 | } |
| 5421 | break; |
| 5422 | case GNSS_SV_TYPE_GLONASS: |
| 5423 | svid_min = GNSS_BUGREPORT_GLO_MIN; |
| 5424 | svid_num = GLO_NUM; |
| 5425 | svid_idx = GPS_NUM; |
| 5426 | if (!in.mSvHealth.empty()) { |
| 5427 | eph_health_good_mask = in.mSvHealth.back().mGloGoodMask; |
| 5428 | eph_health_bad_mask = in.mSvHealth.back().mGloBadMask; |
| 5429 | } |
| 5430 | if (!in.mXtra.empty()) { |
| 5431 | server_perdiction_available_mask = in.mXtra.back().mGloXtraValid; |
| 5432 | server_perdiction_age = (float)(in.mXtra.back().mGloXtraAge); |
| 5433 | } |
| 5434 | break; |
| 5435 | case GNSS_SV_TYPE_QZSS: |
| 5436 | svid_min = GNSS_BUGREPORT_QZSS_MIN; |
| 5437 | svid_num = QZSS_NUM; |
| 5438 | svid_idx = GPS_NUM+GLO_NUM+BDS_NUM+GAL_NUM; |
| 5439 | if (!in.mSvHealth.empty()) { |
| 5440 | eph_health_good_mask = in.mSvHealth.back().mQzssGoodMask; |
| 5441 | eph_health_bad_mask = in.mSvHealth.back().mQzssBadMask; |
| 5442 | } |
| 5443 | if (!in.mXtra.empty()) { |
| 5444 | server_perdiction_available_mask = in.mXtra.back().mQzssXtraValid; |
| 5445 | server_perdiction_age = (float)(in.mXtra.back().mQzssXtraAge); |
| 5446 | } |
| 5447 | break; |
| 5448 | case GNSS_SV_TYPE_BEIDOU: |
| 5449 | svid_min = GNSS_BUGREPORT_BDS_MIN; |
| 5450 | svid_num = BDS_NUM; |
| 5451 | svid_idx = GPS_NUM+GLO_NUM; |
| 5452 | if (!in.mSvHealth.empty()) { |
| 5453 | eph_health_good_mask = in.mSvHealth.back().mBdsGoodMask; |
| 5454 | eph_health_bad_mask = in.mSvHealth.back().mBdsBadMask; |
| 5455 | } |
| 5456 | if (!in.mXtra.empty()) { |
| 5457 | server_perdiction_available_mask = in.mXtra.back().mBdsXtraValid; |
| 5458 | server_perdiction_age = (float)(in.mXtra.back().mBdsXtraAge); |
| 5459 | } |
| 5460 | break; |
| 5461 | case GNSS_SV_TYPE_GALILEO: |
| 5462 | svid_min = GNSS_BUGREPORT_GAL_MIN; |
| 5463 | svid_num = GAL_NUM; |
| 5464 | svid_idx = GPS_NUM+GLO_NUM+BDS_NUM; |
| 5465 | if (!in.mSvHealth.empty()) { |
| 5466 | eph_health_good_mask = in.mSvHealth.back().mGalGoodMask; |
| 5467 | eph_health_bad_mask = in.mSvHealth.back().mGalBadMask; |
| 5468 | } |
| 5469 | if (!in.mXtra.empty()) { |
| 5470 | server_perdiction_available_mask = in.mXtra.back().mGalXtraValid; |
| 5471 | server_perdiction_age = (float)(in.mXtra.back().mGalXtraAge); |
| 5472 | } |
| 5473 | break; |
| 5474 | case GNSS_SV_TYPE_NAVIC: |
| 5475 | svid_min = GNSS_BUGREPORT_NAVIC_MIN; |
| 5476 | svid_num = NAVIC_NUM; |
| 5477 | svid_idx = GPS_NUM+GLO_NUM+QZSS_NUM+BDS_NUM+GAL_NUM; |
| 5478 | if (!in.mSvHealth.empty()) { |
| 5479 | eph_health_good_mask = in.mSvHealth.back().mNavicGoodMask; |
| 5480 | eph_health_bad_mask = in.mSvHealth.back().mNavicBadMask; |
| 5481 | } |
| 5482 | if (!in.mXtra.empty()) { |
| 5483 | server_perdiction_available_mask = in.mXtra.back().mNavicXtraValid; |
| 5484 | server_perdiction_age = (float)(in.mXtra.back().mNavicXtraAge); |
| 5485 | } |
| 5486 | break; |
| 5487 | default: |
| 5488 | return; |
| 5489 | } |
| 5490 | |
| 5491 | // extract each sv info from systemstatus report |
| 5492 | for(uint32_t i=0; i<svid_num && (svid_idx+i)<SV_ALL_NUM; i++) { |
| 5493 | |
| 5494 | GnssDebugSatelliteInfo s = {}; |
| 5495 | s.size = sizeof(s); |
| 5496 | s.svid = i + svid_min; |
| 5497 | s.constellation = in_constellation; |
| 5498 | |
| 5499 | if (!in.mNavData.empty()) { |
| 5500 | s.mEphemerisType = in.mNavData.back().mNav[svid_idx+i].mType; |
| 5501 | s.mEphemerisSource = in.mNavData.back().mNav[svid_idx+i].mSource; |
| 5502 | } |
| 5503 | else { |
| 5504 | s.mEphemerisType = GNSS_EPH_TYPE_UNKNOWN; |
| 5505 | s.mEphemerisSource = GNSS_EPH_SOURCE_UNKNOWN; |
| 5506 | } |
| 5507 | |
| 5508 | sv_mask = 0x1ULL << i; |
| 5509 | if (eph_health_good_mask & sv_mask) { |
| 5510 | s.mEphemerisHealth = GNSS_EPH_HEALTH_GOOD; |
| 5511 | } |
| 5512 | else if (eph_health_bad_mask & sv_mask) { |
| 5513 | s.mEphemerisHealth = GNSS_EPH_HEALTH_BAD; |
| 5514 | } |
| 5515 | else { |
| 5516 | s.mEphemerisHealth = GNSS_EPH_HEALTH_UNKNOWN; |
| 5517 | } |
| 5518 | |
| 5519 | if (!in.mNavData.empty()) { |
| 5520 | s.ephemerisAgeSeconds = |
| 5521 | (float)(in.mNavData.back().mNav[svid_idx+i].mAgeSec); |
| 5522 | } |
| 5523 | else { |
| 5524 | s.ephemerisAgeSeconds = 0.0f; |
| 5525 | } |
| 5526 | |
| 5527 | if (server_perdiction_available_mask & sv_mask) { |
| 5528 | s.serverPredictionIsAvailable = true; |
| 5529 | } |
| 5530 | else { |
| 5531 | s.serverPredictionIsAvailable = false; |
| 5532 | } |
| 5533 | |
| 5534 | s.serverPredictionAgeSeconds = server_perdiction_age; |
| 5535 | out.push_back(s); |
| 5536 | } |
| 5537 | |
| 5538 | return; |
| 5539 | } |
| 5540 | |
| 5541 | bool GnssAdapter::getDebugReport(GnssDebugReport& r) |
| 5542 | { |
| 5543 | LOC_LOGD("%s]: ", __func__); |
| 5544 | |
| 5545 | SystemStatus* systemstatus = getSystemStatus(); |
| 5546 | if (nullptr == systemstatus) { |
| 5547 | return false; |
| 5548 | } |
| 5549 | |
| 5550 | SystemStatusReports reports = {}; |
| 5551 | systemstatus->getReport(reports, true); |
| 5552 | |
| 5553 | r.size = sizeof(r); |
| 5554 | |
| 5555 | // location block |
| 5556 | r.mLocation.size = sizeof(r.mLocation); |
| 5557 | if(!reports.mLocation.empty() && reports.mLocation.back().mValid) { |
| 5558 | r.mLocation.mValid = true; |
| 5559 | r.mLocation.mLocation.latitude = |
| 5560 | reports.mLocation.back().mLocation.gpsLocation.latitude; |
| 5561 | r.mLocation.mLocation.longitude = |
| 5562 | reports.mLocation.back().mLocation.gpsLocation.longitude; |
| 5563 | r.mLocation.mLocation.altitude = |
| 5564 | reports.mLocation.back().mLocation.gpsLocation.altitude; |
| 5565 | r.mLocation.mLocation.speed = |
| 5566 | (double)(reports.mLocation.back().mLocation.gpsLocation.speed); |
| 5567 | r.mLocation.mLocation.bearing = |
| 5568 | (double)(reports.mLocation.back().mLocation.gpsLocation.bearing); |
| 5569 | r.mLocation.mLocation.accuracy = |
| 5570 | (double)(reports.mLocation.back().mLocation.gpsLocation.accuracy); |
| 5571 | |
| 5572 | r.mLocation.verticalAccuracyMeters = |
| 5573 | reports.mLocation.back().mLocationEx.vert_unc; |
| 5574 | r.mLocation.speedAccuracyMetersPerSecond = |
| 5575 | reports.mLocation.back().mLocationEx.speed_unc; |
| 5576 | r.mLocation.bearingAccuracyDegrees = |
| 5577 | reports.mLocation.back().mLocationEx.bearing_unc; |
| 5578 | |
| 5579 | r.mLocation.mUtcReported = |
| 5580 | reports.mLocation.back().mUtcReported; |
| 5581 | } |
| 5582 | else if(!reports.mBestPosition.empty() && reports.mBestPosition.back().mValid) { |
| 5583 | r.mLocation.mValid = true; |
| 5584 | r.mLocation.mLocation.latitude = |
| 5585 | (double)(reports.mBestPosition.back().mBestLat) * RAD2DEG; |
| 5586 | r.mLocation.mLocation.longitude = |
| 5587 | (double)(reports.mBestPosition.back().mBestLon) * RAD2DEG; |
| 5588 | r.mLocation.mLocation.altitude = reports.mBestPosition.back().mBestAlt; |
| 5589 | r.mLocation.mLocation.accuracy = |
| 5590 | (double)(reports.mBestPosition.back().mBestHepe); |
| 5591 | |
| 5592 | r.mLocation.mUtcReported = reports.mBestPosition.back().mUtcReported; |
| 5593 | } |
| 5594 | else { |
| 5595 | r.mLocation.mValid = false; |
| 5596 | } |
| 5597 | |
| 5598 | if (r.mLocation.mValid) { |
| 5599 | LOC_LOGV("getDebugReport - lat=%f lon=%f alt=%f speed=%f", |
| 5600 | r.mLocation.mLocation.latitude, |
| 5601 | r.mLocation.mLocation.longitude, |
| 5602 | r.mLocation.mLocation.altitude, |
| 5603 | r.mLocation.mLocation.speed); |
| 5604 | } |
| 5605 | |
| 5606 | // time block |
| 5607 | r.mTime.size = sizeof(r.mTime); |
| 5608 | if(!reports.mTimeAndClock.empty() && reports.mTimeAndClock.back().mTimeValid) { |
| 5609 | r.mTime.mValid = true; |
| 5610 | r.mTime.timeEstimate = |
| 5611 | (((int64_t)(reports.mTimeAndClock.back().mGpsWeek)*7 + |
| 5612 | GNSS_UTC_TIME_OFFSET)*24*60*60 - |
| 5613 | (int64_t)(reports.mTimeAndClock.back().mLeapSeconds))*1000ULL + |
| 5614 | (int64_t)(reports.mTimeAndClock.back().mGpsTowMs); |
| 5615 | |
| 5616 | if (reports.mTimeAndClock.back().mTimeUncNs > 0) { |
| 5617 | // TimeUncNs value is available |
| 5618 | r.mTime.timeUncertaintyNs = |
| 5619 | (float)(reports.mTimeAndClock.back().mLeapSecUnc)*1000.0f + |
| 5620 | (float)(reports.mTimeAndClock.back().mTimeUncNs); |
| 5621 | } else { |
| 5622 | // fall back to legacy TimeUnc |
| 5623 | r.mTime.timeUncertaintyNs = |
| 5624 | ((float)(reports.mTimeAndClock.back().mTimeUnc) + |
| 5625 | (float)(reports.mTimeAndClock.back().mLeapSecUnc))*1000.0f; |
| 5626 | } |
| 5627 | |
| 5628 | r.mTime.frequencyUncertaintyNsPerSec = |
| 5629 | (float)(reports.mTimeAndClock.back().mClockFreqBiasUnc); |
| 5630 | LOC_LOGV("getDebugReport - timeestimate=%" PRIu64 " unc=%f frequnc=%f", |
| 5631 | r.mTime.timeEstimate, |
| 5632 | r.mTime.timeUncertaintyNs, r.mTime.frequencyUncertaintyNsPerSec); |
| 5633 | } |
| 5634 | else { |
| 5635 | r.mTime.mValid = false; |
| 5636 | } |
| 5637 | |
| 5638 | // satellite info block |
| 5639 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_GPS, reports); |
| 5640 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_GLONASS, reports); |
| 5641 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_QZSS, reports); |
| 5642 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_BEIDOU, reports); |
| 5643 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_GALILEO, reports); |
| 5644 | convertSatelliteInfo(r.mSatelliteInfo, GNSS_SV_TYPE_NAVIC, reports); |
| 5645 | LOC_LOGV("getDebugReport - satellite=%zu", r.mSatelliteInfo.size()); |
| 5646 | |
| 5647 | return true; |
| 5648 | } |
| 5649 | |
| 5650 | /* get AGC information from system status and fill it */ |
| 5651 | void |
| 5652 | GnssAdapter::getAgcInformation(GnssMeasurementsNotification& measurements, int msInWeek) |
| 5653 | { |
| 5654 | SystemStatus* systemstatus = getSystemStatus(); |
| 5655 | |
| 5656 | if (nullptr != systemstatus) { |
| 5657 | SystemStatusReports reports = {}; |
| 5658 | systemstatus->getReport(reports, true); |
| 5659 | |
| 5660 | if ((!reports.mRfAndParams.empty()) && (!reports.mTimeAndClock.empty()) && |
| 5661 | (abs(msInWeek - (int)reports.mTimeAndClock.back().mGpsTowMs) < 2000)) { |
| 5662 | |
| 5663 | for (size_t i = 0; i < measurements.count; i++) { |
| 5664 | switch (measurements.measurements[i].svType) { |
| 5665 | case GNSS_SV_TYPE_GPS: |
| 5666 | case GNSS_SV_TYPE_QZSS: |
| 5667 | measurements.measurements[i].agcLevelDb = |
| 5668 | reports.mRfAndParams.back().mAgcGps; |
| 5669 | measurements.measurements[i].flags |= |
| 5670 | GNSS_MEASUREMENTS_DATA_AUTOMATIC_GAIN_CONTROL_BIT; |
| 5671 | break; |
| 5672 | |
| 5673 | case GNSS_SV_TYPE_GALILEO: |
| 5674 | measurements.measurements[i].agcLevelDb = |
| 5675 | reports.mRfAndParams.back().mAgcGal; |
| 5676 | measurements.measurements[i].flags |= |
| 5677 | GNSS_MEASUREMENTS_DATA_AUTOMATIC_GAIN_CONTROL_BIT; |
| 5678 | break; |
| 5679 | |
| 5680 | case GNSS_SV_TYPE_GLONASS: |
| 5681 | measurements.measurements[i].agcLevelDb = |
| 5682 | reports.mRfAndParams.back().mAgcGlo; |
| 5683 | measurements.measurements[i].flags |= |
| 5684 | GNSS_MEASUREMENTS_DATA_AUTOMATIC_GAIN_CONTROL_BIT; |
| 5685 | break; |
| 5686 | |
| 5687 | case GNSS_SV_TYPE_BEIDOU: |
| 5688 | measurements.measurements[i].agcLevelDb = |
| 5689 | reports.mRfAndParams.back().mAgcBds; |
| 5690 | measurements.measurements[i].flags |= |
| 5691 | GNSS_MEASUREMENTS_DATA_AUTOMATIC_GAIN_CONTROL_BIT; |
| 5692 | break; |
| 5693 | |
| 5694 | case GNSS_SV_TYPE_SBAS: |
| 5695 | case GNSS_SV_TYPE_UNKNOWN: |
| 5696 | default: |
| 5697 | break; |
| 5698 | } |
| 5699 | } |
| 5700 | } |
| 5701 | } |
| 5702 | } |
| 5703 | |
| 5704 | /* get Data information from system status and fill it */ |
| 5705 | void |
| 5706 | GnssAdapter::getDataInformation(GnssDataNotification& data, int msInWeek) |
| 5707 | { |
| 5708 | SystemStatus* systemstatus = getSystemStatus(); |
| 5709 | |
| 5710 | LOC_LOGV("%s]: msInWeek=%d", __func__, msInWeek); |
| 5711 | if (nullptr != systemstatus) { |
| 5712 | SystemStatusReports reports = {}; |
| 5713 | systemstatus->getReport(reports, true); |
| 5714 | |
| 5715 | if ((!reports.mRfAndParams.empty()) && (!reports.mTimeAndClock.empty()) && |
| 5716 | (abs(msInWeek - (int)reports.mTimeAndClock.back().mGpsTowMs) < 2000)) { |
| 5717 | |
| 5718 | for (int sig = GNSS_LOC_SIGNAL_TYPE_GPS_L1CA; |
| 5719 | sig < GNSS_LOC_MAX_NUMBER_OF_SIGNAL_TYPES; sig++) { |
| 5720 | data.gnssDataMask[sig] = 0; |
| 5721 | data.jammerInd[sig] = 0.0; |
| 5722 | data.agc[sig] = 0.0; |
| 5723 | } |
| 5724 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mAgcGps) { |
| 5725 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GPS_L1CA] |= |
| 5726 | GNSS_LOC_DATA_AGC_BIT; |
| 5727 | data.agc[GNSS_LOC_SIGNAL_TYPE_GPS_L1CA] = |
| 5728 | reports.mRfAndParams.back().mAgcGps; |
| 5729 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_QZSS_L1CA] |= |
| 5730 | GNSS_LOC_DATA_AGC_BIT; |
| 5731 | data.agc[GNSS_LOC_SIGNAL_TYPE_QZSS_L1CA] = |
| 5732 | reports.mRfAndParams.back().mAgcGps; |
| 5733 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_SBAS_L1_CA] |= |
| 5734 | GNSS_LOC_DATA_AGC_BIT; |
| 5735 | data.agc[GNSS_LOC_SIGNAL_TYPE_SBAS_L1_CA] = |
| 5736 | reports.mRfAndParams.back().mAgcGps; |
| 5737 | } |
| 5738 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mJammerGps) { |
| 5739 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GPS_L1CA] |= |
| 5740 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5741 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_GPS_L1CA] = |
| 5742 | (double)reports.mRfAndParams.back().mJammerGps; |
| 5743 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_QZSS_L1CA] |= |
| 5744 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5745 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_QZSS_L1CA] = |
| 5746 | (double)reports.mRfAndParams.back().mJammerGps; |
| 5747 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_SBAS_L1_CA] |= |
| 5748 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5749 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_SBAS_L1_CA] = |
| 5750 | (double)reports.mRfAndParams.back().mJammerGps; |
| 5751 | } |
| 5752 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mAgcGlo) { |
| 5753 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GLONASS_G1] |= |
| 5754 | GNSS_LOC_DATA_AGC_BIT; |
| 5755 | data.agc[GNSS_LOC_SIGNAL_TYPE_GLONASS_G1] = |
| 5756 | reports.mRfAndParams.back().mAgcGlo; |
| 5757 | } |
| 5758 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mJammerGlo) { |
| 5759 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GLONASS_G1] |= |
| 5760 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5761 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_GLONASS_G1] = |
| 5762 | (double)reports.mRfAndParams.back().mJammerGlo; |
| 5763 | } |
| 5764 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mAgcBds) { |
| 5765 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_BEIDOU_B1_I] |= |
| 5766 | GNSS_LOC_DATA_AGC_BIT; |
| 5767 | data.agc[GNSS_LOC_SIGNAL_TYPE_BEIDOU_B1_I] = |
| 5768 | reports.mRfAndParams.back().mAgcBds; |
| 5769 | } |
| 5770 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mJammerBds) { |
| 5771 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_BEIDOU_B1_I] |= |
| 5772 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5773 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_BEIDOU_B1_I] = |
| 5774 | (double)reports.mRfAndParams.back().mJammerBds; |
| 5775 | } |
| 5776 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mAgcGal) { |
| 5777 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GALILEO_E1_C] |= |
| 5778 | GNSS_LOC_DATA_AGC_BIT; |
| 5779 | data.agc[GNSS_LOC_SIGNAL_TYPE_GALILEO_E1_C] = |
| 5780 | reports.mRfAndParams.back().mAgcGal; |
| 5781 | } |
| 5782 | if (GNSS_INVALID_JAMMER_IND != reports.mRfAndParams.back().mJammerGal) { |
| 5783 | data.gnssDataMask[GNSS_LOC_SIGNAL_TYPE_GALILEO_E1_C] |= |
| 5784 | GNSS_LOC_DATA_JAMMER_IND_BIT; |
| 5785 | data.jammerInd[GNSS_LOC_SIGNAL_TYPE_GALILEO_E1_C] = |
| 5786 | (double)reports.mRfAndParams.back().mJammerGal; |
| 5787 | } |
| 5788 | } |
| 5789 | } |
| 5790 | } |
| 5791 | |
| 5792 | /* Callbacks registered with loc_net_iface library */ |
| 5793 | static void agpsOpenResultCb (bool isSuccess, AGpsExtType agpsType, const char* apn, |
| 5794 | AGpsBearerType bearerType, void* userDataPtr) { |
| 5795 | LOC_LOGD("%s]: ", __func__); |
| 5796 | if (userDataPtr == nullptr) { |
| 5797 | LOC_LOGE("%s]: userDataPtr is nullptr.", __func__); |
| 5798 | return; |
| 5799 | } |
| 5800 | if (apn == nullptr) { |
| 5801 | LOC_LOGE("%s]: apn is nullptr.", __func__); |
| 5802 | return; |
| 5803 | } |
| 5804 | GnssAdapter* adapter = (GnssAdapter*)userDataPtr; |
| 5805 | if (isSuccess) { |
| 5806 | adapter->dataConnOpenCommand(agpsType, apn, strlen(apn), bearerType); |
| 5807 | } else { |
| 5808 | adapter->dataConnFailedCommand(agpsType); |
| 5809 | } |
| 5810 | } |
| 5811 | |
| 5812 | static void agpsCloseResultCb (bool isSuccess, AGpsExtType agpsType, void* userDataPtr) { |
| 5813 | LOC_LOGD("%s]: ", __func__); |
| 5814 | if (userDataPtr == nullptr) { |
| 5815 | LOC_LOGE("%s]: userDataPtr is nullptr.", __func__); |
| 5816 | return; |
| 5817 | } |
| 5818 | GnssAdapter* adapter = (GnssAdapter*)userDataPtr; |
| 5819 | if (isSuccess) { |
| 5820 | adapter->dataConnClosedCommand(agpsType); |
| 5821 | } else { |
| 5822 | adapter->dataConnFailedCommand(agpsType); |
| 5823 | } |
| 5824 | } |
| 5825 | |
| 5826 | void |
| 5827 | GnssAdapter::saveGnssEnergyConsumedCallback(GnssEnergyConsumedCallback energyConsumedCb) { |
| 5828 | mGnssEnergyConsumedCb = energyConsumedCb; |
| 5829 | } |
| 5830 | |
| 5831 | void |
| 5832 | GnssAdapter::getGnssEnergyConsumedCommand(GnssEnergyConsumedCallback energyConsumedCb) { |
| 5833 | struct MsgGetGnssEnergyConsumed : public LocMsg { |
| 5834 | GnssAdapter& mAdapter; |
| 5835 | LocApiBase& mApi; |
| 5836 | GnssEnergyConsumedCallback mEnergyConsumedCb; |
| 5837 | inline MsgGetGnssEnergyConsumed(GnssAdapter& adapter, LocApiBase& api, |
| 5838 | GnssEnergyConsumedCallback energyConsumedCb) : |
| 5839 | LocMsg(), |
| 5840 | mAdapter(adapter), |
| 5841 | mApi(api), |
| 5842 | mEnergyConsumedCb(energyConsumedCb){} |
| 5843 | inline virtual void proc() const { |
| 5844 | mAdapter.saveGnssEnergyConsumedCallback(mEnergyConsumedCb); |
| 5845 | mApi.getGnssEnergyConsumed(); |
| 5846 | } |
| 5847 | }; |
| 5848 | |
| 5849 | sendMsg(new MsgGetGnssEnergyConsumed(*this, *mLocApi, energyConsumedCb)); |
| 5850 | } |
| 5851 | |
| 5852 | void |
| 5853 | GnssAdapter::nfwControlCommand(bool enable) { |
| 5854 | struct MsgControlNfwLocationAccess : public LocMsg { |
| 5855 | GnssAdapter& mAdapter; |
| 5856 | LocApiBase& mApi; |
| 5857 | bool mEnable; |
| 5858 | inline MsgControlNfwLocationAccess(GnssAdapter& adapter, LocApiBase& api, |
| 5859 | bool enable) : |
| 5860 | LocMsg(), |
| 5861 | mAdapter(adapter), |
| 5862 | mApi(api), |
| 5863 | mEnable(enable) {} |
| 5864 | inline virtual void proc() const { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5865 | |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 5866 | if (mAdapter.mSupportNfwControl) { |
| 5867 | GnssConfigGpsLock gpsLock; |
| 5868 | |
| 5869 | gpsLock = ContextBase::mGps_conf.GPS_LOCK; |
| 5870 | if (mEnable) { |
| 5871 | gpsLock &= ~GNSS_CONFIG_GPS_LOCK_NI; |
| 5872 | } else { |
| 5873 | gpsLock |= GNSS_CONFIG_GPS_LOCK_NI; |
| 5874 | } |
| 5875 | ContextBase::mGps_conf.GPS_LOCK = gpsLock; |
| 5876 | mApi.sendMsg(new LocApiMsg([&mApi = mApi, gpsLock]() { |
| 5877 | mApi.setGpsLockSync((GnssConfigGpsLock)gpsLock); |
| 5878 | })); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5879 | } else { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 5880 | LOC_LOGw("NFW control is not supported, do not use this for NFW"); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5881 | } |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5882 | } |
| 5883 | }; |
| 5884 | |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 5885 | sendMsg(new MsgControlNfwLocationAccess(*this, *mLocApi, enable)); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 5886 | } |
| 5887 | |
| 5888 | // Set tunc constrained mode, use 0 session id to indicate |
| 5889 | // that no callback is needed. Session id 0 is used for calls that |
| 5890 | // are not invoked from the integration api, e.g.: initial configuration |
| 5891 | // from the configure file |
| 5892 | void |
| 5893 | GnssAdapter::setConstrainedTunc(bool enable, float tuncConstraint, |
| 5894 | uint32_t energyBudget, uint32_t sessionId) { |
| 5895 | |
| 5896 | mLocConfigInfo.tuncConfigInfo.isValid = true; |
| 5897 | mLocConfigInfo.tuncConfigInfo.enable = enable; |
| 5898 | mLocConfigInfo.tuncConfigInfo.tuncThresholdMs = tuncConstraint; |
| 5899 | mLocConfigInfo.tuncConfigInfo.energyBudget = energyBudget; |
| 5900 | |
| 5901 | LocApiResponse* locApiResponse = nullptr; |
| 5902 | if (sessionId != 0) { |
| 5903 | locApiResponse = |
| 5904 | new LocApiResponse(*getContext(), |
| 5905 | [this, sessionId] (LocationError err) { |
| 5906 | reportResponse(err, sessionId);}); |
| 5907 | if (!locApiResponse) { |
| 5908 | LOC_LOGe("memory alloc failed"); |
| 5909 | } |
| 5910 | } |
| 5911 | mLocApi->setConstrainedTuncMode( |
| 5912 | enable, tuncConstraint, energyBudget, locApiResponse); |
| 5913 | } |
| 5914 | |
| 5915 | uint32_t |
| 5916 | GnssAdapter::setConstrainedTuncCommand (bool enable, float tuncConstraint, |
| 5917 | uint32_t energyBudget) { |
| 5918 | // generated session id will be none-zero |
| 5919 | uint32_t sessionId = generateSessionId(); |
| 5920 | LOC_LOGd("session id %u", sessionId); |
| 5921 | |
| 5922 | struct MsgEnableTUNC : public LocMsg { |
| 5923 | GnssAdapter& mAdapter; |
| 5924 | uint32_t mSessionId; |
| 5925 | bool mEnable; |
| 5926 | float mTuncConstraint; |
| 5927 | uint32_t mEnergyBudget; |
| 5928 | |
| 5929 | inline MsgEnableTUNC(GnssAdapter& adapter, |
| 5930 | uint32_t sessionId, |
| 5931 | bool enable, |
| 5932 | float tuncConstraint, |
| 5933 | uint32_t energyBudget) : |
| 5934 | LocMsg(), |
| 5935 | mAdapter(adapter), |
| 5936 | mSessionId(sessionId), |
| 5937 | mEnable(enable), |
| 5938 | mTuncConstraint(tuncConstraint), |
| 5939 | mEnergyBudget(energyBudget) {} |
| 5940 | inline virtual void proc() const { |
| 5941 | mAdapter.setConstrainedTunc(mEnable, mTuncConstraint, |
| 5942 | mEnergyBudget, mSessionId); |
| 5943 | } |
| 5944 | }; |
| 5945 | |
| 5946 | sendMsg(new MsgEnableTUNC(*this, sessionId, enable, |
| 5947 | tuncConstraint, energyBudget)); |
| 5948 | |
| 5949 | return sessionId; |
| 5950 | } |
| 5951 | |
| 5952 | // Set position assisted clock estimator, use 0 session id to indicate |
| 5953 | // that no callback is needed. Session id 0 is used for calls that are |
| 5954 | // not invoked from the integration api, e.g.: initial configuration |
| 5955 | // from the configure file. |
| 5956 | void |
| 5957 | GnssAdapter::setPositionAssistedClockEstimator(bool enable, |
| 5958 | uint32_t sessionId) { |
| 5959 | |
| 5960 | mLocConfigInfo.paceConfigInfo.isValid = true; |
| 5961 | mLocConfigInfo.paceConfigInfo.enable = enable; |
| 5962 | LocApiResponse* locApiResponse = nullptr; |
| 5963 | if (sessionId != 0) { |
| 5964 | locApiResponse = |
| 5965 | new LocApiResponse(*getContext(), |
| 5966 | [this, sessionId] (LocationError err) { |
| 5967 | reportResponse(err, sessionId);}); |
| 5968 | if (!locApiResponse) { |
| 5969 | LOC_LOGe("memory alloc failed"); |
| 5970 | } |
| 5971 | } |
| 5972 | mLocApi->setPositionAssistedClockEstimatorMode(enable, locApiResponse); |
| 5973 | } |
| 5974 | |
| 5975 | uint32_t |
| 5976 | GnssAdapter::setPositionAssistedClockEstimatorCommand(bool enable) { |
| 5977 | // generated session id will be none-zero |
| 5978 | uint32_t sessionId = generateSessionId(); |
| 5979 | LOC_LOGd("session id %u", sessionId); |
| 5980 | |
| 5981 | struct MsgEnablePACE : public LocMsg { |
| 5982 | GnssAdapter& mAdapter; |
| 5983 | uint32_t mSessionId; |
| 5984 | bool mEnable; |
| 5985 | inline MsgEnablePACE(GnssAdapter& adapter, |
| 5986 | uint32_t sessionId, bool enable) : |
| 5987 | LocMsg(), |
| 5988 | mAdapter(adapter), |
| 5989 | mSessionId(sessionId), |
| 5990 | mEnable(enable){} |
| 5991 | inline virtual void proc() const { |
| 5992 | mAdapter.setPositionAssistedClockEstimator(mEnable, mSessionId); |
| 5993 | } |
| 5994 | }; |
| 5995 | |
| 5996 | sendMsg(new MsgEnablePACE(*this, sessionId, enable)); |
| 5997 | return sessionId; |
| 5998 | } |
| 5999 | |
| 6000 | void GnssAdapter::gnssUpdateSvConfig( |
| 6001 | uint32_t sessionId, const GnssSvTypeConfig& constellationEnablementConfig, |
| 6002 | const GnssSvIdConfig& blacklistSvConfig) { |
| 6003 | |
| 6004 | // suspend all tracking sessions to apply the constellation config |
| 6005 | suspendSessions(); |
| 6006 | if (constellationEnablementConfig.size == sizeof(constellationEnablementConfig)) { |
| 6007 | // check whether if any constellation is removed from the new config |
| 6008 | GnssSvTypesMask currentEnabledMask = mGnssSvTypeConfig.enabledSvTypesMask; |
| 6009 | GnssSvTypesMask newEnabledMask = constellationEnablementConfig.enabledSvTypesMask; |
| 6010 | GnssSvTypesMask enabledRemoved = currentEnabledMask & (currentEnabledMask ^ newEnabledMask); |
| 6011 | // Send reset if any constellation is removed from the enabled list |
| 6012 | if (enabledRemoved != 0) { |
| 6013 | mLocApi->resetConstellationControl(); |
| 6014 | } |
| 6015 | |
| 6016 | // if the constellation config is valid, issue request to modem |
| 6017 | // to enable/disable constellation |
| 6018 | mLocApi->setConstellationControl(mGnssSvTypeConfig); |
| 6019 | } else if (constellationEnablementConfig.size == 0) { |
| 6020 | // when the size is not set, meaning reset to modem default |
| 6021 | mLocApi->resetConstellationControl(); |
| 6022 | } |
| 6023 | // save the constellation settings to be used for modem SSR |
| 6024 | mGnssSvTypeConfig = constellationEnablementConfig; |
| 6025 | |
| 6026 | // handle blacklisted SV settings |
| 6027 | mGnssSvIdConfig = blacklistSvConfig; |
| 6028 | // process blacklist svs info |
| 6029 | mBlacklistedSvIds.clear(); |
| 6030 | // need to save the balcklisted sv info into mBlacklistedSvIds as well |
| 6031 | convertFromGnssSvIdConfig(blacklistSvConfig, mBlacklistedSvIds); |
| 6032 | LocApiResponse* locApiResponse = new LocApiResponse(*getContext(), |
| 6033 | [this, sessionId] (LocationError err) { |
| 6034 | reportResponse(err, sessionId);}); |
| 6035 | if (!locApiResponse) { |
| 6036 | LOC_LOGe("memory alloc failed"); |
| 6037 | } |
| 6038 | mLocApi->setBlacklistSv(mGnssSvIdConfig, locApiResponse); |
| 6039 | |
| 6040 | // resume all tracking sessions after the constellation config has been applied |
| 6041 | restartSessions(false); |
| 6042 | } |
| 6043 | |
| 6044 | uint32_t |
| 6045 | GnssAdapter::gnssUpdateSvConfigCommand( |
| 6046 | const GnssSvTypeConfig& constellationEnablementConfig, |
| 6047 | const GnssSvIdConfig& blacklistSvConfig) { |
| 6048 | |
| 6049 | // generated session id will be none-zero |
| 6050 | uint32_t sessionId = generateSessionId(); |
| 6051 | LOC_LOGd("session id %u", sessionId); |
| 6052 | |
| 6053 | struct MsgUpdateSvConfig : public LocMsg { |
| 6054 | GnssAdapter& mAdapter; |
| 6055 | uint32_t mSessionId; |
| 6056 | GnssSvTypeConfig mConstellationEnablementConfig; |
| 6057 | GnssSvIdConfig mBlacklistSvIdConfig; |
| 6058 | |
| 6059 | inline MsgUpdateSvConfig(GnssAdapter& adapter, |
| 6060 | uint32_t sessionId, |
| 6061 | const GnssSvTypeConfig& constellationEnablementConfig, |
| 6062 | const GnssSvIdConfig& blacklistSvConfig) : |
| 6063 | LocMsg(), |
| 6064 | mAdapter(adapter), |
| 6065 | mSessionId(sessionId), |
| 6066 | mConstellationEnablementConfig(constellationEnablementConfig), |
| 6067 | mBlacklistSvIdConfig(blacklistSvConfig) {} |
| 6068 | inline virtual void proc() const { |
| 6069 | mAdapter.gnssUpdateSvConfig(mSessionId, mConstellationEnablementConfig, |
| 6070 | mBlacklistSvIdConfig); |
| 6071 | } |
| 6072 | }; |
| 6073 | |
| 6074 | if (sessionId != 0) { |
| 6075 | sendMsg(new MsgUpdateSvConfig(*this, sessionId, constellationEnablementConfig, |
| 6076 | blacklistSvConfig)); |
| 6077 | } |
| 6078 | return sessionId; |
| 6079 | } |
| 6080 | |
| 6081 | void GnssAdapter::gnssUpdateSecondaryBandConfig( |
| 6082 | uint32_t sessionId, const GnssSvTypeConfig& secondaryBandConfig) { |
| 6083 | |
| 6084 | LocApiResponse* locApiResponse = new LocApiResponse(*getContext(), |
| 6085 | [this, sessionId] (LocationError err) { |
| 6086 | reportResponse(err, sessionId);}); |
| 6087 | if (!locApiResponse) { |
| 6088 | LOC_LOGe("memory alloc failed"); |
| 6089 | } |
| 6090 | |
| 6091 | // handle secondary band info |
| 6092 | mGnssSeconaryBandConfig = secondaryBandConfig; |
| 6093 | gnssSecondaryBandConfigUpdate(locApiResponse); |
| 6094 | } |
| 6095 | |
| 6096 | uint32_t |
| 6097 | GnssAdapter::gnssUpdateSecondaryBandConfigCommand( |
| 6098 | const GnssSvTypeConfig& secondaryBandConfig) { |
| 6099 | |
| 6100 | // generated session id will be none-zero |
| 6101 | uint32_t sessionId = generateSessionId(); |
| 6102 | LOC_LOGd("session id %u", sessionId); |
| 6103 | |
| 6104 | struct MsgUpdateSecondaryBandConfig : public LocMsg { |
| 6105 | GnssAdapter& mAdapter; |
| 6106 | uint32_t mSessionId; |
| 6107 | GnssSvTypeConfig mSecondaryBandConfig; |
| 6108 | |
| 6109 | inline MsgUpdateSecondaryBandConfig(GnssAdapter& adapter, |
| 6110 | uint32_t sessionId, |
| 6111 | const GnssSvTypeConfig& secondaryBandConfig) : |
| 6112 | LocMsg(), |
| 6113 | mAdapter(adapter), |
| 6114 | mSessionId(sessionId), |
| 6115 | mSecondaryBandConfig(secondaryBandConfig) {} |
| 6116 | inline virtual void proc() const { |
| 6117 | mAdapter.gnssUpdateSecondaryBandConfig(mSessionId, mSecondaryBandConfig); |
| 6118 | } |
| 6119 | }; |
| 6120 | |
| 6121 | if (sessionId != 0) { |
| 6122 | sendMsg(new MsgUpdateSecondaryBandConfig(*this, sessionId, secondaryBandConfig)); |
| 6123 | } |
| 6124 | return sessionId; |
| 6125 | } |
| 6126 | |
| 6127 | // This function currently retrieves secondary band configuration |
| 6128 | // for constellation enablement/disablement. |
| 6129 | void |
| 6130 | GnssAdapter::gnssGetSecondaryBandConfig(uint32_t sessionId) { |
| 6131 | |
| 6132 | LocApiResponse* locApiResponse = new LocApiResponse(*getContext(), |
| 6133 | [this, sessionId] (LocationError err) { |
| 6134 | reportResponse(err, sessionId);}); |
| 6135 | if (!locApiResponse) { |
| 6136 | LOC_LOGe("memory alloc failed"); |
| 6137 | } |
| 6138 | |
| 6139 | mLocApi->getConstellationMultiBandConfig(sessionId, locApiResponse); |
| 6140 | } |
| 6141 | |
| 6142 | uint32_t |
| 6143 | GnssAdapter::gnssGetSecondaryBandConfigCommand() { |
| 6144 | |
| 6145 | // generated session id will be none-zero |
| 6146 | uint32_t sessionId = generateSessionId(); |
| 6147 | LOC_LOGd("session id %u", sessionId); |
| 6148 | |
| 6149 | struct MsgGetSecondaryBandConfig : public LocMsg { |
| 6150 | GnssAdapter& mAdapter; |
| 6151 | uint32_t mSessionId; |
| 6152 | inline MsgGetSecondaryBandConfig(GnssAdapter& adapter, |
| 6153 | uint32_t sessionId) : |
| 6154 | LocMsg(), |
| 6155 | mAdapter(adapter), |
| 6156 | mSessionId(sessionId) {} |
| 6157 | inline virtual void proc() const { |
| 6158 | mAdapter.gnssGetSecondaryBandConfig(mSessionId); |
| 6159 | } |
| 6160 | }; |
| 6161 | |
| 6162 | if (sessionId != 0) { |
| 6163 | sendMsg(new MsgGetSecondaryBandConfig(*this, sessionId)); |
| 6164 | } |
| 6165 | return sessionId; |
| 6166 | } |
| 6167 | |
| 6168 | void |
| 6169 | GnssAdapter::configLeverArm(uint32_t sessionId, |
| 6170 | const LeverArmConfigInfo& configInfo) { |
| 6171 | |
| 6172 | LocationError err = LOCATION_ERROR_NOT_SUPPORTED; |
| 6173 | if (true == mEngHubProxy->configLeverArm(configInfo)) { |
| 6174 | err = LOCATION_ERROR_SUCCESS; |
| 6175 | } |
| 6176 | reportResponse(err, sessionId); |
| 6177 | } |
| 6178 | |
| 6179 | uint32_t |
| 6180 | GnssAdapter::configLeverArmCommand(const LeverArmConfigInfo& configInfo) { |
| 6181 | |
| 6182 | // generated session id will be none-zero |
| 6183 | uint32_t sessionId = generateSessionId(); |
| 6184 | LOC_LOGd("session id %u", sessionId); |
| 6185 | |
| 6186 | struct MsgConfigLeverArm : public LocMsg { |
| 6187 | GnssAdapter& mAdapter; |
| 6188 | uint32_t mSessionId; |
| 6189 | LeverArmConfigInfo mConfigInfo; |
| 6190 | |
| 6191 | inline MsgConfigLeverArm(GnssAdapter& adapter, |
| 6192 | uint32_t sessionId, |
| 6193 | const LeverArmConfigInfo& configInfo) : |
| 6194 | LocMsg(), |
| 6195 | mAdapter(adapter), |
| 6196 | mSessionId(sessionId), |
| 6197 | mConfigInfo(configInfo) {} |
| 6198 | inline virtual void proc() const { |
| 6199 | // save the lever ARM config info for translating position from GNSS antenna based |
| 6200 | // to VRP based |
| 6201 | if (mConfigInfo.leverArmValidMask & LEVER_ARM_TYPE_GNSS_TO_VRP_BIT) { |
| 6202 | mAdapter.mLocConfigInfo.leverArmConfigInfo.leverArmValidMask |= |
| 6203 | LEVER_ARM_TYPE_GNSS_TO_VRP_BIT; |
| 6204 | mAdapter.mLocConfigInfo.leverArmConfigInfo.gnssToVRP = mConfigInfo.gnssToVRP; |
| 6205 | } |
| 6206 | mAdapter.configLeverArm(mSessionId, mConfigInfo); |
| 6207 | } |
| 6208 | }; |
| 6209 | |
| 6210 | sendMsg(new MsgConfigLeverArm(*this, sessionId, configInfo)); |
| 6211 | return sessionId; |
| 6212 | } |
| 6213 | |
| 6214 | bool GnssAdapter::initMeasCorr(bool bSendCbWhenNotSupported) { |
| 6215 | LOC_LOGv("GnssAdapter::initMeasCorr"); |
| 6216 | /* Message to initialize Measurement Corrections */ |
| 6217 | struct MsgInitMeasCorr : public LocMsg { |
| 6218 | GnssAdapter& mAdapter; |
| 6219 | GnssMeasurementCorrectionsCapabilitiesMask mCapMask; |
| 6220 | |
| 6221 | inline MsgInitMeasCorr(GnssAdapter& adapter, |
| 6222 | GnssMeasurementCorrectionsCapabilitiesMask capMask) : |
| 6223 | LocMsg(), mAdapter(adapter), mCapMask(capMask) { |
| 6224 | LOC_LOGv("MsgInitMeasCorr"); |
| 6225 | } |
| 6226 | |
| 6227 | inline virtual void proc() const { |
| 6228 | LOC_LOGv("MsgInitMeasCorr::proc()"); |
| 6229 | |
| 6230 | mAdapter.mMeasCorrSetCapabilitiesCb(mCapMask); |
| 6231 | } |
| 6232 | }; |
| 6233 | if (ContextBase::isFeatureSupported(LOC_SUPPORTED_FEATURE_MEASUREMENTS_CORRECTION)) { |
| 6234 | sendMsg(new MsgInitMeasCorr(*this, GNSS_MEAS_CORR_LOS_SATS | |
| 6235 | GNSS_MEAS_CORR_EXCESS_PATH_LENGTH | GNSS_MEAS_CORR_REFLECTING_PLANE)); |
| 6236 | return true; |
| 6237 | } else { |
| 6238 | LOC_LOGv("MEASUREMENTS_CORRECTION feature is not supported in the modem"); |
| 6239 | if (bSendCbWhenNotSupported) { |
| 6240 | sendMsg(new MsgInitMeasCorr(*this, 0)); |
| 6241 | } |
| 6242 | return false; |
| 6243 | } |
| 6244 | } |
| 6245 | |
| 6246 | bool GnssAdapter::openMeasCorrCommand(const measCorrSetCapabilitiesCb setCapabilitiesCb) { |
| 6247 | LOC_LOGi("GnssAdapter::openMeasCorrCommand"); |
| 6248 | |
| 6249 | /* Send message to initialize Measurement Corrections */ |
| 6250 | mMeasCorrSetCapabilitiesCb = setCapabilitiesCb; |
| 6251 | mIsMeasCorrInterfaceOpen = true; |
| 6252 | if (isEngineCapabilitiesKnown()) { |
| 6253 | LOC_LOGv("Capabilities are known, proceed with measurement corrections init"); |
| 6254 | return initMeasCorr(false); |
| 6255 | } else { |
| 6256 | LOC_LOGv("Capabilities are not known, wait for open"); |
| 6257 | return true; |
| 6258 | } |
| 6259 | } |
| 6260 | |
| 6261 | bool GnssAdapter::measCorrSetCorrectionsCommand(const GnssMeasurementCorrections gnssMeasCorr) { |
| 6262 | LOC_LOGi("GnssAdapter::measCorrSetCorrectionsCommand"); |
| 6263 | |
| 6264 | /* Message to set Measurement Corrections */ |
| 6265 | struct MsgSetCorrectionsMeasCorr : public LocMsg { |
| 6266 | const GnssMeasurementCorrections mGnssMeasCorr; |
| 6267 | GnssAdapter& mAdapter; |
| 6268 | LocApiBase& mApi; |
| 6269 | |
| 6270 | inline MsgSetCorrectionsMeasCorr( |
| 6271 | const GnssMeasurementCorrections gnssMeasCorr, |
| 6272 | GnssAdapter& adapter, |
| 6273 | LocApiBase& api) : |
| 6274 | LocMsg(), |
| 6275 | mGnssMeasCorr(gnssMeasCorr), |
| 6276 | mAdapter(adapter), |
| 6277 | mApi(api) { |
| 6278 | LOC_LOGv("MsgSetCorrectionsMeasCorr"); |
| 6279 | } |
| 6280 | |
| 6281 | inline virtual void proc() const { |
| 6282 | LOC_LOGv("MsgSetCorrectionsMeasCorr::proc()"); |
| 6283 | mApi.setMeasurementCorrections(mGnssMeasCorr); |
| 6284 | } |
| 6285 | }; |
| 6286 | |
| 6287 | if (ContextBase::isFeatureSupported(LOC_SUPPORTED_FEATURE_MEASUREMENTS_CORRECTION)) { |
| 6288 | sendMsg(new MsgSetCorrectionsMeasCorr(gnssMeasCorr, *this, *mLocApi)); |
| 6289 | return true; |
| 6290 | } else { |
| 6291 | LOC_LOGw("Measurement Corrections are not supported!"); |
| 6292 | return false; |
| 6293 | } |
| 6294 | } |
| 6295 | uint32_t GnssAdapter::antennaInfoInitCommand(const antennaInfoCb antennaInfoCallback) { |
| 6296 | LOC_LOGi("GnssAdapter::antennaInfoInitCommand"); |
| 6297 | |
| 6298 | /* Message to initialize Antenna Information */ |
| 6299 | struct MsgInitAi : public LocMsg { |
| 6300 | const antennaInfoCb mAntennaInfoCb; |
| 6301 | GnssAdapter& mAdapter; |
| 6302 | |
| 6303 | inline MsgInitAi(const antennaInfoCb antennaInfoCallback, GnssAdapter& adapter) : |
| 6304 | LocMsg(), mAntennaInfoCb(antennaInfoCallback), mAdapter(adapter) { |
| 6305 | LOC_LOGv("MsgInitAi"); |
| 6306 | } |
| 6307 | |
| 6308 | inline virtual void proc() const { |
| 6309 | LOC_LOGv("MsgInitAi::proc()"); |
| 6310 | mAdapter.reportGnssAntennaInformation(mAntennaInfoCb); |
| 6311 | } |
| 6312 | }; |
| 6313 | if (mIsAntennaInfoInterfaceOpened) { |
| 6314 | return ANTENNA_INFO_ERROR_ALREADY_INIT; |
| 6315 | } else { |
| 6316 | mIsAntennaInfoInterfaceOpened = true; |
| 6317 | sendMsg(new MsgInitAi(antennaInfoCallback, *this)); |
| 6318 | return ANTENNA_INFO_SUCCESS; |
| 6319 | } |
| 6320 | } |
| 6321 | |
| 6322 | void |
| 6323 | GnssAdapter::configRobustLocation(uint32_t sessionId, |
| 6324 | bool enable, bool enableForE911) { |
| 6325 | |
| 6326 | mLocConfigInfo.robustLocationConfigInfo.isValid = true; |
| 6327 | mLocConfigInfo.robustLocationConfigInfo.enable = enable; |
| 6328 | mLocConfigInfo.robustLocationConfigInfo.enableFor911 = enableForE911; |
| 6329 | |
| 6330 | LocApiResponse* locApiResponse = nullptr; |
| 6331 | if (sessionId != 0) { |
| 6332 | locApiResponse = |
| 6333 | new LocApiResponse(*getContext(), |
| 6334 | [this, sessionId] (LocationError err) { |
| 6335 | reportResponse(err, sessionId);}); |
| 6336 | if (!locApiResponse) { |
| 6337 | LOC_LOGe("memory alloc failed"); |
| 6338 | } |
| 6339 | } |
| 6340 | mLocApi->configRobustLocation(enable, enableForE911, locApiResponse); |
| 6341 | } |
| 6342 | |
| 6343 | uint32_t GnssAdapter::configRobustLocationCommand( |
| 6344 | bool enable, bool enableForE911) { |
| 6345 | |
| 6346 | // generated session id will be none-zero |
| 6347 | uint32_t sessionId = generateSessionId(); |
| 6348 | LOC_LOGd("session id %u", sessionId); |
| 6349 | |
| 6350 | struct MsgConfigRobustLocation : public LocMsg { |
| 6351 | GnssAdapter& mAdapter; |
| 6352 | uint32_t mSessionId; |
| 6353 | bool mEnable; |
| 6354 | bool mEnableForE911; |
| 6355 | |
| 6356 | inline MsgConfigRobustLocation(GnssAdapter& adapter, |
| 6357 | uint32_t sessionId, |
| 6358 | bool enable, |
| 6359 | bool enableForE911) : |
| 6360 | LocMsg(), |
| 6361 | mAdapter(adapter), |
| 6362 | mSessionId(sessionId), |
| 6363 | mEnable(enable), |
| 6364 | mEnableForE911(enableForE911) {} |
| 6365 | inline virtual void proc() const { |
| 6366 | mAdapter.configRobustLocation(mSessionId, mEnable, mEnableForE911); |
| 6367 | } |
| 6368 | }; |
| 6369 | |
| 6370 | sendMsg(new MsgConfigRobustLocation(*this, sessionId, enable, enableForE911)); |
| 6371 | return sessionId; |
| 6372 | } |
| 6373 | |
| 6374 | void |
| 6375 | GnssAdapter::configMinGpsWeek(uint32_t sessionId, uint16_t minGpsWeek) { |
| 6376 | // suspend all sessions for modem to take the min GPS week config |
| 6377 | suspendSessions(); |
| 6378 | |
| 6379 | LocApiResponse* locApiResponse = nullptr; |
| 6380 | if (sessionId != 0) { |
| 6381 | locApiResponse = |
| 6382 | new LocApiResponse(*getContext(), |
| 6383 | [this, sessionId] (LocationError err) { |
| 6384 | reportResponse(err, sessionId);}); |
| 6385 | if (!locApiResponse) { |
| 6386 | LOC_LOGe("memory alloc failed"); |
| 6387 | } |
| 6388 | } |
| 6389 | mLocApi->configMinGpsWeek(minGpsWeek, locApiResponse); |
| 6390 | |
| 6391 | // resume all tracking sessions after the min GPS week config |
| 6392 | // has been changed |
| 6393 | restartSessions(false); |
| 6394 | } |
| 6395 | |
| 6396 | uint32_t GnssAdapter::configMinGpsWeekCommand(uint16_t minGpsWeek) { |
| 6397 | // generated session id will be none-zero |
| 6398 | uint32_t sessionId = generateSessionId(); |
| 6399 | LOC_LOGd("session id %u", sessionId); |
| 6400 | |
| 6401 | struct MsgConfigMinGpsWeek : public LocMsg { |
| 6402 | GnssAdapter& mAdapter; |
| 6403 | uint32_t mSessionId; |
| 6404 | uint16_t mMinGpsWeek; |
| 6405 | |
| 6406 | inline MsgConfigMinGpsWeek(GnssAdapter& adapter, |
| 6407 | uint32_t sessionId, |
| 6408 | uint16_t minGpsWeek) : |
| 6409 | LocMsg(), |
| 6410 | mAdapter(adapter), |
| 6411 | mSessionId(sessionId), |
| 6412 | mMinGpsWeek(minGpsWeek) {} |
| 6413 | inline virtual void proc() const { |
| 6414 | mAdapter.configMinGpsWeek(mSessionId, mMinGpsWeek); |
| 6415 | } |
| 6416 | }; |
| 6417 | |
| 6418 | sendMsg(new MsgConfigMinGpsWeek(*this, sessionId, minGpsWeek)); |
| 6419 | return sessionId; |
| 6420 | } |
| 6421 | |
| 6422 | uint32_t GnssAdapter::configDeadReckoningEngineParamsCommand( |
| 6423 | const DeadReckoningEngineConfig& dreConfig) { |
| 6424 | |
| 6425 | // generated session id will be none-zero |
| 6426 | uint32_t sessionId = generateSessionId(); |
| 6427 | LOC_LOGd("session id %u", sessionId); |
| 6428 | |
| 6429 | struct MsgConfigDrEngine : public LocMsg { |
| 6430 | GnssAdapter& mAdapter; |
| 6431 | uint32_t mSessionId; |
| 6432 | DeadReckoningEngineConfig mDreConfig; |
| 6433 | |
| 6434 | inline MsgConfigDrEngine(GnssAdapter& adapter, |
| 6435 | uint32_t sessionId, |
| 6436 | const DeadReckoningEngineConfig& dreConfig) : |
| 6437 | LocMsg(), |
| 6438 | mAdapter(adapter), |
| 6439 | mSessionId(sessionId), |
| 6440 | mDreConfig(dreConfig) {} |
| 6441 | inline virtual void proc() const { |
| 6442 | LocationError err = LOCATION_ERROR_NOT_SUPPORTED; |
| 6443 | if (true == mAdapter.mEngHubProxy->configDeadReckoningEngineParams(mDreConfig)) { |
| 6444 | err = LOCATION_ERROR_SUCCESS; |
| 6445 | } |
| 6446 | mAdapter.reportResponse(err, mSessionId); |
| 6447 | } |
| 6448 | }; |
| 6449 | |
| 6450 | sendMsg(new MsgConfigDrEngine(*this, sessionId, dreConfig)); |
| 6451 | return sessionId; |
| 6452 | } |
| 6453 | |
| 6454 | uint32_t GnssAdapter::configEngineRunStateCommand( |
| 6455 | PositioningEngineMask engType, LocEngineRunState engState) { |
| 6456 | |
| 6457 | // generated session id will be none-zero |
| 6458 | uint32_t sessionId = generateSessionId(); |
| 6459 | LOC_LOGe("session id %u, eng type 0x%x, eng state %d, dre enabled %d", |
| 6460 | sessionId, engType, engState, mDreIntEnabled); |
| 6461 | |
| 6462 | struct MsgConfigEngineRunState : public LocMsg { |
| 6463 | GnssAdapter& mAdapter; |
| 6464 | uint32_t mSessionId; |
| 6465 | PositioningEngineMask mEngType; |
| 6466 | LocEngineRunState mEngState; |
| 6467 | |
| 6468 | inline MsgConfigEngineRunState(GnssAdapter& adapter, |
| 6469 | uint32_t sessionId, |
| 6470 | PositioningEngineMask engType, |
| 6471 | LocEngineRunState engState) : |
| 6472 | LocMsg(), |
| 6473 | mAdapter(adapter), |
| 6474 | mSessionId(sessionId), |
| 6475 | mEngType(engType), |
| 6476 | mEngState(engState) {} |
| 6477 | inline virtual void proc() const { |
| 6478 | LocationError err = LOCATION_ERROR_NOT_SUPPORTED; |
| 6479 | // Currently, only DR engine supports pause/resume request |
| 6480 | if ((mEngType == DEAD_RECKONING_ENGINE) && |
| 6481 | (mAdapter.mDreIntEnabled == true)) { |
| 6482 | if (true == mAdapter.mEngHubProxy->configEngineRunState(mEngType, mEngState)) { |
| 6483 | err = LOCATION_ERROR_SUCCESS; |
| 6484 | } |
| 6485 | } |
| 6486 | mAdapter.reportResponse(err, mSessionId); |
| 6487 | } |
| 6488 | }; |
| 6489 | |
| 6490 | sendMsg(new MsgConfigEngineRunState(*this, sessionId, engType, engState)); |
| 6491 | |
| 6492 | return sessionId; |
| 6493 | } |
| 6494 | |
| 6495 | void GnssAdapter::reportGnssConfigEvent(uint32_t sessionId, const GnssConfig& gnssConfig) |
| 6496 | { |
| 6497 | struct MsgReportGnssConfig : public LocMsg { |
| 6498 | GnssAdapter& mAdapter; |
| 6499 | uint32_t mSessionId; |
| 6500 | mutable GnssConfig mGnssConfig; |
| 6501 | inline MsgReportGnssConfig(GnssAdapter& adapter, |
| 6502 | uint32_t sessionId, |
| 6503 | const GnssConfig& gnssConfig) : |
| 6504 | LocMsg(), |
| 6505 | mAdapter(adapter), |
| 6506 | mSessionId(sessionId), |
| 6507 | mGnssConfig(gnssConfig) {} |
| 6508 | inline virtual void proc() const { |
| 6509 | // Invoke control clients config callback |
| 6510 | if (nullptr != mAdapter.mControlCallbacks.gnssConfigCb) { |
| 6511 | mAdapter.mControlCallbacks.gnssConfigCb(mSessionId, mGnssConfig); |
| 6512 | } else { |
| 6513 | LOC_LOGe("Failed to report, callback not registered"); |
| 6514 | } |
| 6515 | } |
| 6516 | }; |
| 6517 | |
| 6518 | sendMsg(new MsgReportGnssConfig(*this, sessionId, gnssConfig)); |
| 6519 | } |
| 6520 | |
| 6521 | /* ==== Eng Hub Proxy ================================================================= */ |
| 6522 | /* ======== UTILITIES ================================================================= */ |
| 6523 | void |
| 6524 | GnssAdapter::initEngHubProxyCommand() { |
| 6525 | LOC_LOGD("%s]: ", __func__); |
| 6526 | |
| 6527 | struct MsgInitEngHubProxy : public LocMsg { |
| 6528 | GnssAdapter* mAdapter; |
| 6529 | inline MsgInitEngHubProxy(GnssAdapter* adapter) : |
| 6530 | LocMsg(), |
| 6531 | mAdapter(adapter) {} |
| 6532 | inline virtual void proc() const { |
| 6533 | mAdapter->initEngHubProxy(); |
| 6534 | } |
| 6535 | }; |
| 6536 | |
| 6537 | sendMsg(new MsgInitEngHubProxy(this)); |
| 6538 | } |
| 6539 | |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 6540 | bool GnssAdapter::initEngHubProxy() { |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 6541 | static bool firstTime = true; |
| 6542 | static bool engHubLoadSuccessful = false; |
| 6543 | |
| 6544 | const char *error = nullptr; |
| 6545 | unsigned int processListLength = 0; |
| 6546 | loc_process_info_s_type* processInfoList = nullptr; |
| 6547 | |
| 6548 | do { |
| 6549 | // load eng hub only once |
| 6550 | if (firstTime == false) { |
| 6551 | break; |
| 6552 | } |
| 6553 | |
| 6554 | int rc = loc_read_process_conf(LOC_PATH_IZAT_CONF, &processListLength, |
| 6555 | &processInfoList); |
| 6556 | if (rc != 0) { |
| 6557 | LOC_LOGE("%s]: failed to parse conf file", __func__); |
| 6558 | break; |
| 6559 | } |
| 6560 | |
| 6561 | bool pluginDaemonEnabled = false; |
| 6562 | // go over the conf table to see whether any plugin daemon is enabled |
| 6563 | for (unsigned int i = 0; i < processListLength; i++) { |
| 6564 | if ((strncmp(processInfoList[i].name[0], PROCESS_NAME_ENGINE_SERVICE, |
| 6565 | strlen(PROCESS_NAME_ENGINE_SERVICE)) == 0) && |
| 6566 | (processInfoList[i].proc_status == ENABLED)) { |
| 6567 | pluginDaemonEnabled = true; |
| 6568 | // check if this is DRE-INT engine |
| 6569 | if ((processInfoList[i].args[1]!= nullptr) && |
| 6570 | (strncmp(processInfoList[i].args[1], "DRE-INT", sizeof("DRE-INT")) == 0)) { |
| 6571 | mDreIntEnabled = true; |
| 6572 | break; |
| 6573 | } |
| 6574 | } |
| 6575 | } |
| 6576 | |
| 6577 | // no plugin daemon is enabled for this platform, |
| 6578 | // check if external engine is present for which we need |
| 6579 | // libloc_eng_hub.so to be loaded |
| 6580 | if (pluginDaemonEnabled == false) { |
| 6581 | UTIL_READ_CONF(LOC_PATH_IZAT_CONF, izatConfParamTable); |
| 6582 | if (!loadEngHubForExternalEngine) { |
| 6583 | break; |
| 6584 | } |
| 6585 | } |
| 6586 | |
| 6587 | // load the engine hub .so, if the .so is not present |
| 6588 | // all EngHubProxyBase calls will turn into no-op. |
| 6589 | void *handle = nullptr; |
| 6590 | if ((handle = dlopen("libloc_eng_hub.so", RTLD_NOW)) == nullptr) { |
| 6591 | if ((error = dlerror()) != nullptr) { |
| 6592 | LOC_LOGE("%s]: libloc_eng_hub.so not found %s !", __func__, error); |
| 6593 | } |
| 6594 | break; |
| 6595 | } |
| 6596 | |
| 6597 | // prepare the callback functions |
| 6598 | // callback function for engine hub to report back position event |
| 6599 | GnssAdapterReportEnginePositionsEventCb reportPositionEventCb = |
| 6600 | [this](int count, EngineLocationInfo* locationArr) { |
| 6601 | // report from engine hub on behalf of PPE will be treated as fromUlp |
| 6602 | reportEnginePositionsEvent(count, locationArr); |
| 6603 | }; |
| 6604 | |
| 6605 | // callback function for engine hub to report back sv event |
| 6606 | GnssAdapterReportSvEventCb reportSvEventCb = |
| 6607 | [this](const GnssSvNotification& svNotify, bool fromEngineHub) { |
| 6608 | reportSvEvent(svNotify, fromEngineHub); |
| 6609 | }; |
| 6610 | |
| 6611 | // callback function for engine hub to request for complete aiding data |
| 6612 | GnssAdapterReqAidingDataCb reqAidingDataCb = |
| 6613 | [this] (const GnssAidingDataSvMask& svDataMask) { |
| 6614 | mLocApi->requestForAidingData(svDataMask); |
| 6615 | }; |
| 6616 | |
| 6617 | GnssAdapterUpdateNHzRequirementCb updateNHzRequirementCb = |
| 6618 | [this] (bool nHzNeeded, bool nHzMeasNeeded) { |
| 6619 | |
| 6620 | if (nHzMeasNeeded && |
| 6621 | (!checkMask(LOC_API_ADAPTER_BIT_GNSS_NHZ_MEASUREMENT))) { |
| 6622 | updateEvtMask(LOC_API_ADAPTER_BIT_GNSS_NHZ_MEASUREMENT, |
| 6623 | LOC_REGISTRATION_MASK_ENABLED); |
| 6624 | } else if (checkMask(LOC_API_ADAPTER_BIT_GNSS_NHZ_MEASUREMENT)) { |
| 6625 | updateEvtMask(LOC_API_ADAPTER_BIT_GNSS_NHZ_MEASUREMENT, |
| 6626 | LOC_REGISTRATION_MASK_DISABLED); |
| 6627 | } |
| 6628 | |
| 6629 | if (mNHzNeeded != nHzNeeded) { |
| 6630 | mNHzNeeded = nHzNeeded; |
| 6631 | checkAndRestartSPESession(); |
| 6632 | } |
| 6633 | }; |
| 6634 | |
| 6635 | GnssAdapterUpdateQwesFeatureStatusCb updateQwesFeatureStatusCb = |
| 6636 | [this] (const std::unordered_map<LocationQwesFeatureType, bool> &featureMap) { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 6637 | ContextBase::setQwesFeatureStatus(featureMap); |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 6638 | reportQwesCapabilities(featureMap); |
| 6639 | }; |
| 6640 | |
| 6641 | getEngHubProxyFn* getter = (getEngHubProxyFn*) dlsym(handle, "getEngHubProxy"); |
| 6642 | if(getter != nullptr) { |
Michael Bestas | 9f1f76e | 2024-05-28 23:23:20 +0300 | [diff] [blame] | 6643 | // Wait for the script(rootdir/etc/init.qcom.rc) to create socket folder |
| 6644 | |
| 6645 | EngineHubProxyBase* hubProxy = (*getter) (mMsgTask, mContext, |
| 6646 | mSystemStatus->getOsObserver(), |
| 6647 | reportPositionEventCb, reportSvEventCb, reqAidingDataCb, |
| 6648 | updateNHzRequirementCb, updateQwesFeatureStatusCb); |
| 6649 | |
Michael Bestas | 3a0209e | 2023-05-04 01:15:47 +0300 | [diff] [blame] | 6650 | if (hubProxy != nullptr) { |
| 6651 | mEngHubProxy = hubProxy; |
| 6652 | engHubLoadSuccessful = true; |
| 6653 | } |
| 6654 | } |
| 6655 | else { |
| 6656 | LOC_LOGD("%s]: entered, did not find function", __func__); |
| 6657 | } |
| 6658 | |
| 6659 | LOC_LOGD("%s]: first time initialization %d, returned %d", |
| 6660 | __func__, firstTime, engHubLoadSuccessful); |
| 6661 | |
| 6662 | } while (0); |
| 6663 | |
| 6664 | if (processInfoList != nullptr) { |
| 6665 | free (processInfoList); |
| 6666 | processInfoList = nullptr; |
| 6667 | } |
| 6668 | |
| 6669 | firstTime = false; |
| 6670 | return engHubLoadSuccessful; |
| 6671 | } |
| 6672 | |
| 6673 | std::vector<double> |
| 6674 | GnssAdapter::parseDoublesString(char* dString) { |
| 6675 | std::vector<double> dVector; |
| 6676 | char* tmp = NULL; |
| 6677 | char* substr; |
| 6678 | |
| 6679 | dVector.clear(); |
| 6680 | for (substr = strtok_r(dString, " ", &tmp); |
| 6681 | substr != NULL; |
| 6682 | substr = strtok_r(NULL, " ", &tmp)) { |
| 6683 | dVector.push_back(std::stod(substr)); |
| 6684 | } |
| 6685 | return dVector; |
| 6686 | } |
| 6687 | |
| 6688 | void |
| 6689 | GnssAdapter::reportGnssAntennaInformation(const antennaInfoCb antennaInfoCallback) |
| 6690 | { |
| 6691 | #define MAX_TEXT_WIDTH 50 |
| 6692 | #define MAX_COLUMN_WIDTH 20 |
| 6693 | |
| 6694 | /* parse antenna_corrections file and fill in |
| 6695 | a vector of GnssAntennaInformation data structure */ |
| 6696 | |
| 6697 | std::vector<GnssAntennaInformation> gnssAntennaInformations; |
| 6698 | GnssAntennaInformation gnssAntennaInfo; |
| 6699 | |
| 6700 | uint32_t antennaInfoVectorSize; |
| 6701 | loc_param_s_type ant_info_vector_table[] = |
| 6702 | { |
| 6703 | { "ANTENNA_INFO_VECTOR_SIZE", &antennaInfoVectorSize, NULL, 'n' } |
| 6704 | }; |
| 6705 | UTIL_READ_CONF(LOC_PATH_ANT_CORR, ant_info_vector_table); |
| 6706 | |
| 6707 | for (uint32_t i = 0; i < antennaInfoVectorSize; i++) { |
| 6708 | double carrierFrequencyMHz; |
| 6709 | char pcOffsetStr[LOC_MAX_PARAM_STRING]; |
| 6710 | uint32_t numberOfRows = 0; |
| 6711 | uint32_t numberOfColumns = 0; |
| 6712 | uint32_t numberOfRowsSGC = 0; |
| 6713 | uint32_t numberOfColumnsSGC = 0; |
| 6714 | |
| 6715 | gnssAntennaInfo.phaseCenterVariationCorrectionMillimeters.clear(); |
| 6716 | gnssAntennaInfo.phaseCenterVariationCorrectionUncertaintyMillimeters.clear(); |
| 6717 | gnssAntennaInfo.signalGainCorrectionDbi.clear(); |
| 6718 | gnssAntennaInfo.signalGainCorrectionUncertaintyDbi.clear(); |
| 6719 | string s1 = "CARRIER_FREQUENCY_"; |
| 6720 | s1 += to_string(i); |
| 6721 | string s2 = "PC_OFFSET_"; |
| 6722 | s2 += to_string(i); |
| 6723 | string s3 = "NUMBER_OF_ROWS_"; |
| 6724 | s3 += to_string(i); |
| 6725 | string s4 = "NUMBER_OF_COLUMNS_"; |
| 6726 | s4 += to_string(i); |
| 6727 | string s5 = "NUMBER_OF_ROWS_SGC_"; |
| 6728 | s5 += to_string(i); |
| 6729 | string s6 = "NUMBER_OF_COLUMNS_SGC_"; |
| 6730 | s6 += to_string(i); |
| 6731 | |
| 6732 | gnssAntennaInfo.size = sizeof(gnssAntennaInfo); |
| 6733 | loc_param_s_type ant_cf_table[] = |
| 6734 | { |
| 6735 | { s1.c_str(), &carrierFrequencyMHz, NULL, 'f' }, |
| 6736 | { s2.c_str(), &pcOffsetStr, NULL, 's' }, |
| 6737 | { s3.c_str(), &numberOfRows, NULL, 'n' }, |
| 6738 | { s4.c_str(), &numberOfColumns, NULL, 'n' }, |
| 6739 | { s5.c_str(), &numberOfRowsSGC, NULL, 'n' }, |
| 6740 | { s6.c_str(), &numberOfColumnsSGC, NULL, 'n' }, |
| 6741 | }; |
| 6742 | UTIL_READ_CONF(LOC_PATH_ANT_CORR, ant_cf_table); |
| 6743 | |
| 6744 | if (0 == numberOfRowsSGC) { |
| 6745 | numberOfRowsSGC = numberOfRows; |
| 6746 | } |
| 6747 | if (0 == numberOfColumnsSGC) { |
| 6748 | numberOfColumnsSGC = numberOfColumns; |
| 6749 | } |
| 6750 | |
| 6751 | gnssAntennaInfo.carrierFrequencyMHz = carrierFrequencyMHz; |
| 6752 | |
| 6753 | // now parse pcOffsetStr to get each entry |
| 6754 | std::vector<double> pcOffset; |
| 6755 | pcOffset = parseDoublesString(pcOffsetStr); |
| 6756 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.size = |
| 6757 | sizeof(gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters); |
| 6758 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.x = pcOffset[0]; |
| 6759 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.xUncertainty = pcOffset[1]; |
| 6760 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.y = pcOffset[2]; |
| 6761 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.yUncertainty = pcOffset[3]; |
| 6762 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.z = pcOffset[4]; |
| 6763 | gnssAntennaInfo.phaseCenterOffsetCoordinateMillimeters.zUncertainty = pcOffset[5]; |
| 6764 | |
| 6765 | uint16_t array_size = MAX_TEXT_WIDTH + MAX_COLUMN_WIDTH*numberOfColumns; |
| 6766 | uint16_t array_size_SGC = MAX_TEXT_WIDTH + MAX_COLUMN_WIDTH*numberOfColumnsSGC; |
| 6767 | for (uint32_t j = 0; j < numberOfRows; j++) { |
| 6768 | char pcVarCorrStr[array_size]; |
| 6769 | char pcVarCorrUncStr[array_size]; |
| 6770 | |
| 6771 | string s1 = "PC_VARIATION_CORRECTION_" + to_string(i) + "_ROW_"; |
| 6772 | s1 += to_string(j); |
| 6773 | string s2 = "PC_VARIATION_CORRECTION_UNC_" + to_string(i) + "_ROW_"; |
| 6774 | s2 += to_string(j); |
| 6775 | |
| 6776 | loc_param_s_type ant_row_table[] = |
| 6777 | { |
| 6778 | { s1.c_str(), &pcVarCorrStr, NULL, 's' }, |
| 6779 | { s2.c_str(), &pcVarCorrUncStr, NULL, 's' }, |
| 6780 | }; |
| 6781 | UTIL_READ_CONF_LONG(LOC_PATH_ANT_CORR, ant_row_table, array_size); |
| 6782 | |
| 6783 | gnssAntennaInfo.phaseCenterVariationCorrectionMillimeters.push_back( |
| 6784 | parseDoublesString(pcVarCorrStr)); |
| 6785 | gnssAntennaInfo.phaseCenterVariationCorrectionUncertaintyMillimeters.push_back( |
| 6786 | parseDoublesString(pcVarCorrUncStr)); |
| 6787 | } |
| 6788 | for (uint32_t j = 0; j < numberOfRowsSGC; j++) { |
| 6789 | char sigGainCorrStr[array_size_SGC]; |
| 6790 | char sigGainCorrUncStr[array_size_SGC]; |
| 6791 | |
| 6792 | string s3 = "SIGNAL_GAIN_CORRECTION_" + to_string(i) + "_ROW_"; |
| 6793 | s3 += to_string(j); |
| 6794 | string s4 = "SIGNAL_GAIN_CORRECTION_UNC_" + to_string(i) + "_ROW_"; |
| 6795 | s4 += to_string(j); |
| 6796 | |
| 6797 | loc_param_s_type ant_row_table[] = |
| 6798 | { |
| 6799 | { s3.c_str(), &sigGainCorrStr, NULL, 's' }, |
| 6800 | { s4.c_str(), &sigGainCorrUncStr, NULL, 's' }, |
| 6801 | }; |
| 6802 | UTIL_READ_CONF_LONG(LOC_PATH_ANT_CORR, ant_row_table, array_size_SGC); |
| 6803 | |
| 6804 | gnssAntennaInfo.signalGainCorrectionDbi.push_back( |
| 6805 | parseDoublesString(sigGainCorrStr)); |
| 6806 | gnssAntennaInfo.signalGainCorrectionUncertaintyDbi.push_back( |
| 6807 | parseDoublesString(sigGainCorrUncStr)); |
| 6808 | } |
| 6809 | gnssAntennaInformations.push_back(std::move(gnssAntennaInfo)); |
| 6810 | } |
| 6811 | if (antennaInfoVectorSize > 0) { |
| 6812 | antennaInfoCallback(gnssAntennaInformations); |
| 6813 | } |
| 6814 | } |
| 6815 | |
| 6816 | /* ==== DGnss Usable Reporter ========================================================= */ |
| 6817 | /* ======== UTILITIES ================================================================= */ |
| 6818 | |
| 6819 | void GnssAdapter::initCDFWService() |
| 6820 | { |
| 6821 | LOC_LOGv("mCdfwInterface %p", mCdfwInterface); |
| 6822 | if (nullptr == mCdfwInterface) { |
| 6823 | void* libHandle = nullptr; |
| 6824 | const char* libName = "libcdfw.so"; |
| 6825 | |
| 6826 | libHandle = nullptr; |
| 6827 | getCdfwInterface getter = (getCdfwInterface)dlGetSymFromLib(libHandle, |
| 6828 | libName, "getQCdfwInterface"); |
| 6829 | if (nullptr == getter) { |
| 6830 | LOC_LOGe("dlGetSymFromLib getQCdfwInterface failed"); |
| 6831 | } else { |
| 6832 | mCdfwInterface = getter(); |
| 6833 | } |
| 6834 | |
| 6835 | if (nullptr != mCdfwInterface) { |
| 6836 | QDgnssSessionActiveCb qDgnssSessionActiveCb = [this] (bool sessionActive) { |
| 6837 | mDGnssNeedReport = sessionActive; |
| 6838 | }; |
| 6839 | mCdfwInterface->startDgnssApiService(*mMsgTask); |
| 6840 | mQDgnssListenerHDL = mCdfwInterface->createUsableReporter(qDgnssSessionActiveCb); |
| 6841 | } |
| 6842 | } |
| 6843 | } |
| 6844 | |
| 6845 | /*==== DGnss Ntrip Source ==========================================================*/ |
| 6846 | void GnssAdapter::enablePPENtripStreamCommand(const GnssNtripConnectionParams& params, |
| 6847 | bool enableRTKEngine) { |
| 6848 | |
| 6849 | (void)enableRTKEngine; //future parameter, not used |
| 6850 | if (0 == params.size || params.hostNameOrIp.empty() || params.mountPoint.empty() || |
| 6851 | params.username.empty() || params.password.empty()) { |
| 6852 | LOC_LOGe("Ntrip parameters are invalid!"); |
| 6853 | return; |
| 6854 | } |
| 6855 | |
| 6856 | struct enableNtripMsg : public LocMsg { |
| 6857 | GnssAdapter& mAdapter; |
| 6858 | const GnssNtripConnectionParams mParams; |
| 6859 | |
| 6860 | inline enableNtripMsg(GnssAdapter& adapter, |
| 6861 | const GnssNtripConnectionParams& params) : |
| 6862 | LocMsg(), |
| 6863 | mAdapter(adapter), |
| 6864 | mParams(std::move(params)) {} |
| 6865 | inline virtual void proc() const { |
| 6866 | mAdapter.handleEnablePPENtrip(mParams); |
| 6867 | } |
| 6868 | }; |
| 6869 | sendMsg(new enableNtripMsg(*this, params)); |
| 6870 | } |
| 6871 | |
| 6872 | void GnssAdapter::handleEnablePPENtrip(const GnssNtripConnectionParams& params) { |
| 6873 | LOC_LOGd("%d %s %d %s %s %s %d mSendNmeaConsent %d", |
| 6874 | params.useSSL, params.hostNameOrIp.data(), params.port, |
| 6875 | params.mountPoint.data(), params.username.data(), params.password.data(), |
| 6876 | params.requiresNmeaLocation, mSendNmeaConsent); |
| 6877 | |
| 6878 | GnssNtripConnectionParams* pNtripParams = &(mStartDgnssNtripParams.ntripParams); |
| 6879 | |
| 6880 | if (pNtripParams->useSSL == params.useSSL && |
| 6881 | 0 == pNtripParams->hostNameOrIp.compare(params.hostNameOrIp) && |
| 6882 | pNtripParams->port == params.port && |
| 6883 | 0 == pNtripParams->mountPoint.compare(params.mountPoint) && |
| 6884 | 0 == pNtripParams->username.compare(params.username) && |
| 6885 | 0 == pNtripParams->password.compare(params.password) && |
| 6886 | pNtripParams->requiresNmeaLocation == params.requiresNmeaLocation && |
| 6887 | mDgnssState & DGNSS_STATE_ENABLE_NTRIP_COMMAND) { |
| 6888 | LOC_LOGd("received same Ntrip param"); |
| 6889 | return; |
| 6890 | } |
| 6891 | |
| 6892 | mDgnssState |= DGNSS_STATE_ENABLE_NTRIP_COMMAND; |
| 6893 | mDgnssState |= DGNSS_STATE_NO_NMEA_PENDING; |
| 6894 | mDgnssState &= ~DGNSS_STATE_NTRIP_SESSION_STARTED; |
| 6895 | |
| 6896 | mStartDgnssNtripParams.ntripParams = std::move(params); |
| 6897 | mStartDgnssNtripParams.nmea.clear(); |
| 6898 | if (mSendNmeaConsent && pNtripParams->requiresNmeaLocation) { |
| 6899 | mDgnssState &= ~DGNSS_STATE_NO_NMEA_PENDING; |
| 6900 | mDgnssLastNmeaBootTimeMilli = 0; |
| 6901 | return; |
| 6902 | } |
| 6903 | |
| 6904 | checkUpdateDgnssNtrip(false); |
| 6905 | } |
| 6906 | |
| 6907 | void GnssAdapter::disablePPENtripStreamCommand() { |
| 6908 | struct disableNtripMsg : public LocMsg { |
| 6909 | GnssAdapter& mAdapter; |
| 6910 | |
| 6911 | inline disableNtripMsg(GnssAdapter& adapter) : |
| 6912 | LocMsg(), |
| 6913 | mAdapter(adapter) {} |
| 6914 | inline virtual void proc() const { |
| 6915 | mAdapter.handleDisablePPENtrip(); |
| 6916 | } |
| 6917 | }; |
| 6918 | sendMsg(new disableNtripMsg(*this)); |
| 6919 | } |
| 6920 | |
| 6921 | void GnssAdapter::handleDisablePPENtrip() { |
| 6922 | mDgnssState &= ~DGNSS_STATE_ENABLE_NTRIP_COMMAND; |
| 6923 | mDgnssState |= DGNSS_STATE_NO_NMEA_PENDING; |
| 6924 | stopDgnssNtrip(); |
| 6925 | } |
| 6926 | |
| 6927 | void GnssAdapter::checkUpdateDgnssNtrip(bool isLocationValid) { |
| 6928 | LOC_LOGd("isInSession %d mDgnssState 0x%x isLocationValid %d", |
| 6929 | isInSession(), mDgnssState, isLocationValid); |
| 6930 | if (isInSession()) { |
| 6931 | uint64_t curBootTime = getBootTimeMilliSec(); |
| 6932 | if (mDgnssState == (DGNSS_STATE_ENABLE_NTRIP_COMMAND | DGNSS_STATE_NO_NMEA_PENDING)) { |
| 6933 | mDgnssState |= DGNSS_STATE_NTRIP_SESSION_STARTED; |
| 6934 | mXtraObserver.startDgnssSource(mStartDgnssNtripParams); |
| 6935 | if (isDgnssNmeaRequired()) { |
| 6936 | mDgnssLastNmeaBootTimeMilli = curBootTime; |
| 6937 | } |
| 6938 | } else if ((mDgnssState & DGNSS_STATE_NTRIP_SESSION_STARTED) && isLocationValid && |
| 6939 | isDgnssNmeaRequired() && |
| 6940 | curBootTime - mDgnssLastNmeaBootTimeMilli > DGNSS_RANGE_UPDATE_TIME_10MIN_IN_MILLI ) { |
| 6941 | mXtraObserver.updateNmeaToDgnssServer(mStartDgnssNtripParams.nmea); |
| 6942 | mDgnssLastNmeaBootTimeMilli = curBootTime; |
| 6943 | } |
| 6944 | } |
| 6945 | } |
| 6946 | |
| 6947 | void GnssAdapter::stopDgnssNtrip() { |
| 6948 | LOC_LOGd("isInSession %d mDgnssState 0x%x", isInSession(), mDgnssState); |
| 6949 | mStartDgnssNtripParams.nmea.clear(); |
| 6950 | if (mDgnssState & DGNSS_STATE_NTRIP_SESSION_STARTED) { |
| 6951 | mDgnssState &= ~DGNSS_STATE_NTRIP_SESSION_STARTED; |
| 6952 | mXtraObserver.stopDgnssSource(); |
| 6953 | } |
| 6954 | } |
| 6955 | |
| 6956 | void GnssAdapter::reportGGAToNtrip(const char* nmea) { |
| 6957 | |
| 6958 | #define POS_OF_GGA (3) //start position of "GGA" |
| 6959 | #define COMMAS_BEFORE_VALID (6) //"$GPGGA,,,,,,0,,,,,,,,*hh" |
| 6960 | |
| 6961 | if (!isDgnssNmeaRequired()) { |
| 6962 | return; |
| 6963 | } |
| 6964 | |
| 6965 | if (nullptr == nmea || 0 == strlen(nmea)) { |
| 6966 | return; |
| 6967 | } |
| 6968 | |
| 6969 | string nmeaString(nmea); |
| 6970 | size_t foundPos = nmeaString.find("GGA"); |
| 6971 | size_t foundNth = 0; |
| 6972 | string GGAString; |
| 6973 | |
| 6974 | if (foundPos != string::npos && foundPos >= POS_OF_GGA) { |
| 6975 | size_t foundNextSentence = nmeaString.find("$", foundPos); |
| 6976 | if (foundNextSentence != string::npos) { |
| 6977 | /* remove other sentences after GGA */ |
| 6978 | GGAString = nmeaString.substr(foundPos - POS_OF_GGA, foundNextSentence); |
| 6979 | } else { |
| 6980 | /* GGA is the last sentence */ |
| 6981 | GGAString = nmeaString.substr(foundPos - POS_OF_GGA); |
| 6982 | } |
| 6983 | LOC_LOGd("GGAString %s", GGAString.c_str()); |
| 6984 | |
| 6985 | foundPos = GGAString.find(","); |
| 6986 | while (foundPos != string::npos && foundNth < COMMAS_BEFORE_VALID) { |
| 6987 | foundPos++; |
| 6988 | foundNth++; |
| 6989 | foundPos = GGAString.find(",", foundPos); |
| 6990 | } |
| 6991 | |
| 6992 | if (COMMAS_BEFORE_VALID == foundNth && GGAString.at(foundPos-1) != '0') { |
| 6993 | mDgnssState |= DGNSS_STATE_NO_NMEA_PENDING; |
| 6994 | mStartDgnssNtripParams.nmea = std::move(GGAString); |
| 6995 | checkUpdateDgnssNtrip(true); |
| 6996 | } |
| 6997 | } |
| 6998 | |
| 6999 | return; |
| 7000 | } |