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260 lines
10 KiB
260 lines
10 KiB
/* |
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* Copyright (C) 2016 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#define LOG_TAG "GnssHAL_GnssMeasurementInterface" |
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#include "GnssMeasurement.h" |
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namespace android { |
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namespace hardware { |
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namespace gnss { |
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namespace V1_0 { |
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namespace implementation { |
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sp<IGnssMeasurementCallback> GnssMeasurement::sGnssMeasureCbIface = nullptr; |
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GpsMeasurementCallbacks GnssMeasurement::sGnssMeasurementCbs = { |
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.size = sizeof(GpsMeasurementCallbacks), |
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.measurement_callback = gpsMeasurementCb, |
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.gnss_measurement_callback = gnssMeasurementCb |
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}; |
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GnssMeasurement::GnssMeasurement(const GpsMeasurementInterface* gpsMeasurementIface) |
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: mGnssMeasureIface(gpsMeasurementIface) {} |
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void GnssMeasurement::gnssMeasurementCb(LegacyGnssData* legacyGnssData) { |
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if (sGnssMeasureCbIface == nullptr) { |
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ALOGE("%s: GNSSMeasurement Callback Interface configured incorrectly", __func__); |
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return; |
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} |
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if (legacyGnssData == nullptr) { |
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ALOGE("%s: Invalid GnssData from GNSS HAL", __func__); |
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return; |
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} |
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IGnssMeasurementCallback::GnssData gnssData; |
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gnssData.measurementCount = std::min(legacyGnssData->measurement_count, |
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static_cast<size_t>(GnssMax::SVS_COUNT)); |
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for (size_t i = 0; i < gnssData.measurementCount; i++) { |
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auto entry = legacyGnssData->measurements[i]; |
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auto state = static_cast<GnssMeasurementState>(entry.state); |
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if (state & IGnssMeasurementCallback::GnssMeasurementState::STATE_TOW_DECODED) { |
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state |= IGnssMeasurementCallback::GnssMeasurementState::STATE_TOW_KNOWN; |
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} |
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if (state & IGnssMeasurementCallback::GnssMeasurementState::STATE_GLO_TOD_DECODED) { |
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state |= IGnssMeasurementCallback::GnssMeasurementState::STATE_GLO_TOD_KNOWN; |
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} |
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gnssData.measurements[i] = { |
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.flags = entry.flags, |
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.svid = entry.svid, |
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.constellation = static_cast<GnssConstellationType>(entry.constellation), |
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.timeOffsetNs = entry.time_offset_ns, |
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.state = state, |
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.receivedSvTimeInNs = entry.received_sv_time_in_ns, |
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.receivedSvTimeUncertaintyInNs = entry.received_sv_time_uncertainty_in_ns, |
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.cN0DbHz = entry.c_n0_dbhz, |
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.pseudorangeRateMps = entry.pseudorange_rate_mps, |
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.pseudorangeRateUncertaintyMps = entry.pseudorange_rate_uncertainty_mps, |
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.accumulatedDeltaRangeState = entry.accumulated_delta_range_state, |
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.accumulatedDeltaRangeM = entry.accumulated_delta_range_m, |
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.accumulatedDeltaRangeUncertaintyM = entry.accumulated_delta_range_uncertainty_m, |
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.carrierFrequencyHz = entry.carrier_frequency_hz, |
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.carrierCycles = entry.carrier_cycles, |
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.carrierPhase = entry.carrier_phase, |
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.carrierPhaseUncertainty = entry.carrier_phase_uncertainty, |
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.multipathIndicator = static_cast<IGnssMeasurementCallback::GnssMultipathIndicator>( |
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entry.multipath_indicator), |
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.snrDb = entry.snr_db |
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}; |
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} |
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auto clockVal = legacyGnssData->clock; |
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gnssData.clock = { |
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.gnssClockFlags = clockVal.flags, |
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.leapSecond = clockVal.leap_second, |
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.timeNs = clockVal.time_ns, |
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.timeUncertaintyNs = clockVal.time_uncertainty_ns, |
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.fullBiasNs = clockVal.full_bias_ns, |
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.biasNs = clockVal.bias_ns, |
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.biasUncertaintyNs = clockVal.bias_uncertainty_ns, |
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.driftNsps = clockVal.drift_nsps, |
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.driftUncertaintyNsps = clockVal.drift_uncertainty_nsps, |
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.hwClockDiscontinuityCount = clockVal.hw_clock_discontinuity_count |
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}; |
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auto ret = sGnssMeasureCbIface->GnssMeasurementCb(gnssData); |
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if (!ret.isOk()) { |
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ALOGE("%s: Unable to invoke callback", __func__); |
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} |
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} |
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/* |
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* The code in the following method has been moved here from GnssLocationProvider. |
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* It converts GpsData to GnssData. This code is no longer required in |
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* GnssLocationProvider since GpsData is deprecated and no longer part of the |
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* GNSS interface. |
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*/ |
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void GnssMeasurement::gpsMeasurementCb(GpsData* gpsData) { |
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if (sGnssMeasureCbIface == nullptr) { |
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ALOGE("%s: GNSSMeasurement Callback Interface configured incorrectly", __func__); |
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return; |
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} |
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if (gpsData == nullptr) { |
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ALOGE("%s: Invalid GpsData from GNSS HAL", __func__); |
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return; |
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} |
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IGnssMeasurementCallback::GnssData gnssData; |
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gnssData.measurementCount = std::min(gpsData->measurement_count, |
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static_cast<size_t>(GnssMax::SVS_COUNT)); |
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for (size_t i = 0; i < gnssData.measurementCount; i++) { |
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auto entry = gpsData->measurements[i]; |
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gnssData.measurements[i].flags = entry.flags; |
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gnssData.measurements[i].svid = static_cast<int32_t>(entry.prn); |
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if (entry.prn >= 1 && entry.prn <= 32) { |
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gnssData.measurements[i].constellation = GnssConstellationType::GPS; |
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} else { |
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gnssData.measurements[i].constellation = |
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GnssConstellationType::UNKNOWN; |
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} |
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gnssData.measurements[i].timeOffsetNs = entry.time_offset_ns; |
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gnssData.measurements[i].state = entry.state; |
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gnssData.measurements[i].receivedSvTimeInNs = entry.received_gps_tow_ns; |
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gnssData.measurements[i].receivedSvTimeUncertaintyInNs = |
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entry.received_gps_tow_uncertainty_ns; |
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gnssData.measurements[i].cN0DbHz = entry.c_n0_dbhz; |
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gnssData.measurements[i].pseudorangeRateMps = entry.pseudorange_rate_mps; |
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gnssData.measurements[i].pseudorangeRateUncertaintyMps = |
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entry.pseudorange_rate_uncertainty_mps; |
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gnssData.measurements[i].accumulatedDeltaRangeState = |
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entry.accumulated_delta_range_state; |
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gnssData.measurements[i].accumulatedDeltaRangeM = |
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entry.accumulated_delta_range_m; |
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gnssData.measurements[i].accumulatedDeltaRangeUncertaintyM = |
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entry.accumulated_delta_range_uncertainty_m; |
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if (entry.flags & GNSS_MEASUREMENT_HAS_CARRIER_FREQUENCY) { |
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gnssData.measurements[i].carrierFrequencyHz = entry.carrier_frequency_hz; |
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} else { |
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gnssData.measurements[i].carrierFrequencyHz = 0; |
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} |
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if (entry.flags & GNSS_MEASUREMENT_HAS_CARRIER_PHASE) { |
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gnssData.measurements[i].carrierPhase = entry.carrier_phase; |
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} else { |
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gnssData.measurements[i].carrierPhase = 0; |
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} |
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if (entry.flags & GNSS_MEASUREMENT_HAS_CARRIER_PHASE_UNCERTAINTY) { |
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gnssData.measurements[i].carrierPhaseUncertainty = entry.carrier_phase_uncertainty; |
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} else { |
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gnssData.measurements[i].carrierPhaseUncertainty = 0; |
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} |
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gnssData.measurements[i].multipathIndicator = |
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static_cast<IGnssMeasurementCallback::GnssMultipathIndicator>( |
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entry.multipath_indicator); |
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if (entry.flags & GNSS_MEASUREMENT_HAS_SNR) { |
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gnssData.measurements[i].snrDb = entry.snr_db; |
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} else { |
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gnssData.measurements[i].snrDb = 0; |
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} |
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} |
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auto clockVal = gpsData->clock; |
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static uint32_t discontinuity_count_to_handle_old_clock_type = 0; |
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gnssData.clock.leapSecond = clockVal.leap_second; |
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/* |
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* GnssClock only supports the more effective HW_CLOCK type, so type |
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* handling and documentation complexity has been removed. To convert the |
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* old GPS_CLOCK types (active only in a limited number of older devices), |
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* the GPS time information is handled as an always discontinuous HW clock, |
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* with the GPS time information put into the full_bias_ns instead - so that |
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* time_ns - full_bias_ns = local estimate of GPS time. Additionally, the |
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* sign of full_bias_ns and bias_ns has flipped between GpsClock & |
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* GnssClock, so that is also handled below. |
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*/ |
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switch (clockVal.type) { |
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case GPS_CLOCK_TYPE_UNKNOWN: |
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// Clock type unsupported. |
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ALOGE("Unknown clock type provided."); |
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break; |
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case GPS_CLOCK_TYPE_LOCAL_HW_TIME: |
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// Already local hardware time. No need to do anything. |
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break; |
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case GPS_CLOCK_TYPE_GPS_TIME: |
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// GPS time, need to convert. |
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clockVal.flags |= GPS_CLOCK_HAS_FULL_BIAS; |
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clockVal.full_bias_ns = clockVal.time_ns; |
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clockVal.time_ns = 0; |
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gnssData.clock.hwClockDiscontinuityCount = |
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discontinuity_count_to_handle_old_clock_type++; |
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break; |
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} |
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gnssData.clock.timeNs = clockVal.time_ns; |
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gnssData.clock.timeUncertaintyNs = clockVal.time_uncertainty_ns; |
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/* |
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* Definition of sign for full_bias_ns & bias_ns has been changed since N, |
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* so flip signs here. |
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*/ |
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gnssData.clock.fullBiasNs = -(clockVal.full_bias_ns); |
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gnssData.clock.biasNs = -(clockVal.bias_ns); |
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gnssData.clock.biasUncertaintyNs = clockVal.bias_uncertainty_ns; |
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gnssData.clock.driftNsps = clockVal.drift_nsps; |
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gnssData.clock.driftUncertaintyNsps = clockVal.drift_uncertainty_nsps; |
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gnssData.clock.gnssClockFlags = clockVal.flags; |
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auto ret = sGnssMeasureCbIface->GnssMeasurementCb(gnssData); |
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if (!ret.isOk()) { |
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ALOGE("%s: Unable to invoke callback", __func__); |
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} |
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} |
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// Methods from ::android::hardware::gnss::V1_0::IGnssMeasurement follow. |
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Return<GnssMeasurement::GnssMeasurementStatus> GnssMeasurement::setCallback( |
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const sp<IGnssMeasurementCallback>& callback) { |
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if (mGnssMeasureIface == nullptr) { |
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ALOGE("%s: GnssMeasure interface is unavailable", __func__); |
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return GnssMeasurementStatus::ERROR_GENERIC; |
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} |
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sGnssMeasureCbIface = callback; |
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return static_cast<GnssMeasurement::GnssMeasurementStatus>( |
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mGnssMeasureIface->init(&sGnssMeasurementCbs)); |
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} |
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Return<void> GnssMeasurement::close() { |
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if (mGnssMeasureIface == nullptr) { |
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ALOGE("%s: GnssMeasure interface is unavailable", __func__); |
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} else { |
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mGnssMeasureIface->close(); |
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} |
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return Void(); |
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} |
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} // namespace implementation |
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} // namespace V1_0 |
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} // namespace gnss |
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} // namespace hardware |
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} // namespace android
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