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1 /*
2  * Copyright (C) 2019 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <Utils.h>
18 #include <android/hardware/gnss/BnGnss.h>
19 #include <android/hardware/gnss/IGnss.h>
20 #include "gtest/gtest.h"
21 
22 #include <cutils/properties.h>
23 #include <utils/SystemClock.h>
24 
25 namespace android {
26 namespace hardware {
27 namespace gnss {
28 namespace common {
29 
30 using android::hardware::gnss::ElapsedRealtime;
31 using android::hardware::gnss::GnssLocation;
32 
33 using namespace measurement_corrections::V1_0;
34 using V1_0::GnssLocationFlags;
35 
36 using MeasurementCorrectionsAidl =
37         android::hardware::gnss::measurement_corrections::MeasurementCorrections;
38 using ReflectingPlaneAidl = android::hardware::gnss::measurement_corrections::ReflectingPlane;
39 using SingleSatCorrectionAidl =
40         android::hardware::gnss::measurement_corrections::SingleSatCorrection;
41 using ExcessPathInfo = SingleSatCorrectionAidl::ExcessPathInfo;
42 
43 template <>
getLocationTimestampMillis(const android::hardware::gnss::GnssLocation & location)44 int64_t Utils::getLocationTimestampMillis(const android::hardware::gnss::GnssLocation& location) {
45     return location.timestampMillis;
46 }
47 
48 template <>
getLocationTimestampMillis(const V1_0::GnssLocation & location)49 int64_t Utils::getLocationTimestampMillis(const V1_0::GnssLocation& location) {
50     return location.timestamp;
51 }
52 
53 template <>
checkLocationElapsedRealtime(const V1_0::GnssLocation &)54 void Utils::checkLocationElapsedRealtime(const V1_0::GnssLocation&) {}
55 
56 template <>
checkLocationElapsedRealtime(const android::hardware::gnss::GnssLocation & location)57 void Utils::checkLocationElapsedRealtime(const android::hardware::gnss::GnssLocation& location) {
58     checkElapsedRealtime(location.elapsedRealtime);
59 }
60 
checkElapsedRealtime(const ElapsedRealtime & elapsedRealtime)61 void Utils::checkElapsedRealtime(const ElapsedRealtime& elapsedRealtime) {
62     ASSERT_TRUE(elapsedRealtime.flags >= 0 &&
63                 elapsedRealtime.flags <= (ElapsedRealtime::HAS_TIMESTAMP_NS |
64                                           ElapsedRealtime::HAS_TIME_UNCERTAINTY_NS));
65     if (elapsedRealtime.flags & ElapsedRealtime::HAS_TIMESTAMP_NS) {
66         ASSERT_TRUE(elapsedRealtime.timestampNs > 0);
67     }
68     if (elapsedRealtime.flags & ElapsedRealtime::HAS_TIME_UNCERTAINTY_NS) {
69         ASSERT_TRUE(elapsedRealtime.timeUncertaintyNs > 0);
70     }
71 }
72 
getMockLocation(double latitudeDegrees,double longitudeDegrees,double horizontalAccuracyMeters)73 const GnssLocation Utils::getMockLocation(double latitudeDegrees, double longitudeDegrees,
74                                           double horizontalAccuracyMeters) {
75     ElapsedRealtime elapsedRealtime;
76     elapsedRealtime.flags =
77             ElapsedRealtime::HAS_TIMESTAMP_NS | ElapsedRealtime::HAS_TIME_UNCERTAINTY_NS;
78     elapsedRealtime.timestampNs = ::android::elapsedRealtimeNano();
79     elapsedRealtime.timeUncertaintyNs = 1000;
80     GnssLocation location;
81     location.gnssLocationFlags = 0xFF;
82     location.latitudeDegrees = latitudeDegrees;
83     location.longitudeDegrees = longitudeDegrees;
84     location.altitudeMeters = 500.0;
85     location.speedMetersPerSec = 0.0;
86     location.bearingDegrees = 0.0;
87     location.horizontalAccuracyMeters = horizontalAccuracyMeters;
88     location.verticalAccuracyMeters = 1000.0;
89     location.speedAccuracyMetersPerSecond = 1000.0;
90     location.bearingAccuracyDegrees = 90.0;
91     location.timestampMillis =
92             static_cast<int64_t>(kMockTimestamp + ::android::elapsedRealtimeNano() * 1e-6);
93     location.elapsedRealtime = elapsedRealtime;
94     return location;
95 }
96 
getMockMeasurementCorrections()97 const MeasurementCorrections Utils::getMockMeasurementCorrections() {
98     ReflectingPlane reflectingPlane = {
99             .latitudeDegrees = 37.4220039,
100             .longitudeDegrees = -122.0840991,
101             .altitudeMeters = 250.35,
102             .azimuthDegrees = 203.0,
103     };
104 
105     SingleSatCorrection singleSatCorrection1 = {
106             .singleSatCorrectionFlags = GnssSingleSatCorrectionFlags::HAS_SAT_IS_LOS_PROBABILITY |
107                                         GnssSingleSatCorrectionFlags::HAS_EXCESS_PATH_LENGTH |
108                                         GnssSingleSatCorrectionFlags::HAS_EXCESS_PATH_LENGTH_UNC |
109                                         GnssSingleSatCorrectionFlags::HAS_REFLECTING_PLANE,
110             .constellation = V1_0::GnssConstellationType::GPS,
111             .svid = 12,
112             .carrierFrequencyHz = 1.59975e+09,
113             .probSatIsLos = 0.50001,
114             .excessPathLengthMeters = 137.4802,
115             .excessPathLengthUncertaintyMeters = 25.5,
116             .reflectingPlane = reflectingPlane,
117     };
118     SingleSatCorrection singleSatCorrection2 = {
119             .singleSatCorrectionFlags = GnssSingleSatCorrectionFlags::HAS_SAT_IS_LOS_PROBABILITY |
120                                         GnssSingleSatCorrectionFlags::HAS_EXCESS_PATH_LENGTH |
121                                         GnssSingleSatCorrectionFlags::HAS_EXCESS_PATH_LENGTH_UNC,
122 
123             .constellation = V1_0::GnssConstellationType::GPS,
124             .svid = 9,
125             .carrierFrequencyHz = 1.59975e+09,
126             .probSatIsLos = 0.873,
127             .excessPathLengthMeters = 26.294,
128             .excessPathLengthUncertaintyMeters = 10.0,
129     };
130 
131     hidl_vec<SingleSatCorrection> singleSatCorrections = {singleSatCorrection1,
132                                                           singleSatCorrection2};
133     MeasurementCorrections mockCorrections = {
134             .latitudeDegrees = 37.4219999,
135             .longitudeDegrees = -122.0840575,
136             .altitudeMeters = 30.60062531,
137             .horizontalPositionUncertaintyMeters = 9.23542,
138             .verticalPositionUncertaintyMeters = 15.02341,
139             .toaGpsNanosecondsOfWeek = 2935633453L,
140             .satCorrections = singleSatCorrections,
141     };
142     return mockCorrections;
143 }
144 
145 const measurement_corrections::V1_1::MeasurementCorrections
getMockMeasurementCorrections_1_1()146 Utils::getMockMeasurementCorrections_1_1() {
147     MeasurementCorrections mockCorrections_1_0 = getMockMeasurementCorrections();
148 
149     measurement_corrections::V1_1::SingleSatCorrection singleSatCorrection1 = {
150             .v1_0 = mockCorrections_1_0.satCorrections[0],
151             .constellation = V2_0::GnssConstellationType::IRNSS,
152     };
153     measurement_corrections::V1_1::SingleSatCorrection singleSatCorrection2 = {
154             .v1_0 = mockCorrections_1_0.satCorrections[1],
155             .constellation = V2_0::GnssConstellationType::IRNSS,
156     };
157 
158     mockCorrections_1_0.satCorrections[0].constellation = V1_0::GnssConstellationType::UNKNOWN;
159     mockCorrections_1_0.satCorrections[1].constellation = V1_0::GnssConstellationType::UNKNOWN;
160 
161     hidl_vec<measurement_corrections::V1_1::SingleSatCorrection> singleSatCorrections = {
162             singleSatCorrection1, singleSatCorrection2};
163 
164     measurement_corrections::V1_1::MeasurementCorrections mockCorrections_1_1 = {
165             .v1_0 = mockCorrections_1_0,
166             .hasEnvironmentBearing = true,
167             .environmentBearingDegrees = 45.0,
168             .environmentBearingUncertaintyDegrees = 4.0,
169             .satCorrections = singleSatCorrections,
170     };
171     return mockCorrections_1_1;
172 }
173 
174 namespace {
createExcessPathInfo(float excessPathLengthMeters,float excessPathLengthUncertaintyMeters,const ReflectingPlaneAidl * reflectingPlane,float attenuationDb)175 const ExcessPathInfo createExcessPathInfo(float excessPathLengthMeters,
176                                           float excessPathLengthUncertaintyMeters,
177                                           const ReflectingPlaneAidl* reflectingPlane,
178                                           float attenuationDb) {
179     ExcessPathInfo excessPathInfo;
180     excessPathInfo.excessPathInfoFlags =
181             ExcessPathInfo::EXCESS_PATH_INFO_HAS_EXCESS_PATH_LENGTH |
182             ExcessPathInfo::EXCESS_PATH_INFO_HAS_EXCESS_PATH_LENGTH_UNC |
183             ExcessPathInfo::EXCESS_PATH_INFO_HAS_ATTENUATION |
184             (reflectingPlane == nullptr ? 0
185                                         : ExcessPathInfo::EXCESS_PATH_INFO_HAS_REFLECTING_PLANE);
186     excessPathInfo.excessPathLengthMeters = excessPathLengthMeters;
187     excessPathInfo.excessPathLengthUncertaintyMeters = excessPathLengthUncertaintyMeters;
188     if (reflectingPlane != nullptr) {
189         excessPathInfo.reflectingPlane = *reflectingPlane;
190     }
191     excessPathInfo.attenuationDb = attenuationDb;
192     return excessPathInfo;
193 }
194 }  // anonymous namespace
195 
getMockMeasurementCorrections_aidl()196 const MeasurementCorrectionsAidl Utils::getMockMeasurementCorrections_aidl() {
197     ReflectingPlaneAidl reflectingPlane;
198     reflectingPlane.latitudeDegrees = 37.4220039;
199     reflectingPlane.longitudeDegrees = -122.0840991;
200     reflectingPlane.altitudeMeters = 250.35;
201     reflectingPlane.reflectingPlaneAzimuthDegrees = 203.0;
202 
203     SingleSatCorrectionAidl singleSatCorrection1;
204     singleSatCorrection1.singleSatCorrectionFlags =
205             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_SAT_IS_LOS_PROBABILITY |
206             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_EXCESS_PATH_LENGTH |
207             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_EXCESS_PATH_LENGTH_UNC |
208             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_ATTENUATION;
209     singleSatCorrection1.constellation = android::hardware::gnss::GnssConstellationType::GPS;
210     singleSatCorrection1.svid = 12;
211     singleSatCorrection1.carrierFrequencyHz = 1.59975e+09;
212     singleSatCorrection1.probSatIsLos = 0.50001;
213     singleSatCorrection1.combinedExcessPathLengthMeters = 203.5;
214     singleSatCorrection1.combinedExcessPathLengthUncertaintyMeters = 59.1;
215     singleSatCorrection1.combinedAttenuationDb = -4.3;
216     singleSatCorrection1.excessPathInfos.push_back(
217             createExcessPathInfo(137.4, 25.5, &reflectingPlane, -3.5));
218     singleSatCorrection1.excessPathInfos.push_back(
219             createExcessPathInfo(296.3, 87.2, &reflectingPlane, -5.1));
220 
221     SingleSatCorrectionAidl singleSatCorrection2;
222     singleSatCorrection2.singleSatCorrectionFlags =
223             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_SAT_IS_LOS_PROBABILITY |
224             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_EXCESS_PATH_LENGTH |
225             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_EXCESS_PATH_LENGTH_UNC |
226             SingleSatCorrectionAidl::SINGLE_SAT_CORRECTION_HAS_COMBINED_ATTENUATION;
227     singleSatCorrection2.constellation = GnssConstellationType::GPS;
228     singleSatCorrection2.svid = 9;
229     singleSatCorrection2.carrierFrequencyHz = 1.59975e+09;
230     singleSatCorrection2.probSatIsLos = 0.873;
231     singleSatCorrection2.combinedExcessPathLengthMeters = 26.294;
232     singleSatCorrection2.combinedExcessPathLengthUncertaintyMeters = 10.0;
233     singleSatCorrection2.combinedAttenuationDb = -0.5;
234     singleSatCorrection2.excessPathInfos.push_back(
235             createExcessPathInfo(26.294, 10.0, nullptr, -0.5));
236 
237     std::vector<SingleSatCorrectionAidl> singleSatCorrections = {singleSatCorrection1,
238                                                                  singleSatCorrection2};
239     MeasurementCorrectionsAidl mockCorrections;
240     mockCorrections.latitudeDegrees = 37.4219999;
241     mockCorrections.longitudeDegrees = -122.0840575;
242     mockCorrections.altitudeMeters = 30.60062531;
243     mockCorrections.horizontalPositionUncertaintyMeters = 9.23542;
244     mockCorrections.verticalPositionUncertaintyMeters = 15.02341;
245     mockCorrections.toaGpsNanosecondsOfWeek = 2935633453L;
246     mockCorrections.hasEnvironmentBearing = true;
247     mockCorrections.environmentBearingDegrees = 45.0;
248     mockCorrections.environmentBearingUncertaintyDegrees = 4.0;
249     mockCorrections.satCorrections = singleSatCorrections;
250 
251     return mockCorrections;
252 }
253 
254 /*
255  * MapConstellationType:
256  * Given a GnssConstellationType_2_0 type constellation, maps to its equivalent
257  * GnssConstellationType_1_0 type constellation. For constellations that do not have
258  * an equivalent value, maps to GnssConstellationType_1_0::UNKNOWN
259  */
mapConstellationType(V2_0::GnssConstellationType constellation)260 V1_0::GnssConstellationType Utils::mapConstellationType(V2_0::GnssConstellationType constellation) {
261     switch (constellation) {
262         case V2_0::GnssConstellationType::GPS:
263             return V1_0::GnssConstellationType::GPS;
264         case V2_0::GnssConstellationType::SBAS:
265             return V1_0::GnssConstellationType::SBAS;
266         case V2_0::GnssConstellationType::GLONASS:
267             return V1_0::GnssConstellationType::GLONASS;
268         case V2_0::GnssConstellationType::QZSS:
269             return V1_0::GnssConstellationType::QZSS;
270         case V2_0::GnssConstellationType::BEIDOU:
271             return V1_0::GnssConstellationType::BEIDOU;
272         case V2_0::GnssConstellationType::GALILEO:
273             return V1_0::GnssConstellationType::GALILEO;
274         default:
275             return V1_0::GnssConstellationType::UNKNOWN;
276     }
277 }
278 
isAutomotiveDevice()279 bool Utils::isAutomotiveDevice() {
280     char buffer[PROPERTY_VALUE_MAX] = {0};
281     property_get("ro.hardware.type", buffer, "");
282     return strncmp(buffer, "automotive", PROPERTY_VALUE_MAX) == 0;
283 }
284 
285 }  // namespace common
286 }  // namespace gnss
287 }  // namespace hardware
288 }  // namespace android
289