1 /* 2 * Copyright (C) 2022 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 package android.telephony.satellite; 18 19 import android.annotation.NonNull; 20 import android.os.Parcel; 21 import android.os.Parcelable; 22 23 import java.util.HashMap; 24 import java.util.HashSet; 25 import java.util.Map; 26 import java.util.Objects; 27 import java.util.Set; 28 29 /** 30 * @hide 31 */ 32 public final class SatelliteCapabilities implements Parcelable { 33 /** 34 * List of technologies supported by the satellite modem. 35 */ 36 @NonNull @SatelliteManager.NTRadioTechnology private Set<Integer> mSupportedRadioTechnologies; 37 38 /** 39 * Whether UE needs to point to a satellite to send and receive data. 40 */ 41 private boolean mIsPointingRequired; 42 43 /** 44 * The maximum number of bytes per datagram that can be sent over satellite. 45 */ 46 private int mMaxBytesPerOutgoingDatagram; 47 48 /** 49 * Antenna Position received from satellite modem which gives information about antenna 50 * direction to be used with satellite communication and suggested device hold positions. 51 * Map key: {@link SatelliteManager.DeviceHoldPosition} value: AntennaPosition 52 */ 53 @NonNull 54 private Map<Integer, AntennaPosition> mAntennaPositionMap; 55 56 /** 57 * @hide 58 */ SatelliteCapabilities(Set<Integer> supportedRadioTechnologies, boolean isPointingRequired, int maxBytesPerOutgoingDatagram, @NonNull Map<Integer, AntennaPosition> antennaPositionMap)59 public SatelliteCapabilities(Set<Integer> supportedRadioTechnologies, 60 boolean isPointingRequired, int maxBytesPerOutgoingDatagram, 61 @NonNull Map<Integer, AntennaPosition> antennaPositionMap) { 62 mSupportedRadioTechnologies = supportedRadioTechnologies == null 63 ? new HashSet<>() : supportedRadioTechnologies; 64 mIsPointingRequired = isPointingRequired; 65 mMaxBytesPerOutgoingDatagram = maxBytesPerOutgoingDatagram; 66 mAntennaPositionMap = antennaPositionMap; 67 } 68 SatelliteCapabilities(Parcel in)69 private SatelliteCapabilities(Parcel in) { 70 readFromParcel(in); 71 } 72 73 @Override describeContents()74 public int describeContents() { 75 return 0; 76 } 77 78 @Override writeToParcel(@onNull Parcel out, int flags)79 public void writeToParcel(@NonNull Parcel out, int flags) { 80 if (mSupportedRadioTechnologies != null && !mSupportedRadioTechnologies.isEmpty()) { 81 out.writeInt(mSupportedRadioTechnologies.size()); 82 for (int technology : mSupportedRadioTechnologies) { 83 out.writeInt(technology); 84 } 85 } else { 86 out.writeInt(0); 87 } 88 89 out.writeBoolean(mIsPointingRequired); 90 out.writeInt(mMaxBytesPerOutgoingDatagram); 91 92 if (mAntennaPositionMap != null && !mAntennaPositionMap.isEmpty()) { 93 int size = mAntennaPositionMap.size(); 94 out.writeInt(size); 95 for (Map.Entry<Integer, AntennaPosition> entry : mAntennaPositionMap.entrySet()) { 96 out.writeInt(entry.getKey()); 97 out.writeParcelable(entry.getValue(), flags); 98 } 99 } else { 100 out.writeInt(0); 101 } 102 } 103 104 @NonNull public static final Creator<SatelliteCapabilities> CREATOR = new Creator<>() { 105 @Override 106 public SatelliteCapabilities createFromParcel(Parcel in) { 107 return new SatelliteCapabilities(in); 108 } 109 110 @Override 111 public SatelliteCapabilities[] newArray(int size) { 112 return new SatelliteCapabilities[size]; 113 } 114 }; 115 116 @Override toString()117 @NonNull public String toString() { 118 StringBuilder sb = new StringBuilder(); 119 120 sb.append("SupportedRadioTechnology:"); 121 if (mSupportedRadioTechnologies != null && !mSupportedRadioTechnologies.isEmpty()) { 122 for (int technology : mSupportedRadioTechnologies) { 123 sb.append(technology); 124 sb.append(","); 125 } 126 } else { 127 sb.append("none,"); 128 } 129 130 sb.append("isPointingRequired:"); 131 sb.append(mIsPointingRequired); 132 sb.append(","); 133 134 sb.append("maxBytesPerOutgoingDatagram:"); 135 sb.append(mMaxBytesPerOutgoingDatagram); 136 sb.append(","); 137 138 sb.append("antennaPositionMap:"); 139 sb.append(mAntennaPositionMap); 140 return sb.toString(); 141 } 142 143 @Override equals(Object o)144 public boolean equals(Object o) { 145 if (this == o) return true; 146 if (o == null || getClass() != o.getClass()) return false; 147 SatelliteCapabilities that = (SatelliteCapabilities) o; 148 return Objects.equals(mSupportedRadioTechnologies, that.mSupportedRadioTechnologies) 149 && mIsPointingRequired == that.mIsPointingRequired 150 && mMaxBytesPerOutgoingDatagram == that.mMaxBytesPerOutgoingDatagram 151 && Objects.equals(mAntennaPositionMap, that.mAntennaPositionMap); 152 } 153 154 @Override hashCode()155 public int hashCode() { 156 return Objects.hash(mSupportedRadioTechnologies, mIsPointingRequired, 157 mMaxBytesPerOutgoingDatagram, mAntennaPositionMap); 158 } 159 160 /** 161 * @return The list of technologies supported by the satellite modem. 162 */ 163 @NonNull @SatelliteManager.NTRadioTechnology public Set<Integer> getSupportedRadioTechnologies()164 getSupportedRadioTechnologies() { 165 return mSupportedRadioTechnologies; 166 } 167 168 /** 169 * Get whether UE needs to point to a satellite to send and receive data. 170 * 171 * @return {@code true} if UE needs to point to a satellite to send and receive data and 172 * {@code false} otherwise. 173 */ isPointingRequired()174 public boolean isPointingRequired() { 175 return mIsPointingRequired; 176 } 177 178 /** 179 * The maximum number of bytes per datagram that can be sent over satellite. 180 * 181 * @return The maximum number of bytes per datagram that can be sent over satellite. 182 */ getMaxBytesPerOutgoingDatagram()183 public int getMaxBytesPerOutgoingDatagram() { 184 return mMaxBytesPerOutgoingDatagram; 185 } 186 187 /** 188 * Antenna Position received from satellite modem which gives information about antenna 189 * direction to be used with satellite communication and suggested device hold positions. 190 * @return Map key: {@link SatelliteManager.DeviceHoldPosition} value: AntennaPosition 191 */ 192 @NonNull getAntennaPositionMap()193 public Map<Integer, AntennaPosition> getAntennaPositionMap() { 194 return mAntennaPositionMap; 195 } 196 readFromParcel(Parcel in)197 private void readFromParcel(Parcel in) { 198 mSupportedRadioTechnologies = new HashSet<>(); 199 int numSupportedRadioTechnologies = in.readInt(); 200 if (numSupportedRadioTechnologies > 0) { 201 for (int i = 0; i < numSupportedRadioTechnologies; i++) { 202 mSupportedRadioTechnologies.add(in.readInt()); 203 } 204 } 205 206 mIsPointingRequired = in.readBoolean(); 207 mMaxBytesPerOutgoingDatagram = in.readInt(); 208 209 mAntennaPositionMap = new HashMap<>(); 210 int antennaPositionMapSize = in.readInt(); 211 for (int i = 0; i < antennaPositionMapSize; i++) { 212 int key = in.readInt(); 213 AntennaPosition antennaPosition = in.readParcelable( 214 AntennaPosition.class.getClassLoader(), AntennaPosition.class); 215 mAntennaPositionMap.put(key, antennaPosition); 216 } 217 } 218 } 219