blob: ffb09ad458b16bfcb37a16e7ac6d21ecb4f9fed3 [file] [log] [blame]
/*
* This file is auto-generated. DO NOT MODIFY.
*/
package android.hardware.radio.network;
public class SignalThresholdInfo implements android.os.Parcelable
{
public int signalMeasurement = 0;
public int hysteresisMs = 0;
public int hysteresisDb = 0;
public int[] thresholds;
public boolean isEnabled = false;
public int ran;
@Override
public final int getStability() { return android.os.Parcelable.PARCELABLE_STABILITY_VINTF; }
public static final android.os.Parcelable.Creator<SignalThresholdInfo> CREATOR = new android.os.Parcelable.Creator<SignalThresholdInfo>() {
@Override
public SignalThresholdInfo createFromParcel(android.os.Parcel _aidl_source) {
SignalThresholdInfo _aidl_out = new SignalThresholdInfo();
_aidl_out.readFromParcel(_aidl_source);
return _aidl_out;
}
@Override
public SignalThresholdInfo[] newArray(int _aidl_size) {
return new SignalThresholdInfo[_aidl_size];
}
};
@Override public final void writeToParcel(android.os.Parcel _aidl_parcel, int _aidl_flag)
{
int _aidl_start_pos = _aidl_parcel.dataPosition();
_aidl_parcel.writeInt(0);
_aidl_parcel.writeInt(signalMeasurement);
_aidl_parcel.writeInt(hysteresisMs);
_aidl_parcel.writeInt(hysteresisDb);
_aidl_parcel.writeIntArray(thresholds);
_aidl_parcel.writeBoolean(isEnabled);
_aidl_parcel.writeInt(ran);
int _aidl_end_pos = _aidl_parcel.dataPosition();
_aidl_parcel.setDataPosition(_aidl_start_pos);
_aidl_parcel.writeInt(_aidl_end_pos - _aidl_start_pos);
_aidl_parcel.setDataPosition(_aidl_end_pos);
}
public final void readFromParcel(android.os.Parcel _aidl_parcel)
{
int _aidl_start_pos = _aidl_parcel.dataPosition();
int _aidl_parcelable_size = _aidl_parcel.readInt();
try {
if (_aidl_parcelable_size < 4) throw new android.os.BadParcelableException("Parcelable too small");;
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
signalMeasurement = _aidl_parcel.readInt();
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
hysteresisMs = _aidl_parcel.readInt();
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
hysteresisDb = _aidl_parcel.readInt();
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
thresholds = _aidl_parcel.createIntArray();
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
isEnabled = _aidl_parcel.readBoolean();
if (_aidl_parcel.dataPosition() - _aidl_start_pos >= _aidl_parcelable_size) return;
ran = _aidl_parcel.readInt();
} finally {
if (_aidl_start_pos > (Integer.MAX_VALUE - _aidl_parcelable_size)) {
throw new android.os.BadParcelableException("Overflow in the size of parcelable");
}
_aidl_parcel.setDataPosition(_aidl_start_pos + _aidl_parcelable_size);
}
}
public static final int SIGNAL_MEASUREMENT_TYPE_RSSI = 1;
public static final int SIGNAL_MEASUREMENT_TYPE_RSCP = 2;
public static final int SIGNAL_MEASUREMENT_TYPE_RSRP = 3;
public static final int SIGNAL_MEASUREMENT_TYPE_RSRQ = 4;
public static final int SIGNAL_MEASUREMENT_TYPE_RSSNR = 5;
public static final int SIGNAL_MEASUREMENT_TYPE_SSRSRP = 6;
public static final int SIGNAL_MEASUREMENT_TYPE_SSRSRQ = 7;
public static final int SIGNAL_MEASUREMENT_TYPE_SSSINR = 8;
public static final int SIGNAL_MEASUREMENT_TYPE_ECNO = 9;
@Override
public String toString() {
java.util.StringJoiner _aidl_sj = new java.util.StringJoiner(", ", "{", "}");
_aidl_sj.add("signalMeasurement: " + (signalMeasurement));
_aidl_sj.add("hysteresisMs: " + (hysteresisMs));
_aidl_sj.add("hysteresisDb: " + (hysteresisDb));
_aidl_sj.add("thresholds: " + (java.util.Arrays.toString(thresholds)));
_aidl_sj.add("isEnabled: " + (isEnabled));
_aidl_sj.add("ran: " + (android.hardware.radio.AccessNetwork.$.toString(ran)));
return "android.hardware.radio.network.SignalThresholdInfo" + _aidl_sj.toString() ;
}
@Override
public int describeContents() {
int _mask = 0;
return _mask;
}
}