blob: 4943835e445f20da62ebe5a835b7d19549b7c6d1 [file] [log] [blame]
/**
* Autogenerated by Thrift Compiler (0.14.1)
*
* DO NOT EDIT UNLESS YOU ARE SURE THAT YOU KNOW WHAT YOU ARE DOING
* @generated
*/
using System;
using System.Collections;
using System.Collections.Generic;
using System.Text;
using System.IO;
using System.Linq;
using System.Threading;
using System.Threading.Tasks;
using Microsoft.Extensions.Logging;
using Thrift;
using Thrift.Collections;
using Thrift.Protocol;
using Thrift.Protocol.Entities;
using Thrift.Protocol.Utilities;
using Thrift.Transport;
using Thrift.Transport.Client;
using Thrift.Transport.Server;
using Thrift.Processor;
#pragma warning disable IDE0079 // remove unnecessary pragmas
#pragma warning disable IDE1006 // parts of the code use IDL spelling
public partial class TSInsertRecordsOfOneDeviceReq : TBase
{
private bool _isAligned;
public long SessionId { get; set; }
public string PrefixPath { get; set; }
public List<List<string>> MeasurementsList { get; set; }
public List<byte[]> ValuesList { get; set; }
public List<long> Timestamps { get; set; }
public bool IsAligned
{
get
{
return _isAligned;
}
set
{
__isset.isAligned = true;
this._isAligned = value;
}
}
public Isset __isset;
public struct Isset
{
public bool isAligned;
}
public TSInsertRecordsOfOneDeviceReq()
{
}
public TSInsertRecordsOfOneDeviceReq(long sessionId, string prefixPath, List<List<string>> measurementsList, List<byte[]> valuesList, List<long> timestamps) : this()
{
this.SessionId = sessionId;
this.PrefixPath = prefixPath;
this.MeasurementsList = measurementsList;
this.ValuesList = valuesList;
this.Timestamps = timestamps;
}
public async global::System.Threading.Tasks.Task ReadAsync(TProtocol iprot, CancellationToken cancellationToken)
{
iprot.IncrementRecursionDepth();
try
{
bool isset_sessionId = false;
bool isset_prefixPath = false;
bool isset_measurementsList = false;
bool isset_valuesList = false;
bool isset_timestamps = false;
TField field;
await iprot.ReadStructBeginAsync(cancellationToken);
while (true)
{
field = await iprot.ReadFieldBeginAsync(cancellationToken);
if (field.Type == TType.Stop)
{
break;
}
switch (field.ID)
{
case 1:
if (field.Type == TType.I64)
{
SessionId = await iprot.ReadI64Async(cancellationToken);
isset_sessionId = true;
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
case 2:
if (field.Type == TType.String)
{
PrefixPath = await iprot.ReadStringAsync(cancellationToken);
isset_prefixPath = true;
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
case 3:
if (field.Type == TType.List)
{
{
TList _list182 = await iprot.ReadListBeginAsync(cancellationToken);
MeasurementsList = new List<List<string>>(_list182.Count);
for(int _i183 = 0; _i183 < _list182.Count; ++_i183)
{
List<string> _elem184;
{
TList _list185 = await iprot.ReadListBeginAsync(cancellationToken);
_elem184 = new List<string>(_list185.Count);
for(int _i186 = 0; _i186 < _list185.Count; ++_i186)
{
string _elem187;
_elem187 = await iprot.ReadStringAsync(cancellationToken);
_elem184.Add(_elem187);
}
await iprot.ReadListEndAsync(cancellationToken);
}
MeasurementsList.Add(_elem184);
}
await iprot.ReadListEndAsync(cancellationToken);
}
isset_measurementsList = true;
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
case 4:
if (field.Type == TType.List)
{
{
TList _list188 = await iprot.ReadListBeginAsync(cancellationToken);
ValuesList = new List<byte[]>(_list188.Count);
for(int _i189 = 0; _i189 < _list188.Count; ++_i189)
{
byte[] _elem190;
_elem190 = await iprot.ReadBinaryAsync(cancellationToken);
ValuesList.Add(_elem190);
}
await iprot.ReadListEndAsync(cancellationToken);
}
isset_valuesList = true;
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
case 5:
if (field.Type == TType.List)
{
{
TList _list191 = await iprot.ReadListBeginAsync(cancellationToken);
Timestamps = new List<long>(_list191.Count);
for(int _i192 = 0; _i192 < _list191.Count; ++_i192)
{
long _elem193;
_elem193 = await iprot.ReadI64Async(cancellationToken);
Timestamps.Add(_elem193);
}
await iprot.ReadListEndAsync(cancellationToken);
}
isset_timestamps = true;
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
case 6:
if (field.Type == TType.Bool)
{
IsAligned = await iprot.ReadBoolAsync(cancellationToken);
}
else
{
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
}
break;
default:
await TProtocolUtil.SkipAsync(iprot, field.Type, cancellationToken);
break;
}
await iprot.ReadFieldEndAsync(cancellationToken);
}
await iprot.ReadStructEndAsync(cancellationToken);
if (!isset_sessionId)
{
throw new TProtocolException(TProtocolException.INVALID_DATA);
}
if (!isset_prefixPath)
{
throw new TProtocolException(TProtocolException.INVALID_DATA);
}
if (!isset_measurementsList)
{
throw new TProtocolException(TProtocolException.INVALID_DATA);
}
if (!isset_valuesList)
{
throw new TProtocolException(TProtocolException.INVALID_DATA);
}
if (!isset_timestamps)
{
throw new TProtocolException(TProtocolException.INVALID_DATA);
}
}
finally
{
iprot.DecrementRecursionDepth();
}
}
public async global::System.Threading.Tasks.Task WriteAsync(TProtocol oprot, CancellationToken cancellationToken)
{
oprot.IncrementRecursionDepth();
try
{
var struc = new TStruct("TSInsertRecordsOfOneDeviceReq");
await oprot.WriteStructBeginAsync(struc, cancellationToken);
var field = new TField();
field.Name = "sessionId";
field.Type = TType.I64;
field.ID = 1;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
await oprot.WriteI64Async(SessionId, cancellationToken);
await oprot.WriteFieldEndAsync(cancellationToken);
if((PrefixPath != null))
{
field.Name = "prefixPath";
field.Type = TType.String;
field.ID = 2;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
await oprot.WriteStringAsync(PrefixPath, cancellationToken);
await oprot.WriteFieldEndAsync(cancellationToken);
}
if((MeasurementsList != null))
{
field.Name = "measurementsList";
field.Type = TType.List;
field.ID = 3;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
{
await oprot.WriteListBeginAsync(new TList(TType.List, MeasurementsList.Count), cancellationToken);
foreach (List<string> _iter194 in MeasurementsList)
{
{
await oprot.WriteListBeginAsync(new TList(TType.String, _iter194.Count), cancellationToken);
foreach (string _iter195 in _iter194)
{
await oprot.WriteStringAsync(_iter195, cancellationToken);
}
await oprot.WriteListEndAsync(cancellationToken);
}
}
await oprot.WriteListEndAsync(cancellationToken);
}
await oprot.WriteFieldEndAsync(cancellationToken);
}
if((ValuesList != null))
{
field.Name = "valuesList";
field.Type = TType.List;
field.ID = 4;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
{
await oprot.WriteListBeginAsync(new TList(TType.String, ValuesList.Count), cancellationToken);
foreach (byte[] _iter196 in ValuesList)
{
await oprot.WriteBinaryAsync(_iter196, cancellationToken);
}
await oprot.WriteListEndAsync(cancellationToken);
}
await oprot.WriteFieldEndAsync(cancellationToken);
}
if((Timestamps != null))
{
field.Name = "timestamps";
field.Type = TType.List;
field.ID = 5;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
{
await oprot.WriteListBeginAsync(new TList(TType.I64, Timestamps.Count), cancellationToken);
foreach (long _iter197 in Timestamps)
{
await oprot.WriteI64Async(_iter197, cancellationToken);
}
await oprot.WriteListEndAsync(cancellationToken);
}
await oprot.WriteFieldEndAsync(cancellationToken);
}
if(__isset.isAligned)
{
field.Name = "isAligned";
field.Type = TType.Bool;
field.ID = 6;
await oprot.WriteFieldBeginAsync(field, cancellationToken);
await oprot.WriteBoolAsync(IsAligned, cancellationToken);
await oprot.WriteFieldEndAsync(cancellationToken);
}
await oprot.WriteFieldStopAsync(cancellationToken);
await oprot.WriteStructEndAsync(cancellationToken);
}
finally
{
oprot.DecrementRecursionDepth();
}
}
public override bool Equals(object that)
{
if (!(that is TSInsertRecordsOfOneDeviceReq other)) return false;
if (ReferenceEquals(this, other)) return true;
return System.Object.Equals(SessionId, other.SessionId)
&& System.Object.Equals(PrefixPath, other.PrefixPath)
&& TCollections.Equals(MeasurementsList, other.MeasurementsList)
&& TCollections.Equals(ValuesList, other.ValuesList)
&& TCollections.Equals(Timestamps, other.Timestamps)
&& ((__isset.isAligned == other.__isset.isAligned) && ((!__isset.isAligned) || (System.Object.Equals(IsAligned, other.IsAligned))));
}
public override int GetHashCode() {
int hashcode = 157;
unchecked {
hashcode = (hashcode * 397) + SessionId.GetHashCode();
if((PrefixPath != null))
{
hashcode = (hashcode * 397) + PrefixPath.GetHashCode();
}
if((MeasurementsList != null))
{
hashcode = (hashcode * 397) + TCollections.GetHashCode(MeasurementsList);
}
if((ValuesList != null))
{
hashcode = (hashcode * 397) + TCollections.GetHashCode(ValuesList);
}
if((Timestamps != null))
{
hashcode = (hashcode * 397) + TCollections.GetHashCode(Timestamps);
}
if(__isset.isAligned)
{
hashcode = (hashcode * 397) + IsAligned.GetHashCode();
}
}
return hashcode;
}
public override string ToString()
{
var sb = new StringBuilder("TSInsertRecordsOfOneDeviceReq(");
sb.Append(", SessionId: ");
SessionId.ToString(sb);
if((PrefixPath != null))
{
sb.Append(", PrefixPath: ");
PrefixPath.ToString(sb);
}
if((MeasurementsList != null))
{
sb.Append(", MeasurementsList: ");
MeasurementsList.ToString(sb);
}
if((ValuesList != null))
{
sb.Append(", ValuesList: ");
ValuesList.ToString(sb);
}
if((Timestamps != null))
{
sb.Append(", Timestamps: ");
Timestamps.ToString(sb);
}
if(__isset.isAligned)
{
sb.Append(", IsAligned: ");
IsAligned.ToString(sb);
}
sb.Append(')');
return sb.ToString();
}
}