Files
node-metaverse/lib/classes/Circuit.ts

380 lines
12 KiB
TypeScript

import {UUID} from './UUID';
import {Socket} from 'dgram';
import * as dgram from 'dgram';
import {PacketFlags} from '../enums/PacketFlags';
import {Packet} from './Packet';
import {MessageBase} from './MessageBase';
import {PacketAckMessage} from './messages/PacketAck';
import {Message} from '../enums/Message';
import {StartPingCheckMessage} from './messages/StartPingCheck';
import {CompletePingCheckMessage} from './messages/CompletePingCheck';
import {Subscription} from 'rxjs/Subscription';
import {Subject} from 'rxjs/Subject';
import 'rxjs/add/operator/filter';
import Timer = NodeJS.Timer;
import {ClientEvents} from "./ClientEvents";
import {FilterResponse} from '../enums/FilterResponse';
export class Circuit
{
secureSessionID: UUID;
sessionID: UUID;
circuitCode: number;
udpBlacklist: string[];
timestamp: number;
client: Socket | null = null;
port: number;
ipAddress: string;
sequenceNumber = 0;
awaitingAck: {
[key: number]: {
packet: Packet,
timeout: number,
sent: number
}
} = {};
receivedPackets: {
[key: number]: number
} = {};
active = false;
private clientEvents: ClientEvents;
private onPacketReceived: Subject<Packet>;
private onAckReceived: Subject<number>;
constructor(clientEvents: ClientEvents)
{
this.clientEvents = clientEvents;
this.onPacketReceived = new Subject<Packet>();
this.onAckReceived = new Subject<number>();
}
subscribeToMessages(ids: number[], callback: (packet: Packet) => void)
{
const lookupObject: { [key: number]: boolean } = {};
ids.forEach((id) =>
{
lookupObject[id] = true;
});
return this.onPacketReceived.filter((packet: Packet) =>
{
return lookupObject[packet.message.id] === true;
}).subscribe(callback);
}
sendMessage(message: MessageBase, flags: PacketFlags): number
{
if (!this.active)
{
throw new Error('Attempting to send a message on a closed circuit');
}
const packet: Packet = new Packet();
packet.message = message;
packet.sequenceNumber = this.sequenceNumber++;
packet.packetFlags = flags;
this.sendPacket(packet);
return packet.sequenceNumber;
}
resend(sequenceNumber: number)
{
if (!this.active)
{
console.log('Resend triggered, but circuit is not active!');
return;
}
if (this.awaitingAck[sequenceNumber])
{
const toResend: Packet = this.awaitingAck[sequenceNumber].packet;
toResend.packetFlags = toResend.packetFlags | PacketFlags.Resent;
this.sendPacket(toResend);
}
}
waitForAck(ack: number, timeout: number): Promise<void>
{
return new Promise<void>((resolve, reject) =>
{
const handleObj: {
timeout: Timer | null,
subscription: Subscription | null
} = {
timeout: null,
subscription: null
};
handleObj.timeout = setTimeout(() =>
{
if (handleObj.subscription !== null)
{
handleObj.subscription.unsubscribe();
reject(new Error('Timeout'));
}
}, timeout);
handleObj.subscription = this.onAckReceived.subscribe((sequenceNumber: number) =>
{
if (sequenceNumber === ack)
{
if (handleObj.timeout !== null)
{
clearTimeout(handleObj.timeout);
handleObj.timeout = null;
}
if (handleObj.subscription !== null)
{
handleObj.subscription.unsubscribe();
handleObj.subscription = null;
}
resolve();
}
});
});
}
init()
{
if (this.client !== null)
{
this.client.close();
}
this.client = dgram.createSocket('udp4');
this.client.on('listening', () =>
{
});
this.client.on('message', (message, remote) =>
{
if (remote.address === this.ipAddress)
{
this.receivedPacket(message);
}
});
this.client.on('error', (error) =>
{
});
this.active = true;
}
shutdown()
{
Object.keys(this.awaitingAck).forEach((sequenceNumber: string) =>
{
clearTimeout(this.awaitingAck[parseInt(sequenceNumber, 10)].timeout);
delete this.awaitingAck[parseInt(sequenceNumber, 10)];
});
Object.keys(this.receivedPackets).forEach((sequenceNumber: string) =>
{
const seq: number = parseInt(sequenceNumber, 10);
clearTimeout(this.receivedPackets[seq]);
delete this.receivedPackets[seq];
});
if (this.client !== null)
{
this.client.close();
this.client = null;
this.onPacketReceived.complete();
this.onAckReceived.complete();
}
this.active = false;
}
waitForMessage<T extends MessageBase>(id: Message, timeout: number, filter?: (message: T) => FilterResponse): Promise<T>
{
return new Promise<T>((resolve, reject) =>
{
const handleObj: {
timeout: Timer | null,
subscription: Subscription | null
} = {
timeout: null,
subscription: null
};
const timeoutFunc = () =>
{
if (handleObj.subscription !== null)
{
handleObj.subscription.unsubscribe();
reject(new Error('Timeout waiting for message of type ' + id));
}
};
handleObj.timeout = setTimeout(timeoutFunc, timeout);
handleObj.subscription = this.subscribeToMessages([id], (packet: Packet) =>
{
let finish = false;
if (packet.message.id === id)
{
if (filter === undefined)
{
finish = true;
}
else
{
const filterResult = filter(packet.message as T);
if (filterResult === FilterResponse.Finish)
{
finish = true;
}
else if (filterResult === FilterResponse.Match)
{
// Extend
if (handleObj.timeout !== null)
{
clearTimeout(handleObj.timeout);
}
handleObj.timeout = setTimeout(timeoutFunc, timeout);
}
}
}
if (finish)
{
if (handleObj.timeout !== null)
{
clearTimeout(handleObj.timeout);
handleObj.timeout = null;
}
if (handleObj.subscription !== null)
{
handleObj.subscription.unsubscribe();
handleObj.subscription = null;
}
resolve(packet.message as T);
}
});
});
}
sendPacket(packet: Packet)
{
if (packet.packetFlags & PacketFlags.Reliable)
{
this.awaitingAck[packet.sequenceNumber] =
{
packet: packet,
timeout: setTimeout(this.resend.bind(this, packet.sequenceNumber), 1000),
sent: new Date().getTime()
};
}
let dataToSend: Buffer = Buffer.allocUnsafe(packet.getSize());
dataToSend = packet.writeToBuffer(dataToSend, 0);
if (this.client !== null)
{
this.client.send(dataToSend, 0, dataToSend.length, this.port, this.ipAddress, (err, bytes) =>
{
/*let resend = '';
if (packet.packetFlags & PacketFlags.Resent)
{
resend = ' (resent)';
}
console.log('--> ' + packet.message.name + resend);
*/
})
}
else
{
console.error('Attempted to send packet but UDP client is null');
}
}
ackReceived(sequenceNumber: number)
{
if (this.awaitingAck[sequenceNumber])
{
clearTimeout(this.awaitingAck[sequenceNumber].timeout);
delete this.awaitingAck[sequenceNumber];
}
this.onAckReceived.next(sequenceNumber);
}
sendAck(sequenceNumber: number)
{
const msg: PacketAckMessage = new PacketAckMessage();
msg.Packets = [
{
ID: sequenceNumber
}
];
this.sendMessage(msg, 0);
}
getOldestUnacked(): number
{
let result = 0;
let oldest = -1;
const keys: string[] = Object.keys(this.awaitingAck);
keys.forEach((seqID: string) =>
{
const nSeq = parseInt(seqID, 10);
if (oldest === -1 || this.awaitingAck[nSeq].sent < oldest)
{
result = nSeq;
oldest = this.awaitingAck[nSeq].sent;
}
});
return result;
}
expireReceivedPacket(sequenceNumber: number)
{
// Enough time has elapsed that we can forget about this packet
if (this.receivedPackets[sequenceNumber])
{
delete this.receivedPackets[sequenceNumber];
}
}
receivedPacket(bytes: Buffer)
{
const packet = new Packet();
try
{
packet.readFromBuffer(bytes, 0, this.ackReceived.bind(this), this.sendAck.bind(this));
}
catch (erro)
{
console.error(erro);
return;
}
if (this.receivedPackets[packet.sequenceNumber])
{
clearTimeout(this.receivedPackets[packet.sequenceNumber]);
this.receivedPackets[packet.sequenceNumber] = setTimeout(this.expireReceivedPacket.bind(this, packet.sequenceNumber), 10000);
console.log('Ignoring duplicate packet: ' + packet.message.name);
return;
}
this.receivedPackets[packet.sequenceNumber] = setTimeout(this.expireReceivedPacket.bind(this, packet.sequenceNumber), 10000);
//console.log('<--- ' + packet.message.name);
if (packet.message.id === Message.PacketAck)
{
const msg = packet.message as PacketAckMessage;
msg.Packets.forEach((obj) =>
{
this.ackReceived(obj.ID);
});
}
else if (packet.message.id === Message.StartPingCheck)
{
const msg = packet.message as StartPingCheckMessage;
const reply: CompletePingCheckMessage = new CompletePingCheckMessage();
reply.PingID = {
PingID: msg.PingID.PingID
};
this.sendMessage(reply, 0);
}
this.onPacketReceived.next(packet);
}
}