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	do session crypto work using the worker pool
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					 1 changed files with 69 additions and 29 deletions
				
			
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			@ -442,6 +442,7 @@ func (sinfo *sessionInfo) recvWorker() {
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	//  Since there's no reason for anywhere else in the session code to need to *read* it...
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	//  Only needs to be updated from the outside if a ping resets it...
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	//  That would get rid of the need to take a mutex for the sessionFunc
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	var callbacks []chan func()
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	doRecv := func(p *wire_trafficPacket) {
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		var bs []byte
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		var err error
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			@ -459,31 +460,51 @@ func (sinfo *sessionInfo) recvWorker() {
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			return
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		}
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		var isOK bool
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		bs, isOK = crypto.BoxOpen(&k, p.Payload, &p.Nonce)
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		if !isOK {
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			util.PutBytes(bs)
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			return
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		}
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		sessionFunc = func() {
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			if k != sinfo.sharedSesKey || !sinfo.nonceIsOK(&p.Nonce) {
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				// The session updated in the mean time, so return an error
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				err = ConnError{errors.New("session updated during crypto operation"), false, true, false, 0}
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				return
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		ch := make(chan func(), 1)
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		poolFunc := func() {
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			bs, isOK = crypto.BoxOpen(&k, p.Payload, &p.Nonce)
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			callback := func() {
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				if !isOK {
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					util.PutBytes(bs)
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					return
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				}
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				sessionFunc = func() {
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					if k != sinfo.sharedSesKey || !sinfo.nonceIsOK(&p.Nonce) {
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						// The session updated in the mean time, so return an error
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						err = ConnError{errors.New("session updated during crypto operation"), false, true, false, 0}
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						return
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					}
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					sinfo.updateNonce(&p.Nonce)
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					sinfo.time = time.Now()
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					sinfo.bytesRecvd += uint64(len(bs))
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				}
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				sinfo.doFunc(sessionFunc)
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				if err != nil {
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					// Not sure what else to do with this packet, I guess just drop it
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					util.PutBytes(bs)
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				} else {
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					// Pass the packet to the buffer for Conn.Read
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					sinfo.recv <- bs
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				}
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			}
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			sinfo.updateNonce(&p.Nonce)
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			sinfo.time = time.Now()
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			sinfo.bytesRecvd += uint64(len(bs))
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		}
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		sinfo.doFunc(sessionFunc)
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		if err != nil {
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			// Not sure what else to do with this packet, I guess just drop it
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			util.PutBytes(bs)
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		} else {
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			// Pass the packet to the buffer for Conn.Read
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			sinfo.recv <- bs
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			ch <- callback
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		}
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		// Send to the worker and wait for it to finish
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		util.WorkerGo(poolFunc)
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		callbacks = append(callbacks, ch)
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	}
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	for {
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		for len(callbacks) > 0 {
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			select {
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			case f := <-callbacks[0]:
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				callbacks = callbacks[1:]
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				f()
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			case <-sinfo.cancel.Finished():
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				return
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			case p := <-sinfo.fromRouter:
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				doRecv(p)
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			}
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		}
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		select {
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		case <-sinfo.cancel.Finished():
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			return
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			@ -496,6 +517,7 @@ func (sinfo *sessionInfo) recvWorker() {
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func (sinfo *sessionInfo) sendWorker() {
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	// TODO move info that this worker needs here, send updates via a channel
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	//  Otherwise we need to take a mutex to avoid races with update()
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	var callbacks []chan func()
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	doSend := func(bs []byte) {
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		var p wire_trafficPacket
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		var k crypto.BoxSharedKey
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			@ -511,16 +533,34 @@ func (sinfo *sessionInfo) sendWorker() {
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		}
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		// Get the mutex-protected info needed to encrypt the packet
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		sinfo.doFunc(sessionFunc)
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		// Encrypt the packet
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		p.Payload, _ = crypto.BoxSeal(&k, bs, &p.Nonce)
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		packet := p.encode()
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		// Cleanup
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		util.PutBytes(bs)
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		util.PutBytes(p.Payload)
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		// Send the packet
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		sinfo.core.router.out(packet)
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		ch := make(chan func(), 1)
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		poolFunc := func() {
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			// Encrypt the packet
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			p.Payload, _ = crypto.BoxSeal(&k, bs, &p.Nonce)
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			packet := p.encode()
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			// Cleanup
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			util.PutBytes(bs)
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			util.PutBytes(p.Payload)
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			// The callback will send the packet
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			callback := func() { sinfo.core.router.out(packet) }
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			ch <- callback
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		}
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		// Send to the worker and wait for it to finish
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		util.WorkerGo(poolFunc)
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		callbacks = append(callbacks, ch)
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	}
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	for {
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		for len(callbacks) > 0 {
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			select {
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			case f := <-callbacks[0]:
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				callbacks = callbacks[1:]
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				f()
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			case <-sinfo.cancel.Finished():
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				return
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			case bs := <-sinfo.send:
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				doSend(bs)
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			}
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		}
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		select {
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		case <-sinfo.cancel.Finished():
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			return
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