Title :
Prevention of deadlocks and livelocks in lossless backpressured packet networks
Author :
Karol, Mark ; Golestani, S. Jamaloddin ; Lee, David
Author_Institution :
Avaya Inc., Lincroft, NJ, USA
Abstract :
No packets will be dropped inside a packet network, even when congestion builds up, if congested nodes send backpressure feedback to neighboring nodes, informing them of unavailability of buffering capacity-stopping them from forwarding more packets until enough buffer becomes available. While there are potential advantages in backpressured networks that do not allow packet dropping, such networks are susceptible to a condition known as deadlock in which throughput of the network or part of the network goes to zero (i.e., no packets are transmitted). In this paper, we describe a simple, lossless method of preventing deadlocks and livelocks in backpressured packet networks. In contrast with prior approaches, our proposed technique does not introduce any packet losses, does not corrupt packet sequence, and does not require any changes to packet headers. It represents a new networking paradigm in which internal network losses are avoided (thereby simplifying the design of other network protocols) and internal network delays are bounded.
Keywords :
packet radio networks; telecommunication congestion control; telecommunication network routing; backpressured packet network; bounded delay; buffering capacity; congestion control; deadlock prevention; livelock prevention; networking paradigm; packet dropping; Availability; Context modeling; Ethernet networks; Feedback; Intelligent networks; Local area networks; Protocols; Quality of service; System recovery; Throughput;
Journal_Title :
Networking, IEEE/ACM Transactions on
DOI :
10.1109/TNET.2003.820434