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Routing table

About: Routing table is a research topic. Over the lifetime, 16589 publications have been published within this topic receiving 336842 citations. The topic is also known as: routing information base & RIB.


Papers
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Proceedings ArticleDOI
01 Apr 1989
TL;DR: This paper proposes a solution to deadlock free, adaptive, high throughput packet routing to be implemented on networks of processors, which serves as a basis for a very low latency routing strategy named the mad postman.
Abstract: In order to provide an arbitrary and fully dynamic connectivity in a network of processors, transport mechanisms must be implemented, which provide the propagation of data from processor to processor, based on addresses contained within a packet of data. Such data transport mechanisms must satisfy a number of requirements - deadlock and livelock freedom, good hot-spot performance, high throughput and low latency. This paper proposes a solution to these problems, which allows deadlock free, adaptive, high throughput packet routing to be implemented on networks of processors. Examples are given which illustrate the technique for 2-D array and toroidal networks. An implementation of this scheme on arrays of transputers is described. The scheme also serves as a basis for a very low latency routing strategy named the mad postman, a detailed implementation of which is described here as well.

112 citations

Journal ArticleDOI
TL;DR: The main idea is to use a 'traffic profile' of the network, obtained by measurements or service-level agreements as a rough predictor of the future traffic distribution, to solve a multi-commodity network flow problem, whose output is used both to guide the online path-selection algorithm as well as to impose admission control.

112 citations

Journal ArticleDOI
TL;DR: This study presents a fast unicast route-look up mechanism that only needs tiny SRAM and can be implemented using a hardware pipeline, which is much faster than any current commercially available routing-lookup scheme.
Abstract: One of the pertinent design issues for new generation IP routers is the route-lookup mechanism. For each incoming IP packet, the IP routing is required to perform a longest-prefix matching on the route lookup in order to determine the packet's next hop. This study presents a fast unicast route-lookup mechanism that only needs tiny SRAM and can be implemented using a hardware pipeline. The forwarding table, based on the proposed scheme, is small enough to fit into a faster SRAM with low cost. For example, a large routing table with 40000 routing entries can be compacted into a forwarding table of 450-470 kbytes costing less than US$30. Most route lookups need only one memory access; no lookup needs more than three memory accesses. When implemented using a hardware pipeline, the proposed mechanism can achieve one routing lookup every memory access. With current 10-ns SRAMs, this mechanism furnishes approximately 100/spl times/10/sup 6/ routing lookups/s, which is much faster than any current commercially available routing-lookup scheme.

112 citations

Journal ArticleDOI
TL;DR: This paper introduces the novel idea of information-directed routing, in which routing is formulated as a joint optimization of data transport and information aggregation, and derives information constraints from realistic signal models, and presents several routing algorithms that find near-optimal solutions for the joint optimization problem.
Abstract: In a sensor network, data routing is tightly coupled to the needs of a sensing task, and hence the application semantics. This paper introduces the novel idea of information-directed routing, in which routing is formulated as a joint optimization of data transport and information aggregation. The routing objective is to minimize communication cost, while maximizing information gain, differing from routing considerations for more general ad hoc networks. The paper uses the concrete problem of locating and tracking possibly moving signal sources as an example of information generation process, and considers two common information extraction patterns in a sensor network: routing a user query from an arbitrary entry node to the vicinity of signal sources and back, or to a prespecified exit node, maximizing information accumulated along the path. We derive information constraints from realistic signal models, and present several routing algorithms that find near-optimal solutions for the joint optimization problem. Simulation results have demonstrated that information-directed routing is a significant improvement over a previously reported greedy algorithm, as measured by sensing quality such as localization and tracking accuracy and communication quality such as success rate in routing around sensor holes.

111 citations

Journal ArticleDOI
01 Jan 1977
TL;DR: Another technique for internet routing in which the source of internet packets specifies the complete internet route is considered, which is complicated and overhead increases.
Abstract: As plans for network interconnection develop, the problems of internet routing and addressing become increasingly important. In one popular model of internet addressing, a hierarchical form of network and local (within network) address is used, with the source providing only the destination address while the intermediate network(s) and/or Gateways between networks take care of routing packets to that destination by various paths. This and related techniques requiring some form of routing table and knowledge at intermediate nodes are more fully discussed in [1,2,3].This paper considers another technique for internet routing in which the source of internet packets specifies the complete internet route. When the entire route accompanies each internet packet, no routing decisions or tables are required at Gateways, but the packet format is complicated and overhead increases. In particular, the packet must carry a varying number of intermediate addresses depending on the path and destination [4]. This overhead may be reduced by setting up a fixed route with connection tables [1] when a connection is established.

111 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202331
202294
2021119
2020293
2019411
2018493