An exact jumper-insertion algorithm for antenna violation avoidance/fixing considering routing obstacles
Journal
IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
Journal Volume
26
Journal Issue
4
Pages
719-733
Date Issued
2007
Author(s)
Abstract
We study in this paper the problem of jumper insertion on general routing (Steiner/spanning) trees with obstacles for antenna avoidance/fixing at the routing and/or postlayout stages. We formulate the jumper insertion for antenna avoidance/fixing as a tree-cutting problem and present the first optimal algorithm for the general tree-cutting problem. We show that the tree-cutting problem exhibits the properties of optimal substructures and greedy choices. With these properties, we present an O((V + D) lg D)-time optimal jumper-insertion algorithm that uses the least number of jumpers to avoid/fix the antenna violations on a Steiner/spanning tree with V vertices and D obstacles. Experimental results show the superior effectiveness and efficiency of our algorithm. © 2007 IEEE.
Subjects
Antenna effect; Design for manufacturability; Physical design; Reliability; Routing
Other Subjects
Antenna effect; Design for manufacturability; Physical design; Routing; Antennas; Collision avoidance; Computational complexity; Problem solving; Reliability; Trees (mathematics); Algorithms
Type
journal article
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