Title :
Efficient Space Management Techniques for Large-Scale Interconnect Capacitance Extraction With Floating Random Walks
Author :
Chao Zhang ; Wenjian Yu
Author_Institution :
Dept. of Comput. Sci. & Technol., Tsinghua Univ., Beijing, China
Abstract :
In the capacitance extraction with the floating random walk (FRW) algorithm, the space management approach is required to facilitate finding the nearest conductor. The Octree and grid-based spatial structures have been used to decompose the whole domain into cells and to store information of local conductors. In this letter, the techniques with the distance limit of cell and only searching in cell´s neighbor region are proposed to accelerate the construction of the spatial structures. A fast inquiry technique is proposed to fasten the nearest conductor query. We also propose a grid-Octree hybrid structure, which has advantages over existing structures. Experiments on large very large scale integration structures with up to 484441 conductors have validated the efficiency of the proposed techniques. The improved FRW algorithm is faster than RWCap for thousands times while extracting a single net, and several to tens times while extracting 100 nets.
Keywords :
VLSI; conductors (electric); RWCap; conductor; floating random walks algorithm; grid-Octree hybrid structure; grid-based spatial structures; large-scale interconnect capacitance extraction; space management techniques; very large scale integration structures; Acceleration; Algorithm design and analysis; Capacitance; Conductors; Dielectrics; Octrees; Very large scale integration; Capacitance extraction; floating random walk (FRW); space management; spatial data structure; very large scale integration (VLSI) circuit;
Journal_Title :
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
DOI :
10.1109/TCAD.2013.2273985