DocumentCode
1122240
Title
Lossless compression of VLSI layout image data
Author
Dai, Vito ; Zakhor, Avideh
Author_Institution
Adv. Micro Devices Inc., Sunnyvale, CA
Volume
15
Issue
9
fYear
2006
Firstpage
2522
Lastpage
2530
Abstract
We present a novel lossless compression algorithm called Context Copy Combinatorial Code (C4), which integrates the advantages of two very disparate compression techniques: context-based modeling and Lempel-Ziv (LZ) style copying. While the algorithm can be applied to many lossless compression applications, such as document image compression, our primary target application has been lossless compression of integrated circuit layout image data. These images contain a heterogeneous mix of data: dense repetitive data better suited to LZ-style coding, and less dense structured data, better suited to context-based encoding. As part of C4, we have developed a novel binary entropy coding technique called combinatorial coding which is simultaneously as efficient as arithmetic coding, and as fast as Huffman coding. Compression results show C4 outperforms JBIG, ZIP, BZIP2, and two-dimensional LZ, and achieves lossless compression ratios greater than 22 for binary layout image data, and greater than 14 for gray-pixel image data
Keywords
Huffman codes; VLSI; arithmetic codes; binary codes; circuit layout CAD; data compression; entropy codes; image coding; integrated circuit layout; BZIP2; Huffman coding; JBIG; Lempel-Ziv style copying; VLSI layout image data; ZIP; arithmetic coding; binary entropy coding technique; binary layout image data; combinatorial coding; context copy combinatorial code; context-based encoding; context-based modeling; dense repetitive data; gray-pixel image data; integrated circuit layout image data; less dense structured data; lossless compression algorithm; two-dimensional LZ; Compression algorithms; Context modeling; Decoding; Image coding; Image converters; Integrated circuit layout; Lithography; Pixel; Very large scale integration; Writing; Context Copy Combinatorial Code (C4); compression; lithography; maskless;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2006.877414
Filename
1673435
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