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Content Provider | ACM Digital Library |
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Author | Scott, Jeff Lee, Lea Hwang Moyer, Bill Arends, John |
Abstract | Many portable and embedded applications are characterized by spending a large fraction of execution time on small program loops. To improve performance, many embeded systems use special instructions to handle program loop executions. These special instructions, however, consume opcode space, which is valuable in the embedded computing environments. In this paper, we propose a hardware technique for folding out branches when executing these small loops. This technique does not require any special branch instructions. It is based on the detection and utilization of certain short backward branch instructions (sbb). A sbb is any PC-relative branch instruction with a limited backward branch distance. Once a sbb is detected, its displacement field is used by the hardware to identify the actual program loop size. It does so by loading this negative displacement field into a counter and incrementing the counter for each instruction sequentially executed. As the count approaches zero, the hardware folds out the sbb by predicting that it is always taken. The hardware overhead for this technique is minimal. Using a 5-bit increment counter, the performance improvement over a set of embedded applications is about 7.5%. |
Starting Page | 103 |
Ending Page | 111 |
Page Count | 9 |
File Format | |
ISBN | 076950437X |
Language | English |
Publisher | Association for Computing Machinery (ACM) |
Publisher Date | 1999-11-16 |
Access Restriction | Subscribed |
Content Type | Text |
Resource Type | Article |
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