Low Power I-Cache-based BTB
碩士 === 國立交通大學 === 資訊科學與工程研究所 === 94 === Reducing power consumption has gained much attention recently. BTB is a power-hungry device that supports dynamic branch prediction for pipelined processor. This thesis proposes and instruction cache based BTB architecture called ICBTB. It shares the tag memor...
Main Authors: | , |
---|---|
Other Authors: | |
Format: | Others |
Language: | zh-TW |
Published: |
2006
|
Online Access: | http://ndltd.ncl.edu.tw/handle/97925661337064014613 |
id |
ndltd-TW-094NCTU5394162 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-TW-094NCTU53941622016-05-27T04:18:37Z http://ndltd.ncl.edu.tw/handle/97925661337064014613 Low Power I-Cache-based BTB 以指令快取為基準之低功耗分支目標暫存器 Fu-Ching Hwang 黃富群 碩士 國立交通大學 資訊科學與工程研究所 94 Reducing power consumption has gained much attention recently. BTB is a power-hungry device that supports dynamic branch prediction for pipelined processor. This thesis proposes and instruction cache based BTB architecture called ICBTB. It shares the tag memory with L1 instruction cache. Therefore, both static and dynamic power consumption of ICBTB are lower than that of a typical BTB. Moreover, a BTB entry sharing policy is proposed to reinforce the branch prediction accuracy. Simulation results show that ICBTB yields 24% static energy savings, 42% dynamic energy savings that is 33% total energy savings. Jyh-Jiun Shann 單智君 2006 學位論文 ; thesis 49 zh-TW |
collection |
NDLTD |
language |
zh-TW |
format |
Others
|
sources |
NDLTD |
description |
碩士 === 國立交通大學 === 資訊科學與工程研究所 === 94 === Reducing power consumption has gained much attention recently. BTB is a power-hungry device that supports dynamic branch prediction for pipelined processor. This thesis proposes and instruction cache based BTB architecture called ICBTB. It shares the tag memory with L1 instruction cache. Therefore, both static and dynamic power consumption of ICBTB are lower than that of a typical BTB. Moreover, a BTB entry sharing policy is proposed to reinforce the branch prediction accuracy. Simulation results show that ICBTB yields 24% static energy savings, 42% dynamic energy savings that is 33% total energy savings.
|
author2 |
Jyh-Jiun Shann |
author_facet |
Jyh-Jiun Shann Fu-Ching Hwang 黃富群 |
author |
Fu-Ching Hwang 黃富群 |
spellingShingle |
Fu-Ching Hwang 黃富群 Low Power I-Cache-based BTB |
author_sort |
Fu-Ching Hwang |
title |
Low Power I-Cache-based BTB |
title_short |
Low Power I-Cache-based BTB |
title_full |
Low Power I-Cache-based BTB |
title_fullStr |
Low Power I-Cache-based BTB |
title_full_unstemmed |
Low Power I-Cache-based BTB |
title_sort |
low power i-cache-based btb |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/97925661337064014613 |
work_keys_str_mv |
AT fuchinghwang lowpowericachebasedbtb AT huángfùqún lowpowericachebasedbtb AT fuchinghwang yǐzhǐlìngkuàiqǔwèijīzhǔnzhīdīgōnghàofēnzhīmùbiāozàncúnqì AT huángfùqún yǐzhǐlìngkuàiqǔwèijīzhǔnzhīdīgōnghàofēnzhīmùbiāozàncúnqì |
_version_ |
1718283331447029760 |