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  4. Efficient memory virtualization for Cross-ISA system mode emulation.
 
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Efficient memory virtualization for Cross-ISA system mode emulation.

Journal
10th ACM SIGPLAN/SIGOPS International Conference on Virtual Execution Environments, VEE '14, Salt Lake City, UT, USA, March 01 - 02, 2014
Pages
117-128
Date Issued
2014
Author(s)
Chang, Chao-Rui
Wu, Jan-Jan
Hsu, Wei-Chung
Liu, Pangfeng
WEI-CHUNG HSU  
PANGFENG LIU  
DOI
10.1145/2576195.2576201
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/490252
URL
https://doi.org/10.1145/2576195.2576201
Abstract
Cross-ISA system-mode emulation has many important applications. For example, Cross-ISA system-mode emulation helps computer architects and OS developers trace and debug kernel execution-flow efficiently by emulating a slower platform (such as ARM) on a more powerful plat-form (such as an x86 machine). Cross-ISA system-mode emulation also enables workload consolidation in data centers with platforms of different instruction-set architectures (ISAs). However, system-mode emulation is much slower. One major overhead in system-mode emulation is the multi-level memory address translation that maps guest virtual address to host physical address. Shadow page tables (SPT) have been used to reduce such overheads, but primarily for same-ISA virtualization. In this paper we propose a novel approach called embedded shadow page tables (ESPT). EPST embeds a shadow page table into the address space of a cross-ISA dynamic binary translation (DBT) and uses hardware memory management unit in the CPU to translate memory addresses, instead of software translation in a current DBT emulator like QEMU. We also use the larger address space on modern 64-bit CPUs to accommodate our DBT emulator so that it will not interfere with the guest operating system. We incorporate our new scheme into QEMU, a popular, retargetable cross-ISA system emulator. SPEC CINT2006 benchmark results indicate that our technique achieves an average speedup of 1.51 times in system mode when emulating ARM on x86, and a 1.59 times speedup for emulating IA32 on x86_64.
Type
conference paper

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