Virtual Processor based on Hybrid Processor

§ South China University of Technology South China University of Technology

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Virtual Processor based on Hybrid Processor

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Abstract

This proposal presents a robust method through which virtualization can be optimized by the use of a hybrid processor. The discourse acknowledges that virtualization has become a key constituent of machine processing and efficiency through building virtual machine clusters that can be universally integrated to harness the utilization of hardware computing resources. As observed in low-level computing paradigms, the traditional x86 architecture was only capable of classical trapping to deploy virtualization, yielding para-virtualization. In response, virtual processors based on hybrid processors with hardware-assisted paging enables the handling of foreign Memory Management Unit (MMU) operations and translates the corresponding physical address to actual machine-controlled dynamic addresses, improving memory bound executions as well as the overall output of the HVM. This architecture derives a more powerful utility from the compromised architecture whereby the kernel space while the user space resides in the same privilege ring. Even though myriad hybrid architectures exist, the ultimate objective of this proposal is to satisfy one intrinsic feature: incorporate superiority behavior of the hardwareassisted virtualization.

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Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Akram Saleh Almansoub, Qi Deyu, Fares Aqlan, Abdullah Alqwbani. 2019. "Virtual Processor based on Hybrid Processor". Global Journal of Computer Science and Technology - A: Hardware & Computation GJCST-A Volume 19 (GJCST Volume 19 Issue A1).

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Journal Specifications

Crossref Journal DOI 10.17406/gjcst

Print ISSN 0975-4350

e-ISSN 0975-4172

Keywords
Classification
GJCST-A Classification C.1.3
Version of record

v1.2

Issue date
September 17, 2019

Language
English
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Virtual Processor based on Hybrid Processor

Akram Almansoub
Akram Almansoub South China University of Technology
Qi Deyu
Qi Deyu
Fares Aqlan
Fares Aqlan
Abdullah Alqwbani
Abdullah Alqwbani