Concurrency emulation and analysis of parallel applications for multi-processor system-on-chip co-design

G. Beltrame, L. Fossati, D. Sciuto
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引用次数: 4

Abstract

This paper presents a novel technique for the modeling and the simulation of parallel applications for Multi-Processor Systems-on-Chip (MPSoCs). This technique consists of an application-transparent emulation of OS primitives, including task creation, scheduling, synchronization etc.; this emulation guarantees compatibility with any program compiled against the standard POSIX library, independently of the target OS. This methodology can be used to perform initial HW/SW partitioning and concurrent engineering of a given application, as it allows any software routine to be transparently emulated with SystemC modules. The proposed approach has been verified on a large set of multi-threaded benchmarks, with both POSIX Threads and OpenMP programming styles. Results show that our methodology enables (a) fast simulation of POSIX applications, (b) accurate analysis of multi-threaded applications, and (c) co-design and fast preliminary hardware-software partitioning.
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多处理器片上系统协同设计的并发仿真与并行应用分析
本文提出了一种用于多处理器片上系统(mpsoc)并行应用建模和仿真的新技术。该技术包括对操作系统原语的应用程序透明仿真,包括任务创建、调度、同步等;此仿真保证与针对标准POSIX库编译的任何程序的兼容性,独立于目标操作系统。该方法可用于执行初始的硬件/软件分区和给定应用程序的并发工程,因为它允许使用SystemC模块透明地模拟任何软件例程。所提出的方法已经在大量多线程基准测试中得到验证,包括POSIX线程和OpenMP编程风格。结果表明,我们的方法能够(a)快速模拟POSIX应用程序,(b)准确分析多线程应用程序,以及(c)协同设计和快速初步硬件软件分区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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