Run-Time Services for Hybrid CPU/FPGA Systems on Chip

J. Agron, W. Peck, E. Anderson, D. Andrews, E. Komp, R. Sass, Fabrice Baijot, Jim Stevens
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引用次数: 49

Abstract

Modern FPGA devices, which include (multiple) processor core(s) as diffused IP on the silicon die, provide an excellent platform for developing custom multiprocessor systems-on-programmable chip (MPSoPC) architectures. As researchers are investigating new methods for migrating portions of applications into custom hardware circuits, it is also critical to develop new run-time service frameworks to support these capabilities. Hthreads (HybridThreads) is a multithreaded RTOS kernel for hybrid FPGA/CPU systems designed to meet this new growing need. A key capability of hthreads is the migration of thread management, synchronization primitives, and run-time scheduling services for both hardware and software threads into hardware. This paper describes the hthreads scheduler, a key component for controlling both software-resident threads (SW threads) and threads implemented in programmable logic (HW threads). Run-time analysis shows that the hthreads scheduler module helps in reducing unwanted system overhead and jitter when compared to historical software schedulers, while fielding scheduling requests from both hardware and software threads in parallel with application execution. Run time analysis shows the scheduler achieves constant time scheduling for up to 256 active threads with a total of 128 different priority levels, while using uniform APIs for threads requesting OS services from either side of the hardware/software boundary
芯片上混合CPU/FPGA系统的运行时服务
现代FPGA器件,其中包括(多个)处理器核心(s)作为扩散IP在硅芯片上,为开发定制的多处理器系统可编程芯片(MPSoPC)架构提供了一个极好的平台。当研究人员正在研究将部分应用程序迁移到定制硬件电路的新方法时,开发新的运行时服务框架来支持这些功能也很关键。Hthreads (HybridThreads)是一个用于混合FPGA/CPU系统的多线程RTOS内核,旨在满足这种新的增长需求。hthreads的一个关键功能是将硬件和软件线程的线程管理、同步原语和运行时调度服务迁移到硬件中。本文描述了hthreads调度器,它是控制软件驻留线程(SW线程)和可编程逻辑线程(HW线程)的关键组件。运行时分析表明,与历史软件调度器相比,hthreads调度器模块有助于减少不必要的系统开销和抖动,同时与应用程序执行并行地处理来自硬件和软件线程的调度请求。运行时分析显示,调度器可以为多达256个活动线程实现恒定的时间调度,总共有128个不同的优先级级别,同时对从硬件/软件边界两侧请求操作系统服务的线程使用统一的api
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