首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Resource Sharing in Multicore Mixed-Criticality Systems: Utilization Bound and Blocking Overhead
【24h】

Resource Sharing in Multicore Mixed-Criticality Systems: Utilization Bound and Blocking Overhead

机译:多核混合关键性系统中的资源共享:利用率受限和阻塞开销

获取原文
获取原文并翻译 | 示例

摘要

In mixed-criticality (MC) system, diverse application activities with various certification requirements (different criticality) can share a computing platform, where multicore processors have emerged as the prevailing computing engines. Focusing on the problem of resource access contention in multicore MC systems, we analyze the synchronization issues and blocking characteristics of the Multiprocessor Stack Resource Policy (MSRP) with both priority and criticality inversions among MC tasks being considered. We develop the first criticality-aware utilization bound under partitioned Earliest Deadline First (EDF) and MSRP by taking the worst case synchronization overheads of tasks into account. The non-monotonicityof the bound where it may decrease when more cores are deployed is identified, which can cause anomalies in the feasibility tests. With the objective to improve system schedulability, a novel criticality-cognizant and resource-oriented analysis approach is further studied to tighten the bound on the synchronization overheads for MC tasks scheduled under partitioned EDF and MSRP. The simulation results show that the new analysis approach can effectively reduce the blocking times for tasks (up to 30 percent) and thus improve the schedulability ratio (e.g., 10 percent more). The actual implementation in Linux kernel further shows the practicability of partitioned-EDF with MSRP (with run-time overhead being about 3 to 7 percent of the overall execution time) for MC tasks running on multicores with shared resources.
机译:在混合关键性(MC)系统中,具有各种认证要求(不同关键性)的各种应用程序活动可以共享一个计算平台,其中多核处理器已成为主流的计算引擎。着眼于多核MC系统中的资源访问争用问题,我们分析了考虑了MC任务之间优先级和关键性倒置的多处理器堆栈资源策略(MSRP)的同步问题和阻塞特性。通过考虑任务的最坏情况下的同步开销,我们开发了在分区的最早截止日期优先(EDF)和MSRP下的第一个可感知临界度的利用率。确定了当部署更多核心时边界可能会减小的非单调性,这可能导致可行性测试中的异常。为了提高系统的可调度性,进一步研究了一种新颖的,基于临界的,面向资源的分析方法,以严格限制在分区EDF和MSRP下调度的MC任务的同步开销。仿真结果表明,新的分析方法可以有效地减少任务的阻塞时间(最多30%),从而提高可调度性比率(例如,提高10%)。 Linux内核中的实际实现进一步显示了带MSRP的分区式EDF的实用性(运行时开销约为总执行时间的3%至7%),用于在具有共享资源的多核上运行的MC任务。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号