Embedding formal performance analysis into the design cycle of MPSoCs for real-time streaming applications

Author:

Huang Kai1,Haid Wolfgang1,Bacivarov Iuliana1,Keller Matthias1,Thiele Lothar1

Affiliation:

1. ETH Zurich, Switzerland

Abstract

Modern real-time streaming applications are increasingly implemented on multiprocessor systems-on-chip (MPSoC). The implementation, as well as the verification of real-time applications executing on MPSoCs, are difficult tasks, however. A major challenge is the performance analysis of MPSoCs, which is required for early design space exploration and final system verification. Simulation-based methods are not well-suited for this purpose, due to long runtimes and non-exhaustive corner-case coverage. To overcome these limitations, formal performance analysis methods that provide guarantees for meeting real-time constraints have been developed. Embedding formal performance analysis into the MPSoC design cycle requires the generation of a faithful analysis model and its calibration with the system-specific parameters. In this article, a design flow that automates these steps is presented. In particular, we integrate modular performance analysis (MPA) into the distributed operation layer (DOL) MPSoC programming environment. The result is an MPSoC software design flow that allows for automatically generating the system implementation, together with an analysis model for system verification.

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Software

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1. DOL-BIP-Critical: a tool chain for rigorous design and implementation of mixed-criticality multi-core systems;Design Automation for Embedded Systems;2018-06

2. Reliability-aware energy optimization for throughput-constrained applications on MPSoC;INT C PAR DISTRIB SY;2018

3. A Composable and Predictable MPSoC Design Flow for Multiple Real-Time Applications;Model-Implementation Fidelity in Cyber Physical System Design;2016-12-10

4. Building Faithful Embedded Systems Models: Challenges and Opportunities;Model-Implementation Fidelity in Cyber Physical System Design;2016-12-10

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