Publication | Closed Access
Worst case delay analysis for memory interference in multicore systems
138
Citations
10
References
2010
Year
EngineeringComputer ArchitectureComputational ComplexityEmbedded SystemsMemory Model (Programming)Performance IssueHardware SecurityHigh-performance ArchitectureTiming AnalysisReal-time Embedded SystemsSystems EngineeringParallel ComputingCots ComponentsComputer EngineeringComputer ScienceReal-time ComputingAnalysis MethodologyMemory InterferenceMany-core ArchitectureMultiprocessor SystemParallel ProgrammingReal-time SystemsSystem Performance Analysis
Employing COTS components in real-time embedded systems leads to timing challenges. When multiple CPU cores and DMA peripherals run simultaneously, contention for access to main memory can greatly increase a task's WCET. In this paper, we introduce an analysis methodology that computes upper bounds to task delay due to memory contention. First, an arrival curve is derived for each core representing the maximum memory traffic produced by all tasks executed on it. Arrival curves are then combined with a representation of the cache behavior for the task under analysis to generate a delay bound. Based on the computed delay, we show how tasks can be feasibly scheduled according to assigned time slots on each core.
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