© 2013 IEEE. The increasing performance demand in the critical real-time embedded systems (CRTES) domain calls for high-performance features such as cache memories. Unfortunately, the cost to provide trustworthy and tight Worst-Case Execution Time (WCET) estimates in the presence of caches is high with current practice WCET analysis tools, because they need detailed knowledge of program's cache accesses to provide tight WCET estimates. The advent of Probabilistic timing analysis (PTA) opens the door to economically viable timing analysis in the presence of caches, but it imposes new requirements on hardware design. At cache level, so far only fully associative random-replacement caches have been proven to fulfill the needs of PTA, but their...
Abstract—In this paper, we investigate Static Probabilistic Timing Analysis (SPTA) for single proces...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
Caches provide significant performance improvements, though their use in real-time industry is low b...
Probabilistic timing analysis (PTA), a promising alternative to traditional worst-case execution tim...
Enabling timing analysis for caches has been pursued by the critical real-time embedded systems (CRT...
International audienceIn this paper, we investigate Static Probabilistic Timing Analysis (SPTA) for ...
Cache memories have a huge impact on software's worst-case execution time (WCET). While enabling the...
Critical real-time systems require the estimation of the worst-case execution time (WCET) for schedu...
Enabling timing analysis in the presence of caches has been pursued by the real-Time embedded system...
Caches are key resources in high-end processor architectures to increase performance. In fact, most ...
International audienceProbabilistic hard real-time systems, based on hardware architectures that use...
ABSTRACT: Accurate timing prediction for real-time embedded software execution is becoming a problem...
Obtaining Worst-Case Execution Time (WCET) estimates is a required step in real-time embedded system...
Abstract—In this paper, we investigate Static Probabilistic Timing Analysis (SPTA) for single proces...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
Caches provide significant performance improvements, though their use in real-time industry is low b...
Probabilistic timing analysis (PTA), a promising alternative to traditional worst-case execution tim...
Enabling timing analysis for caches has been pursued by the critical real-time embedded systems (CRT...
International audienceIn this paper, we investigate Static Probabilistic Timing Analysis (SPTA) for ...
Cache memories have a huge impact on software's worst-case execution time (WCET). While enabling the...
Critical real-time systems require the estimation of the worst-case execution time (WCET) for schedu...
Enabling timing analysis in the presence of caches has been pursued by the real-Time embedded system...
Caches are key resources in high-end processor architectures to increase performance. In fact, most ...
International audienceProbabilistic hard real-time systems, based on hardware architectures that use...
ABSTRACT: Accurate timing prediction for real-time embedded software execution is becoming a problem...
Obtaining Worst-Case Execution Time (WCET) estimates is a required step in real-time embedded system...
Abstract—In this paper, we investigate Static Probabilistic Timing Analysis (SPTA) for single proces...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...