Real-time systems are witnessing a significant increase in critical software's size, complexity, and performance needs, which can only be satisfied with high-performance hardware features. Cache memories, pervasively used to improve average performance, complicate Worst-Case Execution Time analysis: cache placement (i.e., how software objects are mapped to cache) during the testing phase does not only critically affect the observed performance, but also proves to be arduous to control and preserve up to operation. The probabilistic variant of Measurement-Based Timing Analysis (MBPTA) responds to this challenge by deploying time-randomized caches that naturally explore a different random cache placement in each run, relieving the user from p...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
Time Randomised caches (TRc), which can be implemented at hardware level or with software means on c...
Cache memories are one of the hardware resources with higher potential to reduce worst-case executio...
Real-time systems are witnessing a significant increase in critical software's size, complexity, and...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
Cache memories have a huge impact on software's worst-case execution time (WCET). While enabling the...
Measurement-Based Probabilistic Timing Analysis (MBPTA) facilitates the analysis of complex software...
Obtaining Worst-Case Execution Time (WCET) estimates is a required step in real-time embedded system...
Measurement-Based Probabilistic Timing Analysis (MBPTA) is a promising powerful industry-friendly me...
Cache memories are one of the hardware resources with higher potential to reduce worst-case executio...
Enabling timing analysis for caches has been pursued by the critical real-time embedded systems (CRT...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
Timing is a key non-functional property in embedded real-Time systems (ERTS). ERTS increasingly requ...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
Time Randomised caches (TRc), which can be implemented at hardware level or with software means on c...
Cache memories are one of the hardware resources with higher potential to reduce worst-case executio...
Real-time systems are witnessing a significant increase in critical software's size, complexity, and...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
The use of caches challenges measurement-based timing analysis (MBTA) in critical embedded systems. ...
Cache memories have a huge impact on software's worst-case execution time (WCET). While enabling the...
Measurement-Based Probabilistic Timing Analysis (MBPTA) facilitates the analysis of complex software...
Obtaining Worst-Case Execution Time (WCET) estimates is a required step in real-time embedded system...
Measurement-Based Probabilistic Timing Analysis (MBPTA) is a promising powerful industry-friendly me...
Cache memories are one of the hardware resources with higher potential to reduce worst-case executio...
Enabling timing analysis for caches has been pursued by the critical real-time embedded systems (CRT...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
Timing is a key non-functional property in embedded real-Time systems (ERTS). ERTS increasingly requ...
Measurement-Based Probabilistic Timing Analysis (MBPTA) has been shown to be an industrially viable ...
Time Randomised caches (TRc), which can be implemented at hardware level or with software means on c...
Cache memories are one of the hardware resources with higher potential to reduce worst-case executio...