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  1. Proceedings of the 2005 annual ACM SIGAda international conference on Ada (SigAda '05)
  2. Temporal skeletons for verifying time
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Scheduling and memory requirements analysis with AADL
Modeling SPARK systems with UML
Optimizing the SPARK program slicer
Using ASIS to generate C++ bindings
Experimental performance analysis of ada programs in cluster system
Experiences using SPARK in an undergraduate CS course
The implementation of ada 2005 synchronized interfaces in the GNAT compiler
Temporal skeletons for verifying time
The affordable application of formal methods to software engineering
SafetyChip: a time monitoring and policing device
Orchestrating shots for the national ignition racility
AspectAda: aspect oriented programming for ada95
Data sharing between ada and C/C++
A comparison of CORBA and ada's distributed systems annex
Ada in the avionics industry

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Temporal skeletons for verifying time

Content Provider ACM Digital Library
Author Lundqvist, Kristina Asplund, Lars Naeser, Gustaf
Abstract This paper presents an intermediate notation used in a framework for verification of real-time properties. The framework aims at overcoming the need for the framework user to have significant knowledge of the verification specific detail that formal verification at some level is bound to impose on a model. In order to accomplish this, model extraction from source code of an initial formal model, a timing skeleton, is made automatically. The model refinement needed to transform the temporal skeleton into a model that can be verified is not done immediately. This allows postponement of the abstraction and specialisation needed for the verification which further improves the readability of the skeleton. The purpose of the timing skeleton is that it easily can be validated to represent the source code it was created from. The timing skeleton is then automatically refined with verification detail, and then hidden for the user, transformed into the notation of a verification tool. This transformation is hidden from the user. In order to reduce the complexity of the application model the framework uses a formally verified run-time kernel with a clear separation from the application. The kernel supports preemption, dynamic priorities and multiple processors.
Starting Page 49
Ending Page 56
Page Count 8
File Format PDF
ISBN 1595931856
DOI 10.1145/1103846.1103854
Language English
Publisher Association for Computing Machinery (ACM)
Publisher Date 2005-11-13
Publisher Place New York
Access Restriction Subscribed
Subject Keyword Formal notation Verification Ada
Content Type Text
Resource Type Article
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