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Titlebook: Verification of Digital and Hybrid Systems; M. Kemal Inan,Robert P. Kurshan Book 2000 Springer-Verlag Berlin Heidelberg 2000 algorithms.au

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The SHIFT Programming Language and Run-time System for Dynamic Networks of Hybrid Automatafigurations cannot be captured easily by conventional models. We have implemented a Compiler and a run-time system for SHIFT. The Compiler translates a SHIFT program into a C program, which, when run, simulates the design specified in the SHIFT source program.More Information about SHIFT can be found at www.path.berkeley.edu/ shift.
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Overview of Verificational verification, and to understand where we can fruitfully apply it, it is worthwhile to begin by studying a bit of “entomology” - that is, what species of bug are we after, where do they come from, and why are they so difficult to avoid in the first place?
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General Purpose Theorem Proving Methods in the Verification of Digital Hardware and Softwareial scale applications, including correctness proofs for commercialfloating-point Operations and proofs about a model of a state-of-the-artdigital signal processor, are discussed. The paper concludes with a discussionof several other Systems and their recent applications.
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Compositional Systems and Methodsat we separate the specification of system into properties of its components, and verify the properties of the components separately. This of course leaves us the Obligation of proving that the component specifications in turn imply the specification of the entire system. This is called compositional verification.
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On the Composition of Hybrid Systemsin two component processes.— Interleaving rules, that specify how an action of a component process is an action of the product process. These rules allow some component processes to be idle while the others progress.
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