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In this paper we present ESIDE, an integrated development environment for component-based embedded systems. It leverages component-based software engineering principles to facilitate efficient, scalable, and robust hardware/software co-design, co-simulation, co-verification, and their seamless integration. We first describe the architecture and features of ESIDE. We then discuss several design decisions...
In component-based hardware/software co-verification, properties of an embedded system are established from properties of its hardware and software components. A major challenge in component-based co-verification is the property formulation problem: (1) what are the system properties to verify, (2) what are the component properties needed for verifying the system properties, and (3) what are the environment...
Hardware/software co-verification is becoming an indispensable tool for building highly trustworthy embedded systems. A stumbling block to effective co-verification using model checking is the lack of support to unified property specification for hardware, software, and entire embedded systems. In this paper, we develop xPSL, a unified property specification language for co-verification. xPSL extends...
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