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The integral idea behind POLIS is the Co-design Finite State Machine (CFSM). The CFSM provides a unified input for the tools within the POLIS environment. POLIS supports automated synthesis and performance estimation of heterogeneous design through the use of Ptolemy [45] as the simulation engine. Such ability allows POLIS to provide necessary feedback to the designer at all design steps. A simple scheme for automatic HW/SW interface synthesis is also supported. The Corsair [10] integrated framework methodology is similar to POLIS.
The approach gives no insight why this particular architecture is selected. Both methods do not furnish a process for capturing customer’s requirements. The SpecC method [20], on the other hand, is based on a specify-explorerefme paradigm. It is a unified language, IP-centric approach aimed at easing the problems caused by heterogeneous design. The SpecC language can be employed to describe both hardware and software behaviors until the designer attains the feasible implementation model later on in the design process, hence, promoting an unbiased hardware/software partitioning for the system under development.
Even though no detailed implementation of the Embedded UML is available at the time of this writing, a careful perusal over its proposal reveals a few interesting facts. The Embedded UML profile and the UML profile for Co-design Modeling Framework (see Chapter 5) bear some resemblance as per their underlying objectives—each of which attempts to furnish a means to model and to develop platform-based real-time embedded systems. Certain minute implementation details of the two profiles differ tentatively.