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Titlebook: Symbolic Simulation Methods for Industrial Formal Verification; Robert B. Jones Book 2002 Springer Science+Business Media New York 2002 Co

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.This introductory and self-contained book gathers as much explicit mathematical results on the linear-elastic and heat-conduction  solutions in the neighborhood of singular points in two-dimensional domains, and  singular edges and vertices in three-dimensional domains. These are presented in an  e
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Introduction many years, and the difficulty of checking a design for logic errors has scaled accordingly. This phenomenon is especially true in the design of microprocessors, which require an immense effort for functional testing. Recently, the problem has been exacerbated by decreasing design cycles. Microproc
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Self Consistencyctional consistency of a circuit with perturbed inputs, running in different modes, or with an altered environment. This enables formal verification via symbolic simulation in the absence of a separate, formal specification. Self consistency can also facilitate problem reduction in formal verificati
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Self Consistency in Practicent pipeline from the Intel Pentium. Pro processor, and an IA-32 instruction-length decoder from a different processor. Both circuits are verified using reference specifications derived with self consistency. Both examples describe the functionality of the circuits and bugs that were found with the d
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Using the Parametric Representationthis chapter, two verification examples from Intel processor designs are presented. In contrast with the verifications reported in Chapter 3, these verifications involved hand-crafted formal specifications. The tests were performed on the same verification platform described in Section 3.1.1. Both v
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