In this fourth book in the CHDL Series, a selection of the best papers presented in FDL'02 is published. System Specification and Design Languages contains outstanding research contributions in the four areas mentioned above. So, The Analog and Mixed-Signal system design contributions cover the new methodological approaches like AMS behavioral specification, mixed-signal modeling and simulation, AMS reuse and MEMs design using the new modeling languages such as VHDL-AMS, Verilog-AMS, Modelica and analog-mixed signal extensions to SystemC.
UML is the de-facto standard for SW development covering the early development stages of requirement analysis and system specification. The UML-based system specification and design contributions address latest results on hot-topic areas such as system profiling, performance analysis and UML application to complex, HW/SW embedded systems and SoC design.C/C++-for HW/SW systems design is entering standard industrial design flows. Selected papers cover system modeling, system verification and SW generation.
The papers from the Specification Formalisms for Proven design workshop present formal methods for system modeling and design, semantic integrity and formal languages such as ALPHA, HANDLE and B.
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Contributing Authors. Preface. Part I: Analog and Mixed-Signal System Design. Selected Topics in Mixed-Signal Simulation; E. Christen. Mixed-Signal Extensions for SystemC; K. Einwich, P. Schwarz, C. Grimm, K. Waldschmidt. Mixed Modeling in Modelica; C. Clauss, H. Elmqvist, S.E. Mattsson, M. Otter, P. Schwarz. VHDL-AMS and Verilog-AMS as Competitive Solutions; F. Pêcheux, C. Lallement. VHDL-AMS in MEMS Design Flow; J. Haase, J. Bastian, S. Reitz. A new approach to model generation for nonlinear mixed-signal circuits in the behavioral and functional domain; R. Rosenberger, S.A. Huss. Multi-Level Analog/Mixed-Signal IP Specification for Platform Based Design; N. Martínez Madrid, A. Acosta Fernández, F. Ruiz Moreno, R. Seepold. Part II: UML System Specification and Design. A UML Profile for Real-Time System Modelling with Rate-Monotonic Analysis; J. Oliver. Support for Embedded Systems IN UML 2.0; M. Björkander, C. Kobryn. Embedded System Design Using UML and Platforms; Rong Chen, M. Sgroi, L. Lavagno, G. Martin, A. Sangiovanni-Vincentelli, J. Rabaey. A Design Methodology for the Development of a Complex System-on-Chip using UML and Executable System Models; M. Pauwels, Y. Vanderperren, G. Sonck, P. van Oostende, W. Dehaene, T. Moore. Using the SHE Method for UML-based Performance Modeling; B.D. Theelen, P.H.A. van der Putten, J.P.M. Voeten. SystemC code generation from UML models; L. Baresi, F. Bruschi, E. Di Nitto, D. Sciuto. Hardware dependent Software, the Bridge between Hardware and Software; R. Marichal, G. de Jong, P. van der Putten, J. van Sas. Part III: C/C++-Based System Design. C/C++ Based System Design How Using SpecC, VCC and SystemC;L. Cai, M. Olivarez, P. Kritzinger, D. Gajski. Verification of Synchronization in SpecC Description with the Use of Difference Decision Diagrams; T. Sakunkonchak, M. Fujita. Automatic Generation of Scheduled SystemC Models of Embedded Systems from Extended Task Graphs; S. Klaus, S.A. Huss, T. Trautmann. SystemC-Plus Complex Data Types for Telecom Applications; M. Bombana, W. Fornaciari, L. Pomante. A Method for the Development of Combined Floating- and Fixed Point SystemC Models; Y. Vanderperren, W. Dehaene, M. Pauwels. Object-Oriented High-Level Modeling of an InfiniBand to PCI-X Bridge; O. Lachish, A. Ziv. A SystemC Model for RTOS Kernel; M. Abdel Salam, A. Salem. Part IV: Specification Formalisms for Proven Design. An Abstract Modeling Approach Towards System-Level Design-Space Exploration; F.N. van Wijk, J.P.M. Voeten, A.J.W.M. ten Berg. Modeling Techniques in Design-by-Refinement Methodologies; J.R. Burch, R. Passerone, A.L. Sangiovanni-Vincentelli. Design of Highly Parallel Architectures with Alpha and Handel; F. de Dinechin, M. Manjunathaiah, T. Risset, M. Spivey. MTG* and Gray Box; S. Himpe, G. Deconinck, F. Catthoor, J. van Meerbergen. Specification and Refinement of Hardware Components in B; S. Hallerstede. Ensuring semantic integrity in knowledge bases for embedded systems; D. Monjau, M. Sporer.
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