KRATOCHVÍLA, Tomáš, Vojtěch ŘEHÁK and Pavel ŠIMEČEK. Verification of COMBO6 VHDL Design. Praha: CESNET, z.s.p.o., 2003. CESNET Technical Report No. 17/2003.
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Basic information
Original name Verification of COMBO6 VHDL Design
Authors KRATOCHVÍLA, Tomáš (203 Czech Republic), Vojtěch ŘEHÁK (203 Czech Republic, guarantor) and Pavel ŠIMEČEK (203 Czech Republic).
Edition Praha, CESNET Technical Report No. 17/2003, 2003.
Publisher CESNET, z.s.p.o.
Other information
Original language English
Type of outcome Audiovisual works
Field of Study 10201 Computer sciences, information science, bioinformatics
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
WWW URL
RIV identification code RIV/00216224:14330/03:00008325
Organization unit Faculty of Informatics
Keywords in English Liberouter; Combo6; formal verification; hardware verification; model checking; Cadence SMV; LeonardoSpectrum
Tags Cadence SMV, Combo6, formal verification, hardware verification, LeonardoSpectrum, liberouter, Model checking
Changed by Changed by: doc. RNDr. Vojtěch Řehák, Ph.D., učo 3721. Changed: 18/10/2004 15:55.
Abstract
This technical report presents current results and experiences of the formal verification of VHDL design of Combo6 hardware accelerator card. Information about formal verification itself is enriched by description of transformation from VHDL to the Cadence SMV specification language and the system of assertions established as a compact way of communication with VHDL designers.
Links
GA201/03/0509, research and development projectName: Automatizovaná verifikace paralelních a distribuovaných systémů
Investor: Czech Science Foundation, Automated Verification of Parallel and Distributed Systems
MSM 000000001, plan (intention)Name: Vysokorychlostní síť národního výzkumu a její nové aplikace
MSM 143300001, plan (intention)Name: Nesekvenční modely výpočtů - kvantové a souběžné distribuované modely výpočetních procesů
Investor: Ministry of Education, Youth and Sports of the CR, Non-sequential Models of Computing -- Quantum and Concurrent Distributed Models of Computing
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