For students not continuing in computer architecture, it gives an overview of the techniques used in today's microprocessors. For students who continue in computer architecture, it lays the foundation of the latest techniques implemented in current and future high-performance computing platforms. Topics include reduced instruction set computer architectures (RISC), using the MIPS central processor as an example, interface between assembly and high-level programming constructs and hardware, instruction and memory cache systems, performance evaluation, benchmarks, and use of the SPIM/WinDLX/Verilog simulators for the MIPS architecture. This course qualitatively and quantitatively examines computer design trade-offs and teaches the fundamentals of computer architecture and organization, including CPU, memory, registers, arithmetic unit, control unit, and input/output components. Digital Principles Foundation of Circuit Design and Application - Arun Kumar Singh. Hayes Computer Organization and Architecture - William Stallings Digital Logic and Computer Design - M. The technological requirements and those regarding the content and organization of the education are formulated based on preliminary research. Computer architecture is the science and art of selecting and interconnecting hardware components to create a computer that meets functional, performance and cost goals. COE608: Computer Organization and Architecture Instructor(s) Nagi Mekhiel Coordinator Office: Virtual Phone: (416) 979-5000 x 7251 Email: nmekhielryerson. Computer Architecture and Organization - John P.
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