3. Consider two different implementations of the same instruction set architecture. The instructions can be divided into four classes according to their CPI (class A, B, C, and D). P1 with a clock rate of 2.5 GHz and CPIS of 1, 2, 3, and 3, and P2 with a clock rate of 3 GHz and CPIS of 2, 2, 2, and 2. Given a program with a dynamic instruction count of 1.0E6 instructions divided into classes as follows: 10% class A, 20% class B, 50% class C, and 20% class D, which implementation is faster? a. What is the global CPI for each implementation? b. Find the clock cycles required in both cases.

Computer Networking: A Top-Down Approach (7th Edition)
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3.
Consider two different implementations of the same instruction
set architecture. The instructions can be divided into four classes according to
their CPI (class A, B, C, and D). P1 with a clock rate of 2.5 GHz and CPIS of 1, 2, 3,
and 3, and P2 with a clock rate of 3 GHz and CPIS of 2, 2, 2, and 2.
Given a program with a dynamic instruction count of 1.0E6 instructions divided
into classes as follows: 10% class A, 20% class B, 50% class C, and 20% class D,
which implementation is faster?
a. What is the global CPI for each implementation?
b. Find the clock cycles required in both cases.
Transcribed Image Text:3. Consider two different implementations of the same instruction set architecture. The instructions can be divided into four classes according to their CPI (class A, B, C, and D). P1 with a clock rate of 2.5 GHz and CPIS of 1, 2, 3, and 3, and P2 with a clock rate of 3 GHz and CPIS of 2, 2, 2, and 2. Given a program with a dynamic instruction count of 1.0E6 instructions divided into classes as follows: 10% class A, 20% class B, 50% class C, and 20% class D, which implementation is faster? a. What is the global CPI for each implementation? b. Find the clock cycles required in both cases.
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