subject
Engineering, 21.02.2020 16:30 Harms

Consider the following three pipeline processor implementations. Assume that all 3 pipelines can achieve a CPI of 1, except for mispredicted branches . Implementation X: A pipeline length of 20 stages with branches resolving in stage 7, running . Implementation Y: A pipeline length of 30 stages with branches resolving in stage 12, Implementation Z: A pipeline length of 25 stages with branches resolving in stage 5, running For all processors, the branch predictor is located in stage 1 a) What are the cycle times for each of these pipelines, in nanoseconds? at 666MHz running at 1GHz. at 833MHz. b) Now consider that you are the CTO at Intel and you want to choose a pipeline implementation for your next generation processor. You know that the branch predictor in your architecture can achieve 95% prediction accuracy. If you were to select a pipeline design purely based upon on minimum branch misprediction penalty in nano-seconds, which architecture would you choose? c) Now, consider pipeline Implementation X. Assume this is the only pipeline available to you, and as CTO you have two choices. The next generation of silicon technology has given you extra transistors to work with, and you can either use them to build a better branch predictor that will achieve 98% accuracy instead of 95%, OR to build extra hardware to allow branches to resolve in stage 5 instead of stage 7. Which approach will provide the best average CPl for a workload with 20% branches?

ansver
Answers: 2

Another question on Engineering

question
Engineering, 04.07.2019 18:10
An air conditioning system consist of a 5 cm diameter pipe, operating at a pressure of 200 kpa. the air initially enters the pipe at 15°c with a velocity of 20 m/s and relative humidity of 80%. if the heat supply throughout the process is 960 w, determine the relative humidity and the temperature at the outlet
Answers: 3
question
Engineering, 04.07.2019 18:10
Aflywheel accelerates for 5 seconds at 2 rad/s2 from a speed of 20 rpm. determine the total number of revolutions of the flywheel during the period of its acceleration. a.5.65 b.8.43 c. 723 d.6.86
Answers: 2
question
Engineering, 04.07.2019 18:20
Find the kinematic pressure of 160kpa. for air, r-287 j/ kg k. and hair al viscosity of air at a temperature of 50°c and an absolute (10 points) (b) find the dynamic viscosity of air at 110 °c. sutherland constant for air is 111k
Answers: 3
question
Engineering, 04.07.2019 18:20
Refrigerant-134a enters the compressor of a refrigerator as superheated vapor at 0.14 mpa and -10°c at a rate of 0.05 ka/s and leaves at 0.8 mpa and 50°c. the refrigerant is cooied in the condenser to 0.72 mpa and 26'c. it is then throttled to 0.15 mpa. sketch the t-s diagram for the system and evaluate: 6) the rate of heat removai from the refrigerated space (kw), it) the power input to the compressor (kw), ii) the isentropic efficiency of the compressor (%), and iv) the cop of the refrigerator.
Answers: 2
You know the right answer?
Consider the following three pipeline processor implementations. Assume that all 3 pipelines can ach...
Questions
question
Mathematics, 25.09.2019 03:00
Questions on the website: 13722363