subject
Engineering, 30.11.2019 02:31 daltonbrown4

Th e importance of having a good branch predictor depends on how oft en conditional branches are executed. together with branch predictor accuracy, this will determine how much time is spent stalling due to mispredicted branches. in this exercise, assume that the breakdown of dynamic instructions into various instruction categories is as follows: r-type beq jmp lw sw 40% 25% 5% 25% 5% also, assume the following branch predictor accuracies: always-taken always-not-taken 2-bit 45% 55% 85%4.15.1 [10] < §4.8> stall cycles due to mispredicted branches increase the cpi. what is the extra cpi due to mispredicted branches with the always-taken predictor? assume that branch outcomes are determined in the ex stage, that there are no data hazards, and that no delay slots are used.4.15.2 [10] < §4.8> repeat 4.15.1 for the "always-not-taken" predictor.4.15.3 [10] < §4.8> repeat 4.15.1 for for the 2-bit predictor.4.15.4 [10] < §4.8> with the 2-bit predictor, what speedup would be achieved if we could convert half of the branch instructions in a way that replaces a branch instruction with an alu instruction? assume that correctly and incorrectly predicted instructions have the same chance of being replaced.4.15.5 [10] < §4.8> with the 2-bit predictor, what speedup would be achieved if we could convert half of the branch instructions in a way that replaced each branch instruction with two alu instructions? assume that correctly and incorrectly predicted instructions have the same chance of being replaced.

ansver
Answers: 3

Another question on Engineering

question
Engineering, 04.07.2019 16:10
The force on a cutting tool are 2600n vertically downward and 2100 horizontal. determine the resultant force acting on the tool and the angle at which it acts.
Answers: 1
question
Engineering, 04.07.2019 18:10
The filament of an incandescent lamp has a temperature of 2000k. calculate the fraction of radiation emitted in the visible light band if the filament is approximated as blackbody
Answers: 2
question
Engineering, 04.07.2019 18:20
Determine the damped natural frequencies and the steady state response of a decoupled damped forced two degrees of freedom system. 10ä1 + 2q1 20q1 10 cos t; 10q2 +4q2 + 40q2 10 cos t
Answers: 3
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
You know the right answer?
Th e importance of having a good branch predictor depends on how oft en conditional branches are exe...
Questions
question
Mathematics, 10.07.2019 14:00
question
Mathematics, 10.07.2019 14:00
Questions on the website: 13722363