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A MIPS code sequence and assumed latencies are given in the Excel sheet. Note that branches using the result of integer operations do not need
A MIPS code sequence and assumed latencies are given in the Excel sheet. Note that branches using the result of integer operations do not need to stall (i.e., no data hazard). However, there is one cycle stall after the branch (which is a control hazard). When check your answers on HuskyCT, the cycle number of the stall after the branch is the number of cycles needed for an iteration. For example, if the cycle number of branch is 10 and the cycle number of the stall after the branch is 11, each iteration takes II eycles. For different assumptions in the following problems, construct a table that is similar to the ones in the loop unrolling example we have discussed. Submit your Excel file on HuskyCT. Your Excel file should have four sheets: HW3, Problem 1, Problem 2, and Problem 3. HW3 is given. Problem 1 is partially filled out. You need to create sheets for Problems 2 and 3. A MIPS code sequence and assumed latencies are given in the Excel sheet. Note that branches using the result of integer operations do not need to stall (i.e., no data hazard). However, there is one cycle stall after the branch (which is a control hazard). When check your answers on HuskyCT, the cycle number of the stall after the branch is the number of cycles needed for an iteration. For example, if the cycle number of branch is 10 and the cycle number of the stall after the branch is 11, each iteration takes II eycles. For different assumptions in the following problems, construct a table that is similar to the ones in the loop unrolling example we have discussed. Submit your Excel file on HuskyCT. Your Excel file should have four sheets: HW3, Problem 1, Problem 2, and Problem 3. HW3 is given. Problem 1 is partially filled out. You need to create sheets for Problems 2 and 3
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