A.7 [20/20] Consider the following fragment of C code: = for (i {A[i]B[i] + C; } 0; i <= 100; i++) Assume that A and B are arrays of 64-bit integers, and C and i are 64-bit inte- gers. Assume that all data values and their addresses are kept in memory (at addresses 1000, 3000, 5000, and 7000 for A, B, C, and i, respectively) except when they are operated on. Assume that values in registers are lost between itera- tions of the loop. a. [20] Write the code for MIPS. How many instructions are required dynamically? How many memory-data references will be executed? What is the code size in bytes?

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A.7 [20/20] <A.2, A.9> Consider the following fragment of C code:
=
for (i
{A[i]B[i] + C; }
0; i <= 100; i++)
Assume that A and B are arrays of 64-bit integers, and C and i are 64-bit inte-
gers. Assume that all data values and their addresses are kept in memory (at
addresses 1000, 3000, 5000, and 7000 for A, B, C, and i, respectively) except
when they are operated on. Assume that values in registers are lost between itera-
tions of the loop.
a. [20] <A.2, A.9> Write the code for MIPS. How many instructions are
required dynamically? How many memory-data references will be executed?
What is the code size in bytes?
Transcribed Image Text:A.7 [20/20] <A.2, A.9> Consider the following fragment of C code: = for (i {A[i]B[i] + C; } 0; i <= 100; i++) Assume that A and B are arrays of 64-bit integers, and C and i are 64-bit inte- gers. Assume that all data values and their addresses are kept in memory (at addresses 1000, 3000, 5000, and 7000 for A, B, C, and i, respectively) except when they are operated on. Assume that values in registers are lost between itera- tions of the loop. a. [20] <A.2, A.9> Write the code for MIPS. How many instructions are required dynamically? How many memory-data references will be executed? What is the code size in bytes?
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