Using the assembly language of the simple processor (refer to the table below), Write an assembly code segments that add the even numbers between 2 and 100, and store the result in the memory location RESULT. Meaning of instruction Mnemonic STOP LD ST MOVAC MOV ADD SUB AND NOT BRA BZ Operand X adr adr Stop execution Load operand from memory (location x) into AC Store contents of AC in memory (location x) Copy the contents AC to DR Copy the contents of DR to AC Add DR to AC Subtract DR from AC And bitwise DR to AC Complement contents of AC Jump to instruction with address adr Jump to instruction adr if AC = 0

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Using the assembly language of the simple processor (refer to the table below), Write an assembly code
segments that add the even numbers between 2 and 100, and store the result in the memory location
RESULT.
Meaning of instruction
Mnemonic
STOP
LD
ST
MOVAC
MOV
ADD
Computer Architecture
Homework 3
SUB
AND
NOT
BRA
BZ
Operand
X
adr
adr
Stop execution
Load operand from memory (location x) into AC
Store contents of AC in memory (location x)
Copy the contents AC to DR
Copy the contents of DR to AC
Add DR to AC
Subtract DR from AC
And bitwise DR to AC
Complement contents of AC
Jump to instruction with address adr
Jump to instruction adr if AC = 0
Transcribed Image Text:Using the assembly language of the simple processor (refer to the table below), Write an assembly code segments that add the even numbers between 2 and 100, and store the result in the memory location RESULT. Meaning of instruction Mnemonic STOP LD ST MOVAC MOV ADD Computer Architecture Homework 3 SUB AND NOT BRA BZ Operand X adr adr Stop execution Load operand from memory (location x) into AC Store contents of AC in memory (location x) Copy the contents AC to DR Copy the contents of DR to AC Add DR to AC Subtract DR from AC And bitwise DR to AC Complement contents of AC Jump to instruction with address adr Jump to instruction adr if AC = 0
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