1). Arithmetic Logic Unit (ALU) Design an ALU, simulate and save it as a circuit. Select Add Circuit from the Project menu and name it alu. Input pins: A (32 bits), B (32 bits), alu_control (2 bits) Output pin: Z (32 bits) The following python code describes the function of this circuit. def mod_alu (alu_control, A, B): if alu control == 2: Z = A + B # add elif alu control == 0: # and Z = A & B elif alu control 1: # or == Z = A | B else: Z = 0 return (Z)
1). Arithmetic Logic Unit (ALU) Design an ALU, simulate and save it as a circuit. Select Add Circuit from the Project menu and name it alu. Input pins: A (32 bits), B (32 bits), alu_control (2 bits) Output pin: Z (32 bits) The following python code describes the function of this circuit. def mod_alu (alu_control, A, B): if alu control == 2: Z = A + B # add elif alu control == 0: # and Z = A & B elif alu control 1: # or == Z = A | B else: Z = 0 return (Z)
Computer Networking: A Top-Down Approach (7th Edition)
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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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![1). Arithmetic Logic Unit (ALU)
Design an ALU, simulate and save it as a circuit. Select Add Circuit from the Project menu and name it
alu.
Input pins: A (32 bits), B (32 bits), alu_control (2 bits)
Output pin: Z (32 bits)
The following python code describes the function of this circuit.
def mod_alu (alu_control, A, B):
if alu control == 2:
Z = A + BỊ
# add
elif alu control
0: # and
==
Z = A & B
elif alu control
1: # or
==
Z = A | B
else:
Z = 0
return (Z)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0a6a4272-9b12-4861-9171-a50c693b2372%2F321c7336-32a8-4dd1-9ed1-05330d668a88%2Fuf3lh3i_processed.png&w=3840&q=75)
Transcribed Image Text:1). Arithmetic Logic Unit (ALU)
Design an ALU, simulate and save it as a circuit. Select Add Circuit from the Project menu and name it
alu.
Input pins: A (32 bits), B (32 bits), alu_control (2 bits)
Output pin: Z (32 bits)
The following python code describes the function of this circuit.
def mod_alu (alu_control, A, B):
if alu control == 2:
Z = A + BỊ
# add
elif alu control
0: # and
==
Z = A & B
elif alu control
1: # or
==
Z = A | B
else:
Z = 0
return (Z)
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