Write the MIPS I code for the following C++ statements. x =-( (~ly & z)|x) & (x | 100)) >> 5); Use the following assumptions and requirements. Assume the registers that are not listed in the table are available, but not necessarily empty. • x, y, and z are C++ int-type variables. • Use the table for associations between the variables and their reigisters. Variables Registers $s0 $s1 $2 Write each instruction based on the given comment. Write instructions below. The number leading each line is the line number. 1 # $t0 = y & z 2 # $t1 = ~((y & z)|x) 3 # $t2 = x | 100 # $t3 = ~((y & z)|x) & (x | 100) 5 #$t4 = ~((y & z)|x) & (x | 100) >> 5 6 # x = -( (~(ly & z))x) & (x | 100)) 5) >>
Write the MIPS I code for the following C++ statements. x =-( (~ly & z)|x) & (x | 100)) >> 5); Use the following assumptions and requirements. Assume the registers that are not listed in the table are available, but not necessarily empty. • x, y, and z are C++ int-type variables. • Use the table for associations between the variables and their reigisters. Variables Registers $s0 $s1 $2 Write each instruction based on the given comment. Write instructions below. The number leading each line is the line number. 1 # $t0 = y & z 2 # $t1 = ~((y & z)|x) 3 # $t2 = x | 100 # $t3 = ~((y & z)|x) & (x | 100) 5 #$t4 = ~((y & z)|x) & (x | 100) >> 5 6 # x = -( (~(ly & z))x) & (x | 100)) 5) >>
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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answer the following question
![Write the MIPS I code for the following C++ statements. \( x = \sim((\sim((y \& z) | x) \& (x | 100)) \gg 5) \);
Use the following assumptions and requirements.
- Assume the registers that are not listed in the table are available, but not necessarily empty.
- x, y, and z are C++ int-type variables.
- Use the table for associations between the variables and their registers.
| Variables | x | y | z |
|-----------|----|----|----|
| Registers | $s0 | $s1 | $s2 |
- Write each instruction based on the given comment.
Write instructions below. The number leading each line is the line number.
1. `_______________` # $t0 = y & z
2. `_______________` # $t1 = ~((y & z)|x)
3. `_______________` # $t2 = x | 100
4. `_______________` # $t3 = ~((y & z)|x) & (x | 100)
5. `_______________` # $t4 = ~((y & z)|x) & (x | 100) >> 5
6. `_______________` # x = ~((~((y & z)|x) & (x | 100)) >> 5)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6d29bd6b-fc63-4631-b7e0-9d13e71d44c1%2Fab31bc12-177f-4c2c-8cff-6efec3f5f73b%2Fenvjcye_processed.png&w=3840&q=75)
Transcribed Image Text:Write the MIPS I code for the following C++ statements. \( x = \sim((\sim((y \& z) | x) \& (x | 100)) \gg 5) \);
Use the following assumptions and requirements.
- Assume the registers that are not listed in the table are available, but not necessarily empty.
- x, y, and z are C++ int-type variables.
- Use the table for associations between the variables and their registers.
| Variables | x | y | z |
|-----------|----|----|----|
| Registers | $s0 | $s1 | $s2 |
- Write each instruction based on the given comment.
Write instructions below. The number leading each line is the line number.
1. `_______________` # $t0 = y & z
2. `_______________` # $t1 = ~((y & z)|x)
3. `_______________` # $t2 = x | 100
4. `_______________` # $t3 = ~((y & z)|x) & (x | 100)
5. `_______________` # $t4 = ~((y & z)|x) & (x | 100) >> 5
6. `_______________` # x = ~((~((y & z)|x) & (x | 100)) >> 5)
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