(b) Another extract from the same C program is shown below. However, a co-operative multitasking operating system would not be able to move the process from the Run- ning to the Blocked state while this code was executing. Give a brief explanation of why a co-operative multitasking operating system would not be able to move the process between the two states and why a pre-emptive mutl- tiasking operating system would be able to. for (i i = 3; i <=b; i +=2) %3D n = prime[i]: if (prime[i] > 0) if (i se a) { break; for(j = i+l; j <=b; j++) { if (primelj] != -1 k& (prime [j] % n) == 0) { prime [j] = -l; }
(b) Another extract from the same C program is shown below. However, a co-operative multitasking operating system would not be able to move the process from the Run- ning to the Blocked state while this code was executing. Give a brief explanation of why a co-operative multitasking operating system would not be able to move the process between the two states and why a pre-emptive mutl- tiasking operating system would be able to. for (i i = 3; i <=b; i +=2) %3D n = prime[i]: if (prime[i] > 0) if (i se a) { break; for(j = i+l; j <=b; j++) { if (primelj] != -1 k& (prime [j] % n) == 0) { prime [j] = -l; }
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...
Related questions
Question
In a co-operative multitasking
between a series of states: Running, Blocked, and Runnable
![(b) Another extract from the same C program is shown below. However, a co-operative
multitasking operating system would not be able to move the process from the Run-
ning to the Blocked state while this code was executing.
Give a brief explanation of why a co-operative multitasking operating system would
not be able to move the process between the two states and why a pre-emptive mutl-
tiasking operating system would be able to.
for (i = 3; i <=b; i +=2)
i = prime [i];
if (prime[i] 0
IF (i s= a)
break;
for (j = i+l; j <=b; j++]
if (primelj] != -1 && (prime[j] % n) == 0)
prime [j] = -1;
}](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F725de9f8-8668-478f-ac7d-4cfcbfb57f76%2Faa586481-4ecd-40c1-8610-23e83be9c4b3%2Fmb8tq8a_processed.png&w=3840&q=75)
Transcribed Image Text:(b) Another extract from the same C program is shown below. However, a co-operative
multitasking operating system would not be able to move the process from the Run-
ning to the Blocked state while this code was executing.
Give a brief explanation of why a co-operative multitasking operating system would
not be able to move the process between the two states and why a pre-emptive mutl-
tiasking operating system would be able to.
for (i = 3; i <=b; i +=2)
i = prime [i];
if (prime[i] 0
IF (i s= a)
break;
for (j = i+l; j <=b; j++]
if (primelj] != -1 && (prime[j] % n) == 0)
prime [j] = -1;
}
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