6.7 The pseudocode of Figure 6.16 (at page 364 of PDF file) illustrates the basic push() and pop() operations of an array-based stack. Assuming that this algorithm could be used in a concurrent environment, answer the following questions: a. What data have a race condition? b. How could the race condition be fixed? push (item) { if (top < SIZE) { stack [top] = item; top++; else ERROR } pop() { if (!is.empty()) { top--; return stack[top]; else ERROR } is.empty() { if (top == 0) return true; else return false; } Figure 6.16 Array-based stack for Exercise 6.12.

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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6.7 The pseudocode of Figure 6.16 (at page 364 of PDF file) illustrates the basic push() and pop() operations of an
array-based stack. Assuming that this algorithm could be used in a concurrent environment, answer the following
questions:
a. What data have a race condition?
b. How could the race condition be fixed?
push (item) {
if (top < SIZE) {
stack[top] = item;
top++;
}
else
ERROR
}
pop () {
if (!is-empty()) {
top--;
return stack[top];
}
else
ERROR
}
is.empty() {
if (top == 0)
return true;
else
return false;
}
Figure 6.16 Array-based stack for Exercise 6.12.
Transcribed Image Text:6.7 The pseudocode of Figure 6.16 (at page 364 of PDF file) illustrates the basic push() and pop() operations of an array-based stack. Assuming that this algorithm could be used in a concurrent environment, answer the following questions: a. What data have a race condition? b. How could the race condition be fixed? push (item) { if (top < SIZE) { stack[top] = item; top++; } else ERROR } pop () { if (!is-empty()) { top--; return stack[top]; } else ERROR } is.empty() { if (top == 0) return true; else return false; } Figure 6.16 Array-based stack for Exercise 6.12.
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