A segment of code that cannot be entered and executed by more than one process at the same time is called _________________. deadlock critical section semaphore mutex A process that does not enter a critical section but also prevents other processes from entering is creating _______________. deadlock mutual exclusion lockout starvation Multiple processes that block each other indefinitely from entering a critical section are creating _____________. mutual exclusion starvation deadlock logout Using semaphores. s = 0 initially. Process p1 executes the sequence: P(s); V(s); P(s); V(s); Process p2 executes the sequence: V(s); V(s); P(s); V(s); After both processes terminate, s=________. 3 1 0 2 A monitor is a low-level kernel function that implements a priority queue. True or false Processes can access and modify monitor variables without having to call the monitor's functions. True False The correct monitor implementation of c.wait places the calling process in a waiting queue. True False Using a monitor with a priority queue Process p1 calls wakeme(7) at time now = 2 Process p2 calls wakeme(2) at time now = 4 Process p3 calls wakeme(6) at time now = 1 Process p4 calls wakeme(3) at time now = 5 Process __________ leaves the monitor first. p3 p4 p2 p1
A segment of code that cannot be entered and executed by more than one process at the same time is called _________________. deadlock critical section semaphore mutex A process that does not enter a critical section but also prevents other processes from entering is creating _______________. deadlock mutual exclusion lockout starvation Multiple processes that block each other indefinitely from entering a critical section are creating _____________. mutual exclusion starvation deadlock logout Using semaphores. s = 0 initially. Process p1 executes the sequence: P(s); V(s); P(s); V(s); Process p2 executes the sequence: V(s); V(s); P(s); V(s); After both processes terminate, s=________. 3 1 0 2 A monitor is a low-level kernel function that implements a priority queue. True or false Processes can access and modify monitor variables without having to call the monitor's functions. True False The correct monitor implementation of c.wait places the calling process in a waiting queue. True False Using a monitor with a priority queue Process p1 calls wakeme(7) at time now = 2 Process p2 calls wakeme(2) at time now = 4 Process p3 calls wakeme(6) at time now = 1 Process p4 calls wakeme(3) at time now = 5 Process __________ leaves the monitor first. p3 p4 p2 p1
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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Question
A segment of code that cannot be entered and executed by more than one process at the same time is called _________________.
deadlock
critical section
semaphore
mutex
A process that does not enter a critical section but also prevents other processes from entering is creating _______________.
deadlock
mutual exclusion
lockout
starvation
Multiple processes that block each other indefinitely from entering a critical section are creating _____________.
mutual exclusion
starvation
deadlock
logout
Using semaphores.
s = 0 initially.
Process p1 executes the sequence: P(s); V(s); P(s); V(s);
Process p2 executes the sequence: V(s); V(s); P(s); V(s);
After both processes terminate, s=________.
3
1
0
2
A monitor is a low-level kernel function that implements a priority queue.
True or false
Processes can access and modify monitor variables without having to call the monitor's functions.
True
False
The correct monitor implementation of c.wait places the calling process in a waiting queue.
True
False
Using a monitor with a priority queue
Process p1 calls wakeme(7) at time now = 2
Process p2 calls wakeme(2) at time now = 4
Process p3 calls wakeme(6) at time now = 1
Process p4 calls wakeme(3) at time now = 5
Process __________ leaves the monitor first.
p3
p4
p2
p1
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