Requests are not usually uniformly distributed. For example, a cylinder containing the file system FAT or inodes can be expected to be accessed more frequently than a cylinder that only contains files. Suppose you know that 50 percent of the requests are for a small, fixed number of cylinders. a. Would any of the scheduling algorithms discussed in this chapter be particularly good for this case? Explain your answer. b. Propose a disk-scheduling algorithm that gives even better performance by taking advantage of this "hot spot" on the disk. c. File systems typically find data blocks via an indirection table, such as a FAT in DOS or inodes in UNIX. Describe one or more ways to take advantage of this indirection to improve the disk performance.

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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Requests are not usually uniformly distributed. For example, a cylinder containing the file
system FAT or inodes can be expected to be accessed more frequently than a cylinder that
only contains files. Suppose you know that 50 percent of the requests are for a small,
fixed number of cylinders.
a. Would any of the scheduling algorithms discussed in this chapter be particularly
good for this case? Explain your answer.
b. Propose a disk-scheduling algorithm that gives even better performance by taking
advantage of this "hot spot" on the disk.
c. File systems typically find data blocks via an indirection table, such as a FAT in DOS
or inodes in UNIX. Describe one or more ways to take advantage of this indirection
to improve the disk performance.
Transcribed Image Text:Requests are not usually uniformly distributed. For example, a cylinder containing the file system FAT or inodes can be expected to be accessed more frequently than a cylinder that only contains files. Suppose you know that 50 percent of the requests are for a small, fixed number of cylinders. a. Would any of the scheduling algorithms discussed in this chapter be particularly good for this case? Explain your answer. b. Propose a disk-scheduling algorithm that gives even better performance by taking advantage of this "hot spot" on the disk. c. File systems typically find data blocks via an indirection table, such as a FAT in DOS or inodes in UNIX. Describe one or more ways to take advantage of this indirection to improve the disk performance.
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