Suppose a TCP connection, with window size 1, loses every other packet. Those that do arrive have RTT: 1 second. What - happens? What happens to TimeOut? Do this for two cases: (a) After a packet is eventually received, we pick up where we left off, resuming with Estimated RTT initialized to its pre-timeout value, and TimeOut double that. (b) After a packet is eventually received, we resume with TimeOut initialized to the last exponentially backed-off value used for the timeout interval. In the following four exercises, the calculations involved are straightforward with a spreadsheet.

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
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Suppose a TCP connection, with window size 1, loses every other
packet. Those that do arrive have RTT: 1 second. What
=
happens? What happens to TimeOut? Do this for two cases:
(a) After a packet is eventually received, we pick up where we left
off, resuming with Estimated RTT initialized to its pre-timeout
value, and TimeOut double that.
(b) After a packet is eventually received, we resume with TimeOut
initialized to the last exponentially backed-off value used for
the timeout interval.
In the following four exercises, the calculations involved are
straightforward with a spreadsheet.
Transcribed Image Text:Suppose a TCP connection, with window size 1, loses every other packet. Those that do arrive have RTT: 1 second. What = happens? What happens to TimeOut? Do this for two cases: (a) After a packet is eventually received, we pick up where we left off, resuming with Estimated RTT initialized to its pre-timeout value, and TimeOut double that. (b) After a packet is eventually received, we resume with TimeOut initialized to the last exponentially backed-off value used for the timeout interval. In the following four exercises, the calculations involved are straightforward with a spreadsheet.
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