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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
PRAKTIKUM 13 TCP Wireshark
Buka alamat http://gaia.cs.umass.edu/wiresharklabs/alice.txt http://gaia.cs.umass.edu/wiresharklabs/alice.txt,, kemudian save file alice.txt. Setelah itu upload file. Sebelum upload file tersebut, start terlebih dahulu wireshark. Lalu upload file dan analisa pada wireshark tersebut.
1. Apa alamat IP dan port TCP nomor yang digunakan oleh komputer klien (sumber) yang mentransfer file ke gaia.cs.umass.edu? Untuk menjawab pertanyaan ini, itu mungkin palin g mudah untuk memilih pesan HTTP dan menjelajahi rincian TCP paket yang digunakan untuk membawa pesan HTTP ini, dengan menggunakan "rincian dari paket yang yang dipilih window header "(lihat Gambar 2 di" Memulai dengan Wireshark "Lab jika Anda tidak yakin tentang jendela Wireshark. Jawab : Source : 192.168.43.145 Port TCP klien : 50165
2. Apa alamat IP dari gaia.cs.umass.edu? Pada apa nomor port itu mengirim dan menerima segmen TCP untuk koneksi ini?
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
Jawab : Receiving : Source : 192.168.43.145 Port TCP klien : 50165 Destination : 128.119.245.12 Port TCP : 80 Sending : Source : 128.119.245.12 Port TCP : 80 Destination : 192.168.43.145 Port TCP klien : 50165
3. Apa alamat IP dan port TCP nomor yang digunakan oleh komputer klien Anda (Sumber) untuk mentransfer file ke gaia.cs.umass.edu? Jawab : Source : 192.168.43.145 Port TCP klien : 50165
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
4. Berapa jumlah urutan segmen TCP SYN yang digunakan untuk memulai koneksi TCP antara komputer klien dan gaia.cs.umass.edu? Apa itu di segmen yang mengidentifikasi segmen sebagai segmen SYN? Jawab : Sequence number = 0 Flags = 0x002 (SYN)
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
the SYNACK segment? How did gaia.cs.umass.edu determine that value? What is it in the segment that identifies the segment as a SYNACK segment? Jawab : Sequence number = 0, ack=1 syn=1, Flags = 0x012 (SYN, ACK)
6. What is the sequence number of the TCP segment containing the HTTP POST command? Note that in order to find the POST command, you’ll need to dig into the
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
7. What is the length of each of the first six TCP segments? Jawab : Frame
8. What is the minimum amount of available buffer space advertised at the received for the entire trace? Does the lack of receiver buffer bu ffer space ever throttle the sender? Jawab : Windowz size hubungan nya dengan buffer Cari paket syn,ack 29200 byte
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
9. Are there any retransmitted segments in the trace file? What did you check for (in the trace) in order to answer this question? Jawab : Tidak ada karena pada grafik yang ditunjukkan pada urutan waktu semua sequence nya meningkat
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
10. How much data does the receiver typically acknowledge in an ACK? Can you identify cases where the receiver is ACKing every other received segment (see Table 3.2 on page 247 in the text). Jawab : 114 frame dengan ukuran per frame yaitu 1360 byte
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A
Cara menghitung Throughput: Throughput
=
ℎ
169433
=
16.777
= 10099.1238 bytes/s atau 10099k 12. Use the Time-Sequence-Graph(Stevens) plotting tool to view the sequence number versus time plot of segments being sent from the client to the gaia.cs.umass.edu server. Can you identify where TCP’s slowstart phase begins and ends, and where congestion avoidance takes over? Comment on o n ways in which the measured data d ata differs from the idealized behavior of TCP that we’ve studied in the text.
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Puspa Ayu Anggraini/ 2103151007/ 2 D3 Teknik Informatika A