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 Duration 35 hours

Course Outline

Overview of Network Analysis

  1. Essentials of the OSI reference model and TCP/IP networks.
  2. Troubleshooting tools and methodologies.
  3. Introduction to Wireshark.
  4. Understanding Wireshark: Portable versions and available resources.
  5. Wireshark GUI layout: Panes (Packet List, Details, Packet Bytes), Status Bar, and more.
  6. Architecture and processing flow: Identifying what cannot be seen with Wireshark and why.
  7. Supported protocols and dissectors.
  8. Preferences and configurations: Global vs. profile-specific settings.
  9. Handling time values.
  10. Lab exercises.

Traffic Capture

  1. Considerations before starting a capture.
  2. Promiscuous mode.
  3. Capture filters.
  4. Automatic stop criteria.
  5. Remote capture techniques.
  6. Lab exercises.

Traffic Analysis: Tools and Methodologies

  1. Establishing an analysis checklist.
  2. Leveraging features: name resolution, colorization, marking, ignoring, commenting, time references, and time shifts.
  3. Understanding the Expert System.
  4. Accessing options via Right-Click functionality.
  5. Interpretation using reference patterns; the impact of OS/driver Offload features.
  6. Saving analysis results.
  7. Lab exercises and case studies.


Traffic Analysis: Tools and Methodologies (Continued)

  1. Filtering traffic: Display filters (preparing "in-flight" filters, macros) and following streams.
  2. Quantitative analysis.
    1. Basic predefined descriptive statistics and summaries: Capture Properties, Protocol Hierarchy, Conversations, Endpoints, Packet Lengths, and IP-specific data.
    2. Protocol-specific analysis (e.g., TCP Stream Graphs).
    3. Advanced custom statistics using I/O Graph.
    4. Flow visualization techniques.

Traffic Analysis: Protocols

  1. Data-Link Layer: Ethernet II.
  2. Network Layer: IPv4.
  3. Transport Layer: TCP and UDP.
    1. Packet loss and recovery mechanisms.
    2. Handling Previous Segment Lost and Out-of-Order Segments events.
    3. Duplicate ACKs and Fast Retransmissions.
    4. TCP Retransmissions.
    5. Zero Window, Window changes, and other window-related issues.
  4. Application Layer: HTTP and FTP.
  5. Lab exercises and case studies.

Traffic Analysis: Common Issues in Network Performance Assessment

  1. Identifying causes of performance problems.
  2. Analyzing packet loss.
  3. Bandwidth issues and a layered approach to measurement.
  4. Latency: Assessing end-to-end latency and visualization methods.
  5. Lab exercises.
  6. (Wireshark) command-line tools:
    1. tshark (terminal-based Wireshark), dumpcap, rawshark, and tcpdump.
    2. editcap, mergecap, capinfos, and text2pcap.

Advanced Topics

  1. Advanced filters and grouped I/O statistics.
  2. Summary and Q&A session.

Requirements

1. Proficiency with the ISO OSI Reference Model (ITU-T X.200) and the TCP/IP protocol stack.

2. Foundational knowledge of Unix/Linux operating systems: navigating the UNIX terminal, understanding directory structures, listing files and directories, creating directories, changing directories, copying, moving, and deleting files/directories, managing redirection and pipes, and listing suspended or background processes.

Hardware & Software Requirements
1. Hardware: Minimum 16GB RAM and at least 60GB of free disk space.
2. Operating System: Ubuntu Linux is recommended. If using this OS, the following applications must be installed: ip, iperf, and ipcalc.
3. Software: The Wireshark application (https://www.wireshark.org/download.html).

All software should be updated to the latest stable available releases.

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