external/anthropic-cybersecurity-skills/skills/performing-deception-technology-deployment/SKILL.md
Deploys deception technology including honeypots, honeytokens, and decoy systems to detect attackers who have bypassed perimeter defenses, providing high-fidelity alerts with near-zero false positive rates. Use when SOC teams need early warning of lateral movement, credential abuse, or internal reconnaissance by deploying convincing traps across the network.
npx skillsauth add seikaikyo/dash-skills performing-deception-technology-deploymentInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
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Use this skill when:
Do not use as a replacement for fundamental security controls (patching, EDR, network segmentation) — deception is a detection layer, not a prevention mechanism.
Identify high-value network segments where attackers would traverse:
DECEPTION DEPLOYMENT MAP
━━━━━━━━━━━━━━━━━━━━━━━━
Segment Decoy Type Rationale
Server VLAN Fake file server Attackers enumerate SMB shares during recon
Database VLAN Fake DB server SQL scanning detected in past incidents
AD/DC Segment Honeytoken account Credential theft detection
Executive Subnet Fake workstation Targeted attacks pivot through exec systems
DMZ Honeypot web app External attacker detection
OT Network Fake PLC/HMI Industrial threat detection
Cloud (AWS VPC) Canary EC2 + S3 Cloud lateral movement detection
Configure Canary devices mimicking real infrastructure:
Windows File Server Canary:
{
"device_name": "FILESERVER-BK04",
"personality": "windows-server-2019",
"services": {
"smb": {
"enabled": true,
"shares": ["Finance_Backup", "HR_Archive", "IT_Docs"],
"files": [
{"name": "Q4_Revenue_2024.xlsx", "alert_on": "read"},
{"name": "employee_ssn_export.csv", "alert_on": "read"},
{"name": "admin_passwords.kdbx", "alert_on": "read"}
]
},
"rdp": {"enabled": true},
"http": {"enabled": false}
},
"network": {
"ip": "10.0.5.200",
"hostname": "FILESERVER-BK04",
"domain": "company.local"
},
"alert_webhook": "https://soar.company.com/api/webhook/canary"
}
Database Server Canary:
{
"device_name": "DB-ARCHIVE-02",
"personality": "linux-mysql",
"services": {
"mysql": {
"enabled": true,
"port": 3306,
"databases": ["customer_pii", "payment_archive"],
"alert_on_login_attempt": true
},
"ssh": {
"enabled": true,
"port": 22,
"alert_on_login_attempt": true
}
},
"network": {
"ip": "10.0.10.50",
"hostname": "db-archive-02"
}
}
Create fake privileged accounts that should never be used:
# Create honeytoken service account
New-ADUser -Name "svc_sql_backup" `
-SamAccountName "svc_sql_backup" `
-UserPrincipalName "[email protected]" `
-Description "SQL Backup Service Account - DO NOT DELETE" `
-AccountPassword (ConvertTo-SecureString "FakeP@ssw0rd2024!" -AsPlainText -Force) `
-Enabled $true `
-PasswordNeverExpires $true `
-CannotChangePassword $true
# Add to a group that looks attractive (but monitor for any use)
Add-ADGroupMember -Identity "Domain Admins" -Members "svc_sql_backup"
# Place cached credentials on decoy workstation
# (Mimikatz/credential dumping will find these)
cmdkey /add:fileserver-bk04.company.local /user:company\svc_sql_backup /pass:FakeP@ssw0rd2024!
Monitor honeytoken usage in Splunk:
index=wineventlog sourcetype="WinEventLog:Security"
(EventCode=4624 OR EventCode=4625 OR EventCode=4648 OR EventCode=4768 OR EventCode=4769)
TargetUserName="svc_sql_backup"
| eval alert_severity = "CRITICAL"
| eval alert_message = "HONEYTOKEN ACCOUNT USED — Likely credential theft detected"
| table _time, EventCode, src_ip, ComputerName, TargetUserName, Logon_Type, alert_message
Plant tracked documents that beacon when opened:
Canary Document (Word doc with tracking):
# Using Thinkst Canary API to create a canary token document
import requests
response = requests.post(
"https://YOURCOMPANY.canary.tools/api/v1/canarytoken/create",
data={
"auth_token": "YOUR_API_TOKEN",
"kind": "doc-msword",
"memo": "Finance backup folder canary document",
"flock_id": "flock:default"
}
)
token = response.json()
download_url = token["canarytoken"]["canarytoken_url"]
print(f"Download canary doc: {download_url}")
# Place this document in honeypot SMB shares and sensitive directories
AWS Canary Token (S3 access key):
# Create AWS canary token — alerts when access key is used
response = requests.post(
"https://YOURCOMPANY.canary.tools/api/v1/canarytoken/create",
data={
"auth_token": "YOUR_API_TOKEN",
"kind": "aws-id",
"memo": "Canary AWS key in developer laptop .aws/credentials"
}
)
aws_keys = response.json()
print(f"Access Key: {aws_keys['canarytoken']['access_key_id']}")
print(f"Secret Key: {aws_keys['canarytoken']['secret_access_key']}")
# Plant in .aws/credentials on developer workstations
All deception alerts are high-fidelity — any interaction is suspicious:
Splunk Alert for Canary Triggers:
index=canary sourcetype="canary:alerts"
| eval severity = "CRITICAL"
| eval confidence = "HIGH — Deception asset triggered, zero false positive expected"
| table _time, canary_name, alert_type, source_ip, service, details
| sendalert create_notable param.rule_title="Deception Alert — Canary Triggered"
param.severity="critical" param.drilldown_search="index=canary source_ip=$source_ip$"
SOAR Automated Response:
def canary_triggered(container):
"""Auto-response for deception alerts — high confidence, no approval needed"""
source_ip = container["artifacts"][0]["cef"]["sourceAddress"]
# Immediately isolate the source
phantom.act("quarantine device",
parameters=[{"ip_hostname": source_ip}],
assets=["crowdstrike_prod"],
name="isolate_attacker_host")
# Block at firewall
phantom.act("block ip",
parameters=[{"ip": source_ip, "direction": "both"}],
assets=["palo_alto_prod"],
name="block_attacker_ip")
# Create high-priority incident
phantom.act("create ticket",
parameters=[{
"short_description": f"DECEPTION ALERT: Canary triggered from {source_ip}",
"urgency": "1",
"impact": "1"
}],
assets=["servicenow_prod"])
phantom.set_severity(container, "critical")
Regularly update decoys to maintain believability:
| Term | Definition | |------|-----------| | Honeypot | Decoy system mimicking real infrastructure to attract and detect attackers in the network | | Honeytoken | Fake credential, file, or data record that triggers an alert when accessed or used | | Canary | Lightweight deception device or token that alerts on any interaction (Thinkst Canary platform) | | Breadcrumb | Planted artifact (cached credential, bookmark, config file) leading attackers to deception assets | | High-Fidelity Alert | Detection signal with near-zero false positive rate because no legitimate user should interact with deception assets | | Decoy Network | Set of interconnected honeypots simulating a realistic network segment to observe attacker TTPs |
DECEPTION ALERT — CRITICAL
━━━━━━━━━━━━━━━━━━━━━━━━━━
Time: 2024-03-15 14:23:07 UTC
Canary: FILESERVER-BK04 (10.0.5.200)
Service: SMB — File share "Finance_Backup" accessed
Source: 192.168.1.105 (WORKSTATION-042, Finance Dept)
User: company\jsmith
File Accessed: Q4_Revenue_2024.xlsx (canary document)
Alert Confidence: HIGH — No legitimate reason to access deception asset
False Positive Likelihood: <1%
Automated Response:
[DONE] WORKSTATION-042 isolated via CrowdStrike
[DONE] 192.168.1.105 blocked at firewall (bidirectional)
[DONE] Incident INC0012567 created (P1 — Critical)
[PENDING] Tier 2 investigation — determine if workstation compromised or insider threat
tools
Conduct comprehensive GDPR compliance assessments by evaluating data processing activities against EU Regulation 2016/679, including Article 30 records of processing, lawful basis validation, data subject rights implementation, Data Protection Impact Assessments (DPIAs) under Article 35, breach notification procedures, international transfer safeguards (SCCs, adequacy decisions), and technical/organizational measures under Article 32. Use when processing personal data of EU residents, preparing for supervisory authority audits, implementing privacy-by-design for new systems, scoping compliance gaps for M&A due diligence, assessing third-party processors, or responding to data subject access requests at scale. Incorporates 2026 guidance from ICO, EDPB, and post-Data (Use and Access) Act 2025 UK-GDPR considerations. Do not use for implementing specific Article 32 controls — use implementing-gdpr-data-protection-controls; or for DSAR automation — use implementing-gdpr-data-subject-access-request.
tools
Parse Windows forensic artifacts—$MFT/$J (MFTECmd), Prefetch (PECmd), registry hives (RECmd), shellbags, and Amcache—into normalized CSV/JSON with Eric Zimmerman's EZ Tools, then load results into Timeline Explorer for analysis. Use during DFIR/incident-response investigations, after triage collection (e.g. with KAPE), to establish program execution, file/folder access, and persistence evidence from acquired forensic images.
development
Build automated multi-turn adversarial attacks against conversational LLM targets using Microsoft PyRIT's RedTeamingOrchestrator, CrescendoOrchestrator (gradual escalation), and TreeOfAttacksWithPruningOrchestrator (adaptive branching), with scorer feedback loops and persisted conversation memory. Use when single-shot LLM scanning is insufficient and you need multi-turn, scorer-driven AI red-team campaigns against a chatbot or agent.
testing
Stand up MISP, enable and cache curated threat feeds (CIRCL, abuse.ch, Feodo Tracker), apply warninglists to suppress false positives, query indicators with PyMISP, and export attributes as auto-generated Suricata/Sigma/Wazuh detection rules. Use when maturing a MISP instance to actively drive detection, curating threat feeds with quality controls, or automating IOC-to-detection pipelines for the SIEM/IDS.