
PCI Compliance
FreeSecure payment processing with PCI DSS standards.
Free · Opens the source repo
What PCI Compliance does
The PCI Compliance skill provides developers and designers with the necessary tools and guidelines to implement Payment Card Industry Data Security Standards (PCI DSS) for secure handling of payment card data. This skill is essential for anyone involved in building payment processing systems or handling credit card information. It covers the core requirements of PCI DSS, which include maintaining a secure network, protecting cardholder data, managing vulnerabilities, implementing strong access controls, and monitoring network security.
By utilizing this skill, you can ensure that your payment systems are compliant with industry standards, which is crucial for safeguarding sensitive customer information. The skill outlines the 12 core requirements of PCI DSS, such as installing firewalls, encrypting data transmissions, and maintaining a robust information security policy. Additionally, it provides practical coding examples for handling payment data securely, including tokenization and encryption methods that minimize the risk of data breaches.
This skill is particularly useful for developers who are tasked with conducting PCI compliance audits, implementing secure payment flows, or preparing for PCI DSS assessments. It also assists in reducing the scope of PCI compliance by promoting best practices in data handling. Whether you are a seasoned developer or a designer working on payment systems, this skill will enhance your understanding of PCI compliance and help you build secure applications.
When to use it
Use this skill when developing payment processing systems or when you need to implement secure measures for handling credit card information.
When not to use it
This skill is not suitable for applications that do not involve payment processing or handling of sensitive cardholder data.
What you can build with it
Building a Payment Processing System
Utilize this skill to ensure that your payment processing system meets PCI DSS standards, protecting sensitive customer data.
Conducting a PCI Compliance Audit
Leverage the guidelines provided in this skill to perform thorough PCI compliance audits and identify areas for improvement.
Implementing Tokenization in Payments
Use the coding examples in this skill to implement tokenization, ensuring that sensitive card data is never stored on your servers.
How to install PCI Compliance
View source1. Install with the skills CLI
npx skills add wshobson/agents/pci-compliance --agent claude-code2. Or install it manually
Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.
Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs
Inside SKILL.md
Written by wshobsonPCI Compliance
Master PCI DSS (Payment Card Industry Data Security Standard) compliance for secure payment processing and handling of cardholder data.
When to Use This Skill
- Building payment processing systems
- Handling credit card information
- Implementing secure payment flows
- Conducting PCI compliance audits
- Reducing PCI compliance scope
- Implementing tokenization and encryption
- Preparing for PCI DSS assessments
PCI DSS Requirements (12 Core Requirements)
Build and Maintain Secure Network
- Install and maintain firewall configuration
- Don't use vendor-supplied defaults for passwords
Protect Cardholder Data
- Protect stored cardholder data
- Encrypt transmission of cardholder data across public networks
Maintain Vulnerability Management
- Protect systems against malware
- Develop and maintain secure systems and applications
Implement Strong Access Control
- Restrict access to cardholder data by business need-to-know
- Identify and authenticate access to system components
- Restrict physical access to cardholder data
Monitor and Test Networks
- Track and monitor all access to network resources and cardholder data
- Regularly test security systems and processes
Maintain Information Security Policy
- Maintain a policy that addresses information security
Compliance Levels
Level 1: > 6 million transactions/year (annual ROC required) Level 2: 1-6 million transactions/year (annual SAQ) Level 3: 20,000-1 million e-commerce transactions/year Level 4: < 20,000 e-commerce or < 1 million total transactions
Data Minimization (Never Store)
# NEVER STORE THESE
PROHIBITED_DATA = {
'full_track_data': 'Magnetic stripe data',
'cvv': 'Card verification code/value',
'pin': 'PIN or PIN block'
}
# CAN STORE (if encrypted)
ALLOWED_DATA = {
'pan': 'Primary Account Number (card number)',
'cardholder_name': 'Name on card',
'expiration_date': 'Card expiration',
'service_code': 'Service code'
}
class PaymentData:
"""Safe payment data handling."""
def __init__(self):
self.prohibited_fields = ['cvv', 'cvv2', 'cvc', 'pin']
def sanitize_log(self, data):
"""Remove sensitive data from logs."""
sanitized = data.copy()
# Mask PAN
if 'card_number' in sanitized:
card = sanitized['card_number']
sanitized['card_number'] = f"{card[:6]}{'*' * (len(card) - 10)}{card[-4:]}"
# Remove prohibited data
for field in self.prohibited_fields:
sanitized.pop(field, None)
return sanitized
def validate_no_prohibited_storage(self, data):
"""Ensure no prohibited data is being stored."""
for field in self.prohibited_fields:
if field in data:
raise SecurityError(f"Attempting to store prohibited field: {field}")
Tokenization
Using Payment Processor Tokens
import stripe
class TokenizedPayment:
"""Handle payments using tokens (no card data on server)."""
@staticmethod
def create_payment_method_token(card_details):
"""Create token from card details (client-side only)."""
# THIS SHOULD ONLY BE DONE CLIENT-SIDE WITH STRIPE.JS
# NEVER send card details to your server
"""
// Frontend JavaScript
const stripe = Stripe('pk_...');
const {token, error} = await stripe.createToken({
card: {
number: '4242424242424242',
exp_month: 12,
exp_year: 2024,
cvc: '123'
}
});
// Send token.id to server (NOT card details)
"""
pass
@staticmethod
def charge_with_token(token_id, amount):
"""Charge using token (server-side)."""
# Your server only sees the token, never the card number
stripe.api_key = "sk_..."
charge = stripe.Charge.create(
amount=amount,
currency="usd",
source=token_id, # Token instead of card details
description="Payment"
)
return charge
@staticmethod
def store_payment_method(customer_id, payment_method_token):
"""Store payment method as token for future use."""
stripe.Customer.modify(
customer_id,
source=payment_method_token
)
# Store only customer_id and payment_method_id in your database
# NEVER store actual card details
return {
'customer_id': customer_id,
'has_payment_method': True
# DO NOT store: card number, CVV, etc.
}
Custom Tokenization (Advanced)
import secrets
from cryptography.fernet import Fernet
class TokenVault:
"""Secure token vault for card data (if you must store it)."""
def __init__(self, encryption_key):
self.cipher = Fernet(encryption_key)
self.vault = {} # In production: use encrypted database
def tokenize(self, card_data):
"""Convert card data to token."""
# Generate secure random token
token = secrets.token_urlsafe(32)
# Encrypt card data
encrypted = self.cipher.encrypt(json.dumps(card_data).encode())
# Store token -> encrypted data mapping
self.vault[token] = encrypted
return token
def detokenize(self, token):
"""Retrieve card data from token."""
encrypted = self.vault.get(token)
if not encrypted:
raise ValueError("Token not found")
# Decrypt
decrypted = self.cipher.decrypt(encrypted)
return json.loads(decrypted.decode())
def delete_token(self, token):
"""Remove token from vault."""
self.vault.pop(token, None)
Encryption
Data at Rest
from cryptography.hazmat.primitives.ciphers.aead import AESGCM
import os
class EncryptedStorage:
"""Encrypt data at rest using AES-256-GCM."""
def __init__(self, encryption_key):
"""Initialize with 256-bit key."""
self.key = encryption_key # Must be 32 bytes
def encrypt(self, plaintext):
"""Encrypt data."""
# Generate random nonce
nonce = os.urandom(12)
# Encrypt
aesgcm = AESGCM(self.key)
ciphertext = aesgcm.encrypt(nonce, plaintext.encode(), None)
# Return nonce + ciphertext
return nonce + ciphertext
def decrypt(self, encrypted_data):
"""Decrypt data."""
# Extract nonce and ciphertext
nonce = encrypted_data[:12]
ciphertext = encrypted_data[12:]
# Decrypt
aesgcm = AESGCM(self.key)
plaintext = aesgcm.decrypt(nonce, ciphertext, None)
return plaintext.decode()
# Usage
storage = EncryptedStorage(os.urandom(32))
encrypted_pan = storage.encrypt("4242424242424242")
# Store encrypted_pan in database
Data in Transit
# Always use TLS 1.2 or higher
# Flask/Django example
app.config['SESSION_COOKIE_SECURE'] = True # HTTPS only
app.config['SESSION_COOKIE_HTTPONLY'] = True
app.config['SESSION_COOKIE_SAMESITE'] = 'Strict'
# Enforce HTTPS
from flask_talisman import Talisman
Talisman(app, force_https=True)
Additional patterns and templates
More detailed templates and worked examples live in references/details.md. Read that file for the full pattern library.
Frequently asked questions about PCI Compliance
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