Mmcp.market

building-identity-federation-with-saml-azure-ad skill

by mukul975·mukul975/Anthropic-Cybersecurity-Skills·34k stars·Apache-2.0

Configure SAML 2.0 identity federation between on-premises Active Directory (via AD FS or a third-party IdP) and Microsoft Entra ID, covering federation models (AD FS, password hash sync, pass-through auth, third-party IdP) and the SAML authentication flow. Use when extending on-premises authentication authority to cloud resources or designing hybrid identity SSO architecture for Entra ID.

A100/100content scan

Is the building-identity-federation-with-saml-azure-ad skill safe?

Clean: nothing in its files matched our rules. We read 8 files in the folder on 2026-09-28.

No findings.

Install the building-identity-federation-with-saml-azure-ad skill

A skill is a folder. Copy it into your agent's skills folder and the agent loads it when the task matches its description.

git clone --depth 1 https://github.com/mukul975/Anthropic-Cybersecurity-Skills.git /tmp/Anthropic-Cybersecurity-Skills
mkdir -p ~/.claude/skills
cp -r /tmp/Anthropic-Cybersecurity-Skills/skills/building-identity-federation-with-saml-azure-ad ~/.claude/skills/building-identity-federation-with-saml-azure-ad
available in every project

In the Claude apps, zip the folder and upload it from the Skills settings. The folder on GitHub

The instructions your agent would load

SKILL.md as published, without the frontmatter. Read it on GitHub

Building Identity Federation with SAML Azure AD

Overview

Identity federation enables users authenticated by one identity provider to access resources managed by another without maintaining separate credentials. This skill covers establishing SAML 2.0 federation between an organization's on-premises Active Directory (via AD FS or third-party IdP) and Microsoft Entra ID (formerly Azure AD), as well as configuring federated SSO for third-party SaaS applications. Federation eliminates password synchronization concerns and keeps authentication authority on-premises while extending SSO to cloud resources.

When to Use

  • When deploying or configuring building identity federation with saml azure ad capabilities in your environment
  • When establishing security controls aligned to compliance requirements
  • When building or improving security architecture for this domain
  • When conducting security assessments that require this implementation

Prerequisites

  • On-premises Active Directory domain
  • AD FS 2019+ or third-party SAML IdP (Okta, Ping, etc.)
  • Microsoft Entra ID tenant (P1 or P2 license recommended)
  • Azure AD Connect (if using hybrid identity with password hash sync as backup)
  • Public TLS certificate for federation endpoint
  • DNS records for federation service name

Core Concepts

Federation Models

SAML Federation Architecture

User → Cloud App (SP)
   │
   └── Redirect to Azure AD
          │
          ├── Azure AD checks federated domain
          │
          └── Redirect to on-premises AD FS
                 │
                 ├── AD FS authenticates against Active Directory
                 │
                 ├── AD FS issues SAML token
                 │
                 └── Token posted back to Azure AD
                        │
                        ├── Azure AD validates federation trust
                        │
                        ├── Azure AD issues its own token
                        │
                        └── User receives access token for cloud app

Federation Trust Components

Workflow

Step 1: Prepare AD FS Infrastructure

# Install AD FS role
Install-WindowsFeature ADFS-Federation -IncludeManagementTools

# Configure AD FS farm
Install-AdfsFarm `
    -CertificateThumbprint $certThumbprint `
    -FederationServiceDisplayName "Corp Federation Service" `
    -FederationServiceName "fs.corp.example.com" `
    -ServiceAccountCredential $gmsaCredential

# Verify AD FS is operational
Get-AdfsProperties | Select-Object HostName, Identifier, FederationPassiveAddress

Step 2: Configure Azure AD Federated Domain

# Install Microsoft Graph PowerShell module
Install-Module Microsoft.Graph -Scope CurrentUser

# Connect to Microsoft Graph
Connect-MgGraph -Scopes "Domain.ReadWrite.All"

# Convert managed domain to federated
# Using AD FS federation metadata URL
$domainId = "corp.example.com"
$federationConfig = @{
    issuerUri = "http://fs.corp.example.com/adfs/services/trust"
    metadataExchangeUri = "https://fs.corp.example.com/adfs/services/trust/mex"
    passiveSignInUri = "https://fs.corp.example.com/adfs/ls/"
    signOutUri = "https://fs.corp.example.com/adfs/ls/?wa=wsignout1.0"
    signingCertificate = $base64Cert
    preferredAuthenticationProtocol = "saml"
}

# Apply federation settings to domain
New-MgDomainFederationConfiguration -DomainId $domainId -BodyParameter $federationConfig

Step 3: Configure AD FS Claims Rules

# Add Relying Party Trust for Azure AD
Add-AdfsRelyingPartyTrust `
    -Name "Microsoft Office 365 Identity Platform" `
    -MetadataUrl "https://nexus.microsoftonline-p.com/federationmetadata/2007-06/federationmetadata.xml"

# Configure claim rules
$rules = @"
@RuleTemplate = "LdapClaims"
@RuleName = "Extract AD Attributes"
c:[Type == "http://schemas.microsoft.com/ws/2008/06/identity/claims/windowsaccountname",
   Issuer == "AD AUTHORITY"]
=> issue(store = "Active Directory",
   types = ("http://schemas.xmlsoap.org/claims/UPN",
            "http://schemas.xmlsoap.org/ws/2005/05/identity/claims/emailaddress",
            "http://schemas.xmlsoap.org/ws/2005/05/identity/claims/givenname",
            "http://schemas.xmlsoap.org/ws/2005/05/identity/claims/surname"),
   query = ";userPrincipalName,mail,givenName,sn;{0}",
   param = c.Value);

@RuleTemplate = "PassThroughClaims"
@RuleName = "Pass Through UPN as NameID"
c:[Type == "http://schemas.xmlsoap.org/claims/UPN"]
=> issue(Type = "http://schemas.xmlsoap.org/ws/2005/05/identity/claims/nameidentifier",
   Issuer = c.Issuer, OriginalIssuer = c.OriginalIssuer,
   Value = c.Value,
   ValueType = c.ValueType,
   Properties["http://schem

Step 4: Configure Third-Party SaaS Federation

For each SaaS application that supports SAML SSO via Azure AD:

  1. Navigate to Microsoft Entra Admin Center > Enterprise Applications
  2. Add the application from the gallery (or create custom SAML)
  3. Configure Single Sign-On > SAML:
  • Identifier (Entity ID): Application's entity ID
  • Reply URL (ACS): Application's assertion consumer service URL
  • Sign-on URL: Application's login URL
  1. Map user attributes/claims:
  • NameID: user.userprincipalname (email format)
  • Additional claims as required by the application
  1. Download the Federation Metadata XML or certificate
  2. Configure the SaaS app with Azure AD's federation details

Step 5: Certificate Lifecycle Management

AD FS token-signing certificates expire and must be renewed:

# Check current certificate expiration
Get-AdfsCertificate -CertificateType Token-Signing | Select-Object Thumbprint, NotAfter

# AD FS supports auto-rollover (enabled by default)
Get-AdfsProperties | Select-Object AutoCertificateRollover

# If manual rotation is needed:
# 1. Add new certificate as secondary
Set-AdfsCertificate -CertificateType Token-Signing -Thumbprint $newThumbprint -IsPrimary $false
# 2. Update Azure AD with new certificate
# 3. Promote to primary
Set-AdfsCertificate -CertificateType Token-Signing -Thumbprint $newThumbprint -IsPrimary $true
# 4. Remove old certificate
Remove-AdfsCertificate -CertificateType Token-Signing -Thumbprint $oldThumbprint

Validation Checklist

  • [ ] AD FS farm operational with valid TLS and token-signing certificates
  • [ ] Azure AD domain configured as federated with correct metadata
  • [ ] Claims rules properly transform AD attributes to SAML assertions
  • [ ] Test user can authenticate through federation flow end-to-end
  • [ ] MFA enforced at AD FS or Azure AD conditional access level
  • [ ] Certificate auto-rollover enabled or manual rotation scheduled
  • [ ] Federation metadata endpoint publicly accessible
  • [ ] Smart lockout configured to prevent brute force
  • [ ] Extranet lockout policies configured on AD FS
  • [ ] Monitoring configured for AD FS health and certificate expiry
  • [ ] Disaster recovery: managed authentication fallback documented

References

  • Microsoft Entra Federation Documentation
  • AD FS Design Guide
  • Configure AD FS for Azure AD Federation
  • SAML 2.0 Authentication - OASIS

More skills from mukul975/Anthropic-Cybersecurity-Skills

  • Aabusing-dpapi-for-credential-accessExtract and decrypt Windows DPAPI-protected secrets (Credential Manager, browser logins/cookies, Wi-Fi credentials, KeePass keys) online or offline using SharpDPAPI, SharpChrome, Mimikatz, or Impacket's dpapi.py, including domain-wide decryption via the DPAPI backup key. Use during authorized red-team credential-access engagements after gaining a foothold or when triaging DPAPI blobs pulled from a host.
  • Aabusing-shadow-credentials-for-privescTake over Active Directory accounts by writing attacker-controlled public keys to msDS-KeyCredentialLink (Shadow Credentials) with pyWhisker, Whisker, or Certipy, then authenticate via PKINIT to recover the target's NT hash without a password reset. Use when BloodHound shows GenericWrite/GenericAll/AddKeyCredentialLink over a target, as a stealthier alternative to ForceChangePassword, during authorized red-team engagements.
  • Aachieving-cmmc-level-2-compliancePrepare a defense-contractor environment for CMMC Level 2 certification: scope CUI and FCI, implement the 110 NIST SP 800-171 Rev 2 security requirements across 14 families, compute the SPRS score with the DoD Assessment Methodology, manage a compliant POA&M, and ready the organization for a C3PAO assessment. Use when an organization handles Controlled Unclassified Information (CUI) under a DoD contract, when a contract carries DFARS clause 252.204-7012/7019/7020/7021, when preparing for or responding to a CMMC assessment, when computing or improving an SPRS score, when building a System Security Plan or POA&M for 800-171, or when scoping which systems are in the CUI boundary. Keywords: CMMC, CMMC Level 2, NIST 800-171, SP 800-171 Rev 2, CUI, FCI, SPRS, DFARS 7012, C3PAO, POA&M, System Security Plan, DoD Assessment Methodology, 110 controls, defense industrial base, DIB, FedRAMP equivalency.
  • Aacquiring-disk-image-with-dd-and-dcflddCreate forensically sound bit-for-bit disk images with dd or dcfldd on a Linux forensic workstation, preserving evidence integrity through hash verification (MD5/SHA) during acquisition. Use when imaging a suspect drive, USB device, or memory card for investigation, preserving volatile disk evidence during incident response, or producing a verified copy for legal or law-enforcement proceedings before any destructive analysis.
  • Aanalyzing-active-directory-acl-abuseDetect dangerous ACL misconfigurations in Active Directory using ldap3
  • Aanalyzing-android-malware-with-apktoolPerform static analysis of Android APK malware using apktool for resource decompilation, jadx for Java source recovery, and androguard for manifest inspection, dangerous permission-combination detection, and identification of obfuscated code, dynamic code loading, and reflection-based API calls. Use to statically triage a suspicious APK without executing it or to build mobile malware detection rules.
  • Danalyzing-api-gateway-access-logs'Parses API Gateway access logs (AWS API Gateway, Kong, Nginx) to detect
  • Aanalyzing-apt-group-with-mitre-navigatorQuery ATT&CK data with attackcti, mitreattack-python, and stix2, then build MITRE ATT&CK Navigator layers and multi-layer heatmap overlays mapping one or more APT groups' TTPs for detection-gap analysis. Use to compare threat-actor technique coverage, find gaps in detection engineering, or produce Navigator visualizations for threat-intel reporting.
  • Aanalyzing-azure-activity-logs-for-threats'Queries Azure Monitor activity logs and sign-in logs via azure-monitor-query
  • Aanalyzing-bootkit-and-rootkit-samples'Analyzes bootkit and advanced rootkit malware infecting the Master
  • Aanalyzing-browser-forensics-with-hindsightParse Chromium-based browser databases with Hindsight to extract and correlate browsing history, downloads, cookies, cached content, autofill data, saved passwords, and extensions from Chrome, Edge, Brave, Opera, and Vivaldi into a unified timeline (XLSX, JSON, or SQLite output). Use during incident response, insider-threat investigations, or criminal cases when you need to reconstruct a user's web activity from a browser profile.
  • Aanalyzing-campaign-attribution-evidenceSystematically evaluate cyber-campaign evidence to attribute an operation to a threat actor, using the Diamond Model and Analysis of Competing Hypotheses (ACH) to weigh infrastructure overlaps, TTP consistency, malware code similarity, and timing/language artifacts into confidence-weighted attribution assessments. Use when an incident investigation needs a defensible attribution confidence level.

All agent skills → · MCP servers