
Claude Skills by nuroctane
github.com/nuroctaneGuides zero trust implementation across AWS, Azure, and GCP per NIST SP 800-207 and BeyondCorp principles, covering identity-centric access, micro-segmentation, continuous verification, device trust assessment, and Identity-Aware Proxy deployment. Use when migrating from perimeter security to identity-centric access, removing VPN dependency, or designing micro-segmentation for multi-cloud workloads.
Configures Zero Trust Network Access using Zscaler Private Access (ZPA) to broker identity-based, context-aware connections between authenticated users and internal applications through the Zscaler Zero Trust Exchange, without placing users on the corporate network. Use when replacing traditional VPN architectures with ZTNA, or when brokering secure per-application access for remote and hybrid users via Zscaler.
Configures Zero Trust Network Access (ZTNA) in AWS, Azure, and GCP using identity-aware proxies, micro-segmentation, and continuous verification with conditional access policies, replacing VPN-based access with BeyondCorp-style architectures. Use when replacing VPN remote access with identity-based controls, limiting lateral movement via micro-segmentation, or exposing cloud workloads to authenticated users without public internet exposure.
Configures Google BeyondCorp Enterprise Identity-Aware Proxy (IAP) as the access enforcement point for web applications, defining Access Context Manager access levels from device trust and network attributes, and auditing the resulting policies for compliance. Use when eliminating perimeter/VPN trust for GCP resources or internal apps, or when setting up identity- and device-posture-based access controls on Google Cloud.
Installs and configures HashiCorp Boundary as a default-deny, identity-aware proxy for infrastructure access, including controller/worker setup, Vault-backed credential brokering, session recording, and OIDC/LDAP auth across an org/project scope hierarchy. Use when replacing VPN or direct network access with just-in-time, credential-less Boundary sessions, or standing up Boundary controllers and workers.
Integrates OWASP ZAP (Zed Attack Proxy) into GitHub Actions and GitLab CI pipelines, covering baseline, full, and API scan configuration against running applications, ZAP finding interpretation, scan policy tuning, and DAST quality gates. Use when testing running web apps or REST/GraphQL APIs for XSS, SQLi, CSRF, and auth/authz flaws, or when SAST alone is insufficient and runtime DAST is required for compliance or release gating.
Integrates CodeQL and Semgrep SAST scanning into GitHub Actions, covering scans on pull requests/pushes, rule tuning to cut false positives, SARIF upload to GitHub Advanced Security, and merge-blocking quality gates for high-severity findings. Use when adding automated code vulnerability detection to CI, enforcing consistent SAST org-wide, or producing SOC 2/PCI DSS/NIST SSDF compliance evidence.
'Investigates phishing email incidents from initial user report through
Forensically preserve memory and disk, collect ransom notes and encrypted file samples, and identify the ransomware variant using tools such as ID Ransomware, Volatility, and Chainsaw/Hayabusa to determine the initial access vector and recovery options. Use immediately after discovering ransomware encryption, when scoping the incident forensically, or when documenting evidence for law enforcement and insurance claims.
Build and run a third-party/vendor risk management (TPRM) program aligned to NIST SP 800-161 C-SCRM: inventory and tier vendors, issue SIG/CAIQ questionnaires, review SOC 2/ISO 27001 evidence, set contractual right-to-audit clauses, monitor vendors continuously, and offboard securely. Use when assessing a new vendor, standing up a vendor-risk program, tiering a portfolio, reviewing a SOC 2/CAIQ, or writing security terms into a contract.
Collect Active Directory data with SharpHound and Entra ID data with AzureHound, ingest into BloodHound Community Edition, and analyze on-prem, cloud, and hybrid attack paths using built-in queries and custom Cypher. Use during authorized red-team or penetration-test engagements to map privilege-escalation chains toward domain/tenant compromise.
Build a cryptographic inventory/CBOM with OpenSSL 3.5+, deploy hybrid post-quantum key exchange (X25519MLKEM768) on TLS/VPN/SSH endpoints, generate ML-KEM/ML-DSA keys and PQC/hybrid certificates, and prioritize migration by harvest-now-decrypt-later (HNDL) exposure per NIST SP 1800-38. Use when inventorying enterprise cryptography for quantum-readiness, enabling hybrid PQC key exchange, or issuing and verifying PQC/hybrid certificates.
Deploy OpenCTI (Filigran) via Docker Compose and use the pycti Python client to model threat actors, intrusion sets, campaigns, and indicators as a STIX 2.1 knowledge graph with relationships (uses, attributed-to, targets). Use when building a centralized threat-intel knowledge base, correlating IOCs from multiple feeds into one adversary graph, or producing STIX bundles for detection engineering.
'Monitors dark web forums, marketplaces, paste sites, and ransomware
Use NetExec (nxc) to validate credentials, enumerate SMB shares/users/policy, password-spray safely across lockout thresholds, execute commands, and dump SAM/LSA/NTDS credentials across SMB, WinRM, LDAP, MSSQL, SSH, and other protocol modules. Use during authorized internal penetration tests to find lateral-movement paths after obtaining credentials or hashes, or to conduct controlled password spraying and post-exploitation on in-scope hosts.
Deploy a Havoc C2 team server with Yaotl malleable profiles, generate evasive Demon agents using indirect syscalls and sleep obfuscation, and run post-exploitation and pivoting operations. Use during authorized, rules-of-engagement-bound red-team engagements for adversary emulation requiring a full C2 lifecycle (server setup, evasive implant generation, tasking, and lateral pivoting).
Stand up a Sliver C2 server and mTLS listeners, generate cross-platform implants and beacons, and run post-exploitation, pivoting, and BOF/.NET tooling via the Armory for adversary emulation. Use during authorized, rules-of-engagement-bound red-team engagements that need a full open-source C2 lifecycle spanning server setup, implant generation, and post-exploitation tradecraft.
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.
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.
Configure and execute access recertification campaigns in Saviynt Enterprise
Designs and runs access review and certification campaigns-scoping,
Use BloodHound and SharpHound (or AzureHound) to enumerate Active Directory
Enumerate and audit Active Directory forest trust relationships using
Conduct a focused Active Directory penetration test using BloodHound,
Detect and respond to Adversary-in-the-Middle (AiTM) phishing attacks
Use AI/LLM-based reasoning with Sherlock, theHarvester, and SpiderFoot
Perform systematic alert triage in Elastic Security SIEM—classifying,
'Uses Microsoft RESTler to perform stateful REST API fuzzing: compiles
'Tests API rate limiting for bypass vulnerabilities using Python (requests/aiohttp)
'Uses Postman to build structured API security test collections covering
'Simulates ARP spoofing/cache-poisoning attacks in authorized lab or
Build a multi-factor asset criticality scoring model—incorporating data
Configure and execute authenticated (credentialed) vulnerability scans using OpenVAS/Greenbone
Plan and run authenticated (credentialed) vulnerability scans with scanners such as
Deploy and operate the CAPEv2 malware sandbox (a Cuckoo derivative) to run samples in a
Run the agentless, open-source ScoutSuite tool (via pip install and the `scout` CLI)
'Simulate bandwidth throttling and network degradation attacks using tc,
'Analyze ELF binaries for memory-corruption vulnerabilities and build proof-of-concept
Detect and exploit blind Server-Side Request Forgery (SSRF) using out-of-band
Assess Bluetooth Low Energy (BLE) device security using Python's bleak asyncio
Monitor for brand impersonation attacks across domains, social media,
Run Cartography to sync AWS, GCP, or Azure resources into a Neo4j graph database,
Collect and analyze cloud forensic evidence using AWS CLI, Azure CLI, or gcloud
Investigate AWS account compromise by querying CloudTrail with boto3's LookupEvents
Execute cloud-native incident containment across AWS, Azure, and GCP using platform
Investigate AWS security incidents using Amazon Detective's behavior graphs,
'Run authorized AWS penetration tests with Pacu, the open-source AWS exploitation
Perform forensic acquisition of cloud storage services including Google
Audits container and pod configuration for escape-enabling misconfiguration using the Kubernetes Python client - privileged flags, dangerous capability grants, host path mounts, shared namespaces, and CVE-2022-0492 style cgroup abuse. Use when sweeping a cluster for workloads that could break out, producing a posture report, or checking configuration before enforcement is switched on. Keywords: privileged, hostPath, hostPID, capabilities, CVE-2022-0492, cgroup, kubernetes python client, postu...
'Harden container images by minimizing attack surface, stripping unnecessary