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Source channel @lambdaexpression · Post #301 · 1月26日

DN42 access 本服务为那些无法轻松访问自身网络的用户以及希望体验 dn42 但又不想承担维护自有网络成本的用户提供 dn42 连接 默认情况下,地址从/96地址块中分配,如果您希望租用独立的/96前缀或更大的地址空间,请按照联系方式联系我 所有公开的PoP均已屏蔽来自中国境内的 IP 地址。如果您确实需要dn42 access,请与我联系并提供合理的理由 该服务由AS4242423377提供 - - - - - - - The service provides DN42 connectivity to members who cannot easily access their own networks, as well as to those who would like to explore DN42 without the overhead of maintaining their own network. By default, addresses are allocated from a /96 block. If you wish to lease a dedicated /96 prefix or a larger address space, please contact me using the methods provided in the contact information. All publicly accessible PoP are blocked for IPs originating from within China. DN42 access from within China is not publicly available. If you genuinely require access, please contact me and provide a valid justification. Hosted by AS4242423377. Policy 本服务需要花费时间和金钱才能运行,但为了您的利益,我们免费提供。使用本服务是一种特权,而非权利。您必须合理使用本服务,以确保其他用户也能继续享受同样的便利。任何滥用、误用或干扰服务或其他用户的行为都可能导致您的访问权限立即被暂停或终止。 滥用行为包括但不限于: - 过度使用资源 - 黑客攻击、病毒、木马等,或任何其他可能损害服务或对服务及其用户造成风险的干扰行为 - 传播可能导致民事或刑事责任的不良内容 - - - - - - - This service require real time and financial resources to operate, yet are provided free of charge for your benefit. Access to the services is a privilege, not a right. You must use the services responsibly and considerately to ensure that other users can continue to enjoy the same opportunities. Any misuse, abuse, or activities that disrupt the service or other users may result in immediate suspension or termination of access. Abuse could include, but is not limited to: - Excessive use of resources - Hacking, viruses, trojans etc or any other disruption that could harm or create risk to the services or its users - Distribution of objectional content that could create a civil or criminal liability PoP ## Toronto, Canada Prefix: fdb6:fc6a:e66c:724f:fad1:d2cf::/96 Zerotier: 4753cf475f65b0fb ## Los Angeles, USA coming soon #announcement#service

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infosecurity

@tg_infosec · Post #3377 · 2025/07/10 16:29

👨‍💻 HTTP Security Headers. • X-Content-Type-Options Header; • Reflected File Download (RFD); • CORS Deception; • Clickjacking; • XSS (Cross-Site Scripting); • SSL/TLS Stripping (MITM); • Cookie Hijacking; • CSRF (Cross-Site Request Forgery); • Information Disclosure Attacks; • Cache-Control Header; • Content-Disposition Header; • Cross-Origin Resource Policy (CORP); • Extra HTTP Header Injection; • Content-Encoding Header; • Access-Control-Allow-Origin Header; • X-Rate-Limit and X-Forwarded Headers; • X-Content-Type-Options Header; • XSS and CSRF Protection; • Content-Security-Policy (CSP). #devsecops

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infosecurity

@tg_infosec · Post #3323 · 2025/06/25 12:30

👨‍💻 File Upload Vulnerabilities. • Attack Scenario: Insecure File Content: - 2. Non-Compliant Code: Insecure File Upload Example; - Issues with Non-Compliant Code; - 3. Compliant Code: Secure File Upload Example; - Security Enhancements in Compliant Code; - 4. Reverse Access Control; • Magic Byte Exploits and Securing File Uploads: - Magic Bytes Overview; - Attack Scenario: Magic Byte Exploit; - Non-Compliant Code: Insecure File Upload Example; - Issues with Non-Compliant Code; - Compliant Code: Secure File Upload Example; - Security Enhancements in Compliant Code; - Reverse Access Control; - Process of Securing File Uploads; • Config Overwrite: - Attack Scenario: Configuration Overwrite and Null Byte Injection; - Non-Compliant Code: Insecure File Upload Example; - Issues with Non-Compliant Code; - Compliant Code: Secure File Upload Example; - Security Enhancements in Compliant Code; - Reverse Access and Configuration Overwrite; - Process of Securing File Uploads; • Insecure Handler: - Attack Scenario: Insecure Handler Exploit; - Non-Compliant Code: Insecure File Upload Example; - Issues with Non-Compliant Code; - Compliant Code: Secure File Upload Example; - Security Enhancements in Compliant Code; - Insecure Handler and Web Shell Exploit; - Process of Securing File Uploads. #devsecops

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infosecurity

@tg_infosec · Post #3269 · 2025/06/05 16:31

👨‍💻Attacking OpenStack. • Apply Restrictive File Permissions: - Incorrect Example; - Writing Files with Python; - Correct Example; - Secure File Creation in Python; - Verify Ownership and Group; • Avoid Dangerous File Parsing and Object Serialization Libraries; • Python Pipes to Avoid Shells; • Unvalidated URL redirect; • Validate Certificates on HTTPS Connections to Avoid Man-in-the-Middle Attacks; • Create, Use, and Remove Temporary Files Securely: - Python Temporary File Handling; • Restrict Path Access to Prevent Path Traversal; • Use Subprocess Securely; • Parameterize Database Queries: - SQLAlchemy; - MySQL; - PostgreSQL (Psycopg2); • Protect Sensitive Data in Config Files from Disclosure: - Consequences; - Example Log Entries; • Use Secure Channels for Transmitting Data: - Clear Example; - Less Obvious Example; • Escape User Input to Prevent XSS Attacks; • Resources. #devsecops

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infosecurity

@tg_infosec · Post #3261 · 2025/06/03 08:31

👨‍💻 Attacking CI/CD. • CI Debug Enabled; • Default permissions used on risky events; • Github Action from Unverified Creator used; • If condition always evaluates to true; • Injection with Arbitrary External Contributor Input; • Job uses all secrets; • Unverified Script Execution; • Arbitrary Code Execution from Untrusted Code Changes; • Unpinnable CI component used; • Pull Request Runs on Self-Hosted GitHub Actions Runner; • Mitigation Strategies; • Example GitHub Actions Workflow; • RCE via Git Clone; • Resources. #devsecops

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infosecurity

@tg_infosec · Post #3209 · 2025/05/16 12:32

👨‍💻 Attacking Policy. • Open Policy Agent — это open-source-инструмент контроля доступа, основанный на политиках, который создан в 2016 году и с тех пор стабильно развивается. Сейчас он входит в каталог дипломированных проектов Cloud Native Computing Foundation (CNCF). Его используют Netflix, Pinterest, TripAdvisor и другие компании. • В этой статье перечислены определенные векторы атак, которые могут быть вызваны неправильной конфигурацией Open Policy Agent: • Allowed Repositories; • Automount Service Account Token for Pod; • Block Endpoint Edit Default Role; • Block Services with type LoadBalancer; • Block NodePort; • Block Wildcard Ingress; • Disallow Interactive TTY Containers; • Step-by-Step Instructions; • Allow Privilege Escalation in Container; • Step-by-Step Instructions; • Privileged Container; • Read Only Root Filesystem; • Host Networking Ports; • App Armor; • SELinux V2; • Resources. #devsecops

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infosecurity

@tg_infosec · Post #3200 · 2025/05/13 08:30

👨‍💻 Attacking Secrets. • Secrets in private repositories; - Scenario: An Attacker Scanning a Private Repository for Secrets; - Example Commands and Codes; • User Credentials in CI Pipelines; - Scenario: An Adversary Exploiting CI Pipeline Credentials; - Example Commands and Codes; • Azure Key-Vault Authentication Abuse; - Azure’s Documentation Overview; • Practical Implementation: Azure’s Authentication Solution; - Steps for Compromising Azure Key Vault; • Azure Key Vault RBAC; • Ansible Vault Secret; - Generating a Hash for Cracking; - Cracking the Hash; - Decrypting the File; • Vault-Backend-Migrator; - Threats; • Kubernetes Sealed Secrets; • chamber; • Vault Secrets Operator; • Buttercup Weak Password; • teller manipulate files; • BlackBox; • Conclusion; - Attacker's Next Steps. #devsecops

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infosecurity

@tg_infosec · Post #3108 · 2025/04/10 08:00

🏰 DevSecOps Security Architecture. • Honeypot Network and Services in DevSecOps Security Architecture; • Flume log collection; • Kafka Knowledge System; • Zookeeper Knowledge System; • ElastAlert ES Alarm Tool; • Elastic Knowledge System; • Real IP address Detection; • Nginx configuration log format; • Container security tools; • osquery operating system detection and analysis; • jumpserver open source bastion server; • wazuh Host Intrusion Detection System; • Bro Network Security Monitoring; • GitHub Information Leak Monitoring; • Application layer denial of service attacks; • Slowloris; • Resources. #DevSecOps

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@tg_infosec · Post #3065 · 2025/03/26 16:34

👨‍💻 Attacking .NET • Code Access Security (CAS); • AllowPartiallyTrustedCaller attribute (APTCA); • Distributed Component Object Model (DCOM); • Timing vulnerabilities with CBC-mode symmetric; • Race Conditions; • App Secrets; • XML Processing; • Timing attacks; • ViewState is love; • Formatter Attacks; • TemplateParser; • ObjRefs. ➡️https://blog.devsecopsguides.com/p/attacking-net #DevSecOps

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infosecurity

@tg_infosec · Post #3047 · 2025/03/21 12:35

👩‍💻 Attacking Rust. - Cargo Dependency Confusing; - Unsafe Code Usage; - Integer Overflow; - Panics in Rust Code; - memory leaks; - Uninitialized memory; - Foreign Function Interface; - OOB Read plus; - race condition to escalate privileges; - TOCTAU race condition; - out-of-bounds array access; - References. #devsecops

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infosecurity

@tg_infosec · Post #2995 · 2025/03/04 12:33

👩‍💻 Attacking NodeJS Application. - Use flat Promise chains; - Set request size limits; - Do not block the event loop; - Perform input validation; - Perform output escaping; - Perform application activity logging; - Monitor the event loop; - Take precautions against brute-forcing; - Use Anti-CSRF tokens; - Prevent HTTP Parameter Pollution; - Do not use dangerous functions; - Use appropriate security headers; - Listen to errors when using EventEmitter; - Set cookie flags appropriately; - Avoid eval(), setTimeout(), and setInterval(); - Avoid new Function(); - Avoid code serialization in JavaScript; - Use a Node.js security linter; - References. #devsecops

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infosecurity

@tg_infosec · Post #2847 · 2025/01/14 08:30

👨‍💻 Attacking APIs \ Атаки на API. • Программный интерфейс приложений (API) - фундаментальный элемент инноваций в современном, движимом приложениями мире. API - важная составляющая современных мобильных, SaaS и веб приложений, используемая в клиентских, партнерских и внутренних приложениях от банковской сферы, сфер розничных продаж и логистики до интернета вещей, автономных автомобилей и умных городов. • По своей природе API раскрывают логику приложения и критичные данные, например, персональные данные, именно поэтому API все чаще становятся целью злоумышленников. Стремительные инновации невозможны без безопасных API. В этой статье рассматриваются общие векторы атак на API и приводятся примеры безопасной разработки. ➡️https://blog.devsecopsguides.com/attacking-apis #devsecops

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@tg_infosec · Post #3252 · 2025/05/30 12:30

👨‍💻 Attacking Pipeline. • DevOps resources compromise; • Control of common registry; • Direct PPE (d-PPE); • Indirect PPE (i-PPE); • Public PPE; • Changes in repository; • Inject in Artifacts; • User/Services credentials; • Typosquatting docker registry image; • Resources. #DevOps#DevSecOps

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