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Course Outline
Day 1
IT Security and Secure Coding
- The nature of security
- Key terms in IT security
- Defining risk
- Multiple dimensions of IT security
- Requirements across different application domains
- Distinction between IT security and secure coding
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From vulnerabilities to botnets and cybercrime
- The nature of security flaws
- Factors contributing to complexity
- From infected systems to targeted attacks
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Categorization of security flaws
- Landwehr’s taxonomy
- The Seven Pernicious Kingdoms
- OWASP Top Ten 2013
- Comparison of OWASP Top Ten: 2003 vs. 2013
Introduction to the Microsoft® Security Development Lifecycle (SDL)
- Session agenda
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Applications under threat...
- The evolution of cybercrime
- Focus of attacks on applications
- Predominance of vulnerabilities in smaller ISV applications
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The origins of Microsoft SDL...
- Microsoft’s security timeline...
- Applicability of SDL to specific applications
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Microsoft Security Development Lifecycle (SDL)
- Overview of the Microsoft Security Development Lifecycle (SDL)
- Pre-SDL Requirement: Security Training
- Phase One: Requirements
- Phase Two: Design
- Phase Three: Implementation
- Phase Four: Verification
- Phase Five: Release – Response Plan
- Phase Five: Release – Final Security Review
- Phase Five: Release – Archiving
- Post-SDL Requirement: Response
- SDL Process Guidance for LOB Applications
- SDL Guidance for Agile Methodologies
- The necessity of process improvement for secure software development
Secure Design Principles
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Attack surface
- Reducing the attack surface
- Attack surface – illustrative example
- Analysis of the attack surface
- Reducing the attack surface – examples
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Privacy
- Privacy considerations
- Understanding application behaviors and concerns
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Defense in depth
- SDL Core Principle: Defense in Depth
- Defense in depth – illustrative example
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Least privilege principle
- Least privilege – illustrative example
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Secure defaults
- Secure defaults – examples
Secure Implementation Principles
- Session agenda
- Microsoft Security Development Lifecycle (SDL)
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Fundamentals of buffer overflows
- Primary registers of Intel 80x86 processors
- Memory address layout
- Function calling mechanisms in C/C++ on x86
- Local variables and stack frames
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Stack overflows
- Buffer overflows on the stack
- Exercises – introduction
- Exercise BOFIntro
- Exercise BOFIntro – determining stack layout
- Exercise BOFIntro – crafting a simple exploit
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Input validation
- Concepts of input validation
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Integer-related issues
- Representation of negative integers
- Integer overflow
- Arithmetic overflow – predicting the output
- Exercise IntOverflow
- Evaluating Math.Abs(int.MinValue)
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Mitigating integer issues
- Strategies for mitigating integer issues
- Preventing arithmetic overflow – addition
- Preventing arithmetic overflow – multiplication
- Detecting overflow using the checked keyword in C#
- Exercise – Utilizing the checked keyword in C#
- Exceptions raised by overflows in C#
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Case study – Integer overflow in .NET
- A real-world integer overflow vulnerability
- Exploiting the integer overflow vulnerability
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Path traversal vulnerability
- Mitigating path traversal
Day 2
Secure Implementation Principles
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Injection attacks
- Common SQL Injection attack techniques
- Blind and time-based SQL injection
- Methods for SQL Injection protection
- Command injection
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Broken authentication – password management
- Exercise – Weaknesses in hashed passwords
- Password management and storage practices
- Hash algorithms designed for password storage
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Cross-Site Scripting (XSS)
- Cross-Site Scripting (XSS) fundamentals
- CSS injection
- Exploitation via other HTML tags
- Preventing XSS
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Lack of function-level access control
- Filtering file uploads
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Practical cryptography
- Ensuring confidentiality with symmetric cryptography
- Symmetric encryption algorithms
- Block ciphers – operational modes
- Hashing or message digesting
- Hash algorithms
- Message Authentication Code (MAC)
- Ensuring integrity and authenticity with symmetric keys
- Ensuring confidentiality with public-key encryption
- Best practice – securing private keys
- Common errors in password management
- Exercise – Hard-coded passwords
- Summary
Secure Verification Principles
- Functional testing vs. security testing
- Security vulnerabilities
- Prioritization strategies
- Security testing within the SDLC
- Steps in test planning (risk analysis)
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Scoping and information gathering
- Stakeholders
- Assets
- The attack surface
- Security objectives for testing
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Threat modeling
- Overview of threat modeling
- Attacker profiles
- Threat modeling using attack trees
- Threat modeling based on misuse/abuse cases
- Misuse/abuse cases – a simple web shop scenario
- STRIDE per element approach to threat modeling – MS SDL
- Identifying security objectives
- Diagramming – examples of DFD elements
- Data flow diagram – example
- Threat enumeration – MS SDL’s STRIDE and DFD elements
- Risk analysis – classifying threats
- The DREAD threat/risk ranking model
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Security testing techniques and tools
- General testing approaches
- Techniques for various SDLC stages
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Code review
- Code review for software security
- Taint analysis
- Heuristics
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Static code analysis
- Overview of static code analysis
- Exercise – Utilizing static code analysis tools
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Testing the implementation
- Manual run-time verification
- Manual vs. automated security testing
- Penetration testing
- Stress testing
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Fuzzing
- Automated security testing via fuzzing
- Challenges associated with fuzzing
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Web vulnerability scanners
- Exercise – Using a vulnerability scanner
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Environment checking and hardening
- Common Vulnerability Scoring System – CVSS
- Vulnerability scanners
- Public databases
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Case study – Forms Authentication Bypass
- NULL byte termination vulnerability
- Forms Authentication Bypass vulnerability in the code
- Exploiting the Forms Authentication Bypass
Knowledge Resources
- Secure coding resources – a starter kit
- Vulnerability databases
- .NET secure coding guidelines on MSDN
- .NET secure coding cheat sheets
- Recommended books – .NET and ASP.NET
14 Hours
Testimonials (3)
Experience sharing, it's teacher's know-how and valuable.
Carey Fan - Logitech
Course - C/C++ Secure Coding
the knowledge of the trainer was very high - he knew what he was talking about, and knew the answers to our questions
Adam - Fireup.PRO
Course - Advanced Java Security
The topic is current and I needed to be updated