Memory Safety Patterns
SkillDocs & knowledgeLets your agent write memory-safe code in Rust, C++, and C using ownership, RAII, and smart pointers.
Instructions available. Your AI can read the instructions. Execution depends on the setup they require.
Account requirements not reviewed. Check the skill instructions before use; ahel provides instructions and does not run this skill.
Add ahel to your AI once: Claude, ChatGPT, Cursor, Claude Code or Codex. Then ask it to use this.
Then ask your AI: use the Memory Safety Patterns skill
About this skill
Implement memory-safe programming with RAII, ownership, smart pointers, and resource management across Rust, C++, and C. Use when writing safe systems code, managing resources, or preventing memory bugs.
What this skill tells your AI
The instructions your AI receives, as published by wshobson/agents in plugins/systems-programming/skills/memory-safety-patterns/SKILL.md and read by ahel’s review.
Cross-language patterns for memory-safe programming including RAII, ownership, smart pointers, and resource management.
When to Use This Skill
- Writing memory-safe systems code
- Managing resources (files, sockets, memory)
- Preventing use-after-free and leaks
- Implementing RAII patterns
- Choosing between languages for safety
- Debugging memory issues
Core Concepts
1. Memory Bug Categories
| Bug Type | Description | Prevention |
|---|---|---|
| Use-after-free | Access freed memory | Ownership, RAII |
| Double-free | Free same memory twice | Smart pointers |
| Memory leak | Never free memory | RAII, GC |
| Buffer overflow | Write past buffer end | Bounds checking |
| Dangling pointer | Pointer to freed memory | Lifetime tracking |
| Data race | Concurrent unsynchronized access | Ownership, Sync |
2. Safety Spectrum
Manual (C) → Smart Pointers (C++) → Ownership (Rust) → GC (Go, Java)
Less safe More safe
More control Less control
Detailed patterns and worked examples
Detailed pattern documentation lives in references/details.md. Read that file when the navigation tier above is insufficient.
Best Practices
Do's
- Prefer RAII - Tie resource lifetime to scope
- Use smart pointers - Avoid raw pointers in C++
- Understand ownership - Know who owns what
- Check bounds - Use safe access methods
- Use tools - AddressSanitizer, Valgrind, Miri
Don'ts
- Don't use raw pointers - Unless interfacing with C
- Don't return local references - Dangling pointer
- Don't ignore compiler warnings - They catch bugs
- Don't use
unsafecarelessly - In Rust, minimize it - Don't assume thread safety - Be explicit
Debugging Tools
# AddressSanitizer (Clang/GCC)
clang++ -fsanitize=address -g source.cpp
# Valgrind
valgrind --leak-check=full ./program
# Rust Miri (undefined behavior detector)
cargo +nightly miri run
# ThreadSanitizer
clang++ -fsanitize=thread -g source.cpp
Signals
- GitHub stars
- 40k
- Forks
- 4k
- Last commit
- Sep 2026
Others that do the same job
Advanced
- Item type
- skill
- Key
memory-safety-patterns-wshobson- Source
- github.com/wshobson/agents
More in Docs & knowledge
Skill · mattpocock
More in Docs & knowledgecanvas-design
Skill · anthropics
More in Docs & knowledgedoc-coauthoring
Skill · anthropics
More in Docs & knowledgewriting-for-agents
Skill · mattpocock
More in Docs & knowledgespec-driven-development
Skill · addyosmani
More in Docs & knowledgedefuddle
Skill · kepano
More in Docs & knowledge