复制安装命令
用 Codex 或 Claude 安装复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它先审查 Skill 页面再帮你安装。
复制前请先查看来源、License 和安全提示。
Then, install the skills:
用 Codex 或 Claude 安装复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它先审查 Skill 页面再帮你安装。
复制前请先查看来源、License 和安全提示。
来源文件:README.md
/plugin marketplace add jeffallan/claude-skills
Then, install the skills:
/plugin install fullstack-dev-skills@jeffallan
For all installation methods and first steps, see the Quick Start Guide.
Full documentation: jeffallan.github.io/claude-skills
See Skills Guide for the full list, decision trees, and workflow combinations.
Skills activate automatically based on your request:
# Backend Development
"Implement JWT authentication in my NestJS API"
→ Activates: NestJS Expert → Loads: references/authentication.md
# Frontend Development
"Build a React component with Server Components"
→ Activates: React Expert → Loads: references/server-components.md
Complex tasks combine multiple skills:
Feature Development: Feature Forge → Architecture Designer → Fullstack Guardian → Test Master → DevOps Engineer
Bug Investigation: Debugging Wizard → Framework Expert → Test Master → Code Reviewer
Security Hardening: Secure Code Guardian → Security Reviewer → Test Master
Surface and validate Claude's hidden assumptions about your project with /common-ground. See the Common Ground Guide for full documentation.
The 9 workflow commands manage epics from discovery through retrospectives, integrating with Jira and Confluence. See Workflow Commands Reference for the full command reference and lifecycle diagrams.
[!TIP] Setup: Workflow commands require an Atlassian MCP server. See the Atlassian MCP Setup Guide.
/common-groundSee Contributing for guidelines on adding skills, writing references, and submitting pull requests.
See Changelog for full version history and release notes.
MIT License - See LICENSE file for details.
Built by jeffallan
Principal Consultant at Synergetic Solutions
Fullstack engineering, security engineering, compliance, and technical due diligence.
Built for Claude Code | 9 Workflows | 366 Reference Files | 66 Skills
name: cpp-pro
description: Writes, optimizes, and debugs C++ applications using modern C++20/23 features, template metaprogramming, and high-performance systems techniques. Use when building or refactoring C++ code requiring concepts, ranges, coroutines, SIMD optimization, or careful memory management — or when addressing performance bottlenecks, concurrency issues, and build system configuration with CMake.
license: MIT
metadata:
author: https://github.com/Jeffallan
version: "1.1.0"
domain: language
triggers: C++, C++20, C++23, modern C++, template metaprogramming, systems programming, performance optimization, SIMD, memory management, CMake
role: specialist
scope: implementation
output-format: code
related-skills: rust-engineer, embedded-systemsSenior C++ developer with deep expertise in modern C++20/23, systems programming, high-performance computing, and zero-overhead abstractions.
Load detailed guidance based on context:
| Topic | Reference | Load When |
|---|---|---|
| Modern C++ Features | references/modern-cpp.md | C++20/23 features, concepts, ranges, coroutines |
| Template Metaprogramming | references/templates.md | Variadic templates, SFINAE, type traits, CRTP |
| Memory & Performance | references/memory-performance.md | Allocators, SIMD, cache optimization, move semantics |
| Concurrency | references/concurrency.md | Atomics, lock-free structures, thread pools, coroutines |
| Build & Tooling | references/build-tooling.md | CMake, sanitizers, static analysis, testing |
auto with type deductionstd::unique_ptr and std::shared_ptrnew/delete (prefer smart pointers)using namespace std in headers// Define a reusable, self-documenting constraint
template<typename T>
concept Numeric = std::integral<T> || std::floating_point<T>;
template<Numeric T>
T clamp(T value, T lo, T hi) {
return std::clamp(value, lo, hi);
}
// Wraps a raw handle; no manual cleanup needed at call sites
class FileHandle {
public:
explicit FileHandle(const char* path)
: handle_(std::fopen(path, "r")) {
if (!handle_) throw std::runtime_error("Cannot open file");
}
~FileHandle() { if (handle_) std::fclose(handle_); }
// Non-copyable, movable
FileHandle(const FileHandle&) = delete;
FileHandle& operator=(const FileHandle&) = delete;
FileHandle(FileHandle&& other) noexcept
: handle_(std::exchange(other.handle_, nullptr)) {}
std::FILE* get() const noexcept { return handle_; }
private:
std::FILE* handle_;
};
// Prefer make_unique / make_shared; avoid raw new/delete
auto buffer = std::make_unique<std::array<std::byte, 4096>>();
// Shared ownership only when genuinely needed
auto config = std::make_shared<Config>(parseArgs(argc, argv));
When implementing C++ features, provide:
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