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compiler-development编译器开发

Agent Skill

compiler-development 用于处理 GitHub 仓库、Issue、Pull Request 和代码协作信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要围绕仓库状态、代码变更或协作事项进行整理时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

总安装

832

周安装

34

GitHub Stars

827

下载量

269
CodexClaudeCursorGemini CLI

安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:compiler-development(编译器开发)
来源仓库:https://github.com/gmh5225/awesome-llvm-security
仓库路径:skills/compiler-development
安装命令:
npx skills add https://github.com/gmh5225/awesome-llvm-security --skill compiler-development
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/gmh5225/awesome-llvm-security --skill compiler-development

简介

compiler-development 提供基于 LLVM 构建编译器和语言实现的完整知识体系。

  • 涵盖前端词法分析、语法解析到后端代码生成的全流程指导。
  • 适合学习编译器架构和实现自定义编程语言的开发者。
  • 需熟悉 C++ 和 LLVM IR,建议从简单语言示例开始实践。
  • 适用宿主包括 Codex、Claude、Cursor、Gemini CLI,接入前应确认版本、权限和运行环境要求。

SKILL.md

Compiler Development Skill

This skill provides comprehensive knowledge of building compilers and language implementations using the LLVM infrastructure.

Compiler Architecture Overview

Classic Three-Phase Design

Source Code → Frontend → Middle-End (Optimizer) → Backend → Machine Code
                ↓              ↓                      ↓
             AST/IR      LLVM IR Passes          Target Code

Frontend Development

Lexical Analysis

// Token types for a simple language
enum class TokenKind {
    Identifier,
    Number,
    String,
    Keyword,
    Operator,
    Punctuation,
    EndOfFile
};

struct Token {
    TokenKind kind;
    std::string value;
    SourceLocation location;
};

Parser Implementation

  • Recursive Descent: Easy to implement, good error messages
  • Operator Precedence Parsing: Efficient for expression parsing
  • LALR/LR: Use tools like Bison for complex grammars

AST Design

class Expr {
public:
    virtual ~Expr() = default;
    virtual llvm::Value* codegen() = 0;
};

class BinaryExpr : public Expr {
    std::unique_ptr<Expr> LHS, RHS;
    char Op;
public:
    llvm::Value* codegen() override {
        llvm::Value* L = LHS->codegen();
        llvm::Value* R = RHS->codegen();

        switch (Op) {
            case '+': return Builder.CreateFAdd(L, R, "addtmp");
            case '-': return Builder.CreateFSub(L, R, "subtmp");
            case '*': return Builder.CreateFMul(L, R, "multmp");
            case '/': return Builder.CreateFDiv(L, R, "divtmp");
        }
    }
};

LLVM IR Generation

Module and Context Setup

#include "llvm/IR/LLVMContext.h"
#include "llvm/IR/Module.h"
#include "llvm/IR/IRBuilder.h"

class CodeGen {
    std::unique_ptr<llvm::LLVMContext> Context;
    std::unique_ptr<llvm::Module> Module;
    std::unique_ptr<llvm::IRBuilder<>> Builder;

public:
    CodeGen() {
        Context = std::make_unique<llvm::LLVMContext>();
        Module = std::make_unique<llvm::Module>("my_module", *Context);
        Builder = std::make_unique<llvm::IRBuilder<>>(*Context);
    }
};

Function Generation

llvm::Function* createFunction(const std::string& name,
                                llvm::Type* returnType,
                                std::vector<llvm::Type*> params) {
    llvm::FunctionType* FT = llvm::FunctionType::get(returnType, params, false);
    llvm::Function* F = llvm::Function::Create(
        FT, llvm::Function::ExternalLinkage, name, Module.get());

    llvm::BasicBlock* BB = llvm::BasicBlock::Create(*Context, "entry", F);
    Builder->SetInsertPoint(BB);

    return F;
}

JIT Compilation

LLVM ORC JIT

#include "llvm/ExecutionEngine/Orc/LLJIT.h"

auto JIT = llvm::orc::LLJITBuilder().create();
if (!JIT) {
    handleError(JIT.takeError());
}

// Add module
(*JIT)->addIRModule(llvm::orc::ThreadSafeModule(
    std::move(Module), std::move(Context)));

// Look up symbol and execute
auto Sym = (*JIT)->lookup("main");
auto* MainFn = (int(*)())Sym->getAddress();
int result = MainFn();

Optimization Pass Pipeline

New Pass Manager (Recommended)

#include "llvm/Passes/PassBuilder.h"

void optimizeModule(llvm::Module& M) {
    llvm::PassBuilder PB;
    llvm::LoopAnalysisManager LAM;
    llvm::FunctionAnalysisManager FAM;
    llvm::CGSCCAnalysisManager CGAM;
    llvm::ModuleAnalysisManager MAM;

    PB.registerModuleAnalyses(MAM);
    PB.registerCGSCCAnalyses(CGAM);
    PB.registerFunctionAnalyses(FAM);
    PB.registerLoopAnalyses(LAM);
    PB.crossRegisterProxies(LAM, FAM, CGAM, MAM);

    llvm::ModulePassManager MPM = PB.buildPerModuleDefaultPipeline(
        llvm::OptimizationLevel::O2);
    MPM.run(M, MAM);
}

Custom Pass Implementation

struct MyPass : public llvm::PassInfoMixin<MyPass> {
    llvm::PreservedAnalyses run(llvm::Function& F,
                                 llvm::FunctionAnalysisManager& FAM) {
        for (auto& BB : F) {
            for (auto& I : BB) {
                // Transform instructions
            }
        }
        return llvm::PreservedAnalyses::none();
    }
};

Language Implementation Patterns

Memory-Safe Languages

  • Use LLVM's memory sanitizer hooks
  • Implement bounds checking with GEP introspection
  • Reference counting or garbage collection integration

Type Systems

  • Implement type inference during AST construction
  • Generate appropriate LLVM types (i32, float, struct, ptr)
  • Handle generic types via monomorphization or boxing

Error Handling

  • Generate exception handling via LLVM's landingpad/invoke
  • Implement Result/Option types as tagged unions
  • Use LLVM's personality functions for unwinding

Notable Language Implementations

Systems Languages

  • Rust: Complex borrow checker, trait system → LLVM
  • Zig: Comptime evaluation, safety features
  • Carbon: C++ interop, modern syntax

Scripting Languages

  • Julia: JIT-compiled scientific computing
  • Crystal: Ruby-like syntax, static typing
  • Nim: Python-like, multi-backend

Domain-Specific

  • Solidity: Ethereum smart contracts
  • MLIR: Multi-level IR for ML/AI workloads
  • Halide: Image processing DSL

Development Workflow

  1. Start Simple: Begin with Kaleidoscope tutorial
  2. Incremental Features: Add one language feature at a time
  3. Test Extensively: Unit tests for each compiler phase
  4. Use LLVM Tools: opt, llc, llvm-dis for debugging IR
  5. Profile and Optimize: Focus on common code patterns

Resources

Official Tutorials

  • LLVM Kaleidoscope: Building a language from scratch
  • Clang internals: Frontend implementation patterns
  • Writing an LLVM Backend: Target code generation

Community Projects

See DIY Compiler section in README.md for 100+ example implementations across different language paradigms.

Getting Detailed Information

When you need detailed and up-to-date resource links, tool lists, or project references, fetch the latest data from:

https://raw.githubusercontent.com/gmh5225/awesome-llvm-security/refs/heads/main/README.md

This README contains comprehensive curated lists of:

  • 100+ DIY compiler implementations (DIY Compiler section)
  • Toolchain configurations and IDE setup
  • Compiler development tutorials and books

适合场景

01

用户想查找某类 Agent Skill 时

02

需要根据任务场景推荐可安装能力包时

03

需要对比不同来源的安装命令和来源信息时

能力概览

能力 1

按任务关键词查找相关 Skills

能力 2

展示可复制的安装命令

能力 3

保留来源站点、仓库和原始说明,方便继续核验

能力 4

展示第三方安全扫描或审计结果

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

平台分布

Codex

37.16%
按下载量换算100

Claude

30.22%
按下载量换算81

Cursor

19.55%
按下载量换算53

Gemini CLI

11.02%
按下载量换算30

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

可疑

权限和风险

需要联网

该 Skill 可能需要联网访问来源站点、仓库或外部 API;具体网络访问范围需要结合源码和 README 复核。

安装前确认

本站仅展示第三方公开信息,不托管安装包,不提供自动安装或运行环境。安装前应自行审查源码、依赖和命令行为。来源安全扫描存在 warning/failed 结果,不能写成本站确认安全。当前只有一个来源,正式发布前建议补源仓库或其他目录站核验。

来源信息

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