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zig-cross之字形十字

Agent Skill

zig-cross 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

2,043

周安装

86

GitHub Stars

80

下载量

716
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:zig-cross(之字形十字)
来源仓库:https://github.com/mohitmishra786/low-level-dev-skills
仓库路径:skills/zig-cross
安装命令:
npx skills add https://github.com/mohitmishra786/low-level-dev-skills --skill zig-cross
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/mohitmishra786/low-level-dev-skills --skill zig-cross

简介

zig-cross 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。
  • 适用于开发类任务,支持多宿主环境集成。
  • zig-cross 属于开发类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Zig Cross-Compilation

Purpose

Guide agents through Zig's built-in cross-compilation: target triple selection, CPU feature targeting, zig cc for cross-compiling C projects, embedded bare-metal targets, and WASM output — all without requiring a system cross-toolchain.

Triggers

  • "How do I cross-compile a Zig program for ARM?"
  • "How do I build Zig for a different OS?"
  • "How do I use Zig to cross-compile C code for another platform?"
  • "How do I build Zig for embedded/bare-metal?"
  • "How do I target WebAssembly with Zig?"
  • "What Zig target triple do I use for Raspberry Pi?"

Workflow

1. Zig's native cross-compilation

Zig has cross-compilation built in — no cross-toolchain, no Docker, no sysroot needed for pure Zig code:

# List all supported targets
zig targets | python3 -c "import sys,json; d=json.load(sys.stdin); [print(t) for t in d['libc']]"

# Build for a specific target
zig build-exe src/main.zig -target aarch64-linux-gnu -O ReleaseFast

# With build system (pass target as option)
zig build -Dtarget=aarch64-linux-gnu -Doptimize=ReleaseFast

# Cross-compile for Windows from Linux/macOS
zig build-exe src/main.zig -target x86_64-windows-gnu

# Cross-compile for macOS from Linux (requires macOS SDK)
zig build-exe src/main.zig -target aarch64-macos-none

2. Common target triples

Target triplePlatform
x86_64-linux-gnuLinux x86-64 (glibc)
x86_64-linux-muslLinux x86-64 (musl, static)
aarch64-linux-gnuARM64 Linux (Pi 4, AWS Graviton)
aarch64-linux-muslARM64 Linux static
armv7-linux-gnueabihfARM 32-bit Linux (Pi 2/3)
x86_64-windows-gnuWindows x86-64
aarch64-macos-nonemacOS Apple Silicon
x86_64-macos-nonemacOS Intel
wasm32-freestandingWASM (browser, no OS)
wasm32-wasiWASM with WASI
thumbv7m-freestanding-eabiCortex-M3 bare metal
thumbv7em-freestanding-eabihfCortex-M4/M7 with FPU
riscv32-freestandingRISC-V 32-bit bare metal

3. CPU feature targeting

# Native CPU (auto-detect, only for native builds)
zig build-exe src/main.zig -mcpu native

# Baseline for architecture (most compatible)
zig build-exe src/main.zig -target x86_64-linux-gnu -mcpu baseline

# x86-64 with AVX2
zig build-exe src/main.zig -target x86_64-linux-gnu -mcpu x86_64+avx2+bmi2

# Raspberry Pi 4 (Cortex-A72)
zig build-exe src/main.zig -target aarch64-linux-gnu -mcpu cortex_a72

# Cortex-M4 with FPU
zig build-exe src/main.zig \
    -target thumbv7em-freestanding-eabihf \
    -mcpu cortex_m4+vfp4

# List CPU features for a target
zig targets | python3 -c "
import sys,json
d=json.load(sys.stdin)
for c in d['cpus']:
    if 'cortex' in c['name']:
        print(c['name'])
"

4. zig cc for C cross-compilation

zig cc cross-compiles C without a system cross-toolchain:

# Cross-compile C for ARM64 Linux
zig cc -target aarch64-linux-gnu -O2 -o myapp-arm64 main.c

# Cross-compile C for Windows
zig cc -target x86_64-windows-gnu main.c -o myapp.exe

# Cross-compile C with static musl linking
zig cc -target x86_64-linux-musl -static main.c -o myapp-static

# Use in Makefile for all platforms
CC_LINUX_AMD64 = zig cc -target x86_64-linux-gnu
CC_LINUX_ARM64 = zig cc -target aarch64-linux-gnu
CC_WINDOWS     = zig cc -target x86_64-windows-gnu

5. Build system cross-compilation

// build.zig — cross-build all targets
pub fn build(b: *std.Build) void {
    const targets = [_]std.Target.Query{
        .{ .cpu_arch = .x86_64, .os_tag = .linux, .abi = .gnu },
        .{ .cpu_arch = .aarch64, .os_tag = .linux, .abi = .gnu },
        .{ .cpu_arch = .x86_64, .os_tag = .windows, .abi = .gnu },
        .{ .cpu_arch = .aarch64, .os_tag = .macos },
    };

    for (targets) |t| {
        const target = b.resolveTargetQuery(t);
        const exe = b.addExecutable(.{
            .name = b.fmt("myapp-{s}", .{@tagName(t.cpu_arch.?)}),
            .root_source_file = b.path("src/main.zig"),
            .target = target,
            .optimize = .ReleaseFast,
        });
        b.installArtifact(exe);
    }
}
# Build all targets
zig build
# Creates: zig-out/bin/myapp-x86_64, myapp-aarch64, myapp-x86_64.exe, myapp-aarch64

6. Embedded (bare-metal) targets

# Cortex-M4 with FPU (STM32F4xx)
zig build-exe src/main.zig \
    -target thumbv7em-freestanding-eabihf \
    -mcpu cortex_m4+vfp4 \
    -O ReleaseSmall \
    --script linker.ld
// src/main.zig — bare metal entry point
const std = @import("std");

// Custom panic handler for embedded (no OS)
pub fn panic(msg: []const u8, _: ?*std.builtin.StackTrace, _: ?usize) noreturn {
    // Toggle LED or halt
    while (true) {}
}

// Entry point (matches linker script)
export fn _start() void {
    main() catch |err| {
        _ = err;
        while (true) {}
    };
}

fn main() !void {
    // Hardware initialization...
}

7. WebAssembly

# WASM freestanding (browser)
zig build-exe src/main.zig \
    -target wasm32-freestanding \
    -O ReleaseSmall \
    --export=init \
    --export=update \
    -fno-entry

# WASM WASI (wasmtime, wasmer)
zig build-exe src/main.zig \
    -target wasm32-wasi \
    -O ReleaseSafe
wasmtime myapp.wasm

# Optimize WASM size
wasm-opt -Oz myapp.wasm -o myapp.opt.wasm

For target triple reference and embedded linker script setup, see references/zig-target-triples.md.

Related skills

  • Use skills/zig/zig-compiler for single-file compilation flags
  • Use skills/zig/zig-build-system for multi-target build.zig configuration
  • Use skills/compilers/cross-gcc for system cross-toolchain setup when needed
  • Use skills/rust/rust-cross for Rust's cross-compilation approach comparison

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

35.89%
按下载量换算257

Claude

31.49%
按下载量换算225

Cursor

19.4%
按下载量换算139

Gemini CLI

10.59%
按下载量换算76

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

通过

权限和风险

操作浏览器

该 Skill 可能涉及浏览器控制能力,使用时可能读取或操作网页内容,需要在受控环境中确认权限边界。

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。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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