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m10-performancem10 性能

Agent Skill

m10-performance 用于查找、检索和筛选相关信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要根据关键词、任务场景或来源线索快速定位候选结果时使用。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

12,522

周安装

527

GitHub Stars

1,093

下载量

4,385
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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:m10-performance(m10 性能)
来源仓库:https://github.com/actionbook/rust-skills
仓库路径:skills/m10-performance
安装命令:
npx skills add https://github.com/actionbook/rust-skills --skill m10-performance
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/actionbook/rust-skills --skill m10-performance

简介

m10-performance 提供 Rust 性能优化的决策框架与实现建议,适用于需要系统性分析瓶颈和权衡优化收益的场景。

  • 适合在 Codex、Claude、Cursor、Gemini CLI 中处理性能敏感型代码时,快速定位热点并选择合适优化策略。
  • 通过测量、基准测试识别真实瓶颈,结合算法、数据结构、内存分配等维度提出具体优化路径。
  • 安装前需确认是否涉及系统命令执行或文件读写,注意权限范围及维护状态,避免误触发副作用。
  • 建议结合原始 README 和仓库内容进一步验证适用性与稳定性,确保优化方案符合项目实际需求。

SKILL.md

Performance Optimization

Layer 2: Design Choices

Core Question

What's the bottleneck, and is optimization worth it?

Before optimizing:

  • Have you measured? (Don't guess)
  • What's the acceptable performance?
  • Will optimization add complexity?

Performance Decision → Implementation

GoalDesign ChoiceImplementation
Reduce allocationsPre-allocate, reusewith_capacity, object pools
Improve cacheContiguous dataVec, SmallVec
ParallelizeData parallelismrayon, threads
Avoid copiesZero-copyReferences, Cow<T>
Reduce indirectionInline datasmallvec, arrays

Thinking Prompt

Before optimizing:

  1. Have you measured?

- Profile first → flamegraph, perf - Benchmark → criterion, cargo bench - Identify actual hotspots

  1. What's the priority?

- Algorithm (10x-1000x improvement) - Data structure (2x-10x) - Allocation (2x-5x) - Cache (1.5x-3x)

  1. What's the trade-off?

- Complexity vs speed - Memory vs CPU - Latency vs throughput


Trace Up ↑

To domain constraints (Layer 3):

"How fast does this need to be?"
    ↑ Ask: What's the performance SLA?
    ↑ Check: domain-* (latency requirements)
    ↑ Check: Business requirements (acceptable response time)
QuestionTrace ToAsk
Latency requirementsdomain-*What's acceptable response time?
Throughput needsdomain-*How many requests per second?
Memory constraintsdomain-*What's the memory budget?

Trace Down ↓

To implementation (Layer 1):

"Need to reduce allocations"
    ↓ m01-ownership: Use references, avoid clone
    ↓ m02-resource: Pre-allocate with_capacity

"Need to parallelize"
    ↓ m07-concurrency: Choose rayon or threads
    ↓ m07-concurrency: Consider async for I/O-bound

"Need cache efficiency"
    ↓ Data layout: Prefer Vec over HashMap when possible
    ↓ Access patterns: Sequential over random access

Quick Reference

ToolPurpose
cargo benchMicro-benchmarks
criterionStatistical benchmarks
perf / flamegraphCPU profiling
heaptrackAllocation tracking
valgrind / cachegrindCache analysis

Optimization Priority

1. Algorithm choice     (10x - 1000x)
2. Data structure       (2x - 10x)
3. Allocation reduction (2x - 5x)
4. Cache optimization   (1.5x - 3x)
5. SIMD/Parallelism     (2x - 8x)

Common Techniques

TechniqueWhenHow
Pre-allocationKnown sizeVec::with_capacity(n)
Avoid cloningHot pathsUse references or Cow<T>
Batch operationsMany small opsCollect then process
SmallVecUsually smallsmallvec::SmallVec<[T; N]>
Inline buffersFixed-size dataArrays over Vec

Common Mistakes

MistakeWhy WrongBetter
Optimize without profilingWrong targetProfile first
Benchmark in debug modeMeaninglessAlways --release
Use LinkedListCache unfriendlyVec or VecDeque
Hidden .clone()Unnecessary allocsUse references
Premature optimizationWasted effortMake it work first

Anti-Patterns

Anti-PatternWhy BadBetter
Clone to avoid lifetimesPerformance costProper ownership
Box everythingIndirection costStack when possible
HashMap for small setsOverheadVec with linear search
String concat in loopO(n^2)String::with_capacity or format!

Related Skills

WhenSee
Reducing clonesm01-ownership
Concurrency optionsm07-concurrency
Smart pointer choicem02-resource
Domain requirementsdomain-*

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

34.37%
按下载量换算1,507

Claude

31.29%
按下载量换算1,372

Cursor

18.06%
按下载量换算792

Gemini CLI

9.11%
按下载量换算399

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

通过

权限和风险

只读

该 Skill 主要提供规则、说明或参考内容,本身偏只读;真正读写文件、联网或执行命令仍取决于宿主 Agent 的任务。

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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