用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
直接命令不会经过审查 Prompt;运行前请先检查来源。
npx skills add https://github.com/benjam3n/reasoningtool --skill op-order-procedure命令会保持在同一行。复制前请横向滚动并检查完整内容。
想先保存到本地?可下载 SkillsMP 当前能够提供的文件。
Route any input through a branching question tree to narrow down the optimal response strategy before writing. Two stages — PERCEIVE (classify input) then ACT (select response). Covers all prompt types.
Generate exhaustive guesses about user input using ALL search methods with coverage tracking. Guessing is SEARCH through possibility space. Tracks space created vs space covered to ensure comprehensive exploration.
Systematically evaluate and select from a set of guesses, options, or possibilities. Combines ARAW analysis with prioritization to determine which guesses are strong, weak, actionable, or eliminable.
基于 SOC 职业分类
正在显示 SKILL.md
| name | op - Order Procedure |
| description | Determine the correct execution order for a set of steps based on dependencies and constraints |
| output | {"format":"prose"} |
Input: $ARGUMENTS
Before executing, identify which interpretation matches the user's input:
Interpretation 1 — Sequence a plan: The user has a set of steps or tasks and needs to determine the correct execution order based on dependencies. Interpretation 2 — Find parallelism: The user has an ordered plan and wants to identify which steps can run simultaneously to reduce total time. Interpretation 3 — Optimize an existing sequence: The user already has a step order but suspects it is inefficient, and wants to reorder for speed, risk reduction, or resource efficiency.
If ambiguous, ask: "I can help with sequencing a plan, finding parallelism opportunities, or optimizing an existing sequence — which fits?" If clear from context, proceed with the matching interpretation.
Determine the correct execution order for a set of steps based on dependencies and constraints
Gather all steps and identify their dependency relationships:
Construct a directed graph representing dependencies:
Check for cycles and resolve them:
Perform topological sort to get valid ordering:
Group steps that can run simultaneously:
Find the longest dependency chain:
Optimize the sequence for efficiency:
Produce the final ordered output in requested format: