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 dsd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 | dsd |
| description | Derive strategies by working backward from success criteria to required actions. |
| output | {"format":"prose"} |
Input: $ARGUMENTS
Derive strategies by working backward from success criteria to required actions. Instead of brainstorming "what could work?" this procedure asks: "What MUST be done to satisfy the problem axioms?"
The output is strategies with explicit logical derivations showing WHY they are necessary, not just possible.
Convert the problem/goal into formal axioms:
Success criteria (what must be true when done):
Constraints (what cannot be violated):
Givens (facts about the current situation):
Quality check: Are the axioms complete? Ask: "If all success criteria are met and no constraints are violated, is the goal achieved?" If not, axioms are incomplete.
From each success criterion, work backward:
S1 requires: [what must be done to make S1 true]
which requires: [predecessor condition]
which requires: [predecessor condition]
...until you reach something you can DO
For each requirement chain:
From the requirement chains, map the choice points:
STRATEGY SPACE:
To achieve S1:
Path A: [requirement chain A] — NECESSARY
Path B: [requirement chain B] — SUFFICIENT (alternative exists)
Alternative B1: [variant]
Alternative B2: [variant]
Where chains are NECESSARY: no choice — must do it. Where chains have alternatives: these are strategy choice points.
For each choice point, eliminate options:
After elimination: what remains?
For each surviving strategy, construct the full proof:
STRATEGY PROOF:
Theorem: Strategy [X] achieves goal [G]
Proof:
1. Goal requires S1, S2, S3 [by definition]
2. S1 requires R1 [derived in Step 2]
3. R1 is achieved by action A1 [only viable option after elimination]
4. S2 requires R2 [derived in Step 2]
5. R2 is achieved by action A2 [chosen from alternatives because...]
6. S3 requires R3 [derived in Step 2]
7. R3 is achieved by action A3 [necessary — no alternative]
8. A1, A2, A3 do not violate C1, C2 [checked in Step 4]
9. Therefore: Strategy {A1, A2, A3} achieves {S1, S2, S3} ∎
Proof strength: [NECESSARY / SUFFICIENT / CONTINGENT]
Key assumption: [weakest link in the proof]
| Level | Criteria | Meaning |
|---|---|---|
| Proven necessary | All steps are necessary, all premises verified | Only possible strategy |
| Proven sufficient | Steps will achieve goal, premises verified | Will work, but alternatives exist |
| Contingent | Steps will achieve goal IF assumptions hold | Depends on untested assumptions |
| Plausible | Reasoning is sound but premises are uncertain | Probably works |
| Speculative | Significant gaps in reasoning | Might work |
DEDUCTIVE STRATEGY DISCOVERY:
Goal: [what]
Axioms: [N] success criteria, [N] constraints, [N] givens
Derivation:
[Key reasoning steps]
Strategy: [the derived approach]
Proof strength: [level]
Key assumption: [weakest link]
Necessary actions: [things that MUST be done regardless of strategy choice]
Choice points: [where alternatives exist]
Eliminated options: [what was ruled out and why]
Confidence: [level with justification]
What would upgrade confidence: [what evidence/test would help]