gsd-quick — for Claude Code gsd-quick, algomath, community, for Claude Code, ide skills, $gsd-quick, {{GSD_ARGS}}, AskUserQuestion, request_user_input, header

v1.0.0

이 스킬 정보

적합한 상황: Ideal for AI agents that need <codex skill adapter. 현지화된 요약: Skill Invocation This skill is invoked by mentioning $gsd-quick. This AI agent skill supports Claude Code, Cursor, and Windsurf workflows.

기능

<codex skill adapter
A. Skill Invocation
This skill is invoked by mentioning $gsd-quick.
Treat all user text after $gsd-quick as {{GSD ARGS}}.
If no arguments are present, treat {{GSD ARGS}} as empty.

# 핵심 주제

Ahmed-chouaya Ahmed-chouaya
[2]
[0]
업데이트: 4/18/2026

Skill Overview

Start with fit, limitations, and setup before diving into the repository.

적합한 상황: Ideal for AI agents that need <codex skill adapter. 현지화된 요약: Skill Invocation This skill is invoked by mentioning $gsd-quick. This AI agent skill supports Claude Code, Cursor, and Windsurf workflows.

이 스킬을 사용하는 이유

추천 설명: gsd-quick helps agents <codex skill adapter. Skill Invocation This skill is invoked by mentioning $gsd-quick. This AI agent skill supports Claude Code, Cursor, and Windsurf workflows.

최적의 용도

적합한 상황: Ideal for AI agents that need <codex skill adapter.

실행 가능한 사용 사례 for gsd-quick

사용 사례: Applying <codex skill adapter
사용 사례: Applying A. Skill Invocation
사용 사례: Applying This skill is invoked by mentioning $gsd-quick

! 보안 및 제한 사항

  • 제한 사항: Requires repository-specific context from the skill documentation
  • 제한 사항: Works best when the underlying tools and dependencies are already configured

About The Source

The section below comes from the upstream repository. Use it as supporting material alongside the fit, use-case, and installation summary on this page.

Labs 데모

Browser Sandbox Environment

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Boot Container Sandbox

FAQ 및 설치 단계

These questions and steps mirror the structured data on this page for better search understanding.

? 자주 묻는 질문

gsd-quick은 무엇인가요?

적합한 상황: Ideal for AI agents that need <codex skill adapter. 현지화된 요약: Skill Invocation This skill is invoked by mentioning $gsd-quick. This AI agent skill supports Claude Code, Cursor, and Windsurf workflows.

gsd-quick은 어떻게 설치하나요?

다음 명령을 실행하세요: npx killer-skills add Ahmed-chouaya/algomath. Cursor, Windsurf, VS Code, Claude Code와 19개 이상의 다른 IDE에서 동작합니다.

gsd-quick은 어디에 쓰이나요?

주요 활용 사례는 다음과 같습니다: 사용 사례: Applying <codex skill adapter, 사용 사례: Applying A. Skill Invocation, 사용 사례: Applying This skill is invoked by mentioning $gsd-quick.

gsd-quick 와 호환되는 IDE는 무엇인가요?

이 스킬은 Cursor, Windsurf, VS Code, Trae, Claude Code, OpenClaw, Aider, Codex, OpenCode, Goose, Cline, Roo Code, Kiro, Augment Code, Continue, GitHub Copilot, Sourcegraph Cody, and Amazon Q Developer 와 호환됩니다. 통합 설치에는 Killer-Skills CLI를 사용하세요.

gsd-quick에 제한 사항이 있나요?

제한 사항: Requires repository-specific context from the skill documentation. 제한 사항: Works best when the underlying tools and dependencies are already configured.

이 스킬 설치 방법

  1. 1. 터미널 열기

    프로젝트 디렉터리에서 터미널 또는 명령줄을 여세요.

  2. 2. 설치 명령 실행

    npx killer-skills add Ahmed-chouaya/algomath 를 실행하세요. CLI가 IDE 또는 에이전트를 자동으로 감지하고 스킬을 설정합니다.

  3. 3. 스킬 사용 시작

    스킬이 이제 활성화되었습니다. 현재 프로젝트에서 gsd-quick을 바로 사용할 수 있습니다.

! Source Notes

This page is still useful for installation and source reference. Before using it, compare the fit, limitations, and upstream repository notes above.

Upstream Repository Material

The section below comes from the upstream repository. Use it as supporting material alongside the fit, use-case, and installation summary on this page.

Upstream Source

gsd-quick

Skill Invocation This skill is invoked by mentioning $gsd-quick. This AI agent skill supports Claude Code, Cursor, and Windsurf workflows. <codex skill...

SKILL.md
Readonly
Upstream Repository Material
The section below comes from the upstream repository. Use it as supporting material alongside the fit, use-case, and installation summary on this page.
Upstream Source

<codex_skill_adapter>

A. Skill Invocation

  • This skill is invoked by mentioning $gsd-quick.
  • Treat all user text after $gsd-quick as {{GSD_ARGS}}.
  • If no arguments are present, treat {{GSD_ARGS}} as empty.

B. AskUserQuestion → request_user_input Mapping

GSD workflows use AskUserQuestion (Claude Code syntax). Translate to Codex request_user_input:

Parameter mapping:

  • headerheader
  • questionquestion
  • Options formatted as "Label" — description{label: "Label", description: "description"}
  • Generate id from header: lowercase, replace spaces with underscores

Batched calls:

  • AskUserQuestion([q1, q2]) → single request_user_input with multiple entries in questions[]

Multi-select workaround:

  • Codex has no multiSelect. Use sequential single-selects, or present a numbered freeform list asking the user to enter comma-separated numbers.

Execute mode fallback:

  • When request_user_input is rejected (Execute mode), present a plain-text numbered list and pick a reasonable default.

C. Task() → spawn_agent Mapping

GSD workflows use Task(...) (Claude Code syntax). Translate to Codex collaboration tools:

Direct mapping:

  • Task(subagent_type="X", prompt="Y")spawn_agent(agent_type="X", message="Y")
  • Task(model="...") → omit (Codex uses per-role config, not inline model selection)
  • fork_context: false by default — GSD agents load their own context via <files_to_read> blocks

Parallel fan-out:

  • Spawn multiple agents → collect agent IDs → wait(ids) for all to complete

Result parsing:

  • Look for structured markers in agent output: CHECKPOINT, PLAN COMPLETE, SUMMARY, etc.
  • close_agent(id) after collecting results from each agent </codex_skill_adapter>
<objective> Execute small, ad-hoc tasks with GSD guarantees (atomic commits, STATE.md tracking).

Quick mode is the same system with a shorter path:

  • Spawns gsd-planner (quick mode) + gsd-executor(s)
  • Quick tasks live in .planning/quick/ separate from planned phases
  • Updates STATE.md "Quick Tasks Completed" table (NOT ROADMAP.md)

Default: Skips research, discussion, plan-checker, verifier. Use when you know exactly what to do.

--discuss flag: Lightweight discussion phase before planning. Surfaces assumptions, clarifies gray areas, captures decisions in CONTEXT.md. Use when the task has ambiguity worth resolving upfront.

--full flag: Enables plan-checking (max 2 iterations) and post-execution verification. Use when you want quality guarantees without full milestone ceremony.

--research flag: Spawns a focused research agent before planning. Investigates implementation approaches, library options, and pitfalls for the task. Use when you're unsure of the best approach.

Flags are composable: --discuss --research --full gives discussion + research + plan-checking + verification. </objective>

<execution_context> @/home/milgraph/Projects/algo_framework/.codex/get-shit-done/workflows/quick.md </execution_context>

<context> {{GSD_ARGS}}

Context files are resolved inside the workflow (init quick) and delegated via <files_to_read> blocks. </context>

<process> Execute the quick workflow from @/home/milgraph/Projects/algo_framework/.codex/get-shit-done/workflows/quick.md end-to-end. Preserve all workflow gates (validation, task description, planning, execution, state updates, commits). </process>

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