* feat(#1432): capability source resolver + ledger (ADR-1244 Phase 3) ADR-1244 D3 + D4 — additive, testable-in-isolation modules (the /gsd:capability install command + consent gate are Phase 4). NEW modules only; not yet wired into bin/install.js. - src/capability-source.cts → resolveCapabilitySource(spec, opts): one seam, one adapter per source kind — local (fs copy), git (execGit clone+checkout, https/ssh/ git transports only), npm (execNpm pack --ignore-scripts + tar, NEVER npm install), tarball (https download + sha512 integrity-before-extraction + tar), registry (stub). SECURITY: install never executes capability code (copy/extract only, --ignore-scripts); integrity verified before staging; symlink members rejected at interior, source-root, AND tar-member (verbose-listing) layers; tar-slip member paths rejected pre-extraction; npm specs with shell metacharacters (incl %) rejected (execNpm uses a Windows shell); git ext::/file:// transports + leading-dash/metachar refs rejected; atomic staging (.staging→rename, restore-on-failure); full Phase 1/2 validator suite + engines.gsd pre-check on the fetched manifest. Test seam _setCapabilitySourceHttpGet. - src/capability-ledger.cts → per-runtime .gsd-capabilities.json install manifest: readLedger/writeLedger (atomic via platformWriteSync)/recordInstall (idempotent, prototype-pollution-guarded)/removeEntry/reconcile (orphan report, hardened against hostile/non-string/'..' files[] members — never throws, never oracles outside runtimeDir). - 48 new tests (34 source incl. the full security matrix, 14 ledger). Two Codex adversarial rounds; all 12 findings fixed + regression-tested. - .gitignore + eslint.config.mjs: built capability-source/ledger.cjs git+eslint-ignored (ADR-457 #551 migration coverage); CONTEXT glossary + INVENTORY rows + manifest regen. Closes #1432 Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> * docs(#1432): add changeset for capability source resolver + ledger Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 <noreply@anthropic.com>
GSD Core
Git. Ship. Done.
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A light-weight meta-prompting, context engineering, and spec-driven development system for Claude Code, OpenCode, Gemini CLI, Kimi CLI, Kilo, Codex, Copilot, Cursor, Windsurf, and more.
What is GSD Core
GSD Core is a context-engineering and spec-driven development framework that drives AI coding agents (Claude Code, Codex, Gemini CLI, Kimi CLI, Copilot, Cursor, and more) through a disciplined phase loop. It solves context rot — the quality degradation that accumulates as an AI fills its context window — by running all heavy research, planning, and execution work in fresh-context subagents while keeping your main session lean.
How it works
Each milestone repeats the same five-step loop, one phase at a time:
- Discuss — capture implementation decisions before anything is planned
- Plan — research, decompose, and verify the plan fits a fresh context window
- Execute — run plans in parallel waves; each executor starts with a clean 200k-token context
- Verify — walk through what was built; diagnose and fix before declaring done
- Ship — create the PR, archive the phase, repeat for the next one
Quickstart
npx @opengsd/gsd-core@latest
The installer prompts for your runtime (Claude Code, OpenCode, Gemini CLI, Kimi CLI, Kilo, Codex, Copilot, Cursor, Windsurf, and more) and whether to install globally or locally. The installer is required for cross-runtime compatibility — do not copy files from agents/ or commands/ directly.
On another runtime or without Node.js? See Install on your runtime.
Once installed, start your first project:
/gsd-new-project
New here? Follow Your first project for a guided walkthrough from install to first shipped phase.
Documentation
Tutorials — learning by doing:
How-to guides — task-focused recipes:
Reference — authoritative facts:
Explanation — concepts and design decisions:
Full index: docs/README.md. Other languages: 日本語 · 한국어 · Português · 简体中文.
Why it works
Most AI-coding setups fail at scale because context bloat silently degrades output quality, there is no shared memory between sessions, and nothing verifies that code actually works. GSD Core solves all three: heavy work runs in fresh subagents, structured artifacts like STATE.md and CONTEXT.md survive session boundaries, and the verify step walks through what was built and generates fix plans before a phase is declared done. See docs/explanation/context-engineering.md for the full reasoning.
Troubleshooting? See docs/how-to/recover-and-troubleshoot.md.
Community
| Project | Platform |
|---|---|
| gsd-opencode | Original OpenCode port |
| Discord | Community support |
Star History
License
MIT License. See LICENSE for details.
Claude Code is powerful. GSD Core makes it reliable.