Files
msd-core/docs/installer-migrations.md
Tom Boucher 39673ae9ff fix(#3738): antigravity global skills/agents install to ~/.gemini/config (#3921)
* test(#3738): antigravity global skills/agents must resolve under ~/.gemini/config

Regression tests (RED first): --skills-root and gsd-tools query surfaces,
install-plan dest dirs, and converter skills-path rewrite.

* fix(#3738): antigravity global skills/agents install to ~/.gemini/config

Antigravity's machine-local discovery scans ~/.gemini/config/{skills,agents};
the configHome (~/.gemini/antigravity) is deprecated for artifacts. Declare the
ADR-1239 skills/agents 'home' override on the antigravity global layout — the
same mechanism codex uses (.agents) — and divert ~/.claude/skills/ references
in converted global content to ~/.gemini/config/skills/. configHome, settings,
probe/migration semantics, and the local .agents layout are unchanged.

* fix(#3738): retire deprecated configHome artifacts via installer migration 010

Next install converges an existing antigravity install: manifest-managed
skills/gsd-*/ and agents/gsd-*.md under the configHome (a location AGY does
not scan) are removed — modified files backed up first, unmanifested and
non-gsd entries preserved — and now-empty containers retired. Global scope
only; the local .agents surface is live. Docs + inventory updated.

* fix(#3738): converter sync in bin/install.js, harness emit-root coverage, migration baseline

- bin/install.js converter gains the same ~/.claude/skills → ~/.gemini/config/
  rewrite as src (ADR-1508 dual copy must stay in sync).
- Parity-manifest walk covers home-override emit roots (extraEmitRootsFor) so
  antigravity's emitted skills/agents stay differential-visible at their new
  install root; install-tree fixture regen confirms an unchanged key set.
- skills-from-commands rule declares the antigravity converter as a
  runtime-scoped transform; one ack fragment covers the identity-classed
  workflow whose antigravity copy embeds the old skills path.
- Migration 010 checksum baseline + home-override set doc updated; existing
  tests updated to the #3738 contract (global dest, golden parity via layout
  dest, integration expectations).

* fix(#3738): tolerate an absent extra emit root on baseline-side measurement

The base tree's installer predates the home override, so <HOME>/.gemini/config
does not exist there; walk() threw ENOENT and the in-job baseline build failed.
An absent extra root is the legitimate pre-override shape — skip it.

* fix(#3738): review findings — manifest agents root, bare skills-path rewrite, guard comment

- writeManifest resolves the agents-kind home override (_kindDestDirSafe), so
  the manifest records agents at their actual install root and drift detection
  keeps working (isolated review finding 1, major).
- Converter bare forms ~/.claude/skills and $HOME/.claude/skills (no trailing
  slash) divert to ~/.gemini/config/skills instead of falling through to the
  retired configHome path (finding 2).
- real-home-guard comment updated: antigravity's global agents kind is the
  first agents-kind home override (finding 3, doc-only).
- Regression tests for both behavioral findings.

* chore(#3738): changeset fragment (pr number backfilled after PR creation)

* chore(#3738): backfill changeset PR number (3921)

* fix(#3738): sandbox HOME in tests that install antigravity global artifacts

antigravity is the first home-override runtime in the golden-parity and
skills-wrapper suites (codex is not in their runtime lists), so those tests
never needed HOME sandboxing — the real-home guard now (correctly) refuses
their un-sandboxed global installs on CI, where HOME is the passwd home.

* fix(#3738): stop the K3 sequential-sandbox env leak; sandbox L2's home-override plans

K3's two back-to-back sandboxHome calls leave HOME pointing at the first
sandbox once the after-hooks restore (each call saves the env as it found
it, so the second saves the first's sandbox as 'original'). On the windows
matrix that leaked gsd-k3-qwen-* home into the L2 property, whose
antigravity/global run then (correctly) refused via the #3712 real-home
guard — antigravity is the runtime that made L2's plan escape into
os.homedir(). K3 now manages the env with a single restore; L2 sandboxes
HOME per run, mirroring L1.

* fix(#3738): L2 property's HOME sandbox must exist on disk

The #3712 guard's sandbox exemption fails closed when identify(effectiveHome)
is 'absent' — L2 never created its configDir, so on the windows matrix (tmpdir
under the real home) the antigravity/global run refused even with HOME
sandboxed. Create the per-run sandbox dir and clean it up.

---------

Co-authored-by: sim <sim@local>
2026-08-27 02:24:03 -04:00

37 KiB

Installer Migration Architecture

This document defines the migration layer for GSD installs and upgrades. It is for contributors who need to retire files, move install surfaces, rewrite runtime config, or preserve user data while changing how GSD is installed.

After reading this document, a contributor should be able to add a new installer migration without guessing which files are safe to remove or how to protect local user changes.

Problem

The installer already handles several upgrade behaviors:

  • replacing GSD-managed command, skill, agent, hook, and engine files
  • backing up locally modified managed files before replacement
  • preserving known user-owned artifacts
  • cleaning old hook files and hook registrations
  • rewriting runtime-specific configuration formats
  • rolling back some failed Codex installs

Those behaviors are currently distributed across install branches. That works for isolated fixes, but it makes feature retirement risky. A future change can remove a file from the package while leaving stale installed copies behind, or delete a user-created file because it happens to live inside a GSD-managed directory.

The migration layer exists to make upgrade behavior explicit, reviewed, and repeatable.

Design Goals

  1. Protect user data by default.
  2. Remove stale GSD-managed files when a feature is retired.
  3. Make destructive actions visible before they run.
  4. Record what happened so future installs do not re-run the same migration.
  5. Give each runtime the same safety model, even when the concrete files differ.
  6. Keep migration authoring small enough that contributors use it instead of adding another one-off cleanup block.

Non-Goals

  • This is not a general package manager.
  • This is not a database migration system.
  • This does not automatically infer every historical install layout.
  • This does not remove arbitrary user files.
  • This does not replace the existing install transforms in one step.

Terms

Managed file

A file that GSD installed and recorded in the install manifest. Managed files can be replaced automatically when unchanged. If changed locally, they must be backed up or merged.

User-owned file

A file created or maintained by a user workflow or by the user directly. These files must never be removed just because they sit under a GSD directory.

Unknown file

A file found under an install root that is not in the manifest and is not classified as user-owned. Unknown files are preserved unless a migration explicitly classifies them with evidence.

Migration

A versioned change set that can inspect the current install, produce a plan, and apply that plan after safety checks pass.

Plan

A list of proposed filesystem and config actions. A plan is safe to show to a user. It describes what will happen and why, without mutating disk.

Journal

A per-run record of applied actions and rollback data. It exists so failed installs can restore the pre-run state where possible.

State Files

The migration layer uses the existing file manifest and adds one install-state record.

File Manifest

gsd-file-manifest.json remains the ownership baseline. It records the installed GSD version, install mode, the runtime and scope that wrote it, and hashes for distribution-owned files.

{
  "manifestVersion": 2,
  "version": "1.9.2",
  "timestamp": "2026-08-10T00:00:00.000Z",
  "mode": "full",
  "runtime": "claude",
  "scope": "local",
  "files": {
    "gsd-core/VERSION": "sha256-hex…",
    "commands/gsd-plan-phase.md": "sha256-hex…"
  }
}
Field Meaning
manifestVersion Schema version of this document. Absent ⇒ version 1, a manifest written before #2872.
version The GSD package version that wrote the manifest — not the schema version. The two are separate fields on purpose.
timestamp ISO-8601 write time.
mode full or minimal.
runtime The runtime this install targeted (claude, codex, …). Added in schema 2.
scope global or local. Added in schema 2.
files Relative path → SHA-256, for distribution-owned files only.

runtime and scope (#2872, ADR-2866) exist so a reader can answer "which surfaces are installed, at which scopes, for which runtimes" without inferring it from the directory the file happened to be found in. Before schema 2, a global and a local install wrote two manifests to two directories that were never merged and never cross-read.

A schema-1 manifest is read without error and never requires a reinstall. readInstallManifest reports manifestVersion: 1 with runtime: null and scope: null, and every consumer treats the absence of those fields as "not declared", never as "not installed". A manifestVersion written by a newer GSD is reported verbatim rather than rejected — two GSD versions on one machine is a supported state — so consumers branch on >= 2, never === 2.

The invariant is strict:

  • distribution-owned files are manifest-tracked
  • user-owned files are preserved and omitted from manifest hashes
  • a path cannot be both

Install State

The installer writes gsd-install-state.json next to the manifest. It carries migration bookkeeping only — the runtime, scope, version and mode of the install live in the file manifest above, not here.

{
  "schemaVersion": 1,
  "appliedMigrations": [
    {
      "id": "2026-05-11-codex-hooks-layout",
      "packageVersion": "1.50.0",
      "checksum": "sha256:...",
      "appliedAt": "2026-05-11T00:00:00.000Z"
    }
  ]
}

Corrected 2026-08-10 (#2872). This section previously documented five fields — schema, runtime, scope, installed_version, install_mode — in snake_case. None of them were ever written: InstallState (src/installer-migrations.cts) has only ever been { schemaVersion, appliedMigrations }, in camelCase. The stale schema was load-bearing in the wrong direction — a reader trusting it would have concluded that install scope and runtime were already recorded on disk, which is the exact premise ADR-2866 was written to fix.

The checksum is calculated from the migration definition.

An already-applied migration is never re-run, so a drifted checksum is tolerated at runtime: it is collected in plan.checksumDrift and reconciled into install state on the next write, rather than aborting the user's upgrade (this unblocks upgrades — see issue #670).

The "shipped migration bodies are immutable" rule is enforced in CI by a committed checksum-baseline test in tests/installer-migrations.test.cjs. If you need to change the behaviour of a released migration, add a NEW fix-forward migration id instead of editing the shipped body.

Migration Record

Each migration exports a plain record plus pure planning logic.

Required fields:

module.exports = {
  id: '2026-05-11-runtime-layout-example',
  title: 'Move legacy commands into runtime skills',
  description: 'Move legacy runtime command files into the generated skill layout.',
  introducedIn: '1.50.0',
  runtimes: ['claude', 'codex', 'antigravity'],
  scopes: ['global', 'local'],
  destructive: true,
  plan(ctx) {
    return [];
  }
};

The Installer Migration Authoring Guard Module rejects records that omit id, title, description, introducedIn, scopes, destructive, or plan. runtimes remains optional only for migrations intentionally shared by every runtime, but scope must always be explicit so an author cannot accidentally broaden local/global behavior.

The plan(ctx) function receives an install context with runtime, scope, target directory, previous manifest, install state, package manifest, and filesystem helpers. It returns actions. It must not mutate disk.

Migrations may use helper predicates such as:

  • isManaged(relPath)
  • isUserOwned(relPath)
  • hashMatchesManifest(relPath)
  • exists(relPath)
  • readJson(relPath)
  • readToml(relPath)

Action Types

Migrations produce a small set of action types. The executor owns mutation, backup, rollback, and reporting.

remove-managed

Remove a path only when it is known to be GSD-managed and unchanged from the previous manifest, or when the migration provides a purpose-built detector for an old GSD-owned shape.

Authoring guardrail: every remove-managed action must include ownershipEvidence explaining the manifest entry, generated marker, or purpose-built detector that proves GSD ownership.

Use for retired hooks, old generated agents, deprecated command files, and stale runtime-specific generated artifacts.

backup-and-remove

Back up a managed path before removal because the file differs from the previous manifest. The user gets a clear report and can inspect the backup.

Use when a feature retires a managed file that users may have patched.

remove-empty-dir

Remove a directory node, but ONLY via fs.rmdirSync — never a recursive removal (fs.rmSync, { recursive: true }, { force: true }). The executor re-checks emptiness immediately before the call: a directory that still holds any entry is left in place as a successful, non-error outcome (skipped-not-empty), not swept. This is deliberately WEAKER than a recursive directory-removal primitive, which the framework intentionally does not provide (see migration 003's docblock and the 2026-08-07 amendment to docs/adr/0008-installer-migration-module.md) — it exists only to retire a directory NODE once every file inside it has already been individually proven GSD-managed (or preserved as user-owned) by other actions in the same migration, never to sweep a subtree in one step.

Additional guards beyond emptiness: the target must not be a symlink (never followed, never removed through); the target's realpath must resolve strictly inside the config directory's realpath and must never equal the config directory itself; and any unexpected failure (EACCES, EBUSY, a race that removes the target between the check and the call) degrades to left-in-place rather than throwing, matching every sibling action type.

Authoring guardrail: every remove-empty-dir action must include ownershipEvidence, the same bar as remove-managed.

Use when a host runtime reserves a directory NAME for its own purposes (e.g. pi's hooks/, #3023) such that leaving an emptied shell behind is not enough — the directory's mere existence, not its contents, is what a host inspects.

move-managed

Move a managed path to a new managed path. If the source was locally modified, the action becomes backup-and-move or a conflict.

Use for layout migrations such as command directories moving into skills.

rewrite-config

Rewrite a structured config file through a parser or existing structural helper. String replacement is only acceptable for narrowly-scoped marker blocks with tests for line-ending and ordering variations.

Use for runtime config, hook registrations, feature flags, and generated agent registration blocks.

The initial executor support is rewrite-json: a migration reads JSON through readJson(relPath), returns the next parsed value in the action, and may set deleteIfEmpty: true when the remaining structure is empty. The executor owns the disk write, journal entry, rollback snapshot, and runtime/scope filtering. Use this for legacy JSON config cleanup such as Codex hooks.json, where GSD can prove ownership of individual generated hook commands but not the whole file.

Authoring guardrail: every rewrite-json action must include ownershipEvidence, and the migration record must include runtimeContract citing docs/installer-migrations.md#runtime-configuration-contract-registry.

preserve-user

Declare that a path is user-owned and must survive surrounding directory replacement. This action is informational in dry-run output. During apply it becomes a copy-through/restore operation when baseline ownership is known; when ownership is not yet established, non-interactive apply must block until an interactive baseline migration records an explicit user choice.

Use for profile, preferences, hand-authored instructions, and future workflow outputs.

record-baseline

Record a manifest-managed file in the first-time baseline without mutating it. The executor writes a journal entry and install-state entry so later upgrades know the baseline scan completed.

Use only from the first-time baseline scanner.

baseline-preserve-user

Record a user-owned or unknown file discovered under a known install surface without mutating it. Unknown files default to this action unless they look like retired GSD-generated artifacts that need an explicit user choice.

Use only from the first-time baseline scanner.

prompt-user

Stop non-interactive destructive migration and ask in interactive mode. The prompt must present concrete choices such as preserve, back up, remove, or move. The default is preserve.

Use when classification is ambiguous and guessing could lose data.

Execution Flow

The installer runs migrations before materializing the new package payload.

  1. Build install context.
  2. Read prior manifest and install state.
  3. Build a pre-run snapshot for paths that may be touched.
  4. Discover pending migrations by runtime, scope, and applied state.
  5. Ask each pending migration for a plan.
  6. Merge plans and validate them.
  7. Print the plan in dry-run form.
  8. Apply safe non-interactive actions.
  9. Prompt or stop for ambiguous actions.
  10. Write the new package payload.
  11. Write the new manifest and install state.
  12. Report backups, preserved files, removed stale files, and skipped actions.

The Phase 4 install integration wires this flow into the normal install/update entry point for every supported runtime: Claude Code, Antigravity, Augment, Cline, CodeBuddy, Codex, Copilot, Cursor, Hermes Agent, Kilo, OpenCode, Qwen Code, Trae, and Windsurf. The installer invokes the same migration runner with baselineScan: true, reports the projected action rows, applies safe non-interactive actions before materialization, persists install state only after package materialization and finalization succeed, and fails before writing new package files when the runner returns blocked user-choice actions.

Phase 1-3 built the planning, apply, rollback, install-state, baseline, and migration-record mechanics. Those phases did not prove the normal install entry point across every runtime. Phase 4 owns that guardrail with an all-runtime install matrix that exercises safe managed cleanup and blocked user-choice artifacts for each runtime above.

If any apply step fails, the executor uses the journal to restore modified paths where possible. Rollback must never delete files that were not created or modified by the current installer run.

Dry Run

The migration runner supports a dry-run mode that prints the plan and exits without changes.

Dry-run output groups actions by risk:

  • will preserve
  • will replace unchanged managed files
  • will remove stale managed files
  • will back up locally modified files
  • needs user choice
  • blocked

The same planner powers dry-run and apply. There must not be a separate "preview-only" code path.

Safety Policy

Ownership

Never remove an unknown file. Unknown files are preserved unless a migration contains a specific detector proving the file is a stale GSD artifact.

Modification Detection

When a path is in the previous manifest:

  • hash match means unchanged managed file
  • hash mismatch means locally modified managed file
  • missing means already removed by the user and should stay removed unless a migration explicitly needs to recreate it

User-Owned Artifacts

User-owned artifacts are defined once and consumed by both preservation and manifest-writing code. Adding a user-owned artifact requires a regression test that proves it is preserved across reinstall and omitted from the manifest.

Config Files

Runtime config is mixed ownership. GSD may own marker blocks, generated agent sections, or hook entries, but it does not own the whole file unless the file was created as a GSD-only file. Config migrations should remove or rewrite only the owned portion.

Runtime Configuration Contract Registry

Last upstream documentation check: 2026-05-11. Kimi CLI was rechecked on 2026-06-07 against the MoonshotAI docs.

This registry is the source of truth for migrations that touch host runtime configuration. Each row records:

  • What: the GSD invocation, agent, skill, rule, hook, or config surface
  • Where: the global and local roots the installer targets
  • When: install, upgrade, uninstall, and migration touch points
  • Who: the ownership boundary for surrounding user config
  • Why: the upstream loader contract or current GSD compatibility shim

Migration authors must read the matching row before producing a rewrite-config, move-managed, or destructive cleanup action. If upstream docs change, update this registry, update docs/ARCHITECTURE.md, and add tests for the new shape before changing migration behavior.

Runtime What GSD installs Where GSD installs it Config ownership boundary Upstream contract snapshot
Claude Code Global skills in skills/gsd-*/SKILL.md; local slash commands in commands/gsd/*.md; agents in agents/gsd-*.md; hooks in hooks/; settings.json registrations Global CLAUDE_CONFIG_DIR or ~/.claude; local ./.claude GSD owns only generated skills, local commands, gsd-* agents, hook files, and GSD hook/statusLine entries in settings.json Slash commands, settings, hooks, subagents; docs not versioned, checked 2026-05-11
OpenCode Flat markdown commands in commands/gsd-*.md (plural — OpenCode discovers slash commands from commands/, not the legacy singular command/, #2329); agents in agents/gsd-*.md; config updates in opencode.json or opencode.jsonc Global OPENCODE_CONFIG_DIR, dirname(OPENCODE_CONFIG), XDG_CONFIG_HOME/opencode, or ~/.config/opencode; local ./.opencode GSD owns generated command/agent files and GSD entries in structured config only Config, Commands; docs published 2026-05, checked 2026-07-16
Kilo OpenCode-style flat markdown commands in command/gsd-*.md; agents in agents/gsd-*.md; config updates in kilo.json or kilo.jsonc Global KILO_CONFIG_DIR, dirname(KILO_CONFIG), XDG_CONFIG_HOME/kilo, or ~/.config/kilo; local ./.kilo GSD owns generated command/agent files and GSD entries in structured config only Custom subagents; docs not versioned, checked 2026-05-11
Kimi CLI Agent Skills in skills/gsd-*/SKILL.md; explicit custom agent YAML/prompt artifacts in agents/gsd.yaml, agents/gsd.md, and agents/subagents/gsd-*; gsd-core/ payload files referenced by generated skills; manifest, pristine, local-patch, and migration journal files from the normal installer safety pipeline Global KIMI_CONFIG_DIR, explicit --config-dir, or first-existing generic skills root: ~/.config/agents when ~/.config/agents/skills exists or no generic skills root exists yet, otherwise ~/.agents when ~/.agents/skills exists and ~/.config/agents/skills does not; KIMI_CONFIG_DIR and --config-dir are GSD write-location overrides and arbitrary roots require Kimi-side --skills-dir or extra_skill_dirs configuration for skill discovery; local --kimi --local is guarded and writes no project-level artifacts GSD owns only generated skills/gsd-*, agents/gsd.*, agents/subagents/gsd-*, installed gsd-core/ payload files, and manifest/preservation/migration records. GSD does not own Kimi config files, hooks, settings, rules, statusline, update-banner registration, or non-GSD Kimi skills/agents. Reinstall/update must preserve locally modified generated Kimi artifacts through manifest-backed gsd-local-patches/; uninstall removes only GSD-owned Kimi artifacts and preserves non-GSD user content. Agent Skills, Agents and Subagents, Tools; docs checked 2026-06-07
Codex Skills in skills/gsd-*/SKILL.md; agents as source markdown plus per-agent TOML in agents/ (Codex auto-discovers each standalone agents/gsd-*.toml — that is the sole role-registration source, #2406); bare [agents] dispatch-tuning scalar and hooks in config.toml Global CODEX_HOME or ~/.codex; local ./.codex GSD owns generated skills, generated agent TOML, the managed bare [agents] scalar table (max_depth; no [agents.gsd-*] role sections — those were a duplicate registration removed in #2406), [features].hooks when added by GSD (canonical; legacy alias codex_hooks is recognized and migrated forward, #3566), and GSD hook entries Codex config schema, Codex developer docs; docs not versioned, checked 2026-05-15; installer compatibility sentinel: Codex 0.130.0 features.hooks key (legacy codex_hooks recognized)
GitHub Copilot Skills in skills/gsd-*/SKILL.md; agents as .agent.md; repository instructions in copilot-instructions.md Global COPILOT_CONFIG_DIR, COPILOT_HOME, or ~/.copilot; local ./.github GSD owns generated skill/agent files and GSD-authored instruction files; no hook/statusline ownership Repository custom instructions, Copilot CLI custom instructions; GitHub Docs product docs, checked 2026-05-11
Antigravity Global skills in ~/.gemini/config/skills/gsd-*/SKILL.md and agents in ~/.gemini/config/agents/ (the machine-local discovery dir, #3738; pre-#3738 installs wrote them under the configHome and migration 010 retires that spot); Gemini-style settings.json hooks at the configHome when installed by GSD Global ANTIGRAVITY_CONFIG_DIR or ~/.gemini/antigravity; local ./.agents (canonical, #791) or ./.agent (legacy, recognized for backward-compat) GSD owns generated skills/agents/hooks and GSD settings entries only Public Antigravity install/config docs for this file layout were not stable or complete as of 2026-05-11; installer compatibility therefore uses GSD's Gemini-compatible settings policy, documented shim baseline. Fresh installs write to .agents/ (the Google-Codelabs-documented form); existing .agent/ installs continue to be detected and served.
Cursor Skills in skills/gsd-*/SKILL.md; agents in agents/; rule references under rules/; lifecycle hooks via hooks.json (sessionStart + postToolUse, #777) Global CURSOR_CONFIG_DIR or ~/.cursor; local ./.cursor GSD owns generated skills/agents, GSD rule files or references, and GSD-managed hooks.json entries (sentinel gsd-managed:true); no statusline ownership Cursor rules; Cursor hooks; docs not versioned, checked 2026-06-07
Windsurf / Devin Desktop Local slash-command workflows in workflows/gsd-*.md; no custom-agent artifact surface Local workflow directory ./.windsurf/workflows; global workflow install is intentionally a no-op GSD owns generated local workflow files only; no hook/statusline ownership Windsurf workflows are the documented / command surface. Workspace workflows live under .windsurf/workflows/*.md; global workflow locations are outside GSD's normal user-owned runtime config directory and are not written by the GSD installer.
Augment Code Skills in skills/gsd-*/SKILL.md; agents in agents/ Global AUGMENT_CONFIG_DIR or ~/.augment; local ./.augment GSD owns generated skills/agents only; no hook/statusline ownership Augment Agent Skills, Augment IDE skills; IDE skills public beta in VS Code 0.789.0+, checked 2026-05-11
Trae Skills in skills/gsd-*/SKILL.md; agents in agents/; rule references under rules/ Global TRAE_CONFIG_DIR or ~/.trae; local ./.trae GSD owns generated skills/agents and GSD rule files or references; no hook/statusline ownership Public Trae docs expose AI settings and .rules announcements, but no stable skills/config API was found as of 2026-05-11; migrations must treat this row as source-limited
Qwen Code Claude-compatible skills in skills/gsd-*/SKILL.md; agents in agents/; optional common hook/settings integration through GSD Global QWEN_CONFIG_DIR or ~/.qwen; local ./.qwen GSD owns generated skills/agents/hooks and GSD settings entries only Qwen commands and skills; docs last updated 2026-05-06
Hermes Agent Category skills under skills/gsd/ with DESCRIPTION.md plus nested gsd-*/SKILL.md; agents in agents/; optional common hook/settings integration through GSD Global HERMES_HOME or ~/.hermes; local ./.hermes GSD owns generated skills/gsd/ category content, generated agents, and GSD settings entries only Hermes configuration, Hermes skills, working with skills; docs checked 2026-05-11
CodeBuddy Skills in skills/gsd-*/SKILL.md; agents in agents/; optional common hook/settings integration through GSD Global CODEBUDDY_CONFIG_DIR or ~/.codebuddy; local ./.codebuddy GSD owns generated skills/agents/hooks and GSD settings entries only CodeBuddy CLI skills, CodeBuddy IDE skills; docs checked 2026-05-11
pi A single native extension at extensions/gsd.js (registers /gsd + the gsd_invoke tool programmatically); the shared hooks/ + hooks/lib/ bundle the extension spawns as bounded subprocesses; the gsd-core/ payload. No commands/agents/skills surface (pluginOnlyInstall) Global ~/.pi/agent; local ./.pi GSD owns only the generated extension file, the installed hooks//hooks/lib/ bundle, and the gsd-core/ payload. GSD writes no pi config: configFormat: "none", hooksSurface: "none", writesSharedSettings: false — ~/.pi/agent/settings.json is entirely user-owned and must never be rewritten, including its extensions array. Other users' extensions in extensions/ are unknown files and are preserved pi extension loader: discoverExtensionsInDir() scans <agentDir>/extensions/ and keeps only names passing isExtensionFile() (.ts/.js); accepted files load through jiti, which handles CommonJS and ESM alike, so the suffix — not the module format — is what gates discovery. Explicit paths in settings.json bypass the filter. Source read 2026-07-20 against @earendil-works/pi-coding-agent 0.80.10 (#2470)
Cline Rule-based integration via .clinerules for current installer output Global CLINE_CONFIG_DIR or ~/.cline; local project root .clinerules GSD owns the generated .clinerules file only when it created or manifest-tracked it; no hooks/statusline ownership Cline rules; docs prefer .clinerules/ directory and still detect legacy rule files, checked 2026-05-11

Registry Authoring Rules

  • Use structured parsers for config files whenever the runtime provides JSON, JSONC, TOML, or YAML. Marker-block rewrites need line-ending and ordering tests.
  • Do not claim ownership of a mixed config file. Own only generated entries, generated files, and explicit marker blocks.
  • Preserve unknown user config, even when it sits inside a GSD-managed runtime root.
  • Add or update the upstream snapshot date and version note when a runtime's docs, CLI schema, or loader behavior changes.
  • Treat source-limited rows as high-risk. A migration that rewrites those runtimes needs either a new primary source or an installer-level probe with tests.

Rollback

Before applying a migration, the executor records enough data to restore:

  • file bytes before overwrite
  • directory membership before removing generated directories
  • config bytes before structured rewrite
  • paths created by the current run
  • temporary files created by atomic writes

Rollback is best-effort but must be loud when incomplete.

First-Time Baseline Migration

The first migration should classify an existing install rather than attempt to fix every historical layout.

It should:

  1. read the current manifest if present
  2. scan known runtime install surfaces
  3. classify files as managed, user-owned, or unknown
  4. report stale GSD-looking files that are not in the current manifest
  5. offer actions for ambiguous files instead of deleting them
  6. write install state after successful classification

The Phase 3 implementation adds a gated baseline migration record, 2026-05-11-first-time-baseline-scan. The runner passes baselineScan: true when the installer wants this first-time scan. Without that flag, discovery is safe for normal migration runs and the baseline record plans no actions.

The baseline action contract is:

  • record-baseline for manifest-managed files
  • baseline-preserve-user for known user-owned files and unknown files that do not look like stale GSD-generated artifacts
  • prompt-user for stale GSD-looking artifacts that are not manifest-proven

This baseline is the escape hatch for old installs that predate full migration tracking. It gives the user a reviewable redistribution/removal plan without requiring the installer to infer every past release transition perfectly.

Authoring Workflow

When a feature removes or moves install artifacts, the PR must include:

  1. a migration record
  2. tests for dry-run plan output
  3. tests for apply behavior
  4. tests for locally modified managed files
  5. tests for user-owned files near the changed path
  6. an update to release notes if the migration affects user-visible install behavior

The author must answer these questions in the migration file:

  • What old artifact or config shape is being retired?
  • How do we prove it is GSD-owned?
  • What happens if the user modified it?
  • What happens if it is missing?
  • What runtime and scope does it affect?
  • Is the action safe in non-interactive install?

Test Matrix

Every migration runner change should cover:

  • fresh install with no prior state
  • reinstall with matching manifest
  • upgrade with pending migration
  • locally modified managed file
  • unknown file under a GSD directory
  • user-owned file under a wiped directory
  • failed apply with rollback
  • global and local install scopes when applicable
  • Windows path separators when paths are serialized
  • CRLF input when config files are rewritten

Implementation Sequence

  1. Extract install ownership helpers around the manifest and user-owned artifact list.
  2. Add install-state read/write helpers.
  3. Add migration record discovery and checksum calculation.
  4. Add planner-only dry-run support.
  5. Add executor with journaled file actions.
  6. Port orphaned hook/file cleanup into the first explicit migration.
  7. Port one structured config rewrite into the migration runner.
  8. Add the baseline classifier for existing installs.
  9. Make new install-affecting PRs require migrations when artifacts are moved, renamed, or retired.

This sequence keeps the first implementation small: the existing installer continues to materialize files, while the migration runner takes ownership of cleanup, classification, and reviewable destructive changes.

Shipped Migrations

Each row corresponds to one migration record in src/installer-migrations/.

ID File Introduced In Scopes Destructive Summary
2026-05-11-first-time-baseline-scan 000-first-time-baseline.cts 1.50.0 global, local No Records classification baseline for existing installs before destructive migrations run.
2026-05-11-legacy-orphan-files 001-legacy-orphan-files.cts 1.50.0 global, local Yes Removes manifest-managed legacy orphan hook files (hooks/gsd-notify.sh, hooks/statusline.js) retired by the installer.
2026-05-11-codex-legacy-hooks-json 002-codex-legacy-hooks-json.cts 1.50.0 global, local Yes Removes legacy GSD hook registrations from Codex hooks.json after the config.toml migration.
2026-06-02-rename-get-shit-done-to-gsd-core 003-rename-get-shit-done-to-gsd-core.cts 1.2.0 global, local Yes Removes managed files from the stale get-shit-done/ runtime directory after the rename to gsd-core/ (#604). User-added files are preserved; emptied directories may remain (framework limitation).
2026-06-09-prune-stale-pristine-get-shit-done 004-prune-stale-pristine-snapshots.cts 1.4.3 global, local Yes Removes stale gsd-pristine/get-shit-done/ snapshot files left behind by migration 003, which caused false verify-reapply-patches failures (#934).
2026-07-17-opencode-baseline-commands-dir 005-opencode-baseline-commands-dir.cts 1.7.0 global, local No Baselines pre-existing files under OpenCode's commands/ (plural) directory during the first-time scan. #2329 moved OpenCode command materialization to commands/, but 000's RUNTIME_SURFACES.opencode is a shipped, immutable body that still only names the legacy command/ alias, so this fix-forward migration widens the scanned surface. OpenCode only; Kilo is unaffected.
2026-07-20-pi-extension-cjs-to-js 006-pi-extension-cjs-to-js.cts 1.7.1 global, local Yes Removes the stale extensions/gsd.cjs left by pre-#2470 pi installs. pi's extension auto-discovery (isExtensionFile()) accepts only .ts/.js, so the .cjs file was never loaded and /gsd never registered; #2470 renamed the installed artifact to extensions/gsd.js, orphaning the old path. Locally modified copies are backed up rather than deleted; an unmanifested gsd.cjs is preserved as a user file. pi only.
2026-07-28-retire-config-root-commonjs-marker 007-retire-config-root-commonjs-marker.cts 1.8.0 global, local Yes Removes <configRoot>/package.json when it is exactly the {"type":"commonjs"} marker pre-#2544 installs wrote there. #2544 moved that marker into the directories GSD fills (hooks/, and the native plugin dir), so an upgraded install would otherwise keep both and stay pinned to CommonJS at a config root GSD no longer writes. Ownership is proven by exact content match, not the manifest (the marker was never manifest-recorded) — a package.json with any other content is left untouched, with no backup-and-remove branch. All runtimes; kimi's root marker lives outside configDir and is retired by the installer instead.
2026-07-29-cursor-retire-commands-surface 008-cursor-retire-commands-surface.cts 1.8.1 global, local Yes Removes manifest-managed commands/gsd-*.md files from Cursor installs. Cursor already exposes the corresponding skills in the slash menu and to contextual model invocation, so the command copies produced duplicate entries (#2644). Modified files are backed up; unmanifested files are preserved.
2026-08-07-pi-retire-reserved-hooks-dir 009-pi-retire-reserved-hooks-dir.cts 1.9.2 global, local Yes Removes manifest-managed files under pi's legacy hooks/ directory and, once empty, the directory itself (and hooks/lib/), now that the shared hook bundle installs at gsd-hooks/ instead. pi's checkDeprecatedExtensionDirs() warns on hooks/'s mere existence, not its contents, so an emptied shell would keep warning forever without the new remove-empty-dir action (#3023). Modified files are backed up; unmanifested files are preserved and keep the directory alive. pi only.
2026-08-26-antigravity-retire-confighome-artifacts 010-antigravity-retire-confighome-artifacts.cts 1.11.0 global Yes Removes manifest-managed skills/gsd-*/ and agents/gsd-*.md under the Antigravity configHome (~/.gemini/antigravity{,-ide,-cli}) and, once empty, the container directories. Antigravity's machine-local discovery scans ~/.gemini/config/{skills,agents} and does not scan the configHome, so pre-#3738 artifacts were silently ignored; since #3738 the global layout installs both kinds under the .gemini/config home override. Modified files are backed up; unmanifested and non-gsd- files are preserved and keep their directory alive. Global scope only — the local .agents workspace surface is live. Antigravity only.

Prior Art

The design borrows from established upgrade systems:

  • Flyway versioned migrations: ordered, once-only changes tracked by checksum.
  • Flyway dry runs: preview planned mutations before applying them.
  • Liquibase changesets and preconditions: declarative changes gated by current system state.
  • Debian conffile policy: preserve local configuration and distinguish package ownership from user ownership.
  • npm lifecycle scripts: useful as packaging context, but not sufficient as the migration mechanism because uninstall and upgrade context are limited.