* enhance(#4406): the lazily-read remainder and the artifact templates ADR-4139 Decision 3, Phase 6 of the #4139 Compact Content epic. Covers stream 1b (gsd-core/workflows/<name>/{modes,steps,templates}/*.md) and stream 4 (gsd-core/templates/**) with a variant-swap mechanism, confirmed with the user: two independent, complete files per covered path (canonical + .compact.md sibling), with the gate picking which one gets Read at the call site. This is a different shape from Phase 5's spine+detail partition, and is safe here specifically because these files are already reached only by a runtime Read — a missed Read already means zero overlay content today, with or without workflow.compact_content, so selecting between two independently-complete files introduces no new failure mode (documented in gsd-core/references/compact-content-gate.md's new "Streams 1b and 4" section). Disposition, after inspecting every candidate rather than trusting a byte-size threshold (same rigor Phase 5 applied to review.md): - Stream 1b: 1 of 78 files compacted (help/modes/full.md, a user-facing reference doc emitted verbatim, not orchestrator instruction). The other 9 size-threshold candidates are dominated by fail-closed guards, exact CLI invocations, or output-format contracts (AskUserQuestion blocks) — recorded not-worth-compacting, same reasoning as Phase 5's review.md. - Stream 4: a ground-truth reachability audit replaced the initial size-only candidate list. Two files (summary.md, user-setup.md) got compact variants; a third (spec.md) was drafted, then dropped after discovering its only two call sites are eager @-includes, not a runtime Read — stream-1 material hiding under gsd-core/templates/, not stream-4's actual mechanism. summary.md itself has 3 eager call sites and only 1 genuine runtime-Read call site (execute-plan.md); only that one was wired, so the compact variant's savings apply to the sequential single-plan execution path only. - Discovered while auditing reachability: 12 gsd-core/templates/** files with zero references anywhere in workflow/agent/command prose, compiled source, or tests — dead scaffolding predating this phase. Deleted in this same PR per this repo's no-defer policy, after re-verifying against a computed path.join(...) pattern (not just a plain-string search) that nearly caused two genuinely load-bearing templates (user-profile.md, dev-preferences.md) to be misclassified as dead. New checker (tests/helpers/compact-content-variant.cjs): registration, reachability, protected-content-preserved, size-smaller — replacing Phase 3/5's disjointness/completeness checks, which assume a partition rather than two deliberately-overlapping documents. The reachability check's own "unprefixed match" guard had a real bug (rejected the repo's own `~/.claude/gsd-core/...` convention), caught by running it against the already-wired help/modes/full.compact.md pair rather than only synthetic fixtures — fixed to anchor on the nearest `gsd-core` path segment instead. Template consumer parity (tests/compact-content-template-variant-parity.test.cjs): proves each compact variant's `## File Template` fenced block — the actual output-format contract a generated SUMMARY.md/USER-SETUP.md is parsed against — is byte-identical to the canonical file, then runs the one real deterministic consumer (gsd-core/bin/lib/coverage.cjs's classifyContent, backing `gsd-tools uat classify-coverage`) against content built from that shared contract. Added a sibling benchmark script (scripts/benchmark-compact-content-variants.cjs) rather than extending the existing spine/detail one — different data shape, and the existing script's own contract deliberately isolates it from a test-only helper's shape changing. Emitted-drift acknowledgement: not needed. Every changed/added path in this diff is hand-authored and present in the diff itself, so diffEmitted's attribution loop resolves `via` to the path's own source before reaching the ack-lookup branch (same reasoning Phase 5 verified for its own diff). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> * enhance(#4406): address code-review findings on the variant-swap gate - docs/CONFIGURATION.md and gsd-core/references/planning-config.md's workflow.compact_content entries described only the spine+detail mechanism (Phase 5) and were missing this phase's variant-swap mechanism and its benchmark:compact-content-variants script entirely — required since this PR's changeset is type Added (CLAUDE.md's "Missing Docs for Changesets" rule). Both now describe both mechanisms and which call sites are wired. - Added the missing RED^-1/no-op fixture for checkProtectedContentPreserved: a canonical file with zero <!-- gsd:protected --> blocks must be a no-op, not a violation — the only branch of that function the existing fixtures didn't exercise. - Collapsed findCompactFiles/findMarkdownFiles in tests/helpers/compact-content-variant.cjs into one findFilesWithSuffix helper — the two were identical recursive walks differing only in the extension predicate (minor Duplicated-Code finding). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> * fix(#4406): restore copilot-instructions.md, a false-positive dead-template classification gsd-test caught this, not static analysis: 10 real failures in tests/copilot-install.test.cjs, tests/installer-migration-install.integration.test.cjs, and tests/repo-layout.test.cjs — all downstream of bin/install.js's Copilot install path, which does fs.readFileSync(path.join(targetDir, 'gsd-core', 'templates', 'copilot-instructions.md')) after copying gsd-core/templates/** into the target project, then merges it into both .github/copilot-instructions.md and (local installs) AGENTS.md. The reachability audit that flagged this file as dead checked src/*.cts and gsd-core/bin/*.cjs but never the repo-root bin/install.js — a separately maintained installer bundle outside the src/-to-gsd-core/bin/lib/ compiled-output convention. The fs.existsSync guard around that read degrades to a silent skip rather than a crash when the template is missing, which is why this surfaced only once the real E2E install test ran, not from any static check. Re-verified the remaining 11 deleted filenames against bin/install.js specifically (plain substring and quoted-filename search) before trusting that list — all 11 have zero hits there, confirmed dead by the same standard this one file failed. Regenerated the installer emitted-tree goldens (tests/fixtures/install-tree/*.json) to reflect the restored file, and corrected the "Removed" changeset (jolly-lynx-sprint.md) and the phase design doc from 12 to 11 deleted files. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Emitted-Drift-Ack-Growth: execute-plan.md — call-site wiring for the summary.md and user-setup.md .compact.md variants Emitted-Drift-Ack-Growth: help.md — call-site wiring for full.compact.md, same variant-resolution rule * docs(#4406): backfill changeset PR numbers Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> * fix(#4406): resolve removed-but-needed lint findings on the dead-template deletion CI's own full-test matrix (not gsd-test's matrix, which does not run this check) caught 4 more false-positive dead-template classifications via tests/removed-but-needed-lint.test.cjs / scripts/lint-removed-but-needed.cjs — a literal, word-boundary basename check across .github/workflows/, gsd-core/, and docs/ (excluding docs/adr/** and docs/research/**) for every file a PR deletes. It has no semantic awareness, so a deleted template's basename colliding with something else entirely still fires: - claude-md.md: gsd-core/templates/README.md had a stale table row claiming /gsd-profile reads this template to generate CLAUDE.md. Verified false (no code reads it anywhere, same search that already covered bin/install.js) — fixed the row to *(inline)*, matching every other command-generated artifact in that table. File stays deleted. - codebase/testing.md: collided with docs/guides/testing.md, an illustrative example row in docs-update.md's sample output table (an unrelated real generated-docs path). Swapped the example topic to "contributing" — the row is illustrative, any topic works. File stays deleted. - codebase/architecture.md, codebase/stack.md: collided with docs/reference/ planning-artifacts.md's directory listing of a user's own generated .planning/codebase/architecture.md and stack.md output — the same semantic mismatch already investigated and dismissed as unrelated earlier in this phase's audit, now caught by a gate instead of judgment. That listing repeats across 5 locale copies of the doc. - continue-here.md: collided with the real .continue-here.md pause-work artifact, referenced across 15+ locale and workflow files. For the last two, the lint's own error message offers "restore the file or update every consumer in the same commit." Rewording 15+ files across languages I cannot verify translation quality for, to shave 2 already-tiny templates that were merely presumed dead, is disproportionate to this PR's actual scope — restored codebase/architecture.md, codebase/stack.md, and continue-here.md instead, and corrected docs/ARCHITECTURE.md's Templates section accordingly. Final confirmed-dead set: claude-md.md, codebase/concerns.md, codebase/conventions.md, codebase/integrations.md, codebase/structure.md, codebase/testing.md, debug-subagent-prompt.md, discovery.md — 8 files, down from the original 12. Verified locally: GSD_REMOVED_BUT_NEEDED_BASE=next node scripts/lint-removed-but-needed.cjs now passes clean. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Emitted-Drift-Ack-Growth: docs-update.md — swapped an illustrative example-table topic (testing -> contributing) to avoid a removed-but-needed basename collision with the deleted codebase/testing.md template; net +10 bytes * fix(#4406): split codex-config.test.cjs to fix a genuine Windows CI timeout Root cause of the `full test (windows-latest, 24, shard 2/3)` failure the user asked to be actually fixed, not just re-run past: PR #4497 (landed 2026-09-07, one day before this PR's CI run) isolated tests/codex-config.test.cjs into its own dedicated chunk because its measured weight (17.87, ~45% of the post-cut Windows budget) made it unsafe to share a chunk with any other file. That isolation was necessary but not sufficient — even alone, with zero companion-file contention, the file's real Windows execution time sits right at the 600s per-chunk ceiling. Two independent CI runs on two unrelated PRs (this one and #4154) were both killed within ~1.4s of the identical 600000ms mark — not random contention, a deterministic near-miss the isolation fix couldn't address because it never reduced the file's own cost, only removed the risk of a companion file's cost stacking on top of it (which the PR #4497 comment explicitly anticipated: "if a future profiling pass genuinely speeds up codex-config.test.cjs itself, this isolation can be revisited"). The file itself explains why it's this heavy: 11,262 lines / 433 tests / 79 describe blocks, accumulated over dozens of bug-fix PRs (#2695, #2760, #3245, #3285, #3346, #3426, #3427, #3562, #3566, #3582, #3808, and more), several of which are explicitly documented as "folded" in from separate files that were never actually split back out ("Verified non-duplicate against both the pre-existing target and the other three folded sources"). Split into 4 files by top-level AST statement boundaries (never a naive column-0 regex — an early attempt at that overcounted 79 apparent "describe(" matches when only 21 are genuinely top-level; the rest are nested inside a handful of large folded-in blocks, which a regex can't tell apart from real top-level statements). Verified lossless twice: the split script asserts byte-for-byte reconstruction of every source character, and independently, total test()/describe() call counts match exactly between the original file and the sum across all 4 new files (433/79 both sides). Each new file carries the complete original shared header (imports/helpers) for safety; per-file unused-import warnings from that duplication are resolved via ESLint-precise alias renames (`{ foo: _foo }`, the standard form for an intentionally-unused destructured binding — never a bare `{ _foo }`, which would destructure a different, nonexistent property). No change needed to scripts/run-tests.cjs's ISOLATED_HEAVY_FILES or its pinned test in tests/run-tests-harness.test.cjs: the file that keeps the original name (tests/codex-config.test.cjs) is now only ~28% of the original's size and safely isolated in its own chunk as before; the other three new files re-enter normal weight-balanced packing, none individually close to disproportionate. Confirmed no other file hardcodes the hardcoded filename anywhere that would silently stop these tests from running (the CI test-selection scripts determine scope algorithmically, not by literal filename). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> --------- Co-authored-by: sim <sim@local> Co-authored-by: Claude Sonnet 5 <noreply@anthropic.com>
GSD Core documentation
Documentation is organised into four quadrants: tutorials help you learn by doing, how-to guides solve specific tasks, reference states authoritative facts, and explanation explores concepts and design decisions.
Language versions: English · Português (pt-BR) · 日本語 · 简体中文
Tutorials
- Your first project — install to first shipped phase, one guaranteed path
- Onboarding an existing codebase — bring GSD Core to a brownfield repo
- Build your first capability — author a tiny declarative capability and watch it act in the loop
- Install your first capability — install a third-party capability end-to-end: consent, verify, check for updates, remove
How-to guides
- Install on your runtime — runtime-specific install steps for all 16 supported runtimes
- Install a minimal GSD and add skills later — install only the core skills, then grow the surface with profiles and
/gsd-surface - Attach a plugin-provided skill to a GSD agent — use the
global:plugin:skillentry form to load Claude Code plugin skills into agent prompts - Discuss a phase — capture implementation decisions before planning begins
- Resolve edge-coverage findings — turn the spec phase's surfaced domain-boundary edges into covered, dismissed, or backstopped spec decisions
- Probe edges in a non-English project — get real edge coverage on a spec written in another language, and tell "no edges here" apart from "the probe could not read it"
- Resolve prohibition findings — turn the spec phase's surfaced must-NOT constraints into resolved, dismissed, or deferred spec decisions
- Resolve an unreachable-workflow finding — wire or fully sweep a shipped workflow that no command, agent, or skill references
- Acknowledge emitted-artifact drift — declare a deliberate emitted-byte ripple or workflow/agent growth in a commit trailer, and migrate an older ack fragment
- Change the STATE.md schema — add, change or remove a STATE.md frontmatter key and keep the template and all five reference documents in step
- Resolve verify-command path findings — fix an
<automated>verify command whose target directory does not resolve from the executor's cwd - State a failing direction — say what output constitutes failure for an
<automated>verify command, and migrate a phase planned before the rule - Resolve a contract-drift finding — bring an agent's completion contract, read-tag gate, or deleted-file test reference back into agreement with the registry
- Resolve unreachable-guard findings — fix shell guards whose fallback arm cannot run, and tell "nothing to report" apart from "could not look"
- Declare a hook's crash policy — terminate a GSD hook with
allow/deny/crash, declare itsON_CRASHpolicy, and tell a hook's own crash apart from a check that could not run at all - Resolve a skipped capability probe — act on a coverage gate that held your phase for an unestablished scope, or a planning checkpoint that reported
skippedinstead of a verdict - Diagnose which gsd-tools is running — tell this package's tool apart from the predecessor's colliding binary and from a gsd-core too old to identify itself
- Resolve an ESLint glob-coverage finding — bring a source file that matches no lint rule under coverage, or record a reasoned exemption
- Resolve a raw-terminator finding — pick
runMain/ExitError,terminateNow, orprocess.exitCodefor alocal/require-registered-exitfinding, and know the two allowlist entries and the rule's documented evasions - Adopt the v2 exit contract — turn on
gsd-tools's versioned exit-code projection, read the code table including what80(DEGRADED) means, and migrate a CI gate that treats any non-zero exit as fatal - Read the statusline freshness marker — turn on
state ~N commits back, and tell "STATE.md is fresh" apart from "freshness could not be established" - Consume the planning snapshot — read
planning inspectfrom a dashboard or harness, and tell "nothing to report" apart from "could not look" - Read CI timeout budget signals — find the near-cap warning on a run, read the accumulated
tests/ci-timeout-budget-history.jsonltrend, and know which lever (cap, shard balance, shard-1 contents) a repeatedly-near-cap lane calls for - Consume the state contract — read
.planning/state.jsonfrom a workbench or editor extension, gate on the contract version, and tell "nothing to show" apart from "could not look" - Keep planning docs out of a shared repo — make
.planning/local-only, including untracking files git already tracks (the step.gitignorealone cannot do) - Publish PRs without planning artifacts — keep
.planning/committed locally, so worktrees and/gsd-undokeep working, whileplanning.pr_strictkeeps every planning path out of the branch you push - Plan a phase — run research, decompose work, and verify plan quality
- Verify a dependency-compatibility claim — act on a compatibility claim the researcher left
[ASSUMED], and tell "nothing declared" apart from "a constraint is declared" and "the lookup failed" - Execute a phase — run plans in parallel waves with fresh-context subagents
- Enable parallel reviewer lanes — cut a multi-reviewer
/gsd-reviewpass toward its slowest lane, and tell a rate-limited lane apart from one that was never selected - Enable concurrent per-plan planners in chunked mode — dispatch chunked
/gsd-plan-phase's per-plan Tasks together within one outline Wave instead of one at a time, and know when the setting has no effect - Verify and ship — walk through completed work, diagnose failures, and create the PR
- Catch complexity before it compounds — enable the post-execute refactor hook, read a proposal's score vs. anchor delta, and accept or decline it
- Run phases autonomously — use autonomous mode for unattended phase execution
- Handle quick and fast tasks — use
/gsd-quickand/gsd-fastfor ad-hoc work outside the phase loop - Batch quick tasks — run several
/gsd-quick-shaped tasks together with/gsd-quick-batch, understand capacity/isolation, and recover a failed or interrupted batch - Configure model profiles — switch between quality, balanced, and budget model tiers
- Control which host runtime GSD reports — read the
agent_runtimeladder, understand what host detection looks at, and pin the runtime when detection is not what you want - Set up cross-AI review — configure a second AI to review code produced by the primary agent
- Scope code review depth by path — escalate
/gsd-code-reviewtodeepfor sensitive directories while the rest of the repo stays at the default depth - Work in parallel with workstreams — run independent lines of work simultaneously using workstreams
- Isolate work with workspaces — use workspaces to sandbox experimental or risky changes
- Debug a failed execution — diagnose and recover from broken or incomplete phase execution
- Interpret scope-conformance warnings — read the advisory the worktree-wave merge emits when a plan branch commits outside its declared scope
- Interpret install-shadow warnings — read the advisory GSD Core emits when a
/gsd-*trigger is installed at both scopes and one silently wins, and tell "nothing to report" apart from "could not look" - Interpret
state validateresults — read thescopereason codes and tell "nothing to report" apart from "could not look" - Spike and sketch — use
/gsd-spikeand/gsd-sketchfor exploratory work before committing to a plan - Design a UI phase — use the UI phase loop for frontend and visual work
- Enable live-DOM verification — opt a project into browser-backed UI acceptance checks during execution, handle the browser-profile lock, and tell "nothing to report" apart from "could not look"
- Develop a Capability for GSD 1.5+ — add feature Capabilities, hook fragments, and registry entries
- Develop a task-content resolver capability — declare a
taskContentResolversoexecute-plan.mdresolves per-task content from your external issue tracker instead ofPLAN.md - Ship a reviewer lane in your capability — declare a
reviewerbody so/gsd-reviewdiscovers, invokes, and renders your external review CLI or model endpoint - List your reviewer lane in the registry — publish a lane you have built to the Reviewer Lane Registry so other people can find and install it
- Take over a capability or EoS integration — assume maintainership of an existing third-party capability, reviewer lane, or EoS host integration through a handoff, an adoption fork, first-party absorption, or a de-listing
- Add or update a host's integration — set a host's documentation-sourced
runtime.hostIntegrationaxes (ADR-1239 Phase A), with theundocumentedsentinel rule - Migrate an install test to the executed plan — convert an
fs.existsSync-probing install test group to a value assertion againstinstallRuntimeArtifacts's executed-plan return, and test against a fake fs adapter - Vendor a dependency — add a third-party package
gsd-core/bin/**needs at runtime as a verbatim vendored artifact, keep it out ofdependencies, and pick the right upstream bundle - Turn a capability off (and keep it off) — disable a capability via the surface, or gate individual hooks off without removing the capability
- Drive GSD from a tracker issue — start a phase from a GitHub, Linear, or Jira issue
- Migrate from GSD 2 — upgrade an existing GSD 2 project to GSD Core
- Update GSD — re-run the installer to pick up the latest release
- Clean up get-shit-done-cc — remove leftover old-package artifacts that cause a spurious
⬆ /gsd-updateindicator after migrating to@opengsd/gsd-core - Fix the worktree base-mismatch (exit 42) error — resolve the branch-divergence condition that halts parallel phase execution
- Recover and troubleshoot — fix common problems, rebuild context, and uninstall
Reference
- Commands — every command with flags and examples
- Configuration — full config schema, model profiles, git branching strategies
- CLI tools —
gsd-tools.cjsprogrammatic API for workflows and agents - JSON error mode —
gsd-toolsfailure channels: faults (stderr, exit 1) vs degraded results (stdout, exit 0), and the reason-code taxonomy - Features — complete feature index
- Inventory — installed skills and surface map
- STATE.md schema — field-by-field reference for
.planning/STATE.md - CONTEXT.md schema — field-by-field reference for
.planning/phases/<N>/CONTEXT.md - PLAN.md schema — field-by-field reference for
.planning/phases/<N>/PLAN.md - Planning artifacts — all
.planning/files and their roles - Review and verification capabilities — code review, security, and Nyquist capability ownership and hook contracts
- Gate predicates — canonical specification of the phase-gate predicate vocabulary
- Capability matrix — generated catalogue of every capability's role, tier, extension points, hook kinds, and
engines.gsd - Exit code reference — generated catalogue of every registered process exit code, its name, meaning, and owning module, plus the reserved bands and the v1/v2 exit contract
- Capability manifest — the full
capability.jsonschema and validation rules gsd capabilitycommand — install / update / remove / list reference for third-party capabilities- Workflow fragments — in-file
<!-- gsd:section -->marker grammar for fragmentizing workflow markdown at emission time - Partition rules for compact-content splits — the protected-content list, sentinel syntax, and the five CI checks a
workflow.compact_contentspine/detail split must obey - Reviewer Lane Registry — generated catalogue of third-party reviewer lanes, with their flags, transport, and install commands
Explanation
- Context engineering — how context rot forms and how GSD Core prevents it
- The phase loop — design rationale for the Discuss → Plan → Execute → Verify → Ship cycle
- Multi-agent orchestration — how subagents are spawned, scoped, and coordinated
- Security model — trust boundaries, permissions, and safe automation
- The capability trust model — why third-party capabilities are gated by consent + integrity + reversibility, not a sandbox
- How overlay capabilities compose — why first-party always wins and how the loader resolves precedence, conflicts, and fail-open load-failure warnings
- Architecture — system architecture, agent model, and data flow
- The Embeddable Orchestration System — one public, versioned contract for embedding GSD across many hosts
- Discuss modes — assumptions mode vs interview mode for
/gsd-discuss-phase - Context monitoring — context window monitoring hook architecture
- Issue-driven orchestration — recipe for driving GSD from a tracker issue using existing primitives
Related
- What's new in 1.7.0 — curated highlights of the 1.7.0 release
- Root README — landing page, quickstart, and documentation overview
- Changelog — release history