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Author SHA1 Message Date
fredandscooby b09589f02c fix(tmux): confirm delivery by draft transition, not by prompt glyph (#1257)
ci/woodpecker/pr/ci Pipeline failed
send-message.sh located the REPL input box with grep -E '❯|^>|│ >'. That set is
Claude Code's box. A pi seat renders a bare U+2500 rule with no glyph, so on every
idle pi seat the capture succeeded, the grep matched nothing, status stayed
"unconfirmed", and the tool exited 2 "may be UNDELIVERED" with the paste and the
Enter both landed. The stderr tells the operator to retry, and that retry is the
duplicate delivery reported against the same tool.

Confirmation is now runtime-agnostic: our message tail sits on the input line
(located by cursor row, no glyph) before Enter and has left it after. That
transition is positive proof of submission.

Absence still proves nothing, which is the guard the 2026-08 fix was reaching for
and got backwards. Two positive checks keep it:

  - a prompt box that IS locatable and still carries our tail => draft, exit 2.
    This covers the cursor-row blind spot: a cooked pane whose foreground process
    never reads stdin echoes the paste through the kernel line discipline and
    moves the cursor off it on Enter, which by cursor row alone is indistinguishable
    from a real submit.
  - no draft ever observed on the input line => unconfirmed, non-zero.

Tests, both red-first against the shipping blob d397907:

  test-send-message-glyph-agnostic.sh (new, 6 fixtures)  4/6 -> 6/6
  test-send-message-verdict.sh (fixture 2 reshaped, 2b added)  3/4 -> 4/4

Fixture 2 of the verdict suite asserted exit 2 for a glyphless pane that submits
and was labelled "false-positive FIXED". A pi seat is that fixture, so the suite
was locking the bug in. It is reshaped deliberately, and the guard it was credited
with moves to new fixture 2b (glyphless AND non-submitting, raw/no-echo) so the
"never infer delivered from absence" property is tested positively rather than as
a side effect.

Measured on tmux 3.7b (sb-it-1-dt), 3.5a (fomo-lin), and dragon-lin.

Co-authored-by: scooby <[email protected]>
2026-08-16 16:35:36 -05:00
49 changed files with 421 additions and 2979 deletions
+2 -2
View File
@@ -22,9 +22,9 @@ steps:
image: gcr.io/kaniko-project/executor:debug
environment:
REGISTRY_USER:
from_secret: REGISTRY_USERNAME
from_secret: gitea_username
REGISTRY_PASS:
from_secret: REGISTRY_PASSWORD
from_secret: gitea_password
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_COMMIT_TAG: ${CI_COMMIT_TAG}
CI_COMMIT_SHA: ${CI_COMMIT_SHA}
+1 -24
View File
@@ -30,19 +30,6 @@ steps:
# the baked pnpm store.
- pnpm install --frozen-lockfile --prefer-offline
# ---------------------------------------------------------------------------
# The steps below (sanitization, upgrade-guard, typecheck, lint, format,
# test) are the COMPLETE mandatory verification set. SDLC-D-034 mirrors them
# one-for-one in the canonical terminal verification command — root
# `pnpm verify:release` (scripts/verify-release.mjs) — which the publish
# pipeline (.woodpecker/publish.yml `verify` step) runs before ANY publish
# effect. These lines stay direct (not routed through the runner) because the
# #1017 test-enumeration guard audits framework tool paths through THIS
# surface; scripts/verify-release.test.mjs enforces that the runner's stage
# table keeps matching these commands exactly, so the two cannot drift.
# ---------------------------------------------------------------------------
# Canonical verify:release stage `sanitization`.
# Blocking gate: public framework package must contain no operator-specific
# personal data or private $HOME defaults. Runs early (no node_modules needed).
sanitization:
@@ -60,7 +47,6 @@ steps:
# with everything it guards; this direct line keeps one instrument running.
- bash packages/mosaic/framework/tools/quality/scripts/check-test-enumeration.sh
# Canonical verify:release stage `upgrade-guard`.
# Blocking gate (#791): a framework upgrade must never write or delete an
# operator-owned path. The HARD GATE proves an unanticipated operator sentinel
# survives a keep-mode reseed byte-identical (with rsync present AND absent —
@@ -82,8 +68,6 @@ steps:
- bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-durable-snapshot.sh
- bash packages/mosaic/framework/tools/quality/scripts/test-install-migration.sh
# Canonical verify:release stage `typecheck` — the same `pnpm typecheck`
# invocation (which runs the checkout preflight first, then turbo).
typecheck:
image: *node_image
commands:
@@ -94,8 +78,7 @@ steps:
- sanitization
- upgrade-guard
# lint, format, and test are independent — run in parallel after typecheck.
# Each runs exactly its canonical verify:release stage command.
# lint, format, and test are independent — run in parallel after typecheck
lint:
image: *node_image
commands:
@@ -112,12 +95,6 @@ steps:
depends_on:
- typecheck
# Canonical verify:release stage `test` — the `pnpm test` line below is the
# shared command; everything else in this step is PIPELINE-LEVEL
# prerequisite the canonical command expects its caller to provide (SDLC-D-034):
# the ci-postgres service + pg_isready wait + db:migrate (postgres path),
# `apk add openssl`, and the pinned pi install. None of those can move into
# the runner (it must also work locally on the PGlite path with no database).
test:
image: *node_image
environment:
+6 -66
View File
@@ -1,19 +1,5 @@
# Build, publish npm packages, and push Docker images
# Runs on main for stable publishes and on next for integration-line prereleases/images
#
# SDLC-D-034 publish gate: every publish effect (publish-npm, publish-next-npm,
# and every image build/push step) depends DIRECTLY on the `verify` step below.
# `verify` (a) asserts the provider's commit identity matches the actual
# checkout (CI_COMMIT_SHA == git rev-parse HEAD, fail closed on mismatch or
# emptiness) and (b) runs the canonical terminal verification command
# (`pnpm verify:release`), which mirrors the PR CI pipeline's complete
# mandatory set (sanitization, upgrade-guard, preflight+typecheck, lint,
# format:check, test, build) — see scripts/verify-release.mjs. A missing,
# failed, skipped, cancelled, or inconclusive verification therefore skips the
# dependent publish effects (fail closed). Path-filtered short-circuits may
# skip publish EFFECTS (e.g. docs-only merges) but never bypass `verify` for a
# publish that does run: `verify` itself carries no path filter.
# scripts/verify-release.test.mjs enforces this DAG invariant at checkout time.
variables:
# Pre-baked CI base (see .woodpecker/ci-image.yml): node:24-alpine +
@@ -62,45 +48,6 @@ steps:
# Resolve from the baked pnpm store instead of a cold network fetch.
- pnpm install --frozen-lockfile --prefer-offline
# SDLC-D-034 exact-commit publish gate. No `when`/path filter on purpose: it
# runs for every event this pipeline serves so no publish effect can ever
# start without it. Fails closed on commit-identity mismatch (or either SHA
# being empty) and on any incomplete verification.
verify:
image: *node_image
commands:
- *enable_pnpm
# (a) Commit identity: the provider's claimed SHA must equal the actual
# checkout HEAD — verification of anything else must never authorize a
# publish of this commit.
- |
if [ -z "$CI_COMMIT_SHA" ]; then
echo "[verify] FATAL: CI_COMMIT_SHA is empty — cannot certify commit identity" >&2
exit 1
fi
CHECKOUT_SHA="$(git rev-parse HEAD 2>/dev/null || true)"
if [ -z "$CHECKOUT_SHA" ]; then
echo "[verify] FATAL: git rev-parse HEAD returned nothing — cannot certify commit identity" >&2
exit 1
fi
if [ "$CI_COMMIT_SHA" != "$CHECKOUT_SHA" ]; then
echo "[verify] FATAL: provider commit ($CI_COMMIT_SHA) != checkout HEAD ($CHECKOUT_SHA)" >&2
exit 1
fi
echo "[verify] commit identity confirmed: $CHECKOUT_SHA"
# (b) Canonical terminal verification. Caller-provided prerequisites the
# runner expects (see .woodpecker/ci.yml comments): bash/rsync for the
# guard stages, openssl + the pinned pi binary for the test stage. git is
# baked into ci-base but re-asserted here so the identity check above can
# never silently depend on a stale baked image. DATABASE_URL is
# deliberately NOT set: the canonical command must hold on the PGlite
# path too and never sets or requires a database itself.
- apk add --no-cache bash rsync openssl git
- npm install -g @earendil-works/[email protected]
- pnpm verify:release
depends_on:
- install
build:
image: *node_image
commands:
@@ -108,7 +55,6 @@ steps:
- pnpm build
depends_on:
- install
- verify
publish-npm:
image: *node_image
@@ -168,7 +114,6 @@ steps:
exit 1
depends_on:
- build
- verify
publish-next-npm:
image: *node_image
@@ -247,7 +192,6 @@ steps:
echo "[publish-next] @mosaicstack/mosaic@next resolves to $RESOLVED_VERSION"
depends_on:
- build
- verify
# TODO: Uncomment when ready to publish to npmjs.org
# publish-npmjs:
@@ -261,7 +205,6 @@ steps:
# - bash scripts/publish-npmjs.sh
# depends_on:
# - build
# - verify
# when:
# - event: [tag]
@@ -270,9 +213,9 @@ steps:
when: *image_build_when
environment:
REGISTRY_USER:
from_secret: REGISTRY_USERNAME
from_secret: gitea_username
REGISTRY_PASS:
from_secret: REGISTRY_PASSWORD
from_secret: gitea_password
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_COMMIT_TAG: ${CI_COMMIT_TAG}
CI_COMMIT_SHA: ${CI_COMMIT_SHA}
@@ -299,16 +242,15 @@ steps:
/kaniko/executor --context . --dockerfile docker/gateway.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
build-appservice:
image: gcr.io/kaniko-project/executor:debug
when: *main_image_build_when
environment:
REGISTRY_USER:
from_secret: REGISTRY_USERNAME
from_secret: gitea_username
REGISTRY_PASS:
from_secret: REGISTRY_PASSWORD
from_secret: gitea_password
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_COMMIT_TAG: ${CI_COMMIT_TAG}
CI_COMMIT_SHA: ${CI_COMMIT_SHA}
@@ -326,16 +268,15 @@ steps:
/kaniko/executor --context . --dockerfile docker/appservice.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
build-web:
image: gcr.io/kaniko-project/executor:debug
when: *main_image_build_when
environment:
REGISTRY_USER:
from_secret: REGISTRY_USERNAME
from_secret: gitea_username
REGISTRY_PASS:
from_secret: REGISTRY_PASSWORD
from_secret: gitea_password
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_COMMIT_TAG: ${CI_COMMIT_TAG}
CI_COMMIT_SHA: ${CI_COMMIT_SHA}
@@ -353,4 +294,3 @@ steps:
/kaniko/executor --context . --dockerfile docker/web.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
+2 -2
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@@ -138,9 +138,9 @@ mosaic brain tasks
mosaic brain conversations
# Agent forge pipeline
mosaic forge run [--simulate] # fails closed (FORGE_NO_EXECUTOR) with no executor wired; --simulate for typed simulated runs
mosaic forge run
mosaic forge status
mosaic forge resume [--simulate] # same fail-closed rule as forge run
mosaic forge resume
mosaic forge personas
# Structured logging
@@ -190,13 +190,7 @@ beforeEach((ctx) => {
});
afterAll(async () => {
// Cleanup only when the fixture actually installed rows. `handle` is set
// before the first query (createDb connects lazily), so on an unreachable
// database `handle` is truthy while nothing was inserted — cleanup must
// honor `dbAvailable` or the skip path fails the file with ECONNREFUSED in
// afterAll (caught live by the publish pipeline's no-DATABASE_URL verify
// step, pipeline 2486).
if (!handle || !dbAvailable) return;
if (!handle) return;
const db = handle.db;
// Delete in dependency order (FK constraints)
-35
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@@ -1368,38 +1368,3 @@ All work is **alpha** (< 0.1.0) until Jason approves 0.1.0 beta release.
10. ASSUMPTION: **Conversations and messages get their own PG tables** (not stored in brain's entity model). They follow a chat-specific schema with proper foreign keys to users and projects. Rationale: Chat has different access patterns (streaming, pagination, search) than brain entities.
11. RESOLVED: **Pi handles all target LLM providers natively.** Anthropic, OpenAI/Codex, Z.ai, Ollama, LM Studio, and llama.cpp are all supported via Pi's built-in providers or `models.json` configuration with `openai-completions` API type. No custom provider adapters needed in @mosaicstack/agent — only configuration management.
---
## Release Integrity Workstream (RI, #1275)
### Problem and objective
At `next` 476db12b (review of 2026-08-17), publication from `next` is not bound to the full verification pipeline for the same commit: the publish pipeline's publish steps depend on `build` only, while ordinary push CI excludes `next`. Public Forge/MACP paths contain false-success placeholders: a stub executor that reports `completed` with exit zero, planning/remediation gates that execute literal `true`, a review gate that echoes an approving verdict, and a gate runner that treats empty commands and unimplemented CI-provider gates as passing. Shipping UI surfaces can render a failed fetch as an empty, healthy collection.
Objective: for alpha 0.0.50, the release cannot publish, report, or display work state that the repository has not actually verified. Decisions SDLC-D-033 through SDLC-D-038 (Jason, 2026-08-17) scope this floor; full decision text and required-behavior lists live in jarvis-brain `docs/plans/2026-08-16_mosaic-stack-sdlc-protocol.md` and `data/decisions/mosaic-stack-sdlc-protocol.json`. This section restates only the normative requirements.
### Normative requirements
1. **RI-N1 Exact-commit publication verification (SDLC-D-034).** One canonical terminal verification command performs self-contained re-verification in the publish pipeline against the job's checked-out commit before any external publication effect. The command contains or invokes the complete mandatory verification set (semantic parity with the PR merge gate, including sanitization, upgrade-guard, typecheck, lint, format check, tests, and build); CI and publication do not maintain separate semantic checklists. Every publish step depends on the verification step in the executable pipeline DAG. Provider commit identity and `git rev-parse HEAD` must identify the same commit. Missing, skipped, cancelled, stale, or inconclusive checks fail closed. Documentation-only runs may skip publication but cannot bypass verification when a publication effect will occur. A negative control must prove that a broken check blocks every publish step.
2. **RI-N2 Fail-closed Forge/MACP with explicit simulation (SDLC-D-035).** Simulation requires explicit caller intent (e.g. `--simulate`) and produces a distinct typed `simulated` state that can never satisfy dependencies, acceptance criteria, gates, merge, or release. Normal execution exits nonzero with a typed capability failure when a required executor, reviewer, command, or CI provider is absent — no stub completion, no literal-`true` gates, no synthetic approvals, no empty-command passes. A manual gate with no automation enters a waiting state; it does not pass. Positive tests prove explicit simulation still works; negative controls prove simulation and every missing-provider case cannot advance lifecycle state.
3. **RI-N3 One transitional PRD authority (SDLC-D-036).** `@mosaicstack/prdy` structured storage under `docs/prdy/`, driven by `mosaic mission --plan`, is the authoritative PRD representation for the alpha. `mosaic prdy` either routes through the same application service or operates only as an explicit, named Markdown import/export adapter; `docs/PRD.md` is not a peer authority. `mission --plan` must persist the mission↔PRD linkage (mission id/version, PRD id/version, selected requirements). Markdown output is a generated view carrying source identity; editing it cannot mutate authority silently. Import is explicit, validated, and conflict-aware (proposed successor, never overwrite). Structural validity is separate from approval.
4. **RI-N4 One quality-rails evaluator (SDLC-D-037).** The TypeScript quality-rails package is the sole authoritative evaluator. A complete probe inventory maps every current TypeScript and shell check to one canonical check with disposition (preserve/strengthen/retire, each named). Effective shell enforcement probes are absorbed before their independent paths retire; expected-file presence alone is not parity. The evaluator returns typed results (`passed`/`failed`/`blocked`/`error`/`not-applicable`) with check version, subject, and reason; missing implementation, missing input, unknown check, process error, timeout, or malformed output can never become `passed` or an unqualified skip. Check definitions and policy are versioned and digested. Shell commands become thin adapters with no separate verdict logic. The canonical terminal verification command (RI-N1) invokes this evaluator rather than duplicating its logic. Contract, parity, and negative-control tests are required, plus independent review of probe equivalence.
5. **RI-N5 Consequence-aware stale UI (SDLC-D-038).** Mission Control distinguishes typed freshness states (`current`, `stale`, `partial`, `unknown`, `unavailable`) rather than inferring from empty arrays or null. A failed fetch never renders as an empty healthy collection. Last-known data may display for situational awareness only with source identity, version, and age visibly labeled; any derived completion/assurance/release verdict whose inputs are stale becomes `unknown`; all state-changing actions are disabled until fresh state loads and is revalidated. With no verified snapshot, surfaces show an explicit unavailable state. Cache corruption, cross-workspace data, schema mismatch, and version regression invalidate the snapshot. Tests cover the failure matrix (network, auth, malformed, partial, corruption, stale age, schema mismatch, recovery, stale-action rejection) with negative controls proving no case yields a current green verdict or enabled mutation.
### Acceptance criteria
- AC-RI-1: A push to `next` that fails any mandatory verification step publishes nothing (no npm package, no image), demonstrated by a checked-in negative control and by pipeline evidence on a real `next` publish run where the verification step is green and every publish step depends on it.
- AC-RI-2: With no executor/reviewer/CI provider wired, Forge and MACP normal runs exit nonzero with typed capability failures; with `--simulate`, runs complete but every result is typed `simulated` and cannot satisfy any gate, dependency, or completion state — proven by unit tests including negative controls.
- AC-RI-3: A PRD created or revised through either `mosaic mission --plan` or `mosaic prdy` resolves to one authority under `docs/prdy/` with stable identities and versions; the mission↔PRD linkage survives restart; a Markdown export is labeled as generated and cannot silently become a second writer; divergent legacy content blocks baseline claims until explicitly resolved — proven by contract tests.
- AC-RI-4: `quality-rails check` through any entry point (TS CLI, framework shell adapter) returns the same typed verdict for the same subject; the probe inventory names every legacy check's disposition; a deliberately broken probe fails closed — proven by contract/parity/negative-control tests and independent review of probe equivalence.
- AC-RI-5: No shipping surface renders a failed fetch as an empty healthy state; stale/partial/unavailable states are typed, labeled, and mutation-disabled — proven by the failure-matrix tests.
- AC-RI-6: All cards merged to `next` via squash PR with terminal-green CI; release evidence for 0.0.50 records commit, verification run, and published artifacts.
### Out of scope
The canonical dispatcher/control-plane vertical slice (work graph, execution attempts, fenced leases, typed check-in, independent verifier dispatch) is decided post-alpha (SDLC-D-033, option B). Multi-pipeline verification certificates (SDLC-D-034 option B) are post-alpha. Full AF-1..AF-4 objective matrices and Mission Control portfolio surfaces are post-alpha.
-42
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@@ -1,42 +0,0 @@
# Tasks — Release Integrity Workstream (RI-050, #1275)
> Single-writer: the RI-050 orchestrator (jarvis, dragon-lin) only. Workers read but never modify.
>
> **Mission:** alpha 0.0.50 release-integrity floor (decisions SDLC-D-033..038).
> **PRD:** [docs/PRD.md § Release Integrity Workstream](../PRD.md#release-integrity-workstream-ri-1275)
> **Issue:** #1275 (remains open until RI-V-001 closes)
> **Base branch:** `next` (all cards branch from `origin/next`, squash-merge via PR)
>
> **Execution note:** the `agent` column uses `pi-glm-5.3` — outside the pipeline-cron model
> table on purpose. This workstream is executed by jarvis on dragon-lin with local pi workers
> (`pi --model zai/glm-5.3:high`); pipeline crons must not auto-claim these rows.
>
> **Status values:** `not-started` | `in-progress` | `done` | `blocked` | `failed` | `needs-qa`
> `done` requires: repo quality gates green, independent review recorded, terminal-green CI on
> the PR head, squash merge to `next`, and acceptance evidence in notes.
| id | status | description | issue | agent | repo | branch | depends_on | estimate | notes |
| -------- | ----------- | -------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | ----- | ---------- | ----------------- | --------------------------------- | ---------------------------------------------------------- | -------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| RI-0-001 | done | Bootstrap: issue #1275, PRD section, this DAG, scratchpad (docs only) | #1275 | pi-glm-5.3 | mosaicstack/stack | docs/ri-050-mission-bootstrap | — | 6K | PR #1276 (head 758659dd): docs-only, CI green (2475). Review requested from fargo. Merges first (no publish run). |
| RI-1-001 | done | RI-N1: canonical terminal verification command + publish-pipeline exact-commit gate (every publish step depends on verify; commit identity check; fail closed) | #1275 | pi-glm-5.3 | mosaicstack/stack | feat/ri-050-publish-gate | RI-0-001 | 25K | PR #1277 (head 46784c8d): CI GREEN at head after serialized retry (pipeline 2476, 2026-08-18) - earlier red was CI-agent contention (web SPA timeouts under concurrent pipelines), not code. Review requested from fargo at pinned head (comms 20260818T021025Z). |
| RI-1-002 | done | RI-N1 negative control: checked-in tests proving a broken mandatory check blocks every publish step and that DAG edges cannot be bypassed | #1275 | pi-glm-5.3 | mosaicstack/stack | test/ri-050-publish-gate-negative | RI-1-001 | 12K | |
| RI-2-001 | done | RI-N2 (Forge): remove stub-executor false success; `--simulate` typed `simulated` results that satisfy nothing; literal-`true` gates and echo-review replaced with real gates or typed waiting-for-authority | #1275 | pi-glm-5.3 | mosaicstack/stack | fix/ri-050-forge-fail-closed | RI-0-001 | 20K | Independent review APPROVED 2026-08-17 (Gitea review 172 on PR #1278, head 99b8f6ea; reviewing seat fargo — recorded under shared host principal mos-dt-0, provenance correction posted by fred; wrapper gap filed by fred). Executed at head: forge tests 116/116, lint green, typecheck green after building macp dist (minimal-install artifact, not a defect), workspace typecheck 45/45, no external type consumers of the changed interfaces. CI red = known lane-wide fleet-test failure only, carries no information about this change (fred, log-content analysis, pipelines 2456-2458). Non-blocking finding: README L141-143 + skills/mosaic-forge/SKILL.md document bare forge run/resume, which now fails closed — fast-follow docs touch. Merge queued behind #1270. UPDATE 2026-08-18: #1270 merged; CI GREEN at head 4917df1f via serialized retry (pipeline 2477) - root cause of prior reds was CI-agent contention (web SPA timeouts under concurrent pipelines), superseding the fleet-test-failure theory. |
| RI-2-002 | done | RI-N2 (MACP): gate runner fails closed on empty commands, stub executors, and unimplemented CI-provider gates unless explicit simulate; typed capability failures | #1275 | pi-glm-5.3 | mosaicstack/stack | fix/ri-050-macp-fail-closed | RI-0-001 | 15K | PR #1293 (head 2097379e): CI green (pipeline 2465), independent review APPROVED (Gitea review 173, jarvis seat, 2026-08-17) - macp 109/109 verified at head. Merge queued behind #1276/#1277/#1278. |
| RI-3-001 | in-progress | RI-N4: complete probe inventory mapping every TS and shell quality-rail check to one canonical check with disposition (preserve/strengthen/retire, each named) | #1275 | pi-glm-5.3 | mosaicstack/stack | docs/ri-050-qr-probe-inventory | RI-0-001 | 12K | |
| RI-3-002 | not-started | RI-N4: TS evaluator absorbs effective shell probes; typed results (passed/failed/blocked/error/not-applicable) with versioned digested check definitions; shell commands become thin adapters; contract/parity/negative-control tests | #1275 | pi-glm-5.3 | mosaicstack/stack | feat/ri-050-qr-evaluator | RI-3-001 | 30K | |
| RI-4-001 | in-progress | RI-N3: one PRD application service — `mission --plan` persists mission↔PRD linkage (ids/versions/selected requirements); `mosaic prdy` routes through the service or becomes a named import/export adapter; Markdown is a labeled generated view; explicit conflict-aware import | #1275 | pi-glm-5.3 | mosaicstack/stack | feat/ri-050-prd-authority | RI-0-001 | 35K | PR #1294 (head 8d258e1d): CI green (pipeline 2466), independent review APPROVED (Gitea review 174, jarvis seat, 2026-08-17) - prdy 20/20 + command specs 9/9 at head. Merge queued behind #1276/#1277/#1278. |
| RI-5-001 | done | RI-N5: typed freshness states (current/stale/partial/unknown/unavailable); no failed-fetch-renders-empty; stale derived verdicts → unknown; mutations disabled when stale; failure-matrix tests | #1275 | pi-glm-5.3 | mosaicstack/stack | feat/ri-050-web-stale-safety | RI-0-001 | 25K | |
| RI-V-001 | not-started | Final verification + release evidence: all cards verified merged, negative controls demonstrated, real `next` publish run green on exact commit, evidence pack recorded | #1275 | pi-glm-5.3 | mosaicstack/stack | docs/ri-050-release-evidence | RI-1-002, RI-2-001, RI-2-002, RI-3-002, RI-4-001, RI-5-001 | 10K | |
## Dispatch waves (max 2 parallel workers)
1. RI-1-001 + RI-2-001
2. RI-2-002 + RI-4-001
3. RI-3-001 + RI-5-001
4. RI-1-002 + RI-3-002
5. RI-V-001
## Budget
Derived soft cap: 250K tokens (no explicit cap given). Projected total: 190K.
Conservative mode (1 worker) above 70% projected; freeze above 90%.
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@@ -1,242 +0,0 @@
# Scratchpad — RI-050 orchestrator (jarvis, dragon-lin)
Mission: alpha 0.0.50 release-integrity floor. Issue #1275. Base `next` @ 476db12b.
Design SSOT: jarvis-brain `docs/plans/2026-08-16_mosaic-stack-sdlc-protocol.md` (SDLC-D-033..038).
## Mode (Jason's directives)
- Orchestrator: jarvis (this session, dragon-lin). NOT mos-claude; work stays on this host.
- Workers: local pi headless — `pi --model zai/glm-5.3:high -p` in the card's worktree, tools read,bash,edit,write.
- Delegation override of stack AGENTS.md `agent` column: rows carry `pi-glm-5.3` (outside cron table so no auto-claim).
- Target branch: `next`. Cards branch from `origin/next`, squash-merge via PR.
## Operational constraints (measured this session)
- Main checkout at `/home/jwoltje/src/mosaic-stack` is a dirty diverged `main` (ahead 1139/behind 711) — NEVER touched. All work in `/home/jwoltje/src/mosaic-stack-worktrees/<branch>`.
- Disk: /home 187G free. /tmp only 8.7G — keep pnpm stores/node_modules under /home.
- `main` and `next` have DIVERGED; PRs target `next`.
- Identity: pin `GITEA_LOGIN=mosaicstack-jarvis` for all wrapper ops. Issue #1275 verified authored by @jarvis.
- `ci-queue-wait.sh` on this host is fail-open (board: fix #1032 not installed) — substitute SHA-status checks via `/commits/{sha}/status` and diff failing step names.
- CI on PRs runs `pull_request` pipelines (any branch) incl. ci-postgres service. Push CI runs on main only; publish runs on push/tag to next + manual.
- Wrapper gaps on this host per board (7 gaps; e.g. no pr-review-list, issue-assign broken, pr-merge makes no trailers): verify outcomes by reading back provider state, never trust rc alone.
- Publish pipeline currently: install → build → publish-npm/publish-next-npm (+image). No verify. CI steps: install, sanitization, upgrade-guard, typecheck, lint, format, test, ci-postgres.
## Budget
Soft cap 250K. Projected 190K across 10 cards. Track per-card used vs estimate in TASKS.md notes.
## Progress log
- 2026-08-16 23:52 — Issue #1275 created (@jarvis verified).
- 2026-08-16 23:5x — Bootstrap branch `docs/ri-050-mission-bootstrap` from origin/next@476db12b; PRD section + TASKS.md + this scratchpad written. RI-0-001 in-progress.
## Wave 1 dispatched (2026-08-17 00:35)
- RI-1-001 worker: pi glm-5.3:high, pid 2322125, worktree ri-1-001, log /var/tmp/ri-050/ri-1-001-run.log
- RI-2-001 worker: pi glm-5.3:high, pid 2322126, worktree ri-2-001, log /var/tmp/ri-050/ri-2-001-run.log
- Gotcha recorded: pi has no -f flag (that's pi-do.sh); pass brief as positional message. First launch died "Unknown option: -f" — relaunched.
- CI lane: PR #1276 (bootstrap) fails `test` at base like every next PR — fred's green #1270 unblocks (comms sent 2026-08-17T05:21Z, `comms/20260817T052148Z__from-jarvis__650fe8.md`). Merge gate for all RI PRs queues behind #1270.
- Live RI-N1 evidence posted to #1275 (comment 22915): pipeline 2439 publish-next-npm SUCCESS beside build-gateway FAILURE.
---
# HANDOFF — RI-050 continuation (written 2026-08-17 ~08:45 UTC, jarvis/dragon-lin)
You are taking over the alpha 0.0.50 release-integrity workstream in place. Everything you
need is on the remote. Read this whole file, then `docs/release-integrity/TASKS.md` (same
branch), then the PRD section (`docs/PRD.md` § Release Integrity Workstream, same branch).
## Identity / mode
- Orchestrator identity: `jarvis` (dragon-lin). You continue as the RI-050 orchestrator under
whatever identity Jason gives you — if you are NOT jarvis, say so in comms and PR bodies.
- Jason's standing directives for this mission: work happens on THIS repo (mosaicstack/stack),
PRs target `next` (NOT main), workers are local pi headless sessions on
`zai/glm-5.3:high`. Do not hand this to mos-claude. Do not borrow other seats' lanes.
- All wrapper ops: pin `GITEA_LOGIN=mosaicstack-jarvis` (issue #1275 was verified authored by
@jarvis; keep identity consistent or verify yours with issue-view and READ BACK user.login).
- CI substitution rule (this host's ci-queue-wait.sh is fail-open; fix #1032 not installed):
judge CI by SHA-status via `/api/v1/repos/mosaicstack/stack/commits/{sha}/status` or the
woodpecker API (`pipeline-status.sh -r mosaicstack/stack -n N -f json`), and DIFF THE
FAILING STEP NAMES rather than trusting rc.
## Mission state at handoff
Mission: alpha 0.0.50 release-integrity floor. Issue #1275 (open, has live-evidence comment).
Decisions SDLC-D-033..038 live in jarvis-brain
`docs/plans/2026-08-16_mosaic-stack-sdlc-protocol.md` (normative text also mirrored in the
PRD section on this branch, so this repo is self-sufficient).
Base: `origin/next` @ 476db12b. NOTE: `main` and `next` have DIVERGED — never base on main.
Branches (all pushed, all clean trees):
- `docs/ri-050-mission-bootstrap` @ 5114faa2 → PR #1276 (open, mergeable) — bootstrap docs +
this scratchpad + TASKS.md DAG. STATUS: CI red on `test` only, which is the known lane-wide
failure (see blocker below); own prettier issue already fixed.
- `feat/ri-050-publish-gate` @ 0aa5ed35 → PR #1277 (open, mergeable) — RI-1-001 COMPLETE
(worker reported success, orchestrator review PASSED: verify step asserts CI_COMMIT_SHA ==
git rev-parse HEAD then runs canonical `pnpm verify:release`; every publish/image step
depends_on verify directly, confirmed by parsing the DAG: publish-npm, publish-next-npm,
build-gateway/appservice/web all -> [build, verify]; invariant test
scripts/verify-release.test.mjs passes 7/7 locally with negative fixtures). CI: same known
lane-red `test` step only.
- `fix/ri-050-forge-fail-closed` @ 99b8f6ea → PR #1278 (open, mergeable) — RI-2-001 worker
reported success (typed `FORGE_*` capability errors, --simulate typed simulated everywhere,
vacuous true/echo gates replaced, closed ForgeOutcome set, 116 tests green incl. 16 new).
ORCHESTRATOR REVIEW NOT YET DONE — your first job. Review the diff
(1391 insertions across forge src), check the fail-closed paths and that simulated
results cannot satisfy any consumer, run `pnpm --filter @mosaicstack/forge test`.
## The one blocker
Every `next` PR pipeline is red on ONE assertion:
`packages/mosaic/framework/tools/fleet/test-start-agent-session.sh:103` ("host provides 'pi'
in the system path"). Pre-existing at base; affects PRs #1276/#1277/#1278 identically.
fred's PR #1270 ("unblocks every PR on next") is green and open — it is HIS to merge; do not
merge it yourself. jarvis sent comms (`comms/20260817T052148Z__from-jarvis__650fe8.md` in
jarvis-brain) asking merge timing; no reply yet as of handoff. Merge gates for ALL RI PRs
queue behind #1270 landing. Until then: review/develop freely, merge nothing that needs the
green gate (docs-only #1276 arguably could merge red-lane with Jason's explicit call — ask,
don't assume).
## Remaining DAG (docs/release-integrity/TASKS.md is canonical)
Wave 2 (next): RI-2-002 MACP fail-closed (brief pattern: mirror RI-2-001 for
packages/macp/src/gate-runner.ts — empty commands, stub executors, unimplemented CI-provider
gates fail closed; explicit simulate) and RI-4-001 PRD authority (one PRD service;
@mosaicstack/prdy docs/prdy authoritative via `mosaic mission --plan`; `mosaic prdy` routes
or becomes named Markdown adapter; mission<->PRD linkage persists — see PRD RI-N3).
Wave 3: RI-3-001 probe inventory (docs), RI-5-001 web stale-safety.
Wave 4: RI-1-002 negative-control tests, RI-3-002 TS evaluator absorbs shell probes.
Final: RI-V-001 evidence pack (real green next publish run post-gate + all cards verified).
## Worker mechanics (measured, reuse)
- Dispatch: create worktree `git -C /home/jwoltje/src/mosaic-stack worktree add
/home/jwoltje/src/mosaic-stack-worktrees/<id> -b <branch> origin/next`, write a brief to
/var/tmp/ri-050/, then run from INSIDE the worktree:
`pi -p --no-session --model zai/glm-5.3:high --tools read,bash,edit,write "$(cat brief.md)"`
(pi has NO -f flag — pass the brief as a positional message; first dispatch died on that).
- Briefs for 1-001/2-001 are at /var/tmp/ri-050/ on dragon-lin (may not survive; the
pattern is fully described above and in TASKS.md).
- Briefs must carry: worktree path, branch, base, requirements, known base-red list (so the
worker doesn't chase it), gates to run, PR creation command with GITEA_LOGIN pin, "do NOT
merge, do NOT touch docs/TASKS.md", and the JSON report format.
- Verify worker claims: read the PR, run their tests yourself, parse pipeline step names.
## Do-not-touch
- Main checkout at /home/jwoltje/src/mosaic-stack (dirty diverged main) — never touch.
- fred's open PRs (#1270 and others) — review evidence welcome, merging his is not yours.
- Other RI PRs' authors' lanes: #1277/#1278 are yours to gate and merge ONCE lane is green
and review is recorded.
- Never `--no-verify`; never bypass the wrapper-fails-closed rule (wrapper failure ⇒
`blocked + report exact command + stop`).
## Session-restore command sequence
1. `git -C /home/jwoltje/src/mosaic-stack-worktrees/ri-050 fetch origin --prune`
2. Read this file + `docs/release-integrity/TASKS.md` + PRD section.
3. Check PR states (#1270, #1276, #1277, #1278) and lane CI (SHA-status per above).
4. Review RI-2-001 (PR #1278) if not yet done; then dispatch wave 2.
— jarvis, 2026-08-17
---
# CONTINUATION — fargo (sb-it-1-dt)
Orchestrator seat is now **fargo** on sb-it-1-dt (Jason, 2026-08-17): Claude seat, worktree discipline
per fred's ruling (`~/agent-work/<slug>`, create → work → commit → push → remove as one act; the
helper's `/src` refusal is a web1 convention, does not bind here). fred supports; lane rulings are
his. Workers remain local pi `zai/glm-5.3:high` + limited Claude per Jason.
## 2026-08-17 — RI-2-001 independent review DONE
- **PR #1278 APPROVED** (Gitea review 172, pinned to head 99b8f6ea). Executed evidence, not read-only:
forge suite 116/116 at head (matches PR claim), forge lint green, forge typecheck green after
building `@mosaicstack/macp` dist (TS2307 on bare `pnpm install --frozen-lockfile` is a
minimal-install build-order artifact — the macp import is type-only, vitest passes unbuilt; CI
installs build workspace deps, hence green there), **workspace typecheck 45/45 at head**,
consumer sweep: no external type consumers of RunManifest/StageStatus/ForgeTaskResult/
TaskExecutor; only importer of the package is packages/mosaic via registerForgeCommand
(smoke test asserts registration/help only — cannot break). Digest gate (shaggy's) before==after
with both-arm reactivity controls.
- CI red on #1276/#1277/#1278: lane-wide `test` failure only
(test-start-agent-session.sh:103, fred's guard mis-wired; #1270 unwires it). Fred measured log
content: one real byte-identical failure per pipeline (2456/2457/2458); 13 of ~14 `FAIL` grep
hits are passing fail-loud test NAMES. **The red carries no information about the RI changes.**
- Non-blocking finding: README L141-143 + skills/mosaic-forge/SKILL.md document bare
`mosaic forge run`/`resume`, which now exits 1 FORGE_NO_EXECUTOR — fast-follow docs touch.
- **Identity incident, ruled on by fred:** review 172 recorded under shared host principal
mos-dt-0, not fargo. Mechanism (measured, wrapper source): pr-review.sh resolves its acting login
from the tea login list only; no fargo tea login on this host → silent host-default fallback;
MOSAIC_GIT_IDENTITY is only read in detect-platform.sh get_gitea_token's fallback arm, never
reached. Exact-id read-back verifies against the writing token, so it passed while attribution
was wrong — durable-provenance machinery proves the write, not the seat. Fred's ruling: review
172 stands (substance/verdict/pin correct; label wrong); NO re-approval (one approval,
annotated, is the stronger record); fred posts the provenance correction under @fred with
--login fred-ms (hard-fail path); no fargo tea login ever (freeze + Jason's to authorize);
tooling gap filed by fred. Also explains (does not reopen) #1228's mos-dt-0 attribution.
- Merge gate: all RI PRs queue behind fred's green #1270 (Jason's call).
## Next
1. Wave 2 dispatch: RI-2-002 (MACP fail-closed, mirror RI-2-001 pattern for
packages/macp/src/gate-runner.ts) + RI-4-001 (PRD authority). Two parallel workers max.
2. Docs fast-follow (README + mosaic-forge skill) — fold into #1276 or a tiny docs card.
3. RI-V-001 evidence at the end.
— fargo, 2026-08-17
---
# RESUMPTION + DAILY-HANDOFF PROTOCOL (Jason, 2026-08-17)
Orchestrator seat is back with **jarvis** (dragon-lin). Expect daily handoff between jarvis
and fargo. Protocol (both seats, every handoff):
1. **This file is the shared mission log.** Append a dated section per session: state
measured, actions taken, PR/review states, next actions. Never rewrite prior sections.
2. **TASKS.md stays current within one session** — status, PR number in notes, review
evidence. Stale rows are handoff debt.
3. **Cross-review rule (SDLC-D-011 in practice):** the reviewing seat must differ from the
producing seat. jarvis reviews fargo-dispatched PRs, fargo reviews jarvis-dispatched
PRs. Producers are always pi workers; dispatching seats verify before push; the other
seat records the Gitea review.
4. Handoff = append here + push + (optional) issue #1275 comment if a decision changed.
## RESUMED — jarvis/dragon-lin, 2026-08-17 (afternoon)
- Measured: next = 8199261c (#1270 merged — lane unblocked for new PRs). #1293/#1294
(fargo, wave 2) CI-green, mergeable, no recorded reviews. #1276/#1277/#1278 still based
on 476db12b with stale red CI → need rebase onto 8199261c. #1278 review pinned to old
head 99b8f6ea by @mos-dt-0 (fargo's, mis-attributed per his note) — rebase will dismiss
it; re-approval must come from fargo/fred (author is @jarvis, cannot self-approve).
- Live evidence #2: push pipeline 2462 (the #1270 merge itself) ran publish-next-npm
SUCCESS beside build-gateway FAILURE again.
- Plan: rebase the three original branches; independently review #1293/#1294; merge order
once green+reviewed: #1276 (docs) → #1277 (publish gate) → #1278/#1293/#1294 (code).
After #1277 merges, watch the next push pipeline prove the verify gate live.
- fargo's non-RI PRs (#1291/#1296/#1297/#1281) stay strictly his lane.
## jarvis session 2026-08-17 (evening) — reviews, rebases, merge plan
- Rebased #1276/#1277/#1278 onto 8199261c (heads 59e2c460 / 46784c8d / 4917df1f);
invariant tests 7/7 and forge 116/116 re-run green at new heads. #1270 touched
test-enumeration-exclusions.txt + package.json, NOT ci.yml — no semantic overlap with
#1277's ci.yml changes (checked, was a real concern).
- Independent reviews recorded: #1293 APPROVED (review 173; macp 109/109; fail-closed paths
+ aggregate state machine verified), #1294 APPROVED (review 174; prdy 20/20 + command
specs 9/9; single-writer + linkage persistence + labeled export + conflict-aware import
verified). Note: 19 unrelated mosaic suites fail on bare minimal install (known workspace
build-order artifact, documented by fargo) — not this change.
- Measured: `next` has NO branch protection (API: only main listed). Cross-seat review
discipline is protocol-enforced, not Gitea-enforced. Flagged to fargo for Jason: direct
pushes to next trigger ungated publishes; protection is Jason's call (#1231 adjacent).
- Merge order planned: #1276 (docs-only — no publish run) -> #1277 (first gated publish)
-> #1278 -> #1293 -> #1294. Sent fargo review requests with pinned head SHAs
(comms/20260818T011932Z__from-jarvis__a9c02b.md). Not merging #1293/#1294 before my three
clear fargo's review — order optimality beats speed; every pre-#1277 merge publishes ungated.
- CI on the three rebased heads: pending at time of this entry.
-1
View File
@@ -34,7 +34,6 @@ export default tseslint.config(
'packages/storage/vitest.config.ts',
'packages/mosaic/vitest.config.ts',
'packages/mosaic/__tests__/*.ts',
'packages/forge/__tests__/*.ts',
'tools/federation-harness/*.ts',
],
},
-1
View File
@@ -9,7 +9,6 @@
"preflight": "node scripts/preflight.mjs",
"clean:generated": "node scripts/clean-generated.mjs",
"typecheck": "pnpm preflight && turbo run typecheck",
"verify:release": "node scripts/verify-release.mjs",
"test:checkout": "node --test scripts/*.test.mjs",
"test": "pnpm test:checkout && turbo run test && pnpm run test:installer",
"test:installer": "bash tools/install-next-lane.test.sh",
-40
View File
@@ -539,43 +539,3 @@ Not every brief needs full Board of Directors review. The classification system
### Backward compatibility
Existing briefs without a `class` field are auto-classified. The default (no matching keywords) is `strategic`, so all existing runs get the full pipeline unless keywords trigger `technical`.
---
## Fail-Closed Execution & Explicit Simulation (SDLC-D-035)
**Added:** 2026-08-17
Forge fails closed when a required capability is missing. It never runs a
pipeline with a stub executor and reports success.
### Normal mode (default)
- No task executor wired → the CLI exits nonzero with the typed capability
error `FORGE_NO_EXECUTOR`. No run is created.
- A stage whose gate is approval-based (board approval, planning approvals,
remediation re-review, discovery/analysis attestations) records a typed
`waiting-for-authority` stage result and raises `FORGE_AUTHORITY_REQUIRED`.
It never passes vacuously.
- A stage whose gate requires an unwired provider (AI reviewer, CI pipeline)
records a typed `blocked` stage result and raises `FORGE_NO_REVIEWER` /
`FORGE_NO_CI_PIPELINE`. The synthetic echo-review approval in `06-review`
and all vacuous `true` gates were removed.
### Explicit simulation (`--simulate`)
Opts into stub/synthetic execution. Every stage result, every gate result, and
the run manifest carry the distinct typed status `simulated` (manifest also
records `mode: "simulated"`). `simulated` is a non-satisfying outcome:
`isSatisfyingOutcome()` and all completion/gate consumers treat only `passed`
as satisfying. The CLI exits 0 for a simulated run only because the caller
explicitly passed `--simulate`, and prints a loud SIMULATED banner.
### Typed outcome model
Every gate/task outcome is one of the closed set
`passed | failed | blocked | error | waiting-for-authority | simulated |
not-applicable`, with the reason recorded on the stage status and each gate
result in `manifest.json`. Missing implementations, missing gate evidence,
unknown stages, process errors, and timeouts map to fail-closed members —
never to `passed`.
@@ -1,319 +0,0 @@
import fs from 'node:fs';
import os from 'node:os';
import path from 'node:path';
import { describe, it, expect, beforeEach, afterEach } from 'vitest';
import { generateBoardTasks } from '../src/board-tasks.js';
import { STAGE_SPECS } from '../src/constants.js';
import { ForgeCapabilityError } from '../src/errors.js';
import {
evaluateStageGates,
gateLabel,
isCommandGate,
isSatisfyingOutcome,
} from '../src/outcomes.js';
import { loadManifest, runPipeline } from '../src/pipeline-runner.js';
import type { ForgeTask, ForgeTaskResult, TaskExecutor } from '../src/types.js';
/**
* Mock real executor that returns typed results.
*
* Command gates are "verified" by the mock so normal-mode runs can pass
* mechanically gated stages; authority/provider gates are never reported
* because they have no mechanical implementation.
*/
function createTypedExecutor(options?: {
failStage?: string;
gateOutcomes?: Record<string, 'passed' | 'failed' | 'simulated' | 'error' | 'blocked'>;
}): TaskExecutor & { submittedTasks: ForgeTask[] } {
const submittedTasks: ForgeTask[] = [];
return {
submittedTasks,
async submitTask(task: ForgeTask) {
submittedTasks.push(task);
},
async waitForCompletion(taskId: string): Promise<ForgeTaskResult> {
const task = submittedTasks.find((t) => t.id === taskId);
const stageName = task?.metadata?.['stageName'] as string | undefined;
if (options?.failStage && stageName === options.failStage) {
return {
task_id: taskId,
outcome: 'failed',
reason: 'mock task failure',
completed_at: new Date().toISOString(),
exit_code: 1,
gate_results: [],
};
}
const gateResults = (task?.qualityGates ?? [])
.filter((gate) => isCommandGate(gate))
.map((gate) => {
const label = gateLabel(gate);
const outcome = options?.gateOutcomes?.[label] ?? 'passed';
return {
gate: label,
outcome,
reason: outcome === 'passed' ? 'mock verified' : `mock gate outcome: ${outcome}`,
};
});
return {
task_id: taskId,
outcome: 'passed',
reason: 'mock verified',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: gateResults,
};
},
async getTaskStatus() {
return 'completed' as const;
},
};
}
describe('fail-closed: no executor wired', () => {
let tmpDir: string;
let briefPath: string;
beforeEach(() => {
tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'forge-failclosed-'));
briefPath = path.join(tmpDir, 'brief.md');
fs.writeFileSync(briefPath, '# Fix bug\n\nA bugfix for lint cleanup.');
});
afterEach(() => {
fs.rmSync(tmpDir, { recursive: true, force: true });
});
it('throws a typed FORGE_NO_EXECUTOR capability error without --simulate', async () => {
await expect(
runPipeline(briefPath, tmpDir, {
// no executor, no simulate — must fail closed, never run with a stub
stages: ['00-intake'],
}),
).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_NO_EXECUTOR',
capability: 'task-executor',
});
});
it('does not create a run directory when failing closed on a missing executor', async () => {
try {
await runPipeline(briefPath, tmpDir, { stages: ['00-intake'] });
} catch {
// expected
}
expect(fs.existsSync(path.join(tmpDir, '.forge', 'runs'))).toBe(false);
});
it('completes with every result typed simulated when simulate is set', async () => {
const result = await runPipeline(briefPath, tmpDir, {
simulate: true,
stages: ['00-intake', '00b-discovery', '02-planning-1', '06-review'],
});
expect(result.manifest.mode).toBe('simulated');
expect(result.manifest.status).toBe('simulated');
for (const stage of result.stages) {
const stageStatus = result.manifest.stages[stage];
expect(stageStatus?.status, `stage ${stage}`).toBe('simulated');
expect(stageStatus?.status, `stage ${stage}`).not.toBe('passed');
expect(stageStatus?.reason, `stage ${stage}`).toBeTruthy();
for (const gateResult of stageStatus?.gateResults ?? []) {
expect(gateResult.outcome, `gate ${gateResult.gate} of ${stage}`).toBe('simulated');
expect(gateResult.outcome, `gate ${gateResult.gate} of ${stage}`).not.toBe('passed');
}
}
// The persisted manifest agrees.
const persisted = loadManifest(result.runDir);
expect(persisted.mode).toBe('simulated');
expect(persisted.status).toBe('simulated');
expect(persisted.stages['02-planning-1']?.status).toBe('simulated');
});
});
describe('fail-closed: typed outcome model', () => {
it('only passed satisfies the gate/dependency predicate', () => {
expect(isSatisfyingOutcome('passed')).toBe(true);
expect(isSatisfyingOutcome('failed')).toBe(false);
expect(isSatisfyingOutcome('blocked')).toBe(false);
expect(isSatisfyingOutcome('error')).toBe(false);
expect(isSatisfyingOutcome('waiting-for-authority')).toBe(false);
expect(isSatisfyingOutcome('simulated')).toBe(false);
expect(isSatisfyingOutcome('not-applicable')).toBe(false);
});
it('a simulated gate result cannot satisfy the stage gate evaluation', () => {
const evaluation = evaluateStageGates('05-coding', STAGE_SPECS['05-coding']!.qualityGates, {
task_id: 'FORGE-x-05',
outcome: 'passed',
reason: 'executor claims success',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [{ gate: 'pnpm lint', outcome: 'simulated', reason: 'simulated gate' }],
});
expect(isSatisfyingOutcome(evaluation.outcome)).toBe(false);
expect(evaluation.outcome).toBe('error');
});
it('a simulated task outcome cannot satisfy evaluation in normal mode', () => {
const evaluation = evaluateStageGates('00-intake', [], {
task_id: 'FORGE-x-00',
outcome: 'simulated',
reason: 'executor reported simulated',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [],
});
expect(isSatisfyingOutcome(evaluation.outcome)).toBe(false);
});
it('a missing gate result blocks the stage instead of passing vacuously', () => {
const evaluation = evaluateStageGates('05-coding', STAGE_SPECS['05-coding']!.qualityGates, {
task_id: 'FORGE-x-05',
outcome: 'passed',
reason: 'executor claims success',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [],
});
expect(evaluation.outcome).toBe('blocked');
});
});
describe('fail-closed: authority and provider gates', () => {
let tmpDir: string;
let briefPath: string;
beforeEach(() => {
tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'forge-authority-'));
briefPath = path.join(tmpDir, 'brief.md');
fs.writeFileSync(briefPath, '# Fix bug\n\nA bugfix for lint cleanup.');
});
afterEach(() => {
fs.rmSync(tmpDir, { recursive: true, force: true });
});
it.each(['02-planning-1', '03-planning-2', '04-planning-3', '07-remediate'])(
'planning/remediation stage %s yields waiting-for-authority (not passed) in normal mode',
async (stage) => {
const executor = createTypedExecutor();
let runDir: string | undefined;
try {
await runPipeline(briefPath, tmpDir, {
executor,
stages: [stage as string],
});
expect.unreachable('runPipeline should have failed closed');
} catch (err) {
expect(err).toBeInstanceOf(ForgeCapabilityError);
expect((err as ForgeCapabilityError).code).toBe('FORGE_AUTHORITY_REQUIRED');
runDir = path.join(tmpDir, '.forge', 'runs');
}
const runIds = fs.readdirSync(runDir!);
expect(runIds).toHaveLength(1);
const manifest = loadManifest(path.join(runDir!, runIds[0]!));
expect(manifest.stages[stage]?.status).toBe('waiting-for-authority');
expect(manifest.stages[stage]?.status).not.toBe('passed');
expect(manifest.status).toBe('waiting-for-authority');
},
);
it('review stage fails closed with a typed FORGE_NO_REVIEWER error in normal mode', async () => {
const executor = createTypedExecutor();
try {
await runPipeline(briefPath, tmpDir, {
executor,
stages: ['06-review'],
});
expect.unreachable('runPipeline should have failed closed');
} catch (err) {
expect(err).toBeInstanceOf(ForgeCapabilityError);
expect((err as ForgeCapabilityError).code).toBe('FORGE_NO_REVIEWER');
expect((err as ForgeCapabilityError).capability).toBe('reviewer');
}
const runsDir = path.join(tmpDir, '.forge', 'runs');
const runIds = fs.readdirSync(runsDir);
const manifest = loadManifest(path.join(runsDir, runIds[0]!));
expect(manifest.stages['06-review']?.status).toBe('blocked');
expect(manifest.stages['06-review']?.status).not.toBe('passed');
expect(manifest.status).toBe('failed');
});
it('review stage produces simulated results under --simulate', async () => {
const result = await runPipeline(briefPath, tmpDir, {
simulate: true,
stages: ['06-review'],
});
expect(result.manifest.mode).toBe('simulated');
expect(result.manifest.stages['06-review']?.status).toBe('simulated');
for (const gateResult of result.manifest.stages['06-review']?.gateResults ?? []) {
expect(gateResult.outcome).toBe('simulated');
}
});
it('deploy stage fails closed without a wired ci-pipeline provider in normal mode', async () => {
const executor = createTypedExecutor();
await expect(
runPipeline(briefPath, tmpDir, {
executor,
stages: ['09-deploy'],
}),
).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_NO_CI_PIPELINE',
});
});
});
describe('fail-closed: no vacuous gate commands remain', () => {
it('stage constants contain no echo/synthetic-approval, vacuous true, or empty gate commands', () => {
for (const [stageName, spec] of Object.entries(STAGE_SPECS)) {
for (const gate of spec.qualityGates) {
const serialized = JSON.stringify(gate);
// The echo-review synthetic approval must be gone.
expect(serialized, `stage ${stageName} gate ${serialized}`).not.toContain('echo');
expect(serialized, `stage ${stageName} gate ${serialized}`).not.toMatch(/"verdict"\s*:/);
expect(serialized, `stage ${stageName} gate ${serialized}`).not.toMatch(
/"summary"\s*:\s*"review-pass"/,
);
// No vacuous literal `true` gate.
expect(gate, `stage ${stageName}`).not.toBe('true');
// Command gates must carry a real, non-empty command.
if (isCommandGate(gate)) {
const command = typeof gate === 'string' ? gate : gate.command;
expect(command.trim().length, `stage ${stageName} gate ${serialized}`).toBeGreaterThan(0);
}
}
}
});
it('board tasks contain no vacuous true gates', () => {
const tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'forge-board-gates-'));
try {
const tasks = generateBoardTasks('# Brief', [], tmpDir, 'BOARD-TEST');
for (const task of tasks) {
for (const gate of task.qualityGates) {
expect(gate, `task ${task.id}`).not.toBe('true');
const serialized = JSON.stringify(gate);
expect(serialized, `task ${task.id} gate ${serialized}`).not.toContain('echo');
}
}
} finally {
fs.rmSync(tmpDir, { recursive: true, force: true });
}
});
});
+34 -161
View File
@@ -12,10 +12,10 @@ import {
resumePipeline,
getPipelineStatus,
} from '../src/pipeline-runner.js';
import type { ForgeTask, ForgeTaskResult, RunManifest, TaskExecutor } from '../src/types.js';
import { gateLabel, isCommandGate } from '../src/outcomes.js';
import type { ForgeTask, RunManifest, TaskExecutor } from '../src/types.js';
import type { TaskResult } from '@mosaicstack/macp';
/** Mock TaskExecutor that records submitted tasks and returns typed results. */
/** Mock TaskExecutor that records submitted tasks and returns success. */
function createMockExecutor(options?: {
failStage?: string;
}): TaskExecutor & { submittedTasks: ForgeTask[] } {
@@ -25,7 +25,7 @@ function createMockExecutor(options?: {
async submitTask(task: ForgeTask) {
submittedTasks.push(task);
},
async waitForCompletion(taskId: string): Promise<ForgeTaskResult> {
async waitForCompletion(taskId: string): Promise<TaskResult> {
const failStage = options?.failStage;
const task = submittedTasks.find((t) => t.id === taskId);
const stageName = task?.metadata?.['stageName'] as string | undefined;
@@ -33,8 +33,7 @@ function createMockExecutor(options?: {
if (failStage && stageName === failStage) {
return {
task_id: taskId,
outcome: 'failed',
reason: 'mock task failure',
status: 'failed',
completed_at: new Date().toISOString(),
exit_code: 1,
gate_results: [],
@@ -42,17 +41,10 @@ function createMockExecutor(options?: {
}
return {
task_id: taskId,
outcome: 'passed',
reason: 'mock verified',
status: 'completed',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: (task?.qualityGates ?? [])
.filter((gate) => isCommandGate(gate))
.map((gate) => ({
gate: gateLabel(gate),
outcome: 'passed' as const,
reason: 'mock verified',
})),
gate_results: [],
};
},
async getTaskStatus() {
@@ -164,13 +156,12 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
const result = await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '05-coding'],
stages: ['00-intake', '00b-discovery'],
});
expect(result.runId).toMatch(/^\d{8}-\d{6}$/);
expect(result.stages).toEqual(['00-intake', '05-coding']);
expect(result.stages).toEqual(['00-intake', '00b-discovery']);
expect(result.manifest.status).toBe('completed');
expect(result.manifest.mode).toBe('normal');
expect(executor.submittedTasks).toHaveLength(2);
});
@@ -189,17 +180,12 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
const result = await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '05-coding'],
stages: ['00-intake', '00b-discovery'],
});
const manifest = loadManifest(result.runDir);
expect(manifest.stages['00-intake']?.status).toBe('passed');
expect(manifest.stages['05-coding']?.status).toBe('passed');
expect(manifest.stages['05-coding']?.gateResults?.map((g) => g.outcome)).toEqual([
'passed',
'passed',
'passed',
]);
expect(manifest.stages['00b-discovery']?.status).toBe('passed');
});
it('respects CLI class override', async () => {
@@ -229,7 +215,7 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '05-coding', '08-test'],
stages: ['00-intake', '00b-discovery', '02-planning-1'],
});
expect(executor.submittedTasks[0]!.dependsOn).toBeUndefined();
@@ -238,14 +224,14 @@ describe('runPipeline', () => {
});
it('handles stage failure', async () => {
const executor = createMockExecutor({ failStage: '05-coding' });
const executor = createMockExecutor({ failStage: '00b-discovery' });
await expect(
runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '05-coding'],
stages: ['00-intake', '00b-discovery'],
}),
).rejects.toThrow('Stage 05-coding failed');
).rejects.toThrow('Stage 00b-discovery failed');
});
it('marks manifest as failed on stage failure', async () => {
@@ -284,143 +270,30 @@ describe('resumePipeline', () => {
fs.rmSync(tmpDir, { recursive: true, force: true });
});
it('resumes from first incomplete stage and fails closed at the next provider gate', async () => {
// Simulate a run whose authority stages were approved out-of-band
// (recorded as passed) and whose coding stage failed mechanically.
const runId = '20260101-000000';
const runDir = path.join(tmpDir, '.forge', 'runs', runId);
fs.mkdirSync(runDir, { recursive: true });
const passed = { status: 'passed' as const, startedAt: '2026-01-01T00:00:00Z' };
saveManifest(runDir, {
runId,
brief: briefPath,
codebase: tmpDir,
briefClass: 'hotfix',
classSource: 'frontmatter',
forceBoard: false,
mode: 'normal',
createdAt: '2026-01-01T00:00:00Z',
updatedAt: '2026-01-01T00:00:00Z',
currentStage: '05-coding',
status: 'failed',
stages: {
'00-intake': passed,
'00b-discovery': passed,
'02-planning-1': passed,
'03-planning-2': passed,
'04-planning-3': passed,
'05-coding': { status: 'failed', reason: 'gate failed' },
},
});
it('resumes from first incomplete stage', async () => {
// First run fails on discovery
const executor1 = createMockExecutor({ failStage: '00b-discovery' });
let runDir: string;
// Resume re-runs 05-coding (the first non-passed stage), then fails
// closed at 06-review because no reviewer provider is wired.
const executor = createMockExecutor();
await expect(resumePipeline(runDir, executor)).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_NO_REVIEWER',
});
const manifest = loadManifest(runDir);
expect(manifest.stages['05-coding']?.status).toBe('passed');
expect(manifest.stages['06-review']?.status).toBe('blocked');
expect(manifest.status).toBe('failed');
});
it('resumes to completion as simulated under explicit simulate', async () => {
const runId = '20260101-000003';
const runDir = path.join(tmpDir, '.forge', 'runs', runId);
fs.mkdirSync(runDir, { recursive: true });
const passed = { status: 'passed' as const, startedAt: '2026-01-01T00:00:00Z' };
saveManifest(runDir, {
runId,
brief: briefPath,
codebase: tmpDir,
briefClass: 'hotfix',
classSource: 'frontmatter',
forceBoard: false,
mode: 'normal',
createdAt: '2026-01-01T00:00:00Z',
updatedAt: '2026-01-01T00:00:00Z',
currentStage: '05-coding',
status: 'failed',
stages: {
'00-intake': passed,
'00b-discovery': passed,
'02-planning-1': passed,
'03-planning-2': passed,
'04-planning-3': passed,
'05-coding': { status: 'failed', reason: 'gate failed' },
},
});
const result = await resumePipeline(runDir, undefined, { simulate: true });
expect(result.manifest.status).toBe('simulated');
expect(result.manifest.mode).toBe('simulated');
expect(result.stages[0]).toBe('05-coding');
for (const stage of result.stages) {
expect(result.manifest.stages[stage]?.status).toBe('simulated');
try {
await runPipeline(briefPath, tmpDir, {
executor: executor1,
stages: ['00-intake', '00b-discovery', '02-planning-1'],
});
} catch {
// expected
}
});
it('fails closed on resume when the next stage needs authority sign-off', async () => {
const runId = '20260101-000001';
const runDir = path.join(tmpDir, '.forge', 'runs', runId);
fs.mkdirSync(runDir, { recursive: true });
saveManifest(runDir, {
runId,
brief: briefPath,
codebase: tmpDir,
briefClass: 'hotfix',
classSource: 'frontmatter',
forceBoard: false,
mode: 'normal',
createdAt: '2026-01-01T00:00:00Z',
updatedAt: '2026-01-01T00:00:00Z',
currentStage: '00-intake',
status: 'in_progress',
stages: {
'00-intake': { status: 'passed' },
},
});
const runsDir = path.join(tmpDir, '.forge', 'runs');
runDir = path.join(runsDir, fs.readdirSync(runsDir)[0]!);
const executor = createMockExecutor();
await expect(resumePipeline(runDir, executor)).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_AUTHORITY_REQUIRED',
});
// Resume should pick up from 00b-discovery
const executor2 = createMockExecutor();
const result = await resumePipeline(runDir, executor2);
const manifest = loadManifest(runDir);
expect(manifest.stages['00b-discovery']?.status).toBe('waiting-for-authority');
expect(manifest.status).toBe('waiting-for-authority');
});
it('fails closed on resume without an executor or --simulate', async () => {
const runId = '20260101-000002';
const runDir = path.join(tmpDir, '.forge', 'runs', runId);
fs.mkdirSync(runDir, { recursive: true });
saveManifest(runDir, {
runId,
brief: briefPath,
codebase: tmpDir,
briefClass: 'hotfix',
classSource: 'frontmatter',
forceBoard: false,
mode: 'normal',
createdAt: '2026-01-01T00:00:00Z',
updatedAt: '2026-01-01T00:00:00Z',
currentStage: '00-intake',
status: 'in_progress',
stages: {
'00-intake': { status: 'passed' },
},
});
await expect(resumePipeline(runDir)).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_NO_EXECUTOR',
});
expect(result.manifest.status).toBe('completed');
// Should have re-run from 00b-discovery onward
expect(result.stages[0]).toBe('00b-discovery');
});
});
+2 -15
View File
@@ -95,14 +95,7 @@ export function generateBoardTasks(
briefPath,
resultPath: resultRelPath,
timeoutSeconds: 120,
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason:
'persona evaluation is judged by board synthesis (authority review); no mechanical gate exists',
},
],
qualityGates: ['true'],
metadata: {
personaName: persona.name,
personaSlug: persona.slug,
@@ -128,13 +121,7 @@ export function generateBoardTasks(
timeoutSeconds: 120,
dependsOn: personaTaskIds,
dependsOnPolicy: 'all_terminal',
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason: 'board synthesis is an authority decision; no mechanical gate exists',
},
],
qualityGates: ['true'],
metadata: {
resultOutputPath: synthesisResult,
inputResultPaths: personaResultPaths,
+1 -96
View File
@@ -1,11 +1,7 @@
import fs from 'node:fs';
import os from 'node:os';
import path from 'node:path';
import { Command } from 'commander';
import { describe, expect, it, vi, beforeEach, afterEach } from 'vitest';
import { describe, expect, it } from 'vitest';
import { registerForgeCommand } from './cli.js';
import { loadManifest } from './pipeline-runner.js';
describe('registerForgeCommand', () => {
it('registers a "forge" command on the parent program', () => {
@@ -59,94 +55,3 @@ describe('registerForgeCommand', () => {
}).not.toThrow();
});
});
describe('forge run fail-closed behavior (SDLC-D-035)', () => {
let tmpDir: string;
let briefPath: string;
let errSpy: ReturnType<typeof vi.spyOn>;
let logSpy: ReturnType<typeof vi.spyOn>;
let prevExitCode: string | number | null | undefined;
const parse = (args: string[]) => {
const program = new Command();
registerForgeCommand(program);
return program.parseAsync(['forge', ...args], { from: 'user' });
};
beforeEach(() => {
tmpDir = fs.mkdtempSync(path.join(os.tmpdir(), 'forge-cli-failclosed-'));
briefPath = path.join(tmpDir, 'brief.md');
fs.writeFileSync(briefPath, '# Fix bug\n\nA bugfix for lint cleanup.');
errSpy = vi.spyOn(console, 'error').mockImplementation(() => {});
logSpy = vi.spyOn(console, 'log').mockImplementation(() => {});
prevExitCode = process.exitCode;
});
afterEach(() => {
errSpy.mockRestore();
logSpy.mockRestore();
process.exitCode = prevExitCode;
fs.rmSync(tmpDir, { recursive: true, force: true });
});
it('exits nonzero with a typed FORGE_NO_EXECUTOR error when no executor is wired and --simulate is absent', async () => {
await parse(['run', '--brief', briefPath, '--codebase', tmpDir]);
expect(process.exitCode).toBe(1);
const errText = errSpy.mock.calls.map((c) => c.join(' ')).join('\n');
expect(errText).toContain('FORGE_NO_EXECUTOR');
// It must never run the pipeline with a stub and report success.
expect(fs.existsSync(path.join(tmpDir, '.forge', 'runs'))).toBe(false);
});
it('completes with typed simulated results and exit 0 under explicit --simulate', async () => {
await parse(['run', '--brief', briefPath, '--codebase', tmpDir, '--simulate']);
expect(process.exitCode).toBeUndefined();
// Loud simulated-mode summary.
const logText = logSpy.mock.calls.map((c) => c.join(' ')).join('\n');
expect(logText).toContain('SIMULATED');
// Manifest records the mode and simulated per-result statuses.
const runsDir = path.join(tmpDir, '.forge', 'runs');
const runIds = fs.readdirSync(runsDir);
expect(runIds).toHaveLength(1);
const manifest = loadManifest(path.join(runsDir, runIds[0]!));
expect(manifest.mode).toBe('simulated');
expect(manifest.status).toBe('simulated');
for (const stageStatus of Object.values(manifest.stages)) {
expect(stageStatus?.status).toBe('simulated');
for (const gateResult of stageStatus?.gateResults ?? []) {
expect(gateResult.outcome).toBe('simulated');
}
}
});
it('resume exits nonzero with a typed FORGE_NO_EXECUTOR error without --simulate', async () => {
const runDir = path.join(tmpDir, '.forge', 'runs', '20260101-000000');
fs.mkdirSync(runDir, { recursive: true });
fs.writeFileSync(
path.join(runDir, 'manifest.json'),
JSON.stringify({
runId: '20260101-000000',
brief: briefPath,
codebase: tmpDir,
briefClass: 'hotfix',
classSource: 'frontmatter',
forceBoard: false,
createdAt: '2026-01-01T00:00:00Z',
updatedAt: '2026-01-01T00:00:00Z',
currentStage: '00-intake',
status: 'in_progress',
stages: { '00-intake': { status: 'passed' } },
}),
);
await parse(['resume', '20260101-000000', '--project', tmpDir]);
expect(process.exitCode).toBe(1);
const errText = errSpy.mock.calls.map((c) => c.join(' ')).join('\n');
expect(errText).toContain('FORGE_NO_EXECUTOR');
});
});
+48 -122
View File
@@ -5,47 +5,37 @@ import type { Command } from 'commander';
import { classifyBrief } from './brief-classifier.js';
import { STAGE_LABELS, STAGE_SEQUENCE } from './constants.js';
import { ForgeCapabilityError } from './errors.js';
import { getEffectivePersonas, loadBoardPersonas } from './persona-loader.js';
import { generateRunId, getPipelineStatus, loadManifest, runPipeline } from './pipeline-runner.js';
import { createSimulatedExecutor } from './simulated-executor.js';
import type { PipelineOptions, RunManifest, RunMode } from './types.js';
import type { PipelineOptions, RunManifest, TaskExecutor } from './types.js';
// ---------------------------------------------------------------------------
// Stub executor — used when no real executor is wired at CLI invocation time.
// ---------------------------------------------------------------------------
const stubExecutor: TaskExecutor = {
async submitTask(task) {
console.log(` [forge] stage submitted: ${task.id} (${task.title})`);
},
async waitForCompletion(taskId, _timeoutMs) {
console.log(` [forge] stage complete: ${taskId}`);
return {
task_id: taskId,
status: 'completed' as const,
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [],
};
},
async getTaskStatus(_taskId) {
return 'completed' as const;
},
};
// ---------------------------------------------------------------------------
// Helpers
// ---------------------------------------------------------------------------
/** Resolve a run's effective mode, defaulting legacy manifests to normal. */
function runModeOf(manifest: RunManifest): RunMode {
return manifest.mode ?? 'normal';
}
/** Print a loud banner so a simulated run can never be misread as verified. */
function printSimulatedBanner(): void {
console.log('');
console.log('[forge] ===============================================================');
console.log('[forge] MODE: SIMULATED — no stage or gate was really executed.');
console.log('[forge] All results are synthetic and MUST NOT be read as verified');
console.log('[forge] success. Wire a real executor/providers and re-run to verify.');
console.log('[forge] ===============================================================');
}
/** Print a typed error line for fail-closed capability errors. */
function printCapabilityError(err: ForgeCapabilityError): void {
console.error(`[forge] error ${err.code}: ${err.message}`);
console.error(`[forge] missing capability: ${err.capability}`);
}
/** Handle a pipeline error uniformly: typed capability errors get their code. */
function handlePipelineError(err: unknown): void {
if (err instanceof ForgeCapabilityError) {
printCapabilityError(err);
} else {
console.error(`[forge] pipeline failed: ${err instanceof Error ? err.message : String(err)}`);
}
process.exitCode = 1;
}
function formatDuration(startedAt?: string, completedAt?: string): string {
if (!startedAt || !completedAt) return '-';
const ms = new Date(completedAt).getTime() - new Date(startedAt).getTime();
@@ -54,24 +44,19 @@ function formatDuration(startedAt?: string, completedAt?: string): string {
}
function printManifestTable(manifest: RunManifest): void {
const mode = runModeOf(manifest);
console.log(`\nRun ID : ${manifest.runId}`);
console.log(`Status : ${manifest.status}`);
console.log(`Mode : ${mode}`);
if (mode === 'simulated') {
console.log('WARNING: SIMULATED RUN — results are synthetic, not verified success.');
}
console.log(`Brief : ${manifest.brief}`);
console.log(`Class : ${manifest.briefClass} (${manifest.classSource})`);
console.log(`Updated: ${manifest.updatedAt}`);
console.log('');
console.log('Stage'.padEnd(22) + 'Status'.padEnd(24) + 'Duration');
console.log('-'.repeat(60));
console.log('Stage'.padEnd(22) + 'Status'.padEnd(14) + 'Duration');
console.log('-'.repeat(50));
for (const stage of STAGE_SEQUENCE) {
const s = manifest.stages[stage];
if (!s) continue;
const label = (STAGE_LABELS[stage] ?? stage).padEnd(22);
const status = s.status.padEnd(24);
const status = s.status.padEnd(14);
const dur = formatDuration(s.startedAt, s.completedAt);
console.log(`${label}${status}${dur}`);
}
@@ -105,58 +90,23 @@ function listRecentRuns(projectRoot?: string): void {
}
console.log('\nRecent runs:');
console.log('Run ID'.padEnd(22) + 'Status'.padEnd(24) + 'Mode'.padEnd(12) + 'Brief');
console.log('-'.repeat(80));
console.log('Run ID'.padEnd(22) + 'Status'.padEnd(14) + 'Brief');
console.log('-'.repeat(70));
for (const runId of entries) {
const runDir = path.join(runsDir, runId);
try {
const manifest = loadManifest(runDir);
const status = manifest.status.padEnd(24);
const mode = runModeOf(manifest).padEnd(12);
const status = manifest.status.padEnd(14);
const brief = path.basename(manifest.brief);
console.log(`${runId.padEnd(22)}${status}${mode}${brief}`);
console.log(`${runId.padEnd(22)}${status}${brief}`);
} catch {
console.log(`${runId.padEnd(22)}${'(unreadable)'.padEnd(24)}`);
console.log(`${runId.padEnd(22)}${'(unreadable)'.padEnd(14)}`);
}
}
console.log('');
}
/**
* Apply the exit-code policy for a finished pipeline run (SDLC-D-035):
*
* - exit 0 only for a verified `completed` normal run, or for an overall
* `simulated` run when the caller explicitly passed --simulate;
* - anything else exits nonzero so it can never be read as success.
*/
function applyRunExitPolicy(result: { manifest: RunManifest; runDir: string }, simulate: boolean) {
const { manifest } = result;
if (runModeOf(manifest) === 'simulated') {
if (!simulate || manifest.status !== 'simulated') {
console.error(
'[forge] error FORGE_MODE_MISMATCH: run reports simulated results without an explicit, ' +
'consistent --simulate request; refusing to report success.',
);
process.exitCode = 1;
return;
}
printSimulatedBanner();
console.log(`[forge] run directory: ${result.runDir}`);
return; // exit 0 — the caller explicitly opted into simulation
}
if (manifest.status !== 'completed') {
console.error(`[forge] run did not complete: terminal status '${manifest.status}'`);
process.exitCode = 1;
return;
}
console.log(`[forge] pipeline complete (mode: normal): ${manifest.runId}`);
console.log(`[forge] run directory: ${result.runDir}`);
}
// ---------------------------------------------------------------------------
// Register function
// ---------------------------------------------------------------------------
@@ -179,11 +129,6 @@ export function registerForgeCommand(parent: Command): void {
.option('--config <path>', 'Path to forge config file (.forge/config.yaml)')
.option('--codebase <path>', 'Codebase root to pass to the pipeline', process.cwd())
.option('--dry-run', 'Print planned stages without executing', false)
.option(
'--simulate',
'Simulate execution without real providers (every result is typed simulated, never verified)',
false,
)
.action(
async (opts: {
brief: string;
@@ -192,7 +137,6 @@ export function registerForgeCommand(parent: Command): void {
config?: string;
codebase: string;
dryRun: boolean;
simulate: boolean;
}) => {
const briefPath = path.resolve(opts.brief);
@@ -205,22 +149,14 @@ export function registerForgeCommand(parent: Command): void {
const briefContent = fs.readFileSync(briefPath, 'utf-8');
const briefClass = classifyBrief(briefContent);
const projectRoot = opts.codebase;
// A real executor is never wired at CLI invocation time today, so the
// only executor we may construct is the explicitly-requested simulated
// one. Normal mode fails closed with FORGE_NO_EXECUTOR.
const executor = opts.simulate ? createSimulatedExecutor() : undefined;
if (opts.resume) {
const runId = opts.runId ?? generateRunId();
const runDir = resolveRunDir(runId, projectRoot);
console.log(`[forge] resuming run: ${runId}`);
try {
const { resumePipeline } = await import('./pipeline-runner.js');
const result = await resumePipeline(runDir, executor, { simulate: opts.simulate });
applyRunExitPolicy(result, opts.simulate);
} catch (err) {
handlePipelineError(err);
}
const { resumePipeline } = await import('./pipeline-runner.js');
const result = await resumePipeline(runDir, stubExecutor);
console.log(`[forge] pipeline complete: ${result.runId}`);
return;
}
@@ -228,8 +164,7 @@ export function registerForgeCommand(parent: Command): void {
briefClass,
codebase: projectRoot,
dryRun: opts.dryRun,
executor,
simulate: opts.simulate,
executor: stubExecutor,
};
if (opts.dryRun) {
@@ -245,15 +180,16 @@ export function registerForgeCommand(parent: Command): void {
console.log(`[forge] starting pipeline for brief: ${briefPath}`);
console.log(`[forge] classified as: ${briefClass}`);
if (opts.simulate) {
console.log('[forge] mode: SIMULATED (explicit --simulate)');
}
try {
const result = await runPipeline(briefPath, projectRoot, pipelineOptions);
applyRunExitPolicy(result, opts.simulate);
console.log(`[forge] pipeline complete: ${result.runId}`);
console.log(`[forge] run directory: ${result.runDir}`);
} catch (err) {
handlePipelineError(err);
console.error(
`[forge] pipeline failed: ${err instanceof Error ? err.message : String(err)}`,
);
process.exitCode = 1;
}
},
);
@@ -288,12 +224,7 @@ export function registerForgeCommand(parent: Command): void {
.command('resume <runId>')
.description('Resume a stopped or failed pipeline run')
.option('--project <path>', 'Project root (defaults to cwd)', process.cwd())
.option(
'--simulate',
'Simulate execution without real providers (every result is typed simulated, never verified)',
false,
)
.action(async (runId: string, opts: { project: string; simulate: boolean }) => {
.action(async (runId: string, opts: { project: string }) => {
const runDir = resolveRunDir(runId, opts.project);
if (!fs.existsSync(runDir)) {
@@ -303,20 +234,15 @@ export function registerForgeCommand(parent: Command): void {
}
console.log(`[forge] resuming run: ${runId}`);
if (opts.simulate) {
console.log('[forge] mode: SIMULATED (explicit --simulate)');
}
// No real executor is wired at CLI invocation time; only the explicitly
// requested simulated executor may be constructed (fail closed otherwise).
const executor = opts.simulate ? createSimulatedExecutor() : undefined;
try {
const { resumePipeline } = await import('./pipeline-runner.js');
const result = await resumePipeline(runDir, executor, { simulate: opts.simulate });
applyRunExitPolicy(result, opts.simulate);
const result = await resumePipeline(runDir, stubExecutor);
console.log(`[forge] pipeline complete: ${result.runId}`);
console.log(`[forge] run directory: ${result.runDir}`);
} catch (err) {
handlePipelineError(err);
console.error(`[forge] resume failed: ${err instanceof Error ? err.message : String(err)}`);
process.exitCode = 1;
}
});
+12 -72
View File
@@ -9,16 +9,7 @@ export const PACKAGE_ROOT = path.resolve(path.dirname(fileURLToPath(import.meta.
/** Pipeline asset directory (stages, agents, rails, gates, templates). */
export const PIPELINE_DIR = path.join(PACKAGE_ROOT, 'pipeline');
/** Stage specifications defines every pipeline stage.
*\n * Gate semantics (SDLC-D-035): every gate is one of
* - a real command string / GateEntry a mechanical runner can execute,
* - an `authority` gate (human/board sign-off; produces waiting-for-authority),
* - a `provider` gate (requires a wired provider such as a reviewer or CI pipeline).
*
* Vacuous gates (`true`, echo'd synthetic approvals, placeholder ci-pipeline
* commands) are forbidden: a stage whose gate has no real implementation
* fails closed instead of passing.
*/
/** Stage specifications — defines every pipeline stage. */
export const STAGE_SPECS: Record<string, StageSpec> = {
'00-intake': {
number: '00',
@@ -36,13 +27,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'discovery-complete',
promptFile: '00b-discovery.md',
qualityGates: [
{
kind: 'authority',
capability: 'discovery-complete',
reason: 'discovery completion is attested by an authority; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'01-board': {
number: '01',
@@ -51,13 +36,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'review',
gate: 'board-approval',
promptFile: '01-board.md',
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason: 'board approval is a board/human decision; no mechanical gate exists',
},
],
qualityGates: [{ type: 'ci-pipeline', command: 'board-approval (via board-tasks)' }],
},
'01b-brief-analyzer': {
number: '01b',
@@ -66,13 +45,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'brief-analysis-complete',
promptFile: '01-board.md',
qualityGates: [
{
kind: 'authority',
capability: 'brief-analysis-complete',
reason: 'brief analysis completion is attested by an authority; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'02-planning-1': {
number: '02',
@@ -81,13 +54,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'architecture-approval',
promptFile: '02-planning-1-architecture.md',
qualityGates: [
{
kind: 'authority',
capability: 'architecture-approval',
reason: 'ADR approval requires authority sign-off; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'03-planning-2': {
number: '03',
@@ -96,14 +63,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'implementation-approval',
promptFile: '03-planning-2-implementation.md',
qualityGates: [
{
kind: 'authority',
capability: 'implementation-approval',
reason:
'implementation spec approval requires authority sign-off; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'04-planning-3': {
number: '04',
@@ -112,14 +72,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'decomposition-approval',
promptFile: '04-planning-3-decomposition.md',
qualityGates: [
{
kind: 'authority',
capability: 'decomposition-approval',
reason:
'task decomposition approval requires authority sign-off; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'05-coding': {
number: '05',
@@ -139,10 +92,9 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
promptFile: '06-review.md',
qualityGates: [
{
kind: 'provider',
capability: 'reviewer',
reason:
'review verdicts require a wired reviewer provider; synthetic approvals are not permitted',
type: 'ai-review',
command:
'echo \'{"summary":"review-pass","verdict":"approve","findings":[],"stats":{"blockers":0,"should_fix":0,"suggestions":0}}\'',
},
],
},
@@ -153,13 +105,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'coding',
gate: 're-review',
promptFile: '07-remediate.md',
qualityGates: [
{
kind: 'authority',
capability: 're-review',
reason: 'remediation re-review is an approval-based gate; no mechanical check exists',
},
],
qualityGates: ['true'],
},
'08-test': {
number: '08',
@@ -177,13 +123,7 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'deploy',
gate: 'deploy-verification',
promptFile: '09-deploy.md',
qualityGates: [
{
kind: 'provider',
capability: 'ci-pipeline',
reason: 'deploy verification requires a wired CI pipeline provider',
},
],
qualityGates: [{ type: 'ci-pipeline', command: 'deploy-verification' }],
},
};
-46
View File
@@ -1,46 +0,0 @@
/**
* Typed fail-closed capability errors (SDLC-D-035).
*
* A Forge run must fail closed when a required capability (executor, reviewer
* provider, CI pipeline, authority sign-off) is missing. These typed errors
* name the missing capability so callers can distinguish "not wired" from
* ordinary execution failures.
*/
/** Closed set of typed Forge capability error codes. */
export const FORGE_ERROR_CODES = [
'FORGE_NO_EXECUTOR',
'FORGE_NO_REVIEWER',
'FORGE_NO_CI_PIPELINE',
'FORGE_NO_PROVIDER',
'FORGE_AUTHORITY_REQUIRED',
] as const;
export type ForgeErrorCode = (typeof FORGE_ERROR_CODES)[number];
/** Raised when a required capability is missing and the pipeline must fail closed. */
export class ForgeCapabilityError extends Error {
/** Typed error code from the closed FORGE_ERROR_CODES set. */
readonly code: ForgeErrorCode;
/** The missing capability, e.g. `task-executor`, `reviewer`, `board-approval`. */
readonly capability: string;
constructor(code: ForgeErrorCode, capability: string, message: string) {
super(message);
this.name = 'ForgeCapabilityError';
this.code = code;
this.capability = capability;
}
}
/** Map a provider gate capability to its typed error code. */
export function providerErrorCode(capability: string): ForgeErrorCode {
switch (capability) {
case 'reviewer':
return 'FORGE_NO_REVIEWER';
case 'ci-pipeline':
return 'FORGE_NO_CI_PIPELINE';
default:
return 'FORGE_NO_PROVIDER';
}
}
-26
View File
@@ -5,13 +5,6 @@ export type {
StageSpec,
BriefClass,
ClassSource,
ForgeOutcome,
AuthorityGate,
ProviderGate,
ForgeGate,
ForgeGateResult,
ForgeTaskResult,
RunMode,
StageStatus,
RunManifest,
ForgeTaskStatus,
@@ -88,24 +81,5 @@ export {
getPipelineStatus,
} from './pipeline-runner.js';
// Fail-closed errors and typed outcome model (SDLC-D-035)
export { FORGE_ERROR_CODES, ForgeCapabilityError, providerErrorCode } from './errors.js';
export type { ForgeErrorCode } from './errors.js';
export {
isSatisfyingOutcome,
isCapabilityGate,
isCommandGate,
gateLabel,
uniformGateResults,
simulatedGateResults,
waitingGateResults,
blockedGateResults,
evaluateStageGates,
} from './outcomes.js';
export type { StageEvaluation } from './outcomes.js';
// Simulated executor (explicit --simulate only)
export { createSimulatedExecutor } from './simulated-executor.js';
// CLI
export { registerForgeCommand } from './cli.js';
-147
View File
@@ -1,147 +0,0 @@
import type { GateEntry } from '@mosaicstack/macp';
import type {
AuthorityGate,
ForgeGate,
ForgeGateResult,
ForgeOutcome,
ForgeTaskResult,
ProviderGate,
} from './types.js';
/**
* Gate and dependency satisfaction predicate (SDLC-D-035).
*
* ONLY a verified `passed` outcome satisfies. Every other member of the closed
* outcome set including `simulated` is non-satisfying, so a simulated or
* authority-blocked result can never be read as success-by-verification.
*/
export function isSatisfyingOutcome(outcome: ForgeOutcome): boolean {
return outcome === 'passed';
}
/** Whether a gate is an authority or provider gate (capability-based, command-less). */
export function isCapabilityGate(gate: ForgeGate): gate is AuthorityGate | ProviderGate {
if (typeof gate !== 'object' || gate === null) return false;
const kind = (gate as Record<string, unknown>)['kind'];
return kind === 'authority' || kind === 'provider';
}
/** Whether a gate definition carries a real command a mechanical runner can execute. */
export function isCommandGate(gate: ForgeGate): gate is string | GateEntry {
if (typeof gate === 'string') {
return gate.trim().length > 0;
}
if (isCapabilityGate(gate)) {
// Authority and provider gates are satisfied by a capability, not a command.
return false;
}
return typeof gate.command === 'string' && gate.command.trim().length > 0;
}
/** Typed label identifying a gate in results and logs. */
export function gateLabel(gate: ForgeGate): string {
if (typeof gate === 'string') return gate;
if (isCapabilityGate(gate)) return `${gate.kind}:${gate.capability}`;
return gate.command || gate.type || 'unnamed-gate';
}
/** Reason string stamped on every simulated gate result. */
export const SIMULATED_GATE_REASON =
'simulated execution (--simulate): gate was not evaluated by a real implementation';
/** Build typed gate results with a uniform outcome for a stage's declared gates. */
export function uniformGateResults(
gates: ForgeGate[],
outcome: ForgeOutcome,
reason: string,
): ForgeGateResult[] {
return gates.map((gate) => ({ gate: gateLabel(gate), outcome, reason }));
}
/** Typed simulated gate results — used exclusively in `--simulate` runs. */
export function simulatedGateResults(gates: ForgeGate[]): ForgeGateResult[] {
return uniformGateResults(gates, 'simulated', SIMULATED_GATE_REASON);
}
/** Typed waiting-for-authority gate results for approval-based stages. */
export function waitingGateResults(gates: ForgeGate[], reason: string): ForgeGateResult[] {
return uniformGateResults(gates, 'waiting-for-authority', reason);
}
/** Typed blocked gate results for stages whose provider capability is not wired. */
export function blockedGateResults(gates: ForgeGate[], reason: string): ForgeGateResult[] {
return uniformGateResults(gates, 'blocked', reason);
}
/** Outcome of evaluating a completed stage in normal mode. */
export interface StageEvaluation {
outcome: ForgeOutcome;
reason: string;
gateResults: ForgeGateResult[];
}
/**
* Evaluate a stage's declared gates against the executor's typed result.
*
* Fail-closed mapping:
* - a `simulated` task or gate outcome in normal mode maps to `error`
* - a missing gate result for a required command gate maps to `blocked`
* - a non-passing task outcome propagates as the stage outcome
* - only verified `passed` task and gate outcomes yield a `passed` stage
*/
export function evaluateStageGates(
stageName: string,
gates: ForgeGate[],
result: ForgeTaskResult,
): StageEvaluation {
const gateResults = result.gate_results ?? [];
if (result.outcome === 'simulated') {
return {
outcome: 'error',
reason: `executor reported a simulated outcome for stage '${stageName}' in normal mode — refusing to treat simulated results as verified`,
gateResults,
};
}
if (!isSatisfyingOutcome(result.outcome)) {
return {
outcome: result.outcome,
reason: `task outcome is '${result.outcome}': ${result.reason}`,
gateResults,
};
}
for (const gate of gates) {
// Authority and provider gates are pre-flighted before execution; they have
// no mechanical result to verify here.
if (!isCommandGate(gate)) continue;
const label = gateLabel(gate);
const gateResult = gateResults.find((r) => r.gate === label);
if (!gateResult) {
return {
outcome: 'blocked',
reason: `no gate result was reported for required gate '${label}' (stage '${stageName}')`,
gateResults,
};
}
if (!isSatisfyingOutcome(gateResult.outcome)) {
return {
outcome: gateResult.outcome === 'simulated' ? 'error' : gateResult.outcome,
reason: `gate '${label}' outcome is '${gateResult.outcome}': ${gateResult.reason}`,
gateResults,
};
}
}
return {
outcome: 'passed',
reason:
gates.length === 0
? "stage declares no gates; task outcome 'passed' accepted"
: 'all declared gates verified passed',
gateResults,
};
}
+99 -227
View File
@@ -1,33 +1,18 @@
import fs from 'node:fs';
import path from 'node:path';
import { STAGE_SEQUENCE, STAGE_SPECS } from './constants.js';
import { STAGE_SEQUENCE } from './constants.js';
import { determineBriefClass, stagesForClass } from './brief-classifier.js';
import { ForgeCapabilityError, providerErrorCode } from './errors.js';
import {
blockedGateResults,
evaluateStageGates,
isCapabilityGate,
simulatedGateResults,
waitingGateResults,
} from './outcomes.js';
import { mapStageToTask } from './stage-adapter.js';
import { createSimulatedExecutor } from './simulated-executor.js';
import type {
ForgeTask,
ForgeTaskResult,
PipelineOptions,
PipelineResult,
RunManifest,
RunMode,
StageStatus,
TaskExecutor,
} from './types.js';
/** Reason stamped on stages that complete under explicit simulation. */
const SIMULATED_STAGE_REASON =
'simulated execution (--simulate): stage was not executed by a real executor';
/**
* Generate a timestamp-based run ID.
*/
@@ -62,7 +47,6 @@ function createManifest(opts: {
briefClass: RunManifest['briefClass'];
classSource: RunManifest['classSource'];
forceBoard: boolean;
mode: RunMode;
runDir: string;
}): RunManifest {
const ts = nowISO();
@@ -73,7 +57,6 @@ function createManifest(opts: {
briefClass: opts.briefClass,
classSource: opts.classSource,
forceBoard: opts.forceBoard,
mode: opts.mode,
createdAt: ts,
updatedAt: ts,
currentStage: '',
@@ -125,199 +108,20 @@ export function selectStages(stages?: string[], skipTo?: string): string[] {
return selected.slice(skipIndex);
}
/**
* Fail closed when the required executor capability is missing (SDLC-D-035).
*/
function requireExecutor(executor: TaskExecutor | undefined, simulate: boolean): TaskExecutor {
if (executor) return executor;
if (simulate) return createSimulatedExecutor({ log: false });
throw new ForgeCapabilityError(
'FORGE_NO_EXECUTOR',
'task-executor',
'no task executor is wired; refusing to run the pipeline with a stub executor (fail closed). ' +
'Pass --simulate to opt into explicitly simulated execution.',
);
}
/**
* Pre-flight a stage's gates in normal mode (fail closed, SDLC-D-035).
*
* - authority gates: record a typed `waiting-for-authority` stage result and
* raise FORGE_AUTHORITY_REQUIRED approval-based gates never pass vacuously.
* - provider gates: record a typed `blocked` stage result and raise the typed
* capability error for the missing provider.
*
* Returns the stage status to record when the pre-flight blocks, or undefined
* when the stage may proceed.
*/
function preflightStageGates(
stageName: string,
manifest: RunManifest,
): { status: StageStatus; error: ForgeCapabilityError } | undefined {
const spec = STAGE_SPECS[stageName];
if (!spec) throw new Error(`Unknown Forge stage: ${stageName}`);
for (const gate of spec.qualityGates) {
if (!isCapabilityGate(gate)) continue;
const startedAt = manifest.stages[stageName]?.startedAt;
const completedAt = nowISO();
if (gate.kind === 'authority') {
const reason = `gate '${gate.capability}' requires authority sign-off; no mechanical implementation exists (${gate.reason})`;
return {
status: {
status: 'waiting-for-authority',
reason,
startedAt,
completedAt,
gateResults: waitingGateResults(spec.qualityGates, reason),
},
error: new ForgeCapabilityError(
'FORGE_AUTHORITY_REQUIRED',
gate.capability,
`stage '${stageName}' is blocked on authority gate '${gate.capability}': ${gate.reason}. ` +
'The pipeline fails closed instead of passing vacuously. Record the approval out-of-band ' +
'or run with --simulate for explicitly simulated execution.',
),
};
}
const reason = `gate '${gate.capability}' requires provider '${gate.capability}' and none is wired (${gate.reason})`;
return {
status: {
status: 'blocked',
reason,
startedAt,
completedAt,
gateResults: blockedGateResults(spec.qualityGates, reason),
},
error: new ForgeCapabilityError(
providerErrorCode(gate.capability),
gate.capability,
`stage '${stageName}' requires provider '${gate.capability}' which is not wired: ${gate.reason}. ` +
'The pipeline fails closed instead of passing vacuously.',
),
};
}
return undefined;
}
/**
* Execute the given stage tasks sequentially, updating the manifest.
*
* Normal mode requires a real executor and evaluates every declared command
* gate through the typed outcome model; any non-verified result fails closed.
* Simulate mode types every stage and gate result as `simulated`.
*/
async function executeStages(opts: {
manifest: RunManifest;
runDir: string;
tasks: ForgeTask[];
stageNames: string[];
executor: TaskExecutor;
simulate: boolean;
}): Promise<void> {
const { manifest, runDir, tasks, stageNames, executor, simulate } = opts;
for (let i = 0; i < tasks.length; i++) {
const task = tasks[i]!;
const stageName = stageNames[i]!;
const spec = STAGE_SPECS[stageName];
if (!spec) throw new Error(`Unknown Forge stage: ${stageName}`);
// Update manifest: stage in progress
manifest.currentStage = stageName;
manifest.stages[stageName] = {
status: 'in_progress',
startedAt: nowISO(),
};
saveManifest(runDir, manifest);
// Fail-closed pre-flight (normal mode only): authority/provider gates have
// no mechanical implementation and must never pass vacuously.
if (!simulate) {
const blocked = preflightStageGates(stageName, manifest);
if (blocked) {
manifest.stages[stageName] = blocked.status;
manifest.status =
blocked.status.status === 'waiting-for-authority' ? 'waiting-for-authority' : 'failed';
saveManifest(runDir, manifest);
throw blocked.error;
}
}
let result: ForgeTaskResult;
try {
await executor.submitTask(task);
result = await executor.waitForCompletion(task.id, task.timeoutSeconds * 1000);
} catch (error) {
// Process errors (including timeouts) map to the fail-closed `error` outcome.
const reason = error instanceof Error ? error.message : String(error);
manifest.stages[stageName] = {
status: 'error',
reason: `executor error: ${reason}`,
startedAt: manifest.stages[stageName]?.startedAt,
completedAt: nowISO(),
gateResults: [],
};
manifest.status = 'failed';
saveManifest(runDir, manifest);
throw error instanceof Error ? error : new Error(reason);
}
if (simulate) {
manifest.stages[stageName] = {
status: 'simulated',
reason: SIMULATED_STAGE_REASON,
startedAt: manifest.stages[stageName]?.startedAt,
completedAt: nowISO(),
gateResults: simulatedGateResults(spec.qualityGates),
};
saveManifest(runDir, manifest);
continue;
}
const evaluation = evaluateStageGates(stageName, spec.qualityGates, result);
manifest.stages[stageName] = {
status: evaluation.outcome,
reason: evaluation.reason,
startedAt: manifest.stages[stageName]?.startedAt,
completedAt: nowISO(),
gateResults: evaluation.gateResults,
};
if (evaluation.outcome !== 'passed') {
manifest.status =
evaluation.outcome === 'waiting-for-authority' ? 'waiting-for-authority' : 'failed';
saveManifest(runDir, manifest);
throw new Error(`Stage ${stageName} ${evaluation.outcome}: ${evaluation.reason}`);
}
saveManifest(runDir, manifest);
}
}
/**
* Run the Forge pipeline.
*
* 1. Fail closed unless a real executor is wired or simulation is explicit
* 2. Classify the brief
* 3. Generate a run ID and create run directory
* 4. Map stages to tasks and submit to TaskExecutor
* 5. Track manifest with typed stage outcomes
* 6. Return pipeline result
* 1. Classify the brief
* 2. Generate a run ID and create run directory
* 3. Map stages to tasks and submit to TaskExecutor
* 4. Track manifest with stage statuses
* 5. Return pipeline result
*/
export async function runPipeline(
briefPath: string,
projectRoot: string,
options: PipelineOptions,
): Promise<PipelineResult> {
const simulate = options.simulate ?? false;
const executor = requireExecutor(options.executor, simulate);
const mode: RunMode = simulate ? 'simulated' : 'normal';
const resolvedRoot = path.resolve(projectRoot);
const resolvedBrief = path.resolve(briefPath);
const briefContent = fs.readFileSync(resolvedBrief, 'utf-8');
@@ -342,7 +146,6 @@ export async function runPipeline(
briefClass,
classSource,
forceBoard: options.forceBoard ?? false,
mode,
runDir,
});
@@ -369,10 +172,54 @@ export async function runPipeline(
}
// Execute stages
await executeStages({ manifest, runDir, tasks, stageNames: selectedStages, executor, simulate });
const { executor } = options;
for (let i = 0; i < tasks.length; i++) {
const task = tasks[i]!;
const stageName = selectedStages[i]!;
// All stages reached a terminal state for this mode
manifest.status = simulate ? 'simulated' : 'completed';
// Update manifest: stage in progress
manifest.currentStage = stageName;
manifest.stages[stageName] = {
status: 'in_progress',
startedAt: nowISO(),
};
saveManifest(runDir, manifest);
try {
await executor.submitTask(task);
const result = await executor.waitForCompletion(task.id, task.timeoutSeconds * 1000);
// Update manifest: stage completed or failed
const stageStatus: StageStatus = {
status: result.status === 'completed' ? 'passed' : 'failed',
startedAt: manifest.stages[stageName]!.startedAt,
completedAt: nowISO(),
};
manifest.stages[stageName] = stageStatus;
if (result.status !== 'completed') {
manifest.status = 'failed';
saveManifest(runDir, manifest);
throw new Error(`Stage ${stageName} failed with status: ${result.status}`);
}
saveManifest(runDir, manifest);
} catch (error) {
if (!manifest.stages[stageName]?.completedAt) {
manifest.stages[stageName] = {
status: 'failed',
startedAt: manifest.stages[stageName]?.startedAt,
completedAt: nowISO(),
};
}
manifest.status = 'failed';
saveManifest(runDir, manifest);
throw error;
}
}
// All stages passed
manifest.status = 'completed';
saveManifest(runDir, manifest);
return {
@@ -387,30 +234,22 @@ export async function runPipeline(
}
/**
* Resume a pipeline from the last non-passed stage.
* Resume a pipeline from the last incomplete stage.
*/
export async function resumePipeline(
runDir: string,
executor?: TaskExecutor,
options?: { simulate?: boolean },
executor: TaskExecutor,
): Promise<PipelineResult> {
const simulate = options?.simulate ?? false;
const wiredExecutor = requireExecutor(executor, simulate);
const mode: RunMode = simulate ? 'simulated' : 'normal';
const manifest = loadManifest(runDir);
const resolvedRoot = path.dirname(path.dirname(path.dirname(runDir))); // .forge/runs/{id} → project root
const briefContent = fs.readFileSync(manifest.brief, 'utf-8');
const allStages = stagesForClass(manifest.briefClass, manifest.forceBoard);
manifest.mode = mode;
// Find first non-satisfying stage (only a verified `passed` counts as done;
// simulated and waiting-for-authority stages are re-run).
// Find first non-passed stage
const resumeFrom = allStages.find((s) => manifest.stages[s]?.status !== 'passed');
if (!resumeFrom) {
manifest.status = mode === 'simulated' ? 'simulated' : 'completed';
manifest.status = 'completed';
saveManifest(runDir, manifest);
return {
runId: manifest.runId,
@@ -445,16 +284,49 @@ export async function resumePipeline(
tasks.push(task);
}
await executeStages({
manifest,
runDir,
tasks,
stageNames: remainingStages,
executor: wiredExecutor,
simulate,
});
for (let i = 0; i < tasks.length; i++) {
const task = tasks[i]!;
const stageName = remainingStages[i]!;
manifest.status = simulate ? 'simulated' : 'completed';
manifest.currentStage = stageName;
manifest.stages[stageName] = {
status: 'in_progress',
startedAt: nowISO(),
};
saveManifest(runDir, manifest);
try {
await executor.submitTask(task);
const result = await executor.waitForCompletion(task.id, task.timeoutSeconds * 1000);
manifest.stages[stageName] = {
status: result.status === 'completed' ? 'passed' : 'failed',
startedAt: manifest.stages[stageName]!.startedAt,
completedAt: nowISO(),
};
if (result.status !== 'completed') {
manifest.status = 'failed';
saveManifest(runDir, manifest);
throw new Error(`Stage ${stageName} failed with status: ${result.status}`);
}
saveManifest(runDir, manifest);
} catch (error) {
if (!manifest.stages[stageName]?.completedAt) {
manifest.stages[stageName] = {
status: 'failed',
startedAt: manifest.stages[stageName]?.startedAt,
completedAt: nowISO(),
};
}
manifest.status = 'failed';
saveManifest(runDir, manifest);
throw error;
}
}
manifest.status = 'completed';
saveManifest(runDir, manifest);
return {
-32
View File
@@ -1,32 +0,0 @@
import type { ForgeTask, ForgeTaskResult, TaskExecutor } from './types.js';
/**
* Simulated executor used ONLY when the caller explicitly passes --simulate.
*
* It submits no real work and returns typed `simulated` results so a simulated
* run can never be confused with a verified one. In normal mode (no --simulate)
* the CLI refuses to run at all with FORGE_NO_EXECUTOR instead of wiring this
* stub (fail closed, SDLC-D-035).
*/
export function createSimulatedExecutor(options?: { log?: boolean }): TaskExecutor {
const log = options?.log ?? true;
return {
async submitTask(task: ForgeTask) {
if (log) console.log(` [forge:simulated] stage submitted: ${task.id} (${task.title})`);
},
async waitForCompletion(taskId: string): Promise<ForgeTaskResult> {
if (log) console.log(` [forge:simulated] stage complete: ${taskId}`);
return {
task_id: taskId,
outcome: 'simulated',
reason: 'no executor wired; simulated execution requested via --simulate',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [],
};
},
async getTaskStatus() {
return 'completed' as const;
},
};
}
+7 -88
View File
@@ -1,4 +1,4 @@
import type { GateEntry } from '@mosaicstack/macp';
import type { GateEntry, TaskResult } from '@mosaicstack/macp';
/** Stage dispatch mode. */
export type StageDispatch = 'exec' | 'yolo' | 'pi';
@@ -6,58 +6,6 @@ export type StageDispatch = 'exec' | 'yolo' | 'pi';
/** Stage type — determines agent selection and gate requirements. */
export type StageType = 'research' | 'review' | 'coding' | 'deploy';
/**
* Typed outcome for every gate and stage evaluation closed set (SDLC-D-035).
*
* Only `passed` means "verified by a real implementation". `simulated` is
* produced exclusively in explicit `--simulate` runs and is never satisfying.
*/
export type ForgeOutcome =
| 'passed'
| 'failed'
| 'blocked'
| 'error'
| 'waiting-for-authority'
| 'simulated'
| 'not-applicable';
/** A gate that requires authority (human/board) sign-off; no mechanical command can satisfy it. */
export interface AuthorityGate {
kind: 'authority';
capability: string;
reason: string;
}
/** A gate that requires a wired provider (e.g. an AI reviewer, CI pipeline) to evaluate. */
export interface ProviderGate {
kind: 'provider';
capability: string;
reason: string;
}
/** Forge quality gate: a real command, an authority sign-off, or a provider-backed check. */
export type ForgeGate = string | GateEntry | AuthorityGate | ProviderGate;
/** Typed result of evaluating a single quality gate. */
export interface ForgeGateResult {
gate: string;
outcome: ForgeOutcome;
reason: string;
exitCode?: number;
output?: string;
timedOut?: boolean;
}
/** Typed result of a task/stage execution returned by a TaskExecutor. */
export interface ForgeTaskResult {
task_id: string;
outcome: ForgeOutcome;
reason: string;
completed_at: string;
exit_code: number;
gate_results: ForgeGateResult[];
}
/** Stage specification — defines a single pipeline stage. */
export interface StageSpec {
number: string;
@@ -66,7 +14,7 @@ export interface StageSpec {
type: StageType;
gate: string;
promptFile: string;
qualityGates: ForgeGate[];
qualityGates: (string | GateEntry)[];
}
/** Brief classification. */
@@ -77,18 +25,11 @@ export type ClassSource = 'cli' | 'frontmatter' | 'auto';
/** Per-stage status within a run manifest. */
export interface StageStatus {
status: 'pending' | 'in_progress' | ForgeOutcome;
/** Why the stage reached its current (terminal) outcome, when applicable. */
reason?: string;
status: 'pending' | 'in_progress' | 'passed' | 'failed';
startedAt?: string;
completedAt?: string;
/** Typed per-gate results recorded alongside the stage outcome. */
gateResults?: ForgeGateResult[];
}
/** Execution mode of a run. */
export type RunMode = 'normal' | 'simulated';
/** Run manifest — persisted to disk as manifest.json. */
export interface RunManifest {
runId: string;
@@ -97,23 +38,10 @@ export interface RunManifest {
briefClass: BriefClass;
classSource: ClassSource;
forceBoard: boolean;
/**
* Execution mode. `simulated` runs stub execution; their results are typed
* `simulated` and must never be read as verified success. Optional because
* manifests written before this field existed default to `normal`.
*/
mode?: RunMode;
createdAt: string;
updatedAt: string;
currentStage: string;
status:
| 'in_progress'
| 'completed'
| 'failed'
| 'interrupted'
| 'rejected'
| 'simulated'
| 'waiting-for-authority';
status: 'in_progress' | 'completed' | 'failed' | 'interrupted' | 'rejected';
stages: Record<string, StageStatus>;
}
@@ -137,7 +65,7 @@ export interface ForgeTask {
briefPath: string;
resultPath: string;
timeoutSeconds: number;
qualityGates: ForgeGate[];
qualityGates: (string | GateEntry)[];
worktree?: string;
command?: string;
dependsOn?: string[];
@@ -148,7 +76,7 @@ export interface ForgeTask {
/** Abstract task executor — decouples from packages/coord. */
export interface TaskExecutor {
submitTask(task: ForgeTask): Promise<void>;
waitForCompletion(taskId: string, timeoutMs: number): Promise<ForgeTaskResult>;
waitForCompletion(taskId: string, timeoutMs: number): Promise<TaskResult>;
getTaskStatus(taskId: string): Promise<ForgeTaskStatus>;
}
@@ -194,16 +122,7 @@ export interface PipelineOptions {
stages?: string[];
skipTo?: string;
dryRun?: boolean;
/**
* Real task executor. Required in normal mode: the pipeline fails closed
* with FORGE_NO_EXECUTOR when it is absent.
*/
executor?: TaskExecutor;
/**
* Explicit opt-in to simulated execution. Every stage and gate result is
* typed `simulated` and is never satisfying.
*/
simulate?: boolean;
executor: TaskExecutor;
}
/** Pipeline run result. */
-27
View File
@@ -12,33 +12,6 @@ The default tmux socket is `mosaic-fleet` so fleet commands do not touch the
default tmux server. The roster is the desired-state authority; generated environment files are
rebuildable projections, never a second source of configuration.
## Brain-home split (fleet state vs framework templates)
When a mosaic-brain clone is present, fleet **state** resolves from the brain
home while framework templates and dispatch state stay in the config home
(three-tree model, canon `docs/STRUCTURE-CANON.md` §2):
| Path | Without brain (legacy) | With brain |
| ------------------------------------------------------------------------------- | ------------------------------------- | ------------------------------ |
| `fleet/agents/<seat>.env.*` | `~/.config/mosaic/fleet/agents/` | `~/.mosaic/fleet/agents/` |
| `fleet/roles.local/` (overrides) | `~/.config/mosaic/fleet/roles.local/` | `~/.mosaic/fleet/roles.local/` |
| `fleet/profiles/` (working copies) | `~/.config/mosaic/fleet/profiles/` | `~/.mosaic/fleet/profiles/` |
| `fleet/roster.yaml`, `fleet/roles/` (baseline), `fleet/run/`, `fleet/services/` | `~/.config/mosaic/fleet/…` | unchanged (config home) |
Activation (`packages/mosaic/src/fleet/brain-home.ts`, mirrored in
`tools/fleet/start-agent-session.sh`):
1. `MOSAIC_BRAIN_HOME` env var — explicit, always wins.
2. Canonical `~/.mosaic` — adopted only when `MOSAIC_HOME` is the default
`~/.config/mosaic` AND `~/.mosaic/fleet/agents` exists. Custom
`--mosaic-home` values (tests, sandboxes, canaries) never adopt, keeping
them hermetic.
3. Otherwise the config home (legacy single-tree behavior).
Seat env dirs under a brain are subject to the same privacy boundary (0700
dirs, 0600 files); `.env.generated` files are structure-valuable and tracked
in the brain repo, hand-maintained `.env`/`.env.local` stay ignored and private.
## Examples
- `examples/minimal.yaml` starts one local canary slot.
@@ -255,68 +255,6 @@ fleet_declared_transport() {
printf '%s\n' "${declared:-tmux}"
}
# Brain-home fleet-state resolution (#1298; canon STRUCTURE-CANON §2).
#
# Seat launch envs, roles.local overrides, and profile working copies resolve
# from the brain home when one is active; roster, baseline roles, run/, and
# services stay under MOSAIC_HOME. This check surfaces which tree fleet state
# resolves from and the drift a launch would otherwise hit at runtime:
#
# - a stale MOSAIC_BRAIN_HOME pointing at a directory with no fleet/agents is a
# misconfiguration the resolver honors (explicit wins) — warn, don't pass;
# - a symlinked brain or agents dir defeats the managed-directory boundary;
# - a group/world-readable agents dir violates the 0700 projection boundary;
# - env files left in the config-home tree while a brain is active are split
# state — the write path rejects NEW split writes, but nothing would ever
# tell the operator the old files are stranded.
resolve_brain_home() {
local explicit="${MOSAIC_BRAIN_HOME:-}"
if [[ -n "$(printf '%s' "$explicit" | tr -d '[:space:]')" ]]; then
printf '%s' "$explicit"
return
fi
if [[ "$(cd "$MOSAIC_HOME" 2>/dev/null && pwd -P)" == "$HOME/.config/mosaic" \
&& -d "$HOME/.mosaic/fleet/agents" ]]; then
printf '%s' "$HOME/.mosaic"
return
fi
printf '%s' "$MOSAIC_HOME"
}
check_brain_home() {
local brain agents mode
brain="$(resolve_brain_home)"
if [[ "$brain" == "$MOSAIC_HOME" ]]; then
pass "Fleet state home: $MOSAIC_HOME (legacy single-tree; no brain adopted)"
return
fi
agents="$brain/fleet/agents"
if [[ ! -d "$agents" ]]; then
warn "Brain home '$brain' has no fleet/agents — seat envs will not resolve from it. Point MOSAIC_BRAIN_HOME at a brain carrying fleet/agents, or unset it."
return
fi
if [[ -L "$brain" || -L "$agents" ]]; then
warn "Brain fleet-state path resolves through a symlink ($brain) — the managed-directory boundary requires regular directories."
return
fi
mode="$(stat -c '%a' -- "$agents" 2>/dev/null)" || mode=""
if [[ -n "$mode" ]] && (( (8#$mode & 8#077) != 0 )); then
warn "Brain agents dir '$agents' is group/world-accessible (mode $mode) — the projection boundary requires 0700."
return
fi
if [[ -d "$MOSAIC_HOME/fleet/agents" ]] \
&& ls "$MOSAIC_HOME/fleet/agents/"*.env* >/dev/null 2>&1; then
warn "Fleet env files exist in BOTH trees — brain '$brain' is active but '$MOSAIC_HOME/fleet/agents' still carries env files (split state). Migrate them (mosaic fleet regen) and remove the config-home copies."
return
fi
pass "Fleet state home: $brain (brain active); roster + templates: $MOSAIC_HOME"
}
check_fleet_transport() {
local transport
transport="$(fleet_declared_transport)"
@@ -335,8 +273,6 @@ check_fleet_transport() {
check_fleet_transport
check_brain_home
# Legacy migration surfaces should no longer contain symlink trees.
legacy_paths=(
"$HOME/.claude/agent-guides"
@@ -1,108 +0,0 @@
#!/usr/bin/env bash
# Covers the brain-home fleet-state check in `mosaic-doctor` (#1298 follow-up).
#
# The functions are extracted from the shipped script rather than copied here
# (same discipline as test-fleet-transport-check.sh): a test that carries its
# own copy of the logic keeps passing after the shipped copy changes.
# Extraction is by exact function header and a closing brace in column one.
set -euo pipefail
SCRIPT_DIR=$(cd -- "$(dirname "$0")" && pwd)
DOCTOR="$SCRIPT_DIR/mosaic-doctor"
fail() {
echo "FAIL: $*" >&2
exit 1
}
[ -f "$DOCTOR" ] || fail "missing mosaic-doctor at $DOCTOR"
extract_function() {
local name="$1"
local extracted
extracted=$(sed -n "/^${name}() {/,/^}/p" "$DOCTOR")
[ -n "$extracted" ] || fail "could not extract ${name}() from mosaic-doctor — script reshaped?"
printf '%s\n' "$extracted"
}
for fn in resolve_brain_home check_brain_home; do
extract_function "$fn" >/dev/null
done
warn_count=0
warn() { warn_count=$((warn_count + 1)); echo "[WARN] $*"; }
pass() { echo "[OK] $*"; return 0; }
eval "$(extract_function resolve_brain_home)"
eval "$(extract_function check_brain_home)"
ROOT=$(mktemp -d)
trap 'rm -rf "$ROOT"' EXIT
run_case() {
# label, expect (ok|warn), then env assignments as arguments.
# The check runs under `env` in a subshell, so its warn() also prints a
# sentinel the parent counts — a subshell counter would never be visible.
local label="$1" expect="$2"
shift 2
local out warns
out=$(env "$@" bash -c "warn() { echo \"[WARN] \$*\"; }; pass() { echo \"[OK] \$*\"; return 0; }; $(extract_function resolve_brain_home); $(extract_function check_brain_home); check_brain_home" 2>&1)
warns=$(printf '%s\n' "$out" | grep -c '^\[WARN\]' || true)
if [[ "$expect" == ok && "$warns" -eq 0 ]]; then
echo "ok - $label"
elif [[ "$expect" == warn && "$warns" -gt 0 ]]; then
echo "ok - $label (warned)"
else
echo "output: $out" >&2
fail "$label: expected $expect (warns=$warns)"
fi
}
# ── legacy: no brain, custom home never adopts ─────────────────────────────
mkdir -p "$ROOT/legacy-mosaic/fleet/agents"
run_case "custom home without brain stays legacy" ok \
MOSAIC_HOME="$ROOT/legacy-mosaic" HOME="$ROOT"
# ── healthy brain at the default config home ───────────────────────────────
mkdir -p "$ROOT/home/.config/mosaic" "$ROOT/home/.mosaic/fleet/agents"
chmod 700 "$ROOT/home/.mosaic/fleet/agents"
run_case "default home adopts healthy brain" ok \
MOSAIC_HOME="$ROOT/home/.config/mosaic" HOME="$ROOT/home"
# ── explicit MOSAIC_BRAIN_HOME to a brain without fleet/agents → warn ──────
mkdir -p "$ROOT/brain-noagents/fleet" "$ROOT/config"
run_case "explicit brain without agents warns" warn \
MOSAIC_HOME="$ROOT/config" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-noagents"
# ── explicit MOSAIC_BRAIN_HOME to a healthy brain → ok ─────────────────────
mkdir -p "$ROOT/brain-ok/fleet/agents" "$ROOT/config2"
chmod 700 "$ROOT/brain-ok/fleet/agents"
run_case "explicit healthy brain passes" ok \
MOSAIC_HOME="$ROOT/config2" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-ok"
# ── group-readable agents dir → warn (0700 boundary) ───────────────────────
mkdir -p "$ROOT/brain-loose/fleet/agents" "$ROOT/config3"
chmod 750 "$ROOT/brain-loose/fleet/agents"
run_case "group-readable brain agents warns" warn \
MOSAIC_HOME="$ROOT/config3" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-loose"
# ── symlinked agents dir → warn (managed-directory boundary) ───────────────
mkdir -p "$ROOT/brain-link/real-agents" "$ROOT/brain-link/fleet" "$ROOT/config4"
ln -s "$ROOT/brain-link/real-agents" "$ROOT/brain-link/fleet/agents"
run_case "symlinked brain agents warns" warn \
MOSAIC_HOME="$ROOT/config4" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-link"
# ── split state: envs in BOTH trees → warn ─────────────────────────────────
mkdir -p "$ROOT/brain-split/fleet/agents" "$ROOT/config5/fleet/agents"
chmod 700 "$ROOT/brain-split/fleet/agents" "$ROOT/config5/fleet/agents"
touch "$ROOT/config5/fleet/agents/coder0.env.generated"
run_case "env files in both trees warns (split state)" warn \
MOSAIC_HOME="$ROOT/config5" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-split"
# ── config-home agents dir WITHOUT env files alongside a brain → ok ────────
mkdir -p "$ROOT/brain-clean/fleet/agents" "$ROOT/config6/fleet/agents"
chmod 700 "$ROOT/brain-clean/fleet/agents" "$ROOT/config6/fleet/agents"
run_case "empty config-home agents dir alongside brain passes" ok \
MOSAIC_HOME="$ROOT/config6" HOME="$ROOT" MOSAIC_BRAIN_HOME="$ROOT/brain-clean"
echo "ok - mosaic-doctor brain-home check"
@@ -80,26 +80,6 @@ safe_path "$MOSAIC_HOME" || fail_env unsafe-path MOSAIC_HOME "$MOSAIC_HOME"
FLEET_DIR="$MOSAIC_HOME/fleet"
AGENT_ENV_DIR="$FLEET_DIR/agents"
# Brain-home split (canon docs/STRUCTURE-CANON.md §2): seat launch envs live
# under the brain home's fleet/agents when a brain is active; roster, roles
# baseline, and runtime state (fleet/run) stay under MOSAIC_HOME.
# Resolution mirrors packages/mosaic/src/fleet/brain-home.ts:
# 1. MOSAIC_BRAIN_HOME env (explicit, always wins)
# 2. ~/.mosaic — adopted only when MOSAIC_HOME is the default config home AND
# ~/.mosaic/fleet/agents exists
# 3. MOSAIC_HOME (legacy single-tree)
BRAIN_HOME="${MOSAIC_BRAIN_HOME:-}"
if [ -z "$BRAIN_HOME" ]; then
BRAIN_HOME="$MOSAIC_HOME"
if [ "$(cd "$MOSAIC_HOME" 2>/dev/null && pwd -P)" = "$HOME/.config/mosaic" ] \
&& [ -d "$HOME/.mosaic/fleet/agents" ]; then
BRAIN_HOME="$HOME/.mosaic"
fi
fi
if [ "$BRAIN_HOME" != "$MOSAIC_HOME" ]; then
AGENT_ENV_DIR="$BRAIN_HOME/fleet/agents"
fi
assert_managed_directory "$MOSAIC_HOME"
assert_managed_directory "$FLEET_DIR"
assert_private_directory "$AGENT_ENV_DIR"
@@ -167,54 +167,6 @@ if echo "$valid_args" | grep -qF 'bash -c'; then
fail "launcher constructed a shell command payload"
fi
# ── Brain-home split (canon §2) ─────────────────────────────────────────
# When MOSAIC_HOME is the default config home under $HOME and the host carries
# $HOME/.mosaic/fleet/agents, seat envs resolve from the brain tree; the config
# home still owns fleet/run (holder-owner) and remains a managed boundary.
: > "$TMUX_CALLS"
HOME_BRAIN="$ROOT/brain-home"
CONFIG_HOME="$HOME_BRAIN/.config/mosaic"
BRAIN="$HOME_BRAIN/.mosaic"
mkdir -p "$CONFIG_HOME/fleet/run" "$BRAIN/fleet/agents" "$HOME_BRAIN/work"
chmod 700 "$CONFIG_HOME" "$CONFIG_HOME/fleet" "$CONFIG_HOME/fleet/run" \
"$BRAIN/fleet/agents" "$HOME_BRAIN/work"
printf '123e4567-e89b-12d3-a456-426614174000\n' > "$CONFIG_HOME/fleet/run/holder-owner"
chmod 600 "$CONFIG_HOME/fleet/run/holder-owner"
cat > "$BRAIN/fleet/agents/coder-brain.env.generated" <<EOF
MOSAIC_AGENT_NAME=coder-brain
MOSAIC_AGENT_CLASS=code
MOSAIC_AGENT_RUNTIME=pi
MOSAIC_AGENT_MODEL=openai-codex/gpt-5.6-sol
MOSAIC_AGENT_REASONING=high
MOSAIC_AGENT_TOOL_POLICY=code
MOSAIC_AGENT_WORKDIR=$HOME_BRAIN/work
MOSAIC_TMUX_SOCKET=mosaic-test
EOF
chmod 600 "$BRAIN/fleet/agents/coder-brain.env.generated"
install_pane_binaries "$HOME_BRAIN"
HOME="$HOME_BRAIN" PATH="$FAKE_BIN:$PATH" MOSAIC_TEST_TMUX_CALLS="$TMUX_CALLS" \
MOSAIC_TEST_PANE_PID=$$ MOSAIC_TEST_HOME="$HOME_BRAIN" \
MOSAIC_TEST_FLEET_OWNER=123e4567-e89b-12d3-a456-426614174000 \
MOSAIC_HOME="$CONFIG_HOME" "$START" coder-brain
brain_args=$(tr '\0' '\n' < "$TMUX_CALLS")
echo "$brain_args" | grep -qF new-session || fail "brain-home generated projection did not reach tmux"
echo "$brain_args" | grep -qF 'coder-brain' || fail "brain-home agent env was not the launch source"
[ -f "$BRAIN/fleet/agents/coder-brain.env.generated" ] || fail "brain generated env vanished"
# Negative control: the SAME default-config-home shape but without
# ~/.mosaic/fleet/agents — the config-home env tree is used directly (legacy).
: > "$TMUX_CALLS"
HOME_NOBRAIN="$ROOT/brainless-home"
CONFIG_HOME_NOBRAIN="$HOME_NOBRAIN/.config/mosaic"
write_generated "$CONFIG_HOME_NOBRAIN" "coder-legacy"
install_pane_binaries "$HOME_NOBRAIN"
HOME="$HOME_NOBRAIN" PATH="$FAKE_BIN:$PATH" MOSAIC_TEST_TMUX_CALLS="$TMUX_CALLS" \
MOSAIC_TEST_PANE_PID=$$ MOSAIC_TEST_HOME="$HOME_NOBRAIN" \
MOSAIC_TEST_FLEET_OWNER=123e4567-e89b-12d3-a456-426614174000 \
MOSAIC_HOME="$CONFIG_HOME_NOBRAIN" "$START" coder-legacy
legacy_args=$(tr '\0' '\n' < "$TMUX_CALLS")
echo "$legacy_args" | grep -qF new-session || fail "legacy single-tree launch regressed"
# The pane must start through an absolute clean-environment boundary. Its
# runtime command remains an argv vector, but no holder/session environment
# control variable can pass through the pane command.
@@ -39,20 +39,3 @@ packages/mosaic/framework/tools/tmux/test-send-message-verdict.sh | requires rea
# recorded judgement. These lines ARE that judgement, signed.)
packages/mosaic/framework/tools/orchestrator/smoke-test.sh | behavior smoke checks for coord continue/run workflows, run manually by orchestrator seats; unmeasured in CI; #1017 burndown
packages/mosaic/framework/tools/wake/validate-973/microtest-wake-assert.sh | #973 instrument self-test, run as a precondition of the validate-973 evidence procedure rather than as a standing CI suite; #1017 burndown candidate
# --- tools/fleet: precondition is unsatisfiable in the CI image (#1271) ---
# Signed by fred (sb-it-1-dt, 2026-08-16) at origin/next 476db12.
# This suite asserts the launcher's behaviour when `mosaic` and `pi` are MISSING.
# It shims fakes into $FAKE_BIN, but the constructed PANE_PATH always ends in the
# real system path, so on a host that installs those binaries the missing-binary
# cases cannot be measured at all. The suite's own guard (line 103) says so and
# fails rather than reporting a pass it cannot back. That guard is correct.
# The error was wiring the suite into CI: #1017 (c56483eb) enumerated it and
# dropped this exclusion, and the CI image provides `pi` in the system path, so
# it has failed on every pipeline since. Measured 2026-08-16 across pipelines
# 2444 (#1256), 2438 (#1240) and 2441 (#1017-quality): exactly one FAIL line in
# each full log, identical, this assertion; control `zzz-not-present-zzz` -> 0.
# Burn-down and the full measurement are tracked in #1271; unwired by PR #1270.
# Because test:framework-shell is one && chain and this sat at position 44 of 48,
# the four suites after it had not run at all since the merge.
packages/mosaic/framework/tools/fleet/test-start-agent-session.sh | precondition unsatisfiable in the CI image: asserts missing-binary behaviour, but PANE_PATH always ends in the system path and the image provides `pi` there; guard at line 103 fails by design rather than passing unmeasured. Burn down by controlling the tail of PANE_PATH inside the test. NOT by removing `pi` from the image: the CI image installs @earendil-works/[email protected] deliberately (measured in pipeline 2444's test-step log), and other suites depend on that pin. Burn-down tracked in #1271
@@ -97,13 +97,34 @@ printf '%s' "$MSG" | "${tmux_cmd[@]}" load-buffer -b "$BUF" -
# would otherwise accumulate forever.
sleep 0.5
# 2) Submit, then POSITIVELY confirm submission; flush with another Enter if it is
# still a draft. Success requires positive evidence — the queued banner, OR the
# REPL input box located AND clear of our message tail. The historical bug was
# treating ABSENCE of a draft as delivery: if the prompt glyph was never matched
# (wrong pane / prompt-glyph drift), an unsubmitted message read as "delivered"
# and worker->lead relays stalled silently. We now default to UNCONFIRMED and only
# upgrade to delivered on positive evidence; anything we cannot confirm fails loud.
# 2) Submit, then POSITIVELY confirm submission by DRAFT TRANSITION, not by prompt
# glyph. The historical bug was treating ABSENCE of a draft as delivery; the
# 2026-08 fix over-corrected to glyph inference (grep '|^>|│ >'), which locates
# only Claude Code's box and false-NEGATIVES every glyphless REPL (pi renders a
# U+2500 rule, no glyph) — a delivered message reported "UNDELIVERED", driving a
# retry that duplicates it. Runtime-agnostic evidence: our message tail sits on
# the INPUT line (located by the cursor row, not a glyph) BEFORE Enter, and has
# LEFT it AFTER — that transition is positive proof of submission and needs no
# glyph. Absence alone still never means delivered: if we never saw our draft on
# the input line we stay UNCONFIRMED (wrong/dead pane), and a draft that never
# leaves the input line stays a DRAFT (exit 2), preserving both historical guards.
_cursor_line() { # echo the pane's current input (cursor) line, glyph-free
local cy line
cy=$("${tmux_cmd[@]}" display-message -p -t "$EFFECTIVE_TARGET" -F '#{cursor_y}' 2>/dev/null) || return 1
[ -n "$cy" ] || return 1
"${tmux_cmd[@]}" capture-pane -t "$EFFECTIVE_TARGET" -p 2>/dev/null | sed -n "$((cy + 1))p"
}
_draft_on_input() { # true iff our message tail is sitting on the input line now
[ -n "$snippet" ] || return 1
printf '%s' "$(_cursor_line)" | grep -qF "$snippet"
}
# Baseline: after the paste, our draft must be on the input line. This is positive
# proof we are on the right pane and the paste landed — the anchor the transition
# check measures against.
saw_draft=0
_draft_on_input && saw_draft=1
status="unconfirmed"
for attempt in $(seq 1 $((RETRIES + 1))); do
"${tmux_cmd[@]}" send-keys -t "$EFFECTIVE_TARGET" Enter
@@ -113,20 +134,26 @@ for attempt in $(seq 1 $((RETRIES + 1))); do
if printf '%s' "$pane" | grep -qF "$QUEUED_RE"; then
status="queued"; break
fi
# Locate the REPL input box (prompt glyph). If we cannot see it, we have NO
# evidence of submission state — stay UNCONFIRMED and retry; never infer delivery.
# POSITIVE draft evidence from a located prompt box, when one exists. This is the
# cursor-row check's blind spot: a pane in COOKED mode (a plain shell whose
# foreground process never reads stdin) echoes our paste via the kernel line
# discipline and moves the cursor off it on Enter, which is indistinguishable from
# a real submit by cursor row alone. If a prompt box IS locatable and still carries
# our tail, that is affirmative proof the message was not consumed. Absence of a
# glyph is still never used for anything — that inference is the original E7 bug.
promptline=$(printf '%s' "$pane" | grep -E '|^>|│ >' | tail -1)
if [ -z "$promptline" ]; then
status="unconfirmed"; continue
fi
# Input box located AND still carrying our tail => unsubmitted draft. Flush + retry.
# (Submitted messages scroll up into history; a draft stays on the line.)
if [ -n "$snippet" ] && printf '%s' "$promptline" | grep -qF "$snippet"; then
if [ -n "$promptline" ] && [ -n "$snippet" ] && printf '%s' "$promptline" | grep -qF "$snippet"; then
status="draft"; continue
fi
# Input box located AND clear of our tail => positively submitted. This is the
# only path to success besides the queued banner.
status="delivered"; break
if [ "$saw_draft" = 1 ]; then
if _draft_on_input; then
status="draft"; continue # still on the input line => not submitted; flush + retry
fi
status="delivered"; break # left the input line => positively submitted
fi
# No confirmed baseline yet: try to (re)acquire it; never infer delivery from absence.
if _draft_on_input; then saw_draft=1; status="draft"; continue; fi
status="unconfirmed"; continue
done
[ "$VERBOSE" = 1 ] && { echo "--- pane tail ($TARGET) ---"; printf '%s\n' "$pane" | tail -4; echo "---"; }
@@ -0,0 +1,97 @@
#!/usr/bin/env bash
# Red-first regression test for E7 (#1017 task 2): the confirm-check must bind
# "delivered" to WHETHER THE MESSAGE WAS SUBMITTED, not to which runtime's prompt
# glyph is present. A pi seat renders a U+2500 rule input box with no /^>/│ >
# glyph; send-message.sh:118 locates the box only by glyph, so a genuinely
# delivered message on a glyphless REPL falsely reports exit 2 "may be UNDELIVERED",
# and the operator's rc=2-driven retry duplicates it.
#
# Parameterized on $SEND: RED against the shipping blob (B and D fail), GREEN
# against a candidate patch. No pi; no fake HOME; hermetic throwaway socket.
#
# Submission counting is EXACT and terminal-echo-independent: the fixture message
# is `echo <tok> >>SINK`; each real submission appends one line. wc -l SINK ==
# number of times the REPL actually executed the send. This does not depend on how
# many times the marker string is painted on screen.
set -u
SEND="${SEND:?set SEND=/path/to/send-message.sh}"
SOCKET="glyphagnostic-$$"
TMP="$(mktemp -d)"
tmux() { command tmux -L "$SOCKET" "$@"; }
cleanup() { command tmux -L "$SOCKET" kill-server 2>/dev/null; rm -rf "$TMP"; }
trap cleanup EXIT
pass=0; fail=0
ok() { printf 'ok %s\n' "$1"; pass=$((pass+1)); }
no() { printf 'FAIL %s -- %s\n' "$1" "$2"; fail=$((fail+1)); }
mk() { tmux new-session -d -s "$1" -x 120 -y 40 -c "$TMP" "PS1='$2' exec bash --noprofile --norc -i"; sleep 0.5; }
subs() { [ -f "$1" ] && wc -l <"$1" | tr -d ' ' || echo 0; } # exact submission count
echo "SEND=$SEND tmux $(command tmux -V | awk '{print $2}')"
# --- A (control): glyph box () that submits => exit 0, exactly one submission.
mk ctl ' '
SINK="$TMP/sink.ctl"
out=$("$SEND" -L "$SOCKET" -t ctl -m "echo x >>'$SINK'" 2>"$TMP/e.ctl"); rc=$?; sleep 0.4
if [ "$rc" = 0 ] && [ "$(subs "$SINK")" = 1 ]; then
ok "control: -box submits => exit 0, exactly one submission"
else no "control: -box submits => exit 0, one submission" "rc=$rc subs=$(subs "$SINK") err=[$(cat "$TMP/e.ctl")]"; fi
# --- B (THE false-rc regression): glyphless U+2500 box that SUBMITS. Message lands
# (subs==1) yet shipping reports exit 2. Must be exit 0.
mk sub $'──────── \n'
SINK="$TMP/sink.sub"
out=$("$SEND" -L "$SOCKET" -t sub -m "echo x >>'$SINK'" 2>"$TMP/e.sub"); rc=$?; sleep 0.4
if [ "$rc" = 0 ] && [ "$(subs "$SINK")" = 1 ]; then
ok "glyphless: U+2500 box that submits => exit 0 (delivered, not 'UNDELIVERED')"
else no "glyphless: U+2500 box that submits => exit 0" \
"rc=$rc subs=$(subs "$SINK")(delivered=$([ "$(subs "$SINK")" -ge 1 ] && echo yes||echo no)) err=[$(cat "$TMP/e.sub")]"; fi
# --- D (duplicate arm): operator follows the rc=2 stderr and retries once. On the
# glyphless box, shipping => two submissions (the reported duplicate). The
# property: one logical send => exactly one submission. Same fix closes it.
mk dup $'──────── \n'
SINK="$TMP/sink.dup"
tries=0
for attempt in 1 2; do
tries=$((tries+1))
out=$("$SEND" -L "$SOCKET" -t dup -m "echo x >>'$SINK'" 2>/dev/null); rc=$?
sleep 0.4
[ "$rc" = 0 ] && break # operator stops retrying only when told delivered
done
if [ "$(subs "$SINK")" = 1 ]; then
ok "duplicate: one logical send (rc-driven retry) => exactly one submission (tries=$tries)"
else no "duplicate: one logical send => exactly one submission" "submissions=$(subs "$SINK") tries=$tries"; fi
# --- E (faithful hung managed TUI, NOT a cooked shell): raw/no-echo, paints nothing.
# A cooked `sleep infinity` echoes the paste via the kernel line discipline and
# false-passes a cursor-row fix that is correct on real seats (measured). So: raw.
mk_rawstuck() { tmux new-session -d -s "$1" -x 120 -y 40 -c "$TMP" \
"bash --noprofile --norc -c 'stty -echo -icanon min 1 time 0 2>/dev/null; exec sleep infinity'"; sleep 0.5; }
mk_rawstuck estuck
SINK="$TMP/sink.estuck"
out=$("$SEND" -L "$SOCKET" -t estuck -r 1 -m "this stuck draft was never submitted" 2>/dev/null); rc=$?
sleep 0.3
if [ "$rc" != 0 ] && [ "$(subs "$SINK")" = 0 ]; then
ok "raw/no-echo stuck TUI (not submitted) => non-zero (no false delivered)"
else no "raw stuck TUI must NOT report delivered" "rc=$rc subs=$(subs "$SINK")"; fi
# --- F (busy/queued branch, your BUSY-not-runtime finding): glyphless pane rendering the
# queued banner, never consuming. QUEUED_RE :113 fires before the glyph grep => rc=0.
mk_busy() { tmux new-session -d -s "$1" -x 120 -y 40 -c "$TMP" \
"bash --noprofile --norc -c 'printf \"Press up to edit queued messages\n\"; exec sleep infinity'"; sleep 0.5; }
mk_busy ebusy
SINK="$TMP/sink.ebusy"
out=$("$SEND" -L "$SOCKET" -t ebusy -m "echo x >>'$SINK'" 2>/dev/null); rc=$?; sleep 0.3
if [ "$rc" = 0 ]; then
ok "busy/queued-banner glyphless => exit 0 (queued is delivery; runtime owns custody)"
else no "busy/queued-banner must report delivered" "rc=$rc"; fi
# --- C (historical-bug guard): unresolvable target. No pane ever carried our draft
# => must fail, never infer delivered from absence of a glyph/snippet.
if out=$("$SEND" -L "$SOCKET" -t "nonexistent-$$" -m "echo x >>'$TMP/sink.wrong'" 2>/dev/null); then
no "wrong-pane: unresolvable target must NOT report success" "expected non-zero, got 0"
else ok "wrong-pane: unresolvable target => non-zero (no false delivered)"; fi
echo "---"; echo "pass=$pass fail=$fail"
[ "$fail" = 0 ]
@@ -4,10 +4,13 @@
#
# 1. DELIVERED — a REPL that renders a ` ` input box and submits on Enter
# (text scrolls to history, box clears) => exit 0 "✓ delivered".
# 2. UNCONFIRMED — a pane with NO locatable prompt glyph. This is the exact
# historical FALSE POSITIVE: pre-patch it printed "✓ delivered"
# exit 0; post-patch it MUST fail loud (exit 2, stderr
# "could not confirm submission").
# 2. DELIVERED — a pane with NO prompt glyph that DOES submit => exit 0. A pi
# seat is this fixture (U+2500 rule, no glyph). Reshaped for
# #1257; see the note at the fixture for why the old exit-2
# assertion was wrong.
# 2b. UNCONFIRMED— a glyphless pane that never submits (raw/no-echo hung TUI)
# => must fail loud. This carries the historical
# false-positive guard that fixture 2 used to be credited with.
# 3. DRAFT — a ` `-prompt pane that never submits (message stays on the
# input line) => exit 2, stderr "unsubmitted draft".
set -uo pipefail
@@ -37,19 +40,44 @@ else
no "delivered: -prompt REPL that submits => exit 0 ✓ delivered" "rc=$rc out=[$out] err=[$(cat "$TMP/e1")]"
fi
# --- Fixture 2: NO prompt glyph (default bash PS1). THE regression: pre-patch this
# was a silent false-positive "delivered"; post-patch it must be unconfirmed→exit 2.
# --- Fixture 2: NO prompt glyph, and the pane DOES submit (interactive bash).
# RESHAPED 2026-08-16 (#1257), deliberately. This fixture previously asserted
# exit 2 here and was labelled "false-positive FIXED". That assertion was wrong,
# and locking it in is what kept E7 alive: the pane submits, so "delivered" is
# the truth, and a pi seat — whose input box is a bare U+2500 rule with no glyph
# — IS this fixture. Reporting exit 2 for it told operators a delivered message
# may be undelivered, and the retry that advice invites is the duplicate.
#
# The guard this fixture was reaching for is real and is NOT dropped: "never
# infer delivered from absence" is now enforced positively by fixture 2b below
# (glyphless AND not submitting => must fail) and by fixture 3 (locatable box
# still carrying our tail => draft). Absence alone decides nothing either way.
tmux -L "$SOCKET" new-session -d -s noglyph -c "$TMP" \
'PS1="sh-noglyph$ " exec bash --noprofile --norc -i'
sleep 0.3
if out=$("$SEND" -L "$SOCKET" -t "=noglyph" -m "verdict fixture two must fail loud" 2>"$TMP/e2"); then
no "unconfirmed: glyphless pane must NOT report success" "expected exit 2, got 0 (out=[$out])"
out=$("$SEND" -L "$SOCKET" -t "=noglyph" -m "verdict fixture two must fail loud" 2>"$TMP/e2"); rc=$?
if [ "$rc" -eq 0 ] && printf '%s' "$out" | grep -qF "✓ delivered"; then
ok "delivered: glyphless pane that submits => exit 0 (runtime-agnostic, E7 FIXED)"
else
no "delivered: glyphless pane that submits => exit 0" "rc=$rc out=[$out] err=[$(cat "$TMP/e2")]"
fi
# --- Fixture 2b: NO prompt glyph AND never submits — a hung managed TUI holding the
# terminal in raw/no-echo, which is what a stuck agent seat actually is (measured
# on live pi: stty -echo -icanon). Nothing is echoed, nothing is consumed, so
# there is no positive evidence of submission and the tool MUST fail loud. This
# is the historical false-positive guard, kept as a positive test.
tmux -L "$SOCKET" new-session -d -s rawstuck -c "$TMP" \
'bash --noprofile --norc -c "stty -echo -icanon min 1 time 0 2>/dev/null; exec sleep infinity"'
sleep 0.3
if out=$("$SEND" -L "$SOCKET" -t "=rawstuck" -r 1 -m "verdict fixture two-b never submitted" 2>"$TMP/e2b"); then
no "unconfirmed: glyphless hung TUI must NOT report success" "expected non-zero, got 0 (out=[$out])"
else
rc=$?
if [ "$rc" -eq 2 ] && grep -qF "could not confirm submission" "$TMP/e2"; then
ok "unconfirmed: glyphless pane => exit 2 + 'could not confirm submission' (false-positive FIXED)"
if [ "$rc" -ne 0 ] && grep -qF "could not confirm submission" "$TMP/e2b"; then
ok "unconfirmed: glyphless hung TUI (raw/no-echo) => non-zero + 'could not confirm submission'"
else
no "unconfirmed: glyphless pane => exit 2 + stderr" "rc=$rc err=[$(cat "$TMP/e2")]"
no "unconfirmed: glyphless hung TUI => non-zero + stderr" "rc=$rc err=[$(cat "$TMP/e2b")]"
fi
fi
+1 -1
View File
@@ -25,7 +25,7 @@
"lint": "eslint src",
"typecheck": "tsc --noEmit",
"test": "vitest run --passWithNoTests && pnpm run test:framework-shell",
"test:framework-shell": "bash framework/tools/quality/scripts/check-test-enumeration.sh && bash framework/tools/quality/scripts/test-check-test-enumeration.sh && python3 src/lease-broker/daemon_deadline_unittest.py && python3 src/lease-broker/normative_fragments_unittest.py && python3 src/lease-broker/promotion_binding_unittest.py && python3 src/lease-broker/promotion_trigger_unittest.py && python3 src/lease-broker/receipt_challenge_unittest.py && python3 src/lease-broker/context_recovery_unittest.py && python3 src/lease-broker/recovery_runtime_unittest.py && python3 src/lease-broker/recovery_b1_adversarial_unittest.py && python3 src/lease-broker/receipt_observer_client_unittest.py && python3 src/lease-broker/invariant_r_unittest.py && python3 src/lease-broker/framework_skill_portability_unittest.py && python3 src/mutator-gate/runtime_tools_unittest.py && python3 src/mutator-gate/runtime_launch_guard_unittest.py && python3 src/mutator-gate/version_coupling_unittest.py && python3 framework/tools/lease-broker/check-runtime-launches.py --root ../.. && bash framework/tools/codex/test-pr-diff-context.sh && bash framework/tools/qa/test-deps-preflight.sh && bash framework/tools/git/test-pr-review-gitea-comment.sh && bash framework/tools/git/test-pr-review-repo-host-override.sh && bash framework/tools/git/test-ci-queue-wait-branch-absent.sh && bash framework/tools/git/test-ci-queue-wait-tristate.sh && bash framework/tools/git/test-ci-queue-wait-github-checks.sh && bash framework/tools/git/test-pr-merge-queue-branch.sh && bash framework/tools/git/test-pr-merge-head-pin.sh && bash framework/tools/git/test-pr-merge-message-field.sh && bash framework/tools/git/test-git-credential-mosaic.sh && bash framework/tools/git/test-gitea-token-identity.sh && bash framework/tools/woodpecker/test-terminal-green-contract.sh && bash framework/tools/_scripts/test-install-ordering-guard.sh && bash framework/tools/_scripts/test-mosaic-init-rce.sh && bash framework/tools/tmux/agent-send.test.sh && bash framework/tools/wake/test-wake-store-ack.sh && bash framework/tools/wake/test-wake-store-enqueue-race.sh && bash framework/tools/wake/test-wake-digest-hmac.sh && bash framework/tools/wake/test-wake-digest-quarantine.sh && bash framework/tools/wake/test-wake-detector.sh && bash framework/tools/wake/test-wake-fn-oracle.sh && bash framework/tools/wake/test-wake-reconcile.sh && bash framework/tools/wake/test-wake-beacon.sh && bash framework/tools/wake/test-wake-preimage.sh && bash framework/tools/wake/test-wake-install.sh && bash framework/tools/glpi/test-list-http-status.sh && bash framework/tools/orchestrator/test-board-roll.sh && bash framework/tools/woodpecker/test-ci-wait-exit-matrix.sh && bash framework/tools/_scripts/test-fleet-transport-check.sh && bash framework/tools/_scripts/test-brain-home-check.sh"
"test:framework-shell": "bash framework/tools/quality/scripts/check-test-enumeration.sh && bash framework/tools/quality/scripts/test-check-test-enumeration.sh && python3 src/lease-broker/daemon_deadline_unittest.py && python3 src/lease-broker/normative_fragments_unittest.py && python3 src/lease-broker/promotion_binding_unittest.py && python3 src/lease-broker/promotion_trigger_unittest.py && python3 src/lease-broker/receipt_challenge_unittest.py && python3 src/lease-broker/context_recovery_unittest.py && python3 src/lease-broker/recovery_runtime_unittest.py && python3 src/lease-broker/recovery_b1_adversarial_unittest.py && python3 src/lease-broker/receipt_observer_client_unittest.py && python3 src/lease-broker/invariant_r_unittest.py && python3 src/lease-broker/framework_skill_portability_unittest.py && python3 src/mutator-gate/runtime_tools_unittest.py && python3 src/mutator-gate/runtime_launch_guard_unittest.py && python3 src/mutator-gate/version_coupling_unittest.py && python3 framework/tools/lease-broker/check-runtime-launches.py --root ../.. && bash framework/tools/codex/test-pr-diff-context.sh && bash framework/tools/qa/test-deps-preflight.sh && bash framework/tools/git/test-pr-review-gitea-comment.sh && bash framework/tools/git/test-pr-review-repo-host-override.sh && bash framework/tools/git/test-ci-queue-wait-branch-absent.sh && bash framework/tools/git/test-ci-queue-wait-tristate.sh && bash framework/tools/git/test-ci-queue-wait-github-checks.sh && bash framework/tools/git/test-pr-merge-queue-branch.sh && bash framework/tools/git/test-pr-merge-head-pin.sh && bash framework/tools/git/test-pr-merge-message-field.sh && bash framework/tools/git/test-git-credential-mosaic.sh && bash framework/tools/git/test-gitea-token-identity.sh && bash framework/tools/woodpecker/test-terminal-green-contract.sh && bash framework/tools/_scripts/test-install-ordering-guard.sh && bash framework/tools/_scripts/test-mosaic-init-rce.sh && bash framework/tools/tmux/agent-send.test.sh && bash framework/tools/wake/test-wake-store-ack.sh && bash framework/tools/wake/test-wake-store-enqueue-race.sh && bash framework/tools/wake/test-wake-digest-hmac.sh && bash framework/tools/wake/test-wake-digest-quarantine.sh && bash framework/tools/wake/test-wake-detector.sh && bash framework/tools/wake/test-wake-fn-oracle.sh && bash framework/tools/wake/test-wake-reconcile.sh && bash framework/tools/wake/test-wake-beacon.sh && bash framework/tools/wake/test-wake-preimage.sh && bash framework/tools/wake/test-wake-install.sh && bash framework/tools/fleet/test-start-agent-session.sh && bash framework/tools/glpi/test-list-http-status.sh && bash framework/tools/orchestrator/test-board-roll.sh && bash framework/tools/woodpecker/test-ci-wait-exit-matrix.sh && bash framework/tools/_scripts/test-fleet-transport-check.sh"
},
"dependencies": {
"@mosaicstack/brain": "workspace:*",
@@ -1,6 +1,5 @@
import { readFile } from 'node:fs/promises';
import { join, resolve } from 'node:path';
import { fleetAgentEnvDir, fleetRolesLocalDir } from '../fleet/brain-home.js';
import type { Command } from 'commander';
import {
executeFleetAgentMutation,
@@ -150,9 +149,9 @@ async function executeCommand(
request,
mosaicHome,
rosterPath,
agentEnvDir: fleetAgentEnvDir(mosaicHome),
agentEnvDir: join(mosaicHome, 'fleet', 'agents'),
rolesDir: join(mosaicHome, 'fleet', 'roles'),
overrideDir: fleetRolesLocalDir(mosaicHome),
overrideDir: join(mosaicHome, 'fleet', 'roles.local'),
dryRun: forceDryRun || opts.dryRun === true,
...(deps.projectionApplier === undefined ? {} : { projectionApplier: deps.projectionApplier }),
});
@@ -1,6 +1,5 @@
import { readFile } from 'node:fs/promises';
import { join } from 'node:path';
import { fleetAgentEnvDir, fleetRolesLocalDir } from '../fleet/brain-home.js';
import type { Command } from 'commander';
import {
parseV1MigrationObservations,
@@ -121,11 +120,11 @@ export function registerFleetMigrationCommand(
observations,
personaDirs: {
rolesDir: deps.rolesDir ?? join(mosaicHome, 'fleet', 'roles'),
overrideDir: deps.overrideDir ?? fleetRolesLocalDir(mosaicHome),
overrideDir: deps.overrideDir ?? join(mosaicHome, 'fleet', 'roles.local'),
},
environment: {
mosaicHome,
agentEnvDir: fleetAgentEnvDir(mosaicHome),
agentEnvDir: join(mosaicHome, 'fleet', 'agents'),
},
});
printJson(preview);
@@ -30,21 +30,19 @@ import { lstat, readFile, readdir, stat } from 'node:fs/promises';
import { homedir } from 'node:os';
import { basename, isAbsolute, join, sep } from 'node:path';
import type { Command } from 'commander';
import { fleetRolesLocalDir } from '../fleet/brain-home.js';
function defaultMosaicHome(): string {
return process.env['MOSAIC_HOME'] ?? join(homedir(), '.config', 'mosaic');
}
/** Baseline persona role contracts (reseeded on update; config home — framework). */
/** Baseline persona role contracts (reseeded on update). */
export function defaultRolesDir(mosaicHome = defaultMosaicHome()): string {
return join(mosaicHome, 'fleet', 'roles');
}
/** PRESERVE-protected override layer (survives update; wins on merge).
* Brain home (`~/.mosaic/fleet/roles.local`) when a brain is active. */
/** PRESERVE-protected override layer (survives update; wins on merge). */
export function defaultOverrideDir(mosaicHome = defaultMosaicHome()): string {
return fleetRolesLocalDir(mosaicHome);
return join(mosaicHome, 'fleet', 'roles.local');
}
/**
@@ -25,7 +25,6 @@ import { homedir } from 'node:os';
import { basename, join } from 'node:path';
import type { Command } from 'commander';
import YAML from 'yaml';
import { fleetProfilesDir } from '../fleet/brain-home.js';
import {
defaultOverrideDir,
extractClassesFromDir,
@@ -37,10 +36,9 @@ function defaultMosaicHome(): string {
return process.env['MOSAIC_HOME'] ?? join(homedir(), '.config', 'mosaic');
}
/** Directory holding the seeded profile yaml files brain home when active
* (user working copies, committed), else the config home seed. */
/** Directory holding the seeded profile yaml files. */
export function defaultProfilesDir(mosaicHome = defaultMosaicHome()): string {
return fleetProfilesDir(mosaicHome);
return join(mosaicHome, 'fleet', 'profiles');
}
/** Directory holding the persona role contracts. */
@@ -3,7 +3,6 @@ import { homedir } from 'node:os';
import { join, relative, resolve } from 'node:path';
import type { Command } from 'commander';
import type { CommandRunner } from './fleet.js';
import { fleetAgentEnvDir } from '../fleet/brain-home.js';
import {
applyPreparedGeneratedAgentEnvironmentProjection,
prepareGeneratedAgentEnvironmentProjection,
@@ -154,7 +153,7 @@ export async function executeFleetRegen(
options: FleetRegenOptions,
): Promise<FleetRegenResult> {
const mosaicHome = defaultMosaicHome(deps);
const agentEnvDir = fleetAgentEnvDir(mosaicHome);
const agentEnvDir = join(mosaicHome, 'fleet', 'agents');
const rosterPath = join(mosaicHome, 'fleet', 'roster.yaml');
const readRoster = deps.readRoster ?? defaultReadRoster(deps, mosaicHome);
const prepare = deps.prepareProjection ?? prepareGeneratedAgentEnvironmentProjection;
+1 -2
View File
@@ -13,7 +13,6 @@ import {
import { randomUUID } from 'node:crypto';
import { homedir, hostname, userInfo } from 'node:os';
import { dirname, join, resolve } from 'node:path';
import { fleetAgentEnvDir } from '../fleet/brain-home.js';
import { fileURLToPath } from 'node:url';
import { spawn } from 'node:child_process';
import * as readline from 'node:readline';
@@ -159,7 +158,7 @@ export function resolveFleetPaths(mosaicHome = defaultMosaicHome()): FleetPaths
fleetToolsDir: join(mosaicHome, 'tools', 'fleet'),
tmuxToolsDir: join(mosaicHome, 'tools', 'tmux'),
systemdUserDir: join(homedir(), '.config', 'systemd', 'user'),
agentEnvDir: fleetAgentEnvDir(mosaicHome),
agentEnvDir: join(mosaicHome, 'fleet', 'agents'),
};
}
@@ -349,90 +349,3 @@ describe('registerRuntimeLaunchers — claudex (EXPERIMENTAL overlay)', () => {
expect(mockExit).not.toHaveBeenCalled();
});
});
// ─── Seat harness homes (MOSAIC-D-002, brain-home split) ────────────────────
import { activeSeatDir, seatPersonaOverlay } from './launch.js';
describe('activeSeatDir — per-agent harness home resolution', () => {
let root: string;
const savedAgentName = process.env['MOSAIC_AGENT_NAME'];
const savedBrainHome = process.env['MOSAIC_BRAIN_HOME'];
beforeEach(() => {
root = mkdtempSync(join(tmpdir(), 'mosaic-seat-home-'));
delete process.env['MOSAIC_BRAIN_HOME'];
});
afterEach(() => {
rmSync(root, { recursive: true, force: true });
if (savedAgentName === undefined) {
delete process.env['MOSAIC_AGENT_NAME'];
} else {
process.env['MOSAIC_AGENT_NAME'] = savedAgentName;
}
if (savedBrainHome !== undefined) {
process.env['MOSAIC_BRAIN_HOME'] = savedBrainHome;
} else {
delete process.env['MOSAIC_BRAIN_HOME'];
}
});
it('resolves the seat dir when MOSAIC_BRAIN_HOME carries the seat', () => {
const seat = join(root, 'brain', 'fleet', 'agents', 'coder0');
mkdirSync(seat, { recursive: true });
process.env['MOSAIC_AGENT_NAME'] = 'coder0';
process.env['MOSAIC_BRAIN_HOME'] = join(root, 'brain');
expect(activeSeatDir(join(root, 'config', 'mosaic'))).toBe(seat);
});
it('returns undefined without an agent name (bare launches stay shared)', () => {
delete process.env['MOSAIC_AGENT_NAME'];
expect(activeSeatDir(join(root, 'config', 'mosaic'))).toBeUndefined();
});
it('returns undefined when the seat dir does not exist in the brain', () => {
process.env['MOSAIC_AGENT_NAME'] = 'ghost';
process.env['MOSAIC_BRAIN_HOME'] = join(root, 'brain');
mkdirSync(join(root, 'brain', 'fleet', 'agents'), { recursive: true });
expect(activeSeatDir(join(root, 'config', 'mosaic'))).toBeUndefined();
});
it.each(['../escape', 'a/b', '.hidden-start', '', 'spaced name'])(
'rejects unsafe agent name %j (path traversal cannot leave the seat store)',
(name: string) => {
process.env['MOSAIC_AGENT_NAME'] = name;
process.env['MOSAIC_BRAIN_HOME'] = join(root, 'brain');
expect(activeSeatDir(join(root, 'config', 'mosaic'))).toBeUndefined();
},
);
it('seatPersonaOverlay renders the seat SOUL.md as an overlay block', () => {
const seat = join(root, 'brain', 'fleet', 'agents', 'coder0');
mkdirSync(seat, { recursive: true });
writeFileSync(join(seat, 'SOUL.md'), '# coder0 — code seat persona\n\nShips tested code.\n');
process.env['MOSAIC_AGENT_NAME'] = 'coder0';
process.env['MOSAIC_BRAIN_HOME'] = join(root, 'brain');
const overlay = seatPersonaOverlay(join(root, 'config', 'mosaic'));
expect(overlay).toContain('## Seat Persona');
expect(overlay).toContain('coder0 — code seat persona');
});
it('seatPersonaOverlay is empty when the seat carries no SOUL.md', () => {
const seat = join(root, 'brain', 'fleet', 'agents', 'coder0');
mkdirSync(seat, { recursive: true });
process.env['MOSAIC_AGENT_NAME'] = 'coder0';
process.env['MOSAIC_BRAIN_HOME'] = join(root, 'brain');
expect(seatPersonaOverlay(join(root, 'config', 'mosaic'))).toBe('');
});
it('seatPersonaOverlay is empty when no agent name is set', () => {
delete process.env['MOSAIC_AGENT_NAME'];
expect(seatPersonaOverlay(join(root, 'config', 'mosaic'))).toBe('');
});
});
+4 -49
View File
@@ -19,7 +19,7 @@ import {
import { createHash, randomBytes } from 'node:crypto';
import { createRequire } from 'node:module';
import { homedir, hostname } from 'node:os';
import { join, dirname, resolve } from 'node:path';
import { join, dirname } from 'node:path';
import type { Command } from 'commander';
import {
buildResolvedFleetCommsBlock,
@@ -29,7 +29,6 @@ import {
import { readRegularFileSecure } from '../fleet/secure-file.js';
import { readPersonaContractBlock } from '../fleet/persona-contract.js';
import { canonicalizeRoleClass } from './fleet-personas.js';
import { resolveBrainHome } from '../fleet/brain-home.js';
import { launchClaudex, type ClaudexHarnessAdapter } from './claudex.js';
import { runLeaseEnforcementDoctorCheck } from './lease-doctor-check.js';
@@ -65,46 +64,9 @@ const HARNESS_HOME_ENV: Record<RuntimeName, string> = {
opencode: 'XDG_CONFIG_HOME',
};
/** Dedicated mosaic-owned home for a runtime: ~/.config/mosaic/.<runtime>.
* With an active brain seat (MOSAIC_AGENT_NAME + seat dir in the brain home)
* the home is per-agent instead: <brainHome>/fleet/agents/<seat>/.<runtime>
* per-agent sessions, settings, and auth inside the seat dir (canon §2,
* MOSAIC-D-002). Seat runtime dirs are dot-named so the brain's ignore policy
* (per-seat .pi/.claude/.codex dirs) keeps credential material untracked. */
const SEAT_AGENT_NAME_RE = /^[a-zA-Z0-9][a-zA-Z0-9._-]*$/;
export function activeSeatDir(mosaicHome: string = MOSAIC_HOME): string | undefined {
const agent = process.env['MOSAIC_AGENT_NAME']?.trim();
if (
agent === undefined ||
agent === '' ||
!SEAT_AGENT_NAME_RE.test(agent) ||
agent.includes('..')
) {
return undefined;
}
const brain = resolveBrainHome(mosaicHome);
if (resolve(brain) === resolve(mosaicHome)) return undefined; // no brain
const seat = join(brain, 'fleet', 'agents', agent);
return existsSync(seat) ? seat : undefined;
}
function harnessHome(runtime: RuntimeName, mosaicHome: string = MOSAIC_HOME): string {
const seat = activeSeatDir(mosaicHome);
if (seat !== undefined) return join(seat, `.${runtime}`);
return join(mosaicHome, `.${runtime}`);
}
/** Seat persona block: with an active brain seat, <seat>/SOUL.md layers
* persona on the root generic base (canon invariant; MOSAIC-D-002). The base
* SOUL stays load-on-demand only the seat delta is injected by value.
* Empty string when no seat is active or the seat carries no SOUL.md. */
export function seatPersonaOverlay(mosaicHome: string = MOSAIC_HOME): string {
const seatDir = activeSeatDir(mosaicHome);
if (seatDir === undefined) return '';
const seatSoul = readOptional(join(seatDir, 'SOUL.md'));
if (!seatSoul.trim()) return '';
return '## Seat Persona\n\n' + seatSoul.trim();
/** Dedicated mosaic-owned home for a runtime: ~/.config/mosaic/.<runtime> */
function harnessHome(runtime: RuntimeName): string {
return join(MOSAIC_HOME, `.${runtime}`);
}
/**
@@ -220,8 +182,6 @@ function recordLaunch(runtime: RuntimeName, cliArgs: string[], yolo: boolean): v
cli_version: CLI_VERSION,
config_home: harnessHome(runtime),
config_home_isolated: true,
config_home_kind: activeSeatDir() !== undefined ? 'seat' : 'runtime-shared',
agent_name: process.env['MOSAIC_AGENT_NAME']?.trim() || null,
config_home_env: HARNESS_HOME_ENV[runtime] ?? null,
argv: redactArgv(cliArgs),
normative_fragments: normativeFragmentDigests(runtime),
@@ -609,11 +569,6 @@ For required push/merge/issue-close/release actions, execute without routine con
if (soulLocal.trim()) {
overlayBlocks.push('## Persona Overlay (SOUL.local.md)\n\n' + soulLocal.trim());
}
// Seat persona (MOSAIC-D-002): per-seat SOUL.md layers on the generic base.
const seatPersona = seatPersonaOverlay(mosaicHome);
if (seatPersona !== '') {
overlayBlocks.push(seatPersona);
}
const standardsLocal = readOptional(join(mosaicHome, 'STANDARDS.local.md'));
if (standardsLocal.trim()) {
overlayBlocks.push('## Standards Overlay (STANDARDS.local.md)\n\n' + standardsLocal.trim());
@@ -1,114 +0,0 @@
import { mkdir, mkdtemp, rm } from 'node:fs/promises';
import { homedir, tmpdir } from 'node:os';
import { join } from 'node:path';
import { afterEach, beforeEach, describe, expect, it } from 'vitest';
import {
brainHomeIsActive,
fleetAgentEnvDir,
fleetProfilesDir,
fleetRolesLocalDir,
fleetStateDir,
resolveBrainHome,
type BrainHomeOptions,
} from './brain-home.js';
describe('fleet brain-home resolution', (): void => {
let cleanup: string | undefined;
const savedBrainEnv = process.env['MOSAIC_BRAIN_HOME'];
beforeEach((): void => {
delete process.env['MOSAIC_BRAIN_HOME'];
});
afterEach(async (): Promise<void> => {
if (savedBrainEnv === undefined) {
delete process.env['MOSAIC_BRAIN_HOME'];
} else {
process.env['MOSAIC_BRAIN_HOME'] = savedBrainEnv;
}
if (cleanup !== undefined) {
await rm(cleanup, { recursive: true, force: true });
cleanup = undefined;
}
});
async function makeTmp(): Promise<string> {
const root = await mkdtemp(join(tmpdir(), 'mosaic-brain-home-'));
cleanup = root;
return root;
}
it('MOSAIC_BRAIN_HOME env wins over every other signal', (): void => {
process.env['MOSAIC_BRAIN_HOME'] = '/explicit/brain';
expect(resolveBrainHome('/any/mosaic-home')).toBe('/explicit/brain');
expect(fleetAgentEnvDir('/any/mosaic-home')).toBe('/explicit/brain/fleet/agents');
expect(brainHomeIsActive('/any/mosaic-home')).toBe(true);
});
it('injected envBrainHome wins identically (test seam)', (): void => {
const opts: BrainHomeOptions = { envBrainHome: '/injected/brain' };
expect(resolveBrainHome('/any/mosaic-home', opts)).toBe('/injected/brain');
expect(fleetAgentEnvDir('/any/mosaic-home', opts)).toBe('/injected/brain/fleet/agents');
});
it('a non-default mosaicHome never adopts the canonical brain (hermetic legacy)', (): void => {
const mosaicHome = '/tmp/not-the-default-config-home';
expect(resolveBrainHome(mosaicHome)).toBe(mosaicHome);
expect(brainHomeIsActive(mosaicHome)).toBe(false);
expect(fleetAgentEnvDir(mosaicHome)).toBe(join(mosaicHome, 'fleet', 'agents'));
});
it('the default config home adopts the brain when it carries fleet/agents', async (): Promise<void> => {
const root = await makeTmp();
const brain = join(root, 'brain');
await mkdir(join(brain, 'fleet', 'agents'), { recursive: true });
const configHome = join(root, 'config', 'mosaic');
const opts: BrainHomeOptions = { homes: { brain, configDefault: configHome } };
expect(resolveBrainHome(configHome, opts)).toBe(brain);
expect(fleetAgentEnvDir(configHome, opts)).toBe(join(brain, 'fleet', 'agents'));
expect(fleetRolesLocalDir(configHome, opts)).toBe(join(brain, 'fleet', 'roles.local'));
expect(fleetProfilesDir(configHome, opts)).toBe(join(brain, 'fleet', 'profiles'));
expect(fleetStateDir(configHome, opts)).toBe(join(brain, 'fleet'));
expect(brainHomeIsActive(configHome, opts)).toBe(true);
});
it('the default config home stays legacy when no brain exists', async (): Promise<void> => {
const root = await makeTmp();
const configHome = join(root, 'config', 'mosaic');
const opts: BrainHomeOptions = {
homes: { brain: join(root, 'brain'), configDefault: configHome },
};
expect(resolveBrainHome(configHome, opts)).toBe(configHome);
expect(brainHomeIsActive(configHome, opts)).toBe(false);
});
it('an empty MOSAIC_BRAIN_HOME is ignored, not treated as set', (): void => {
process.env['MOSAIC_BRAIN_HOME'] = ' ';
expect(resolveBrainHome('/tmp/legacy-home')).toBe('/tmp/legacy-home');
});
it('adoption requires fleet/agents specifically, not any brain content', async (): Promise<void> => {
const root = await makeTmp();
const brain = join(root, 'brain');
await mkdir(join(brain, 'fleet'), { recursive: true }); // fleet without agents
const configHome = join(root, 'config', 'mosaic');
const opts: BrainHomeOptions = { homes: { brain, configDefault: configHome } };
expect(resolveBrainHome(configHome, opts)).toBe(configHome);
});
it('real-home control: a host brain is adopted only through the default home', (): void => {
// Control on the un-injected path: this host carries ~/.mosaic/fleet/agents,
// so the default config home resolves to the brain or legacy — both valid
// canonical endpoints — while a non-default home never adopts.
const defaultHome = join(homedir(), '.config', 'mosaic');
const resolved = resolveBrainHome(defaultHome);
expect([defaultHome, join(homedir(), '.mosaic')]).toContain(resolved);
expect(resolveBrainHome(join(homedir(), 'elsewhere', 'mosaic'))).toBe(
join(homedir(), 'elsewhere', 'mosaic'),
);
});
});
-76
View File
@@ -1,76 +0,0 @@
import { existsSync } from 'node:fs';
import { homedir } from 'node:os';
import { join, resolve } from 'node:path';
/**
* Overridable resolution inputs (tests inject tmp homes; production reads
* the environment and the real home directory).
*/
export interface BrainHomeOptions {
/** Explicit brain home; defaults to `MOSAIC_BRAIN_HOME`. */
readonly envBrainHome?: string;
/**
* Canonical homes used for adoption. Defaults derive from the real
* `homedir()`: `{ brain: ~/.mosaic, configDefault: ~/.config/mosaic }`.
*/
readonly homes?: { readonly brain: string; readonly configDefault: string };
}
/**
* Brain-home resolution the three-tree fleet split (stack canon
* `docs/STRUCTURE-CANON.md` §2, first carried by the USC estate brain):
*
* config home (~/.config/mosaic) framework templates + dispatch state:
* fleet/roles (baseline), fleet/roster.yaml,
* fleet/run (heartbeats), fleet/services
* brain home (~/.mosaic) user-owned fleet state, committed:
* fleet/agents/<seat>.env.*, fleet/roles.local,
* fleet/profiles working copies
*
* Resolution order:
* 1. `MOSAIC_BRAIN_HOME` env (explicit, always wins)
* 2. canonical `~/.mosaic` adopted ONLY when mosaicHome is the real
* default config home AND `~/.mosaic/fleet/agents` exists. Custom
* `--mosaic-home` values (tests, sandboxes, canaries) never trigger
* adoption, keeping them hermetic and deterministic.
* 3. mosaicHome itself (legacy single-tree behavior).
*/
export function resolveBrainHome(mosaicHome: string, options: BrainHomeOptions = {}): string {
const explicit = options.envBrainHome ?? process.env['MOSAIC_BRAIN_HOME'];
if (explicit !== undefined && explicit.trim() !== '') {
return explicit;
}
const homes = options.homes ?? {
brain: join(homedir(), '.mosaic'),
configDefault: join(homedir(), '.config', 'mosaic'),
};
if (resolve(mosaicHome) !== resolve(homes.configDefault)) {
return mosaicHome;
}
return existsSync(join(homes.brain, 'fleet', 'agents')) ? homes.brain : mosaicHome;
}
/** True when fleet state resolves somewhere other than the config home. */
export function brainHomeIsActive(mosaicHome: string, options: BrainHomeOptions = {}): boolean {
return resolve(resolveBrainHome(mosaicHome, options)) !== resolve(mosaicHome);
}
/** Fleet state root (brain home when active, else the config home). */
export function fleetStateDir(mosaicHome: string, options: BrainHomeOptions = {}): string {
return join(resolveBrainHome(mosaicHome, options), 'fleet');
}
/** Seat launch envs — `<brainHome>/fleet/agents` when a brain is active. */
export function fleetAgentEnvDir(mosaicHome: string, options: BrainHomeOptions = {}): string {
return join(fleetStateDir(mosaicHome, options), 'agents');
}
/** PRESERVE-protected persona override layer — `<brainHome>/fleet/roles.local`. */
export function fleetRolesLocalDir(mosaicHome: string, options: BrainHomeOptions = {}): string {
return join(fleetStateDir(mosaicHome, options), 'roles.local');
}
/** System-type profiles (user working copies) — `<brainHome>/fleet/profiles`. */
export function fleetProfilesDir(mosaicHome: string, options: BrainHomeOptions = {}): string {
return join(fleetStateDir(mosaicHome, options), 'profiles');
}
@@ -3,7 +3,6 @@ import { lstat, open, readFile, unlink, type FileHandle } from 'node:fs/promises
import { randomUUID } from 'node:crypto';
import { homedir } from 'node:os';
import { join } from 'node:path';
import { fleetAgentEnvDir } from './brain-home.js';
import {
applyPreparedAgentEnvironmentProjection,
prepareAgentEnvironmentProjection,
@@ -618,7 +617,7 @@ function defaultPrepareProjections(
(agent: FleetRosterV2Agent): Promise<PreparedAgentEnvironmentProjection> =>
prepareAgentEnvironmentProjection({
mosaicHome,
agentEnvDir: fleetAgentEnvDir(mosaicHome),
agentEnvDir: join(mosaicHome, 'fleet', 'agents'),
agentName: agent.name,
generated: projectRosterV2AgentGeneratedEnv(roster, agent),
}),
@@ -176,52 +176,6 @@ describe('generated fleet agent environment boundary', (): void => {
expect((await stat(result.generatedPath)).mode & 0o777).toBe(0o600);
});
it('brain home: accepts and writes projections under MOSAIC_BRAIN_HOME/fleet/agents', async (): Promise<void> => {
const savedBrainHome = process.env['MOSAIC_BRAIN_HOME'];
try {
cleanup = await mkdtemp(join(tmpdir(), 'mosaic-generated-env-'));
const mosaicHome = join(cleanup, 'config-home');
const brainHome = join(cleanup, 'brain');
const agentEnvDir = join(brainHome, 'fleet', 'agents');
process.env['MOSAIC_BRAIN_HOME'] = brainHome;
const result = await writeAgentEnvironmentProjection({
mosaicHome,
agentEnvDir,
agentName: 'coder0',
generated: generatedValues,
});
// Projection landed in the brain tree, not under the config home.
expect(result.generatedPath).toBe(join(agentEnvDir, 'coder0.env.generated'));
expect((await stat(join(brainHome, 'fleet'))).mode & 0o777).toBe(0o700);
expect((await stat(agentEnvDir)).mode & 0o777).toBe(0o700);
expect((await stat(result.generatedPath)).mode & 0o777).toBe(0o600);
await expect(stat(join(mosaicHome, 'fleet'))).rejects.toThrow();
// A config-home agentEnvDir is now REJECTED while the brain is active —
// the boundary must not silently split state across two trees.
let rejected: unknown;
try {
await writeAgentEnvironmentProjection({
mosaicHome,
agentEnvDir: join(mosaicHome, 'fleet', 'agents'),
agentName: 'coder1',
generated: { ...generatedValues, MOSAIC_AGENT_NAME: 'coder1' },
});
} catch (caught: unknown) {
rejected = caught;
}
expect(rejected).toBeInstanceOf(AgentEnvBoundaryError);
} finally {
if (savedBrainHome === undefined) {
delete process.env['MOSAIC_BRAIN_HOME'];
} else {
process.env['MOSAIC_BRAIN_HOME'] = savedBrainHome;
}
}
});
it('regenerates desired keys, relocates safe legacy local data, and quarantines forbidden legacy input', async (): Promise<void> => {
cleanup = await mkdtemp(join(tmpdir(), 'mosaic-generated-env-'));
const mosaicHome = join(cleanup, 'mosaic');
@@ -2,7 +2,6 @@ import { createHash, randomUUID } from 'node:crypto';
import { chmod, lstat, mkdir, readFile, rename, unlink, writeFile } from 'node:fs/promises';
import { homedir } from 'node:os';
import { dirname, join, resolve } from 'node:path';
import { fleetAgentEnvDir, resolveBrainHome } from './brain-home.js';
import { compareCodePoints } from './deterministic-order.js';
export type AgentEnvironmentKind = 'generated' | 'local';
@@ -529,15 +528,12 @@ async function validatePrivateProjectionDirectory(
mosaicHome: string,
agentEnvDir: string,
): Promise<void> {
// Brain-home split (canon §2): seat envs live under the brain home's
// fleet/agents when a brain is active; roster + templates stay config-home.
const expectedAgentEnvDir = fleetAgentEnvDir(mosaicHome);
const fleetDir = join(mosaicHome, 'fleet');
const expectedAgentEnvDir = join(fleetDir, 'agents');
if (resolve(agentEnvDir) !== resolve(expectedAgentEnvDir)) {
throw new AgentEnvBoundaryError('unsafe-directory', '(directory)', agentEnvDir);
}
const stateHome = resolveBrainHome(mosaicHome);
const fleetDir = join(stateHome, 'fleet');
await assertManagedDirectoryIfPresent(stateHome, false);
await assertManagedDirectoryIfPresent(mosaicHome, false);
await assertManagedDirectoryIfPresent(fleetDir, false);
await assertManagedDirectoryIfPresent(agentEnvDir, true);
}
@@ -547,9 +543,8 @@ async function ensurePrivateProjectionDirectory(
agentEnvDir: string,
): Promise<void> {
await validatePrivateProjectionDirectory(mosaicHome, agentEnvDir);
const stateHome = resolveBrainHome(mosaicHome);
const fleetDir = join(stateHome, 'fleet');
await ensureManagedDirectory(stateHome, false);
const fleetDir = join(mosaicHome, 'fleet');
await ensureManagedDirectory(mosaicHome, false);
await ensureManagedDirectory(fleetDir, false);
await ensureManagedDirectory(agentEnvDir, true);
}
-166
View File
@@ -1,166 +0,0 @@
#!/usr/bin/env node
// verify-release.mjs — the ONE canonical terminal verification command
// (SDLC-D-034, `pnpm verify:release`).
//
// Publication (.woodpecker/publish.yml `verify` step) is bound to terminal
// verification of the exact commit through this command, which is composed
// from the SAME commands the PR CI pipeline (.woodpecker/ci.yml) runs — CI and
// publish share one semantic checklist:
//
// stage | mirrors ci.yml step | commands
// --------------|---------------------|------------------------------------------
// sanitization | sanitization | verify-sanitized.sh, check-resident-
// | | budget.sh (--self-test + run),
// | | check-test-enumeration.sh
// upgrade-guard | upgrade-guard | test-upgrade-manifest-guard.sh,
// | | test-upgrade-rollback.sh,
// | | test-upgrade-durable-snapshot.sh,
// | | test-install-migration.sh
// typecheck | typecheck | pnpm typecheck (runs the checkout
// | | preflight, then turbo typecheck)
// lint | lint | pnpm lint
// format | format | pnpm format:check
// test | test | pnpm test
// build | publish.yml build | pnpm build
//
// Caller-provided prerequisites (kept at the pipeline level — see the comments
// in .woodpecker/ci.yml): `bash` + `rsync` for the guard stages, `openssl` and
// the pinned @earendil-works/pi-coding-agent for the test stage, and — on the
// postgres path only — the ci-postgres service plus
// `pnpm --filter @mosaicstack/db run db:migrate` before the test stage.
//
// This command works with DATABASE_URL set (CI postgres path) or unset (local
// PGlite path); it never sets, exports, or requires a database itself.
//
// scripts/verify-release.test.mjs enforces that this stage table keeps
// matching .woodpecker/ci.yml step-for-step, so the two surfaces cannot drift
// apart silently.
import { spawnSync } from 'node:child_process';
import path from 'node:path';
import { fileURLToPath } from 'node:url';
export const STAGES = [
{
name: 'sanitization',
// Mirror of the .woodpecker/ci.yml `sanitization` step (minus its
// `apk add` environment prep). Kept as direct command strings here: the
// #1017 test-enumeration guard audits these paths through the ci.yml
// surface, so indirection from ci.yml into this file is not possible.
commands: [
'bash packages/mosaic/framework/tools/quality/scripts/verify-sanitized.sh',
'bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh --self-test',
'bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh',
'bash packages/mosaic/framework/tools/quality/scripts/check-test-enumeration.sh',
],
},
{
name: 'upgrade-guard',
// Mirror of the .woodpecker/ci.yml `upgrade-guard` step (minus its
// `apk add` environment prep).
commands: [
'bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-manifest-guard.sh',
'bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-rollback.sh',
'bash packages/mosaic/framework/tools/quality/scripts/test-upgrade-durable-snapshot.sh',
'bash packages/mosaic/framework/tools/quality/scripts/test-install-migration.sh',
],
},
{
// `pnpm typecheck` is `pnpm preflight && turbo run typecheck`, so the
// checkout preflight (scripts/preflight.mjs) is part of this stage exactly
// as it is part of the ci.yml `typecheck` step.
name: 'typecheck',
commands: ['pnpm typecheck'],
},
{
name: 'lint',
commands: ['pnpm lint'],
},
{
name: 'format',
commands: ['pnpm format:check'],
},
{
// Requires `openssl` and the pinned `pi` binary on the pipeline path; see
// the caller-provided prerequisites above.
name: 'test',
commands: ['pnpm test'],
},
{
name: 'build',
commands: ['pnpm build'],
},
];
export function stageByName(name) {
return STAGES.find((stage) => stage.name === name);
}
function missingBinaries(bins) {
return bins.filter(
(bin) => spawnSync('sh', ['-c', `command -v ${bin} >/dev/null 2>&1`]).status !== 0,
);
}
function runCommand(command) {
const result = spawnSync(command, { shell: true, stdio: 'inherit' });
if (result.error) {
console.error(`[verify:release] failed to launch '${command}': ${result.error.message}`);
return false;
}
if (result.status !== 0) {
const reason = result.signal ? `terminated by ${result.signal}` : `exited ${result.status}`;
console.error(`[verify:release] command '${command}' ${reason}`);
return false;
}
return true;
}
// Runs the complete mandatory verification set (or, with --stage <name>, the
// single named stage — used for wiring/smoke-testing, not for gating: only a
// run of every stage is a terminal verification). Fails fast: the first
// failing command aborts with a non-zero exit code. Returns the exit code.
export function verifyRelease({ stages = STAGES } = {}) {
const missing = missingBinaries(['bash', 'rsync']);
if (missing.length > 0) {
console.error(
`[verify:release] FATAL: required binaries missing from PATH: ${missing.join(', ')}. ` +
'The caller provides them (ci-base bakes bash; pipelines apk add rsync).',
);
return 1;
}
for (const stage of stages) {
console.log(`\n[verify:release] === stage: ${stage.name} ===`);
for (const command of stage.commands) {
console.log(`[verify:release] $ ${command}`);
if (!runCommand(command)) {
console.error(
`[verify:release] FATAL: stage '${stage.name}' failed — verification inconclusive`,
);
return 1;
}
}
}
console.log(`\n[verify:release] all ${stages.length} stage(s) passed`);
return 0;
}
function main(argv) {
const stageFlagIndex = argv.indexOf('--stage');
if (stageFlagIndex !== -1) {
const name = argv[stageFlagIndex + 1];
const stage = stageByName(name);
if (!stage) {
console.error(
`[verify:release] unknown stage '${name ?? ''}' — expected one of: ${STAGES.map((entry) => entry.name).join(', ')}`,
);
process.exit(2);
}
process.exit(verifyRelease({ stages: [stage] }));
}
process.exit(verifyRelease());
}
if (process.argv[1] && path.resolve(process.argv[1]) === fileURLToPath(import.meta.url)) {
main(process.argv.slice(2));
}
-277
View File
@@ -1,277 +0,0 @@
import assert from 'node:assert/strict';
import { readFile } from 'node:fs/promises';
import { createRequire } from 'node:module';
import path from 'node:path';
import test from 'node:test';
import { STAGES } from './verify-release.mjs';
// SDLC-D-034 checkout invariant: publication in .woodpecker/publish.yml is
// bound to exact-commit terminal verification. This suite parses the real
// pipeline files and fails red when the gate is bypassed, weakened, or drifts
// out of sync with the canonical `pnpm verify:release` command.
// Reuse the monorepo's existing YAML parser (@mosaicstack/mosaic's direct
// dependency) instead of adding a root dependency or vendoring a parser.
const mosaicRequire = createRequire(
path.resolve(process.cwd(), 'packages', 'mosaic', 'package.json'),
);
const { parse: parseYaml } = mosaicRequire('yaml');
const publishYmlPath = path.join(process.cwd(), '.woodpecker', 'publish.yml');
const ciYmlPath = path.join(process.cwd(), '.woodpecker', 'ci.yml');
async function readPublishPipeline() {
return parseYaml(await readFile(publishYmlPath, 'utf8'));
}
// A step has an external publication effect when its name starts with
// `publish` or when any command pushes an image to a registry.
function pushesImage(step) {
return (step.commands ?? []).some((command) =>
/(^|\s)(\/kaniko\/executor|docker push)\b|--destination/.test(command),
);
}
function publishEffectSteps(pipeline) {
return Object.entries(pipeline.steps ?? {})
.filter(([name, step]) => name.startsWith('publish') || pushesImage(step))
.map(([name]) => name);
}
// Transitive closure of a step's depends_on graph.
function dependencyClosure(pipeline, stepName, seen = new Set()) {
const dependencies = pipeline.steps?.[stepName]?.depends_on ?? [];
for (const dependency of dependencies) {
if (seen.has(dependency)) continue;
seen.add(dependency);
dependencyClosure(pipeline, dependency, seen);
}
return seen;
}
function verifyCommands(pipeline) {
const verify = pipeline.steps?.verify;
assert.ok(verify, 'publish pipeline must define a `verify` step');
assert.ok(Array.isArray(verify.commands), '`verify` step must have commands');
return verify.commands;
}
function assertCommitIdentityAssertion(commands) {
const text = commands.join('\n');
assert.match(
text,
/CI_COMMIT_SHA/,
'`verify` must compare the provider commit identity (CI_COMMIT_SHA)',
);
assert.match(text, /git rev-parse HEAD/, '`verify` must compare against git rev-parse HEAD');
assert.match(
text,
/exit 1/,
'`verify` must fail closed (exit 1) on identity mismatch or emptiness',
);
}
function assertCanonicalCommand(commands) {
assert.ok(
commands.some((command) => /^pnpm verify:release\b/.test(command.trim())),
'`verify` must run the canonical terminal verification command `pnpm verify:release`',
);
}
function assertPublishGate(pipeline) {
assert.ok(pipeline.steps, 'publish pipeline must define steps');
const commands = verifyCommands(pipeline);
assertCommitIdentityAssertion(commands);
assertCanonicalCommand(commands);
const effects = publishEffectSteps(pipeline);
assert.ok(effects.length > 0, 'publish pipeline must contain publish effect steps to guard');
for (const stepName of effects) {
const step = pipeline.steps[stepName];
assert.ok(
Array.isArray(step.depends_on) && step.depends_on.includes('verify'),
`publish effect '${stepName}' must depend DIRECTLY on the verify step (SDLC-D-034: transitively through build is not enough)`,
);
assert.ok(
dependencyClosure(pipeline, stepName).has('verify'),
`publish effect '${stepName}' must depend on a chain that includes verify`,
);
}
return effects;
}
test('the publish pipeline gates every publish effect behind exact-commit verification', async () => {
const pipeline = await readPublishPipeline();
const effects = assertPublishGate(pipeline);
assert.deepEqual(effects.sort(), [
'build-appservice',
'build-gateway',
'build-web',
'publish-next-npm',
'publish-npm',
]);
});
test('the verify step carries no path/event short-circuit of its own', async () => {
const pipeline = await readPublishPipeline();
// A `when` filter on `verify` would let a publish effect fire on an event
// class that skipped verification — the gate must be unconditional.
assert.equal(pipeline.steps.verify.when, undefined);
});
test('a publish step that bypasses verify fails the gate checker', () => {
// Negative fixture: a plausible publish pipeline where `publish-npm` hangs
// off `build` only and `build` never chains to `verify` — the exact bypass
// class SDLC-D-034 closes. The checker must go red on it.
const bypassingPipeline = `
steps:
install:
image: node:24-alpine
commands:
- pnpm install --frozen-lockfile
verify:
image: node:24-alpine
commands:
- |
if [ -z "$CI_COMMIT_SHA" ] || [ "$CI_COMMIT_SHA" != "$(git rev-parse HEAD)" ]; then
echo "identity mismatch" >&2
exit 1
fi
- pnpm verify:release
depends_on:
- install
build:
image: node:24-alpine
commands:
- pnpm build
depends_on:
- install
publish-npm:
image: node:24-alpine
commands:
- pnpm publish
depends_on:
- build
`;
assert.throws(
() => assertPublishGate(parseYaml(bypassingPipeline)),
/publish-npm.*DIRECTLY.*verify/s,
);
});
test('a publish step chained to verify only transitively fails the gate checker', () => {
// Negative fixture: `build` depends on verify but `publish-npm` does not
// carry the direct edge — weaker than SDLC-D-034 requires of the real DAG.
const transitiveOnlyPipeline = `
steps:
install:
image: node:24-alpine
commands:
- pnpm install --frozen-lockfile
verify:
image: node:24-alpine
commands:
- |
if [ -z "$CI_COMMIT_SHA" ] || [ "$CI_COMMIT_SHA" != "$(git rev-parse HEAD)" ]; then
echo "identity mismatch" >&2
exit 1
fi
- pnpm verify:release
depends_on:
- install
build:
image: node:24-alpine
commands:
- pnpm build
depends_on:
- install
- verify
publish-npm:
image: node:24-alpine
commands:
- pnpm publish
depends_on:
- build
`;
assert.throws(
() => assertPublishGate(parseYaml(transitiveOnlyPipeline)),
/publish-npm.*DIRECTLY.*verify/s,
);
});
test('a verify step without the commit-identity assertion fails the gate checker', () => {
const noIdentityPipeline = `
steps:
verify:
image: node:24-alpine
commands:
- pnpm verify:release
publish-npm:
image: node:24-alpine
commands:
- pnpm publish
depends_on:
- verify
`;
assert.throws(() => assertPublishGate(parseYaml(noIdentityPipeline)), /CI_COMMIT_SHA/);
});
test('the canonical verify:release stages mirror the PR CI pipeline one-for-one', async () => {
const ci = parseYaml(await readFile(ciYmlPath, 'utf8'));
const canonical = Object.fromEntries(STAGES.map((stage) => [stage.name, stage.commands]));
// The complete mandatory set, in gate order.
assert.deepEqual(
STAGES.map((stage) => stage.name),
['sanitization', 'upgrade-guard', 'typecheck', 'lint', 'format', 'test', 'build'],
);
// Guard stages: ci.yml commands minus its `apk add` environment prep must be
// exactly the canonical stage commands (order included).
for (const stageName of ['sanitization', 'upgrade-guard']) {
assert.deepEqual(
ci.steps[stageName].commands.filter((command) => !command.startsWith('apk add')),
canonical[stageName],
`canonical '${stageName}' stage must match the ci.yml step`,
);
}
// pnpm stages: ci.yml commands minus `corepack enable` must be exactly the
// canonical stage commands.
for (const stepName of ['typecheck', 'lint', 'format']) {
assert.deepEqual(
ci.steps[stepName].commands.filter((command) => command !== 'corepack enable'),
canonical[stepName],
`canonical '${stepName}' stage must match the ci.yml step`,
);
}
// The test stage is shared, but ci.yml wraps it in pipeline-level
// prerequisites the canonical command expects its caller to provide
// (SDLC-D-034): the postgres service + readiness wait + db:migrate, openssl,
// and the pinned pi runtime. None of those may be dropped silently.
for (const command of canonical.test) {
assert.ok(
ci.steps.test.commands.includes(command),
`ci.yml test step must run the canonical test stage command '${command}'`,
);
}
for (const fragment of [
'pg_isready -h ci-postgres',
'pnpm --filter @mosaicstack/db run db:migrate',
'npm install -g @earendil-works/[email protected]',
]) {
assert.ok(
ci.steps.test.commands.some((command) => command.includes(fragment)),
`ci.yml test step must keep its pipeline-level prerequisite '${fragment}'`,
);
}
});
test('the root package.json exposes verify:release as the canonical command', async () => {
const packageJson = JSON.parse(await readFile(path.join(process.cwd(), 'package.json'), 'utf8'));
assert.match(packageJson.scripts['verify:release'], /scripts\/verify-release\.mjs/);
});
+3 -6
View File
@@ -133,13 +133,10 @@ When the full `@mosaicstack/forge` package is available, Forge uses MACP task ex
```bash
# Run from CLI
# Fails closed with a typed FORGE_NO_EXECUTOR capability error when no real
# executor is wired — pass --simulate to opt into explicit typed simulation
# (every result carries status `simulated`, which satisfies nothing).
mosaic forge run path/to/brief.md [--simulate]
mosaic forge run path/to/brief.md
# Resume interrupted run (same fail-closed rule as forge run)
mosaic forge resume .forge/runs/20260401-143022/ [--simulate]
# Resume interrupted run
mosaic forge resume .forge/runs/20260401-143022/
# Check status
mosaic forge status .forge/runs/20260401-143022/