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Author SHA1 Message Date
jason.woltje 99b8f6ea12 fix(ri-050): forge fails closed without providers; explicit typed simulation (#1275)
ci/woodpecker/pr/ci Pipeline failed
2026-08-17 00:58:12 -05:00
19 changed files with 1393 additions and 731 deletions
+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:
-60
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@@ -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]
@@ -299,7 +242,6 @@ steps:
/kaniko/executor --context . --dockerfile docker/gateway.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
build-appservice:
image: gcr.io/kaniko-project/executor:debug
@@ -326,7 +268,6 @@ steps:
/kaniko/executor --context . --dockerfile docker/appservice.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
build-web:
image: gcr.io/kaniko-project/executor:debug
@@ -353,4 +294,3 @@ steps:
/kaniko/executor --context . --dockerfile docker/web.Dockerfile $DESTINATIONS
depends_on:
- build
- verify
+1
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@@ -34,6 +34,7 @@ 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
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@@ -539,3 +539,43 @@ 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`.
@@ -0,0 +1,319 @@
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 });
}
});
});
+161 -34
View File
@@ -12,10 +12,10 @@ import {
resumePipeline,
getPipelineStatus,
} from '../src/pipeline-runner.js';
import type { ForgeTask, RunManifest, TaskExecutor } from '../src/types.js';
import type { TaskResult } from '@mosaicstack/macp';
import type { ForgeTask, ForgeTaskResult, RunManifest, TaskExecutor } from '../src/types.js';
import { gateLabel, isCommandGate } from '../src/outcomes.js';
/** Mock TaskExecutor that records submitted tasks and returns success. */
/** Mock TaskExecutor that records submitted tasks and returns typed results. */
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<TaskResult> {
async waitForCompletion(taskId: string): Promise<ForgeTaskResult> {
const failStage = options?.failStage;
const task = submittedTasks.find((t) => t.id === taskId);
const stageName = task?.metadata?.['stageName'] as string | undefined;
@@ -33,7 +33,8 @@ function createMockExecutor(options?: {
if (failStage && stageName === failStage) {
return {
task_id: taskId,
status: 'failed',
outcome: 'failed',
reason: 'mock task failure',
completed_at: new Date().toISOString(),
exit_code: 1,
gate_results: [],
@@ -41,10 +42,17 @@ function createMockExecutor(options?: {
}
return {
task_id: taskId,
status: 'completed',
outcome: 'passed',
reason: 'mock verified',
completed_at: new Date().toISOString(),
exit_code: 0,
gate_results: [],
gate_results: (task?.qualityGates ?? [])
.filter((gate) => isCommandGate(gate))
.map((gate) => ({
gate: gateLabel(gate),
outcome: 'passed' as const,
reason: 'mock verified',
})),
};
},
async getTaskStatus() {
@@ -156,12 +164,13 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
const result = await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '00b-discovery'],
stages: ['00-intake', '05-coding'],
});
expect(result.runId).toMatch(/^\d{8}-\d{6}$/);
expect(result.stages).toEqual(['00-intake', '00b-discovery']);
expect(result.stages).toEqual(['00-intake', '05-coding']);
expect(result.manifest.status).toBe('completed');
expect(result.manifest.mode).toBe('normal');
expect(executor.submittedTasks).toHaveLength(2);
});
@@ -180,12 +189,17 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
const result = await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '00b-discovery'],
stages: ['00-intake', '05-coding'],
});
const manifest = loadManifest(result.runDir);
expect(manifest.stages['00-intake']?.status).toBe('passed');
expect(manifest.stages['00b-discovery']?.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',
]);
});
it('respects CLI class override', async () => {
@@ -215,7 +229,7 @@ describe('runPipeline', () => {
const executor = createMockExecutor();
await runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '00b-discovery', '02-planning-1'],
stages: ['00-intake', '05-coding', '08-test'],
});
expect(executor.submittedTasks[0]!.dependsOn).toBeUndefined();
@@ -224,14 +238,14 @@ describe('runPipeline', () => {
});
it('handles stage failure', async () => {
const executor = createMockExecutor({ failStage: '00b-discovery' });
const executor = createMockExecutor({ failStage: '05-coding' });
await expect(
runPipeline(briefPath, tmpDir, {
executor,
stages: ['00-intake', '00b-discovery'],
stages: ['00-intake', '05-coding'],
}),
).rejects.toThrow('Stage 00b-discovery failed');
).rejects.toThrow('Stage 05-coding failed');
});
it('marks manifest as failed on stage failure', async () => {
@@ -270,30 +284,143 @@ describe('resumePipeline', () => {
fs.rmSync(tmpDir, { recursive: true, force: true });
});
it('resumes from first incomplete stage', async () => {
// First run fails on discovery
const executor1 = createMockExecutor({ failStage: '00b-discovery' });
let runDir: string;
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' },
},
});
try {
await runPipeline(briefPath, tmpDir, {
executor: executor1,
stages: ['00-intake', '00b-discovery', '02-planning-1'],
});
} catch {
// expected
// 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');
}
});
const runsDir = path.join(tmpDir, '.forge', 'runs');
runDir = path.join(runsDir, fs.readdirSync(runsDir)[0]!);
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' },
},
});
// Resume should pick up from 00b-discovery
const executor2 = createMockExecutor();
const result = await resumePipeline(runDir, executor2);
const executor = createMockExecutor();
await expect(resumePipeline(runDir, executor)).rejects.toMatchObject({
name: 'ForgeCapabilityError',
code: 'FORGE_AUTHORITY_REQUIRED',
});
expect(result.manifest.status).toBe('completed');
// Should have re-run from 00b-discovery onward
expect(result.stages[0]).toBe('00b-discovery');
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',
});
});
});
+15 -2
View File
@@ -95,7 +95,14 @@ export function generateBoardTasks(
briefPath,
resultPath: resultRelPath,
timeoutSeconds: 120,
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason:
'persona evaluation is judged by board synthesis (authority review); no mechanical gate exists',
},
],
metadata: {
personaName: persona.name,
personaSlug: persona.slug,
@@ -121,7 +128,13 @@ export function generateBoardTasks(
timeoutSeconds: 120,
dependsOn: personaTaskIds,
dependsOnPolicy: 'all_terminal',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason: 'board synthesis is an authority decision; no mechanical gate exists',
},
],
metadata: {
resultOutputPath: synthesisResult,
inputResultPaths: personaResultPaths,
+96 -1
View File
@@ -1,7 +1,11 @@
import fs from 'node:fs';
import os from 'node:os';
import path from 'node:path';
import { Command } from 'commander';
import { describe, expect, it } from 'vitest';
import { describe, expect, it, vi, beforeEach, afterEach } from 'vitest';
import { registerForgeCommand } from './cli.js';
import { loadManifest } from './pipeline-runner.js';
describe('registerForgeCommand', () => {
it('registers a "forge" command on the parent program', () => {
@@ -55,3 +59,94 @@ 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');
});
});
+122 -48
View File
@@ -5,37 +5,47 @@ 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 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;
},
};
import { createSimulatedExecutor } from './simulated-executor.js';
import type { PipelineOptions, RunManifest, RunMode } from './types.js';
// ---------------------------------------------------------------------------
// 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();
@@ -44,19 +54,24 @@ 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: ${manifest.updatedAt}`);
console.log('');
console.log('Stage'.padEnd(22) + 'Status'.padEnd(14) + 'Duration');
console.log('-'.repeat(50));
console.log('Stage'.padEnd(22) + 'Status'.padEnd(24) + 'Duration');
console.log('-'.repeat(60));
for (const stage of STAGE_SEQUENCE) {
const s = manifest.stages[stage];
if (!s) continue;
const label = (STAGE_LABELS[stage] ?? stage).padEnd(22);
const status = s.status.padEnd(14);
const status = s.status.padEnd(24);
const dur = formatDuration(s.startedAt, s.completedAt);
console.log(`${label}${status}${dur}`);
}
@@ -90,23 +105,58 @@ function listRecentRuns(projectRoot?: string): void {
}
console.log('\nRecent runs:');
console.log('Run ID'.padEnd(22) + 'Status'.padEnd(14) + 'Brief');
console.log('-'.repeat(70));
console.log('Run ID'.padEnd(22) + 'Status'.padEnd(24) + 'Mode'.padEnd(12) + 'Brief');
console.log('-'.repeat(80));
for (const runId of entries) {
const runDir = path.join(runsDir, runId);
try {
const manifest = loadManifest(runDir);
const status = manifest.status.padEnd(14);
const status = manifest.status.padEnd(24);
const mode = runModeOf(manifest).padEnd(12);
const brief = path.basename(manifest.brief);
console.log(`${runId.padEnd(22)}${status}${brief}`);
console.log(`${runId.padEnd(22)}${status}${mode}${brief}`);
} catch {
console.log(`${runId.padEnd(22)}${'(unreadable)'.padEnd(14)}`);
console.log(`${runId.padEnd(22)}${'(unreadable)'.padEnd(24)}`);
}
}
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
// ---------------------------------------------------------------------------
@@ -129,6 +179,11 @@ 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;
@@ -137,6 +192,7 @@ export function registerForgeCommand(parent: Command): void {
config?: string;
codebase: string;
dryRun: boolean;
simulate: boolean;
}) => {
const briefPath = path.resolve(opts.brief);
@@ -149,14 +205,22 @@ 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}`);
const { resumePipeline } = await import('./pipeline-runner.js');
const result = await resumePipeline(runDir, stubExecutor);
console.log(`[forge] pipeline complete: ${result.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);
}
return;
}
@@ -164,7 +228,8 @@ export function registerForgeCommand(parent: Command): void {
briefClass,
codebase: projectRoot,
dryRun: opts.dryRun,
executor: stubExecutor,
executor,
simulate: opts.simulate,
};
if (opts.dryRun) {
@@ -180,16 +245,15 @@ 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);
console.log(`[forge] pipeline complete: ${result.runId}`);
console.log(`[forge] run directory: ${result.runDir}`);
applyRunExitPolicy(result, opts.simulate);
} catch (err) {
console.error(
`[forge] pipeline failed: ${err instanceof Error ? err.message : String(err)}`,
);
process.exitCode = 1;
handlePipelineError(err);
}
},
);
@@ -224,7 +288,12 @@ 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())
.action(async (runId: string, opts: { project: string }) => {
.option(
'--simulate',
'Simulate execution without real providers (every result is typed simulated, never verified)',
false,
)
.action(async (runId: string, opts: { project: string; simulate: boolean }) => {
const runDir = resolveRunDir(runId, opts.project);
if (!fs.existsSync(runDir)) {
@@ -234,15 +303,20 @@ 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, stubExecutor);
console.log(`[forge] pipeline complete: ${result.runId}`);
console.log(`[forge] run directory: ${result.runDir}`);
const result = await resumePipeline(runDir, executor, { simulate: opts.simulate });
applyRunExitPolicy(result, opts.simulate);
} catch (err) {
console.error(`[forge] resume failed: ${err instanceof Error ? err.message : String(err)}`);
process.exitCode = 1;
handlePipelineError(err);
}
});
+72 -12
View File
@@ -9,7 +9,16 @@ 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. */
/** 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.
*/
export const STAGE_SPECS: Record<string, StageSpec> = {
'00-intake': {
number: '00',
@@ -27,7 +36,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'discovery-complete',
promptFile: '00b-discovery.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'discovery-complete',
reason: 'discovery completion is attested by an authority; no mechanical check exists',
},
],
},
'01-board': {
number: '01',
@@ -36,7 +51,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'review',
gate: 'board-approval',
promptFile: '01-board.md',
qualityGates: [{ type: 'ci-pipeline', command: 'board-approval (via board-tasks)' }],
qualityGates: [
{
kind: 'authority',
capability: 'board-approval',
reason: 'board approval is a board/human decision; no mechanical gate exists',
},
],
},
'01b-brief-analyzer': {
number: '01b',
@@ -45,7 +66,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'brief-analysis-complete',
promptFile: '01-board.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'brief-analysis-complete',
reason: 'brief analysis completion is attested by an authority; no mechanical check exists',
},
],
},
'02-planning-1': {
number: '02',
@@ -54,7 +81,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'architecture-approval',
promptFile: '02-planning-1-architecture.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'architecture-approval',
reason: 'ADR approval requires authority sign-off; no mechanical check exists',
},
],
},
'03-planning-2': {
number: '03',
@@ -63,7 +96,14 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'implementation-approval',
promptFile: '03-planning-2-implementation.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'implementation-approval',
reason:
'implementation spec approval requires authority sign-off; no mechanical check exists',
},
],
},
'04-planning-3': {
number: '04',
@@ -72,7 +112,14 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'research',
gate: 'decomposition-approval',
promptFile: '04-planning-3-decomposition.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 'decomposition-approval',
reason:
'task decomposition approval requires authority sign-off; no mechanical check exists',
},
],
},
'05-coding': {
number: '05',
@@ -92,9 +139,10 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
promptFile: '06-review.md',
qualityGates: [
{
type: 'ai-review',
command:
'echo \'{"summary":"review-pass","verdict":"approve","findings":[],"stats":{"blockers":0,"should_fix":0,"suggestions":0}}\'',
kind: 'provider',
capability: 'reviewer',
reason:
'review verdicts require a wired reviewer provider; synthetic approvals are not permitted',
},
],
},
@@ -105,7 +153,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'coding',
gate: 're-review',
promptFile: '07-remediate.md',
qualityGates: ['true'],
qualityGates: [
{
kind: 'authority',
capability: 're-review',
reason: 'remediation re-review is an approval-based gate; no mechanical check exists',
},
],
},
'08-test': {
number: '08',
@@ -123,7 +177,13 @@ export const STAGE_SPECS: Record<string, StageSpec> = {
type: 'deploy',
gate: 'deploy-verification',
promptFile: '09-deploy.md',
qualityGates: [{ type: 'ci-pipeline', command: 'deploy-verification' }],
qualityGates: [
{
kind: 'provider',
capability: 'ci-pipeline',
reason: 'deploy verification requires a wired CI pipeline provider',
},
],
},
};
+46
View File
@@ -0,0 +1,46 @@
/**
* 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
@@ -5,6 +5,13 @@ export type {
StageSpec,
BriefClass,
ClassSource,
ForgeOutcome,
AuthorityGate,
ProviderGate,
ForgeGate,
ForgeGateResult,
ForgeTaskResult,
RunMode,
StageStatus,
RunManifest,
ForgeTaskStatus,
@@ -81,5 +88,24 @@ 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
@@ -0,0 +1,147 @@
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,
};
}
+227 -99
View File
@@ -1,18 +1,33 @@
import fs from 'node:fs';
import path from 'node:path';
import { STAGE_SEQUENCE } from './constants.js';
import { STAGE_SEQUENCE, STAGE_SPECS } 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.
*/
@@ -47,6 +62,7 @@ function createManifest(opts: {
briefClass: RunManifest['briefClass'];
classSource: RunManifest['classSource'];
forceBoard: boolean;
mode: RunMode;
runDir: string;
}): RunManifest {
const ts = nowISO();
@@ -57,6 +73,7 @@ function createManifest(opts: {
briefClass: opts.briefClass,
classSource: opts.classSource,
forceBoard: opts.forceBoard,
mode: opts.mode,
createdAt: ts,
updatedAt: ts,
currentStage: '',
@@ -108,20 +125,199 @@ 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. 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
* 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
*/
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');
@@ -146,6 +342,7 @@ export async function runPipeline(
briefClass,
classSource,
forceBoard: options.forceBoard ?? false,
mode,
runDir,
});
@@ -172,54 +369,10 @@ export async function runPipeline(
}
// Execute stages
const { executor } = options;
for (let i = 0; i < tasks.length; i++) {
const task = tasks[i]!;
const stageName = selectedStages[i]!;
await executeStages({ manifest, runDir, tasks, stageNames: selectedStages, executor, simulate });
// 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';
// All stages reached a terminal state for this mode
manifest.status = simulate ? 'simulated' : 'completed';
saveManifest(runDir, manifest);
return {
@@ -234,22 +387,30 @@ export async function runPipeline(
}
/**
* Resume a pipeline from the last incomplete stage.
* Resume a pipeline from the last non-passed stage.
*/
export async function resumePipeline(
runDir: string,
executor: TaskExecutor,
executor?: TaskExecutor,
options?: { simulate?: boolean },
): 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);
// Find first non-passed stage
manifest.mode = mode;
// Find first non-satisfying stage (only a verified `passed` counts as done;
// simulated and waiting-for-authority stages are re-run).
const resumeFrom = allStages.find((s) => manifest.stages[s]?.status !== 'passed');
if (!resumeFrom) {
manifest.status = 'completed';
manifest.status = mode === 'simulated' ? 'simulated' : 'completed';
saveManifest(runDir, manifest);
return {
runId: manifest.runId,
@@ -284,49 +445,16 @@ export async function resumePipeline(
tasks.push(task);
}
for (let i = 0; i < tasks.length; i++) {
const task = tasks[i]!;
const stageName = remainingStages[i]!;
await executeStages({
manifest,
runDir,
tasks,
stageNames: remainingStages,
executor: wiredExecutor,
simulate,
});
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';
manifest.status = simulate ? 'simulated' : 'completed';
saveManifest(runDir, manifest);
return {
+32
View File
@@ -0,0 +1,32 @@
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;
},
};
}
+88 -7
View File
@@ -1,4 +1,4 @@
import type { GateEntry, TaskResult } from '@mosaicstack/macp';
import type { GateEntry } from '@mosaicstack/macp';
/** Stage dispatch mode. */
export type StageDispatch = 'exec' | 'yolo' | 'pi';
@@ -6,6 +6,58 @@ 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;
@@ -14,7 +66,7 @@ export interface StageSpec {
type: StageType;
gate: string;
promptFile: string;
qualityGates: (string | GateEntry)[];
qualityGates: ForgeGate[];
}
/** Brief classification. */
@@ -25,11 +77,18 @@ export type ClassSource = 'cli' | 'frontmatter' | 'auto';
/** Per-stage status within a run manifest. */
export interface StageStatus {
status: 'pending' | 'in_progress' | 'passed' | 'failed';
status: 'pending' | 'in_progress' | ForgeOutcome;
/** Why the stage reached its current (terminal) outcome, when applicable. */
reason?: string;
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;
@@ -38,10 +97,23 @@ 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';
status:
| 'in_progress'
| 'completed'
| 'failed'
| 'interrupted'
| 'rejected'
| 'simulated'
| 'waiting-for-authority';
stages: Record<string, StageStatus>;
}
@@ -65,7 +137,7 @@ export interface ForgeTask {
briefPath: string;
resultPath: string;
timeoutSeconds: number;
qualityGates: (string | GateEntry)[];
qualityGates: ForgeGate[];
worktree?: string;
command?: string;
dependsOn?: string[];
@@ -76,7 +148,7 @@ export interface ForgeTask {
/** Abstract task executor — decouples from packages/coord. */
export interface TaskExecutor {
submitTask(task: ForgeTask): Promise<void>;
waitForCompletion(taskId: string, timeoutMs: number): Promise<TaskResult>;
waitForCompletion(taskId: string, timeoutMs: number): Promise<ForgeTaskResult>;
getTaskStatus(taskId: string): Promise<ForgeTaskStatus>;
}
@@ -122,7 +194,16 @@ export interface PipelineOptions {
stages?: string[];
skipTo?: string;
dryRun?: boolean;
executor: TaskExecutor;
/**
* 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;
}
/** Pipeline run result. */
-166
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@@ -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
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@@ -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/);
});