Root cause: context-assembly (unconfirmedFixEntries, promotedConceptEntries,
buildRetryFeedbackEntry, etc.) computes ContextEntry lists at stage-build time
but never records what was actually injected into a turn. The only way to
answer "did hint X fire in session Y" was decoding the CAS prompt artifact and
grepping raw JSON — the event log alone couldn't say.
Scope check: no existing event carries this (ContextTruncatedEvent only
reports drop counts, not the injected set) — added new ContextAssembledEvent
rather than extending an existing one.
Fix: ContextAssembledEvent (core/events/events/ContextEvents.kt) records ONE
manifest per stage's initial ContextPack build — sessionId, stageId,
contextPackId, and a List<ContextManifestEntry> of {sourceType, sourceId,
tokenEstimate, layer, role} pulled from the pack's actual (post-budget)
entries. No entry content — content stays a pure derived projection of the
event log (invariant #9/#6) and already lives in CAS. Registered in
eventModule (Serialization.kt). Emitted via
SessionOrchestrator.emitContextAssembled (SessionOrchestratorRepoContext.kt),
wired at the initial contextPackBuilder.build() call site in
SessionOrchestratorExecution.kt (mirrors emitContextTruncationIfNeeded).
Tests: ContextAssembledEventSerializationTest (round-trip + no-content-leak),
SessionOrchestratorIntegrationTest "stage context build emits
ContextAssembledEvent with a manifest (#307)".
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01HgDL1v3GuQ9RZnYR6fDT95
The system block is now for content that does not change during a run.
Anything the run mutates renders as a user message — both because a
mutating system prefix defeats prompt caching and because models
under-weight system-folded content against the trailing user turn.
PromptRenderer: role alone decides the message type; the old
`layer == L0 ||` clause is gone. That clause was silently overriding
role on four packs (InferenceSummarizer, SemanticReviewerImpl,
CapabilityGapReflectorImpl, Talkie session-naming) which are L0+USER
prompts — they were rendering as a system-only request with no user
turn at all.
Re-roled SYSTEM -> USER, all mutable within a run:
recoveryTicket, remainingDelta, groundingFeedback, rejectionFeedback
(trailing slot), plus verifiedBaseline, promotedConcept, claimedTask,
clarificationAnswer, locked steeringNote, factSheet (inline, still
L0-pinned).
Left SYSTEM (immutable): systemPrompt, operatingGuidance,
schemaInstruction, projectProfile, operatorProfile, agentInstructions,
successfulPlanShape.
Trailing-slot scarcity guard: repairMandateSourceTypes joined ALL
matches, so a recovery stage on a retry with an unmet delta would stack
three competing mandates. Now a precedence list emits exactly one
(recoveryTicket > retryFeedback > groundingFeedback > rejectionFeedback)
with remainingDelta appended as the completion signal.
ContextClassifier keys STATIC on layer alone — L0 means pinned/never
pruned regardless of role, so the re-roled L0 entries don't fall through
to FREEFORM and get token-pruned.
Also fixes a stale ContextFeedbackTest assertion (expected a CAS hash
the producer deliberately stopped emitting) and a stale initialIntent
doc comment claiming L0/SYSTEM where the code says L1/USER.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The #301 escalation event shipped unregistered — it would silently fail to
deserialize on replay, dropping the persisted write-scope grant and re-prompting
the same path every session restart (breaks replay invariant).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Small models frequently fail to comply with the WRITE_SCOPE/PATH_OUTSIDE_MANIFEST
remediation ("add its path via task_update affected_paths") and instead thrash the
same out-of-scope write call turn after turn, burning the session without ever
completing. After `tuning.escalateScopeAfterN` (default 3) consecutive rejections
of the SAME path for a scope/manifest reason, the orchestrator now reaches back to
the FIRST rejected invocation of that path (its pristine, pre-degraded arguments),
and routes it through the existing approval/pause flow instead of rejecting again.
On approval, a new WriteScopeGrantedEvent widens the effective write manifest for
that path for the rest of the session (mirroring how OutsidePathAccessGrantedEvent
already widens out-of-workspace reads) and the first attempt's write is executed.
On denial, the call is rejected as before. escalateScopeAfterN = 0 preserves the
old hard-block-forever behavior.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01GeyGFXczJb8RUWGBKmkm6G
HealthMonitor's periodic poll took ~18s to notice a dead provider — long
after a retry had already re-selected it and died. Health needs to GATE
routing, not just log reactively.
- InferenceRouter.reportFailure(providerId, reason): new default-no-op
method; DefaultInferenceRouter implements it by writing Unavailable
straight into its health cache, bypassing healthCheck()/TTL entirely.
- SessionOrchestrator.runInference: on a connection-level exception
(ConnectException/SocketException/IOException or a message matching
"prematurely closed"/"connection refused"/"connection reset"), call
reportFailure immediately so the very next route() call — the retry driven
by #299 — sees the provider as down right away instead of re-selecting it
and dying again.
Pairs with #299: routing now (1) reacts to a connection drop instantly and
(2) waits/backs off for the capability to recover before declaring terminal.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01GeyGFXczJb8RUWGBKmkm6G
A transient provider connection drop (e.g. OOM-killed llama.cpp mid-request)
collapsed into a hard NoEligibleProviderException that escaped runInference's
try/catch (the route() call sat outside it), propagated past the stage retry
loop, and landed in ServerModule's session-level catch — failing the WHOLE
session even though the failure was retryable and the provider recovered
seconds later.
- SessionOrchestrator.runInference: wrap router.route() in try/catch so
routing failures become InferenceResult.Failed and flow through the normal
retryable/backoff/exhaustion machinery instead of escaping.
- DefaultInferenceRouter.route: distinguish "capability never configured on
any provider" (fail fast, waiting can't help) from "configured but
currently unhealthy" (bounded wait/backoff — default 3 attempts x 2s —
re-checking health before declaring NoEligibleProvider terminal).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01GeyGFXczJb8RUWGBKmkm6G
At the terminal boundary (repair ladder spent, or a non-recoverable gate
exhaustion), run exactly one tool-free diagnostic inference per terminal
failure fingerprint over recorded facts only. A validated — materially new,
confident, recovery-stage-available — RecoveryProposal routes once into the
existing recovery stage via the ticket machinery, bypassing the spent route
budget but bounded by a one-diagnosis-per-fingerprint dedupe so no loop is
possible. Otherwise the run stays terminal FAILED (safe degrade when no
diagnoser is wired).
- New PostFailureDiagnosedEvent + nested RecoveryProposal (registered in
eventModule); every observation/proposal/decision/route recorded for replay.
- PostFailureDiagnoser seam (nullable, mirrors SalvageJudge) + DiagnosisInput
built from the event log only (no fresh workspace observation).
- diagnosisMinConfidence tuning knob.
- Hooked at both terminal boundaries: routeToRecovery ladder-exhausted and
decideGateExhaustion.
Tests: RecoveryRoutingTest (route-once-then-bounded, low-confidence stays
terminal), EventsTest serialization round-trip (proposal + null).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Move intent, repo map, docs catalog, decision journal and relevant-files
context entries to EntryRole.USER so they no longer fold into the single
leading SYSTEM block — that block stays pure policy/schema. Omit L3 repo-map
retrieval on repair retries (the transcript already carries the evidence).
Add "initialIntent" to REQUIRED_SOURCE_TYPES.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Files written by earlier stages this session aren't in the session-start
repo map and were never embedded, so semantic retrieval is structurally
blind to them. Overlay each stage's FileWrittenEvent post-images as
deterministic hits (score 1.0) leading the semantic hits, deduped by path
— no reindex, no embed. Descriptors derive via the comment-free
sourcedesc describe() so agent-written content can't inject prose.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Discovery-stage clarifications could only be answered over WebSocket
(ClientMessage.ClarificationResponse), so the curl-based headless QA
driver parked forever at discovery.
Add POST /sessions/{id}/clarify mirroring approveStageRoute. The server
resolves the live (stageId, requestId) from the session id via
SessionOrchestrator.pendingClarificationFor() — the newest still-live,
unanswered ClarificationRequestedEvent from the event log — so a curl
caller need not know the requestId. Empty answers = free-text skip.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
A plan that failed grounding used to dead-end — every gate rejection in
FreestyleDriver.lockAndRun was terminal, so a legitimate grounding catch
(e.g. a stage declaring a PROJECT build with no manifest) left the run stuck
with no retry.
lockAndRun is now a gate loop: on a grounding rejection with retries left it
re-runs the planning workflow from the architect stage (rerunArchitect), which
emits a corrected plan, then re-gates. Other gate failures — and grounding once
maxGroundingRetries is spent — stay terminal.
- FreestyleDriver: gate loop + rerunArchitect/maxGroundingRetries seams;
groundPlan returns findings (String?) instead of Boolean; post-grounding
tail extracted to lockAndRunGrounded.
- DefaultSessionOrchestrator.runFrom(startStage) + emitWorkflowStarted(startStage);
run() delegates to it. Lets the re-run enter directly at architect.
- buildGroundingFeedbackEntry (ContextFeedback) injects the already-recorded
PlanGroundingEvaluatedEvent findings into the architect's L1 context on re-run;
wired in SessionOrchestratorExecution.
- Main: rerunArchitect lambda (rehydrate -> runFrom(architect) -> rehydrate).
The architect stage-entry approval gate already reuses a prior APPROVED decision
(alreadyApproved), so the re-run does not re-prompt the operator — added a
FreestyleApprovalGateTest regression guard proving runFrom(architect) with a
seeded approval emits no second request and runs straight through.
Tests: FreestyleDriverTest retry-then-lock + exhaustion->reject(source=grounding);
FreestyleApprovalGateTest reuse-approval guard.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
This branch's uncommitted WIP, committed together (entangled at file level).
Distinct pieces of work:
Freestyle QA fixes (this session):
- FileEditTool: pre-validate replace anchor in validateRequest — reject a
missing/ambiguous target BEFORE the approval gate, mirroring read/write's
file-not-found / read-before-write pre-checks. Shared not-found/ambiguous
messages between validate and execute so they can't drift.
- PlanGrounder: add `scanned` flag; when no RepoMapComputedEvent was recorded,
repoMapPaths is "unknown" not "empty workspace" — skip scope grounding
(which proves a path ABSENT) so real paths (apps/server/**) aren't falsely
rejected. Build-manifest check still runs.
- FreestyleDriver: wire scanned=(repoMap!=null); on plan rejection emit a
session-terminal WorkflowFailedEvent so a rejected run reads FAILED, not the
COMPLETED-lie (last verdict was the planning-phase WorkflowCompleted).
- ServerModule: resolve project-memory workspace root from the session's bound
workspace (sessionWorkspaceRoot) instead of boot-static pm.repoRoot(), fixing
the workspace-binding divergence (correx vs empty scratch dir). Retire tracked
in Vikunja #266.
- LaunchRegistrationRaceTest: join registered jobs before asserting launchCount
— computeIfAbsent returns the Job immediately but the fire-and-forget launch
body lagged awaitAll (the 49-vs-50 flake).
ACR concept-compiler experiment (pre-existing WIP on this branch):
- ExecutionPlanCompiler/Model/PlanLinter, #264 needs-seam (sessionArtifacts),
LSP diagnostics subsystem (LspDiagnosticEvents/Runner/Lsp4j), BootWorkspace,
config surface, workflow prompts/schemas, orchestrator advance-don't-rerun.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The tool-output framing feature (2912799f) wraps every tool result in a
'[tool exit=N]' header before it enters context. Compression still runs
(blank lines stripped); the test predated the frame and asserted the bare
compressed body. Update to the framed contract — invariant #6 unchanged.
Adds the failure-ticket + recovery-routing mechanism: a deterministic
gate->capability table gates whether a stage has agency to fix its own
failure, opens a FailureTicketOpenedEvent when it doesn't, and routes to
a metadata role=recovery stage (per-stage budget, cap 2, not reset by
TransitionExecuted) instead of retrying in place. Extends salvage
decisions with a RECOVER option so the review-gate judge can also route
to recovery, unifies deterministic-gate and review-gate routing through
routeToRecovery(), and has ExecutionPlanCompiler synthesize a
write-capable recovery stage + edge for freestyle plans. Read-only tools
(file_read, list_dir) are now always available on any tool-granting
stage so a recovery stage can inspect the write-less stage's failure
without flooding context via shell ls -R.
Retry-agency invariant: a stage may only retry a gate it has the capability
to change. A write-less stage failing a build/contract/static gate (e.g.
freestyle final_verification with allowedTools=[shell]) can never fix it, so
retrying in place is futile until the budget drains (Vikunja #41).
Instead: open a FailureTicketOpenedEvent (category + requiredCapability derived
deterministically from the gate id, no LLM) and route to a recovery stage that
holds the capability, bounded by a small per-stage route budget.
- Slice 2: SalvageDecision.RECOVER (ternary CONTINUE/RECOVER/FAIL) lets the
review-gate salvage judge hand off to recovery. Shared routeToRecovery()
unifies the deterministic agency guard and the judge on one destination;
decideGateExhaustion now returns StepResult?.
- Return-to-sender: recovery's exit is dynamic (recoveryReturnMove) — it goes
back to the exact ticket-origin stage to re-run its gate, so a write-less
gate anywhere in the graph is handled without skipping intervening stages.
The synthesized recovery->terminal edge is now only a no-ticket fallback.
- Freestyle wiring: ExecutionPlanCompiler injectRecovery flag (Main passes
true) synthesizes a write-capable recovery stage; ticket evidence reaches it
via buildRecoveryTicketEntry.
- Read-only tools always present: StageConfig.effectiveAllowedTools adds
file_read/list_dir to any tool-granting stage (fixes the verifier reaching
for `shell ls -R` to inspect the tree).
Tests: RecoveryRoutingTest (deterministic gate, no static return edge — proves
dynamic return) + GateRetryBudgetExhaustionTest RECOVER case + two compiler
tests. All green; detekt clean.
Replaces the single shared per-stage retryCount (reset on TransitionExecuted,
shared across all post-stage gates) with a per-gate budget. Motivated by run
2e468f9f, where a promising freestyle run was terminally FAILED because the
contract gate burned all 3 shared retries on one trivial miss before the
semantic-review gate ever ran.
- StageExecutionResult.Failure gains a `gate` id; each gate tags its failures.
- OrchestrationState gains gateRetryBudgets / gateFailureFingerprints /
gateSalvageUsed (all rebuilt from events, reset per-stage on TransitionExecuted).
- FailureFingerprint normalizes+hashes the failure reason; RetryCoordinator.decide
charges a gate's budget only when the fingerprint is unchanged (no progress),
so a moving run is never penalised. Returns Retry | Exhausted.
- Hybrid exhaustion: deterministic gates fail; the review gate consults a
SalvageJudge (LLM, or a deterministic allow-one-reset fallback), recorded as
RetrySalvageDecidedEvent (invariant #9). CONTINUE resets the gate budget once;
a second exhaustion is terminal.
- Review gate is now the sole authority on review-retry termination; the old
REVIEW_BLOCK_RETRY_CAP is repurposed as a high absolute backstop only.
- ServerModule escaped-exception path now records a truthful terminal
WorkflowFailed (real stage/reason/retryExhausted) via recordUnhandledFailure.
Tests: DefaultRetryCoordinatorTest (fingerprint charging) +
GateRetryBudgetExhaustionTest (deterministic exhaust / review CONTINUE-then-
terminal / review FAIL / null-judge fallback) + reducer coverage.
Context rework from the 2026-07-05 context-poisoning diagnosis (session
6ca236c4 read-loop):
- ContextBucket on ContextEntry: REQUIRED (task, constraints, needed
artifacts, failure feedback) is never pruned/compressed/dropped; the
build fails fast (RequiredContextOverflowException -> non-retryable
stage failure) if required alone exceeds the stage budget.
- OptionalCeilings: per-sourceType token caps for the optional block
(repoMap 1200, relevantFiles 1600, journal 800, profiles 400/600,
vocabulary 400), tuned for the 9-26B tier at 16k; enforced by
truncation (journal keeps its tail, others their head).
- Repo map is now a structural 'what exists' listing (alphabetical,
per-directory, no recency ranking, no symbols); .md/docs paths are
gated behind an explicit docs mention in the stage prompt — retrieval
hits remain the only other path for docs to enter context.
- file_written needs render as a manifest of ALL files the producing
stage wrote (projected from ArtifactContentStored -> ToolInvocation
-> FileWritten events), fixing the last-write-wins collapse; content
stays lazy behind file_read.
- Decision journal folds a stage's RETRY records into one summary line
once a later transition leaves that stage (render-time only).
- Dedupe retrieved-file lines in buildRelevantFilesEntry.
The 'router' name was misleading — it's the always-on conversational front-end
(CHAT triage + STEERING into a running workflow), not a routing layer, and it's
distinct from InferenceRouter. Rename core:router -> core:talkie, package
com.correx.core.router -> com.correx.core.talkie, and RouterFacade/Config/State/
Repository/ContextBuilder/Projector/Reducer/Response -> Talkie*. Config section
[router] -> [talkie] (legacy [router] still read as fallback).
Persisted wire formats are preserved: ChatTurnRole.ROUTER and the
RouterNarrationEvent @SerialName("RouterNarration") stay, so existing event
logs still replay. RouterNarrationEvent the class is now TalkieNarrationEvent.
Three tool-path correctness fixes:
- Tool-execution events were emitted twice — SandboxedToolExecutor and
SessionOrchestrator.recordToolExecution both emitted Completed/Failed/
FileWritten per call (double TUI rows, double-counted metrics). Split
ownership: orchestrator is the sole recorder of Completed/Failed (truncates
output, drives the read-before-write gate); executor owns Started +
FileWritten (pre/post-image hashes it alone can capture).
- computeToolPreview still gated on operation == "write", but file_write lost
its operation param when delete was split out, so it bailed to raw-args for
every write (approval card showed raw JSON). Drop the dead guard.
- A file_read blocked by REFERENCE_EXISTS can never complete, so it could never
lift read-only mode: a stage writing a NEW file deadlocked (writes filtered,
every read of the not-yet-created target blocked) until MAX_TOOL_ROUNDS.
Lift read-only on a REFERENCE_EXISTS block, and reword the block message to
tell the model to file_write directly. Regression test added.
Uncommitted work from the session-robustness-and-dox branch sweep
(docs/qa/QA-session-robustness-and-dox.md), verified alongside the
compression/context fixes:
- SandboxedToolExecutor: validate tool args centrally before dispatch. A
malformed/missing-arg call becomes a recoverable ERROR: (surfaced with the
tool's arg schema so the model can correct + retry) instead of stranding
the stage with no artifact. + validation test.
- PlanLinter: seed artifacts (analysis) produced by the planning phase count
as available producers, so a plan stage that `needs` them isn't flagged as
an unproduced-need; H1 unproduced-needs + trap-state checks. + tests.
- DefaultSessionOrchestrator: live-QA robustness fixes (event-tail /
per-stage budget + retry handling).
- workflow prompts/configs: DOX AGENTS.md alignment + freestyle/task/role
prompt tweaks.
- SessionOrchestratorIntegrationTest: coverage for the above.
- FreestylePlanningWorkflowTest: allow list_dir in analyst tools (follows the
list_dir wiring in 968cbfa).
- QA plan doc for the branch sweep.
Root Child DOX Index assembled, plus a per-module AGENTS.md across the tree
(core/*, infrastructure/*, apps/*, testing/*, and docs/examples/frontend/etc),
each following the DOX section shape: Purpose, Ownership, Local Contracts,
Work Guidance, Verification, Child DOX Index.
Two orchestrator tool-gating behaviors (both touch SessionOrchestrator):
- Read-only switch: when a tool call is BLOCKed with READ_BEFORE_WRITE, derive a
read-only mode from the event log (block until a later FILE_READ completes) and
withhold FILE_WRITE tools from the next inference turn(s), so a weak model is
pushed down the read-then-write path instead of looping on the blocked write.
- require_task_decompose stage flag (TomlWorkflowLoader) + owesTaskDecompose guard:
a stage so marked cannot stage_complete until a task_decompose/task_create has
succeeded this stage. New task_planning workflow + prompt are the first consumer
(decompose-only: swoop codebase, emit a parent + DEPENDS_ON task graph, stop).
Two reviewer-reliability tracks, both deterministic and unit-verified (no model/network).
§B-§5 — static_check stage seam. The StaticAnalysisRunner + StaticFindingsRecordedEvent +
reviewer-context filter already existed; what was missing was a stage that runs the tool and
emits the event. Added:
- StaticCheckStageExecutor: reads stage metadata (static_tool/static_argv), runs the configured
command via StaticAnalysisRunner, returns a StaticFindingsRecordedEvent. No-op (empty findings)
when no runner is wired or no command is configured — safe to carry unconfigured.
- A deterministic-stage seam in DefaultSessionOrchestrator.enterStage: any stage with
metadata["stage_type"] == "static_check" is run by the executor instead of the LLM subagent,
then advances on its (unconditional) exit edge.
- TomlWorkflowLoader: stage_type/static_tool/static_argv fields → StageConfig.metadata.
- role_pipeline.toml: a static_check stage between implementer and reviewer (no-op until
static_argv + a CommandRunner are set; activation is live-QA-gated, see StaticAnalysisRunner doc).
§B-§6 — critique-outcome producer. The CritiqueFinding type + CriticCalibrationProjection existed
but nothing fed them. Added:
- CritiqueFindingsRecordedEvent (+ CritiqueVerdict): the producing side — a critic's findings +
verdict for one review iteration, carrying modelHash for per-model calibration.
- CritiqueOutcomeCorrelator: pure loop-resolution logic deciding UPHELD (fixed between rounds) /
DISMISSED (persisted into an approved final) / INCONCLUSIVE (open at a non-approved terminal),
per critic (role + modelHash) and per finding id.
- A hook in completeWorkflow/failWorkflow that correlates recorded findings into
CritiqueOutcomeCorrelatedEvents at loop resolution — no-op when none recorded, idempotent.
(LLM-side finding emission stays a separate model-gated activation.)
Tests: StaticCheckStageExecutorTest (4), StaticCheckStageTest integration (1, fake runner →
event + transition), CritiqueOutcomeCorrelatorTest (8), CritiqueCalibrationWiringTest integration
(1, seeded findings → outcomes at completion), updated RolePipelineWorkflowTest. Full suites for
core:events/kernel/critique, infrastructure:workflow, testing:integration green; detekt clean.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
When a stage produces an LLM artifact carrying a non-empty questions
array, the orchestrator parks the run, records ClarificationRequested,
awaits the operator's answers (submitClarification seam), records
ClarificationAnswered, injects the answered Q&A as an L2 USER entry, and
re-runs the same stage so the questions are resolved by the role that
asked them. Runs on a dedicated pendingClarifications map and the
enterStage success-branch loop, so a clarification round never consumes
the failure-retry budget; capped at three rounds. Integration test covers
the happy path and the cap.
Adds two test files to prove B4/B3 invariants end-to-end:
- RepoKnowledgeReplayTest (testing/replay): projection-based replay tests that
verify recorded RepoKnowledgeRetrievedEvent drives relevantFiles context assembly
without consulting a retriever (test A), and that a log without the retrieval event
falls back to the RepoMapComputedEvent legacy path (test B).
- RepoMapReuseIntegrationTest (testing/integration): end-to-end test using the real
ProjectMemoryService + L3RepoKnowledgeRetriever + InMemoryL3MemoryStore proving
exactly one index walk across two sessions sharing the same stateKey, and that the
second session receives non-empty repo hits via the shared L3 embeddings despite
having no per-session RepoMapComputedEvent.
New test deps (noted per constraint):
- testing/replay: adds core:context (needed to import ContextLayer/ContextEntry from
the buildRelevantFilesEntry return type).
- testing/integration: adds apps:server (ProjectMemoryService, L3RepoKnowledgeRetriever,
FakeWorkspaceStateProbe), core:router (InMemoryL3MemoryStore), core:config (ProjectConfig).
No new inter-core or upward production dependencies introduced.
emitLlmArtifacts previously emitted ArtifactCreated/Validating/Validated for every
llm-emitted slot unconditionally, fabricating "validated" artifacts when the model
produced no content. Gate now mirrors the F-015 file_written check: slots with null
or blank cached content are skipped with a warn log. Regression test added in
NeedsArtifactInjectionTest verifies no artifact events appear for a blank-response stage.
Implements the replay-safe half of preemptive redirect (graph re-routing). An
operator-confirmed PreemptRedirectEvent overrides the resolver's edge at the next
transition boundary; the pure resolver stays untouched.
- PreemptRedirectEvent / PreemptRedirectBlockedEvent (+ serialization registration)
- TransitionExecutedEvent + TransitionDecision.Move gain optional redirectId — the
durable 'consumed once' marker
- PreemptRedirect.decide: pure decision over the event log (override / block / none),
so replay reaches the identical outcome without re-classifying (invariant #8)
- override wired in DefaultSessionOrchestrator.step above resolveTransition; back-edge
jumps count against the existing maxRetries cap via executeMove
- blocks jumps to unknown stages or targets with unsatisfied needs
- DomainEventMapper: redirect events mapped to null (operator surface ships with the
LLM-proposal + approval-confirm front-half)
- tests: override+consume-once, block-on-needs, block-on-unknown, ignore-consumed
Front-half (LLM proposal -> approval-gate confirm -> emit PreemptRedirectEvent) is
deferred; needs live LLM verification. Until it ships no redirect event is emitted in
production, so the override is inert. Spec: docs/plans/2026-06-10-freestyle-graph-rerouting.md
rehydrate() now scans ArtifactContentStoredEvent (the durable slot->CAS-hash
bridge) and fetches stored bytes by content hash, keying the cache by the
logical slot name. The slot name is never passed to the hash-keyed CAS, so the
odd-length-hex crash is gone and artifact content is restored on cold-start
resume. RehydrateTest reworked to use a content-addressed fake store (slot name
!= content hash) so it actually exercises the bug. Replay (#8) is unaffected —
rehydrate is live-resume-only.
Also bump router narration maxTokens 1024 -> 4096: reasoning models were
spending the whole budget thinking and emitting empty content (finishReason=
length), so narrations never reached the TUI.
Removes the stale TUI-refactor progress doc.
Extract a SubagentRunner fun-interface (SubagentRunRequest/SubagentRunResult)
and an InSessionSubagentRunner default that delegates to the existing
executeStage path, with per-run effectives captured in the lambda closure so
the seam stays free of the internal RunEffectives type.
DefaultSessionOrchestrator.enterStage now dispatches through subagentRunner.run
instead of calling executeStage inline; effectives threading is dropped from
run/step/executeMove/enterStage/resume. ReplayOrchestrator supplies its own
runner. Behaviour is identical — RefinementLoopTest and full check stay green.
Stages declaring needs=[...] now receive each needed artifact's validated
JSON (from artifactContentCache) as an L1/USER neededArtifact context entry,
so a one-shot subagent sees its inputs.
Also emit llm-emitted artifact lifecycle events (Created/Validating/Validated)
on successful validation via emitLlmArtifacts, closing a latent gap where
verifyProduces would fail for stages producing only an llm-emitted artifact.
Events are emitted only after validation passes, preserving invariant #7.
A stage's allowedTools only shaped which tool definitions were offered to
the model; the dispatch path resolved returned tool calls straight from the
full registry and executed them without checking stage membership. A
hallucinated, jailbroken, or edited-transcript tool call for any registered
tool would run unchecked (violating invariant #5 / policy-is-absolute).
dispatchToolCalls now rejects any tool call whose name is not in the stage's
allowedTools (STAGE_COMPLETE_TOOL exempt), emitting ToolExecutionRejectedEvent
and feeding an error ContextEntry back to the model instead of executing.
Empty allowedTools means deny-all domain tools, consistent with offering
only STAGE_COMPLETE_TOOL at inference time.
A steering note attached to a tool approval was recorded but only
consumed by the NEXT stage's prompt build (buildSteeringNoteEntries runs
once, before the tool loop), so on a single-stage task it had no visible
effect. Two changes:
- Approve+note: capture userDecision.userSteering at the gate and inject
it as a context entry right after the tool result, so the same stage's
loop re-infers with the note and the model acts on it.
- Reject: buildSteeringNoteEntries now also emits anti-repeat feedback for
REJECTED decisions with no note, so the model does not re-propose the
identical call on the retryable re-run (a bare reject previously fed
back only "approval denied").
Integration test drives an approval with a steering note and asserts the
next inference's context carries it.
Compute the effective tool registry/executor and plane-2 WorkspacePolicy per run
from config.workspace (effectivesFor), threaded through the orchestrators; a null
workspace falls back to the boot instances byte-for-byte. Wire the concrete
WorkspaceToolRegistryProvider in Main (buildToolConfigForWorkspace). Session undo
unions the session's recorded workspace into its jail roots. (Axis 2 Phase A, tasks 3 + 7.)
A stage declaring no `produces` passed verifyProduces vacuously, letting an
agent stage_complete with zero work. Gate on allowedTools: a produce-less stage
with tools available must have >=1 ToolInvocationRequestedEvent scoped to its
stageId, else Failure(retryable). Produce-less + no tools is exempt (only
stage_complete is ever offered), so pure-reasoning stages aren't bricked.
DefaultContextPackBuilder already enforced the token budget, but SessionOrchestrator discarded the entriesDropped signal at both build sites — overflow was enforced yet unobserved. Emit ContextTruncatedEvent when entriesDropped>0, matching the router path (open-threads 6.2 contract).
Tools can declare how their output is compressed before it enters the
context pack, replacing uniform handling. Open-threads 6.3 / ADR-0003.
- core:tools/compression: ToolOutputCompressor interface,
IdentityCompressor default, declarative OutputCompressionSpec +
CompressionRule (StripBlankLines, StripLeadingWhitespace,
DropMatching, HeadTail), and the pure DeclarativeCompressor engine
(regexes compiled at construction; bypassOnError passes raw on
non-zero exit; never throws on input).
- Tool gains `outputCompressor` (default IdentityCompressor). FileReadTool
strips blanks + leading whitespace; ShellTool strips blanks + head/tail.
- SessionOrchestrator applies the resolved tool's compressor on the
ToolResult -> ContextEntry path only. Raw output stays authoritative
in the event log (invariant #6); compression is a pure function of
(raw, exitCode, spec), so no new event and replay stays deterministic.
- Spec is @Serializable/config-shaped (JSON round-trip tested). No
custom-tool-from-config path exists today, so first-party tools wire
in code; TOML-declared compression rides along when that path lands.
Tier B (format-aware parsers: failures-only test output, git-log oneline)
is a documented per-tool extension behind the interface, not built here.
Implements the full vertical slice for invariant #9 tool-call assessment:
- core:toolintent — new module with ToolCallRule seam, ToolCallAssessor,
WorldProbe/FileSystemWorldProbe, WorkspacePolicy, PathContainmentRule,
and RiskMapping (assessment → RiskSummary / AssessedIssue)
- core:tools — ToolCallAssessmentRecord + ToolInvocationRecord.assessment
field; DefaultToolReducer handles ToolCallAssessedEvent (replay proof)
- core:config — ToolsConfig gains workspaceRoot + privilegedLocations;
ConfigLoader parses both; DEFAULT_PRIVILEGED_LOCATIONS built-in
- core:kernel — OrchestratorEngines gains toolCallAssessor/workspacePolicy/
worldProbe fields; SessionOrchestrator.dispatchToolCalls runs
runPlane2Assessment before the tier gate: BLOCK → hard-reject without
executing; PROMPT_USER → elevates tier into approval path with plane2Risk
in the ApprovalRequestedEvent
- apps/server — constructs PathContainmentRule + ToolCallAssessor +
WorkspacePolicy from config and wires them into OrchestratorEngines
Assessment is recorded as ToolCallAssessedEvent (environment observed once,
facts stored, replay reads events — invariant #9). Assessor and WorldProbe
are only invoked on the live orchestrator path, never in replay.
Flags when a workflow stage's allowedTools references a tool name that
is not registered in the tool registry (config drift), surfaced as a
non-blocking WARNING.
- Add ValidationContext.availableTools (nullable; null = registry
unavailable, skip the check)
- MissingToolRule emits one MISSING_TOOL warning per (stage, tool) pair,
deterministically ordered
- Populate availableTools from the ToolRegistry at the orchestrator
construction site; wire the rule into the prod SemanticValidator