Closes the COMPLETED-lie where a freestyle stage passes by producing a
schema-valid artifact regardless of whether its build actually succeeded:
a verify stage could run 'npm run build', watch it fail, then self-attest a
build_verified artifact and transition to done. Tool failures never failed
the stage.
The compiler now flags the terminal stage autoBuildGate=true when no stage
declares an explicit build_expectation. Code-ness is decided at runtime, not
compile time (the declared kind is always the generic file_written; only the
written paths reveal code): runExecutionGate folds the FileWritten manifest via
sessionProducedBuildTarget() and promotes to a PROJECT build when a build
manifest (package_json/gradle_module) or an imports_resolve-bearing path was
written, then runs the real command from .correx/project.toml [commands]. A
non-clean exit fails the stage retryably; a docs-only plan is left untouched.
Live-proven (run 3, session 28812b44): gate fired on the real
'npm --prefix frontend run build', exit 2 on a bad tsconfig, RetryAttempted
instead of a false COMPLETED.
Modules green: transitions+workflow 67, kernel 60.
Plan-compile gate (#19): PlanCompilationCheck seam (null-on-replay),
runPlanCompileGate guards a produced execution_plan slot and compiles its
cached content via ExecutionPlanCompiler, emitting PlanCompileCheckedEvent.
On failure the architect gets a retryable hand-back and self-corrects;
exhaustion terminates the dead-end workflow instead of shipping an
uncompilable plan.
Semantic-review gate (#20): SemanticReviewer seam + StageConfig.semanticReview
opt-in (TOML semantic_review + freestyle plan JSON). runReviewGate reads the
FileWritten manifest (never blind context), asks a review-capable model for
PR-comment findings, and is advisory — blocks retryably only on FAIL plus a
correctness finding >=0.7 confidence, capped at 2 blocks so a stubborn stage
completes advisory-only rather than trapping. SemanticReviewerImpl talks to
the provider directly; any reviewer error degrades to PASS. REVIEW_MAX_TOKENS
is 8192: gemma is a reasoning model and 1024 truncated it mid-reasoning before
it reached the JSON verdict (empty content -> parse degraded to PASS).
Both gates live-QA'd on the real repo: plan-compile passed on a freestyle
web-UI scaffold; semantic review caught all 3 planted bugs in a maxOf() and
exercised the block->retry->cap safety valve end-to-end.
Adds a nullable `reasoning` field to InferenceResponse and maps the
llama.cpp / OpenAI-compat `reasoning_content` field into it, so local models
that emit their chain-of-thought have it captured. Provider/model side only —
the emit-site event field (reasoningArtifactId) + CAS storage in the
orchestrator are still pending (tracked in Vikunja Correx #4).
Gate 2 (contract) and Gate 4 (execution) of the 4-gate staged-verification
design, plus the two gate-quality fixes found in live QA.
- Gate 2: KindContractTable (kind→assertions registry, universal floor,
additive project overrides) + KindInference (path→kind, pure/replay-safe)
+ ContractAssertion model; ContractGateEvaluatedEvent (registered);
ContractAssertionEvaluator seam + FileSystemContractEvaluator (FS/TEXT,
COMPILER skipped); runContractGate in runPostStageGates — a stage that
produces file_written artifacts must have every declared+written file
exist/non-empty/parse, else retryable hand-back with per-assertion feedback.
- Option A: ExecutionPlanCompiler puts concrete (non-glob) plan `writes` into
StageConfig.expectedFiles, so a declared-but-unwritten file fails file_exists.
- Gate 4: BuildExpectation enum (none|module|project|tests) + plan field +
closed-set compiler validation; runExecutionGate resolves the alias against
the bound project profile commands and runs it as a deterministic gate.
- Live-QA fixes: react_entry kind so main.tsx/index.tsx aren't required to
export a default component (was an unwinnable false-positive); JSONC
tolerance (allowComments/allowTrailingComma) so tsconfig.json passes valid_json.
Seams are null on the replay harness (no-op) — recorded events are truth (#9).
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.
- LlamaCppEmbedder: parse llama.cpp --pooling mean nested response [[...]] (was
silently failing every embed with 'unexpected response shape')
- qa-stack: embedder -b/-ub 8192 so docs >512 tokens don't 500; fix default path
- TurboVecL3MemoryStore: send init handshake on startup (was 'Index not initialized'
on every add/query)
- turbovec_sidecar.py: rewrite add/search/save/load against the real turbovec API
(batched ndarray, L2-normalize so IP=cosine, prepare() before search, classmethod
load). The sidecar was scaffolding never run against the real lib.
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.
Writing to an existing directory path threw an IOException marked recoverable=false, which the orchestrator turns into a FATAL non-retryable stage failure — dead-ending the workflow on a correctable model mistake. Guard the directory case up front with a clear message and make write IO errors recoverable so the retry-with-feedback loop can self-correct.
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.
Found while live-QAing freestyle_planning on a 12B local model:
- list_dir tool: recursive, .gitignore-aware listing so weak models stop
flooding context with `ls -R` over node_modules/build/dist. Wired into
the fileRead toggle + advertised to the planner (architect_freestyle).
- ContextClassifier: assistantToolCall turns are STRUCTURED, so the token
pruner never shreds the model's own tool-call history — that was causing
amnesia loops (re-issuing calls it had already made).
- Retire instruction-doc LLMLingua pruning (DOC_SOURCE_TYPES emptied): it
fused load-bearing procedural text into unparseable soup. The static
block stays small by dropping CLAUDE.md at the loader instead.
- AgentInstructionsLoader: load only AGENTS.md, not CLAUDE.md — the latter
targets the outer assistant and polluted the agent's stage context.
- DefaultSessionReducer: WorkflowFailed flips session status to FAILED (was
stuck ACTIVE forever, so clients/approval loops never saw a terminal).
- ShellTool: run shell command lines (cd/&&/pipes) via `sh -c`; unrunnable
program is recoverable instead of an uncaught IOException killing the
stage; malformed argv (non-string/collapsed-array) rejected with guidance.
- llmlingua sidecar: cap force_tokens to max_force_token (big docs blew the
assert and 500'd, so doc pruning silently failed open).
Tests added/updated across all of the above.
Three defects surfaced by a live headless freestyle_planning run (all made a
long execution workflow fail or stall in ways invisible to a REST operator):
1. retryCount was session-global (DefaultOrchestrationReducer): TransitionExecuted
updated currentStageId but never reset retryCount, while shouldRetry gates on
it per-stage. An early stage that burned its 3 retries starved every later
stage of its own — the next stage's first *retryable* failure went terminal.
Reset retryCount on stage entry; back-edge loops stay bounded by the separate
refinementIterations counter. Regression test added.
2. Freestyle stages ran at StageConfig's 4096-token default (ExecutionPlanCompiler
never set a budget) vs 16384-32768 for static role_pipeline stages. A tool-heavy
stage truncated its context every round, evicting the file_read results it just
gathered, so it re-read forever and never accumulated enough to write. Set 16384.
3. GET /events returned the OLDEST `limit` events (readFrom(0) then take): for a
session past `limit` events the tail — including a pending ApprovalRequested —
was invisible to a headless/REST poller, the exact caller POST /approve serves.
Default now tails; explicit fromSeq still paginates forward.
Two fixes that together let the freestyle analyst/architect stages actually
produce valid artifacts on a local model (verified end-to-end: analyst passed
first try, architect produced a validated plan):
1. Tools-less final emission (SessionOrchestrator): producing the artifact
while tools are in the request is unreliable — llama.cpp's Gemma template
switches to a channel format and leaks <|channel> markers into the text, and
models keep tool-calling until the round cap without ever emitting. After the
tool loop, fire ONE tools-less inference to get clean JSON (also re-enables
the JSON grammar, since grammar+tools is rejected). Gated on the artifact not
already being produced via emit_artifact.
2. GBNF grammar handles arrays/objects (GbnfGrammarConverter): array-typed
properties fell through to a 'string' rule, so the grammar forced a string
where the schema demanded an array — an unwinnable grammar-vs-validator
disagreement. Add generic value/object/array rules and map types correctly.
Note: also needs schema 'items' on array props (runtime schemas updated; mirror
to repo schemas/*.json).
Align the provider's HTTP client timeout with the orchestrator per-stage
timeout (1_800_000ms). A slow local reasoning model with a large prompt and a
multi-thousand-token reasoning budget can exceed 10min on a single call; the
old 600s HTTP timeout failed the inference before the stage timeout applied,
exhausting retries on timeouts alone.
Small local models emit tool calls into message content but truncate them
(unterminated arguments string, missing closing braces), so strict decode
fails and the blob is treated as a failing artifact, exhausting the stage's
retry budget. Add a lenient fallback that recovers the function name and the
first brace-balanced arguments object, gated on a tool-call marker so genuine
artifact JSON is never misread as a call.
Add CapabilityAwareRoutingStrategy — it hard-filters to providers that declare every
required capability (like FirstAvailable) but ranks the matches by summed required-capability
score; ties keep list order, so it is a strict superset of first-available. The server now
wires it as the routing policy.
The orchestrator augments a stage's required capabilities with ModelCapability.ToolCalling
when the stage grants tools, so tool-heavy stages route to the best tool-calling model rather
than whichever healthy provider comes first.
Scores come from each provider's declared capabilities(); observed per-model reliability
(GET /metrics/tool-reliability) can feed in later as an additional weight.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Enable autonomous QA through a remote OpenAI-compatible provider (NVIDIA NIM)
and harden the tool/approval path so unattended multi-stage runs complete.
- inference: add openai_compat provider (Bearer chat-completions for NIM/OpenAI),
dispatched by provider type "nim"/"openai"; key via api_key/api_key_env.
- server: bind configured [server] host/port instead of a hardcoded 8080;
POST /sessions accepts an optional `intent` (WS parity) for intent-driven workflows.
- kernel: thread the bound operator profile's approval_mode into per-tool gating so
auto/yolo enable unattended approval (engine still consulted; policy/plane-2 BLOCK
stays terminal); on a recoverable tool failure feed the tool's arg-schema back into
context so the model self-corrects instead of repeating a malformed call.
- tools: split deletion out of file_write into a separate, explicitly-named file_delete
tool — a model can no longer delete a file by getting a write-mode parameter wrong.
- server: add GET /metrics/tool-reliability — per-model tool-call validity from the
event log (measurement groundwork for capability-aware routing).
- docs: update AGENTS.md across kernel, tools, server, inference.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
role_pipeline.toml is now analyst → architect → decomposer → loop(claim →
implement → review) → done. The decomposer (require_task_decompose) breaks
the design into a task graph; the implementer stage claims the next ready
task on entry (claim_task = true, kernel-driven) with writes auto-scoped to
the task's affected_paths and propose_scope as the operator-approved widen
valve. The loop is gated by the tasks_ready predicate.
Loop precedence rides the resolver's by-id transition ordering (review-1/2/3)
to avoid composite all_of/not conditions in the flat TOML schema: changes →
implementer, approved+tasks_ready → implementer, else → done.
TomlWorkflowLoader gains a claim_task stage field (→ claimTask metadata) and
extracts the metadata build into StageSection.toMetadata. RolePipelineWorkflowTest
rewritten for the tasked graph.
When a write is blocked for being outside the claimed task's
affected_paths, the implementer can propose widening scope via a new
T2 propose_scope tool. The operator decides (invariant #4 — the agent
can't self-grant). Approve unions the proposed paths into the task's
affected_paths (existing TaskAffectedPathsSetEvent); activeScope
re-derives the wider manifest from events so the same write then passes.
Reject blocks the task (via TaskClaimCoordinator.blockActiveTask, hooked
on both approval-denial branches, scoped to propose_scope) so the loop
advances. No new event types.
New TasksReady condition driven by EvaluationContext.readyTaskCount,
fed at resolve time via a kernel-declared ReadyTaskCounter interface
implemented in apps/server over TaskService (keeps core:kernel
decoupled from core:tasks). Loops a graph while ready>0, exits at 0.
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).
Some local models write the tool call as a JSON blob in `content` instead of the
native tool_calls array (toolCalls arrives empty). The orchestrator then treated
the blob as a failing artifact and retry-looped to exhaustion. salvageToolCalls
parses content as a ToolCallRequest (object or array) when tool_calls is empty;
real artifact JSON lacks a `function` field so it's left untouched.
The freestyle analyst can now break a large goal with dependency seams or
independent review/handoff points into a parent epic + DEPENDS_ON-linked children
in a single T2 approval, instead of N separate task_create calls. Parent
DEPENDS_ON every child (completes last); each child IMPLEMENTS parent. Resolves
depends_on by ref or index; rejects cycles, unresolved refs, missing title/goal,
and empty batches; same batch dedup + force_reason convention as task_create.
A session works one active task, so multi-task work is multi-session by
construction: the analyst names the single ready task this run works, the architect
threads only that one, and siblings are claimed by later runs via task_ready
(claim-driven; no scheduler, /tasks/next stays rejected).
Doctrine: analyst_freestyle.md picks one-task-vs-decompose and names the ready
task; architect_freestyle.md threads only that one; plus the L0 policy line.
freestyle_planning.toml analyst gains task_decompose (pinned by
FreestylePlanningWorkflowTest).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Bypassing a gate with force=true now requires a force_reason, recorded as a
"[force] ..." note on the task so the override is auditable (visible in history
and the context bundle) rather than a silent escape hatch. Applies to the agent
tools: task_create (dedup override) and task_update (claim over unmet blockers,
complete with no in-scope writes). force without a reason is rejected.
The REST POST /tasks create override (operator/CLI path) still takes a bare force
and is left for a separate call.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Block writing a file whose on-disk content changed since the session read it — a
concurrent/external edit the agent's view doesn't reflect. file_read records a
content hash on whole-file reads; the orchestrator's completion path now carries
the tool's structuredOutput (it previously dropped it, unlike SandboxedToolExecutor
— the two paths were inconsistent), so SessionContext.readHashes folds it.
StaleWriteRule compares the current hash (WorldProbe.contentHash) against the
read-time hash and BLOCKs a mismatch, telling the agent to re-read first. Files the
session wrote itself are excluded, so its own edits never look stale; partial reads
set no baseline.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Completing a task that declared affected_paths but saw no matching write this
session is now blocked ("marked done without doing it"), escapable with force.
TaskUpdateTool reads the session's writes through a SessionWrites port whose
adapter folds SessionContext (writes = recorded receipt.affectedEntities), and
matches them against the task's affected_paths globs.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claiming a task now emits SessionWorkingTaskEvent{taskId, affectedPaths} into the
session's own stream (via a SessionFactRecorder port + event-store adapter), and
SessionContextProjection folds it into SessionContext.activeTask. So a gate learns
"which task is this session working, and its scope" by reading the session stream
— no cross-stream scan, no kernel->tasks dependency. Re-emitted on an affected_paths
edit by the claimant, so the snapshot scope stays current; latest wins on replay.
This is the data source the write-scope gate needs (next).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Harden the claim warning into a block: task_update action=claim on a task with
unmet blockers is now rejected (no mutation) with the blocker list, instead of
claiming-with-a-warning. Escapable with force=true, which claims anyway and keeps
the "claimed despite unmet blockers" warning for the audit trail.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The doctrine says "search before creating", but that leans on the LLM; this is
the backstop against an agent re-creating a task across runs. TaskService.
findDuplicates matches active (non-terminal) same-title tasks, case- and
whitespace-insensitively — a DONE/CANCELLED look-alike is not a duplicate, since
that work may legitimately recur.
- task_create rejects a duplicate, naming the look-alike and offering force=true.
- POST /tasks → 409 with the duplicates, or force:true to override;
correx task create --force.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Bring the work graph into the agent loop:
- task_ready (T1): lists tasks ready to work now (TODO, all dependencies
satisfied) so an agent looking for work can pick one and claim it. Surfaces
work; never assigns (honouring the rejected /tasks/next). Registered in
TaskTools — left unwired in the request-driven example workflows, where it
would be noise; it belongs in an autonomous work-pull workflow.
- claim guard: task_update action=claim appends a WARNING naming any unmet
blockers, so an agent knows when it has jumped a dependency. Surfaced, not
hard-blocked — status is derived, so we don't fight the reducer.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Nothing asserted that the example workflows actually grant the task tools, so a
future edit could silently drop one and stay green. Pin allowed_tools per stage for
role_pipeline (analyst/implementer/reviewer), freestyle_planning (analyst), and the
shipped review_loop (implement/review). The existing review_loop test loaded an inline,
now-stale toml rather than the shipped file, so add one that loads the real file.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
A freestyle stage's tools are LLM-authored in the execution_plan. At run time an
unresolvable tool name is silently dropped (resolve -> null -> mapNotNull), so the
stage runs toolless — e.g. a misspelled task_update means the implementation stage
quietly loses task tracking, invisible without a live run.
ExecutionPlanCompiler now takes the registered-tool universe and rejects a plan that
names an unknown tool, with a message identifying the tool and stage. FreestyleDriver
already turns a compile failure into a rejection the architect retries. The param
defaults to empty (validation skipped) so existing callers are unaffected; Main feeds
it toolRegistry.all().
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The task tools were registered but had only mechanical descriptions and no
standing policy, so agents knew the tools existed but not when to reach for
them. Lead each of the five descriptions with its trigger (when to use, when
not to) and add a task-tracking convention to .correx/project.toml, which is
rendered into every stage's L0 context.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Ranked exact/substring search: TaskSearch (all terms AND, ranked title >
key > goal > criteria > notes) over one project or the whole board via
TaskService.search. Surfaced as GET /tasks?q=, a read-only task_search tool
for agents, and a `/` filter in the TUI board.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
When an agent creates or claims a task via the tool, record its session as
a CONTEXT/SESSION link so the context bundle's session resolver has real
edges to inline (status/intent/workflow). Shared linkOriginSession helper;
reducer dedupes so create+claim from one session is a single edge. The REST
create path stays unlinked (no agent session there).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The context bundle resolved only TASK and DOC link targets; ARTIFACT and
SESSION stayed raw. Add two ports (TaskArtifactResolver/TaskSessionResolver)
with apps/server adapters: artifacts resolve to producing stage/session +
content excerpt from CAS, sessions to status/intent/workflow. Unresolved
targets still fall back to raw links. Wired through the tool and REST bundle.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
CRUD, lifecycle transitions, work-graph links and notes over /tasks;
share link-kind inference (TaskTargetKinds) between the REST route and
task_update tool. End-to-end route tests.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Adds task tracking as a first-class event-sourced aggregate (ADR-0012). The
event log stays the only source of truth; the board is a projection, and all of
a project's task events live in one stream (tasks:<projectId>).
core:
- new core:tasks module mirroring core:sessions: TaskStatus/State/Reducer/
BoardProjector/CounterProjection/Repository + TaskService write path that
appends events via the existing EventStore (no new storage)
- task events in core:events (sealed marker TaskEvent), registered in
Serialization.kt; status is derived by the reducer from lifecycle facts
- work-graph edges: TaskLinkType + typed TaskTargetKind on the link, so bundle
resolution dispatches on the recorded kind instead of guessing from the id
- delete is a soft tombstone (TaskDeletedEvent); cancel stays a visible outcome
surfaces:
- agent tools (Tier T2 mutators, T1 read): task_create / task_update /
task_delete / task_context, registered in both the main and per-workspace
tool registries
- REST GET /tasks/{id}/context for external agents
context bundle (TaskContextAssembler):
- task fields + acceptance criteria + relevant files + resolved dependency
tasks (live status) + raw related links + notes, with a compact render()
- semantic enrichment via a TaskKnowledgeRetriever port bridged to the existing
L3 retriever (late-bound holder for composition-root ordering)
- ADR/doc resolution via a TaskDocumentResolver port + filesystem adapter
(docs/decisions/adr-*.md, padding-agnostic; *.md paths)
Unit-verified across core:tasks / infrastructure:tools / apps:server; full
gradlew check green. Not yet live-QA'd end-to-end against a running server.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
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>
PlanStage gains a `writes` field (planner-declared workspace-relative paths/globs);
PlanDerivedManifest.deriveAllowedWrites + combine union it with the static baseline.
ExecutionPlanCompiler wires the union into StageConfig.writeManifest, enforced by the
existing ManifestContainmentRule via the same glob matcher (no parallel matcher).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
- promote research fetch quality + content_sha256 from ToolExecutionCompletedEvent
metadata to first-class SourceFetchedEvent / LowQualityExtractionEvent (registered
+ serialization test); existing metadata write kept intact (additive)
- emitted from SandboxedToolExecutor on research-fetch tool completion, guarded on
the url/content_sha256/quality markers; reuses the extractor's LOW_QUALITY marker
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
First slice of the plan-generation pipeline epic. A pure-Kotlin PlanLinter runs over the
compiled freestyle ExecutionPlan (WorkflowGraph) before it is locked, complementing
ExecutionPlanCompiler (which throws on unreachable/unknown-kind/bad-edge) with the checks
it does NOT make:
- HARD unproduced_need — a stage needs an artifact no stage produces. Real gap: only the
TOML loader checked this; the freestyle compiler did not, so such plans compiled and
failed at runtime.
- HARD trap_state — a stage with no path to the terminal (inescapable loop / dead end).
Uses terminal-reachability, NOT "any cycle", so legitimate verdict-gated review loops pass.
- SOFT stage_count / fan_out / empty_brief / duplicate_brief — scored, never blocking.
FreestyleDriver lints after compile and records PlanLintCompletedEvent (pure function of
the recorded plan → replay-safe, no env observation in v1); a hard failure rejects the plan
(ExecutionPlanRejectedEvent source="lint") before the operator is asked or the plan locks,
so a broken plan never executes. Pays off now for single-plan freestyle; becomes the
per-candidate filter when multi-candidate generation (Slice 2) lands.
Deferred to later slices: file-path grounding + symbol resolution (needs an index),
token-budget/ADR-bypass checks, and a dedicated :core:planning module.
Run operator-configured static-analysis commands (compiler/detekt/formatters) as a
deterministic harness step on the producing stage, before the LLM reviewer. A stage
declares `static_analysis = [commands]`; after it produces its artifact, each command
runs in the workspace root and the results are recorded in a StaticAnalysisCompletedEvent
(invariant #9 env observation — recorded live, folded on replay, never re-run). A
non-clean command fails the stage retryably with its output fed back verbatim (§2:
compiler/test output is ground truth), so the implementer fixes it and only static-clean
code ever reaches the reviewer. This makes §5's "reviewer context excludes static findings"
mechanical — the findings are resolved upstream, so the reviewer can't waste inference on
what detekt catches for free; no output-parsing, no context plumbing.
- StaticAnalysisCompletedEvent + StaticAnalysisFinding (core:events) + registration.
- StaticAnalysisRunner seam + ProcessStaticAnalysisRunner (whitespace-split argv, stderr
merged, timeout→nonzero exit) in core:kernel; wired (nullable) into OrchestratorEngines
and the server. Null runner / no workspace root → logged no-op, never blocks the run.
- StageConfig.staticAnalysis + `static_analysis` TOML field; runStaticAnalysis folded into
a runPostStageGates sequence (produces → grounding → echo → static analysis).
- Documented `static_analysis` on the role_pipeline implementer stage (commented; commands
are workspace-specific). The reviewer prompt half shipped in 3467826.
New brief_echo stage before the planner in role_pipeline: the model restates
the analyst brief as a structured artifact, and a deterministic gate
(checkBriefEcho, opt-in via brief_echo=true) diffs the restatement against the
original brief. On divergence — dropped requirements (Jaccard coverage < 0.34)
or hallucinated files — it emits BriefEchoMismatchEvent and fails the stage
retryably, so a misread brief never reaches plan generation.
The diff (BriefEchoDiff) is a pure function of two recorded artifacts, so it is
replay-safe and records no observation; the event fires only on mismatch, for
audit. Symbols are recorded but non-blocking in v1. Mirrors the groundBrief-
References gate. role_pipeline only; freestyle_planning wiring is a follow-up.
Runtime install (like research): copy brief_echo.json + brief_echo.md and the
[[artifacts]] block into ~/.config/correx.
The rubber-duck path emits a fenced {"ideas":[…]} block; Ideas.parse strips it
from the chat turn and onUserInput records an IdeaCapturedEvent each (CHAT only).
IdeaReader folds eventStore.allEvents() into the active cross-session board, and
DefaultRouterContextBuilder injects a capped "## Ideas" entry — router-only, so
workflow stages never see it. Extended SYSTEM_PROMPT option (d) to capture ideas.
When given a directory path, file_read now returns its entries (sorted,
sub-directories suffixed '/') instead of failing. The tool description
and path-param schema advertise this so the model discovers it rather
than giving up after a missing-file probe. Generalises file_read into a
'read this path' primitive; the existing PathJail/Plane-2 containment
already covers directories.
Makes the research feature runnable end-to-end, off by default.
- config: [tools.research] (enabled, searxng_url, max_results, max_fetch_bytes).
- registration: web_search/web_fetch are built into BOTH the default and per-workspace
tool registries when research.enabled, sharing one HTTP client threaded from Main
(none built on the static path). Egress stays harness-enforced: web_fetch is T2
(operator-approved) and the existing NetworkHostRule still applies.
- workflow: examples/workflows/research.toml — decompose → gather → report, with the
three artifact schemas and prompts. Fan-out (search per sub-question, fetch per source)
runs as repeated tool calls inside the gather stage (Correx has no parallel agents);
per-source synthesis into the dossier is the compression step, so the report stage
consumes summaries, never raw pages. ResearchWorkflowTest validates the graph contract.
To run: set [tools.research].enabled, register the 3 [[artifacts]], copy research.toml +
prompts + schemas into the workflows dir, start SearXNG. Launch like any workflow (the
T2 fetch approval surfaces as an approval card; the report opens in the artifact viewer).
Follow-ups (noted, not blocking): batch fetch-approval at the source-list level (§3),
a dedicated SourceFetched/LowQualityExtraction event (quality + content hash are already
in tool-result metadata), dynamic per-session egress allowlist, and the web approval client (§6).