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>
Both were scaffolding placeholders from Epic 14 (2c459da) that were never
built out: each was just an `application` build.gradle (clikt only, no
internal deps) and a one-line `println` Main.kt. Nothing depended on them —
no project(...) reference anywhere, only the settings.gradle includes, and no
script/doc/CI launched their MainKt — so they only cost build time configuring
two inert modules.
Delete both module dirs and drop their include lines from settings.gradle.
`./gradlew projects` now lists only :apps:cli and :apps:server (configures
clean).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The research feature is "no new architecture" (spec §1) — composition of existing
mechanisms. The only genuinely new code is the two web tools + the HTML→markdown
extractor (spec marks them "(new)"), and those belong with ShellTool/FileReadTool
in :infrastructure:tools, not in a separate module.
Moves extract/ + web/ from the short-lived :infrastructure:research module into
:infrastructure:tools (packages com.correx.infrastructure.tools.{extract,web}); adds
jsoup + ktor-client there; removes the module from settings.gradle. No behaviour change
— 44 tests green.
First slice of the research workflow: the pure, zero-inference extraction pipeline
that the WebFetchTool will consume. New :infrastructure:research module (jsoup).
HtmlMarkdownExtractor: content-type dispatch (HTML extracted; JSON/text pass
through; binary/media/pdf rejected at the header), then structural strip
(MainContentSelector: drop script/style/nav/footer/aside/form + class/id blocklist)
+ density extraction (text − link-text score, semantic <article>/<main> preferred)
+ DOM→markdown (MarkdownRenderer/Table/Inline: headings, lists incl. nested, tables,
fenced code, blockquotes, links, emphasis). Output below the min-length threshold is
flagged LOW_QUALITY so the workflow can route around dead sources (SPAs, paywalls).
extractorVersion ("html-md-1") is pinned on every result so replay reads recorded
artifacts and never re-extracts — the embedding-hash discipline (§5, ADR-0000 §10).
Next slices: WebFetchTool + egress policy + CAS wiring (emits the fetch +
LowQualityExtraction events), then WebSearchTool/SearXNG, workflow graph, synthesis.
Rebuild the Go TUI transcript from the event stream instead of
optimistic local echoes. ChatTurnEvent now maps to ServerMessage.ChatTurn
(chat.turn); the TUI auto-vivifies sessions and renders user+router turns
from events. SessionStarted is de-special-cased into SessionAnnounced
(still carries workflowId), dropping the router.response shadow and
optimistic echoes.
Delete the unused Kotlin TUI (apps/tui) and add a kotlinx<->Go
golden-fixture test to lock the wire protocol. Gitignore server runtime
logs.
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.
Defines the L3MemoryStore contract in core:router (entry, query, hit,
in-memory test default) and a new infrastructure:router:turbovec module
that adapts turbovec via a Python sidecar over stdin/stdout JSON-Lines.
Adapter manages the subprocess via ProcessBuilder with lazy start,
mutex-serialized requests, and shutdown via withTimeout. Wire-format
metadata that turbovec doesn't store (sessionId, turnId, text) is kept
in an in-memory map for now — durable persistence ships with the
upcoming ChatTurnEvent.
Not yet wired into RouterFacade, InfrastructureModule, or DI. Embedding
generation source is a separate concern.
P3-1: Delete 17 empty Gradle modules (core:agents/observability/policies/stages,
infrastructure:scheduler/security/telemetry, all 7 plugins/*, all 3
interfaces/*). Zero source files, zero dependents, identical build.gradle
stubs. Remove from settings.gradle. Keep .adoc spec docs as roadmap refs.
P3-2: Fix docs drift — rename :core:orchestration to :core:kernel in
core-orchestration-submodule-spec.md, rewrite stale chat-transcript
modules-and-spec.md as proper doc.
(CLAUDE.md Router context isolation clarification is local-only,
file is gitignored.)
P3-3: Reduce detekt maxIssues from 999999 to 120 (actual current count ~107).
(CLAUDE.md detekt description updated locally; file is gitignored.)
P3-4: Remove stale locked worktree agent-a98d45277ce4b0040 (contained only
cosmetic test style changes and an unused kotlinx-datetime dep).
New core:artifacts-store interface + infrastructure/artifacts-cas
implementation: segment files + SQLite index, Blake3 hashing,
group-commit fsync via flushBefore, recovery tail-scan, manual
compactor, and oldest-first disk-cap evictor.
Inference events now carry promptArtifactId / responseArtifactId;
orchestrators put bytes before emitting. SqliteEventStore wraps
its txn in artifactStore.flushBefore so segment data is fsynced
before the event commit, making the crash window non-corrupting
(TailScanner re-indexes orphan tail records on reopen).
Compactor and evictor are mutually exclusive via maintenanceMutex.
Step 9 (cloud sync) deferred to a later epic.
See docs/reviews/2026-05-18-cas-steps-1-8-review.md for the final
review.