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cache bust
LSP + per-conversation CWD feature:
- new bundled `lsp` extension: hand-rolled JSON-RPC codec (framing/rpc), lazy
one-server-per-(serverID,root), per-cwd config resolution, on-demand `lsp` tool
- `conversation-store`: getCwd/setCwd (cwdKey); `session-orchestrator` defaults a
turn's cwd from the store
- `transport-http`: cwd + lsp status endpoints; wire types in transport-contract
- host-bin: register lsp; config wiring
Cache-warming fix (the warm read 0% on the first reheat after a message):
- warm assembled tools under a different cwd than the real turn (a reheat sends no
cwd, and the warm service had no store fallback). The skills filter rewrites the
cwd-sensitive `load_skill` description, so the tools block — the first bytes of
the prompt-cache prefix — diverged and the cache missed entirely. Warm now
resolves cwd as opts.cwd ?? conversationStore.getCwd(), mirroring handleMessage.
- capture warm sends as `provider.request` spans flagged `warm:true` (thread a
child logger into providerOpts) so warm vs real bodies are diffable (obs §3.1).
- kernel logger: span-close now merges child-bound attrs like span-open, so a
`warm:true` query finds the closed span (with usage/status), not just the open.
Tests: warm forwards a warm-flagged logger; warm falls back to stored cwd; logger
open/close attr consistency. Full suite green (873).
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nextWarmAt/lastWarmAt surface
FE CR-3 (backend-handoff-cache-warming-timer.md). The inversion: session-orchestrator's
warm() (the single chokepoint for manual /chat/warm AND the automatic timer) emits a
warmCompleted bus event; cache-warming subscribes and does ALL post-warm handling. So a
manual warm now re-arms the timer + refreshes the surface with NO transport-http change
(core can't depend on the standard cache-warming ext).
- session-orchestrator: warmCompleted event hook + emit from warm() on success
- cache-warming: warmCompleted subscriber unifies result handling (manual + automatic);
adds nextWarmAt/lastWarmAt state + a custom 'cache-warming-timer' surface field
- fix: createWarmService was missing the emit dep (deps.emit?. silently no-oped) →
wired it + made emit REQUIRED so it can't regress
Live-verified vs claude haiku: manual POST /chat/warm now logs cache-warming 'warm
complete' ~2s after the turn (not the 4-min timer) → manual warm reaches the warmer.
800 vitest + 109 bun green; tsc -b 0; biome clean.
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Per the FE's backend-handoff.md (2026-06-11) the frontend shipped the NumberField
renderer, conversation-scoped subscriptions, the Cache Warming view, and warmNow().
Removed those sections; kept only the new cache-rate fix + expectedCacheRate
(retention) metric the FE has not yet consumed.
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The Claude cache % read 100% whenever anything was cached, because the metric's
denominator (inputTokens) excluded cached tokens on Anthropic. Fixed upstream in
../claude/provider-anthropic (inputTokens = total prompt); this commit adds the
companion retention metric and exposes it:
- transport-contract: WarmResponse += expectedCacheRate
- transport-http: POST /chat/warm returns expectedCacheRate = cacheRead/(cacheRead+cacheWrite)
- cache-warming: computeExpectedCacheRate + a per-conversation 'cache retention' surface stat
- handoff: documents the fix + cache-rate vs expected-cache (cross-turn) for the FE
Live-verified vs claude haiku: real turn cache rate 61% (was inflated 100%);
warm within TTL expectedCacheRate=100%, after expiry=0%.
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NumberField render, conversationId on the surface WS protocol, the cache-warming
control surface (toggle/interval/last-%), and POST /chat/warm.
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cache-warming controls
Extend the surface framework so cache-warming exposes per-conversation controls:
- ui-contract: add NumberField (settable free-value numeric) to SurfaceField;
add optional conversationId to subscribe/unsubscribe/invoke + surface/update
- surface-registry: SurfaceContext { conversationId? } on getSpec/invoke (backward-compatible)
- transport-ws: thread conversationId; key subscriptions by (surfaceId, conversationId);
tag surface/update replies with conversationId
- cache-warming: per-conversation surface — Toggle(enabled) + Number(interval seconds,
cache-warming/set-interval) + Stat(last cache %); drop the currentConversationId closure
Global surfaces (surface-loaded-extensions) unchanged. 784 vitest + 109 bun = 893 tests;
tsc -b EXIT 0; biome clean.
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A frontend 'warm now' button (and fast tests) can trigger a warm on demand
instead of waiting for the automatic timer.
- transport-contract: WarmRequest / WarmResponse wire types
- transport-http: POST /chat/warm → cacheWarmHandle.warm(); 200 with cachePct,
409 when the conversation is generating, 400 on missing conversationId
Live-verified vs claude haiku: seed turn cacheWrite=6799 → POST /chat/warm
returns cacheReadTokens=6799 cachePct=100 (100% hit). 760 vitest + 109 bun green.
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Backend-driven warming targeting whatever provider a conversation uses (incl. the
external Claude provider-anthropic). Core engine + on/off + last-cache-% done;
interval-as-view-control pending a ui-contract NumberField (surface-system gap).
Mechanism:
- kernel: expose HostAPI.emit (typed bus event emit; counterpart of on)
- session-orchestrator: turnStarted/turnSettled event hooks (conversationId/cwd/model);
warm() service (cacheWarmHandle) reusing the real-turn assembly (byte-identical prefix,
provider-agnostic), refuses mid-turn, never persists/emits, returns Usage
- cache-warming (new ext): per-conversation timers (arm on settle, cancel on start,
in-flight invalidation), calls warm(), pct=round(clamp(cacheRead/input,0,1)*100),
persists {enabled,intervalMs} (default on/240s), registers a controls surface
- host-bin: register cache-warming; transport-http: HostAPI stub +emit (fan-out)
Honors old-code invariants. 760 vitest + 109 bun = 869 tests; tsc -b EXIT 0; biome clean.
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Skills are markdown in .skills/ dirs (~/.skills + <cwd>/.skills, cwd shadows home;
name = filename). Format: line1 summary, line2 ---, body line3+; load strips the
first two lines; malformed = no summary but still loadable.
Mechanism (first use of the context-assembly filter chain, §3.2):
- kernel: expose HostAPI.applyFilters (delegates to bus.applyFilters)
- session-orchestrator: define/export toolsFilter + ToolAssembly; apply once per turn
before runTurn (cache-stable across steps), threading cwd + conversationId
- skills (new ext): pure parse/merge/render + load_skill tool (live read, path-contained)
+ a toolsFilter filter rewriting load_skill's description + name enum per cwd
- host-bin: register skills in CORE_EXTENSIONS
- transport-http: fix HostAPI test stub for the new applyFilters method (fan-out)
734 vitest + 109 bun = 843 tests; tsc -b EXIT 0; biome clean; clean live boot.
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Four standard-tier tool extensions (one tool per extension, zero ABI change):
- tool-read-file: read_file now lists directory contents (sorted, /-suffixed subdirs)
- tool-shell: run_shell (foreground, streamed, cancellable, cwd, timeout + output cap)
- tool-edit-file: edit_file (oldString/newString/replaceAll; errors on absent/non-unique)
- tool-write-file: write_file (explicit overwrite flag)
Registered in host-bin CORE_EXTENSIONS. Live boot clean (shell capability accepted).
686 vitest + 89 bun = 775 tests; tsc -b EXIT 0; biome clean.
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Wave 1 created idx_records_bodyHash BEFORE migrateOldBodies ran, so opening a
pre-existing old-schema traces.db crashed the collector with 'no such column:
bodyHash' (crash-looped 168x in ~20s). Fresh DBs hid it (CREATE TABLE already
has bodyHash); only a real old-schema DB exposed it.
- reorder schema(): migrateOldBodies (ALTER ADD bodyHash + content-address
backfill + drop old bodies) runs BEFORE the bodyHash index.
- add 3 regression tests that seed a real old-schema DB and open it.
Live-verified: old-schema traces.db migrates on boot with 0 crashes; 318 body
refs collapse to 270 content-addressed bodies; prune cadence fires cleanly.
typecheck EXIT 0; biome clean; bun 106->109, 0 fail.
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Wave 2 (final) of the dedup/storage-growth milestone (notes §12).
- pure shouldPrune(now,lastPruneAt,intervalMs) cadence helper (injected clock).
- main.ts calls store.prune(DEFAULT_RETENTION) on a coarse cadence
(--prune-interval-ms, default 60s; host-bin-overridable), far less frequent
than a drain. Prune errors are logged and never stop the tail loop.
- confirmed body inserts flow through trace-store's content-addressed path.
- glossary: content-addressed body, trace retention, prefix fingerprint,
warm vs real.
typecheck EXIT 0; biome clean; vitest 576; bun 100->106, 0 fail.
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Wave 1 of the dedup/storage-growth milestone (notes §12).
- bodies table is now content-addressed (SHA-256 hash key); identical verbatim
bodies (cache-warming resends, any repeat) collapse to one stored row,
referenced by hash from records. Transparent to insert/read callers.
- at-rest gzip compression for bodies >1 KiB (node:zlib), decompressed on read.
- prune(policy): age-based delete + drop-oldest byte-cap eviction + orphan-body
GC. Exports RetentionPolicy/PruneSummary/DEFAULT_RETENTION (7d / 256 MiB).
typecheck EXIT 0; biome clean; vitest 576; bun 89->100, 0 fail.
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New throughput-store extension records one token-weighted sample per turn
(model, output tokens, pure generation time = Σ step genTotalMs) into a
day-bucketed KV store, and aggregates per-model tok/s = Σtokens / Σgen-seconds
over a day/week/month (server-local boundaries; week = ISO Mon–Sun).
transport-http records a sample per turn (logged) and serves
GET /metrics/throughput?period=day|week|month&date=<...>. The response is typed
as transport-contract's ThroughputResponse, so store/wire drift is a compile
error. Pure period + aggregate logic fully unit-tested.
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executeStep built the stream opts with only the logger, so providerOpts.model
(the selected model) never reached any provider — each fell back to its own
default. Carry providerOpts through StepContext into the per-step stream opts,
plus a regression test asserting the model is forwarded.
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Add loadExternalExtensions(): fault-isolated dynamic import of out-of-repo
extensions declared via DISPATCH_EXTERNAL_EXTENSIONS. main.ts assembles the
credential-store in boot() so a 'claude' credential is registered when an
external anthropic provider is loaded; config.ts surfaces the anthropic model /
credential-key settings those extensions read.
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Calculation-only courier doc for ../dispatch-web: Usage field semantics,
hitRate = cacheReadTokens/inputTokens, where to source it (usage/done events +
GET /conversations/:id/metrics, per-step/turn/cumulative), live accumulate +
done.usage reconcile, replay seeding, and the cacheWriteTokens-absent caveat.
No backend change required; UI design left to the FE.
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Load-time history repair was invisible (createConversationStore got no logger).
Now: optional logger injected (extension passes host.logger); reconcile logic
moved into pure reconcileWithReport() returning a ReconcileReport (reconcile()
stays a thin byte-identical wrapper); load() emits a reconcile.repair span
(childed with conversationId, flat attrs repairedCount/firstRepairedToolCallId)
ONLY when a real repair occurs. No contract fan-out (factory is package-internal).
typecheck EXIT 0, biome clean, 550 vitest (+4) + 89 bun.
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GET /conversations/:id/metrics verified end-to-end against flash (live stream
metrics byte-match the persisted TurnMetrics; journal turn/step spans carry
dotted usage.* incl. cacheReadTokens). Handoff doc for the user to courier the
wire/transport-contract 0.4.0 delta to ../dispatch-web (ORCHESTRATOR \xc2\xa77).
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tasks.md had accreted 635 lines of blow-by-blow milestone narration; that
history lives in git. Collapse completed milestones into a compact summary,
keep operational/open/roadmap, record the metrics milestone (incl. Pass 2).
Removes the stale 'regen FE .reference.md' practice notes that contradicted
ORCHESTRATOR \xc2\xa77 (cross-repo changes are couriered via the user; the backend
does not write the FE repo) \u2014 \xc2\xa77 stands as the single source of truth.
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spans + persisted replay)
Two-part token-data improvement:
#2 Observability spans (kernel run-turn): turn & step span-close now stamp
ALL four Usage fields — added usage.cacheReadTokens/cacheWriteTokens (were
silently dropped) and normalized usage_* -> usage.* to match the
provider.request span (consistent D9 GROUP BY). No contract change.
#3 Persisted replay metrics (conversation-store + read endpoint): new
StepMetrics/TurnMetrics wire types; conversation-store persists per-turn
metrics in a separate key space (appendMetrics/loadMetrics, turn-append
order); session-orchestrator accumulates per-step+turn metrics from the
event stream (pure metrics.ts) and persists after seal; transport-http
serves GET /conversations/:id/metrics -> ConversationMetricsResponse.
Contracts: @dispatch/wire + @dispatch/transport-contract bumped 0.3.0->0.4.0
(additive). GLOSSARY: turn metrics / step metrics.
typecheck EXIT 0, biome clean, 546 vitest + 89 bun = 635 tests.
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Expose the backend's authoritative token+timing metrics on the live AgentEvent
stream (observability-only -> now also client-facing). All additive/optional.
- [email protected]: new TurnStepCompleteEvent (type:step-complete) with per-step
ttftMs/decodeMs/genTotalMs; usage += stepId; tool-result += durationMs (exec);
done += durationMs (turn wall-clock) + usage (turn total). RunTurnInput += now?.
[email protected] (re-export bump).
- kernel-runtime: when now injected, measures + emits the above (reuses the
ttft/decode first-token detection); omits timing gracefully without a clock.
- session-orchestrator: adds now? to deps, threads into RunTurnInput; extension
activate injects () => Date.now().
- transport/cli/host-bin: untouched (verbatim pass-through; additive fields).
FE handoff: frontend-metrics-handoff.md. typecheck clean; 520 vitest + 89 bun;
biome 0/0. Replay/persistence = deferred Pass 2 (documented in tasks.md).
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Split each step's generation into a ttft span (stream start -> first text|reasoning
token) and a decode span (first token -> stream end), children of the step span.
decode = generation total - TTFT; both retrievable from the trace-store. First token
counts reasoning deltas; a step with no content token ends ttft with firstToken:false
(no misleading decode). Span-based (no clock injection), no wire/contract change.
+3 runtime tests. GLOSSARY: TTFT + decode time.
typecheck clean; 512 vitest; biome 0/0.
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tool calls
Expose a per-step grouping key so a client can render a model's batched/parallel
tool calls (those emitted in one step) as one unit, on both the live stream and
replayed history. Key = branded StepId, derived turnId#stepIndex (0-based).
- [email protected]: required stepId on Turn{Tool,ToolResult}Event; optional stepId on
Tool{Call,Result}Chunk (generation provenance on the chunk, not the StoredChunk
envelope — StoredChunk unchanged). [email protected] (re-export bump).
- kernel-runtime: mint stepId per step; stamp on tool chunks + tool events.
- conversation-store: chunk-carried stepId round-trips append/load/loadSince for
free; reconcile copies it onto synthesized (interrupted) results.
- cli: stepId added to event test fixtures (renderer unchanged).
typecheck clean; 509 vitest + 89 bun; biome 0/0. FE courier reply + reference
snapshots regenerated in ../dispatch-web.
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- add .dispatch/rules/biome-clean.md (0 warnings/0 infos; no `!`/useLiteralKeys),
wired into the every-agent scoping map + canonical invocation
- package-agent: note biome zero-tolerance; verify line clarifies 0 warnings AND 0 infos
- ORCHESTRATOR: document parallel-execution waves (2a) + agent-failure recovery
patterns (5a) + concurrency caveats
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2 handoff)
Unblock the browser frontend (Vite origin :24204 -> HTTP backend :24203):
- transport-http: wildcard CORS via hono/cors on all routes
(Access-Control-Allow-Origin: *, Allow-Methods GET/POST/OPTIONS,
Allow-Headers Content-Type) + OPTIONS preflight (204). Headers present on
the streamed POST /chat NDJSON response too. +4 app.fetch tests.
- wire / transport-contract / ui-contract: 0.0.0 -> 0.1.0 as the FE-consumable
baseline (semver convention §2.9: major = cross-repo fan-out signal).
Verified live: OPTIONS /chat -> 204 with CORS headers; GET /models -> 200 with
Access-Control-Allow-Origin: *. typecheck clean, 502 vitest + 89 bun, biome clean.
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log scope)
Make transport-http a full-fidelity extension that runs its own Bun.serve
inside activate(host) — symmetric with transport-ws. The Hono app is now built
with the extension-scoped host, so all HTTP edge logs are correctly attributed
extensionId=transport-http instead of the host-bin __host__ scope (verified
live in the journal).
- transport-http: createTransportHttpExtension() factory; activate builds the
app + Bun.serve, reads host.config httpPort (?? 24203); deactivate stops it.
- host-bin: drops the HTTP Bun.serve + createServer call; config.ts maps
BACKEND_PORT/PORT -> httpPort. host-bin now serves no transport (both
transports self-serve); boot log -> 'Dispatch booted'.
- +5 bun lifecycle tests wired into test:bun.
No contract change (composition wiring). Verified live: HTTP serves on :24203;
journal edge logs now scoped transport-http. typecheck clean, 498 vitest + 89
bun, biome clean.
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gap #2)
Both HTTP + WS transport edges now emit structured logs via the injected
logger (D7-compliant: no per-AgentEvent/chat.delta frame logging). Verified
live — the journal contains the edge records.
- transport-ws: connection open/close (debug), chat.send accepted (info),
surface-op + malformed-chat.send (warn), abort-on-close (debug). +4 bun tests.
Correctly scoped extensionId=transport-ws (owns its Bun.serve).
- transport-http: /chat accepted (info) / 400 (warn) / turn-failure (error),
GET /conversations read (info), /models + store failure (error). +4 vitest.
Known follow-up: transport-http edge logs are attributed to '__host__' (not
'transport-http') because host-bin runs the HTTP server via createServer(getHostAPI())
rather than the extension owning its Bun.serve. Logs are captured + correlated;
only the per-extension filter is mis-scoped. Tracked in tasks.md.
typecheck clean, 498 vitest + 84 bun, biome clean.
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The .dispatch/rules/extension-logging.md rule was '(pending)' in ORCHESTRATOR
§3 for the entire life of the observability substrate, so every extension
summon was built without logging/self-redaction guidance — leaving most
extensions silent (a coverage audit found conversation-store, transport-http,
credential-store, tool-read-file, storage-sqlite, auth-apikey, surface-* all
with zero logger refs).
- Author .dispatch/rules/extension-logging.md (tribal-knowledge only, P6/P7):
self-redact your own secrets in your own code (no shared helper; §6 tiers),
use injected host.logger/ctx.log, flat scalar attrs, no token-delta logging,
one-way logs, edge verbatim capture.
- Wire it into ORCHESTRATOR §3 as 'every extension' — include on EVERY
extension summon; remove the (pending) note.
- Record the coverage audit + remaining instrumentation debt (#1 reconcile.repair
span in conversation-store, #2 transport-edge logging) in tasks.md.
Future extensions now get logging by construction.
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Close a gap found live: neither transport emitted turn-start/done/turn-sealed
(the wire defined them; nothing fired them). turn-sealed is the FE's
cache-commit signal (frontend-design §6.3); done ends the stream.
- kernel-runtime: runTurn emits turn-start first and done (with finishReason)
last, on every exit path (stop/tool-calls/max-steps/error/aborted).
- session-orchestrator: emits turn-sealed after conversationStore.append
succeeds (the kernel touches no DB, so the post-persist seal is the
orchestrator's). Not emitted if append throws.
No contract change (all three wire types already existed). Verified live: HTTP
/chat and WS chat both stream turn-start … done turn-sealed.
typecheck clean, 494 vitest + 80 bun, biome clean.
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Add chat WS ops (chat.send / chat.delta / chat.error) + unified
WsClientMessage/WsServerMessage unions to @dispatch/transport-contract
(imports ui-contract; surface protocol unchanged — additive non-colliding
type variants, no channel wrapper). transport-ws drives
sessionOrchestrator.handleMessage, streaming each AgentEvent as chat.delta
over the same connection that carries surface ops; per-connection
AbortController cancels in-flight turns on socket close; error-isolated.
Verified live: one WS connection delivered the surface catalog AND a real
flash chat turn (chat.delta stream, reply 'Hello my friend').
Completes the FE Slice 2 backend prereqs. typecheck clean, 485 vitest + 80 bun,
biome clean.
Discovered (separate, pre-existing): runtime does not emit
turn-start/done/turn-sealed on either transport — needed for FE cache-commit;
tracked in tasks.md.
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endpoint
Incremental rehydration endpoint for long-lived clients. Returns
ConversationHistoryResponse { chunks: StoredChunk[], latestSeq } — the RAW,
append-order, seq-filtered slice from conversation-store.loadSince, NOT
reconciled (reconcile conflicts with the per-chunk seq cursor, so it stays on
the turn path; the read path is a pure sync primitive).
- transport-contract: add ConversationHistoryResponse + StoredChunk re-export.
- transport-http: GET /conversations/:id route reaching the log directly via
conversationStoreHandle (dependsOn conversation-store); pure parseSinceSeq
(absent->0, invalid->400).
- build wiring: conversation-store dep + project ref.
FE Slice 2 backend prereq (read-side). typecheck clean, 481 vitest, biome clean.
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Add StoredChunk { seq, role, chunk } to @dispatch/wire (re-exported via the
kernel contract shims). Keeps Chunk pure (provider-facing, no cursor); the
sync cursor lives only on the envelope.
conversation-store: rekey conv:<id>:msg:<seq> -> conv:<id>:chunk:<seq>;
append explodes messages into role-tagged seq'd chunks (1-based, gap-free,
monotonic) with internal boundary metadata so load() round-trips ChatMessage[]
losslessly and still reconciles; new loadSince(id, sinceSeq?) raw sync stream.
session-orchestrator test fake conforms to the widened interface.
FE Slice 2 backend prereq (per-chunk seq). typecheck clean, 469 vitest, biome clean.
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split (B2)
FE slice 1 — backend-declared, frontend-agnostic surface system (verified live): new types-only @dispatch/ui-contract (SurfaceSpec / field kinds / region / ActionRef / catalog), surface-registry (typed service handle), transport-ws (Bun WS :24205, path-agnostic upgrade), surface-loaded-extensions (first real surface); kernel HostAPI.getExtensions; host-bin wiring; bin/up. Harness: retire AGENTS 'backend only', ORCHESTRATOR §3/§7/§8, frontend-design.md locked.
B2 — wire-types split (chat-slice prerequisite): new types-only @dispatch/wire single-sources the wire ABI (AgentEvent + 11 variants; conversation model Chunk/ChatMessage/Role/TurnId/StepId + 6 chunk variants; Usage) with zero @dispatch/* deps. @dispatch/kernel re-exports via shims so its public surface is byte-identical (zero consumer blast radius). transport-contract re-exports AgentEvent from @dispatch/wire and drops its @dispatch/kernel dependency, so HTTP clients (the web frontend) consume the wire without the kernel runtime.
tsc -b + biome clean; 460 vitest + 77 bun pass.
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briefs + all notes/ with descriptions
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- .dispatch/package-agent.md: base brief for every package owner (dir-scoped ownership,
visibility, engineering standard, isolated verify, report).
- .dispatch/extension-agent.md: thin supplement (manifest, activate/host, tighter quarantine);
references the package brief inline (injected), never instructs the agent to read a file.
- ORCHESTRATOR.md: §2 summon now concatenates briefs + scoped rules + TASK; §3 slimmed so each
prompts/<unit>.md is JUST the TASK block.
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Superseded by the package/extension owner-agent briefs iterated with the user.
Reverts only the 3 markdown files (.dispatch/extension-agent.md, .dispatch/package-agent.md,
ORCHESTRATOR.md); no code was involved.
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separate message
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+ extension-agent.md
Rework ORCHESTRATOR §2 (summon) and §3 (TASK block): prompts are now assembled from
standardized briefs (.dispatch/package-agent.md + .dispatch/extension-agent.md for extensions)
+ cat'd scoped .dispatch/rules/* + a TASK block the orchestrator fills per summon. The old
per-unit prompts/<unit>.md workflow is retired. The agent never reads files — everything is
inlined by the orchestrator.
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--text/--file/--cwd/--conversation)
HTTP client of transport-contract; pure-core arg/render/ndjson + injected fetch/fs shell.
Docs: GLOSSARY (credential/key/model name/model catalog), tasks.md milestone, ORCHESTRATOR geography.
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per-turn cwd through orchestrator/transport/host-bin
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transport-contract wire package
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User-set ordering: (1) CLI MVP (line-oriented, NOT a TUI; may have basic selectors; same mirrored-backend methodology with a careful design pass first — seed at notes/cli-design.md), (2) web frontend (Svelte + DaisyUI, notes/frontend-design.md), (3) dedup/storage growth. CLI design seed frames the same open questions as the web FE (pure-core/shell split, unit boundaries, transport, testing) adapted to a terminal client.
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