feat(schedule): add fixed-rate reminders
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# Agent Note: Durable Session-local reminders
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# Agent Note: Durable Session-local Web reminders
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Status: implemented
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@@ -6,70 +6,117 @@ English | [中文](2026-08-05-durable-web-schedule.zh.md)
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## Problem
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A reminder created inside a conversation must remain attributable to that exact Session and survive a process restart. A process-local timer or inbox item cannot provide that durability, while a global scheduler or private database introduces a second identity, persistence, and lifecycle system.
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A reminder created inside a conversation needs to survive a process restart and remain attributable to that exact Session. A process-local timer or model inbox item cannot provide that durability, while a global scheduler or private database would introduce a second identity, persistence, and lifecycle system. The user also needs a visible receipt even when the best-effort model turn later fails, without seeing a reminder whose dispatch never reached storage.
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Busy Agents, long waits, wall-clock changes, cold Sessions, forks, persistence failures, absolute calendar input, and teardown make a simple timeout insufficient. The design must distinguish a durable record from its disposable live wait, keep a fork from inheriting its parent's active reminders, and avoid spreading Schedule-specific presentation or time-zone state across unrelated components.
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Busy Agents, long waits, wall-clock changes, cold Sessions, forks, persistence failures, and browser history races make a simple timeout insufficient. The design must distinguish a durable record from its disposable live wait, keep a fork from inheriting its parent's active reminders, and merge a presentation sidecar that can arrive after the underlying event.
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## Decision
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The [`examples/web-schedule`](../../../../examples/web-schedule/README.md) overlay explicitly loads `@deepseek-ai/dsh-time-context` and `@deepseek-ai/dsh-tool-schedule`; the default Web tree remains unchanged. Schedule observes only root Agents published after the plugin loads and installs its three tools plus one disposable owner in that Agent scope. Cold history reads, already-published roots, child Agents, and other hosts do not activate it.
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The [`examples/web-schedule`](../../../../examples/web-schedule/README.md) overlay explicitly loads `@deepseek-ai/dsh-time-context`, `@deepseek-ai/dsh-tool-schedule`, and the separate `@deepseek-ai/dsh-client-ui-schedule` renderer. The default Web tree remains unchanged. Schedule observes only root Agents published after the plugin loads and installs its three tools plus one disposable owner in that Agent scope. Cold history reads, already-published roots, child Agents, and other hosts do not activate it.
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The user-visible boundary is `session-local`: the original Session runs an on-time reminder only while live, does no external notification while cold, and processes an overdue reminder after it becomes live again. Due work waits until the Agent is fully idle, then enters the ordinary next-turn queue through `followup()`; it never steers the current turn and has no independent Web receipt ([conversational delivery](../simplification/2026-08-09-conversational-schedule-delivery.md)).
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The user-visible boundary is `session-local`: the original Session runs an on-time reminder only while it is live, does no external notification while cold, and processes an overdue reminder after that Session becomes live again.
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| Scenario | Durable fact | Live behavior | User-visible result |
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| --- | --- | --- | --- |
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| Create and manage | `schedule/change` create/delete in the original Session | Agent-scoped tools checkpoint before reads and after mutations | Stable id, UTC target, state, and `session-local` disclosure |
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| Due while busy | Active create remains in the fold | Owner waits for idle maintenance, queues one follow-up, then appends dispatch | A later ordinary conversation turn |
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| Process stopped or Session cold | Active create remains persisted | No timer or background scan; resume rebuilds the owner | Future target waits; overdue target is attempted |
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| Fork | Parent events remain in the inherited prefix | Child fold starts at `seedLength` | Parent work does not become active in the child |
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| Create and manage | `schedule/change` create/delete events in the original Session | Agent-scoped tools checkpoint before reading and after mutations | Stable id, UTC target, `scheduled`/`overdue`, and `session-local` disclosure |
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| Due while busy | Active create remains in the fold | Owner waits for `whenIdle()`, claims idle maintenance, queues one followup, then appends dispatch | One replayable reminder receipt; model failure does not retract it |
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| Several recurring reminders are overdue | Each active record retains its anchor-aligned next target; dispatch history retains the last batch time | One maintenance claim selects every latest due occurrence after the shared 300-second gate | One model batch, with an independent receipt and next target for each reminder |
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| Process stopped or Session cold | Active create remains in persistence | No timer or background scan exists; resume rebuilds the owner | Future target waits again; overdue target is attempted once |
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| Fork | Parent events remain in the inherited prefix | Child fold starts at `seedLength` | Parent receipt may appear in history, but no parent reminder becomes active child work |
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### Session-log authority and tools
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### Session log authority and tools
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The version-1 `schedule/change` stream is the only durable Schedule authority. A create record owns a Session-local, non-reused branded id, the trimmed prompt, its rule discriminator, and UTC target. Delete and one-shot dispatch are terminal transitions. The strict decoder and pure fold reject unknown versions, extra fields, reused ids, and transitions against inactive records. A normal Session folds its complete stream; a fork folds only events at or after `SessionHeader.seedLength`.
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The version-1 `schedule/change` stream is the only durable Schedule authority. A create record owns a Session-local, non-reused branded id, the trimmed user prompt, the rule, and its UTC target. Delete terminates any record; an id-only dispatch terminates a one-shot; an Every dispatch stores the shared batch `acceptedAt`, advances the record, and terminates it only when no four-digit-year next target remains. The strict decoder and pure fold reject unknown versions, extra fields, reused ids, mismatched dispatch shapes, batches less than 300 seconds apart, and transitions against inactive records. A normal Session folds its complete stream; a fork folds only events at or after `SessionHeader.seedLength`.
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The current rule union accepts a non-empty prompt and exactly one selector. `after_seconds` is a positive safe-integer delay whose record is `{ id, kind: 'after', prompt, afterSeconds, scheduledAt }`. `at` is either strict RFC 3339 with `Z` or a numeric offset, or structured `{ date, time, time_zone }` with an explicit zone; its record is `{ id, kind: 'at', prompt, scheduledAt }`. Dispatch stores only the id because the active record fixes the occurrence. Tool values derive `scheduled` or `overdue` and include `deliveryMode: 'session-local'`.
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The current rule union accepts a non-empty prompt and exactly one selector. `after_seconds` is a positive safe-integer delay whose record is `{ id, kind: 'after', prompt, afterSeconds, scheduledAt }`. `at` is either a strict RFC 3339 date-time with `Z` or a numeric offset, or a structured `{ date, time, time_zone? }` local value; its record is `{ id, kind: 'at', prompt, scheduledAt }`. Both one-shot dispatches store only the id because the active record already fixes the occurrence. `every_seconds` is a safe integer of at least 300; its `{ id, kind: 'every', prompt, everySeconds, scheduledAt }` record needs no stored anchor because each accepted target remains on the initial fixed-rate sequence. Its dispatch stores only `id + acceptedAt`; the fold derives the latest due occurrence and first strictly future next target. `cron` remains rejected rather than hidden in unused fields. Tool values derive `scheduled` or `overdue`, always include `deliveryMode: 'session-local'`, and expose `deliveryNotBefore` only while an overdue recurring record is gate-blocked.
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An Agent-scoped FIFO serializes management transactions and the live owner's due transaction from preflight through post-append barriers. Every tool read first awaits `ctx.sessions.flush(session)`. Create rejects input-shape failures before the FIFO when possible, preflights, allocates an id, appends, and checkpoints again. Delete validates its id before the FIFO, preflights before deciding whether it is active, and checkpoints again only after append. List and not-found delete never answer from an unconfirmed live suffix. Failed barriers return `persistence_uncertain` rather than guessing whether an eager write committed.
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An Agent-scoped FIFO serializes each accepted management transaction and the live owner's due transaction from preflight through any post-append barrier. Every tool operation that reads or decides from the fold first awaits `ctx.sessions.flush(session)`. Create may reject input-shape failures before entering the FIFO; after a successful preflight it allocates an id, appends create, and waits for a second barrier. Delete validates its id before the FIFO, then preflights before deciding whether the id is active and waits for a second barrier only when it appends. List and unknown or finished delete never answer from an unconfirmed live suffix or observe a dispatch before its own barrier. A failed barrier returns `persistence_uncertain` rather than guessing whether an eager write committed.
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Every successful management preflight asks the live owner to recompute. A later list can therefore confirm a retained create after a previous post-append rejection and arm it without a private persistence-retry timer.
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Every successful management preflight also asks the live owner to recompute. This closes the recovery path where create appended successfully but its post-append barrier rejected: a later list can confirm the coordinator's retained batch, return the active record, and arm its timer without a Schedule-specific retry loop.
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### Explicit absolute-time boundary
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### Session and request time-zone ownership
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Natural-language interpretation and Schedule parsing are deliberately separate ([time-zone simplification](../simplification/2026-08-09-explicit-schedule-time-zone.md)). Each browser prompt carries its Host-validated IANA zone only on that durable user message. Time-context tells the model to assume that zone for otherwise-unqualified dates and times. Schedule neither imports that plugin nor stores a Session zone: the model must turn its interpretation into an offset-bearing RFC 3339 value or a local object with explicit `time_zone`.
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The official Web create path requires the browser's IANA zone, validates and canonicalizes it at the Host boundary, and stores it once as immutable `SessionHeader.timeZone`. Resume preserves that value, fork copies it, and another create for the same id and cwd conflicts when its canonical zone differs. Session core keeps the field optional so pre-zone Sessions remain readable but explicitly `unavailable`; a legacy header is never backfilled from a later browser request. JSONL preserves the optional header, while SQLite schema v14 adds nullable `time_zone` and upgrades an owned v13 database atomically without guessing values for existing rows.
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Schedule validates exact calendar shapes, offsets, zone names, and a strictly future four-digit-year instant. A local time inside a daylight-saving gap is rejected; an overlap chooses its first, earlier instant. A successful create stores only canonical UTC `scheduledAt`, not the original offset, local fields, or zone.
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That exact v13-to-v14 transaction is a narrow planned exception to the pre-release default of rejecting old storage formats: valid headerless Session databases can exist before time-zone metadata is introduced. It accepts only the owned v13 layout, rejects older, newer, or spoofed schemas without mutation, and does not establish a general migration framework.
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Every Web prompt samples its own `clientTimeZone`, which the Host validates before Agent entry and binds to that immutable `user-rpc` message source. This is request provenance, not a mutable property of the connection or Session, so concurrent tabs cannot overwrite one another and queue, steering, edit, retry, and persisted history retain the originating zone.
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Time-context delegates through `agent/pre-step`, derives the final non-empty entered batch's zones from the immutable Session header and message-bound browser sources, and appends one model-visible reading to that batch. Its source remains the simple plugin marker; it does not copy those facts into another durable authority. Steering inserted after AgentLoop claims the current batch keeps ordinary next-step ownership and receives fresh context when that step enters. Rejection, an empty decision, cancellation, or failure before `step/start` records no reading, and this feature adds no inbox or AgentLoop lifecycle state.
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Schedule requires a time-context marker in the current open turn, then derives request zones directly from that turn's original `user-rpc` sources. An implicit local `at` is accepted only when that derivation has one client zone equal to the Session zone. A headerless Session, missing or mixed client provenance, or a client/Session mismatch returns `timezone_confirmation_required` with the known zones. An explicit `time_zone` bypasses that ambiguity check but still passes the same IANA validation.
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### Absolute-time normalization
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Schedule, rather than the model or process locale, owns deterministic calendar normalization. Explicit-offset input must match the narrow supported profile and identify a strictly future four-digit-year instant. Structured local input validates the calendar and selected zone, rejects a daylight-saving gap, and chooses the first, earlier instant in an overlap. A successful create stores only UTC `scheduledAt`; the original offset, local fields, and interpreting zone are not a second durable representation. Natural-language interpretation remains the model's job, and time-context appears before the tool call rather than relying on a result echo.
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### Persistence checkpoint and initialization recovery
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`SessionStore.flush()` awaits every scoped listener and treats literal `true` as an explicit durability acknowledgement. An acknowledged call publishes a contained `session/flushed(session, throughSeq)` observation whose exclusive boundary was captured at call entry; append notification itself is not durability evidence. Observe-only listeners return void, an empty or observe-only checkpoint returns `false`, and any listener rejection prevents the success observation after all listeners settle.
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The persistence coordinator supplies that acknowledgement only after its write path is quiescent. Its live controller retains the initial `seedEnd` scalar rather than a seed copy. If the first initialization rejects, a later flush rebuilds that immutable prefix from the append-only Session, reads the backend's actual cursor, and appends only a missing suffix. This covers failures before storage changed and failures reported after a commit, so one transient error neither permanently poisons the Session nor duplicates its prefix.
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### Live delivery lifecycle
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The Agent-scoped owner derives its earliest target from the durable fold. Long targets use bounded timer segments, and every wake reads the wall clock again, so a rollback cannot fire early and a forward jump becomes overdue. If a turn or maintenance task owns the Agent, `runMaintenance()` rejects the claim; the record stays active and one `whenIdle()` wait triggers another attempt. A rejected preflight or contained framing/enqueue failure also leaves it active without starting a private retry timer.
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The Agent-scoped owner derives its active targets and latest recurring batch from the durable fold. Long targets use bounded timer segments, and every wake reads the wall clock again, so a rollback cannot fire early and a forward jump becomes overdue. A fixed-rate record treats its current `scheduledAt` as the earliest unaccepted point on the original sequence; integer division selects the latest due point directly, without replaying a missed backlog or shifting the anchor to delivery time. If a turn or another maintenance task already owns the Agent, `runMaintenance()` rejects the claim; the record stays active and one `whenIdle()` wait triggers a later retry. A rejected persistence preflight or contained framing/synchronous-enqueue failure also leaves the record active, but no private retry timer runs; later Agent activity reaching idle or a successful Schedule management preflight asks the owner to try again.
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The accepted path clears pending persistence and claims the true idle phase. It refolds the exact Session suffix, samples the decision clock, constructs fixed reminder framing with JSON-escaped id and prompt, synchronously queues one `followup()`, and appends id-only dispatch before releasing maintenance. Waking input remains parked until release, so the message cannot be claimed before dispatch enters the log; afterward the owner checkpoints dispatch.
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The accepted path first clears pending persistence and claims the true idle phase through `runMaintenance()`. Inside that task it refolds the exact Session suffix so a direct management mutation that won the claim race cannot be followed by a stale dispatch, then samples the decision clock once. A due one-shot bypasses the recurring gate and keeps the single fixed frame plus id-only dispatch. Otherwise the 300-second gate admits every overdue Every record in target/create order: the owner derives each latest occurrence, constructs the complete JSON batch before enqueue, synchronously queues one `followup()`, and appends one independent `{ id, acceptedAt }` dispatch per record. The gate's spacing directly limits every half-open 24-hour window to at most 288 recurring model turns; no second counter or quota exists. Waking input remains parked until maintenance settles, so the driver cannot claim the message before dispatch enters the log; only after the task releases the phase does the owner wait for the shared dispatch barrier. A framing or synchronous enqueue failure is contained and appends no dispatch. An append failure faults that owner because the message may already be queued. A later prompt-admission, request-checkpoint, or model failure cannot retract a dispatch.
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Dispatch records queue admission, not model completion or user receipt. Framing or synchronous enqueue failure appends no dispatch. An append failure faults that owner because the message may already be queued. Agent or plugin disposal cancels timers, stops new work, unwinds tool registrations, and awaits in-flight work without deleting durable records. A crash after follow-up admission but before durable dispatch can repeat the reminder after recovery; the design makes no exactly-once promise.
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Agent or plugin disposal cancels timers, stops new work, unwinds the three tool registrations, and waits for in-flight preflights or idle waits. It never deletes durable records during teardown. The narrow crash interval after synchronous followup admission and before durable dispatch may repeat the reminder after recovery; the design prefers a visible duplicate over silent loss and makes no model-success, user-read, external-effect, or exactly-once promise.
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### Commit-aware Web receipt
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The Schedule package owns `scheduleReminderPresentation()`, which derives `{ scheduleId, prompt, occurrenceAt }` from create plus dispatch; the client renderer adds the fixed `session-local` label. The current fork's `seedLength` is a hard boundary for child-owned dispatches. An inherited dispatch instead pairs with its nearest preceding same-id create because `session/end-seed` also marks replay or resume construction, not only fork ownership. This keeps resumed ancestor receipts renderable, preserves nested-generation id reuse, and never changes live ownership.
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The Host continues to send every raw event on append. It keeps one monotonic watermark per exact live `Session` in a `WeakMap`; only `session/flushed` advancement makes it redeliver newly covered dispatch events with the generic `{ for: 'event', view }` sidecar. The durable `schedule/change` type selects the client renderer. Taking the maximum contains reversed concurrent flush completion, and exact object identity prevents a reused Session id from inheriting another lifecycle's cursor.
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Attached history independently inspects persistence and adds views only to a stored event prefix whose header identity and every event match the live Session. Persistence canonically writes absent top-level `delegationDepth` as zero, so those two forms are identity-equivalent; cwd, lineage, origin, timestamps, version, id, and every event still match exactly. Missing, failed, divergent, or longer inspection withholds the view while returning raw history. Detached history is already a persisted prefix. A parent dispatch copied into a fork seed therefore appears in child history only after child storage proves that prefix.
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The browser Session accepts a repeated seq only when the durable event is deeply identical, then upgrades the sidecar immediately without appending another event. Tail loading and true gap repair retain uncovered events in the existing `liveBuffer`; an accepted repair snapshot starts another pull when it advanced the tail but left a later buffered gap, while an identity conflict triggers a full resync. Ordinary older-page pagination keeps receiving live tail events in the current arrays, while a sidecar below the current window stays with the in-flight page and attaches only when that page returns the identical event. Reconnect generations prevent stale page or repair results and `finally` blocks from touching the rebuilt window. `TranscriptAdapter` creates a generic `PresentedEventNode` keyed by the durable event type. `ui-conversation` dispatches it through `conversation.chat.eventview` and retains an expandable JSON fallback, while `ui-schedule` owns the bilingual `schedule/change` reminder row.
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```text
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schedule_create → Session create event → persistence
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↓ live owner
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due → admission → followup → dispatch → flush(true) → session/flushed
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↓
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Host late event sidecar
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↓
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client same-seq upgrade → event-keyed UI receipt
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```
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## Alternatives considered
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**Use `ctx.tasks`.** Tasks own process-local work, outcomes, and notifications rather than Session-log state and conversation follow-ups.
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**Use `ctx.tasks`.** Tasks own process-local work, terminal outcomes, collection, and notifications rather than Session-log state and replayable conversation receipts. Reusing them would make the wrong lifecycle authoritative.
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**Store reminders in a private database or global scheduler.** This could run cold Sessions but requires a second identity map, startup scan, ownership lease, crash protocol, and notification policy.
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**Store reminders in a private SQLite table or global scheduler.** This could run cold Sessions, but requires a second Session identity map, startup scan, ownership lease, crash protocol, and notification policy. The accepted scope deliberately runs only while the original Session is live.
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**Persist a Session time zone and infer local `at`.** This spreads one interpretive default through Session core, Host create/fork, persistence formats, clients, and mismatch recovery. Request-local model guidance plus an explicit tool boundary deletes that coupling.
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**Claim dispatch before `followup()` or add exactly-once fencing.** A claim-first record can silently lose the user-visible reminder when enqueue fails. Cross-process exactly-once requires a lease, outbox, acknowledgement, and downstream idempotency boundary that Session-local best-effort model work does not provide.
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**Keep an independent durable Web receipt.** Dispatch is an internal queue fact, not the user's reminder. Rendering the ordinary assistant answer avoids a second delivery meaning and removes Schedule code from Host and client layers.
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**Treat the model message as the receipt.** The queued inbox item is process-local and may fail before a durable user message exists. A dispatch-derived Web receipt remains visible and replayable independently of model success.
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**Claim dispatch before `followup()` or add exactly-once fencing.** Claim-first can silently lose a reminder when enqueue fails. Cross-process exactly-once needs a lease, outbox, acknowledgement, and downstream idempotency boundary outside this Session-local scope.
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**Attach the reminder view on append.** `session/event` precedes the durability result, so this would display a ghost receipt after a rejected flush. The success watermark makes presentation follow the commit point.
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**Adopt existing roots or register global tools.** Late adoption makes plugin load order activate unseen timers and exposes tools outside the supported root composition.
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**Add a Schedule-specific wire frame, client cache, or management page.** The generic event sidecar, existing Session window buffer, keyed slot, and model-facing tools already carry the required result. A parallel transport or state store would duplicate identity and replay logic.
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**Adopt existing roots or register global tools.** Late adoption makes plugin load order change which unseen timers begin running and exposes tools outside the supported root-Agent composition. Future-root, Agent-scoped installation gives one clear lifecycle.
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**Use the process zone or the most recently connected browser as the default.** The process zone is deployment state, while a connection-level value lets one tab or a later trip silently reinterpret another request. An immutable Session default plus message-bound client provenance makes disagreement visible without creating shared mutable zone state.
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**Parse arbitrary natural-language dates inside Schedule or persist the local input.** A second language parser would compete with the model, and retaining local text or zone beside the resolved instant would create two durable interpretations of one one-shot target. The model emits a narrow structure after seeing time-context; Schedule validates it and stores one UTC fact.
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The design does not recognize or migrate any unmerged Schedule implementation or private storage format. No fixed Session id, claim-before-send record, startup miss, or private database is a compatibility input.
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## Verification
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Package tests pin strict replay, transitions, fork suffixes, id reuse, offset and local-calendar profiles, IANA validation, daylight-saving gaps and overlaps, time bounds, timer segmentation, wall-clock movement, overdue admission, fixed framing, enqueue and append failures, barrier recovery, registration rollback, and quiescent disposal at per-file 100% coverage. A production JSONL restart test proves one overdue reminder dispatches through the real Agent lifecycle and does not redispatch after another restart. Host/client tests pin browser-zone sampling and prompt-bound validation. The keyless assembled Web scenario drives a real browser prompt through time-context, a model `schedule_create` call with explicit `time_zone`, durable dispatch, and an ordinary assistant follow-up with no receipt UI.
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Package tests pin strict decoding, transitions, fork suffixes, id reuse, offset and local-calendar profiles, IANA validation, gap rejection, overlap-first selection, mismatch confirmation, time bounds, fixed-rate anchor arithmetic, latest-only catch-up, 300-second batch spacing, full stable batches, one-shot bypass, bounded waits, wall-clock movement, overdue admission, management/dispatch race refolding, fixed framing, enqueue and append failures, barrier recovery, registration rollback, and quiescent disposal at 100% per-file coverage. Persistence tests cover new, fork, and resumed initialization failures against the actual durable cursor, optional header round-trips, a real SQLite v13-to-v14 migration, and a production JSONL restart. The assembled Loader/Web restart lane proves pending recovery, fork isolation, one durable dispatch, cold-history rendering without Agent activation, and no redelivery after another restart. Host/client tests cover zone identity across live, stored, and concurrent-create paths; per-operation prompt provenance; commit gating; reversed watermarks; semantic header identity; per-event prefix matching; same-seq upgrades; every window merge exit; and reconnect generations.
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Time-context tests cover final pre-step messages, current-turn unique/mixed/missing zone derivation, post-claim steering entering the next step, cancellation, empty suppression, retry, exact snapshot-source validation, and in-flight disposal. Schedule tests independently derive the same request zones from durable `user-rpc` sources, reuse a same-turn marker across an empty continuation, and fail closed without an open-turn marker. The opt-in Loader composition boots the source and built packages. Keyless real-browser scenarios execute `schedule_create` through the complete tool pipeline for the existing short `after` case and one absolute-time case, observe the identity-matched persisted prefix, and render the durable reminder card from attached history. The deliberately absent model adapter closes the turn with an error after dispatch, proving that model failure does not remove the receipt.
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## Consequences
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- Reminder state survives restart through ordinary Session persistence without a new database or public service.
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- Cold Sessions do no work and send no external notification; reopening one may deliver overdue work.
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- Absolute input is deterministic without persistent Session-zone state or a dependency from Schedule to time-context.
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- Users see normal conversation output; dispatch never overstates model success or acknowledgement.
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- Each live root adds only fold-derived timers, an optional idle wait, and one in-flight operation.
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- Recurrence requires explicit transition, catch-up, and model-budget semantics rather than dormant fields; cron remains outside this product boundary.
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- Reminder state survives process restart and replays through ordinary Session persistence without a new database or public service.
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- A cold Session does no work and sends no external notification; reopening it may deliver an overdue reminder, and every tool/card says `session-local`.
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- Each live root adds only fold-derived timers, an optional idle wait, and one in-flight operation. Long waits and plugin unload do not create a second durable state machine.
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- A Session's default zone is immutable and may remain unavailable for older history. Travel or concurrent tabs can therefore require an explicit zone instead of silently changing the meaning of “tomorrow at 09:00.”
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- The generic commit-aware event-view path is reusable by other durable events, but it adds event-identity checks and generation-aware merge behavior to the client Session window.
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- The strict protocol covers delayed, absolute, and fixed-rate targets. Calendar recurrence still requires an explicit grammar, IANA/DST evaluator, and history-stable occurrence fields rather than dormant cron behavior.
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@@ -1,4 +1,4 @@
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# Agent Note: 持久、仅限 Session 内的提醒
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# Agent Note: 持久、仅限 Session 内的 Web 提醒
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Status: implemented
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@@ -6,70 +6,117 @@ Status: implemented
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## 问题
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在对话中创建的提醒必须始终归属于确切的那个 Session,并且跨进程重启存活。进程本地 timer 或 inbox 项无法提供这种持久性,而全局 scheduler 或私有数据库又会引入第二套身份、持久化和生命周期系统。
|
||||
在对话中创建的提醒需要跨进程重启存活,并始终归属于确切的原 Session。进程内 timer 或模型 inbox 项无法提供这种持久性,而全局 scheduler 或私有数据库又会引入第二套身份、持久化和生命周期系统。即使后续 best-effort 模型轮次失败,用户仍需要看到回执;但 dispatch 尚未到达存储的提醒绝不能提前显示。
|
||||
|
||||
繁忙的 Agent(智能体)、长等待、墙钟变化、cold Session、fork、持久化失败、绝对日历输入和资源释放,使简单 timeout 无法满足要求。设计必须区分持久记录与可丢弃的 live wait,阻止 fork 继承父 Session 的活动提醒,并避免把 Schedule 专属的呈现或时区状态扩散到无关组件。
|
||||
繁忙的 Agent、长等待、墙钟变化、cold Session、fork、持久化失败和浏览器 history 竞态,使简单 timeout 无法满足要求。设计必须区分持久 record 与可丢弃的 live wait,阻止 fork 继承父 Session 的活动提醒,并合并可能晚于原始 event 到达的 presentation sidecar。
|
||||
|
||||
## 决策
|
||||
|
||||
[`examples/web-schedule`](../../../../examples/web-schedule/README.md) overlay 显式加载 `@deepseek-ai/dsh-time-context` 与 `@deepseek-ai/dsh-tool-schedule`;默认 Web 配置树保持不变。Schedule 只观察插件加载后发布的根 Agent,并在该 Agent scope 中安装三个工具和一个可丢弃 owner。cold history 读取、已发布的根、child Agent 与其他 host 都不会激活它。
|
||||
[`examples/web-schedule`](../../../../examples/web-schedule/README.md) overlay 显式加载 `@deepseek-ai/dsh-time-context`、`@deepseek-ai/dsh-tool-schedule` 与独立 renderer `@deepseek-ai/dsh-client-ui-schedule`。默认 Web 配置树保持不变。Schedule 只观察插件加载后发布的根 Agent,并在该 Agent scope 中安装三个工具和一个可丢弃 owner。cold history 读取、已发布的根、child Agent 与其他宿主都不会激活它。
|
||||
|
||||
用户可见边界是 `session-local`:原 Session 只有在 live 时才会准时运行提醒,cold 期间不发送任何外部通知;该 Session 再次 live 后才会处理 overdue 提醒。到期工作会等待 Agent 完全 idle,再通过 `followup()` 进入普通的下一轮队列;它绝不会中途引导当前轮次,也没有独立 Web 回执([对话式交付](../simplification/2026-08-09-conversational-schedule-delivery.md))。
|
||||
用户可见边界固定为 `session-local`:原 Session 只有在 live 时才会准点运行提醒,cold 期间不发送任何外部通知;该 Session 再次 live 后才会处理 overdue 提醒。
|
||||
|
||||
| 场景 | 持久事实 | live 行为 | 用户可见结果 |
|
||||
| --- | --- | --- | --- |
|
||||
| 创建与管理 | 原 Session 中的 `schedule/change` create/delete | Agent-scoped 工具在读取前、变更后执行 checkpoint | 稳定 id、UTC 目标、状态与 `session-local` 说明 |
|
||||
| 到期时繁忙 | 活动 create 仍在 fold 中 | owner 等待 idle maintenance,排入一个 follow-up,再追加 dispatch | 后续一个普通对话轮次 |
|
||||
| 进程停止或 Session cold | 活动 create 仍在 persistence 中 | 不存在 timer 或后台扫描;resume 重建 owner | 未来目标继续等待;overdue 目标会被尝试 |
|
||||
| fork | 父 event 留在继承前缀 | child fold 从 `seedLength` 开始 | 父工作不会在 child 中变为活动状态 |
|
||||
| 创建与管理 | 原 Session 中的 `schedule/change` create/delete event | Agent-scoped 工具在读取前、变更后执行 checkpoint | 稳定 id、UTC 目标、`scheduled`/`overdue` 与 `session-local` 说明 |
|
||||
| 到期时繁忙 | 活动 create 仍在 fold 中 | owner 等待 `whenIdle()`、认领 idle maintenance、排入一次 followup,再追加 dispatch | 一条可回放提醒回执;模型失败不会撤回它 |
|
||||
| 多条周期性提醒已逾期 | 每条活动 record 保留与锚点对齐的下一个目标;dispatch history 保留最近一次 batch 的时间 | 一次 maintenance 认领会在共享的 300 秒门控开放后选出每条记录最近一次到期的 occurrence | 一个模型 batch,每条提醒各有独立回执和下一个目标 |
|
||||
| 进程停止或 Session cold | 活动 create 仍在 persistence 中 | 不存在 timer 或后台扫描;resume 重建 owner | 未来目标继续等待;overdue 目标尝试一次 |
|
||||
| fork | 父 event 留在继承前缀 | child fold 从 `seedLength` 开始 | history 可显示父回执,但父提醒不会成为 child 活动工作 |
|
||||
|
||||
### Session 日志权威与工具
|
||||
|
||||
版本 1 `schedule/change` stream 是唯一持久的 Schedule 权威。create 记录拥有一个 Session 内不复用的品牌 id、trim 后的提示词、规则判别字段和 UTC 目标。delete 与一次性 dispatch 是终结转换。严格 decoder 与纯 fold 会拒绝未知版本、额外字段、重复使用的 id,以及针对非活动记录的转换。普通 Session 折叠完整 stream;fork 只折叠 `SessionHeader.seedLength` 位置及其后的 event。
|
||||
版本 1 `schedule/change` stream 是唯一持久 Schedule 权威。create record 拥有 Session 内不复用的品牌 id、trim 后的用户 prompt、规则与 UTC 目标。delete 会终结任何 record;只含 id 的 dispatch 会终结一次性 record;Every dispatch 会存储共享 batch 的 `acceptedAt` 并推进 record,且仅在不存在年份为四位数的下一个目标时终结它。严格 decoder 与 pure fold 会拒绝未知版本、额外字段、重复 id、不匹配的 dispatch shape、间隔不足 300 秒的周期性 batch,以及针对非活动 record 的 transition。普通 Session 折叠完整 stream;fork 只折叠 `SessionHeader.seedLength` 位置及其后的 event。
|
||||
|
||||
当前规则 union 接受非空提示词和恰好一个 selector。`after_seconds` 是正的安全整数 delay,其记录为 `{ id, kind: 'after', prompt, afterSeconds, scheduledAt }`。`at` 可以是带 `Z` 或数值偏移量且严格符合 RFC 3339 的值,也可以是带显式时区的结构化 `{ date, time, time_zone }`;其记录为 `{ id, kind: 'at', prompt, scheduledAt }`。dispatch 只保存 id,因为活动记录已经确定 occurrence。工具值派生 `scheduled` 或 `overdue`,并包含 `deliveryMode: 'session-local'`。
|
||||
当前规则 union 接受非空提示词与恰好一个 selector。`after_seconds` 是正 safe-integer delay,其 record 为 `{ id, kind: 'after', prompt, afterSeconds, scheduledAt }`。`at` 可以是带 `Z` 或数字 offset 的严格 RFC 3339 date-time,也可以是结构化的 `{ date, time, time_zone? }` local value;其 record 为 `{ id, kind: 'at', prompt, scheduledAt }`。两种一次性 dispatch 都只保存 id,因为活动 record 已经唯一确定 occurrence。`every_seconds` 是不小于 300 的安全整数;其 `{ id, kind: 'every', prompt, everySeconds, scheduledAt }` record 无需另存锚点,因为每个已接受目标都保持在初始固定频率序列上。其 dispatch 只存储 `id + acceptedAt`;fold 派生最近一次到期的 occurrence 与第一个严格位于未来的后续目标。`cron` 仍会被拒绝,不会作为未使用字段隐藏在协议中。工具 value 派生 `scheduled` 或 `overdue`,始终包含 `deliveryMode: 'session-local'`,并且仅在 overdue 周期性 record 被门控阻挡时暴露 `deliveryNotBefore`。
|
||||
|
||||
一个 Agent-scoped FIFO 会将管理事务与 live owner 的到期事务从 preflight 到 post-append barrier 全程串行化。每项工具读取都会先等待 `ctx.sessions.flush(session)`。create 会尽可能在进入 FIFO 前拒绝输入形状错误,随后执行 preflight、分配 id、追加记录并再次 checkpoint。delete 会在进入 FIFO 前验证 id,在判断其是否活动前执行 preflight,并且只在追加后再次 checkpoint。list 与 not-found delete 绝不会根据未经确认的 live 后缀作答。barrier 失败会返回 `persistence_uncertain`,而不是猜测 eager write 是否已经提交。
|
||||
一个 Agent-scoped FIFO 会将每项已接纳的管理事务与 live owner 的到期事务从 preflight 到任何 post-append barrier 全程串行化。每项从 fold 读取或作出判断的工具操作都会先等待 `ctx.sessions.flush(session)`。create 可以在进入 FIFO 前拒绝只依赖输入 shape 的失败;preflight 成功后才分配 id、追加 create,并等待第二个 barrier。delete 在进入 FIFO 前验证其 id,随后在判断 id 是否活动前先 preflight,只有实际追加时才等待第二个 barrier。list 与未知或已终结 delete 绝不会从未确认的 live 后缀作答,也不会在自身的 barrier 前观察到 dispatch。barrier 失败会返回 `persistence_uncertain`,而不是猜测 eager write 是否已经提交。
|
||||
|
||||
每次成功的管理 preflight 也会要求 live owner 重新计算。因此,如果先前的 post-append 被拒绝,后续 list 可以确认保留的 create 并将其 arm,而无需私有的 persistence 重试 timer。
|
||||
每次成功的管理 preflight 也会要求 live owner 重新计算。这闭合了 create 已成功追加、但 post-append barrier 拒绝时的恢复路径:后续 list 可以确认 coordinator 保留的 batch、返回活动 record,并在没有 Schedule 私有重试循环的情况下 arm timer。
|
||||
|
||||
### 显式绝对时间边界
|
||||
### Session 与请求时区归属
|
||||
|
||||
自然语言解释与 Schedule 解析被有意分开([时区简化](../simplification/2026-08-09-explicit-schedule-time-zone.md))。每条浏览器提示词只在其对应的持久 user message 上携带由 Host 校验过的 IANA 时区。Time-context 会告诉模型,把未明确限定时区的日期和时间解释为该时区。Schedule 既不导入该插件,也不存储 Session 时区:模型必须把其解释结果转换为带偏移量的 RFC 3339 值,或带显式 `time_zone` 的本地对象。
|
||||
官方 Web create 路径要求浏览器提供 IANA 时区,在 Host 边界校验并规范化后,将其一次性存为不可变的 `SessionHeader.timeZone`。resume 保留该值,fork 复制该值;若针对相同 id 与 cwd 的另一次 create 得到的规范化时区不同,则发生冲突。Session core 保持该字段可选,使时区支持前的 Session 仍可读取,但其时区明确为 `unavailable`;绝不会用后续浏览器请求回填 legacy header。JSONL 保留该可选 header;SQLite schema v14 增加 nullable `time_zone`,并以原子方式升级自有 v13 数据库,不为既有行猜测值。
|
||||
|
||||
Schedule 会校验精确的日历形状、偏移量、时区名称,以及一个严格位于未来、年份为四位数的时点。落在夏令时缺口内的本地时间会被拒绝;遇到重叠时会选择第一次出现的较早时点。创建成功后只存储规范化后的 UTC `scheduledAt`,不会存储原始偏移量、本地字段或时区。
|
||||
这笔精确的 v13 到 v14 事务,是对“预发布阶段默认拒绝旧存储格式”立场的一项窄幅、已规划例外:在引入时区 metadata 前,可能已经存在有效的无时区 Session 数据库。它只接受自有 v13 布局;更旧、更新或伪造的 schema 都会在不修改数据的前提下被拒绝,而且不会建立通用迁移框架。
|
||||
|
||||
每条 Web 提示词都会单独采样自己的 `clientTimeZone`;Host 在进入 Agent 前校验该值,并把它绑定到不可变的 `user-rpc` 消息来源。它是请求 provenance,而不是连接或 Session 的可变属性,因此并发 tab 无法相互覆盖,排队、steering(中途引导)、编辑、重试和持久化 history 都会保留来源时区。
|
||||
|
||||
Time-context 会委托 `agent/pre-step`,从不可变 Session header 和与消息绑定的浏览器来源为最终进入的非空批次派生时区,再向该批次追加一条模型可见读数。其来源仍是简单插件标记,不会把这些事实复制成另一份持久权威。AgentLoop 领取当前批次后才插入的 steering(中途引导)保留常规 next-step 归属,并在该步骤进入时获得新上下文。`step/start` 之前出现 reject、空决策、取消或失败时,不会记录读数;本功能也不增加 inbox 或 AgentLoop 生命周期状态。
|
||||
|
||||
Schedule 要求当前 open turn 中存在 time-context 标记,然后直接从该 turn 的原始 `user-rpc` 来源派生请求时区。只有派生结果包含一个与 Session 时区相等的 client 时区,才会接受隐式 local `at`。无 header 的 Session、client provenance 缺失或 mixed,或 client/Session 不匹配,都会返回 `timezone_confirmation_required` 及已知时区。显式 `time_zone` 可绕过这项歧义检查,但仍要通过相同的 IANA 校验。
|
||||
|
||||
### 绝对时间规范化
|
||||
|
||||
确定性的日历规范化由 Schedule 负责,而不是模型或进程 locale。显式 offset 输入必须匹配受支持的窄 profile,并标识一个严格位于未来、年份为四位数的时点。结构化 local 输入会校验日历和选定时区,拒绝夏令时空档,并选择重叠时段中首次出现的较早时点。成功的 create 只存储 UTC `scheduledAt`;原 offset、local 字段和用于解释的时区不会形成第二份持久表示。自然语言解释仍由模型完成,time-context 出现在工具调用之前,而不依赖结果回显。
|
||||
|
||||
### Persistence checkpoint 与初始化恢复
|
||||
|
||||
`SessionStore.flush()` 会等待所有 scoped listener,并把字面量 `true` 视为显式 durability acknowledgement。获得确认的调用会发布受包含的 `session/flushed(session, throughSeq)` observation;其中排他边界在调用入口捕获,append 通知本身不是 durability 证据。仅观察 listener 返回 void;空或只有观察者的 checkpoint 返回 `false`;任一 listener 拒绝都会在全部结算后阻止成功 observation。
|
||||
|
||||
persistence coordinator 只有在写路径完全停稳后才给出该确认。live controller 只保留初始 `seedEnd` 标量,不复制 seed。首次初始化拒绝后,后续 flush 会从仅追加 Session 重建该不可变前缀、读取后端实际 cursor,并只追加缺失 suffix。无论失败发生在存储变更前,还是提交后才返回拒绝,一次暂时性错误都不会永久毒化 Session 或重复写入其前缀。
|
||||
|
||||
### Live 交付生命周期
|
||||
|
||||
Agent-scoped owner 从持久 fold 派生最早目标。超长目标使用有界 timer 分段,每次 wake 都会重新读取墙钟,因此回拨不会提前触发,前跳则会形成 overdue。如果 Agent 已被某个轮次或另一项 maintenance task 占用,`runMaintenance()` 会拒绝此次认领;记录保持活动,并由一次 `whenIdle()` wait 触发另一次尝试。被拒绝的 preflight 或被收容的 framing/入队失败同样会使记录保持活动,但不会启动私有重试 timer。
|
||||
Agent-scoped owner 从持久 fold 派生活动目标与最近一次周期性 batch。超长目标使用有界 timer 分段,每次 wake 都重新读取墙钟,因此回拨不会提前触发,前跳则会形成 overdue。固定频率 record 将当前 `scheduledAt` 视为原始序列上最早尚未接受的点;整数除法会直接选出最近一次到期点,既不回放错过期间积压的 occurrence,也不把锚点移至交付时间。如果 agent 已被某个轮次或另一项 maintenance task 占用,`runMaintenance()` 会拒绝此次认领;record 保持活动,并由一个 `whenIdle()` wait 触发稍后的重试。被拒绝的 persistence preflight 或被收容的 framing/同步入队失败同样会让 record 保持活动,但不会运行私有重试 timer;后续 agent 活动进入 idle,或成功的 Schedule 管理 preflight 会要求 owner 再次尝试。
|
||||
|
||||
获得准入的路径会刷新所有 pending persistence 并认领真正的 idle phase。它会重新折叠确切的 Session 后缀、采样 decision clock、用经过 JSON 转义的 id 和提示词构造固定提醒 framing、同步排入一个 `followup()`,并在释放 maintenance 前追加只含 id 的 dispatch。触发唤醒的 input 会保持 parked,直到 maintenance 释放,因此在 dispatch 进入日志前,消息不会被认领;随后 owner 会为 dispatch 执行 checkpoint。
|
||||
获得准入的路径会先清空 pending persistence,并通过 `runMaintenance()` 认领真正的 idle phase。该任务会重新折叠确切的 Session 后缀,从而确保在认领竞态中胜出的直接管理变更之后不会跟随陈旧 dispatch;然后只采样一次 decision clock。到期的一次性提醒会绕过周期性门控,继续使用单条固定 reminder frame 和只含 id 的 dispatch。否则,300 秒门控会按目标/create 顺序接纳每条 overdue Every record:owner 为每条 record 派生最近一次到期的 occurrence,在入队前构造完整 JSON batch,同步排入一次 `followup()`,并为每条 record 追加一条独立的 `{ id, acceptedAt }` dispatch。门控间隔直接将每个半开 24 小时窗口内由周期性提醒触发的模型轮次限制为至多 288 个;不存在第二个计数器或配额。触发唤醒的 input 会保持 parked,直到 maintenance 结束,因此 driver 无法在 dispatch 进入 log 前认领消息;只有该任务释放 phase 后,owner 才会等待共享 dispatch barrier。framing 或同步入队失败会被收容,且不会追加 dispatch。append 失败会使该 owner fault,因为消息可能已经入队。后续 prompt admission、request checkpoint 或模型失败都不能撤回 dispatch。
|
||||
|
||||
dispatch 记录的是队列准入,而不是模型完成或用户收到提醒。framing 构造或同步入队失败不会追加 dispatch。append 失败会使该 owner fault,因为消息可能已经入队。Agent 或插件 dispose 会取消 timer、停止新工作、撤销工具注册,并等待进行中的工作,且不会删除持久记录。follow-up 获得准入后、持久 dispatch 前发生崩溃,可能使提醒在恢复后重复;本设计不作 exactly-once 承诺。
|
||||
Agent 或插件 dispose 会取消 timer、停止新工作、撤销三个工具注册,并等待进行中的 preflight 或 idle wait。teardown 绝不会删除持久 record。同步 followup 获得准入后、durable dispatch 前的狭窄崩溃窗口可能在恢复后重复提醒;本设计选择可见重复而非静默丢失,不承诺模型成功、用户阅读、外部副作用或 exactly-once。
|
||||
|
||||
### Commit-aware Web 回执
|
||||
|
||||
Schedule package 拥有 `scheduleReminderPresentation()`,从 create 加 dispatch 派生 `{ scheduleId, prompt, occurrenceAt }`。client renderer 会添加固定的 `session-local` 标签。当前 fork 的 `seedLength` 是 child 自有 dispatch 的硬边界。继承的 dispatch 则会与它之前最近的同 id create 配对,因为 `session/end-seed` 也会标记回放或恢复构造,而不仅标记 fork 所有权。这使恢复后的祖先回执仍可渲染,保留嵌套 generation 的 id 复用,并且绝不会改变 live ownership。
|
||||
|
||||
Host 在 append 时继续发送所有 raw event。它在 `WeakMap` 中按 exact live `Session` 保存一个单调 watermark;只有 `session/flushed` 前进时,才会用通用 `{ for: 'event', view }` sidecar 重投新覆盖的 dispatch event。持久 `schedule/change` 类型用于选择 client renderer。取最大值可以收容反序完成的并发 flush,按对象身份键控则阻止复用的 Session id 继承另一个生命周期的 cursor。
|
||||
|
||||
已附加 history 会独立 inspect persistence,只有 stored event prefix 的 header identity 与每个 event 都和 live Session 匹配时才添加 view。persistence 会把顶层缺失的 `delegationDepth` 规范写成零,因此两种形式在身份上等价;cwd、lineage、origin、时间戳、版本、id 与每个 event 仍必须精确匹配。inspect 缺失、失败、分歧或比 live 更长时,只会省略 view,raw history 仍然返回。已分离 history 本身就是持久前缀。因此复制进 fork seed 的 parent dispatch 只有在 child storage 证明该前缀后才会显示。
|
||||
|
||||
浏览器 Session 只有在 durable event 深度一致时才接受重复 seq,随后立即升级 sidecar,不再追加 event。尾部加载与真正的 gap repair 会将尚未覆盖的事件保留在既有 `liveBuffer` 中;已接受的 repair 快照在推进 tail 但仍留下后续已缓冲的 gap 时会启动另一次 pull,身份冲突则会触发全量重新同步。普通旧页分页会让当前数组继续接收 live tail 事件,当前 window 以下的 sidecar 则由 in-flight page 自身暂存,只有该页返回身份完全相同的事件时才附着。重连 generation 会阻止陈旧的 page 或 repair 结果以及 `finally` 块触碰重建后的 window。`TranscriptAdapter` 创建按持久事件类型键控的通用 `PresentedEventNode`。`ui-conversation` 通过 `conversation.chat.eventview` 分发,并保留可展开 JSON fallback;`ui-schedule` 则拥有双语 `schedule/change` 提醒行。
|
||||
|
||||
```text
|
||||
schedule_create → Session create event → persistence
|
||||
↓ live owner
|
||||
due → admission → followup → dispatch → flush(true) → session/flushed
|
||||
↓
|
||||
Host late event sidecar
|
||||
↓
|
||||
client same-seq upgrade → event-keyed UI receipt
|
||||
```
|
||||
|
||||
## 已考虑的替代方案
|
||||
|
||||
**使用 `ctx.tasks`。** Task 拥有进程本地工作、结果和通知,而不是 Session 日志状态和对话 follow-up。
|
||||
**使用 `ctx.tasks`。** Task 拥有进程内工作、终态结果、收集与通知语义,而不是 Session 日志状态和可回放会话回执。复用它会让错误的生命周期成为权威。
|
||||
|
||||
**把提醒存入私有数据库或全局 scheduler。** 这样可以运行 cold Session,却需要第二套身份映射、启动扫描、ownership lease、崩溃协议和通知策略。
|
||||
**把提醒存入私有 SQLite 表或全局 scheduler。** 这样可以运行 cold Session,却必须增加第二套 Session 身份映射、startup 扫描、ownership lease、崩溃协议与通知政策。当前范围有意只在原 Session live 时运行。
|
||||
|
||||
**持久化 Session 时区并推断本地 `at`。** 这会让一个解释默认值扩散到 Session core、Host create/fork、持久化格式、client 和不匹配恢复中。请求本地的模型指导与显式工具边界消除了这种耦合。
|
||||
**在 `followup()` 前 claim dispatch,或增加 exactly-once fencing。** claim-first record 会在入队失败时静默丢失用户可见提醒。跨进程 exactly-once 需要 lease、outbox、acknowledgement 与下游幂等边界,而 Session-local best-effort 模型工作不具备这些边界。
|
||||
|
||||
**保留独立的持久 Web 回执。** dispatch 是内部队列事实,而不是用户的提醒。渲染普通 assistant 回答既避免了第二种交付含义,也从 Host 与 client 层移除了 Schedule 代码。
|
||||
**把模型消息当作回执。** 已排队 inbox 项是进程内状态,可能在产生持久 user message 前失败。从 dispatch 派生的 Web 回执不依赖模型成功,仍然可见、可回放。
|
||||
|
||||
**在 `followup()` 前认领 dispatch,或增加 exactly-once fencing。** claim-first 会在入队失败时静默丢失提醒。跨进程 exactly-once 需要 lease、outbox、acknowledgement 与下游幂等边界,超出了此 Session-local 范围。
|
||||
**在 append 时附加提醒 view。** `session/event` 早于 durability 结果;这样会在 flush 拒绝后显示幽灵回执。成功 watermark 让 presentation 服从提交点。
|
||||
|
||||
**接管既有根或注册全局工具。** 晚接管会让插件加载顺序激活不可见的 timer,并把工具暴露到受支持的根组合之外。
|
||||
**增加 Schedule 专属 wire frame、client cache 或管理页面。** 通用 event sidecar、既有 Session window buffer、键控 slot 与面向模型工具已经能承载所需结果。平行 transport 或状态 store 会重复身份与回放逻辑。
|
||||
|
||||
**接管既有根或注册全局工具。** 晚接管会让插件加载顺序改变哪些不可见 timer 开始运行,并把工具暴露到支持范围之外。只面向未来根、按 Agent scope 安装,提供了单一明确生命周期。
|
||||
|
||||
**将进程时区或最近连接的浏览器用作默认值。** 进程时区属于部署状态,而连接级值会让某个 tab 或后续出行悄然重新解释另一个请求。不可变的 Session 默认值加上绑定到消息的 client provenance,能让分歧显现,而不创建共享的可变时区状态。
|
||||
|
||||
**在 Schedule 内解析任意自然语言日期,或持久化 local 输入。** 另一套语言解析器会与模型竞争,而在已解析时点旁保留 local 文本或时区,会为同一个一次性目标形成两种持久解释。模型看到 time-context 后输出一个窄结构;Schedule 校验它并存储一个 UTC 事实。
|
||||
|
||||
本设计不会识别或迁移任何未合入的 Schedule 实现或私有存储格式。固定 Session id、claim-before-send record、startup miss 与私有数据库都不是兼容输入。
|
||||
|
||||
## 验证
|
||||
|
||||
包测试以逐文件 100% coverage 固定严格回放、转换、fork 后缀、id 复用、偏移量与本地日历 profile、IANA 校验、夏令时缺口与重叠、时间边界、timer 分段、墙钟变化、overdue 准入、固定 framing、入队与 append 失败、barrier 恢复、注册 rollback 和完全停稳的 dispose。production JSONL restart 测试证明一条 overdue 提醒会经过真实 Agent 生命周期 dispatch,并且再次 restart 后不会重复 dispatch。Host/client 测试固定浏览器时区采样与绑定到提示词的校验。无密钥组装 Web 场景会驱动一条真实浏览器提示词经过 time-context,发出带显式 `time_zone` 的模型 `schedule_create` 调用,执行持久 dispatch,并产生一个没有回执 UI 的普通 assistant follow-up。
|
||||
package 测试以逐文件 100% coverage 固定严格 decoding、transition、fork suffix、id 不复用、offset 与 local-calendar profile、IANA 校验、gap 拒绝、overlap-first 选择、mismatch confirmation、时间边界、固定频率锚点运算、仅追赶最近一次到期点、300 秒 batch 间隔、完整且稳定的 batch、一次性提醒绕过门控、有界等待、墙钟变化、overdue 准入、管理/dispatch 竞争下的重新 fold、固定 framing、入队与 append 失败、barrier 恢复、注册 rollback 和完全停稳 dispose。persistence 测试依据实际 durable cursor 覆盖 new、fork 与 resumed 初始化失败、可选 header round-trip、一次真实 SQLite v13 到 v14 migration,以及 production JSONL restart。组装后的 Loader/Web restart lane 证明 pending 恢复、fork 隔离、单次 durable dispatch、无需激活 agent 的 cold-history rendering,以及再次 restart 后不重投。Host/client 测试覆盖 live、stored 与 concurrent-create 路径中的 zone identity、逐操作提示词 provenance、commit gating、反序 watermark、语义 header identity、逐 event 前缀匹配、same-seq 升级、每个 window merge 出口和 reconnect generation。
|
||||
|
||||
Time-context 测试覆盖最终 pre-step 消息、当前 turn 的唯一/混合/缺失时区派生、领取后 steering 进入下一步骤、取消、空值抑制、重试、精确 snapshot 来源校验和执行中释放。Schedule 测试会从持久 `user-rpc` 来源独立派生同一组请求时区,在空的续跑中复用同 turn 标记,并在缺少 open-turn 标记时 fail closed。显式 Loader 组合可以启动 source 与 built package。无密钥真实浏览器场景会通过完整工具 pipeline,针对既有的短 `after` case 和一个 absolute-time case 执行 `schedule_create`,观察 identity-matched 持久前缀,并从已附加 history 渲染 durable reminder card。刻意缺少的模型 adapter 会在 dispatch 后以错误关闭 turn,从而证明模型失败不会移除回执。
|
||||
|
||||
## 后果
|
||||
|
||||
- 提醒状态通过普通 Session persistence 跨重启存活,无需新数据库或公开 service。
|
||||
- cold Session 不工作、不发送外部通知;重新打开后可能交付 overdue 工作。
|
||||
- 无需持久 Session 时区状态或从 Schedule 到 time-context 的依赖,绝对时间输入仍然具有确定性。
|
||||
- 用户看到普通对话输出;dispatch 绝不会夸大模型成功或 acknowledgement。
|
||||
- 每个 live 根只增加从 fold 派生的 timer、可选 idle wait 与一个 in-flight operation。
|
||||
- 周期性规则需要显式的状态转换、追赶和模型预算语义,而不是休眠字段;cron 仍在此产品边界之外。
|
||||
- 提醒状态通过普通 Session persistence 跨进程重启并回放,无需新数据库或公开 service。
|
||||
- cold Session 不工作、不发送外部通知;重新打开后可能交付 overdue 提醒,且每个工具/卡片都会显示 `session-local`。
|
||||
- 每个 live 根只增加从 fold 派生的 timer、可选 idle wait 与一个 in-flight operation。长等待和插件卸载不会创建第二套持久状态机。
|
||||
- Session 的默认时区不可变,且在较旧 history 中可能始终不可用。因此,旅行或并发 tab 可能需要显式时区,而不是悄然改变“明天 09:00”的含义。
|
||||
- 通用 commit-aware event-view 路径可供其他持久 event 复用,但为 client Session window 增加了事件身份检查与 generation-aware merge 行为。
|
||||
- 严格协议覆盖延迟、绝对时间与固定频率目标。日历周期规则仍需要明确的语法、IANA/DST 求值器,以及在 history 中保持稳定的 occurrence 字段,而不是休眠的 cron 行为。
|
||||
|
||||
Reference in New Issue
Block a user