Inherited sandbox and approval events were part of the constructor seed. Session.firstLiveSeq classifies every constructor event as replayed history, so telemetry adoption skipped these child-only creation facts even though no parent or prior process had exported them.
Capture the parent overrides at the same synchronous delegation boundary, but append the events during the child factory setup while the session is still unpublished. They remain ordered after fork history, persist with the first child batch, and retain last-event-wins behavior while landing on the live side of the telemetry boundary. This uses the existing setup and session append contracts instead of adding another seed category or telemetry special case.
Add regression coverage for exporting an unpublished suffix without re-exporting constructor history, assert the spawn and fork firstLiveSeq boundaries, and restore the public seed documentation to replay/fork history only.
- Regenerate the cordis/config catalogs, doc graphs, and module graph for
the four newly mounted plugins and the goal projection key.
- ui-goal README pair (Model Experience indirect + Known Limitations) with
its i18n record; sentence-allowlist entry for the indirect form.
- knip workspace entry for ui-goal (tsx test pattern).
- type-equiv manifest follows the seven host-coupled goal symbols to
domain.ts.
- The web-slash-command-dispatch note documents the dropped prompt
interception and leaves with it; the goal-bar note's code paths follow the
component into ui-goal (pairing re-recorded).
The persisted row (sessionId, key, stateVersion, observedSeq, state)
becomes (sessionId, key, ver, seq, val) — the cache medium repeats these
three names for every unit of every session, so the long forms dominated
the JSON payload. ProjectionCheckpointRow and the checkpointRow zod spec
rename together; the domain spec bumps to v3 (cache semantics: the old
medium is discarded, not migrated). The unit-facing declaration keeps
stateVersion — only the persisted/checkpoint row shape changes.
The projection cache surfaced two substrate gaps, both properties of the
domain-KV stack it landed on. (1) The json backend's root is relative and
joined per-open against process.cwd(): sessions are patched global
(~/.dsh/sessions) but workspace.json/session_projcache.json land under
<launch dir>/.storages, splitting derived media from their source of
truth. Proposal: patch storage-json.root to ~/.dsh/storages beside the
session root (profile key storageRoot, mirroring persistenceRoot) and
resolve-once at backend construction, adopting the JSONL backend's
recorded rationale. (2) A damaged cache medium (truncated / version-bumped
/ schema-drifted) bricks fail-loud boot even though its content is fully
rebuildable from session logs. Proposal: DomainSpec grows
recovery: 'reject' | 'reset'; the facility, on exactly the damage-class
errors, destroys a declared-reset medium once and reopens empty —
workspace stays authoritative and loud. Bilingual pair recorded.
The implementation no longer stores inherited policy in SessionHeader or resolves a second baseline chain, but the feature, sandbox, and approval notes still described that machinery. Keeping those claims would make the smaller design look incomplete and invite reintroduction of the generic persistence surface.
Rewrite the owning feature note around the actual delegation snapshot: source-tagged policy events follow the optional fork prefix, ordinary last-event-wins folds establish precedence, and persistence captures the constructor seed with the first materialized batch. Condense the alternatives and consequences to the decisions and coverage that remain load-bearing.
Align the sandbox and approval notes plus the subagent-inprocess consumer README with that contract. Update the four Chinese counterparts minimally and re-record each pairing hash so both languages describe the same shipped mechanism.
Retarget the feature branch to the current master tip without rewriting its existing review history. Keeping this as a dedicated merge checkpoint makes the later simplification diff attributable to the stacked child rather than mixing base movement with design changes.
Resolve the identified-message API drift in the feature tests by constructing complete user messages, reading the nested tool-result message shape, and adapting the prompt-submit listener signature. Preserve both sides of the user-approval conflict: master’s createUserMessage wrapper and the feature’s inherited-policy attribution.
Regenerate the Cordis and persistence catalogs, re-record the session README pair, and refresh the affected ACP/headless fixtures so derived artifacts describe the merged source rather than either parent in isolation.
Validated with the focused policy/session/persistence/query suites (430 tests), focused ACP/headless snapshots (3 tests), build, doc-sync (25 gates), lint, hygiene, and git diff checks.
Conflict rulings follow the projection-reattach plan:
- host/runtime package (deleted on master): take master; the PR's boot
composition moves to the cordis.yml roster and its goals handlers will be
re-landed in dsh-host-apiproxy; the session.prompt slash interception and
its spec are dropped entirely (superseded by command.execute + command/run
logging).
- client core (rewritten on master): take master; the PR's Session goal
fields/methods, ConversationSnapshot.goal, goalActions injection, and the
hard-mounted GoalBar are all superseded by the 'goal' session projection
(useProjection) and will return as the ui-goal plugin.
- wire contract: union of master's workspace/command/skill domains and the
PR's goal domain, minus goal.get (the read side is the projection block +
session/projection frames; six mutation RPCs stay).
- GoalBar component and spec leave ui-conversation (they re-land in the new
ui-goal package); IconSparkle16 stays in ui-conversation chat.
- The web-slash-command-dispatch note documents the dropped interception and
is removed; the goal-bar note will be rewritten for the projection model.
- pnpm-lock.yaml taken from master (reinstall recomputes).