The web-app bundle gained dsh-app-boot on master beside this branch's
dependency list; both rows stand, and verify-cordis-config confirms every
patch row still resolves from that manifest.
`minimal` was rewritten upstream into a fixed-prompt PTY surface that now
carries its own compaction group, so this branch's token-meter move applies to
it too: the row leaves the group and `tokenMeter` leaves the realm, exactly as
in the other three presets. Master's header prose is kept whole — the note this
branch had added there described a composition that no longer exists.
`docs/event-producer-consumer.*` is generated; regenerated after the merge.
Replaces the patch round trip. An app's entrypoint resolves the command
line into a service, and the rows it configures read that service from
their own config — port: !!js ctx.get('webStartup')?.port ?? 3080 — so the
resolved value beats the value written beside it and nothing is written
back into a row or handed to the launcher.
A bundle names the entrypoint row in its manifest (dsh.bundle.entrypoint),
which is what lets the boot mount in two passes: entrypoints alone, then
the whole composition. That ordering is required, not cosmetic — a row's
config expressions are evaluated when the include applies the row, and a
strict ctx.get only answers for a service whose providing fiber is already
active.
What this removes: ctx.appPatches and the launcher-owned patch layer, the
disable/re-enable recycle and its in-flight-mount barrier, overrideConfig,
and the reload hazard they existed for. A live config edit now re-applies
the second pass against services that are still up, so a served port
survives by construction.
What it adds: ctx.appReady, because Loader settlement no longer means the
app is up — a row mounted in the second pass can observe a settled tree
while that pass is still running, or already rolling back. The web URL line
waits for it, so a boot that fails in the second pass announces nothing.
A launcher provides three values before the tree mounts: ctx.cmdlineArgs
(get() is the whole interface) carrying everything after its own flags,
ctx.appExit for a bounded exit, and ctx.appPatches for decisions a later
recomposition must keep. An app's startup row injects cmdlineArgs and calls
runStartup() with its own commander program.
Rows the app configures inject its startup service, so they wait until the
startup row has resolved their values and provided it; --help prints,
disables those rows, and exits without the app ever starting.
A changed row is recycled — disabled, then re-enabled with its new values —
because a row's config is resolved when the Loader creates its fiber, while
the row is still waiting. Recycling never touches inject: an inject update
restarts the row from its unwrapped callback and loses the plugin's own
static injections. A mount still in flight is allowed to settle first, so
the disable has a fiber to dispose instead of racing one into existence.
Integrate master at 8b4ef532 before addressing review feedback so each bot issue remains isolated in its own descendant commit. Resolve the vendor package rescope by moving the PR's new MCP supervisor imports to @deepseek-ai/cordis and @deepseek-ai/schemastery, preserve the reconnect implementation and e2e coverage, and regenerate the merged config and module catalogs with fresh bilingual pairing records.
The display name read only the user layer while its placeholder claimed a
cleared field falls back to the route id. A `cordis.yml` can pin a name
for a route the catalog does not ship, and clearing then restores that
name, not the id. The placeholder now reads the composition layer — the
same layer `inheritedModels` reads — and names the route id only when
nothing pins one.
The saved notice echoed the target captured when the card opened, which
never lied while the name could not change. It now names the provider as
the refreshed directory reports it, and is announced only once that
refresh is in the snapshot it reads from.
The protocol select's blank option is named, because a screen reader
announces it either way and an unnamed one is a choice with no identity.
`protocolChoices` no longer rehydrates the section schema for the two
layouts that have no per-route protocol to find.
Documentation caught up with the same broom: the module JSDoc and the
e2e header both still described one field where the fold now carries
two, the English user guide carried a Chinese UI label among English
ones, and the README's DeepSeek row inventory omitted `maxTokens`.
Resolves the vendored-package rescope (cordis -> @deepseek-ai/cordis,
schemastery -> @deepseek-ai/schemastery) against this branch's settings
namespaces: the bash capability namespace, its two executors' section
installs, and the new plugin-config client package all move to the scoped
specifiers.
The vendored Cordis rescope (`cordis` -> `@deepseek-ai/cordis`,
`@cordisjs/plugin-*` -> `@deepseek-ai/cordis-plugin-*`) collided with this
branch's two added edges. Resolved by taking master's package names and
keeping this branch's additions: `@deepseek-ai/dsh-agent` and
`@deepseek-ai/dsh-system-prompt` peers, the `scopeChainOf` import, and the
`agent/created` type-only edge.
`docs/event-producer-consumer.*` is generated; regenerated after the merge
rather than hand-resolved.
The Models editor card curated its pi-ai fields by what every route has,
so `displayName` and `api` — the two a hand-declared route names for
itself — were asked for at creation and then reachable only through
settings.yaml. The editor now renders both for a route the directory
reports as declared, from the same namespace schema the create card
reads. A catalog route gets neither: it defaults its name from its
catalog entry, and its models each carry their own protocol, so a
route-level one could only override all of them.
Clearing the name unsets it and the route falls back to its id, which is
what the field's placeholder shows; storing the empty string would be
refused by the adapter. A declared profile naming no protocol selects
nothing rather than reading as if it had picked the first choice.
The Provider ID stays fixed: it is the settings dict key, it is
referenced from `agent-default-model` and every logged request header,
and it is the stem of a credential reference the page can never read
back to move.
Fixes#2204
Moving the agent plane behind presets left two readers on the wrong side of
the host/agent line.
`dsh-token-meter` was disabled on the host and mounted inside each preset's
`compaction` realm, but its three projection units register into the
process-wide `sessionProjections` table. A unit registered from one preset
answers for every session, so whether a `minimal` session showed a context
meter depended on whether some other session had mounted `standard` since
boot, and a process that only ever ran `minimal` showed none. The meter takes
no configuration, keys every fold by Session, and registers no tool or prompt
section, so it returns to the host composition and leaves the presets'
`isolate` map; the realm and `compact-basic` stay, because what a preset
chooses is whether its agent compacts, not whether its tokens are counted.
Nothing named an agent that joined no preset. The join is a scope-parent link,
and without it the tools, prompt-section, and skill views resolve the empty
global layer: the agent publishes, the turn runs, and the model receives
nothing. `AgentPresets` now logs one warning per such agent while a roster is
configured, and the invariant companion fails outright — at
`system-prompt/assemble` rather than at publication, because an unjoined agent
is legal until it addresses a model and `recompose` binds exactly such an
agent. The warning stays advisory: a synchronous `agent/created` throw vetoes
publication, and the ACP bridge, SDK server, and headless bundle all create an
unjoined agent today.
Three limits are recorded rather than fixed: projection key presence is not a
per-session capability signal, a superseded standing generation is never
reclaimed, and a `cordis_mount` temporary plugin belongs to the composition
rather than the session that mounted it.
Fixes#2203
Machine-produced by `pnpm run rescope-vendor --apply` plus the regeneration it
prints: `pnpm install` for the lockfile, `pnpm run gen-third-party-notices`,
`verify-translation-pairing --write` for the touched bilingual pairs,
`gen-doc-graphs`, and one typert snapshot whose ids embed character offsets.
`pnpm run rescope-vendor --check` verifies the result.
Renames nine vendored packages (cordis, cosmokit, schemastery and the six
@cordisjs plugins) and every reference that resolves them: manifest names and
dependency keys, module specifiers including declare-module merges, cordis.yml
plugin names, tsconfig paths, every Markdown fence, and `docs/` prose.
Directory names, upstream versions, and dependency ranges are unchanged, so
vendor/README.md still reads as an upstream snapshot; its manifest table gains
an upstream-name column so THIRD_PARTY_NOTICES keeps MIT attribution pointed
at each fork's origin.
The tutorial tier follows the rename end to end: its yaml fences named plugins
the Loader can no longer resolve, its `ts ignore-check` fences disagreed with
the compiled fences beside them, and its prose quoted both. The contracts that
told readers to keep upstream names — the root convention and the vendoring
cookbook's tree comment and manifest invariant — now say to rescope instead.
Two rules read `@deepseek-ai/` as "another workspace plugin": the client bundle
purity gate now names the vendored libraries a browser bundle inlines, and the
files where a bare `cordis` is an agent-preset id keep that product data.
Every harness package declares cordis as a peer dependency, so publishing the
harness publishes the vendored framework layer too; under the upstream names
that publication would squat them on the registry.
scripts/rescope-vendor.ts owns the rename: the nine-package mapping, a
delimited-token rule that leaves cordis.yml, the Loader's cordis: builtins and
vendor directory names alone, per-file exemptions where a name is a directory
or an upstream runtime identifier, and the exact edits for sites a token rule
cannot express — dot-notation lookups, unquoted manifest keys, a regex literal
whose failure would make every Context-merge scan silently find nothing, the
vendored-manifest table, and the contracts that told readers vendored packages
keep their upstream names.
Markdown follows the rename inside every fence, because a fence is code a
reader copies or configuration they mount, and in `docs/` prose as well, where
a sentence quoting a name teaches something this repository no longer resolves.
Prose elsewhere records what was true when it was written, and the same
spelling can mean something else: the Python SDK's `cordis` option, or the
unvendored `@cordisjs/plugin-http`. `docs/rescope.md` states both names on
purpose and is exempt.
exactEditState() classifies every exact edit as pending, applied, or invalid.
An insertion keeps its anchor and a deletion keeps its remainder, so each side
counts the form that survives: a duplicated insertion, a half-applied
replacement, and a deletion whose remainder moved are all invalid. The run
classifies every edit before writing anything and aborts on the first invalid
one, so a disagreement between the mapping and the tree cannot leave a
half-rescoped checkout; each write re-reads its file, because two edits can
target one. rescope-vendor.spec.ts pins those rejections, and --check asserts
the whole post-state from the hygiene gate, so CI owns the invariant.
--reverse restores the upstream names, verified as a round trip: reverse, then
apply, reproduces this tree byte for byte.
docs/rescope.md is the consumer-facing reference: the old-name/new-name table
with each package's role, what the rename deliberately leaves alone, the sites
callers must change, and the commands to apply, verify, and revert. The Agent
Note carries the decision and its consequences.
The rename itself lands in the next commit, produced by running the script.
A restriction was compiled against the global tool layer alone: only
global-layer tools were tested against `admits()`, and every chain-layer
tool was overlaid unfiltered afterward. That read the exempt set as "the
global layer" when what it means is "what this scope registers itself" —
two descriptions of the same set only while every model-facing tool sat in
the host composition.
Moving those rows onto the agent plane separated them. A preset's tools are
an ANCESTOR contribution to a joined agent, so a subagent's `toolFilter`
stopped constraining anything it was given; and with the global layer empty
`restrict()` rejected every name it received as unknown, failing the child
outright. With the same tools in the global layer the filter still admits
and applies normally, which is what makes this a regression of the move
rather than a standing limitation.
`view()` now filters everything a scope inherits — the global layer and
every ancestor layer on its chain — and exempts only the layer the scope
owns. That exemption is load-bearing rather than incidental: the delegation
runtime registers a child's `report` and structured-output tools into the
child's own layer, and a filter naming the capabilities the child may use
must not strip the machinery it answers through. Tool order, and with it
prefix-cache reuse, is unchanged: inherited names keep their global-then-
ancestor position and own-layer names still come last.
The diagnostic said "unknown global tool" while listing what is really the
inherited surface; it now names the surface it checks and says why an
own-layer name is not restrictable.
Fixes#2185
A per-instance connection supervisor restarts the original server config
with exponential backoff when the transport closes, re-runs tool discovery
on success, and atomically replaces the previous generation. Default policy
retries for ~2.5 minutes (10 attempts, 500ms→30s doubling) before giving up
and unregistering the server's tools.
New config block reconnect { enabled, initialDelayMs, maxDelayMs, maxAttempts }
on both transports; misconfiguration fails plugin load. A connection that
survives past the stability window (maxDelayMs) resets the attempt budget,
so occasional crashes recover indefinitely while a crash loop still exhausts
the cap.
Integrates with the upstream failOnStartupError: the initial sync uses
registrationFailure:'throw' when that flag is set so a squatted namespace
still rejects activation.
Fixes#1746