The Host cordisInspect registry threw on any duplicate provider id, but
tool-cordis is mounted per-preset (standing scope), so two presets that
both include it (e.g. `maximum` and a user copy such as `design`) collide.
`register()` now replaces the stored entry when the incoming manifest is
structurally identical (same id, description, and methods); a provider
with the same id but a different manifest still throws as before.
Added `jsonEqual` and `sameManifest` module-private helpers; new spec
covers first register, identical re-register, different-manifest reject,
empty-id validation, and method-array mismatch.
The prior openrouter feature commit added the ctx.openRouterUsage Remote
service without a SERVICE_PAGE partition entry or regenerated artifacts, so
the committed api-catalog, slot-catalog, and llm-streaming subsystems docs
were stale and the catalog byte-for-byte gate failed. Map the service to its
documentation page, regenerate all three artifacts, and re-record the
bilingual sidecar.
Extend the openRouterCost projection with a per-step priced-cost map
keyed by turn:step so surfaces can render spend without re-pricing, and
have the Trajectory view read it through the framework useProjection seat:
each priced assistant step shows its USD cost on the request boundary chip
and in the inspector summary, while unpriced steps stay blank. Also fix a
pre-existing exactOptionalPropertyTypes error in extractCacheRates that the
host typecheck surfaced.
The per-session ProjectionValueStore was deleted on host/session-removed
even though the Session instance survives removal (open() is idempotent and
drop() only removes the map entry). A re-added or re-listed session resumed
on the same instance with an empty projection face, so projection-backed UI
(such as the OpenRouter cost readout) reverted to blank until a fresh host
baseline landed.
Retain the store on removal and lift the removed tombstone from the
surviving instance on revival (host/session-added and list-refresh
re-listing), so chat switching keeps cost readouts populated.
The Python lane never compared what the minimal composition shows the
model: the mock model only asserted system-role messages, and the
advanced snapshot tokenizes the assembled system prompt and tool
schemas.
The sdk-minimal scenario now records model-visible.json — every model
request's advertised tool schemas verbatim and its message list, with
system and user text kept and assistant/tool payloads reduced to call
identity so the expected output replays on macOS and Linux. It excludes
the dynamic runtime-context snapshot, which the same composition emits
on macOS and not on Linux (#2488).
AGENTS.md and the testing policy name both SDKs as independent
projections of the agent loop, session lifecycle, and SessionEventMap.
Two new QuestionComposer cases: the collapse toggle hides the option list
and leaves the header strip, and collapsing between answering preserves
both the picked draft and the current question position through a full
submit; re-expanding does not steal focus back into the textarea. Refresh
the question-composer and steering web e2e goldens for the new header
button.
The ask-user takeover rendered the pending question set as a bottom card
capped at min(60vh, 520px) with no way to reduce it, which buried the
conversation above while the user decided. Add a minimize toggle next to
the dismiss action: collapsed, the card becomes a header strip (title plus
the two icon buttons) and the option body and footer unmount; expanding
restores the full card. Drafts and the current question index live in
QuestionFlow local state, so collapse/expand never loses them. The
free-form textarea autofocuses only on first presentation, so re-expanding
does not steal focus from the toggle.
Agent Note: .agents/notes/implemented/feature/2026-08-11-collapsible-ask-user-question-card.{md,zh.md,i18n.yaml}
A max-tokens response that included a tool call persisted assembler-transformed
content next to replay metadata projected from the untransformed native message,
so the next request died in history reconstruction with INVALID_REPLAY_STATE and
the session stayed permanently stuck.
Write side: the finish chunk's replayState becomes a typed ReplayEnvelope —
opaque response-level metadata plus optional per-block entries aligned with the
emitted block sequence. BlockAssembler computes one keep/drop decision for
blocks and entries together, so stored metadata always describes stored content
and retained blocks keep their signatures. pi-ai splits its state into a
version-2 response half and per-block signature entries.
Read side: durable content is authoritative. toPiAssistant degrades any
unusable state — foreign kind, other versions (including the flat v1 form
already on disk), malformed metadata, or content/block mismatches — to the
existing provider-neutral conversion with an onReplayDegrade diagnostic instead
of failing the request, which un-bricks sessions poisoned before this change.
Covered by assembler and replay unit tests, an agent-loop continuation
regression, keyless real-composition continuation tests (native pruned-envelope
replay and legacy flat-state degrade), and the authored keyless snapshot
scenario max-tokens-continue through the assembled ACP app.
tool-bash-persistent overwrote the backend's PS1, so terminal-bash prompt
readiness never matched and every send degraded to the 3.5s silence tier
(idleSilenceMs + handoffGraceMs) under production defaults.
The controlled PROMPT_COMMAND now re-asserts PS1 before every prompt, so an
in-shell override never survives to the next prompt. The tool initializes
with stty -echo alone and detects the no-end-marker fallback through the
seam's stdin_read wait reason instead of matching its own prompt text.
Tool calls drop from 7180/3560/3566 ms to 355/88/91 ms (spawn+init+echo,
echo, pwd; darwin, production defaults). The loader composition suite now
pins the fast path by pushing idleSilenceMs beyond the send bound, and a
real-PTY case proves PS1 self-healing.
Fixes#2585
The shell's Vite config aliases a few workspace packages to source; every other
workspace name resolved through node_modules to a lib/ entry the real build has
emitted but a clean checkout has not, so the generator only worked on a built
tree — and a static gate has to pass on a clean one. The dry run now supplies
source aliases for the names the shell leaves out.
Aliases rather than the recorder's resolveId hook, because Vite resolves a
stylesheet @import through aliases alone, and the theme package publishes its
stylesheets from lib/styles/. lib/ is compiled from src/, and the recorded set is
identical either way: 24 packages on a built tree and on a clean one.
Moving react, shiki, katex and the markdown pipeline to devDependencies took
them out of the notices runtime tier, which tiers by declaring section — yet
their code is inside lib/client.js and the shell dist. The generator now learns
what the browser artifacts carry from the real build configs: each client bundle
through its own tsdown config, the shell through apps/web's Vite config, with a
recorder that resolves each bare specifier, notes the package behind it, and
stops there. About three seconds, and only packages a resolved file backs, so a
bundler's virtual module is not mistaken for a shipped one.
Net effect on the file: the type-only packages @types/mdast and
micromark-util-types move to the development tier, because neither ships code.
A package a published browser artifact carries is a runtime disclosure whatever
section declares it, and the build answers which ones those are. Record that
clause, the dry run behind it, why a bundler's virtual module is not a shipped
package, why a types-only package is not either, and the generator run cost the
dry run adds.
react, react-dom, shiki, katex, clsx, the micromark and mdast families and nine
more reach only browser artifacts, which resolve nothing on a user's machine.
Moving 79 declarations out of dependencies and non-optional peerDependencies
drops 103 tarballs and 6.05 MB from an install of the published CLI.
verify-client-runtime-deps walks each package's host and browser faces from the
entries its manifest publishes, over the bound host and client Programs, and
reports an external package no host-face reference reaches. Wired into hygiene.
A workspace name is out of scope: it also states which package supplies an
injected service or a mounted Remote contribution, and the app installs it
either way. A package whose published Node entry has no source counterpart is
skipped and named, because a generated artifact carries imports no source
states.
Browser artifacts resolve nothing on a user's machine: tsdown inlines every
non-platform specifier, the shell dist answers the rest from its frozen module
table, and Vite inlines the shell's own imports into the published dist. Record
the resulting declaration rule, and the Agent Note behind it.
A dsh publication uploads 221 packages one at a time, spaced apart, and
the log gave no way to tell how far along a run was: every line named a
package, none said where that package sat in the set.
Each per-package line now carries [n/total]. Every entry in the order
settles as either published or already present, so the counter is both
"packages settled" and "position in the publish order", and the closing
summary names the member count alongside the published and skipped
totals.
Three corrections from review, none of which change behaviour.
attemptStreaming promised output "as the command produces it", which
spawnSync cannot do: it returns only after the child exits, and the two
streams are echoed one after the other, so their interleaving is lost.
For an npm publish that is visible — notices go to stderr while the
`+ name@version` confirmation goes to stdout, so the confirmation prints
first. The helper is now attemptEchoed and its contract says buffered,
echoed after exit, stdout before stderr; live progress would need an
asynchronous spawn with data listeners.
The traversal comment claimed a node on the stack is a cycle only peer
edges can form, and that skipping it drops just that edge. The cycle does
carry a peer edge, because the install edges were proved acyclic a moment
earlier, but the back edge that reaches the stacked node need not be the
peer one — which is what the post-condition exists to catch, so the
comment now points at it instead of asserting an invariant the traversal
does not have.
The `if (placed.has(member.name)) return` after leaving the stack was
unreachable: a re-entrant visit returns at the top guard while the member
is on the stack, so it can never be placed by the time the recursion
unwinds.
A dependency in optionalDependencies, or a peer carrying
peerDependenciesMeta.<name>.optional, may be absent from an installed
tree — that absence is the whole promise of "optional". A static import
is evaluated when the importing module loads, so one absent package
stops being "this capability is unavailable" and becomes a load failure
for everything that reaches the importing module.
Nothing checked it, and nothing here could: the failure needs an
installed tree missing that package, and a workspace install always has
every package, so the unit tests, the snapshots, and the packed-install
probe all pass while the published package is broken for the consumer
who declined the optional peer.
verify-optional-dependency-imports reads each package's own manifest for
what it allows to be absent, then scans the files that ship across both
compiler faces. Value-versus-type is decided against a bound Program
rather than the import syntax, because verbatimModuleSyntax is off: the
compiler already erases an import whose bindings resolve to types, so a
syntactic rule would report four forms that emit nothing. Only the type
phase erases an import — `import defer` still resolves and links its
module, deferring evaluation alone — which is what phaseModifier
expresses and the deprecated isTypeOnly cannot.
A violation names the package, the declaration that made it optional,
and the way out in order: import it as a type, or restructure so module
scope does not need it. A dynamic import() only moves the failure to
first use, so the gate does not offer it as the remedy.
The gate runs in ci-static and ci-primary through ciSharedStaticGates
and locally in hygiene; it needs no build. TypeScriptProject gained a
face parameter so a repository-wide gate can seed the client aggregate,
which was previously unreachable; the constraint it was built with is
unchanged, a face config and never the root solution.
The tree has no violation today, so this guards the rule rather than
fixing a defect. The spec pins all seven import forms against what tsc
emits, including the four a syntactic rule would misreport.