refactor(web): drop the unconsumed observation surface
WebService exposed an observation surface nothing in production observes: the web/providers-change event (declared, emitted on every provider registration/disposal, rollback-yield ordered before the emit solely so a throwing change listener unwinds the registration) and the aggregated searchStatus()/fetchStatus() query with its WebCapabilityStatus union. dsh-tool-web executes through ctx.web.search()/fetch() and routes on the structured WebError codes selection throws at execution time; tool registration follows product enablement, not provider availability. The only listeners/callers were the web packages' own tests, and the tool-web README / architecture.md prose claiming the tool 'reads only the aggregated searchStatus()/fetchStatus()' had drifted from the call sites. Remove the event declaration, both emits, and the rollback-before-emit machinery (the plain ctx.effect disposer keeps HMR cleanup, matching LlmService.registerAdapter). Remove searchStatus()/fetchStatus(), resolveStatus(), and WebCapabilityStatus; the provider-private status() stays as the execution-time selection input. Delete the listener-throw rollback test, and rewrite every event/status assertion across the web packages' tests onto caller-observable behavior: a successful search()/fetch() or the structured WEB_PROVIDER_* codes. Regenerate the cordis catalog; update the web/tool-web READMEs, the architecture.md web paragraph, core-data-structures/web.md, and the type-equiv manifest; amend the web capability seam RFC's facts to the shipped surface. This follows the llm/adapter-change precedent: a boot-time backend-registry signal and an availability probe distinct from executing both sit on the cut side of its keep/cut criterion. RFC: docs/rfc/implemented/simplification/2026-07-04-drop-unconsumed-web-observation-surface.md
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@@ -73,9 +73,9 @@ type WebFetchBody =
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| { readonly kind: 'text'; readonly content: string }
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```
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## Provider and capability status
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## Provider status
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A provider's `status()` is a cheap LOCAL check (credential presence, parseable config) and **must not make network calls**. It is an input to selection, not a health system.
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A provider's `status()` is a cheap LOCAL check (credential presence, parseable config) and **must not make network calls**. It is an input to execution-time selection, not a health system: `search()`/`fetch()` read it to pick a usable provider, and a selection failure surfaces as the structured `WebError` the caller routes on — which carries the branchable detail (the missing id, the ambiguous candidate set) in its code and message.
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```ts type-equiv
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type WebProviderStatus =
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@@ -83,15 +83,7 @@ type WebProviderStatus =
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| { readonly available: false; readonly reason: 'missing-credential' | 'misconfigured' }
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```
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The service aggregates provider status into a `WebCapabilityStatus`: whether the capability has a selected usable provider, or the broad category in which selection fails. It carries the winning `providerId` on the available branch but NOT the per-reason payload (the missing id, the ambiguous set) — that branchable detail lives in the thrown `WebError`, the surface callers route on, so the same fact never gets two homes that can disagree.
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```ts type-equiv
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type WebCapabilityStatus =
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| { readonly available: true; readonly providerId: string }
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| { readonly available: false; readonly reason: 'none' | 'configured-missing' | 'configured-unavailable' | 'ambiguous' }
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```
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Selection never depends on registration, config, or HMR order: a capability has an explicit provider id (config `searchProvider`/`fetchProvider`, or the matching env var feeding the same field), or auto-selects when exactly one usable provider is registered; multiple usable providers with no configured id is `ambiguous`, not first-wins.
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Selection never depends on registration, config, or HMR order: a capability has an explicit provider id (config `searchProvider`/`fetchProvider`, or the matching env var feeding the same field), or auto-selects when exactly one usable provider is registered; multiple usable providers with no configured id is `WEB_PROVIDER_AMBIGUOUS`, not first-wins.
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## Errors
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@@ -99,4 +91,4 @@ Selection never depends on registration, config, or HMR order: a capability has
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## The service
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`WebService` (`ctx.web`, defined in [`packages/web/web/src/index.ts`](../../packages/web/web/src/index.ts)) is a provider registry plus a provider-selecting execution surface, close to `LlmService`'s shape: `registerSearchProvider`/`registerFetchProvider` (duplicate ids throw `WEB_DUPLICATE_PROVIDER`, return disposers, emit `web/providers-change`), `searchStatus`/`fetchStatus` (derived, never stored), and `search`/`fetch` (resolve the provider at call time, throw a structured `WebError` when the capability cannot run). Providers issue requests with the platform-native `fetch` (Node 24), mirroring `dsh-llm-deepseek`; the `dsh-web-fetch-local` provider owns safe retrieval (http/https-only, credential rejection, byte/char/timeout/redirect caps, same-origin-only redirects with per-hop re-validation, charset decoding) while `dsh-tool-web` owns presentation (HTML→markdown). SSRF / private-network blocking is deferred (see the RFC) — until it lands, `web_fetch` must not be enabled where it can reach sensitive internal targets.
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`WebService` (`ctx.web`, defined in [`packages/web/web/src/index.ts`](../../packages/web/web/src/index.ts)) is a provider registry plus a provider-selecting execution surface, close to `LlmService`'s shape: `registerSearchProvider`/`registerFetchProvider` (duplicate ids throw `WEB_DUPLICATE_PROVIDER`, return disposers) and `search`/`fetch` (resolve the provider at call time, throw a structured `WebError` when the capability cannot run). Providers issue requests with the platform-native `fetch` (Node 24), mirroring `dsh-llm-deepseek`; the `dsh-web-fetch-local` provider owns safe retrieval (http/https-only, credential rejection, byte/char/timeout/redirect caps, same-origin-only redirects with per-hop re-validation, charset decoding) while `dsh-tool-web` owns presentation (HTML→markdown). SSRF / private-network blocking is deferred (see the RFC) — until it lands, `web_fetch` must not be enabled where it can reach sensitive internal targets.
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