deepseek-harness/docs/core-data-structures/web.md

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# Web Access
2026-07-01 17:08:53 +08:00
The web access seam — a [capability seam](../rfc/implemented/architecture/2026-06-24-web-capability-seam.md) that spans **two capabilities** (search and fetch) on one `ctx.web` service, split across packages: interface ([dsh-web](../../packages/web/web), `ctx.web` + the provider registries), implementations ([dsh-web-search-exa](../../packages/web/web-search-exa), [dsh-web-search-perplexity](../../packages/web/web-search-perplexity), [dsh-web-search-deepseek](../../packages/web/web-search-deepseek), [dsh-web-fetch-local](../../packages/web/web-fetch-local)), and consumer ([dsh-tool-web](../../packages/web/tool-web), the `web_search`/`web_fetch` tool schemas). Web is **one optional capability**, not part of the agent-loop spine — so its vocabulary lives here, not in [core.md](core.md). A search-provider swap does not change how the model asks for a query, and a fetch-implementation swap does not change how the model asks for a URL.
Source: [`packages/web/web/src/types.ts`](../../packages/web/web/src/types.ts)
## Why one seam for two capabilities
Search and fetch share no request schema and no business logic, but they are deliberately one `ctx.web` middle layer: one provider-selection policy owner, one abort/error vocabulary, one product-facing "how this harness reaches the web" config surface. The cost is the parallel `searchX`/`fetchX` method pairs on the service; that parallelism is intentional, not a missed extraction. Providers register **capabilities** (a `WebSearchProvider` or `WebFetchProvider`), not tools; the model-facing names, schemas, prompt guidance, and presentation all live in the single `dsh-tool-web` consumer.
## Search request and result
Expose audited hardcoded tunables as plugin config The audit swept every packages/*/* plugin for the new AGENTS.md convention (no hardcoded tunables in plugins) and exposes each finding as a defaulted, validated Config field. Defaults are the previously hardcoded values throughout, so no deployment or golden changes. - tool-fs (had NO Config): readLimit, readMaxLineLength, readMaxBytes, readStreamMinSize. The caps thread through ReadToolCaps/ReadWindow — read-render already documented that the consumer applies the caps, so they become explicit per-request fields. - tool-web: searchMaxResults (WEB_SEARCH_MAX_RESULTS stays as the schemastery default). Also fixes the stale GREP_LIMIT references in search.ts and the web-capability-seam RFC (no such constant exists). - bash-local: graceMs (SIGTERM->SIGKILL escalation grace). The RunInternals.graceMs test seam is gone: graceMs is now a required SpawnSpec field filled from config, so tests exercise the real config path and the defaults live in exactly one place. - subagent-acp: disposeEofGraceMs / disposeGraceMs. The AcpRunSpec fields become required for the same one-defaulting-layer reason. - session-persistence-sqlite: journalMode ('wal' default; the rollback-journal modes serve filesystems where WAL's shared-memory files do not work, e.g. network mounts). - hooks-claude + hooks-codex: stderrSummaryMaxChars for the persisted hook/result stderr summary. The duplicated summarize() helpers merge into hook-protocol's summarizeStderr(stderr, maxChars), beside the HookResultRecord field it feeds, with the bound parameterized the same way runHook's defaultTimeoutMs already is. - compact-basic: charsPerToken for the token estimator (default 4, the English-text heuristic; CJK-heavy deployments need ~1-2 or compaction fires far too late). Also corrects the BasicCompactService class doc, which claimed defaults the required-field config never had. - fs-local: deletes the dead STREAM_MIN_SIZE constant and the dead FsIoInternals.streamMinSize seam — the read-routing bound lives in the consumer (tool-fs), where it is now config. This is item 1 of the proposed prune-write-only-fs-surface RFC, annotated accordingly. Every new field gets range validation (following the existing assertPositiveFinite pattern), a README row, and tests covering the configured behavior, the schema default, and load-time rejection.
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The model-facing tool argument is just a `query`; `maxResults` is a consumer-owned bound (`dsh-tool-web`'s `searchMaxResults` config, default `8`) passed through the seam and enforced on the way back — if a provider over-returns, the seam truncates `sources[]` and sets `truncated`.
```ts type-equiv
/**
* What one search-capable backend can return. The model-facing argument is just
* a query; `maxResults` is a `dsh-tool-web`-layer bound passed through unchanged
* and enforced on the way back by the seam (see {@link WebSearchResult}).
*/
interface WebSearchRequest {
readonly query: string
/**
* Upper bound on returned sources; the seam truncates to it. Omitted = no
* bound. `dsh-tool-web` always sets it. A provider whose API supports a
* result-count control (Exa's `numResults`) should apply it at the request
* layer as a cost/latency optimization; the seam enforces the bound
* regardless.
*/
readonly maxResults?: number
}
```
```ts type-equiv
/**
* Normalized search outcome. `content` is optional provider-generated answer
* text or summary (Exa returns none; Perplexity returns a generated answer).
* `sources[]` is the portable citation surface. `truncated` is set by the seam
* when it cut `sources[]` down to `maxResults`.
*/
interface WebSearchResult {
/** Optional provider-generated answer text, search context, or summary. */
readonly content?: string
/** Citeable sources, already truncated to the request's `maxResults`. */
readonly sources: readonly WebSearchSource[]
/** True when the seam dropped sources to honor `maxResults`. */
readonly truncated: boolean
}
```
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`content` is optional provider-generated answer text (Exa and DeepSeek return none; Perplexity returns a generated answer). `sources[]` is the portable citation surface. A source always has a `url`; `title`/`snippet`/`publishedAt` are optional because not every provider returns them — Perplexity citations may be URL-only, and forcing adapters to invent the rest would make the seam lie. `dsh-tool-web` renders `title ?? hostname(url)`.
```ts type-equiv
/**
* One citeable source. A source always has a URL; `title`, `snippet`, and
* `publishedAt` are optional because not every provider returns them — forcing
* adapters to invent them would make the seam lie (Perplexity citations may be
* URL-only). `dsh-tool-web` renders `title ?? hostname(url)` for display.
*/
interface WebSearchSource {
readonly url: string
readonly title?: string
readonly snippet?: string
/** Publication/crawl timestamp as a provider-supplied ISO-8601 string. */
readonly publishedAt?: string
}
```
## Fetch request and result
```ts type-equiv
/**
* What one fetch-capable backend is asked to retrieve. The request deliberately
* omits timeout, format, prompt, and extraction controls: cancellation is a
* direct execution argument, while presentation and higher-level LLM concerns
* belong outside safe retrieval.
*/
interface WebFetchRequest {
readonly url: string
}
```
HTTP status is part of the fetched resource state, not automatically a failure: a successful network fetch of a `404`/`500` returns a `WebFetchResult` with the status code and a bounded decoded body. `url` is the final URL after allowed redirects. `WebError` is reserved for failures to safely retrieve or represent the resource.
```ts type-equiv
/**
* Normalized fetch outcome. A successful network fetch of a non-2xx response is
* a result, not an error: the status code is part of the fetched resource
* state. {@link WebError} is reserved for failures to safely retrieve or
* represent the resource.
*/
interface WebFetchResult {
/** The final URL after allowed redirects (the request URL is in the request). */
readonly url: string
/** HTTP status code of the fetched response. */
readonly statusCode: number
/** Decoded body, classified by content kind. */
readonly body: WebFetchBody
/** True when the provider capped the decoded body. */
readonly truncated: boolean
}
```
`WebFetchBody` is a **closed** discriminated union owned by `dsh-web` (not a merge-extensible map): the provider decodes the kind and `dsh-tool-web` renders it, so a new kind is a coordinated change across known packages, not a plugin extension. Consumers `switch` on `kind` ending in `default: assertNever(...)`, so adding a kind breaks compilation at every consumer until handled. Each arm stays its own object literal even where fields coincide today, leaving room for arm-specific fields later (a future `pdf` body's `pageCount`).
```ts type-equiv
/**
* The decoded body of a fetched resource. A CLOSED discriminated union owned by
* `dsh-web`: the provider decodes the kind and `dsh-tool-web` renders it, so a
* new kind is a coordinated change across known packages, not a plugin
* extension. Consumers `switch` on `kind` ending in `default: assertNever(...)`
* so adding a kind breaks compilation at every consumer until handled. Each arm
* stays its own object literal even where fields coincide today, leaving room
* for arm-specific fields later (a `pdf` body's `pageCount`).
*/
type WebFetchBody =
| { readonly kind: 'html'; readonly content: string }
| { readonly kind: 'text'; readonly content: string }
```
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## Provider availability
2026-07-14 04:17:38 +08:00
A provider's `available(): boolean` 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 or ambiguous candidate set) in its code and message.
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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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.
## Errors
`WebError extends HarnessError` ([core.md](core.md) error taxonomy) with a `code: string` (open, like every other seam's error — `LlmError`, `SubagentError`), not a closed union: a provider may raise its own codes without editing `dsh-web`, and consumers must tolerate an unknown code. The codes split by owner. Seam-neutral codes are raised by `WebService` selection and the shared contract: `WEB_PROVIDER_UNAVAILABLE`, `WEB_PROVIDER_CONFIGURED_MISSING`, `WEB_PROVIDER_CONFIGURED_UNAVAILABLE`, `WEB_PROVIDER_AMBIGUOUS`, `WEB_DUPLICATE_PROVIDER` (a registration-time programming error, the analogue of `LlmService`'s `DUPLICATE_ADAPTER`), `WEB_ABORTED`, and `WEB_PROVIDER_ERROR` (the catch-all for a provider's own failure surfaced through the seam, including network/transport failure — DNS, connection refused, TLS). Fetch-transport codes are owned by the `dsh-web-fetch-local` implementation and a different fetch backend need not raise them: `WEB_INVALID_URL`, `WEB_BLOCKED_URL`, `WEB_REDIRECT_BLOCKED`, `WEB_FETCH_TOO_LARGE`, `WEB_FETCH_TIMEOUT`, `WEB_UNSUPPORTED_CONTENT_TYPE`.
## The service
`WebService` registers search and fetch providers, rejects duplicate ids with `WEB_DUPLICATE_PROVIDER`, and resolves providers at execution time with structured selection errors. The local fetch backend accepts only HTTP(S), rejects credentials, caps redirects, bytes, characters, and time, revalidates every same-origin redirect hop, and decodes the body; the tool owns presentation. Private-network blocking is deferred, so do not enable `web_fetch` where it can reach sensitive internal targets.