Utah Code

io.github.pipeworx-iov0.1.0更新於 Oct 10, 2026

Utah Code — state statutes by citation, plus topic search.

已驗證Streamable HTTP可網頁執行Knowledge & Memory

概覽

AI 產生的概覽

讓助理依引文查詢猶他州法典條文,取得生效日期與修正沿革,並可用關鍵字檢索整部法典。

功能
提供兩個工具:ut_code_section 依引文回傳猶他州法典某條的全文,並附上生效日期與修正沿革;ut_code_search 對整部法典進行全文關鍵字或主題檢索,每筆結果回傳引文、標題與網址。資料來自 le.utah.gov 的公開條文檢視頁與其內容文件,以及該網站免金鑰的 Solr 搜尋代理。不提供已被取代的歷史全文,只有現行版本以及先前修正的引文紀錄。
適用情境
適合需要引用或核對猶他州現行法條、解析如 76-5-203 這類引文,或依主題查找條文的情境。它屬於單一司法管轄區的法律參考,而非通用的法律研究工具。
執行需求
遠端 streamable HTTP 端點位於 gateway.pipeworx.io,最初幾次呼叫不需要帳號或 API 金鑰。也可透過 npm 套件 @pipeworx/mcp-utah-code 以本機 stdio 方式執行,需要 Node.js 與 npx。需要能連線至該閘道以及 le.utah.gov。
安裝前請注意
僅供唯讀查詢,不會寫入、傳送或刪除資料。閘道連線還會暴露 Pipeworx 共用中繼工具,包括 ask_pipeworx 路由與 remember/recall,因此列出的工具數量多於本套件自身的工具,連線 initialize 回應中的範圍才是權威說明。此整合為非官方,與上游提供者無隸屬關係,且只回傳現行條文內容,不含已被取代的版本。

安裝

在 SourceWeft 中

  1. 開啟 儀表板中的 Utah Code,將其新增到工作區。
  2. 為需要使用其工具的對話啟用該服務。

Web executable,透過 Streamable HTTP。 遠端服務在工作區中設定後即可從網頁執行環境執行。

其他 MCP 客戶端

把它新增到你客戶端的 mcpServers 設定中。

{
  "mcpServers": {
    "utah-code": {
      "type": "http",
      "url": "https://gateway.pipeworx.io/utah-code/mcp"
    }
  }
}

README

@pipeworx/utah-code

Utah Code — state statutes by citation, full text plus effective date and amendment history, and topic/keyword search across the whole Code.

Part of Pipeworx — an MCP gateway connecting AI agents to 1764+ live data sources. This is an independent, unofficial integration — not affiliated with, endorsed by, or published by the upstream provider.

Tools

  • ut_code_section(section) — full text of a Utah Code section by citation (e.g. "76-5-203", "53-5a-102.2"), with its effective date and amendment history (e.g. "Amended by Chapter 356, 2026 General Session"). Does NOT return superseded/historical full text — le.utah.gov's own code viewer only ever lists one "Current Version" per section; only the amendment citation survives for a prior change, not the prior text.
  • ut_code_search(query, limit?) — full-text keyword/topic search across every Utah Code section, returning citation + title + url for each hit.

Auth

Keyless.

Data sources

  • https://le.utah.gov/xcode/TitleNN/ChapterMM/NN-MM-Sxxx.html (e.g. Title76/Chapter5/76-5-S203.html) — the public section VIEWER page. It is a template whose statute text is injected by client-side JS, so a bare fetch returns only the chrome — but the page's inline script block always carries a line of the form var versionDefault="C76-5-S203_2026050620260506";, which names the current version's content document. No bot wall: a bare default UA gets the same 200 a browser does, this pack just sends an honest one anyway.
  • The content document named by versionDefault, in the SAME directory with .html appended (e.g. C76-5-S203_2026050620260506.html) — the actual statute text. Plain, un-rendered HTML (no JS): a breadcrumb trail, an "Effective MM/DD/YYYY" line, the statute body as nested HTML-table rows with the subsection letters ("(1)", "(a)", "(i)") printed as literal cell text, and a trailing "Amended by Chapter N, YYYY General Session" history note. The SAME document is also published as PDF / RTF / XML (same basename, different extension) — the XML is cleaner markup but drops the subsection letters as literal text (they live only in a number attribute instead), which is why this pack reads the plain-HTML fragment rather than the XML.
  • https://le.utah.gov/servlet/solrproxy9 — the keyless Solr proxy backing le.utah.gov's own "Keyword Search" nav link for the Code (/solrsearch.jsp?ktype=Code), called directly rather than through that JS-rendered results shell. fq=category:Code scopes it to statute text; without that filter it searches bills, committee docs, and more. Known quirk, not documented anywhere on the site: the proxy decodes its own query params and forwards them to an internal Solr server (LESOLR:8080) WITHOUT re-encoding, so a literal space in q becomes a literal space in the upstream HTTP request line and Solr 400s on it. Multi-word queries need the space DOUBLE-encoded as %2520 (which decodes once, server-side, to the still-valid string %20) rather than the normal %20/+ — single-word queries work either way. The gate did not need to forge an identity: an honest UA and a GET is all it takes.

Both the viewer-page quirk and the Solr double-encoding quirk were found by probing live with curl before writing any code — the August state-law survey had filed Utah as "client-rendered or bot-walled" on the strength of the viewer page alone.

Reachability — this pack goes through the egress relay

le.utah.gov serves a leaf-only TLS chain (its Sectigo "Public Server Authentication CA OV R36" intermediate is missing), and a live Cloudflare Worker answers HTTP 526 "Invalid SSL certificate" — 3/3 on 2026-10-07, 5/5 on 2026-10-06. A Worker's fetch() has no API to supply a missing intermediate, so every request routes through supabase/functions/egress-proxy, whose PINNED_CA map completes the chain with the authentic intermediate fetched from the AIA URI in le.utah.gov's own leaf. Certificate verification is never disabled — the chain is completed, not skipped.

The gateway injects _proxyUrl/_proxyToken for this slug (workers/gateway/src/index.ts). Without that injection the pack is not slow or partial, it is 100% dark, so the slug must stay on that list.

Why mcps/who-euro works directly and this does not

Both hosts are leaf-only with sibling Sectigo R36 intermediates off the same Root R46, so the chain shape is not what Cloudflare objects to. Measured from one Worker in one run, 2026-10-07:

HostResultIntermediate
le.utah.gov526 ×3Sectigo CA OV R36
dw.euro.who.int404 ×3 — an application-layer answer, so TLS completedSectigo CA DV R36
example.com200 ×3control

Cloudflare completes some missing intermediates from its own cached pool and not others. DV R36 is far more widely deployed than OV R36, which is the likely reason, but the mechanism is CF-internal and not inspectable — treat it as measured per host, never predicted.

The one-minute diagnostic for the next pack with this shape

bash
openssl s_client -connect <host>:443 -servername <host> -showcerts \  2>/dev/null | grep -c 'BEGIN CERT'      # 1 => leaf-only chain

A local Node or Deno failure proves nothing about Cloudflare. Deno's rustls chases no AIA and caches no intermediates, so it refuses every leaf-only host — including dw.euro.who.int, which CF serves fine. Only a live wrangler dev --remote probe answers the question that matters. If it 526s, the fix is a PINNED_CA entry in the relay (one host, one authentic intermediate), not an ingest-and-store rebuild of the corpus.

Quick Start

Add to your MCP client (Claude Desktop, Cursor, Windsurf, etc.):

json
{  "mcpServers": {    "utah-code": {      "url": "https://gateway.pipeworx.io/utah-code/mcp"    }  }}

What this endpoint actually serves

tools/list at https://gateway.pipeworx.io/utah-code/mcp returns the tools in the table above plus the shared Pipeworx meta-tools — ask_pipeworx, discover_tools, search_within, remember/recall and the rest of the gateway-wide set. So the tool count you see is larger than this table: a single-pack endpoint currently lists roughly 30 shared tools alongside the pack's own. The connection's initialize response states its exact scope, and is the authoritative answer for a given day.

This is deliberate, not multiplexing by accident. The meta-tools are what let a scoped connection answer a question this pack does not cover — via ask_pipeworx, which routes across the whole catalog — without you adding a second MCP server. There is currently no way to mount a pack endpoint without them; if the extra schemas cost you more context than the routing is worth, connect to the full gateway once rather than to several pack endpoints.

Or connect to the full Pipeworx gateway to get every pack's tools listed directly, instead of just this one's:

json
{  "mcpServers": {    "pipeworx": {      "url": "https://gateway.pipeworx.io/mcp"    }  }}

Both URLs reach the same gateway and the same 1764+ data sources. The only difference is which pack's tools are listed directly; ask_pipeworx reaches all of them from either one.

No MCP client? Call it over HTTP

bash
curl -X POST https://gateway.pipeworx.io/v1/tools/ut_code_section \  -H 'Content-Type: application/json' \  -d '{"section":"76-5-203"}'

No account needed for the first calls. Inspect any tool: GET https://gateway.pipeworx.io/v1/tools/ut_code_section. Find one: POST https://gateway.pipeworx.io/v1/tools/search_packs with {"query":"..."}.

Standalone (no gateway account)

This package also runs as a local stdio MCP server — no Pipeworx account, no gateway round-trip:

json
{  "mcpServers": {    "utah-code": {      "command": "npx",      "args": ["-y", "@pipeworx/mcp-utah-code"]    }  }}

Or run it directly to confirm it starts:

bash
npx -y @pipeworx/mcp-utah-code

It speaks MCP over stdin/stdout and answers initialize/tools/list/tools/call for only this pack's tools — none of the shared meta-tools the gateway connection above adds. Same source, same tools, no ask_pipeworx routing.

Using with ask_pipeworx

Instead of calling tools directly, you can ask questions in plain English — this works on the pack endpoint above as well as on the full gateway:

ask_pipeworx({ question: "your question about Utah Code data" })

The gateway picks the right tool and fills the arguments automatically.

More

License

MIT

來源:README.md,提交 c6291b9

工具

0
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版本歷史

1
  1. v0.1.0最新Oct 10, 2026