PageSpeed Insights MCP Server
PageSpeed Insights MCP Server
Servidor MCP de seis herramientas para las APIs de Google PageSpeed Insights y Chrome UX Report. Analiza, compara y optimiza el rendimiento web directamente a través de Claude, Cursor o cualquier cliente de IA compatible con MCP.
⚡ Inicio rápido (copiar y pegar)
{
"mcpServers": {
"pagespeed-insights": {
"command": "npx",
"args": ["-y", "pagespeed-insights-mcp"],
"env": { "GOOGLE_API_KEY": "your-google-api-key" }
}
}
}Obtén una clave de API gratuita en Google Cloud Console → pégala en el claude_desktop_config.json de Claude Desktop → reinicia. Listo. (Configuración para Codex/OpenAI, Docker)
Related MCP server: page-speed-insights-mcp
🔥 Qué lo hace diferente
La mayoría de los servidores MCP de PageSpeed envuelven una herramienta: «ejecutar PSI en una URL». Este servidor incluye seis herramientas de flujo de trabajo que cubren el flujo de trabajo completo de rendimiento: no solo una puntuación, sino un plan de acción:
Kit completo: análisis de páginas, datos de usuarios reales de CrUX (URL + origen), auditorías de Lighthouse, comparación multipágina y por lotes, líneas base y seguimiento de regresiones
Diagnósticos avanzados: análisis a nivel de elemento, de red, de JavaScript, de optimización de imágenes, de bloqueo de renderizado y de impacto de terceros
Resultados accionables: un motor de recomendaciones que convierte los datos sin procesar de Lighthouse en correcciones priorizadas, además del análisis visual de capturas de pantalla
Extras prácticos: caché para ejecuciones repetidas y recomendaciones inteligentes ajustadas para que los agentes de IA actúen sobre ellas
Probado en batalla: publicado en npm, incluido en el Registro Oficial de MCP y en Glama, probado con CI mediante Vitest
🎬 Ver demo interactiva → — Mira las herramientas en acción con ejemplos animados URL alternativa: https://ruslanlap.github.io/pagespeed-insights-mcp/demo.html
📖 Índice
⚙️ Configuración del cliente
Claude Desktop
Añade lo siguiente a tu claude_desktop_config.json:
{
"mcpServers": {
"pagespeed-insights": {
"command": "npx",
"args": ["-y", "-p", "pino-pretty", "-p", "pagespeed-insights-mcp", "pagespeed-insights-mcp"],
"env": {
"GOOGLE_API_KEY": "your-google-api-key-here"
}
}
}
}Codex / OpenAI
Añade a tu configuración (TOML):
[mcp_servers.pagespeed-insights]
command = "npx"
args = [
"-y",
"-p",
"pino-pretty",
"-p",
"pagespeed-insights-mcp",
"pagespeed-insights-mcp"
]
env = { GOOGLE_API_KEY = "your-google-api-key-here" }Nota: El paquete
pino-prettyes necesario para un formateo correcto de los registros. Las configuraciones anteriores garantizan que se instale automáticamente mediantenpx.
Para Grok Build (config.toml)
Añade a ~/.grok/config.toml (global) o <repo>/.grok/config.toml (a nivel de proyecto, con mayor prioridad):
[mcp_servers.pagespeed-insights]
command = "npx"
args = ["-y", "-p", "pino-pretty", "-p", "pagespeed-insights-mcp", "pagespeed-insights-mcp"]
env = { GOOGLE_API_KEY = "${GOOGLE_API_KEY}" }
enabled = true
# Recommended companion professional MCPs (add once):
# [mcp_servers.github] — PRs, issues, code search
# [mcp_servers.context7] — fresh library docs (Upstash)
# [mcp_servers.serena] — semantic code intelligence (uses your .serena/ if present)Ejemplo a nivel de proyecto (colócalo en .grok/config.toml de este repositorio para usar dist/index.js local + una Serena más estricta):
[mcp_servers.pagespeed-insights]
command = "node"
args = ["/home/ubuntuvm/Projects/pagespeed-insights-mcp/dist/index.js"]
env = { GOOGLE_API_KEY = "${GOOGLE_API_KEY}", NODE_ENV = "development" }Verificación dentro de la sesión de Grok:
/mcps(o Ctrl+L → pestaña MCP) → asegúrate de que pagespeed-insighs appears como «running»Usa las herramientras:
pagespeed-insights__pagespeed_analyze_page,pagespeed-insights__pagespeed_get_field_data, etc. (con espacio de nombres)
📊 Ejemplo de salida
Resultados reales de pagespeed_analyze_page para github.com — una ejecución móvil de Lighthouse. Los números de CrUX provienen de pagespeed_get_field_data con scope: "origin":
Puntuaciones de laboratorio de Lighthouse:
Categoría | Puntuación | Estado |
Rendimiento (móvil) | 54/100 | 🔴 Malo |
Rendimiento (escritorio) | 52/100 | 🔴 Malo |
Métricas principales (móvil):
Métrica | Valor | Evaluación |
First Contentful Paint | 11.9 s | 🔴 Malo |
Largest Contentful Paint | 13.4 s | 🔴 Malo |
Total Blocking Time | 30 ms | 🟢 Excelente |
Cumulative Layout Shift | 0.07 | 🟢 Bueno |
Speed Index | 11.9 s | 🔴 Malo |
Datos de campo de CrUX — usuarios reales, origen github.com (móvil):
Métrica | p75 (usuarios reales) |
First Contentful Paint | 1.9 s |
Largest Contentful Paint | 2.2 s |
Interaction to Next Paint | 243 ms |
Cumulative Layout Shift | 0.02 |
Los resultados varían entre ejecuciones: los datos de laboratorio de Lighthouse son ruidosos (una sola ejecución es una muestra). Usa
runs: 3-5para obtener medianas.Laboratorio vs. campo: Lighthouse limita la conexión (de ahí el 54/100 en móvil), mientras que CrUX muestra cómo lo experimentan los visitantes reales de GitHub: ambas vistas provienen directamente de las herramientas de este servidor.
📚 Documentación
Disponemos de documentación completa en línea.
👉 Ver el sitio de documentación completo
También puedes ver los archivos Markdown sin procesar en el directorio
docs/o ejecutarmkdocs servelocalmente.
📝 Notas de la versión
Versión actual: v2.0.0.
Aspectos destacados recientes:
v2.0.0 — seis herramientas
pagespeed_*orientadas a flujos de trabajo reemplazan a las 19 herramientas con forma de endpoint de la v1; todas las herramientas de datos admiten Markdown o JSON con resultados estructurados.
Las insignias de la parte superior de este README se actualizan automáticamente en cada versión (versión de npm, versión del paquete de GitHub, descargas). No se necesitan ediciones manuales.
Para ver el historial completo de versiones, consulta CHANGELOG.md.
🎯 Por qué lo necesitas
Punto crítico 1: «Mi página va lenta, pero no sé por qué». Abres PageSpeed Insights, recibes un muro de datos y aun así no sabes qué arreglar primero. Este MCP le da a tu asistente de IA seis flujos de trabajo enfocados que atraviesan el ruido: identifica los recursos exactos que bloquean el renderizado, las imágenes concretas que desperdician 2 MB, los scripts de terceros que consumen 1.5 s de tiempo del hilo principal, y los clasifica por impacto. Pregunta «¿por qué mi sitio va lento?» y obtén una lista de correcciones priorizada, no un panel de 40 métricas.
Punto crítico 2: «Llevo regresiones de rendimiento a producción». Tu equipo se mueve rápido, despliega a diario y nadie ejecuta una auditoría completa de Lighthouse antes de cada merge. Para cuando alguien nota que los Core Web Vitals han bajado, la regresión ya está en producción. Este MCP permite a cualquier desarrollador pegar una URL en Claude/Cursor y obtener una auditoría completa (datos de laboratorio, datos de campo de usuarios reales de Chrome (CrUX), depuración de CLS/LCP a nivel de elemento) en segundos. Es la diferencia entre detectar una regresión en tu escritorio y descubrirla en un mensaje de Slack del equipo de SEO tres días después.
✨ Características
Características principales
🚀 Análisis de rendimiento de páginas web mediante Google PageSpeed Insights
📱 Soporte multiplataforma: dispositivos móviles y de escritorio
🔍 Informes detallados de Lighthouse con métricas completas
📊 Informes simplificados con indicadores clave de rendimiento
🎯 Recomendaciones inteligentes con puntuación de prioridad y correcciones accionables
💾 Caché inteligente para reducir las llamadas a la API y mejorar el rendimiento
🌍 Localización: soporte para varios idiomas
⚡ Instalación rápida: configuración con un solo comando
🐳 Soporte de Docker para despliegues en contenedores
Herramientas de análisis avanzadas (¡Nuevo!)
📸 Análisis visual: capturas de pantalla, tira de fotogramas y capturas de página completa
🎯 Depuración a nivel de elemento: encuentra elementos DOM específicos que causan problemas
🌐 Cascada de red: tiempos detallados de solicitudes y carga de recursos
⚡ Perfilado de JavaScript: desglose de ejecución y detección de código no utilizado
🖼️ Optimización de imágenes: problemas específicos de imágenes con ahorros exactos
🚫 Análisis de bloqueo del renderizado: cadenas de solicitudes críticas y dependencias
🔌 Impacto de terceros: impacto de scripts agrupado por proveedor
📊 Auditorías completas: auditorías completas de Lighthouse para todas las categorías
🚀 Instalación rápida
Opción 1: Instalación automática (recomendada)
# Set environment variable
export GOOGLE_API_KEY=your-google-api-keycurl -sSL https://raw.githubusercontent.com/ruslanlap/pagespeed-insights-mcp/master/scripts/install.sh | bashEl instalador usa el paquete npm público (pagespeed-insights-mcp) de forma predeterminada. Para instalar en su lugar la compilación con ámbito de GitHub Packages, configura primero la autenticación de GitHub Packages y ejecuta:
curl -sSL https://raw.githubusercontent.com/ruslanlap/pagespeed-insights-mcp/master/scripts/install.sh | \
PAGESPEED_INSIGHTS_MCP_PACKAGE=@ruslanlap/pagespeed-insights-mcp bashOpción 2: Mediante npm o GitHub Packages
Desde npm (registro público)
# Global installation from npm
npm install -g pagespeed-insights-mcp
# Or use without installation
npx pagespeed-insights-mcpDesde GitHub Packages
# First configure authentication (see GITHUB_PACKAGES.md for details)
# Then install globally
npm install -g @ruslanlap/pagespeed-insights-mcpNota: Este paquete está disponible tanto en npm como en GitHub Packages.
Para npm: usa
npm install pagespeed-insights-mcpPara GitHub Packages: usa
npm install @ruslanlap/pagespeed-insights-mcp(requiere autenticación de GitHub)Para obtener instrucciones detalladas sobre cómo instalar desde GitHub Packages, consulta GITHUB_PACKAGES.md o visita la página de GitHub Packages
🔧 Configuración
El servidor MCP requiere una clave de API de Google para acceder a la API de PageSpeed Insights.
# Set environment variable
export GOOGLE_API_KEY=your-google-api-key
# Windows
$env:GOOGLE_API_KEY="your-google-api-key"
# Or pass directly when running
GOOGLE_API_KEY=your-google-api-key npx pagespeed-insights-mcp📝 Ejemplos de configuración de MCP
Para Claude Desktop (con registro de pino-pretty):
"pagespeed-insights": {
"command": "npx",
"args": [
"-y",
"-p",
"pino-pretty",
"-p",
"pagespeed-insights-mcp",
"pagespeed-insights-mcp"
],
"env": {
"GOOGLE_API_KEY": "your-google-api-key-here"
}
}Para Codex (con registro de pino-pretty):
[mcp_servers.pagespeed-insights]
command = "npx"
args = [
"-y",
"-p",
"pino-pretty",
"-p",
"pagespeed-insights-mcp",
"pagespeed-insights-mcp"
]
env = { GOOGLE_API_KEY = "your-google-api-key-here" }Nota: Estos ejemplos incluyen
pino-prettypara un mejor formato de los registros. Para uso en producción sin registros formateados, consulta la sección de registro a continuación.
Google Antigravity
Hay archivos de configuración de ejemplo disponibles en el directorio examples.
Opción 3: Docker
docker build -t pagespeed-insights-mcp .
docker run -e GOOGLE_API_KEY=your-key pagespeed-insights-mcp🔑 Cómo obtener la clave de API de Google
Para usar este servidor MCP, necesitas una clave de API de Google con la API de PageSpeed Insights habilitada.
[!TIP] ⚡ Enlace de configuración rápida: Puedes ir directamente a la página de configuración de credenciales de Google Cloud para crear rápidamente una clave en tu proyecto.
Guía paso a paso
Ve a la Google Cloud Console (o usa el Enlace de configuración rápida).
Crea un proyecto nuevo o selecciona uno existente.
Habilita PageSpeed Insights API:
Ve a APIs y servicios → Biblioteca.
Busca "PageSpeed Insights API" y haz clic en Habilitar.
Crea una clave de API:
Ve a APIs y servicios → Credenciales.
Haz clic en Crear credenciales → Clave de API.
Copia la clave generada y configúrala como
GOOGLE_API_KEYen tu configuración.
⚙️ Configuración de Claude Desktop
Rutas de configuración: macOS ~/Library/Application Support/Claude/claude_desktop_config.json · Windows %APPDATA%\Claude\claude_desktop_config.json · Linux ~/.config/claude/claude_desktop_config.json — consulta ⚙️ Configuración del cliente más arriba para ver el JSON. Reinicia Claude Desktop después de editar.
💻 Uso
Después de la configuración, simplemente pídele a Claude cualquiera de estos comandos:
🔍 Análisis de página completo
Analyze the performance of https://example.com📱 Análisis de dispositivos móviles
Analyze https://example.com for mobile devices with all categories⚡ Resumen rápido de rendimiento
Get a quick performance report for https://example.com🖥️ Análisis de escritorio
Analyze https://example.com performance for desktop devices🌐 Análisis multicategoría
Perform a full audit of https://example.com including SEO, accessibility, and best practices🎯 Recomendaciones inteligentes de rendimiento
Get smart recommendations for improving https://example.com performance💾 Gestión de caché
Clear the cache to get fresh data for all subsequent requests📸 Análisis visual
Get visual analysis for https://example.com showing screenshots and loading timeline🎯 Depuración a nivel de elementos
Show me which specific elements are causing performance issues on https://example.com🌐 Análisis de cascada de red
Analyze the network requests and resource loading for https://example.com⚡ Rendimiento de JavaScript
Get JavaScript execution breakdown for https://example.com🖼️ Oportunidades de optimización de imágenes
Show me which images need optimization on https://example.com🚫 Recursos que bloquean el renderizado
Find render-blocking resources on https://example.com🔌 Impacto de scripts de terceros
Analyze third-party script impact on https://example.com performance📊 Auditoría completa de Lighthouse
Run a full audit including accessibility, SEO, and best practices for https://example.comHerramientas disponibles (v2)
La versión 2 sustituye las 19 herramientas anteriores con forma de endpoint por seis herramientas de flujo de trabajo. Esto es un cambio incompatible: actualiza los prompts de los clientes MCP, las llamadas a herramientas guardadas y las integraciones para que usen los nombres siguientes. Toda herramienta que devuelve datos acepta responseFormat (markdown, por defecto, o json) y devuelve structuredContent de MCP.
Tool | Para qué se usa |
| Comprobación de estado Lighthouse de una página, informe completo, recomendaciones, hallazgos de auditoría o un mapa Mermaid ( |
| Una investigación centrada: |
| Core Web Vitals reales de usuarios de CrUX para una |
| Compara dos páginas ahora, o compara una página con su línea base guardada ( |
| Clasifica de 1 a 10 páginas con notificaciones de progreso cuando sea compatible. |
| Limpia la caché de API en memoria de este proceso después de un despliegue. |
Migración desde v1
Herramientas v1 | Reemplazo en v2 |
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| Ejecuta |
Ejemplos
{"url":"https://example.com","strategy":"mobile","report":"recommendations","responseFormat":"markdown"}{"url":"https://example.com","focus":"render-blocking","responseFormat":"json"}{"mode":"baseline","url":"https://example.com","strategy":"mobile","runs":3}Ejemplo
Ejemplo de respuesta de Claude Desktop con pagespeed-insights-mcp 🔥🔥🔥
Desarrollo
Para un mejor formato de los registros durante el desarrollo, se recomienda instalar pino-pretty de forma global:
npm install -g pino-pretty# Development mode
npm run dev
# Build project
npm run build
# Run built server
npm startRegistro / pino-pretty en entornos MCP
Este servidor MCP usa pino para el registro y habilita el transporte pino-pretty cuando NODE_ENV=development.
Si solo quieres que funcione con una configuración mínima (Claude, Codex, etc.), establece:
NODE_ENV=production GOOGLE_API_KEY=your-google-api-key npx pagespeed-insights-mcpo en tu configuración de MCP:
"pagespeed-insights": {
"command": "npx",
"args": ["pagespeed-insights-mcp"],
"env": {
"GOOGLE_API_KEY": "your-google-api-key-here",
"NODE_ENV": "production"
}
}Si quieres registros legibles en desarrollo mediante
npx, puedes hacer quenpxinstalepino-prettyjunto con el servidor:
"pagespeed-insights": {
"command": "npx",
"args": [
"-y",
"-p",
"pino-pretty",
"-p",
"pagespeed-insights-mcp",
"pagespeed-insights-mcp"
],
"env": {
"GOOGLE_API_KEY": "your-google-api-key-here"
}
}Solución de problemas
"No se ha proporcionado la clave de API de Google"
Asegúrate de que la variable de entorno GOOGLE_API_KEY esté configurada en tu configuración de Claude Desktop.
"Error de la API de PageSpeed Insights: 403"
Comprueba si la API de PageSpeed Insights está habilitada en tu proyecto de Google Cloud.
"URL no válida"
Asegúrate de que la URL incluya el protocolo; solo se aceptan http:// y https://. Otros esquemas (file://, ftp://, javascript:, etc.) se rechazan a nivel de esquema.
Requisitos
Node.js 20.19.0 o posterior (Node 18 llegó al final de su vida útil en abril de 2025 y ya no es compatible).
Una clave de API de Google con las API de PageSpeed Insights y (opcionalmente) Chrome UX Report habilitadas.
Seguridad
Por favor, informa de los problemas de seguridad de forma privada — no abras una incidencia pública. Consulta SECURITY.md para conocer la política de divulgación y las notas de endurecimiento para operadores.
Agradecimientos
Un agradecimiento especial a @engmsaleh (Mohamed Saleh Zaied) por su significativa contribución al desarrollo de este proyecto.
Un agradecimiento muy especial a @system-conf por su excepcional e inestimable contribución al crecimiento y desarrollo de este proyecto. Tu dedicación, experiencia y apoyo continuo han tenido un impacto enorme — este proyecto no estaría donde está hoy sin ti. 🙏
Licencia
Apache-2.0 — consulta LICENSE. Patentes concedidas por los contribuyentes bajo la Licencia Apache 2.0.
Soporte
Para informar de errores o solicitar funciones, por favor crea una incidencia en el repositorio.
Available Tools
6 toolspagespeed_analyze_batchAnalyze Multiple PagesARead-onlyIdempotent
Analyze 1–10 public URLs and return per-page results plus success/failure counts. Use pagespeed_analyze_page for one URL or pagespeed_compare_pages for a direct comparison. Example: triage the ten highest-traffic landing pages. Progress notifications are emitted when supported by the client.
| Name | Required | Description | Default |
|---|---|---|---|
| urls | Yes | One to ten public http(s) URLs. | |
| locale | No | BCP-47 locale such as en or uk-UA. | en |
| report | No | Per-page result detail. | summary |
| strategy | No | Lighthouse device profile. mobile is the default. | mobile |
| categories | No | Lighthouse categories to request. | |
| responseFormat | No | markdown is concise and readable; json is machine-readable and is also available as structuredContent. | markdown |
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already declare readOnly, idempotent, and non-destructive behavior. The description adds meaningful context beyond annotations: it mentions progress notifications emitted when supported by the client and notes that results include success/failure counts. This gives the agent insight into execution behavior without contradicting annotations.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is three sentences, each earning its place: purpose is front-loaded, followed by sibling routing, a practical example, and a behavioral note about progress notifications. There is zero fluff or redundancy, making it easy for an agent to parse quickly.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given six parameters with complete schema documentation, a robust output schema, and annotations covering safety (readOnly, idempotent, non-destructive), the description provides all necessary guidance for correct invocation. It covers usage, alternatives, an example, and a behavioral note—comprehensive for this tool's complexity.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The input schema has 100% description coverage for all six parameters, including units, defaults, and constraints. The tool description adds no additional parameter-level guidance, but since the schema fully documents semantics, the baseline of 3 is appropriate. The description's mention of '1–10 URLs' aligns with schema constraints but adds no new information.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool's function: analyze 1–10 public URLs and return per-page results plus success/failure counts. It distinguishes itself from sibling tools by explicitly naming pagespeed_analyze_page for a single URL and pagespeed_compare_pages for direct comparison, making selection unambiguous.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description provides explicit routing guidance: use pagespeed_analyze_page for one URL or pagespeed_compare_pages for direct comparison. It also includes a concrete example (triage ten highest-traffic landing pages) that grounds the tool in real usage, leaving no ambiguity about when to invoke it.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
pagespeed_analyze_pageAnalyze a Page with LighthouseARead-onlyIdempotent
Run a PageSpeed Insights Lighthouse analysis for one public page. Start with report=summary for a health check; choose full for audits, recommendations for a prioritized fix list, audit for non-performance categories, or performance-map for Mermaid. Example: analyze a mobile product page and return the three most useful remediation steps. Returns a report plus structured result. The Google API is contacted and results may be served from the local cache.
| Name | Required | Description | Default |
|---|---|---|---|
| url | Yes | Public http(s) URL, for example https://example.com/products. | |
| runs | No | Distinct measurements. Use 3–5 when you need a median and spread. | |
| locale | No | BCP-47 locale such as en or uk-UA. | en |
| report | No | Amount and shape of returned insight. | summary |
| strategy | No | Lighthouse device profile. mobile is the default. | mobile |
| categories | No | Lighthouse categories to request. | |
| responseFormat | No | markdown is concise and readable; json is machine-readable and is also available as structuredContent. | markdown |
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already mark the tool read-only, idempotent, and non-destructive. The description adds that the Google API is contacted and results may come from a local cache, setting expectations about external dependency and possible staleness. No contradiction with the annotations.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Four short sentences: purpose, report-mode guidance, a concrete example, and an external-behavior caveat. Each sentence earns its place, and the core purpose is front-loaded.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
With a fully described schema, enums, annotations covering safety, and an output schema present, the only operational context an agent needs is report-mode selection and the external API/cache behavior — both provided. Nothing significant is missing for correct selection and invocation.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema coverage is 100%, so the baseline is 3. The description adds meaning by mapping report enum values to intended use cases and giving a concrete example ('analyze a mobile product page and return the three most useful remediation steps'), which clarifies strategy and report selection beyond the schema.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description opens with 'Run a PageSpeed Insights Lighthouse analysis for one public page' — a specific verb, resource, and scope. Saying 'one public page' differentiates it from batch and compare siblings, and the list of report modes clarifies its capabilities further.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description gives explicit decision rules for the report parameter ('summary for a health check', 'recommendations for a prioritized fix list'), which tells an agent which mode fits a goal. It does not mention sibling tools by name, but 'one public page' implies single-page scope versus batch analysis.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
pagespeed_clear_cacheClear Local PageSpeed CacheAIdempotent
Clear only this server process's in-memory PageSpeed response cache, forcing later analysis calls to contact Google again. Use after a deploy when a cached result is stale. It does not change the target website, files, or remote data; repeating the call is safe.
| Name | Required | Description | Default |
|---|---|---|---|
No parameters | |||
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Beyond the idempotentHint and destructiveHint annotations, the description adds valuable behavioral context: the cache is in-memory and process-local, later calls will contact Google again, and the tool does not alter the target website or remote data. This gives the agent a clear mental model of side effects.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Three compact sentences, each earning its place: the first states the action and effect, the second gives the recommended trigger, and the third clarifies safety and non-destructiveness. The most relevant information is front-loaded.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For a zero-parameter tool with an output schema and no nested objects, the description fully covers what the agent needs to decide when to call it and what to expect. No critical behavioral or scoping details are missing.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The tool has zero parameters, and schema description coverage is 100%, so there is nothing for the description to add about parameters. The baseline of 4 applies because the description correctly focuses on behavior instead.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description states a specific verb ('Clear') and resource ('this server process's in-memory PageSpeed response cache'), and explicitly contrasts the scope with other tools. This clearly differentiates it from sibling analysis tools like pagespeed_analyze_page or pagespeed_get_field_data.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description gives an explicit use case: use after a deploy when a cached result is stale. It also states what it does not do, preventing misuse. However, it does not name specific alternatives or explicitly state when not to use it, leaving a small gap.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
pagespeed_compare_pagesCompare Pages or a Stored BaselineADestructive
Compare two pages now (mode=pages) or measure one page against its locally stored baseline (mode=baseline). Baseline mode records the first call; use runs=3 or more and rely on guaranteed deltas, not medians alone. Example: compare staging against production, or verify whether a deployed fix improved mobile LCP. replaceBaseline overwrites local baseline state.
| Name | Required | Description | Default |
|---|---|---|---|
| url | Yes | Public http(s) URL, for example https://example.com/products. | |
| mode | Yes | pages compares url and against; baseline compares url to its saved measurement. | |
| runs | No | Use 2–5 for baseline mode; 3 is recommended. | |
| against | No | Second URL, required when mode=pages. | |
| strategy | No | Device profile; part of baseline identity. | mobile |
| categories | No | Lighthouse categories to request. | |
| responseFormat | No | markdown is concise and readable; json is machine-readable and is also available as structuredContent. | markdown |
| replaceBaseline | No | Only baseline mode: overwrite the local stored baseline. |
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Beyond the destructiveHint annotation, the description discloses that baseline mode records the first call, warns to rely on guaranteed deltas rather than medians alone, and states that replaceBaseline overwrites local baseline state. This is meaningful behavioral transparency beyond what annotations provide.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Three sentences with no wasted words: the first states the core purpose, the second gives operational guidance, and the third provides examples and the destructive state-change warning. The structure is front-loaded and easy to parse.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For an 8-parameter tool with full schema descriptions and an output schema, the description covers the key operational nuances: mode selection, first-call baseline behavior, run counts, examples, and state overwriting. Nothing critical for correct invocation is missing.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema coverage is 100%, so the baseline is 3. The description adds value by explaining the behavioral semantics of baseline mode's first call and why runs=3 or more is recommended, rather than merely repeating schema defaults.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description opens with a specific verb and resource: 'Compare two pages now' or 'measure one page against its locally stored baseline.' It clearly distinguishes the two modes and gives concrete examples, making the tool's purpose distinct from sibling tools like pagespeed_analyze_page.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
It explains when to use pages versus baseline mode and provides practical examples such as comparing staging against production or verifying a deployed fix. It does not explicitly name sibling alternatives or exclusions, but the contexts are clear enough to route an agent correctly.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
pagespeed_diagnose_pageDiagnose a Page Performance ProblemARead-onlyIdempotent
Inspect one page through exactly one diagnostic lens: visual, elements, network, javascript, images, render-blocking, or third-parties. Use after pagespeed_analyze_page identifies a problem; do not use it for a general score. Example: focus=render-blocking to identify CSS/JS delaying first render. Returns focused evidence rather than a full Lighthouse dump.
| Name | Required | Description | Default |
|---|---|---|---|
| url | Yes | Public http(s) URL, for example https://example.com/products. | |
| focus | Yes | The single diagnostic lens to return. | |
| strategy | No | Lighthouse device profile. mobile is the default. | mobile |
| responseFormat | No | markdown is concise and readable; json is machine-readable and is also available as structuredContent. | markdown |
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already declare readOnlyHint=true, openWorldHint=true, idempotentHint=true, and destructiveHint=false, covering safety and side-effect expectations. The description adds a meaningful behavioral constraint: 'exactly one diagnostic lens' and 'Returns focused evidence rather than a full Lighthouse dump', which aligns with and enriches the annotation profile. No contradiction exists.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is three sentences of dense, useful information with zero fluff. It front-loads the core purpose, states the usage condition, and embeds a practical example in the same breath. Every sentence earns its place, making it highly efficient.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given that there is a full input schema, an output schema is present (per context), and annotations cover safety and idempotence, the description provides everything an agent needs to decide and invoke correctly: what it does, when to use it (vs. analyze), when not to, and a working example. Nothing essential is missing.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema description coverage is 100%, so all four parameters are fully documented in the schema itself (baseline 3). The description adds value by providing a concrete example ('focus=render-blocking to identify CSS/JS delaying first render') that clarifies the practical meaning of the focus parameter beyond its enum listing, which justifies a 4.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description states a specific verb ('Inspect') and resource ('one page') with a defined scope ('exactly one diagnostic lens'), and explicitly distinguishes itself from pagespeed_analyze_page by saying 'do not use it for a general score'. It also lists the available lenses, making the tool's purpose unambiguous and well-differentiated from siblings.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description gives explicit when-to-use guidance: 'Use after pagespeed_analyze_page identifies a problem' and when-not-to-use: 'do not use it for a general score'. It even provides a concrete example (focus=render-blocking) to illustrate proper invocation, which is more than most tool descriptions offer.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
pagespeed_get_field_dataGet Chrome UX Report Field DataARead-onlyIdempotent
Get real-user Core Web Vitals from Chrome UX Report, not Lighthouse lab measurements. Use scope=page for one URL; use scope=origin with a bare origin when the page has insufficient traffic. Example: check mobile LCP and INP for https://example.com/checkout. Returns p75 field metrics or a clear no-data result.
| Name | Required | Description | Default |
|---|---|---|---|
| url | Yes | Public http(s) URL, for example https://example.com/products. | |
| scope | No | page queries one URL; origin aggregates every page on the origin. | page |
| formFactor | No | CrUX device segment. ALL is valid only for scope=origin. | PHONE |
| responseFormat | No | markdown is concise and readable; json is machine-readable and is also available as structuredContent. | markdown |
Output Schema
| Name | Required | Description |
|---|---|---|
| tool | Yes | |
| result | Yes | |
| truncated | No | |
| truncationMessage | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
Annotations already declare readOnly, openWorld, idempotent, and non-destructive behavior; the description adds meaningful behavioral context by stating that it returns p75 field metrics or a clear no-data result, and by clarifying real-user field data rather than lab measurements. It does not mention rate limits or auth, but the annotations cover the safety profile.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
Four short sentences carry distinct information: purpose, parameter guidance, example, and return behavior. Every sentence earns its place, and the most important scoping guidance is front-loaded.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
For an idempotent, read-only tool with a complete input schema and an output schema, the description covers the key decisions an agent must make: which URL/origin to query, what kind of metrics to expect, and what happens when no data exists. Nothing critical is missing.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
Schema description coverage is 100%, so the baseline is 3. The description adds value beyond the schema by explaining when to choose page vs origin, specifically mentioning insufficient traffic, and by giving a concrete mobile LCP/INP example that helps ground the formFactor and metric concepts.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description opens with a specific verb and resource: get real-user Core Web Vitals from Chrome UX Report. It also explicitly distinguishes itself from Lighthouse lab measurements, which sets it apart from sibling analysis tools without needing to inspect their schemas.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
It gives concrete selection guidance for scope: page for one URL, origin for a bare origin when page traffic is insufficient. It also clarifies that this is not Lighthouse lab data, but it does not name a specific sibling tool like pagespeed_analyze_page as the lab alternative, so the routing is clear but not fully explicit.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
Tool Schema Changelog
Recent tool additions, removals, and schema changes observed during successful MCP inspections. Dates show when Glama detected each change.
25 tool updates
v2.0.0- Removed
analyze_page_speed - Removed
batch_analyze - Removed
clear_cache - Removed
compare_baseline - Removed
compare_pages - Removed
crux_summary - Removed
full_report - Removed
get_element_analysis - Removed
get_full_audit - Removed
get_image_optimization_details - Removed
get_javascript_analysis - Removed
get_network_analysis - Removed
get_origin_crux - Removed
get_performance_map - Removed
get_performance_summary - Removed
get_recommendations - Removed
get_render_blocking_details - Removed
get_third_party_impact - Removed
get_visual_analysis - Added
pagespeed_analyze_batch - Added
pagespeed_analyze_page - Added
pagespeed_clear_cache - Added
pagespeed_compare_pages - Added
pagespeed_diagnose_page - Added
pagespeed_get_field_data
15 tool updates
v1.7.4- Changed
analyze_page_speed2 fields changed- added
Input schema / properties / runsAdded value: +{ + "default": 1, + "description": "Distinct analyses to run (default 1). >1 reports the median with min-max spread; cached replays (same fetchTime) are dropped and counted", + "maximum": 5, + "minimum": 1, + "type": "integer" +} - changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
batch_analyze1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
compare_pages1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
full_report2 fields changed- added
Input schema / properties / runsAdded value: +{ + "default": 1, + "description": "Distinct analyses to run (default 1). >1 reports the median with min-max spread; cached replays (same fetchTime) are dropped and counted", + "maximum": 5, + "minimum": 1, + "type": "integer" +} - changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_element_analysis1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_full_audit1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_image_optimization_details1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_javascript_analysis1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_network_analysis1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_performance_map1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_performance_summary1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_recommendations2 fields changed- added
Input schema / properties / runsAdded value: +{ + "default": 1, + "description": "Distinct analyses to run (default 1). >1 reports the median with min-max spread; cached replays (same fetchTime) are dropped and counted", + "maximum": 5, + "minimum": 1, + "type": "integer" +} - changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_render_blocking_details1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_third_party_impact1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
- Changed
get_visual_analysis1 field changed- changed
Input schema / properties / strategy / descriptionPrevious value: -"Analysis strategy"New value: +"Device to simulate: mobile (default), desktop, or both"
16 tool updates
v1.7.0- Changed
analyze_page_speed1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
batch_analyze1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Added
compare_baseline - Changed
compare_pages1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
full_report1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_element_analysis1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_full_audit1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_image_optimization_details1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_javascript_analysis1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_network_analysis1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_performance_map1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_performance_summary1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_recommendations1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_render_blocking_details1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_third_party_impact1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
- Changed
get_visual_analysis1 field changed- changed
Input schema / properties / strategy / enumPrevious value: -[ - "mobile", - "desktop" -]New value: +[ + "mobile", + "desktop", + "both" +]
1 tool update
v1.5.0- Added
get_origin_crux
1 tool update
v1.4.0- Added
get_performance_map
3 tool updates
v1.2.7- Added
get_javascript_analysis - Added
get_network_analysis - Added
get_third_party_impact
3 tool updates
v1.2.6- Removed
get_javascript_analysis - Removed
get_network_analysis - Removed
get_third_party_impact
16 tool updates
v1.2.2- First observed
analyze_page_speed - First observed
batch_analyze - First observed
clear_cache - First observed
compare_pages - First observed
crux_summary - First observed
full_report - First observed
get_element_analysis - First observed
get_full_audit - First observed
get_image_optimization_details - First observed
get_javascript_analysis - First observed
get_network_analysis - First observed
get_performance_summary - First observed
get_recommendations - First observed
get_render_blocking_details - First observed
get_third_party_impact - First observed
get_visual_analysis
TDQS
Each tool has a distinct workflow: single-page analysis, batch analysis, focused diagnostics, field data, comparisons/baselines, and cache control. The only mild overlap is between analyze_page with audit/recommendation reports and diagnose_page, but the descriptions explicitly position diagnose as a follow-up for specific problem areas.
All tools share a consistent pagespeed_ prefix followed by a clear verb_noun pattern: analyze_page, diagnose_page, get_field_data, compare_pages, analyze_batch, clear_cache. The naming is predictable, uniform, and makes the action and target easy to infer.
Six tools is a well-scoped set for a PageSpeed Insights server. Each tool covers a meaningful part of the workflow without redundancy or bloat, and the count feels appropriate for both simple and more advanced performance analysis tasks.
The tool surface covers the core domain well: single and batch Lighthouse analysis, targeted diagnostics, real-user field data, comparison/baselining, and cache management. There are no obvious dead ends or missing operations that would prevent an agent from completing a typical PageSpeed investigation.
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