WebEvalAgent MCP Server
Official🚀 operative.sh web-eval-agent Servidor MCP
Deja que el agente de codificación se depure a sí mismo, tienes mejores cosas que hacer.

🔥 Potencie su depuración
El servidor MCP de operative.sh lanza un agente potenciado por el uso del navegador para ejecutar y depurar de forma autónoma aplicaciones web directamente en su editor de código.
Related MCP server: agnt
⚡ Características
🌐 Navega por tu aplicación web usando BrowserUse (2 veces más rápido con backend operativo)
📊 Capturar tráfico de red : las solicitudes se filtran de forma inteligente y se devuelven a la ventana de contexto
🚨 Recopilar errores de la consola : captura registros y errores
🤖 Depuración autónoma : el agente Cursor llama al servidor mcp del agente de control de calidad web para probar si el código que escribió funciona como se esperaba de un extremo a otro.
Referencia de herramientas MCP
Herramienta | Objetivo |
| Evaluador de UX automatizado que controla el navegador, captura capturas de pantalla, registros de consola y red, y devuelve un completo informe de UX. |
| 🔒 Abre un navegador interactivo (no headless) para que puedas iniciar sesión una vez; las cookies/almacenamiento local guardados se reutilizan en ejecuciones posteriores |
Argumentos clave
web_eval_agenturl(obligatorio) : dirección de la aplicación en ejecución (por ejemplohttp://localhost:3000)task(obligatoria) : descripción en lenguaje natural de lo que se debe probar ("ejecutar el flujo de registro y anotar cualquier problema de experiencia de usuario")headless_browser(opcional, predeterminadofalse) : configúrelo entruepara ocultar la ventana del navegador
setup_browser_stateurl(opcional) : página que se abrirá primero (útil para llegar directamente a una pantalla de inicio de sesión)
Puedes activar estas herramientas directamente desde el chat de tu IDE, por ejemplo:
Evaluate my app at http://localhost:3000 – run web_eval_agent with the task "Try the full signup flow and report UX issues".🏁 Inicio rápido (macOS/Linux)
Requisitos previos (normalmente no necesarios):
brew:
/bin/bash -c "$(curl -fsSL https://raw.githubusercontent.com/Homebrew/install/HEAD/install.sh)"npm: (
brew install npm)jq:
brew install jq
Ejecute el instalador después de obtener una clave API (gratis)
Instala dramaturgo
¡Inserta JSON en tu editor de código (Cursor/Cline/Windsurf) para ti!
curl -LSf https://operative.sh/install.sh -o install.sh && bash install.sh && rm install.shVisita tu IDE favorito y reinicia para aplicar los cambios
Envíe un mensaje en modo de chat para llamar a la herramienta del agente de evaluación web, por ejemplo
Test my app on http://localhost:3000. Use web-eval-agent.🛠️ Instalación manual
Obtenga su clave API en operative.sh
curl -LsSf https://astral.sh/uv/install.sh | sh)Instalar dramaturgo:
npm install -g chromium playwright && uvx --with playwright playwright install --with-depsAgregue el siguiente JSON a su editor de código relevante con la clave API
Reinicie su editor de código
🔃Actualizando
uv cache cleanactualizar el servidor MCP
"web-eval-agent": {
"command": "uvx",
"args": [
"--refresh-package",
"webEvalAgent",
"--from",
"git+https://github.com/Operative-Sh/web-eval-agent.git",
"webEvalAgent"
],
"env": {
"OPERATIVE_API_KEY": "<YOUR_KEY>"
}
}Servidor de Discord operativo
🛠️ Instalación manual (Mac + Cursor/Cline/Windsurf)
Obtenga su clave API en operative.sh
curl -LsSf https://astral.sh/uv/install.sh | sh)Instalar dramaturgo:
npm install -g chromium playwright && uvx --with playwright playwright install --with-depsAgregue el siguiente JSON a su editor de código relevante con la clave API
Reinicie su editor de código
Instalación manual (Windows + Cursor/Cline/Windsurf)
Estamos perfeccionando esto. Si tienes algún problema, ¡abre un problema!
Haz todo esto en la terminal de tu editor de código.
curl -LSf https://operative.sh/install.sh -o install.sh && bash install.sh && rm install.shObtenga su clave API en operative.sh
Instalar uv
(curl -LsSf https://astral.sh/uv/install.sh | sh)uvx --from git+https://github.com/Operative-Sh/web-eval-agent.git playwright installReiniciar el editor de código
🚨 Problemas
No se reciben actualizaciones en los editores de código, actualice o reinstale para obtener la última versión: Ejecute
uv cache cleanpara obtener la última versiónSi tienes algún problema, ¡no dudes en abrir un problema en este repositorio o en Discord!
5/5 - Las aplicaciones estáticas sin cambios no grababan la pantalla. ¡Corregido!
uv clean+ reinicio para solucionarlo.
Registro de cambios
29/4 - Actualización de la superposición del agente: pausar/reproducir/detener la ejecución del agente en el navegador
Ejemplo de informe de salida del servidor MCP
📊 Web Evaluation Report for http://localhost:5173 complete!
📝 Task: Test the API-key deletion flow by navigating to the API Keys section, deleting a key, and judging the UX.
🔍 Agent Steps
📍 1. Navigate → http://localhost:5173
📍 2. Click "Login" (button index 2)
📍 3. Click "API Keys" (button index 4)
📍 4. Click "Create Key" (button index 9)
📍 5. Type "Test API Key" (input index 2)
📍 6. Click "Done" (button index 3)
📍 7. Click "Delete" (button index 10)
📍 8. Click "Delete" (confirm index 3)
🏁 Flow tested successfully – UX felt smooth and intuitive.
🖥️ Console Logs (10)
1. [debug] [vite] connecting…
2. [debug] [vite] connected.
3. [info] Download the React DevTools …
…
🌐 Network Requests (10)
1. GET /src/pages/SleepingMasks.tsx 304
2. GET /src/pages/MCPRegistryRegistry.tsx 304
…
⏱️ Chronological Timeline
01:16:23.293 🖥️ Console [debug] [vite] connecting…
01:16:23.303 🖥️ Console [debug] [vite] connected.
01:16:23.312 ➡️ GET /src/pages/SleepingMasks.tsx
01:16:23.318 ⬅️ 304 /src/pages/SleepingMasks.tsx
…
01:17:45.038 🤖 🏁 Flow finished – deletion verified
01:17:47.038 🤖 📋 Conclusion repeated above
👁️ See the "Operative Control Center" dashboard for live logs.Historia de las estrellas
Creado con <3 @ operative.sh
Available Tools
2 toolssetup_browser_stateA
Sets up and saves browser state for future use.
This tool should only be called in one scenario:
The user explicitly requests to set up browser state/authentication
Launches a non-headless browser for user interaction, allows login/authentication, and saves the browser state (cookies, local storage, etc.) to a local file.
Args: url: Optional URL to navigate to upon opening the browser. ctx: The MCP context (used for progress reporting, not directly here).
Returns: list[TextContent]: Confirmation of state saving or error messages.
| Name | Required | Description | Default |
|---|---|---|---|
| url | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
With no annotations provided, the description carries the full burden of behavioral disclosure. It describes key behaviors: launches a non-headless browser for user interaction, allows login/authentication, saves browser state to a local file, and returns confirmation/error messages. However, it lacks details on permissions needed, file storage location, rate limits, or error conditions. It compensates somewhat but not fully for the annotation gap.
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 well-structured and concise: it starts with a clear purpose statement, provides specific usage guidelines, details the tool's behavior, and lists parameters and returns. Each sentence adds value without redundancy. The formatting with sections (Args, Returns) enhances readability without unnecessary length.
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 the tool's complexity (involving browser automation and state saving) and lack of annotations or output schema, the description does a good job covering key aspects: purpose, usage, behavior, parameters, and returns. It explains the return type ('list[TextContent]') and what it contains. However, it could improve by detailing error handling or state file management to be fully complete.
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 description adds meaningful context for the 'url' parameter: 'Optional URL to navigate to upon opening the browser.' This clarifies its purpose beyond the schema's basic title. With 0% schema description coverage and only one parameter, the description adequately compensates. The mention of 'ctx' as an MCP context for progress reporting adds useful semantic insight, though it's not in the input 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 clearly states the tool's purpose: 'Sets up and saves browser state for future use' with specific actions like launching a non-headless browser, allowing login/authentication, and saving state to a file. It distinguishes from the sibling 'web_eval_agent' by focusing on state setup rather than evaluation. However, it doesn't explicitly contrast with the sibling beyond implied different use cases.
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 usage guidelines: 'This tool should only be called in one scenario: 1. The user explicitly requests to set up browser state/authentication.' This clearly defines when to use it and implicitly suggests alternatives (e.g., not for general browsing). It offers strong guidance without misleading information.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
web_eval_agentA
Evaluate the user experience / interface of a web application.
This tool allows the AI to assess the quality of user experience and interface design of a web application by performing specific tasks and analyzing the interaction flow.
Before this tool is used, the web application should already be running locally on a port.
Args: url: Required. The localhost URL of the web application to evaluate, including the port number. Example: http://localhost:3000, http://localhost:8080, http://localhost:4200, http://localhost:5173, etc. Try to avoid using the path segments of the URL, and instead use the root URL. task: Required. The specific UX/UI aspect to test (e.g., "test the checkout flow", "evaluate the navigation menu usability", "check form validation feedback") Be as detailed as possible in your task description. It could be anywhere from 2 sentences to 2 paragraphs. headless_browser: Optional. Whether to hide the browser window popup during evaluation. If headless_browser is True, only the operative control center browser will show, and no popup browser will be shown.
Returns: list[list[TextContent, ImageContent]]: A detailed evaluation of the web application's UX/UI, including observations, issues found, and recommendations for improvement and screenshots of the web application during the evaluation
| Name | Required | Description | Default |
|---|---|---|---|
| url | Yes | ||
| task | Yes | ||
| headless_browser | No |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
With no annotations provided, the description carries the full burden. It discloses that the tool performs tasks and analyzes interaction flow, uses a browser (with optional headless mode), and returns evaluations with screenshots. However, it lacks details on permissions, rate limits, error handling, or whether it's read-only/destructive. The description doesn't contradict annotations (none exist).
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 appropriately sized and front-loaded with the core purpose. Each sentence adds value: purpose, prerequisites, parameter explanations, and return format. Some minor redundancy exists (e.g., repeating 'evaluate' concepts), but overall it's well-structured with zero wasted sentences.
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 3 parameters with 0% schema coverage and no output schema, the description does a good job explaining inputs and outputs. It details parameter usage and describes the return format (list of text and image content with observations, issues, recommendations). For a tool with no annotations, it's reasonably complete, though could benefit from more behavioral context like error cases.
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 0%, so the description must compensate. It provides detailed semantics for all 3 parameters: 'url' (required, localhost URL with port examples, avoid path segments), 'task' (required, specific UX/UI aspect with examples and length guidance), and 'headless_browser' (optional, controls browser window visibility). This adds substantial meaning beyond the bare 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 clearly states the tool's purpose: 'Evaluate the user experience / interface of a web application' and 'assess the quality of user experience and interface design'. It specifies the verb ('evaluate', 'assess') and resource ('web application'), but doesn't explicitly differentiate from the sibling tool 'setup_browser_state', which likely has a different function.
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 clear context for when to use this tool: 'Before this tool is used, the web application should already be running locally on a port.' It also gives examples of tasks like 'test the checkout flow' or 'evaluate the navigation menu usability'. However, it doesn't explicitly state when NOT to use it or mention the sibling tool as an alternative.
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.
2 tool updates
- First observed
setup_browser_state - First observed
web_eval_agent
TDQS
The two tools have completely distinct purposes with no overlap. setup_browser_state handles browser authentication and state saving, while web_eval_agent performs UX/UI evaluation of web applications. An agent would never confuse these tools as they serve different phases of the workflow.
Both tools follow a consistent verb_noun pattern with snake_case naming. setup_browser_state and web_eval_agent use clear action-oriented verbs followed by descriptive nouns, creating a predictable naming convention throughout the server.
With only 2 tools, this server feels severely under-equipped for its apparent purpose of web evaluation. A comprehensive web evaluation system would typically need tools for navigation, interaction simulation, accessibility testing, performance measurement, and result analysis beyond just setup and evaluation.
The tool surface is severely incomplete for web evaluation. While setup and evaluation are covered, there are significant gaps: no tools for configuring evaluation parameters, managing browser sessions, analyzing results programmatically, testing specific components, or handling different evaluation methodologies. The server provides only basic endpoints without supporting the full evaluation workflow.
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