x402-mcp
@speccy/x402-mcp
Servidor MCP que envuelve los endpoints x402 de pago de Speccy. Dale a cualquier agente de IA compatible con MCP dos herramientas superpoderosas — datos de mercados de predicción y un ejecutor de Python en sandbox — y el servidor paga por cada llamada en USDC en Base en tu nombre.
El agente no necesita conocimientos de x402. No hay que configurar ninguna wallet en el lado del agente. Solo instala el servidor, apunta tu agente a él y listo.
Herramientas
Herramienta | Descripción | Coste por llamada |
| Principales mercados de predicción de Polymarket (ordenados por volumen, liquidez o startDate) | $0.01 USDC |
| Ejecuta código Python 3.12 en un sandbox Docker aislado (sin red, sistema de archivos de solo lectura, límite de 30 s, salida de 64 KB) | $0.02 USDC |
Related MCP server: Polymarket MCP Server
Instalación
npm install -g @speccy/x402-mcpConfiguración
Configura la clave de la wallet del operador (la wallet que paga x402 por cada llamada):
export SPECCY_MCP_WALLET_KEY="0x..." # operator wallet private keySobrescrituras opcionales:
SPECCY_MCP_API_BASE(por defectohttps://api.speccy.cloud) — endpoint de PolymarketSPECCY_MCP_EXEC_BASE(por defectohttps://exec.speccy.cloud) — endpoint de ejecución en sandbox
Integración con un agente compatible con MCP
Claude Desktop (claude_desktop_config.json):
{
"mcpServers": {
"speccy-x402": {
"command": "speccy-x402-mcp",
"env": { "SPECCY_MCP_WALLET_KEY": "0x..." }
}
}
}Cualquier cliente MCP (stdio):
SPECCY_MCP_WALLET_KEY=0x... speccy-x402-mcpArquitectura
[Agent] → MCP tool call (stdio) → [this server] → x402 paid fetch → [Speccy endpoint on VPS]
→ [CDP facilitator] → on-chain USDC transferEl servidor contiene una única wallet de operador. Cada llamada activa un pago x402 desde esa wallet. Las alertas de liquidación se envían al Telegram del operador a través del bot Notifier (el mismo backend que los endpoints HTTP).
Notas
La clave de la wallet nunca sale de la máquina del operador (variable de entorno, no un archivo de configuración).
Añade fondos a la wallet con USDC en Base mainnet (
eip155:8453) y una pequeña cantidad de ETH para margen (solo se usa si la wallet hace transferencias que no sean x402).Actualmente solo liquida en Base mainnet. Para testnet / otras cadenas se necesitaría una variable de entorno
X402_NETWORKy un facilitador correspondiente.Cada llamada es independiente y sin estado — no hay sesiones, no hay estado en el servidor.
Código fuente / incidencias
Fuente: github.com/speccy-ai/x402-mcp (provisional)
Incidencias / solicitudes de funciones: abre una incidencia en el repositorio, o escribe a @SpeccyNotifierbot en Telegram
Licencia
MIT — por Philip (Esla) para Speccy.
Available Tools
2 toolsexec_pythonA
Run Python code in an isolated Docker sandbox. Costs $0.02 USDC per execution. No network, read-only filesystem, 30s timeout, 64KB output cap.
| Name | Required | Description | Default |
|---|---|---|---|
| code | Yes | Python source code to execute |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
With no annotations provided, the description carries the full behavioral disclosure burden and does so thoroughly: it covers execution isolation, cost per run, no network access, read-only filesystem, timeout, and output cap. This is exemplary transparency for a code execution tool.
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?
One compact, front-loaded sentence conveys all critical constraints with no filler. Every clause adds meaningful information an agent needs before invoking the tool.
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 single-parameter tool with no output schema, this is nearly complete: it specifies environment, limits, cost, and constraints. The only minor gap is that it does not explicitly describe the return format (e.g., stdout/stderr), though the output cap strongly implies a returned payload.
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 schema already fully documents the sole parameter ('code'). The description adds execution-relevant constraints—timeout, output cap, network restrictions, filesystem restrictions—that inform how the agent should write code. This goes beyond the schema's basic type and description.
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 action ('Run Python code') and the execution environment ('isolated Docker sandbox'). It is immediately distinguishable from the sibling tool get_prediction_markets, which is about retrieving market data rather than executing code.
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 does not explicitly explain when to use this tool versus alternatives, nor does it state when not to use it. It implies use for arbitrary Python execution, but there is no routing guidance relative to get_prediction_markets or any other tool.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
get_prediction_marketsB
Get top Polymarket prediction markets. Costs $0.01 USDC per call (x402 settled in background).
| Name | Required | Description | Default |
|---|---|---|---|
| sort | No | Sort field | volume |
| limit | No | Number of markets (1-50) |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
With no annotations, the description carries the full behavioral disclosure burden. It usefully reveals a $0.01 USDC cost per call and that x402 settlement happens in the background. However, it says nothing about side effects, rate limits, or response behavior, though the verb 'get' implies a read operation.
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 a single concise sentence that front-loads the core purpose and then adds the most important operational detail, cost. Every word earns its place, and there is no redundant or filler content.
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 simple tool with two optional parameters, the description plus schema is mostly sufficient, and the cost disclosure is valuable. But there is no output schema and no mention of what the returned markets look like, how pagination behaves, or how 'top' is determined for non-volume sort options.
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 schema already documents both parameters and their defaults/enums. The description adds minimal parameter meaning beyond the tool's overall purpose; the word 'top' hints at sorting but does not explain how the sort parameter affects results.
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 the tool gets top Polymarket prediction markets, which is a specific verb and resource. It does not explicitly distinguish itself from the sibling exec_python, but the domain and purpose are clear enough that no confusion is likely.
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 no guidance on when to use this tool versus its sibling exec_python, or any context about appropriate use cases. It only mentions a cost, which implies it should not be called unnecessarily, but it does not state that explicitly.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
TDQS
The two tools are completely distinct in purpose: one fetches Polymarket prediction markets, the other executes Python code. There is no realistic risk of an agent confusing them.
Both tool names follow the same lowercase snake_case verb_noun pattern: get_prediction_markets and exec_python. The naming is predictable and consistent.
Two tools is on the thin side, and the tools are unrelated, making the server feel like a loose collection rather than a focused toolkit. The count is not unreasonable for a paid utility server, but it is borderline.
The tools have no shared domain and each is a single isolated operation. get_prediction_markets only returns top markets with no drill-down or follow-up actions, and exec_python is a one-off sandbox execution primitive. The broader x402 workflow is unclear, leaving significant gaps.
Maintenance
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Related MCP Connectors
Market data and web intelligence for AI agents, paid per call in USDC on Base via x402.
Pay-per-call crypto market intelligence for AI agents. USDC on Base via x402.
Real-time data feeds for AI agents with USDC micropayments on Base for premium tools.
x402 MCP for agents: crypto prices, funding, DeFi yields, Polymarket, Base RPC + MCP security.
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