build-x402-client

Escreva código que paga por uma API HTTP que retorna 402 Payment Required, usando o protocolo x402 e uma carteira gerenciada por CDP. Abrange TypeScript e Python. Use quando…

npx skills add https://github.com/coinbase/cdp-sdk --skill build-x402-client

Build an x402 client

Take the user from nothing to one successful paid API call: resolve a CDP-managed wallet, wrap their HTTP client so it answers 402 automatically, fund the wallet on testnet, verify with a 200.

Resolve the Decisions table below before writing any code, then read only the language subsection you resolved to in step 3. This file covers TypeScript and Python; reading both will blend them.

When not to use this skill

  • The user's end users should pay from their own wallets. That is x402 payments with User Wallets, a browser flow, not this server-side one.
  • The user wants an agent to spend money now, without writing code. Use the agentic-wallet pay-for-service skill, which drives the awal CLI. It is the nearest neighbour to this skill and the most likely mis-selection.
  • The user is the one charging. Use the build-x402-server skill.
  • The user needs to construct and sign a payment by hand (signX402Payment, custom retry logic). Out of scope here; see Client configuration.

Decisions

Resolve every row before writing code. Detect first; only ask when detection is ambiguous.

DecisionHow to detectAsk only ifDefault
Languagepackage.json -> TypeScript. pyproject.toml / requirements.txt -> Python.Both present, or neitherAsk
HTTP clientTS: axios in deps -> axios, else fetch. Python: httpx or any async def -> httpx, requests -> requests.No HTTP client in depsTS fetch, Python httpx
Networkenvironment: "development" selects Base testnet.Never assume mainnetdevelopment
TransportAn MCP server URL or an existing MCP client -> MCP variant. A plain URL -> HTTP.Unclear what the target isHTTP
Starting pointAn existing x402 client holding a raw private key -> migration path.—Fresh integration

The network row is a hard rule, not a preference: never move the user to Base mainnet unless they ask for it in the current turn, because mainnet payments spend real USDC.

Steps

1. Confirm credentials

Before installing anything, check that the environment has all three of CDP_API_KEY_ID, CDP_API_KEY_SECRET, and CDP_WALLET_SECRET. The API key authenticates the caller to CDP; the wallet secret is what lets the SDK sign payments. Missing either one fails at runtime, and it is a worse experience to discover that three steps in. Send the user to API key authentication if they have no key yet. Also confirm the runtime: Node.js 22 or later, or Python 3.10 or later.

2. Install

Pick the dependencies matching the Decisions table. @x402/core, @x402/evm, @x402/svm, and @x402/extensions are optional peer dependencies of the CDP SDK, so they are not installed for you, and all four are needed even for an EVM-only integration because @coinbase/cdp-sdk/x402 imports them at module load.

For TypeScript, use the package manager already configured in the project. If none is configured, use npm. Install:

  • fetch: @coinbase/cdp-sdk, @x402/core, @x402/evm, @x402/svm, @x402/extensions, and @x402/fetch
  • axios: the same packages with @x402/axios instead of @x402/fetch, plus axios
  • MCP: the same packages with @x402/mcp instead of @x402/fetch, plus @modelcontextprotocol/sdk

For Python, use the package manager already configured in the project. If none is configured, use pip. Install:

  • async: cdp-sdk and x402[evm,svm,httpx]
  • sync: cdp-sdk and x402[evm,svm,requests]

3. Write the client

Read only the subsection matching the language resolved above.

TypeScript

CdpX402Client is the whole point of the TypeScript path. It provisions the wallet, registers the payment schemes, and already satisfies the signer interface the x402 wrappers expect, so it drops into any of them unchanged.

import { CdpX402Client } from "@coinbase/cdp-sdk/x402";
import { wrapFetchWithPayment } from "@x402/fetch";

const client = new CdpX402Client({ environment: "development" });

// The wallet lives inside the client, so print the address to know what to fund.
const { evmAddress } = await client.getAddresses();
console.log(`Paying from ${evmAddress}`);

const fetchWithPayment = wrapFetchWithPayment(globalThis.fetch, client);
const response = await fetchWithPayment("https://x402.vercel.app/protected");
console.log(`HTTP ${response.status}`);

There is no key to store anywhere — that is the reason a developer reaches for CDP here, so say so rather than burying it.

Three things that break first:

  • Top-level await needs ESM or an async main(). In a CommonJS project this is the first error.
  • Omitting environment means Base mainnet and real USDC.
  • getAddresses() also returns svmAddress for Solana. The field is svmAddress, not solanaAddress.

axios: same client object, different wrapper — wrapAxiosWithPayment(axios.create(), client) from @x402/axios, which returns a wrapped axios instance.

MCP: paying for tool calls rather than routes, with wrapMCPClientWithPayment(mcpClient, client) from @x402/mcp. See clients/mcp/simple.ts below.

Migration: swap whatever signer the existing x402Client holds for CdpX402Client; the call sites stay where they are. See x402DevMigration.ts below.

Python

There is no CdpX402Client in Python, so assemble the pieces by hand rather than hunting for a one-liner that does not exist.

import asyncio

from cdp import CdpClient
from cdp.evm_local_account import EvmLocalAccount
from x402 import x402Client
from x402.http.clients import x402HttpxClient
from x402.mechanisms.evm import EthAccountSigner
from x402.mechanisms.evm.exact import ExactEvmScheme


async def main() -> None:
    async with CdpClient() as cdp:
        account = await cdp.evm.get_or_create_account(name="x402-client-wallet-1")
        signer = EthAccountSigner(EvmLocalAccount(account))
        print(f"Paying from {signer.address}")  # this is the address to fund

        payment_client = x402Client()
        payment_client.register("eip155:84532", ExactEvmScheme(signer))

        async with x402HttpxClient(payment_client) as http:
            response = await http.get("https://x402.vercel.app/protected")
            await response.aread()

        print(f"HTTP {response.status_code}")


asyncio.run(main())

EvmLocalAccount and the x402 signer protocol declare sign_typed_data differently, and EthAccountSigner is what reconciles them. Writing the wrap explicitly is a readability choice rather than a requirement: ExactEvmScheme already auto-wraps anything that is an eth_account BaseAccount, which EvmLocalAccount is, so passing the account directly works too. Keep the explicit form so the adaptation is visible. A type checker may flag it, since EvmLocalAccount subclasses BaseAccount rather than LocalAccount; at runtime it is correct.

Three things that break first:

  • CdpClient is an async context manager. Resolve the account inside async with.
  • On the httpx path, await response.aread() before touching the body.
  • "eip155:84532" is Base Sepolia. Changing it is a deliberate network change.

requests: the sync alternative for a project with no async entry point. x402_requests(client) from x402.http.clients is a function that returns a requests.Session, and it needs x402ClientSync rather than x402Client — mixing the two raises a TypeError.

MCP: see clients/mcp/simple.py below.

4. Fund the wallet

Run the client once. With no USDC it fails, and it prints the address to fund. Send Base Sepolia USDC there:

import { CdpClient } from "@coinbase/cdp-sdk";

await new CdpClient().evm.requestFaucet({
  address: evmAddress,
  network: "base-sepolia",
  token: "usdc",
});
await cdp.evm.request_faucet(address=signer.address, network="base-sepolia", token="usdc")

The CDP faucet funds the same wallets the CDP Facilitator settles against, so there is no second faucet to find. Wait for the transfer to confirm before re-running — requesting and paying in the same run fails on an empty balance.

5. Verify

Re-run. HTTP 200 is the success signal, and it proves the whole path: the payment was verified, settled onchain, and the protected resource came back. If the user has no endpoint of their own yet, https://x402.vercel.app/protected charges $0.01 on Base Sepolia.

Troubleshooting

SymptomCauseFix
402 no matter how often you retryWallet holds no USDC, or the faucet transfer has not confirmedCheck the balance of the printed address before retrying
Python TypeError on the clientA sync client paired with async pieces, or the reversex402_requests needs x402ClientSync; x402HttpxClient needs x402Client
Wallet authentication errorCDP_WALLET_SECRET missing or wrongIt is separate from the API key secret; check both
No scheme registered for networkRegistered chain ID differs from the one the server asks forMatch the network in the 402 response
Payment exceeds balance—Report the shortfall in USDC, not atomic units: 10000 is $0.01

Runnable examples

TypeScript, under https://github.com/coinbase/cdp-sdk/blob/main/examples/typescript/x402/clients/: payForApi.ts, payForApiWithAxios.ts, payForApiWithSpendControls.ts, x402DevMigration.ts, mcp/simple.ts.

Python, under https://github.com/coinbase/cdp-sdk/blob/main/examples/python/x402/clients/: pay_for_api.py, pay_for_api_with_requests.py, mcp/simple.py.

Beyond the first paid call

Mais skills de coinbase

research.deprecation-usage
coinbase
research.deprecation-usage — uma skill instalável para agentes de IA, publicada por coinbase/cds.
x402
coinbase
Descubra e chame APIs pagas usando o protocolo de pagamento X402 com pagamentos automáticos em USDC na Base. Pesquise um bazar de serviços pagos por palavra-chave, liste todos os recursos disponíveis ou inspecione o preço e os requisitos de um endpoint sem pagar. Faça requisições autenticadas para endpoints X402 com pagamento automático em USDC em unidades atômicas, suportando os métodos GET, POST, PUT, DELETE e PATCH. Inclui parâmetros de consulta, cabeçalhos personalizados, suporte a corpo de requisição e limites de gasto máximo para controlar o pagamento...
cds-accessibility
coinbase
Revisa a interface do Coinbase Design System (CDS) já escrita para acessibilidade: verificando propriedades de acessibilidade documentadas (ex.: accessibilityLabel,…
cds-code
coinbase
Realize as seguintes operações apenas uma vez por sessão, após a habilidade ser ativada.
agentic-wallet
coinbase
Operações de carteira cripto via CLI awal — fazer login, verificar saldos, enviar USDC/ETH/POL/SOL, trocar tokens, financiar a carteira e usar o protocolo de pagamento x402 para…
authenticate-wallet
coinbase
Autenticação de carteira baseada em OTP por e-mail, com validação e verificação de status. Fluxo de login em duas etapas: inicie com o e-mail para receber um OTP de 6 dígitos, depois verifique com o flowId e o código para concluir a autenticação. Inclui regras de validação de entrada para e-mail, flowId e OTP para evitar injeção de shell antes de executar comandos. Oferece verificação de status, consultas de saldo, recuperação de endereço e acesso à janela da carteira por meio de comandos CLI complementares. Todos os comandos suportam saída --json para formato legível por máquina...
fund
coinbase
Depositar USDC na carteira via Coinbase Onramp ou transferência direta. Abre uma interface complementar onde os usuários selecionam valores predefinidos ($10, $20, $50) ou personalizados e escolhem entre Apple Pay, cartão de débito, transferência bancária ou financiamento por conta Coinbase. Suporta múltiplos métodos de pagamento com prazos de liquidação variados: instantâneo para cartão e Apple Pay, 1–3 dias para transferências bancárias ACH. Deposita fundos como USDC na rede Base; alternativamente, os usuários podem enviar USDC diretamente para o endereço da carteira via npx awal@2.0.3...
monetize-service
coinbase
Implante um endpoint de API pago que outros agentes possam descobrir e pagar via protocolo x402. Cobra USDC por requisição na Base usando o protocolo de pagamento HTTP 402; clientes pagam com transações assinadas, sem necessidade de chaves de API ou contas. Registra automaticamente endpoints no x402 Bazaar para descoberta de agentes quando você declara extensões de descoberta. Suporta múltiplos níveis de preço, rotas curinga e múltiplas opções de pagamento por endpoint usando middleware Express. Construído sobre @x402/express e @x402/core...