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This page takes you from zero to a cross-network swap sourced from Avalanche. No new contracts, no approval for native AVAX, one signed transaction for your user.
Building with an AI assistant? Add the SODAX Builders MCP (https://builders.sodax.com/mcp) to Claude, Cursor, or any MCP-capable tool and it can pull live token lists, real quotes, and these docs while it writes your integration.

1. Install

2. Create an Avalanche wallet provider

Avalanche is an EVM network to the SDK, so it uses the same EvmWalletProvider as every other EVM network, keyed by ChainKeys.AVALANCHE_MAINNET.
Building in React? @sodax/wallet-sdk-react connects EVM wallets for you and hands back a ready-made provider via useWalletProvider. See Wallets.

3. Look up supported tokens

Token addresses and decimals come from the SDK config, so you never hard-code them.

4. Quote and swap

swap() runs the full lifecycle: it creates the intent on Avalanche, verifies the transaction landed, relays it to the hub, and notifies the solver to fill on the destination network.
ok means the intent was created, relayed to the hub, and the solver notified, not that it was filled. Poll sodax.swaps.getStatus({ intent_tx_hash: intentDeliveryInfo.dstTxHash }) until the status is SolverIntentStatusCode.SOLVED, which is the only success signal. The main quickstart has the full polling loop, including why NOT_FOUND is not terminal. A few things to know on Avalanche:
  • AVAX needs no approval. It is the native token. Swapping an ERC-20 (USDC, bnUSD, and the rest) needs an allowance first; see Approvals.
  • Amounts follow token.decimals. AVAX uses 18, USDC uses 6. Read decimals from the token, never assume them.
  • The wallet must be on the C-Chain. In a dApp, prompt a network switch before the user signs; see Wallets.

Next steps