215 lines
7.5 KiB
Markdown
215 lines
7.5 KiB
Markdown
# Dapp integration
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Dapp integration uses `@wizardconnect/dapp` (for session management and pubkey state) together
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with `@wizardconnect/core` (for the relay connection and URI generation).
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## DappConnectionManager
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Manages a single dapp–wallet session. Handles the handshake, xpub storage, and sign request
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round-trips. Most dapps only ever have one active session at a time.
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```typescript
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class DappConnectionManager extends EventEmitter {
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readonly pubkeyState: DappPubkeyStateManager;
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walletName: string | null;
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walletIcon: string | null;
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/** The agreed protocol name after handshake, e.g. "hdwalletv1". Null until wallet_ready. */
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protocol: string | null;
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constructor(dappName?: string, dappIcon?: string)
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/** Call from the RelayStatusCallback each time the relay status changes.
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* Attaches the message listener exactly once (on first client seen).
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* Triggers onConnected() on each "connected" event. */
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updateConnection(client: RelayClient | null, status: RelayStatus): void
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isWalletDiscovered(): boolean
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/** Get the next sequence number for a SignTransactionRequest. */
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nextSequence(): number
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/** Send a sign request and wait for the wallet's response.
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* Rejects if the wallet returns an error or if the connection drops. */
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sendSignRequest(request: SignTransactionRequest): Promise<SignTransactionResponse>
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/** Send a UserDisconnect courtesy message to the wallet.
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* Caller is responsible for calling dappRelay.cleanup() afterwards. */
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sendDisconnect(message?: string): Promise<void>
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// Events
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on("walletready", (msg: WalletReadyMessage) => void)
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on("messagesent", (msg: ProtocolMessage) => void)
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on("messagereceived", (msg: ProtocolMessage) => void)
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on("disconnect", (reason: DisconnectReason, message: string | undefined) => void)
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}
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```
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## Pubkey state — convenience delegation
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`DappConnectionManager` delegates to `pubkeyState` for all pubkey operations. These methods
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are also available directly on the manager:
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```typescript
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// Get a pubkey (derives on demand from xpub if not cached)
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getPubkey(childIndex: number, index: bigint): Uint8Array | undefined
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// Get all cached pubkeys for a path
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getPubkeys(childIndex: number): Map<bigint, Uint8Array>
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// Get/set the current address index for a path
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getAddressIndex(childIndex: number): bigint
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setAddressIndex(childIndex: number, index: bigint): void
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// Get a smart "next index to use" (see pubkey-derivation.md)
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getIndexToUse(childIndex: number, options?: { index?: bigint; reuseLast?: boolean }): bigint
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// Get the min/max indices seen for a path
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getIndexRange(childIndex: number): { min?: bigint; max?: bigint }
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// Remove a used change address from the gap-fill queue
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removeFromChangeQueue(index: bigint): void
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// Get the stored xpub node (after wallet_ready)
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getXpubNode(childIndex: number): HdPublicNodeValid | undefined
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```
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Child index values: `0` = receive, `1` = change, `7` = defi (Cauldron). These are
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internal to the dapp layer; use `childIndexOfPathName()` to convert from `PathName` if needed.
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## Session lifecycle
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### Initial connect
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```typescript
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import { initiateDappRelay } from "@wizardconnect/core";
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import { DappConnectionManager } from "@wizardconnect/dapp";
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const dappMgr = new DappConnectionManager("My Dapp", "https://example.com/icon.png");
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const relay = initiateDappRelay(
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(payload) => {
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dappMgr.updateConnection(payload.client, payload.status);
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// also update your own UI state here (connected/disconnected indicator)
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},
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{ explicitRelayUrls: ["wss://relay.cauldron.quest:443"] },
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);
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// Show relay.uri as a QR code for the wallet to scan.
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console.log("Scan this URI:", relay.uri);
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```
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### After wallet connects
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```typescript
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dappMgr.on("walletready", (msg) => {
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console.log("Wallet:", msg.wallet_name);
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// pubkeyState is now populated with xpub nodes.
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// You can start deriving addresses.
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});
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```
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### Deriving addresses
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```typescript
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// Get the first receive address pubkey:
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const RECEIVE = 0;
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const pubkey = dappMgr.getPubkey(RECEIVE, 0n); // derives from xpub if needed
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```
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See [pubkey-derivation.md](pubkey-derivation.md) for full details.
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### Sending a sign request
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```typescript
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const seq = dappMgr.nextSequence();
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const request: SignTransactionRequest = {
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action: RelayMsgAction.SignTransactionRequest,
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sequence: seq,
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time: Math.floor(Date.now() / 1000),
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transaction: {
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transaction: { inputs, outputs, version: 2, locktime: 0 },
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sourceOutputs,
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userPrompt: "Confirm swap",
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broadcast: true,
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},
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inputPaths: [[0, "receive", 0], [1, "defi", 5]], // [inputIndex, pathName, addressIndex]
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};
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try {
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const response = await dappMgr.sendSignRequest(request);
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console.log("Signed tx:", response.signedTransaction);
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} catch (err) {
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console.error("Signing failed:", err.message);
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}
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```
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`sendSignRequest` returns a Promise that resolves when the wallet sends back a
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`sign_transaction_response` with the matching `sequence`. It rejects if the wallet sends an
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error response.
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### Disconnecting
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```typescript
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// Dapp-initiated: send courtesy message, then tear down the relay
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await dappMgr.sendDisconnect("user closed the tab");
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relay.cleanup();
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// Listen for wallet-initiated disconnect or protocol mismatch:
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dappMgr.on("disconnect", (reason, message) => {
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if (reason === DisconnectReason.ProtocolMismatch) {
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console.error("Protocol mismatch:", message);
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} else {
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console.log("Wallet disconnected:", reason, message);
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}
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relay.cleanup();
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});
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```
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The `disconnect` event fires in two cases:
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1. **Remote disconnect**: the wallet sent a `disconnect` message (any reason).
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2. **Protocol mismatch**: `handleWalletReady` found no overlap between the dapp's and wallet's
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`supported_protocols`. The dapp automatically sends a `ProtocolMismatch` disconnect to the
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wallet before emitting the event.
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### Reconnection
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`updateConnection()` is called on every relay status change. When `status.status === "connected"`,
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it calls `onConnected()` which waits for key exchange and then sends a fresh `dapp_ready`. The
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`walletDiscovered` flag carries over reconnects (it is only reset by creating a new manager),
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so the correct `wallet_discovered` value is sent on each reconnect.
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## Using initiateDappRelay without DappConnectionManager
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If you need lower-level control (e.g., in the test-cli), you can work directly with the
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`RelayClient` and handle `wallet_ready` manually:
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```typescript
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const relay = initiateDappRelay(statusCallback, options);
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relay.events.on("keyexchangecomplete", async (walletPubkey) => {
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// Key exchange done — wait for relay client to be fully ready
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while (!relay.client.isKeyExchangeComplete()) {
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await sleep(50);
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}
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relay.client.on("message", (msg) => {
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if (isDappReadyMessage(msg)) { /* ... */ }
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if (isWalletReadyMessage(msg)) { /* ... */ }
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});
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await relay.client.relay({ action: RelayMsgAction.DappReady, ... });
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});
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```
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## Cauldron (cauldron-beta) implementation notes
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Cauldron uses `DappConnectionManager` via a vendored adapter in `src/relay/RelayWalletDapp.ts`.
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This adapter wraps `DappConnectionManager` to implement Cauldron's internal `Wallet` interface.
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Key design points:
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- `DappConnectionManager` is created per connection session (not a singleton).
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- `updateConnection()` is called from the relay status callback.
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- `getXpubNode(childIndex)` and `getPubkey(childIndex, index)` are the primary access patterns.
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- Child indices are used internally (0/1/7); `childIndexOfPathName()` converts from PathName
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when processing `wallet_ready` data.
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