2023-01-16 21:17:54 +00:00
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use std::{
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collections::{HashSet, HashMap},
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str::FromStr,
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};
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2023-01-24 20:22:07 +00:00
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use rand_core::{OsRng, RngCore};
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use serde::Deserialize;
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use serde_json::json;
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2023-01-16 21:17:54 +00:00
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use monero_rpc::{
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2023-01-24 20:22:07 +00:00
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monero::{
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Amount, Address,
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cryptonote::{hash::Hash, subaddress::Index},
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util::address::PaymentId,
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},
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TransferOptions, WalletClient,
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2023-01-16 21:17:54 +00:00
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};
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use monero_serai::{
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wallet::address::{Network, AddressSpec, SubaddressIndex},
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2023-01-24 20:22:07 +00:00
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wallet::{Scanner, address::MoneroAddress},
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rpc::Rpc,
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transaction::Transaction,
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2023-01-16 21:17:54 +00:00
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};
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mod runner;
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2023-01-24 20:22:07 +00:00
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async fn make_integrated_address(payment_id: [u8; 8]) -> String {
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#[derive(Deserialize, Debug)]
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struct IntegratedAddressResponse {
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integrated_address: String,
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}
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let rpc = Rpc::new("http://127.0.0.1:6061".to_string()).unwrap();
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let res = rpc
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.json_rpc_call::<IntegratedAddressResponse>(
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"make_integrated_address",
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Some(json!({ "payment_id": hex::encode(payment_id) })),
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)
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.await
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.unwrap();
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res.integrated_address
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}
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async fn initialize_rpcs() -> (WalletClient, Rpc, monero_rpc::monero::Address) {
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2023-01-16 21:17:54 +00:00
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let wallet_rpc =
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monero_rpc::RpcClientBuilder::new().build("http://127.0.0.1:6061").unwrap().wallet();
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let daemon_rpc = runner::rpc().await;
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let address_resp = wallet_rpc.get_address(0, None).await;
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let wallet_rpc_addr = if address_resp.is_ok() {
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address_resp.unwrap().address
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} else {
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wallet_rpc.create_wallet("test_wallet".to_string(), None, "English".to_string()).await.unwrap();
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let addr = wallet_rpc.get_address(0, None).await.unwrap().address;
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daemon_rpc.generate_blocks(&addr.to_string(), 70).await.unwrap();
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addr
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};
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2023-01-24 20:22:07 +00:00
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(wallet_rpc, daemon_rpc, wallet_rpc_addr)
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}
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async fn test_from_wallet_rpc_to_self(spec: AddressSpec) {
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// initialize rpc
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let (wallet_rpc, daemon_rpc, wallet_rpc_addr) = initialize_rpcs().await;
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2023-01-16 21:17:54 +00:00
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// make an addr
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let (_, view_pair, _) = runner::random_address();
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let addr = Address::from_str(&view_pair.address(Network::Mainnet, spec).to_string()[..]).unwrap();
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// refresh & make a tx
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wallet_rpc.refresh(None).await.unwrap();
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let tx = wallet_rpc
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.transfer(
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HashMap::from([(addr, Amount::ONE_XMR)]),
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monero_rpc::TransferPriority::Default,
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TransferOptions::default(),
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)
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.await
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.unwrap();
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let tx_hash: [u8; 32] = tx.tx_hash.0.try_into().unwrap();
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// unlock it
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runner::mine_until_unlocked(&daemon_rpc, &wallet_rpc_addr.to_string(), tx_hash).await;
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// create the scanner
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let mut scanner = Scanner::from_view(view_pair, Some(HashSet::new()));
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if let AddressSpec::Subaddress(index) = spec {
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scanner.register_subaddress(index);
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}
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// retrieve it and confirm
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let tx = daemon_rpc.get_transaction(tx_hash).await.unwrap();
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let output = scanner.scan_transaction(&tx).not_locked().swap_remove(0);
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match spec {
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AddressSpec::Subaddress(index) => assert_eq!(output.metadata.subaddress, Some(index)),
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AddressSpec::Integrated(payment_id) => {
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assert_eq!(output.metadata.payment_id, payment_id);
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assert_eq!(output.metadata.subaddress, None);
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}
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_ => assert_eq!(output.metadata.subaddress, None),
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}
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assert_eq!(output.commitment().amount, 1000000000000);
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}
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async_sequential!(
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async fn test_receipt_of_wallet_rpc_tx_standard() {
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test_from_wallet_rpc_to_self(AddressSpec::Standard).await;
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}
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async fn test_receipt_of_wallet_rpc_tx_subaddress() {
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test_from_wallet_rpc_to_self(AddressSpec::Subaddress(SubaddressIndex::new(0, 1).unwrap()))
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.await;
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}
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async fn test_receipt_of_wallet_rpc_tx_integrated() {
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let mut payment_id = [0u8; 8];
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OsRng.fill_bytes(&mut payment_id);
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test_from_wallet_rpc_to_self(AddressSpec::Integrated(payment_id)).await;
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}
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);
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2023-01-24 20:22:07 +00:00
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test!(
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test_send_to_wallet_rpc_standard,
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(
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|_, mut builder: Builder, _| async move {
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// initialize rpc
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let (wallet_rpc, _, wallet_rpc_addr) = initialize_rpcs().await;
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// add destination
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builder.add_payment(
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MoneroAddress::from_str(Network::Mainnet, &wallet_rpc_addr.to_string()).unwrap(),
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1000000,
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);
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(builder.build().unwrap(), (wallet_rpc,))
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},
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|_, tx: Transaction, _, data: (WalletClient,)| async move {
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// confirm receipt
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data.0.refresh(None).await.unwrap();
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let transfer =
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data.0.get_transfer(Hash::from_slice(&tx.hash()), None).await.unwrap().unwrap();
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assert_eq!(transfer.amount.as_pico(), 1000000);
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assert_eq!(transfer.subaddr_index, Index { major: 0, minor: 0 });
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},
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),
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);
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test!(
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test_send_to_wallet_rpc_subaddress,
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(
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|_, mut builder: Builder, _| async move {
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// initialize rpc
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let (wallet_rpc, _, _) = initialize_rpcs().await;
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// make the addr
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let (subaddress, index) = wallet_rpc.create_address(0, None).await.unwrap();
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builder.add_payment(
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MoneroAddress::from_str(Network::Mainnet, &subaddress.to_string()).unwrap(),
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1000000,
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);
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(builder.build().unwrap(), (wallet_rpc, index))
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},
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|_, tx: Transaction, _, data: (WalletClient, u32)| async move {
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// confirm receipt
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data.0.refresh(None).await.unwrap();
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let transfer =
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data.0.get_transfer(Hash::from_slice(&tx.hash()), None).await.unwrap().unwrap();
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assert_eq!(transfer.amount.as_pico(), 1000000);
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assert_eq!(transfer.subaddr_index, Index { major: 0, minor: data.1 });
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},
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),
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);
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test!(
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test_send_to_wallet_rpc_integrated,
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(
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|_, mut builder: Builder, _| async move {
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// initialize rpc
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let (wallet_rpc, _, _) = initialize_rpcs().await;
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// make the addr
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let mut payment_id = [0u8; 8];
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OsRng.fill_bytes(&mut payment_id);
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let addr = make_integrated_address(payment_id).await;
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builder.add_payment(MoneroAddress::from_str(Network::Mainnet, &addr).unwrap(), 1000000);
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(builder.build().unwrap(), (wallet_rpc, payment_id))
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},
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|_, tx: Transaction, _, data: (WalletClient, [u8; 8])| async move {
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// confirm receipt
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data.0.refresh(None).await.unwrap();
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let transfer =
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data.0.get_transfer(Hash::from_slice(&tx.hash()), None).await.unwrap().unwrap();
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assert_eq!(transfer.amount.as_pico(), 1000000);
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assert_eq!(transfer.subaddr_index, Index { major: 0, minor: 0 });
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assert_eq!(transfer.payment_id.0, PaymentId::from_slice(&data.1));
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},
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),
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);
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