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https://github.com/serai-dex/serai.git
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335 lines
12 KiB
Rust
335 lines
12 KiB
Rust
use std::collections::HashSet;
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use rand_core::OsRng;
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use monero_simple_request_rpc::SimpleRequestRpc;
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use monero_wallet::{
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ringct::RctType, transaction::Transaction, rpc::Rpc, address::SubaddressIndex, extra::Extra,
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WalletOutput, OutputWithDecoys,
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};
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mod runner;
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use runner::{SignableTransactionBuilder, ring_len};
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// Set up inputs, select decoys, then add them to the TX builder
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async fn add_inputs(
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rct_type: RctType,
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rpc: &SimpleRequestRpc,
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outputs: Vec<WalletOutput>,
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builder: &mut SignableTransactionBuilder,
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) {
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for output in outputs {
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builder.add_input(
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OutputWithDecoys::fingerprintable_deterministic_new(
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&mut OsRng,
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rpc,
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ring_len(rct_type),
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rpc.get_height().await.unwrap(),
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output,
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)
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.await
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.unwrap(),
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);
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}
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}
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test!(
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spend_miner_output,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 5);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let output =
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scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked().swap_remove(0);
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assert_eq!(output.transaction(), tx.hash());
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assert_eq!(output.commitment().amount, 5);
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},
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),
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);
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test!(
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spend_multiple_outputs,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 1000000000000);
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builder.add_payment(addr, 2000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let mut outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 2);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].transaction(), tx.hash());
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outputs.sort_by(|x, y| x.commitment().amount.cmp(&y.commitment().amount));
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assert_eq!(outputs[0].commitment().amount, 1000000000000);
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assert_eq!(outputs[1].commitment().amount, 2000000000000);
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outputs
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},
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),
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(
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|rct_type: RctType, rpc, mut builder: Builder, addr, outputs: Vec<WalletOutput>| async move {
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add_inputs(rct_type, &rpc, outputs, &mut builder).await;
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builder.add_payment(addr, 6);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let output =
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scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked().swap_remove(0);
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assert_eq!(output.transaction(), tx.hash());
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assert_eq!(output.commitment().amount, 6);
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},
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),
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);
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test!(
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// Ideally, this would be single_R, yet it isn't feasible to apply allow(non_snake_case) here
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single_r_subaddress_send,
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(
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// Consume this builder for an output we can use in the future
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// This is needed because we can't get the input from the passed in builder
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 1000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 1);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].commitment().amount, 1000000000000);
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outputs
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},
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),
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(
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|rct_type, rpc: SimpleRequestRpc, _, _, outputs: Vec<WalletOutput>| async move {
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use monero_wallet::rpc::FeePriority;
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let view_priv = Zeroizing::new(Scalar::random(&mut OsRng));
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let mut outgoing_view = Zeroizing::new([0; 32]);
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OsRng.fill_bytes(outgoing_view.as_mut());
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let change_view =
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ViewPair::new(&Scalar::random(&mut OsRng) * ED25519_BASEPOINT_TABLE, view_priv.clone())
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.unwrap();
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let mut builder = SignableTransactionBuilder::new(
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rct_type,
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outgoing_view,
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Change::new(&change_view),
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rpc.get_fee_rate(FeePriority::Unimportant).await.unwrap(),
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);
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add_inputs(rct_type, &rpc, vec![outputs.first().unwrap().clone()], &mut builder).await;
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// Send to a subaddress
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let sub_view = ViewPair::new(
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&Scalar::random(&mut OsRng) * ED25519_BASEPOINT_TABLE,
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Zeroizing::new(Scalar::random(&mut OsRng)),
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)
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.unwrap();
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builder
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.add_payment(sub_view.subaddress(Network::Mainnet, SubaddressIndex::new(0, 1).unwrap()), 1);
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(builder.build().unwrap(), (change_view, sub_view))
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},
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|rpc, block, tx: Transaction, _, views: (ViewPair, ViewPair)| async move {
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// Make sure the change can pick up its output
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let mut change_scanner = Scanner::new(views.0);
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assert!(
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change_scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked().len() == 1
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);
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// Make sure the subaddress can pick up its output
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let mut sub_scanner = Scanner::new(views.1);
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sub_scanner.register_subaddress(SubaddressIndex::new(0, 1).unwrap());
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let sub_outputs = sub_scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert!(sub_outputs.len() == 1);
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assert_eq!(sub_outputs[0].transaction(), tx.hash());
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assert_eq!(sub_outputs[0].commitment().amount, 1);
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// Make sure only one R was included in TX extra
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assert!(Extra::read::<&[u8]>(&mut tx.prefix().extra.as_ref())
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.unwrap()
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.keys()
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.unwrap()
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.1
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.is_none());
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},
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),
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);
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test!(
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spend_one_input_to_one_output_plus_change,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 2000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 1);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].commitment().amount, 2000000000000);
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outputs
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},
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),
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(
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|rct_type: RctType, rpc, mut builder: Builder, addr, outputs: Vec<WalletOutput>| async move {
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add_inputs(rct_type, &rpc, outputs, &mut builder).await;
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builder.add_payment(addr, 2);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let output =
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scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked().swap_remove(0);
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assert_eq!(output.transaction(), tx.hash());
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assert_eq!(output.commitment().amount, 2);
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},
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),
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);
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test!(
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spend_max_outputs,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 1000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 1);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].commitment().amount, 1000000000000);
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outputs
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},
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),
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(
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|rct_type: RctType, rpc, mut builder: Builder, addr, outputs: Vec<WalletOutput>| async move {
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add_inputs(rct_type, &rpc, outputs, &mut builder).await;
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for i in 0 .. 15 {
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builder.add_payment(addr, i + 1);
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}
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let mut scanned_tx = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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let mut output_amounts = HashSet::new();
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for i in 0 .. 15 {
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output_amounts.insert(i + 1);
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}
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for _ in 0 .. 15 {
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let output = scanned_tx.swap_remove(0);
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assert_eq!(output.transaction(), tx.hash());
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let amount = output.commitment().amount;
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assert!(output_amounts.remove(&amount));
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}
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assert_eq!(output_amounts.len(), 0);
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},
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),
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);
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test!(
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spend_max_outputs_to_subaddresses,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 1000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 1);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].commitment().amount, 1000000000000);
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outputs
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},
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),
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(
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|rct_type: RctType, rpc, mut builder: Builder, _, outputs: Vec<WalletOutput>| async move {
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add_inputs(rct_type, &rpc, outputs, &mut builder).await;
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let view = runner::random_address().1;
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let mut scanner = Scanner::new(view.clone());
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let mut subaddresses = vec![];
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for i in 0 .. 15 {
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let subaddress = SubaddressIndex::new(0, i + 1).unwrap();
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scanner.register_subaddress(subaddress);
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builder.add_payment(view.subaddress(Network::Mainnet, subaddress), u64::from(i + 1));
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subaddresses.push(subaddress);
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}
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(builder.build().unwrap(), (scanner, subaddresses))
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},
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|rpc, block, tx: Transaction, _, mut state: (Scanner, Vec<SubaddressIndex>)| async move {
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use std::collections::HashMap;
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let mut scanned_tx = state.0.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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let mut output_amounts_by_subaddress = HashMap::new();
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for i in 0 .. 15 {
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output_amounts_by_subaddress.insert(u64::try_from(i + 1).unwrap(), state.1[i]);
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}
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for _ in 0 .. 15 {
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let output = scanned_tx.swap_remove(0);
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assert_eq!(output.transaction(), tx.hash());
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let amount = output.commitment().amount;
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assert_eq!(
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output.subaddress().unwrap(),
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output_amounts_by_subaddress.remove(&amount).unwrap()
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);
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}
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assert_eq!(output_amounts_by_subaddress.len(), 0);
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},
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),
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);
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test!(
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spend_one_input_to_two_outputs_no_change,
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(
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|_, mut builder: Builder, addr| async move {
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builder.add_payment(addr, 1000000000000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 1);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[0].commitment().amount, 1000000000000);
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outputs
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},
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),
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(
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|rct_type, rpc: SimpleRequestRpc, _, addr, outputs: Vec<WalletOutput>| async move {
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use monero_wallet::rpc::FeePriority;
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let mut outgoing_view = Zeroizing::new([0; 32]);
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OsRng.fill_bytes(outgoing_view.as_mut());
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let mut builder = SignableTransactionBuilder::new(
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rct_type,
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outgoing_view,
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Change::fingerprintable(None),
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rpc.get_fee_rate(FeePriority::Unimportant).await.unwrap(),
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);
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add_inputs(rct_type, &rpc, vec![outputs.first().unwrap().clone()], &mut builder).await;
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builder.add_payment(addr, 10000);
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builder.add_payment(addr, 50000);
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(builder.build().unwrap(), ())
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},
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|rpc, block, tx: Transaction, mut scanner: Scanner, ()| async move {
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let mut outputs = scanner.scan(&rpc, &block).await.unwrap().not_additionally_locked();
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assert_eq!(outputs.len(), 2);
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assert_eq!(outputs[0].transaction(), tx.hash());
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assert_eq!(outputs[1].transaction(), tx.hash());
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outputs.sort_by(|x, y| x.commitment().amount.cmp(&y.commitment().amount));
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assert_eq!(outputs[0].commitment().amount, 10000);
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assert_eq!(outputs[1].commitment().amount, 50000);
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// The remainder should get shunted to fee, which is fingerprintable
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let Transaction::V2 { proofs: Some(ref proofs), .. } = tx else { panic!("TX wasn't RingCT") };
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assert_eq!(proofs.base.fee, 1000000000000 - 10000 - 50000);
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},
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),
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);
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