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53 lines
1.7 KiB
Rust
53 lines
1.7 KiB
Rust
use core::time::Duration;
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use rand_core::{RngCore, OsRng};
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use tokio::time::sleep;
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use serai_db::MemDb;
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use tributary::{Transaction as TransactionTrait, Tributary};
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use crate::{
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LocalP2p,
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tributary::Transaction,
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tests::tributary::{new_keys, new_spec, new_tributaries, run_tributaries, wait_for_tx_inclusion},
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};
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#[tokio::test]
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async fn tx_test() {
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let keys = new_keys(&mut OsRng);
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let spec = new_spec(&mut OsRng, &keys);
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let mut tributaries = new_tributaries(&keys, &spec).await;
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// Run the tributaries in the background
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tokio::spawn(run_tributaries(tributaries.clone()));
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// Send a TX from a random Tributary
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let sender =
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usize::try_from(OsRng.next_u64() % u64::try_from(tributaries.len()).unwrap()).unwrap();
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let key = keys[sender].clone();
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let attempt = 0;
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let mut commitments = vec![0; 256];
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OsRng.fill_bytes(&mut commitments);
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// Create the TX with a null signature so we can get its sig hash
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let block_before_tx = tributaries[sender].1.tip();
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let mut tx =
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Transaction::DkgCommitments(attempt, commitments.clone(), Transaction::empty_signed());
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tx.sign(&mut OsRng, spec.genesis(), &key, 0);
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assert!(tributaries[sender].1.add_transaction(tx.clone()).await);
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let included_in = wait_for_tx_inclusion(&tributaries[sender].1, block_before_tx, tx.hash()).await;
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// Also sleep for the block time to ensure the block is synced around before we run checks on it
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sleep(Duration::from_secs(Tributary::<MemDb, Transaction, LocalP2p>::block_time().into())).await;
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// All tributaries should have acknowledged this transaction in a block
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for (_, tributary) in tributaries {
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let block = tributary.block(&included_in).unwrap();
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assert_eq!(block.transactions, vec![tx.clone()]);
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}
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}
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