pub mod common;
use self::core::core::hash::Hashed;
use self::core::core::{Block, BlockHeader, Transaction};
use self::core::libtx;
use self::core::pow::Difficulty;
use self::keychain::{ExtKeychain, Keychain};
use self::util::RwLock;
use crate::common::*;
use epic_core as core;
use epic_keychain as keychain;
use epic_util as util;
use std::sync::Arc;
#[test]
fn test_transaction_pool_block_building() {
util::init_test_logger();
let keychain: ExtKeychain = Keychain::from_random_seed(false).unwrap();
let db_root = ".epic_block_building".to_string();
clean_output_dir(db_root.clone());
{
let mut chain = ChainAdapter::init(db_root.clone()).unwrap();
let add_block =
|prev_header: BlockHeader, txs: Vec<Transaction>, chain: &mut ChainAdapter| {
let height = prev_header.height + 1;
let key_id = ExtKeychain::derive_key_id(1, height as u32, 0, 0, 0);
let fee = txs.iter().map(|x| x.fee()).sum();
let reward = libtx::reward::output(
&keychain,
&libtx::ProofBuilder::new(&keychain),
&key_id,
fee,
false,
height,
)
.unwrap();
let mut block = Block::new(&prev_header, txs, Difficulty::min(), reward).unwrap();
block.header.prev_root = prev_header.hash();
chain.update_db_for_block(&block);
block
};
let block = add_block(BlockHeader::default(), vec![], &mut chain);
let header = block.header;
let initial_tx =
test_transaction_spending_coinbase(&keychain, &header, vec![10, 20, 30, 40]);
let block = add_block(header, vec![initial_tx], &mut chain);
let header = block.header;
let pool = RwLock::new(test_setup(Arc::new(chain.clone())));
let root_tx_1 = test_transaction(&keychain, vec![10, 20], vec![24]);
let root_tx_2 = test_transaction(&keychain, vec![30], vec![28]);
let root_tx_3 = test_transaction(&keychain, vec![40], vec![38]);
let child_tx_1 = test_transaction(&keychain, vec![24], vec![22]);
let child_tx_2 = test_transaction(&keychain, vec![38], vec![32]);
{
let mut write_pool = pool.write();
write_pool
.add_to_pool(test_source(), root_tx_1.clone(), false, &header)
.unwrap();
write_pool
.add_to_pool(test_source(), root_tx_2.clone(), false, &header)
.unwrap();
write_pool
.add_to_pool(test_source(), root_tx_3.clone(), false, &header)
.unwrap();
write_pool
.add_to_pool(test_source(), child_tx_1.clone(), false, &header)
.unwrap();
write_pool
.add_to_pool(test_source(), child_tx_2.clone(), false, &header)
.unwrap();
assert_eq!(write_pool.total_size(), 5);
}
let txs = pool.read().prepare_mineable_transactions().unwrap();
let block = add_block(header, txs, &mut chain);
assert_eq!(block.inputs().len(), 4);
assert_eq!(block.outputs().len(), 4);
assert_eq!(block.kernels().len(), 6);
assert!(block.kernels().contains(&root_tx_1.kernels()[0]));
assert!(block.kernels().contains(&root_tx_2.kernels()[0]));
assert!(block.kernels().contains(&root_tx_3.kernels()[0]));
assert!(block.kernels().contains(&child_tx_1.kernels()[0]));
assert!(block.kernels().contains(&child_tx_1.kernels()[0]));
{
let mut write_pool = pool.write();
write_pool.reconcile_block(&block).unwrap();
assert_eq!(write_pool.total_size(), 0);
}
}
clean_output_dir(db_root.clone());
}