110e0e143f
* db: migrate from lmdb-zero to heed * fix: check resizing operation and wait to avoid crash with multiple batches, fix exists check at batch * build: fix missing deps at Cargo.lock * lmdb: single environment, migrate existing databases with provided non-default environment name * fix: revert chunk size to 128mb * lmdb: ability to use multiple shared environments * build: remove unused dependency * fix: resize to have correct multiplier of the system page size * lmdb: speed up prefix iter by storing keys * lmdb: default env name * lmdb: wait db resize before read, reduce timeout before resizing * lmdb: use static reader for iterator, count existing batches for stable resize * fix: check batches count on resize waiting * lmdb: use separate databases instead of prefixes, use default db for values without prefixes, migrate old environment * fix: pop pos key * lmdb: count all open transactions to finish before resizing * lmdb: immediate resize if there are no open transactions * lmdb: remove env state when there are no more stores * lmdb: use atomic for resize and resize checking flags * lmdb: sleep 10ms when waiting all opened txs to be closed * lmdb: use atomic open txs and stores count * lmdb: use index to detect separator, ignore unknown db key to not have a panic * lmdb: store max 10k keys in the iterator * lmdb: check iter result on getting total * lmdb: handle errors at iterator * lmdb: handle an error when db with provided key not found * lmdb: fix iterate over 10k keys * lmdb: document migration resize safety * lmdb: fix iter test * lmdb: clear new db after unsuccessful migration, handle read error on migration to interrupt process * store: bring back old key methods to reproduce data migration * lmdb: return an error on unsuccessful migration * lmdb: migration test, clean data after allocate test * lmdb: info migration log * fix: move iterator before handling an error to allow skip bad value * lmdb: return an error if removal of old DB file failed after migration * lmdb: lifetime for iterator, use write transaction at batch iterator * lmdb: migration progress * fix: tests * lmdb: immediately set resizing flag, ignore resizing flag while there are more than 0 opened txs to avoid stuck, optimize tx counter for some operations * lmdb: key for successful migration * lmdb: fix put database creation at separate block to avoid lifetime issues when returning an error on migration
295 lines
9.5 KiB
Rust
295 lines
9.5 KiB
Rust
// Copyright 2021 The Grin Developers
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use self::chain::types::NoopAdapter;
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use self::chain::Error;
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use self::core::core::KernelFeatures;
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use self::core::global::{self, ChainTypes};
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use self::core::libtx::{self, build, ProofBuilder};
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use self::core::{consensus, pow};
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use self::keychain::{ExtKeychain, ExtKeychainPath, Keychain};
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use chrono::Duration;
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use grin_chain as chain;
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use grin_core as core;
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use grin_keychain as keychain;
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use grin_util as util;
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use std::fs;
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use std::sync::Arc;
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fn clean_output_dir(dir_name: &str) {
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let _ = fs::remove_dir_all(dir_name);
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}
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#[test]
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fn test_coinbase_maturity() {
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util::init_test_logger();
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let chain_dir = ".grin_coinbase";
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clean_output_dir(chain_dir);
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global::set_local_chain_type(ChainTypes::AutomatedTesting);
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let genesis_block = pow::mine_genesis_block().unwrap();
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{
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let chain = chain::Chain::init(
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chain_dir.to_string(),
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Arc::new(NoopAdapter {}),
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genesis_block,
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pow::verify_size,
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false,
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None,
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)
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.unwrap();
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let prev = chain.head_header().unwrap();
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let keychain = ExtKeychain::from_random_seed(false).unwrap();
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let builder = ProofBuilder::new(&keychain);
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let key_id1 = ExtKeychainPath::new(1, 1, 0, 0, 0).to_identifier();
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let key_id2 = ExtKeychainPath::new(1, 2, 0, 0, 0).to_identifier();
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let key_id3 = ExtKeychainPath::new(1, 3, 0, 0, 0).to_identifier();
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let key_id4 = ExtKeychainPath::new(1, 4, 0, 0, 0).to_identifier();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let reward = libtx::reward::output(&keychain, &builder, &key_id1, 0, false).unwrap();
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let mut block =
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core::core::Block::new(&prev, &[], next_header_info.difficulty, reward).unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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assert_eq!(block.outputs().len(), 1);
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let coinbase_output = block.outputs()[0];
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assert!(coinbase_output.is_coinbase());
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chain
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.process_block(block.clone(), chain::Options::MINE)
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.unwrap();
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let prev = chain.head_header().unwrap();
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let amount = consensus::REWARD;
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let lock_height = 1 + global::coinbase_maturity();
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assert_eq!(lock_height, 4);
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// here we build a tx that attempts to spend the earlier coinbase output
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// this is not a valid tx as the coinbase output cannot be spent yet
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let coinbase_txn = build::transaction(
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KernelFeatures::Plain { fee: 2.into() },
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&[
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build::coinbase_input(amount, key_id1.clone()),
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build::output(amount - 2, key_id2.clone()),
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],
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&keychain,
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&builder,
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)
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.unwrap();
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let txs = &[coinbase_txn.clone()];
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let fees = txs.iter().map(|tx| tx.fee()).sum();
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let reward = libtx::reward::output(&keychain, &builder, &key_id3, fees, false).unwrap();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let mut block =
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core::core::Block::new(&prev, txs, next_header_info.difficulty, reward).unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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// Confirm the tx attempting to spend the coinbase output
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// is not valid at the current block height given the current chain state.
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match chain.verify_coinbase_maturity(&coinbase_txn.inputs()) {
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Ok(_) => {}
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Err(e) => match e {
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Error::ImmatureCoinbase => {}
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_ => panic!("Expected transaction error with immature coinbase."),
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},
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}
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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// mine enough blocks to increase the height sufficiently for
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// coinbase to reach maturity and be spendable in the next block
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for _ in 0..3 {
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let prev = chain.head_header().unwrap();
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let keychain = ExtKeychain::from_random_seed(false).unwrap();
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let builder = ProofBuilder::new(&keychain);
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let key_id1 = ExtKeychainPath::new(1, 1, 0, 0, 0).to_identifier();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let reward = libtx::reward::output(&keychain, &builder, &key_id1, 0, false).unwrap();
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let mut block =
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core::core::Block::new(&prev, &[], next_header_info.difficulty, reward).unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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assert_eq!(block.outputs().len(), 1);
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let coinbase_output = block.outputs()[0];
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assert!(coinbase_output.is_coinbase());
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chain
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.process_block(block.clone(), chain::Options::MINE)
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.unwrap();
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let prev = chain.head_header().unwrap();
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let amount = consensus::REWARD;
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let lock_height = 1 + global::coinbase_maturity();
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assert_eq!(lock_height, 4);
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// here we build a tx that attempts to spend the earlier coinbase output
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// this is not a valid tx as the coinbase output cannot be spent yet
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let coinbase_txn = build::transaction(
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KernelFeatures::Plain { fee: 2.into() },
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&[
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build::coinbase_input(amount, key_id1.clone()),
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build::output(amount - 2, key_id2.clone()),
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],
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&keychain,
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&builder,
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)
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.unwrap();
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let txs = &[coinbase_txn.clone()];
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let fees = txs.iter().map(|tx| tx.fee()).sum();
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let reward = libtx::reward::output(&keychain, &builder, &key_id3, fees, false).unwrap();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let mut block =
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core::core::Block::new(&prev, txs, next_header_info.difficulty, reward).unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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// Confirm the tx attempting to spend the coinbase output
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// is not valid at the current block height given the current chain state.
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match chain.verify_coinbase_maturity(&coinbase_txn.inputs()) {
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Ok(_) => {}
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Err(e) => match e {
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Error::ImmatureCoinbase => {}
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_ => panic!("Expected transaction error with immature coinbase."),
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},
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}
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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// mine enough blocks to increase the height sufficiently for
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// coinbase to reach maturity and be spendable in the next block
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for _ in 0..3 {
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let prev = chain.head_header().unwrap();
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let keychain = ExtKeychain::from_random_seed(false).unwrap();
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let builder = ProofBuilder::new(&keychain);
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let pk = ExtKeychainPath::new(1, 1, 0, 0, 0).to_identifier();
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let reward = libtx::reward::output(&keychain, &builder, &pk, 0, false).unwrap();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let mut block =
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core::core::Block::new(&prev, &[], next_header_info.difficulty, reward)
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.unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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chain.process_block(block, chain::Options::MINE).unwrap();
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}
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let prev = chain.head_header().unwrap();
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// Confirm the tx spending the coinbase output is now valid.
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// The coinbase output has matured sufficiently based on current chain state.
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chain
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.verify_coinbase_maturity(&coinbase_txn.inputs())
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.unwrap();
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let txs = &[coinbase_txn];
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let fees = txs.iter().map(|tx| tx.fee()).sum();
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let next_header_info =
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consensus::next_difficulty(prev.height + 1, chain.difficulty_iter().unwrap());
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let reward = libtx::reward::output(&keychain, &builder, &key_id4, fees, false).unwrap();
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let mut block =
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core::core::Block::new(&prev, txs, next_header_info.difficulty, reward).unwrap();
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block.header.timestamp = prev.timestamp + Duration::seconds(60);
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block.header.pow.secondary_scaling = next_header_info.secondary_scaling;
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chain.set_txhashset_roots(&mut block).unwrap();
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pow::pow_size(
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&mut block.header,
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next_header_info.difficulty,
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global::proofsize(),
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global::min_edge_bits(),
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)
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.unwrap();
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let result = chain.process_block(block, chain::Options::MINE);
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match result {
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Ok(_) => (),
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Err(_) => panic!("we did not expect an error here"),
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};
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}
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}
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// Cleanup chain directory
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clean_output_dir(chain_dir);
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}
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