mirror of
https://github.com/mimblewimble/grin.git
synced 2025-01-21 11:31:08 +03:00
dda88f193b
* Ignore wallet data * Fix typo
428 lines
13 KiB
Rust
428 lines
13 KiB
Rust
// Copyright 2018 The Grin Developers
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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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//! tests for transactions building within libtx
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extern crate grin_chain as chain;
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extern crate grin_core as core;
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extern crate grin_keychain as keychain;
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extern crate grin_store as store;
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extern crate grin_util as util;
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extern crate grin_wallet as wallet;
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extern crate rand;
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#[macro_use]
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extern crate slog;
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extern crate serde;
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extern crate chrono;
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extern crate uuid;
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mod common;
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use common::testclient::{LocalWalletClient, WalletProxy};
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use std::fs;
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use std::thread;
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use std::time::Duration;
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use core::global;
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use core::global::ChainTypes;
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use keychain::ExtKeychain;
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use util::LOGGER;
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use wallet::libtx::slate::Slate;
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use wallet::libwallet;
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use wallet::libwallet::types::OutputStatus;
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fn clean_output_dir(test_dir: &str) {
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let _ = fs::remove_dir_all(test_dir);
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}
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fn setup(test_dir: &str) {
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util::init_test_logger();
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clean_output_dir(test_dir);
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global::set_mining_mode(ChainTypes::AutomatedTesting);
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}
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/// Exercises the Transaction API fully with a test WalletClient operating
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/// directly on a chain instance
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/// Callable with any type of wallet
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fn basic_transaction_api(
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test_dir: &str,
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backend_type: common::BackendType,
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) -> Result<(), libwallet::Error> {
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setup(test_dir);
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// Create a new proxy to simulate server and wallet responses
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let mut wallet_proxy: WalletProxy<LocalWalletClient, ExtKeychain> = WalletProxy::new(test_dir);
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let chain = wallet_proxy.chain.clone();
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// Create a new wallet test client, and set its queues to communicate with the
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// proxy
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let client = LocalWalletClient::new("wallet1", wallet_proxy.tx.clone());
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let wallet1 = common::create_wallet(
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&format!("{}/wallet1", test_dir),
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client.clone(),
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backend_type.clone(),
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);
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wallet_proxy.add_wallet("wallet1", client.get_send_instance(), wallet1.clone());
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// define recipient wallet, add to proxy
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let client = LocalWalletClient::new("wallet2", wallet_proxy.tx.clone());
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let wallet2 = common::create_wallet(
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&format!("{}/wallet2", test_dir),
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client.clone(),
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backend_type.clone(),
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);
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wallet_proxy.add_wallet("wallet2", client.get_send_instance(), wallet2.clone());
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// Set the wallet proxy listener running
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thread::spawn(move || {
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if let Err(e) = wallet_proxy.run() {
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error!(LOGGER, "Wallet Proxy error: {}", e);
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}
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});
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// few values to keep things shorter
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let reward = core::consensus::REWARD;
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let cm = global::coinbase_maturity();
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// mine a few blocks
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let _ = common::award_blocks_to_wallet(&chain, wallet1.clone(), 10);
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// Check wallet 1 contents are as expected
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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let (wallet1_refreshed, wallet1_info) = api.retrieve_summary_info(true)?;
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debug!(
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LOGGER,
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"Wallet 1 Info Pre-Transaction, after {} blocks: {:?}",
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wallet1_info.last_confirmed_height,
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wallet1_info
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);
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assert!(wallet1_refreshed);
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assert_eq!(
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wallet1_info.amount_currently_spendable,
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(wallet1_info.last_confirmed_height - cm) * reward
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);
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assert_eq!(wallet1_info.amount_immature, cm * reward);
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Ok(())
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})?;
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// assert wallet contents
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// and a single use api for a send command
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let amount = 60_000_000_000;
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let mut slate = Slate::blank(1);
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wallet::controller::owner_single_use(wallet1.clone(), |sender_api| {
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// note this will increment the block count as part of the transaction "Posting"
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slate = sender_api.issue_send_tx(
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amount, // amount
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2, // minimum confirmations
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"wallet2", // dest
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500, // max outputs
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true, // select all outputs
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)?;
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Ok(())
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})?;
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// Check transaction log for wallet 1
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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let (_, wallet1_info) = api.retrieve_summary_info(true)?;
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let (refreshed, txs) = api.retrieve_txs(true, None)?;
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assert!(refreshed);
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let fee = wallet::libtx::tx_fee(
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wallet1_info.last_confirmed_height as usize - cm as usize,
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2,
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None,
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);
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// we should have a transaction entry for this slate
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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let tx = tx.unwrap();
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assert!(!tx.confirmed);
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assert!(tx.confirmation_ts.is_none());
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assert_eq!(tx.amount_debited - tx.amount_credited, fee + amount);
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assert_eq!(Some(fee), tx.fee);
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Ok(())
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})?;
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// Check transaction log for wallet 2
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wallet::controller::owner_single_use(wallet2.clone(), |api| {
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let (refreshed, txs) = api.retrieve_txs(true, None)?;
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assert!(refreshed);
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// we should have a transaction entry for this slate
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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let tx = tx.unwrap();
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assert!(!tx.confirmed);
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assert!(tx.confirmation_ts.is_none());
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assert_eq!(amount, tx.amount_credited);
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assert_eq!(0, tx.amount_debited);
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assert_eq!(None, tx.fee);
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Ok(())
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})?;
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// post transaction
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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api.post_tx(&slate, false)?;
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Ok(())
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})?;
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// Check wallet 1 contents are as expected
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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let (wallet1_refreshed, wallet1_info) = api.retrieve_summary_info(true)?;
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debug!(
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LOGGER,
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"Wallet 1 Info Post Transaction, after {} blocks: {:?}",
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wallet1_info.last_confirmed_height,
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wallet1_info
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);
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let fee = wallet::libtx::tx_fee(
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wallet1_info.last_confirmed_height as usize - 1 - cm as usize,
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2,
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None,
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);
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assert!(wallet1_refreshed);
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// wallet 1 received fees, so amount should be the same
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assert_eq!(
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wallet1_info.total,
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amount * wallet1_info.last_confirmed_height - amount
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);
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assert_eq!(
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wallet1_info.amount_currently_spendable,
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(wallet1_info.last_confirmed_height - cm) * reward - amount - fee
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);
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assert_eq!(wallet1_info.amount_immature, cm * reward + fee);
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// check tx log entry is confirmed
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let (refreshed, txs) = api.retrieve_txs(true, None)?;
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assert!(refreshed);
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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let tx = tx.unwrap();
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assert!(tx.confirmed);
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assert!(tx.confirmation_ts.is_some());
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Ok(())
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})?;
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// mine a few more blocks
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let _ = common::award_blocks_to_wallet(&chain, wallet1.clone(), 3);
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// refresh wallets and retrieve info/tests for each wallet after maturity
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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let (wallet1_refreshed, wallet1_info) = api.retrieve_summary_info(true)?;
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debug!(LOGGER, "Wallet 1 Info: {:?}", wallet1_info);
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assert!(wallet1_refreshed);
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assert_eq!(
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wallet1_info.total,
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amount * wallet1_info.last_confirmed_height - amount
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);
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assert_eq!(
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wallet1_info.amount_currently_spendable,
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(wallet1_info.last_confirmed_height - cm - 1) * reward
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);
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Ok(())
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})?;
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wallet::controller::owner_single_use(wallet2.clone(), |api| {
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let (wallet2_refreshed, wallet2_info) = api.retrieve_summary_info(true)?;
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assert!(wallet2_refreshed);
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assert_eq!(wallet2_info.amount_currently_spendable, amount);
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// check tx log entry is confirmed
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let (refreshed, txs) = api.retrieve_txs(true, None)?;
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assert!(refreshed);
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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let tx = tx.unwrap();
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assert!(tx.confirmed);
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assert!(tx.confirmation_ts.is_some());
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Ok(())
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})?;
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// let logging finish
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thread::sleep(Duration::from_millis(200));
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Ok(())
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}
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/// Test rolling back transactions and outputs when a transaction is never
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/// posted to a chain
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fn tx_rollback(test_dir: &str, backend_type: common::BackendType) -> Result<(), libwallet::Error> {
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setup(test_dir);
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// Create a new proxy to simulate server and wallet responses
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let mut wallet_proxy: WalletProxy<LocalWalletClient, ExtKeychain> = WalletProxy::new(test_dir);
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let chain = wallet_proxy.chain.clone();
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// Create a new wallet test client, and set its queues to communicate with the
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// proxy
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let client = LocalWalletClient::new("wallet1", wallet_proxy.tx.clone());
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let wallet1 = common::create_wallet(
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&format!("{}/wallet1", test_dir),
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client.clone(),
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backend_type.clone(),
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);
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wallet_proxy.add_wallet("wallet1", client.get_send_instance(), wallet1.clone());
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// define recipient wallet, add to proxy
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let client = LocalWalletClient::new("wallet2", wallet_proxy.tx.clone());
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let wallet2 = common::create_wallet(
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&format!("{}/wallet2", test_dir),
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client.clone(),
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backend_type.clone(),
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);
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wallet_proxy.add_wallet("wallet2", client.get_send_instance(), wallet2.clone());
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// Set the wallet proxy listener running
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thread::spawn(move || {
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if let Err(e) = wallet_proxy.run() {
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error!(LOGGER, "Wallet Proxy error: {}", e);
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}
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});
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// few values to keep things shorter
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let reward = core::consensus::REWARD;
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let cm = global::coinbase_maturity();
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// mine a few blocks
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let _ = common::award_blocks_to_wallet(&chain, wallet1.clone(), 5);
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let amount = 30_000_000_000;
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let mut slate = Slate::blank(1);
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wallet::controller::owner_single_use(wallet1.clone(), |sender_api| {
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// note this will increment the block count as part of the transaction "Posting"
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slate = sender_api.issue_send_tx(
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amount, // amount
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2, // minimum confirmations
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"wallet2", // dest
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500, // max outputs
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true, // select all outputs
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)?;
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Ok(())
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})?;
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// Check transaction log for wallet 1
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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let (refreshed, _wallet1_info) = api.retrieve_summary_info(true)?;
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assert!(refreshed);
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let (_, txs) = api.retrieve_txs(true, None)?;
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// we should have a transaction entry for this slate
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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let mut locked_count = 0;
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let mut unconfirmed_count = 0;
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// get the tx entry, check outputs are as expected
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let (_, outputs) = api.retrieve_outputs(true, false, Some(tx.unwrap().id))?;
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for o in outputs.clone() {
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if o.status == OutputStatus::Locked {
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locked_count = locked_count + 1;
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}
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if o.status == OutputStatus::Unconfirmed {
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unconfirmed_count = unconfirmed_count + 1;
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}
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}
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assert_eq!(outputs.len(), 3);
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assert_eq!(locked_count, 2);
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assert_eq!(unconfirmed_count, 1);
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Ok(())
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})?;
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// Check transaction log for wallet 2
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wallet::controller::owner_single_use(wallet2.clone(), |api| {
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let (refreshed, txs) = api.retrieve_txs(true, None)?;
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assert!(refreshed);
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let mut unconfirmed_count = 0;
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let tx = txs.iter().find(|t| t.tx_slate_id == Some(slate.id));
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assert!(tx.is_some());
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// get the tx entry, check outputs are as expected
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let (_, outputs) = api.retrieve_outputs(true, false, Some(tx.unwrap().id))?;
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for o in outputs.clone() {
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if o.status == OutputStatus::Unconfirmed {
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unconfirmed_count = unconfirmed_count + 1;
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}
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}
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assert_eq!(outputs.len(), 1);
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assert_eq!(unconfirmed_count, 1);
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let (refreshed, wallet2_info) = api.retrieve_summary_info(true)?;
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assert!(refreshed);
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assert_eq!(wallet2_info.amount_currently_spendable, 0,);
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assert_eq!(wallet2_info.total, amount);
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Ok(())
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})?;
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// wallet 1 is bold and doesn't ever post the transaction mine a few more blocks
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let _ = common::award_blocks_to_wallet(&chain, wallet1.clone(), 5);
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// Wallet 1 decides to roll back instead
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wallet::controller::owner_single_use(wallet1.clone(), |api| {
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// can't roll back coinbase
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let res = api.cancel_tx(1);
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assert!(res.is_err());
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let (_, txs) = api.retrieve_txs(true, None)?;
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let tx = txs.iter()
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.find(|t| t.tx_slate_id == Some(slate.id))
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.unwrap();
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api.cancel_tx(tx.id)?;
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let (refreshed, wallet1_info) = api.retrieve_summary_info(true)?;
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assert!(refreshed);
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// check all eligible inputs should be now be spendable
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assert_eq!(
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wallet1_info.amount_currently_spendable,
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(wallet1_info.last_confirmed_height - cm) * reward
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);
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// can't roll back again
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let res = api.cancel_tx(tx.id);
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assert!(res.is_err());
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Ok(())
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})?;
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// Wallet 2 rolls back
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wallet::controller::owner_single_use(wallet2.clone(), |api| {
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let (_, txs) = api.retrieve_txs(true, None)?;
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let tx = txs.iter()
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.find(|t| t.tx_slate_id == Some(slate.id))
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.unwrap();
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api.cancel_tx(tx.id)?;
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let (refreshed, wallet2_info) = api.retrieve_summary_info(true)?;
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assert!(refreshed);
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// check all eligible inputs should be now be spendable
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assert_eq!(wallet2_info.amount_currently_spendable, 0,);
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assert_eq!(wallet2_info.total, 0,);
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// can't roll back again
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let res = api.cancel_tx(tx.id);
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assert!(res.is_err());
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Ok(())
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})?;
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// let logging finish
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thread::sleep(Duration::from_millis(200));
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Ok(())
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}
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#[ignore]
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#[test]
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fn file_wallet_basic_transaction_api() {
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let test_dir = "test_output/basic_transaction_api_file";
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let _ = basic_transaction_api(test_dir, common::BackendType::FileBackend);
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}
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#[test]
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fn db_wallet_basic_transaction_api() {
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let test_dir = "test_output/basic_transaction_api_db";
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if let Err(e) = basic_transaction_api(test_dir, common::BackendType::LMDBBackend) {
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println!("Libwallet Error: {}", e);
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}
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}
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#[test]
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fn db_wallet_tx_rollback() {
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let test_dir = "test_output/tx_rollback_db";
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if let Err(e) = tx_rollback(test_dir, common::BackendType::LMDBBackend) {
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println!("Libwallet Error: {}", e);
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}
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}
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