refactor(banking-demo): introduce DemoApplication orchestrator and add controlled lifecycle management
- Replace DemoFactory with DemoApplication to centralize system setup, execution, and shutdown - Move ExecutorService and ScheduledExecutorService lifecycle management into application layer - Ensure proper shutdown sequence for worker and monitoring threads - Simplify Main class to a minimal entry-point wrapper - Improve clarity of execution flow: build → run → shutdown - Prevent resource leakage by explicitly awaiting termination of thread pools
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package dev.banking;
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import dev.banking.model.*;
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import dev.banking.monitor.LiveMonitor;
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import dev.banking.processor.TransactionProcessor;
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import dev.banking.service.BankingSystem;
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import java.util.*;
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import java.util.concurrent.*;
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/**
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* DemoApplication is responsible for:
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* - Building the system
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* - Running the simulation
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* - Managing lifecycle (threads, schedulers)
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*
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* This class replaces DemoFactory as a full runner.
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*/
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public final class DemoApplication {
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private DemoApplication() {
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}
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public static void run() {
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System.out.println("Initializing Banking Simulation...\n");
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/*
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* 1. Create bank accounts
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*/
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BankAccount acc1 = new BankAccount(1, 1000);
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BankAccount acc2 = new BankAccount(2, 2000);
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BankAccount acc3 = new BankAccount(3, 1500);
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Map<Integer, BankAccount> accounts = new HashMap<>();
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accounts.put(1, acc1);
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accounts.put(2, acc2);
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accounts.put(3, acc3);
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/*
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* 2. Create transactions
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*/
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List<Transaction> transactions = List.of(
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new DepositTransaction(1, 200),
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new WithdrawTransaction(2, 300),
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new TransferTransaction(1, 2, 150),
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new TransferTransaction(2, 3, 400),
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new DepositTransaction(3, 500),
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new WithdrawTransaction(1, 100),
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new TransferTransaction(3, 1, 250)
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);
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/*
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* 3. Thread pool (workers)
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*/
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ExecutorService executor = Executors.newFixedThreadPool(4);
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/*
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* 4. Processor
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*/
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TransactionProcessor processor = new TransactionProcessor(accounts);
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/*
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* 5. Banking system
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*/
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BankingSystem bankingSystem = new BankingSystem(executor, processor);
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/*
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* 6. Live monitor (UI simulation)
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*/
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LiveMonitor monitor = new LiveMonitor();
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ScheduledExecutorService monitorExecutor = Executors.newSingleThreadScheduledExecutor();
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monitorExecutor.scheduleAtFixedRate(() -> {
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monitor.update(accounts.values());
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System.out.println("----------------------");
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}, 0, 1, TimeUnit.SECONDS);
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/*
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* 7. Run simulation
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*/
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bankingSystem.processTransactions(transactions);
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/*
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* 8. Shutdown / lifecycle management
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*/
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shutdown(executor, monitorExecutor);
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System.out.println("\nSimulation completed.");
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}
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private static void shutdown(
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ExecutorService executor,
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ScheduledExecutorService monitorExecutor
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) {
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try {
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executor.shutdown();
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executor.awaitTermination(5, TimeUnit.SECONDS);
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monitorExecutor.shutdown();
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monitorExecutor.awaitTermination(5, TimeUnit.SECONDS);
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} catch (InterruptedException e) {
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Thread.currentThread().interrupt();
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}
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}
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}
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