complete practical part

This commit is contained in:
2026-06-04 15:30:02 +03:30
parent 337519b280
commit 0adf5235e1
3 changed files with 59 additions and 57 deletions
+31 -11
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@@ -1,3 +1,4 @@
import java.sql.SQLOutput;
import java.util.Random;
/**
@@ -21,23 +22,42 @@ public class DownloadWorker implements Runnable {
@Override
public void run() {
// TODO: Record the chunk start time in chunkStatus.
chunkStatus.setStartTimeMs(System.currentTimeMillis());
double downloaded = 0.0;
// TODO: Print a message that this chunk has started downloading.
System.out.printf("worker-%d starting download of chunk (size: %.2f MB)%n", chunkStatus.getChunkId(), chunkStatus.getChunkSizeMB());
while (downloaded < chunkStatus.getChunkSizeMB()) {
// TODO: Generate a random sleep delay between min and max delay.
// TODO: Sleep for that delay.
// TODO: Generate a random download amount for this step.
// TODO: Increase downloaded, but do not go beyond chunk size.
// TODO: Save the updated downloaded value into chunkStatus.
// TODO: Optionally print step-by-step progress.
int delay = config.getMinStepDelayMs() + random.nextInt(config.getMaxStepDelayMs()-config.getMinStepDelayMs()+1);
try
{
Thread.sleep(delay);
} catch (InterruptedException e)
{
Thread.currentThread().interrupt();
System.err.printf("worker-%d interrupted%n", chunkStatus.getChunkId());
break;
}
// TODO: Mark the chunk as completed.
// TODO: Record the chunk end time in chunkStatus.
// TODO: Print a message that this chunk has finished downloading.
double stepSize = config.getMinStepDownloadMB() + random.nextDouble() * (config.getMaxStepDownloadMB() - config.getMinStepDownloadMB());
downloaded += stepSize;
if (downloaded > chunkStatus.getChunkSizeMB())
{
downloaded = chunkStatus.getChunkSizeMB();
}
chunkStatus.setDownloadedMB(downloaded);
System.out.printf("worker-%d progress: %.2f / %.2f MB (%.1f%%)%n",
chunkStatus.getChunkId(),
downloaded,
chunkStatus.getChunkSizeMB(),
(downloaded / chunkStatus.getChunkSizeMB()) * 100);
}
chunkStatus.setCompleted(true);
chunkStatus.setEndTimeMs(System.currentTimeMillis());
System.out.printf("worker-%d chunk download completed. Time: %d ms%n",
chunkStatus.getChunkId(),
chunkStatus.getDownloadDurationMs()); }
}
+22 -33
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@@ -34,48 +34,37 @@ public class Main {
workerThreads.add(workerThread);
// TODO:
// Students may print helpful debug information here,
// for example which chunk is assigned to which worker thread.
System.out.println("Created worker thread: " + workerThread.getName() +
" for chunk #" + chunk.getChunkId() +
" (size: " + chunk.getChunkSizeMB() + " MB)");
}
// 4. Create and start monitor thread
ProgressMonitor monitor = new ProgressMonitor(config, chunks);
Thread monitorThread = new Thread(monitor, "Progress-Monitor");
// TODO:
// Start the monitor thread before starting the workers
// so that progress can be displayed while downloading happens.
//
// Example idea:
// monitorThread.start();
monitorThread.start();
System.out.println("monitor thread started.");
// 5. Start worker threads
// TODO:
// Start each worker thread in workerThreads.
// Use a loop and call start() on each thread.
for (Thread thread : workerThreads)
{
thread.start();
System.out.println("started: "+thread.getName());
}
// 6. Wait for workers to finish
// TODO:
// Wait for all worker threads to complete by calling join().
// This should be done inside a try-catch block for InterruptedException.
//
// Hint:
// for (Thread thread : workerThreads) {
// thread.join();
// }
try
{
for (Thread thread : workerThreads)
{
thread.join();
// TODO:
// After all workers finish, the monitor thread may also need to stop.
// Depending on how ProgressMonitor is implemented, students may:
// - wait for it to finish on its own, or
// - add a stopping mechanism in ProgressMonitor later.
//
// If your monitor finishes automatically, you may join it here.
// NOTE:
// this final report may show 0 progress because no worker has actually run yet.
// Until students complete the thread start/join TODOs above,
}
} catch (InterruptedException e)
{
System.out.println("main thread interrupted while waiting for workers.");
Thread.currentThread().interrupt();
return;
}
// 7. Print final report
System.out.println();
+5 -12
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@@ -16,16 +16,6 @@ public class ProgressMonitor implements Runnable {
@Override
public void run() {
// TODO:
// Repeatedly check chunk progress until all chunks are completed.
// In each loop:
// 1. Read the downloaded size from every chunk
// 2. Add all downloaded amounts to totalDownloadedMB
// 3. Count completed chunks
// 4. Print a progress message
// 5. If completedChunks == chunks.size(), print a final monitor message and stop
// 6. Otherwise sleep for monitorDelayMs and continue
while (true) {
double totalDownloadedMB = 0.0;
@@ -55,8 +45,11 @@ public class ProgressMonitor implements Runnable {
);
// TODO:
// If all chunks are completed, print a final message and exit the loop
if (completedChunks == chunks.size())
{
System.out.printf("All chunks completed for %s. Monitor stopping>%n", fileName);
break;
}
try {
Thread.sleep(monitorDelayMs);