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Commits
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1c212aa155 |
@@ -22,7 +22,9 @@ public class DeadlockPreventionWorkshop {
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public static void useResources(Resource r1, Resource r2) {
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public static void useResources(Resource r1, Resource r2) {
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// TODO: Prevent deadlock by enforcing a consistent lock acquisition order
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// TODO: Prevent deadlock by enforcing a consistent lock acquisition order
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// Hint: Compare resource IDs and always synchronize on the resource with the smaller ID first.
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// Hint: Compare resource IDs and always synchronize on the resource with the smaller ID first.
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Resource first = r1.getId() < r2.getId() ? r1 : r2;
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Resource second = r1.getId() < r2.getId() ? r2 : r1;
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System.out.println(Thread.currentThread().getName() + " is attempting to lock " + r1.getName());
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System.out.println(Thread.currentThread().getName() + " is attempting to lock " + r1.getName());
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synchronized (r1) {
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synchronized (r1) {
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System.out.println("+ " + Thread.currentThread().getName() + " locked " + r1.getName());
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System.out.println("+ " + Thread.currentThread().getName() + " locked " + r1.getName());
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@@ -7,14 +7,19 @@ public class LockWorkshop {
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public static int counter = 0;
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public static int counter = 0;
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// TODO: Create a ReentrantLock instance to protect the critical section
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// TODO: Create a ReentrantLock instance to protect the critical section
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static final Lock lock = new ReentrantLock();
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public static class MyRunnable implements Runnable {
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public static class MyRunnable implements Runnable {
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@Override
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@Override
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public void run() {
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public void run() {
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int i;
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int i;
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for (i = 0; i < 1_000_000; i++) {
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for (i = 0; i < 1_000_000; i++) {
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// TODO: Acquire the lock, increment the counter, and release the lock safely in a finally block
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// TODO: Acquire the lock, increment the counter, and release the lock safely in a finally block
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counter += 1;
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lock.lock();
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try {
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counter += 1;
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} finally {
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lock.unlock();
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}
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}
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}
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System.out.println("Increments completed by " + Thread.currentThread().getName() + ": " + i);
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System.out.println("Increments completed by " + Thread.currentThread().getName() + ": " + i);
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}
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}
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@@ -4,14 +4,16 @@ public class SynchronizedWorkshop {
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public static int counter = 0;
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public static int counter = 0;
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// TODO: Define a lock object to prevent race condition
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// TODO: Define a lock object to prevent race condition
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static final Object lock = new Object();
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public static class MyRunnable implements Runnable {
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public static class MyRunnable implements Runnable {
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@Override
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@Override
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public void run() {
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public void run() {
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int i;
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int i;
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for (i = 0; i < 1_000_000; i++) {
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for (i = 0; i < 1_000_000; i++) {
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// TODO: Use a synchronized block to protect the counter increment
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// TODO: Use a synchronized block to protect the counter increment
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counter += 1;
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synchronized (lock) {
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counter += 1;
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}
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}
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}
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System.out.println("Increments completed by " + Thread.currentThread().getName() + ": " + i);
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System.out.println("Increments completed by " + Thread.currentThread().getName() + ": " + i);
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}
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}
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@@ -24,11 +24,25 @@ public class TaylorSeries {
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// TODO: Calculate the n-th term of the Taylor series for sin(x):
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// TODO: Calculate the n-th term of the Taylor series for sin(x):
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// term = (-1)^n * (x^(2n+1)) / (2n+1)!
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// term = (-1)^n * (x^(2n+1)) / (2n+1)!
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// Add the term to the global sum ensuring thread-safety.
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// Add the term to the global sum ensuring thread-safety.
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BigDecimal sign = (n % 2 == 0) ? BigDecimal.ONE : BigDecimal.ONE.negate();
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BigDecimal numerator = x.pow(2 * n + 1, mc);
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BigDecimal denominator = factorial(2 * n + 1);
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BigDecimal term = sign.multiply(numerator, mc).divide(denominator, mc);
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synchronized (TaylorSeries.class) {
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sum = sum.add(term, mc);
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}
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}
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}
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// TODO: Implement factorial(k) using BigDecimal
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// TODO: Implement factorial(k) using BigDecimal
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private BigDecimal factorial(int k) {
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private BigDecimal factorial(int k) {
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return BigDecimal.ZERO;
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if (k == 0) return BigDecimal.ONE;
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BigDecimal result = BigDecimal.ONE;
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for (int i = 2; i <= k; i++) {
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result = result.multiply(BigDecimal.valueOf(i));
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}
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return result;
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// return BigDecimal.ZERO;
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}
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}
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}
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}
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@@ -42,6 +56,7 @@ public class TaylorSeries {
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// Submit tasks to calculate terms
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// Submit tasks to calculate terms
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for (int i = 0; i < 100; i++) {
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for (int i = 0; i < 100; i++) {
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// TODO: Submit task to the thread pool
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// TODO: Submit task to the thread pool
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threadPool.submit(new CalculateSin(x, i));
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}
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}
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threadPool.shutdown();
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threadPool.shutdown();
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