Introduced jmh benchmarking (#2549)
This commit is contained in:
parent
839a68f616
commit
133bbe1aca
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@ -201,6 +201,16 @@
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<artifactId>vavr</artifactId>
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<version>${vavr.version}</version>
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</dependency>
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<dependency>
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<groupId>org.openjdk.jmh</groupId>
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<artifactId>jmh-core</artifactId>
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<version>1.19</version>
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</dependency>
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<dependency>
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<groupId>org.openjdk.jmh</groupId>
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<artifactId>jmh-generator-annprocess</artifactId>
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<version>1.19</version>
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</dependency>
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</dependencies>
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<build>
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178
core-java/src/main/java/com/baeldung/numberofdigits/Benchmarking.java
Normal file → Executable file
178
core-java/src/main/java/com/baeldung/numberofdigits/Benchmarking.java
Normal file → Executable file
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@ -1,131 +1,67 @@
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package com.baeldung.numberofdigits;
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import static com.baeldung.designpatterns.util.LogerUtil.LOG;;
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import java.io.IOException;
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import java.util.concurrent.TimeUnit;
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public class Benchmarking {;
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private static final int LOWER_BOUND = 1;
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private static final int UPPER_BOUND = 999999999;
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public static void main(String[] args) {
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LOG.info("Testing all methods...");
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long length = test_stringBasedSolution();
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LOG.info("String Based Solution : " + length);
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length = test_logarithmicApproach();
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LOG.info("Logarithmic Approach : " + length);
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length = test_repeatedMultiplication();
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LOG.info("Repeated Multiplication : " + length);
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length = test_shiftOperators();
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LOG.info("Shift Operators : " + length);
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length = test_dividingWithPowersOf2();
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LOG.info("Dividing with Powers of 2 : " + length);
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length = test_divideAndConquer();
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LOG.info("Divide And Conquer : " + length);
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import org.openjdk.jmh.annotations.Benchmark;
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import org.openjdk.jmh.annotations.BenchmarkMode;
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import org.openjdk.jmh.annotations.Mode;
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import org.openjdk.jmh.annotations.OutputTimeUnit;
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import org.openjdk.jmh.annotations.Scope;
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import org.openjdk.jmh.annotations.State;
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import org.openjdk.jmh.runner.RunnerException;
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public class Benchmarking {
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public static void main(String[] args) throws RunnerException, IOException {
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org.openjdk.jmh.Main.main(args);
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}
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private static long test_stringBasedSolution() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.stringBasedSolution(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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}
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private static long test_logarithmicApproach() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.logarithmicApproach(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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}
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private static long test_repeatedMultiplication() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.repeatedMultiplication(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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}
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private static long test_shiftOperators() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.shiftOperators(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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}
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private static long test_dividingWithPowersOf2() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.dividingWithPowersOf2(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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}
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private static long test_divideAndConquer() {
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long startTime, stopTime, elapsedTime;
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startTime = System.currentTimeMillis();
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int total = 0;
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for (int i = LOWER_BOUND; i <= UPPER_BOUND; i++) {
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total += NumberOfDigits.divideAndConquer(i);
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}
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stopTime = System.currentTimeMillis();
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elapsedTime = stopTime - startTime;
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return elapsedTime;
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@State(Scope.Thread)
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public static class ExecutionPlan {
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public int number = Integer.MAX_VALUE;
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public int length = 0;
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public NumberOfDigits numberOfDigits= new NumberOfDigits();
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void stringBasedSolution(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.stringBasedSolution(plan.number);
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void logarithmicApproach(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.logarithmicApproach(plan.number);
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void repeatedMultiplication(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.repeatedMultiplication(plan.number);
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void shiftOperators(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.shiftOperators(plan.number);
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void dividingWithPowersOf2(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.dividingWithPowersOf2(plan.number);
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}
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@Benchmark
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@BenchmarkMode(Mode.AverageTime)
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@OutputTimeUnit(TimeUnit.NANOSECONDS)
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public void divideAndConquer(ExecutionPlan plan) {
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plan.length = plan.numberOfDigits.divideAndConquer(plan.number);
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}
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}
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12
core-java/src/main/java/com/baeldung/numberofdigits/NumberOfDigits.java
Normal file → Executable file
12
core-java/src/main/java/com/baeldung/numberofdigits/NumberOfDigits.java
Normal file → Executable file
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@ -1,17 +1,17 @@
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package com.baeldung.numberofdigits;
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public class NumberOfDigits {
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public static int stringBasedSolution(int number) {
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public int stringBasedSolution(int number) {
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int length = String.valueOf(number).length();
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return length;
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}
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public static int logarithmicApproach(int number) {
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public int logarithmicApproach(int number) {
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int length = (int) Math.log10(number) + 1;
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return length;
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}
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public static int repeatedMultiplication(int number) {
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public int repeatedMultiplication(int number) {
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int length = 0;
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long temp = 1;
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while(temp <= number) {
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return length;
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}
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public static int shiftOperators(int number) {
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public int shiftOperators(int number) {
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int length = 0;
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long temp = 1;
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while(temp <= number) {
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return length;
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}
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public static int dividingWithPowersOf2(int number) {
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public int dividingWithPowersOf2(int number) {
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int length = 1;
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if (number >= 100000000) {
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length += 8;
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return length;
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}
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public static int divideAndConquer(int number) {
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public int divideAndConquer(int number) {
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if (number < 100000){
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// 5 digits or less
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if (number < 100){
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60
core-java/src/main/java/com/baeldung/numberofdigits/NumberOfDigitsDriver.java
Normal file → Executable file
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core-java/src/main/java/com/baeldung/numberofdigits/NumberOfDigitsDriver.java
Normal file → Executable file
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package com.baeldung.numberofdigits;
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import static com.baeldung.designpatterns.util.LogerUtil.LOG;
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public class NumberOfDigitsDriver {
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public static void main(String[] args) {
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LOG.info("Testing all methods...");
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long length = NumberOfDigits.stringBasedSolution(602);
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LOG.info("String Based Solution : " + length);
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length = NumberOfDigits.logarithmicApproach(602);
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LOG.info("Logarithmic Approach : " + length);
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length = NumberOfDigits.repeatedMultiplication(602);
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LOG.info("Repeated Multiplication : " + length);
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length = NumberOfDigits.shiftOperators(602);
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LOG.info("Shift Operators : " + length);
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length = NumberOfDigits.dividingWithPowersOf2(602);
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LOG.info("Dividing with Powers of 2 : " + length);
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length = NumberOfDigits.divideAndConquer(602);
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LOG.info("Divide And Conquer : " + length);
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}
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}
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package com.baeldung.numberofdigits;
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import static com.baeldung.designpatterns.util.LogerUtil.LOG;
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public class NumberOfDigitsDriver {
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private static NumberOfDigits numberOfDigits;
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static {
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numberOfDigits = new NumberOfDigits();
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}
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public static void main(String[] args) {
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LOG.info("Testing all methods...");
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long length = numberOfDigits.stringBasedSolution(602);
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LOG.info("String Based Solution : " + length);
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length = numberOfDigits.logarithmicApproach(602);
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LOG.info("Logarithmic Approach : " + length);
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length = numberOfDigits.repeatedMultiplication(602);
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LOG.info("Repeated Multiplication : " + length);
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length = numberOfDigits.shiftOperators(602);
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LOG.info("Shift Operators : " + length);
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length = numberOfDigits.dividingWithPowersOf2(602);
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LOG.info("Dividing with Powers of 2 : " + length);
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length = numberOfDigits.divideAndConquer(602);
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LOG.info("Divide And Conquer : " + length);
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}
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}
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@ -9,7 +9,13 @@ import org.junit.runner.RunWith;
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@RunWith(Theories.class)
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public class NumberOfDigitsIntegrationTest {
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private static NumberOfDigits numberOfDigits;
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static {
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numberOfDigits = new NumberOfDigits();
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}
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@DataPoints
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public static int[][] lowestIntegers()
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{
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@Theory
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public void givenDataPoints_whenStringBasedSolutionInvoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.stringBasedSolution(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.stringBasedSolution(entry[1]));
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}
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@Theory
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public void givenDataPoints_whenLogarithmicApproachInvoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.logarithmicApproach(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.logarithmicApproach(entry[1]));
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}
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@Theory
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public void givenDataPoints_whenRepeatedMultiplicationInvoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.repeatedMultiplication(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.repeatedMultiplication(entry[1]));
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}
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@Theory
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public void givenDataPoints_whenShiftOperatorsInvoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.shiftOperators(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.shiftOperators(entry[1]));
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}
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@Theory
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public void givenDataPoints_whenDividingWithPowersOf2Invoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.dividingWithPowersOf2(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.dividingWithPowersOf2(entry[1]));
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}
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@Theory
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public void givenDataPoints_whenDivideAndConquerInvoked_thenAllPointsMatch(final int[] entry) {
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Assume.assumeTrue(entry[0] > 0 && entry[1] > 0);
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Assert.assertEquals(entry[0], NumberOfDigits.divideAndConquer(entry[1]));
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Assert.assertEquals(entry[0], numberOfDigits.divideAndConquer(entry[1]));
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}
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}
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