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Added some functions to reduce the amount of copied code
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@@ -1,5 +1,27 @@
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//ProjectEuler/ProjectEulerJava/src/man/java/mattrixwv/ProjectEuler/Benchmark.java
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//Matthew Ellison
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// Created: 07-08-20
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//Modified: 07-09-20
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//This is the driver function for the Java version of the ProjectEuler project
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/*
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Copyright (C) 2020 Matthew Ellison
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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package mattrixwv.ProjectEuler;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.Scanner;
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@@ -7,10 +29,12 @@ import java.util.Scanner;
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import mattrixwv.Stopwatch;
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import mattrixwv.ProjectEuler.Problems.Problem;
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public class Benchmark{
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private static final Scanner input = new Scanner(System.in);
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private static enum BenchmarkOptions{runSpecific, runAllShort, runAll, exit, size};
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private static final ArrayList<Integer> tooLong = new ArrayList<Integer>(Arrays.asList(15));
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private static final ArrayList<Integer> tooLong = new ArrayList<Integer>(Arrays.asList(15, 23, 24, 27));
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//The driver function for the benchmark selection
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public static void benchmarkMenu(){
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BenchmarkOptions selection = BenchmarkOptions.size;
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@@ -25,6 +49,7 @@ public class Benchmark{
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case size : break;
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}
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}
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//Print the benchmark menu
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private static void printMenu(){
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System.out.println("1. Run a specific problem");
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System.out.println("2. Run all problems that have a reasonably short run time");
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@@ -32,15 +57,17 @@ public class Benchmark{
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System.out.println("4. Exit the menu");
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System.out.println();
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}
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//Returns a valid menu option
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private static BenchmarkOptions getMenuSelection(){
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int selection = input.nextInt();
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while(!isValidMenu(selection)){
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System.out.println("That is an invalid option!Press Enter to continue");
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System.out.println("That is an invalid option!\nPress Enter to continue");
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printMenu();
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selection = input.nextInt();
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}
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return getSelection(selection);
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}
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//Determines if a value is a valid menu option. Helper for getBechmarkMenuSelection
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private static boolean isValidMenu(int selection){
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//Ordinal + 1 because enum starts at 0
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if((selection > 0) && (selection < (BenchmarkOptions.size.ordinal() + 1))){
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@@ -50,6 +77,7 @@ public class Benchmark{
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return false;
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}
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}
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//A helper function for getMenuSelection that turns an integer to a BenchmarkOptions
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private static BenchmarkOptions getSelection(Integer selection){
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BenchmarkOptions sel = null;
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@@ -62,92 +90,69 @@ public class Benchmark{
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}
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return sel;
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}
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//Determines which problem user wants to run and runs it
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private static void runSpecific(){
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double totalTime = 0;
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//Ask which problem the user wants to run
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int problemNumber = ProblemSelection.getProblemNumber();
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//Ask how many times to run the problem
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int timesToRun = getNumberOfTimesToRun();
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//Get the problem
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//Get the problem and print its description
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Problem problem = ProblemSelection.getProblem(problemNumber);
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//Run the problem the specific number of times
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System.out.println(problemNumber + ". " + problem.getDescription());
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System.out.print("Solving");
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for(int cnt = 0;cnt < timesToRun;++cnt){
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//Reset the data so you are actually counting the run time a second time
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System.out.print('.');
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//Solve the problem
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problem.solve();
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//Get the time data
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totalTime += problem.getTimer().getNano();
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}
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//Calculate the average run time
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totalTime /= timesToRun;
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String timeResults = Stopwatch.getStr(totalTime);
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//Run the problem the specific number of times
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double totalTime = runProblem(problem, timesToRun);
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//Print the results
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System.out.println("\n" + problem.getResult());
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System.out.println("It took an average of " + timeResults + " to run this problem through " + timesToRun + " iterations\n\n");
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System.out.println(getBenchmarkResults(problem, totalTime, timesToRun));
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}
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//Runs all problems except a few that are specified because of run length
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private static void runAllShort(){
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//Ask how many times to run the problem
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int timesToRun = getNumberOfTimesToRun();
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//Run through all valid problem numbers, skipping a few that are in the tooLong list
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for(int cnt = 1;cnt < ProblemSelection.PROBLEM_NUMBERS.size();++cnt){
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int problemNumber = ProblemSelection.PROBLEM_NUMBERS.get(cnt);
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double totalTime = 0;
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//If the problem number is contained in the list of problems that take too long skip it
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if(tooLong.contains(problemNumber)){
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continue;
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}
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//Get the problem and print its description
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Problem problem = ProblemSelection.getProblem(problemNumber);
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//Run each problem the specified number of times
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System.out.println(problemNumber + ". " + problem.getDescription());
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System.out.print("Solving");
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for(int cnt2 = 0;cnt2 < timesToRun;++cnt2){
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//Get the problem
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problem = ProblemSelection.getProblem(problemNumber);
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System.out.print('.');
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//Solve the problem
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problem.solve();
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//Get the time data
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totalTime += problem.getTimer().getNano();
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}
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//Calculate the averate run time of the problem
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totalTime /= timesToRun;
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String timeResults = Stopwatch.getStr(totalTime);
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//Run each problem the specified number of times
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double totalTime = runProblem(problem, timesToRun);
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//Print the results
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System.out.println("\n\n" + problem.getResult());
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System.out.println("It took an average of " + timeResults + " to run this problem through " + timesToRun + " iterations\n\n");
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System.out.println(getBenchmarkResults(problem, totalTime, timesToRun));
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}
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}
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//Runs all problems
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private static void runAll(){
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//Ask how many times to run the problem
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int timesToRun = getNumberOfTimesToRun();
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//Run through all valid problem numbers, skipping a few that are in the tooLong list
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for(int cnt = 1;cnt < ProblemSelection.PROBLEM_NUMBERS.size();++cnt){
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int problemNumber = ProblemSelection.PROBLEM_NUMBERS.get(cnt);
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double totalTime = 0;
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//Get the problem
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Problem problem = ProblemSelection.getProblem(problemNumber);
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//Run each problem the specified number of times
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System.out.println(problemNumber + ". " + problem.getDescription());
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System.out.print("Solving");
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for(int cnt2 = 0;cnt2 < timesToRun;++cnt2){
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//Get the problem
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problem = ProblemSelection.getProblem(problemNumber);
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System.out.print('.');
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//Solve the problem
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problem.solve();
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//Get the time data
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totalTime += problem.getTimer().getNano();
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}
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//Calculate the averate run time of the problem
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totalTime /= timesToRun;
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String timeResults = Stopwatch.getStr(totalTime);
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double totalTime = runProblem(problem, timesToRun);
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//Print the results
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System.out.println("\n\n" + problem.getResult());
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System.out.println("It took an average of " + timeResults + " to run this problem through " + timesToRun + " iterations\n\n");
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System.out.println(getBenchmarkResults(problem, totalTime, timesToRun));
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}
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}
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//Asks how many times a problem is supposed to run and returns the value
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private static int getNumberOfTimesToRun(){
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int numOfTimesToRun = 1;
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System.out.print("How many times do you want to run this problem? ");
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@@ -159,4 +164,28 @@ public class Benchmark{
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}
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return numOfTimesToRun;
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}
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//Runs the problem the given number of times
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private static double runProblem(Problem problem, int timesToRun){
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double totalTime = 0;
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System.out.print("Solving");
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for(int cnt = 0;cnt < timesToRun;++cnt){
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//Reset the data so you are actually counting the run time a second time
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System.out.print('.');
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//Solve the problem
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problem.solve();
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//Get the time data
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totalTime += problem.getTimer().getNano();
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}
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return totalTime;
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}
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//Prints the benchmark results of a problem
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private static String getBenchmarkResults(Problem problem, double totalTime, int timesRun){
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//Calculate the averate run time of the problem
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totalTime /= timesRun;
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String timeResults = Stopwatch.getStr(totalTime);
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//Tally the results
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String results = "\n\n" + problem.getResult() + "\nIt took an average of " + timeResults + " to run this problem through " + timesRun + " iterations\n\n";
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return results;
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}
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}
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