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Added a Stopwatch class and tests to make sure it works propperly
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mattrixwv/Stopwatch$1.class
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mattrixwv/Stopwatch$1.class
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mattrixwv/Stopwatch$TIME_RESOLUTION.class
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mattrixwv/Stopwatch$TIME_RESOLUTION.class
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mattrixwv/Stopwatch.class
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mattrixwv/Stopwatch.class
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mattrixwv/Stopwatch.java
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mattrixwv/Stopwatch.java
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//Java/JavaClasses/Mattrixwv/Stopwatch.java
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//Matthew Ellison (Mattrixwv)
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// Created: 03-01-19
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//Modified: 03-01-19
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//This file contains a class that is used to time the execution time of other programs
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package mattrixwv;
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public class Stopwatch{
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private Long startTime;
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private Long stopTime;
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//Constructor makes sure all values are set to defaults
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public Stopwatch(){
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//Make sure both values are null so it is easier to detect incorrect function calling order
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startTime = null;
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stopTime = null;
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}
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//Returns a long with the elapsed time in nanoseconds. Used by other functions to get the time before converting it to the correct resolution
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private Long getTime(){
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if(startTime == null){
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///This should throw an exception instead of returning 0
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return 0L;
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}
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else if(stopTime == null){
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return System.nanoTime() - startTime;
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}
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else{
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return stopTime - startTime;
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}
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}
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//An enum that helps keep track of how many times the time has been reduced in the getStr function
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private enum TIME_RESOLUTION{ NANOSECOND, MICROSECOND, MILLISECOND, SECOND, MINUTE, HOUR, ERROR }
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//Simulates starting a stopwatch by saving the time
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public void start(){
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//Get the time as close to calling the function as possible
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startTime = System.nanoTime();
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//Make sure the stop time is reset to 0
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stopTime = null;
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}
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//SImulates stoping a stopwatch by saving the time
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public void stop(){
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//Set the stopTime as close to call time as possible
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stopTime = System.nanoTime();
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//If the startTime has not been set then reset stopTime
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if(startTime == null){
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stopTime = null;
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}
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}
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//Resets all variables in the stopwatch
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public void reset(){
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//Make sure all variables are reset correctly
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startTime = null;
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stopTime = null;
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}
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//Returns the time in nanoseconds
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public double getNano(){
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return getTime().doubleValue();
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}
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//Returns the time in microseconds
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public double getMicro(){
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return getTime().doubleValue() / 1000D;
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}
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//Returns the time in milliseconds
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public double getMilli(){
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return getTime().doubleValue() / 1000000D;
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}
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//Returns the time in seconds
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public double getSecond(){
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return getTime().doubleValue() / 1000000000D;
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}
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//Returns the time in minutes
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public double getMinute(){
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return getTime().doubleValue() / 60000000000D;
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}
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//Returns the time in hours
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public double getHour(){
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return getTime().doubleValue() / 3600000000000D;
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}
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//Returns the time as a string at the 'best' resolution. (Goal is xxx.xxx)
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public String getStr(){
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//Get the current duration from time
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Double duration = getTime().doubleValue();
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//Reduce the number to the appropriate number of digits. (xxx.x). This loop works down to seconds
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TIME_RESOLUTION resolution;
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for(resolution = TIME_RESOLUTION.NANOSECOND;(resolution.ordinal() < TIME_RESOLUTION.SECOND.ordinal()) && (duration >= 1000);resolution = TIME_RESOLUTION.values()[resolution.ordinal() + 1]){
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duration /= 1000;
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}
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//Check if the duration needs reduced to minutes
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if(duration >= 1000){
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//Reduce to minutes
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duration /= 60;
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resolution = TIME_RESOLUTION.values()[resolution.ordinal() + 1];
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}
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//Check if the duration needs reduced to hours
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if(duration >= 1000){
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//Reduce to hours
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duration /= 60;
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resolution = TIME_RESOLUTION.values()[resolution.ordinal() + 1];
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}
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//Turn the number into a string
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Double durationFraction = ((duration % 1) * 100);
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String time = String.format("% 3d.%03d", duration.intValue(), durationFraction.intValue());
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//Tack on the appropriate suffix for resolution
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switch(resolution){
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case NANOSECOND: time += " nanoseconds"; break;
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case MICROSECOND: time += " microseconds"; break;
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case MILLISECOND: time += " milliseconds"; break;
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case SECOND: time += " seconds"; break;
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case MINUTE: time += " minutes"; break;
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case HOUR: time += " hours"; break;
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case ERROR:
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default: time = "There was an error computing the time"; break; ///This should throw an error instead
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}
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//Return the string
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return time;
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}
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}
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testStopwatch.java
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testStopwatch.java
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//Java/JavaClasses/testStopwatch.java
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//Matthew Ellison
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// Created: 03-01-19
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//Modified: 03-01-19
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//This class is used to test that stopwatch does what it is supposed to do (approximately)
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import mattrixwv.Stopwatch;
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public class testStopwatch{
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private static final int NUM_TO_RUN = 100000;
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public static void main(String[] argv){
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Boolean failed = false; //A flag to determine if all tests were passed
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//Print the test begin message
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System.out.println("Begin test");
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//Describe which test is being performed
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System.out.println("Starting loop");
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//Start the timer
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Stopwatch timer = new Stopwatch();
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timer.start();
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for(int cnt = 0;cnt < NUM_TO_RUN;++cnt){
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System.out.print(cnt);
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}
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//Stop the timer
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timer.stop();
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System.out.println("\nLoop completed");
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//Check that the different resolutions work out correctly
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System.out.println("Checking that resolutions line up correctly");
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Double nano = timer.getNano();
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if(timer.getMicro() != (nano.doubleValue() / 1000D)){
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System.out.println("Error on microsecond resolution");
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failed = true;
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}
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else if(timer.getMilli() != (nano.doubleValue() / 1000000D)){
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System.out.println("Error on millisecond resolution");
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failed = true;
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}
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else if(timer.getSecond() != (nano.doubleValue() / 1000000000D)){
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System.out.println("Error on second resolution");
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failed = true;
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}
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else if(timer.getMinute() != (nano.doubleValue() / 60000000000D)){
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System.out.println("Error on minute resolution");
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failed = true;
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}
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else if(timer.getHour() != (nano.doubleValue() / 3600000000000D)){
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System.out.println("Error on hour resolution");
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failed = true;
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}
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else{
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System.out.println("All time resolution tests completed successfully");
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}
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System.out.println("Completed resolution checking");
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//Print the results
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System.out.printf("The timer results in: %s\n", timer.getStr());
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if(!failed){
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System.out.println("All tests completed successfully");
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}
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else{
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System.out.println("Test failed. Try again!");
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}
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}
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}
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