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Fixed sonarqube problems
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//ProjectEulerJava/src/main/java/mattrixwv/ProjectEuler/Problems/Problem11.java
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//Matthew Ellison
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// Created: 03-03-19
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//Modified: 08-20-22
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//What is the greatest product of four adjacent numbers in the same direction (up, down, left, right, or diagonally) in the 20×20 grid?
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/*
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08 02 22 97 38 15 00 40 00 75 04 05 07 78 52 12 50 77 91 08
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49 49 99 40 17 81 18 57 60 87 17 40 98 43 69 48 04 56 62 00
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81 49 31 73 55 79 14 29 93 71 40 67 53 88 30 03 49 13 36 65
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52 70 95 23 04 60 11 42 69 24 68 56 01 32 56 71 37 02 36 91
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22 31 16 71 51 67 63 89 41 92 36 54 22 40 40 28 66 33 13 80
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24 47 32 60 99 03 45 02 44 75 33 53 78 36 84 20 35 17 12 50
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32 98 81 28 64 23 67 10 26 38 40 67 59 54 70 66 18 38 64 70
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67 26 20 68 02 62 12 20 95 63 94 39 63 08 40 91 66 49 94 21
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24 55 58 05 66 73 99 26 97 17 78 78 96 83 14 88 34 89 63 72
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21 36 23 09 75 00 76 44 20 45 35 14 00 61 33 97 34 31 33 95
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78 17 53 28 22 75 31 67 15 94 03 80 04 62 16 14 09 53 56 92
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16 39 05 42 96 35 31 47 55 58 88 24 00 17 54 24 36 29 85 57
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86 56 00 48 35 71 89 07 05 44 44 37 44 60 21 58 51 54 17 58
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19 80 81 68 05 94 47 69 28 73 92 13 86 52 17 77 04 89 55 40
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04 52 08 83 97 35 99 16 07 97 57 32 16 26 26 79 33 27 98 66
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88 36 68 87 57 62 20 72 03 46 33 67 46 55 12 32 63 93 53 69
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04 42 16 73 38 25 39 11 24 94 72 18 08 46 29 32 40 62 76 36
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20 69 36 41 72 30 23 88 34 62 99 69 82 67 59 85 74 04 36 16
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20 73 35 29 78 31 90 01 74 31 49 71 48 86 81 16 23 57 05 54
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01 70 54 71 83 51 54 69 16 92 33 48 61 43 52 01 89 19 67 48
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*/
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//Unless otherwise listed all non-standard includes are my own creation and available from https://bibucket.org/Mattrixwv/JavaClasses
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/*
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Copyright (C) 2022 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 com.mattrixwv.project_euler.problems;
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import java.util.ArrayList;
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import java.util.List;
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import com.mattrixwv.ArrayAlgorithms;
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public class Problem11 extends Problem{
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//Variables
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//Static variables
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//This is the grid of numbers that we will be working with
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private static final Integer[][] grid = {{8, 02, 22, 97, 38, 15, 00, 40, 00, 75, 04, 05, 07, 78, 52, 12, 50, 77, 91, 8},
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{49, 49, 99, 40, 17, 81, 18, 57, 60, 87, 17, 40, 98, 43, 69, 48, 04, 56, 62, 00},
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{81, 49, 31, 73, 55, 79, 14, 29, 93, 71, 40, 67, 53, 88, 30, 03, 49, 13, 36, 65},
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{52, 70, 95, 23, 04, 60, 11, 42, 69, 24, 68, 56, 01, 32, 56, 71, 37, 02, 36, 91},
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{22, 31, 16, 71, 51, 67, 63, 89, 41, 92, 36, 54, 22, 40, 40, 28, 66, 33, 13, 80},
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{24, 47, 32, 60, 99, 03, 45, 02, 44, 75, 33, 53, 78, 36, 84, 20, 35, 17, 12, 50},
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{32, 98, 81, 28, 64, 23, 67, 10, 26, 38, 40, 67, 59, 54, 70, 66, 18, 38, 64, 70},
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{67, 26, 20, 68, 02, 62, 12, 20, 95, 63, 94, 39, 63, 8, 40, 91, 66, 49, 94, 21},
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{24, 55, 58, 05, 66, 73, 99, 26, 97, 17, 78, 78, 96, 83, 14, 88, 34, 89, 63, 72},
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{21, 36, 23, 9, 75, 00, 76, 44, 20, 45, 35, 14, 00, 61, 33, 97, 34, 31, 33, 95},
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{78, 17, 53, 28, 22, 75, 31, 67, 15, 94, 03, 80, 04, 62, 16, 14, 9, 53, 56, 92},
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{16, 39, 05, 42, 96, 35, 31, 47, 55, 58, 88, 24, 00, 17, 54, 24, 36, 29, 85, 57},
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{86, 56, 00, 48, 35, 71, 89, 07, 05, 44, 44, 37, 44, 60, 21, 58, 51, 54, 17, 58},
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{19, 80, 81, 68, 05, 94, 47, 69, 28, 73, 92, 13, 86, 52, 17, 77, 04, 89, 55, 40},
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{04, 52, 8, 83, 97, 35, 99, 16, 07, 97, 57, 32, 16, 26, 26, 79, 33, 27, 98, 66},
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{88, 36, 68, 87, 57, 62, 20, 72, 03, 46, 33, 67, 46, 55, 12, 32, 63, 93, 53, 69},
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{04, 42, 16, 73, 38, 25, 39, 11, 24, 94, 72, 18, 8, 46, 29, 32, 40, 62, 76, 36},
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{20, 69, 36, 41, 72, 30, 23, 88, 34, 62, 99, 69, 82, 67, 59, 85, 74, 04, 36, 16},
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{20, 73, 35, 29, 78, 31, 90, 01, 74, 31, 49, 71, 48, 86, 81, 16, 23, 57, 05, 54},
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{01, 70, 54, 71, 83, 51, 54, 69, 16, 92, 33, 48, 61, 43, 52, 01, 89, 19, 67, 48}};
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//Instance variables
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private ArrayList<Integer> greatestProduct; //Holds the largest product we have found so far
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//Functions
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//Constructor
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public Problem11(){
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super("What is the greatest product of four adjacent numbers in the same direction (up, down, left, right, or diagonally) in the 20×20 grid?");
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greatestProduct = new ArrayList<>();
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}
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//Operational functions
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//Solve the problem
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@Override
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public void solve(){
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//If the problem has already been solved do nothing and end the function
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if(solved){
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return;
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}
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//Holds the numbers we are currently working on
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ArrayList<Integer> currentProduct = new ArrayList<>();
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//Make sure all elements have at least 4 elements
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for(int cnt = 0;cnt < 4;++cnt){
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greatestProduct.add(0);
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currentProduct.add(0);
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}
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//Start the timer
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timer.start();
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//Loop through every row and column
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for(int row = 0;row < grid.length;++row){
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for(int col = 0;col < grid[row].length;++col){
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//Directional booleans to show whether you can move a certain direction
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boolean left = false;
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boolean right = false;
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boolean down = false;
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//Check which direction you will be able to move
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if((col - 3) >= 1){
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left = true;
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}
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if((col + 3) < grid[row].length){
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right = true;
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}
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if((row + 3) < 20){
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down = true;
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}
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//Check the direction you are able to go
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//Right
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if(right){
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//Fill the product
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currentProduct.set(0, grid[row][col]);
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currentProduct.set(1, grid[row][col + 1]);
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currentProduct.set(2, grid[row][col + 2]);
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currentProduct.set(3, grid[row][col + 3]);
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//If the current number's product is greater than the greatest product replace it
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if(ArrayAlgorithms.getProd(currentProduct) > ArrayAlgorithms.getProd(greatestProduct)){
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greatestProduct.set(0, currentProduct.get(0));
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greatestProduct.set(1, currentProduct.get(1));
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greatestProduct.set(2, currentProduct.get(2));
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greatestProduct.set(3, currentProduct.get(3));
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}
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}
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//Down
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if(down){
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//Fill the product
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currentProduct.set(0, grid[row][col]);
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currentProduct.set(1, grid[row + 1][col]);
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currentProduct.set(2, grid[row + 2][col]);
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currentProduct.set(3, grid[row + 3][col]);
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//If the current number's product is greater than the greatest product replace it
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if(ArrayAlgorithms.getProd(currentProduct) > ArrayAlgorithms.getProd(greatestProduct)){
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greatestProduct.set(0, currentProduct.get(0));
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greatestProduct.set(1, currentProduct.get(1));
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greatestProduct.set(2, currentProduct.get(2));
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greatestProduct.set(3, currentProduct.get(3));
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}
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}
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//LeftDown
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if(left && down){
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//Fill the product
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currentProduct.set(0, grid[row][col]);
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currentProduct.set(1, grid[row + 1][col - 1]);
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currentProduct.set(2, grid[row + 2][col - 2]);
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currentProduct.set(3, grid[row + 3][col - 3]);
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//If the current number's product is greater than the greatest product replace it
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if(ArrayAlgorithms.getProd(currentProduct) > ArrayAlgorithms.getProd(greatestProduct)){
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greatestProduct.set(0, currentProduct.get(0));
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greatestProduct.set(1, currentProduct.get(1));
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greatestProduct.set(2, currentProduct.get(2));
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greatestProduct.set(3, currentProduct.get(3));
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}
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}
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//RightDown
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if(right && down){
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//Fill the product
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currentProduct.set(0, grid[row][col]);
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currentProduct.set(1, grid[row + 1][col + 1]);
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currentProduct.set(2, grid[row + 2][col + 2]);
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currentProduct.set(3, grid[row + 3][col + 3]);
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//If the current number's product is greater than the greatest product replace it
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if(ArrayAlgorithms.getProd(currentProduct) > ArrayAlgorithms.getProd(greatestProduct)){
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greatestProduct.set(0, currentProduct.get(0));
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greatestProduct.set(1, currentProduct.get(1));
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greatestProduct.set(2, currentProduct.get(2));
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greatestProduct.set(3, currentProduct.get(3));
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}
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}
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}
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}
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//Stop the timer
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timer.stop();
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//Throw a flag to show the problem is solved
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solved = true;
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}
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//Reset the problem so it can be run again
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@Override
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public void reset(){
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super.reset();
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greatestProduct.clear();
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}
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//Gets
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//Returns the result of solving the problem
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@Override
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public String getResult(){
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solvedCheck("result");
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return String.format("The greatest product of 4 numbers in a line is %d%nThe numbers are %s", ArrayAlgorithms.getProd(greatestProduct), greatestProduct.toString());
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}
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//Returns the numbers that were being searched
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public List<Integer> getNumbers(){
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solvedCheck("numbers");
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return greatestProduct;
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}
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//Returns the product that was requested
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public int getProduct(){
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solvedCheck("product of the numbers");
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return ArrayAlgorithms.getProd(greatestProduct);
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}
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}
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/* Results:
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The greatest product of 4 numbers in a line is 70600674
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The numbers are [89, 94, 97, 87]
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It took an average of 301.209 microseconds to run this problem through 100 iterations
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*/
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