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6
Commits
| Author | SHA1 | Date | |
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11c748526e | ||
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aa6cdc766d | ||
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2f72c0c8b6 | ||
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3e85586939 | ||
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c59b80f87c | ||
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0a60c2e5e9 |
@@ -20,7 +20,7 @@ public class BonusExercises {
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- Each segment (between dots) must follow same hyphen rules
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*/
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public boolean validateEmail(String email) {
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String regex = ""; // todo
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String regex = "^[a-zA-z0-9_+-]+(?:\\.[a-zA-Z0-9_+-]+)*@(?:[a-zA-Z0-9-]+\\.)+[a-zA-Z0-9-]+$"; // todo
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Pattern pattern = Pattern.compile(regex);
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Matcher matcher = pattern.matcher(email);
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@@ -1,3 +1,5 @@
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import java.util.ArrayList;
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public class MainExercises
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{
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/*
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@@ -20,8 +22,22 @@ public class MainExercises
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*/
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public char[][] generateTriangle(int n) {
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// todo
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return null;
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char [][] triangle = new char[n][];
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for(int i = 0; i < n; i++){
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triangle[i] = new char[i + 1];
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for(int j = 0; j <= i; j++){
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if(i == 0 || j == 0 || i == n - 1 || j == i){
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triangle[i][j] = '*';
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}
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else{
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triangle[i][j] = ' ';
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}
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}
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}
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return triangle;
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}
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@@ -58,8 +74,50 @@ public class MainExercises
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- Number of columns: matrix[0].length (if rectangular)
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*/
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public int[] spiralTraversal(int[][] matrix) {
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// todo
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return null;
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int rows = matrix.length;
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int cols = matrix[0].length;
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if(rows == 1) return matrix[0];
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int[] result = new int[rows * cols];
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int top = 0, bottom = rows - 1, left = 0, right = cols - 1;
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int id = 0;
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while(top <= bottom && left <= right){ // reaching the center
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for(int col = left; col <= right; col++){
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result[id] = matrix[top][col];
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id++;
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}
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top++;
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for(int row = top; row <= bottom; row++){
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result[id] = matrix[row][right];
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id++;
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}
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right--;
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if(top <= right){
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for(int col = right; col >= left; col--){
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result[id] = matrix[bottom][col];
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id++;
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}
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bottom--;
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}
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if(left <= right){
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for(int row = bottom; row >= top; row--){
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result[id] = matrix[row][left];
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id++;
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}
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left++;
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}
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}
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return result;
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}
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/*
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@@ -91,8 +149,66 @@ public class MainExercises
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*/
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public int[][] intPartitions(int n) {
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// todo
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return null;
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if(n == 1){
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return new int[][]{{1}};
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}
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ArrayList<int[]> result = new ArrayList<>();
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int[] current = new int[n]; // current partition, to be built
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// we use stack arrays to have the situation saved.
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int[] remainingStack = new int[n*n]; // remaining value, to be added
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// int[] maxValueStack = new int[n*n]; // maximum number we can use, to prevent repeating partitions
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int[] nextTryStack = new int[n*n]; // the next number we try
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int[] lenStack = new int[n*n]; // length of current partition, gives us the next index in current
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int head = 0; // works like a pointer, it makes stack arrays make sense.
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remainingStack[0] = n;
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// maxValueStack[0] = n;
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nextTryStack[0] = n;
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lenStack[0] = 0;
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while(head >= 0){
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int remaining = remainingStack[head];
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// int maxValue = maxValueStack[head];
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int nextTry = nextTryStack[head];
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int partitionLen = lenStack[head];
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if(remaining == 0){ // partition has been completed
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//
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int[] partition = new int[partitionLen];
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System.arraycopy(current, 0, partition, 0, partitionLen);
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result.add(partition);
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head--;
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continue;
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}
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if(nextTry <= 0){ // no choices left
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head--;
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continue;
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}
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int chosen = nextTry;
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nextTryStack[head] = chosen - 1; // next value to be tried
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current[partitionLen] = chosen; // adding selected number
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// generating next number for the partition
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head++;
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remainingStack[head] = remaining - chosen;
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// maxValueStack[head] = chosen;
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nextTryStack[head] = Math.min(chosen, remaining - chosen);
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lenStack[head] = partitionLen + 1;
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}
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int[][] output = new int[result.size()][];
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for(int i = 0; i < result.size(); i++){
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output[i] = result.get(i);
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}
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return output;
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}
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