Parcourir la source

Merge dc98992c0444ccfb69fde885cb7690a8a239320a into 844bbe32418e760e4607b01fa37541c39badf9aa

SupaGrammer il y a 6 ans
Parent
révision
e518aa5520
Aucun compte lié à l'adresse email de l'auteur

+ 9
- 2
src/main/java/ArrayListCombiner/ArrayListCombiner.java Voir le fichier

@@ -8,5 +8,12 @@ import java.util.ArrayList;
8 8
  * The first method should be called extendCombiner and should use ? extends E
9 9
  * The second method should be called superCombiner and should use ? super E
10 10
  */
11
-public class ArrayListCombiner {
12
-}
11
+public class ArrayListCombiner { //the second array extends from the first array so it will inherit the behavior from the first array
12
+    public static <E> void superCombiner(ArrayList<? super E> firstArray, ArrayList<E> secondArray){
13
+        firstArray.addAll(secondArray); //addall will append all elements of the second array to end of the first array
14
+    }
15
+    public static <E> void extendCombiner(ArrayList<E> firstArray, ArrayList<? extends E> secondArray){ //making the arrays able to combine
16
+        firstArray.addAll(secondArray);//add all will combine the second array elements to the end of the first
17
+    } //the firstArray is the parent class to the second array according to the test
18
+    //Manager extends employee
19
+}

+ 8
- 2
src/main/java/MapFunc/MapFunc.java Voir le fichier

@@ -7,6 +7,12 @@ import java.util.function.Function;
7 7
  * Create a function called `map` that takes an ArrayList and a `Function<T,R>` object,
8 8
  * and returns an ArrayList with all of the elements of the first after the function is applied to them.
9 9
  */
10
-public class MapFunc {
11
-
10
+public class MapFunc {//T being my input type and R being my output type
11
+    public static <T, R> ArrayList<R> map (ArrayList<T> array, Function<T, R> functor){
12
+        ArrayList<R> arrayList = new ArrayList<>();//empty arraylist
13
+        for (T thelid : array) { //iterate through my array for each of the lids of type T
14
+            arrayList.add(functor.apply(thelid));//in my new list add the function being applied
15
+        } //to each of the lids
16
+        return arrayList; //arrayList being my output type
17
+    }
12 18
 }

+ 23
- 1
src/main/java/Pair/Arrays.java Voir le fichier

@@ -11,6 +11,28 @@ import java.util.Collections;
11 11
  * And a minmax method that returns a pair containing the largest and smallest items from the array list
12 12
  */
13 13
 public class Arrays {
14
-    public static <___> Pair<E> firstLast(ArrayList<___> a) {
14
+
15
+    @SuppressWarnings("unchecked")
16
+    public static <E extends Comparable> Pair<E> firstLast(ArrayList<E> arrayList) {
17
+        return new Pair<E>(arrayList.get(0), arrayList.get(arrayList.size() - 1));
18
+    }
19
+
20
+    @SuppressWarnings("unchecked")
21
+    public static <E extends Comparable> E min(ArrayList<E> arrayList) {
22
+        Collections.sort(arrayList);
23
+        return arrayList.get(0);
24
+    }
25
+
26
+    @SuppressWarnings("unchecked")
27
+    public static <E extends Comparable> E max(ArrayList<E> arrayList) {
28
+        Collections.sort(arrayList);
29
+        return arrayList.get(arrayList.size() - 1);
30
+    }
31
+
32
+    @SuppressWarnings("unchecked")
33
+    public static <E extends Comparable> Pair<E> minMax(ArrayList<E> arrayList) {
34
+        Collections.sort(arrayList);
35
+        return new Pair<E>(arrayList.get(0), arrayList.get(arrayList.size() - 1));
15 36
     }
16 37
 }
38
+

+ 44
- 2
src/main/java/Pair/Pair.java Voir le fichier

@@ -7,6 +7,48 @@ package Pair;
7 7
  * min -> returns the minimum of the pair
8 8
  * max -> returns the maximum of the pair
9 9
  */
10
-public class Pair {
10
+public class Pair <E extends Comparable>  {
11
+    //without extending you cannot compare generic types
12
+    //by extending comparing individual values of generic types is now viable
13
+    private E firstValue;
14
+    private E secondValue;
11 15
 
12
-}
16
+    Pair(E first, E second){
17
+        this.firstValue = first;
18
+        this.secondValue = second;
19
+    }
20
+
21
+    private int compareTo(E otherValue) {
22
+        return firstValue.compareTo(otherValue);
23
+    }
24
+
25
+    public E getFirst(){
26
+        return firstValue;
27
+    }
28
+
29
+    public E getSecond(){
30
+        return secondValue;
31
+    }
32
+
33
+    public E min(){
34
+        int compareResult = compareTo(firstValue);
35
+        boolean secondValueIsGreater = compareResult == -1;
36
+
37
+        if (secondValueIsGreater) {
38
+            return secondValue;
39
+        } else {
40
+            return firstValue;
41
+        }
42
+    }
43
+
44
+    public E max(){
45
+        int compareResult = compareTo(secondValue);
46
+        boolean firstValIsGreater = compareResult == 1;
47
+
48
+        if (firstValIsGreater) {
49
+            return firstValue;
50
+        } else {
51
+            return secondValue;
52
+        }
53
+    }
54
+}

+ 20
- 0
src/main/java/StackArray/GenericStack.java Voir le fichier

@@ -9,7 +9,27 @@ import java.util.Arrays;
9 9
  */
10 10
 public class GenericStack<E> {
11 11
     private E[] elements;
12
+    private int size; //actual number of things as opposed to length
12 13
 
13 14
     public GenericStack() {
15
+        this.elements = (E[]) new Object[0];
16
+    }
17
+
18
+    public boolean isEmpty() {
19
+        return size==0;
20
+    }
21
+
22
+    public E push(E foobar) { //push onto to the top of the stack which is the end
23
+        this.elements = Arrays.copyOf(this.elements,this.elements.length + 1);
24
+        this.elements[this.elements.length - 1] = foobar; //capacity of array not size
25
+        size++;
26
+        return foobar;
27
+    }
28
+
29
+    public E pop() { //remove object at the top of the stack
30
+        E thingy = this.elements[elements.length - 1]; //capacity of array not size
31
+        this.elements = Arrays.copyOf(this.elements,this.elements.length - 1);
32
+        size--; //
33
+        return thingy;
14 34
     }
15 35
 }

+ 19
- 0
src/main/java/StackArray/ObjectStack.java Voir le fichier

@@ -9,8 +9,27 @@ import java.util.Arrays;
9 9
  */
10 10
 public class ObjectStack<E> {
11 11
     private Object[] elements;
12
+    private int size;
12 13
 
13 14
     public ObjectStack() {
15
+        this.elements = new Object[0];
16
+    }
17
+
18
+    public boolean isEmpty() {
19
+        return size==0;
20
+    }
21
+
22
+    public Object push(Object foobar) { //push onto to the top of the stack which is the end
23
+        this.elements = Arrays.copyOf(this.elements,this.elements.length + 1);
24
+        this.elements[this.elements.length - 1] = foobar; //capacity of array not size
25
+        size++;
26
+        return foobar;
27
+    }
14 28
 
29
+    public Object pop() { //remove object at the top of the stack
30
+        Object thingy = this.elements[elements.length - 1]; //capacity of array not size
31
+        this.elements = Arrays.copyOf(this.elements,this.elements.length - 1);
32
+        size--; //
33
+        return thingy;
15 34
     }
16 35
 }

+ 18
- 3
src/main/java/StackArrayList/Stack.java Voir le fichier

@@ -7,10 +7,25 @@ import java.util.ArrayList;
7 7
  * If you pop on an empty stack, throw an IndexOutOfBoundsException.
8 8
  */
9 9
 public class Stack<E> {
10
-    private ArrayList elements;
10
+    private ArrayList<E> elements;
11 11
 
12 12
 
13
-    public Stack(){
13
+    public Stack() {
14
+        this.elements = new ArrayList();
15
+    }
16
+
17
+    public boolean isEmpty() {//if the array is empty return true otherwise return false
18
+        if (elements.size() == 0) return true;
19
+        else return false;
20
+    }
21
+
22
+    //@SuppressWarnings("unchecked")
23
+    public void push(E foobar) {
24
+        elements.add(foobar);
25
+    }
14 26
 
27
+    //@SuppressWarnings("unchecked")
28
+    public E pop() {
29
+            return elements.remove(elements.size()-1);
30
+        }
15 31
     }
16
-}

+ 0
- 1
src/main/java/Table/Entry.java Voir le fichier

@@ -16,5 +16,4 @@ public class Entry<K, V> {
16 16
     public V getValue() {
17 17
         return value;
18 18
     }
19
-
20 19
 }

+ 26
- 1
src/main/java/Table/Table.java Voir le fichier

@@ -10,8 +10,33 @@ import java.util.ArrayList;
10 10
  * Void return on `remove`.
11 11
  */
12 12
 public class Table<K, V> {
13
-    private ArrayList entries;
13
+    private ArrayList<Entry> entries;
14 14
 
15
+    @SuppressWarnings("unchecked")
15 16
     public Table() {
17
+        this.entries = new ArrayList();
18
+    }
19
+
20
+    @SuppressWarnings("unchecked")
21
+    public V get(K foo) {
22
+        for (Entry submission : entries) { //for each submission in my entries array
23
+            if (submission.getKey().equals(foo)) { //if key of my submission object is equal to the key passed in
24
+                return (V)submission.getValue(); //return that value mapped to that key
25
+            }
26
+        }
27
+        return null;
28
+    }
29
+
30
+    public void put(K foo, V i) {
31
+        remove(foo); //remove foo from the key
32
+        Entry<K, V> entry = new Entry<>(foo, i); //create empty entry object for table
33
+        entries.add(entry); //add foo back into the empty entry within entries
34
+    }
35
+
36
+    public void remove(K foo) {
37
+        for (int i = 0; i < entries.size(); i++){ //iterate through arrayList
38
+            if (entries.get(i).getKey().equals(foo)) //if the key of the current index of entries is equal to foo
39
+                entries.remove(i);//if the above is true then remove it
40
+        }
16 41
     }
17 42
 }

+ 29
- 0
src/main/java/TableNested/TableNested.java Voir le fichier

@@ -1,5 +1,6 @@
1 1
 package TableNested;
2 2
 
3
+import Table.Entry; //imported the entire table entry class
3 4
 import java.util.ArrayList;
4 5
 
5 6
 /**
@@ -7,5 +8,33 @@ import java.util.ArrayList;
7 8
  * Think about how nested classes should work with generics.
8 9
  */
9 10
 public class TableNested<K, V> {
11
+    private ArrayList<Entry> entries;
10 12
 
13
+    @SuppressWarnings("unchecked")
14
+    public TableNested() {
15
+        this.entries = new ArrayList();
16
+    }
17
+
18
+    @SuppressWarnings("unchecked")
19
+    public V get(K foo) {
20
+        for (Entry submission : entries) { //for each submission in my entries array
21
+            if (submission.getKey().equals(foo)) { //if key of my submission object is equal to the key passed in
22
+                return (V) submission.getValue(); //return that value mapped to that key
23
+            }
24
+        }
25
+        return null;
26
+    }
27
+
28
+    public void put(K foo, V i) {
29
+        remove(foo); //remove foo from the key
30
+        Entry<K, V> entry = new Entry<>(foo, i); //create empty entry object for table
31
+        entries.add(entry); //add foo back into the empty entry within entries
32
+    }
33
+
34
+    public void remove(K foo) {
35
+        for (int i = 0; i < entries.size(); i++) { //iterate through arrayList
36
+            if (entries.get(i).getKey().equals(foo)) //if the key of the current index of entries is equal to foo
37
+                entries.remove(i);//if the above is true then remove it
38
+        }
39
+    }
11 40
 }

+ 35
- 35
src/test/java/ArrayListCombiner/ArrayListCombinerTest.java Voir le fichier

@@ -9,40 +9,40 @@ import org.junit.Assert;
9 9
 import java.util.ArrayList;
10 10
 
11 11
 public class ArrayListCombinerTest {
12
-//    Employee foo = new Employee("FOO", 100);
13
-//    Manager bar = new Manager("BAR", 100);
14
-//    @Test
15
-//    public void testExtendCombiner() throws Exception {
16
-//        // Given an array list with employees
17
-//        ArrayList<Employee> first = new ArrayList<>();
18
-//        first.add(foo);
19
-//        // An an array list with managers
20
-//        ArrayList<Manager> second = new ArrayList<>();
21
-//        second.add(bar);
22
-//        // When  I combine them
23
-//        ArrayListCombiner.extendCombiner(first, second);
24
-//        // Then I should get an arrayList with both
25
-//        ArrayList<Employee> expected = new ArrayList<>();
26
-//        expected.add(foo);
27
-//        expected.add(bar);
28
-//        Assert.assertEquals(expected, first);
29
-//    }
30
-//
31
-//    @Test
32
-//    public void testSuperCombiner() throws Exception {
33
-//        // Given an array list with employees
34
-//        ArrayList<Employee> first = new ArrayList<>();
35
-//        first.add(foo);
36
-//        // An an array list with managers
37
-//        ArrayList<Manager> second = new ArrayList<>();
38
-//        second.add(bar);
39
-//        // When  I combine them
40
-//        ArrayListCombiner.superCombiner(first, second);
41
-//        // Then I should get an arrayList with both
42
-//        ArrayList<Employee> expected = new ArrayList<>();
43
-//        expected.add(foo);
44
-//        expected.add(bar);
45
-//        Assert.assertEquals(expected, first);
46
-//    }
12
+    Employee foo = new Employee("FOO", 100);
13
+    Manager bar = new Manager("BAR", 100);
14
+    @Test
15
+    public void testExtendCombiner() throws Exception {
16
+        // Given an array list with employees
17
+        ArrayList<Employee> first = new ArrayList<>();
18
+        first.add(foo);
19
+        // An an array list with managers
20
+        ArrayList<Manager> second = new ArrayList<>();
21
+        second.add(bar);
22
+        // When  I combine them
23
+        ArrayListCombiner.extendCombiner(first, second);
24
+        // Then I should get an arrayList with both
25
+        ArrayList<Employee> expected = new ArrayList<>();
26
+        expected.add(foo);
27
+        expected.add(bar);
28
+        Assert.assertEquals(expected, first);
29
+    }
30
+
31
+    @Test
32
+    public void testSuperCombiner() throws Exception {
33
+        // Given an array list with employees
34
+        ArrayList<Employee> first = new ArrayList<>();
35
+        first.add(foo);
36
+        // An an array list with managers
37
+        ArrayList<Manager> second = new ArrayList<>();
38
+        second.add(bar);
39
+        // When  I combine them
40
+        ArrayListCombiner.superCombiner(first, second);
41
+        // Then I should get an arrayList with both
42
+        ArrayList<Employee> expected = new ArrayList<>();
43
+        expected.add(foo);
44
+        expected.add(bar);
45
+        Assert.assertEquals(expected, first);
46
+    }
47 47
 
48 48
 }

+ 36
- 36
src/test/java/MapFunc/MapFuncTest.java Voir le fichier

@@ -1,36 +1,36 @@
1
-//package MapFunc;
2
-//
3
-//import MapFunc.MapFunc;
4
-//import org.junit.Test;
5
-//
6
-//import java.util.ArrayList;
7
-//import org.junit.Assert;
8
-//
9
-//public class MapFuncTest {
10
-//    @Test
11
-//    public void testSingleTypeMap() throws Exception {
12
-//        // Given an integer array list
13
-//        ArrayList<Integer> intList = new ArrayList<>();
14
-//        intList.add(1);
15
-//        intList.add(2);
16
-//        // When it's mapped with a function to double the value
17
-//        ArrayList<Integer> mappedList = MapFunc.map(intList, num -> num*2);
18
-//        // Then all the values are doubled
19
-//        Assert.assertEquals(new Integer(2), mappedList.get(0));
20
-//        Assert.assertEquals(new Integer(4), mappedList.get(1));
21
-//    }
22
-//
23
-//    @Test
24
-//    public void testMultipleTypeMap() throws Exception {
25
-//        // Given an integer array list
26
-//        ArrayList<Integer> intList = new ArrayList<>();
27
-//        intList.add(1);
28
-//        intList.add(2);
29
-//        // When it's mapped with to string
30
-//        ArrayList<String> mappedList = MapFunc.map(intList, num -> num.toString());
31
-//        // Then all the values are doubled
32
-//        Assert.assertEquals("1", mappedList.get(0));
33
-//        Assert.assertEquals("2", mappedList.get(1));
34
-//    }
35
-//
36
-//}
1
+package MapFunc;
2
+
3
+import MapFunc.MapFunc;
4
+import org.junit.Test;
5
+
6
+import java.util.ArrayList;
7
+import org.junit.Assert;
8
+
9
+public class MapFuncTest {
10
+    @Test
11
+    public void testSingleTypeMap() throws Exception {
12
+        // Given an integer array list
13
+        ArrayList<Integer> intList = new ArrayList<>();
14
+        intList.add(1);
15
+        intList.add(2);
16
+        // When it's mapped with a function to double the value
17
+        ArrayList<Integer> mappedList = MapFunc.map(intList, num -> num*2);
18
+        // Then all the values are doubled
19
+        Assert.assertEquals(new Integer(2), mappedList.get(0));
20
+        Assert.assertEquals(new Integer(4), mappedList.get(1));
21
+    }
22
+
23
+    @Test
24
+    public void testMultipleTypeMap() throws Exception {
25
+        // Given an integer array list
26
+        ArrayList<Integer> intList = new ArrayList<>();
27
+        intList.add(1);
28
+        intList.add(2);
29
+        // When it's mapped with to string
30
+        ArrayList<String> mappedList = MapFunc.map(intList, num -> num.toString());
31
+        // Then all the values are doubled
32
+        Assert.assertEquals("1", mappedList.get(0));
33
+        Assert.assertEquals("2", mappedList.get(1));
34
+    }
35
+
36
+}

+ 74
- 74
src/test/java/Pair/ArraysTest.java Voir le fichier

@@ -1,74 +1,74 @@
1
-//package Pair;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-//import java.util.ArrayList;
7
-//
8
-//public class ArraysTest {
9
-//    @Test
10
-//    public void firstLast() throws Exception {
11
-//        // Given an ArrayList of Integers
12
-//        ArrayList<Integer> al = new ArrayList<>();
13
-//        al.add(1);
14
-//        al.add(5);
15
-//        al.add(3);
16
-//        al.add(4);
17
-//        al.add(2);
18
-//        al.add(0);
19
-//        al.add(1000);
20
-//        // When firstLast is called
21
-//        Pair<Integer> result = Arrays.firstLast(al);
22
-//        // Then it should return the first and last items
23
-//        Assert.assertEquals(new Integer(1), result.getFirst());
24
-//        Assert.assertEquals(new Integer(1000), result.getSecond());
25
-//    }
26
-//
27
-//    @Test
28
-//    public void testMin() throws Exception {
29
-//        // Given an ArrayList of Integers
30
-//        ArrayList<Integer> al = new ArrayList<>();
31
-//        al.add(1);
32
-//        al.add(5);
33
-//        al.add(3);
34
-//        al.add(4);
35
-//        al.add(2);
36
-//        al.add(0);
37
-//        al.add(1000);
38
-//        // When min is called assert that it gets the smallest item
39
-//        Assert.assertEquals(new Integer(0), Arrays.min(al));
40
-//    }
41
-//
42
-//    @Test
43
-//    public void testMax() throws Exception {
44
-//        // Given an ArrayList of Integers
45
-//        ArrayList<Integer> al = new ArrayList<>();
46
-//        al.add(1);
47
-//        al.add(5);
48
-//        al.add(3);
49
-//        al.add(4);
50
-//        al.add(2);
51
-//        al.add(0);
52
-//        al.add(1000);
53
-//        // When min is called assert that it gets the largest item
54
-//        Assert.assertEquals(new Integer(1000), Arrays.max(al));
55
-//    }
56
-//
57
-//    @Test
58
-//    public void testMinMax() throws Exception {
59
-//        // Given an ArrayList of Integers
60
-//        ArrayList<Integer> al = new ArrayList<>();
61
-//        al.add(1);
62
-//        al.add(5);
63
-//        al.add(3);
64
-//        al.add(4);
65
-//        al.add(2);
66
-//        al.add(0);
67
-//        al.add(1000);
68
-//        // When minMax is called
69
-//        Pair<Integer> result = Arrays.minMax(al);
70
-//        // Then it should return the first and last items
71
-//        Assert.assertEquals(new Integer(0), result.min());
72
-//        Assert.assertEquals(new Integer(1000), result.max());
73
-//    }
74
-//}
1
+package Pair;
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+import java.util.ArrayList;
7
+
8
+public class ArraysTest {
9
+    @Test
10
+    public void firstLast() throws Exception {
11
+        // Given an ArrayList of Integers
12
+        ArrayList<Integer> al = new ArrayList<>();
13
+        al.add(1);
14
+        al.add(5);
15
+        al.add(3);
16
+        al.add(4);
17
+        al.add(2);
18
+        al.add(0);
19
+        al.add(1000);
20
+        // When firstLast is called
21
+        Pair<Integer> result = Arrays.firstLast(al);
22
+        // Then it should return the first and last items
23
+        Assert.assertEquals(new Integer(1), result.getFirst());
24
+        Assert.assertEquals(new Integer(1000), result.getSecond());
25
+    }
26
+
27
+    @Test
28
+    public void testMin() throws Exception {
29
+        // Given an ArrayList of Integers
30
+        ArrayList<Integer> al = new ArrayList<>();
31
+        al.add(1);
32
+        al.add(5);
33
+        al.add(3);
34
+        al.add(4);
35
+        al.add(2);
36
+        al.add(0);
37
+        al.add(1000);
38
+        // When min is called assert that it gets the smallest item
39
+        Assert.assertEquals(new Integer(0), Arrays.min(al));
40
+    }
41
+
42
+    @Test
43
+    public void testMax() throws Exception {
44
+        // Given an ArrayList of Integers
45
+        ArrayList<Integer> al = new ArrayList<>();
46
+        al.add(1);
47
+        al.add(5);
48
+        al.add(3);
49
+        al.add(4);
50
+        al.add(2);
51
+        al.add(0);
52
+        al.add(1000);
53
+        // When min is called assert that it gets the largest item
54
+        Assert.assertEquals(new Integer(1000), Arrays.max(al));
55
+    }
56
+
57
+    @Test
58
+    public void testMinMax() throws Exception {
59
+        // Given an ArrayList of Integers
60
+        ArrayList<Integer> al = new ArrayList<>();
61
+        al.add(1);
62
+        al.add(5);
63
+        al.add(3);
64
+        al.add(4);
65
+        al.add(2);
66
+        al.add(0);
67
+        al.add(1000);
68
+        // When minMax is called
69
+        Pair<Integer> result = Arrays.minMax(al);
70
+        // Then it should return the first and last items
71
+        Assert.assertEquals(new Integer(0), result.min());
72
+        Assert.assertEquals(new Integer(1000), result.max());
73
+    }
74
+}

+ 32
- 32
src/test/java/Pair/PairTest.java Voir le fichier

@@ -1,32 +1,32 @@
1
-//package Pair;
2
-//
3
-//import org.junit.Test;
4
-//import org.junit.Assert;
5
-//
6
-//public class PairTest {
7
-//
8
-//    @Test
9
-//    public void testGetters() throws Exception {
10
-//        // Given a pair with "Foo" and "Bar"
11
-//        Pair<String> p = new Pair<String>("Foo", "Bar");
12
-//        // When getFirst and getSecond are called, they should be returned.
13
-//        Assert.assertEquals("Foo", p.getFirst());
14
-//        Assert.assertEquals("Bar",  p.getSecond());
15
-//    }
16
-//
17
-//    @Test
18
-//    public void testMin() throws Exception {
19
-//        // Given a pair with two values
20
-//        Pair<Double> p = new Pair<Double>(1.23, 2.34);
21
-//        // When p.min() is called, the smallest should be returned.
22
-//        Assert.assertEquals(new Double(1.23), p.min());
23
-//    }
24
-//
25
-//    @Test
26
-//    public void testMax() throws Exception {
27
-//        // Given a pair with two values
28
-//        Pair<Double> p = new Pair<Double>(1.23, 2.34);
29
-//        // When p.max() is called, the largest should be returned.
30
-//        Assert.assertEquals(new Double(2.34), p.max());
31
-//    }
32
-//}
1
+package Pair;
2
+
3
+import org.junit.Test;
4
+import org.junit.Assert;
5
+
6
+public class PairTest {
7
+
8
+    @Test
9
+    public void testGetters() throws Exception {
10
+        // Given a pair with "Foo" and "Bar"
11
+        Pair<String> p = new Pair<String>("Foo", "Bar");
12
+        // When getFirst and getSecond are called, they should be returned.
13
+        Assert.assertEquals("Foo", p.getFirst());
14
+        Assert.assertEquals("Bar",  p.getSecond());
15
+    }
16
+
17
+    @Test
18
+    public void testMin() throws Exception {
19
+        // Given a pair with two values
20
+        Pair<Double> p = new Pair<Double>(1.23, 2.34);
21
+        // When p.min() is called, the smallest should be returned.
22
+        Assert.assertEquals(new Double(1.23), p.min());
23
+    }
24
+
25
+    @Test
26
+    public void testMax() throws Exception {
27
+        // Given a pair with two values
28
+        Pair<Double> p = new Pair<Double>(1.23, 2.34);
29
+        // When p.max() is called, the largest should be returned.
30
+        Assert.assertEquals(new Double(2.34), p.max());
31
+    }
32
+}

+ 41
- 41
src/test/java/StackArray/GenericStackTest.java Voir le fichier

@@ -1,41 +1,41 @@
1
-//package StackArray;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-//public class GenericStackTest {
7
-//    @Test
8
-//    public void testPushingGrowsTheStack() throws Exception {
9
-//        // Given an empty stack
10
-//        GenericStack<String> stack = new GenericStack<>();
11
-//
12
-//        // Assert that it is empty.
13
-//        Assert.assertEquals(true, stack.isEmpty());
14
-//        // When we push something onto the stack
15
-//        stack.push("foobar");
16
-//        // Then it shouldn't be empty
17
-//        Assert.assertEquals(false, stack.isEmpty());
18
-//    }
19
-//
20
-//    @Test
21
-//    public void testPushingAndPoppingOrder() throws Exception {
22
-//        // Given an empty stack
23
-//        GenericStack<String> stack = new GenericStack<>();
24
-//        // When we push two elements on it
25
-//        stack.push("foo");
26
-//        stack.push("bar");
27
-//        // Then we should see them returned in the correct order
28
-//        Assert.assertEquals("bar", stack.pop());
29
-//        Assert.assertEquals("foo", stack.pop());
30
-//    }
31
-//
32
-//    @Test(expected = IndexOutOfBoundsException.class)
33
-//    public void testPopFirst() throws Exception {
34
-//        // Given an empty stack
35
-//        GenericStack<String> stack = new GenericStack<>();
36
-//        // When it's popped
37
-//        stack.pop();
38
-//        // Then we should get an exception
39
-//    }
40
-//
41
-//}
1
+package StackArray;
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+public class GenericStackTest {
7
+    @Test
8
+    public void testPushingGrowsTheStack() throws Exception {
9
+        // Given an empty stack
10
+        GenericStack<String> stack = new GenericStack<>();
11
+
12
+        // Assert that it is empty.
13
+        Assert.assertEquals(true, stack.isEmpty());
14
+        // When we push something onto the stack
15
+        stack.push("foobar");
16
+        // Then it shouldn't be empty
17
+        Assert.assertEquals(false, stack.isEmpty());
18
+    }
19
+
20
+    @Test
21
+    public void testPushingAndPoppingOrder() throws Exception {
22
+        // Given an empty stack
23
+        GenericStack<String> stack = new GenericStack<>();
24
+        // When we push two elements on it
25
+        stack.push("foo");
26
+        stack.push("bar");
27
+        // Then we should see them returned in the correct order
28
+        Assert.assertEquals("bar", stack.pop());
29
+        Assert.assertEquals("foo", stack.pop());
30
+    }
31
+
32
+    @Test(expected = IndexOutOfBoundsException.class)
33
+    public void testPopFirst() throws Exception {
34
+        // Given an empty stack
35
+        GenericStack<String> stack = new GenericStack<>();
36
+        // When it's popped
37
+        stack.pop();
38
+        // Then we should get an exception
39
+    }
40
+
41
+}

+ 39
- 39
src/test/java/StackArray/ObjectStackTest.java Voir le fichier

@@ -1,39 +1,39 @@
1
-//package StackArray;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-//public class ObjectStackTest {
7
-//    @Test
8
-//    public void testPushingGrowsTheStack() throws Exception {
9
-//        // Given an empty stack
10
-//        ObjectStack<String> stack = new ObjectStack<>();
11
-//        // Assert that it is empty.
12
-//        Assert.assertEquals(true, stack.isEmpty());
13
-//        // When we push something onto the stack
14
-//        stack.push("foobar");
15
-//        // Then it shouldn't be empty
16
-//        Assert.assertEquals(false, stack.isEmpty());
17
-//    }
18
-//
19
-//    @Test
20
-//    public void testPushingAndPoppingOrder() throws Exception {
21
-//        // Given an empty stack
22
-//        ObjectStack<String> stack = new ObjectStack<>();
23
-//        // When we push two elements on it
24
-//        stack.push("foo");
25
-//        stack.push("bar");
26
-//        // Then we should see them returned in the correct order
27
-//        Assert.assertEquals("bar", stack.pop());
28
-//        Assert.assertEquals("foo", stack.pop());
29
-//    }
30
-//
31
-//    @Test(expected = IndexOutOfBoundsException.class)
32
-//    public void testPopFirst() throws Exception {
33
-//        // Given an empty stack
34
-//        ObjectStack<String> stack = new ObjectStack<>();
35
-//        // When it's popped
36
-//        stack.pop();
37
-//        // Then we should get an exception
38
-//    }
39
-//}
1
+package StackArray;
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+public class ObjectStackTest {
7
+    @Test
8
+    public void testPushingGrowsTheStack() throws Exception {
9
+        // Given an empty stack
10
+        ObjectStack<String> stack = new ObjectStack<>();
11
+        // Assert that it is empty.
12
+        Assert.assertEquals(true, stack.isEmpty());
13
+        // When we push something onto the stack
14
+        stack.push("foobar");
15
+        // Then it shouldn't be empty
16
+        Assert.assertEquals(false, stack.isEmpty());
17
+    }
18
+
19
+    @Test
20
+    public void testPushingAndPoppingOrder() throws Exception {
21
+        // Given an empty stack
22
+        ObjectStack<String> stack = new ObjectStack<>();
23
+        // When we push two elements on it
24
+        stack.push("foo");
25
+        stack.push("bar");
26
+        // Then we should see them returned in the correct order
27
+        Assert.assertEquals("bar", stack.pop());
28
+        Assert.assertEquals("foo", stack.pop());
29
+    }
30
+
31
+    @Test(expected = IndexOutOfBoundsException.class)
32
+    public void testPopFirst() throws Exception {
33
+        // Given an empty stack
34
+        ObjectStack<String> stack = new ObjectStack<>();
35
+        // When it's popped
36
+        stack.pop();
37
+        // Then we should get an exception
38
+    }
39
+}

+ 45
- 45
src/test/java/StackArrayList/StackTest.java Voir le fichier

@@ -1,45 +1,45 @@
1
-//package StackArrayList;
2
-//
3
-//import org.junit.Test;
4
-//
5
-//import org.junit.Assert;
6
-//
7
-//public class StackTest {
8
-//    @Test
9
-//    public void testEmptyStackStopsBeingEmptyWhenAnItemIsAdded() throws Exception {
10
-//        // Given an empty stack
11
-//        Stack<String> stack = new Stack<>();
12
-//        // Assert that it starts empty
13
-//        Assert.assertEquals(true, stack.isEmpty());
14
-//        // When an element gets pushed
15
-//        stack.push("foobar");
16
-//        // Then the stack should not be empty.
17
-//        Assert.assertEquals(false, stack.isEmpty());
18
-//    }
19
-//
20
-//    @Test
21
-//    public void testTwoItemsPushedComeOutInCorrectOrder() throws Exception {
22
-//        // Given an empty stack
23
-//        Stack<String> stack = new Stack<>();
24
-//
25
-//        //When two items are pushed
26
-//        stack.push("foo");
27
-//        stack.push("bar");
28
-//
29
-//        // Then they should come off in reverse order.
30
-//        Assert.assertEquals("bar", stack.pop());
31
-//        Assert.assertEquals("foo", stack.pop());
32
-//
33
-//        // And then the stack should be empty
34
-//        Assert.assertEquals(true, stack.isEmpty());
35
-//    }
36
-//
37
-//    @Test(expected = IndexOutOfBoundsException.class)
38
-//    public void testPopFirst() throws Exception {
39
-//        // Given an empty stack
40
-//        Stack<String> stack = new Stack<>();
41
-//        // Then it is popped
42
-//        stack.pop();
43
-//        // We should get an exception
44
-//    }
45
-//}
1
+package StackArrayList;
2
+
3
+import org.junit.Test;
4
+
5
+import org.junit.Assert;
6
+
7
+public class StackTest {
8
+    @Test
9
+    public void testEmptyStackStopsBeingEmptyWhenAnItemIsAdded() throws Exception {
10
+        // Given an empty stack
11
+        Stack<String> stack = new Stack<>();
12
+        // Assert that it starts empty
13
+        Assert.assertEquals(true, stack.isEmpty());
14
+        // When an element gets pushed
15
+        stack.push("foobar");
16
+        // Then the stack should not be empty.
17
+        Assert.assertEquals(false, stack.isEmpty());
18
+    }
19
+
20
+    @Test
21
+    public void testTwoItemsPushedComeOutInCorrectOrder() throws Exception {
22
+        // Given an empty stack
23
+        Stack<String> stack = new Stack<>();
24
+
25
+        //When two items are pushed
26
+        stack.push("foo");
27
+        stack.push("bar");
28
+
29
+        // Then they should come off in reverse order.
30
+        Assert.assertEquals("bar", stack.pop());
31
+        Assert.assertEquals("foo", stack.pop());
32
+
33
+        // And then the stack should be empty
34
+        Assert.assertEquals(true, stack.isEmpty());
35
+    }
36
+
37
+    @Test(expected = IndexOutOfBoundsException.class)
38
+    public void testPopFirst() throws Exception {
39
+        // Given an empty stack
40
+        Stack<String> stack = new Stack<>();
41
+        // Then it is popped
42
+        stack.pop();
43
+        // We should get an exception
44
+    }
45
+}

+ 15
- 15
src/test/java/Swap/SwapTest.java Voir le fichier

@@ -1,16 +1,16 @@
1 1
 package Swap;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-///**
7
-// * Get the tests passing.
8
-// */
9
-//public class SwapTest {
10
-//    @Test
11
-//    public void testSwap() throws Exception {
12
-//        Double[] result = Swap.swap(0,1, 1.5, 2,3);
13
-//        Double[] expected = {2.0, 1.5, 3.0};
14
-//        Assert.assertArrayEquals(expected, result);
15
-//    }
16
-//}
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+/**
7
+ * Get the tests passing.
8
+ */
9
+public class SwapTest {
10
+    @Test
11
+    public void testSwap() throws Exception {
12
+        Integer[] result = Swap.swap(0,1, 50, 2,3);
13
+        Integer[] expected = {2, 50, 3};
14
+        Assert.assertArrayEquals(expected, result);
15
+    }
16
+}

+ 50
- 50
src/test/java/Table/TableTest.java Voir le fichier

@@ -1,50 +1,50 @@
1
-//package Table;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-//public class TableTest {
7
-//    @Test
8
-//    public void testGetWithoutAnItemReturnsNull() throws Exception {
9
-//        // Given an empty table
10
-//        Table<String, Integer> table = new Table<String, Integer>();
11
-//        // When we try and get an item then it returns null
12
-//        Assert.assertEquals(table.get("foo"), null);
13
-//    }
14
-//
15
-//    @Test
16
-//    public void testPutAnItemReturnsAndDoesNotDelete() throws Exception {
17
-//        //Given an empty table
18
-//        Table<String, Integer> table = new Table<String, Integer>();
19
-//        // When we put an item in it
20
-//        table.put("foo", 1);
21
-//        // Then we should be able to get it's value
22
-//        Assert.assertEquals(table.get("foo"), new Integer(1));
23
-//        // And then we should be able to get it again as it wasn't removed
24
-//        Assert.assertEquals(table.get("foo"), new Integer(1));
25
-//    }
26
-//
27
-//    @Test
28
-//    public void testOverwritingAnItem() throws Exception {
29
-//        //Given an empty table
30
-//        Table<String, Integer> table = new Table<String, Integer>();
31
-//        // When we put an item in it
32
-//        table.put("foo", 1);
33
-//        // And we put a new value with the same key
34
-//        table.put("foo", 2);
35
-//        // Then we should get back the new value
36
-//        Assert.assertEquals(table.get("foo"), new Integer(2));
37
-//    }
38
-//
39
-//    @Test
40
-//    public void testRemoveAnItem() throws Exception {
41
-//        //Given an empty table
42
-//        Table<String, Integer> table = new Table<String, Integer>();
43
-//        // When we put an item in it
44
-//        table.put("foo", 1);
45
-//        // And we remove that item
46
-//        table.remove("foo");
47
-//        // Then we should get back null for that balue
48
-//        Assert.assertEquals(table.get("foo"), null);
49
-//    }
50
-//}
1
+package Table;
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+public class TableTest {
7
+    @Test
8
+    public void testGetWithoutAnItemReturnsNull() throws Exception {
9
+        // Given an empty table
10
+        Table<String, Integer> table = new Table<String, Integer>();
11
+        // When we try and get an item then it returns null
12
+        Assert.assertEquals(table.get("foo"), null);
13
+    }
14
+
15
+    @Test
16
+    public void testPutAnItemReturnsAndDoesNotDelete() throws Exception {
17
+        //Given an empty table
18
+        Table<String, Integer> table = new Table<String, Integer>();
19
+        // When we put an item in it
20
+        table.put("foo", 1);
21
+        // Then we should be able to get it's value
22
+        Assert.assertEquals(table.get("foo"), new Integer(1));
23
+        // And then we should be able to get it again as it wasn't removed
24
+        Assert.assertEquals(table.get("foo"), new Integer(1));
25
+    }
26
+
27
+    @Test
28
+    public void testOverwritingAnItem() throws Exception {
29
+        //Given an empty table
30
+        Table<String, Integer> table = new Table<String, Integer>();
31
+        // When we put an item in it
32
+        table.put("foo", 1);
33
+        // And we put a new value with the same key
34
+        table.put("foo", 2);
35
+        // Then we should get back the new value
36
+        Assert.assertEquals(table.get("foo"), new Integer(2));
37
+    }
38
+
39
+    @Test
40
+    public void testRemoveAnItem() throws Exception {
41
+        //Given an empty table
42
+        Table<String, Integer> table = new Table<String, Integer>();
43
+        // When we put an item in it
44
+        table.put("foo", 1);
45
+        // And we remove that item
46
+        table.remove("foo");
47
+        // Then we should get back null for that balue
48
+        Assert.assertEquals(table.get("foo"), null);
49
+    }
50
+}

+ 50
- 50
src/test/java/TableNested/TableNestedTest.java Voir le fichier

@@ -1,50 +1,50 @@
1
-//package TableNested;
2
-//
3
-//import org.junit.Assert;
4
-//import org.junit.Test;
5
-//
6
-//public class TableNestedTest {
7
-//    @Test
8
-//    public void testGetWithoutAnItemReturnsNull() throws Exception {
9
-//        // Given an empty table
10
-//        TableNested<String, Integer> table = new TableNested<String, Integer>();
11
-//        // When we try and get an item then it returns null
12
-//        Assert.assertEquals(table.get("foo"), null);
13
-//    }
14
-//
15
-//    @Test
16
-//    public void testPutAnItemReturnsAndDoesNotDelete() throws Exception {
17
-//        //Given an empty table
18
-//        TableNested<String, Integer> table = new TableNested<String, Integer>();
19
-//        // When we put an item in it
20
-//        table.put("foo", 1);
21
-//        // Then we should be able to get it's value
22
-//        Assert.assertEquals(table.get("foo"), new Integer(1));
23
-//        // And then we should be able to get it again as it wasn't removed
24
-//        Assert.assertEquals(table.get("foo"), new Integer(1));
25
-//    }
26
-//
27
-//    @Test
28
-//    public void testOverwritingAnItem() throws Exception {
29
-//        //Given an empty table
30
-//        TableNested<String, Integer> table = new TableNested<String, Integer>();
31
-//        // When we put an item in it
32
-//        table.put("foo", 1);
33
-//        // And we put a new value with the same key
34
-//        table.put("foo", 2);
35
-//        // Then we should get back the new value
36
-//        Assert.assertEquals(table.get("foo"), new Integer(2));
37
-//    }
38
-//
39
-//    @Test
40
-//    public void testRemoveAnItem() throws Exception {
41
-//        //Given an empty table
42
-//        TableNested<String, Integer> table = new TableNested<String, Integer>();
43
-//        // When we put an item in it
44
-//        table.put("foo", 1);
45
-//        // And we remove that item
46
-//        table.remove("foo");
47
-//        // Then we should get back null for that balue
48
-//        Assert.assertEquals(table.get("foo"), null);
49
-//    }
50
-//}
1
+package TableNested;
2
+
3
+import org.junit.Assert;
4
+import org.junit.Test;
5
+
6
+public class TableNestedTest {
7
+    @Test
8
+    public void testGetWithoutAnItemReturnsNull() throws Exception {
9
+        // Given an empty table
10
+        TableNested<String, Integer> table = new TableNested<String, Integer>();
11
+        // When we try and get an item then it returns null
12
+        Assert.assertEquals(table.get("foo"), null);
13
+    }
14
+
15
+    @Test
16
+    public void testPutAnItemReturnsAndDoesNotDelete() throws Exception {
17
+        //Given an empty table
18
+        TableNested<String, Integer> table = new TableNested<String, Integer>();
19
+        // When we put an item in it
20
+        table.put("foo", 1);
21
+        // Then we should be able to get it's value
22
+        Assert.assertEquals(table.get("foo"), new Integer(1));
23
+        // And then we should be able to get it again as it wasn't removed
24
+        Assert.assertEquals(table.get("foo"), new Integer(1));
25
+    }
26
+
27
+    @Test
28
+    public void testOverwritingAnItem() throws Exception {
29
+        //Given an empty table
30
+        TableNested<String, Integer> table = new TableNested<String, Integer>();
31
+        // When we put an item in it
32
+        table.put("foo", 1);
33
+        // And we put a new value with the same key
34
+        table.put("foo", 2);
35
+        // Then we should get back the new value
36
+        Assert.assertEquals(table.get("foo"), new Integer(2));
37
+    }
38
+
39
+    @Test
40
+    public void testRemoveAnItem() throws Exception {
41
+        //Given an empty table
42
+        TableNested<String, Integer> table = new TableNested<String, Integer>();
43
+        // When we put an item in it
44
+        table.put("foo", 1);
45
+        // And we remove that item
46
+        table.remove("foo");
47
+        // Then we should get back null for that balue
48
+        Assert.assertEquals(table.get("foo"), null);
49
+    }
50
+}