Algorithms_in_C++  1.0.0
Set of algorithms implemented in C++.
Sorting Algorithm

Files

file  merge_sort.cpp
 Merege Sort Algorithm (MEREGE SORT) implementation
 
file  wiggle_sort.cpp
 Wiggle Sort Algorithm Implementation
 

Namespaces

 sorting
 Sorting algorithms.
 

Functions

template<typename T >
void heapify (T *arr, int n, int i)
 
template<typename T >
void heapSort (T *arr, int n)
 
void merge (int *arr, int l, int m, int r)
 
void mergeSort (int *arr, int l, int r)
 
void show (int *arr, int size)
 
int main ()
 
template<typename T >
static void displayElements (const std::vector< T > &arr)
 Utility function used for printing the elements. Prints elements of the array after they're sorted using wiggle sort algorithm. More...
 
static void test ()
 

Detailed Description

The heapify procedure can be thought of as building a heap from the bottom up by successively sifting downward to establish the heap property.

Parameters
arrarray to be sorted
nsize of array
inode position in Binary Tress or element position in Array to be compared with it's childern

Function Documentation

◆ displayElements()

template<typename T >
static void displayElements ( const std::vector< T > &  arr)
static

Utility function used for printing the elements. Prints elements of the array after they're sorted using wiggle sort algorithm.

Parameters
arrarray containing the sorted elements
Examples
/Users/runner/work/C-Plus-Plus/C-Plus-Plus/sorting/wiggle_sort.cpp.
84  {
85 
86  uint32_t size = arr.size();
87 
88  std::cout << "Sorted elements are as follows: ";
89 
90  std::cout << "[";
91 
92  for(int i = 0 ; i < size ; i++ ) {
93 
94  std::cout << arr[i] ;
95  if(i != size - 1) {
96  std::cout << ", " ;
97  }
98 
99  }
100 
101  std::cout << "]"<<std::endl;
102 
103 }

◆ heapSort()

template<typename T >
void heapSort ( T *  arr,
int  n 
)

Utilizes heapify procedure to sort the array

Parameters
arrarray to be sorted
nsize of array
84  {
85  for (int i = n - 1; i >= 0; i--) heapify(arr, n, i);
86 
87  for (int i = n - 1; i >= 0; i--) {
88  std::swap(arr[0], arr[i]);
89  heapify(arr, i, 0);
90  }
91 }

◆ main()

int main ( void  )

Main function

Driver Code

90  {
91  int size;
92  std::cout << "Enter the number of elements : ";
93  std::cin >> size;
94  int *arr = new int[size];
95  std::cout << "Enter the unsorted elements : ";
96  for (int i = 0; i < size; ++i) {
97  std::cin >> arr[i];
98  }
99  mergeSort(arr, 0, size - 1);
100  std::cout << "Sorted array : ";
101  show(arr, size);
102  delete[] arr;
103  return 0;
104 }

◆ merge()

void merge ( int *  arr,
int  l,
int  m,
int  r 
)

The merge() function is used for merging two halves. The merge(arr, l, m, r) is key process that assumes that arr[l..m] and arr[m+1..r] are sorted and merges the two sorted sub-arrays into one.

Parameters
arr- array with two halves arr[l...m] and arr[m+1...l]
l- left index or start index of first half array
m- right index or end index of first half array

(The second array starts form m+1 and goes till l)

Parameters
l- end index or right index of second half array
33  {
34  int i, j, k;
35  int n1 = m - l + 1;
36  int n2 = r - m;
37 
38  int *L = new int[n1], *R = new int[n2];
39 
40  for (i = 0; i < n1; i++) L[i] = arr[l + i];
41  for (j = 0; j < n2; j++) R[j] = arr[m + 1 + j];
42 
43  i = 0;
44  j = 0;
45  k = l;
46  while (i < n1 || j < n2) {
47  if (j >= n2 || (i < n1 && L[i] <= R[j])) {
48  arr[k] = L[i];
49  i++;
50  } else {
51  arr[k] = R[j];
52  j++;
53  }
54  k++;
55  }
56 
57  delete[] L;
58  delete[] R;
59 }

◆ mergeSort()

void mergeSort ( int *  arr,
int  l,
int  r 
)

Merge sort is a divide and conquer algorithm, it divides the input array into two halves and calls itself for the two halves and then calls merge() to merge the two halves

Parameters
arr- array to be sorted
l- left index or start index of array
r- right index or end index of array
71  {
72  if (l < r) {
73  int m = l + (r - l) / 2;
74  mergeSort(arr, l, m);
75  mergeSort(arr, m + 1, r);
76  merge(arr, l, m, r);
77  }
78 }
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◆ show()

void show ( int *  arr,
int  size 
)

Utility function used to print the array after sorting

84  {
85  for (int i = 0; i < size; i++) std::cout << arr[i] << " ";
86  std::cout << "\n";
87 }

◆ test()

static void test ( )
static

Test function

Returns
void
109  {
110 
111  std::srand(std::time(nullptr)); // initialize random number generator
112 
113  std::vector<float> data1(100);
114  for (auto &d: data1) { // generate random numbers between -5.0 and 4.99
115  d = float(std::rand() % 1000 - 500) / 100.f;
116  }
117 
118  std::vector<float> sorted = sorting::wiggle_sort::wiggleSort<float>(data1);
119 
120  displayElements(sorted);
121 
122  for(uint32_t j = 0; j < data1.size(); j+=2) {
123  assert(data1[j] <= data1[j+1] && data1[j+1] >= data1[j+2]); // check the validation condition
124  }
125 
126  std::cout << "Test 1 passed\n";
127 
128 }
Here is the call graph for this function:
std::srand
T srand(T... args)
std::vector
STL class.
std::vector::size
T size(T... args)
show
void show(int *arr, int size)
Definition: merge_sort.cpp:84
mergeSort
void mergeSort(int *arr, int l, int r)
Definition: merge_sort.cpp:71
std::cout
merge
void merge(int *arr, int l, int m, int r)
Definition: merge_sort.cpp:33
displayElements
static void displayElements(const std::vector< T > &arr)
Utility function used for printing the elements. Prints elements of the array after they're sorted us...
Definition: wiggle_sort.cpp:84
std::rand
T rand(T... args)
std::swap
T swap(T... args)
std::endl
T endl(T... args)
std::time
T time(T... args)
std::cin