Answered step by step
Verified Expert Solution
Link Copied!

Question

1 Approved Answer

PLEASE COMPLETE THE TASK ASKED IN THIS ASSIGNMENT AND ATTACH OUTPUT RESULTS. WITHOUT OUTPUT RESULTS ANSWER WILL NOT ACCEPTED. #ifndef POINTER _ H #define POINTER

PLEASE COMPLETE THE TASK ASKED IN THIS ASSIGNMENT AND ATTACH OUTPUT RESULTS. WITHOUT OUTPUT RESULTS ANSWER WILL NOT ACCEPTED.
#ifndef POINTER_H
#define POINTER_H
#include
#include
#include
//
// Structure definitions and function pointer typedefs
//
typedef double (*area_fn)(void* shape); // Function pointer type
for area functions
typedef double (*perimeter_fn)(void* shape); // Function pointer
type for perimeter functions
typedef struct {
struct {
area_fn area; // Area function for shape
perimeter_fn perimeter; // Perimeter function for shape
} virtual_func_table; // Table of function pointers for the
emulated virtual functions
const char* name; // Name of shape
unsigned int edges; // Number of edges
} shape_t; // Generic base class for a shape
typedef struct {
shape_t shape; // Include the base class at the start of a
specific type of shape
double width;
double length;
} rectangle_t;
typedef struct {
shape_t shape; // Include the base class at the start of a
specific type of shape
double length; // Length of equilateral triangle edge
} triangle_t;
// Function pointer type for shape comparison functions
// Returns -1 if shape1 is less than shape2
// Returns 1 if shape1 is greater than shape2
// Returns 0 if shape1 is equal to shape2
typedef int (*compare_fn)(shape_t* shape1, shape_t* shape2);
typedef struct linked_list_node {
shape_t* shape; // Shape associated with the node
struct linked_list_node* next;
} linked_list_node_t;
typedef struct {
compare_fn compare; // Shape comparison function
linked_list_node_t* head;
} linked_list_t;
typedef struct tree_node {
shape_t* shape; // Shape associated with the node
struct tree_node* left; // Left subtree
struct tree_node* right; // Right subtree
} tree_node_t;
#define MAX_DEPTH 30
typedef struct {
tree_node_t* curr; // Pointer to the current node
unsigned int depth; // Current depth in the tree (root is at
depth 0)
tree_node_t* parents[MAX_DEPTH]; // Pointer to parent nodes
} tree_iterator_t; // Helper struct for iterating through a tree
-- represents a current location within the tree
typedef double (*foreach_fn)(shape_t* shape, double data); //
Function pointer type for functions being run foreach shape in a
linked list
//
// Shape functions
//
// Returns the area of a shape
static inline double shape_area(shape_t* shape)
{
return shape->virtual_func_table.area(shape);
}
// Returns the perimeter of a shape
static inline double shape_perimeter(shape_t* shape)
{
return shape->virtual_func_table.perimeter(shape);
}
// Returns the name of a shape
static inline const char* shape_name(shape_t* shape)
{
return shape->name;
}
// Returns the number of edges in a shape
static inline unsigned int shape_edges(shape_t* shape)
{
return shape->edges;
}
// Prints info about a shape
static inline void shape_print(shape_t* shape)
{
printf("%s: area =%.2f, perimeter =%.2f, edges =%d
",
shape_name(shape), shape_area(shape), shape_perimeter(shape),
shape_edges(shape));
}
double rectangle_area(void* shape);
double triangle_area(void* shape);
double rectangle_perimeter(void* shape);
double triangle_perimeter(void* shape);
void rectangle_construct(rectangle_t* shape, const char* name,
double width, double length);
void triangle_construct(triangle_t* shape, const char* name,
double length);
int compare_by_area(shape_t* shape1, shape_t* shape2);
int compare_by_perimeter(shape_t* shape1, shape_t* shape2);
//
// Linked list functions
//
void linked_list_init(linked_list_t* list, compare_fn compare);
void linked_list_insert(linked_list_t* list, linked_list_node_t*
node);
void linked_list_remove(linked_list_t* list, shape_t* shape);
//
// Tree iterator functions
//
void tree_iterator_begin(tree_iterator_t* iter, tree_node_t*
root);
void tree_iterator_next(tree_iterator_t* iter);
bool tree_iterator_at_end(tree_iterator_t* iter);
tree_node_t* tree_iterator_get_node(tree_iterator_t* iter);
shape_t* tree_iterator_get_shape(tree_iterator_t* iter);
//
// Tree analysis functions
//
void max_min_avg_area(tree_node_t* root, double* max, double*
min, double* avg);
double foreach(tree_node_t* root, foreach_fn func, double data);
#endif // POINTER_H

Step by Step Solution

There are 3 Steps involved in it

Step: 1

blur-text-image

Get Instant Access with AI-Powered Solutions

See step-by-step solutions with expert insights and AI powered tools for academic success

Step: 2

blur-text-image

Step: 3

blur-text-image

Ace Your Homework with AI

Get the answers you need in no time with our AI-driven, step-by-step assistance

Get Started

Students also viewed these Databases questions