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@ -1,23 +1,28 @@
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#include <stdio.h>
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#include <stdlib.h>
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#include <assert.h>
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#include <stdbool.h>
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typedef struct {
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#include "stack.h"
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struct Stack {
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void** data;
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int top_index;
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int capacity;
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int curr_size;
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} Stack;
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};
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Stack* new_stack(int stack_size) {
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Stack* stack = malloc(sizeof(Stack));
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stack->capacity = stack_size;
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stack->data = malloc(stack_size);
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stack->top_index = 0;
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stack->curr_size = 0;
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return stack;
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assert(stack_size > 0);
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Stack* my_stack = malloc(sizeof(Stack));
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my_stack->capacity = stack_size;
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my_stack->data = malloc(stack_size);
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my_stack->top_index = 0;
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my_stack->curr_size = 0;
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return my_stack;
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}
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void push(Stack* stack,void* element) {
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void stack_push(Stack* stack,void* element) {
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if (stack->curr_size >= stack->capacity-1) {
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stack->data = realloc(stack->data, stack->capacity*2);
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stack->capacity *= 2;
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@ -29,7 +34,8 @@ void push(Stack* stack,void* element) {
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return;
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}
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void* pop(Stack* stack) {
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void* stack_pop(Stack* stack) {
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assert( !(stack_isEmpty(stack)) );
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stack->top_index--;
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void* to_return = *(stack->data + stack->top_index);
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*(stack->data + stack->top_index) = NULL;
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@ -39,25 +45,18 @@ void* pop(Stack* stack) {
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return to_return;
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}
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void* peek(Stack* stack) {
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void* stack_peek(Stack* stack) {
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void* to_return = *(stack->data + stack->top_index - 1);
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return to_return;
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}
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int size(Stack* stack) {
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int stack_size(Stack* stack) {
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return (stack->curr_size);
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}
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void main() {
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Stack* stack = new_stack(10);
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int a = 2;
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int b = 3;
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int c = 4;
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push(stack,(void *)&a);
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push(stack,(void *)&b);
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push(stack,(void *)&c);
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printf("%d\n",*( (int *) pop(stack)));
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printf("%d\n",*( (int *) pop(stack)));
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printf("%d\n",*( (int *) pop(stack)));
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// printf("%d\n",size(stack));
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bool stack_isEmpty(Stack* stack) {
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if (stack_size(stack) == 0) {
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return true;
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}
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return false;
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}
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