Fledasty/Tests/Main.c

297 lines
No EOL
12 KiB
C

/*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* -----------------------------------------------------------------------------
* File: Main.c
* Description:
* Executes all tests.
*
* Author: Mineplay
* -----------------------------------------------------------------------------
*/
#include <stdio.h>
#include <Hallocy/Core/Allocator.h>
#include <Fledasty/Core/Queue.h>
#include <Fledasty/Core/Stack.h>
#include <Fledasty/Core/DynamicArray.h>
#include <Fledasty/Core/LinkedList.h>
#include <Fledasty/Core/DoublyLinkedList.h>
#include <Fledasty/Core/HashTable.h>
#include <Fledasty/Strings/UTF8String.h>
#include <Fledasty/Algorithms/Hashing.h>
static inline bool compare_integers(const int first_value, const int second_value) { return first_value == second_value; }
static inline size_t integer_hash_function(const void *key) { return *(int*)key; }
FLEDASTY_STACK_DEFINE(int, int)
FLEDASTY_STACK_IMPLEMENT(int, int)
FLEDASTY_QUEUE_DEFINE(int, int)
FLEDASTY_QUEUE_IMPLEMENT(int, int)
FLEDASTY_DYNAMIC_ARRAY_DEFINE(int, int)
FLEDASTY_DYNAMIC_ARRAY_IMPLEMENT(int, int, compare_integers)
int main() {
FledastyQueue_int test_queue = { 0, 0, 0, 0, NULL };
for (int i = 0; i < 10; i += 1) {
fledasty_queue_int_push(&test_queue, i);
}
fledasty_queue_int_shrink_to_fit(&test_queue);
printf("Queue schrinked to fit %s\n", (test_queue.capacity == test_queue.size) ? "succeeded" : "failed");
fledasty_queue_int_push(&test_queue, 10);
printf("Queue peeked: %d\n", fledasty_queue_int_peek(&test_queue));
for (int i = test_queue.size; i > 0; i -= 1) {
printf("Queue popped: %d\n", fledasty_queue_int_pop(&test_queue));
}
fledasty_queue_int_clear(&test_queue);
if (fledasty_queue_int_is_empty(&test_queue)) {
printf("Queue is empty\n");
}
fledasty_queue_int_free(&test_queue);
FledastyStack_int test_stack = { 0, 0, NULL };
for (int i = 0; i < 10; i += 1) {
fledasty_stack_int_push(&test_stack, i);
}
fledasty_stack_int_shrink_to_fit(&test_stack);
printf("Stack schrinked to fit %s\n", (test_stack.capacity == test_stack.size) ? "succeeded" : "failed");
printf("Stack peeked: %d\n", fledasty_stack_int_peek(&test_stack));
for (int i = test_stack.size; i > 0; i -= 1) {
printf("Stack popped: %d\n", fledasty_stack_int_pop(&test_stack));
}
fledasty_stack_int_clear(&test_stack);
if (fledasty_stack_int_is_empty(&test_stack)) {
printf("Stack is empty\n");
}
fledasty_stack_int_free(&test_stack);
FledastyDynamicArray_int test_dynamic_array = { 0, 0, NULL };
for (int i = 0; i < 10; i += 1) {
fledasty_dynamic_array_int_append(&test_dynamic_array, i);
}
fledasty_dynamic_array_int_shrink_to_fit(&test_dynamic_array);
printf("Dynamic array schrinked to fit %s\n", (test_dynamic_array.capacity == test_dynamic_array.size) ? "succeeded" : "failed");
fledasty_dynamic_array_int_insert_at_index(&test_dynamic_array, 1, 18);
fledasty_dynamic_array_int_insert_before_value(&test_dynamic_array, 1, 35);
fledasty_dynamic_array_int_insert_after_value(&test_dynamic_array, 35, 90);
fledasty_dynamic_array_int_remove_value(&test_dynamic_array, 35);
fledasty_dynamic_array_int_remove_at_index(&test_dynamic_array, test_dynamic_array.size - 2);
for (int i = 0; i < test_dynamic_array.size; i += 1) {
printf("Dynamic array get: %d\n", test_dynamic_array.buffer[i]);
}
if (fledasty_dynamic_array_int_has_value(&test_dynamic_array, 90)) {
printf("Dynamic array contains 90\n");
}
fledasty_dynamic_array_int_clear(&test_dynamic_array);
if (fledasty_dynamic_array_int_is_empty(&test_dynamic_array)) {
printf("Dynamic array is empty\n");
}
fledasty_dynamic_array_int_free(&test_dynamic_array);
FledastyLinkedList test_linked_list;
fledasty_linked_list_initialize(&test_linked_list, (int[]){11, 12, 13, 14, 15}, 5, sizeof(int));
for (int i = 0; i < 10; i += 1) {
fledasty_linked_list_append(&test_linked_list, &i);
}
int insert_value = 35;
fledasty_linked_list_insert_at_index(&test_linked_list, 1, &insert_value);
insert_value = 28;
int insert_at_value = 35;
fledasty_linked_list_insert_before_value(&test_linked_list, &insert_at_value, &insert_value);
insert_value = 90;
fledasty_linked_list_insert_after_value(&test_linked_list, &insert_at_value, &insert_value);
fledasty_linked_list_remove_at_index(&test_linked_list, 2);
int remove_value = 0;
fledasty_linked_list_remove_value(&test_linked_list, &remove_value);
FledastyLinkedListNode *test_linked_list_node = test_linked_list.start;
for (int i = 0; i < test_linked_list.size; i += 1) {
printf("Linked list get: %d\n", *(int*)test_linked_list_node->value);
test_linked_list_node = test_linked_list_node->next;
}
if (fledasty_linked_list_has_value(&test_linked_list, &insert_value)) {
printf("Linked list contains %d\n", insert_value);
}
fledasty_linked_list_clear(&test_linked_list);
if (fledasty_linked_list_is_empty(&test_linked_list)) {
printf("Linked list is empty\n");
}
fledasty_linked_list_destroy(&test_linked_list);
FledastyDoublyLinkedList test_doubly_linked_list;
fledasty_doubly_linked_list_initialize(&test_doubly_linked_list, (int[]){11, 12, 13, 14, 15}, 5, sizeof(int));
for (int i = 0; i < 10; i += 1) {
fledasty_doubly_linked_list_append(&test_doubly_linked_list, &i);
}
insert_value = 35;
fledasty_doubly_linked_list_insert_at_index(&test_doubly_linked_list, test_doubly_linked_list.size - 1, &insert_value);
insert_value = 28;
insert_at_value = 35;
fledasty_doubly_linked_list_insert_before_value(&test_doubly_linked_list, &insert_at_value, &insert_value);
insert_value = 90;
fledasty_doubly_linked_list_insert_after_value(&test_doubly_linked_list, &insert_at_value, &insert_value);
fledasty_doubly_linked_list_remove_at_index(&test_doubly_linked_list, 2);
remove_value = 0;
fledasty_doubly_linked_list_remove_value(&test_doubly_linked_list, &remove_value);
FledastyDoublyLinkedListNode *test_doubly_linked_list_node = test_doubly_linked_list.start;
for (int i = 0; i < test_doubly_linked_list.size; i += 1) {
printf("Doubly linked list get: %d\n", *(int*)test_doubly_linked_list_node->value);
test_doubly_linked_list_node = test_doubly_linked_list_node->next;
}
test_doubly_linked_list_node = test_doubly_linked_list.end;
for (int i = 0; i < test_doubly_linked_list.size; i += 1) {
printf("Doubly linked list get backwards: %d\n", *(int*)test_doubly_linked_list_node->value);
test_doubly_linked_list_node = test_doubly_linked_list_node->previous;
}
if (fledasty_doubly_linked_list_has_value(&test_doubly_linked_list, &insert_value)) {
printf("Doubly linked list contains %d\n", insert_value);
}
fledasty_doubly_linked_list_clear(&test_doubly_linked_list);
if (fledasty_doubly_linked_list_is_empty(&test_doubly_linked_list)) {
printf("Doubly linked list is empty\n");
}
fledasty_doubly_list_destroy(&test_doubly_linked_list);
FledastyHashTable test_hash_table;
fledasty_hash_table_initialize(&test_hash_table, sizeof(int), sizeof(int), integer_hash_function);
for (int i = 0; i < 10; i += 1) {
int pow_value = i * i;
fledasty_hash_table_insert(&test_hash_table, &pow_value, &i);
}
fledasty_hash_table_shrink_to_fit(&test_hash_table);
int hash_table_value = 5;
int hash_table_remove = 2;
fledasty_hash_table_insert(&test_hash_table, &hash_table_remove, &hash_table_value);
fledasty_hash_table_remove(&test_hash_table, &hash_table_remove);
if (fledasty_hash_table_get(&test_hash_table, &hash_table_remove) != NULL) {
printf("Value not removed from hash table\n");
}
for (int i = 0; i < 10; i += 1) {
int pow_value = i * i;
int *hash_table_value = (int*)fledasty_hash_table_get(&test_hash_table, &pow_value);
printf("Hash table get: %d\n", *hash_table_value);
}
hash_table_value = 4;
if (fledasty_hash_table_has_key(&test_hash_table, &hash_table_value)) {
printf("Hash table contains key %d\n", hash_table_value);
}
fledasty_hash_table_clear(&test_hash_table);
if (fledasty_hash_table_is_empty(&test_hash_table)) {
printf("Hash table is empty\n");
}
fledasty_hash_table_destroy(&test_hash_table);
FledastyUtf8String test_utf8_string;
unsigned char *test_string = (unsigned char*)"😀€Testing";
fledasty_utf8_string_initialize(&test_utf8_string, test_string, 14);
printf("%s\n", test_string);
printf("%s\n", test_utf8_string.character_string);
fledasty_utf8_string_append(&test_utf8_string, (unsigned char*)"😀", 4);
printf("Append: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_insert_before_string(&test_utf8_string, (unsigned char*)"😀", 4, (unsigned char*)"Hello", 5);
printf("Insert Before: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_insert_after_string(&test_utf8_string, (unsigned char*)"😀", 4, (unsigned char*)"Bye", 3);
printf("Insert After: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_insert_at_index(&test_utf8_string, test_utf8_string.size, (unsigned char*)"index", 5);
printf("Insert at Index: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_replace_string(&test_utf8_string, (unsigned char*)"😀", 4, (unsigned char*)"𓃶 ", 5);
printf("Replace: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_pop(&test_utf8_string);
printf("Pop: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_remove(&test_utf8_string, (unsigned char*)"𓃶 ", 5);
printf("Remove: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_remove_range(&test_utf8_string, 0, 6);
printf("Remove range: %s\n", test_utf8_string.character_string);
fledasty_utf8_string_shrink_to_fit(&test_utf8_string);
if (fledasty_utf8_string_has_string(&test_utf8_string, (unsigned char*)"😀", 4)) {
printf("String contains 😀!\n");
}
uint32_t hash_x32 = fledasty_mur_mur_3_hash_x32(test_utf8_string.character_string, test_utf8_string.size, 0);
printf("UTF-8 String hash using murmur 32 is: %u\n", hash_x32);
FledastyHash128 hash_x64 = fledasty_mur_mur_3_hash_x64_128(test_utf8_string.character_string, test_utf8_string.size, 0);
printf("UTF-8 String hash using murmur 64 is: low = %lu, high = %lu\n", hash_x64.low, hash_x64.high);
size_t unicode_length = 0;
uint32_t *unicode = fledasty_utf8_string_decode(&test_utf8_string, &unicode_length);
FledastyUtf8String encoded_string = fledasty_utf8_string_encode(unicode, unicode_length);
printf("%s\n", encoded_string.character_string);
if (fledasty_utf8_string_validate(test_utf8_string.character_string, encoded_string.size)) {
printf("UTF-8 test string is valid!\n");
}
if (fledasty_utf8_string_validate(encoded_string.character_string, encoded_string.size)) {
printf("UTF-8 encoded string is valid!\n");
}
unsigned char *invalid_utf8 = (unsigned char*)hallocy_malloc(2 * sizeof(unsigned char));
invalid_utf8[0] = 0xDF;
invalid_utf8[1] = 0xFF;
if (!fledasty_utf8_string_validate(invalid_utf8, 2)) {
printf("UTF-8 invalid string is invalid!\n");
}
fledasty_utf8_string_clear(&test_utf8_string);
if (fledasty_utf8_string_is_empty(&test_utf8_string)) {
printf("UTF-8 string is empty!\n");
}
hallocy_free(invalid_utf8);
hallocy_free(unicode);
fledasty_utf8_string_destroy(&encoded_string);
fledasty_utf8_string_destroy(&test_utf8_string);
printf("Done\n");
return 0;
}