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2 Commits
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13cb5d8c86
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13cb5d8c86 | ||
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6528686fb0 |
14
bintree.c
14
bintree.c
@ -70,11 +70,14 @@ void *nextTreeData(TreeNode *root) {
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TreeNode *curr = root;
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TreeNode *curr = root;
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while (curr != NULL) {
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while (curr != NULL) {
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stack = push(stack, curr);
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StackNode *oldStack = stack;
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StackNode *newStack = push(stack, curr);
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if (newStack == oldStack)
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return NULL; // push fehlgeschlagen
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stack = newStack;
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curr = curr->left;
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curr = curr->left;
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}
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}
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}
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}
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if (stack == NULL)
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if (stack == NULL)
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return NULL; // alles durchlaufen
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return NULL; // alles durchlaufen
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@ -85,10 +88,13 @@ void *nextTreeData(TreeNode *root) {
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// Rechten Teilbaum pushen
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// Rechten Teilbaum pushen
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TreeNode *curr = node->right;
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TreeNode *curr = node->right;
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while (curr != NULL) {
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while (curr != NULL) {
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stack = push(stack, curr);
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StackNode *oldStack = stack;
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StackNode *newStack = push(stack, curr);
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if (newStack == oldStack)
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return NULL; // push fehlgeschlagen
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stack = newStack;
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curr = curr->left;
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curr = curr->left;
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}
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}
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return node->data;
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return node->data;
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}
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}
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@ -1,7 +1,10 @@
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Kristin;9944
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Kristin;7947
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Kristin;6962
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Kristin;6962
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Kristin;5975
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Kristin;5975
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krisp;4986
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krisp;4986
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krisp;4985
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krisp;4985
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Kristin;4972
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Kristin;4972
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player1;3999
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player1;3999
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Kristin;3992
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krisp;3991
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krisp;3991
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39
stack.c
39
stack.c
@ -6,6 +6,7 @@
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void *data;
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void *data;
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struct StackNode *next;
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struct StackNode *next;
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struct StackNode *prev;
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} StackNode;*/
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} StackNode;*/
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@ -16,12 +17,13 @@
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* `clearStack`: gibt den gesamten Speicher frei. */
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* `clearStack`: gibt den gesamten Speicher frei. */
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// [A] -> [B] -> [C] -> NULL
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// [A] -> [B] -> [C] -> NULL
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// head -> stack.next
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// stack -> stack.next
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// Funktion zum erstellen neuer nodes
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StackNode *createNode(void *data) {
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StackNode *createNode(void *data) {
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// Speicher reservieren
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StackNode *node = malloc(sizeof(StackNode));
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StackNode *node = malloc(sizeof(StackNode));
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// Speicher konnte nicht reserviert werden
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if (node == NULL)
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if (node == NULL)
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return NULL;
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return NULL;
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@ -37,46 +39,57 @@ StackNode *push(StackNode *stack, void *data) {
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StackNode *newNode = createNode(data);
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StackNode *newNode = createNode(data);
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// Fehler beim Reservieren des Speichers, stack wird unverändert zurückgegeben
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if (newNode == NULL) {
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if (newNode == NULL) {
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return stack;
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return stack;
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}
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}
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// der aktuelle Kopf wird der nächste Node
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newNode->next = stack;
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newNode->next = stack;
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// bisheriger Kopf bekommt Pointer auf oberstes Element
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if (stack != NULL) {
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if (stack != NULL) {
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stack->prev = newNode;
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stack->prev = newNode;
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}
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}
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return newNode;
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return newNode; // neuer Kopf wird zurückgegeben
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}
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}
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// Deletes the top element of the stack (latest added element) and releases its
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// Deletes the top element of the stack (latest added element) and releases its
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// memory. (Pointer to data has to be freed by caller.)
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// memory. (Pointer to data has to be freed by caller.)
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StackNode *pop(StackNode *stack) {
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StackNode *pop(StackNode *stack) {
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// Stack ohne Elemente
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if (stack == NULL)
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if (stack == NULL)
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return NULL;
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return NULL;
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// Element unter Kopf wird als nextNode gespeichert
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StackNode *nextNode = stack->next;
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StackNode *nextNode = stack->next;
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if (nextNode != NULL) {
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if (nextNode != NULL) {
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nextNode->prev = NULL;
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nextNode->prev = NULL; // der Zeiger zum Kopf wird auf NULL gesetzt
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}
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}
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free(stack);
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free(stack);
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stack = NULL;
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stack = NULL; // Speicher des Kopfes freigeben
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return nextNode;
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return nextNode; // neuen Kopf zurückgeben
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}
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}
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// Returns the data of the top element.
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// Returns the data of the top element.
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void *top(StackNode *stack) { return stack ? stack->data : NULL; }
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void *top(StackNode *stack) {
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// wenn stack leer ist, wird NULL zurückgegeben
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// Zeiger auf Daten des obersten Elements
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return stack ? stack->data : NULL;
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}
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// Clears stack and releases all memory.
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// Clears stack and releases all memory.
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void clearStack(StackNode **stack) {
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void clearStack(StackNode **stack) { // Zeiger auf den Zeiger auf den Stackkopf
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// verändert den Zeiger selbst, mit *stack lokale Kopie
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// im Aufruf &stack verwenden
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while (*stack != NULL) {
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while (*stack != NULL) {
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StackNode *next = (*stack)->next;
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StackNode *next = (*stack)->next; // nächstes Element speichern
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free(*stack);
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free(*stack); // aktuelles Element freigeben
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*stack = next;
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*stack = next; // Zeiger auf nächsten Knoten setzen
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}
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}
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}
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}
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55
test_stack.c
55
test_stack.c
@ -5,31 +5,62 @@
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#include "stack.h"
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#include "stack.h"
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// StackNode *createNode(void *data) testen
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void test_createNode(void) {
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void test_createNode(void) {
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int testInt = 26;
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int testInt = 26;
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StackNode *testNode = createNode(&testInt);
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StackNode *testNode = createNode(&testInt); // Adresse des testInts
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TEST_ASSERT_NOT_NULL(testNode);
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TEST_ASSERT_NOT_NULL(
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TEST_ASSERT_EQUAL_PTR(&testInt, testNode->data);
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testNode); // Speicher konnte reserviert werden, malloc ist nicht NULL
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TEST_ASSERT_NULL(testNode->next);
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TEST_ASSERT_EQUAL_PTR(&testInt, testNode->data); // data pointer gesetzt
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TEST_ASSERT_NULL(testNode->next); // vorheriger und nächster Eintrag NULL
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TEST_ASSERT_NULL(testNode->prev);
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TEST_ASSERT_NULL(testNode->prev);
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free(testNode);
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free(testNode); // Speicher freigeben
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}
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}
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// StackNode *push(StackNode *stack, void *data) testen
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void test_pushDataToStack(void) {
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void test_pushDataToStack(void) {
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int testInt = 27;
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int testInts[] = {27, 28};
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StackNode *testNode = push(NULL, &testInt);
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StackNode *testStack = NULL; // leeren testStack initialisieren
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TEST_ASSERT_NOT_NULL(testNode);
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testStack =
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TEST_ASSERT_EQUAL_PTR(&testInt, testNode->data);
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push(testStack, &testInts[0]); // leerer Stack mit Adresse des testInts
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TEST_ASSERT_NULL(testNode->next);
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TEST_ASSERT_NULL(testNode->prev);
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free(testNode);
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TEST_ASSERT_NOT_NULL(testStack); // im Fehlerfall wird testStack unverändert
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// zurückgegeben -> bei Fehler NULL
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TEST_ASSERT_EQUAL_PTR(&testInts[0], testStack->data); // data pointer gesetzt
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TEST_ASSERT_NULL(testStack->next); // vorheriger und nächster pointer auf NULL
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// gesetzt, da es nur einen Knoten gibt
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TEST_ASSERT_NULL(testStack->prev);
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// zweiter Push
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StackNode *oldHead = testStack;
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testStack = push(testStack, &testInts[1]);
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TEST_ASSERT_NOT_NULL(testStack);
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TEST_ASSERT_NOT_EQUAL(
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oldHead,
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testStack); // bei malloc Fehler wird der head unverändert zurückgegeben
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TEST_ASSERT_EQUAL_PTR(&testInts[0],
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oldHead->data); // data pointer wurden richtig gesetzt
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TEST_ASSERT_EQUAL_PTR(&testInts[1], testStack->data);
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TEST_ASSERT_EQUAL_PTR(oldHead, testStack->next);
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TEST_ASSERT_EQUAL_PTR(testStack, oldHead->prev);
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TEST_ASSERT_NULL(testStack->prev);
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// Speicherfreigabe
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testStack->next = NULL;
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oldHead->prev = NULL;
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free(oldHead);
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free(testStack);
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}
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}
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void test_deleteTopElement(void) {
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void test_deleteTopElement(void) {
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