46 Commits
Author SHA1 Message Date
hofmannjo99187 45b6fab21a testing 2025-12-13 15:04:25 +01:00
hofmannjo99187 d1320cf6b7 changed addToTreeRec so it now sets inDuplicate to 0 if needed 2025-12-12 06:48:37 +01:00
hofmannjo99187 369c019c30 ran stackTest 2025-12-11 08:05:48 +01:00
hofmannjo99187 cccc013b99 ran stackTest 2025-12-11 08:05:37 +01:00
hofmannjo99187 9a79ff0ad4 corrected treeSizeRec cause previously end of non void function could be reached 2025-12-11 08:04:43 +01:00
hofmannjo99187 284cdbdcfb made runbintreeTests.exe 2025-12-10 12:18:49 +01:00
hofmannjo99187 e3501e8550 added runbintreeTests.exe and stack.o 2025-12-09 23:18:36 +01:00
hofmannjo99187 6a9461bf5b all binaryTree functions and Tests working 2025-12-09 23:13:39 +01:00
hofmannjo99187 ef3e0b7891 changed binTreeTest makefile, test_nextTreeDataReturnsNextDataCorrectly() not yet working 2025-12-09 22:41:35 +01:00
hofmannjo99187 82b2fb283f merged branchjens 2025-12-09 22:28:31 +01:00
hofmannjo99187 602220ba21 Merge branch 'branchjens' into branchjonas 2025-12-09 22:27:30 +01:00
hofmannjo99187 2368c9f3b9 added stack to makefile 2025-12-09 22:27:14 +01:00
hofmannjo99187 e4a8afabdd wrote test_nextTreeDataReturnsNextDataCorrectly() 2025-12-09 21:48:43 +01:00
hofmannjo99187 9d08970513 wrote nextTreeData() and nextTreeDataRec() 2025-12-09 21:12:03 +01:00
hofmannjo99187 9ee0f9e281 treeSize and treeSize test now workingW 2025-12-09 18:41:02 +01:00
hofmannjo99187 21aa67b165 removed no longer needed comments 2025-12-09 18:04:58 +01:00
hofmannjo99187 2d6f8689f2 corrected mistake in test_clearTreeworksLikeExpected 2025-12-09 17:59:21 +01:00
hofmannjo99187 8754182f79 clear Tree and test now working corectly 2025-12-09 17:51:11 +01:00
hofmannjo99187 144648886f addToTree corrected 2025-12-09 11:19:56 +01:00
hofmannjo99187 72f1d080a0 adToTree working again 2025-12-09 11:10:29 +01:00
Jens Burger 01bc613189 Kommentare gelöscht 2025-12-09 10:45:10 +01:00
Jens Burger 79a6eb7267 Debugging Unity Aufruf 2025-12-09 10:41:53 +01:00
Jens Burger 53c12ce0ed added makefile command 2025-12-09 10:38:00 +01:00
Jens Burger 8deeb6417e Testfunktion auf Unity umgebaut 2025-12-09 10:31:12 +01:00
hofmannjo99187 02e008c03a debug 2025-12-09 09:59:22 +01:00
hofmannjo99187 7c3df62d86 further debugging 2025-12-09 08:46:56 +01:00
hofmannjo99187 f7549910eb freeing node->data works, freeing node itself does not 2025-12-09 08:09:59 +01:00
hofmannjo99187 14fa122f20 added runbintreeTests.exe to git 2025-12-09 07:22:34 +01:00
hofmannjo99187 1c10994396 clear does not yet work, also TEST_ASSERT_EQUAL datatype is off 2025-12-09 01:40:43 +01:00
hofmannjo99187 402604cb45 removed no longer needed code 2025-12-09 01:07:39 +01:00
hofmannjo99187 5dc45f8590 uncommented not needed code from test_addToTreeExpandsTreeCorrectly and addToTree 2025-12-09 01:03:58 +01:00
hofmannjo99187 6b30677698 addToTreeExpandsTreeCorrectly 2025-12-09 01:00:42 +01:00
hofmannjo99187 d56a2f7a03 adding double working, double not Permitted not working 2025-12-09 00:44:04 +01:00
hofmannjo99187 36ac0d6d9d normal Nodes working in addToTree() 2025-12-09 00:36:27 +01:00
hofmannjo99187 517d363f3e debugging 2025-12-08 22:41:49 +01:00
hofmannjo99187 f91ab68a72 added bintree.o to git 2025-12-08 20:49:01 +01:00
hofmannjo99187 574ed71bae added bintree.o to makefile 2025-12-08 20:48:02 +01:00
hofmannjo99187 c49a8d687c reset highscore.txt 2025-12-08 13:01:23 +01:00
hofmannjo99187 42b83afec0 Merge branch 'branchjens' into branchjonas 2025-12-08 12:58:13 +01:00
hofmannjo99187 b138a8f251 added bintreeTests to makefile as Target 2025-12-08 08:36:00 +01:00
hofmannjo99187 ffde7270db wrote main() in bintreeTests.c 2025-12-08 08:30:10 +01:00
hofmannjo99187 409afc165b wrote test_treeSizeWorkingLikeExpected(void) 2025-12-08 08:24:30 +01:00
hofmannjo99187 4042a7d979 wrote test_clearTreeworksLikeExpected() 2025-12-08 08:19:12 +01:00
hofmannjo99187 1ead9595ce wrote test_addToTreeExpandsTreeCorrectly() 2025-12-08 08:03:16 +01:00
Jens Burger 00fafec3dc test_stack.c erstellt 2025-12-05 14:33:22 +01:00
Jens Burger cc927ad723 Stack Funktionen hinzugefügt 2025-12-05 12:19:11 +01:00
12 changed files with 451 additions and 41 deletions
+86 -32
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@@ -1,28 +1,31 @@
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include "stack.h"
#include "bintree.h"
//TODO: binären Suchbaum implementieren
/* * `addToTree`: fügt ein neues Element in den Baum ein (rekursiv), Done
* `clearTree`: gibt den gesamten Baum frei (rekursiv), Done
* `treeSize`: zählt die Knoten im Baum (rekursiv),
* `nextTreeData`: Traversierung mit Hilfe des zuvor implementierten Stacks. */
/* * `addToTree`: fügt ein neues Element in den Baum ein (rekursiv), Done
* `clearTree`: gibt den gesamten Baum frei (rekursiv), Done
* `treeSize`: zählt die Knoten im Baum (rekursiv), Done
* `nextTreeData`: Traversierung mit Hilfe des zuvor implementierten Stacks. Done */
static TreeNode *root = NULL;
static StackNode *stackRoot = NULL;
TreeNode *addToTree (TreeNode *root, const void *data, size_t dataSize, CompareFctType compareFct, int *isDuplicate);
void *nextTreeData (TreeNode *root);
void clearTree (TreeNode *root);
unsigned int treeSize (const TreeNode *root);
TreeNode *addToTree (TreeNode *root, const void *data, size_t dataSize, CompareFctType compareFct, int *isDuplicate);
void *nextTreeData (TreeNode *root);
void clearTree (TreeNode *root);
unsigned int treeSize (const TreeNode *root);
// self declared functions
TreeNode *addToTreeRec (TreeNode *currentNode, TreeNode *newNode, CompareFctType compareFct, int *isDuplicate);
void clearTreeRec (TreeNode *currentNode);
void clearNode (TreeNode *node);
void treeSizeRec (const TreeNode *currentNode, unsigned int *nodeCount);
TreeNode *addToTreeRec (TreeNode *currentNode, TreeNode *newNode, CompareFctType compareFct, int *isDuplicate, const int root);
void clearTreeRec (TreeNode *currentNode);
void clearNode (TreeNode *node);
int treeSizeRec (const TreeNode *currentNode);
void *nextTreeDataRec (TreeNode *node, StackNode *stack);
// Adds a copy of data's pointer destination to the tree using compareFct for ordering. Accepts duplicates
@@ -42,31 +45,42 @@ TreeNode *addToTree(TreeNode *root, const void *data, size_t dataSize, CompareFc
memcpy(newNode->data, data, dataSize);
return addToTreeRec(root, newNode, compareFct, isDuplicate);
return addToTreeRec(root, newNode, compareFct, isDuplicate, 1);
}
TreeNode *addToTreeRec(TreeNode *currentNode, TreeNode *newNode, CompareFctType compareFct, int *isDuplicate)
TreeNode *addToTreeRec(TreeNode *currentNode, TreeNode *newNode, CompareFctType compareFct, int *isDuplicate, const int root)
{
if (currentNode == NULL)
if ((currentNode == NULL))
{
isDuplicate = 0;
return newNode;
if ((isDuplicate == NULL) || root)
{
if (isDuplicate != NULL)
{
*isDuplicate = 0;
}
return newNode;
}
else
{
*isDuplicate = 0;
return currentNode;
}
}
else if (compareFct(newNode->data, currentNode->data) < 0)
else if ((compareFct(currentNode->data, newNode->data) < 0))
{
currentNode->left = addToTreeRec(currentNode->left, newNode, compareFct, isDuplicate);
currentNode->left = addToTreeRec(currentNode->left, newNode, compareFct, isDuplicate, 0);
}
else if (compareFct(newNode->data, currentNode->data) > 0)
else if ((compareFct(currentNode->data, newNode->data) > 0))
{
currentNode->right = addToTreeRec(currentNode->right, newNode, compareFct, isDuplicate);
currentNode->right = addToTreeRec(currentNode->right, newNode, compareFct, isDuplicate, 0);
}
else
else if ((compareFct(currentNode->data, newNode->data) == 0))
{
//duplicate
if (isDuplicate == NULL)
{
currentNode->left = addToTreeRec(currentNode->left, newNode, compareFct, isDuplicate);
currentNode->left = addToTreeRec(currentNode->left, newNode, compareFct, isDuplicate, 0);
}
else
{
@@ -74,7 +88,10 @@ TreeNode *addToTreeRec(TreeNode *currentNode, TreeNode *newNode, CompareFctType
}
}
if (isDuplicate != NULL)
{
*isDuplicate = 0;
}
return currentNode;
}
@@ -84,9 +101,40 @@ TreeNode *addToTreeRec(TreeNode *currentNode, TreeNode *newNode, CompareFctType
// push the top node and push all its left nodes.
// Needs stack!!
// Stack functions: push(), pop(), top(), clearStack()
void *nextTreeData(TreeNode *root)
{
void *pointerToReturn = NULL;
if (root != NULL)
{
// Add tree to stack so that bigest entry is ontop
stackRoot = nextTreeDataRec(root, stackRoot);
pointerToReturn = stackRoot;
}
else
{
// return current top entry and then pop that top entry
pointerToReturn = top(stackRoot);
stackRoot = pop(stackRoot);
}
return pointerToReturn;
}
void *nextTreeDataRec(TreeNode *tree, StackNode *stack)
{
if (tree != NULL)
{
stack = nextTreeDataRec (tree->left, stack);
stack = push (stack, tree->data);
stack = nextTreeDataRec (tree->right, stack);
}
return stack;
}
@@ -102,8 +150,8 @@ void clearTreeRec(TreeNode *currentNode)
if (currentNode != NULL)
{
clearTree(currentNode->left);
clearNode(currentNode);
clearTree(currentNode->right);
clearNode(currentNode);
}
}
@@ -127,19 +175,25 @@ unsigned int treeSize(const TreeNode *root)
unsigned int amountOfNodes = 0;
treeSizeRec(root, &amountOfNodes);
amountOfNodes = treeSizeRec(root);
return amountOfNodes;
}
void treeSizeRec(const TreeNode *currentNode, unsigned int *nodeCount)
int treeSizeRec(const TreeNode *currentNode)
{
int nodeCount = 0;
if (currentNode != NULL)
{
treeSizeRec(currentNode->left, nodeCount);
*nodeCount++;
treeSizeRec(currentNode->right, nodeCount);
nodeCount += treeSizeRec(currentNode->left);
nodeCount += treeSizeRec(currentNode->right);
return nodeCount + 1;
}
return nodeCount;
}
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+187 -7
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@@ -1,43 +1,223 @@
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include "unity.h"
#include "bintree.h"
#include "stack.h"
#define MAX_TEST_NAME_LEN 10
typedef struct
void setUp(void) {
// Falls notwendig, kann hier Vorbereitungsarbeit gemacht werden
}
void tearDown(void) {
// Hier kann Bereinigungsarbeit nach jedem Test durchgeführt werden
}
static int compareIntEntries(const void *arg1, const void *arg2)
{
char name[MAX_TEST_NAME_LEN];
int score;
} HighscoreEntry;
const int *entry1 = (const void *)arg1;
const int *entry2 = (const void *)arg2;
int result = *entry2 - *entry1;
return result;
}
// test if addToTree expands tree correctly
// by going down the path where the given pice of data is expected
// and checking if the pice of data is found there
void test_addToTreeExpandsTreeCorrectlyNoDoubles(void)
void test_addToTreeExpandsTreeCorrectly(void)
{
TreeNode *testRoot = NULL;
int testIsDouble = 0;
int score1 = 12;
int score2 = 6;
int score3 = 18;
int score4 = 3;
int score5 = 9;
int score6 = 15;
int score7 = 21;
testRoot = addToTree(testRoot, &score1, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score2, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score3, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score4, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score5, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score6, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score7, sizeof(int), compareIntEntries, NULL);
// Checking the Tree without Doubles
TEST_ASSERT_NOT_NULL(testRoot);
TEST_ASSERT_EQUAL(score1, *(int *)testRoot->data);
TEST_ASSERT_NOT_NULL(testRoot->left);
TEST_ASSERT_EQUAL(score2, *(int *)testRoot->left->data);
TEST_ASSERT_NOT_NULL(testRoot->right);
TEST_ASSERT_EQUAL(score3, *(int *)testRoot->right->data);
TEST_ASSERT_NOT_NULL(testRoot->left->left);
TEST_ASSERT_EQUAL(score4, *(int *)testRoot->left->left->data);
TEST_ASSERT_NOT_NULL(testRoot->left->right);
TEST_ASSERT_EQUAL(score5, *(int *)testRoot->left->right->data);
TEST_ASSERT_NOT_NULL(testRoot->right->left);
TEST_ASSERT_EQUAL(score6, *(int *)testRoot->right->left->data);
TEST_ASSERT_NOT_NULL(testRoot->right->right);
TEST_ASSERT_EQUAL(score7, *(int *)testRoot->right->right->data);
// Adding Double
testRoot = addToTree(testRoot, &score4, sizeof(int), compareIntEntries, NULL);
TEST_ASSERT_NOT_NULL(testRoot->left->left->left);
TEST_ASSERT_EQUAL_UINT16(score4, *(int *)testRoot->left->left->left->data);
// Trying to add Double while Doubles not Permitted
testRoot = addToTree(testRoot, &score7, sizeof(int), compareIntEntries, &testIsDouble);
TEST_ASSERT_NULL(testRoot->right->right->left);
TEST_ASSERT_EQUAL_UINT16(1, testIsDouble);
clearTree(testRoot);
}
// test if nextTreeData returns the next pice of data correctly
// needs Stack!!!
void test_nextTreeDataReturnsNextDataCorrectly(void)
{
TreeNode *testRoot = NULL;
int score1 = 12;
int score2 = 6;
int score3 = 18;
int score4 = 3;
int score5 = 9;
int score6 = 15;
int score7 = 21;
// Prepare a Tree
testRoot = addToTree(testRoot, &score1, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score2, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score3, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score4, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score5, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score6, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score7, sizeof(int), compareIntEntries, NULL);
// Create Stack
StackNode *entry = nextTreeData(testRoot);
// check if nextTreeData returns Data correctly
TEST_ASSERT_NOT_NULL(entry);
TEST_ASSERT_EQUAL(score7, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score3, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score6, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score1, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score5, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score2, *(int *)nextTreeData(NULL));
TEST_ASSERT_EQUAL(score4, *(int *)nextTreeData(NULL));
clearTree(testRoot);
}
// test if clear Tree frees all node.name and node memory AND sets them to zero
// aditionally tests if the memoryspaces have been cleared
void test_clearTreeworksLikeExpected(void)
{
TreeNode *testRoot = NULL;
int score1 = 12;
int score2 = 6;
int score3 = 18;
int score4 = 3;
int score5 = 9;
int score6 = 15;
int score7 = 21;
testRoot = addToTree(testRoot, &score1, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score2, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score3, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score4, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score5, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score6, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score7, sizeof(int), compareIntEntries, NULL);
// Save all Adresses
TreeNode *node1 = testRoot;
TreeNode *node2 = testRoot->left;
TreeNode *node3 = testRoot->left->left;
TreeNode *node4 = testRoot->left->right;
TreeNode *node5 = testRoot->right;
TreeNode *node6 = testRoot->right->left;
TreeNode *node7 = testRoot->right->right;
clearTree(testRoot);
// Check if everything has been set to NULL
TEST_ASSERT_NULL(node1->data);
TEST_ASSERT_NULL(node1->data);
TEST_ASSERT_NULL(node2->data);
TEST_ASSERT_NULL(node3->data);
TEST_ASSERT_NULL(node4->data);
TEST_ASSERT_NULL(node5->data);
TEST_ASSERT_NULL(node6->data);
TEST_ASSERT_NULL(node7->data);
}
// tests if treeSize returns correct amount of nodes in Tree
// by using addNode a given number of times and testing to see if
// by using addToTree a given number of times and testing to see if
// the treeSize matches the number of nodes added
void test_treeSizeWorkingLikeExpected(void)
{
TreeNode *testRoot = NULL;
int nodeCount = 7;
unsigned int testTreeSize = 0;
int score1 = 12;
int score2 = 6;
int score3 = 18;
int score4 = 3;
int score5 = 9;
int score6 = 15;
int score7 = 21;
// Fill Tree
testRoot = addToTree(testRoot, &score1, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score2, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score3, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score4, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score5, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score6, sizeof(int), compareIntEntries, NULL);
testRoot = addToTree(testRoot, &score7, sizeof(int), compareIntEntries, NULL);
testTreeSize = treeSize(testRoot);
TEST_ASSERT_EQUAL(nodeCount, testTreeSize);
clearTree(testRoot);
}
// main, strings together all tests
int main()
{
printf("\n============================\nBinary Tree tests\n============================\n");
UNITY_BEGIN();
printf("\n============================\nBinary Tree tests\n============================\n");
RUN_TEST(test_addToTreeExpandsTreeCorrectly);
RUN_TEST(test_nextTreeDataReturnsNextDataCorrectly);
RUN_TEST(test_clearTreeworksLikeExpected);
RUN_TEST(test_treeSizeWorkingLikeExpected);
return UNITY_END();
}
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+13 -2
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@@ -35,9 +35,20 @@ $(program_obj_filesobj_files): %.o: %.c
# --------------------------
# Unit Tests
# --------------------------
unitTests:
echo "needs to be implemented"
# unitTests:
# echo "needs to be implemented"
bintree: bintree.c
$(CC) $(FLAGS) -c bintree bintree.c
bintreeTests: stack.o bintree.o bintreeTests.c $(unityfolder)/unity.c
$(CC) $(FLAGS) -o runbintreeTests bintreeTests.c bintree.o stack.o $(unityfolder)/unity.c
stack: stack.c
$(CC) $(FLAGS) -c stack stack.c
test_stack: stack.o test_stack.c $(unityfolder)/unity.c
$(CC) $(FLAGS) -o runstackTests test_stack.c stack.o $(unityfolder)/unity.c
# --------------------------
# Clean
# --------------------------
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+40
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@@ -10,24 +10,64 @@
// Pushes data as pointer onto the stack.
StackNode *push(StackNode *stack, void *data)
{
StackNode *newNode = malloc(sizeof(StackNode));
if(newNode == NULL)
{
//printf("Fehler Bei Speicherallozierung!");
return NULL;
}
newNode->data = data;
newNode->next = stack;
return newNode;
}
// Deletes the top element of the stack (latest added element) and releases its memory. (Pointer to data has to be
// freed by caller.)
StackNode *pop(StackNode *stack)
{
if(stack == NULL)
{
//printf("Fehlerhafte Adresse uebergeben");
return NULL;
}
StackNode *next = stack->next;
free(stack);
return next;
}
// Returns the data of the top element.
void *top(StackNode *stack)
{
if(stack == NULL)
{
//printf("Fehlerhafte Adresse uebergeben");
return NULL;
}
return stack->data;
}
// Clears stack and releases all memory.
void clearStack(StackNode *stack)
{
if(stack == NULL)
{
//printf("Fehlerhafte Adresse uebergeben");
return;
}
StackNode *currentNode = stack;
StackNode *nextNode;
while(currentNode != NULL)
{
nextNode = currentNode->next;
free(currentNode);
currentNode = nextNode;
}
}
+5
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@@ -8,6 +8,11 @@ The latest element is taken from the stack. */
#include <stdlib.h>
//TODO: passenden Datentyp als struct anlegen
typedef struct StackNode
{
void *data;
struct StackNode *next;
} StackNode;
// Pushes data as pointer onto the stack.
StackNode *push(StackNode *stack, void *data);
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+120
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@@ -0,0 +1,120 @@
#include <stdio.h>
#include <stdlib.h>
#include "unity.h"
#include "stack.h"
void setUp(void) {
// Falls notwendig, kann hier Vorbereitungsarbeit gemacht werden
}
void tearDown(void) {
// Hier kann Bereinigungsarbeit nach jedem Test durchgeführt werden
}
void testeStackBeschreiben()
{
//printf("=== Test: push() ===\n");
StackNode *stack = NULL;
int wert1 = 42;
stack = push(stack, &wert1);
int *topValue = (int *)(stack->data);
TEST_ASSERT_NOT_NULL(topValue);
TEST_ASSERT_EQUAL_INT(42, *topValue);
int wert2 = 12;
stack = push(stack, &wert2);
topValue = (int *)(stack->data);
int *secondValue = (int *)((stack->next)->data);
TEST_ASSERT_NOT_NULL(topValue);
TEST_ASSERT_EQUAL_INT(12, *topValue);
TEST_ASSERT_NOT_NULL(secondValue);
TEST_ASSERT_EQUAL_INT(42, *secondValue);
//printf("=== Ende Test: push() ===\n\n");
return;
}
void testepop()
{
//printf("=== Test: pop() ===\n");
StackNode *stack = NULL;
int wert1 = 20;
int wert2 = 74;
stack = push(stack, &wert1);
stack = push(stack, &wert2);
stack = pop(stack);
int *topValue = (int *)(stack->data);
TEST_ASSERT_NOT_NULL(topValue);
TEST_ASSERT_EQUAL_INT(20, *topValue);
//printf("=== Ende Test: pop() ===\n\n");
}
void testetop()
{
//printf("=== Test: top() ===\n");
StackNode *stack = NULL;
int wert1 = 20;
int wert2 = 74;
stack = push(stack, &wert1);
stack = push(stack, &wert2);
int *topValue = top(stack);
TEST_ASSERT_NOT_NULL(topValue);
TEST_ASSERT_EQUAL_INT(74, *topValue);
//printf("=== Ende Test: top() ===\n\n");
}
void testeclearStack()
{
//printf("=== Test: clearStack() ===\n");
StackNode *stack = NULL;
int wert1 = 20;
int wert2 = 74;
stack = push(stack, &wert1);
stack = push(stack, &wert2);
clearStack(stack);
//printf("Test: clearStack() aufgerufen. Speicher freigegeben.\n");
//printf("=== Ende Test: clearStack() ===\n\n");
}
int main()
{
UNITY_BEGIN();
//printf("...");
RUN_TEST(testeStackBeschreiben);
RUN_TEST(testepop);
RUN_TEST(testetop);
RUN_TEST(testeclearStack);
/*testeStackBeschreiben();
testepop();
testetop();
testeclearStack();*/
return UNITY_END();
}