generated from freudenreichan/info2Praktikum-DobleSpiel
Compare commits
| Author | SHA1 | Date | |
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7c6f6b0370 | ||
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41e01c3af3 |
Vendored
-18
@@ -1,18 +0,0 @@
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{
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"configurations": [
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{
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"name": "windows-gcc-x64",
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"includePath": [
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"${workspaceFolder}/**"
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],
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"compilerPath": "C:/ProgramData/mingw64/mingw64/bin/gcc.exe",
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"cStandard": "${default}",
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"cppStandard": "${default}",
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"intelliSenseMode": "windows-gcc-x64",
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"compilerArgs": [
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""
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]
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}
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],
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"version": 4
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}
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Vendored
-24
@@ -1,24 +0,0 @@
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{
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"version": "0.2.0",
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"configurations": [
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{
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"name": "C/C++ Runner: Debug Session",
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"type": "cppdbg",
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"request": "launch",
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"args": [],
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"stopAtEntry": false,
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"externalConsole": true,
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"cwd": "e:/Informatik/Drittes Projekt/DobleSpiel",
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"program": "e:/Informatik/Drittes Projekt/DobleSpiel/build/Debug/outDebug",
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"MIMode": "gdb",
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"miDebuggerPath": "gdb",
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"setupCommands": [
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{
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"description": "Enable pretty-printing for gdb",
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"text": "-enable-pretty-printing",
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"ignoreFailures": true
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}
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]
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}
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]
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}
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Vendored
-59
@@ -1,59 +0,0 @@
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{
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"C_Cpp_Runner.cCompilerPath": "gcc",
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"C_Cpp_Runner.cppCompilerPath": "g++",
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"C_Cpp_Runner.debuggerPath": "gdb",
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"C_Cpp_Runner.cStandard": "",
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"C_Cpp_Runner.cppStandard": "",
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"C_Cpp_Runner.msvcBatchPath": "C:/Program Files/Microsoft Visual Studio/VR_NR/Community/VC/Auxiliary/Build/vcvarsall.bat",
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"C_Cpp_Runner.useMsvc": false,
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"C_Cpp_Runner.warnings": [
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"-Wall",
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"-Wextra",
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"-Wpedantic",
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"-Wshadow",
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"-Wformat=2",
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"-Wcast-align",
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"-Wconversion",
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"-Wsign-conversion",
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"-Wnull-dereference"
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],
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"C_Cpp_Runner.msvcWarnings": [
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"/W4",
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"/permissive-",
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"/w14242",
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"/w14287",
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"/w14296",
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"/w14311",
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"/w14826",
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"/w44062",
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"/w44242",
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"/w14905",
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"/w14906",
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"/w14263",
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"/w44265",
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"/w14928"
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],
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"C_Cpp_Runner.enableWarnings": true,
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"C_Cpp_Runner.warningsAsError": false,
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"C_Cpp_Runner.compilerArgs": [],
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"C_Cpp_Runner.linkerArgs": [],
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"C_Cpp_Runner.includePaths": [],
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"C_Cpp_Runner.includeSearch": [
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"*",
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"**/*"
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],
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"C_Cpp_Runner.excludeSearch": [
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"**/build",
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"**/build/**",
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"**/.*",
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"**/.*/**",
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"**/.vscode",
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"**/.vscode/**"
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],
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"C_Cpp_Runner.useAddressSanitizer": false,
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"C_Cpp_Runner.useUndefinedSanitizer": false,
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"C_Cpp_Runner.useLeakSanitizer": false,
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"C_Cpp_Runner.showCompilationTime": false,
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"C_Cpp_Runner.useLinkTimeOptimization": false,
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"C_Cpp_Runner.msvcSecureNoWarnings": false
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}
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@@ -8,60 +8,10 @@
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* `treeSize`: zählt die Knoten im Baum (rekursiv),
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* `nextTreeData`: Traversierung mit Hilfe des zuvor implementierten Stacks. */
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static StackNode *stack = NULL;
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TreeNode* createNode (const void* data, size_t dataSize){
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TreeNode* newNode = (TreeNode*)malloc(sizeof(TreeNode));
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if (newNode == NULL){
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// Fehlerbehandlung
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return NULL;
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}
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newNode->data = malloc(dataSize);
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if(newNode->data == NULL){
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free(newNode); // newNode freigeben
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return NULL;
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}
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memcpy (newNode->data, data, dataSize);
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newNode->left = NULL;
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newNode->right = NULL;
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return newNode;
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}
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// Adds a copy of data's pointer destination to the tree using compareFct for ordering. Accepts duplicates
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// if isDuplicate is NULL, otherwise ignores duplicates and sets isDuplicate to 1 (or to 0 if a new entry is added).
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TreeNode *addToTree(TreeNode *root, const void *data, size_t dataSize, CompareFctType compareFct, int *isDuplicate)
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{
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if (root == NULL)
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{
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TreeNode *newNode = createNode(data,dataSize);
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if (isDuplicate != NULL)
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*isDuplicate = 0;
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return newNode;
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}
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if (compareFct(root->data, data)==0)
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{
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if (isDuplicate != NULL) {
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*isDuplicate=1;
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return root;
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}
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TreeNode *newNode = createNode(data,dataSize);
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return newNode;
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}
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else if (compareFct(root->data, data)>0)
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{
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root->left = addToTree(root->left, data, dataSize, compareFct, isDuplicate);
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}
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else if (compareFct(root->data, data)<0)
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{
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root->right= addToTree(root->right, data, dataSize, compareFct, isDuplicate);
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}
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return root;
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}
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@@ -70,45 +20,17 @@ TreeNode *addToTree(TreeNode *root, const void *data, size_t dataSize, CompareFc
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// push the top node and push all its left nodes.
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void *nextTreeData(TreeNode *root)
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{
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if (root != NULL) {
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clearStack(stack);
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stack = NULL;
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}
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}
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// Releases all memory resources (including data copies).
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void clearTree(TreeNode *root)
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{
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if (root != NULL) {
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if (root->left != NULL) {
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clearTree(root->left);
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}
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if (root->right != NULL) {
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clearTree(root->right);
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}
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free(root->data);
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free(root);
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}
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}
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// Returns the number of entries in the tree given by root.
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unsigned int treeSize(const TreeNode *root)
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{
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unsigned int size = 0;
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if (root == NULL) {
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return 0;
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}
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if (root->left != NULL)
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{
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size += treeSize(root->left);
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}
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if (root->right != NULL)
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{
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size += treeSize(root->right);
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}
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return size+1;
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}
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Binary file not shown.
@@ -1,4 +1 @@
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Moritz1;9970
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Moritz;9954
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Moritz;4986
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player1;3999
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@@ -35,8 +35,14 @@ $(program_obj_filesobj_files): %.o: %.c
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# --------------------------
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# Unit Tests
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# --------------------------
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unitTests:
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echo "needs to be implemented"
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unitTests: stacktest
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test_stack: stacktest.o stack.o
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$(CC) $(FLAGS) $^ -o stacktest
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test_stack.o: stacktest.c
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$(CC) -c $(FLAGS) $< -o $@
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# --------------------------
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# Clean
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@@ -14,13 +14,69 @@
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// Returns len random numbers between 1 and 2x len in random order which are all different, except for two entries.
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// Returns NULL on errors. Use your implementation of the binary search tree to check for possible duplicates while
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// creating random numbers.
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int compare(const void* a, const void* b) {
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return (*(unsigned int*)a - *(unsigned int*)b);
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}
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unsigned int *createNumbers(unsigned int len)
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{
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//array erstellen
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if(len < 2)
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return NULL;
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unsigned int *arr = malloc(sizeof(unsigned int)*len);
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//sicherstellen dass zahlen einmalig vorkommen
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srand(time(NULL));
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for(int i = 0; i < len; i++){
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while(1){
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unsigned int value = (rand() % (2 * len)) + 1;
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int alreadyUsed = 0;
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for(int j = 0; j < i; j++) {
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if(arr[j] == value) {
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alreadyUsed = 1;
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break;
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}
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}
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if(!alreadyUsed) {
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arr[i] = value;
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break;
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}
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}
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}
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//eine zahl duplizieren und irgendwo hinkopieren
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int dupIndex = rand() % len;
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int targetIndex;
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do{
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targetIndex = rand() % len;
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}while (targetIndex == dupIndex);
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arr[targetIndex] = arr[dupIndex];
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return arr;
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}
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// Returns only the only number in numbers which is present twice. Returns zero on errors.
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unsigned int getDuplicate(const unsigned int numbers[], unsigned int len)
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{
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if(len < 2){
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return 0;
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}
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unsigned int *copy = malloc(sizeof(unsigned int)*len);
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memcpy(copy, numbers, len * sizeof(unsigned int));
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qsort(copy, len, sizeof(unsigned int), compare);
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unsigned int duplicate = 0;
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for(int i = 1; i < len; i++){
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if(copy[i] == copy[i-1]){
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duplicate = copy[i];
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break;
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}
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}
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free(copy);
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return duplicate;
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}
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@@ -10,24 +10,43 @@
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// Pushes data as pointer onto the stack.
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StackNode *push(StackNode *stack, void *data)
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{
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StackNode *newNode = (StackNode *)malloc(sizeof(StackNode));
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if (newNode == NULL) {
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return NULL;
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}
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newNode ->data = data;
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newNode ->next = stack;
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return newNode;
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}
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// Deletes the top element of the stack (latest added element) and releases its memory. (Pointer to data has to be
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// freed by caller.)
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StackNode *pop(StackNode *stack)
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{
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if(stack == NULL) {
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return NULL;
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}
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StackNode *next = stack->next;
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free(stack);
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return next;
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}
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// Returns the data of the top element.
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void *top(StackNode *stack)
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{
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if(stack == NULL) {
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return NULL;
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}
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return stack->data;
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}
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// Clears stack and releases all memory.
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void clearStack(StackNode *stack)
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{
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StackNode *temp;
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while(stack != NULL) {
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temp = stack;
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stack = stack->next;
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free(temp);
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}
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}
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@@ -8,11 +8,12 @@ The latest element is taken from the stack. */
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#include <stdlib.h>
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//TODO: passenden Datentyp als struct anlegen
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typedef struct{
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void *data;
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}StackNode;
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struct StackNode *next;
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}StackNode;
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// Pushes data as pointer onto the stack.
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StackNode *push(StackNode *stack, void *data);
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+58
@@ -0,0 +1,58 @@
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#include <stdio.h>
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#include "stack.h"
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#include <stdlib.h>
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//Funktion, um nachzuprüfen, ob Test bestanden wurde
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void check(char *msg, int expected, int actual){
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printf("%s: ", msg);
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printf("Erwartet: %d, Tatsächlich: %d\n", expected, actual);
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if(expected == actual){
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printf("Test bestanden\n");
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}else{
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printf("Test nicht bestanden\n");
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}
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}
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//Schnappt sich oberstes Element
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int getTop(StackNode *stack){
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void *data = top(stack);
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return(int)data;
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}
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//Tests der einzelnen Stackfunktionen
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int main(){
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StackNode *stack = NULL;
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//Test push
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stack = push(stack, (void*)10);
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check("Nach Push 10", 10, getTop(stack));
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stack = push(stack, (void*)20);
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check("Nach Push 20", 20, getTop(stack));
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//pop testen
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stack = pop(stack);
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check("Nach Pop", 10, getTop(stack));
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//clearStack testen
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clearStack(stack);
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stack = NULL;
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check("Nach ClearStack", 0, getTop(stack));
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return 0;
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}
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Reference in New Issue
Block a user