generated from freudenreichan/info2Praktikum-DobleSpiel
createNumbers FUnktion implementiert
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bfcb9ed426
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c860a197ee
76
numbers.c
76
numbers.c
@ -14,33 +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 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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// 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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// creating random numbers.
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// Returns len random numbers between 1 and 2*len in random order,
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// all different, except for exactly one duplicate (two entries the same).
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// Uses your binary search tree implementation to check for duplicates while generating numbers.
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unsigned int *createNumbers(unsigned int len)
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unsigned int *createNumbers(unsigned int len)
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{
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{
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//Idee: Array mit while Schleife in Binaerbaum eintragen, dann Baum traversieren, um zu schauen, ob Element doppelt ist
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if (len < 2)
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return NULL;
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srand(time(NULL));
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srand(time(NULL));
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if(len>0)
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{
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unsigned int random;
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unsigned int *numbers = malloc(len * sizeof(unsigned int));
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int *duplicate = 0;
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if (!numbers)
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unsigned int *numbers = (unsigned int *)malloc(sizeof(unsigned int) * len); //erstellt ein Array mit der Laenge von len, ALternative: sizeofTree verwenden, um Groeße Array zu bestimmen
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return NULL;
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if(numbers == NULL)
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TreeNode *root = NULL; // Baum anfänglich leer
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unsigned int count = 0;
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// Zufallszahlen generieren, bis das Array voll ist
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while (count < len) {
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unsigned int random = (rand() % (2 * len)) + 1;
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int duplicate = 0; // Anfangswert für Duplikat-Check
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root = addToTree(root, &random, sizeof(random), compareFct, &duplicate);
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if (root == NULL) {
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free(numbers);
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return NULL;
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return NULL;
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for(unsigned int i=0;i<len;i++)
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{
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random = rand()%(2*len - 1) - 1;
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TreeNode *newNode = (TreeNode *)malloc(sizeof(TreeNode));
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if(addToTree(newNode, random, sizeof(random), compareFct, duplicate)) //wenn newNode zum Tree hinzugefuegt werden konnte,
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// also wenn max. ein Duplikat vorhanden ist im Baum, fuege newNode zu Array hinzu
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{
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numbers[i] = random;
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}
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}
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clearTree(newNode);
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return numbers;
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}
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}
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return NULL;
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if (!duplicate) { // Zahl war neu → ins Array einfügen
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numbers[count++] = random;
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}
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// duplicate == 1 → Zahl existiert schon, neue Zahl generieren
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}
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// Jetzt len eindeutige Zahlen erzeugt → ein Duplikat erzwingen
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unsigned int idx1 = rand() % len;
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unsigned int idx2 = rand() % len;
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while (idx2 == idx1) // sicherstellen, dass es eine andere Position ist
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idx2 = rand() % len;
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numbers[idx2] = numbers[idx1];
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// Baum wieder freigeben
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clearTree(root);
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return numbers;
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}
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}
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// Jetzt len eindeutige Zahlen erzeugt ⇒ wir müssen ein Duplikat erzwingen
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unsigned int idx1 = rand() % len;
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unsigned int idx2 = rand() % len;
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while (idx2 == idx1)
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idx2 = rand() % len;
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numbers[idx2] = numbers[idx1]; // zweites Exemplar
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clearTree(root);
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return numbers;
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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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// 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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unsigned int getDuplicate(const unsigned int numbers[], unsigned int len)
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{
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{
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