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1bbefdb72a
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74b541a1a0 |
2
main.c
2
main.c
@ -71,7 +71,7 @@ int main(int argc, char *argv[])
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userInput = inputNumber("Welche Zahl kommt doppelt vor: ");
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userInput = inputNumber("Welche Zahl kommt doppelt vor: ");
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measuredSeconds = stopTimer();
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measuredSeconds = stopTimer();
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duplicate = getDuplicate(numbers, numberOfElements);
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duplicate = getDuplicate(numbers, numberOfElements+1);
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// check result and update highscores
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// check result and update highscores
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if(userInput == duplicate)
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if(userInput == duplicate)
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61
numbers.c
61
numbers.c
@ -5,22 +5,59 @@
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#include "numbers.h"
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#include "numbers.h"
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#include "bintree.h"
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#include "bintree.h"
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//TODO: getDuplicate und createNumbers implementieren
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//Speicher für Array erstellen, zufällige Zahlen von 1-2xlen erzeugen, mittels Binärbaum checken, ob Zahlen einzigartig sind
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/* * * Erzeugen eines Arrays mit der vom Nutzer eingegebenen Anzahl an Zufallszahlen.
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//Eine Zahl duplizieren, an zufälliger Stelle einfügen und die Zahl an der Stelle ans Ende schieben
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* Sicherstellen, dass beim Befüllen keine Duplikate entstehen.
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* Duplizieren eines zufälligen Eintrags im Array.
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* in `getDuplicate()`: Sortieren des Arrays und Erkennen der doppelten Zahl durch Vergleich benachbarter Elemente. */
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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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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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unsigned int *numbers = malloc (sizeof(unsigned int) * len);
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unsigned int upperLimit = len * 2;
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int isDuplicate = 0;
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TreeNode *binTree = NULL;
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for (unsigned int i = 0; i < len; i++) {
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do
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{
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numbers[i] = rand () % upperLimit + 1;
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binTree = addToTree(binTree, &numbers[i], sizeof(unsigned int), compare, &isDuplicate);
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} while (isDuplicate);
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}
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unsigned int duplicate = numbers[rand () % len];
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int indexDuplicate = rand () % len;
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numbers[len] = numbers[indexDuplicate];
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numbers[indexDuplicate] = duplicate;
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return numbers;
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}
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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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//Vergleichsfunktion von qsort
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unsigned int getDuplicate(const unsigned int numbers[], unsigned int len)
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const int compare (const void *a, const void *b) {
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{
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unsigned int *x = a;
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unsigned int *y = b;
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if (*x < *y) {
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return -1;
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}
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else if (*x > *y) {
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return 1;
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}
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else {
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return 0;
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}
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}
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//Sortiert Zahlen mit qsort, vergleicht dann benachbarte Elemente und gibt bei Erfolg die doppelte Zahl zurück
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unsigned int getDuplicate(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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qsort(numbers, len, sizeof(unsigned int), compare);
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for (int i = 0; i < len-1; i++) {
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if (numbers[i] == numbers [i+1]) {
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return numbers[i];
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}
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}
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return 0;
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}
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}
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