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0040-combination-sum-ii.c
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0040-combination-sum-ii.c
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void backtrack(int *candidates, int candidatesSize, int target, int start, int *current, int currentSize, int **result, int *resultSize, int *returnColumnSizes) {
if (target == 0) {
result[*resultSize] = (int *)malloc(currentSize * sizeof(int));
returnColumnSizes[*resultSize] = currentSize;
for (int i = 0; i < currentSize; i++) {
result[*resultSize][i] = current[i];
}
(*resultSize)++;
return;
}
for (int i = start; i < candidatesSize; i++) {
if (i > start && candidates[i] == candidates[i - 1]) {
continue; // Skip duplicates to avoid duplicate combinations
}
if (candidates[i] > target) {
break; // Since the array is sorted, we can exit early
}
current[currentSize] = candidates[i];
backtrack(candidates, candidatesSize, target - candidates[i], i + 1, current, currentSize + 1, result, resultSize, returnColumnSizes);
}
}
int compare(const void *a, const void *b) {
return (*(int *)a - *(int *)b);
}
int** combinationSum2(int* candidates, int candidatesSize, int target, int* returnSize, int** returnColumnSizes) {
qsort(candidates, candidatesSize, sizeof(int), compare);
int **result = (int **)malloc(1000 * sizeof(int *));
int *current = (int *)malloc(candidatesSize * sizeof(int));
*returnColumnSizes = (int *)malloc(1000 * sizeof(int));
int resultSize = 0;
backtrack(candidates, candidatesSize, target, 0, current, 0, result, &resultSize, *returnColumnSizes);
free(current);
*returnSize = resultSize;
return result;
}