/** * File: permutations_ii.c * Created Time: 2023-10-17 * Author: krahets (krahets@163.com) */ #include "../utils/common.h" // Assume a maximum of 1000 permutations, maximum element size 1000 #define MAX_SIZE 1000 /* Backtracking algorithm: Permutation II */ void backtrack(int *state, int stateSize, int *choices, int choicesSize, bool *selected, int **res, int *resSize) { // When the state length equals the number of elements, record the solution if (stateSize == choicesSize) { res[*resSize] = (int *)malloc(choicesSize * sizeof(int)); for (int i = 0; i < choicesSize; i++) { res[*resSize][i] = state[i]; } (*resSize)++; return; } // Traverse all choices bool duplicated[MAX_SIZE] = {false}; for (int i = 0; i < choicesSize; i++) { int choice = choices[i]; // Pruning: do not allow repeated selection of elements and do not allow repeated selection of equal elements if (!selected[i] && !duplicated[choice]) { // Attempt: make a choice, update the state duplicated[choice] = true; // Record selected element values selected[i] = true; state[stateSize] = choice; // Proceed to the next round of selection backtrack(state, stateSize + 1, choices, choicesSize, selected, res, resSize); // Retract: undo the choice, restore to the previous state selected[i] = false; } } } /* Permutation II */ int **permutationsII(int *nums, int numsSize, int *returnSize) { int *state = (int *)malloc(numsSize * sizeof(int)); bool *selected = (bool *)malloc(numsSize * sizeof(bool)); for (int i = 0; i < numsSize; i++) { selected[i] = false; } int **res = (int **)malloc(MAX_SIZE * sizeof(int *)); *returnSize = 0; backtrack(state, 0, nums, numsSize, selected, res, returnSize); free(state); free(selected); return res; } /* Driver Code */ int main() { int nums[] = {1, 1, 2}; int numsSize = sizeof(nums) / sizeof(nums[0]); int returnSize; int **res = permutationsII(nums, numsSize, &returnSize); printf("Input array nums ="); printArray(nums, numsSize); printf("\nAll permutations res = \n"); for (int i = 0; i < returnSize; i++) { printArray(res[i], numsSize); } // Free memory for (int i = 0; i < returnSize; i++) { free(res[i]); } free(res); return 0; }