---
title: '39. Combination Sum'
description: Given an array of distinct integers candidates and a target integer target, return a list of all unique combinations of candidates where the chosen numbers sum to target. You may return the combinations in any order
sidebar:
  label: 'Combination Sum'
  badge: 'Medium'
---

Array

### Example 1:
- Input: `candidates = [2,3,6,7], target = 7`
- Output: `[[2,2,3],[7]]`
- Explanation: `2` and `3` are `candidates`, and `2 + 2 + 3 = 7`. Note that `2` can be used multiple times. `7` is a candidate, and `7 = 7`. These are the only two combinations.

### Example 2:
- Input: `candidates = [2,3,5], target = 8`
- Output: `[[2,2,2,2],[2,3,3],[3,5]]`

### Example 3:
- Input: `candidates = [2], target = 1`
- Output: `[]`

### Constraints:

- `1 <= candidates.length <= 30`
- `2 <= candidates[i] <= 40`
- All elements of `candidates` are distinct.
- `1 <= target <= 40`

## Solution

```py
class Solution:
    def combinationSum(self, candidates: list[int], target: int) -> list[list[int]]:
        candidates.sort()
        result, path = [], []

        def backtrack(start, remaining):
            if remaining == 0:
                result.append(path[:])
                return
            for i in range(start, len(candidates)):
                if candidates[i] > remaining:
                    break

                path.append(candidates[i])
                backtrack(i, remaining - candidates[i])
                path.pop()

        backtrack(0, target)
        return result
```
