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Combination Sum

Asked at:AmazonGoogleMeta

Given an array of distinct integers and a target, return all unique combinations where the chosen numbers sum to target. You may reuse the same number unlimited times.

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Problem

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. The same number may be chosen from candidates an unlimited number of times.

Input

An integer array `candidates` (distinct integers) and an integer `target`.

Output

A list of all unique combinations that sum to `target`. Order within each combination doesn't matter.

Examples

Input: candidates = [2,3,6,7], target = 7

Output: [[2,2,3],[7]]

2+2+3=7 and 7=7.

Input: candidates = [2,3], target = 6

Output: [[2,2,2],[3,3]]

The brute-force approach

Generate all possible combinations using recursion. At each step, try including each candidate (with repeats allowed). Collect combinations that sum to target.

result = []
def backtrack(start, path, remaining):
    if remaining == 0:
        result.append(list(path))
        return
    if remaining < 0:
        return
    for i in range(start, len(candidates)):
        path.append(candidates[i])
        backtrack(i, path, remaining - candidates[i])   # i, not i+1 (allow reuse)
        path.pop()
backtrack(0, [], target)

This is already the standard approach. The key optimization is passing `start` to avoid duplicates (don't go back to earlier candidates).

Time: O(n^(t/min))Space: O(t/min)

Spotting the pattern

This is a Backtracking problem. The key question to ask yourself:

Why do you pass `start` (the current index) to the recursive call instead of 0? What would happen if you passed 0 every time?

Answering that is where it clicks, and it's exactly what the guided walkthrough below builds with you: the pattern reasoning, a progressive hint ladder that never spoils the answer, a row-by-row dry run, the optimized solution, and an in-browser editor to run your code against real test cases.

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