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Assign Cookies

Problem Statement:

Assume you are an awesome parent and want to give your children some cookies. But, you should give each child at most one cookie.

Each child i has a greed factor g[i], which is the minimum size of a cookie that the child will be content with; and each cookie j has a size s[j]. If s[j] >= g[i], we can assign the cookie j to the child i, and the child i will be content. Your goal is to maximize the number of your content children and output the maximum number.

  • Example:

    Example 1:

    Input: g = [1,2,3], s = [1,1]
    Output: 1
    Explanation: You have 3 children and 2 cookies. The greed factors of 3 children are 1, 2, 3.
    And even though you have 2 cookies, since their size is both 1, you could only make the child whose greed factor is 1 content.
    You need to output 1.
    Example 2:

    Input: g = [1,2], s = [1,2,3]
    Output: 2
    Explanation: You have 2 children and 3 cookies. The greed factors of 2 children are 1, 2.
    You have 3 cookies and their sizes are big enough to gratify all of the children,
    You need to output 2.


Solution:

class Solution {
public:
int findContentChildren(vector<int>& g, vector<int>& s) {
int n = g.size(); // Number of children
int m = s.size(); // Number of cookies

int cookiePointer = 0; // Pointer for cookie sizes
int greedPointer = 0; // Pointer for children's greed factor

// Sort both arrays to apply greedy strategy
sort(g.begin(), g.end()); // Sort greed factors in ascending order
sort(s.begin(), s.end()); // Sort cookie sizes in ascending order

// Traverse both arrays
while(greedPointer < n && cookiePointer < m){
// If current cookie can satisfy the current child
if(g[greedPointer] <= s[cookiePointer]){
greedPointer++; // Assign cookie to child and move to next child
}
// Move to next cookie in any case
cookiePointer++;
}

// The number of children who got cookies
return greedPointer;
}
};


How It Works

  • Each child has a greed factor — the minimum cookie size that will satisfy them.
  • Each cookie has a size.
  • You must assign at most one cookie to each child.
  • A child will be content if cookie_size ≥ greed_factor.
  • Use a greedy approach: assign the smallest sufficient cookie to each child to maximize the number of content children.

🧩 Key Idea / Formula

  • Sort both greed and cookie size arrays.
  • Use two pointers:
    • If g[child] <= s[cookie]: assign and move both pointers.
    • Else: try next larger cookie.

⏱️ Time & Space Complexity

ApproachTime ComplexitySpace Complexity
Sorting + Two Pointers ✅O(n log n + m log m)O(1) or O(n + m) if not in-place

Where n = number of children, m = number of cookies.


⚠️ Edge Cases

  • No children or no cookies → return 0.
  • All cookies are too small → return 0.
  • Cookies more than children but all too small → return 0.
  • Some children have greed = 0 or cookie size = 0 → still valid if condition is met.

💡 Other Approaches

StrategyFeasibilityWhy Not
Brute-force (try every cookie for every child)❌ ExponentialToo slow
Greedy with sorting ✅✅ OptimalEfficient and works for all cases

  • Lemonade Change – LC 860 (Greedy)
  • Candy – LC 135 (Greedy)
  • Non-overlapping Intervals – LC 435
  • Is Subsequence – LC 392
💬

Discussion & Doubts