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day 25: 338-valid-counting-bits, 167-two-sum-ii-input-array-is-sorted
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10
167-two-sum-ii-input-array-is-sorted/driver.cpp
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10
167-two-sum-ii-input-array-is-sorted/driver.cpp
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#include "soln.hpp"
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int main() {
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vector<int> nums{-1,2,3,7,9,11,15};
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vector<int> answer{1,6};
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int target = 10;
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Solution soln;
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cout << "Found two sum correctly? " << soln.test(nums, target,answer) << endl;
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return 0;
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}
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35
167-two-sum-ii-input-array-is-sorted/soln.cpp
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167-two-sum-ii-input-array-is-sorted/soln.cpp
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#include "soln.hpp"
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vector<int> Solution::twoSum(vector<int> &numbers, int target)
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{
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// two sum approach
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// unordered_map<int,int>mp;
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// for(int i = 0; i < numbers.size(); i++) {
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// if(mp.find(target-numbers[i]) == mp.end()) {
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// mp[numbers[i]] = i;
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// } else {
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// return vector<int>{(mp.find(target-numbers[i])->second)+1, i+1};
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// }
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// }
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// return vector<int>{-1,-1};
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int left = 0, right = numbers.size() - 1;
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int sum = numbers[left] + numbers[right];
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while (sum != target)
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{
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if (sum < target)
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{
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left++;
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}
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else
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{
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right--;
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}
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sum = numbers[left] + numbers[right];
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}
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return {left + 1, right + 1};
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}
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bool Solution::test(vector<int> &numbers, int target, vector<int> &answer)
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{
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return twoSum(numbers, target) == answer;
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}
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8
167-two-sum-ii-input-array-is-sorted/soln.hpp
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167-two-sum-ii-input-array-is-sorted/soln.hpp
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#include <bits/stdc++.h>
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using namespace std;
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class Solution
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{
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public:
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vector<int> twoSum(vector<int> &numbers, int target);
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bool test(vector<int> &numbers, int target, vector<int> &answer);
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};
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10
338-counting-bits/driver.cpp
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10
338-counting-bits/driver.cpp
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#include "soln.hpp"
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int main()
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{
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int n = 7;
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vector<int> answer{0, 1, 1, 2, 1, 2, 2, 3};
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Solution soln;
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cout << "Counted bits correctly? " << soln.test(n, answer) << endl;
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return 0;
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}
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37
338-counting-bits/soln.cpp
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37
338-counting-bits/soln.cpp
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#include "soln.hpp"
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vector<int> Solution::countBits(int n)
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{
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vector<int> result(n + 1);
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// // O(n log n) approach, naive
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// // O(n)
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// int num;
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// for(int i = 0; i <= n; i++) {
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// num = i;
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// // O(log n)
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// while(num) {
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// result[i] += num&1;
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// num=num>>1;
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// }
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// }
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// O(n) approach
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result[0] = 0;
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if (n == 0)
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{
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return result;
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}
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for (int i = 1; i < n + 1; i = i * 2)
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{
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for (int j = i; (j < i * 2) && (j < n + 1); j++)
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{
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result[j] = result[(j / i) + (j - i) - 1] + 1;
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}
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}
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return result;
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}
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bool Solution::test(int n, vector<int> &answer)
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{
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return countBits(n) == answer;
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}
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338-counting-bits/soln.hpp
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338-counting-bits/soln.hpp
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#include <bits/stdc++.h>
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using namespace std;
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class Solution
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{
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public:
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vector<int> countBits(int n);
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bool test(int n, vector<int> &answer);
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};
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