New Problem Solution - "Count Items Matching a Rule"
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@ -15,6 +15,7 @@ LeetCode
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|1781|[Sum of Beauty of All Substrings](https://leetcode.com/problems/sum-of-beauty-of-all-substrings/) | [C++](./algorithms/cpp/sumOfBeautyOfAllSubstrings/SumOfBeautyOfAllSubstrings.cpp)|Medium|
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|1780|[Check if Number is a Sum of Powers of Three](https://leetcode.com/problems/check-if-number-is-a-sum-of-powers-of-three/) | [C++](./algorithms/cpp/checkIfNumberIsASumOfPowersOfThree/CheckIfNumberIsASumOfPowersOfThree.cpp)|Medium|
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|1779|[Find Nearest Point That Has the Same X or Y Coordinate](https://leetcode.com/problems/find-nearest-point-that-has-the-same-x-or-y-coordinate/) | [C++](./algorithms/cpp/findNearestPointThatHasTheSameXOrYCoordinate/FindNearestPointThatHasTheSameXOrYCoordinate.cpp)|Easy|
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|1773|[Count Items Matching a Rule](https://leetcode.com/problems/count-items-matching-a-rule/) | [C++](./algorithms/cpp/countItemsMatchingARule/CountItemsMatchingARule.cpp)|Easy|
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|1763|[Longest Nice Substring](https://leetcode.com/problems/longest-nice-substring/) | [C++](./algorithms/cpp/longestNiceSubstring/LongestNiceSubstring.cpp)|Easy|
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|1761|[Minimum Degree of a Connected Trio in a Graph](https://leetcode.com/problems/minimum-degree-of-a-connected-trio-in-a-graph/) | [C++](./algorithms/cpp/minimumDegreeOfAConnectedTrioInAGraph/MinimumDegreeOfAConnectedTrioInAGraph.cpp)|Hard|
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|1760|[Minimum Limit of Balls in a Bag](https://leetcode.com/problems/minimum-limit-of-balls-in-a-bag/) | [C++](./algorithms/cpp/minimumLimitOfBallsInABag/MinimumLimitOfBallsInABag.cpp)|Medium|
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// Source : https://leetcode.com/problems/count-items-matching-a-rule/
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// Author : Hao Chen
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// Date : 2021-03-14
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/*****************************************************************************************************
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*
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* You are given an array items, where each items[i] = [typei, colori, namei] describes the type,
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* color, and name of the ith item. You are also given a rule represented by two strings, ruleKey and
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* ruleValue.
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*
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* The ith item is said to match the rule if one of the following is true:
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*
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* ruleKey == "type" and ruleValue == typei.
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* ruleKey == "color" and ruleValue == colori.
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* ruleKey == "name" and ruleValue == namei.
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*
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* Return the number of items that match the given rule.
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*
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* Example 1:
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*
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* Input: items = [["phone","blue","pixel"],["computer","silver","lenovo"],["phone","gold","iphone"]],
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* ruleKey = "color", ruleValue = "silver"
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* Output: 1
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* Explanation: There is only one item matching the given rule, which is
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* ["computer","silver","lenovo"].
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*
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* Example 2:
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*
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* Input: items = [["phone","blue","pixel"],["computer","silver","phone"],["phone","gold","iphone"]],
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* ruleKey = "type", ruleValue = "phone"
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* Output: 2
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* Explanation: There are only two items matching the given rule, which are ["phone","blue","pixel"]
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* and ["phone","gold","iphone"]. Note that the item ["computer","silver","phone"] does not match.
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*
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* Constraints:
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*
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* 1 <= items.length <= 104
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* 1 <= typei.length, colori.length, namei.length, ruleValue.length <= 10
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* ruleKey is equal to either "type", "color", or "name".
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* All strings consist only of lowercase letters.
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******************************************************************************************************/
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class Solution {
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public:
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int countMatches(vector<vector<string>>& items, string ruleKey, string ruleValue) {
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int idx;
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switch(ruleKey[0]) {
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case 't': idx = 0; break;
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case 'c': idx = 1; break;
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case 'n': idx = 2; break;
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default: return 0;
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}
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int cnt = 0;
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for (auto& item : items) {
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if (item[idx] == ruleValue) cnt++;
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}
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return cnt;
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}
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};
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