add: 230314-CN
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#include <vector>
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#include <algorithm>
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/**
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* 1605. Find Valid Matrix Given Row and Column Sums
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*
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* You are given two arrays rowSum and colSum of non-negative integers where rowSum[i] is the sum of the elements in the ith row and colSum[j] is the sum of the elements of the jth column of a 2D matrix. In other words, you do not know the elements of the matrix, but you do know the sums of each row and column.
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* Find any matrix of non-negative integers of size rowSum.length x colSum.length that satisfies the rowSum and colSum requirements.
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* Return a 2D array representing any matrix that fulfills the requirements. It's guaranteed that at least one matrix that fulfills the requirements exists.
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*/
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class Solution {
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public:
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static std::vector<std::vector<int>> restoreMatrix(std::vector<int>& rowSum, std::vector<int>& colSum) {
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const int rn = rowSum.size(), cn = colSum.size();
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std::vector<std::vector<int>> ret(rn, std::vector<int>(cn));
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for (int rp = 0, cp = 0, inc; rp < rn && cp < cn; ) {
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inc = std::min(rowSum[rp], colSum[cp]);
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ret[rp][cp] = inc;
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rp += !(rowSum[rp] -= inc);
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cp += !(colSum[cp] -= inc);
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}
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return ret;
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}
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};
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int main() {
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std::vector<int> rs = {3,8}, cs = {4,7};
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auto r = Solution::restoreMatrix(rs, cs);
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for (const auto& i : r) {
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for (const auto& j : i)
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std::printf("%d ", j);
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std::printf("\n");
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}
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return 0;
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}
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@ -3,4 +3,4 @@ PROJECT(2303)
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SET(CMAKE_CXX_STANDARD 23)
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ADD_EXECUTABLE(2303 230313.cpp)
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ADD_EXECUTABLE(2303 230314-CN.cpp)
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