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smallest-value-of-the-rearranged-number.cpp
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smallest-value-of-the-rearranged-number.cpp
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// Time: O(d), d is the number of digits
// Space: O(d)
// greedy, counting sort
class Solution {
public:
long long smallestNumber(long long num) {
int64_t sign = (num >= 0) ? 1 : -1;
string nums = to_string(abs(num));
inplace_counting_sort(&nums, sign == -1);
auto it = find_if(begin(nums), end(nums), [](const auto& x) {
return x != '0';
});
if (it != end(nums)) {
swap(nums[0], *it);
}
return sign * stoll(nums);
}
private:
void inplace_counting_sort(string *nums, bool is_reverse) {
const int max_num = *max_element(cbegin(*nums), cend(*nums));
vector<int> count(max_num + 1);
for (const auto& num : *nums) {
++count[num];
}
for (int i = 1; i < size(count); ++i) {
count[i] += count[i - 1];
}
for (int i = size(*nums) - 1; i >= 0; --i) { // inplace but unstable sort
while ((*nums)[i] >= 0) {
--count[(*nums)[i]];
const int j = count[(*nums)[i]];
tie((*nums)[i], (*nums)[j]) = pair((*nums)[j], ~(*nums)[i]);
}
}
for (auto& num : *nums) {
num = ~num; // restore values
}
if (is_reverse) { // unstable sort
reverse(begin(*nums), end(*nums));
}
}
};
// Time: O(dlogd), d is the number of digits
// Space: O(d)
// greedy
class Solution2 {
public:
long long smallestNumber(long long num) {
int64_t sign = (num >= 0) ? 1 : -1;
string nums = to_string(abs(num));
if (sign == 1) {
sort(begin(nums), end(nums));
} else {
sort(rbegin(nums), rend(nums));
}
auto it = find_if(begin(nums), end(nums), [](const auto& x) {
return x != '0';
});
if (it != end(nums)) {
swap(nums[0], *it);
}
return sign * stoll(nums);
}
};