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package g1501_1600.s1583_count_unhappy_friends;
// #Medium #Array #Simulation #2022_04_11_Time_3_ms_(93.13%)_Space_63.8_MB_(64.81%)
import java.util.HashMap;
import java.util.Map;
@SuppressWarnings("java:S1172")
public class Solution {
public int unhappyFriends(int n, int[][] preferences, int[][] pairs) {
int unhappyFriends = 0;
Map assignedPair = new HashMap<>();
for (int[] pair : pairs) {
assignedPair.put(pair[0], pair[1]);
assignedPair.put(pair[1], pair[0]);
}
for (int[] pair : pairs) {
if (isUnHappy(pair[1], pair[0], preferences, assignedPair)) {
unhappyFriends++;
}
if (isUnHappy(pair[0], pair[1], preferences, assignedPair)) {
unhappyFriends++;
}
}
return unhappyFriends;
}
private boolean isUnHappy(
int self,
int assignedFriend,
int[][] preferences,
Map assignedPairs) {
int[] preference = preferences[self];
int assignedFriendPreferenceIndex = findIndex(preference, assignedFriend);
for (int i = 0; i <= assignedFriendPreferenceIndex; i++) {
int preferredFriend = preference[i];
int preferredFriendAssignedFriend = assignedPairs.get(preferredFriend);
if (preferredFriendAssignedFriend == self) {
return false;
}
int candidateAssignedFriendIndex =
findIndex(preferences[preferredFriend], preferredFriendAssignedFriend);
if (isPreferred(self, preferences[preferredFriend], candidateAssignedFriendIndex)) {
return true;
}
}
return false;
}
private boolean isPreferred(int self, int[] preference, int boundary) {
for (int i = 0; i <= boundary; i++) {
if (self == preference[i]) {
return true;
}
}
return false;
}
private int findIndex(int[] preference, int assignedFriend) {
for (int i = 0; i < preference.length; i++) {
if (preference[i] == assignedFriend) {
return i;
}
}
return 0;
}
}
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