cofounderella/lib/utils/math.dart

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import 'dart:math';
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import '../models/user_profile.dart';
/// Approximate determination of age
int calcAge(int? birthYear) {
if (birthYear != null) {
return (DateTime.now().year - birthYear);
}
return 0;
}
///
/// Convert decimal coordinate to degrees minutes seconds (DMS).
///
String convertDecimalToDMS(double decimalValue, {required bool isLatitude}) {
bool isNegative = decimalValue < 0;
double absoluteValue = decimalValue.abs();
int degrees = absoluteValue.toInt();
double minutesDecimal = (absoluteValue - degrees) * 60;
int minutes = minutesDecimal.toInt();
double secondsDecimal = (minutesDecimal - minutes) * 60;
double seconds = double.parse(secondsDecimal.toStringAsFixed(2));
String direction;
if (isLatitude) {
direction = isNegative ? 'S' : 'N';
} else {
direction = isNegative ? 'W' : 'E';
}
// return formatted string
return '${degrees.abs()}° ${minutes.abs()}\' ${seconds.abs().toStringAsFixed(2)}" $direction';
}
///
/// Distance in kilometers between two location coordinates
///
double calculateDistance(double lat1, double lon1, double lat2, double lon2) {
const R = 6371; // earth radius in kilometers
// distance between latitudes and longitudes
final dLat = _degreesToRadians(lat2 - lat1);
final dLon = _degreesToRadians(lon2 - lon1);
final a = sin(dLat / 2) * sin(dLat / 2) +
cos(_degreesToRadians(lat1)) * cos(_degreesToRadians(lat2)) *
sin(dLon / 2) * sin(dLon / 2);
final c = 2 * atan2(sqrt(a), sqrt(1 - a));
return R * c;
}
double _degreesToRadians(double degrees) {
return degrees * pi / 180;
}
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///
/// Shortest distance between two users locations
///
double shortestDistanceBetweenUsers(
UserProfile currentUser, UserProfile otherUser) {
try {
if (currentUser.locations.isEmpty || otherUser.locations.isEmpty) {
return double.nan;
}
double shortestDistance = double.nan;
// locations currentUser
for (var loc1 in currentUser.locations.values) {
if (loc1 != null && loc1.latitude != null && loc1.longitude != null) {
for (var loc2 in otherUser.locations.values) {
if (loc2 != null && loc2.latitude != null && loc2.longitude != null) {
double distance = calculateDistance(loc1.latitude!, loc1.longitude!,
loc2.latitude!, loc2.longitude!);
if (shortestDistance.isNaN || distance < shortestDistance) {
shortestDistance = distance;
}
}
}
}
}
return shortestDistance;
} catch (e) {
return double.nan;
}
}