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https://github.com/Sea-Haven-Industries/shoc-backend.git
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* refactor(api): enforce service and data-service boundaries * refactor(api): complete feature service boundaries * refactor(identity): enforce service and data boundaries * refactor(vendors): enforce service and data boundaries * refactor(workorders): enforce service and data boundaries * refactor(backend): enforce architecture and optimize dispatch * style(backend): format changed architecture files * fix(architecture): address backend review follow-ups * fix(backend): sanitize exception disclosure in changed API endpoints Replace raw exception-message disclosure (ex.Message) returned to API callers with a stable sanitized public message plus correlated structured internal logging, across the endpoints changed in this PR. - Add SanitizedErrors helper: logs the original exception at Error with a generated correlation id and returns a stable public message referencing it so support can trace without exposing internals. - Inject ILogger<T> into the 14 changed controllers and route every ex.Message/dbex.Message disclosure through the helper, preserving status codes, response shapes, and business data (e.g. OpenWorkOrders). - Leave FluentValidation (vex.Errors) and existing fixed-message catches untouched; out-of-scope controllers (Account/Contact/Employee/Asset/ PMSchedule) are unchanged. - Add focused tests proving internal exception text is not returned and that Error logging carrying the original exception is invoked. * fix(architecture): abstract job run state access * style: format board update service * test: use collection assertion idiom
50 lines
1.9 KiB
C#
50 lines
1.9 KiB
C#
using SeaHaven.Services.Interfaces;
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namespace Api.SeaHavenIndustries.Helper
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{
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public class ZipCodeDistance : IZipCodeDistance
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{
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private readonly Dictionary<string, (double lat, double lng)> _coords = new();
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private bool _loaded;
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public void Load(string csvPath)
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{
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if (_loaded) return;
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foreach (var line in File.ReadLines(csvPath).Skip(1))
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{
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var parts = line.Split(',');
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if (parts.Length >= 3
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&& double.TryParse(parts[1].Trim(), out var lat)
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&& double.TryParse(parts[2].Trim(), out var lng))
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{
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_coords[parts[0].Trim().PadLeft(5, '0')] = (lat, lng);
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}
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}
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_loaded = true;
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}
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public double? GetDistanceMiles(string? zip1, string? zip2)
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{
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if (string.IsNullOrWhiteSpace(zip1) || string.IsNullOrWhiteSpace(zip2)) return null;
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var z1 = zip1.Trim().PadLeft(5, '0');
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var z2 = zip2.Trim().PadLeft(5, '0');
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if (z1.Length > 5) z1 = z1.Substring(0, 5);
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if (z2.Length > 5) z2 = z2.Substring(0, 5);
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if (!_coords.TryGetValue(z1, out var c1) || !_coords.TryGetValue(z2, out var c2)) return null;
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return Haversine(c1.lat, c1.lng, c2.lat, c2.lng);
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}
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private static double Haversine(double lat1, double lon1, double lat2, double lon2)
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{
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const double R = 3958.8;
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var dLat = ToRad(lat2 - lat1);
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var dLon = ToRad(lon2 - lon1);
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var a = Math.Sin(dLat / 2) * Math.Sin(dLat / 2) +
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Math.Cos(ToRad(lat1)) * Math.Cos(ToRad(lat2)) *
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Math.Sin(dLon / 2) * Math.Sin(dLon / 2);
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return R * 2 * Math.Atan2(Math.Sqrt(a), Math.Sqrt(1 - a));
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}
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private static double ToRad(double deg) => deg * Math.PI / 180.0;
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}
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}
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