CoreUtils.cs 110 KB

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  1. using System;
  2. using System.Collections;
  3. using System.Collections.Concurrent;
  4. using System.Collections.Generic;
  5. using System.ComponentModel;
  6. using System.Diagnostics;
  7. using System.Diagnostics.CodeAnalysis;
  8. using System.Globalization;
  9. using System.IO;
  10. using System.Linq;
  11. using System.Linq.Expressions;
  12. using System.Net.Mail;
  13. using System.Reflection;
  14. using System.Text;
  15. using System.Text.RegularExpressions;
  16. using JetBrains.Annotations;
  17. using Newtonsoft.Json;
  18. using Newtonsoft.Json.Linq;
  19. //using Serialize.Linq.Serializers;
  20. namespace InABox.Core
  21. {
  22. public enum DatabaseProvider
  23. {
  24. //LiteDb,
  25. //MongoDb,
  26. SQLite
  27. }
  28. //public class DateTimeJsonConverter : JsonConverter<DateTime>
  29. //{
  30. // public override void WriteJson(JsonWriter writer, DateTime value, JsonSerializer serializer)
  31. // {
  32. // String result = String.Format("{0:o}", value);
  33. // writer.WriteValue(result);
  34. // }
  35. // public override DateTime ReadJson(JsonReader reader, Type objectType, DateTime existingValue, bool hasExistingValue, JsonSerializer serializer)
  36. // {
  37. // if (reader.Value is DateTime)
  38. // return (DateTime)reader.Value;
  39. // else
  40. // {
  41. // String value = reader.Value.ToString().Replace("\"","");
  42. // DateTime.TryParse(value, out DateTime result);
  43. // return result;
  44. // }
  45. // }
  46. // public override bool CanRead => true;
  47. // public override bool CanWrite => true;
  48. //}
  49. //public class TimeSpanJsonConverter : JsonConverter<TimeSpan>
  50. //{
  51. // public override void WriteJson(JsonWriter writer, TimeSpan value, JsonSerializer serializer)
  52. // {
  53. // TimeSpan timespan = (TimeSpan)value;
  54. // writer.WriteValue(timespan.Ticks.ToString());
  55. // }
  56. // public override TimeSpan ReadJson(JsonReader reader, Type objectType, TimeSpan existingValue, bool hasExistingValue, JsonSerializer serializer)
  57. // {
  58. // Int64 ticks = Int64.Parse(reader.Value.ToString().Replace("\"", ""));
  59. // return new TimeSpan(ticks);
  60. // }
  61. //}
  62. public enum SyncfusionVersion
  63. {
  64. v16_3,
  65. v16_4,
  66. v17_1,
  67. v17_2,
  68. v17_4,
  69. v18_1,
  70. v18_4,
  71. v19_1,
  72. v19_3,
  73. v19_4,
  74. v20_1,
  75. v20_2,
  76. v20_3,
  77. Unspecified
  78. }
  79. [LibraryInitializer]
  80. public static class CoreUtils
  81. {
  82. private static readonly List<Type> entities = new List<Type>();
  83. public static Dictionary<string, long> TypeListSummary = new Dictionary<string, long>();
  84. private static readonly ConcurrentDictionary<Type, IColumns> _columnscache = new ConcurrentDictionary<Type, IColumns>();
  85. private static readonly Regex StripHtmlStyles = new Regex(@"<style(.|\n)*?</style>", RegexOptions.Compiled);
  86. private static readonly Regex StripHtmlTags = new Regex(@"<(.|\n)*?>", RegexOptions.Compiled);
  87. private static readonly Regex StripSpecialCharacters = new Regex(@"&#(.|\n)*?;|&nbsp;|&gt;|&lt;&quot;", RegexOptions.Compiled);
  88. private static readonly Regex StripLineBreaks = new Regex(@"( |\r?\n|\r|\n)\1+", RegexOptions.Compiled);
  89. public static IEnumerable<Type> Entities => entities;
  90. public static long GenerateSequence()
  91. {
  92. return (DateTime.Now - new DateTime(2019, 1, 1)).Ticks;
  93. }
  94. public static string SyncfusionLicense(SyncfusionVersion version = SyncfusionVersion.Unspecified)
  95. {
  96. var licenses = new Dictionary<SyncfusionVersion, string>
  97. {
  98. {
  99. SyncfusionVersion.v16_3,
  100. "MTE0MTMyQDMxMzYyZTMzMmUzMFYwZ1YvdG4vNWVlb2JmMGdLSWJVd2l3cmpWVU9nYXVLYmdZbXkzUkpWK3M9;MTE0MTMzQDMxMzYyZTMzMmUzMGFraS9ZQkgxdXlQdDJNdWVIaHFXS0I0S29HY1JrVERYT1hEUVpmczlCYW89;MTE0MTM0QDMxMzYyZTMzMmUzMGozZGw2bERQVHFVaUkrOWZ0Z0swNVQzWkM5OEdCN042VTNnUzdZWENMMk09;MTE0MTM1QDMxMzYyZTMzMmUzMERTYTIzVmlSKzllZnQ2T3ZTVXVLbEJmRnh2UUQ2d0pFb2JLRWVlcHdwMWc9;MTE0MTM2QDMxMzYyZTMzMmUzMFowVmxDMmlXUVVPVVowR2sxaWJxVVJ6M1NORW81clF2KzJhbXN3K2ZkZWs9;MTE0MTM3QDMxMzYyZTMzMmUzMEQxMnRUMjJOLzU3dTdwaGZzRmUvS0ZVRWVkc3dZMSszYWQ1ZkpueDZNS2c9;MTE0MTM4QDMxMzYyZTMzMmUzMENZcDRIS0N6U2psbmFiM1BIdGJzZUU4Y1lWWm5oNm52T1FsVmVDK3g5RG89;MTE0MTM5QDMxMzYyZTMzMmUzMEdjbHhYbExwU1VYblJGM3F4TC94R2cvd3J4MGJMc21qelpNbHg2cUZjckk9;MTE0MTQwQDMxMzYyZTMzMmUzMGNPZDFCcklTSkJVakFtVlhDdlgwdDgzeWNwZnliZmVqQUExUWNhRjhzVHc9;MTE0MTQxQDMxMzYyZTMzMmUzMFowVmxDMmlXUVVPVVowR2sxaWJxVVJ6M1NORW81clF2KzJhbXN3K2ZkZWs9"
  101. },
  102. {
  103. SyncfusionVersion.v16_4,
  104. "MTE0MTQyQDMxMzYyZTM0MmUzMGJ4UzVnMEJkOFpUM2pqanhPbnUrclk3c3lzQjVMdnV0eExnb3ljdGhqUjQ9;MTE0MTQzQDMxMzYyZTM0MmUzME5pY1I4ZWI1TnIwVFZVQXlBYWlEb0lsVTcxc1RUWEVOMWxESUIzVEJ6QXM9;MTE0MTQ0QDMxMzYyZTM0MmUzMG8wWjY0bml1QWVDeXI0TkI3STZWZEs2TkJjOFNaQWxTUCttL2tSNVUzbjA9;MTE0MTQ1QDMxMzYyZTM0MmUzMFNvanpRenpST2FtWHNJbzFwcnZ0djhuRjd3NnlGcVA4N3ljWFpCcExDVjg9;MTE0MTQ2QDMxMzYyZTM0MmUzMFJXMkVxT29WN0tMWEhDbTl5Uko5ak12RjV0dU1SODlZcGY1TkFudmVnR009;MTE0MTQ3QDMxMzYyZTM0MmUzMGU1U0dpZm5UTVBCclQvVmxBQkhNUlhoWUw0cmw5WFpRK0hKNUFpVitlSVU9;MTE0MTQ4QDMxMzYyZTM0MmUzMFRZa1NvdzV4NUNYTDJHaVdnL1k0SEh6ZjhocTYwZUkrVmt4eVdKOEJNR289;MTE0MTQ5QDMxMzYyZTM0MmUzMEMyM21MSEZUdmo4Qk1WNGZWekVBSkE4V2Zva2ZrNnh0WmwvN20rTWxhZzg9;MTE0MTUwQDMxMzYyZTM0MmUzMGt2N0wvMml1MHp3MVNVblJSeDZTaXUwdGxvWmlxcXZ2blFJNzNJSDhRV1k9;MTE0MTUxQDMxMzYyZTM0MmUzMFJXMkVxT29WN0tMWEhDbTl5Uko5ak12RjV0dU1SODlZcGY1TkFudmVnR009"
  105. },
  106. {
  107. SyncfusionVersion.v17_1,
  108. "MTE0MTUyQDMxMzcyZTMxMmUzMGJxNHN0ZU9tVmNWK0RCUlRDeXpMU0hnenBid2xiTTZKemVpTmRlTFJOT3c9;MTE0MTUzQDMxMzcyZTMxMmUzMG1Qak9CaW9yd1dVUUxvNDJoY3dFOE5lSGd6dGtNQlJ1am55d2twQkR4ZXM9;MTE0MTU0QDMxMzcyZTMxMmUzMFJXTDlNVnVQc25uL25QMFR2WVFMS054RUpVckFtUWljVjM2MkZCRkNLTDQ9;MTE0MTU1QDMxMzcyZTMxMmUzMEJ4YUJRc2dVSWJVaVlzWjN1a3FMdEZnQnpmTWd0cUlSS0dqK0RkRU9FSUk9;MTE0MTU2QDMxMzcyZTMxMmUzMEo2UGVucVZ3eVpkWmFJQnVqdnlLU0dERXlpdzBwb3IwcTNBMXBVbzNveVU9;MTE0MTU3QDMxMzcyZTMxMmUzME9BUXVITzhwK2tlay9qTmc5cXFzVEJ1ZUJvOUU0dmNDUXNYZ2FEQ1R3YzA9;MTE0MTU4QDMxMzcyZTMxMmUzMEpEUzFLNi91U2FocXNwRGdnL2xrZzdvYTd6OXBKRmI4S0RXckRoZENFZDA9;MTE0MTU5QDMxMzcyZTMxMmUzMGVxSk9wNDVOUGluZDhFYXpMWVZKTklCK0M5R29JMG5RTmw1T002T3YrUzA9;MTE0MTYwQDMxMzcyZTMxMmUzMEtQZnBMczBYWDJKSll5LzdqN21QcVRHd2hYeEgzMXkrM3JSdmNTVXpHYXM9;MTE0MTYxQDMxMzcyZTMxMmUzMEo2UGVucVZ3eVpkWmFJQnVqdnlLU0dERXlpdzBwb3IwcTNBMXBVbzNveVU9"
  109. },
  110. {
  111. SyncfusionVersion.v17_2,
  112. "MTIwNTA0QDMxMzcyZTMyMmUzMGxuSUVyYmtQYWdYSFlsdmYyV29FYXRKNXJiOVlkSjhYQ0djS2NQazd5czA9;MTIwNTA1QDMxMzcyZTMyMmUzMGJEb3VvekNxaUFXa3N5b2l4eXpxZ3NqRkMvbnpjQjFUMHpWbmlMaktBSlU9"
  113. },
  114. {
  115. SyncfusionVersion.v17_4,
  116. "MTgzNDc1QDMxMzcyZTM0MmUzMFhkYlgrZXhMYjVLMFY3MStXZTExTkRJMVhjRGg3S3B2TXRzTloxVHpHc289;MTgzNDc2QDMxMzcyZTM0MmUzME9wZ01lakhTT04zOGJybFp5KzVBYjdFamFqV2Jpd01Wckdnd1dTd3JUeDQ9"
  117. },
  118. {
  119. SyncfusionVersion.v18_1,
  120. "MzU3NDMwQDMxMzgyZTMxMmUzME1VV29JM0Z2aVpZenBSaThtbmphSTBGZ0djNnoyUGNsZk5zU0dGVTR4TFE9;MzU3NDMxQDMxMzgyZTMxMmUzMGhsUUZJaXRmRjNkb1hCeWZiMG03QWo0S1UxRnEwRFhTbHUvN3FUWnZvRVU9"
  121. },
  122. {
  123. SyncfusionVersion.v18_4,
  124. "NDI2MzEzQDMxMzgyZTM0MmUzMGxsVE9iRkMrckpDdjNZcUZYVGZCaHloNTFRQnd6c1FKSDc5ZWRYcWgrR0U9;NDI2MzE0QDMxMzgyZTM0MmUzME1JZzhPTC84b01kVGlzdDlmNUljMmZtblJBTVdHTHF6V00wZGpVNm5sWkE9"
  125. },
  126. {
  127. SyncfusionVersion.v19_1,
  128. "NDI2MzA4QDMxMzkyZTMxMmUzMG9DaFBkRXRPKzZISTBLejVpYlBCM3hJVUxjNEgwMnBqdlZmTmRmOXVjdGM9;NDI2MzA5QDMxMzkyZTMxMmUzMGRoNDJVNDNKUldmbytZQ3dzTWJPY0VuZEMwT1phM09vMStEajhYMzZ2WGc9"
  129. },
  130. {
  131. SyncfusionVersion.v19_3,
  132. "NTI0MzQxQDMxMzkyZTMzMmUzME44d0c4ME9lYmZGNW5nK3B0Vm1GQTNZeUFLeDhNSWh0SWZ0bzUxWHNEU3M9;NTI0MzQyQDMxMzkyZTMzMmUzMGpGdkdnQmtxbHdic0QvaktPa2pZcG0zMU5tV2NxZ3lhdks4N01HREJtYU09;NTI0MzQzQDMxMzkyZTMzMmUzME10dy9uUGp1OTJhc095S3RiQXhsclN5MUhUcVJNd1N2TEFCWThSWkp5Q289"
  133. },
  134. {
  135. SyncfusionVersion.v19_4,
  136. "NTUwNDcyQDMxMzkyZTM0MmUzMG9QaUZGdHNGWVpXRU90clpIZ2JJVkVXU2Q2VHFRdEZMY1Z3U3RySUF3a1k9;NTUwNDczQDMxMzkyZTM0MmUzMGtzdlcwYmlwZUVzNTZsNUJQMFN3K1hMYXdmZVlVNms1N2RtcWFvWHdBczg9"
  137. },
  138. {
  139. SyncfusionVersion.v20_1,
  140. "NjYxMzYzQDMyMzAyZTMxMmUzMGpLV2tKMkl1bjRXOVNRMkRjYkxlNFNXQ3g5OGI2V2RoWkNpSk9HY3dyakE9; NjYxMzY0QDMyMzAyZTMxMmUzMGFaK2JxYzhTVnpTdXNEckVEM2x5ckVXdTJkVThpV3ZZRVE0emI1ekl2eWM9"
  141. },
  142. {
  143. SyncfusionVersion.v20_2,
  144. "Mgo+DSMBaFt/QHJqVVhjWlpFdEBBXHxAd1p/VWJYdVt5flBPcDwsT3RfQF9jTn9QdkZiXX9YcHxXQw==;Mgo+DSMBPh8sVXJ0S0R+XE9HcFRDX3xKf0x/TGpQb19xflBPallYVBYiSV9jS3xTcURgWXxfdHRTRmlYVA==;ORg4AjUWIQA/Gnt2VVhiQlFadVlJXGFWfVJpTGpQdk5xdV9DaVZUTWY/P1ZhSXxRdkJiWn9dcXBVQGFcVEE=;Njc1MTQ1QDMyMzAyZTMyMmUzMGdvdWNsV3podC9LTC9MamF2YXNpT3pjR3Rsa3NGQzBxdWNtSGUvV0dsOGc9;Njc1MTQ2QDMyMzAyZTMyMmUzMFdhQkYvdkFwa3NTWXo4MnkxVWY4VnlyMHJlbmVud3N6TWQ3dkN6b3RmVm89;NRAiBiAaIQQuGjN/V0Z+Xk9EaFxEVmJLYVB3WmpQdldgdVRMZVVbQX9PIiBoS35RdEVkWHxec3VRRmZdVkRz;Njc1MTQ4QDMyMzAyZTMyMmUzMFcyaWFYL0dGZXFwanNIMHFEcnZ1d2pSMWhQR21PWEVwdjJjMjRuUVQxYjA9;Njc1MTQ5QDMyMzAyZTMyMmUzMGJjWHhqbkRRYXJkd3RFV2FXbFlGREZVd2FuaFNXM21qa1dha1lNWC8rWDA9;Mgo+DSMBMAY9C3t2VVhiQlFadVlJXGFWfVJpTGpQdk5xdV9DaVZUTWY/P1ZhSXxRdkJiWn9dcXBVQGJfWEE=;Njc1MTUxQDMyMzAyZTMyMmUzMGNBTUpQbGxtS3E3NDV1M1pEUFVjMjR6eEg5S3ZiRGhUalVHNk5oenNybWs9;Njc1MTUyQDMyMzAyZTMyMmUzMGk1U1lKR3lKUTMwWEdJb2JVbG5WYWVkMUwwbFpPMG9SbSszZmt2MGRoZUU9;Njc1MTUzQDMyMzAyZTMyMmUzMFcyaWFYL0dGZXFwanNIMHFEcnZ1d2pSMWhQR21PWEVwdjJjMjRuUVQxYjA9"
  145. },
  146. {
  147. SyncfusionVersion.v20_3,
  148. "NzY3MzEzQDMyMzAyZTMzMmUzMGR2bk5Bb1lOK2pJV2lLdys4YlVDMGViYUhCY21PM2xITTRWZlhYYmRlVm89;NzY3MzE0QDMyMzAyZTMzMmUzMG9vSEdIY1d1NDFPYjBGSnJMcTlQSmpMUzYwNk9HZUNXWHNJZWlXZloyT0U9"
  149. },
  150. {
  151. SyncfusionVersion.Unspecified,
  152. "NjcyNDdAMzEzNjJlMzQyZTMwbWZlcXhUQW80NjUrTENRTVM0c2J5empYZDFUcHhDcEE0T3gwZDZZVGVtQT0=;NjcyNDhAMzEzNjJlMzQyZTMwZWtuc0VlSXVteWNtUE8zQ1V1azcrZmRjTFBqUGFHenU1YzNwbUVTdlcxVT0="
  153. }
  154. };
  155. return licenses[version];
  156. }
  157. public static void RegisterClasses()
  158. {
  159. RegisterClasses(typeof(CoreUtils).GetTypeInfo().Assembly);
  160. ImportFactory.Register(typeof(CSVImporter<>), "Comma Separated", "Comma Separated Files (*.csv)|*.csv");
  161. ImportFactory.Register(typeof(TabImporter<>), "Tab Delimited", "Tab-Delimited Files (*.txt)|*.txt");
  162. ImportFactory.Register(typeof(FixedWidthImporter<>), "Fixed Width", "Text Files (*.txt)|*.txt");
  163. }
  164. public static void CheckLicensing()
  165. {
  166. var entities = TypeList(
  167. AppDomain.CurrentDomain.GetAssemblies(),
  168. myType =>
  169. myType.IsClass
  170. && !myType.IsAbstract
  171. && !myType.IsGenericType
  172. && myType.IsSubclassOf(typeof(Entity))
  173. ).ToArray();
  174. foreach (var entity in entities)
  175. {
  176. var lic = entity.GetInterfaces()
  177. .FirstOrDefault(x => x.IsConstructedGenericType && x.GetGenericTypeDefinition() == typeof(ILicense<>));
  178. if (lic == null)
  179. Logger.Send(LogType.Error, "", "License Configuration Error: " + entity.EntityName().Split('.').Last());
  180. }
  181. }
  182. public static void RegisterClasses(params Assembly[] assemblies)
  183. {
  184. foreach (var assembly in assemblies)
  185. {
  186. var types = TypeList(
  187. new[] { assembly },
  188. myType =>
  189. //myType.GetTypeInfo().IsClass &&
  190. !myType.GetTypeInfo().IsAbstract
  191. //&& !myType.GetTypeInfo().IsGenericType
  192. //&& myType.GetTypeInfo().IsSubclassOf(typeof(Entity))
  193. && !entities.Contains(myType)
  194. );
  195. entities.AddRange(types);
  196. //foreach (var type in types.Where(x=>x.IsSubclassOf(typeof(BaseObject))))
  197. //{
  198. // // Register Serializers for Entities
  199. // var sertype = typeof(MsgPackBaseObjectSerializer<>).MakeGenericType(type);
  200. // var method = typeof(MsgPackSerializer).GetMethod("Register", BindingFlags.Public | BindingFlags.Static).MakeGenericMethod(type, sertype);
  201. // method.Invoke(null, new object[] { });
  202. // if (type.IsSubclassOf(typeof(Entity)))
  203. // {
  204. // Type flttype = typeof(Filter<>).MakeGenericType(type);
  205. // var fsertype = typeof(MsgPackFilterSerializer<>).MakeGenericType(type);
  206. // var fmethod = typeof(MsgPackSerializer).GetMethod("Register", BindingFlags.Public | BindingFlags.Static).MakeGenericMethod(flttype, fsertype);
  207. // fmethod.Invoke(null, new object[] { });
  208. // Type coltype = typeof(Columns<>).MakeGenericType(type);
  209. // var csertype = typeof(MsgPackColumnsSerializer<>).MakeGenericType(type);
  210. // var cmethod = typeof(MsgPackSerializer).GetMethod("Register", BindingFlags.Public | BindingFlags.Static).MakeGenericMethod(coltype, csertype);
  211. // cmethod.Invoke(null, new object[] { });
  212. // Type srttype = typeof(SortOrder<>).MakeGenericType(type);
  213. // sertype = typeof(MsgPackSortOrderSerializer<>).MakeGenericType(type);
  214. // method = typeof(MsgPackSerializer).GetMethod("Register", BindingFlags.Public | BindingFlags.Static).MakeGenericMethod(srttype, sertype);
  215. // method.Invoke(null, new object[] { });
  216. // }
  217. //}
  218. }
  219. }
  220. public static Guid FullGuid = Guid.Parse("FFFFFFFF-FFFF-FFFF-FFFF-FFFFFFFFFFFF");
  221. public static string EntityName(this Type t)
  222. {
  223. if (t.GetTypeInfo().IsGenericType)
  224. {
  225. var basename = t.FullName.Split(new[] { "[[" }, StringSplitOptions.RemoveEmptyEntries)[0];
  226. var types = new List<string>();
  227. foreach (var type in t.GenericTypeArguments)
  228. types.Add(type.EntityName());
  229. var result = string.Format("{0}<{1}>", basename, string.Join(",", types));
  230. return result;
  231. }
  232. if (string.IsNullOrEmpty(t.FullName))
  233. return t.Name;
  234. return t.FullName.Split(',')[0];
  235. }
  236. private static Type? FindType(string name)
  237. {
  238. var result = entities.FirstOrDefault(x => x.EntityName().Equals(name));
  239. if (result is null)
  240. result = Type.GetType(name);
  241. return result;
  242. }
  243. public static bool HasInterface(this Type type, Type interfaceType)
  244. {
  245. return type.GetInterfaces(interfaceType).Any();
  246. }
  247. public static bool HasInterface<T>(this Type type) => type.HasInterface(typeof(T));
  248. public static Type? GetInterfaceDefinition(this Type type, Type interfaceType)
  249. {
  250. return type.GetInterfaces(interfaceType).FirstOrDefault();
  251. }
  252. public static IEnumerable<Type> GetInterfaces(this Type type, Type interfaceType)
  253. {
  254. return type
  255. .GetInterfaces()
  256. .Where(x => x.IsGenericType ? x.GetGenericTypeDefinition() == interfaceType : x == interfaceType);
  257. }
  258. public static IEnumerable<Type> GetInterfaceDefinitions(this Type type, Type interfaceType)
  259. {
  260. foreach(var inter in type.GetInterfaces())
  261. {
  262. if (inter == interfaceType)
  263. {
  264. yield return inter;
  265. }
  266. else if (inter.IsGenericType)
  267. {
  268. var genericTypeDefinition = inter.GetGenericTypeDefinition();
  269. if (genericTypeDefinition == interfaceType)
  270. yield return genericTypeDefinition;
  271. }
  272. }
  273. }
  274. public static bool IsSubclassOfRawGeneric(this Type toCheck, Type generic)
  275. {
  276. while (toCheck != typeof(object))
  277. {
  278. var cur = toCheck.IsGenericType ? toCheck.GetGenericTypeDefinition() : toCheck;
  279. if (generic == cur) return true;
  280. toCheck = toCheck.BaseType;
  281. }
  282. return false;
  283. }
  284. public static Type? GetSuperclassDefinition(this Type toCheck, Type generic)
  285. {
  286. while (toCheck != typeof(object))
  287. {
  288. var cur = toCheck.IsGenericType ? toCheck.GetGenericTypeDefinition() : toCheck;
  289. if (generic == cur) return toCheck;
  290. toCheck = toCheck.BaseType;
  291. }
  292. return null;
  293. }
  294. public static bool TryGetEntity(string entityname, [NotNullWhen(true)] out Type? type)
  295. {
  296. if (string.IsNullOrWhiteSpace(entityname))
  297. {
  298. type = null;
  299. return false;
  300. }
  301. if (entityname.Contains("<"))
  302. {
  303. var comps = entityname.Replace(">", "").Split('<');
  304. var basetype = FindType(comps[0]);
  305. var types = new List<Type>();
  306. var generics = comps[1].Split(',');
  307. foreach (var generic in generics)
  308. {
  309. var genericArg = FindType(generic);
  310. if (genericArg is null)
  311. {
  312. type = null;
  313. return false;
  314. }
  315. types.Add(genericArg);
  316. }
  317. type = basetype?.MakeGenericType(types.ToArray());
  318. }
  319. else
  320. {
  321. type = FindType(entityname);
  322. }
  323. return type != null;
  324. }
  325. public static Type GetEntity(string entityname)
  326. {
  327. if (TryGetEntity(entityname, out var type))
  328. return type;
  329. throw new Exception($"Entity {entityname} does not exist!");
  330. }
  331. public static Type? GetEntityOrNull(string entityname)
  332. {
  333. TryGetEntity(entityname, out var type);
  334. return type;
  335. }
  336. //private static List<Type> TypeCache = null;
  337. /// <summary>
  338. /// Returns a list of types that have been loaded by the various calls to RegisterClasses, e.g.
  339. /// CoreUtils.RegisterClasses
  340. /// </summary>
  341. /// <param name="Predicate"></param>
  342. /// <returns></returns>
  343. public static IEnumerable<Type> TypeList(Func<Type, bool> Predicate)
  344. {
  345. var result = new List<Type>();
  346. try
  347. {
  348. try
  349. {
  350. foreach (var type in entities.Where(x => x != null).Cast<TypeInfo>())
  351. try
  352. {
  353. if (Predicate(type.AsType()) && !result.Contains(type.AsType()))
  354. result.Add(type.AsType());
  355. }
  356. catch (Exception e)
  357. {
  358. //Console.WriteLine(type.Name + " : " + tl.Message);
  359. Logger.Send(LogType.Error, "", $"Error in CoreUtils.TypeList: {CoreUtils.FormatException(e)}");
  360. }
  361. }
  362. catch (Exception e)
  363. {
  364. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  365. }
  366. }
  367. catch (Exception e)
  368. {
  369. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  370. }
  371. return result;
  372. }
  373. /// <summary>
  374. /// Returns a list of types present within the assemblies.
  375. /// </summary>
  376. /// <param name="assemblies"></param>
  377. /// <param name="Predicate"></param>
  378. /// <returns></returns>
  379. public static IList<Type> TypeList(IEnumerable<Assembly> assemblies, Func<Type, bool> Predicate)
  380. {
  381. var result = new List<Type>();
  382. try
  383. {
  384. try
  385. {
  386. foreach (var assembly in assemblies) //.Where(x=>!x.IsDynamic))
  387. try
  388. {
  389. Type[] types;
  390. try
  391. {
  392. types = assembly.GetTypes();
  393. }
  394. catch (ReflectionTypeLoadException e0)
  395. {
  396. types = e0.Types;
  397. }
  398. catch (Exception)
  399. {
  400. types = Array.Empty<Type>();
  401. }
  402. foreach (var type in types.Where(x => x != null).Cast<TypeInfo>())
  403. try
  404. {
  405. var asType = type.AsType();
  406. if (Predicate(asType) && !result.Contains(asType))
  407. result.Add(asType);
  408. }
  409. catch (Exception el)
  410. {
  411. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", el.Message, el.StackTrace));
  412. //Console.WriteLine(type.Name + " : " + tl.Message);
  413. }
  414. }
  415. catch (Exception e)
  416. {
  417. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  418. }
  419. }
  420. catch (Exception e)
  421. {
  422. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  423. }
  424. }
  425. catch (Exception e)
  426. {
  427. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  428. }
  429. return result;
  430. }
  431. public static object? ChangeType(object? value, Type type)
  432. {
  433. if ((value == null || value is DBNull) && type.GetTypeInfo().IsGenericType)
  434. return Activator.CreateInstance(type);
  435. if (value == null)
  436. return null;
  437. if (value is DBNull)
  438. return null;
  439. if (type == value.GetType())
  440. return value;
  441. if (type == typeof(bool))
  442. return value.Equals(bool.TrueString) || value.Equals(1) || value.Equals("1");
  443. if (type.GetTypeInfo().IsEnum)
  444. {
  445. if (value.GetType().IsArray)
  446. return (value as Array).Cast<object>().Select(x => Enum.ToObject(type, x)).ToArray();
  447. if (value is string)
  448. return Enum.Parse(type, value as string);
  449. if (value is IEnumerable<object> list)
  450. return list.Select(x => Enum.ToObject(type, x)).ToArray();
  451. return Enum.ToObject(type, value);
  452. }
  453. if (!type.GetTypeInfo().IsInterface && type.GetTypeInfo().IsGenericType)
  454. {
  455. var innerType = type.GetTypeInfo().GetGenericArguments()[0];
  456. var innerValue = ChangeType(value, innerType);
  457. return Activator.CreateInstance(type, innerValue);
  458. }
  459. if (value is string && type == typeof(Guid))
  460. try
  461. {
  462. return new Guid(value as string);
  463. }
  464. catch
  465. {
  466. return Guid.Empty;
  467. }
  468. if (value is IEnumerable<object> objList && type == typeof(Guid))
  469. return objList.Select(x => ChangeType<Guid>(x)).ToArray();
  470. if (value is byte[] && type == typeof(Guid))
  471. return new Guid(value as byte[]);
  472. if (value is string && type == typeof(Version))
  473. return new Version(value as string);
  474. if (value is byte && type == typeof(TimeSpan))
  475. return new TimeSpan((byte)value);
  476. if (value is string && type == typeof(TimeSpan))
  477. return TimeSpan.Parse(value as string);
  478. if (value is string && type == typeof(DateTime))
  479. return DateTime.Parse(value as string);
  480. if (value is bool && type == typeof(string))
  481. return (bool)value ? bool.TrueString : bool.FalseString;
  482. if (value is JArray && type == typeof(string[]))
  483. return (value as JArray).Select(x => x.ToString()).ToArray();
  484. if (value is string && type == typeof(byte[]))
  485. return Convert.FromBase64String(value as string);
  486. //if (value is string && type == typeof(Memo))
  487. // return new Memo(value as String); // { _data = value as string };
  488. if (!(value is IConvertible))
  489. return value;
  490. return Convert.ChangeType(value, type);
  491. }
  492. [return: MaybeNull]
  493. public static T ChangeType<T>(object? value)
  494. {
  495. var newValue = ChangeType(value, typeof(T));
  496. if (newValue is T tValue)
  497. return tValue;
  498. return default;
  499. }
  500. public static string RandomHexString(int length)
  501. {
  502. var rdm = new Random((int)DateTime.Now.Ticks);
  503. var hexValue = string.Empty;
  504. int num;
  505. for (var i = 0; i < length; i++)
  506. {
  507. num = rdm.Next(0, 16);
  508. hexValue += num.ToString("X1");
  509. }
  510. return hexValue;
  511. }
  512. public static bool IsEmpty(this DateTime value)
  513. {
  514. return value.Ticks <= DateTime.MinValue.AddHours(8).Ticks;
  515. }
  516. #region Properties
  517. public static string GetFullPropertyName<Type, TProperty>(Expression<Func<Type, TProperty>> exp, string separator)
  518. {
  519. try
  520. {
  521. if (!TryFindMemberExpression(exp.Body, out var memberExp))
  522. return string.Empty;
  523. return GetFullPropertyName(memberExp, separator);
  524. }
  525. catch (Exception e)
  526. {
  527. throw e;
  528. }
  529. }
  530. public static string GetFullPropertyName(MemberExpression exp, string separator)
  531. {
  532. try
  533. {
  534. var currentExpression = exp;
  535. var memberNames = new Stack<string>();
  536. do
  537. {
  538. memberNames.Push(currentExpression.Member.Name);
  539. } while (TryFindMemberExpression(currentExpression.Expression, out currentExpression));
  540. var result = string.Join(separator, memberNames.ToArray());
  541. return result;
  542. }
  543. catch (Exception e)
  544. {
  545. throw e;
  546. }
  547. }
  548. // code adjusted to prevent horizontal overflow
  549. public static bool TryFindMemberExpression(Expression exp, [NotNullWhen(true)] out MemberExpression? memberExp)
  550. {
  551. memberExp = exp as MemberExpression;
  552. if (memberExp != null)
  553. return true;
  554. if (IsConversion(exp) && exp is UnaryExpression unary)
  555. {
  556. memberExp = unary.Operand as MemberExpression;
  557. if (memberExp != null)
  558. return true;
  559. }
  560. return false;
  561. }
  562. public static Expression<Func<T, TType>> GetPropertyExpression<T, TType>(string name)
  563. {
  564. var param = Expression.Parameter(typeof(T), "x");
  565. Expression body = param;
  566. foreach (var member in name.Split('.')) body = Expression.PropertyOrField(body, member);
  567. var p = Expression.Parameter(typeof(TType));
  568. var conversion = body.Type == typeof(TType) ? body : Expression.Convert(body, typeof(TType));
  569. return Expression.Lambda<Func<T, TType>>(conversion, param);
  570. }
  571. public static Expression<Func<T, object?>> GetPropertyExpression<T>(string name)
  572. {
  573. var param = Expression.Parameter(typeof(T), "x");
  574. Expression body = param;
  575. foreach (var member in name.Split('.')) body = Expression.PropertyOrField(body, member);
  576. var p = Expression.Parameter(typeof(object));
  577. var conversion = Expression.Convert(body, typeof(object));
  578. return Expression.Lambda<Func<T, object?>>(conversion, param);
  579. }
  580. public static MemberExpression GetMemberExpression(Type t, string name)
  581. {
  582. var param = Expression.Parameter(t, "x");
  583. Expression body = param;
  584. foreach (var member in name.Split('.'))
  585. body = Expression.PropertyOrField(body, member);
  586. var me = Expression.Lambda(body, param).Body as MemberExpression;
  587. return me;
  588. }
  589. public static Expression GetPropertyExpression(Type t, string name, Type? type = null)
  590. {
  591. var param = Expression.Parameter(t, "x");
  592. Expression body = param;
  593. foreach (var member in name.Split('.')) body = Expression.PropertyOrField(body, member);
  594. if (type != null)
  595. body = Expression.Convert(body, typeof(object));
  596. return Expression.Lambda(body, param);
  597. //var p2 = Expression.Parameter(t, "x");
  598. //Expression e2 = Expression.Lambda(Expression.Property(p2, name), p2);
  599. //return e2;
  600. }
  601. public static PropertyInfo GetProperty(Type t, string name)
  602. {
  603. if (TryGetProperty(t, name, out var info))
  604. return info;
  605. throw new Exception($"Property {name} does not exist for {t.Name}");
  606. }
  607. public static PropertyInfo GetProperty<T>(string name) => GetProperty(typeof(T), name);
  608. public static bool TryGetProperty(Type t, string name, [NotNullWhen(true)] out PropertyInfo? propertyInfo)
  609. {
  610. propertyInfo = null;
  611. var typeinfo = t.GetTypeInfo();
  612. var props = name.Split('.');
  613. foreach (var prop in props)
  614. {
  615. propertyInfo = typeinfo.GetProperty(prop);
  616. if (propertyInfo is null)
  617. return false;
  618. typeinfo = propertyInfo.PropertyType.GetTypeInfo();
  619. }
  620. if (propertyInfo is null)
  621. return false;
  622. return true;
  623. }
  624. public static bool TryGetProperty<T>(string name, [NotNullWhen(true)] out PropertyInfo? propertyInfo) =>
  625. TryGetProperty(typeof(T), name, out propertyInfo);
  626. public static bool HasProperty(Type t, string name)
  627. {
  628. PropertyInfo property;
  629. var typeinfo = t.GetTypeInfo();
  630. var props = name.Split('.');
  631. foreach (var prop in props)
  632. {
  633. property = typeinfo.GetProperty(prop);
  634. if (property == null)
  635. return false;
  636. typeinfo = property.PropertyType.GetTypeInfo();
  637. }
  638. return true;
  639. }
  640. public static object? GetPropertyParent(object o, string name)
  641. {
  642. var comps = name.Split('.').ToList();
  643. comps.Remove(comps.Last());
  644. if (comps.Count == 0)
  645. return o;
  646. return GetPropertyValue(o, string.Join(".", comps));
  647. }
  648. /// <summary>
  649. /// Gets the value of the object's given property.
  650. /// </summary>
  651. /// <param name="o">The object to get the property from.</param>
  652. /// <param name="name">The name of the property.</param>
  653. /// <returns>
  654. /// <see langword="null"/> if <paramref name="o"/> or any intermediate properties are <see langword="null"/>;
  655. /// otherwise the value of the property <paramref name="name"/>, which can be <see langword="null"/>.
  656. /// </returns>
  657. /// <exception cref="Exception">if the property does not exist.</exception>
  658. public static object? GetPropertyValue(object? o, string name)
  659. {
  660. if (o is null)
  661. return null;
  662. var t = o.GetType().GetTypeInfo();
  663. if (o is BaseObject)
  664. {
  665. var property = DatabaseSchema.Property(t, name);
  666. if (property != null && (property is CustomProperty || !name.Contains(".")))
  667. return property.Getter().Invoke(o);
  668. }
  669. var props = name.Split('.');
  670. foreach (var prop in props)
  671. {
  672. var rprop = t.GetProperty(prop);
  673. if (rprop == null)
  674. throw new Exception(string.Format("Property {0} does not exist for {1}", prop, o.GetType().Name));
  675. o = rprop.GetValue(o, null);
  676. if (o is null)
  677. return null;
  678. t = o.GetType().GetTypeInfo();
  679. }
  680. return o;
  681. }
  682. /// <summary>
  683. /// Sets a property on the given object, doing nothing if the property does not exist.
  684. /// </summary>
  685. /// <param name="o">The object to set the property of.</param>
  686. /// <param name="name">The property to set.</param>
  687. /// <param name="value">The value to set the property to.</param>
  688. public static void SetPropertyValue(object o, string name, object? value)
  689. {
  690. var bits = name.Split('.');
  691. for (var i = 0; i < bits.Length - 1; i++)
  692. {
  693. var propertyToGet = o.GetType().GetTypeInfo().GetProperty(bits[i]);
  694. if (propertyToGet == null)
  695. return;
  696. var newo = propertyToGet.GetValue(o, null);
  697. if (newo == null)
  698. {
  699. newo = Activator.CreateInstance(propertyToGet.PropertyType);
  700. propertyToGet.SetValue(o, newo);
  701. }
  702. o = newo;
  703. }
  704. var propertyToSet = o.GetType().GetTypeInfo().GetProperty(bits.Last());
  705. if (propertyToSet is null)
  706. {
  707. var iprop = DatabaseSchema.Property(o.GetType(), name);
  708. if (iprop is CustomProperty)
  709. {
  710. ((BaseObject)o).UserProperties[name] = value;
  711. return;
  712. }
  713. return;
  714. }
  715. //PropertyInfo propertyToSet = GetProperty(o.GetType(), name);
  716. object? convertedvalue = null;
  717. if (value != null)
  718. {
  719. if (propertyToSet.PropertyType.Equals(typeof(Type)))
  720. {
  721. convertedvalue = Type.GetType(value.ToString(), true, true);
  722. }
  723. else if (propertyToSet.PropertyType.GetTypeInfo().IsEnum)
  724. {
  725. convertedvalue = Enum.Parse(propertyToSet.PropertyType, value.ToString(), true);
  726. }
  727. //else if (propertyToSet.PropertyType.Equals(typeof(Memo)))
  728. // convertedvalue = (Memo)value.ToString();
  729. else if (propertyToSet.PropertyType.Equals(typeof(Guid)))
  730. {
  731. var guidvalue = Guid.Empty;
  732. Guid.TryParse(value.ToString(), out guidvalue);
  733. convertedvalue = guidvalue;
  734. }
  735. //else if (propertyToSet.PropertyType.IsSubclassOf(value.GetType()))
  736. // convertedvalue = value;
  737. else if (propertyToSet.PropertyType.IsAssignableFrom(value.GetType()))
  738. {
  739. convertedvalue = value;
  740. }
  741. else if (!(value is DBNull))
  742. {
  743. convertedvalue = Convert.ChangeType(value, propertyToSet.PropertyType);
  744. }
  745. }
  746. if (propertyToSet.CanWrite)
  747. {
  748. var method = propertyToSet.GetSetMethod();
  749. //if (method == null)
  750. var oldval = propertyToSet.GetValue(o);
  751. propertyToSet.SetValue(o, convertedvalue, null);
  752. if (o is BaseObject)
  753. ((BaseObject)o).OnPropertyChanged(propertyToSet.Name, oldval, convertedvalue);
  754. //else
  755. // method.Invoke(o, new Object[] { convertedvalue });
  756. //if (o.GetType().IsSubclassOf(typeof(BaseObject)))
  757. // ((BaseObject)o).OnPropertyChanged(name, propertyToSet.GetValue(o), convertedvalue);
  758. }
  759. }
  760. public static PropertyInfo[] GetInheritedProperties(Type type)
  761. {
  762. if (type.IsInterface)
  763. {
  764. var propertyInfos = new List<PropertyInfo>();
  765. var considered = new List<Type>();
  766. var queue = new Queue<Type>();
  767. considered.Add(type);
  768. queue.Enqueue(type);
  769. while (queue.Count > 0)
  770. {
  771. var subType = queue.Dequeue();
  772. foreach (var subInterface in subType.GetInterfaces())
  773. {
  774. if (considered.Contains(subInterface)) continue;
  775. considered.Add(subInterface);
  776. queue.Enqueue(subInterface);
  777. }
  778. var typeProperties = subType.GetProperties(
  779. BindingFlags.FlattenHierarchy
  780. | BindingFlags.Public
  781. | BindingFlags.Instance);
  782. var newPropertyInfos = typeProperties
  783. .Where(x => !propertyInfos.Contains(x));
  784. propertyInfos.InsertRange(0, newPropertyInfos);
  785. }
  786. return propertyInfos.ToArray();
  787. }
  788. return type.GetProperties(BindingFlags.FlattenHierarchy
  789. | BindingFlags.Public | BindingFlags.Instance);
  790. }
  791. public static Dictionary<string, Type> PropertyList(Type T, Func<PropertyInfo, bool> Predicate, bool Recursive)
  792. {
  793. Dictionary<string, Type> properties;
  794. if (T.GetTypeInfo().BaseType != null)
  795. properties = PropertyList(T.GetTypeInfo().BaseType, Predicate, Recursive);
  796. else
  797. properties = new Dictionary<string, Type>();
  798. //TypeInfo entitytype = typeof(Entity).GetTypeInfo();
  799. //TypeInfo componenttype = typeof(EnclosedEntity).GetTypeInfo();
  800. foreach (var prop in T.GetRuntimeProperties())
  801. // '.' contains check for explicit implementation of interface properties
  802. if (!properties.ContainsKey(prop.Name) && Predicate(prop) && !prop.Name.Contains('.'))
  803. {
  804. var propertytype = prop.PropertyType.GetTypeInfo();
  805. if (
  806. Recursive &&
  807. (
  808. propertytype.IsSubclassOf(typeof(Entity)) ||
  809. propertytype.GetInterfaces().Contains(typeof(IEnclosedEntity)) ||
  810. propertytype.GetInterfaces().Contains(typeof(IEntityLink))
  811. )
  812. )
  813. {
  814. var props = PropertyList(prop.PropertyType, Predicate, Recursive);
  815. foreach (var key in props.Keys) properties[string.Format("{0}.{1}", prop.Name, key)] = props[key];
  816. }
  817. else
  818. {
  819. properties[prop.Name] = prop.PropertyType;
  820. }
  821. }
  822. return properties;
  823. }
  824. public static Dictionary<string, PropertyInfo> PropertyInfoList(Type T, Func<PropertyInfo, bool> Predicate, bool Recursive)
  825. {
  826. Dictionary<string, PropertyInfo> properties;
  827. if (T.GetTypeInfo().BaseType != null)
  828. properties = PropertyInfoList(T.GetTypeInfo().BaseType, Predicate, Recursive);
  829. else
  830. properties = new Dictionary<string, PropertyInfo>();
  831. //TypeInfo entitytype = typeof(Entity).GetTypeInfo();
  832. //TypeInfo componenttype = typeof(EnclosedEntity).GetTypeInfo();
  833. foreach (var prop in T.GetRuntimeProperties())
  834. // '.' contains check for explicit implementation of interface properties
  835. if (!properties.ContainsKey(prop.Name) && Predicate(prop) && !prop.Name.Contains('.'))
  836. {
  837. var propertytype = prop.PropertyType.GetTypeInfo();
  838. if (
  839. Recursive &&
  840. (
  841. propertytype.IsSubclassOf(typeof(Entity)) ||
  842. propertytype.GetInterfaces().Contains(typeof(IEnclosedEntity)) ||
  843. propertytype.GetInterfaces().Contains(typeof(IEntityLink))
  844. )
  845. )
  846. {
  847. var props = PropertyInfoList(prop.PropertyType, Predicate, Recursive);
  848. foreach (var key in props.Keys) properties[string.Format("{0}.{1}", prop.Name, key)] = props[key];
  849. }
  850. else
  851. {
  852. properties[prop.Name] = prop;
  853. }
  854. }
  855. return properties;
  856. }
  857. public static IEnumerable<PropertyInfo> PropertyList(Type T, Func<PropertyInfo, bool> Predicate)
  858. {
  859. return T.GetRuntimeProperties().Where(x => Predicate(x));
  860. }
  861. private static PropertyInfo InternalGetPropertyFromExpression<TObject, TType>(Expression<Func<TObject, TType>> GetPropertyLambda)
  862. {
  863. MemberExpression Exp;
  864. //this line is necessary, because sometimes the expression comes in as Convert(originalexpression)
  865. if (GetPropertyLambda.Body is UnaryExpression unary)
  866. {
  867. Exp = unary.Operand as MemberExpression ?? throw new ArgumentException();
  868. }
  869. else if (GetPropertyLambda.Body is MemberExpression)
  870. {
  871. Exp = (MemberExpression)GetPropertyLambda.Body;
  872. }
  873. else
  874. {
  875. throw new ArgumentException();
  876. }
  877. return (PropertyInfo)Exp.Member;
  878. }
  879. public static PropertyInfo GetPropertyFromExpression<TObject, TStruct>(Expression<Func<TObject, TStruct>> lambda)
  880. {
  881. return InternalGetPropertyFromExpression(lambda);
  882. }
  883. public static PropertyInfo GetPropertyFromExpression<T>(Expression<Func<T, object>> GetPropertyLambda)
  884. {
  885. MemberExpression Exp;
  886. //this line is necessary, because sometimes the expression comes in as Convert(originalexpression)
  887. if (GetPropertyLambda.Body is UnaryExpression)
  888. {
  889. var UnExp = (UnaryExpression)GetPropertyLambda.Body;
  890. if (UnExp.Operand is MemberExpression)
  891. Exp = (MemberExpression)UnExp.Operand;
  892. else
  893. throw new ArgumentException();
  894. }
  895. else if (GetPropertyLambda.Body is MemberExpression)
  896. {
  897. Exp = (MemberExpression)GetPropertyLambda.Body;
  898. }
  899. else
  900. {
  901. throw new ArgumentException();
  902. }
  903. return (PropertyInfo)Exp.Member;
  904. }
  905. #endregion
  906. public static bool IsCollection(PropertyInfo prop)
  907. {
  908. if (!typeof(string).Equals(prop.PropertyType))
  909. if (typeof(IEnumerable).GetTypeInfo().IsAssignableFrom(prop.PropertyType))
  910. if (!prop.PropertyType.IsArray)
  911. if (prop.PropertyType.GenericTypeArguments[0].GetTypeInfo().IsSubclassOf(typeof(Entity)))
  912. return true;
  913. return false;
  914. }
  915. private static bool IsConversion(Expression exp)
  916. {
  917. return exp.NodeType == ExpressionType.Convert ||
  918. exp.NodeType == ExpressionType.ConvertChecked;
  919. }
  920. //public static Dictionary<String, Type> PropertyList(Type T, bool Public = true, bool Static = false)
  921. //{
  922. // Dictionary<String, Type> properties = new Dictionary<String, Type>();
  923. // foreach (PropertyInfo prop in T.GetRuntimeProperties())
  924. // {
  925. // if ((prop.GetMethod.IsPublic == Public) && (prop.GetMethod.IsStatic == Static))
  926. // {
  927. // if (prop.PropertyType.GetTypeInfo().IsAssignableFrom(typeof(Entity).GetTypeInfo()))
  928. // {
  929. // Dictionary<String, Type> props = PropertyList(prop.PropertyType);
  930. // foreach (String key in props.Keys)
  931. // {
  932. // properties[String.Format("{0}.{1}", prop.Name, key)] = props[key];
  933. // }
  934. // }
  935. // else if (!prop.PropertyType.Equals(typeof(Guid)))
  936. // {
  937. // properties[prop.Name] = prop.GetType();
  938. // }
  939. // }
  940. // }
  941. // return properties;
  942. //}
  943. /// <summary>
  944. /// Get all the child properties of an object that match a given type
  945. /// </summary>
  946. /// <typeparam name="T">The class of property to search for</typeparam>
  947. /// <param name="parent">The object to search</param>
  948. /// <returns>A list of the objects found</returns>
  949. public static IEnumerable<PropertyInfo> GetChildrenProperties<T>(Type parentType)
  950. {
  951. return PropertyList(
  952. parentType,
  953. x => typeof(T).IsAssignableFrom(x.PropertyType)
  954. );
  955. }
  956. /// <summary>
  957. /// Get all the child properties of an object that match a given type
  958. /// </summary>
  959. /// <typeparam name="T">The class of property to search for</typeparam>
  960. /// <param name="parent">The object to search</param>
  961. /// <returns>A list of the objects found</returns>
  962. public static IEnumerable<T> GetChildren<T>(object parent)
  963. {
  964. var children = new List<T>();
  965. var props = PropertyList(
  966. parent.GetType(),
  967. x => typeof(T).IsAssignableFrom(x.PropertyType)
  968. );
  969. foreach (var prop in props)
  970. {
  971. var child = (T)prop.GetValue(parent);
  972. if (child != null)
  973. children.Add(child);
  974. }
  975. return children;
  976. }
  977. /// <summary>
  978. /// Get all list properties of an object that are collections of a given type
  979. /// </summary>
  980. /// <typeparam name="T">The class of child object to search for</typeparam>
  981. /// <param name="parent">The object to search</param>
  982. /// <returns>A list of the collections found</returns>
  983. public static IEnumerable<TType>[] GetCollectionsOfType<TType>(object parent)
  984. {
  985. var lists = new List<IEnumerable<TType>>();
  986. var props = PropertyList(parent.GetType(), x => true); // !typeof(String).Equals(x.PropertyType));
  987. foreach (var prop in props)
  988. if (typeof(IEnumerable).GetTypeInfo().IsAssignableFrom(prop.PropertyType))
  989. if (prop.PropertyType.GenericTypeArguments.Length == 1)
  990. if (prop.PropertyType.GenericTypeArguments[0].GetTypeInfo().GetInterfaces().Contains(typeof(TType)))
  991. lists.Add((IEnumerable<TType>)prop.GetValue(parent));
  992. return lists.ToArray();
  993. }
  994. //public static IEnumerable<Assembly> GetReferencingAssemblies(string assemblyName)
  995. //{
  996. // var assemblies = new List<Assembly>();
  997. // var dependencies = DependencyContext.Default.RuntimeLibraries;
  998. // foreach (var library in dependencies)
  999. // {
  1000. // if (IsCandidateLibrary(library, assemblyName))
  1001. // {
  1002. // var assembly = Assembly.Load(new AssemblyName(library.Name));
  1003. // assemblies.Add(assembly);
  1004. // }
  1005. // }
  1006. // return assemblies;
  1007. //}
  1008. //private static bool IsCandidateLibrary(RuntimeLibrary library, assemblyName)
  1009. //{
  1010. // return library.Name == (assemblyName)
  1011. // || library.Dependencies.Any(d => d.Name.StartsWith(assemblyName));
  1012. //}
  1013. //public static IEnumerable<Assembly> AssemblyList(Expression<Func<Type,bool>> Predicate)
  1014. //{
  1015. // Func<Type, bool> lambda = Predicate.Compile();
  1016. // List<Assembly> assemblies = new List<Assembly>();
  1017. // IEnumerable<Assembly> allassemblies = AppDomain.CurrentDomain.GetAssemblies().Where(a => !a.IsDynamic).ToArray();
  1018. // foreach (Assembly assembly in allassemblies)
  1019. // {
  1020. // IEnumerable<Type> types = CoreUtils.TypeList(
  1021. // new Assembly[] { assembly },
  1022. // Predicate
  1023. // );
  1024. // if (types.Count() > 0)
  1025. // assemblies.Add(assembly);
  1026. // }
  1027. // return assemblies;
  1028. //}
  1029. //public static string SerializeExpression<T>(Expression obj)
  1030. //{
  1031. // JsonSerializerSettings _settings;
  1032. // var defaultSettings = new JsonSerializerSettings { TypeNameHandling = TypeNameHandling.Objects };
  1033. // defaultSettings.Converters.Add(new ExpressionJsonConverter(typeof(T)));
  1034. // _settings = defaultSettings;
  1035. // return Serialization.Serialize(obj, _settings);
  1036. //}
  1037. //public static Expression DeserializeExpression<T>(string json)
  1038. //{
  1039. // JsonSerializerSettings _settings;
  1040. // var defaultSettings = new JsonSerializerSettings { TypeNameHandling = TypeNameHandling.Objects };
  1041. // defaultSettings.Converters.Add(new ExpressionJsonConverter(typeof(T)));
  1042. // _settings = defaultSettings;
  1043. // return Serialization.Deserialize<Expression>(json, _settings);
  1044. //}
  1045. /// <summary>
  1046. /// [ <c>public static object GetDefault(this Type type)</c> ]
  1047. /// <para></para>
  1048. /// Retrieves the default value for a given Type
  1049. /// </summary>
  1050. /// <param name="type">The Type for which to get the default value</param>
  1051. /// <returns>The default value for <paramref name="type" /></returns>
  1052. /// <remarks>
  1053. /// If a null Type, a reference Type, or a System.Void Type is supplied, this method always returns null. If a value
  1054. /// type
  1055. /// is supplied which is not publicly visible or which contains generic parameters, this method will fail with an
  1056. /// exception.
  1057. /// </remarks>
  1058. /// <example>
  1059. /// To use this method in its native, non-extension form, make a call like:
  1060. /// <code>
  1061. /// object Default = DefaultValue.GetDefault(someType);
  1062. /// </code>
  1063. /// To use this method in its Type-extension form, make a call like:
  1064. /// <code>
  1065. /// object Default = someType.GetDefault();
  1066. /// </code>
  1067. /// </example>
  1068. /// <seealso cref="GetDefault&lt;T&gt;" />
  1069. public static object? GetDefault(this Type type)
  1070. {
  1071. // If no Type was supplied, if the Type was a reference type, or if the Type was a System.Void, return null
  1072. if (type == null || !type.GetTypeInfo().IsValueType || type == typeof(void))
  1073. return null;
  1074. // If the supplied Type has generic parameters, its default value cannot be determined
  1075. if (type.GetTypeInfo().ContainsGenericParameters)
  1076. throw new ArgumentException(
  1077. "Error:\n\nThe supplied value type <" + type.Name +
  1078. "> contains generic parameters, so the default value cannot be retrieved\n\n");
  1079. // If the Type is a primitive type, or if it is another publicly-visible value type (i.e. struct/enum), return a
  1080. // default instance of the value type
  1081. if (type.GetTypeInfo().IsPrimitive || !type.GetTypeInfo().IsNotPublic)
  1082. try
  1083. {
  1084. return Activator.CreateInstance(type);
  1085. }
  1086. catch (Exception e)
  1087. {
  1088. throw new ArgumentException(
  1089. "Error:\n\nThe Activator.CreateInstance method could not " +
  1090. "create a default instance of the supplied value type <" + type.Name +
  1091. "> (Inner Exception message: \"" + e.Message + "\")");
  1092. }
  1093. // Fail with exception
  1094. throw new ArgumentException("Error:\n\nThe supplied value type <" + type +
  1095. "> is not a publicly-visible type, so the default value cannot be retrieved");
  1096. }
  1097. /// <summary>
  1098. /// [ <c>public static T GetDefault&lt; T &gt;()</c> ]
  1099. /// <para></para>
  1100. /// Retrieves the default value for a given Type
  1101. /// </summary>
  1102. /// <typeparam name="T">The Type for which to get the default value</typeparam>
  1103. /// <returns>The default value for Type T</returns>
  1104. /// <remarks>
  1105. /// If a reference Type or a System.Void Type is supplied, this method always returns null. If a value type
  1106. /// is supplied which is not publicly visible or which contains generic parameters, this method will fail with an
  1107. /// exception.
  1108. /// </remarks>
  1109. /// <seealso cref="GetDefault(Type)" />
  1110. [return: MaybeNull]
  1111. public static T GetDefault<T>()
  1112. {
  1113. return (T)GetDefault(typeof(T));
  1114. }
  1115. public static bool IsDefault<T>(T value)
  1116. {
  1117. return IsDefault(typeof(T), value);
  1118. }
  1119. /// <summary>
  1120. /// [ <c>public static bool IsObjectSetToDefault(this Type ObjectType, object ObjectValue)</c> ]
  1121. /// <para></para>
  1122. /// Reports whether a value of type T (or a null reference of type T) contains the default value for that Type
  1123. /// </summary>
  1124. /// <remarks>
  1125. /// Reports whether the object is empty or unitialized for a reference type or nullable value type (i.e. is null) or
  1126. /// whether the object contains a default value for a non-nullable value type (i.e. int = 0, bool = false, etc.)
  1127. /// <para></para>
  1128. /// NOTE: For non-nullable value types, this method introduces a boxing/unboxing performance penalty.
  1129. /// </remarks>
  1130. /// <param name="ObjectType">Type of the object to test</param>
  1131. /// <param name="ObjectValue">The object value to test, or null for a reference Type or nullable value Type</param>
  1132. /// <returns>
  1133. /// true = The object contains the default value for its Type.
  1134. /// <para></para>
  1135. /// false = The object has been changed from its default value.
  1136. /// </returns>
  1137. public static bool IsDefault(this Type ObjectType, object? ObjectValue)
  1138. {
  1139. // If no ObjectType was supplied, attempt to determine from ObjectValue
  1140. if (ObjectType == null)
  1141. {
  1142. // If no ObjectValue was supplied, abort
  1143. if (ObjectValue == null) throw new ArgumentNullException("Error:\n\nCannot determine the ObjectType from a null Value");
  1144. // Determine ObjectType from ObjectValue
  1145. ObjectType = ObjectValue.GetType();
  1146. }
  1147. // Get the default value of type ObjectType
  1148. var Default = ObjectType.GetDefault();
  1149. // If a non-null ObjectValue was supplied, compare Value with its default value and return the result
  1150. if (ObjectValue != null)
  1151. return ObjectValue.Equals(Default);
  1152. // Since a null ObjectValue was supplied, report whether its default value is null
  1153. return Default == null;
  1154. }
  1155. public static bool IsBase64String(this string s)
  1156. {
  1157. s = s.Trim();
  1158. return s.Length % 4 == 0 && Regex.IsMatch(s, @"^[a-zA-Z0-9\+/]*={0,3}$", RegexOptions.None);
  1159. }
  1160. public static string CalculateCRC(byte[] data)
  1161. {
  1162. var hash = Crc32.Compute(data);
  1163. return string.Format("{0:X8}", hash);
  1164. }
  1165. //public static TimeSpan Round(this TimeSpan timespan, TimeSpan interval)
  1166. //{
  1167. // // The round number, here is a quarter... in seconds
  1168. // double Round = interval.TotalSeconds;
  1169. // // Count of round number in this total Seconds...
  1170. // double CountRound = (timespan.TotalSeconds / Round);
  1171. // // The main formula to calculate round time...
  1172. // int Sec = (int)(Math.Truncate(CountRound + 0.5) * Round);
  1173. // // Now show the result...
  1174. // TimeSpan tRes = new TimeSpan(0, 0, Sec);
  1175. // return tRes;
  1176. //}
  1177. public static bool IsNumeric(this Type dataType)
  1178. {
  1179. return dataType.IsFloatingPoint() || dataType.IsOrdinal();
  1180. }
  1181. public static bool IsFloatingPoint(this Type dataType)
  1182. {
  1183. if (dataType == null)
  1184. return false;
  1185. return dataType == typeof(double)
  1186. || dataType == typeof(float)
  1187. || dataType == typeof(float);
  1188. }
  1189. public static bool IsOrdinal(this Type dataType)
  1190. {
  1191. if (dataType == null)
  1192. return false;
  1193. return dataType == typeof(int)
  1194. || dataType == typeof(long)
  1195. || dataType == typeof(short)
  1196. || dataType == typeof(short)
  1197. || dataType == typeof(int)
  1198. || dataType == typeof(long)
  1199. || dataType == typeof(uint)
  1200. || dataType == typeof(ushort)
  1201. || dataType == typeof(uint)
  1202. || dataType == typeof(ulong)
  1203. || dataType == typeof(sbyte);
  1204. }
  1205. //Extension method for MailMessage to save to a file on disk
  1206. public static string GenerateEMLFile(this MailMessage message, bool addUnsentHeader = true)
  1207. {
  1208. var filename = Path.ChangeExtension(Path.GetTempFileName(), ".eml");
  1209. using (var filestream = File.Open(filename, FileMode.Create))
  1210. {
  1211. if (addUnsentHeader)
  1212. {
  1213. var binaryWriter = new BinaryWriter(filestream);
  1214. //Write the Unsent header to the file so the mail client knows this mail must be presented in "New message" mode
  1215. binaryWriter.Write(Encoding.UTF8.GetBytes("X-Unsent: 1" + Environment.NewLine));
  1216. }
  1217. var assembly = typeof(SmtpClient).Assembly;
  1218. var mailWriterType = assembly.GetType("System.Net.Mail.MailWriter");
  1219. // Get reflection info for MailWriter contructor
  1220. var mailWriterContructor =
  1221. mailWriterType.GetConstructor(BindingFlags.Instance | BindingFlags.NonPublic, null, new[] { typeof(Stream) }, null);
  1222. // Construct MailWriter object with our FileStream
  1223. var mailWriter = mailWriterContructor.Invoke(new object[] { filestream });
  1224. // Get reflection info for Send() method on MailMessage
  1225. var sendMethod = typeof(MailMessage).GetMethod("Send", BindingFlags.Instance | BindingFlags.NonPublic);
  1226. sendMethod.Invoke(message, BindingFlags.Instance | BindingFlags.NonPublic, null, new[] { mailWriter, true, true }, null);
  1227. // Finally get reflection info for Close() method on our MailWriter
  1228. var closeMethod = mailWriter.GetType().GetMethod("Close", BindingFlags.Instance | BindingFlags.NonPublic);
  1229. // Call close method
  1230. closeMethod.Invoke(mailWriter, BindingFlags.Instance | BindingFlags.NonPublic, null, new object[] { }, null);
  1231. }
  1232. return filename;
  1233. }
  1234. public static Columns<T> GetColumns<T>(Columns<T>? columns)
  1235. => (GetColumns(typeof(T), columns) as Columns<T>)!;
  1236. public static IColumns GetColumns(Type T, IColumns? columns)
  1237. {
  1238. //var cols = columns;
  1239. if (columns == null || !columns.Any())
  1240. {
  1241. if (!_columnscache.TryGetValue(T, out var result))
  1242. {
  1243. result = Columns.Create(T);
  1244. var props = PropertyList(T,
  1245. x =>
  1246. x.GetCustomAttribute<DoNotSerialize>() == null &&
  1247. x.GetCustomAttribute<DoNotPersist>() == null &&
  1248. x.CanWrite && x.PropertyType != typeof(UserProperties), true);
  1249. foreach (var prop in props)
  1250. result.Add(prop.Key);
  1251. var custom = DatabaseSchema.Properties(T).Where(x => x is CustomProperty);
  1252. foreach (var prop in custom)
  1253. result.Add(prop.Name);
  1254. _columnscache[T] = result;
  1255. }
  1256. return result;
  1257. }
  1258. return columns;
  1259. //{
  1260. // foreach (var col in cols.Items)
  1261. // {
  1262. // try
  1263. // {
  1264. // result.Add(col.Property);
  1265. // //PropertyInfo prop = null;
  1266. // //IProperty iprop = null;
  1267. // //if (col.Property != null)
  1268. // //{
  1269. // // try
  1270. // // {
  1271. // // iprop = DatabaseSchema.Property(typeof(T), col.Property);
  1272. // // }
  1273. // // catch (Exception e2)
  1274. // // {
  1275. // // }
  1276. // // if ((iprop != null) && (iprop is CustomProperty))
  1277. // // result.Add(col.Property);
  1278. // // else
  1279. // // {
  1280. // // prop = CoreUtils.GetProperty(typeof(T), col.Property);
  1281. // // if ((prop.GetCustomAttribute<DoNotSerialize>() == null) && (prop.GetCustomAttribute<DoNotPersist>() == null) && prop.CanWrite)
  1282. // // result.Add(col.Property);
  1283. // // }
  1284. // //}
  1285. // //else
  1286. // //{
  1287. // // String property = CoreUtils.GetFullPropertyName((MemberExpression)col.Expression, ".");
  1288. // // prop = CoreUtils.GetProperty(typeof(T), property);
  1289. // // if ((prop.GetCustomAttribute<DoNotSerialize>() == null) && (prop.GetCustomAttribute<DoNotPersist>() == null) && prop.CanWrite)
  1290. // // result.Add(property);
  1291. // //}
  1292. // }
  1293. // catch (Exception e)
  1294. // {
  1295. // }
  1296. // }
  1297. //}
  1298. //return result;
  1299. }
  1300. public static List<string> GetColumnNames(Type T, Func<PropertyInfo, bool> Predicate)
  1301. {
  1302. //var cols = columns;
  1303. var result = new List<string>();
  1304. var props = PropertyList(T,
  1305. x =>
  1306. x.GetCustomAttribute<DoNotSerialize>() == null &&
  1307. x.GetCustomAttribute<DoNotPersist>() == null &&
  1308. x.CanWrite && x.PropertyType != typeof(UserProperties) && Predicate(x), true);
  1309. foreach (var prop in props)
  1310. result.Add(prop.Key);
  1311. var custom = DatabaseSchema.Properties(T).Where(x => x is CustomProperty);
  1312. foreach (var prop in custom)
  1313. result.Add(prop.Name);
  1314. return result;
  1315. }
  1316. public static string TypedValueToString(object value)
  1317. {
  1318. var type = value.GetType();
  1319. var Culture = CultureInfo.CurrentCulture;
  1320. if (type == typeof(string))
  1321. return (string)value;
  1322. if (type == typeof(string[]))
  1323. return Serialization.Serialize(value);
  1324. if (IsNumeric(type))
  1325. return string.Format(Culture.NumberFormat, "{0}", value);
  1326. // TimeSpan - use constant pattern
  1327. if (type == typeof(TimeSpan))
  1328. return string.Format("{0:c}", value);
  1329. // DateTime - use round-trip pattern
  1330. if (type == typeof(DateTime))
  1331. return string.Format("{0:o}", value);
  1332. if (type == typeof(Guid))
  1333. return ((Guid)value).ToString();
  1334. var converter = TypeDescriptor.GetConverter(type);
  1335. if (converter != null && converter.CanConvertTo(typeof(string)))
  1336. return converter.ConvertToString(value);
  1337. throw new Exception(string.Format("Cannot Convert {0} to String", type.Name));
  1338. }
  1339. public static object? StringToTypedValue(string value, Type type)
  1340. {
  1341. var Culture = CultureInfo.CurrentCulture;
  1342. if (type == typeof(object) && string.IsNullOrEmpty(value))
  1343. return null;
  1344. if (type == typeof(string))
  1345. return value;
  1346. if (type == typeof(string[]))
  1347. return Serialization.Deserialize<string[]>(value);
  1348. if (type == typeof(sbyte))
  1349. return sbyte.Parse(value, NumberStyles.Integer, Culture);
  1350. if (type == typeof(byte))
  1351. return byte.Parse(value, NumberStyles.Integer, Culture);
  1352. if (type == typeof(ushort))
  1353. return ushort.Parse(value, NumberStyles.Integer, Culture);
  1354. if (type == typeof(uint))
  1355. return uint.Parse(value, NumberStyles.Integer, Culture);
  1356. if (type == typeof(ulong))
  1357. return ulong.Parse(value, NumberStyles.Integer, Culture);
  1358. if (type == typeof(short))
  1359. return short.Parse(value, NumberStyles.Integer, Culture);
  1360. if (type == typeof(int))
  1361. return int.Parse(value, NumberStyles.Integer, Culture);
  1362. if (type == typeof(long))
  1363. return long.Parse(value, NumberStyles.Integer, Culture);
  1364. if (type == typeof(float))
  1365. return float.Parse(value, NumberStyles.Any, Culture);
  1366. if (type == typeof(double))
  1367. return double.Parse(value, NumberStyles.Any, Culture);
  1368. if (type == typeof(decimal))
  1369. return decimal.Parse(value, NumberStyles.Any, Culture);
  1370. if (type == typeof(TimeSpan))
  1371. return TimeSpan.ParseExact(value, "c", null);
  1372. if (type == typeof(DateTime))
  1373. return DateTime.ParseExact(value, "o", null);
  1374. if (type == typeof(Guid))
  1375. return Guid.Parse(value);
  1376. var converter = TypeDescriptor.GetConverter(type);
  1377. if (converter != null && converter.CanConvertFrom(typeof(string)))
  1378. return converter.ConvertFromString(value);
  1379. throw new Exception(string.Format("Cannot Convert String to {0}", type.Name));
  1380. }
  1381. public static bool ContainsInheritedGenericType(this Type type, Type generic)
  1382. {
  1383. if (type == null)
  1384. return false;
  1385. if (type.GenericTypeArguments.Contains(generic))
  1386. return true;
  1387. if (type.BaseType == null)
  1388. return false;
  1389. return type.BaseType.ContainsInheritedGenericType(generic);
  1390. }
  1391. public static IEnumerable<Type> GetInheritedGenericTypeArguments(this Type type)
  1392. {
  1393. if (type == null)
  1394. return new Type[] { };
  1395. if (type.GetGenericArguments().Any())
  1396. return type.GenericTypeArguments;
  1397. if (type.BaseType == null)
  1398. return new Type[] { };
  1399. return type.BaseType.GetInheritedGenericTypeArguments();
  1400. }
  1401. //static readonly Regex StripQuotes = new Regex(@"&quot;", RegexOptions.Compiled);
  1402. public static string StripHTML(string html)
  1403. {
  1404. if (string.IsNullOrWhiteSpace(html))
  1405. return "";
  1406. var result = StripHtmlStyles.Replace(html, "");
  1407. result = StripHtmlTags.Replace(result, "");
  1408. result = StripSpecialCharacters.Replace(result, "");
  1409. //result = StripQuotes.Replace(result, "\"");
  1410. result = StripLineBreaks.Replace(result, "$1");
  1411. result = result.Replace("\0", "").Trim();
  1412. return result;
  1413. }
  1414. public static string GetCaption(this Type type, bool usedefault = true)
  1415. {
  1416. var attribute = type.GetCustomAttribute<Caption>();
  1417. var result = attribute != null
  1418. ? attribute.Text
  1419. : usedefault
  1420. ? type.Name
  1421. : "";
  1422. return result;
  1423. }
  1424. public static string SanitiseFileName(string filename)
  1425. {
  1426. var invalidChars = Regex.Escape(new string(Path.GetInvalidFileNameChars()));
  1427. var invalidReStr = string.Format(@"[{0}]+", invalidChars);
  1428. var reservedWords = new[]
  1429. {
  1430. "CON", "PRN", "AUX", "CLOCK$", "NUL", "COM0", "COM1", "COM2", "COM3", "COM4",
  1431. "COM5", "COM6", "COM7", "COM8", "COM9", "LPT0", "LPT1", "LPT2", "LPT3", "LPT4",
  1432. "LPT5", "LPT6", "LPT7", "LPT8", "LPT9"
  1433. };
  1434. var sanitisedNamePart = Regex.Replace(filename, invalidReStr, "_");
  1435. foreach (var reservedWord in reservedWords)
  1436. {
  1437. var reservedWordPattern = string.Format("^{0}\\.", reservedWord);
  1438. sanitisedNamePart = Regex.Replace(sanitisedNamePart, reservedWordPattern, "_reservedWord_.", RegexOptions.IgnoreCase);
  1439. }
  1440. return sanitisedNamePart;
  1441. }
  1442. private static Regex NeatifyRegex = new Regex(@"
  1443. (?<=[A-Z])(?=[A-Z][a-z]) |
  1444. (?<=[^A-Z])(?=[A-Z]) |
  1445. (?<=[A-Za-z])(?=[^A-Za-z])", RegexOptions.IgnorePatternWhitespace);
  1446. public static string Neatify(string caption)
  1447. {
  1448. if (string.Equals(caption, "ID"))
  1449. return caption;
  1450. var result = NeatifyRegex.Replace(caption.Replace(".", ""), " ");
  1451. while (result.Contains(" "))
  1452. result = result.Replace(" ", " ");
  1453. if (result.EndsWith(" ID"))
  1454. result = string.Join(" ", result.Split(' ').Reverse().Skip(1).Reverse());
  1455. return result.Trim();
  1456. }
  1457. private static List<Tuple<Type, String, decimal>> _columnsequences = new List<Tuple<Type, string, decimal>>();
  1458. public static decimal GetPropertySequence(Type type, string column)
  1459. {
  1460. var tuple = _columnsequences.FirstOrDefault(x => Type.Equals(x.Item1, type) && String.Equals(x.Item2, column));
  1461. if (tuple == null)
  1462. {
  1463. decimal result = 0.0M;
  1464. var customprop = DatabaseSchema.Property(type, column);
  1465. if (customprop != null && customprop is CustomProperty)
  1466. {
  1467. result = customprop.Sequence;
  1468. }
  1469. else
  1470. {
  1471. var bits = column.Split('.');
  1472. for (var i = 0; i < bits.Length; i++)
  1473. {
  1474. var sProp = string.Join(".", bits.Take(bits.Length - i));
  1475. PropertyInfo? prop = null;
  1476. try
  1477. {
  1478. prop = GetProperty(type, sProp);
  1479. }
  1480. catch (Exception e)
  1481. {
  1482. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  1483. }
  1484. if (prop != null)
  1485. {
  1486. result = prop.GetSequence() + (result / 1000.0M);
  1487. }
  1488. else
  1489. {
  1490. var cprop = DatabaseSchema.Property(type, sProp);
  1491. if (cprop != null)
  1492. result = cprop.Sequence;
  1493. else
  1494. result = result / 1000.0M;
  1495. }
  1496. }
  1497. //result = double.MinValue + result;
  1498. }
  1499. _columnsequences.Add(new Tuple<Type, string, decimal>(type, column, result));
  1500. return result;
  1501. }
  1502. else
  1503. return tuple.Item3;
  1504. }
  1505. /// <summary>
  1506. /// Gets the AppData folder for this application.
  1507. /// </summary>
  1508. /// <returns>The path of the AppData folder.</returns>
  1509. public static string GetPath()
  1510. {
  1511. if (Assembly.GetEntryAssembly() != null)
  1512. return Path.Combine(
  1513. Environment.GetFolderPath(Environment.SpecialFolder.ApplicationData),
  1514. Path.GetFileNameWithoutExtension(Assembly.GetEntryAssembly().Location)
  1515. );
  1516. return Path.Combine(
  1517. Environment.GetFolderPath(Environment.SpecialFolder.ApplicationData),
  1518. Path.GetFileNameWithoutExtension(Assembly.GetExecutingAssembly().Location)
  1519. );
  1520. }
  1521. public static string GetCommonAppData(string? folderName = null)
  1522. {
  1523. folderName ??= Assembly.GetEntryAssembly() != null
  1524. ? Path.GetFileNameWithoutExtension(Assembly.GetEntryAssembly().Location)
  1525. : Path.GetFileNameWithoutExtension(Assembly.GetExecutingAssembly().Location);
  1526. return Path.Combine(
  1527. Environment.GetFolderPath(Environment.SpecialFolder.CommonApplicationData),
  1528. folderName
  1529. );
  1530. }
  1531. public static string GetVersion()
  1532. {
  1533. // 2022-10-13 FVB First look in the executable directory
  1534. var curfile = Path.Combine(AppDomain.CurrentDomain.BaseDirectory, "version.txt");
  1535. if (File.Exists(curfile))
  1536. return File.ReadAllText(curfile);
  1537. // Then look in the app data directory if you cannot find it
  1538. curfile = Path.Combine(GetPath(), "version.txt");
  1539. if (File.Exists(curfile))
  1540. return File.ReadAllText(curfile);
  1541. return "???";
  1542. }
  1543. public static string SplitCamelCase(this string value)
  1544. {
  1545. return string.Join(" ", Regex.Split(value, @"(?<!^)(?=[A-Z](?![A-Z]|$))")).Replace(" ", " ");
  1546. }
  1547. public static bool IsEffectivelyEqual(double a, double b, double threshold = 0.00001F)
  1548. {
  1549. return Math.Abs(a - b) < threshold;
  1550. }
  1551. public static bool IsEntityLinkValid<T, U>(this CoreRow arg, Expression<Func<T, U>> expression) where U : IEntityLink
  1552. {
  1553. var col = CoreUtils.GetFullPropertyName(expression, ".");
  1554. return arg.Get<Guid>(col + ".ID") != Guid.Empty && arg.Get<Guid>(col + ".Deleted") == Guid.Empty;
  1555. }
  1556. /// <summary>
  1557. /// Gets the ID of an entity link of an entity, doing a validity check (see <see cref="IsEntityLinkValid{T, U}(CoreRow, Expression{Func{T, U}})"/>)
  1558. /// </summary>
  1559. /// <typeparam name="T">The entity type</typeparam>
  1560. /// <typeparam name="U">The entity link type</typeparam>
  1561. /// <param name="arg">The row representing the entity of type <typeparamref name="T"/></param>
  1562. /// <param name="expression">An expression to the entity link of type <typeparamref name="U"/></param>
  1563. /// <returns>The ID on the entity link, or <c>null</c> if the entity link is invalid</returns>
  1564. public static Guid? EntityLinkID<T, U>(this CoreRow arg, Expression<Func<T, U>> expression) where U : IEntityLink
  1565. {
  1566. var col = CoreUtils.GetFullPropertyName(expression, ".");
  1567. var id = arg.Get<Guid>(col + ".ID");
  1568. if (id != Guid.Empty && arg.Get<Guid>(col + ".Deleted") == Guid.Empty)
  1569. return id;
  1570. return null;
  1571. }
  1572. public static Filter<T> LinkValid<T>(this Filter<T> filter, Guid entityID = default)
  1573. {
  1574. var mExp = filter.Expression as MemberExpression;
  1575. if (mExp == null)
  1576. throw new ArgumentException("Filter expression is not a MemberExpression");
  1577. var idExp = Expression.PropertyOrField(mExp, "ID");
  1578. var deletedExp = Expression.PropertyOrField(mExp, "Deleted");
  1579. filter.Expression = idExp;
  1580. if (entityID != Guid.Empty)
  1581. filter.IsEqualTo(entityID);
  1582. else
  1583. filter.IsNotEqualTo(Guid.Empty);
  1584. var delFilter = new Filter<T>();
  1585. delFilter.Expression = deletedExp;
  1586. delFilter.IsEqualTo(Guid.Empty);
  1587. filter.And(delFilter);
  1588. return filter.Parent ?? filter;
  1589. }
  1590. public static Filter<T> NotLinkValid<T>(this Filter<T> filter)
  1591. {
  1592. var mExp = filter.Expression as MemberExpression;
  1593. if (mExp == null)
  1594. throw new ArgumentException("Filter expression is not a MemberExpression");
  1595. filter.All();
  1596. var subFilter = new Filter<T>();
  1597. var idExp = Expression.PropertyOrField(mExp, "ID");
  1598. var deletedExp = Expression.PropertyOrField(mExp, "Deleted");
  1599. subFilter.Expression = idExp;
  1600. subFilter.IsEqualTo(Guid.Empty);
  1601. var delFilter = new Filter<T>();
  1602. delFilter.Expression = deletedExp;
  1603. delFilter.IsNotEqualTo(Guid.Empty);
  1604. subFilter.Or(delFilter);
  1605. filter.And(subFilter);
  1606. return filter.Parent ?? filter;
  1607. }
  1608. #region DeepClone Utility
  1609. //public static object Clone(object from)
  1610. //{
  1611. // if (from == null)
  1612. // throw new ArgumentNullException("Source is null");
  1613. // if (into == null)
  1614. // throw new ArgumentNullException("Target is null");
  1615. // return DoClone(from, null);
  1616. //}
  1617. /// <summary>
  1618. /// Get the deep clone of an object.
  1619. /// </summary>
  1620. /// <typeparam name="T">The type of the obj.</typeparam>
  1621. /// <param name="from">It is the object used to deep clone.</param>
  1622. /// <returns>Return the deep clone.</returns>
  1623. public static T Clone<T>(T from, T into) where T : new()
  1624. {
  1625. if (from == null)
  1626. throw new ArgumentNullException("Source is null");
  1627. return (T)DoClone(from, into);
  1628. }
  1629. private static FieldInfo[] GetFieldInfosIncludingBaseClasses(Type type, BindingFlags bindingFlags)
  1630. {
  1631. var fieldInfos = type.GetFields(bindingFlags);
  1632. // If this class doesn't have a base, don't waste any time
  1633. if (type.BaseType == null ||
  1634. type.BaseType == typeof(object)) return fieldInfos; // Otherwise, collect all types up to the furthest base class
  1635. var currentType = type;
  1636. var fieldComparer = new FieldInfoComparer();
  1637. var fieldInfoList = new HashSet<FieldInfo>(fieldInfos, fieldComparer);
  1638. while (currentType != typeof(object))
  1639. {
  1640. fieldInfos = currentType.GetFields(bindingFlags);
  1641. fieldInfoList.UnionWith(fieldInfos);
  1642. currentType = currentType.BaseType;
  1643. }
  1644. return fieldInfoList.ToArray();
  1645. }
  1646. private class FieldInfoComparer : IEqualityComparer<FieldInfo>
  1647. {
  1648. public bool Equals(FieldInfo x, FieldInfo y)
  1649. {
  1650. return x.DeclaringType == y.DeclaringType && x.Name == y.Name;
  1651. }
  1652. public int GetHashCode(FieldInfo obj)
  1653. {
  1654. return obj.Name.GetHashCode() ^ obj.DeclaringType.GetHashCode();
  1655. }
  1656. }
  1657. /// <summary>
  1658. /// The method implements deep clone using reflection.
  1659. /// </summary>
  1660. /// <param name="from">It is the object used to deep clone.</param>
  1661. /// <returns>Return the deep clone.</returns>
  1662. private static object? DoClone(object from, object? into = null)
  1663. {
  1664. if (from == null) return null;
  1665. if (from is MulticastDelegate)
  1666. return null;
  1667. var type = from.GetType();
  1668. // If the type of object is the value type, we will always get a new object when
  1669. // the original object is assigned to another variable. So if the type of the
  1670. // object is primitive or enum, we just return the object. We will process the
  1671. // struct type subsequently because the struct type may contain the reference
  1672. // fields.
  1673. // If the string variables contain the same chars, they always refer to the same
  1674. // string in the heap. So if the type of the object is string, we also return the
  1675. // object.
  1676. if (type.GetTypeInfo().IsPrimitive || type.GetTypeInfo().IsEnum || type == typeof(string)) return from;
  1677. // If the type of the object is the Array, we use the CreateInstance method to get
  1678. // a new instance of the array. We also process recursively this method in the
  1679. // elements of the original array because the type of the element may be the reference
  1680. // type.
  1681. if (type.IsArray)
  1682. {
  1683. var basename = type.FullName.Replace("[]", string.Empty);
  1684. var typeElement = Type.GetType(basename);
  1685. if (typeElement == null)
  1686. typeElement = FindType(basename);
  1687. var array = (from as Array)!; // not-null because type.IsArray
  1688. var copiedArray = Array.CreateInstance(typeElement, array.Length);
  1689. for (var i = 0; i < array.Length; i++)
  1690. // Get the deep clone of the element in the original array and assign the
  1691. // clone to the new array.
  1692. copiedArray.SetValue(DoClone(array.GetValue(i)), i);
  1693. return copiedArray;
  1694. }
  1695. // If the type of the object is class or struct, it may contain the reference fields,
  1696. // so we use reflection and process recursively this method in the fields of the object
  1697. // to get the deep clone of the object.
  1698. // We use Type.IsValueType method here because there is no way to indicate directly whether
  1699. // the Type is a struct type.
  1700. if (type.GetTypeInfo().IsClass || type.GetTypeInfo().IsValueType)
  1701. {
  1702. var copiedObject = into;
  1703. if (copiedObject == null)
  1704. try
  1705. {
  1706. copiedObject = Activator.CreateInstance(from.GetType());
  1707. }
  1708. catch (Exception e)
  1709. {
  1710. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  1711. }
  1712. if (copiedObject != null)
  1713. {
  1714. // Get all FieldInfo.
  1715. var fields = GetFieldInfosIncludingBaseClasses(type.GetTypeInfo(),
  1716. BindingFlags.Public | BindingFlags.NonPublic | BindingFlags.Instance);
  1717. foreach (var field in fields.Where(x => !x.IsNotSerialized))
  1718. {
  1719. var fieldValue = field.GetValue(from);
  1720. if (fieldValue != null)
  1721. // Get the deep clone of the field in the original object and assign the
  1722. // clone to the field in the new object.
  1723. field.SetValue(copiedObject, DoClone(fieldValue));
  1724. }
  1725. }
  1726. return copiedObject;
  1727. }
  1728. throw new ArgumentException("The object is unknown type");
  1729. }
  1730. #endregion
  1731. #region DeepCompare Utility
  1732. public static bool CompareObjects(string prefix, object inputObjectA, object inputObjectB, string[] ignorePropertiesList,
  1733. List<Tuple<string, object?, object?>> results)
  1734. {
  1735. var areObjectsEqual = true;
  1736. //check if both objects are not null before starting comparing children
  1737. if (inputObjectA != null && inputObjectB != null)
  1738. {
  1739. //create variables to store object values
  1740. object value1, value2;
  1741. var properties = inputObjectA.GetType().GetProperties(BindingFlags.Public | BindingFlags.Instance);
  1742. //get all public properties of the object using reflection
  1743. foreach (var propertyInfo in properties)
  1744. {
  1745. var name = string.IsNullOrWhiteSpace(prefix) ? propertyInfo.Name : prefix + "." + propertyInfo.Name;
  1746. //if it is not a readable property or if it is a ignorable property
  1747. //ingore it and move on
  1748. if (!propertyInfo.CanRead || ignorePropertiesList.Contains(name))
  1749. continue;
  1750. //get the property values of both the objects
  1751. value1 = propertyInfo.GetValue(inputObjectA, null);
  1752. value2 = propertyInfo.GetValue(inputObjectB, null);
  1753. // if the objects are primitive types such as (integer, string etc)
  1754. //that implement IComparable, we can just directly try and compare the value
  1755. if (IsAssignableFrom(propertyInfo.PropertyType) || IsPrimitiveType(propertyInfo.PropertyType) ||
  1756. IsValueType(propertyInfo.PropertyType))
  1757. {
  1758. //compare the values
  1759. if (!CompareValues(name, value1, value2, results))
  1760. {
  1761. Console.WriteLine("Property Name {0}", propertyInfo.Name);
  1762. areObjectsEqual = false;
  1763. }
  1764. }
  1765. //if the property is a collection (or something that implements IEnumerable)
  1766. //we have to iterate through all items and compare values
  1767. else if (IsEnumerableType(propertyInfo.PropertyType))
  1768. {
  1769. Console.WriteLine("Property Name {0}", propertyInfo.Name);
  1770. if (!CompareEnumerations(name, value1, value2, ignorePropertiesList, results))
  1771. areObjectsEqual = false;
  1772. }
  1773. //if it is a class object, call the same function recursively again
  1774. else if (propertyInfo.PropertyType.IsClass)
  1775. {
  1776. if (!CompareObjects(name, propertyInfo.GetValue(inputObjectA, null), propertyInfo.GetValue(inputObjectB, null),
  1777. ignorePropertiesList, results))
  1778. areObjectsEqual = false;
  1779. }
  1780. else
  1781. {
  1782. areObjectsEqual = false;
  1783. }
  1784. }
  1785. }
  1786. else
  1787. {
  1788. areObjectsEqual = false;
  1789. }
  1790. return areObjectsEqual;
  1791. }
  1792. //true if c and the current Type represent the same type, or if the current Type is in the inheritance
  1793. //hierarchy of c, or if the current Type is an interface that c implements,
  1794. //or if c is a generic type parameter and the current Type represents one of the constraints of c. false if none of these conditions are true, or if c is null.
  1795. private static bool IsAssignableFrom(Type type)
  1796. {
  1797. return typeof(IComparable).IsAssignableFrom(type);
  1798. }
  1799. private static bool IsPrimitiveType(Type type)
  1800. {
  1801. return type.IsPrimitive;
  1802. }
  1803. private static bool IsValueType(Type type)
  1804. {
  1805. return type.IsValueType;
  1806. }
  1807. private static bool IsEnumerableType(Type type)
  1808. {
  1809. return typeof(IEnumerable).IsAssignableFrom(type);
  1810. }
  1811. /// <summary>
  1812. /// Compares two values and returns if they are the same.
  1813. /// </summary>
  1814. private static bool CompareValues(string name, object? value1, object? value2, List<Tuple<string, object?, object?>> results)
  1815. {
  1816. var areValuesEqual = true;
  1817. var selfValueComparer = value1 as IComparable;
  1818. // one of the values is null
  1819. if ((value1 == null && value2 != null) || (value1 != null && value2 == null))
  1820. areValuesEqual = false;
  1821. else if (selfValueComparer != null && selfValueComparer.CompareTo(value2) != 0)
  1822. areValuesEqual = false;
  1823. else if (!Equals(value1, value2))
  1824. areValuesEqual = false;
  1825. if (!areValuesEqual)
  1826. results.Add(new Tuple<string, object?, object?>(name, value1, value2));
  1827. return areValuesEqual;
  1828. }
  1829. private static bool CompareEnumerations(string name, object value1, object value2, string[] ignorePropertiesList,
  1830. List<Tuple<string, object?, object?>> results)
  1831. {
  1832. // if one of the values is null, no need to proceed return false;
  1833. if (value1 == null && value2 != null)
  1834. {
  1835. results.Add(new Tuple<string, object?, object?>(string.Format("{0}.Null", name), true, false));
  1836. return false;
  1837. }
  1838. if (value1 != null && value2 == null)
  1839. {
  1840. results.Add(new Tuple<string, object?, object?>(string.Format("{0}.Null", name), false, true));
  1841. return false;
  1842. }
  1843. if (value1 != null && value2 != null)
  1844. {
  1845. IEnumerable<object> enumValue1, enumValue2;
  1846. enumValue1 = ((IEnumerable)value1).Cast<object>();
  1847. enumValue2 = ((IEnumerable)value2).Cast<object>();
  1848. // if the items count are different return false
  1849. if (enumValue1.Count() != enumValue2.Count())
  1850. {
  1851. results.Add(new Tuple<string, object?, object?>(string.Format("{0}.Count", name), enumValue1.Count(), enumValue2.Count()));
  1852. return false;
  1853. }
  1854. // if the count is same, compare individual item
  1855. object enumValue1Item, enumValue2Item;
  1856. Type enumValue1ItemType;
  1857. for (var itemIndex = 0; itemIndex < enumValue1.Count(); itemIndex++)
  1858. {
  1859. enumValue1Item = enumValue1.ElementAt(itemIndex);
  1860. enumValue2Item = enumValue2.ElementAt(itemIndex);
  1861. enumValue1ItemType = enumValue1Item.GetType();
  1862. if (IsAssignableFrom(enumValue1ItemType) || IsPrimitiveType(enumValue1ItemType) || IsValueType(enumValue1ItemType))
  1863. {
  1864. if (!CompareValues(string.Format("{0}[{1}]", name, itemIndex), enumValue1Item, enumValue2Item, results))
  1865. return false;
  1866. }
  1867. else if (!CompareObjects(name, enumValue1Item, enumValue2Item, ignorePropertiesList, results))
  1868. {
  1869. return false;
  1870. }
  1871. }
  1872. }
  1873. return true;
  1874. }
  1875. #endregion
  1876. #region Expression Serialisation
  1877. public static string MemberExpressionToString(MemberExpression mExpression)
  1878. {
  1879. var mOriginal = mExpression;
  1880. var path = "";
  1881. while (true)
  1882. {
  1883. if (mExpression.Expression.NodeType == ExpressionType.MemberAccess)
  1884. {
  1885. var propInfo = mExpression.Expression
  1886. .GetType().GetTypeInfo().GetProperty("Member");
  1887. var propValue = (propInfo.GetValue(mExpression.Expression, null) as PropertyInfo)!;
  1888. path = propValue.Name + "." + path;
  1889. mExpression = (mExpression.Expression as MemberExpression)!;
  1890. }
  1891. else if (mExpression.Expression.NodeType == ExpressionType.Convert)
  1892. {
  1893. mExpression = MemberExpression.PropertyOrField((mExpression.Expression as UnaryExpression)?.Operand as MemberExpression, mExpression.Member.Name);
  1894. }
  1895. else
  1896. {
  1897. break;
  1898. }
  1899. }
  1900. return path + mOriginal.Member.Name;
  1901. }
  1902. private enum SerialisedExpressionType
  1903. {
  1904. Member,
  1905. Index,
  1906. Parameter
  1907. }
  1908. public static void SerialiseExpression(this CoreBinaryWriter writer, Type t, Expression expression, bool includeType)
  1909. {
  1910. if (includeType)
  1911. {
  1912. writer.Write(t.EntityName());
  1913. }
  1914. if (expression.NodeType == ExpressionType.MemberAccess)
  1915. {
  1916. writer.Write((byte)SerialisedExpressionType.Member);
  1917. writer.Write(MemberExpressionToString((expression as MemberExpression)!));
  1918. }
  1919. else if (expression.NodeType == ExpressionType.Index)
  1920. {
  1921. writer.Write((byte)SerialisedExpressionType.Index);
  1922. var iexp = (IndexExpression)expression;
  1923. var sexp = expression.ToString().Split('[');
  1924. writer.Write(sexp[0]); // Member
  1925. writer.Write(sexp[1].Replace("]", "").Replace("\"", "")); // Key
  1926. }
  1927. else
  1928. {
  1929. writer.Write((byte)SerialisedExpressionType.Parameter);
  1930. }
  1931. }
  1932. public static Expression DeserialiseExpression(this CoreBinaryReader reader, Type t)
  1933. {
  1934. var expressionType = (SerialisedExpressionType)reader.ReadByte();
  1935. switch (expressionType)
  1936. {
  1937. case SerialisedExpressionType.Member:
  1938. var member = reader.ReadString();
  1939. return CreateMemberExpression(t, member);
  1940. case SerialisedExpressionType.Index:
  1941. member = reader.ReadString();
  1942. var key = reader.ReadString();
  1943. return CreateIndexExpression(t, member, key);
  1944. case SerialisedExpressionType.Parameter:
  1945. default:
  1946. return Expression.Parameter(t, "x");
  1947. }
  1948. }
  1949. /// <summary>
  1950. /// Deserialise the expression, with type information included in the serialised form.
  1951. /// </summary>
  1952. /// <param name="reader"></param>
  1953. /// <returns></returns>
  1954. public static Expression DeserialiseExpression(this CoreBinaryReader reader)
  1955. {
  1956. var entityName = reader.ReadString();
  1957. var t = GetEntity(entityName);
  1958. return reader.DeserialiseExpression(t);
  1959. }
  1960. public static string ExpressionToString(Type t, Expression expression)
  1961. {
  1962. if (expression.NodeType == ExpressionType.MemberAccess)
  1963. {
  1964. var mexp = (MemberExpression)expression;
  1965. var morg = (MemberExpression)expression;
  1966. var Path = "";
  1967. while (mexp.Expression.NodeType == ExpressionType.MemberAccess)
  1968. {
  1969. var propInfo = mexp.Expression
  1970. .GetType().GetTypeInfo().GetProperty("Member");
  1971. var propValue = propInfo.GetValue(mexp.Expression, null)
  1972. as PropertyInfo;
  1973. Path = propValue.Name + "." + Path;
  1974. mexp = mexp.Expression as MemberExpression;
  1975. }
  1976. return Path + morg.Member.Name;
  1977. }
  1978. else if (expression.NodeType == ExpressionType.Index)
  1979. {
  1980. var iexp = (IndexExpression)expression;
  1981. var sexp = expression.ToString().Split('[');
  1982. return sexp[0];
  1983. }
  1984. return expression.ToString();
  1985. }
  1986. public static string ExpressionToString(Type t, Expression expression, bool includetype)
  1987. {
  1988. var result = new Dictionary<string, string>();
  1989. if (expression.NodeType == ExpressionType.MemberAccess)
  1990. {
  1991. var mexp = (expression as MemberExpression)!;
  1992. result["Member"] = MemberExpressionToString(mexp);
  1993. }
  1994. else if (expression.NodeType == ExpressionType.Index)
  1995. {
  1996. var iexp = (IndexExpression)expression;
  1997. var sexp = expression.ToString().Split('[');
  1998. result["Member"] = sexp[0];
  1999. result["Key"] = sexp[1].Replace("]", "").Replace("\"", "");
  2000. }
  2001. result["Type"] = t.EntityName();
  2002. return JsonConvert.SerializeObject(result);
  2003. //ExpressionSerializer ser = new ExpressionSerializer(new Serialize.Linq.Serializers.JsonSerializer(),new Serialize.Linq.Factories.FactorySettings() { UseRelaxedTypeNames=true } );
  2004. //String result = ser.SerializeText(expression);
  2005. //return result;
  2006. //if (expression.NodeType == ExpressionType.MemberAccess)
  2007. //{
  2008. // MemberExpression memberExpression = expression as MemberExpression;
  2009. // MemberExpression memberExpressionOrg = memberExpression as MemberExpression;
  2010. // string Path = "";
  2011. // while (memberExpression.Expression.NodeType == ExpressionType.MemberAccess)
  2012. // {
  2013. // var propInfo = memberExpression.Expression
  2014. // .GetType().GetTypeInfo().GetProperty("Member");
  2015. // var propValue = propInfo.GetValue(memberExpression.Expression, null)
  2016. // as PropertyInfo;
  2017. // Path = propValue.Name + "." + Path;
  2018. // memberExpression = memberExpression.Expression as MemberExpression;
  2019. // }
  2020. // if (includetype)
  2021. // return t.FullName + " => " + Path + memberExpressionOrg.Member.Name;
  2022. // else
  2023. // return Path + memberExpressionOrg.Member.Name;
  2024. //}
  2025. //else if (expression.NodeType == ExpressionType.Index)
  2026. //{
  2027. // if (includetype)
  2028. // return t.FullName + " => " + expression.ToString();
  2029. // else
  2030. // return expression.ToString();
  2031. //}
  2032. //else
  2033. //{
  2034. // if (includetype)
  2035. // return t.FullName + " => " + expression.ToString();
  2036. // else
  2037. // return expression.ToString();
  2038. //}
  2039. }
  2040. public static Expression StringToExpression(string expression)
  2041. {
  2042. var comps = JsonConvert.DeserializeObject<Dictionary<string, string>>(expression);
  2043. var t = GetEntity(comps["Type"]);
  2044. if (comps.TryGetValue("Key", out var key))
  2045. return CreateIndexExpression(t, comps["Member"], key);
  2046. else if (comps.TryGetValue("Member", out var member))
  2047. return CreateMemberExpression(t, member);
  2048. else
  2049. return Expression.Parameter(t, "x");
  2050. //ExpressionSerializer ser = new ExpressionSerializer(new Serialize.Linq.Serializers.JsonSerializer(), new Serialize.Linq.Factories.FactorySettings() { UseRelaxedTypeNames = true });
  2051. //Expression result = ser.DeserializeText(expression);
  2052. //return result;
  2053. //String[] comps = expression.Split(new String[] { " => " }, StringSplitOptions.None);
  2054. //Type type = comps.Length > 1 ? CoreUtils.GetEntity(comps[0]) : t;
  2055. //return CreateExpression(type, comps[comps.Length - 1]);
  2056. }
  2057. public static Expression<Func<T, object?>> CreateLambdaExpression<T>(string column)
  2058. {
  2059. var parameter = Expression.Parameter(typeof(T), "x");
  2060. var property = CreateMemberExpression(typeof(T), column);
  2061. var converted = Expression.Convert(property, typeof(object));
  2062. //var property = Expression.Convert(Expression.Property(parameter, column),typeof(object));
  2063. return Expression.Lambda<Func<T, object?>>(converted, parameter);
  2064. }
  2065. public static Expression ConvertExpression(Type source, Expression lambda, Type target, Expression anchor)
  2066. {
  2067. var parent = ExpressionToString(target, anchor, false);
  2068. var child = ExpressionToString(source, lambda, false);
  2069. var property = string.Join(".", parent, child);
  2070. return CreateMemberExpression(target, property);
  2071. }
  2072. public static Expression CreateMemberExpression(Type type, string propertyName)
  2073. {
  2074. var param = Expression.Parameter(type, "x");
  2075. Expression body = param;
  2076. foreach (var member in propertyName.Split('.')) body = Expression.PropertyOrField(body, member);
  2077. return (MemberExpression)body;
  2078. }
  2079. public static IndexExpression CreateIndexExpression(Type type, string propertyname, string key)
  2080. {
  2081. var param = Expression.Parameter(type, "x");
  2082. var propmod = propertyname.Replace("x.", "").Replace(".Item", "");
  2083. var bar = Expression.Property(param, propmod);
  2084. var dictionaryType = type.GetProperty(propmod).PropertyType;
  2085. var indexerProp = dictionaryType.GetProperty("Item");
  2086. var dictKeyConstant = Expression.Constant(key);
  2087. var dictAccess = Expression.MakeIndex(bar, indexerProp, new[] { dictKeyConstant });
  2088. return dictAccess;
  2089. //var propertyType = indexerProp.PropertyType;
  2090. //var right = Expression.Constant(Convert.ChangeType("newValue", propertyType));
  2091. //var expression = Expression.MakeBinary(ExpressionType.Equal, dictAccess, right);
  2092. }
  2093. public static MemberExpression ExtractMemberExpression<T>(Expression<Func<T, object?>> expression)
  2094. {
  2095. if(!TryFindMemberExpression(expression.Body, out var me))
  2096. {
  2097. throw new Exception("Expression is not a member expression!");
  2098. }
  2099. return me;
  2100. }
  2101. public static MemberExpression ExtractMemberExpression<T, TValue>(Expression<Func<T, TValue>> expression)
  2102. {
  2103. TryFindMemberExpression(expression.Body, out var me);
  2104. return me;
  2105. }
  2106. public static MemberExpression ExtractMemberExpression(Expression expression)
  2107. {
  2108. TryFindMemberExpression(Expression.Lambda(expression).Body, out var me);
  2109. return me;
  2110. }
  2111. #endregion
  2112. public static string FormatException(Exception err)
  2113. {
  2114. var messages = new List<string>();
  2115. var e2 = err;
  2116. while (e2 != null)
  2117. {
  2118. messages.InsertRange(0, new[] { e2.Message, e2.StackTrace, "============================================" });
  2119. e2 = e2.InnerException;
  2120. }
  2121. return string.Join("\n", messages);
  2122. }
  2123. #region OneToMany Relationships
  2124. public static Type? GetOneToMany(Type TMany, Type TOne)
  2125. {
  2126. var o2m = TMany.GetInterfaces().FirstOrDefault(i =>
  2127. i.IsGenericType && i.GetGenericTypeDefinition() == typeof(IOneToMany<>)
  2128. && i.GenericTypeArguments.Contains(TOne)
  2129. );
  2130. return o2m;
  2131. }
  2132. public static PropertyInfo GetOneToManyProperty(Type TMany, Type TOne)
  2133. {
  2134. return TMany.GetProperties().FirstOrDefault(x =>
  2135. x.PropertyType.GetInterfaces().Contains(typeof(IEntityLink))
  2136. && x.PropertyType.GetInheritedGenericTypeArguments().FirstOrDefault() == TOne
  2137. && !Attribute.IsDefined(x, typeof(ObsoleteAttribute))
  2138. );
  2139. }
  2140. #endregion
  2141. #region ManyToMany Relationships
  2142. public static Type? GetManyToMany(Type TManyToMany, Type TThis)
  2143. {
  2144. var m2m = TManyToMany.GetInterfaces().FirstOrDefault(i =>
  2145. i.IsGenericType && i.GetGenericTypeDefinition() == typeof(IManyToMany<,>)
  2146. && i.GenericTypeArguments.Contains(TThis)
  2147. );
  2148. return m2m;
  2149. }
  2150. public static Type GetManyToManyOtherType(Type TManyToMany, Type TThis)
  2151. {
  2152. var m2m = TManyToMany.GetInterfaces().FirstOrDefault(i =>
  2153. i.IsGenericType && i.GetGenericTypeDefinition() == typeof(IManyToMany<,>)
  2154. && i.GenericTypeArguments.Contains(TThis)
  2155. );
  2156. return m2m.GenericTypeArguments.FirstOrDefault(x => x != TThis);
  2157. }
  2158. public static PropertyInfo GetManyToManyThisProperty(Type TManyToMany, Type TThis)
  2159. {
  2160. return TManyToMany.GetProperties().FirstOrDefault(x =>
  2161. x.PropertyType.GetInterfaces().Contains(typeof(IEntityLink))
  2162. && x.PropertyType.GetInheritedGenericTypeArguments().FirstOrDefault() == TThis
  2163. && !Attribute.IsDefined(x, typeof(ObsoleteAttribute))
  2164. );
  2165. }
  2166. public static PropertyInfo GetManyToManyOtherProperty(Type TManyToMany, Type TThis)
  2167. {
  2168. var otherType = GetManyToManyOtherType(TManyToMany, TThis);
  2169. return TManyToMany.GetProperties().FirstOrDefault(x =>
  2170. x.PropertyType.GetInterfaces().Contains(typeof(IEntityLink))
  2171. && x.PropertyType.GetInheritedGenericTypeArguments().FirstOrDefault() == otherType
  2172. && !Attribute.IsDefined(x, typeof(ObsoleteAttribute))
  2173. );
  2174. }
  2175. #endregion
  2176. /// <summary>
  2177. /// Get a dictionary of values representing the current state of an entity
  2178. /// </summary>
  2179. /// <param name="item">The Entity being scanned</param>
  2180. /// <param name="props">The list of properties to scan, or null for all</param>
  2181. /// <returns>A dictionary containing the properties and values for the entity</returns>
  2182. public static Dictionary<string, object?> GetValues(BaseObject item, IEnumerable<IProperty>? props = null)
  2183. {
  2184. var result = new Dictionary<string, object?>();
  2185. props ??= DatabaseSchema.Properties(item.GetType());//.Where(x => !(x.Editor is NullEditor));
  2186. foreach (var prop in props)
  2187. if (prop is CustomProperty)
  2188. try
  2189. {
  2190. result[prop.Name] = item.UserProperties[prop.Name];
  2191. }
  2192. catch (Exception e)
  2193. {
  2194. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  2195. }
  2196. else
  2197. try
  2198. {
  2199. object? value;
  2200. var getter = prop.Getter();
  2201. if (getter != null)
  2202. value = getter.Invoke(item);
  2203. else
  2204. value = CoreUtils.GetPropertyValue(item, prop.Name);
  2205. result[prop.Name] = value;
  2206. }
  2207. catch (Exception e)
  2208. {
  2209. Logger.Send(LogType.Error, "", string.Format("*** Unknown Error: {0}\n{1}", e.Message, e.StackTrace));
  2210. }
  2211. return result;
  2212. }
  2213. /// <summary>
  2214. /// Given a certain entity, merge the changes with the current state of the entity into an updated list
  2215. /// </summary>
  2216. /// <param name="item">Th Entity being updated</param>
  2217. /// <param name="previous">The previous set of changes to this entity</param>
  2218. /// <param name="props">The list of properties to scan, or null for all</param>
  2219. /// <param name="changes">The resulting updated list of changes</param>
  2220. public static void MergeChanges(Dictionary<string, object?> previous, Dictionary<string, object?> current, Dictionary<string, object?> changes)
  2221. {
  2222. foreach (var key in previous.Keys)
  2223. if (previous[key] == null)
  2224. {
  2225. if (current[key] != null)
  2226. changes[key] = current[key];
  2227. }
  2228. else
  2229. {
  2230. if (current[key] == null)
  2231. changes[key] = current[key];
  2232. else if (!object.Equals(previous[key], current[key]))
  2233. changes[key] = current[key];
  2234. }
  2235. }
  2236. public static Dictionary<String, object?> MonitorChanges<T>(T item, Action action, Dictionary<String, object?>? changes = null, IEnumerable<IProperty>? props = null) where T : BaseObject
  2237. {
  2238. var result = changes == null
  2239. ? new Dictionary<String, object?>()
  2240. : changes;
  2241. var previous = GetValues(item, props);
  2242. action.Invoke();
  2243. var current = GetValues(item, props);
  2244. MergeChanges(previous, current, result);
  2245. return result;
  2246. }
  2247. public static string Codify(string? text)
  2248. {
  2249. char[] numbers = new char[] { '0', '1', '2', '3', '4', '5', '6', '7', '8', '9' };
  2250. if (string.IsNullOrWhiteSpace(text))
  2251. return "??";
  2252. var result = "";
  2253. var comps = text.ToUpper().Split(' ');
  2254. foreach (var comp in comps)
  2255. {
  2256. List<char> chars = new List<char>();
  2257. foreach (char c in comp.ToCharArray())
  2258. {
  2259. chars.Add(c);
  2260. if (!numbers.Contains(c))
  2261. break;
  2262. }
  2263. var comb = new String(chars.ToArray());
  2264. result += comb;
  2265. }
  2266. return string.IsNullOrWhiteSpace(result) ? "??" : result;
  2267. }
  2268. public static DateTime StartOfWeek(this DateTime dt, DayOfWeek startOfWeek)
  2269. {
  2270. int diff = (7 + (dt.DayOfWeek - startOfWeek)) % 7;
  2271. return dt.AddDays(-1 * diff).Date;
  2272. }
  2273. }
  2274. }