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CommandService.cs 15 kB

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  1. using Discord.Commands.Builders;
  2. using Discord.Logging;
  3. using System;
  4. using System.Collections.Concurrent;
  5. using System.Collections.Generic;
  6. using System.Collections.Immutable;
  7. using System.Linq;
  8. using System.Reflection;
  9. using System.Threading;
  10. using System.Threading.Tasks;
  11. namespace Discord.Commands
  12. {
  13. public class CommandService
  14. {
  15. public event Func<LogMessage, Task> Log { add { _logEvent.Add(value); } remove { _logEvent.Remove(value); } }
  16. internal readonly AsyncEvent<Func<LogMessage, Task>> _logEvent = new AsyncEvent<Func<LogMessage, Task>>();
  17. private readonly SemaphoreSlim _moduleLock;
  18. private readonly ConcurrentDictionary<Type, ModuleInfo> _typedModuleDefs;
  19. private readonly ConcurrentDictionary<Type, ConcurrentDictionary<Type, TypeReader>> _typeReaders;
  20. private readonly ConcurrentDictionary<Type, TypeReader> _defaultTypeReaders;
  21. private readonly ImmutableList<Tuple<Type, Type>> _entityTypeReaders; //TODO: Candidate for C#7 Tuple
  22. private readonly HashSet<ModuleInfo> _moduleDefs;
  23. private readonly CommandMap _map;
  24. internal readonly bool _caseSensitive, _throwOnError;
  25. internal readonly char _separatorChar;
  26. internal readonly RunMode _defaultRunMode;
  27. internal readonly Logger _cmdLogger;
  28. internal readonly LogManager _logManager;
  29. public IEnumerable<ModuleInfo> Modules => _moduleDefs.Select(x => x);
  30. public IEnumerable<CommandInfo> Commands => _moduleDefs.SelectMany(x => x.Commands);
  31. public ILookup<Type, TypeReader> TypeReaders => _typeReaders.SelectMany(x => x.Value.Select(y => new { y.Key, y.Value })).ToLookup(x => x.Key, x => x.Value);
  32. public CommandService() : this(new CommandServiceConfig()) { }
  33. public CommandService(CommandServiceConfig config)
  34. {
  35. _caseSensitive = config.CaseSensitiveCommands;
  36. _throwOnError = config.ThrowOnError;
  37. _separatorChar = config.SeparatorChar;
  38. _defaultRunMode = config.DefaultRunMode;
  39. if (_defaultRunMode == RunMode.Default)
  40. throw new InvalidOperationException("The default run mode cannot be set to Default.");
  41. _logManager = new LogManager(config.LogLevel);
  42. _logManager.Message += async msg => await _logEvent.InvokeAsync(msg).ConfigureAwait(false);
  43. _cmdLogger = _logManager.CreateLogger("Command");
  44. _moduleLock = new SemaphoreSlim(1, 1);
  45. _typedModuleDefs = new ConcurrentDictionary<Type, ModuleInfo>();
  46. _moduleDefs = new HashSet<ModuleInfo>();
  47. _map = new CommandMap(this);
  48. _typeReaders = new ConcurrentDictionary<Type, ConcurrentDictionary<Type, TypeReader>>();
  49. _defaultTypeReaders = new ConcurrentDictionary<Type, TypeReader>();
  50. foreach (var type in PrimitiveParsers.SupportedTypes)
  51. {
  52. _defaultTypeReaders[type] = PrimitiveTypeReader.Create(type);
  53. _defaultTypeReaders[typeof(Nullable<>).MakeGenericType(type)] = NullableTypeReader.Create(type, _defaultTypeReaders[type]);
  54. }
  55. _defaultTypeReaders[typeof(string)] =
  56. new PrimitiveTypeReader<string>((string x, out string y) => { y = x; return true; }, 0);
  57. var entityTypeReaders = ImmutableList.CreateBuilder<Tuple<Type, Type>>();
  58. entityTypeReaders.Add(new Tuple<Type, Type>(typeof(IMessage), typeof(MessageTypeReader<>)));
  59. entityTypeReaders.Add(new Tuple<Type, Type>(typeof(IChannel), typeof(ChannelTypeReader<>)));
  60. entityTypeReaders.Add(new Tuple<Type, Type>(typeof(IRole), typeof(RoleTypeReader<>)));
  61. entityTypeReaders.Add(new Tuple<Type, Type>(typeof(IUser), typeof(UserTypeReader<>)));
  62. _entityTypeReaders = entityTypeReaders.ToImmutable();
  63. }
  64. //Modules
  65. public async Task<ModuleInfo> CreateModuleAsync(string primaryAlias, Action<ModuleBuilder> buildFunc)
  66. {
  67. await _moduleLock.WaitAsync().ConfigureAwait(false);
  68. try
  69. {
  70. var builder = new ModuleBuilder(this, null, primaryAlias);
  71. buildFunc(builder);
  72. var module = builder.Build(this);
  73. return LoadModuleInternal(module);
  74. }
  75. finally
  76. {
  77. _moduleLock.Release();
  78. }
  79. }
  80. public Task<ModuleInfo> AddModuleAsync<T>() => AddModuleAsync(typeof(T));
  81. public async Task<ModuleInfo> AddModuleAsync(Type type)
  82. {
  83. await _moduleLock.WaitAsync().ConfigureAwait(false);
  84. try
  85. {
  86. var typeInfo = type.GetTypeInfo();
  87. if (_typedModuleDefs.ContainsKey(type))
  88. throw new ArgumentException($"This module has already been added.");
  89. var module = (await ModuleClassBuilder.BuildAsync(this, typeInfo).ConfigureAwait(false)).FirstOrDefault();
  90. if (module.Value == default(ModuleInfo))
  91. throw new InvalidOperationException($"Could not build the module {type.FullName}, did you pass an invalid type?");
  92. _typedModuleDefs[module.Key] = module.Value;
  93. return LoadModuleInternal(module.Value);
  94. }
  95. finally
  96. {
  97. _moduleLock.Release();
  98. }
  99. }
  100. public async Task<IEnumerable<ModuleInfo>> AddModulesAsync(Assembly assembly)
  101. {
  102. await _moduleLock.WaitAsync().ConfigureAwait(false);
  103. try
  104. {
  105. var types = await ModuleClassBuilder.SearchAsync(assembly, this).ConfigureAwait(false);
  106. var moduleDefs = await ModuleClassBuilder.BuildAsync(types, this).ConfigureAwait(false);
  107. foreach (var info in moduleDefs)
  108. {
  109. _typedModuleDefs[info.Key] = info.Value;
  110. LoadModuleInternal(info.Value);
  111. }
  112. return moduleDefs.Select(x => x.Value).ToImmutableArray();
  113. }
  114. finally
  115. {
  116. _moduleLock.Release();
  117. }
  118. }
  119. private ModuleInfo LoadModuleInternal(ModuleInfo module)
  120. {
  121. _moduleDefs.Add(module);
  122. foreach (var command in module.Commands)
  123. _map.AddCommand(command);
  124. foreach (var submodule in module.Submodules)
  125. LoadModuleInternal(submodule);
  126. return module;
  127. }
  128. public async Task<bool> RemoveModuleAsync(ModuleInfo module)
  129. {
  130. await _moduleLock.WaitAsync().ConfigureAwait(false);
  131. try
  132. {
  133. return RemoveModuleInternal(module);
  134. }
  135. finally
  136. {
  137. _moduleLock.Release();
  138. }
  139. }
  140. public Task<bool> RemoveModuleAsync<T>() => RemoveModuleAsync(typeof(T));
  141. public async Task<bool> RemoveModuleAsync(Type type)
  142. {
  143. await _moduleLock.WaitAsync().ConfigureAwait(false);
  144. try
  145. {
  146. if (!_typedModuleDefs.TryRemove(type, out var module))
  147. return false;
  148. return RemoveModuleInternal(module);
  149. }
  150. finally
  151. {
  152. _moduleLock.Release();
  153. }
  154. }
  155. private bool RemoveModuleInternal(ModuleInfo module)
  156. {
  157. if (!_moduleDefs.Remove(module))
  158. return false;
  159. foreach (var cmd in module.Commands)
  160. _map.RemoveCommand(cmd);
  161. foreach (var submodule in module.Submodules)
  162. {
  163. RemoveModuleInternal(submodule);
  164. }
  165. return true;
  166. }
  167. //Type Readers
  168. public void AddTypeReader<T>(TypeReader reader)
  169. => AddTypeReader(typeof(T), reader);
  170. public void AddTypeReader(Type type, TypeReader reader)
  171. {
  172. var readers = _typeReaders.GetOrAdd(type, x => new ConcurrentDictionary<Type, TypeReader>());
  173. readers[reader.GetType()] = reader;
  174. if (type.GetTypeInfo().IsValueType)
  175. AddNullableTypeReader(type, reader);
  176. }
  177. internal void AddNullableTypeReader(Type valueType, TypeReader valueTypeReader)
  178. {
  179. var readers = _typeReaders.GetOrAdd(typeof(Nullable<>).MakeGenericType(valueType), x => new ConcurrentDictionary<Type, TypeReader>());
  180. var nullableReader = NullableTypeReader.Create(valueType, valueTypeReader);
  181. readers[nullableReader.GetType()] = nullableReader;
  182. }
  183. internal IDictionary<Type, TypeReader> GetTypeReaders(Type type)
  184. {
  185. if (_typeReaders.TryGetValue(type, out var definedTypeReaders))
  186. return definedTypeReaders;
  187. return null;
  188. }
  189. internal TypeReader GetDefaultTypeReader(Type type)
  190. {
  191. if (_defaultTypeReaders.TryGetValue(type, out var reader))
  192. return reader;
  193. var typeInfo = type.GetTypeInfo();
  194. //Is this an enum?
  195. if (typeInfo.IsEnum)
  196. {
  197. reader = EnumTypeReader.GetReader(type);
  198. _defaultTypeReaders[type] = reader;
  199. return reader;
  200. }
  201. //Is this an entity?
  202. for (int i = 0; i < _entityTypeReaders.Count; i++)
  203. {
  204. if (type == _entityTypeReaders[i].Item1 || typeInfo.ImplementedInterfaces.Contains(_entityTypeReaders[i].Item1))
  205. {
  206. reader = Activator.CreateInstance(_entityTypeReaders[i].Item2.MakeGenericType(type)) as TypeReader;
  207. _defaultTypeReaders[type] = reader;
  208. return reader;
  209. }
  210. }
  211. return null;
  212. }
  213. //Execution
  214. public SearchResult Search(ICommandContext context, int argPos)
  215. => Search(context, context.Message.Content.Substring(argPos));
  216. public SearchResult Search(ICommandContext context, string input)
  217. {
  218. string searchInput = _caseSensitive ? input : input.ToLowerInvariant();
  219. var matches = _map.GetCommands(searchInput).OrderByDescending(x => x.Command.Priority).ToImmutableArray();
  220. if (matches.Length > 0)
  221. return SearchResult.FromSuccess(input, matches);
  222. else
  223. return SearchResult.FromError(CommandError.UnknownCommand, "Unknown command.");
  224. }
  225. public Task<IResult> ExecuteAsync(ICommandContext context, int argPos, IServiceProvider services = null, MultiMatchHandling multiMatchHandling = MultiMatchHandling.Exception)
  226. => ExecuteAsync(context, context.Message.Content.Substring(argPos), services, multiMatchHandling);
  227. public async Task<IResult> ExecuteAsync(ICommandContext context, string input, IServiceProvider services = null, MultiMatchHandling multiMatchHandling = MultiMatchHandling.Exception)
  228. {
  229. services = services ?? EmptyServiceProvider.Instance;
  230. var searchResult = Search(context, input);
  231. if (!searchResult.IsSuccess)
  232. return searchResult;
  233. var commands = searchResult.Commands;
  234. var preconditionResults = new Dictionary<CommandMatch, PreconditionResult>();
  235. foreach (var match in commands)
  236. {
  237. preconditionResults[match] = await match.Command.CheckPreconditionsAsync(context, services).ConfigureAwait(false);
  238. }
  239. var successfulPreconditions = preconditionResults
  240. .Where(x => x.Value.IsSuccess)
  241. .ToArray();
  242. if (successfulPreconditions.Length == 0)
  243. {
  244. //All preconditions failed, return the one from the highest priority command
  245. var bestCandidate = preconditionResults
  246. .OrderByDescending(x => x.Key.Command.Priority)
  247. .FirstOrDefault(x => !x.Value.IsSuccess);
  248. return bestCandidate.Value;
  249. }
  250. //If we get this far, at least one precondition was successful.
  251. var parseResultsDict = new Dictionary<CommandMatch, ParseResult>();
  252. foreach (var pair in successfulPreconditions)
  253. {
  254. var parseResult = await pair.Key.ParseAsync(context, searchResult, pair.Value, services).ConfigureAwait(false);
  255. if (parseResult.Error == CommandError.MultipleMatches)
  256. {
  257. IReadOnlyList<TypeReaderValue> argList, paramList;
  258. switch (multiMatchHandling)
  259. {
  260. case MultiMatchHandling.Best:
  261. argList = parseResult.ArgValues.Select(x => x.Values.OrderByDescending(y => y.Score).First()).ToImmutableArray();
  262. paramList = parseResult.ParamValues.Select(x => x.Values.OrderByDescending(y => y.Score).First()).ToImmutableArray();
  263. parseResult = ParseResult.FromSuccess(argList, paramList);
  264. break;
  265. }
  266. }
  267. parseResultsDict[pair.Key] = parseResult;
  268. }
  269. // Calculates the 'score' of a command given a parse result
  270. float CalculateScore(CommandMatch match, ParseResult parseResult)
  271. {
  272. float argValuesScore = 0, paramValuesScore = 0;
  273. if (match.Command.Parameters.Count > 0)
  274. {
  275. var argValuesSum = parseResult.ArgValues?.Sum(x => x.Values.OrderByDescending(y => y.Score).FirstOrDefault().Score) ?? 0;
  276. var paramValuesSum = parseResult.ParamValues?.Sum(x => x.Values.OrderByDescending(y => y.Score).FirstOrDefault().Score) ?? 0;
  277. argValuesScore = argValuesSum / match.Command.Parameters.Count;
  278. paramValuesScore = paramValuesSum / match.Command.Parameters.Count;
  279. }
  280. var totalArgsScore = (argValuesScore + paramValuesScore) / 2;
  281. return match.Command.Priority + totalArgsScore * 0.99f;
  282. }
  283. //Order the parse results by their score so that we choose the most likely result to execute
  284. var parseResults = parseResultsDict
  285. .OrderByDescending(x => CalculateScore(x.Key, x.Value));
  286. var successfulParses = parseResults
  287. .Where(x => x.Value.IsSuccess)
  288. .ToArray();
  289. if (successfulParses.Length == 0)
  290. {
  291. //All parses failed, return the one from the highest priority command, using score as a tie breaker
  292. var bestMatch = parseResults
  293. .FirstOrDefault(x => !x.Value.IsSuccess);
  294. return bestMatch.Value;
  295. }
  296. //If we get this far, at least one parse was successful. Execute the most likely overload.
  297. var chosenOverload = successfulParses[0];
  298. return await chosenOverload.Key.ExecuteAsync(context, chosenOverload.Value, services).ConfigureAwait(false);
  299. }
  300. }
  301. }