mirror of
https://github.com/MindWorkAI/AI-Studio.git
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400 lines
18 KiB
C#
400 lines
18 KiB
C#
using System.Text.Json;
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using AIStudio.Provider;
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using AIStudio.Settings;
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namespace AIStudio.Tools.ToolCallingSystem;
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/// <summary>
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/// Holds the tools AI Studio knows and decides which of them a request may use.
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/// </summary>
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/// <remarks>
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/// Definitions arrive through tool definition sources — the app's own tools from code, later the
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/// ones plugin authors write. Every definition passes the same validation regardless of where it
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/// came from, which matters most for the ones AI Studio does not control.
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/// </remarks>
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public sealed class ToolRegistry
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{
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private readonly ILogger<ToolRegistry> logger;
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private readonly SettingsManager settingsManager;
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private readonly ToolSettingsService toolSettingsService;
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private readonly Dictionary<string, ToolDefinition> definitionsById = new(StringComparer.Ordinal);
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private readonly Dictionary<string, IToolImplementation> implementationsByKey = new(StringComparer.Ordinal);
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public ToolRegistry(
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IEnumerable<IToolImplementation> implementations,
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IEnumerable<IToolDefinitionSource> definitionSources,
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SettingsManager settingsManager,
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ToolSettingsService toolSettingsService,
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ILogger<ToolRegistry> logger)
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{
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this.logger = logger;
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this.settingsManager = settingsManager;
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this.toolSettingsService = toolSettingsService;
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foreach (var implementation in implementations)
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{
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if (string.IsNullOrWhiteSpace(implementation.ImplementationKey))
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{
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this.logger.LogWarning("Skipping a tool implementation with an empty implementation key.");
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continue;
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}
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if (!this.implementationsByKey.TryAdd(implementation.ImplementationKey, implementation))
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this.logger.LogWarning("Skipping duplicate tool implementation key '{ImplementationKey}'.", implementation.ImplementationKey);
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}
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//
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// Function names are checked across all sources together: two tools offering the same
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// name would be indistinguishable to a model, no matter who defined them.
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//
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var functionNames = new HashSet<string>(StringComparer.Ordinal);
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foreach (var source in definitionSources)
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{
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foreach (var definition in source.GetDefinitions())
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{
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if (!TryValidateDefinition(definition, out var validationIssue))
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{
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this.logger.LogWarning("Skipping tool definition '{ToolId}' from source '{SourceName}': {ValidationIssue}", definition.Id, source.SourceName, validationIssue);
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continue;
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}
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if (!this.implementationsByKey.ContainsKey(definition.ImplementationKey))
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{
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this.logger.LogWarning("Skipping tool definition '{ToolId}' because implementation key '{ImplementationKey}' is not registered.", definition.Id, definition.ImplementationKey);
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continue;
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}
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if (!this.definitionsById.TryAdd(definition.Id, definition))
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{
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this.logger.LogWarning("Skipping duplicate tool definition ID '{ToolId}' from source '{SourceName}'.", definition.Id, source.SourceName);
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continue;
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}
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if (!functionNames.Add(definition.Function.Name))
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{
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this.logger.LogWarning("Skipping tool definition '{ToolId}' because function name '{FunctionName}' is already registered.", definition.Id, definition.Function.Name);
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this.definitionsById.Remove(definition.Id);
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}
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}
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}
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}
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/// <summary>
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/// Whether a tool definition is complete enough to register.
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/// </summary>
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/// <remarks>
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/// What a definition cannot be is null in its parts: definitions are C# objects whose members
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/// are non-nullable and initialized, so only their content is checked here. Should definitions
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/// one day arrive from outside as data — a tool plugin, say — that assumption ends at the point
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/// where the data becomes a definition, and it is there that null has to be caught.
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/// </remarks>
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private static bool TryValidateDefinition(ToolDefinition definition, out string issue)
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{
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issue = string.Empty;
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if (definition.SchemaVersion != 1)
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{
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issue = $"unsupported schema version '{definition.SchemaVersion}'";
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return false;
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}
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if (string.IsNullOrWhiteSpace(definition.Id))
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{
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issue = "the definition ID is empty";
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return false;
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}
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if (string.IsNullOrWhiteSpace(definition.ImplementationKey))
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{
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issue = "the implementation key is empty";
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return false;
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}
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if (!IsValidFunctionName(definition.Function.Name))
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{
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issue = "the function name must contain 1-64 ASCII letters, digits, underscores, or hyphens";
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return false;
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}
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if (definition.Function.Parameters.ValueKind is not JsonValueKind.Object)
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{
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issue = "the function parameters schema must be a JSON object";
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return false;
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}
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if (definition.VisibleIn.AllowedComponents.Any(component => !Enum.IsDefined(component)) ||
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definition.VisibleIn.DeniedComponents.Any(component => !Enum.IsDefined(component)))
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{
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issue = "the visibility definition must contain valid component lists";
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return false;
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}
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if (!string.Equals(definition.SettingsSchema.Type, "object", StringComparison.OrdinalIgnoreCase))
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{
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issue = "the settings schema must have type 'object'";
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return false;
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}
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if (definition.SettingsSchema.Properties.Any(x =>
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string.IsNullOrWhiteSpace(x.Key) ||
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!string.Equals(x.Value.Type, "string", StringComparison.OrdinalIgnoreCase)))
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{
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issue = "settings properties must be named string fields";
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return false;
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}
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//
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// An empty group is how a field says it belongs to no group. Whitespace looks the
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// same in the settings file but is a different string, so it would open a second,
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// nameless group next to the ungrouped fields:
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//
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var fieldsWithBlankGroup = definition.SettingsSchema.Properties
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.Where(x => x.Value.Group.Length > 0 && string.IsNullOrWhiteSpace(x.Value.Group))
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.Select(x => x.Key)
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.ToList();
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if (fieldsWithBlankGroup.Count > 0)
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{
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issue = $"these settings declare a blank group name: {string.Join(", ", fieldsWithBlankGroup)}";
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return false;
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}
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var fieldsWithBothOptionKinds = definition.SettingsSchema.Properties
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.Where(x => !string.IsNullOrWhiteSpace(x.Value.OptionSource) && x.Value.EnumValues.Count > 0)
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.Select(x => x.Key)
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.ToList();
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if (fieldsWithBothOptionKinds.Count > 0)
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{
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issue = $"these settings declare both an option source and an enum list: {string.Join(", ", fieldsWithBothOptionKinds)}";
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return false;
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}
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var fieldsWithUnknownOptionSource = definition.SettingsSchema.Properties
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.Where(x => !string.IsNullOrWhiteSpace(x.Value.OptionSource) && !ToolSettingsOptionSources.IsKnown(x.Value.OptionSource))
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.Select(x => $"{x.Key} ('{x.Value.OptionSource}')")
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.ToList();
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if (fieldsWithUnknownOptionSource.Count > 0)
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{
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issue = $"these settings reference an unknown option source: {string.Join(", ", fieldsWithUnknownOptionSource)}";
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return false;
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}
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if (definition.SettingsSchema.Required.Any(string.IsNullOrWhiteSpace))
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{
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issue = "required setting names cannot be empty";
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return false;
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}
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var missingRequiredProperties = definition.SettingsSchema.Required
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.Where(x => !definition.SettingsSchema.Properties.ContainsKey(x))
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.ToList();
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if (missingRequiredProperties.Count > 0)
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{
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issue = $"required settings are missing definitions: {string.Join(", ", missingRequiredProperties)}";
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return false;
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}
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return true;
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}
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private static bool IsValidFunctionName(string? functionName) =>
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!string.IsNullOrWhiteSpace(functionName) &&
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functionName.Length <= 64 &&
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functionName.All(character => char.IsAsciiLetterOrDigit(character) || character is '_' or '-');
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public IReadOnlyList<ToolDefinition> GetDefinitionsForComponent(Components component)
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{
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return this.definitionsById.Values
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.Where(x => x.VisibleIn.IsVisibleIn(component))
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.OrderBy(x => this.implementationsByKey.GetValueOrDefault(x.ImplementationKey)?.GetDisplayName(), StringComparer.OrdinalIgnoreCase)
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.ToList();
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}
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public IReadOnlyList<ToolDefinition> GetAllDefinitions() => this.definitionsById.Values
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.OrderBy(x => this.implementationsByKey.GetValueOrDefault(x.ImplementationKey)?.GetDisplayName(), StringComparer.OrdinalIgnoreCase)
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.ToList();
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public ToolDefinition? GetDefinition(string toolId) => this.definitionsById.GetValueOrDefault(toolId);
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public IToolImplementation? GetImplementation(string implementationKey) => this.implementationsByKey.GetValueOrDefault(implementationKey);
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/// <summary>
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/// The provider confidence a tool needs: its own minimum, unless the user or an administrator
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/// raised or lowered it.
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/// </summary>
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/// <remarks>
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/// This is the place that knows both halves — the definition's own minimum and the stored
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/// overrides — so callers holding only a tool ID come here instead of to the settings.
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/// </remarks>
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public ConfidenceLevel GetMinimumProviderConfidence(string toolId) => this.GetDefinition(toolId) is { } definition
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? this.GetMinimumProviderConfidence(definition)
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: ConfidenceLevel.NONE;
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public ConfidenceLevel GetMinimumProviderConfidence(ToolDefinition definition) =>
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this.settingsManager.GetMinimumProviderConfidenceForTool(definition.Id, definition.MinimumProviderConfidence);
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/// <summary>
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/// Narrows a selection of tool IDs to those the given provider may actually use.
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/// </summary>
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/// <remarks>
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/// Used before a request is sent, so the chat records what will really be available rather
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/// than what the user once ticked. Lives here because judging a tool needs its definition:
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/// the settings know the overrides, the definition knows the tool's own minimum.
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/// </remarks>
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/// <param name="provider">The provider the request goes to.</param>
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/// <param name="selectedToolIds">The tools the user selected.</param>
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/// <returns>The subset that is enabled, active, and allowed by the provider's confidence.</returns>
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public HashSet<string> FilterToolIdsForProvider(AIStudio.Settings.Provider provider, IEnumerable<string> selectedToolIds)
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{
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if (!this.settingsManager.AreToolsEnabled())
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return [];
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if (!provider.GetToolCallingAvailability().IsAvailable)
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return [];
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var providerConfidence = provider.UsedLLMProvider.GetConfidence(this.settingsManager).Level;
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var filtered = ToolSelectionRules.NormalizeSelection(selectedToolIds);
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foreach (var toolId in filtered.ToList())
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{
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if (!this.settingsManager.IsToolActive(toolId))
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{
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filtered.Remove(toolId);
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continue;
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}
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if (!ToolSelectionRules.IsProviderConfidenceAllowed(providerConfidence, this.GetMinimumProviderConfidence(toolId)))
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filtered.Remove(toolId);
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}
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return filtered;
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}
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public async Task<IReadOnlyList<ToolCatalogItem>> GetCatalogAsync(Components component)
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{
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var definitions = this.GetDefinitionsForComponent(component);
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return await this.GetCatalogAsync(definitions);
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}
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/// <summary>
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/// Reduces a set of tool IDs to the tools a user could switch on themselves in this component.
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/// </summary>
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/// <remarks>
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/// For preselecting tools on someone's behalf, such as when a launcher opens a chat. A tool
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/// this installation does not know, one an organization switched off, or one whose settings are
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/// incomplete cannot be enabled by hand either, so handing it over as enabled would show the
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/// user a state they could not have produced and could not fix from where they are. The
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/// provider confidence stays out of this: it belongs to the moment a message is sent, not to
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/// the selection, and it may well be a different provider by then.
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/// </remarks>
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public async Task<HashSet<string>> FilterSelectableToolIdsAsync(Components component, IEnumerable<string> toolIds)
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{
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var wantedToolIds = ToolSelectionRules.NormalizeSelection(toolIds);
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if (wantedToolIds.Count is 0 || !this.settingsManager.AreToolsEnabled())
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return [];
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var catalog = await this.GetCatalogAsync(component);
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return catalog
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.Where(x => wantedToolIds.Contains(x.Definition.Id) && x is { IsActive: true, ConfigurationState.IsConfigured: true })
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.Select(x => x.Definition.Id)
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.ToHashSet(StringComparer.Ordinal);
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}
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public async Task<IReadOnlyList<ToolCatalogItem>> GetCatalogAsync(IEnumerable<ToolDefinition> definitions)
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{
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var definitionList = definitions.ToList();
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var items = new List<ToolCatalogItem>(definitionList.Count);
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foreach (var definition in definitionList)
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{
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if (!this.implementationsByKey.TryGetValue(definition.ImplementationKey, out var implementation))
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continue;
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items.Add(new ToolCatalogItem
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{
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Definition = definition,
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Implementation = implementation,
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ConfigurationState = await this.toolSettingsService.GetConfigurationStateAsync(definition, implementation),
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IsActive = this.settingsManager.IsToolActive(definition.Id),
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MinimumProviderConfidence = this.GetMinimumProviderConfidence(definition),
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});
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}
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return items;
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}
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/// <remarks>
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/// Model capabilities are not a parameter on purpose: they are read from the given provider,
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/// which carries the user's expert capability overrides. Passing them in separately allowed a
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/// caller to gate tools on capabilities that differed from the ones the availability check saw.
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/// </remarks>
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public async Task<IReadOnlyList<(ToolDefinition Definition, IToolImplementation Implementation)>> GetRunnableToolsAsync(AIStudio.Settings.Provider provider,
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Components component, IEnumerable<string> selectedToolIds, ConfidenceLevel providerConfidence, bool mayRunTools)
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{
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if (!this.settingsManager.AreToolsEnabled())
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{
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this.logger.LogDebug("Tool calling is skipped because tools are disabled by managed configuration.");
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return [];
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}
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//
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// Where the user selects the tools, they must be able to see that selection; where the
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// assistant's own rules name them, there is nothing to see. Which of the two applies is
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// decided by the caller, because only it knows where its tools came from:
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//
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if (!mayRunTools)
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{
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this.logger.LogDebug("Tool calling is skipped for component '{Component}' because its tool selection is hidden and no assistant rule names the tools.", component);
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return [];
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}
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var toolCallingAvailability = provider.GetToolCallingAvailability();
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if (!toolCallingAvailability.IsAvailable)
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{
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this.logger.LogDebug("Tool calling is unavailable for provider '{Provider}' with model '{ModelId}': {Reason}", provider.InstanceName, provider.Model.Id, toolCallingAvailability.Message);
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return [];
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}
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var selectedToolIdSet = ToolSelectionRules.NormalizeSelection(selectedToolIds);
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this.logger.LogDebug("Resolving runnable tools for provider '{Provider}' with model '{ModelId}'. Selected tool IDs: [{ToolIds}].", provider.InstanceName, provider.Model.Id, string.Join(", ", selectedToolIdSet.OrderBy(x => x, StringComparer.Ordinal)));
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var definitions = this.GetDefinitionsForComponent(component).Where(x => selectedToolIdSet.Contains(x.Id)).ToList();
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var result = new List<(ToolDefinition, IToolImplementation)>(definitions.Count);
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foreach (var definition in definitions)
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{
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if (!this.settingsManager.IsToolActive(definition.Id))
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{
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this.logger.LogDebug("Skipping tool '{ToolId}' because it is disabled by managed configuration.", definition.Id);
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continue;
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}
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if (!this.implementationsByKey.TryGetValue(definition.ImplementationKey, out var implementation))
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{
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this.logger.LogWarning("Skipping tool '{ToolId}' because no implementation is registered.", definition.Id);
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continue;
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}
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var configurationState = await this.toolSettingsService.GetConfigurationStateAsync(definition, implementation);
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if (!configurationState.IsConfigured)
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{
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this.logger.LogDebug("Skipping tool '{ToolId}' because it is not configured.", definition.Id);
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continue;
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}
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var resolution = this.settingsManager.GetMinimumProviderConfidenceResolutionForTool(definition.Id, definition.MinimumProviderConfidence);
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var minimumToolConfidence = resolution.ConfidenceLevel;
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this.logger.LogDebug("Tool '{ToolId}' uses minimum provider confidence '{ConfidenceLevel}' from {Source}.", definition.Id, minimumToolConfidence, resolution.Source);
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if (!ToolSelectionRules.IsProviderConfidenceAllowed(providerConfidence, minimumToolConfidence))
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{
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this.logger.LogInformation("Skipping tool '{ToolId}' because provider confidence '{ProviderConfidence}' is below the required minimum '{MinimumConfidence}'.", definition.Id, providerConfidence, minimumToolConfidence);
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continue;
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}
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result.Add((definition, implementation));
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}
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foreach (var selectedToolId in selectedToolIdSet.Where(selectedToolId => definitions.All(definition => !definition.Id.Equals(selectedToolId, StringComparison.Ordinal))))
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this.logger.LogDebug("Skipping tool '{ToolId}' because it is not selected in this component or not available in this context.", selectedToolId);
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return result;
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}
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} |