Replaces the list handler's Start-Sleep + blind get_task poll (Phase 3 of the merge-helper prompt) with a blocking MCP tool that returns as soon as a task leaves Queued/Running, or times out. Implemented as an async DB poll (short-lived DbContext, 500ms delay, no held connection) rather than hooking HubBroadcaster, keeping the existing broadcast callers untouched. timeoutSeconds is clamped server-side to 170s, under the list handler's 200s MCP_TOOL_TIMEOUT.
84 lines
3.4 KiB
C#
84 lines
3.4 KiB
C#
using System.ComponentModel;
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using ClaudeDo.Data;
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using Microsoft.EntityFrameworkCore;
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using ModelContextProtocol.Server;
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using TaskStatus = ClaudeDo.Data.Models.TaskStatus;
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namespace ClaudeDo.Worker.External;
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public sealed record TaskStatusChangeDto(string TaskId, string Status);
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public sealed record WaitForTaskChangeResult(IReadOnlyList<TaskStatusChangeDto> Changed, bool TimedOut);
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[McpServerToolType]
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public sealed class TaskWaitMcpTools
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{
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// InteractiveLaunchSpecService sets MCP_TOOL_TIMEOUT=200000ms for the list handler
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// session; this cap leaves a ~30s margin so the tool itself reports TimedOut instead
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// of racing the client's own abort.
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internal const int MaxTimeoutSeconds = 170;
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private static readonly TimeSpan PollInterval = TimeSpan.FromMilliseconds(500);
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private readonly IDbContextFactory<ClaudeDoDbContext> _dbFactory;
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public TaskWaitMcpTools(IDbContextFactory<ClaudeDoDbContext> dbFactory)
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{
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_dbFactory = dbFactory;
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}
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[McpServerTool, Description(
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"Blocks until at least one of the given tasks leaves Queued/Running, or until timeoutSeconds elapses " +
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"(clamped server-side to 170s). Returns immediately if any task is already outside Queued/Running " +
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"when called (an unknown id is reported as status \"NotFound\" and counts as changed). Use this instead " +
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"of polling get_task in a loop. Result: { changed: [{ taskId, status }], timedOut }.")]
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public async Task<WaitForTaskChangeResult> WaitForTaskChange(
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string[] taskIds, int timeoutSeconds = 60, CancellationToken cancellationToken = default)
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{
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if (taskIds.Length == 0)
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throw new ArgumentException("taskIds must not be empty.", nameof(taskIds));
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var timeout = TimeSpan.FromSeconds(Math.Clamp(timeoutSeconds, 1, MaxTimeoutSeconds));
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using var timeoutCts = new CancellationTokenSource(timeout);
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using var linked = CancellationTokenSource.CreateLinkedTokenSource(cancellationToken, timeoutCts.Token);
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try
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{
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while (true)
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{
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var changed = await CheckOnceAsync(taskIds, linked.Token);
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if (changed.Count > 0)
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return new WaitForTaskChangeResult(changed, TimedOut: false);
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await Task.Delay(PollInterval, linked.Token);
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}
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}
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catch (OperationCanceledException) when (!cancellationToken.IsCancellationRequested)
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{
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return new WaitForTaskChangeResult(Array.Empty<TaskStatusChangeDto>(), TimedOut: true);
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}
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}
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private async Task<IReadOnlyList<TaskStatusChangeDto>> CheckOnceAsync(string[] taskIds, CancellationToken ct)
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{
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await using var ctx = await _dbFactory.CreateDbContextAsync(ct);
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var rows = await ctx.Tasks
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.AsNoTracking()
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.Where(t => taskIds.Contains(t.Id))
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.Select(t => new { t.Id, t.Status })
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.ToListAsync(ct);
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var byId = rows.ToDictionary(r => r.Id, r => r.Status);
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var result = new List<TaskStatusChangeDto>();
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foreach (var id in taskIds)
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{
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if (!byId.TryGetValue(id, out var status))
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{
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result.Add(new TaskStatusChangeDto(id, "NotFound"));
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continue;
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}
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if (status != TaskStatus.Queued && status != TaskStatus.Running)
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result.Add(new TaskStatusChangeDto(id, status.ToString()));
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}
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return result;
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}
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}
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