Files
vigilcare-clinical/VigilCareClinicalAPI.Tests/Helpers/RabbitMqTestHelper.cs
T
2026-06-24 04:35:15 +08:00

166 lines
5.6 KiB
C#

using FluentAssertions;
using Microsoft.Extensions.Options;
using RabbitMQ.Client;
using RabbitMQ.Client.Exceptions;
using System.Net.Http.Headers;
using System.Text;
using System.Text.Json;
public static class RabbitMqTestHelper
{
private static readonly string[] NotificationQueues =
[
"alerts.paging.queue",
"alerts.paging.dlq",
"alerts.escalation.queue",
];
/// <summary>
/// Creates the configured virtual host and grants the test user full access.
/// Integration tests use a dedicated vhost so a concurrently running dev API
/// on the default "/" vhost cannot steal paging messages or recreate the DLQ TTL.
/// </summary>
public static async Task EnsureVirtualHostAsync(RabbitMqOptions o)
{
if (string.IsNullOrEmpty(o.VirtualHost) || o.VirtualHost == "/")
return;
using var http = new HttpClient();
var credentials = Convert.ToBase64String(Encoding.UTF8.GetBytes($"{o.Username}:{o.Password}"));
http.DefaultRequestHeaders.Authorization = new AuthenticationHeaderValue("Basic", credentials);
var mgmtBase = $"http://{o.Host}:{o.Port + 10000}";
var vhost = Uri.EscapeDataString(o.VirtualHost);
using var create = await http.PutAsync($"{mgmtBase}/api/vhosts/{vhost}", null);
create.EnsureSuccessStatusCode();
var permissions = JsonSerializer.Serialize(new
{
configure = ".*",
write = ".*",
read = ".*",
});
using var grant = await http.PutAsync(
$"{mgmtBase}/api/permissions/{vhost}/{Uri.EscapeDataString(o.Username)}",
new StringContent(permissions, Encoding.UTF8, "application/json"));
grant.EnsureSuccessStatusCode();
}
public static void PurgeNotificationQueues(IOptions<RabbitMqOptions> opts)
{
var o = opts.Value;
using var connection = CreateConnection(o, "test-queue-purge");
using var channel = connection.CreateModel();
// x-message-ttl is immutable once the queue exists. A concurrently running dev API
// (300000 ms) can recreate the DLQ after the test host provisions 5000 ms, leaving
// escalation stuck until the 5-minute TTL expires — far beyond the test poll window.
RecreatePagingDlq(channel, o.PagingAckTimeoutMs);
foreach (var queue in new[] { "alerts.paging.queue", "alerts.escalation.queue" })
{
try
{
channel.QueuePurge(queue);
}
catch (OperationInterruptedException)
{
// Queue may not exist yet on a cold broker.
}
}
}
/// <summary>
/// Waits for stale alert.generated Kafka messages to finish the paging → DLQ → escalation
/// cycle. Purging alone is not enough: NotificationPublisher keeps republishing backlog
/// after the purge, and prefetch=1 leaves one in-flight page ahead of the test alert.
/// </summary>
public static async Task WaitForNotificationPipelineIdleAsync(
IOptions<RabbitMqOptions> opts,
TimeSpan maxWait)
{
var o = opts.Value;
// One full cycle: paging timeout + DLQ TTL + worker margin.
var settle = TimeSpan.FromMilliseconds(o.PagingAckTimeoutMs * 2 + 10_000);
var deadline = DateTimeOffset.UtcNow.Add(maxWait);
DateTimeOffset? lastBusy = null;
while (DateTimeOffset.UtcNow < deadline)
{
if (!AreReadyQueuesEmpty(o))
{
lastBusy = DateTimeOffset.UtcNow;
await Task.Delay(500);
continue;
}
lastBusy ??= DateTimeOffset.UtcNow;
if (DateTimeOffset.UtcNow - lastBusy.Value >= settle)
return;
await Task.Delay(500);
}
}
private static bool AreReadyQueuesEmpty(RabbitMqOptions o)
{
using var connection = CreateConnection(o, "test-queue-idle-check");
using var channel = connection.CreateModel();
foreach (var queue in NotificationQueues)
{
try
{
var stats = channel.QueueDeclarePassive(queue);
if (stats.MessageCount > 0)
return false;
}
catch (OperationInterruptedException)
{
// Queue may not exist yet on a cold broker.
}
}
return true;
}
private static ConnectionFactory CreateFactory(RabbitMqOptions o) =>
RabbitMqConnectionFactory.Create(o);
private static IConnection CreateConnection(RabbitMqOptions o, string name) =>
CreateFactory(o).CreateConnection(name);
private static void RecreatePagingDlq(IModel channel, int pagingAckTimeoutMs)
{
const string dlq = "alerts.paging.dlq";
try
{
channel.QueueDelete(dlq, ifUnused: false, ifEmpty: false);
}
catch (OperationInterruptedException)
{
// Queue may not exist yet on a cold broker.
}
channel.ExchangeDeclare(
RabbitMqTopologyProvisioner.Exchange,
ExchangeType.Direct,
durable: true);
channel.QueueDeclare(
queue: dlq,
durable: true,
exclusive: false,
autoDelete: false,
arguments: new Dictionary<string, object>
{
["x-message-ttl"] = pagingAckTimeoutMs,
["x-dead-letter-exchange"] = RabbitMqTopologyProvisioner.Exchange,
["x-dead-letter-routing-key"] = RabbitMqTopologyProvisioner.EscalKey,
});
}
}