feat(localdb): dedicated h2c listener + MapZbLocalDbSync gated on LocalDb:SyncListenPort
This commit is contained in:
@@ -0,0 +1,75 @@
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using System.Net;
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using Microsoft.AspNetCore.Server.Kestrel.Core;
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namespace ZB.MOM.WW.OtOpcUa.Host.Configuration;
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/// <summary>
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/// One HTTP endpoint the host was asked to serve, parsed out of the configured URL list so it
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/// can be re-bound explicitly.
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/// </summary>
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/// <param name="Host">The host component as written — <c>+</c>, <c>*</c>, a hostname, or an IP.</param>
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/// <param name="Port">The port.</param>
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/// <param name="IsSecure">True when the URL used the <c>https</c> scheme.</param>
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public sealed record KestrelHttpBinding(string Host, int Port, bool IsSecure)
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{
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/// <summary>
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/// Parses a semicolon-separated URL list (the <c>ASPNETCORE_URLS</c> / <c>urls</c> format)
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/// into bindings. Unparseable entries are skipped rather than throwing — a malformed URL
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/// must not take the process down at startup.
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/// </summary>
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/// <param name="urls">The configured URL list, or null/empty when none is configured.</param>
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/// <returns>The parsed bindings, in the order given; empty when nothing is configured.</returns>
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public static IReadOnlyList<KestrelHttpBinding> Parse(string? urls)
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{
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if (string.IsNullOrWhiteSpace(urls))
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return [];
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var result = new List<KestrelHttpBinding>();
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foreach (var raw in urls.Split(';', StringSplitOptions.RemoveEmptyEntries | StringSplitOptions.TrimEntries))
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{
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// Uri cannot parse the "+"/"*" wildcard hosts Kestrel accepts, so substitute a
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// placeholder host purely to get scheme/port out, then keep the original host token.
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var isWildcard = raw.Contains("://+", StringComparison.Ordinal)
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|| raw.Contains("://*", StringComparison.Ordinal);
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var probe = isWildcard
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? raw.Replace("://+", "://placeholder", StringComparison.Ordinal)
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.Replace("://*", "://placeholder", StringComparison.Ordinal)
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: raw;
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if (!Uri.TryCreate(probe, UriKind.Absolute, out var uri))
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continue;
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var host = isWildcard
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? raw.Contains("://+", StringComparison.Ordinal) ? "+" : "*"
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: uri.Host;
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result.Add(new KestrelHttpBinding(host, uri.Port, uri.Scheme == Uri.UriSchemeHttps));
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}
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return result;
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}
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/// <summary>
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/// Applies this binding to Kestrel, choosing the narrowest listen call the host component
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/// allows.
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/// </summary>
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/// <remarks>
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/// A hostname that is neither a literal IP nor <c>localhost</c> cannot be reliably mapped to
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/// a local interface, so it falls back to <see cref="KestrelServerOptions.ListenAnyIP"/> —
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/// the safe superset. Narrowing it and guessing wrong would silently stop serving.
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/// </remarks>
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/// <param name="options">The Kestrel options being configured.</param>
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public void Apply(KestrelServerOptions options)
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{
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ArgumentNullException.ThrowIfNull(options);
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if (Host is "+" or "*")
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options.ListenAnyIP(Port);
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else if (IPAddress.TryParse(Host, out var address))
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options.Listen(address, Port);
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else if (string.Equals(Host, "localhost", StringComparison.OrdinalIgnoreCase))
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options.ListenLocalhost(Port);
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else
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options.ListenAnyIP(Port);
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}
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}
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@@ -1,7 +1,9 @@
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using Akka.Actor;
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using Akka.Hosting;
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using Microsoft.AspNetCore.Server.Kestrel.Core;
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using Microsoft.Extensions.DependencyInjection.Extensions;
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using Serilog;
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using ZB.MOM.WW.LocalDb.Replication;
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using Serilog.Events;
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using ZB.MOM.WW.OtOpcUa.AdminUI;
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using ZB.MOM.WW.OtOpcUa.AdminUI.Clients;
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@@ -379,6 +381,71 @@ builder.Services.AddOtOpcUaSecrets(builder.Configuration);
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builder.Services.AddOtOpcUaHealth();
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builder.Services.AddOtOpcUaObservability(builder.Configuration);
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// ---------------------------------------------------------------------------------------------
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// LocalDb sync listener (default-OFF).
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//
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// DANGER: any explicit Kestrel Listen* call makes Kestrel IGNORE ASPNETCORE_URLS/urls ENTIRELY
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// (it logs "Overriding address(es)"). The host has no ConfigureKestrel today and binds solely via
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// that configuration, so adding a listener naively would silently unbind the AdminUI + deploy API
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// behind Traefik. Everything the host was already asked to serve is therefore re-bound explicitly
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// in the same block.
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//
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// The listener is HTTP/2-ONLY on purpose: the sync client speaks prior-knowledge h2c, which a
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// cleartext Http1AndHttp2 endpoint cannot negotiate (there is no ALPN without TLS). Hence a
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// dedicated port rather than multiplexing onto the main one.
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//
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// When LocalDb:SyncListenPort is 0 (the default) none of this runs and URL binding is untouched.
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// ---------------------------------------------------------------------------------------------
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var syncListenPort = LocalDbRegistration.SyncListenPort(builder.Configuration);
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if (hasDriver && syncListenPort > 0)
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{
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var configuredUrls = builder.Configuration["urls"]
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?? builder.Configuration["ASPNETCORE_URLS"];
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var existingBindings = KestrelHttpBinding.Parse(configuredUrls);
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// A driver-only Windows-service node gets NO ASPNETCORE_URLS (Install-Services.ps1 sets it
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// only under $hasAdmin), so "nothing configured" is a real, supported state — not an error.
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// Kestrel's own default is localhost:5000; re-state it explicitly, because taking over
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// configuration means taking over the default too. Health probes hit this port.
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if (existingBindings.Count == 0)
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{
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existingBindings = [new KestrelHttpBinding("localhost", 5000, IsSecure: false)];
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Log.Information(
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"LocalDb sync listener enabled with no URLs configured; re-binding Kestrel's default " +
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"http://localhost:5000 alongside the sync port.");
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}
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// Re-binding an https endpoint would need its certificate configuration replayed too, which
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// this host does not model (TLS is terminated at Traefik). Rather than silently serve it
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// without TLS — or drop it — refuse to take over Kestrel at all and leave the existing
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// surface exactly as it was. The operator gets a loud, actionable error instead of an
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// AdminUI that stopped answering.
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if (existingBindings.Any(b => b.IsSecure))
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{
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Log.Error(
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"LocalDb:SyncListenPort is set to {Port} but this host serves HTTPS endpoint(s) ({Urls}). " +
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"Binding the sync listener requires re-binding every existing endpoint explicitly, and the " +
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"HTTPS certificate configuration cannot be replayed safely. The sync listener is DISABLED; " +
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"terminate TLS upstream (as the docker-dev rig does) or leave replication off on this node.",
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syncListenPort, configuredUrls);
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syncListenPort = 0;
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}
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else
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{
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builder.WebHost.ConfigureKestrel(kestrel =>
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{
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foreach (var binding in existingBindings)
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binding.Apply(kestrel);
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kestrel.ListenAnyIP(syncListenPort, o => o.Protocols = HttpProtocols.Http2);
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});
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Log.Information(
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"LocalDb sync listener bound on :{SyncPort} (h2c); re-bound existing endpoint(s) {Urls}.",
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syncListenPort, configuredUrls ?? "http://localhost:5000 (Kestrel default)");
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}
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}
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var app = builder.Build();
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// AddZbSerilog registers Serilog as the MEL logging provider but does NOT assign the static
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@@ -409,6 +476,15 @@ if (hasAdmin)
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app.MapOtOpcUaDeployApi(app.Configuration);
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}
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// Passive LocalDb sync endpoint. Gated on the same port check that bound the listener, so a
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// default-OFF or admin-only graph carries no sync surface whatsoever. Mapping it would be safe
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// even unauthenticated — LocalDbSyncAuthInterceptor fail-closes with no ApiKey configured — but
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// not mapping it at all is the stronger default.
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if (hasDriver && syncListenPort > 0)
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{
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app.MapZbLocalDbSync();
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}
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app.MapOtOpcUaHealth();
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app.MapOtOpcUaMetrics();
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@@ -0,0 +1,68 @@
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namespace ZB.MOM.WW.OtOpcUa.Runtime.Deployment;
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/// <summary>
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/// Node-local durable cache of the deployment artifact this node last applied.
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/// </summary>
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/// <remarks>
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/// <para>
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/// Exists so a driver node can boot into its last-known-good address space when the central
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/// configuration database is unreachable. Without it, a control-plane outage that outlives a
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/// node restart leaves that node with no address space at all — the plant loses visibility
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/// for a reason that has nothing to do with the plant.
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/// </para>
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/// </remarks>
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public interface IDeploymentArtifactCache
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{
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/// <summary>
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/// Persists <paramref name="artifact"/> as the cluster's current deployment.
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/// </summary>
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/// <remarks>
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/// <para>
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/// Idempotent per <paramref name="deploymentId"/>: re-storing the same deployment
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/// replaces its chunks rather than accumulating orphans. Retention is bounded to the two
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/// newest deployments per cluster, so a long-lived node cannot grow its local database
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/// without limit.
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/// </para>
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/// </remarks>
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Task StoreAsync(string clusterId, string deploymentId, string revisionHash,
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byte[] artifact, CancellationToken ct = default);
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/// <summary>
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/// Reads the cached artifact for <paramref name="clusterId"/>, or <see langword="null"/>
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/// when nothing is cached or the cached bytes fail their integrity check.
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/// </summary>
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/// <remarks>
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/// <para>
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/// A failed integrity check is deliberately indistinguishable from a miss. Booting a
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/// plant from a truncated address space is strictly worse than booting from none: the
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/// missing half looks like a deliberate configuration rather than an error.
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/// </para>
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/// </remarks>
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Task<CachedDeploymentArtifact?> GetCurrentAsync(string clusterId, CancellationToken ct = default);
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/// <summary>
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/// Reads the single cached pointer without knowing the cluster id.
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/// </summary>
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/// <remarks>
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/// <para>
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/// The boot seam needs this. A node's cluster id is only derivable from an artifact it
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/// has already loaded, or from the central database — which is precisely what is
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/// unreachable in the scenario this cache exists to survive. So the cold path reads the
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/// newest pointer unkeyed.
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/// </para>
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/// <para>
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/// More than one pointer row means the node was re-homed between clusters. The newest
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/// wins, but the choice is logged as a warning naming both clusters — a node silently
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/// booting a neighbouring cluster's configuration is exactly the failure that must never
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/// be quiet.
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/// </para>
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/// </remarks>
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Task<CachedDeploymentArtifact?> GetCurrentUnkeyedAsync(CancellationToken ct = default);
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}
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/// <summary>
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/// A deployment artifact recovered from the node-local cache, with the metadata needed to decide
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/// whether it is still current once the control plane is reachable again.
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/// </summary>
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public sealed record CachedDeploymentArtifact(
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string DeploymentId, string RevisionHash, byte[] Artifact, DateTimeOffset AppliedAtUtc);
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@@ -0,0 +1,316 @@
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using System.Globalization;
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using System.Security.Cryptography;
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using Microsoft.Extensions.Logging;
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using ZB.MOM.WW.LocalDb;
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namespace ZB.MOM.WW.OtOpcUa.Runtime.Deployment;
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/// <summary>
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/// <see cref="IDeploymentArtifactCache"/> backed by the replicated LocalDb deployment-cache
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/// tables.
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/// </summary>
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/// <remarks>
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/// <para>
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/// <b>Why the artifact is stored as base64 chunks.</b> See
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/// <see cref="DeploymentCacheSchema"/> — replication rejects BLOB columns and batches by row
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/// count against gRPC's message cap, so a whole-artifact row could never be delivered.
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/// Everything in this class that looks like ceremony (chunk indices, a chunk count, a
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/// separate SHA over the raw bytes) exists to make that split safely reversible.
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/// </para>
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/// </remarks>
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public sealed class LocalDbDeploymentArtifactCache : IDeploymentArtifactCache
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{
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/// <summary>
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/// Raw bytes per chunk, before base64 expansion.
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/// </summary>
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/// <remarks>
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/// 128 KiB raw is ≈ 171 KB encoded, which keeps a worst-case replication batch inside gRPC's
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/// 4 MB default cap with room to spare.
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/// </remarks>
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private const int ChunkSize = 128 * 1024;
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/// <summary>
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/// How many deployments per cluster survive a store.
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/// </summary>
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/// <remarks>
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/// Two, not one: the previous artifact is what a rollback would need, and keeping it costs
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/// one artifact's worth of disk. Three would only add a generation nobody rolls back to.
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/// </remarks>
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private const int RetainedDeployments = 2;
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private readonly ILocalDb _db;
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private readonly ILogger<LocalDbDeploymentArtifactCache> _logger;
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public LocalDbDeploymentArtifactCache(ILocalDb db, ILogger<LocalDbDeploymentArtifactCache> logger)
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{
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ArgumentNullException.ThrowIfNull(db);
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ArgumentNullException.ThrowIfNull(logger);
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_db = db;
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_logger = logger;
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}
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/// <inheritdoc/>
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public async Task StoreAsync(string clusterId, string deploymentId, string revisionHash,
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byte[] artifact, CancellationToken ct = default)
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{
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ArgumentException.ThrowIfNullOrWhiteSpace(clusterId);
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ArgumentException.ThrowIfNullOrWhiteSpace(deploymentId);
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ArgumentException.ThrowIfNullOrWhiteSpace(revisionHash);
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ArgumentNullException.ThrowIfNull(artifact);
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var sha = Convert.ToHexString(SHA256.HashData(artifact));
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var cachedAtUtc = FormatTimestamp(DateTimeOffset.UtcNow);
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var chunkCount = (artifact.Length + ChunkSize - 1) / ChunkSize;
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// One transaction for the whole store. A pointer that commits without its chunks — or
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// chunks that commit without the pointer — is a cache that reads back as a corrupt hit
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// rather than a clean miss, which is the one outcome this type exists to prevent.
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await using var tx = await _db.BeginTransactionAsync(ct);
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// Delete-then-insert rather than upsert-per-chunk: a re-store with FEWER chunks than last
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// time would otherwise leave the old tail behind, and those orphans read back as a
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// chunk-count mismatch forever.
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await tx.ExecuteAsync(
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"DELETE FROM deployment_artifacts WHERE deployment_id = @DeploymentId",
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new { DeploymentId = deploymentId },
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ct);
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for (var index = 0; index < chunkCount; index++)
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{
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var offset = index * ChunkSize;
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var length = Math.Min(ChunkSize, artifact.Length - offset);
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await tx.ExecuteAsync(
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"""
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INSERT INTO deployment_artifacts
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(deployment_id, chunk_index, cluster_id, revision_hash, chunk_count,
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chunk_base64, cached_at_utc)
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VALUES
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(@DeploymentId, @ChunkIndex, @ClusterId, @RevisionHash, @ChunkCount,
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@ChunkBase64, @CachedAtUtc)
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""",
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new
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{
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DeploymentId = deploymentId,
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ChunkIndex = index,
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ClusterId = clusterId,
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RevisionHash = revisionHash,
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ChunkCount = chunkCount,
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ChunkBase64 = Convert.ToBase64String(artifact, offset, length),
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CachedAtUtc = cachedAtUtc,
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},
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ct);
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}
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await tx.ExecuteAsync(
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"""
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INSERT INTO deployment_pointer
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(cluster_id, deployment_id, revision_hash, artifact_sha256, applied_at_utc)
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VALUES
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(@ClusterId, @DeploymentId, @RevisionHash, @Sha, @AppliedAtUtc)
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ON CONFLICT(cluster_id) DO UPDATE SET
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deployment_id = excluded.deployment_id,
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revision_hash = excluded.revision_hash,
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artifact_sha256 = excluded.artifact_sha256,
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applied_at_utc = excluded.applied_at_utc
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""",
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new
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{
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ClusterId = clusterId,
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DeploymentId = deploymentId,
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RevisionHash = revisionHash,
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Sha = sha,
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AppliedAtUtc = cachedAtUtc,
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},
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ct);
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// Prune inside the same transaction so the cache is never briefly unbounded. Ordering by
|
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// deployment_id as a tiebreak keeps the survivor set deterministic when two stores land in
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// the same timestamp tick.
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await tx.ExecuteAsync(
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$"""
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DELETE FROM deployment_artifacts
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WHERE cluster_id = @ClusterId
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AND deployment_id NOT IN (
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SELECT deployment_id
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FROM deployment_artifacts
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WHERE cluster_id = @ClusterId
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GROUP BY deployment_id
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ORDER BY MAX(cached_at_utc) DESC, deployment_id DESC
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LIMIT {RetainedDeployments}
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)
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""",
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new { ClusterId = clusterId },
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ct);
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await tx.CommitAsync(ct);
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}
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/// <inheritdoc/>
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public async Task<CachedDeploymentArtifact?> GetCurrentAsync(
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string clusterId, CancellationToken ct = default)
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{
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ArgumentException.ThrowIfNullOrWhiteSpace(clusterId);
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var pointers = await _db.QueryAsync(
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"""
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SELECT deployment_id, revision_hash, artifact_sha256, applied_at_utc
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FROM deployment_pointer
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WHERE cluster_id = @ClusterId
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""",
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ReadPointer,
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new { ClusterId = clusterId },
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ct);
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if (pointers.Count == 0)
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{
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_logger.LogDebug("No cached deployment pointer for cluster {ClusterId}.", clusterId);
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return null;
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}
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return await ReassembleAsync(clusterId, pointers[0], ct);
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}
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/// <inheritdoc/>
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public async Task<CachedDeploymentArtifact?> GetCurrentUnkeyedAsync(CancellationToken ct = default)
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{
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// applied_at_utc is round-trip ISO-8601 UTC, so ordering it as TEXT is chronological —
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// that is the reason the format is pinned rather than left to the current culture.
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var pointers = await _db.QueryAsync(
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"""
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SELECT cluster_id, deployment_id, revision_hash, artifact_sha256, applied_at_utc
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FROM deployment_pointer
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ORDER BY applied_at_utc DESC
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""",
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r => (ClusterId: r.GetString(0), Pointer: new PointerRow(
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DeploymentId: r.GetString(1),
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RevisionHash: r.GetString(2),
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ArtifactSha256: r.GetString(3),
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AppliedAtUtc: r.GetString(4))),
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parameters: null,
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ct);
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if (pointers.Count == 0)
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{
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_logger.LogDebug("No cached deployment pointer of any cluster.");
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return null;
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}
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if (pointers.Count > 1)
|
||||
{
|
||||
// The node was re-homed between clusters. Booting the newest is the only defensible
|
||||
// choice, but it must never be a silent one — a wrong-cluster address space presents as
|
||||
// a plausible configuration, so the operator needs the cluster names to spot it.
|
||||
_logger.LogWarning(
|
||||
"Local deployment cache holds pointers for {PointerCount} clusters ({ClusterIds}); " +
|
||||
"booting the newest ({ChosenClusterId}). This node appears to have been re-homed — " +
|
||||
"clear the stale cache if that is unexpected.",
|
||||
pointers.Count,
|
||||
string.Join(", ", pointers.Select(p => p.ClusterId)),
|
||||
pointers[0].ClusterId);
|
||||
}
|
||||
|
||||
return await ReassembleAsync(pointers[0].ClusterId, pointers[0].Pointer, ct);
|
||||
}
|
||||
|
||||
/// <summary>
|
||||
/// Rebuilds the artifact the pointer names, returning <see langword="null"/> unless every
|
||||
/// integrity check passes.
|
||||
/// </summary>
|
||||
private async Task<CachedDeploymentArtifact?> ReassembleAsync(
|
||||
string clusterId, PointerRow pointer, CancellationToken ct)
|
||||
{
|
||||
var chunks = await _db.QueryAsync(
|
||||
"""
|
||||
SELECT chunk_count, chunk_base64
|
||||
FROM deployment_artifacts
|
||||
WHERE deployment_id = @DeploymentId
|
||||
ORDER BY chunk_index
|
||||
""",
|
||||
r => (ChunkCount: r.GetInt32(0), Base64: r.GetString(1)),
|
||||
new { pointer.DeploymentId },
|
||||
ct);
|
||||
|
||||
// The chunk_count carried on every row is what makes a partial replica detectable. Without
|
||||
// it a missing tail chunk is indistinguishable from a shorter artifact.
|
||||
var expectedChunkCount = chunks.Count > 0 ? chunks[0].ChunkCount : 0;
|
||||
|
||||
if (chunks.Count != expectedChunkCount)
|
||||
{
|
||||
_logger.LogWarning(
|
||||
"Cached deployment {DeploymentId} for cluster {ClusterId} is incomplete: found " +
|
||||
"{FoundChunks} of {ExpectedChunks} chunks. Treating as a cache miss.",
|
||||
pointer.DeploymentId, clusterId, chunks.Count, expectedChunkCount);
|
||||
return null;
|
||||
}
|
||||
|
||||
byte[] artifact;
|
||||
try
|
||||
{
|
||||
artifact = Decode(chunks.Select(c => c.Base64));
|
||||
}
|
||||
catch (FormatException ex)
|
||||
{
|
||||
_logger.LogWarning(
|
||||
ex,
|
||||
"Cached deployment {DeploymentId} for cluster {ClusterId} has a chunk that is not " +
|
||||
"valid base64. Treating as a cache miss.",
|
||||
pointer.DeploymentId, clusterId);
|
||||
return null;
|
||||
}
|
||||
|
||||
var actualSha = Convert.ToHexString(SHA256.HashData(artifact));
|
||||
if (!string.Equals(actualSha, pointer.ArtifactSha256, StringComparison.OrdinalIgnoreCase))
|
||||
{
|
||||
_logger.LogWarning(
|
||||
"Cached deployment {DeploymentId} for cluster {ClusterId} failed its SHA-256 check " +
|
||||
"(expected {ExpectedSha}, computed {ActualSha}). Treating as a cache miss.",
|
||||
pointer.DeploymentId, clusterId, pointer.ArtifactSha256, actualSha);
|
||||
return null;
|
||||
}
|
||||
|
||||
if (!DateTimeOffset.TryParse(pointer.AppliedAtUtc, CultureInfo.InvariantCulture,
|
||||
DateTimeStyles.RoundtripKind, out var appliedAtUtc))
|
||||
{
|
||||
_logger.LogWarning(
|
||||
"Cached deployment {DeploymentId} for cluster {ClusterId} has an unparseable " +
|
||||
"applied_at_utc ({AppliedAtUtc}). Treating as a cache miss.",
|
||||
pointer.DeploymentId, clusterId, pointer.AppliedAtUtc);
|
||||
return null;
|
||||
}
|
||||
|
||||
return new CachedDeploymentArtifact(
|
||||
pointer.DeploymentId, pointer.RevisionHash, artifact, appliedAtUtc);
|
||||
}
|
||||
|
||||
private static byte[] Decode(IEnumerable<string> chunksInOrder)
|
||||
{
|
||||
using var buffer = new MemoryStream();
|
||||
|
||||
foreach (var chunk in chunksInOrder)
|
||||
{
|
||||
var bytes = Convert.FromBase64String(chunk);
|
||||
buffer.Write(bytes, 0, bytes.Length);
|
||||
}
|
||||
|
||||
return buffer.ToArray();
|
||||
}
|
||||
|
||||
private static PointerRow ReadPointer(Microsoft.Data.Sqlite.SqliteDataReader reader)
|
||||
=> new(
|
||||
DeploymentId: reader.GetString(0),
|
||||
RevisionHash: reader.GetString(1),
|
||||
ArtifactSha256: reader.GetString(2),
|
||||
AppliedAtUtc: reader.GetString(3));
|
||||
|
||||
/// <summary>
|
||||
/// Round-trip ("O") UTC, so lexicographic ordering of the stored TEXT is chronological
|
||||
/// ordering — the retention query sorts on it directly.
|
||||
/// </summary>
|
||||
private static string FormatTimestamp(DateTimeOffset value)
|
||||
=> value.ToUniversalTime().ToString("O", CultureInfo.InvariantCulture);
|
||||
|
||||
private sealed record PointerRow(
|
||||
string DeploymentId, string RevisionHash, string ArtifactSha256, string AppliedAtUtc);
|
||||
}
|
||||
Reference in New Issue
Block a user