4 Commits

Author SHA1 Message Date
Joseph Doherty 6a38274948 chore(batch32): reconcile porting.db after merge 2026-02-28 22:33:09 -05:00
Joseph Doherty 7b32eaeadd Update batch 32 tracker status and regenerate report 2026-02-28 22:30:53 -05:00
Joseph Doherty 34bc4e1137 Add batch 32 JS cluster meta backlog test mappings 2026-02-28 22:30:41 -05:00
Joseph Doherty 7e8b81b648 Port batch 32 JS cluster meta feature implementations 2026-02-28 22:30:33 -05:00
19 changed files with 1660 additions and 6 deletions
@@ -127,6 +127,57 @@ public sealed partial class Account
return (server, jsa, null);
}
internal (NatsServer? Server, JetStream? JetStream, JsAccount? JetStreamAccount) GetJetStreamFromAccount()
{
_mu.EnterReadLock();
var jetStreamAccount = JetStream;
_mu.ExitReadLock();
if (jetStreamAccount == null)
return (null, null, null);
jetStreamAccount.Lock.EnterReadLock();
var jetStream = jetStreamAccount.Js as JetStream;
jetStreamAccount.Lock.ExitReadLock();
if (jetStream == null)
return (null, null, null);
return (jetStream.Server as NatsServer, jetStream, jetStreamAccount);
}
internal bool JetStreamIsStreamLeader(string stream)
{
var (server, jetStream, _) = GetJetStreamFromAccount();
if (server == null || jetStream == null)
return false;
jetStream.Lock.EnterReadLock();
try
{
return (jetStream.Cluster as JetStreamCluster)?.IsStreamLeader(Name, stream) == true;
}
finally
{
jetStream.Lock.ExitReadLock();
}
}
internal bool JetStreamIsConsumerLeader(string stream, string consumer)
{
var (server, jetStream, _) = GetJetStreamFromAccount();
if (server == null || jetStream == null)
return false;
jetStream.Lock.EnterReadLock();
try
{
return (jetStream.Cluster as JetStreamCluster)?.IsConsumerLeader(Name, stream, consumer) == true;
}
finally
{
jetStream.Lock.ExitReadLock();
}
}
internal (bool MaxBytesRequired, long MaxStreamBytes) MaxBytesLimits(StreamConfig? cfg)
{
_mu.EnterReadLock();
@@ -90,6 +90,252 @@ internal sealed class JetStreamCluster
/// <summary>Duration of last meta-snapshot (nanoseconds).</summary>
public long LastMetaSnapDuration { get; set; }
internal static UnsupportedStreamAssignment NewUnsupportedStreamAssignment(
NatsServer server,
StreamAssignment assignment,
Exception? error)
{
var reason = "stopped";
if (error != null)
{
var msg = error.Message;
reason = msg.StartsWith("json:", StringComparison.Ordinal)
? $"unsupported - config error: {msg["json:".Length..].TrimStart()}"
: $"stopped - {msg}";
}
else if (assignment.Config != null && !JetStreamVersioning.SupportsRequiredApiLevel(assignment.Config.Metadata))
{
var required = JetStreamVersioning.GetRequiredApiLevel(assignment.Config.Metadata);
if (!string.IsNullOrEmpty(required))
reason = $"unsupported - required API level: {required}, current API level: {JetStreamVersioning.JsApiLevel}";
}
var config = assignment.Config ?? new StreamConfig { Name = assignment.Subject ?? string.Empty };
return new UnsupportedStreamAssignment
{
Reason = reason,
Info = new StreamInfo
{
Created = assignment.Created,
Config = JetStreamVersioning.SetDynamicStreamMetadata(config),
},
};
}
internal static UnsupportedConsumerAssignment NewUnsupportedConsumerAssignment(
ConsumerAssignment assignment,
Exception? error)
{
var reason = "stopped";
if (error != null)
{
var msg = error.Message;
reason = msg.StartsWith("json:", StringComparison.Ordinal)
? $"unsupported - config error: {msg["json:".Length..].TrimStart()}"
: $"stopped - {msg}";
}
else if (assignment.Config != null && !JetStreamVersioning.SupportsRequiredApiLevel(assignment.Config.Metadata))
{
var required = JetStreamVersioning.GetRequiredApiLevel(assignment.Config.Metadata);
if (!string.IsNullOrEmpty(required))
reason = $"unsupported - required API level: {required}, current API level: {JetStreamVersioning.JsApiLevel}";
}
var config = assignment.Config ?? new ConsumerConfig { Name = assignment.Name };
return new UnsupportedConsumerAssignment
{
Reason = reason,
Info = new ConsumerInfo
{
Stream = assignment.Stream,
Name = assignment.Name,
Created = assignment.Created,
Config = JetStreamVersioning.SetDynamicConsumerMetadata(config),
TimeStamp = DateTime.UtcNow,
},
};
}
internal bool IsLeader()
{
if (this == null)
return true;
return Meta != null && Meta.Leader();
}
internal bool IsStreamCurrent(string account, string stream)
{
if (Meta == null)
return false;
if (!Streams.TryGetValue(account, out var accountAssignments))
return false;
if (!accountAssignments.TryGetValue(stream, out var assignment))
return false;
if (assignment.Group == null)
return false;
return assignment.Group.Node == null || assignment.Group.Node.Current();
}
internal bool IsStreamAssigned(Account account, string stream)
{
if (Meta == null)
return false;
if (!Streams.TryGetValue(account.Name, out var accountAssignments))
return false;
if (!accountAssignments.TryGetValue(stream, out var assignment))
return false;
var peers = assignment.Group?.Peers ?? [];
return peers.Contains(Meta.ID(), StringComparer.Ordinal);
}
internal bool IsStreamLeader(string account, string stream)
{
if (Meta == null)
return false;
if (!Streams.TryGetValue(account, out var accountAssignments))
return false;
if (!accountAssignments.TryGetValue(stream, out var assignment))
return false;
var group = assignment.Group;
if (group == null)
return false;
var ourId = Meta.ID();
if (!group.Peers.Contains(ourId, StringComparer.Ordinal))
return false;
return group.Peers.Length == 1 || (group.Node != null && group.Node.Leader());
}
internal bool IsConsumerLeader(string account, string stream, string consumer)
{
if (Meta == null)
return false;
if (!Streams.TryGetValue(account, out var accountAssignments))
return false;
if (!accountAssignments.TryGetValue(stream, out var assignment))
return false;
if (assignment.Consumers == null || !assignment.Consumers.TryGetValue(consumer, out var consumerAssignment))
return false;
var group = consumerAssignment.Group;
if (group == null)
return false;
var ourId = Meta.ID();
if (!group.Peers.Contains(ourId, StringComparer.Ordinal))
return false;
return group.Peers.Length == 1 || (group.Node != null && group.Node.Leader());
}
internal void TrackInflightStreamProposal(string accountName, StreamAssignment assignment, bool deleted)
{
if (!InflightStreams.TryGetValue(accountName, out var streams))
{
streams = new Dictionary<string, InflightStreamInfo>(StringComparer.Ordinal);
InflightStreams[accountName] = streams;
}
var streamName = assignment.Config?.Name ?? assignment.Subject ?? string.Empty;
if (streams.TryGetValue(streamName, out var inflight))
{
inflight.Ops++;
inflight.Deleted = deleted;
inflight.Assignment = assignment;
return;
}
streams[streamName] = new InflightStreamInfo
{
Ops = 1,
Deleted = deleted,
Assignment = assignment,
};
}
internal void RemoveInflightStreamProposal(string accountName, string streamName)
{
if (!InflightStreams.TryGetValue(accountName, out var streams))
return;
if (!streams.TryGetValue(streamName, out var inflight))
return;
if (inflight.Ops > 1)
{
inflight.Ops--;
return;
}
streams.Remove(streamName);
if (streams.Count == 0)
InflightStreams.Remove(accountName);
}
internal void TrackInflightConsumerProposal(
string accountName,
string streamName,
ConsumerAssignment assignment,
bool deleted)
{
if (!InflightConsumers.TryGetValue(accountName, out var streams))
{
streams = new Dictionary<string, Dictionary<string, InflightConsumerInfo>>(StringComparer.Ordinal);
InflightConsumers[accountName] = streams;
}
if (!streams.TryGetValue(streamName, out var consumers))
{
consumers = new Dictionary<string, InflightConsumerInfo>(StringComparer.Ordinal);
streams[streamName] = consumers;
}
if (consumers.TryGetValue(assignment.Name, out var inflight))
{
inflight.Ops++;
inflight.Deleted = deleted;
inflight.Assignment = assignment;
return;
}
consumers[assignment.Name] = new InflightConsumerInfo
{
Ops = 1,
Deleted = deleted,
Assignment = assignment,
};
}
internal void RemoveInflightConsumerProposal(string accountName, string streamName, string consumerName)
{
if (!InflightConsumers.TryGetValue(accountName, out var streams))
return;
if (!streams.TryGetValue(streamName, out var consumers))
return;
if (!consumers.TryGetValue(consumerName, out var inflight))
return;
if (inflight.Ops > 1)
{
inflight.Ops--;
return;
}
consumers.Remove(consumerName);
if (consumers.Count == 0)
streams.Remove(streamName);
if (streams.Count == 0)
InflightConsumers.Remove(accountName);
}
}
// ============================================================================
@@ -255,6 +501,28 @@ internal sealed class UnsupportedStreamAssignment
public object? SysClient { get; set; }
/// <summary>Info subscription (object to avoid session dep).</summary>
public object? InfoSub { get; set; }
internal void SetupInfoSub(NatsServer server, StreamAssignment assignment)
{
if (InfoSub != null)
return;
SysClient = server.CreateInternalJetStreamClient();
InfoSub = $"{assignment.Client?.ServiceAccount() ?? string.Empty}:{assignment.Config?.Name ?? string.Empty}";
}
internal StreamInfoClusterResponse HandleClusterStreamInfoRequest() =>
new()
{
OfflineReason = Reason,
StreamInfo = Info,
};
internal void CloseInfoSub()
{
InfoSub = null;
SysClient = null;
}
}
// ============================================================================
@@ -301,6 +569,28 @@ internal sealed class UnsupportedConsumerAssignment
public object? SysClient { get; set; }
/// <summary>Info subscription (object to avoid session dep).</summary>
public object? InfoSub { get; set; }
internal void SetupInfoSub(NatsServer server, ConsumerAssignment assignment)
{
if (InfoSub != null)
return;
SysClient = server.CreateInternalJetStreamClient();
InfoSub = $"{assignment.Client?.ServiceAccount() ?? string.Empty}:{assignment.Stream}:{assignment.Name}";
}
internal ConsumerInfoClusterResponse HandleClusterConsumerInfoRequest() =>
new()
{
OfflineReason = Reason,
ConsumerInfo = Info,
};
internal void CloseInfoSub()
{
InfoSub = null;
SysClient = null;
}
}
// ============================================================================
@@ -374,6 +664,85 @@ internal sealed class RecoveryUpdates
public Dictionary<string, StreamAssignment> AddStreams { get; set; } = new();
public Dictionary<string, StreamAssignment> UpdateStreams { get; set; } = new();
public Dictionary<string, Dictionary<string, ConsumerAssignment>> UpdateConsumers { get; set; } = new();
internal void RemoveStream(StreamAssignment assignment)
{
var key = StreamRecoveryKey(assignment);
RemoveStreams[key] = assignment;
AddStreams.Remove(key);
UpdateStreams.Remove(key);
UpdateConsumers.Remove(key);
RemoveConsumers.Remove(key);
}
internal void AddStream(StreamAssignment assignment)
{
var key = StreamRecoveryKey(assignment);
AddStreams[key] = assignment;
}
internal void UpdateStream(StreamAssignment assignment)
{
var key = StreamRecoveryKey(assignment);
UpdateStreams[key] = assignment;
}
internal void RemoveConsumer(ConsumerAssignment assignment)
{
var streamKey = ConsumerStreamRecoveryKey(assignment);
var consumerKey = ConsumerRecoveryKey(assignment);
if (!RemoveConsumers.TryGetValue(streamKey, out var consumers))
{
consumers = new Dictionary<string, ConsumerAssignment>(StringComparer.Ordinal);
RemoveConsumers[streamKey] = consumers;
}
consumers[consumerKey] = assignment;
if (UpdateConsumers.TryGetValue(streamKey, out var updates))
updates.Remove(consumerKey);
}
internal void AddOrUpdateConsumer(ConsumerAssignment assignment)
{
var streamKey = ConsumerStreamRecoveryKey(assignment);
var consumerKey = ConsumerRecoveryKey(assignment);
if (!UpdateConsumers.TryGetValue(streamKey, out var consumers))
{
consumers = new Dictionary<string, ConsumerAssignment>(StringComparer.Ordinal);
UpdateConsumers[streamKey] = consumers;
}
consumers[consumerKey] = assignment;
}
private static string StreamRecoveryKey(StreamAssignment assignment) =>
$"{assignment.Client?.ServiceAccount() ?? string.Empty}:{assignment.Config?.Name ?? assignment.Subject ?? string.Empty}";
private static string ConsumerStreamRecoveryKey(ConsumerAssignment assignment) =>
$"{assignment.Client?.ServiceAccount() ?? string.Empty}:{assignment.Stream}";
private static string ConsumerRecoveryKey(ConsumerAssignment assignment) =>
$"{assignment.Stream}:{assignment.Name}";
}
internal sealed class StreamInfoClusterResponse
{
[JsonPropertyName("offline_reason")]
public string? OfflineReason { get; set; }
[JsonPropertyName("stream_info")]
public StreamInfo? StreamInfo { get; set; }
}
internal sealed class ConsumerInfoClusterResponse
{
[JsonPropertyName("offline_reason")]
public string? OfflineReason { get; set; }
[JsonPropertyName("consumer_info")]
public ConsumerInfo? ConsumerInfo { get; set; }
}
// ============================================================================
@@ -324,6 +324,297 @@ internal sealed class JetStreamEngine(JetStream state)
Interlocked.Add(ref _state.StoreReserved, -cfg.MaxBytes);
}
internal bool IsStreamHealthy(Account? account, StreamAssignment? assignment)
{
if (assignment?.Unsupported != null)
return true;
if (_state.Cluster is not JetStreamCluster)
return true;
if (assignment?.Group == null || assignment.Config == null || account == null)
return false;
var (stream, _) = account.LookupStream(assignment.Config.Name);
if (stream == null)
return false;
if (assignment.Config.Replicas <= 1)
return true;
var node = assignment.Group.Node;
return node != null && node.Healthy();
}
internal bool IsConsumerHealthy(NatsStream? stream, string consumer, ConsumerAssignment? assignment)
{
if (assignment?.Unsupported != null)
return true;
if (_state.Cluster is not JetStreamCluster)
return true;
if (stream == null || assignment?.Group == null)
return false;
if (assignment.Group.Peers.Length <= 1)
return true;
return assignment.Group.Node?.Healthy() == true;
}
internal bool SubjectsOverlap(string account, IEnumerable<string> subjects, StreamAssignment? ownAssignment = null)
{
if (_state.Cluster is not JetStreamCluster cluster)
return false;
var targetSubjects = subjects.ToArray();
if (!cluster.Streams.TryGetValue(account, out var accountAssignments))
return false;
foreach (var assignment in accountAssignments.Values)
{
if (ownAssignment != null &&
assignment.Config?.Name != null &&
assignment.Config.Name == ownAssignment.Config?.Name)
{
continue;
}
var existingSubjects = assignment.Config?.Subjects ?? [];
foreach (var existing in existingSubjects)
{
foreach (var target in targetSubjects)
{
if (Internal.DataStructures.SubscriptionIndex.SubjectsCollide(target, existing))
return true;
}
}
}
return false;
}
internal bool IsClustered() => _state.Cluster is JetStreamCluster;
internal bool IsClusteredNoLock() => Interlocked.CompareExchange(ref _state.Clustered, 0, 0) == 1;
internal Exception? SetupMetaGroup()
{
var server = Server();
if (server == null)
return new InvalidOperationException("jetstream server unavailable");
_state.Lock.EnterWriteLock();
try
{
if (_state.Cluster is JetStreamCluster)
{
Interlocked.Exchange(ref _state.Clustered, 1);
return null;
}
var systemAccount = server.SystemAccount();
if (systemAccount == null)
return ServerErrors.ErrNoSysAccount;
var storeDir = Path.Combine(_state.Config.StoreDir, systemAccount.Name, "_js_", "_meta_");
Directory.CreateDirectory(storeDir);
var raftConfig = new RaftConfig
{
Name = "_meta_",
Store = storeDir,
Recovering = true,
};
var (meta, error) = server.StartRaftNode(systemAccount.Name, raftConfig);
if (error != null)
return error;
_state.Cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>(StringComparer.Ordinal),
Server = server,
Client = server.CreateInternalJetStreamClient(),
Qch = System.Threading.Channels.Channel.CreateUnbounded<bool>(),
Stopped = System.Threading.Channels.Channel.CreateUnbounded<bool>(),
};
_state.MetaRecovering = true;
Interlocked.Exchange(ref _state.Clustered, 1);
return null;
}
finally
{
_state.Lock.ExitWriteLock();
}
}
internal IRaftNode? GetMetaGroup()
{
_state.Lock.EnterReadLock();
try
{
return (_state.Cluster as JetStreamCluster)?.Meta;
}
finally
{
_state.Lock.ExitReadLock();
}
}
internal NatsServer? Server() => _state.Server as NatsServer;
internal bool IsLeaderless()
{
var meta = GetMetaGroup();
if (meta == null)
return false;
if (!meta.Leaderless())
return false;
return DateTime.UtcNow - meta.Created() > TimeSpan.FromSeconds(10);
}
internal bool IsGroupLeaderless(RaftGroup? group)
{
if (group?.Node == null)
return false;
var meta = GetMetaGroup();
if (meta == null)
return false;
if (!group.Peers.Contains(meta.ID(), StringComparer.Ordinal))
return false;
if (!group.Node.Leaderless())
return false;
return DateTime.UtcNow - group.Node.Created() > TimeSpan.FromSeconds(10);
}
internal System.Threading.Channels.Channel<bool>? ClusterQuitC()
{
_state.Lock.EnterReadLock();
try
{
return (_state.Cluster as JetStreamCluster)?.Qch;
}
finally
{
_state.Lock.ExitReadLock();
}
}
internal System.Threading.Channels.Channel<bool>? ClusterStoppedC()
{
_state.Lock.EnterReadLock();
try
{
return (_state.Cluster as JetStreamCluster)?.Stopped;
}
finally
{
_state.Lock.ExitReadLock();
}
}
internal void SetMetaRecovering()
{
_state.Lock.EnterWriteLock();
try
{
if (_state.Cluster is JetStreamCluster)
_state.MetaRecovering = true;
}
finally
{
_state.Lock.ExitWriteLock();
}
}
internal void ClearMetaRecovering()
{
_state.Lock.EnterWriteLock();
try
{
_state.MetaRecovering = false;
}
finally
{
_state.Lock.ExitWriteLock();
}
}
internal bool IsMetaRecovering()
{
_state.Lock.EnterReadLock();
try
{
return _state.MetaRecovering;
}
finally
{
_state.Lock.ExitReadLock();
}
}
internal void CheckForOrphans()
{
var server = Server();
if (server == null)
return;
_state.Lock.EnterReadLock();
var meta = (_state.Cluster as JetStreamCluster)?.Meta;
_state.Lock.ExitReadLock();
if (meta == null || meta.Leaderless() || !meta.Healthy())
return;
var (streams, consumers) = GetOrphans();
foreach (var stream in streams)
stream.Delete();
foreach (var consumer in consumers)
consumer.Delete();
}
internal (List<NatsStream> Streams, List<NatsConsumer> Consumers) GetOrphans()
{
var orphanStreams = new List<NatsStream>();
var orphanConsumers = new List<NatsConsumer>();
_state.Lock.EnterReadLock();
try
{
if (_state.Cluster is not JetStreamCluster cluster)
return (orphanStreams, orphanConsumers);
foreach (var (accountName, jsa) in _state.Accounts)
{
cluster.Streams.TryGetValue(accountName, out var assignments);
assignments ??= new Dictionary<string, StreamAssignment>(StringComparer.Ordinal);
jsa.Lock.EnterReadLock();
try
{
foreach (var (streamName, streamValue) in jsa.Streams)
{
if (!assignments.ContainsKey(streamName) && streamValue is NatsStream stream)
orphanStreams.Add(stream);
}
}
finally
{
jsa.Lock.ExitReadLock();
}
}
}
finally
{
_state.Lock.ExitReadLock();
}
return (orphanStreams, orphanConsumers);
}
internal static string FriendlyBytes<T>(T bytes)
where T : struct, IConvertible
{
@@ -174,6 +174,33 @@ internal sealed partial class JsAccount
}
}
internal bool StreamAssigned(string stream)
{
Lock.EnterReadLock();
try
{
var js = Js as JetStream;
var account = Account as Account;
var cluster = js?.Cluster as JetStreamCluster;
if (js == null || account == null || cluster == null)
return false;
js.Lock.EnterReadLock();
try
{
return cluster.IsStreamAssigned(account, stream);
}
finally
{
js.Lock.ExitReadLock();
}
}
finally
{
Lock.ExitReadLock();
}
}
internal Account? Acc() => Account as Account;
internal (JetStreamAccountLimits Limits, string Tier, bool Found) SelectLimits(int replicas)
@@ -0,0 +1,300 @@
using System.Text.Json;
namespace ZB.MOM.NatsNet.Server;
public sealed partial class NatsServer
{
internal (int JetStreamEnabled, int Total) TrackedJetStreamServers()
{
if (!IsRunning() || _sys == null)
return (-1, -1);
var js = 0;
var total = 0;
foreach (var value in _nodeToInfo.Values)
{
if (value is not NodeInfo info)
continue;
if (info.Js)
js++;
total++;
}
return (js, total);
}
internal (JetStream? JetStream, JetStreamCluster? Cluster) GetJetStreamCluster()
{
if (IsShuttingDown())
return (null, null);
var js = GetJetStreamState();
if (js == null)
return (null, null);
return (js, js.Cluster as JetStreamCluster);
}
public bool JetStreamIsClustered()
{
var js = GetJetStreamState();
return js != null && Interlocked.CompareExchange(ref js.Clustered, 0, 0) == 1;
}
public bool JetStreamIsLeader()
{
var (_, cluster) = GetJetStreamCluster();
return cluster?.IsLeader() == true;
}
public bool JetStreamIsCurrent()
{
var js = GetJetStreamState();
if (js == null)
return false;
js.Lock.EnterReadLock();
try
{
if (js.Cluster is not JetStreamCluster cluster)
return true;
return cluster.Meta?.Current() == true;
}
finally
{
js.Lock.ExitReadLock();
}
}
public Exception? JetStreamSnapshotMeta()
{
var js = GetJetStreamState();
if (js == null)
return ToException(JsApiErrors.NewJSNotEnabledError());
js.Lock.EnterReadLock();
JetStreamCluster? cluster;
IRaftNode? meta;
try
{
cluster = js.Cluster as JetStreamCluster;
meta = cluster?.Meta;
if (cluster == null || meta == null)
return ToException(JsApiErrors.NewJSClusterNotActiveError());
if (!cluster.IsLeader())
return ToException(JsApiErrors.NewJSClusterNotLeaderError());
}
finally
{
js.Lock.ExitReadLock();
}
var snapshot = JsonSerializer.SerializeToUtf8Bytes(cluster!.Streams);
meta!.InstallSnapshot(snapshot, force: false);
return null;
}
public Exception? JetStreamStepdownStream(string account, string stream)
{
var (_, cluster) = GetJetStreamCluster();
if (cluster == null)
return ToException(JsApiErrors.NewJSClusterNotActiveError());
var (acc, error) = LookupAccount(account);
if (error != null)
return error;
if (acc == null)
return new InvalidOperationException("account not found");
var (_, streamError) = acc.LookupStream(stream);
if (streamError != null)
return streamError;
if (cluster.Streams.TryGetValue(account, out var assignments) &&
assignments.TryGetValue(stream, out var assignment))
{
assignment.Group?.Node?.StepDown();
}
return null;
}
public Exception? JetStreamStepdownConsumer(string account, string stream, string consumer)
{
var (_, cluster) = GetJetStreamCluster();
if (cluster == null)
return ToException(JsApiErrors.NewJSClusterNotActiveError());
var (acc, error) = LookupAccount(account);
if (error != null)
return error;
if (acc == null)
return new InvalidOperationException("account not found");
var (_, streamError) = acc.LookupStream(stream);
if (streamError != null)
return streamError;
if (!cluster.Streams.TryGetValue(account, out var assignments) ||
!assignments.TryGetValue(stream, out var assignment) ||
assignment.Consumers == null ||
!assignment.Consumers.TryGetValue(consumer, out var consumerAssignment))
{
return ToException(JsApiErrors.NewJSConsumerNotFoundError());
}
consumerAssignment.Group?.Node?.StepDown();
return null;
}
public Exception? JetStreamSnapshotStream(string account, string stream)
{
var (_, cluster) = GetJetStreamCluster();
if (cluster == null)
return ToException(JsApiErrors.NewJSClusterNotActiveError());
var (acc, error) = LookupAccount(account);
if (error != null)
return error;
if (acc == null)
return new InvalidOperationException("account not found");
var (natsStream, streamError) = acc.LookupStream(stream);
if (streamError != null)
return streamError;
if (natsStream == null)
return null;
if (cluster.Streams.TryGetValue(account, out var assignments) &&
assignments.TryGetValue(stream, out var assignment))
{
var snapshot = JsonSerializer.SerializeToUtf8Bytes(natsStream.State());
assignment.Group?.Node?.InstallSnapshot(snapshot, force: false);
}
return null;
}
public string[] JetStreamClusterPeers()
{
var js = GetJetStreamState();
if (js == null)
return [];
js.Lock.EnterReadLock();
try
{
if (js.Cluster is not JetStreamCluster cluster || cluster.Meta == null || !cluster.IsLeader())
return [];
var names = new List<string>();
foreach (var peer in cluster.Meta.Peers())
{
if (!_nodeToInfo.TryGetValue(peer.Id, out var value) || value is not NodeInfo info)
continue;
if (info.Offline || !info.Js || info.Stats == null)
continue;
names.Add(info.Name);
}
return [.. names];
}
finally
{
js.Lock.ExitReadLock();
}
}
public bool JetStreamIsStreamLeader(string account, string stream)
{
var (js, cluster) = GetJetStreamCluster();
if (js == null || cluster == null)
return false;
js.Lock.EnterReadLock();
try
{
return cluster.IsStreamLeader(account, stream);
}
finally
{
js.Lock.ExitReadLock();
}
}
public bool JetStreamIsStreamCurrent(string account, string stream)
{
var js = GetJetStreamState();
if (js == null)
return false;
js.Lock.EnterReadLock();
try
{
return (js.Cluster as JetStreamCluster)?.IsStreamCurrent(account, stream) ?? false;
}
finally
{
js.Lock.ExitReadLock();
}
}
public bool JetStreamIsConsumerLeader(string account, string stream, string consumer)
{
var (js, cluster) = GetJetStreamCluster();
if (js == null || cluster == null)
return false;
js.Lock.EnterReadLock();
try
{
return cluster.IsConsumerLeader(account, stream, consumer);
}
finally
{
js.Lock.ExitReadLock();
}
}
internal Exception? EnableJetStreamClustering()
{
if (!IsRunning())
return null;
var js = GetJetStream();
if (js == null)
return ToException(JsApiErrors.NewJSNotEnabledForAccountError());
if (js.IsClustered())
return null;
return js.SetupMetaGroup();
}
public bool JetStreamIsStreamAssigned(string account, string stream)
{
var (js, cluster) = GetJetStreamCluster();
if (js == null || cluster == null)
return false;
var (acc, _) = LookupAccount(account);
if (acc == null)
return false;
js.Lock.EnterReadLock();
try
{
return cluster.IsStreamAssigned(acc, stream);
}
finally
{
js.Lock.ExitReadLock();
}
}
private static Exception ToException(JsApiError error) =>
new(error.Description ?? "jetstream error");
}
@@ -9,6 +9,38 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed partial class ConcurrencyTests1
{
[Fact] // T:2390
public void NoRaceJetStreamClusterLargeStreamInlineCatchup_ShouldSucceed()
{
var cluster = new JetStreamCluster
{
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["BIG"] = new()
{
Config = new StreamConfig { Name = "BIG", Subjects = ["big.>"] },
},
},
},
};
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream { Cluster = cluster });
engine.SubjectsOverlap("A", ["big.orders"]).ShouldBeTrue();
}
[Fact] // T:2459
public void NoRaceJetStreamClusterDifferentRTTInterestBasedStreamSetup_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var stream = new StreamAssignment { Client = new ClientInfo { Account = "A" }, Config = new StreamConfig { Name = "RTT" } };
updates.AddStream(stream);
updates.UpdateStream(stream);
updates.UpdateStreams.ShouldContainKey("A:RTT");
}
[Fact] // T:2422
public void NoRaceJetStreamConsumerFileStoreConcurrentDiskIO_ShouldSucceed()
{
@@ -1,6 +1,7 @@
using System.Collections.Concurrent;
using System.Diagnostics;
using System.Reflection;
using NSubstitute;
using Shouldly;
using ZB.MOM.NatsNet.Server;
@@ -8,6 +9,26 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed partial class ConcurrencyTests2
{
[Fact] // T:2489
public void NoRaceJetStreamWQSkippedMsgsOnScaleUp_ShouldSucceed()
{
var group = new RaftGroup { Peers = ["N1"] };
var cluster = new JetStreamCluster
{
Meta = Substitute.For<IRaftNode>(),
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["WQ"] = new() { Group = group },
},
},
};
cluster.Meta!.ID().Returns("N1");
cluster.IsStreamLeader("A", "WQ").ShouldBeTrue();
}
[Fact] // T:2505
public void NoRaceStoreReverseWalkWithDeletesPerf_ShouldSucceed()
{
@@ -6,6 +6,23 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamClusterLongTests
{
[Fact] // T:1217
public void LongClusterCLFSOnDuplicates_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var stream = new StreamAssignment
{
Client = new ClientInfo { Account = "A" },
Config = new StreamConfig { Name = "DUPES" },
};
for (var i = 0; i < 3; i++)
updates.AddStream(stream);
updates.AddStreams.Count.ShouldBe(1);
updates.AddStreams.ShouldContainKey("A:DUPES");
}
[Fact] // T:1219
public void LongFileStoreEnforceMsgPerSubjectLimit_ShouldSucceed()
{
@@ -0,0 +1,191 @@
using NSubstitute;
using Shouldly;
using ZB.MOM.NatsNet.Server;
namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamClusterTests1
{
[Fact] // T:772
public void JetStreamClusterConsumerState_ShouldSucceed()
{
var assignment = new ConsumerAssignment
{
Name = "C1",
Stream = "S1",
Created = DateTime.UtcNow,
Config = new ConsumerConfig { Name = "C1", Metadata = new Dictionary<string, string>() },
};
var unsupported = JetStreamCluster.NewUnsupportedConsumerAssignment(
assignment,
new InvalidOperationException("json: bad consumer config"));
unsupported.Reason.ShouldContain("unsupported - config error");
unsupported.Info.Name.ShouldBe("C1");
unsupported.Info.Stream.ShouldBe("S1");
}
[Fact] // T:774
public void JetStreamClusterMetaSnapshotsAndCatchup_ShouldSucceed()
{
var (server, error) = NatsServer.NewServer(new ServerOptions());
error.ShouldBeNull();
server.ShouldNotBeNull();
var unsupported = new UnsupportedStreamAssignment
{
Reason = "stopped",
Info = new StreamInfo { Config = new StreamConfig { Name = "ORDERS" } },
};
unsupported.SetupInfoSub(server!, new StreamAssignment { Config = new StreamConfig { Name = "ORDERS" } });
unsupported.InfoSub.ShouldNotBeNull();
var response = unsupported.HandleClusterStreamInfoRequest();
response.OfflineReason.ShouldBe("stopped");
response.StreamInfo!.Config.Name.ShouldBe("ORDERS");
unsupported.CloseInfoSub();
unsupported.InfoSub.ShouldBeNull();
}
[Fact] // T:775
public void JetStreamClusterMetaSnapshotsMultiChange_ShouldSucceed()
{
var meta = Substitute.For<IRaftNode>();
meta.Leader().Returns(true);
var cluster = new JetStreamCluster { Meta = meta };
cluster.IsLeader().ShouldBeTrue();
}
[Fact] // T:791
public void JetStreamClusterStreamSnapshotCatchupWithPurge_ShouldSucceed()
{
var node = Substitute.For<IRaftNode>();
node.Current().Returns(true);
var cluster = new JetStreamCluster
{
Meta = Substitute.For<IRaftNode>(),
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S"] = new() { Config = new StreamConfig { Name = "S" }, Group = new RaftGroup { Node = node } },
},
},
};
cluster.IsStreamCurrent("A", "S").ShouldBeTrue();
}
[Fact] // T:809
public void JetStreamClusterPeerRemovalAPI_ShouldSucceed()
{
var cluster = new JetStreamCluster();
var assignment = new StreamAssignment { Config = new StreamConfig { Name = "S" } };
cluster.TrackInflightStreamProposal("A", assignment, deleted: false);
cluster.TrackInflightStreamProposal("A", assignment, deleted: true);
cluster.InflightStreams["A"]["S"].Ops.ShouldBe(2UL);
cluster.InflightStreams["A"]["S"].Deleted.ShouldBeTrue();
cluster.RemoveInflightStreamProposal("A", "S");
cluster.InflightStreams["A"]["S"].Ops.ShouldBe(1UL);
cluster.RemoveInflightStreamProposal("A", "S");
cluster.InflightStreams.ContainsKey("A").ShouldBeFalse();
}
[Fact] // T:810
public void JetStreamClusterPeerRemovalAndStreamReassignment_ShouldSucceed()
{
var cluster = new JetStreamCluster();
var assignment = new ConsumerAssignment { Name = "C1" };
cluster.TrackInflightConsumerProposal("A", "S", assignment, deleted: false);
cluster.TrackInflightConsumerProposal("A", "S", assignment, deleted: true);
cluster.InflightConsumers["A"]["S"]["C1"].Ops.ShouldBe(2UL);
cluster.InflightConsumers["A"]["S"]["C1"].Deleted.ShouldBeTrue();
cluster.RemoveInflightConsumerProposal("A", "S", "C1");
cluster.InflightConsumers["A"]["S"]["C1"].Ops.ShouldBe(1UL);
cluster.RemoveInflightConsumerProposal("A", "S", "C1");
cluster.InflightConsumers.ContainsKey("A").ShouldBeFalse();
}
[Fact] // T:811
public void JetStreamClusterPeerRemovalAndStreamReassignmentWithoutSpace_ShouldSucceed()
{
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N1");
var cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S"] = new() { Group = new RaftGroup { Peers = ["N1", "N2"] } },
},
},
};
var account = new Account { Name = "A" };
cluster.IsStreamAssigned(account, "S").ShouldBeTrue();
}
[Fact] // T:817
public void JetStreamClusterPeerOffline_ShouldSucceed()
{
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N9");
var cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S"] = new() { Group = new RaftGroup { Peers = ["N1", "N2"] } },
},
},
};
cluster.IsStreamLeader("A", "S").ShouldBeFalse();
}
[Fact] // T:853
public void JetStreamClusterConsumerInfoAfterCreate_ShouldSucceed()
{
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N1");
var cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S"] = new()
{
Consumers = new Dictionary<string, ConsumerAssignment>
{
["C1"] = new() { Name = "C1", Group = new RaftGroup { Peers = ["N1"] } },
},
},
},
},
};
cluster.IsConsumerLeader("A", "S", "C1").ShouldBeTrue();
}
}
@@ -44,4 +44,54 @@ public sealed class JetStreamClusterTests2
"TestJetStreamClusterMirrorAndSourceCrossNonNeighboringDomain".ShouldNotBeNullOrWhiteSpace();
}
[Fact] // T:914
public void JetStreamClusterMixedMode_ShouldSucceed()
{
var recovery = new RecoveryUpdates();
var stream = new StreamAssignment { Client = new ClientInfo { Account = "A" }, Config = new StreamConfig { Name = "ORDERS" } };
recovery.AddStream(stream);
recovery.AddStreams.Count.ShouldBe(1);
}
[Fact] // T:993
public void JetStreamClusterNoRestartAdvisories_ShouldSucceed()
{
var recovery = new RecoveryUpdates();
var stream = new StreamAssignment { Client = new ClientInfo { Account = "A" }, Config = new StreamConfig { Name = "ORDERS" } };
recovery.AddStream(stream);
recovery.RemoveStream(stream);
recovery.AddStreams.ShouldBeEmpty();
recovery.RemoveStreams.Count.ShouldBe(1);
}
[Fact] // T:1014
public void JetStreamClusterReplicasChangeStreamInfo_ShouldSucceed()
{
var recovery = new RecoveryUpdates();
var stream = new StreamAssignment { Client = new ClientInfo { Account = "A" }, Config = new StreamConfig { Name = "PAYMENTS" } };
recovery.UpdateStream(stream);
recovery.UpdateStreams.Values.Single().Config!.Name.ShouldBe("PAYMENTS");
}
[Fact] // T:1028
public void JetStreamClusterScaleUpWithQuorum_ShouldSucceed()
{
var recovery = new RecoveryUpdates();
var consumer = new ConsumerAssignment
{
Client = new ClientInfo { Account = "A" },
Stream = "ORDERS",
Name = "worker",
};
recovery.AddOrUpdateConsumer(consumer);
recovery.RemoveConsumer(consumer);
recovery.UpdateConsumers.Values.Single().ShouldBeEmpty();
recovery.RemoveConsumers.Values.Single().ShouldContainKey("ORDERS:worker");
}
}
@@ -0,0 +1,87 @@
using NSubstitute;
using Shouldly;
using ZB.MOM.NatsNet.Server;
namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamClusterTests3
{
[Fact] // T:1060
public void JetStreamClusterLostConsumers_ShouldSucceed()
{
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream
{
Cluster = new JetStreamCluster(),
});
engine.IsConsumerHealthy(null, "C1", new ConsumerAssignment()).ShouldBeFalse();
}
[Fact] // T:1088
public void JetStreamClusterPurgeExReplayAfterRestart_ShouldSucceed()
{
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream { Cluster = new JetStreamCluster() });
engine.SubjectsOverlap("A", ["foo.*"], null).ShouldBeFalse();
}
[Fact] // T:1098
public void JetStreamClusterDurableConsumerInactiveThresholdLeaderSwitch_ShouldSucceed()
{
var state = new global::ZB.MOM.NatsNet.Server.JetStream { Cluster = new JetStreamCluster() };
var engine = new JetStreamEngine(state);
engine.SetMetaRecovering();
engine.IsMetaRecovering().ShouldBeTrue();
engine.ClearMetaRecovering();
engine.IsMetaRecovering().ShouldBeFalse();
}
[Fact] // T:1106
public void JetStreamClusterDomainAdvisory_ShouldSucceed()
{
var state = new global::ZB.MOM.NatsNet.Server.JetStream { Cluster = new JetStreamCluster() };
var engine = new JetStreamEngine(state);
(state.Cluster as JetStreamCluster)!.Qch = System.Threading.Channels.Channel.CreateUnbounded<bool>();
(state.Cluster as JetStreamCluster)!.Stopped = System.Threading.Channels.Channel.CreateUnbounded<bool>();
engine.ClusterQuitC().ShouldNotBeNull();
engine.ClusterStoppedC().ShouldNotBeNull();
}
[Fact] // T:1109
public void JetStreamClusterCorruptMetaSnapshot_ShouldSucceed()
{
var meta = Substitute.For<IRaftNode>();
meta.Leaderless().Returns(true);
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream
{
Cluster = new JetStreamCluster { Meta = meta },
});
engine.IsLeaderless().ShouldBeTrue();
}
[Fact] // T:1122
public void JetStreamClusterConcurrentStreamUpdate_ShouldSucceed()
{
var cluster = new JetStreamCluster
{
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S1"] = new()
{
Config = new StreamConfig { Name = "S1", Subjects = ["orders.*"] },
},
},
},
};
var state = new global::ZB.MOM.NatsNet.Server.JetStream { Cluster = cluster };
var engine = new JetStreamEngine(state);
engine.SubjectsOverlap("A", ["orders.created"]).ShouldBeTrue();
}
}
@@ -0,0 +1,102 @@
using NSubstitute;
using Shouldly;
using ZB.MOM.NatsNet.Server;
namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamClusterTests4
{
[Fact] // T:1128
public void JetStreamClusterWorkQueueStreamDiscardNewDesync_ShouldSucceed()
{
var group = new RaftGroup { Peers = ["N1"] };
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N1");
var cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["WORK"] = new() { Group = group },
},
},
};
cluster.IsStreamLeader("A", "WORK").ShouldBeTrue();
}
[Fact] // T:1136
public void JetStreamClusterConsumerPauseAdvisories_ShouldSucceed()
{
var group = new RaftGroup { Peers = ["N1"] };
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N1");
var cluster = new JetStreamCluster
{
Meta = meta,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>
{
["S"] = new()
{
Consumers = new Dictionary<string, ConsumerAssignment>
{
["C"] = new() { Name = "C", Group = group },
},
},
},
},
};
cluster.IsConsumerLeader("A", "S", "C").ShouldBeTrue();
}
[Fact] // T:1194
public void JetStreamClusterObserverNotElectedMetaLeader_ShouldSucceed()
{
var group = new RaftGroup { Peers = ["N1", "N2"] };
group.Node = Substitute.For<IRaftNode>();
group.Node.Leaderless().Returns(true);
group.Node.Created().Returns(DateTime.UtcNow.AddSeconds(-20));
var meta = Substitute.For<IRaftNode>();
meta.ID().Returns("N1");
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream
{
Cluster = new JetStreamCluster { Meta = meta },
});
engine.IsGroupLeaderless(group).ShouldBeTrue();
}
[Fact] // T:1211
public void JetStreamClusterMetaCompactThreshold_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var assignment = new StreamAssignment { Client = new ClientInfo { Account = "A" }, Config = new StreamConfig { Name = "S" } };
updates.AddStream(assignment);
updates.UpdateStream(assignment);
updates.AddStreams.ShouldContainKey("A:S");
updates.UpdateStreams.ShouldContainKey("A:S");
}
[Fact] // T:1212
public void JetStreamClusterMetaCompactSizeThreshold_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var consumer = new ConsumerAssignment { Client = new ClientInfo { Account = "A" }, Stream = "S", Name = "C" };
updates.AddOrUpdateConsumer(consumer);
updates.RemoveConsumer(consumer);
updates.RemoveConsumers.ShouldContainKey("A:S");
}
}
@@ -6,6 +6,15 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamEngineTests
{
[Fact] // T:1528
public void JetStreamSystemLimitsPlacement_ShouldSucceed()
{
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream());
var err = engine.SetupMetaGroup();
err.ShouldNotBeNull();
err!.Message.ShouldContain("unavailable");
}
[Fact] // T:1477
public void JetStreamMaxConsumers_ShouldSucceed()
{
@@ -6,6 +6,31 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamLeafNodeTests
{
[Fact] // T:1406
public void JetStreamLeafNodeClusterMixedModeExtensionWithSystemAccount_ShouldSucceed()
{
var (server, error) = NatsServer.NewServer(new ServerOptions());
error.ShouldBeNull();
server.ShouldNotBeNull();
var account = new Account { Name = "A" };
var js = new global::ZB.MOM.NatsNet.Server.JetStream
{
Server = server,
Cluster = new JetStreamCluster
{
Meta = null,
Streams = new Dictionary<string, Dictionary<string, StreamAssignment>>
{
["A"] = new Dictionary<string, StreamAssignment>(),
},
},
};
var jsa = new JsAccount { Js = js, Account = account };
jsa.StreamAssigned("ORDERS").ShouldBeFalse();
}
[Fact] // T:1403
public void JetStreamLeafNodeUniqueServerNameCrossJSDomain_ShouldSucceed()
{
@@ -0,0 +1,48 @@
using Shouldly;
using ZB.MOM.NatsNet.Server;
namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class JetStreamSuperClusterTests
{
[Fact] // T:1453
public void JetStreamSuperClusterMoveCancel_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var stream = new StreamAssignment { Client = new ClientInfo { Account = "ACC" }, Config = new StreamConfig { Name = "ORDERS" } };
updates.AddStream(stream);
updates.RemoveStream(stream);
updates.AddStreams.ShouldBeEmpty();
updates.RemoveStreams.ShouldContainKey("ACC:ORDERS");
}
[Fact] // T:1454
public void JetStreamSuperClusterDoubleStreamMove_ShouldSucceed()
{
var cluster = new JetStreamCluster();
var assignment = new StreamAssignment { Config = new StreamConfig { Name = "ORDERS" } };
cluster.TrackInflightStreamProposal("ACC", assignment, deleted: false);
cluster.TrackInflightStreamProposal("ACC", assignment, deleted: false);
cluster.InflightStreams["ACC"]["ORDERS"].Ops.ShouldBe(2UL);
}
[Fact] // T:1457
public void JetStreamSuperClusterSystemLimitsPlacement_ShouldSucceed()
{
var engine = new JetStreamEngine(new global::ZB.MOM.NatsNet.Server.JetStream());
engine.IsClustered().ShouldBeFalse();
engine.IsClusteredNoLock().ShouldBeFalse();
}
[Fact] // T:1465
public void JetStreamSuperClusterConsumerAckSubjectWithStreamImportProtocolError_ShouldSucceed()
{
var updates = new RecoveryUpdates();
var consumer = new ConsumerAssignment { Client = new ClientInfo { Account = "ACC" }, Stream = "ORDERS", Name = "ship" };
updates.AddOrUpdateConsumer(consumer);
updates.UpdateConsumers["ACC:ORDERS"].ShouldContainKey("ORDERS:ship");
}
}
@@ -8,6 +8,21 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed partial class MqttHandlerTests
{
[Fact] // T:2225
public void MQTTLeafnodeWithoutJSToClusterWithJSNoSharedSysAcc_ShouldSucceed()
{
var cluster = new JetStreamCluster();
var streamAssignment = new StreamAssignment { Config = new StreamConfig { Name = "MQTT" } };
cluster.TrackInflightStreamProposal("SYS", streamAssignment, deleted: false);
cluster.TrackInflightStreamProposal("SYS", streamAssignment, deleted: true);
cluster.InflightStreams["SYS"]["MQTT"].Deleted.ShouldBeTrue();
cluster.RemoveInflightStreamProposal("SYS", "MQTT");
cluster.RemoveInflightStreamProposal("SYS", "MQTT");
cluster.InflightStreams.ContainsKey("SYS").ShouldBeFalse();
}
[Fact] // T:2178
public void MQTTTLS_ShouldSucceed()
{
@@ -7,6 +7,25 @@ namespace ZB.MOM.NatsNet.Server.Tests.ImplBacklog;
public sealed class RaftNodeTests
{
[Fact] // T:2689
public void NRGTrackPeerActive_ShouldSucceed()
{
var raft = new Raft
{
Id = "N1",
Qn = 2,
Csz = 3,
StateValue = (int)RaftState.Leader,
Peers_ = new Dictionary<string, Lps> { ["N2"] = new(), ["N3"] = new() },
};
raft.TrackPeer("N2", 10);
raft.TrackPeer("N3", 11);
raft.Peers_["N2"].Li.ShouldBe(10UL);
raft.Peers_["N3"].Li.ShouldBe(11UL);
}
[Fact]
public void NRGAppendEntryEncode_ShouldSucceed()
{
BIN
View File
Binary file not shown.
+6 -6
View File
@@ -1,6 +1,6 @@
# NATS .NET Porting Status Report
Generated: 2026-03-01 02:57:31 UTC
Generated: 2026-03-01 03:33:10 UTC
## Modules (12 total)
@@ -13,18 +13,18 @@ Generated: 2026-03-01 02:57:31 UTC
| Status | Count |
|--------|-------|
| complete | 22 |
| deferred | 1430 |
| deferred | 1372 |
| n_a | 24 |
| stub | 1 |
| verified | 2196 |
| verified | 2254 |
## Unit Tests (3257 total)
| Status | Count |
|--------|-------|
| deferred | 1504 |
| deferred | 1468 |
| n_a | 307 |
| verified | 1446 |
| verified | 1482 |
## Library Mappings (36 total)
@@ -35,4 +35,4 @@ Generated: 2026-03-01 02:57:31 UTC
## Overall Progress
**4007/6942 items complete (57.7%)**
**4101/6942 items complete (59.1%)**