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$ guides / microsoft-sql-server / microsoft-sql-server-instance-down

Operations Guides

SQL Server instance down: no response on port 1433 and where to look first

Your availability probe just fired: TCP connect plus SELECT 1 against port 1433 has failed three or more times over at least 60 seconds. Before you restart anything, separate the two failure modes that get lumped together as “SQL Server is down”. They have different causes, different fixes, and different blast radii.

Mode one: no TCP connect at all. The listener is not accepting connections on 1433 (or the named instance’s dynamic port). The service is stopped, the host is down, the network path is broken, or the listener is misconfigured, commonly after an AlwaysOn failover. The engine is not there to talk to.

Mode two: TCP connects but the query hangs. The engine is alive but cannot make progress. Worker thread exhaustion from a blocking cascade, severe resource pressure, or runaway parallelism are the usual suspects. Restarting SQL Server here destroys the forensic state you need and only buys time until the next storm. Use the Dedicated Administrator Connection (DAC) to diagnose, not restart.

What the probe means

The Instance Responsiveness signal treats 3+ consecutive probe failures over 60 seconds or more as a PAGE-level condition. A single missed probe is not an outage. Brief scheduler spikes, network blips during cold start, and backup stress can all drop one probe.

A probe should be layered, not just a TCP connect:

  1. Open a TCP connection to the listener port (1433 for a default instance, the configured static or dynamic port for a named instance).
  2. Authenticate.
  3. Execute a trivial query like SELECT 1 with a 10-second timeout.

Each layer that fails points at a different fault:

  • TCP RST or timeout: the listener is not there. Service stopped, host down, network partition, or listener misconfigured.
  • TCP connect succeeds, query hangs: the engine accepted the connection but cannot schedule the worker. Worker exhaustion or blocking.
  • Authentication fails with a successful TCP connect: credentials or certificate problem, not an outage.
  • Connection succeeds in master but fails scoped to a specific database: that database is offline, restoring, or suspect. The instance is up.

A common false positive: the probe uses Initial Catalog=<prod_db> and that database is offline. The instance is healthy, every other database is online, and the alert is misleading. Scope probes to master for liveness and check database state separately.

flowchart TD
    A[Probe fails] --> B{TCP connect succeeds?}
    B -- No --> C[Service down / network / listener]
    C --> C1[systemctl status mssql-server]
    C --> C2[Error log + Event Log]
    C --> C3[OOM killer on Linux]
    C --> C4[AG listener routing]
    B -- Yes --> D[Engine alive, not progressing]
    D --> D1[Use DAC: sqlcmd -A]
    D --> D2[THREADPOOL waits + work_queue_count]
    D --> D3[Blocking chain head]

Common causes

CauseWhat it looks likeFirst thing to check
Service stopped or crashedTCP connect refused immediately; nothing listening on 1433systemctl status mssql-server (Linux) or Services.msc (Windows); error log tail
Host down or network partitionTCP connect times out; no RSTHost ping, Test-NetConnection, switch or firewall status
Listener misconfigured after AG failoverConnect to listener name fails, direct replica connect workssys.dm_hadr_availability_replica_states, listener IP routing
Named instance and SQL Browser downConnect by name fails with “network-related or instance-specific error”; direct port worksUDP 1434 reachable, SQL Browser service running
Worker thread exhaustionTCP connect succeeds, SELECT 1 hangsDAC session, THREADPOOL waits, work_queue_count per scheduler
Blocking cascadeSame as worker exhaustion, often preceded by lock waitssys.dm_exec_requests for head blocker, LCK_M_* waits
Database offline or suspectConnection to master works, probe scoped to one DB failssys.databases.state_desc
TLS or certificate expiryTCP connects, SSL handshake fails or login failsCertificate expiry in error log, sys.certificates for AG endpoints
OOM killer terminated the engine (Linux)Service was running, now gone; TCP connect refused/var/log/messages for OOM entries, memory.memorylimitmb in mssql.conf
Hostname longer than 15 chars on LinuxInstall or restart fails oddly, listener does not bindhostname length

Quick checks

Run these in order. All are read-only.

# 1. Layered probe from a client (use the right port for named instances)
sqlcmd -S <host>,1433 -Q "SELECT 1" -l 10
# Windows: Test-NetConnection -ComputerName <host> -Port 1433
# 2. Service status on Linux
sudo systemctl status mssql-server
sudo journalctl -u mssql-server --since "30 min ago" --no-pager
# 3. Service status on Windows (elevated)
Get-Service -Name 'MSSQLSERVER','SQLSERVERAGENT','SQLBrowser'
Get-WinEvent -FilterHashtable @{LogName='Application'; ProviderName='MSSQLSERVER'; StartTime=(Get-Date).AddHours(-1)} -MaxEvents 50
# 4. Tail the SQL Server error log
# Linux:
sudo tail -n 200 /var/opt/mssql/log/errorlog
# Or from a working SQL connection:
EXEC sp_readerrorlog 0, 1, 'Error';
# 5. Check for OOM kills on Linux
sudo grep -i "out of memory\|killed process\|mssql\|sqlservr" /var/log/messages /var/log/syslog 2>/dev/null | tail -n 50
# 6. DAC connection - bypasses worker pool limits
sqlcmd -S admin:<host> -U sa -P '<password>' -Q "SELECT 1"
# or:
sqlcmd -S <host> -U sa -P '<password>' -A
# If the login's default database is offline, force master:
sqlcmd -S admin:<host> -U sa -P '<password>' -A -d master
# 7. Confirm the listener port is actually bound
# Linux:
sudo ss -ltnp | grep -E '1433|sqlservr'
# Windows (elevated):
netstat -ano | findstr :1433
# 8. SQL Browser for named instances (UDP 1434)
# Linux:
sudo ss -lunp | grep 1434
# Windows:
Get-Service SQLBrowser
Get-NetUDPEndpoint -LocalPort 1434 -ErrorAction SilentlyContinue
-- 9. If AlwaysOn is in play, check replica and listener state from a working session
SELECT ag.name, ar.replica_server_name, ars.role_desc,
       ars.connected_state_desc, ars.synchronization_health_desc
FROM sys.dm_hadr_availability_replica_states ars
JOIN sys.availability_replicas ar ON ars.replica_id = ar.replica_id
JOIN sys.availability_groups ag ON ar.group_id = ag.group_id;
-- 10. Database state for the database the probe is scoped to
SELECT name, state_desc, user_access_desc, log_reuse_wait_desc
FROM sys.databases
WHERE state_desc <> 'ONLINE';

How to diagnose it

  1. Confirm the failure mode. From a client on the same subnet as the SQL host, run the layered probe. If TCP connect fails, treat this as a listener-or-below problem. If TCP connects but the query hangs, treat it as an engine problem.

  2. Check the service first, not the application. On Linux: systemctl status mssql-server. On Windows: Services.msc or Get-Service MSSQLSERVER. If the service is stopped, do not start it yet. Read the tail of the error log and the system journal first. The reason it stopped is more important than the fact it stopped.

  3. Read the error log. The error log records the shutdown reason, the last startup, I/O errors (823, 824, 825), stack dumps, and TempDB creation failures. SQL Server will refuse to start if TempDB cannot be created. Look for storage errors around the last shutdown timestamp.

  4. On Linux, check for OOM kills. The kernel OOM killer can terminate sqlservr silently from SQL Server’s perspective. Check /var/log/messages for “Out of memory” or “Killed process” entries mentioning mssql or sqlservr. If found, the fix is memory.memorylimitmb in /var/opt/mssql/mssql.conf (default is 80% of physical RAM), not a restart.

  5. If the service is up and TCP connect works, the problem is the engine. Open a DAC session. On the default instance the DAC listens on TCP 1434 directly. On SQL Server Express the DAC is not enabled unless trace flag 7806 was set at startup. DAC is local-only by default; for remote use, sp_configure 'remote admin connections', 1 must already have been run, so plan for console access to the host when you actually need it.

  6. In the DAC session, check the four horsemen of unresponsiveness: worker threads, blocking chains, memory grants, and scheduler runnable backlog.

-- Worker thread state and THREADPOOL waits
SELECT max_workers_count FROM sys.dm_os_sys_info;
SELECT scheduler_id, current_tasks_count, runnable_tasks_count,
       active_workers_count, work_queue_count
FROM sys.dm_os_schedulers
WHERE status = 'VISIBLE ONLINE';
SELECT wait_time_ms, waiting_tasks_count
FROM sys.dm_os_wait_stats WHERE wait_type = 'THREADPOOL';
-- Head blocker
SELECT r.session_id, r.blocking_session_id, r.wait_type,
       r.wait_time / 1000 AS wait_seconds, t.text
FROM sys.dm_exec_requests r
CROSS APPLY sys.dm_exec_sql_text(r.sql_handle) t
WHERE r.blocking_session_id <> 0
ORDER BY r.wait_time DESC;
  1. If nothing is wrong with the engine, suspect the path. For named instances, confirm SQL Browser is running and UDP 1434 is reachable from the client subnet. For AG listeners, confirm the listener IP is online on the current primary and the routing list is correct.

  2. If master connects but a database-scoped probe fails, the database is offline, restoring, or suspect. Check sys.databases.state_desc and the error log around the state change. The instance is not down; one database is. Update the probe.

Metrics and signals to monitor

SignalWhy it mattersWarning sign
Instance responsiveness probe (TCP + SELECT 1)The actual outage signal3+ failures over 60s
MSSQLSERVER or mssql-server service stateCatches crashes, OOM kills, manual stopsNot running
Error log critical entries (823, 824, 825, stack dumps, severity 20+)Hardware and engine failures that precede a crashNew entries since last sweep
max_workers_count and active workersWorker pool approaching exhaustionActive above 80% of max
THREADPOOL waits with work_queue_count > 0New connections will queue; effective outageSustained 60s or more
Blocking chain depth and head blocker statusCascades into worker exhaustionSleeping head blocker, chain greater than 10
sys.dm_os_schedulers.runnable_tasks_countIn-engine CPU queue, cleaner than OS CPUSustained above 1 per scheduler
Database state (state_desc)Database-scoped outage without instance outageAny non-ONLINE state
AG replica connected_state_desc and synchronization_health_descFailover capability and listener routingDISCONNECTED or NOT_HEALTHY
Disk space on data, log, and TempDB volumesPreventable outage causeBelow 20% or below next autogrow increment
Linux OOM eventsEngine killed by kernelOOM entries mentioning mssql or sqlservr
Certificate expiry (AG endpoints, TDE)Connections fail when certs lapseLess than 90 days to expiry

Fixes

Service stopped or crashed

Read the error log before you restart. The crash reason is the recurrence risk. If you see 823, 824, or stack dumps, the storage or the engine is the problem, and a restart may not even succeed. If TempDB could not be created, free space or fix permissions on the TempDB volume first. Only after you understand the cause, start the service (sudo systemctl start mssql-server or Start-Service MSSQLSERVER).

Host or network partition

If TCP connect times out from the probe host but works from the SQL host itself, the path is the problem. Check firewalls, switch health, and DNS. For named instances, confirm SQL Browser is running and UDP 1434 is not blocked between the client and the SQL host. For AG listeners, confirm the listener IP is hosted on the current primary and client routing reaches it.

Listener misconfigured after AG failover

Confirm the listener object is registered on the new primary. On SQL Server 2022 pre-CU24, listener object errors at failover are a known issue; apply CU24 or later. Validate the listener routing list and that the WSFC or Pacemaker resource is online.

Worker thread exhaustion or blocking cascade

Use the DAC to identify the head blocker. If the head blocker is a sleeping session with an uncommitted transaction, killing it is usually the right move, but the rollback may take as long as the original transaction. If the exhaustion is from parallel queries (many workers per request), check MAXDOP and Cost Threshold for Parallelism. If external waits dominate (linked servers, CLR), the offending session is in preemptive mode. Killing it forces rollback.

Database offline or suspect

If a database is offline because someone set it offline, bring it back online with ALTER DATABASE <name> SET ONLINE. If it is suspect, do not set it into EMERGENCY and run repair without understanding the cause. DBCC CHECKDB WITH REPAIR_ALLOW_DATA_LOSS is a last resort that silently drops data; restore from backup if at all possible. Update the probe to use master for the liveness check, and alert on database state separately.

OOM killer on Linux

Configure memory.memorylimitmb in /var/opt/mssql/mssql.conf to a value that leaves headroom for the OS and any co-located processes. The default of 80% of physical RAM is too high if other processes run on the host. Tune mssql.conf and restart the service to apply. Consider lowering oom_score_adj for the mssql process so the kernel prefers to kill other processes.

TLS or certificate expiry

Renew the certificate. For AG endpoints, the endpoints reconnect once the new cert is in place and the endpoints are altered to use it. For client TLS, the new cert must be trusted by clients.

Prevention

  • Scope liveness probes to master. Alert on individual database states separately so a single offline database does not page as “instance down”.
  • On Linux, set memory.memorylimitmb deliberately, not at the default. Monitor /var/log/messages for OOM activity.
  • Enable remote DAC before you need it: EXEC sp_configure 'remote admin connections', 1; RECONFIGURE;. Document the DAC connection string in your runbook.
  • For named instances, monitor SQL Browser service state and UDP 1434 reachability from the client subnet.
  • For AG deployments, run scheduled failover drills. A failover you have never tested is a failover you cannot rely on. Apply SQL Server 2022 CU24 or later if you are on that branch.
  • Monitor worker thread utilization, THREADPOOL waits, and runnable_tasks_count so worker exhaustion is caught before the probe fails.
  • Track certificate expiry on AG endpoints and TDE protectors with at least 90 days of lead time.
  • Set up error log alerting for 823, 824, 825, and stack dumps. These are the precursors to crashes and data loss.
  • On Linux, keep hostnames at 15 characters or fewer. Longer hostnames can cause install or restart failures that look like listener problems.

How Netdata helps

  • The SQL Server collector surfaces instance responsiveness, database states, worker thread utilization, wait statistics, and AG health at per-second granularity, so a probe failure can be correlated against the engine’s internal state at the second it stopped responding.
  • The dashboard pairs THREADPOOL waits, work_queue_count per scheduler, and blocking chain depth, letting you distinguish “engine gone” from “engine saturated” in seconds rather than minutes.
  • Per-second collection catches leading indicators (rising workers, growing blocking chains, climbing log usage) before the probe fails, and anomaly detection flags deviations from the per-database, per-hour baseline.
  • Error log and Windows Event Log forwarding into Netdata gives a single timeline view: storage errors, OOM kills, AG state changes, and probe failures align.
  • Host-level disk, memory, and CPU metrics are collected alongside SQL Server metrics, so an OS-level cause (OOM kill, full disk, CPU steal) is not hidden behind an engine-level symptom.

Netdata’s Microsoft SQL Server monitoring with Netdata brings these signals together with per-second metrics and ML anomaly detection.

The Netdata solution

Microsoft SQL Server monitoring with Netdata

Netdata monitors SQL Server with per-second metrics, pre-built dashboards, and ML-powered anomaly detection. Correlate wait statistics, blocking chains, transaction-log and TempDB pressure, Page Life Expectancy, memory grants, per-file I/O stalls, and AlwaysOn send/redo queues against the rest of your stack so you catch the incidents in these runbooks before they page anyone.