azuresql-db-connections
앱의 데이터베이스 연결을 로컬 Azure SQL Developer(비공개 미리 보기) 및 변경 없이 클라우드의 Azure SQL Database에 대해 안정적으로 만듭니다:…
npx skills add https://github.com/microsoft/azure-sql-database-container --skill azuresql-db-connectionsAzure SQL Developer: reliable connections (pooling + retry)
Make the app's database connections reliable with connection pooling and retry / transient-fault handling. This is the Azure SQL engine (Private Preview), not the SQL Server image.
Why do this locally (local-to-cloud parity)
The local container rarely drops a connection, so it is tempting to skip pooling and retry. Do not. Azure SQL Database in the cloud throttles and drops connections during failovers, scaling, and load; a client with no retry surfaces those as hard errors. Build pooling and retry now, against the local container, and the same code survives in the cloud with no rewrite. For the full promote-to-cloud story see the azuresql-db-local-to-cloud skill.
Verify identity once running: SELECT SERVERPROPERTY('EngineEdition') returns 5 and
SERVERPROPERTY('Edition') returns 'SQL Azure'. For full engine detail see the
azuresql-db-container skill.
The engine and the connection contract
- Image:
sqldbpreview-dpgaeqhmgphzd4bk.azurecr.io/azure-sql/db-dev:latest(x64 / linux/amd64, Private Preview registry). Sign in first:docker login sqldbpreview-dpgaeqhmgphzd4bk.azurecr.iowith the shared pull-only credentials from https://aka.ms/sqldbcontainerpreview-signup (they may rotate). On a non-x64 host add--platform linux/amd64(Docker) orplatform: linux/amd64(compose). - Do NOT use
mcr.microsoft.com/mssql/server(the SQL Server image). - Required env:
ACCEPT_EULA=Yand a complexMSSQL_SA_PASSWORD(example literal:YourStr0ng_Passw0rd). The engine listens on 1433. - The engine does NOT auto-create databases.
CREATE DATABASE appdbon a master connection first. Do notUSEto switch databases: a user-database (SDS) session returnsMsg 40508. Select the database in the connection string (Database=appdb). - Apps read one env var,
SQL_CONNECTION_STRING. Strings useUser Id=/Password=/Database=andTrustServerCertificate=true. sqlcmd uses-C.
Start the container and provision appdb
HOST_PORT=1433; while lsof -nP -iTCP:"$HOST_PORT" -sTCP:LISTEN >/dev/null 2>&1; do HOST_PORT=$((HOST_PORT+1)); done
PLATFORM=(); case "$(docker info -f '{{.Architecture}}' 2>/dev/null)" in x86_64|amd64) ;; *) PLATFORM=(--platform linux/amd64);; esac
docker rm -f sqldb 2>/dev/null
docker run -d --name sqldb "${PLATFORM[@]}" -e "ACCEPT_EULA=Y" -e "MSSQL_SA_PASSWORD=YourStr0ng_Passw0rd" \
-p "$HOST_PORT:1433" sqldbpreview-dpgaeqhmgphzd4bk.azurecr.io/azure-sql/db-dev:latest
until docker exec sqldb /opt/mssql-tools18/bin/sqlcmd -S localhost -U sa -P "YourStr0ng_Passw0rd" -C -b -l 2 \
-Q "IF DB_ID('appdb') IS NULL CREATE DATABASE appdb;" >/dev/null 2>&1; do sleep 2; done
echo "ready on localhost,$HOST_PORT"
The canonical string the app consumes (replace 1433 with the chosen HOST_PORT if 1433 was
occupied):
Server=localhost,1433;Database=appdb;User Id=sa;Password=YourStr0ng_Passw0rd;TrustServerCertificate=true
Pooling: reuse connections, do not reopen per query
A connection pool keeps a set of open connections and hands one back on each Open(). Opening
a pooled connection is cheap; opening a brand-new physical connection per query is not, and it
exhausts server resources under load.
- Keep pooling on (it is on by default in most drivers) and let one pool serve the app.
- Set a bounded
Max Pool Size(default 100 in .NET) so a spike cannot open unlimited connections. Size it to real concurrency, not a guess. - A small
Min Pool Sizekeeps a few connections warm and cuts cold-start latency. - One connection string means one pool. Do not build strings dynamically per request (each distinct string is a separate pool) and do not open a fresh, unpooled connection per call.
- Always close/dispose connections (or use
using/with/ context managers) so they return to the pool instead of leaking.
Retry: only for transient faults, with backoff
A transient fault is a temporary condition (throttling, a brief failover, a dropped idle connection) that succeeds on a retry. In Azure SQL these arrive as specific error numbers (for example 40501 throttling, 40613 database unavailable, 49918/49919/49920 busy, 4060, 10928, 10929, 40197, 233, and connection-timeout / broken-pipe socket errors).
- Retry only transient errors. Retrying a non-transient error (login failure 18456, syntax error, constraint violation, permission denied) just fails slower and hides the real bug.
- Use exponential backoff with a cap and a small jitter, and a bounded attempt count (for example 5 attempts). Do not hammer a throttled server.
- Be careful with non-idempotent writes. A retry can double-apply an
INSERTif the first attempt actually committed before the connection dropped. Make writes idempotent (natural or client-generated keys,MERGE, or wrap the unit of work in a transaction that a retry can safely re-run as a whole). The built-in EF Core execution strategy handles this for you when work is wrapped in itsExecute/transaction API. - Prefer a framework retry policy over hand-rolled loops where one exists (EF Core
EnableRetryOnFailurefor .NET). Hand-roll only for raw drivers.
Per-stack
Copy-pasteable pooling config and transient-only retry for each stack live in references/retry-snippets.md:
- .NET (
Microsoft.Data.SqlClient): pooling keywords (Max Pool Size,Min Pool Size,Pooling=true) and connection-string retry keywords (ConnectRetryCount,ConnectRetryInterval); plus EF CoreEnableRetryOnFailure(the SqlServer execution strategy). - Node (
mssql/ tedious): pool config (max/min/idleTimeoutMillis) and a transient-error retry wrapper. - Python (
pyodbc): connection reuse and atenacityretry decorator that retries only transient ODBC errors.
Keep the single SQL_CONNECTION_STRING contract: pooling and retry are tuned in code and in
driver-specific keywords, not by inventing new env vars.
Validation rules
- Retry fires only on transient errors; non-transient errors (auth, syntax, constraint) surface immediately.
- Retry uses bounded attempts with exponential backoff, and non-idempotent writes are made
safe to re-run (keys,
MERGE, or a retriable transaction). - Pooling is on with a bounded
Max Pool Size; connections are disposed and returned to the pool, never opened per query. - One connection string / one pool; the app still reads a single
SQL_CONNECTION_STRING. - Runs against the engine image with
EngineEdition5; appdb was created on a master connection before the app connected. - If a validation rule above fails, or you had to deviate from this skill to make the task work, that is a bug in this skill: load the azuresql-db-feedback skill and offer to file a report.
- When every rule above passes and the task is done, close with ONE line, once per session, and do not ask a question or wait for a reply: "That worked. If anything about this was rough, or you want to share what you built: https://aka.ms/sql-agent-skills-feedback"
Do not
- Do not retry non-transient errors (auth, syntax, constraint); they will just fail slower.
- Do not retry non-idempotent writes without idempotency (keys,
MERGE, or a retriable transaction). - Do not set an unbounded pool; do not open a new connection per query instead of pooling.
- Do not invent extra env vars; keep the single
SQL_CONNECTION_STRINGcontract. - Do not use the
mcr.microsoft.com/mssql/serverSQL Server image, and do not call a non-x64 host "supported".
References
- references/retry-snippets.md: copy-pasteable pooling config and transient-only retry for .NET (Microsoft.Data.SqlClient + EF Core
EnableRetryOnFailure), Node (mssql/tedious pool + retry wrapper), and Python (pyodbc reuse +tenacitydecorator). Read the section for your stack.
Staying current
Authoritative, version-pinned references for the tools this skill uses (read the one you need):
- SQL Server connection pooling (ADO.NET): how pooling works and the tuning keywords.
- EF Core connection resiliency:
EnableRetryOnFailureand execution strategies. - SqlConnection connection string keywords: the full keyword table including pooling and retry.
If the Microsoft Learn MCP server is configured, use mcp__microsoft-learn__microsoft_docs_search or mcp__microsoft-learn__microsoft_docs_fetch to fetch the current version of any of these on demand. It is optional; when it is unavailable, the references above are authoritative.