Databases · head to head
TiDB vs Turso

TiDB
Databases
Apache 2.0 distributed SQL database with MySQL wire compatibility and a separate columnar replica for analytical queries.
- From
- Free
- Rated
- -

Turso
Databases
SQLite-lineage database platform for running very large numbers of small per-tenant databases, with an MIT-licensed engine.
- From
- Free
- Rated
- -
The short version
- Each has a real cost: TiDB a production cluster needs several placement driver, storage and SQL nodes before it is fault tolerant, so the minimum viable footprint is far larger than a MySQL server and TiDB is never the economical choice for a small database.; Turso sQLite allows one writer per database, so a single tenant's write throughput cannot be scaled horizontally and a busy tenant serialises against itself with no sharding option.
- They diverge on capability: TiDB covers MySQL wire compatibility, Turso covers Per-tenant databases.
- Prices and features above were last checked on 30 August 2026.
Where they differ
Only the attributes on which TiDB and Turso actually diverge.
Identical on both: starting price (Free), pricing model (freemium), free tier (Yes), user rating (Not yet rated), category (Databases).
What each one covers
Drawn from each product's published feature list. An absence here means we hold no record of it - not that the product lacks it.
Only in TiDB
- MySQL wire compatibility
- Horizontal write scaling
- Distributed ACID transactions
- TiFlash columnar replica
- Automatic rebalancing
- Raft replication
- Apache 2.0 licence
- Online schema change
Only in Turso
- Per-tenant databases
- MIT licence
- Embedded replicas
- SQLite compatibility
- HTTP access
- Branching
- Point-in-time restore
- In-process engine
What people use each for
The jobs each tool is most often brought in to do.
TiDB
- A MySQL workload that has hit the write ceiling of a single primary and would otherwise need an application-level sharding layernot Turso
- Reporting that must run against current transactional data, where the columnar replica removes the delay and the cost of an ETL pipelinenot Turso
- Multi-region deployments needing a single logical database with automatic failover rather than manual primary promotionnot Turso
- Migrating off a sharded MySQL estate where the sharding logic in the application has become the main source of bugs and operational toilnot Turso
Turso
- Multi-tenant SaaS where each customer gets their own database for real isolation, per-tenant restore and clean deletionnot TiDB
- Agent or session infrastructure that creates a throwaway database per task and destroys it afterwardsnot TiDB
- Local-first and offline-capable applications where an embedded replica serves reads at file speed and syncs when connectivity returnsnot TiDB
- Embedding a SQLite-compatible engine in a product where the public domain original's closed contribution model is a problemnot TiDB
Where each one falls short
Documented limitations, not opinions. Every one is a constraint you would hit in normal use.
TiDB
- A production cluster needs several placement driver, storage and SQL nodes before it is fault tolerant, so the minimum viable footprint is far larger than a MySQL server and TiDB is never the economical choice for a small database.
- Every transaction takes a timestamp from the placement driver and crosses the network to storage nodes, so simple point queries are slower than on single-node MySQL and latency-sensitive paths need to be measured, not assumed.
- MySQL compatibility is at the wire and dialect level but not complete; stored procedures, triggers and events are not supported, so an application that pushed logic into the database cannot simply be repointed.
- The columnar replica is an extra full copy of the data on its own nodes, so hybrid analytics roughly doubles storage and adds hardware that must be sized and paid for separately.
- Operating it well requires cluster-specific expertise in TiUP or the Kubernetes operator, region hot spots, and rebalancing behaviour, so the licence is free but the running cost includes an engineer who understands distributed storage.
Turso
- SQLite allows one writer per database, so a single tenant's write throughput cannot be scaled horizontally and a busy tenant serialises against itself with no sharding option.
- Per-tenant databases mean per-tenant migrations, so every schema change becomes a fan-out job that must be idempotent and resumable, and multi-database schemas, the feature meant to solve this, is deprecated.
- There are no cross-database queries; ATTACH is deprecated on the cloud, so any report or analytic spanning tenants must be assembled in your application or in a separate warehouse you also operate.
- Data Edge, the multi-region edge replication that was Turso's original positioning, is deprecated, so a large share of the tutorials and articles describing Turso as an edge database describe behaviour you can no longer rely on.
- Three engine lineages share the name, SQLite, the libSQL fork and the Rust rewrite, and the Rust engine is still maturing, so SQLite compatibility needs verifying against your specific pragmas, extensions and query patterns; the cloud already restricts journal_mode and busy_timeout and makes user_version read-only.
Pricing, plan by plan
TiDB
Free- ServerlessFree
- 5GB storage
- 50M request units
- Free forever tier
- Dedicated$250/month
- Dedicated resources
- SLA guarantees
- Enterprise support
Turso
Free- FreeFree
- 100 databases
- 5 GB storage
- 500M monthly rows read
- Developer$4.99/month
- Unlimited databases
- 9 GB storage
- 2.5B monthly rows read
- Scaler$24.92/month
- Unlimited databases
- 24 GB storage
- 100B monthly rows read
- Pro$416.58/month
- Unlimited databases
- 50 GB storage
- 250B monthly rows read
Which should you pick?
Choose TiDB if
- You need mysql wire compatibility.
- You want to start without paying.
- You work on Cloud, AWS, Azure, Google Cloud Platform, Self-managed.
- You also want horizontal write scaling.
Choose Turso if
- You need per-tenant databases.
- You want to start without paying.
- You also want mit licence.
Questions people ask
- Is TiDB or Turso better?
- Neither clearly leads. TiDB starts at Free and Turso at Free, and user ratings are close enough to be indistinguishable. Choose on capability and platform support.
- Which is cheaper, TiDB or Turso?
- TiDB starts at Free and Turso at Free.
- Does TiDB or Turso run on more platforms?
- TiDB runs on Cloud, AWS, Azure, Google Cloud Platform, Self-managed. Turso runs on Web.
- Can I use TiDB for free?
- Both have a free tier, so you can try either at no cost before committing.
- What is TiDB best used for?
- TiDB is most often used for a mysql workload that has hit the write ceiling of a single primary and would otherwise need an application-level sharding layer, reporting that must run against current transactional data, where the columnar replica removes the delay and the cost of an etl pipeline, multi-region deployments needing a single logical database with automatic failover rather than manual primary promotion, migrating off a sharded mysql estate where the sharding logic in the application has become the main source of bugs and operational toil. Of those, a mysql workload that has hit the write ceiling of a single primary and would otherwise need an application-level sharding layer and reporting that must run against current transactional data, where the columnar replica removes the delay and the cost of an etl pipeline are not what Turso is typically brought in for.
- What can TiDB do that Turso cannot?
- TiDB covers MySQL wire compatibility, Horizontal write scaling, Distributed ACID transactions, TiFlash columnar replica. Turso covers Per-tenant databases, MIT licence, Embedded replicas, SQLite compatibility.
Answered from the vendors’ own pages
TiDB: Is TiDB a drop-in replacement for MySQL?
At the protocol and dialect level it is close, and most applications connect unchanged. Stored procedures, triggers and events are not supported, and latency characteristics differ, so it needs testing rather than assumption.
Turso: Is Turso just hosted SQLite?
Not exactly. It hosts databases built on the SQLite lineage: libSQL, an MIT fork of SQLite, and Turso Database, a newer Rust rewrite. The platform adds branching, backups, an HTTP API and programmatic database creation.
TiDB: What licence is it under?
Apache 2.0, for both TiDB and the underlying TiKV storage engine. TiKV is a graduated CNCF project, which is a meaningful governance signal in a market where several competitors moved to source-available licences.
Turso: Can I really run a million databases?
That is the design goal and the platform API exists to make provisioning and deletion programmatic. The practical constraints are the ones that come with it: migrations fan out, and nothing can query across databases.
TiDB: Do I need TiFlash?
Only for analytical queries. It is an optional columnar replica; without it TiDB is a distributed transactional database. With it you get analytics on live data at the cost of an additional full copy.
Turso: How do embedded replicas handle read-after-write?
Reads come from the local replica and writes go to the primary, so a read immediately after a write can return stale data unless you wait for a sync. Application code has to account for that rather than assume it.
TiDB: Is the managed cloud the same software?
TiDB Cloud runs the same engine, with the control plane, scaling and operational tooling provided as a service. The entry tier is metered differently from a dedicated cluster, so the cost model rather than the engine is what changes.
Turso: What licence is it under?
libSQL and Turso Database are both MIT. Turso Cloud is a commercial managed service built on them, so the engine is genuinely open even though the platform is not.
TiDB: When is TiDB the wrong choice?
When the database is small enough for one server, when latency on single-row lookups is the primary constraint, or when the application depends on MySQL stored procedures and triggers.
Turso: Is Turso still an edge database?
No. Data Edge, the multi-region edge replication feature, is deprecated. The current positioning is per-tenant and embedded databases, and older material describing edge replication is out of date.
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