101 lines
3.6 KiB
Markdown
101 lines
3.6 KiB
Markdown
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# DBConnection
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Database connection behaviour and database connection pool designed for
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handling transaction, prepare/execute, cursors and client process
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describe/encode/decode.
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Examples of using the `DBConnection` behaviour are available in
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`./examples/db_agent/` and `./examples/tcp_connection/`.
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There is also [a series of articles on building database adapters](http://blog.plataformatec.com.br/2018/11/building-a-new-mysql-adapter-for-ecto-part-i-hello-world/). It includes articles covering both DBConnection and Ecto integrations.
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## Contributing
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Run unit tests with:
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$ mix test
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To run the integration tests (for each available pool):
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$ mix test.pools
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To run all tests:
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$ mix test.all
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## Design
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This library is made of four main modules:
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* `DBConnection` - this is the code running on the client
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and the specification of the DBConnection API
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* `DBConnection.Connection` - this is the process that
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establishes the database connection
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* `DBConnection.ConnectionPool` - this is the connection
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pool. A client asks the connection pool for a connection.
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There is also an ownership pool, used mostly during tests,
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which we won't discuss here.
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* `DBConnection.Holder` - the holder is responsible for
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keeping the connection and checkout state. It is modelled
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by using an ETS table.
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Once a connection is created, it creates a holder and
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assigns the connection pool as the heir. Then the holder
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is promptly given away to the pool. The connection itself
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is mostly a dummy. It is there to handle connections and pings.
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The state itself (such as the socket) is all in the holder.
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Once there is a checkout, the pool gives the holder to the
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client process and stores all relevant information in the
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holder table itself. If the client terminates without
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checking in, then the holder is given back to the pool via
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the heir mechanism. The pool will then discard the connection.
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One important design detail in DBConnection is that it avoids
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copying data. Other database libraries would send a request
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to the connection process, perform the query in the connection
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process, and then send it back to the client. This means a lot of
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data copying in Elixir. DBConnection keeps the socket in the
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holder and works on it directly.
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DBConnection also takes all of the care necessary to handle
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failures, and it shuts down the connection and the socket
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whenever the client does not check in the connection to avoid
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recycling sockets/connections in a corrupted state (such as a socket
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that is stuck inside a transaction).
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### Deadlines
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When a checkout happens, a deadline is started by the client
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to send a message to the pool after a time interval. If the
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deadline is reached and the connection is still checked out,
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the holder is deleted and the connection is terminated. If the
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client tries to use a terminated connection, an error will
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be raised (see `Holder.handle/4`).
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### Pool
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The queuing algorithm used by the pool is [CoDel](https://queue.acm.org/appendices/codel.html)
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which allows us to plan for overloads and reject requests
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without clogging the pool once checkouts do not read a certain
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target.
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## License
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Copyright 2015 James Fish
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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