Safe Haskell | None |
---|---|
Language | Haskell98 |
- data InsertSqlResult
- type Connection = SqlBackend
- data SqlBackend = SqlBackend {
- connPrepare :: Text -> IO Statement
- connInsertSql :: EntityDef -> [PersistValue] -> InsertSqlResult
- connInsertManySql :: Maybe (EntityDef -> [[PersistValue]] -> InsertSqlResult)
- connStmtMap :: IORef (Map Text Statement)
- connClose :: IO ()
- connMigrateSql :: [EntityDef] -> (Text -> IO Statement) -> EntityDef -> IO (Either [Text] [(Bool, Text)])
- connBegin :: (Text -> IO Statement) -> IO ()
- connCommit :: (Text -> IO Statement) -> IO ()
- connRollback :: (Text -> IO Statement) -> IO ()
- connEscapeName :: DBName -> Text
- connNoLimit :: Text
- connRDBMS :: Text
- connLimitOffset :: (Int, Int) -> Bool -> Text -> Text
- connLogFunc :: LogFunc
- type LogFunc = Loc -> LogSource -> LogLevel -> LogStr -> IO ()
- data Statement = Statement {
- stmtFinalize :: IO ()
- stmtReset :: IO ()
- stmtExecute :: [PersistValue] -> IO Int64
- stmtQuery :: forall m. MonadIO m => [PersistValue] -> Acquire (Source m [PersistValue])
- data Column = Column {}
- data PersistentSqlException
- type SqlPersistT = ReaderT SqlBackend
- type SqlPersist = SqlPersistT
- type SqlPersistM = SqlPersistT (NoLoggingT (ResourceT IO))
- type Sql = Text
- type CautiousMigration = [(Bool, Sql)]
- type Migration = WriterT [Text] (WriterT CautiousMigration (ReaderT SqlBackend IO)) ()
- type ConnectionPool = Pool SqlBackend
- newtype Single a = Single {
- unSingle :: a
- class RawSql a where
- rawSqlCols :: (DBName -> Text) -> a -> (Int, [Text])
- rawSqlColCountReason :: a -> String
- rawSqlProcessRow :: [PersistValue] -> Either Text a
- class PersistField a => PersistFieldSql a where
- runSqlPool :: MonadBaseControl IO m => SqlPersistT m a -> Pool SqlBackend -> m a
- withResourceTimeout :: forall a m b. MonadBaseControl IO m => Int -> Pool a -> (a -> m b) -> m (Maybe b)
- runSqlConn :: MonadBaseControl IO m => SqlPersistT m a -> SqlBackend -> m a
- runSqlPersistM :: SqlPersistM a -> SqlBackend -> IO a
- runSqlPersistMPool :: SqlPersistM a -> Pool SqlBackend -> IO a
- withSqlPool :: (MonadIO m, MonadLogger m, MonadBaseControl IO m) => (LogFunc -> IO SqlBackend) -> Int -> (Pool SqlBackend -> m a) -> m a
- createSqlPool :: (MonadIO m, MonadLogger m, MonadBaseControl IO m) => (LogFunc -> IO SqlBackend) -> Int -> m (Pool SqlBackend)
- askLogFunc :: forall m. (MonadBaseControl IO m, MonadLogger m) => m LogFunc
- withSqlConn :: (MonadIO m, MonadBaseControl IO m, MonadLogger m) => (LogFunc -> IO SqlBackend) -> (SqlBackend -> m a) -> m a
- close' :: SqlBackend -> IO ()
- parseMigration :: MonadIO m => Migration -> ReaderT SqlBackend m (Either [Text] CautiousMigration)
- parseMigration' :: MonadIO m => Migration -> ReaderT SqlBackend m CautiousMigration
- printMigration :: MonadIO m => Migration -> ReaderT SqlBackend m ()
- showMigration :: MonadIO m => Migration -> ReaderT SqlBackend m [Text]
- getMigration :: MonadIO m => Migration -> ReaderT SqlBackend m [Sql]
- runMigration :: MonadIO m => Migration -> ReaderT SqlBackend m ()
- runMigrationSilent :: (MonadBaseControl IO m, MonadIO m) => Migration -> ReaderT SqlBackend m [Text]
- runMigrationUnsafe :: MonadIO m => Migration -> ReaderT SqlBackend m ()
- migrate :: [EntityDef] -> EntityDef -> Migration
- module Database.Persist
- withRawQuery :: MonadIO m => Text -> [PersistValue] -> Sink [PersistValue] IO a -> ReaderT SqlBackend m a
- toSqlKey :: ToBackendKey SqlBackend record => Int64 -> Key record
- fromSqlKey :: ToBackendKey SqlBackend record => Key record -> Int64
- getFieldName :: forall record typ m. (PersistEntity record, PersistEntityBackend record ~ SqlBackend, Monad m) => EntityField record typ -> ReaderT SqlBackend m Text
- getTableName :: forall record m. (PersistEntity record, PersistEntityBackend record ~ SqlBackend, Monad m) => record -> ReaderT SqlBackend m Text
- tableDBName :: forall record. (PersistEntity record, PersistEntityBackend record ~ SqlBackend) => record -> DBName
- fieldDBName :: forall record typ. PersistEntity record => EntityField record typ -> DBName
- rawQuery :: (MonadResource m, MonadReader env m, HasPersistBackend env SqlBackend) => Text -> [PersistValue] -> Source m [PersistValue]
- rawQueryRes :: (MonadIO m1, MonadIO m2) => Text -> [PersistValue] -> ReaderT SqlBackend m1 (Acquire (Source m2 [PersistValue]))
- rawExecute :: MonadIO m => Text -> [PersistValue] -> ReaderT SqlBackend m ()
- rawExecuteCount :: MonadIO m => Text -> [PersistValue] -> ReaderT SqlBackend m Int64
- rawSql :: (RawSql a, MonadIO m) => Text -> [PersistValue] -> ReaderT SqlBackend m [a]
- deleteWhereCount :: (PersistEntity val, MonadIO m, PersistEntityBackend val ~ SqlBackend) => [Filter val] -> ReaderT SqlBackend m Int64
- updateWhereCount :: (PersistEntity val, MonadIO m, SqlBackend ~ PersistEntityBackend val) => [Filter val] -> [Update val] -> ReaderT SqlBackend m Int64
- transactionSave :: MonadIO m => ReaderT SqlBackend m ()
- transactionUndo :: MonadIO m => ReaderT SqlBackend m ()
- getStmtConn :: SqlBackend -> Text -> IO Statement
- mkColumns :: [EntityDef] -> EntityDef -> ([Column], [UniqueDef], [ForeignDef])
- defaultAttribute :: [Attr] -> Maybe Text
- decorateSQLWithLimitOffset :: Text -> (Int, Int) -> Bool -> Text -> Text
Documentation
type Connection = SqlBackend Source
Deprecated: Please use SqlBackend instead
Deprecated synonym for SqlBackend
.
data SqlBackend Source
SqlBackend | |
|
Statement | |
|
type SqlPersistT = ReaderT SqlBackend Source
type SqlPersist = SqlPersistT Source
Deprecated: Please use SqlPersistT instead
type SqlPersistM = SqlPersistT (NoLoggingT (ResourceT IO)) Source
type CautiousMigration = [(Bool, Sql)] Source
type Migration = WriterT [Text] (WriterT CautiousMigration (ReaderT SqlBackend IO)) () Source
type ConnectionPool = Pool SqlBackend Source
Although it covers most of the useful cases, persistent
's
API may not be enough for some of your tasks. May be you need
some complex JOIN
query, or a database-specific command
needs to be issued.
To issue raw SQL queries you could use withStmt
, which
allows you to do anything you need. However, its API is
low-level and you need to parse each row yourself. However,
most of your complex queries will have simple results -- some
of your entities and maybe a couple of derived columns.
This is where rawSql
comes in. Like withStmt
, you may
issue any SQL query. However, it does all the hard work for
you and automatically parses the rows of the result. It may
return:
- An
Entity
, that whichselectList
returns. All of your entity's fields are automatically parsed. - A
, which is a single, raw column of typeSingle
aa
. You may use a Haskell type (such as in your entity definitions), for exampleSingle Text
orSingle Int
, or you may get the raw column value withSingle
.PersistValue
- A tuple combining any of these (including other tuples). Using tuples allows you to return many entities in one query.
The only difference between issuing SQL queries with rawSql
and using other means is that we have an entity selection
placeholder, the double question mark ??
. It must be
used whenever you want to SELECT
an Entity
from your
query. Here's a sample SQL query sampleStmt
that may be
issued:
SELECT ??, ?? FROM "Person", "Likes", "Object" WHERE "Person".id = "Likes"."personId" AND "Object".id = "Likes"."objectId" AND "Person".name LIKE ?
To use that query, you could say
do results <- rawSql
sampleStmt ["%Luke%"]
forM_ results $
\( Entity personKey person
, Entity objectKey object
) -> do ...
Note that rawSql
knows how to replace the double question
marks ??
because of the type of the results
.
A single column (see rawSql
). Any PersistField
may be
used here, including PersistValue
(which does not do any
processing).
Class for data types that may be retrived from a rawSql
query.
rawSqlCols :: (DBName -> Text) -> a -> (Int, [Text]) Source
Number of columns that this data type needs and the list
of substitutions for SELECT
placeholders ??
.
rawSqlColCountReason :: a -> String Source
A string telling the user why the column count is what it is.
rawSqlProcessRow :: [PersistValue] -> Either Text a Source
Transform a row of the result into the data type.
RawSql a => RawSql (Maybe a) | Since 1.0.1. |
(PersistEntity a, (~) * (PersistEntityBackend a) SqlBackend) => RawSql (Entity a) | |
(PersistEntity a, (~) * (PersistEntityBackend a) SqlBackend) => RawSql (Key a) | |
PersistField a => RawSql (Single a) | |
(RawSql a, RawSql b) => RawSql (a, b) | |
(RawSql a, RawSql b, RawSql c) => RawSql (a, b, c) | |
(RawSql a, RawSql b, RawSql c, RawSql d) => RawSql (a, b, c, d) | |
(RawSql a, RawSql b, RawSql c, RawSql d, RawSql e) => RawSql (a, b, c, d, e) | |
(RawSql a, RawSql b, RawSql c, RawSql d, RawSql e, RawSql f) => RawSql (a, b, c, d, e, f) | |
(RawSql a, RawSql b, RawSql c, RawSql d, RawSql e, RawSql f, RawSql g) => RawSql (a, b, c, d, e, f, g) | |
(RawSql a, RawSql b, RawSql c, RawSql d, RawSql e, RawSql f, RawSql g, RawSql h) => RawSql (a, b, c, d, e, f, g, h) |
class PersistField a => PersistFieldSql a where Source
runSqlPool :: MonadBaseControl IO m => SqlPersistT m a -> Pool SqlBackend -> m a Source
Get a connection from the pool, run the given action, and then return the connection to the pool.
Note: This function previously timed out after 2 seconds, but this behavior was buggy and caused more problems than it solved. Since version 2.1.2, it performs no timeout checks.
:: MonadBaseControl IO m | |
=> Int | Timeout period in microseconds |
-> Pool a | |
-> (a -> m b) | |
-> m (Maybe b) |
Like withResource
, but times out the operation if resource
allocation does not complete within the given timeout period.
Since 2.0.0
runSqlConn :: MonadBaseControl IO m => SqlPersistT m a -> SqlBackend -> m a Source
runSqlPersistM :: SqlPersistM a -> SqlBackend -> IO a Source
runSqlPersistMPool :: SqlPersistM a -> Pool SqlBackend -> IO a Source
:: (MonadIO m, MonadLogger m, MonadBaseControl IO m) | |
=> (LogFunc -> IO SqlBackend) | create a new connection |
-> Int | connection count |
-> (Pool SqlBackend -> m a) | |
-> m a |
createSqlPool :: (MonadIO m, MonadLogger m, MonadBaseControl IO m) => (LogFunc -> IO SqlBackend) -> Int -> m (Pool SqlBackend) Source
askLogFunc :: forall m. (MonadBaseControl IO m, MonadLogger m) => m LogFunc Source
withSqlConn :: (MonadIO m, MonadBaseControl IO m, MonadLogger m) => (LogFunc -> IO SqlBackend) -> (SqlBackend -> m a) -> m a Source
close' :: SqlBackend -> IO () Source
parseMigration :: MonadIO m => Migration -> ReaderT SqlBackend m (Either [Text] CautiousMigration) Source
parseMigration' :: MonadIO m => Migration -> ReaderT SqlBackend m CautiousMigration Source
printMigration :: MonadIO m => Migration -> ReaderT SqlBackend m () Source
showMigration :: MonadIO m => Migration -> ReaderT SqlBackend m [Text] Source
getMigration :: MonadIO m => Migration -> ReaderT SqlBackend m [Sql] Source
runMigration :: MonadIO m => Migration -> ReaderT SqlBackend m () Source
runMigrationSilent :: (MonadBaseControl IO m, MonadIO m) => Migration -> ReaderT SqlBackend m [Text] Source
Same as runMigration
, but returns a list of the SQL commands executed
instead of printing them to stderr.
runMigrationUnsafe :: MonadIO m => Migration -> ReaderT SqlBackend m () Source
module Database.Persist
withRawQuery :: MonadIO m => Text -> [PersistValue] -> Sink [PersistValue] IO a -> ReaderT SqlBackend m a Source
toSqlKey :: ToBackendKey SqlBackend record => Int64 -> Key record Source
fromSqlKey :: ToBackendKey SqlBackend record => Key record -> Int64 Source
getFieldName :: forall record typ m. (PersistEntity record, PersistEntityBackend record ~ SqlBackend, Monad m) => EntityField record typ -> ReaderT SqlBackend m Text Source
get the SQL string for the field that an EntityField represents Useful for raw SQL queries
Your backend may provide a more convenient fieldName function which does not operate in a Monad
getTableName :: forall record m. (PersistEntity record, PersistEntityBackend record ~ SqlBackend, Monad m) => record -> ReaderT SqlBackend m Text Source
get the SQL string for the table that a PeristEntity represents Useful for raw SQL queries
Your backend may provide a more convenient tableName function which does not operate in a Monad
tableDBName :: forall record. (PersistEntity record, PersistEntityBackend record ~ SqlBackend) => record -> DBName Source
useful for a backend to implement tableName by adding escaping
fieldDBName :: forall record typ. PersistEntity record => EntityField record typ -> DBName Source
useful for a backend to implement fieldName by adding escaping
rawQuery :: (MonadResource m, MonadReader env m, HasPersistBackend env SqlBackend) => Text -> [PersistValue] -> Source m [PersistValue] Source
rawQueryRes :: (MonadIO m1, MonadIO m2) => Text -> [PersistValue] -> ReaderT SqlBackend m1 (Acquire (Source m2 [PersistValue])) Source
:: MonadIO m | |
=> Text | SQL statement, possibly with placeholders. |
-> [PersistValue] | Values to fill the placeholders. |
-> ReaderT SqlBackend m () |
Execute a raw SQL statement
:: MonadIO m | |
=> Text | SQL statement, possibly with placeholders. |
-> [PersistValue] | Values to fill the placeholders. |
-> ReaderT SqlBackend m Int64 |
Execute a raw SQL statement and return the number of rows it has modified.
:: (RawSql a, MonadIO m) | |
=> Text | SQL statement, possibly with placeholders. |
-> [PersistValue] | Values to fill the placeholders. |
-> ReaderT SqlBackend m [a] |
Execute a raw SQL statement and return its results as a list.
If you're using Entity
s
(which is quite likely), then you
must use entity selection placeholders (double question
mark, ??
). These ??
placeholders are then replaced for
the names of the columns that we need for your entities.
You'll receive an error if you don't use the placeholders.
Please see the Entity
s
documentation for more details.
You may put value placeholders (question marks, ?
) in your
SQL query. These placeholders are then replaced by the values
you pass on the second parameter, already correctly escaped.
You may want to use toPersistValue
to help you constructing
the placeholder values.
Since you're giving a raw SQL statement, you don't get any
guarantees regarding safety. If rawSql
is not able to parse
the results of your query back, then an exception is raised.
However, most common problems are mitigated by using the
entity selection placeholder ??
, and you shouldn't see any
error at all if you're not using Single
.
deleteWhereCount :: (PersistEntity val, MonadIO m, PersistEntityBackend val ~ SqlBackend) => [Filter val] -> ReaderT SqlBackend m Int64 Source
Same as deleteWhere
, but returns the number of rows affected.
Since 1.1.5
updateWhereCount :: (PersistEntity val, MonadIO m, SqlBackend ~ PersistEntityBackend val) => [Filter val] -> [Update val] -> ReaderT SqlBackend m Int64 Source
Same as updateWhere
, but returns the number of rows affected.
Since 1.1.5
transactionSave :: MonadIO m => ReaderT SqlBackend m () Source
Commit the current transaction and begin a new one.
Since 1.2.0
transactionUndo :: MonadIO m => ReaderT SqlBackend m () Source
Roll back the current transaction and begin a new one.
Since 1.2.0
getStmtConn :: SqlBackend -> Text -> IO Statement Source
Internal
mkColumns :: [EntityDef] -> EntityDef -> ([Column], [UniqueDef], [ForeignDef]) Source
Create the list of columns for the given entity.
defaultAttribute :: [Attr] -> Maybe Text Source