Struct Select
pub struct Select<E>where
    E: EntityTrait,{
    pub(crate) query: SelectStatement,
    pub(crate) entity: PhantomData<E>,
}Expand description
Defines a structure to perform select operations
Fields§
§query: SelectStatement§entity: PhantomData<E>Implementations§
§impl<E, M> Select<E>
 
impl<E, M> Select<E>
pub fn cursor_by<C>(self, order_columns: C) -> Cursor<SelectModel<M>>where
    C: IntoIdentity,
pub fn cursor_by<C>(self, order_columns: C) -> Cursor<SelectModel<M>>where
    C: IntoIdentity,
Convert into a cursor
§impl<E> Select<E>where
    E: EntityTrait,
 
impl<E> Select<E>where
    E: EntityTrait,
pub fn from_raw_sql(
    self,
    stmt: Statement,
) -> SelectorRaw<SelectModel<<E as EntityTrait>::Model>>
pub fn from_raw_sql( self, stmt: Statement, ) -> SelectorRaw<SelectModel<<E as EntityTrait>::Model>>
Perform a Select operation on a Model using a Statement
pub fn into_model<M>(self) -> Selector<SelectModel<M>>where
    M: FromQueryResult,
pub fn into_model<M>(self) -> Selector<SelectModel<M>>where
    M: FromQueryResult,
Return a Selector from Self that wraps a SelectModel
pub fn into_partial_model<M>(self) -> Selector<SelectModel<M>>where
    M: PartialModelTrait,
pub fn into_partial_model<M>(self) -> Selector<SelectModel<M>>where
    M: PartialModelTrait,
Return a Selector from Self that wraps a SelectModel with a PartialModel
use sea_orm::{
    entity::*,
    query::*,
    tests_cfg::cake::{self, Entity as Cake},
    DbBackend, DerivePartialModel, FromQueryResult,
};
use sea_query::{Expr, Func, SimpleExpr};
#[derive(DerivePartialModel, FromQueryResult)]
#[sea_orm(entity = "Cake")]
struct PartialCake {
    name: String,
    #[sea_orm(
        from_expr = r#"SimpleExpr::FunctionCall(Func::upper(Expr::col((Cake, cake::Column::Name))))"#
    )]
    name_upper: String,
}
assert_eq!(
    cake::Entity::find()
        .into_partial_model::<PartialCake>()
        .into_statement(DbBackend::Sqlite)
        .to_string(),
    r#"SELECT "cake"."name", UPPER("cake"."name") AS "name_upper" FROM "cake""#
);pub fn into_json(self) -> Selector<SelectModel<Value>>
pub fn into_json(self) -> Selector<SelectModel<Value>>
Get a selectable Model as a JsonValue for SQL JSON operations
pub fn into_values<T, C>(self) -> Selector<SelectGetableValue<T, C>>
pub fn into_values<T, C>(self) -> Selector<SelectGetableValue<T, C>>
use sea_orm::{entity::*, query::*, tests_cfg::cake, DeriveColumn, EnumIter};
#[derive(Copy, Clone, Debug, EnumIter, DeriveColumn)]
enum QueryAs {
    CakeName,
}
let res: Vec<String> = cake::Entity::find()
    .select_only()
    .column_as(cake::Column::Name, QueryAs::CakeName)
    .into_values::<_, QueryAs>()
    .all(&db)
    .await?;
assert_eq!(
    res,
    ["Chocolate Forest".to_owned(), "New York Cheese".to_owned()]
);
assert_eq!(
    db.into_transaction_log(),
    [Transaction::from_sql_and_values(
        DbBackend::Postgres,
        r#"SELECT "cake"."name" AS "cake_name" FROM "cake""#,
        []
    )]
);use sea_orm::{entity::*, query::*, tests_cfg::cake, DeriveColumn, EnumIter};
#[derive(Copy, Clone, Debug, EnumIter, DeriveColumn)]
enum QueryAs {
    CakeName,
    NumOfCakes,
}
let res: Vec<(String, i64)> = cake::Entity::find()
    .select_only()
    .column_as(cake::Column::Name, QueryAs::CakeName)
    .column_as(cake::Column::Id.count(), QueryAs::NumOfCakes)
    .group_by(cake::Column::Name)
    .into_values::<_, QueryAs>()
    .all(&db)
    .await?;
assert_eq!(res, [("Chocolate Forest".to_owned(), 2i64)]);
assert_eq!(
    db.into_transaction_log(),
    [Transaction::from_sql_and_values(
        DbBackend::Postgres,
        [
            r#"SELECT "cake"."name" AS "cake_name", COUNT("cake"."id") AS "num_of_cakes""#,
            r#"FROM "cake" GROUP BY "cake"."name""#,
        ]
        .join(" ")
        .as_str(),
        []
    )]
);pub fn into_tuple<T>(self) -> Selector<SelectGetableTuple<T>>where
    T: TryGetableMany,
pub fn into_tuple<T>(self) -> Selector<SelectGetableTuple<T>>where
    T: TryGetableMany,
use sea_orm::{entity::*, query::*, tests_cfg::cake};
let res: Vec<String> = cake::Entity::find()
    .select_only()
    .column(cake::Column::Name)
    .into_tuple()
    .all(&db)
    .await?;
assert_eq!(
    res,
    vec!["Chocolate Forest".to_owned(), "New York Cheese".to_owned()]
);
assert_eq!(
    db.into_transaction_log(),
    vec![Transaction::from_sql_and_values(
        DbBackend::Postgres,
        r#"SELECT "cake"."name" FROM "cake""#,
        vec![]
    )]
);use sea_orm::{entity::*, query::*, tests_cfg::cake};
let res: Vec<(String, i64)> = cake::Entity::find()
    .select_only()
    .column(cake::Column::Name)
    .column(cake::Column::Id)
    .group_by(cake::Column::Name)
    .into_tuple()
    .all(&db)
    .await?;
assert_eq!(res, vec![("Chocolate Forest".to_owned(), 2i64)]);
assert_eq!(
    db.into_transaction_log(),
    vec![Transaction::from_sql_and_values(
        DbBackend::Postgres,
        vec![
            r#"SELECT "cake"."name", "cake"."id""#,
            r#"FROM "cake" GROUP BY "cake"."name""#,
        ]
        .join(" ")
        .as_str(),
        vec![]
    )]
);pub async fn one<'a, C>(
    self,
    db: &C,
) -> Result<Option<<E as EntityTrait>::Model>, DbErr>where
    C: ConnectionTrait,
pub async fn one<'a, C>(
    self,
    db: &C,
) -> Result<Option<<E as EntityTrait>::Model>, DbErr>where
    C: ConnectionTrait,
Get one Model from the SELECT query
pub async fn all<'a, C>(
    self,
    db: &C,
) -> Result<Vec<<E as EntityTrait>::Model>, DbErr>where
    C: ConnectionTrait,
pub async fn all<'a, C>(
    self,
    db: &C,
) -> Result<Vec<<E as EntityTrait>::Model>, DbErr>where
    C: ConnectionTrait,
Get all Models from the SELECT query
pub async fn stream<'a, 'b, C>(
    self,
    db: &'a C,
) -> Result<impl Stream<Item = Result<<E as EntityTrait>::Model, DbErr>> + Send + 'b, DbErr>
pub async fn stream<'a, 'b, C>( self, db: &'a C, ) -> Result<impl Stream<Item = Result<<E as EntityTrait>::Model, DbErr>> + Send + 'b, DbErr>
Stream the results of a SELECT operation on a Model
§impl<E> Select<E>where
    E: EntityTrait,
 
impl<E> Select<E>where
    E: EntityTrait,
pub fn select_also<F>(self, _: F) -> SelectTwo<E, F>where
    F: EntityTrait,
pub fn select_also<F>(self, _: F) -> SelectTwo<E, F>where
    F: EntityTrait,
Selects and Entity and returns it together with the Entity from Self
pub fn select_with<F>(self, _: F) -> SelectTwoMany<E, F>where
    F: EntityTrait,
pub fn select_with<F>(self, _: F) -> SelectTwoMany<E, F>where
    F: EntityTrait,
Makes a SELECT operation in conjunction to another relation
§impl<E> Select<E>where
    E: EntityTrait,
 
impl<E> Select<E>where
    E: EntityTrait,
pub fn left_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
pub fn left_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
Left Join with a Related Entity.
pub fn right_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
pub fn right_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
Right Join with a Related Entity.
pub fn inner_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
pub fn inner_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait,
    E: Related<R>,
Inner Join with a Related Entity.
pub fn reverse_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait + Related<E>,
pub fn reverse_join<R>(self, _: R) -> Select<E>where
    R: EntityTrait + Related<E>,
Join with an Entity Related to me.
Left Join with a Related Entity and select both Entity.
Left Join with a Related Entity and select the related Entity as a Vec
pub fn find_also_linked<L, T>(self, l: L) -> SelectTwo<E, T>where
    L: Linked<FromEntity = E, ToEntity = T>,
    T: EntityTrait,
pub fn find_also_linked<L, T>(self, l: L) -> SelectTwo<E, T>where
    L: Linked<FromEntity = E, ToEntity = T>,
    T: EntityTrait,
Left Join with a Linked Entity and select both Entity.
pub fn find_with_linked<L, T>(self, l: L) -> SelectTwoMany<E, T>where
    L: Linked<FromEntity = E, ToEntity = T>,
    T: EntityTrait,
pub fn find_with_linked<L, T>(self, l: L) -> SelectTwoMany<E, T>where
    L: Linked<FromEntity = E, ToEntity = T>,
    T: EntityTrait,
Left Join with a Linked Entity and select Entity as a Vec.
Trait Implementations§
§impl<E> Clone for Select<E>where
    E: Clone + EntityTrait,
 
impl<E> Clone for Select<E>where
    E: Clone + EntityTrait,
§impl<E, M> CursorTrait for Select<E>
 
impl<E, M> CursorTrait for Select<E>
§type Selector = SelectModel<M>
 
type Selector = SelectModel<M>
§impl<E> Debug for Select<E>where
    E: Debug + EntityTrait,
 
impl<E> Debug for Select<E>where
    E: Debug + EntityTrait,
§impl<E> EntityOrSelect<E> for Select<E>where
    E: EntityTrait,
 
impl<E> EntityOrSelect<E> for Select<E>where
    E: EntityTrait,
§impl<'db, C, M, E> PaginatorTrait<'db, C> for Select<E>
 
impl<'db, C, M, E> PaginatorTrait<'db, C> for Select<E>
§impl<E> QueryFilter for Select<E>where
    E: EntityTrait,
 
impl<E> QueryFilter for Select<E>where
    E: EntityTrait,
type QueryStatement = SelectStatement
§fn query(&mut self) -> &mut SelectStatement
 
fn query(&mut self) -> &mut SelectStatement
§fn filter<F>(self, filter: F) -> Selfwhere
    F: IntoCondition,
 
fn filter<F>(self, filter: F) -> Selfwhere
    F: IntoCondition,
§fn belongs_to<M>(self, model: &M) -> Selfwhere
    M: ModelTrait,
 
fn belongs_to<M>(self, model: &M) -> Selfwhere
    M: ModelTrait,
§fn belongs_to_tbl_alias<M>(self, model: &M, tbl_alias: &str) -> Selfwhere
    M: ModelTrait,
 
fn belongs_to_tbl_alias<M>(self, model: &M, tbl_alias: &str) -> Selfwhere
    M: ModelTrait,
§impl<E> QueryOrder for Select<E>where
    E: EntityTrait,
 
impl<E> QueryOrder for Select<E>where
    E: EntityTrait,
type QueryStatement = SelectStatement
§fn query(&mut self) -> &mut SelectStatement
 
fn query(&mut self) -> &mut SelectStatement
§fn order_by<C>(self, col: C, ord: Order) -> Selfwhere
    C: IntoSimpleExpr,
 
fn order_by<C>(self, col: C, ord: Order) -> Selfwhere
    C: IntoSimpleExpr,
§fn order_by_asc<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
 
fn order_by_asc<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
§fn order_by_desc<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
 
fn order_by_desc<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
§fn order_by_with_nulls<C>(self, col: C, ord: Order, nulls: NullOrdering) -> Selfwhere
    C: IntoSimpleExpr,
 
fn order_by_with_nulls<C>(self, col: C, ord: Order, nulls: NullOrdering) -> Selfwhere
    C: IntoSimpleExpr,
§impl<E> QuerySelect for Select<E>where
    E: EntityTrait,
 
impl<E> QuerySelect for Select<E>where
    E: EntityTrait,
type QueryStatement = SelectStatement
§fn query(&mut self) -> &mut SelectStatement
 
fn query(&mut self) -> &mut SelectStatement
§fn select_only(self) -> Self
 
fn select_only(self) -> Self
§fn column<C>(self, col: C) -> Selfwhere
    C: ColumnTrait,
 
fn column<C>(self, col: C) -> Selfwhere
    C: ColumnTrait,
§fn column_as<C, I>(self, col: C, alias: I) -> Selfwhere
    C: IntoSimpleExpr,
    I: IntoIdentity,
 
fn column_as<C, I>(self, col: C, alias: I) -> Selfwhere
    C: IntoSimpleExpr,
    I: IntoIdentity,
§fn columns<C, I>(self, cols: I) -> Selfwhere
    C: ColumnTrait,
    I: IntoIterator<Item = C>,
 
fn columns<C, I>(self, cols: I) -> Selfwhere
    C: ColumnTrait,
    I: IntoIterator<Item = C>,
§fn offset<T>(self, offset: T) -> Self
 
fn offset<T>(self, offset: T) -> Self
§fn limit<T>(self, limit: T) -> Self
 
fn limit<T>(self, limit: T) -> Self
§fn group_by<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
 
fn group_by<C>(self, col: C) -> Selfwhere
    C: IntoSimpleExpr,
§fn having<F>(self, filter: F) -> Selfwhere
    F: IntoCondition,
 
fn having<F>(self, filter: F) -> Selfwhere
    F: IntoCondition,
§fn distinct_on<T, I>(self, cols: I) -> Selfwhere
    T: IntoColumnRef,
    I: IntoIterator<Item = T>,
 
fn distinct_on<T, I>(self, cols: I) -> Selfwhere
    T: IntoColumnRef,
    I: IntoIterator<Item = T>,
sqlx-postgres Read more§fn join(self, join: JoinType, rel: RelationDef) -> Self
 
fn join(self, join: JoinType, rel: RelationDef) -> Self
RelationDef.§fn join_rev(self, join: JoinType, rel: RelationDef) -> Self
 
fn join_rev(self, join: JoinType, rel: RelationDef) -> Self
RelationDef but in reverse direction.
Assume when there exist a relation A to B.
You can reverse join B from A.§fn join_as<I>(self, join: JoinType, rel: RelationDef, alias: I) -> Selfwhere
    I: IntoIden,
 
fn join_as<I>(self, join: JoinType, rel: RelationDef, alias: I) -> Selfwhere
    I: IntoIden,
RelationDef with table alias.§fn join_as_rev<I>(self, join: JoinType, rel: RelationDef, alias: I) -> Selfwhere
    I: IntoIden,
 
fn join_as_rev<I>(self, join: JoinType, rel: RelationDef, alias: I) -> Selfwhere
    I: IntoIden,
RelationDef with table alias but in reverse direction.
Assume when there exist a relation A to B.
You can reverse join B from A.§fn lock_exclusive(self) -> Self
 
fn lock_exclusive(self) -> Self
§fn lock_with_behavior(self, type: LockType, behavior: LockBehavior) -> Self
 
fn lock_with_behavior(self, type: LockType, behavior: LockBehavior) -> Self
§fn expr<T>(self, expr: T) -> Selfwhere
    T: Into<SelectExpr>,
 
fn expr<T>(self, expr: T) -> Selfwhere
    T: Into<SelectExpr>,
§fn exprs<T, I>(self, exprs: I) -> Self
 
fn exprs<T, I>(self, exprs: I) -> Self
SelectExpr. Read more§fn expr_as_<T, A>(self, expr: T, alias: A) -> Self
 
fn expr_as_<T, A>(self, expr: T, alias: A) -> Self
expr_as. Here for legacy reasons. Read more§fn tbl_col_as<T, C, A>(self, _: (T, C), alias: A) -> Self
 
fn tbl_col_as<T, C, A>(self, _: (T, C), alias: A) -> Self
expr_as(Expr::col((T, C)), A). Read more§impl<E> QueryTrait for Select<E>where
    E: EntityTrait,
 
impl<E> QueryTrait for Select<E>where
    E: EntityTrait,
§type QueryStatement = SelectStatement
 
type QueryStatement = SelectStatement
§fn query(&mut self) -> &mut SelectStatement
 
fn query(&mut self) -> &mut SelectStatement
§fn as_query(&self) -> &SelectStatement
 
fn as_query(&self) -> &SelectStatement
§fn into_query(self) -> SelectStatement
 
fn into_query(self) -> SelectStatement
§fn build(&self, db_backend: DatabaseBackend) -> Statement
 
fn build(&self, db_backend: DatabaseBackend) -> Statement
StatementAuto Trait Implementations§
impl<E> Freeze for Select<E>
impl<E> !RefUnwindSafe for Select<E>
impl<E> Send for Select<E>
impl<E> Sync for Select<E>
impl<E> Unpin for Select<E>where
    E: Unpin,
impl<E> !UnwindSafe for Select<E>
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
    T: ?Sized,
 
impl<T> BorrowMut<T> for Twhere
    T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
 
fn borrow_mut(&mut self) -> &mut T
Source§impl<T> CloneToUninit for Twhere
    T: Clone,
 
impl<T> CloneToUninit for Twhere
    T: Clone,
§impl<T> Instrument for T
 
impl<T> Instrument for T
§fn instrument(self, span: Span) -> Instrumented<Self>
 
fn instrument(self, span: Span) -> Instrumented<Self>
§fn in_current_span(self) -> Instrumented<Self>
 
fn in_current_span(self) -> Instrumented<Self>
Source§impl<T> IntoEither for T
 
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self> ⓘ
 
fn into_either(self, into_left: bool) -> Either<Self, Self> ⓘ
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self> ⓘ
 
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self> ⓘ
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read more