pub struct InsertReplace<'a> {
    pub type_: InsertReplaceType,
    pub flags: Vec<InsertReplaceFlag>,
    pub into_span: Option<Span>,
    pub table: Vec<Identifier<'a>>,
    pub columns: Vec<Identifier<'a>>,
    pub values: Option<(Span, Vec<Vec<Expression<'a>>>)>,
    pub select: Option<Select<'a>>,
    pub set: Option<(Span, Vec<(Identifier<'a>, Span, Expression<'a>)>)>,
    pub on_duplicate_key_update: Option<(Span, Vec<(Identifier<'a>, Span, Expression<'a>)>)>,
    pub on_conflict: Option<OnConflict<'a>>,
    pub returning: Option<(Span, Vec<SelectExpr<'a>>)>,
}
Expand description

Representation of Insert or Replace Statement

let sql1 = "INSERT INTO person (first_name, last_name) VALUES ('John', 'Doe')";
let stmt1 = parse_statement(sql1, &mut issues, &options);
let sql2 = "INSERT INTO contractor SELECT * FROM person WHERE status = 'c'";
let stmt2 = parse_statement(sql2, &mut issues, &options);
let sql3 = "INSERT INTO account (`key`, `value`) VALUES ('foo', 42)
            ON DUPLICATE KEY UPDATE `value`=`value`+42";
let stmt3 = parse_statement(sql3, &mut issues, &options);

let i: InsertReplace = match stmt1 {
    Some(Statement::InsertReplace(
        i @ InsertReplace{type_: InsertReplaceType::Insert(_), ..})) => i,
    _ => panic!("We should get an insert statement")
};

assert!(i.table[0].as_str() == "person");
println!("{:#?}", i.values.unwrap());


let sql = "REPLACE INTO t2 VALUES (1,'Leopard'),(2,'Dog')";
let stmt = parse_statement(sql, &mut issues, &options);

let r: InsertReplace = match stmt {
    Some(Statement::InsertReplace(
        r @ InsertReplace{type_: InsertReplaceType::Replace(_), ..})) => r,
    _ => panic!("We should get an replace statement")
};

assert!(r.table[0].as_str() == "t2");
println!("{:#?}", r.values.unwrap());

PostgreSQL


let sql4 = "INSERT INTO contractor SELECT * FROM person WHERE status = $1 ON CONFLICT (name) DO NOTHING";
let stmt4 = parse_statement(sql4, &mut issues, &options);

for issue in &issues {
    println!("{:#?}", issue);
}

Fields§

§type_: InsertReplaceType

Span of “INSERT” or “REPLACE”

§flags: Vec<InsertReplaceFlag>

Flags specified after “INSERT”

§into_span: Option<Span>

Span of “INTO” if specified

§table: Vec<Identifier<'a>>

Table to insert into

§columns: Vec<Identifier<'a>>

List of columns to set

§values: Option<(Span, Vec<Vec<Expression<'a>>>)>

Span of values “VALUES” and list of tuples to insert if specified

§select: Option<Select<'a>>

Select statement to insert if specified

§set: Option<(Span, Vec<(Identifier<'a>, Span, Expression<'a>)>)>

Span of “SET” and list of key, value pairs to set if specified

§on_duplicate_key_update: Option<(Span, Vec<(Identifier<'a>, Span, Expression<'a>)>)>

Updates to execute on duplicate key (mysql)

§on_conflict: Option<OnConflict<'a>>

Action to take on duplicate keys (postgresql)

§returning: Option<(Span, Vec<SelectExpr<'a>>)>

Span of “RETURNING” and select expressions after “RETURNING”, if “RETURNING” is present

Trait Implementations§

Returns a copy of the value. Read more
Performs copy-assignment from source. Read more
Formats the value using the given formatter. Read more
Compute byte span of an ast fragment
Compute the minimal span containing both self and other

Auto Trait Implementations§

Blanket Implementations§

Gets the TypeId of self. Read more
Immutably borrows from an owned value. Read more
Mutably borrows from an owned value. Read more

Returns the argument unchanged.

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

The resulting type after obtaining ownership.
Creates owned data from borrowed data, usually by cloning. Read more
Uses borrowed data to replace owned data, usually by cloning. Read more
The type returned in the event of a conversion error.
Performs the conversion.
The type returned in the event of a conversion error.
Performs the conversion.