Struct pliron_llvm::ops::MulOp
source · pub struct MulOp { /* private fields */ }
Expand description
Equivalent to LLVM’s Mul opcode.
§Attributes:
key | value | via Interface |
---|---|---|
ATTR_KEY_INTEGER_OVERFLOW_FLAGS | StringAttr | IntBinArithOpWithOverflowFlag |
§Operands:
operand | description |
---|---|
lhs | Signless integer |
rhs | Signless integer |
§Result(s):
result | description |
---|---|
res | Signless integer |
Trait Implementations§
source§impl BinArithOp for MulOp
impl BinArithOp for MulOp
source§impl IntBinArithOp for MulOp
impl IntBinArithOp for MulOp
source§impl IntBinArithOpWithOverflowFlag for MulOp
impl IntBinArithOpWithOverflowFlag for MulOp
source§fn integer_overflow_flag(&self, ctx: &Context) -> IntegerOverflowFlagsAttrwhere
Self: Sized,
fn integer_overflow_flag(&self, ctx: &Context) -> IntegerOverflowFlagsAttrwhere
Self: Sized,
Get the integer overflow flag on this Op.
source§fn set_integer_overflow_flag(
&self,
ctx: &Context,
flag: IntegerOverflowFlagsAttr
)where
Self: Sized,
fn set_integer_overflow_flag(
&self,
ctx: &Context,
flag: IntegerOverflowFlagsAttr
)where
Self: Sized,
Set the integer overflow flag for this Op.
fn verify(op: &dyn Op, ctx: &Context) -> Result<()>where
Self: Sized,
source§impl OneResultInterface for MulOp
impl OneResultInterface for MulOp
source§impl Op for MulOp
impl Op for MulOp
source§fn get_operation(&self) -> Ptr<Operation>
fn get_operation(&self) -> Ptr<Operation>
Get the underlying IR Operation
source§fn wrap_operation(op: Ptr<Operation>) -> OpObj
fn wrap_operation(op: Ptr<Operation>) -> OpObj
Create a new Op object, by wrapping around an operation.
source§fn get_opid_static() -> OpId
fn get_opid_static() -> OpId
Get this Op’s OpId, without self reference.
source§fn verify_interfaces(&self, ctx: &Context) -> Result<()>
fn verify_interfaces(&self, ctx: &Context) -> Result<()>
Verify all interfaces implemented by this op.
source§fn register(
ctx: &mut Context,
dialect: &mut Dialect,
op_parser: for<'a> fn(_: &'a (), _: Vec<(Identifier, Location)>) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Box<dyn Op>> + 'a>
)where
Self: Sized,
fn register(
ctx: &mut Context,
dialect: &mut Dialect,
op_parser: for<'a> fn(_: &'a (), _: Vec<(Identifier, Location)>) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Box<dyn Op>> + 'a>
)where
Self: Sized,
Register Op in Context and add it to dialect.
source§impl Parsable for MulOp
impl Parsable for MulOp
§type Arg = Vec<(Identifier, Location)>
type Arg = Vec<(Identifier, Location)>
Type of the argument that must be passed to the parser.
source§fn parse<'a>(
state_stream: &mut StateStream<'a>,
results: Self::Arg
) -> ParseResult<'a, Self::Parsed>
fn parse<'a>( state_stream: &mut StateStream<'a>, results: Self::Arg ) -> ParseResult<'a, Self::Parsed>
Define a parser using existing combinators and call
into
on Parser::parse_stream to get the final ParseResult.
Use state_stream.state as necessary.source§fn parser<'a>(
arg: Self::Arg
) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Self::Parsed> + 'a>
fn parser<'a>( arg: Self::Arg ) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Self::Parsed> + 'a>
Get a parser combinator that can work on StateStream as its input.
source§fn parser_fn<'a>(
_: &'a (),
arg: Self::Arg
) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Self::Parsed> + 'a>
fn parser_fn<'a>( _: &'a (), arg: Self::Arg ) -> Box<dyn Parser<Stream<Stream<Stream<Stream<IteratorStream<CharIterator<'a>>, SourcePosition>>>, State<'a>>, PartialState = (), Output = Self::Parsed> + 'a>
Same as Self::parser but takes a unit reference for use as ParserFn
source§impl PartialEq for MulOp
impl PartialEq for MulOp
source§impl Printable for MulOp
impl Printable for MulOp
source§impl SameOperandsAndResultType for MulOp
impl SameOperandsAndResultType for MulOp
source§impl SameOperandsType for MulOp
impl SameOperandsType for MulOp
source§impl SameResultsType for MulOp
impl SameResultsType for MulOp
impl Copy for MulOp
impl Eq for MulOp
impl StructuralPartialEq for MulOp
Auto Trait Implementations§
impl Freeze for MulOp
impl !RefUnwindSafe for MulOp
impl !Send for MulOp
impl Sync for MulOp
impl Unpin for MulOp
impl !UnwindSafe for MulOp
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
Mutably borrows from an owned value. Read more
source§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
source§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Convert
Box<dyn Trait>
(where Trait: Downcast
) to Box<dyn Any>
. Box<dyn Any>
can
then be further downcast
into Box<ConcreteType>
where ConcreteType
implements Trait
.source§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Convert
Rc<Trait>
(where Trait: Downcast
) to Rc<Any>
. Rc<Any>
can then be
further downcast
into Rc<ConcreteType>
where ConcreteType
implements Trait
.source§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
Convert
&Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &Any
’s vtable from &Trait
’s.source§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
Convert
&mut Trait
(where Trait: Downcast
) to &Any
. This is needed since Rust cannot
generate &mut Any
’s vtable from &mut Trait
’s.