pub struct BondingCurve<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> {
pub curve: T,
pub arguments: CurveArguments<M>,
pub sell_availability: bool,
pub payment: EgldOrEsdtTokenPayment<M>,
}
Fields§
§curve: T
§arguments: CurveArguments<M>
§sell_availability: bool
§payment: EgldOrEsdtTokenPayment<M>
Implementations§
Source§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> BondingCurve<M, T>
pub fn payment_token(&self) -> EgldOrEsdtTokenIdentifier<M>
pub fn payment_is_egld(&self) -> bool
Trait Implementations§
Source§impl<M: Clone + ManagedTypeApi, T: Clone + CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> Clone for BondingCurve<M, T>
impl<M: Clone + ManagedTypeApi, T: Clone + CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> Clone for BondingCurve<M, T>
Source§fn clone(&self) -> BondingCurve<M, T>
fn clone(&self) -> BondingCurve<M, T>
Returns a copy of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source
. Read moreSource§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> NestedDecode for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> NestedDecode for BondingCurve<M, T>
Source§fn dep_decode_or_handle_err<I, H>(
input: &mut I,
__h__: H,
) -> Result<Self, H::HandledErr>where
I: NestedDecodeInput,
H: DecodeErrorHandler,
fn dep_decode_or_handle_err<I, H>(
input: &mut I,
__h__: H,
) -> Result<Self, H::HandledErr>where
I: NestedDecodeInput,
H: DecodeErrorHandler,
Version of
dep_decode
that can handle errors as soon as they occur.
For instance in can exit immediately and make sure that if it returns, it is a success.
By not deferring error handling, this can lead to somewhat smaller bytecode.Source§fn dep_decode<I>(input: &mut I) -> Result<Self, DecodeError>where
I: NestedDecodeInput,
fn dep_decode<I>(input: &mut I) -> Result<Self, DecodeError>where
I: NestedDecodeInput,
Attempt to deserialise the value from input,
using the format of an object nested inside another structure.
In case of success returns the deserialized value and the number of bytes consumed during the operation.
Source§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> NestedEncode for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> NestedEncode for BondingCurve<M, T>
Source§fn dep_encode_or_handle_err<O, H>(
&self,
__dest__: &mut O,
__h__: H,
) -> Result<(), H::HandledErr>where
O: NestedEncodeOutput,
H: EncodeErrorHandler,
fn dep_encode_or_handle_err<O, H>(
&self,
__dest__: &mut O,
__h__: H,
) -> Result<(), H::HandledErr>where
O: NestedEncodeOutput,
H: EncodeErrorHandler,
Version of
dep_encode
that can handle errors as soon as they occur.
For instance in can exit immediately and make sure that if it returns, it is a success.
By not deferring error handling, this can lead to somewhat smaller bytecode.Source§fn dep_encode<O>(&self, dest: &mut O) -> Result<(), EncodeError>where
O: NestedEncodeOutput,
fn dep_encode<O>(&self, dest: &mut O) -> Result<(), EncodeError>where
O: NestedEncodeOutput,
NestedEncode to output, using the format of an object nested inside another structure.
Does not provide compact version.
Source§impl<M: PartialEq + ManagedTypeApi, T: PartialEq + CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> PartialEq for BondingCurve<M, T>
impl<M: PartialEq + ManagedTypeApi, T: PartialEq + CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> PartialEq for BondingCurve<M, T>
Source§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TopDecode for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TopDecode for BondingCurve<M, T>
Source§fn top_decode_or_handle_err<I, H>(
top_input: I,
__h__: H,
) -> Result<Self, H::HandledErr>where
I: TopDecodeInput,
H: DecodeErrorHandler,
fn top_decode_or_handle_err<I, H>(
top_input: I,
__h__: H,
) -> Result<Self, H::HandledErr>where
I: TopDecodeInput,
H: DecodeErrorHandler,
Version of
top_decode
that can handle errors as soon as they occur.
For instance it can exit immediately and make sure that if it returns, it is a success.
By not deferring error handling, this can lead to somewhat smaller bytecode.Source§fn top_decode<I>(input: I) -> Result<Self, DecodeError>where
I: TopDecodeInput,
fn top_decode<I>(input: I) -> Result<Self, DecodeError>where
I: TopDecodeInput,
Attempt to deserialize the value from input.
Source§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TopEncode for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TopEncode for BondingCurve<M, T>
Source§fn top_encode_or_handle_err<O, H>(
&self,
output: O,
__h__: H,
) -> Result<(), H::HandledErr>where
O: TopEncodeOutput,
H: EncodeErrorHandler,
fn top_encode_or_handle_err<O, H>(
&self,
output: O,
__h__: H,
) -> Result<(), H::HandledErr>where
O: TopEncodeOutput,
H: EncodeErrorHandler,
Version of
top_encode
that can handle errors as soon as they occur.
For instance in can exit immediately and make sure that if it returns, it is a success.
By not deferring error handling, this can lead to somewhat smaller bytecode.Source§fn top_encode<O>(&self, output: O) -> Result<(), EncodeError>where
O: TopEncodeOutput,
fn top_encode<O>(&self, output: O) -> Result<(), EncodeError>where
O: TopEncodeOutput,
Attempt to serialize the value to ouput.
Source§impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TypeAbi for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TypeAbi for BondingCurve<M, T>
type Unmanaged = BondingCurve<M, T>
fn type_name() -> TypeName
Source§fn provide_type_descriptions<TDC: TypeDescriptionContainer>(
accumulator: &mut TDC,
)
fn provide_type_descriptions<TDC: TypeDescriptionContainer>( accumulator: &mut TDC, )
A type can provide more than its own name.
For instance, a struct can also provide the descriptions of the type of its fields.
TypeAbi doesn’t care for the exact accumulator type,
which is abstracted by the TypeDescriptionContainer trait.
fn type_names() -> TypeNames
fn type_name_rust() -> String
impl<M: Eq + ManagedTypeApi, T: Eq + CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> Eq for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> StructuralPartialEq for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TypeAbiFrom<&BondingCurve<M, T>> for BondingCurve<M, T>
impl<M: ManagedTypeApi, T: CurveFunction<M> + TopEncode + TopDecode + NestedEncode + NestedDecode + TypeAbi> TypeAbiFrom<BondingCurve<M, T>> for BondingCurve<M, T>
Auto Trait Implementations§
impl<M, T> Freeze for BondingCurve<M, T>where
T: Freeze,
<M as HandleTypeInfo>::BigIntHandle: Freeze,
<M as HandleTypeInfo>::ManagedBufferHandle: Freeze,
impl<M, T> RefUnwindSafe for BondingCurve<M, T>where
T: RefUnwindSafe,
<M as HandleTypeInfo>::BigIntHandle: RefUnwindSafe,
<M as HandleTypeInfo>::ManagedBufferHandle: RefUnwindSafe,
M: RefUnwindSafe,
impl<M, T> Send for BondingCurve<M, T>where
T: Send,
<M as HandleTypeInfo>::BigIntHandle: Send,
<M as HandleTypeInfo>::ManagedBufferHandle: Send,
M: Send,
impl<M, T> Sync for BondingCurve<M, T>where
T: Sync,
<M as HandleTypeInfo>::BigIntHandle: Sync,
<M as HandleTypeInfo>::ManagedBufferHandle: Sync,
M: Sync,
impl<M, T> Unpin for BondingCurve<M, T>where
T: Unpin,
<M as HandleTypeInfo>::BigIntHandle: Unpin,
<M as HandleTypeInfo>::ManagedBufferHandle: Unpin,
M: Unpin,
impl<M, T> UnwindSafe for BondingCurve<M, T>where
T: UnwindSafe,
<M as HandleTypeInfo>::BigIntHandle: UnwindSafe,
<M as HandleTypeInfo>::ManagedBufferHandle: UnwindSafe,
M: UnwindSafe,
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> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> SCCodec for Twhere
T: TopEncode,
impl<T> SCCodec for Twhere
T: TopEncode,
fn fmt<F>(&self, f: &mut F)where
F: FormatByteReceiver,
Source§impl<T> TopDecodeMulti for Twhere
T: TopDecode,
impl<T> TopDecodeMulti for Twhere
T: TopDecode,
Source§const IS_SINGLE_VALUE: bool = true
const IS_SINGLE_VALUE: bool = true
Used to optimize single value loading of endpoint arguments.
fn multi_decode_or_handle_err<I, H>(
input: &mut I,
h: H,
) -> Result<T, <H as DecodeErrorHandler>::HandledErr>where
I: TopDecodeMultiInput,
H: DecodeErrorHandler,
fn multi_decode<I>(input: &mut I) -> Result<Self, DecodeError>where
I: TopDecodeMultiInput,
Source§impl<T> TopDecodeMultiLength for T
impl<T> TopDecodeMultiLength for T
Source§impl<T> TopEncodeMulti for Twhere
T: TopEncode,
impl<T> TopEncodeMulti for Twhere
T: TopEncode,
Source§fn multi_encode_or_handle_err<O, H>(
&self,
output: &mut O,
h: H,
) -> Result<(), <H as EncodeErrorHandler>::HandledErr>where
O: TopEncodeMultiOutput,
H: EncodeErrorHandler,
fn multi_encode_or_handle_err<O, H>(
&self,
output: &mut O,
h: H,
) -> Result<(), <H as EncodeErrorHandler>::HandledErr>where
O: TopEncodeMultiOutput,
H: EncodeErrorHandler,
Version of
top_encode
that can handle errors as soon as they occur.
For instance in can exit immediately and make sure that if it returns, it is a success.
By not deferring error handling, this can lead to somewhat smaller bytecode.Source§fn multi_encode<O>(&self, output: &mut O) -> Result<(), EncodeError>where
O: TopEncodeMultiOutput,
fn multi_encode<O>(&self, output: &mut O) -> Result<(), EncodeError>where
O: TopEncodeMultiOutput,
Attempt to serialize the value to ouput.