pub struct ICurveU256_3_EthInstance<T, P, N = Ethereum> {
address: Address,
provider: P,
_network_transport: PhantomData<(N, T)>,
}
Expand description
A ICurveU256_3_Eth
instance.
Contains type-safe methods for interacting with an on-chain instance of the
ICurveU256_3_Eth
contract located at a given address
, using a given
provider P
.
If the contract bytecode is available (see the sol!
documentation on how to provide it), the deploy
and deploy_builder
methods can
be used to deploy a new instance of the contract.
See the module-level documentation for all the available methods.
Fields§
§address: Address
§provider: P
§_network_transport: PhantomData<(N, T)>
Implementations§
Source§impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
Instantiation and getters/setters.
Sourcepub const fn new(address: Address, provider: P) -> Self
pub const fn new(address: Address, provider: P) -> Self
Creates a new wrapper around an on-chain ICurveU256_3_Eth
contract instance.
See the wrapper’s documentation for more details.
Sourcepub fn set_address(&mut self, address: Address)
pub fn set_address(&mut self, address: Address)
Sets the address.
Source§impl<T, P: Clone, N> ICurveU256_3_EthInstance<T, &P, N>
impl<T, P: Clone, N> ICurveU256_3_EthInstance<T, &P, N>
Sourcepub fn with_cloned_provider(self) -> ICurveU256_3_EthInstance<T, P, N>
pub fn with_cloned_provider(self) -> ICurveU256_3_EthInstance<T, P, N>
Clones the provider and returns a new instance with the cloned provider.
Source§impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
Function calls.
Sourcepub fn call_builder<C: SolCall>(&self, call: &C) -> SolCallBuilder<T, &P, C, N>
pub fn call_builder<C: SolCall>(&self, call: &C) -> SolCallBuilder<T, &P, C, N>
Creates a new call builder using this contract instance’s provider and address.
Note that the call can be any function call, not just those defined in this contract. Prefer using the other methods for building type-safe contract calls.
Sourcepub fn get_dy(
&self,
_0: U256,
_1: U256,
_2: U256,
) -> SolCallBuilder<T, &P, get_dyCall, N>
pub fn get_dy( &self, _0: U256, _1: U256, _2: U256, ) -> SolCallBuilder<T, &P, get_dyCall, N>
Creates a new call builder for the [get_dy
] function.
Sourcepub fn calc_withdraw_one_coin(
&self,
_0: U256,
_1: U256,
) -> SolCallBuilder<T, &P, calc_withdraw_one_coinCall, N>
pub fn calc_withdraw_one_coin( &self, _0: U256, _1: U256, ) -> SolCallBuilder<T, &P, calc_withdraw_one_coinCall, N>
Creates a new call builder for the [calc_withdraw_one_coin
] function.
Sourcepub fn calc_token_amount(
&self,
_0: [U256; 3],
_1: bool,
) -> SolCallBuilder<T, &P, calc_token_amountCall, N>
pub fn calc_token_amount( &self, _0: [U256; 3], _1: bool, ) -> SolCallBuilder<T, &P, calc_token_amountCall, N>
Creates a new call builder for the [calc_token_amount
] function.
Sourcepub fn exchange(
&self,
_0: U256,
_1: U256,
_2: U256,
_3: U256,
_4: bool,
) -> SolCallBuilder<T, &P, exchangeCall, N>
pub fn exchange( &self, _0: U256, _1: U256, _2: U256, _3: U256, _4: bool, ) -> SolCallBuilder<T, &P, exchangeCall, N>
Creates a new call builder for the [exchange
] function.
Sourcepub fn remove_liquidity_one_coin(
&self,
_0: U256,
_1: U256,
_2: U256,
) -> SolCallBuilder<T, &P, remove_liquidity_one_coinCall, N>
pub fn remove_liquidity_one_coin( &self, _0: U256, _1: U256, _2: U256, ) -> SolCallBuilder<T, &P, remove_liquidity_one_coinCall, N>
Creates a new call builder for the [remove_liquidity_one_coin
] function.
Sourcepub fn add_liquidity(
&self,
_0: [U256; 3],
_1: U256,
) -> SolCallBuilder<T, &P, add_liquidityCall, N>
pub fn add_liquidity( &self, _0: [U256; 3], _1: U256, ) -> SolCallBuilder<T, &P, add_liquidityCall, N>
Creates a new call builder for the [add_liquidity
] function.
Source§impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
impl<T: Transport + Clone, P: Provider<T, N>, N: Network> ICurveU256_3_EthInstance<T, P, N>
Event filters.
Sourcepub fn event_filter<E: SolEvent>(&self) -> Event<T, &P, E, N>
pub fn event_filter<E: SolEvent>(&self) -> Event<T, &P, E, N>
Creates a new event filter using this contract instance’s provider and address.
Note that the type can be any event, not just those defined in this contract. Prefer using the other methods for building type-safe event filters.
Trait Implementations§
Auto Trait Implementations§
impl<T, P, N> Freeze for ICurveU256_3_EthInstance<T, P, N>where
P: Freeze,
impl<T, P, N> RefUnwindSafe for ICurveU256_3_EthInstance<T, P, N>
impl<T, P, N> Send for ICurveU256_3_EthInstance<T, P, N>
impl<T, P, N> Sync for ICurveU256_3_EthInstance<T, P, N>
impl<T, P, N> Unpin for ICurveU256_3_EthInstance<T, P, N>
impl<T, P, N> UnwindSafe for ICurveU256_3_EthInstance<T, P, N>
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
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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
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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
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impl<T> WithSubscriber for T
§fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>where
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Layout§
Note: Unable to compute type layout, possibly due to this type having generic parameters. Layout can only be computed for concrete, fully-instantiated types.