#[allow(
non_camel_case_types,
non_snake_case,
clippy::pub_underscore_fields,
clippy::style,
clippy::empty_structs_with_brackets
)]
pub mod IEtherPortal {
use super::*;
use alloy::sol_types as alloy_sol_types;
#[rustfmt::skip]
#[allow(clippy::all)]
pub static BYTECODE: alloy_sol_types::private::Bytes = alloy_sol_types::private::Bytes::from_static(
b"",
);
#[rustfmt::skip]
#[allow(clippy::all)]
pub static DEPLOYED_BYTECODE: alloy_sol_types::private::Bytes = alloy_sol_types::private::Bytes::from_static(
b"",
);
#[derive(serde::Serialize, serde::Deserialize)]
#[derive(Default, Debug, PartialEq, Eq, Hash)]
#[allow(non_camel_case_types, non_snake_case, clippy::pub_underscore_fields)]
#[derive(Clone)]
pub struct EtherTransferFailed;
#[allow(
non_camel_case_types,
non_snake_case,
clippy::pub_underscore_fields,
clippy::style
)]
const _: () = {
use alloy::sol_types as alloy_sol_types;
#[doc(hidden)]
#[allow(dead_code)]
type UnderlyingSolTuple<'a> = ();
#[doc(hidden)]
type UnderlyingRustTuple<'a> = ();
#[cfg(test)]
#[allow(dead_code, unreachable_patterns)]
fn _type_assertion(
_t: alloy_sol_types::private::AssertTypeEq<UnderlyingRustTuple>,
) {
match _t {
alloy_sol_types::private::AssertTypeEq::<
<UnderlyingSolTuple as alloy_sol_types::SolType>::RustType,
>(_) => {}
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<EtherTransferFailed> for UnderlyingRustTuple<'_> {
fn from(value: EtherTransferFailed) -> Self {
()
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<UnderlyingRustTuple<'_>> for EtherTransferFailed {
fn from(tuple: UnderlyingRustTuple<'_>) -> Self {
Self
}
}
#[automatically_derived]
impl alloy_sol_types::SolError for EtherTransferFailed {
type Parameters<'a> = UnderlyingSolTuple<'a>;
type Token<'a> = <Self::Parameters<
'a,
> as alloy_sol_types::SolType>::Token<'a>;
const SIGNATURE: &'static str = "EtherTransferFailed()";
const SELECTOR: [u8; 4] = [103u8, 71u8, 162u8, 136u8];
#[inline]
fn new<'a>(
tuple: <Self::Parameters<'a> as alloy_sol_types::SolType>::RustType,
) -> Self {
tuple.into()
}
#[inline]
fn tokenize(&self) -> Self::Token<'_> {
()
}
#[inline]
fn abi_decode_raw_validate(data: &[u8]) -> alloy_sol_types::Result<Self> {
<Self::Parameters<
'_,
> as alloy_sol_types::SolType>::abi_decode_sequence_validate(data)
.map(Self::new)
}
}
};
#[derive(serde::Serialize, serde::Deserialize)]
#[derive(Default, Debug, PartialEq, Eq, Hash)]
#[allow(non_camel_case_types, non_snake_case, clippy::pub_underscore_fields)]
#[derive(Clone)]
pub struct depositEtherCall {
#[allow(missing_docs)]
pub appContract: alloy::sol_types::private::Address,
#[allow(missing_docs)]
pub execLayerData: alloy::sol_types::private::Bytes,
}
#[allow(non_camel_case_types, non_snake_case, clippy::pub_underscore_fields)]
#[derive(Clone)]
pub struct depositEtherReturn {}
#[allow(
non_camel_case_types,
non_snake_case,
clippy::pub_underscore_fields,
clippy::style
)]
const _: () = {
use alloy::sol_types as alloy_sol_types;
{
#[doc(hidden)]
#[allow(dead_code)]
type UnderlyingSolTuple<'a> = (
alloy::sol_types::sol_data::Address,
alloy::sol_types::sol_data::Bytes,
);
#[doc(hidden)]
type UnderlyingRustTuple<'a> = (
alloy::sol_types::private::Address,
alloy::sol_types::private::Bytes,
);
#[cfg(test)]
#[allow(dead_code, unreachable_patterns)]
fn _type_assertion(
_t: alloy_sol_types::private::AssertTypeEq<UnderlyingRustTuple>,
) {
match _t {
alloy_sol_types::private::AssertTypeEq::<
<UnderlyingSolTuple as alloy_sol_types::SolType>::RustType,
>(_) => {}
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<depositEtherCall> for UnderlyingRustTuple<'_> {
fn from(value: depositEtherCall) -> Self {
(value.appContract, value.execLayerData)
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<UnderlyingRustTuple<'_>> for depositEtherCall {
fn from(tuple: UnderlyingRustTuple<'_>) -> Self {
Self {
appContract: tuple.0,
execLayerData: tuple.1,
}
}
}
}
{
#[doc(hidden)]
#[allow(dead_code)]
type UnderlyingSolTuple<'a> = ();
#[doc(hidden)]
type UnderlyingRustTuple<'a> = ();
#[cfg(test)]
#[allow(dead_code, unreachable_patterns)]
fn _type_assertion(
_t: alloy_sol_types::private::AssertTypeEq<UnderlyingRustTuple>,
) {
match _t {
alloy_sol_types::private::AssertTypeEq::<
<UnderlyingSolTuple as alloy_sol_types::SolType>::RustType,
>(_) => {}
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<depositEtherReturn> for UnderlyingRustTuple<'_> {
fn from(value: depositEtherReturn) -> Self {
()
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<UnderlyingRustTuple<'_>> for depositEtherReturn {
fn from(tuple: UnderlyingRustTuple<'_>) -> Self {
Self {}
}
}
}
impl depositEtherReturn {
fn _tokenize(
&self,
) -> <depositEtherCall as alloy_sol_types::SolCall>::ReturnToken<'_> {
()
}
}
#[automatically_derived]
impl alloy_sol_types::SolCall for depositEtherCall {
type Parameters<'a> = (
alloy::sol_types::sol_data::Address,
alloy::sol_types::sol_data::Bytes,
);
type Token<'a> = <Self::Parameters<
'a,
> as alloy_sol_types::SolType>::Token<'a>;
type Return = depositEtherReturn;
type ReturnTuple<'a> = ();
type ReturnToken<'a> = <Self::ReturnTuple<
'a,
> as alloy_sol_types::SolType>::Token<'a>;
const SIGNATURE: &'static str = "depositEther(address,bytes)";
const SELECTOR: [u8; 4] = [147u8, 140u8, 5u8, 79u8];
#[inline]
fn new<'a>(
tuple: <Self::Parameters<'a> as alloy_sol_types::SolType>::RustType,
) -> Self {
tuple.into()
}
#[inline]
fn tokenize(&self) -> Self::Token<'_> {
(
<alloy::sol_types::sol_data::Address as alloy_sol_types::SolType>::tokenize(
&self.appContract,
),
<alloy::sol_types::sol_data::Bytes as alloy_sol_types::SolType>::tokenize(
&self.execLayerData,
),
)
}
#[inline]
fn tokenize_returns(ret: &Self::Return) -> Self::ReturnToken<'_> {
depositEtherReturn::_tokenize(ret)
}
#[inline]
fn abi_decode_returns(data: &[u8]) -> alloy_sol_types::Result<Self::Return> {
<Self::ReturnTuple<
'_,
> as alloy_sol_types::SolType>::abi_decode_sequence(data)
.map(Into::into)
}
#[inline]
fn abi_decode_returns_validate(
data: &[u8],
) -> alloy_sol_types::Result<Self::Return> {
<Self::ReturnTuple<
'_,
> as alloy_sol_types::SolType>::abi_decode_sequence_validate(data)
.map(Into::into)
}
}
};
#[derive(serde::Serialize, serde::Deserialize)]
#[derive(Default, Debug, PartialEq, Eq, Hash)]
#[allow(non_camel_case_types, non_snake_case, clippy::pub_underscore_fields)]
#[derive(Clone)]
pub struct getInputBoxCall;
#[derive(serde::Serialize, serde::Deserialize)]
#[derive(Default, Debug, PartialEq, Eq, Hash)]
#[allow(non_camel_case_types, non_snake_case, clippy::pub_underscore_fields)]
#[derive(Clone)]
pub struct getInputBoxReturn {
#[allow(missing_docs)]
pub _0: alloy::sol_types::private::Address,
}
#[allow(
non_camel_case_types,
non_snake_case,
clippy::pub_underscore_fields,
clippy::style
)]
const _: () = {
use alloy::sol_types as alloy_sol_types;
{
#[doc(hidden)]
#[allow(dead_code)]
type UnderlyingSolTuple<'a> = ();
#[doc(hidden)]
type UnderlyingRustTuple<'a> = ();
#[cfg(test)]
#[allow(dead_code, unreachable_patterns)]
fn _type_assertion(
_t: alloy_sol_types::private::AssertTypeEq<UnderlyingRustTuple>,
) {
match _t {
alloy_sol_types::private::AssertTypeEq::<
<UnderlyingSolTuple as alloy_sol_types::SolType>::RustType,
>(_) => {}
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<getInputBoxCall> for UnderlyingRustTuple<'_> {
fn from(value: getInputBoxCall) -> Self {
()
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<UnderlyingRustTuple<'_>> for getInputBoxCall {
fn from(tuple: UnderlyingRustTuple<'_>) -> Self {
Self
}
}
}
{
#[doc(hidden)]
#[allow(dead_code)]
type UnderlyingSolTuple<'a> = (alloy::sol_types::sol_data::Address,);
#[doc(hidden)]
type UnderlyingRustTuple<'a> = (alloy::sol_types::private::Address,);
#[cfg(test)]
#[allow(dead_code, unreachable_patterns)]
fn _type_assertion(
_t: alloy_sol_types::private::AssertTypeEq<UnderlyingRustTuple>,
) {
match _t {
alloy_sol_types::private::AssertTypeEq::<
<UnderlyingSolTuple as alloy_sol_types::SolType>::RustType,
>(_) => {}
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<getInputBoxReturn> for UnderlyingRustTuple<'_> {
fn from(value: getInputBoxReturn) -> Self {
(value._0,)
}
}
#[automatically_derived]
#[doc(hidden)]
impl ::core::convert::From<UnderlyingRustTuple<'_>> for getInputBoxReturn {
fn from(tuple: UnderlyingRustTuple<'_>) -> Self {
Self { _0: tuple.0 }
}
}
}
#[automatically_derived]
impl alloy_sol_types::SolCall for getInputBoxCall {
type Parameters<'a> = ();
type Token<'a> = <Self::Parameters<
'a,
> as alloy_sol_types::SolType>::Token<'a>;
type Return = alloy::sol_types::private::Address;
type ReturnTuple<'a> = (alloy::sol_types::sol_data::Address,);
type ReturnToken<'a> = <Self::ReturnTuple<
'a,
> as alloy_sol_types::SolType>::Token<'a>;
const SIGNATURE: &'static str = "getInputBox()";
const SELECTOR: [u8; 4] = [0u8, 170u8, 206u8, 154u8];
#[inline]
fn new<'a>(
tuple: <Self::Parameters<'a> as alloy_sol_types::SolType>::RustType,
) -> Self {
tuple.into()
}
#[inline]
fn tokenize(&self) -> Self::Token<'_> {
()
}
#[inline]
fn tokenize_returns(ret: &Self::Return) -> Self::ReturnToken<'_> {
(
<alloy::sol_types::sol_data::Address as alloy_sol_types::SolType>::tokenize(
ret,
),
)
}
#[inline]
fn abi_decode_returns(data: &[u8]) -> alloy_sol_types::Result<Self::Return> {
<Self::ReturnTuple<
'_,
> as alloy_sol_types::SolType>::abi_decode_sequence(data)
.map(|r| {
let r: getInputBoxReturn = r.into();
r._0
})
}
#[inline]
fn abi_decode_returns_validate(
data: &[u8],
) -> alloy_sol_types::Result<Self::Return> {
<Self::ReturnTuple<
'_,
> as alloy_sol_types::SolType>::abi_decode_sequence_validate(data)
.map(|r| {
let r: getInputBoxReturn = r.into();
r._0
})
}
}
};
#[derive(Clone)]
#[derive(serde::Serialize, serde::Deserialize)]
#[derive()]
pub enum IEtherPortalCalls {
#[allow(missing_docs)]
depositEther(depositEtherCall),
#[allow(missing_docs)]
getInputBox(getInputBoxCall),
}
impl IEtherPortalCalls {
pub const SELECTORS: &'static [[u8; 4usize]] = &[
[0u8, 170u8, 206u8, 154u8],
[147u8, 140u8, 5u8, 79u8],
];
pub const VARIANT_NAMES: &'static [&'static str] = &[
::core::stringify!(getInputBox),
::core::stringify!(depositEther),
];
pub const SIGNATURES: &'static [&'static str] = &[
<getInputBoxCall as alloy_sol_types::SolCall>::SIGNATURE,
<depositEtherCall as alloy_sol_types::SolCall>::SIGNATURE,
];
#[inline]
pub fn signature_by_selector(
selector: [u8; 4usize],
) -> ::core::option::Option<&'static str> {
match Self::SELECTORS.binary_search(&selector) {
::core::result::Result::Ok(idx) => {
::core::option::Option::Some(Self::SIGNATURES[idx])
}
::core::result::Result::Err(_) => ::core::option::Option::None,
}
}
#[inline]
pub fn name_by_selector(
selector: [u8; 4usize],
) -> ::core::option::Option<&'static str> {
let sig = Self::signature_by_selector(selector)?;
sig.split_once('(').map(|(name, _)| name)
}
}
#[automatically_derived]
impl alloy_sol_types::SolInterface for IEtherPortalCalls {
const NAME: &'static str = "IEtherPortalCalls";
const MIN_DATA_LENGTH: usize = 0usize;
const COUNT: usize = 2usize;
#[inline]
fn selector(&self) -> [u8; 4] {
match self {
Self::depositEther(_) => {
<depositEtherCall as alloy_sol_types::SolCall>::SELECTOR
}
Self::getInputBox(_) => {
<getInputBoxCall as alloy_sol_types::SolCall>::SELECTOR
}
}
}
#[inline]
fn selector_at(i: usize) -> ::core::option::Option<[u8; 4]> {
Self::SELECTORS.get(i).copied()
}
#[inline]
fn valid_selector(selector: [u8; 4]) -> bool {
Self::SELECTORS.binary_search(&selector).is_ok()
}
#[inline]
#[allow(non_snake_case)]
fn abi_decode_raw(
selector: [u8; 4],
data: &[u8],
) -> alloy_sol_types::Result<Self> {
static DECODE_SHIMS: &[fn(
&[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls>] = &[
{
fn getInputBox(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls> {
<getInputBoxCall as alloy_sol_types::SolCall>::abi_decode_raw(
data,
)
.map(IEtherPortalCalls::getInputBox)
}
getInputBox
},
{
fn depositEther(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls> {
<depositEtherCall as alloy_sol_types::SolCall>::abi_decode_raw(
data,
)
.map(IEtherPortalCalls::depositEther)
}
depositEther
},
];
let Ok(idx) = Self::SELECTORS.binary_search(&selector) else {
return Err(
alloy_sol_types::Error::unknown_selector(
<Self as alloy_sol_types::SolInterface>::NAME,
selector,
),
);
};
DECODE_SHIMS[idx](data)
}
#[inline]
#[allow(non_snake_case)]
fn abi_decode_raw_validate(
selector: [u8; 4],
data: &[u8],
) -> alloy_sol_types::Result<Self> {
static DECODE_VALIDATE_SHIMS: &[fn(
&[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls>] = &[
{
fn getInputBox(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls> {
<getInputBoxCall as alloy_sol_types::SolCall>::abi_decode_raw_validate(
data,
)
.map(IEtherPortalCalls::getInputBox)
}
getInputBox
},
{
fn depositEther(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalCalls> {
<depositEtherCall as alloy_sol_types::SolCall>::abi_decode_raw_validate(
data,
)
.map(IEtherPortalCalls::depositEther)
}
depositEther
},
];
let Ok(idx) = Self::SELECTORS.binary_search(&selector) else {
return Err(
alloy_sol_types::Error::unknown_selector(
<Self as alloy_sol_types::SolInterface>::NAME,
selector,
),
);
};
DECODE_VALIDATE_SHIMS[idx](data)
}
#[inline]
fn abi_encoded_size(&self) -> usize {
match self {
Self::depositEther(inner) => {
<depositEtherCall as alloy_sol_types::SolCall>::abi_encoded_size(
inner,
)
}
Self::getInputBox(inner) => {
<getInputBoxCall as alloy_sol_types::SolCall>::abi_encoded_size(
inner,
)
}
}
}
#[inline]
fn abi_encode_raw(&self, out: &mut alloy_sol_types::private::Vec<u8>) {
match self {
Self::depositEther(inner) => {
<depositEtherCall as alloy_sol_types::SolCall>::abi_encode_raw(
inner,
out,
)
}
Self::getInputBox(inner) => {
<getInputBoxCall as alloy_sol_types::SolCall>::abi_encode_raw(
inner,
out,
)
}
}
}
}
#[derive(Clone)]
#[derive(serde::Serialize, serde::Deserialize)]
#[derive(Debug, PartialEq, Eq, Hash)]
pub enum IEtherPortalErrors {
#[allow(missing_docs)]
EtherTransferFailed(EtherTransferFailed),
}
impl IEtherPortalErrors {
pub const SELECTORS: &'static [[u8; 4usize]] = &[[103u8, 71u8, 162u8, 136u8]];
pub const VARIANT_NAMES: &'static [&'static str] = &[
::core::stringify!(EtherTransferFailed),
];
pub const SIGNATURES: &'static [&'static str] = &[
<EtherTransferFailed as alloy_sol_types::SolError>::SIGNATURE,
];
#[inline]
pub fn signature_by_selector(
selector: [u8; 4usize],
) -> ::core::option::Option<&'static str> {
match Self::SELECTORS.binary_search(&selector) {
::core::result::Result::Ok(idx) => {
::core::option::Option::Some(Self::SIGNATURES[idx])
}
::core::result::Result::Err(_) => ::core::option::Option::None,
}
}
#[inline]
pub fn name_by_selector(
selector: [u8; 4usize],
) -> ::core::option::Option<&'static str> {
let sig = Self::signature_by_selector(selector)?;
sig.split_once('(').map(|(name, _)| name)
}
}
#[automatically_derived]
impl alloy_sol_types::SolInterface for IEtherPortalErrors {
const NAME: &'static str = "IEtherPortalErrors";
const MIN_DATA_LENGTH: usize = 0usize;
const COUNT: usize = 1usize;
#[inline]
fn selector(&self) -> [u8; 4] {
match self {
Self::EtherTransferFailed(_) => {
<EtherTransferFailed as alloy_sol_types::SolError>::SELECTOR
}
}
}
#[inline]
fn selector_at(i: usize) -> ::core::option::Option<[u8; 4]> {
Self::SELECTORS.get(i).copied()
}
#[inline]
fn valid_selector(selector: [u8; 4]) -> bool {
Self::SELECTORS.binary_search(&selector).is_ok()
}
#[inline]
#[allow(non_snake_case)]
fn abi_decode_raw(
selector: [u8; 4],
data: &[u8],
) -> alloy_sol_types::Result<Self> {
static DECODE_SHIMS: &[fn(
&[u8],
) -> alloy_sol_types::Result<IEtherPortalErrors>] = &[
{
fn EtherTransferFailed(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalErrors> {
<EtherTransferFailed as alloy_sol_types::SolError>::abi_decode_raw(
data,
)
.map(IEtherPortalErrors::EtherTransferFailed)
}
EtherTransferFailed
},
];
let Ok(idx) = Self::SELECTORS.binary_search(&selector) else {
return Err(
alloy_sol_types::Error::unknown_selector(
<Self as alloy_sol_types::SolInterface>::NAME,
selector,
),
);
};
DECODE_SHIMS[idx](data)
}
#[inline]
#[allow(non_snake_case)]
fn abi_decode_raw_validate(
selector: [u8; 4],
data: &[u8],
) -> alloy_sol_types::Result<Self> {
static DECODE_VALIDATE_SHIMS: &[fn(
&[u8],
) -> alloy_sol_types::Result<IEtherPortalErrors>] = &[
{
fn EtherTransferFailed(
data: &[u8],
) -> alloy_sol_types::Result<IEtherPortalErrors> {
<EtherTransferFailed as alloy_sol_types::SolError>::abi_decode_raw_validate(
data,
)
.map(IEtherPortalErrors::EtherTransferFailed)
}
EtherTransferFailed
},
];
let Ok(idx) = Self::SELECTORS.binary_search(&selector) else {
return Err(
alloy_sol_types::Error::unknown_selector(
<Self as alloy_sol_types::SolInterface>::NAME,
selector,
),
);
};
DECODE_VALIDATE_SHIMS[idx](data)
}
#[inline]
fn abi_encoded_size(&self) -> usize {
match self {
Self::EtherTransferFailed(inner) => {
<EtherTransferFailed as alloy_sol_types::SolError>::abi_encoded_size(
inner,
)
}
}
}
#[inline]
fn abi_encode_raw(&self, out: &mut alloy_sol_types::private::Vec<u8>) {
match self {
Self::EtherTransferFailed(inner) => {
<EtherTransferFailed as alloy_sol_types::SolError>::abi_encode_raw(
inner,
out,
)
}
}
}
}
use alloy::contract as alloy_contract;
#[inline]
pub const fn new<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
>(
address: alloy_sol_types::private::Address,
__provider: P,
) -> IEtherPortalInstance<P, N> {
IEtherPortalInstance::<P, N>::new(address, __provider)
}
#[inline]
pub fn deploy<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
>(
__provider: P,
) -> impl ::core::future::Future<
Output = alloy_contract::Result<IEtherPortalInstance<P, N>>,
> {
IEtherPortalInstance::<P, N>::deploy(__provider)
}
#[inline]
pub fn deploy_builder<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
>(__provider: P) -> alloy_contract::RawCallBuilder<P, N> {
IEtherPortalInstance::<P, N>::deploy_builder(__provider)
}
#[derive(Clone)]
pub struct IEtherPortalInstance<P, N = alloy_contract::private::Ethereum> {
address: alloy_sol_types::private::Address,
provider: P,
_network: ::core::marker::PhantomData<N>,
}
#[automatically_derived]
impl<P, N> ::core::fmt::Debug for IEtherPortalInstance<P, N> {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter<'_>) -> ::core::fmt::Result {
f.debug_tuple("IEtherPortalInstance").field(&self.address).finish()
}
}
impl<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
> IEtherPortalInstance<P, N> {
#[inline]
pub const fn new(
address: alloy_sol_types::private::Address,
__provider: P,
) -> Self {
Self {
address,
provider: __provider,
_network: ::core::marker::PhantomData,
}
}
#[inline]
pub async fn deploy(
__provider: P,
) -> alloy_contract::Result<IEtherPortalInstance<P, N>> {
let call_builder = Self::deploy_builder(__provider);
let contract_address = call_builder.deploy().await?;
Ok(Self::new(contract_address, call_builder.provider))
}
#[inline]
pub fn deploy_builder(__provider: P) -> alloy_contract::RawCallBuilder<P, N> {
alloy_contract::RawCallBuilder::new_raw_deploy(
__provider,
::core::clone::Clone::clone(&BYTECODE),
)
}
#[inline]
pub const fn address(&self) -> &alloy_sol_types::private::Address {
&self.address
}
#[inline]
pub fn set_address(&mut self, address: alloy_sol_types::private::Address) {
self.address = address;
}
pub fn at(mut self, address: alloy_sol_types::private::Address) -> Self {
self.set_address(address);
self
}
#[inline]
pub const fn provider(&self) -> &P {
&self.provider
}
}
impl<P: ::core::clone::Clone, N> IEtherPortalInstance<&P, N> {
#[inline]
pub fn with_cloned_provider(self) -> IEtherPortalInstance<P, N> {
IEtherPortalInstance {
address: self.address,
provider: ::core::clone::Clone::clone(&self.provider),
_network: ::core::marker::PhantomData,
}
}
}
impl<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
> IEtherPortalInstance<P, N> {
pub fn call_builder<C: alloy_sol_types::SolCall>(
&self,
call: &C,
) -> alloy_contract::SolCallBuilder<&P, C, N> {
alloy_contract::SolCallBuilder::new_sol(&self.provider, &self.address, call)
}
pub fn depositEther(
&self,
appContract: alloy::sol_types::private::Address,
execLayerData: alloy::sol_types::private::Bytes,
) -> alloy_contract::SolCallBuilder<&P, depositEtherCall, N> {
self.call_builder(
&depositEtherCall {
appContract,
execLayerData,
},
)
}
pub fn getInputBox(
&self,
) -> alloy_contract::SolCallBuilder<&P, getInputBoxCall, N> {
self.call_builder(&getInputBoxCall)
}
}
impl<
P: alloy_contract::private::Provider<N>,
N: alloy_contract::private::Network,
> IEtherPortalInstance<P, N> {
pub fn event_filter<E: alloy_sol_types::SolEvent>(
&self,
) -> alloy_contract::Event<&P, E, N> {
alloy_contract::Event::new_sol(&self.provider, &self.address)
}
}
}