pub struct VerifyingKeySol {Show 22 fields
pub domainSize: U256,
pub numInputs: U256,
pub sigma0: <G1Point as SolType>::RustType,
pub sigma1: <G1Point as SolType>::RustType,
pub sigma2: <G1Point as SolType>::RustType,
pub sigma3: <G1Point as SolType>::RustType,
pub sigma4: <G1Point as SolType>::RustType,
pub q1: <G1Point as SolType>::RustType,
pub q2: <G1Point as SolType>::RustType,
pub q3: <G1Point as SolType>::RustType,
pub q4: <G1Point as SolType>::RustType,
pub qM12: <G1Point as SolType>::RustType,
pub qM34: <G1Point as SolType>::RustType,
pub qO: <G1Point as SolType>::RustType,
pub qC: <G1Point as SolType>::RustType,
pub qH1: <G1Point as SolType>::RustType,
pub qH2: <G1Point as SolType>::RustType,
pub qH3: <G1Point as SolType>::RustType,
pub qH4: <G1Point as SolType>::RustType,
pub qEcc: <G1Point as SolType>::RustType,
pub g2LSB: FixedBytes<32>,
pub g2MSB: FixedBytes<32>,
}
Expand description
§What to re-export, what to hide?
- export contract struct itself, but try to avoid export instance type (instead, use ::new() to get a handle)
- avoid exporting
xxCall
andxxReturn
types, they usually can be converted/transmuted from existing struct - Event types should be exported
- structs should be exported and renamed with
xxSol
suffix to avoid confusion with other rust types- see module doc for more explanation on types duplication issue in alloy
struct VerifyingKey { uint256 domainSize; uint256 numInputs; BN254.G1Point sigma0; BN254.G1Point sigma1; BN254.G1Point sigma2; BN254.G1Point sigma3; BN254.G1Point sigma4; BN254.G1Point q1; BN254.G1Point q2; BN254.G1Point q3; BN254.G1Point q4; BN254.G1Point qM12; BN254.G1Point qM34; BN254.G1Point qO; BN254.G1Point qC; BN254.G1Point qH1; BN254.G1Point qH2; BN254.G1Point qH3; BN254.G1Point qH4; BN254.G1Point qEcc; bytes32 g2LSB; bytes32 g2MSB; }
```
Fields§
§domainSize: U256
§numInputs: U256
§sigma0: <G1Point as SolType>::RustType
§sigma1: <G1Point as SolType>::RustType
§sigma2: <G1Point as SolType>::RustType
§sigma3: <G1Point as SolType>::RustType
§sigma4: <G1Point as SolType>::RustType
§q1: <G1Point as SolType>::RustType
§q2: <G1Point as SolType>::RustType
§q3: <G1Point as SolType>::RustType
§q4: <G1Point as SolType>::RustType
§qM12: <G1Point as SolType>::RustType
§qM34: <G1Point as SolType>::RustType
§qO: <G1Point as SolType>::RustType
§qC: <G1Point as SolType>::RustType
§qH1: <G1Point as SolType>::RustType
§qH2: <G1Point as SolType>::RustType
§qH3: <G1Point as SolType>::RustType
§qH4: <G1Point as SolType>::RustType
§qEcc: <G1Point as SolType>::RustType
§g2LSB: FixedBytes<32>
§g2MSB: FixedBytes<32>
Trait Implementations§
Source§impl Clone for VerifyingKey
impl Clone for VerifyingKey
Source§fn clone(&self) -> VerifyingKey
fn clone(&self) -> VerifyingKey
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 EventTopic for VerifyingKey
impl EventTopic for VerifyingKey
Source§fn topic_preimage_length(rust: &Self::RustType) -> usize
fn topic_preimage_length(rust: &Self::RustType) -> usize
The number of bytes this type occupies in another topic’s preimage,
usually a multiple of 32. Read more
Source§fn encode_topic_preimage(rust: &Self::RustType, out: &mut Vec<u8>)
fn encode_topic_preimage(rust: &Self::RustType, out: &mut Vec<u8>)
Encodes this type as preimage bytes which are then hashed in
complex types’ [
encode_topic
][EventTopic::encode_topic]. Read moreSource§fn encode_topic(rust: &Self::RustType) -> WordToken
fn encode_topic(rust: &Self::RustType) -> WordToken
Indexed event parameter encoding. Read more
Source§impl From<VerifyingKey<Bn<Config>>> for VerifyingKeySol
impl From<VerifyingKey<Bn<Config>>> for VerifyingKeySol
Source§impl From<VerifyingKey> for VerifyingKey<Bn254>
impl From<VerifyingKey> for VerifyingKey<Bn254>
Source§fn from(vk: VerifyingKeySol) -> Self
fn from(vk: VerifyingKeySol) -> Self
Converts to this type from the input type.
Source§impl SolStruct for VerifyingKey
impl SolStruct for VerifyingKey
Source§fn eip712_root_type() -> Cow<'static, str>
fn eip712_root_type() -> Cow<'static, str>
Return the root EIP-712 type. This type is used to construct the
encodeType
string.Source§fn eip712_components() -> Vec<Cow<'static, str>>
fn eip712_components() -> Vec<Cow<'static, str>>
Returns component EIP-712 types. These types are used to construct
the
encodeType
string. These are the types of the struct’s fields,
and should not include the root type.Source§fn eip712_encode_data(&self) -> Vec<u8> ⓘ
fn eip712_encode_data(&self) -> Vec<u8> ⓘ
Encodes this domain using EIP-712
encodeData
.§fn eip712_encode_type() -> Cow<'static, str>
fn eip712_encode_type() -> Cow<'static, str>
The EIP-712-encoded type string. Read more
§fn eip712_type_hash(&self) -> FixedBytes<32>
fn eip712_type_hash(&self) -> FixedBytes<32>
Calculates the EIP-712
typeHash
for this struct. Read more§fn eip712_hash_struct(&self) -> FixedBytes<32>
fn eip712_hash_struct(&self) -> FixedBytes<32>
Hashes this struct according to EIP-712
hashStruct
.§fn eip712_signing_hash(&self, domain: &Eip712Domain) -> FixedBytes<32>
fn eip712_signing_hash(&self, domain: &Eip712Domain) -> FixedBytes<32>
Does something. Read more
Source§impl SolType for VerifyingKey
impl SolType for VerifyingKey
Source§const SOL_NAME: &'static str = <Self as alloy_sol_types::SolStruct>::NAME
const SOL_NAME: &'static str = <Self as alloy_sol_types::SolStruct>::NAME
The name of this type in Solidity.
Source§const ENCODED_SIZE: Option<usize> = <UnderlyingSolTuple as alloy_sol_types::SolType>::ENCODED_SIZE
const ENCODED_SIZE: Option<usize> = <UnderlyingSolTuple as alloy_sol_types::SolType>::ENCODED_SIZE
The statically-known ABI-encoded size of the type. Read more
Source§const PACKED_ENCODED_SIZE: Option<usize> = <UnderlyingSolTuple as alloy_sol_types::SolType>::PACKED_ENCODED_SIZE
const PACKED_ENCODED_SIZE: Option<usize> = <UnderlyingSolTuple as alloy_sol_types::SolType>::PACKED_ENCODED_SIZE
The statically-known Non-standard Packed Mode ABI-encoded size of the type. Read more
Source§type RustType = VerifyingKey
type RustType = VerifyingKey
The corresponding Rust type.
Source§type Token<'a> = <(Uint<256>, Uint<256>, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, FixedBytes<32>, FixedBytes<32>) as SolType>::Token<'a>
type Token<'a> = <(Uint<256>, Uint<256>, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, G1Point, FixedBytes<32>, FixedBytes<32>) as SolType>::Token<'a>
The corresponding ABI token type. Read more
Source§fn valid_token(token: &Self::Token<'_>) -> bool
fn valid_token(token: &Self::Token<'_>) -> bool
Returns
true
if the given token can be detokenized with this type.Source§fn detokenize(token: Self::Token<'_>) -> Self::RustType
fn detokenize(token: Self::Token<'_>) -> Self::RustType
Detokenize this type’s value from the given token. Read more
§fn sol_type_name() -> Cow<'static, str>
fn sol_type_name() -> Cow<'static, str>
👎Deprecated since 0.6.3: use
SOL_NAME
insteadReturns the name of this type in Solidity.
§fn abi_encoded_size<E>(rust: &E) -> usizewhere
E: SolTypeValue<Self> + ?Sized,
fn abi_encoded_size<E>(rust: &E) -> usizewhere
E: SolTypeValue<Self> + ?Sized,
Calculate the ABI-encoded size of the data, counting both head and tail
words. For a single-word type this will always be 32.
§fn type_check(token: &Self::Token<'_>) -> Result<(), Error>
fn type_check(token: &Self::Token<'_>) -> Result<(), Error>
Returns an error if the given token cannot be detokenized with this
type.
§fn tokenize<E>(rust: &E) -> Self::Token<'_>where
E: SolTypeValue<Self> + ?Sized,
fn tokenize<E>(rust: &E) -> Self::Token<'_>where
E: SolTypeValue<Self> + ?Sized,
Tokenizes the given value into this type’s token. Read more
§fn eip712_data_word<E>(rust: &E) -> FixedBytes<32>where
E: SolTypeValue<Self> + ?Sized,
fn eip712_data_word<E>(rust: &E) -> FixedBytes<32>where
E: SolTypeValue<Self> + ?Sized,
Encode this data according to EIP-712
encodeData
rules, and hash it
if necessary. Read more§fn abi_packed_encoded_size<E>(rust: &E) -> usizewhere
E: SolTypeValue<Self> + ?Sized,
fn abi_packed_encoded_size<E>(rust: &E) -> usizewhere
E: SolTypeValue<Self> + ?Sized,
Returns the length of this value when ABI-encoded in Non-standard Packed Mode. Read more
§fn abi_encode_packed_to<E>(rust: &E, out: &mut Vec<u8>)where
E: SolTypeValue<Self> + ?Sized,
fn abi_encode_packed_to<E>(rust: &E, out: &mut Vec<u8>)where
E: SolTypeValue<Self> + ?Sized,
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§fn abi_encode_packed<E>(rust: &E) -> Vec<u8> ⓘwhere
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§fn abi_encode<E>(rust: &E) -> Vec<u8> ⓘwhere
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Tokenizes and ABI-encodes the given value by wrapping it in a
single-element sequence. Read more
§fn abi_encode_params<E>(rust: &E) -> Vec<u8> ⓘwhere
E: SolTypeValue<Self> + ?Sized,
Self::Token<'a>: for<'a> TokenSeq<'a>,
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§fn abi_encode_sequence<E>(rust: &E) -> Vec<u8> ⓘwhere
E: SolTypeValue<Self> + ?Sized,
Self::Token<'a>: for<'a> TokenSeq<'a>,
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Self::Token<'a>: for<'a> TokenSeq<'a>,
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§fn abi_decode(data: &[u8], validate: bool) -> Result<Self::RustType, Error>
fn abi_decode(data: &[u8], validate: bool) -> Result<Self::RustType, Error>
Decodes this type’s value from an ABI blob by interpreting it as a
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Source§impl SolTypeValue<VerifyingKey> for VerifyingKey
impl SolTypeValue<VerifyingKey> for VerifyingKey
fn stv_to_tokens(&self) -> <Self as SolType>::Token<'_>
fn stv_abi_encoded_size(&self) -> usize
fn stv_eip712_data_word(&self) -> Word
fn stv_abi_encode_packed_to(&self, out: &mut Vec<u8>)
fn stv_abi_packed_encoded_size(&self) -> usize
Source§impl SolValue for VerifyingKey
impl SolValue for VerifyingKey
Source§type SolType = VerifyingKey
type SolType = VerifyingKey
The Solidity type that this type corresponds to.
§fn sol_type_name(&self) -> Cow<'static, str>
fn sol_type_name(&self) -> Cow<'static, str>
👎Deprecated since 0.6.3: use
sol_name
insteadThe name of the associated Solidity type. Read more
§fn tokenize(&self) -> <Self::SolType as SolType>::Token<'_>
fn tokenize(&self) -> <Self::SolType as SolType>::Token<'_>
Tokenizes the given value into this type’s token. Read more
§fn detokenize(token: <Self::SolType as SolType>::Token<'_>) -> Selfwhere
Self: From<<Self::SolType as SolType>::RustType>,
fn detokenize(token: <Self::SolType as SolType>::Token<'_>) -> Selfwhere
Self: From<<Self::SolType as SolType>::RustType>,
Detokenize a value from the given token. Read more
§fn abi_encoded_size(&self) -> usize
fn abi_encoded_size(&self) -> usize
Calculate the ABI-encoded size of the data. Read more
§fn eip712_data_word(&self) -> FixedBytes<32>
fn eip712_data_word(&self) -> FixedBytes<32>
Encode this data according to EIP-712
encodeData
rules, and hash it
if necessary. Read more§fn abi_encode_packed_to(&self, out: &mut Vec<u8>)
fn abi_encode_packed_to(&self, out: &mut Vec<u8>)
Non-standard Packed Mode ABI encoding. Read more
§fn abi_encode_sequence(&self) -> Vec<u8> ⓘwhere
<Self::SolType as SolType>::Token<'a>: for<'a> TokenSeq<'a>,
fn abi_encode_sequence(&self) -> Vec<u8> ⓘwhere
<Self::SolType as SolType>::Token<'a>: for<'a> TokenSeq<'a>,
Encodes an ABI sequence. Read more
§fn abi_encode_params(&self) -> Vec<u8> ⓘwhere
<Self::SolType as SolType>::Token<'a>: for<'a> TokenSeq<'a>,
fn abi_encode_params(&self) -> Vec<u8> ⓘwhere
<Self::SolType as SolType>::Token<'a>: for<'a> TokenSeq<'a>,
Encodes an ABI sequence suitable for function parameters. Read more
§fn abi_decode(data: &[u8], validate: bool) -> Result<Self, Error>where
Self: From<<Self::SolType as SolType>::RustType>,
fn abi_decode(data: &[u8], validate: bool) -> Result<Self, Error>where
Self: From<<Self::SolType as SolType>::RustType>,
ABI-decode this type from the given data. Read more
Auto Trait Implementations§
impl Freeze for VerifyingKey
impl RefUnwindSafe for VerifyingKey
impl Send for VerifyingKey
impl Sync for VerifyingKey
impl Unpin for VerifyingKey
impl UnwindSafe for VerifyingKey
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T: ?Sized,
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T: ?Sized,
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(where Trait: Downcast
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. Box<dyn Any>
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where ConcreteType
implements Trait
.§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
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. Rc<Any>
can then be
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Calls
.tap_borrow_mut()
only in debug builds, and is erased in release
builds.§fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
Calls
.tap_ref()
only in debug builds, and is erased in release
builds.§fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
Calls
.tap_ref_mut()
only in debug builds, and is erased in release
builds.§fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
Calls
.tap_deref()
only in debug builds, and is erased in release
builds.