Struct snarkvm_wasm::PedersenCompressedCRH [−][src]
pub struct PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, { pub parameters: PedersenCRHParameters<G, S>, }
Fields
parameters: PedersenCRHParameters<G, S>Trait Implementations
impl<G, S> CRH for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]
impl<G, S> CRH for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]pub fn hash(
&self,
input: &[u8]
) -> Result<<PedersenCompressedCRH<G, S> as CRH>::Output, CRHError>[src]
pub fn hash(
&self,
input: &[u8]
) -> Result<<PedersenCompressedCRH<G, S> as CRH>::Output, CRHError>[src]Returns the affine x-coordinate as the collision-resistant hash output.
type Output = <<G as ProjectiveCurve>::Affine as AffineCurve>::BaseField
type Parameters = PedersenCRHParameters<G, S>
pub const INPUT_SIZE_BITS: usize[src]
pub fn setup<R>(rng: &mut R) -> PedersenCompressedCRH<G, S> where
R: Rng, [src]
R: Rng,
pub fn parameters(&self) -> &<PedersenCompressedCRH<G, S> as CRH>::Parameters[src]
impl<F, G, GG, S> CRHGadget<PedersenCompressedCRH<G, S>, F> for PedersenCompressedCRHGadget<G, F, GG> where
G: Group + ProjectiveCurve,
S: PedersenSize,
F: Field,
GG: CompressedGroupGadget<G, F>, [src]
impl<F, G, GG, S> CRHGadget<PedersenCompressedCRH<G, S>, F> for PedersenCompressedCRHGadget<G, F, GG> where
G: Group + ProjectiveCurve,
S: PedersenSize,
F: Field,
GG: CompressedGroupGadget<G, F>, [src]type OutputGadget = <GG as CompressedGroupGadget<G, F>>::BaseFieldGadget
type ParametersGadget = PedersenCRHParametersGadget<G, S, F, GG>
pub fn check_evaluation_gadget<CS>(
cs: CS,
parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
input: Vec<UInt8, Global>
) -> Result<<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::OutputGadget, SynthesisError> where
CS: ConstraintSystem<F>, [src]
cs: CS,
parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
input: Vec<UInt8, Global>
) -> Result<<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::OutputGadget, SynthesisError> where
CS: ConstraintSystem<F>,
impl<G, S> Clone for PedersenCompressedCRH<G, S> where
G: Clone + Group + ProjectiveCurve,
S: Clone + PedersenSize, [src]
impl<G, S> Clone for PedersenCompressedCRH<G, S> where
G: Clone + Group + ProjectiveCurve,
S: Clone + PedersenSize, [src]pub fn clone(&self) -> PedersenCompressedCRH<G, S>[src]
pub fn clone(&self) -> PedersenCompressedCRH<G, S>[src]Returns a copy of the value. Read more
fn clone_from(&mut self, source: &Self)1.0.0[src]
fn clone_from(&mut self, source: &Self)1.0.0[src]Performs copy-assignment from source. Read more
impl<G, S> Debug for PedersenCompressedCRH<G, S> where
G: Debug + Group + ProjectiveCurve,
S: Debug + PedersenSize, [src]
impl<G, S> Debug for PedersenCompressedCRH<G, S> where
G: Debug + Group + ProjectiveCurve,
S: Debug + PedersenSize, [src]impl<G, S> From<PedersenCRHParameters<G, S>> for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]
impl<G, S> From<PedersenCRHParameters<G, S>> for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]pub fn from(
parameters: PedersenCRHParameters<G, S>
) -> PedersenCompressedCRH<G, S>[src]
pub fn from(
parameters: PedersenCRHParameters<G, S>
) -> PedersenCompressedCRH<G, S>[src]Performs the conversion.
impl<F, G, GG, S> MaskedCRHGadget<PedersenCompressedCRH<G, S>, F> for PedersenCompressedCRHGadget<G, F, GG> where
G: Group + ProjectiveCurve,
S: PedersenSize,
F: PrimeField,
GG: CompressedGroupGadget<G, F>, [src]
impl<F, G, GG, S> MaskedCRHGadget<PedersenCompressedCRH<G, S>, F> for PedersenCompressedCRHGadget<G, F, GG> where
G: Group + ProjectiveCurve,
S: PedersenSize,
F: PrimeField,
GG: CompressedGroupGadget<G, F>, [src]pub fn check_evaluation_gadget_masked<CS>(
cs: CS,
parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
input: Vec<UInt8, Global>,
mask_parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
mask: Vec<UInt8, Global>
) -> Result<<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::OutputGadget, SynthesisError> where
CS: ConstraintSystem<F>, [src]
cs: CS,
parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
input: Vec<UInt8, Global>,
mask_parameters: &<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::ParametersGadget,
mask: Vec<UInt8, Global>
) -> Result<<PedersenCompressedCRHGadget<G, F, GG> as CRHGadget<PedersenCompressedCRH<G, S>, F>>::OutputGadget, SynthesisError> where
CS: ConstraintSystem<F>,
fn extend_mask<CS>(
CS,
mask: &[UInt8]
) -> Result<Vec<UInt8, Global>, SynthesisError> where
CS: ConstraintSystem<F>, [src]
fn extend_mask<CS>(
CS,
mask: &[UInt8]
) -> Result<Vec<UInt8, Global>, SynthesisError> where
CS: ConstraintSystem<F>, [src]Extends the mask such that 0 => 01, 1 => 10.
impl<G, S> Ord for PedersenCompressedCRH<G, S> where
G: Ord + Group + ProjectiveCurve,
S: Ord + PedersenSize, [src]
impl<G, S> Ord for PedersenCompressedCRH<G, S> where
G: Ord + Group + ProjectiveCurve,
S: Ord + PedersenSize, [src]impl<G, S> PartialEq<PedersenCompressedCRH<G, S>> for PedersenCompressedCRH<G, S> where
G: PartialEq<G> + Group + ProjectiveCurve,
S: PartialEq<S> + PedersenSize, [src]
impl<G, S> PartialEq<PedersenCompressedCRH<G, S>> for PedersenCompressedCRH<G, S> where
G: PartialEq<G> + Group + ProjectiveCurve,
S: PartialEq<S> + PedersenSize, [src]pub fn eq(&self, other: &PedersenCompressedCRH<G, S>) -> bool[src]
pub fn eq(&self, other: &PedersenCompressedCRH<G, S>) -> bool[src]This method tests for self and other values to be equal, and is used
by ==. Read more
pub fn ne(&self, other: &PedersenCompressedCRH<G, S>) -> bool[src]
pub fn ne(&self, other: &PedersenCompressedCRH<G, S>) -> bool[src]This method tests for !=.
impl<G, S> PartialOrd<PedersenCompressedCRH<G, S>> for PedersenCompressedCRH<G, S> where
G: PartialOrd<G> + Group + ProjectiveCurve,
S: PartialOrd<S> + PedersenSize, [src]
impl<G, S> PartialOrd<PedersenCompressedCRH<G, S>> for PedersenCompressedCRH<G, S> where
G: PartialOrd<G> + Group + ProjectiveCurve,
S: PartialOrd<S> + PedersenSize, [src]pub fn partial_cmp(
&self,
other: &PedersenCompressedCRH<G, S>
) -> Option<Ordering>[src]
pub fn partial_cmp(
&self,
other: &PedersenCompressedCRH<G, S>
) -> Option<Ordering>[src]This method returns an ordering between self and other values if one exists. Read more
#[must_use]fn lt(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn lt(&self, other: &Rhs) -> bool1.0.0[src]This method tests less than (for self and other) and is used by the < operator. Read more
#[must_use]fn le(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn le(&self, other: &Rhs) -> bool1.0.0[src]This method tests less than or equal to (for self and other) and is used by the <=
operator. Read more
impl<F, G, S> ToConstraintField<F> for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve + ToConstraintField<F>,
S: PedersenSize,
F: Field, [src]
impl<F, G, S> ToConstraintField<F> for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve + ToConstraintField<F>,
S: PedersenSize,
F: Field, [src]pub fn to_field_elements(&self) -> Result<Vec<F, Global>, ConstraintFieldError>[src]
impl<G, S> Eq for PedersenCompressedCRH<G, S> where
G: Eq + Group + ProjectiveCurve,
S: Eq + PedersenSize, [src]
G: Eq + Group + ProjectiveCurve,
S: Eq + PedersenSize,
impl<G, S> StructuralEq for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]
G: Group + ProjectiveCurve,
S: PedersenSize,
impl<G, S> StructuralPartialEq for PedersenCompressedCRH<G, S> where
G: Group + ProjectiveCurve,
S: PedersenSize, [src]
G: Group + ProjectiveCurve,
S: PedersenSize,
Auto Trait Implementations
impl<G, S> RefUnwindSafe for PedersenCompressedCRH<G, S> where
G: RefUnwindSafe,
S: RefUnwindSafe,
G: RefUnwindSafe,
S: RefUnwindSafe,
impl<G, S> Send for PedersenCompressedCRH<G, S> where
S: Send,
S: Send,
impl<G, S> Sync for PedersenCompressedCRH<G, S> where
S: Sync,
S: Sync,
impl<G, S> Unpin for PedersenCompressedCRH<G, S> where
G: Unpin,
S: Unpin,
G: Unpin,
S: Unpin,
impl<G, S> UnwindSafe for PedersenCompressedCRH<G, S> where
G: UnwindSafe,
S: UnwindSafe,
G: UnwindSafe,
S: UnwindSafe,
Blanket Implementations
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]pub fn borrow_mut(&mut self) -> &mut T[src]
pub fn borrow_mut(&mut self) -> &mut T[src]Mutably borrows from an owned value. Read more
impl<Q, K> Equivalent<K> for Q where
K: Borrow<Q> + ?Sized,
Q: Eq + ?Sized, [src]
impl<Q, K> Equivalent<K> for Q where
K: Borrow<Q> + ?Sized,
Q: Eq + ?Sized, [src]pub fn equivalent(&self, key: &K) -> bool[src]
pub fn equivalent(&self, key: &K) -> bool[src]Compare self to key and return true if they are equal.
impl<T> Pointable for T
impl<T> Pointable for Timpl<T> Same<T> for T
impl<T> Same<T> for Ttype Output = T
type Output = TShould always be Self
impl<T> ToOwned for T where
T: Clone, [src]
impl<T> ToOwned for T where
T: Clone, [src]type Owned = T
type Owned = TThe resulting type after obtaining ownership.
pub fn to_owned(&self) -> T[src]
pub fn to_owned(&self) -> T[src]Creates owned data from borrowed data, usually by cloning. Read more
pub fn clone_into(&self, target: &mut T)[src]
pub fn clone_into(&self, target: &mut T)[src]🔬 This is a nightly-only experimental API. (toowned_clone_into)
recently added
Uses borrowed data to replace owned data, usually by cloning. Read more
impl<V, T> VZip<V> for T where
V: MultiLane<T>,
impl<V, T> VZip<V> for T where
V: MultiLane<T>,