Struct zkevm_circuits::root_circuit::AggregationConfig
source · pub struct AggregationConfig {
pub main_gate_config: MainGateConfig,
pub range_config: RangeConfig,
}
Expand description
Aggregation configuration.
Fields§
§main_gate_config: MainGateConfig
MainGateConfig
range_config: RangeConfig
RangeConfig
Implementations§
source§impl AggregationConfig
impl AggregationConfig
sourcepub fn configure<C: CurveAffine>(meta: &mut ConstraintSystem<C::Scalar>) -> Self
pub fn configure<C: CurveAffine>(meta: &mut ConstraintSystem<C::Scalar>) -> Self
Configure for MainGate
and RangeChip
with corresponding fixed lookup
table.
sourcepub fn range_chip<F: Field>(&self) -> RangeChip<F>
pub fn range_chip<F: Field>(&self) -> RangeChip<F>
Returns RangeChip
.
sourcepub fn load_table<F: Field>(
&self,
layouter: &mut impl Layouter<F>
) -> Result<(), Error>
pub fn load_table<F: Field>( &self, layouter: &mut impl Layouter<F> ) -> Result<(), Error>
Load fixed lookup table for RangeChip
sourcepub fn named_column_in_region<F: Field>(&self, region: &mut Region<'_, F>)
pub fn named_column_in_region<F: Field>(&self, region: &mut Region<'_, F>)
named columns in region
sourcepub fn aggregate_user_challenges<'c, M, As>(
&self,
loader: Rc<Halo2Loader<'c, M::G1Affine>>,
user_challenges: Option<&UserChallenge>,
proofs: Vec<PlonkProof<M::G1Affine, Rc<Halo2Loader<'c, M::G1Affine>>, As>>
) -> Result<(Vec<Scalar<'c, M::G1Affine, EccChip<M::G1Affine>>>, Vec<EcPoint<'c, M::G1Affine, EccChip<M::G1Affine>>>), Error>where
M: MultiMillerLoop,
M::Fr: Field,
M::G1Affine: CurveAffine<ScalarExt = M::Fr>,
for<'b> As: PolynomialCommitmentScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, VerifyingKey = KzgSvk<M>, Output = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>> + AccumulationScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, Accumulator = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>, VerifyingKey = KzgAsVerifyingKey>,
pub fn aggregate_user_challenges<'c, M, As>(
&self,
loader: Rc<Halo2Loader<'c, M::G1Affine>>,
user_challenges: Option<&UserChallenge>,
proofs: Vec<PlonkProof<M::G1Affine, Rc<Halo2Loader<'c, M::G1Affine>>, As>>
) -> Result<(Vec<Scalar<'c, M::G1Affine, EccChip<M::G1Affine>>>, Vec<EcPoint<'c, M::G1Affine, EccChip<M::G1Affine>>>), Error>where
M: MultiMillerLoop,
M::Fr: Field,
M::G1Affine: CurveAffine<ScalarExt = M::Fr>,
for<'b> As: PolynomialCommitmentScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, VerifyingKey = KzgSvk<M>, Output = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>> + AccumulationScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, Accumulator = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>, VerifyingKey = KzgAsVerifyingKey>,
Aggregate witnesses into challenge and return
sourcepub fn aggregate<'a, 'c, M, As>(
&self,
ctx: RegionCtx<'c, M::Fr>,
svk: &KzgSvk<M>,
snarks: &[SnarkWitness<'a, M::G1Affine>]
) -> Result<(Vec<Vec<Scalar<'c, M::G1Affine, EccChip<M::G1Affine>>>>, Vec<AssignedCell<M::Fr, M::Fr>>, Rc<Halo2Loader<'c, M::G1Affine>>, Vec<PlonkProof<M::G1Affine, Rc<Halo2Loader<'c, M::G1Affine>>, As>>), Error>where
M: MultiMillerLoop,
M::Fr: Field,
M::G1Affine: CurveAffine<ScalarExt = M::Fr>,
for<'b> As: PolynomialCommitmentScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, VerifyingKey = KzgSvk<M>, Output = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>> + AccumulationScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, Accumulator = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>, VerifyingKey = KzgAsVerifyingKey>,
pub fn aggregate<'a, 'c, M, As>(
&self,
ctx: RegionCtx<'c, M::Fr>,
svk: &KzgSvk<M>,
snarks: &[SnarkWitness<'a, M::G1Affine>]
) -> Result<(Vec<Vec<Scalar<'c, M::G1Affine, EccChip<M::G1Affine>>>>, Vec<AssignedCell<M::Fr, M::Fr>>, Rc<Halo2Loader<'c, M::G1Affine>>, Vec<PlonkProof<M::G1Affine, Rc<Halo2Loader<'c, M::G1Affine>>, As>>), Error>where
M: MultiMillerLoop,
M::Fr: Field,
M::G1Affine: CurveAffine<ScalarExt = M::Fr>,
for<'b> As: PolynomialCommitmentScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, VerifyingKey = KzgSvk<M>, Output = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>> + AccumulationScheme<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>, Accumulator = KzgAccumulator<M::G1Affine, Rc<Halo2Loader<'b, M::G1Affine>>>, VerifyingKey = KzgAsVerifyingKey>,
Aggregate snarks into a single accumulator and decompose it into
4 * LIMBS
limbs.
Returns assigned instances of snarks and aggregated accumulator limbs.
Trait Implementations§
source§impl Clone for AggregationConfig
impl Clone for AggregationConfig
source§fn clone(&self) -> AggregationConfig
fn clone(&self) -> AggregationConfig
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 moreAuto Trait Implementations§
impl RefUnwindSafe for AggregationConfig
impl Send for AggregationConfig
impl Sync for AggregationConfig
impl Unpin for AggregationConfig
impl UnwindSafe for AggregationConfig
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