package octez-libs

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val preprocessing : domain:Plonk.Bls.Domain.t -> string -> ('a * int) list -> Bls.Evaluations.polynomial SMap.t
val partial_z : (Plonk.Bls.Scalar.t * int) -> Plonk.Bls.Scalar.t list
val f_map_contribution : domain:Plonk.Bls.Domain.t -> values:Bls.Evaluations.t SMap.t -> SMap.key -> (int * int) list -> Bls.Evaluations.t SMap.t * Bls.Evaluations.polynomial SMap.t
val prover_identities : ?circuit_prefix:(string -> string) -> proof_prefix:(string -> string) -> domain_size:int -> string -> 'a -> Bls.Evaluations.t SMap.t -> Bls.Evaluations.t SMap.t
val verifier_identities : ?circuit_prefix:(string -> string) -> proof_prefix:(string -> string) -> string -> bool -> 'a -> Plonk.Bls.Scalar.t SMap.t SMap.t -> Plonk.Bls.Scalar.t SMap.t
val cs_unitary : prefix:(string -> string) -> lnin1:L.Num.scalar L.repr -> pnin1:L.Num.scalar L.repr -> z:L.Num.scalar L.Num.repr -> zg:L.Num.scalar L.Num.repr -> int -> (string * L.Num.scalar L.Num.repr) list L.t
val cs_for_all_wires : prefix:(string -> string) -> lnin1:L.Num.scalar L.repr list -> pnin1:L.Num.scalar L.repr list -> z_list:L.Num.scalar L.Num.repr list -> zg_list:L.Num.scalar L.Num.repr list -> int list -> (string * L.Num.scalar L.Num.repr) list L.t
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