package octez-protocol-017-PtNairob-libs
Octez protocol 017-PtNairob libraries
Install
Dune Dependency
Authors
Maintainers
Sources
octez-19.1.tar.gz
sha256=55ea1fb8bb3273a7fc270ca8f650d45c56449665619482aad9bc12f3ea736b7e
sha512=fec850fc2d17d7490bbabd5147d62aad13b3aaed8774270f8a38ab419670ed03e0fd30cf8642a97984eca5c2446726fe590ad99c015f7ec50919dc7652f25053
doc/src/octez-protocol-017-PtNairob-libs.test-helpers/lqt_fa12_repr.ml.html
Source file lqt_fa12_repr.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2021-2022 Nomadic Labs <contact@nomadic-labs.com> *) (* *) (* Permission is hereby granted, free of charge, to any person obtaining a *) (* copy of this software and associated documentation files (the "Software"),*) (* to deal in the Software without restriction, including without limitation *) (* the rights to use, copy, modify, merge, publish, distribute, sublicense, *) (* and/or sell copies of the Software, and to permit persons to whom the *) (* Software is furnished to do so, subject to the following conditions: *) (* *) (* The above copyright notice and this permission notice shall be included *) (* in all copies or substantial portions of the Software. *) (* *) (* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR*) (* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, *) (* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL *) (* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER*) (* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING *) (* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER *) (* DEALINGS IN THE SOFTWARE. *) (* *) (*****************************************************************************) open Protocol open Alpha_context open Expr_common module Parameter = struct (* // ============================================================================= * // Entrypoints * // ============================================================================= *) (* Note: in the lqt_fa12 contract, [value] is a nat. Hence, it should always be positive *) type approve = {spender : Contract.t; value : Z.t} type mintOrBurn = {quantity : Z.t; target : Contract.t} (* Note: this wrapper does not implement a reprensentation for the entrypoints transfer, getAllowance, getBalance, getTotalSupply, as they are not used as of yet. *) type t = Approve of approve | MintOrBurn of mintOrBurn let approve p = assert (Z.lt Z.zero p.value || Z.equal Z.zero p.value) ; Approve p let mintOrBurn p = MintOrBurn p let approve_to_string {spender; value} = Format.asprintf "{ spender: %a; value: %a }" Contract.pp spender Z.pp_print value let mint_or_burn_to_string {quantity; target} = Format.asprintf "{ quantity: %a; target: %a }" Z.pp_print quantity Contract.pp target let to_string : t -> string = function | Approve p -> Format.asprintf "Approve %s" (approve_to_string p) | MintOrBurn p -> Format.asprintf "MintOrBurn %s" (mint_or_burn_to_string p) let entrypoint_of_parameter : t -> Entrypoint.t = function | Approve _ -> Entrypoint.of_string_strict_exn "approve" | MintOrBurn _ -> Entrypoint.of_string_strict_exn "mintOrBurn" let pp fmt s = Format.fprintf fmt "%s" (to_string s) let eq s s' = s = s' let to_expr_rooted : loc:'a -> t -> ('a, Michelson_v1_primitives.prim) Tezos_micheline.Micheline.node = fun ~loc -> function | MintOrBurn {quantity; target} -> comb ~loc [int ~loc quantity; address_string ~loc target] | Approve {spender; value} -> comb ~loc [address_string ~loc spender; int ~loc value] let to_expr : loc:'a -> t -> ('a, Michelson_v1_primitives.prim) Tezos_micheline.Micheline.node = fun ~loc p -> let rooted = to_expr_rooted ~loc p in match p with | MintOrBurn _ -> right ~loc @@ left ~loc rooted | Approve _ -> left ~loc @@ left ~loc @@ left ~loc rooted let to_michelson_string e = let e = to_expr ~loc:0 e in Format.asprintf "%a" Michelson_v1_printer.print_expr (Micheline.strip_locations e) end (* // ============================================================================= * // Storage * // ============================================================================= *) module Storage = struct let pp_big_map_id fmt v = Z.pp_print fmt (Big_map.Id.unparse_to_z v) type t = { tokens : Big_map.Id.t; allowances : Big_map.Id.t; admin : Contract.t; totalSupply : Z.t; } let pp {tokens; allowances; admin; totalSupply} = Format.asprintf "{ tokens: %a; allowances: %a; admin: %a; totalSupply: %a}" Z.pp_print (Big_map.Id.unparse_to_z tokens) Z.pp_print (Big_map.Id.unparse_to_z allowances) Contract.pp admin Z.pp_print totalSupply let null : t = { tokens = Big_map.Id.parse_z Z.zero; allowances = Big_map.Id.parse_z Z.one; admin = Contract.Implicit Signature.Public_key_hash.zero; totalSupply = Z.zero; } let eq s s' = s = s' let to_expr : loc:'a -> t -> ('a, Michelson_v1_primitives.prim) Tezos_micheline.Micheline.node = fun ~loc {tokens; allowances; admin; totalSupply} -> comb ~loc [ big_map_id ~loc tokens; big_map_id ~loc allowances; address_string ~loc admin; int ~loc totalSupply; ] let to_michelson_string e = let e = to_expr ~loc:0 e in Format.asprintf "%a" Michelson_v1_printer.print_expr (Micheline.strip_locations e) type exn += Invalid_storage_expr of string (** Note: parses a storage unparsed in readable mode (as e.g. returned by [Alpha_services.Contract.storage]), so that contracts are represented by strings. *) let of_expr_exn : ('a, Michelson_v1_primitives.prim) Tezos_micheline.Micheline.node -> t = function | Tezos_micheline.Micheline.Prim ( _, Script.D_Pair, [ Tezos_micheline.Micheline.Int (_, tokens); Tezos_micheline.Micheline.Int (_, allowances); Tezos_micheline.Micheline.String (_, admin); Tezos_micheline.Micheline.Int (_, totalSupply); ], [] ) -> let tokens = Big_map.Id.parse_z tokens in let allowances = Big_map.Id.parse_z allowances in let admin = address_of_string_exn admin in {tokens; allowances; admin; totalSupply} | e -> let canonical = Micheline.strip_locations e in let msg = Format.asprintf "Not a valid LQT_FA1.2 storage: %s /// %a" (try Michelson_v1_printer.micheline_string_of_expression ~zero_loc:true canonical with Z.Overflow -> "Cannot represent as micheline due to overflowing Z -> int") Michelson_v1_printer.print_expr canonical in raise (Invalid_storage_expr msg) let get (ctxt : Context.t) ~(contract : Contract.t) : t tzresult Lwt.t = match contract with | Implicit _ -> invalid_arg "Lqt_fa12_repr.Storage.get called on implicit account" | Originated c -> Context.Contract.storage ctxt c >|=? Micheline.root >|=? of_expr_exn let get_alpha_context (ctxt : Context.t) : Alpha_context.t tzresult Lwt.t = (match ctxt with | B b -> (* can perhaps be retrieved through Raw_context.prepare ? *) Incremental.begin_construction b | I i -> return i) >|=? Incremental.alpha_ctxt let getBalance_opt (ctxt : Context.t) ~(contract : Contract.t) (owner : Script_typed_ir.address) = get ctxt ~contract >>=? fun storage -> let tokens = storage.tokens in get_alpha_context ctxt >>=? fun ctxt -> Script_ir_translator.hash_data ctxt Script_typed_ir.address_t owner >|= Environment.wrap_tzresult >>=? fun (address_hash, ctxt) -> Big_map.get_opt ctxt tokens address_hash >|= Environment.wrap_tzresult >>=? function | _, Some canonical -> ( match Tezos_micheline.Micheline.root canonical with | Tezos_micheline.Micheline.Int (_, amount) -> return @@ Some amount | _ -> assert false) | _, None -> return @@ None let getBalance (ctxt : Context.t) ~(contract : Contract.t) (owner : Script_typed_ir.address) = getBalance_opt ctxt ~contract owner >|=? Option.value ~default:Z.zero end let transaction (ctxt : Context.t) ~(contract : Contract.t) ~(src : Contract.t) ?(amount = Tez.zero) (parameters : Parameter.t) = let entrypoint = Parameter.entrypoint_of_parameter parameters in let rooted_param_lazy = parameters |> Parameter.to_expr_rooted ~loc:0 |> Micheline.strip_locations |> Alpha_context.Script.lazy_expr in Op.transaction ctxt src contract amount ~entrypoint ~parameters:rooted_param_lazy
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