package tezos-client-007-PsDELPH1
Tezos/Protocol: protocol specific library for `tezos-client`
Install
Dune Dependency
Authors
Maintainers
Sources
tezos-16.1.tar.gz
sha256=43723d096307603703a1a89ed1b2eb202b365f5e7824b96b0cbf813b343a6cf7
sha512=b2a637f2e965000d3d49ad85277ca24d6cb07a1a7cf2bc69d296d8b03ad78c3eaa8e21e94b9162e62c2e11649cd03bc845b2a3dafe623b91065df69d47dc8e4f
doc/src/tezos-client-007-PsDELPH1.commands/client_proto_programs_commands.ml.html
Source file client_proto_programs_commands.ml
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(*****************************************************************************) (* *) (* Open Source License *) (* Copyright (c) 2018 Dynamic Ledger Solutions, Inc. <contact@tezos.com> *) (* Copyright (c) 2019 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 let group = { Tezos_clic.name = "scripts"; title = "Commands for managing the library of known scripts"; } open Tezos_micheline open Client_proto_programs open Client_proto_args let safe_decode_json (cctxt : Protocol_client_context.full) encoding json = match Data_encoding.Json.destruct encoding json with | exception Data_encoding.Json.Cannot_destruct (_, exc) -> cctxt#error "could not decode json (%a)" (Data_encoding.Json.print_error ~print_unknown:(fun fmt exc -> Format.fprintf fmt "%s" (Printexc.to_string exc))) exc | exception ((Stack_overflow | Out_of_memory) as exc) -> raise exc | exception exc -> cctxt#error "could not decode json (%s)" (Printexc.to_string exc) | expr -> return expr let commands () = let open Tezos_clic in let emacs_mode_switch = switch ~long:"emacs" ?short:None ~doc:"output in `michelson-mode.el` compatible format" () in let zero_loc_switch = switch ~short:'z' ~long:"zero-loc" ~doc:"replace location with \"0\"" () in let parse_expr expr = Lwt.return @@ Micheline_parser.no_parsing_error @@ Michelson_v1_parser.parse_expression expr in let data_parameter = parameter (fun _ data -> parse_expr data) in let data_type_arg = arg ~doc:"the given data will be type-checked against this type" ~short:'t' ~long:"type" ~placeholder:"unit" data_parameter in let bytes_parameter ~name ~desc = param ~name ~desc Client_proto_args.bytes_parameter in let signature_parameter = parameter (fun _cctxt s -> match Tezos_crypto.Signature.V0.of_b58check_opt s with | Some s -> return s | None -> failwith "Not given a valid signature") in let convert_input_format_param = param ~name:"input_format" ~desc:"format of the input for conversion" (parameter ~autocomplete:(fun _ -> return ["michelson"; "json"; "binary"]) (fun _ s -> match String.lowercase_ascii s with | "michelson" -> return `Michelson | "json" -> return `JSON | "binary" -> return `Binary | _ -> failwith "invalid input format, expecting one of \"michelson\", \ \"json\" or \"binary\".")) in let convert_output_format_param = param ~name:"output_format" ~desc:"format of the conversion output" (parameter ~autocomplete:(fun _ -> return ["michelson"; "json"; "binary"; "ocaml"]) (fun _ s -> match String.lowercase_ascii s with | "michelson" -> return `Michelson | "json" -> return `JSON | "binary" -> return `Binary | "ocaml" -> return `OCaml | _ -> failwith "invalid output format, expecting one of \"michelson\", \ \"json\", \"binary\" or \"ocaml\".")) in let file_or_literal_param = param ~name:"source" ~desc:"literal or a path to a file" (parameter (fun cctxt s -> cctxt#read_file s >>= function | Ok v -> return v | Error _ -> return s)) in [ command ~group ~desc:"Lists all scripts in the library." no_options (fixed ["list"; "known"; "scripts"]) (fun () (cctxt : Protocol_client_context.full) -> Program.load cctxt >>=? fun list -> List.iter_s (fun (n, _) -> cctxt#message "%s" n) list >>= fun () -> return_unit); command ~group ~desc:"Add a script to the library." (args1 (Program.force_switch ())) (prefixes ["remember"; "script"] @@ Program.fresh_alias_param @@ Program.source_param @@ stop) (fun force name hash cctxt -> Program.of_fresh cctxt force name >>=? fun name -> Program.add ~force cctxt name hash); command ~group ~desc:"Remove a script from the library." no_options (prefixes ["forget"; "script"] @@ Program.alias_param @@ stop) (fun () (name, _) cctxt -> Program.del cctxt name); command ~group ~desc:"Display a script from the library." no_options (prefixes ["show"; "known"; "script"] @@ Program.alias_param @@ stop) (fun () (_, program) (cctxt : Protocol_client_context.full) -> Program.to_source program >>=? fun source -> cctxt#message "%s\n" source >>= fun () -> return_unit); command ~group ~desc: "Parse a byte sequence (in hexadecimal notation) as a data expression, \ as per Michelson instruction `UNPACK`." no_options (prefixes ["unpack"; "michelson"; "data"] @@ bytes_parameter ~name:"bytes" ~desc:"the packed data to parse" @@ stop) (fun () bytes cctxt -> (if Bytes.get bytes 0 != '\005' then failwith "Not a piece of packed Michelson data (must start with `0x05`)" else return_unit) >>=? fun () -> (* Remove first byte *) let bytes = Bytes.sub bytes 1 (Bytes.length bytes - 1) in match Data_encoding.Binary.of_bytes_opt Alpha_context.Script.expr_encoding bytes with | None -> failwith "Could not decode bytes" | Some expr -> cctxt#message "%a" Michelson_v1_printer.print_expr_unwrapped expr >>= fun () -> return_unit); command ~group ~desc: "Check the signature of a byte sequence as per Michelson instruction \ `CHECK_SIGNATURE`." (args1 (switch ~doc:"Use only exit codes" ~short:'q' ~long:"quiet" ())) (prefixes ["check"; "that"] @@ bytes_parameter ~name:"bytes" ~desc:"the signed data" @@ prefixes ["was"; "signed"; "by"] @@ Client_keys_v0.Public_key.alias_param ~name:"key" @@ prefixes ["to"; "produce"] @@ param ~name:"signature" ~desc:"the signature to check" signature_parameter @@ stop) (fun quiet bytes (_, (key_locator, _)) signature (cctxt : #Protocol_client_context.full) -> Client_keys_v0.check key_locator signature bytes >>=? function | false -> cctxt#error "invalid signature" | true -> if quiet then return_unit else cctxt#message "Signature check successful." >>= fun () -> return_unit); command ~group ~desc:"Ask the type of an entrypoint of a script." (args2 emacs_mode_switch no_print_source_flag) (prefixes ["get"; "script"; "entrypoint"; "type"; "of"] @@ string ~name:"entrypoint" ~desc:"the entrypoint to describe" @@ prefixes ["for"] @@ Program.source_param @@ stop) (fun (emacs_mode, no_print_source) entrypoint program cctxt -> match program with | program, [] -> entrypoint_type cctxt ~chain:cctxt#chain ~block:cctxt#block program ~entrypoint >>= fun entrypoint_type -> print_entrypoint_type ~emacs:emacs_mode ~show_source:(not no_print_source) ~parsed:program ~entrypoint cctxt entrypoint_type | res_with_errors when emacs_mode -> cctxt#message "(@[<v 0>(entrypoint . ())@ (errors . %a)@])" Michelson_v1_emacs.report_errors res_with_errors >>= fun () -> return_unit | parsed, errors -> cctxt#message "%a" (fun ppf () -> Michelson_v1_error_reporter.report_errors ~details:(not no_print_source) ~parsed ~show_source:(not no_print_source) ppf errors) () >>= fun () -> cctxt#error "syntax error in program"); command ~group ~desc:"Ask the node to list the entrypoints of a script." (args2 emacs_mode_switch no_print_source_flag) (prefixes ["get"; "script"; "entrypoints"; "for"] @@ Program.source_param @@ stop) (fun (emacs_mode, no_print_source) program cctxt -> match program with | program, [] -> list_entrypoints cctxt ~chain:cctxt#chain ~block:cctxt#block program >>= fun entrypoints -> print_entrypoints_list ~emacs:emacs_mode ~show_source:(not no_print_source) ~parsed:program cctxt entrypoints | res_with_errors when emacs_mode -> cctxt#message "(@[<v 0>(entrypoints . ())@ (errors . %a)@])" Michelson_v1_emacs.report_errors res_with_errors >>= fun () -> return_unit | parsed, errors -> cctxt#message "%a" (fun ppf () -> Michelson_v1_error_reporter.report_errors ~details:(not no_print_source) ~parsed ~show_source:(not no_print_source) ppf errors) () >>= fun () -> cctxt#error "syntax error in program"); command ~desc: "Conversion of Michelson script from Micheline, JSON or binary to \ Micheline, JSON, binary or OCaml" (args1 zero_loc_switch) (prefixes ["convert"; "script"] @@ file_or_literal_param @@ prefix "from" @@ convert_input_format_param @@ prefix "to" @@ convert_output_format_param @@ stop) (fun zero_loc expr_string from_format to_format (cctxt : Protocol_client_context.full) -> (match from_format with | `Michelson -> let program = Michelson_v1_parser.parse_toplevel expr_string in Lwt.return @@ Micheline_parser.no_parsing_error program >>=? fun program -> (typecheck_program cctxt ~chain:cctxt#chain ~block:cctxt#block program >>= function | Error _ as res -> print_typecheck_result ~emacs:false ~show_types:true ~print_source_on_error:true program res cctxt | Ok _ -> return_unit) >>=? fun () -> return program.expanded | `JSON -> ( match Data_encoding.Json.from_string expr_string with | Error err -> cctxt#error "%s" err | Ok json -> safe_decode_json cctxt Alpha_context.Script.expr_encoding json) | `Binary -> ( bytes_of_prefixed_string expr_string >>=? fun bytes -> match Data_encoding.Binary.of_bytes_opt Alpha_context.Script.expr_encoding bytes with | None -> failwith "Could not decode bytes" | Some expr -> return expr)) >>=? fun (expression : Alpha_context.Script.expr) -> let output = match to_format with | `Michelson -> Micheline_printer.printable Michelson_v1_primitives.string_of_prim expression |> Format.asprintf "%a" Micheline_printer.print_expr | `JSON -> Data_encoding.Json.( construct Alpha_context.Script.expr_encoding expression |> to_string) | `Binary -> Format.asprintf "0x%s" (Data_encoding.Binary.( to_bytes_exn Alpha_context.Script.expr_encoding expression) |> Hex.of_bytes |> Hex.show) | `OCaml -> Michelson_v1_printer.micheline_string_of_expression ~zero_loc expression in cctxt#message "%s" output >>= fun () -> return_unit); command ~desc: "Conversion of Micheline expression from Micheline, JSON or binary to \ Micheline, JSON, binary or OCaml" (args2 zero_loc_switch data_type_arg) (prefixes ["convert"; "data"] @@ file_or_literal_param @@ prefix "from" @@ convert_input_format_param @@ prefix "to" @@ convert_output_format_param @@ stop) (fun (zero_loc, data_ty) data_string from_format to_format (cctxt : Protocol_client_context.full) -> let micheline_of_expr expr = Micheline_printer.printable Michelson_v1_primitives.string_of_prim expr |> Format.asprintf "%a" Micheline_printer.print_expr in let typecheck_parsed ~data ~ty = Client_proto_programs.typecheck_data cctxt ~chain:cctxt#chain ~block:cctxt#block ~data ~ty () >>= function | Error errs -> failwith "%a" (Michelson_v1_error_reporter.report_errors ~details:false ~show_source:false ?parsed:None) errs | Ok _gas -> return data.expanded in let typecheck_expr ~expr ~ty = let data_string = micheline_of_expr expr in parse_expr data_string >>=? fun data -> typecheck_parsed ~data ~ty in (match from_format with | `Michelson -> ( parse_expr data_string >>=? fun data -> match data_ty with | Some ty -> typecheck_parsed ~data ~ty | None -> return data.expanded) | `JSON -> ( match Data_encoding.Json.from_string data_string with | Error err -> cctxt#error "%s" err | Ok json -> ( safe_decode_json cctxt Alpha_context.Script.expr_encoding json >>=? fun expr -> match data_ty with | None -> return expr | Some ty -> typecheck_expr ~expr ~ty)) | `Binary -> ( bytes_of_prefixed_string data_string >>=? fun bytes -> match Data_encoding.Binary.of_bytes_opt Alpha_context.Script.expr_encoding bytes with | None -> failwith "Could not decode bytes" | Some expr -> ( match data_ty with | None -> return expr | Some ty -> typecheck_expr ~expr ~ty))) >>=? fun (expression : Alpha_context.Script.expr) -> let output = match to_format with | `Michelson -> micheline_of_expr expression | `JSON -> Data_encoding.Json.( construct Alpha_context.Script.expr_encoding expression |> to_string) | `Binary -> Format.asprintf "0x%s" (Data_encoding.Binary.( to_bytes_exn Alpha_context.Script.expr_encoding expression) |> Hex.of_bytes |> Hex.show) | `OCaml -> Michelson_v1_printer.micheline_string_of_expression ~zero_loc expression in cctxt#message "%s" output >>= fun () -> return_unit); ]
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