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open Cmdliner
open Trace
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open Cli_helpers
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let main =
let term = Term . ( const print_endline $ const " Ligo needs a command. Do ligo --help " ) in
( term , Term . info " ligo " )
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let source n =
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let open Arg in
let info =
let docv = " SOURCE_FILE " in
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let doc = " $(docv) is the path to the .ligo or .mligo file of the contract. " in
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info ~ docv ~ doc [] in
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required @@ pos n ( some string ) None info
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let entry_point n =
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let open Arg in
let info =
let docv = " ENTRY_POINT " in
let doc = " $(docv) is entry-point that will be compiled. " in
info ~ docv ~ doc [] in
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required @@ pos n ( some string ) ( Some " main " ) info
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let expression purpose n =
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let open Arg in
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let docv = purpose ^ " _EXPRESSION " in
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let doc = " $(docv) is the expression that will be compiled. " in
let info = info ~ docv ~ doc [] in
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required @@ pos n ( some string ) None info
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let syntax =
let open Arg in
let info =
let docv = " SYNTAX " in
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let doc = " $(docv) is the syntax that will be used. Currently supported syntaxes are \" pascaligo \" and \" cameligo \" . By default, the syntax is guessed from the extension (.ligo and .mligo, respectively). " in
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info ~ docv ~ doc [ " syntax " ; " s " ] in
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value @@ opt string " auto " info
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let amount =
let open Arg in
let info =
let docv = " AMOUNT " in
let doc = " $(docv) is the amount the dry-run transaction will use. " in
info ~ docv ~ doc [ " amount " ] in
value @@ opt string " 0 " info
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let compile_file =
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let f source entry_point syntax =
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toplevel @@
let % bind contract =
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trace ( simple_info " compiling contract to michelson " ) @@
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Ligo . Run . compile_contract_file source entry_point ( Syntax_name syntax ) in
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Format . printf " %s \n " contract ;
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ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ syntax ) in
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let cmdname = " compile-contract " in
let docs = " Subcommand: compile a contract. See `ligo " ^ cmdname ^ " --help' for a list of options specific to this subcommand. " in
( term , Term . info ~ docs cmdname )
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let compile_parameter =
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let f source entry_point expression syntax =
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toplevel @@
let % bind value =
trace ( simple_error " compile-input " ) @@
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Ligo . Run . compile_contract_parameter source entry_point expression ( Syntax_name syntax ) in
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Format . printf " %s \n " value ;
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ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ expression " PARAMETER " 2 $ syntax ) in
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let cmdname = " compile-parameter " in
let docs = " Subcommand: compile parameters to a michelson expression. The resulting michelson expression can be passed as an argument in a transaction which calls a contract. See `ligo " ^ cmdname ^ " --help' for a list of options specific to this subcommand. " in
( term , Term . info ~ docs cmdname )
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let compile_storage =
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let f source entry_point expression syntax =
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toplevel @@
let % bind value =
trace ( simple_error " compile-storage " ) @@
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Ligo . Run . compile_contract_storage source entry_point expression ( Syntax_name syntax ) in
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Format . printf " %s \n " value ;
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ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ expression " STORAGE " 2 $ syntax ) in
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let cmdname = " compile-storage " in
let docs = " Subcommand: compile an initial storage in ligo syntax to a michelson expression. The resulting michelson expression can be passed as an argument in a transaction which originates a contract. See `ligo " ^ cmdname ^ " --help' for a list of options specific to this subcommand. " in
( term , Term . info ~ docs cmdname )
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let dry_run =
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let f source entry_point storage input amount syntax =
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toplevel @@
let % bind output =
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Ligo . Run . run_contract ~ amount source entry_point storage input ( Syntax_name syntax ) in
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Format . printf " %a \n " Ast_simplified . PP . expression output ;
ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ expression " PARAMETER " 2 $ expression " STORAGE " 3 $ amount $ syntax ) in
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let cmdname = " dry-run " in
let docs = " Subcommand: run a smart-contract with the given storage and input. " in
( term , Term . info ~ docs cmdname )
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let run_function =
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let f source entry_point parameter amount syntax =
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toplevel @@
let % bind output =
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Ligo . Run . run_function ~ amount source entry_point parameter ( Syntax_name syntax ) in
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Format . printf " %a \n " Ast_simplified . PP . expression output ;
ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ expression " PARAMETER " 2 $ amount $ syntax ) in
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let cmdname = " run-function " in
let docs = " Subcommand: run a function with the given parameter. " in
( term , Term . info ~ docs cmdname )
let evaluate_value =
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let f source entry_point amount syntax =
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toplevel @@
let % bind output =
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Ligo . Run . evaluate_value ~ amount source entry_point ( Syntax_name syntax ) in
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Format . printf " %a \n " Ast_simplified . PP . expression output ;
ok ()
in
let term =
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Term . ( const f $ source 0 $ entry_point 1 $ amount $ syntax ) in
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let cmdname = " evaluate-value " in
let docs = " Subcommand: evaluate a given definition. " in
( term , Term . info ~ docs cmdname )
let () = Term . exit @@ Term . eval_choice main [
compile_file ;
compile_parameter ;
compile_storage ;
dry_run ;
run_function ;
evaluate_value ;
]