Source file michelson_v1_printer.ml
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open Protocol
open Alpha_context
open Tezos_micheline
open Micheline
open Micheline_printer
let anon = {comment = None}
let print_expr ppf expr =
expr |> Michelson_v1_primitives.strings_of_prims
|> Micheline.inject_locations (fun _ -> anon)
|> print_expr ppf
let print_expr_unwrapped ppf expr =
expr |> Michelson_v1_primitives.strings_of_prims
|> Micheline.inject_locations (fun _ -> anon)
|> print_expr_unwrapped ppf
let print_var_annots ppf = List.iter (Format.fprintf ppf "%s ")
let print_annot_expr_unwrapped ppf (expr, annot) =
Format.fprintf ppf "%a%a" print_var_annots annot print_expr_unwrapped expr
let print_stack ppf = function
| [] -> Format.fprintf ppf "[]"
| more ->
Format.fprintf
ppf
"@[<hov 0>[ %a ]@]"
(Format.pp_print_list
~pp_sep:(fun ppf () -> Format.fprintf ppf "@ : ")
print_annot_expr_unwrapped)
more
let print_execution_trace ppf trace =
Format.pp_print_list
(fun ppf (loc, gas, stack) ->
Format.fprintf
ppf
"- @[<v 0>location: %d (remaining gas: %a)@,[ @[<v 0>%a ]@]@]"
loc
Gas.pp
gas
(Format.pp_print_list (fun ppf (e, annot) ->
Format.fprintf
ppf
"@[<v 0>%a \t%s@]"
print_expr
e
(match annot with None -> "" | Some a -> a)))
stack)
ppf
trace
let inject_types type_map parsed =
let rec inject_expr = function
| Seq (loc, items) ->
Seq (inject_loc `before loc, List.map inject_expr items)
| Prim (loc, name, items, annot) ->
Prim (inject_loc `after loc, name, List.map inject_expr items, annot)
| Int (loc, value) -> Int (inject_loc `after loc, value)
| String (loc, value) -> String (inject_loc `after loc, value)
| Bytes (loc, value) -> Bytes (inject_loc `after loc, value)
and inject_loc which loc =
let =
let ( >?? ) = Option.bind in
List.assoc ~equal:Int.equal loc parsed.Michelson_v1_parser.expansion_table
>?? fun (_, locs) ->
let locs = List.sort compare locs in
List.hd locs >?? fun head_loc ->
List.assoc ~equal:Int.equal head_loc type_map >?? fun (bef, aft) ->
let stack = match which with `before -> bef | `after -> aft in
Some (Format.asprintf "%a" print_stack stack)
in
{comment}
in
inject_expr (root parsed.unexpanded)
let unparse ?type_map parse expanded =
let source =
match type_map with
| Some type_map ->
let unexpanded, unexpansion_table =
expanded |> Michelson_v1_primitives.strings_of_prims |> root
|> Michelson_v1_macros.unexpand_rec |> Micheline.extract_locations
in
let rec inject_expr = function
| Seq (loc, items) ->
Seq (inject_loc `before loc, List.map inject_expr items)
| Prim (loc, name, items, annot) ->
Prim
(inject_loc `after loc, name, List.map inject_expr items, annot)
| Int (loc, value) -> Int (inject_loc `after loc, value)
| String (loc, value) -> String (inject_loc `after loc, value)
| Bytes (loc, value) -> Bytes (inject_loc `after loc, value)
and inject_loc which loc =
let =
let ( >?? ) = Option.bind in
List.assoc ~equal:Int.equal loc unexpansion_table >?? fun loc ->
List.assoc ~equal:Int.equal loc type_map >?? fun (bef, aft) ->
let stack = match which with `before -> bef | `after -> aft in
Some (Format.asprintf "%a" print_stack stack)
in
{comment}
in
unexpanded |> root |> inject_expr
|> Format.asprintf "%a" Micheline_printer.print_expr
| None ->
expanded |> Michelson_v1_primitives.strings_of_prims |> root
|> Michelson_v1_macros.unexpand_rec |> Micheline.strip_locations
|> Micheline_printer.printable (fun n -> n)
|> Format.asprintf "%a" Micheline_printer.print_expr
in
match parse source with
| res, [] -> res
| _, _ :: _ -> Stdlib.failwith "Michelson_v1_printer.unparse"
let unparse_toplevel ?type_map =
unparse ?type_map Michelson_v1_parser.parse_toplevel
let unparse_expression = unparse Michelson_v1_parser.parse_expression
let unparse_invalid expanded =
let source =
expanded |> root |> Michelson_v1_macros.unexpand_rec
|> Micheline.strip_locations
|> Micheline_printer.printable (fun n -> n)
|> Format.asprintf "%a" Micheline_printer.print_expr_unwrapped
in
fst (Michelson_v1_parser.parse_toplevel source)