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(*
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* Copyright (c) Facebook, Inc. and its affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*)
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(** SLEdge command line interface *)
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let () = Printexc.record_backtrace Version.debug
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module Command = Core.Command
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open Command.Let_syntax
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type 'a param = 'a Command.Param.t
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module Sh_executor = Control.Make (Domain_relation.Make (Domain_sh))
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module Unit_executor = Control.Make (Domain_unit)
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module Used_globals_executor = Control.Make (Domain_used_globals)
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module Itv_executor = Control.Make (Domain_itv)
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(* reverse application in the Command.Param applicative *)
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let ( |*> ) : 'a param -> ('a -> 'b) param -> 'b param =
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fun x f -> x |> Command.Param.apply f
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(* function composition in the Command.Param applicative *)
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let ( >*> ) : ('a -> 'b) param -> ('b -> 'c) param -> ('a -> 'c) param =
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fun f' g' -> Command.Param.both f' g' >>| fun (f, g) -> f >> g
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(* define a command, with trace flag, and with action wrapped in reporting *)
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let command ~summary ?readme param =
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let trace =
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let%map_open config =
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flag "trace" ~doc:"<spec> enable debug tracing"
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(optional_with_default Trace.none
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(Arg_type.create (fun s -> Trace.parse s |> Result.ok_exn)))
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and margin =
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flag "margin" ~doc:"<cols> wrap debug tracing at <cols> columns"
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(optional int)
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and colors = flag "colors" no_arg ~doc:"enable printing in colors" in
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Trace.init ~colors ?margin ~config ()
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in
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let wrap main () =
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try
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main () |> ignore ;
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Trace.flush () ;
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Format.printf "@\nRESULT: Success: Invalid Accesses: %i@."
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(Report.invalid_access_count ())
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with exn ->
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let bt = Caml.Printexc.get_raw_backtrace () in
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Trace.flush () ;
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( match exn with
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| Frontend.Invalid_llvm msg ->
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Format.printf "@\nRESULT: Invalid input: %s@." msg
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| Unimplemented msg ->
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Format.printf "@\nRESULT: Unimplemented: %s@." msg
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| Failure msg -> Format.printf "@\nRESULT: Internal error: %s@." msg
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| _ ->
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Format.printf "@\nRESULT: Unknown error: %s@."
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(Caml.Printexc.to_string exn) ) ;
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Caml.Printexc.raise_with_backtrace exn bt
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in
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Command.basic ~summary ?readme (trace *> param >>| wrap)
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let marshal program file =
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Out_channel.with_file file ~f:(fun oc ->
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Marshal.to_channel oc program [Marshal.Closures] )
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let unmarshal file () =
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In_channel.with_file
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~f:(fun ic -> (Marshal.from_channel ic : Llair.t))
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file
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let used_globals pgm preanalyze : Domain_used_globals.r =
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if preanalyze then
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let summary_table =
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Used_globals_executor.compute_summaries
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{ bound= 1
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; skip_throw= false
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; function_summaries= true
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; entry_points= Config.find_list "entry-points"
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; globals= Declared Reg.Set.empty }
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pgm
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in
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Per_function (Reg.Map.map summary_table ~f:Reg.Set.union_list)
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else
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Declared
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(IArray.fold pgm.globals ~init:Reg.Set.empty ~f:(fun acc g ->
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Reg.Set.add acc g.reg ))
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let analyze =
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let%map_open bound =
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flag "bound"
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(optional_with_default 1 int)
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~doc:"<int> stop execution exploration at depth <int>"
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and exceptions =
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flag "exceptions" no_arg
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~doc:"explore executions that throw and handle exceptions"
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and function_summaries =
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flag "function-summaries" no_arg
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~doc:"use function summaries (in development)"
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and preanalyze_globals =
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flag "preanalyze-globals" no_arg
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~doc:"pre-analyze global variables used by each function"
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and exec =
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flag "domain"
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(optional_with_default Sh_executor.exec_pgm
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(Arg_type.of_alist_exn
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[ ("sh", Sh_executor.exec_pgm)
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; ("globals", Used_globals_executor.exec_pgm)
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; ("unit", Unit_executor.exec_pgm)
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; ("itv", Itv_executor.exec_pgm) ]))
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~doc:
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"<string> select abstract domain; must be one of \"sh\" (default, \
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symbolic heap domain), \"globals\" (used-globals domain), or \
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\"unit\" (unit domain)"
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and no_simplify_states =
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flag "no-simplify-states" no_arg
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~doc:"do not simplify states during symbolic execution"
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in
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fun program () ->
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let pgm = program () in
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let globals = used_globals pgm preanalyze_globals in
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let entry_points = Config.find_list "entry-points" in
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let skip_throw = not exceptions in
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Domain_sh.simplify_states := not no_simplify_states ;
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exec {bound; skip_throw; function_summaries; entry_points; globals} pgm
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let analyze_cmd =
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let summary = "analyze LLAIR code" in
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let readme () =
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"The <input> file must be binary LLAIR, such as produced by `sledge \
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translate`."
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in
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let param =
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Command.Param.(anon ("<input>" %: string) >>| unmarshal |*> analyze)
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in
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command ~summary ~readme param
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let translate =
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let%map_open llair_output =
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flag "llair-output" (optional string)
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~doc:"<file> write generated LLAIR to <file>"
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and no_models =
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flag "no-models" no_arg
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~doc:"do not add models for C/C++ runtime and standard libraries"
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and fuzzer =
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flag "fuzzer" no_arg ~doc:"add a harness for libFuzzer targets"
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and no_internalize =
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flag "no-internalize" no_arg
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~doc:
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"do not internalize all functions except the entry points \
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specified in the config file"
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in
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fun bitcode_inputs () ->
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let program =
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Frontend.translate ~models:(not no_models) ~fuzzer
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~internalize:(not no_internalize) bitcode_inputs
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in
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Option.iter ~f:(marshal program) llair_output ;
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program
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let llvm_grp =
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let translate_inputs =
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let expand_argsfile input =
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if Char.(input.[0] = '@') then
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In_channel.with_file ~f:In_channel.input_lines
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(String.subo ~pos:1 input)
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else [input]
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in
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let open Command.Param in
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let input_arg = Arg_type.map string ~f:expand_argsfile in
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anon
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(map_anons ~f:List.concat
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(non_empty_sequence_as_list ("<input>" %: input_arg)))
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|*> translate
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in
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let translate_cmd =
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let summary = "translate LLVM bitcode to LLAIR" in
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let readme () =
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"Translate one or more LLVM bitcode files to LLAIR. Each <input> \
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filename may be either: an LLVM bitcode file, in binary (.bc) or \
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textual (.ll) form; or of the form @<argsfile>, where <argsfile> \
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names a file containing one <input> per line."
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in
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let param = translate_inputs in
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command ~summary ~readme param
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in
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let analyze_cmd =
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let summary = "analyze LLVM bitcode" in
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let readme () =
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"Analyze code in one or more LLVM bitcode files. This is a \
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convenience wrapper for the sequence `sledge llvm translate`; \
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`sledge analyze`."
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in
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let param = translate_inputs |*> analyze in
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command ~summary ~readme param
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in
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let summary = "integration with LLVM" in
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let readme () =
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"Code can be provided by one or more LLVM bitcode files."
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in
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Command.group ~summary ~readme ~preserve_subcommand_order:()
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[("analyze", analyze_cmd); ("translate", translate_cmd)]
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let disassemble_cmd =
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let summary = "print LLAIR code in textual form" in
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let readme () =
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"The <input> file must be LLAIR code, as produced by `sledge llvm \
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translate`."
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in
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let param =
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let%map_open input = anon ("<input>" %: string)
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and llair_txt_output =
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flag "llair-txt-output" (optional string)
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~doc:
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"<file> write generated textual LLAIR to <file>, or to standard \
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output if omitted"
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in
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fun () ->
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let program = unmarshal input () in
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match llair_txt_output with
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| None -> Format.printf "%a@." Llair.pp program
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| Some file ->
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Out_channel.with_file file ~f:(fun oc ->
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let fs = Format.formatter_of_out_channel oc in
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Format.fprintf fs "%a@." Llair.pp program )
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in
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command ~summary ~readme param
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let summary = "SLEdge static analyzer"
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let readme () =
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"The [-trace <spec>] argument of each subcommand enables debug tracing \
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according to <spec>, which is a sequence of module and function names \
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separated by + or -. For example, M-M.f enables all tracing in the M \
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module except the M.f function. The <spec> value * enables all debug \
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tracing."
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;;
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Command.run ~version:Version.version ~build_info:Version.build_info
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(Command.group ~summary ~readme ~preserve_subcommand_order:()
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[ ("buck", Sledge_buck.main ~command ~analyze:(translate >*> analyze))
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; ("llvm", llvm_grp); ("analyze", analyze_cmd)
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; ("disassemble", disassemble_cmd) ])
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