mirror of
https://github.com/processone/ejabberd.git
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307 lines
7.8 KiB
Bash
Executable File
307 lines
7.8 KiB
Bash
Executable File
#!/usr/bin/env escript
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%% -*- erlang -*-
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%%! -pa ebin
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main(Dirs) ->
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Txts =
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lists:foldl(
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fun(Dir, Acc) ->
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EbinDir = filename:join(Dir, "ebin"),
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SrcDir = filename:join(Dir, "src"),
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filelib:fold_files(
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EbinDir, ".+\.beam\$", false,
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fun(BeamFile, Res) ->
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Mod = mod(BeamFile),
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ErlFile = filename:join(SrcDir, Mod ++ ".erl"),
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case get_forms(BeamFile, ErlFile) of
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{ok, BeamForms, ErlForms} ->
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process_forms(BeamForms, Mod, application) ++
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process_forms(ErlForms, Mod, macro) ++ Res;
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_Err ->
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Res
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end
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end, Acc)
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end, [], Dirs),
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Dict = lists:foldl(
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fun({B, Meta}, Acc) ->
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dict:update(
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binary_to_list(B),
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fun(OldMeta) ->
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lists:usort([Meta|OldMeta])
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end,
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[Meta], Acc)
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end, dict:new(), Txts),
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generate_pot(Dict).
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process_forms(Forms, Mod, Type) ->
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Tree = erl_syntax:form_list(Forms),
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erl_syntax_lib:fold_subtrees(
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fun(Form, Acc) ->
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case erl_syntax:type(Form) of
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function ->
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case map(Form, Mod, Type) of
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[] ->
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Acc;
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Vars ->
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Vars ++ Acc
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end;
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_ ->
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Acc
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end
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end, [], Tree).
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map(Tree, Mod, Type) ->
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Vars = erl_syntax_lib:fold(
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fun(Form, Acc) ->
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case erl_syntax:type(Form) of
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Type when Type == application ->
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analyze_app(Form, Mod) ++ Acc;
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Type when Type == macro ->
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analyze_macro(Form, Mod) ++ Acc;
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_ ->
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Acc
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end
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end, [], Tree),
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Bins = lists:flatmap(
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fun({Var, Pos}) when is_atom(Var) ->
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Res = erl_syntax_lib:fold(
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fun(Form, Acc) ->
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case process_match_expr(
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Form, Var, Mod) of
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{ok, Binary, NewPos} ->
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[{Binary, NewPos}|Acc];
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error ->
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Acc
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end
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end, [], Tree),
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case Res of
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[] ->
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log("~s:~p: unresolved variable: ~s~n",
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[Mod, Pos, Var]);
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_ ->
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ok
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end,
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Res;
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({Var, Pos}) when is_binary(Var) ->
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[{Var, Pos}]
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end, lists:usort(Vars)),
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[{B, {Mod, Pos}} || {B, Pos} <- Bins, B /= <<"">>].
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process_match_expr(Form, Var, Mod) ->
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case erl_syntax:type(Form) of
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match_expr ->
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Pattern = erl_syntax:match_expr_pattern(Form),
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Body = erl_syntax:match_expr_body(Form),
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{V, Expr} =
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case {erl_syntax:type(Pattern), erl_syntax:type(Body)} of
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{variable, _} ->
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{erl_syntax:variable_name(Pattern), Body};
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{_, variable} ->
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{erl_syntax:variable_name(Body), Pattern};
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_ ->
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{'', none}
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end,
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Text = maybe_extract_tuple(Expr),
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if V == Var ->
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Pos = erl_syntax:get_pos(Text),
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try {ok, erl_syntax:concrete(Text), Pos}
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catch _:_ ->
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case catch erl_syntax_lib:analyze_application(Text) of
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{_M, {Fn, 1}} when Fn == format_error;
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Fn == io_format_error ->
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error;
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_ ->
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log("~s:~p: not a binary: ~s~n",
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[Mod, Pos, erl_prettypr:format(Text)]),
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{ok, <<>>, Pos}
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end
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end;
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true ->
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error
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end;
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_ ->
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error
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end.
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maybe_extract_tuple(none) ->
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none;
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maybe_extract_tuple(Form) ->
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try
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tuple = erl_syntax:type(Form),
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[Text, _] = erl_syntax:tuple_elements(Form),
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Text
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catch _:{badmatch, _} ->
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Form
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end.
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analyze_app(Form, Mod) ->
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try
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{M, {F, A}} = erl_syntax_lib:analyze_application(Form),
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Args = erl_syntax:application_arguments(Form),
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Txt = case {M, atom_to_list(F), A, Args} of
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{xmpp, "err_" ++ _, 2, [T|_]} -> T;
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{xmpp, "serr_" ++ _, 2, [T|_]} -> T;
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{xmpp, "mk_text", 2, [T|_]} -> T;
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{xmpp_tr, "tr", 2, [_,T|_]} -> T;
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{translate, "translate", 2, [_,T|_]} -> T
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end,
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Pos = erl_syntax:get_pos(Txt),
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case erl_syntax:type(Txt) of
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binary ->
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try [{erl_syntax:concrete(Txt), Pos}]
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catch _:_ ->
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Pos = erl_syntax:get_pos(Txt),
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log("~s:~p: not a binary: ~s~n",
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[Mod, Pos, erl_prettypr:format(Txt)]),
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[]
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end;
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variable ->
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[{erl_syntax:variable_name(Txt), Pos}];
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application ->
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Vars = sets:to_list(erl_syntax_lib:variables(Txt)),
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case Vars of
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[Var] ->
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[{Var, Pos}];
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[_|_] ->
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log("Too many variables: ~p~n", [Vars]),
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[];
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[] ->
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[]
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end;
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_ ->
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[]
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end
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catch _:{badmatch, _} ->
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[];
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_:{case_clause, _} ->
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[]
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end.
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analyze_macro(Form, Mod) ->
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try
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Name = erl_syntax:macro_name(Form),
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variable = erl_syntax:type(Name),
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'T' = erl_syntax:variable_name(Name),
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[Txt] = erl_syntax:macro_arguments(Form),
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string = erl_syntax:type(Txt),
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Pos = erl_syntax:get_pos(Txt),
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try [{list_to_binary(erl_syntax:string_value(Txt)), Pos}]
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catch _:_ ->
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log("~s:~p: not a binary: ~s~n",
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[Mod, Pos, erl_prettypr:format(Txt)]),
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[]
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end
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catch _:{badmatch, _} ->
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[]
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end.
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generate_pot(Dict) ->
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io:format("~s~n~n", [pot_header()]),
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lists:foreach(
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fun({Msg, Location}) ->
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S1 = format_location(Location),
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S2 = format_msg(Msg),
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io:format("~smsgstr \"\"~n~n", [S1 ++ S2])
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end, lists:keysort(1, dict:to_list(Dict))).
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format_location([A, B, C|T]) ->
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format_location_list([A,B,C]) ++ format_location(T);
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format_location([A, B|T]) ->
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format_location_list([A,B]) ++ format_location(T);
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format_location([A|T]) ->
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format_location_list([A]) ++ format_location(T);
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format_location([]) ->
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"".
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format_location_list(L) ->
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"#: " ++ string:join(
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lists:map(
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fun({File, Pos}) ->
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io_lib:format("~s:~B", [File, Pos])
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end, L),
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" ") ++ io_lib:nl().
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format_msg(Bin) ->
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io_lib:format("msgid \"~s\"~n", [escape(Bin)]).
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escape(Bin) ->
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lists:map(
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fun($") -> "\\\"";
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(C) -> C
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end, binary_to_list(iolist_to_binary(Bin))).
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pot_header() ->
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string:join(
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["msgid \"\"",
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"msgstr \"\"",
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"\"Project-Id-Version: 15.11.127\\n\"",
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"\"X-Language: Language Name\\n\"",
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"\"Last-Translator: Translator name and contact method\\n\"",
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"\"MIME-Version: 1.0\\n\"",
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"\"Content-Type: text/plain; charset=UTF-8\\n\"",
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"\"Content-Transfer-Encoding: 8bit\\n\""],
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io_lib:nl()).
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mod(Path) ->
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filename:rootname(filename:basename(Path)).
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log(Format, Args) ->
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io:format(standard_error, Format, Args).
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get_forms(BeamFile, ErlFile) ->
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try
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{ok, BeamForms} = get_beam_forms(BeamFile),
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{ok, ErlForms} = get_erl_forms(ErlFile),
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{ok, BeamForms, ErlForms}
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catch _:{badmatch, error} ->
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error
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end.
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get_beam_forms(File) ->
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case beam_lib:chunks(File, [abstract_code]) of
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{ok, {_, List}} ->
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case lists:keyfind(abstract_code, 1, List) of
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{abstract_code, {raw_abstract_v1, Abstr}} ->
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{ok, Abstr};
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_Err ->
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log("failed to get abstract code from ~s~n", [File]),
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error
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end;
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Err ->
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log("failed to read chunks from ~s: ~p~n", [File, Err]),
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error
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end.
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get_erl_forms(Path) ->
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case file:open(Path, [read]) of
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{ok, Fd} ->
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parse(Path, Fd, 1, []);
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{error, Why} ->
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log("failed to read ~s: ~s~n", [Path, file:format_error(Why)]),
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error
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end.
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parse(Path, Fd, Line, Acc) ->
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{ok, Pos} = file:position(Fd, cur),
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case epp_dodger:parse_form(Fd, Line) of
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{ok, Form, NewLine} ->
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{ok, NewPos} = file:position(Fd, cur),
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{ok, RawForm} = file:pread(Fd, Pos, NewPos - Pos),
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file:position(Fd, {bof, NewPos}),
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AnnForm = erl_syntax:set_ann(Form, RawForm),
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parse(Path, Fd, NewLine, [AnnForm|Acc]);
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{eof, _} ->
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{ok, NewPos} = file:position(Fd, cur),
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if NewPos > Pos ->
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{ok, RawForm} = file:pread(Fd, Pos, NewPos - Pos),
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Form = erl_syntax:text(""),
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AnnForm = erl_syntax:set_ann(Form, RawForm),
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{ok, lists:reverse([AnnForm|Acc])};
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true ->
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{ok, lists:reverse(Acc)}
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end;
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Err ->
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log("failed to parse ~s: ~p~n", [Path, Err]),
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error
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end.
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