mirror of
https://github.com/processone/ejabberd.git
synced 2024-10-29 15:12:12 +01:00
8746175f1d
SVN Revision: 2708
523 lines
16 KiB
Erlang
523 lines
16 KiB
Erlang
%%%----------------------------------------------------------------------
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%%% File : funrelg.erl
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%%% Author : Badlop <badlop@process-one.net>
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%%% Purpose : Function Relation Graph
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%%% Created : 3 Apr 2007 by Badlop <badlop@process-one.net>
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%%%
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%%%
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%%% ejabberd, Copyright (C) 2002-2009 ProcessOne
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%%%
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%%% This program is free software; you can redistribute it and/or
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%%% modify it under the terms of the GNU General Public License as
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%%% published by the Free Software Foundation; either version 2 of the
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%%% License, or (at your option) any later version.
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%%%
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%%% This program is distributed in the hope that it will be useful,
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%%% but WITHOUT ANY WARRANTY; without even the implied warranty of
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%%% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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%%% General Public License for more details.
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%%%
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%%% You should have received a copy of the GNU General Public License
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%%% along with this program; if not, write to the Free Software
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%%% Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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%%% 02111-1307 USA
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%%%
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%%%----------------------------------------------------------------------
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-module(funrelg).
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-author('badlop@process-one.net').
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-export([dir/1, file/1, g/0, g/1, gc/0, gc/1, d/0]).
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-record(mfa, {mod, func, arity}).
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-record(arcs, {id, from, to, occ}).
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%% The functions that are not in export and don't call anybody are not drawn
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%% The calls to this module that use Mod:Func are drawn as external calls
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%%-----------------------------
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%% Module handlers
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%%-----------------------------
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dir([SrcDir, OutDir]) ->
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SrcDirAbs = filename:absname(SrcDir),
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OutDirAbs = filename:absname(OutDir),
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Files = get_files([SrcDirAbs]),
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lists:foreach(
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fun(F) ->
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file(F, OutDirAbs)
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end,
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Files).
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file([SrcDir, OutDir]) ->
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SrcFilAbs = filename:absname(SrcDir),
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OutDirAbs = filename:absname(OutDir),
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file(SrcFilAbs, OutDirAbs).
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file(SrcFile, OutDir) ->
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case {filename:extension(SrcFile), filename:basename(SrcFile)} of
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%% The file must by *.erl, and the first character must be a-z
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{".erl", [FirstChar | _]} when (FirstChar >= 97) and (FirstChar =< 122) ->
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make_file(SrcFile, OutDir),
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d();
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_ ->
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ok
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end.
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get_files([]) ->
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[];
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get_files([FHead | FTail]) ->
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case catch file:list_dir(FHead) of
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{ok, Files} ->
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FilesHead = [filename:join(FHead, FilesN) || FilesN <- Files],
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get_files(FilesHead ++ FTail);
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{error, enotdir} ->
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[FHead] ++ get_files(FTail)
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end.
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make_file(File, OutDir) ->
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FB = filename:basename(File),
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FileDot = filename:join(OutDir, FB ++ ".dot"),
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Text = gc(File),
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{ok,FO}=file:open(FileDot,[write]),
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try
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io:fwrite(FO,"~s",[Text])
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after
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file:close(FO)
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end,
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FileSvg = filename:join(OutDir, filename:basename(File, ".erl") ++ ".svg"),
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case os:cmd("dot -Tsvg " ++ FileDot ++ " -o " ++ FileSvg) of
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"" -> ok;
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ShellResult ->
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io:format("Trying to run 'dot', we got this result:~n ~s~n"
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"Remember that you need to have Graphviz 'dot' installed.~n", [ShellResult])
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end,
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ok.
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%%====================================================================
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%% Internal functions
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%%====================================================================
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g() ->
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g("a.erl").
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g(Filename) ->
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gc(Filename),
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halt().
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gc() ->
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gc("a.erl").
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gc(Filename) ->
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{ok, File} = epp_dodger:parse_file(Filename),
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ets:new(arcs, [set, public, named_table, {keypos, 2}]),
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ets:new(mfa_conversion, [set, public, named_table, {keypos, 1}]),
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ets:new(counters, [set, public, named_table]),
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ets:insert(counters, {arcs_id, 0}),
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ModuleName = get_module_name(File),
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Exports = lists:usort(get_exports(File)),
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Functions = get_functions(File),
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FunctionsParsed = lists:usort(parse_functions(Functions)), % side effects: stores on ets
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Privates = FunctionsParsed -- Exports,
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%%Externals = get_externals(),
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MFAs = get_func_calls(),
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AppModules1 = os:cmd("ls -1 ../doc/devdoc/*.html | tr \".\" \" \" | tr \"/\" \" \" | awk '{print $3}'"),
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AppModules = [list_to_atom(Str) || Str <- string:tokens(AppModules1, [10])],
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ExternalTypes1 = [mfa_to_externaltype(MFA, ModuleName, AppModules, FunctionsParsed) || MFA <- MFAs],
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ExternalTypes = lists:usort(ExternalTypes1),
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AppExternals = [Function || {Type, Function} <- ExternalTypes, Type == app],
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ExmppExternals = [Function || {Type, Function} <- ExternalTypes, Type == exmpp],
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OTPExternals = [Function || {Type, Function} <- ExternalTypes, Type == other],
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textize(ModuleName, Exports, Privates, AppExternals, ExmppExternals, OTPExternals).
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get_arcs_id() ->
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ets:update_counter(counters, arcs_id, 1).
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insert_arc_normal(FromFunc, FromArity, ToFunc, ToArity) ->
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From = #mfa{mod = -1, func = FromFunc, arity = FromArity},
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To = #mfa{mod = -1, func = ToFunc, arity = ToArity},
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insert_arc(From, To).
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insert_arc_external(FromFunc, FromArity, ToMod, ToFunc, ToArity) ->
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From = #mfa{mod = -1, func = FromFunc, arity = FromArity},
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To = #mfa{mod = ToMod, func = ToFunc, arity = ToArity},
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insert_arc(From, To).
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insert_arc(From, To) ->
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Match = #arcs{
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from = From,
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to = To,
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id='$1',
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_='_'},
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Select = [{Match, [], ['$1']}],
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Ids = ets:select(arcs, Select),
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case Ids of
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[] ->
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ets:insert(arcs,
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#arcs{
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id = get_arcs_id(),
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from = From,
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to = To,
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occ = 1
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}
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);
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[Id] ->
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[Arc] = ets:lookup(arcs, Id),
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Arc2 = Arc#arcs{occ = Arc#arcs.occ+1},
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ets:insert(arcs, Arc2)
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end.
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read_arc(Id) ->
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ets:lookup(arcs, Id).
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d() ->
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ets:delete(arcs),
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ets:delete(mfa_conversion),
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ets:delete(counters).
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%% Get
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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get_module_name(File) ->
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Attributes = get_elements(attribute, File),
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get_attribute(module, Attributes).
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get_exports(File) ->
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Attributes = get_elements(attribute, File),
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Exports = get_attribute(export, Attributes),
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parse_export(Exports).
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get_functions(File) ->
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get_elements(function, File).
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get_elements(Type, L) -> get_elements(Type, L, []).
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get_elements(_, [], Res) -> Res;
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get_elements(Type, [{tree, Type, _, A} | L], Res) ->
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get_elements(Type, L, Res++[A]);
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get_elements(Type, [_ | L], Res) ->
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get_elements(Type, L, Res).
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get_attribute(_, []) -> [];
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get_attribute(Name, [{attribute, {tree, atom, _, Name}, [Al]} | As]) ->
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case Name of
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module ->
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{tree, atom, _, Mn} = Al,
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Mn;
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export ->
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{tree, list, _, {list, Exports, _}} = Al,
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Exports++get_attribute(Name, As);
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_ -> ok
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end;
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get_attribute(Name, [_ | As]) ->
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get_attribute(Name, As).
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parse_export(Ex) ->
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lists:foldl(
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fun(Aq, Res) ->
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{tree, arity_qualifier, _, {arity_qualifier, Atom, Inte}} = Aq,
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{tree, atom, _, An} = Atom,
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{tree, integer, _, In} = Inte,
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Res++[{An, In}]
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end,
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[],
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Ex).
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%% Parse
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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parse_functions(Functions) ->
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lists:map(
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fun(E) ->
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{function, {_, _, _, Fn}, Clauses} = E,
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Arity = get_function_arity(Clauses),
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parse_clauses(Fn, Clauses),
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{Fn, Arity}
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end,
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Functions).
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parse_clauses(Fn, Clauses) ->
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lists:foreach(
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fun(E) ->
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{tree, clause, L, C} = E,
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{attr, _Ln, _, _} = L,
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{clause, Parameters, _, Contents} = C,
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Fa = length(Parameters),
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parse_contents({Fn, Fa}, Contents)
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end,
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Clauses).
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%% OLD
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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parse_contents(F, Contents) ->
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{_, Res} = lists:foldl(
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fun(C, {Fu, R}) ->
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{Fu, R++parse_content(F, C)}
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end,
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{F, []},
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Contents),
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Res.
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parse_content(F, {tree, application, L, A}) ->
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{attr, _Ln, _, _} = L,
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parse_application(F, A);
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parse_content(F, {tree, list, _, {list, [L], Ls}}) ->
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RL = parse_content(F, L),
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RL++parse_content(F, Ls);
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parse_content(F, {tree, tuple, _, T}) ->
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parse_contents(F, T);
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parse_content(F, {tree, match_expr, _, M}) ->
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{match_expr, _, Value} = M,
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parse_content(F, Value);
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parse_content(F, {tree, try_expr, _, T}) ->
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{try_expr, As, Bs, Cs, Ds} = T,
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RAs = parse_contents(F, As),
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RBs = parse_contents(F, Bs),
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RDs = parse_contents(F, Ds),
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RAs++RBs++RDs++parse_contents(F, Cs);
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parse_content(F, {tree, block_expr, _, Ts}) ->
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parse_contents(F, Ts);
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parse_content(F, {tree, catch_expr, _, C}) ->
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parse_content(F, C);
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parse_content(F, {tree, case_expr, _, C}) ->
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{case_expr, Case, Cases} = C,
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R2 = parse_content(F, Case),
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R2++parse_contents(F, Cases);
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parse_content(F, {tree, if_expr, _, Cases}) ->
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parse_contents(F, Cases);
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parse_content(F, {tree, disjunction, _, Cases}) ->
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parse_contents(F, Cases);
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parse_content(F, {tree, conjunction, _, Cases}) ->
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parse_contents(F, Cases);
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parse_content(F, {tree, list_comp, _, L}) ->
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{list_comp, A, Bs} = L,
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RA = parse_content(F, A),
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RA++parse_contents(F, Bs);
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parse_content(F, {tree, generator, _, G}) ->
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{generator, _, Gen} = G,
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parse_content(F, Gen);
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parse_content(F, {tree, clause, _, C}) ->
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{clause, Clause, When, Second} = C,
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R2 = parse_contents(F, Clause),
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R3 = parse_content(F, When),
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R2++R3++parse_contents(F, Second);
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parse_content(F, {tree, fun_expr, _, E}) ->
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parse_contents(F, E);
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parse_content(F, {tree, record_expr, _, E}) ->
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{record_expr, _, _, Records} = E,
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parse_contents(F, Records);
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parse_content(F, {tree, record_field, _, R}) ->
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{record_field, F1, F2} = R,
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R2 = parse_content(F, F1),
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R2++parse_content(F, F2);
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parse_content(F, {tree, receive_expr, _, E}) ->
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{receive_expr, E1, _, _} = E,
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parse_contents(F, E1);
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parse_content(F, {tree, infix_expr, _, I}) ->
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{infix_expr, _Operator, T1, T2} = I,
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R = parse_content(F, T1),
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R++parse_content(F, T2);
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parse_content(_F, {tree, prefix_expr, _, _P}) ->
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[];
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parse_content(_F, {tree, class_qualifier, _, _}) -> [];
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parse_content(_F, {tree, implicit_fun, _, _}) -> [];
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parse_content(_F, {tree, record_access, _, _}) -> [];
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parse_content(_F, {tree, record_index_expr, _, _}) -> [];
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parse_content(_F, {tree, macro, _, _}) -> [];
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parse_content(_F, {tree, binary, _, _}) -> [];
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parse_content(_F, {tree, binary_generator, _, _}) -> [];
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parse_content(_F, {tree, binary_comp, _, _}) -> [];
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parse_content(_F, {integer, _, _I}) -> [];
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parse_content(_F, {float, _, _I}) -> [];
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parse_content(_F, {string, _, _S}) -> [];
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parse_content(_F, {char, _, _S}) -> [];
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parse_content(_F, {atom, _, _A}) -> [];
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parse_content(_F, {var, _, _V}) -> [];
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parse_content(_F, {nil, _}) -> [];
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parse_content(_F, none) -> [];
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parse_content(_F, C) -> io:format("Unknown content: ~p~n", [C]), [].
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parse_application({Fn, Fa}, {application, {atom, _, Name}, Valores}) ->
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Arity = length(Valores),
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insert_arc_normal(Fn, Fa, Name, Arity),
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Ra = [{arc_normal, Fn, Name}],
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Ra++parse_contents({Fn, Fa}, Valores);
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parse_application({Fn, Fa}, {application, {tree, module_qualifier, _, M}, Tree2}) ->
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case M of
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{module_qualifier, {_, _, Tf1}, {_, _, Tf2}} ->
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ToArity = length(Tree2),
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insert_arc_external(Fn, Fa, Tf1, Tf2, ToArity),
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parse_contents({Fn, Fa}, Tree2);
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_Other ->
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%%io:format("Unknown application module_qualifier: ~p~n", [M]),
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parse_contents({Fn, Fa}, Tree2)
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end;
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parse_application({Fn, Fa}, {application, {tree, record_access, _, _}, Tree2}) ->
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parse_contents({Fn, Fa}, Tree2);
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parse_application({Fn, Fa}, {application, {var, _, _}, Tree2}) ->
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parse_contents({Fn, Fa}, Tree2);
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parse_application({Fn, Fa}, {application, Other, Tree2}) ->
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io:format("Unknown application tree: ~p~n", [Other]),
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parse_contents({Fn, Fa}, Tree2).
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%% Textize
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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textize(ModuleName, Exports, Privates, AppExternals, ExmppExternals, OTPExternals) ->
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ExportsS = textize_exports(Exports),
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PrivatesS = textize_exports(Privates),
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AppExternalsS = textize_externals(AppExternals),
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ExmppExternalsS = textize_externals(ExmppExternals),
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OTPExternalsS = textize_externals(OTPExternals),
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Arcs = textize_arcs(),
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io_lib:format(
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"digraph ~p {~n"++
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" label = \"Module ~p\";~n"++
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" labelloc = \"t\";~n"++
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" fontname = Helvetica;~n"++
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" rankdir = LR;~n"++
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" ratio = fill;~n"++
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%%" node [shape = box, style = filled, color = olivedrab1, fontsize=40];~s~n"++
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%%" node [shape = parallelogram, style = filled, color = rosybrown1, fontsize=40];~s~n"++
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%%" node [shape = ellipse, style = filled, color = slategray1, peripheries=3, fontsize=40];~n"++
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" node [shape = box, color=darkgreen, fillcolor=Honeydew, style=filled, href=\"PRI~p.html#\\N\"];~s~n"++
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" node [shape = box, color=darkgreen, fillcolor=PaleGreen, style=filled, href=\"EXP~p.html#\\N\"];~s~n"++
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" node [shape = box, color=darkgreen, fillcolor=Aquamarine, style=filled, href=\"APP\\N\"];~s~n"++
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" node [shape = box, color=darkblue, fillcolor=LightSkyBlue,style=filled, href=\"EXM\\N\"];~s~n"++
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" node [shape = box, color=darkred, fillcolor=PeachPuff, style=filled, href=\"OTP\\N\"];~s~n"++
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" node [shape = box];~n"++
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"~s"++
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"}~n",
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[ModuleName, ModuleName,
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ModuleName, PrivatesS,
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ModuleName, ExportsS,
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AppExternalsS,
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ExmppExternalsS,
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OTPExternalsS,
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Arcs]).
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textize_exports(Exports) ->
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lists:foldl(
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fun({Func, Arity}, R) ->
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string:concat(R, io_lib:format(" \"~p/~p\";", [Func, Arity]))
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end,
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"",
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Exports).
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textize_externals(Externals) ->
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lists:foldl(
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fun({Mod, Func, Arity}, R) ->
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string:concat(R, io_lib:format(" \"~p:~p/~p\";", [Mod, Func, Arity]));
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({Func, Arity}, R) ->
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string:concat(R, io_lib:format(" \"~p/~p\";", [Func, Arity]))
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end,
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"",
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Externals).
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textize_arcs() ->
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Id = ets:first(arcs),
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textize_arcs(Id, []).
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textize_arcs('$end_of_table', Res) -> Res;
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textize_arcs(Id, Res) ->
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[Arc] = read_arc(Id),
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From = mfa_prepare(Arc#arcs.from),
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To = mfa_prepare(Arc#arcs.to),
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Edge_attrs = check_loop(From, To)++check_occu(Arc#arcs.occ)++check_external(Arc#arcs.to),
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Res2 = io_lib:format(" ~s -> ~s~s;~n", [From, To, Edge_attrs]),
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Id_next = ets:next(arcs, Id),
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textize_arcs(Id_next, string:concat(Res2, Res)).
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get_func_calls() ->
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Id = ets:first(arcs),
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get_func_calls(Id, []).
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get_func_calls('$end_of_table', Res) -> Res;
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get_func_calls(Id, Res) ->
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[Arc] = read_arc(Id),
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MFA = Arc#arcs.to,
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Call = MFA,
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Id_next = ets:next(arcs, Id),
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|
get_func_calls(Id_next, [Call | Res]).
|
|
|
|
mfa_prepare(MFAinitial) ->
|
|
MFA = try_mfa_conversion(MFAinitial),
|
|
Mod = case MFA#mfa.mod of
|
|
-1 -> "\"";
|
|
M -> io_lib:format("\"~p:", [M])
|
|
end,
|
|
Func = io_lib:format("~p", [MFA#mfa.func]),
|
|
Arity = case MFA#mfa.arity of
|
|
-1 -> "\"";
|
|
A -> io_lib:format("/~p\"", [A])
|
|
end,
|
|
string:concat(Mod, string:concat(Func, Arity)).
|
|
|
|
%% noexternal | app | exmpp | other
|
|
mfa_to_externaltype(MFA, ModuleName, AppModules, Functions) ->
|
|
case MFA of
|
|
{mfa, -1, Fu, Ar} ->
|
|
case {is_internal, lists:member({Fu, Ar}, Functions)} of
|
|
{is_internal, true} ->
|
|
{noexternal, {Fu, Ar}};
|
|
{is_internal, false} ->
|
|
store_mfa_conversion(MFA, {mfa, -1, Fu, Ar}),
|
|
{other, {Fu, Ar}}
|
|
end;
|
|
{mfa, Mo, Fu, Ar} when Mo == ModuleName ->
|
|
store_mfa_conversion(MFA, {mfa, -1, Fu, Ar}),
|
|
{noexternal, {Fu, Ar}};
|
|
{mfa, Mo, Fu, Ar} ->
|
|
Type = case {is_app, lists:member(Mo, AppModules)} of
|
|
{is_app, true} -> app;
|
|
{is_app, false} ->
|
|
case string:str(atom_to_list(Mo), "exmpp") of
|
|
0 -> other;
|
|
N when is_integer(N) -> exmpp
|
|
end
|
|
end,
|
|
{Type, {Mo, Fu, Ar}}
|
|
end.
|
|
|
|
get_function_arity([{tree, clause, _, {clause, Vars, _, _}} | _]) ->
|
|
length(Vars);
|
|
get_function_arity(E) ->
|
|
io:format("Unknown function arity: ~p~n", [E]).
|
|
|
|
store_mfa_conversion(MFA1, MFA2) ->
|
|
ets:insert(mfa_conversion, {MFA1, MFA2}).
|
|
|
|
try_mfa_conversion(MFA) ->
|
|
case ets:lookup(mfa_conversion, MFA) of
|
|
[{MFA,MFA2}] ->
|
|
MFA2;
|
|
[] ->
|
|
MFA
|
|
end.
|
|
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
|
|
%% Utils
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
|
|
|
|
%%check_loop(I, I) -> " [color = sandybrown]";
|
|
check_loop(I, I) -> "";
|
|
check_loop(_, _) -> "".
|
|
|
|
check_occu(1) -> "";
|
|
check_occu(Occ) -> io_lib:format(" [label=\"~p\"]", [Occ]).
|
|
|
|
check_external(To) ->
|
|
case To#mfa.mod of
|
|
-1 -> " [style = bold]";
|
|
_ -> ""
|
|
end.
|