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268 lines
14 KiB
Erlang
268 lines
14 KiB
Erlang
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%% Copyright (c) 2007
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%% Mats Cronqvist <mats.cronqvist@ericsson.com>
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%% Chris Newcombe <chris.newcombe@gmail.com>
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%% Jacob Vorreuter <jacob.vorreuter@gmail.com>
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%%
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%% Permission is hereby granted, free of charge, to any person
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%% obtaining a copy of this software and associated documentation
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%% files (the "Software"), to deal in the Software without
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%% restriction, including without limitation the rights to use,
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%% copy, modify, merge, publish, distribute, sublicense, and/or sell
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%% copies of the Software, and to permit persons to whom the
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%% Software is furnished to do so, subject to the following
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%% conditions:
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%%
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%% The above copyright notice and this permission notice shall be
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%% included in all copies or substantial portions of the Software.
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%%
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%% THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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%% EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
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%% OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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%% NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
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%% HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
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%% WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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%% FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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%% OTHER DEALINGS IN THE SOFTWARE.
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%%%-------------------------------------------------------------------
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%%% File : dynamic_compile.erl
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%%% Description :
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%%% Authors : Mats Cronqvist <mats.cronqvist@ericsson.com>
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%%% Chris Newcombe <chris.newcombe@gmail.com>
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%%% Jacob Vorreuter <jacob.vorreuter@gmail.com>
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%%% TODO :
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%%% - add support for limit include-file depth (and prevent circular references)
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%%% prevent circular macro expansion set FILE correctly when -module() is found
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%%% -include_lib support $ENVVAR in include filenames
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%%% substitute-stringize (??MACRO)
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%%% -undef/-ifdef/-ifndef/-else/-endif
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%%% -file(File, Line)
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%%%-------------------------------------------------------------------
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-module(dynamic_compile).
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%% API
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-export([from_string/1, from_string/2]).
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-import(lists, [reverse/1, keyreplace/4]).
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%%====================================================================
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%% API
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%%====================================================================
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%%--------------------------------------------------------------------
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%% Function:
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%% Description:
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%% Returns a binary that can be used with
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%% code:load_binary(Module, ModuleFilenameForInternalRecords, Binary).
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%%--------------------------------------------------------------------
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from_string(CodeStr) ->
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from_string(CodeStr, []).
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% takes Options as for compile:forms/2
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from_string(CodeStr, CompileFormsOptions) ->
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%% Initialise the macro dictionary with the default predefined macros,
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%% (adapted from epp.erl:predef_macros/1
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Filename = "compiled_from_string",
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%%Machine = list_to_atom(erlang:system_info(machine)),
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Ms0 = dict:new(),
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% Ms1 = dict:store('FILE', {[], "compiled_from_string"}, Ms0),
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% Ms2 = dict:store('LINE', {[], 1}, Ms1), % actually we might add special code for this
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% Ms3 = dict:store('MODULE', {[], undefined}, Ms2),
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% Ms4 = dict:store('MODULE_STRING', {[], undefined}, Ms3),
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% Ms5 = dict:store('MACHINE', {[], Machine}, Ms4),
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% InitMD = dict:store(Machine, {[], true}, Ms5),
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InitMD = Ms0,
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%% From the docs for compile:forms:
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%% When encountering an -include or -include_dir directive, the compiler searches for header files in the following directories:
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%% 1. ".", the current working directory of the file server;
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%% 2. the base name of the compiled file;
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%% 3. the directories specified using the i option. The directory specified last is searched first.
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%% In this case, #2 is meaningless.
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IncludeSearchPath = ["." | reverse([Dir || {i, Dir} <- CompileFormsOptions])],
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{RevForms, _OutMacroDict} = scan_and_parse(CodeStr, Filename, 1, [], InitMD, IncludeSearchPath),
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Forms = reverse(RevForms),
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%% note: 'binary' is forced as an implicit option, whether it is provided or not.
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case compile:forms(Forms, CompileFormsOptions) of
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{ok, ModuleName, CompiledCodeBinary} when is_binary(CompiledCodeBinary) ->
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{ModuleName, CompiledCodeBinary};
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{ok, ModuleName, CompiledCodeBinary, []} when is_binary(CompiledCodeBinary) -> % empty warnings list
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{ModuleName, CompiledCodeBinary};
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{ok, _ModuleName, _CompiledCodeBinary, Warnings} ->
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throw({?MODULE, warnings, Warnings});
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Other ->
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throw({?MODULE, compile_forms, Other})
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end.
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%%====================================================================
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%% Internal functions
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%%====================================================================
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%%% Code from Mats Cronqvist
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%%% See http://www.erlang.org/pipermail/erlang-questions/2007-March/025507.html
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%%%## 'scan_and_parse'
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%%%
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%%% basically we call the OTP scanner and parser (erl_scan and
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%%% erl_parse) line-by-line, but check each scanned line for (or
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%%% definitions of) macros before parsing.
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%% returns {ReverseForms, FinalMacroDict}
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scan_and_parse([], _CurrFilename, _CurrLine, RevForms, MacroDict, _IncludeSearchPath) ->
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{RevForms, MacroDict};
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scan_and_parse(RemainingText, CurrFilename, CurrLine, RevForms, MacroDict, IncludeSearchPath) ->
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case scanner(RemainingText, CurrLine, MacroDict) of
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{tokens, NLine, NRemainingText, Toks} ->
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{ok, Form} = erl_parse:parse_form(Toks),
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scan_and_parse(NRemainingText, CurrFilename, NLine, [Form | RevForms], MacroDict, IncludeSearchPath);
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{macro, NLine, NRemainingText, NMacroDict} ->
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scan_and_parse(NRemainingText, CurrFilename, NLine, RevForms,NMacroDict, IncludeSearchPath);
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{include, NLine, NRemainingText, IncludeFilename} ->
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IncludeFileRemainingTextents = read_include_file(IncludeFilename, IncludeSearchPath),
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%%io:format("include file ~p contents: ~n~p~nRemainingText = ~p~n", [IncludeFilename,IncludeFileRemainingTextents, RemainingText]),
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%% Modify the FILE macro to reflect the filename
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%%IncludeMacroDict = dict:store('FILE', {[],IncludeFilename}, MacroDict),
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IncludeMacroDict = MacroDict,
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%% Process the header file (inc. any nested header files)
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{RevIncludeForms, IncludedMacroDict} = scan_and_parse(IncludeFileRemainingTextents, IncludeFilename, 1, [], IncludeMacroDict, IncludeSearchPath),
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%io:format("include file results = ~p~n", [R]),
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%% Restore the FILE macro in the NEW MacroDict (so we keep any macros defined in the header file)
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%%NMacroDict = dict:store('FILE', {[],CurrFilename}, IncludedMacroDict),
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NMacroDict = IncludedMacroDict,
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%% Continue with the original file
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scan_and_parse(NRemainingText, CurrFilename, NLine, RevIncludeForms ++ RevForms, NMacroDict, IncludeSearchPath);
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done ->
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scan_and_parse([], CurrFilename, CurrLine, RevForms, MacroDict, IncludeSearchPath)
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end.
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scanner(Text, Line, MacroDict) ->
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case erl_scan:tokens([],Text,Line) of
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{done, {ok,Toks,NLine}, LeftOverChars} ->
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case pre_proc(Toks, MacroDict) of
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{tokens, NToks} -> {tokens, NLine, LeftOverChars, NToks};
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{macro, NMacroDict} -> {macro, NLine, LeftOverChars, NMacroDict};
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{include, Filename} -> {include, NLine, LeftOverChars, Filename}
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end;
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{more, _Continuation} ->
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%% This is supposed to mean "term is not yet complete" (i.e. a '.' has
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%% not been reached yet).
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%% However, for some bizarre reason we also get this if there is a comment after the final '.' in a file.
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%% So we check to see if Text only consists of comments.
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case is_only_comments(Text) of
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true ->
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done;
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false ->
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throw({incomplete_term, Text, Line})
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end
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end.
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is_only_comments(Text) -> is_only_comments(Text, not_in_comment).
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is_only_comments([], _) -> true;
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is_only_comments([$ |T], not_in_comment) -> is_only_comments(T, not_in_comment); % skipping whitspace outside of comment
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is_only_comments([$\t |T], not_in_comment) -> is_only_comments(T, not_in_comment); % skipping whitspace outside of comment
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is_only_comments([$\n |T], not_in_comment) -> is_only_comments(T, not_in_comment); % skipping whitspace outside of comment
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is_only_comments([$% |T], not_in_comment) -> is_only_comments(T, in_comment); % found start of a comment
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is_only_comments(_, not_in_comment) -> false;
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% found any significant char NOT in a comment
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is_only_comments([$\n |T], in_comment) -> is_only_comments(T, not_in_comment); % found end of a comment
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is_only_comments([_ |T], in_comment) -> is_only_comments(T, in_comment). % skipping over in-comment chars
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%%%## 'pre-proc'
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%%%
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%%% have to implement a subset of the pre-processor, since epp insists
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%%% on running on a file.
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%%% only handles 2 cases;
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%% -define(MACRO, something).
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%% -define(MACRO(VAR1,VARN),{stuff,VAR1,more,stuff,VARN,extra,stuff}).
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pre_proc([{'-',_},{atom,_,define},{'(',_},{_,_,Name}|DefToks],MacroDict) ->
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false = dict:is_key(Name, MacroDict),
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case DefToks of
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[{',',_} | Macro] ->
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{macro, dict:store(Name, {[], macro_body_def(Macro, [])}, MacroDict)};
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[{'(',_} | Macro] ->
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{macro, dict:store(Name, macro_params_body_def(Macro, []), MacroDict)}
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end;
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pre_proc([{'-',_}, {atom,_,include}, {'(',_}, {string,_,Filename}, {')',_}, {dot,_}], _MacroDict) ->
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{include, Filename};
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pre_proc(Toks,MacroDict) ->
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{tokens, subst_macros(Toks, MacroDict)}.
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macro_params_body_def([{')',_},{',',_} | Toks], RevParams) ->
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{reverse(RevParams), macro_body_def(Toks, [])};
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macro_params_body_def([{var,_,Param} | Toks], RevParams) ->
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macro_params_body_def(Toks, [Param | RevParams]);
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macro_params_body_def([{',',_}, {var,_,Param} | Toks], RevParams) ->
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macro_params_body_def(Toks, [Param | RevParams]).
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macro_body_def([{')',_}, {dot,_}], RevMacroBodyToks) ->
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reverse(RevMacroBodyToks);
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macro_body_def([Tok|Toks], RevMacroBodyToks) ->
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macro_body_def(Toks, [Tok | RevMacroBodyToks]).
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subst_macros(Toks, MacroDict) ->
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reverse(subst_macros_rev(Toks, MacroDict, [])).
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%% returns a reversed list of tokes
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subst_macros_rev([{'?',_}, {_,LineNum,'LINE'} | Toks], MacroDict, RevOutToks) ->
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%% special-case for ?LINE, to avoid creating a new MacroDict for every line in the source file
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subst_macros_rev(Toks, MacroDict, [{integer,LineNum,LineNum}] ++ RevOutToks);
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subst_macros_rev([{'?',_}, {_,_,Name}, {'(',_} = Paren | Toks], MacroDict, RevOutToks) ->
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case dict:fetch(Name, MacroDict) of
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{[], MacroValue} ->
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%% This macro does not have any vars, so ignore the fact that the invocation is followed by "(...stuff"
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%% Recursively expand any macro calls inside this macro's value
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%% TODO: avoid infinite expansion due to circular references (even indirect ones)
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RevExpandedOtherMacrosToks = subst_macros_rev(MacroValue, MacroDict, []),
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subst_macros_rev([Paren|Toks], MacroDict, RevExpandedOtherMacrosToks ++ RevOutToks);
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ParamsAndBody ->
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%% This macro does have vars.
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%% Collect all of the passe arguments, in an ordered list
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{NToks, Arguments} = subst_macros_get_args(Toks, []),
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%% Expand the varibles
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ExpandedParamsToks = subst_macros_subst_args_for_vars(ParamsAndBody, Arguments),
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%% Recursively expand any macro calls inside this macro's value
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%% TODO: avoid infinite expansion due to circular references (even indirect ones)
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RevExpandedOtherMacrosToks = subst_macros_rev(ExpandedParamsToks, MacroDict, []),
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subst_macros_rev(NToks, MacroDict, RevExpandedOtherMacrosToks ++ RevOutToks)
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end;
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subst_macros_rev([{'?',_}, {_,_,Name} | Toks], MacroDict, RevOutToks) ->
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%% This macro invocation does not have arguments.
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%% Therefore the definition should not have parameters
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{[], MacroValue} = dict:fetch(Name, MacroDict),
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%% Recursively expand any macro calls inside this macro's value
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%% TODO: avoid infinite expansion due to circular references (even indirect ones)
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RevExpandedOtherMacrosToks = subst_macros_rev(MacroValue, MacroDict, []),
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subst_macros_rev(Toks, MacroDict, RevExpandedOtherMacrosToks ++ RevOutToks);
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subst_macros_rev([Tok|Toks], MacroDict, RevOutToks) ->
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subst_macros_rev(Toks, MacroDict, [Tok|RevOutToks]);
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subst_macros_rev([], _MacroDict, RevOutToks) -> RevOutToks.
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subst_macros_get_args([{')',_} | Toks], RevArgs) ->
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{Toks, reverse(RevArgs)};
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subst_macros_get_args([{',',_}, {var,_,ArgName} | Toks], RevArgs) ->
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subst_macros_get_args(Toks, [ArgName| RevArgs]);
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subst_macros_get_args([{var,_,ArgName} | Toks], RevArgs) ->
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subst_macros_get_args(Toks, [ArgName | RevArgs]).
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subst_macros_subst_args_for_vars({[], BodyToks}, []) ->
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BodyToks;
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subst_macros_subst_args_for_vars({[Param | Params], BodyToks}, [Arg|Args]) ->
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NBodyToks = keyreplace(Param, 3, BodyToks, {var,1,Arg}),
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subst_macros_subst_args_for_vars({Params, NBodyToks}, Args).
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read_include_file(Filename, IncludeSearchPath) ->
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case file:path_open(IncludeSearchPath, Filename, [read, raw, binary]) of
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{ok, IoDevice, FullName} ->
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{ok, Data} = file:read(IoDevice, filelib:file_size(FullName)),
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file:close(IoDevice),
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binary_to_list(Data);
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{error, Reason} ->
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throw({failed_to_read_include_file, Reason, Filename, IncludeSearchPath})
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end.
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