% A bunch of helpers to help to deal with errors in Elixir source code. % This is not exposed in the Elixir language. -module(elixir_errors). -export([compile_error/3, compile_error/4, form_error/4, form_warn/4, parse_error/4, warn/2, warn/3, handle_file_warning/2, handle_file_warning/3, handle_file_error/2]). -include("elixir.hrl"). -spec warn(non_neg_integer(), binary(), iolist()) -> ok. warn(Line, File, Warning) when is_integer(Line), is_binary(File) -> warn(file_format(Line, File), Warning). -spec warn(iolist(), iolist()) -> ok. warn(Caller, Warning) -> do_warn([Caller, "warning: ", Warning, $\n]). %% General forms handling. -spec form_error(list(), binary(), module(), any()) -> no_return(). form_error(Meta, File, Module, Desc) -> compile_error(Meta, File, format_error(Module, Desc)). -spec form_warn(list(), binary(), module(), any()) -> ok. form_warn(Meta, File, Module, Desc) when is_list(Meta) -> {MetaLine, MetaFile} = meta_location(Meta, File), warn(MetaLine, MetaFile, format_error(Module, Desc)). %% Compilation error. -spec compile_error(list(), binary(), iolist()) -> no_return(). -spec compile_error(list(), binary(), iolist(), list()) -> no_return(). compile_error(Meta, File, Message) when is_list(Message) -> raise(Meta, File, 'Elixir.CompileError', elixir_utils:characters_to_binary(Message)). compile_error(Meta, File, Format, Args) when is_list(Format) -> compile_error(Meta, File, io_lib:format(Format, Args)). %% Tokenization parsing/errors. -spec parse_error(non_neg_integer(), binary(), binary(), binary()) -> no_return(). parse_error(Line, File, Error, <<>>) -> Message = case Error of <<"syntax error before: ">> -> <<"syntax error: expression is incomplete">>; _ -> Error end, do_raise(Line, File, 'Elixir.TokenMissingError', Message); %% Show a nicer message for missing end tokens parse_error(Line, File, <<"syntax error before: ">>, <<"'end'">>) -> do_raise(Line, File, 'Elixir.SyntaxError', <<"unexpected token: end">>); %% Binaries are wrapped in [<<...>>], so we need to unwrap them parse_error(Line, File, Error, <<"[", _/binary>> = Full) when is_binary(Error) -> Rest = case binary:split(Full, <<"<<">>) of [Lead, Token] -> case binary:split(Token, <<">>">>) of [Part, _] when Lead == <<$[>> -> Part; _ -> <<$">> end; [_] -> <<$">> end, do_raise(Line, File, 'Elixir.SyntaxError', <>); %% Everything else is fine as is parse_error(Line, File, Error, Token) when is_binary(Error), is_binary(Token) -> Message = <>, do_raise(Line, File, 'Elixir.SyntaxError', Message). %% Handle warnings and errors from Erlang land (called during module compilation) %% Ignore on bootstrap handle_file_warning(true, _File, {_Line, sys_core_fold, nomatch_guard}) -> ok; handle_file_warning(true, _File, {_Line, sys_core_fold, {nomatch_shadow, _}}) -> ok; %% Ignore always handle_file_warning(_, _File, {_Line, sys_core_fold, useless_building}) -> ok; %% This is an Erlang bug, it considers {tuple, _}.call to always fail handle_file_warning(_, _File, {_Line, v3_kernel, bad_call}) -> ok; %% We handle unused local warnings ourselves handle_file_warning(_, _File, {_Line, erl_lint, {unused_function, _}}) -> ok; %% Make no_effect clauses pretty handle_file_warning(_, File, {Line, sys_core_fold, {no_effect, {erlang, F, A}}}) -> {Fmt, Args} = case erl_internal:comp_op(F, A) of true -> {"use of operator ~ts has no effect", [translate_comp_op(F)]}; false -> case erl_internal:bif(F, A) of false -> {"the call to :erlang.~ts/~B has no effect", [F,A]}; true -> {"the call to ~ts/~B has no effect", [F,A]} end end, Message = io_lib:format(Fmt, Args), warn(Line, File, Message); %% Rewrite undefined behaviour to check for protocols handle_file_warning(_, File, {Line,erl_lint,{undefined_behaviour_func,{Fun,Arity},Module}}) -> {DefKind, Def, DefArity} = case atom_to_list(Fun) of "MACRO-" ++ Rest -> {macro, list_to_atom(Rest), Arity - 1}; _ -> {function, Fun, Arity} end, Kind = protocol_or_behaviour(Module), Raw = "undefined ~ts ~ts ~ts/~B (for ~ts ~ts)", Message = io_lib:format(Raw, [Kind, DefKind, Def, DefArity, Kind, elixir_aliases:inspect(Module)]), warn(Line, File, Message); handle_file_warning(_, File, {Line,erl_lint,{undefined_behaviour,Module}}) -> case elixir_compiler:get_opt(internal) of true -> ok; false -> Message = io_lib:format("behaviour ~ts undefined", [elixir_aliases:inspect(Module)]), warn(Line, File, Message) end; %% Ignore unused vars at "weird" lines (<= 0) handle_file_warning(_, _File, {Line,erl_lint,{unused_var,_Var}}) when Line =< 0 -> ok; %% Ignore shadowed vars as we guarantee no conflicts ourselves handle_file_warning(_, _File, {_Line,erl_lint,{shadowed_var,_Var,_Where}}) -> ok; %% Rewrite nomatch_guard to be more generic it can happen inside if, unless, etc handle_file_warning(_, File, {Line, sys_core_fold, nomatch_guard}) -> warn(Line, File, "this check/guard will always yield the same result"); %% Properly format other unused vars handle_file_warning(_, File, {Line,erl_lint,{unused_var,Var}}) -> Message = format_error(erl_lint, {unused_var, format_var(Var)}), warn(Line, File, Message); %% Default behaviour handle_file_warning(_, File, {Line,Module,Desc}) -> Message = format_error(Module, Desc), warn(Line, File, Message). handle_file_warning(File, Desc) -> handle_file_warning(false, File, Desc). -spec handle_file_error(file:filename_all(), {non_neg_integer(), module(), any()}) -> no_return(). handle_file_error(File, {Line,erl_lint,{unsafe_var,Var,{In,_Where}}}) -> Translated = case In of 'orelse' -> 'or'; 'andalso' -> 'and'; _ -> In end, Message = io_lib:format("cannot define variable ~ts inside ~ts", [format_var(Var), Translated]), do_raise(Line, File, 'Elixir.CompileError', elixir_utils:characters_to_binary(Message)); handle_file_error(File, {Line,erl_lint,{spec_fun_undefined,{M,F,A}}}) -> Message = io_lib:format("spec for undefined function ~ts.~ts/~B", [elixir_aliases:inspect(M), F, A]), do_raise(Line, File, 'Elixir.CompileError', elixir_utils:characters_to_binary(Message)); handle_file_error(File, {Line,Module,Desc}) -> Message = format_error(Module, Desc), do_raise(Line, File, 'Elixir.CompileError', elixir_utils:characters_to_binary(Message)). %% Helpers raise(Meta, File, Kind, Message) when is_list(Meta) -> {MetaLine, MetaFile} = meta_location(Meta, File), do_raise(MetaLine, MetaFile, Kind, Message). file_format(0, File) -> io_lib:format("~ts: ", [elixir_utils:relative_to_cwd(File)]); file_format(Line, File) -> io_lib:format("~ts:~w: ", [elixir_utils:relative_to_cwd(File), Line]). format_var(Var) -> list_to_atom(lists:takewhile(fun(X) -> X /= $@ end, atom_to_list(Var))). format_error([], Desc) -> io_lib:format("~p", [Desc]); format_error(Module, Desc) -> Module:format_error(Desc). protocol_or_behaviour(Module) -> case is_protocol(Module) of true -> protocol; false -> behaviour end. is_protocol(Module) -> case code:ensure_loaded(Module) of {module, _} -> erlang:function_exported(Module, '__protocol__', 1) andalso Module:'__protocol__'(name) == Module; {error, _} -> false end. translate_comp_op('/=') -> '!='; translate_comp_op('=<') -> '<='; translate_comp_op('=:=') -> '==='; translate_comp_op('=/=') -> '!=='; translate_comp_op(Other) -> Other. meta_location(Meta, File) -> case lists:keyfind(file, 1, Meta) of {file, MetaFile} when is_binary(MetaFile) -> case lists:keyfind(keep, 1, Meta) of {keep, MetaLine} when is_integer(MetaLine) -> ok; _ -> MetaLine = 0 end, {MetaLine, MetaFile}; _ -> {?line(Meta), File} end. do_warn(Warning) -> CompilerPid = get(elixir_compiler_pid), if CompilerPid =/= undefined -> elixir_code_server:cast({register_warning, CompilerPid}); true -> false end, io:put_chars(standard_error, Warning), ok. do_raise(none, File, Kind, Message) -> do_raise(0, File, Kind, Message); do_raise(Line, File, Kind, Message) when is_integer(Line), is_binary(File), is_binary(Message) -> try throw(ok) catch ok -> ok end, Stacktrace = erlang:get_stacktrace(), Exception = Kind:exception([{description, Message}, {file, File}, {line, Line}]), erlang:raise(error, Exception, tl(Stacktrace)).