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-rw-r--r--lib/stdlib/src/erl_lint.erl506
1 files changed, 292 insertions, 214 deletions
diff --git a/lib/stdlib/src/erl_lint.erl b/lib/stdlib/src/erl_lint.erl
index 49f1f3a6ee..6619ed5221 100644
--- a/lib/stdlib/src/erl_lint.erl
+++ b/lib/stdlib/src/erl_lint.erl
@@ -80,13 +80,17 @@ value_option(Flag, Default, On, OnVal, Off, OffVal, Opts) ->
-type fa() :: {atom(), arity()}. % function+arity
-type ta() :: {atom(), arity()}. % type+arity
+-record(typeinfo, {attr, line}).
+
%% Usage of records, functions, and imports. The variable table, which
%% is passed on as an argument, holds the usage of variables.
-record(usage, {
calls = dict:new(), %Who calls who
imported = [], %Actually imported functions
- used_records=sets:new() :: sets:set(),%Used record definitions
- used_types = dict:new() :: dict:dict()%Used type definitions
+ used_records = sets:new() %Used record definitions
+ :: sets:set(atom()),
+ used_types = dict:new() %Used type definitions
+ :: dict:dict(ta(), line())
}).
%% Define the lint state record.
@@ -95,13 +99,17 @@ value_option(Flag, Default, On, OnVal, Off, OffVal, Opts) ->
-record(lint, {state=start :: 'start' | 'attribute' | 'function',
module=[], %Module
behaviour=[], %Behaviour
- exports=gb_sets:empty() :: gb_sets:set(),%Exports
- imports=[], %Imports
+ exports=gb_sets:empty() :: gb_sets:set(fa()),%Exports
+ imports=[] :: [fa()], %Imports, an orddict()
compile=[], %Compile flags
- records=dict:new() :: dict:dict(), %Record definitions
- locals=gb_sets:empty() :: gb_sets:set(),%All defined functions (prescanned)
- no_auto=gb_sets:empty() :: gb_sets:set() | 'all',%Functions explicitly not autoimported
- defined=gb_sets:empty() :: gb_sets:set(),%Defined fuctions
+ records=dict:new() %Record definitions
+ :: dict:dict(atom(), {line(),Fields :: term()}),
+ locals=gb_sets:empty() %All defined functions (prescanned)
+ :: gb_sets:set(fa()),
+ no_auto=gb_sets:empty() %Functions explicitly not autoimported
+ :: gb_sets:set(fa()) | 'all',
+ defined=gb_sets:empty() %Defined fuctions
+ :: gb_sets:set(fa()),
on_load=[] :: [fa()], %On-load function
on_load_line=0 :: line(), %Line for on_load
clashes=[], %Exported functions named as BIFs
@@ -116,12 +124,18 @@ value_option(Flag, Default, On, OnVal, Off, OffVal, Opts) ->
%outside any fun or lc
xqlc= false :: boolean(), %true if qlc.hrl included
new = false :: boolean(), %Has user-defined 'new/N'
- called= [] :: [{fa(),line()}], %Called functions
+ called= [] :: [{fa(),line()}], %Called functions
usage = #usage{} :: #usage{},
- specs = dict:new() :: dict:dict(), %Type specifications
- callbacks = dict:new() :: dict:dict(), %Callback types
- types = dict:new() :: dict:dict(), %Type definitions
- exp_types=gb_sets:empty():: gb_sets:set()%Exported types
+ specs = dict:new() %Type specifications
+ :: dict:dict(mfa(), line()),
+ callbacks = dict:new() %Callback types
+ :: dict:dict(mfa(), line()),
+ optional_callbacks = dict:new() %Optional callbacks
+ :: dict:dict(mfa(), line()),
+ types = dict:new() %Type definitions
+ :: dict:dict(ta(), #typeinfo{}),
+ exp_types=gb_sets:empty() %Exported types
+ :: gb_sets:set(ta())
}).
-type lint_state() :: #lint{}.
@@ -225,6 +239,8 @@ format_error({too_many_arguments,Arity}) ->
"maximum allowed is ~w", [Arity,?MAX_ARGUMENTS]);
%% --- patterns and guards ---
format_error(illegal_pattern) -> "illegal pattern";
+format_error(illegal_map_key) ->
+ "illegal map key";
format_error({illegal_map_key_variable,K}) ->
io_lib:format("illegal use of variable ~w in map",[K]);
format_error(illegal_bin_pattern) ->
@@ -299,13 +315,20 @@ format_error({undefined_behaviour,Behaviour}) ->
io_lib:format("behaviour ~w undefined", [Behaviour]);
format_error({undefined_behaviour_callbacks,Behaviour}) ->
io_lib:format("behaviour ~w callback functions are undefined",
- [Behaviour]);
+ [Behaviour]);
format_error({ill_defined_behaviour_callbacks,Behaviour}) ->
io_lib:format("behaviour ~w callback functions erroneously defined",
[Behaviour]);
+format_error({ill_defined_optional_callbacks,Behaviour}) ->
+ io_lib:format("behaviour ~w optional callback functions erroneously defined",
+ [Behaviour]);
format_error({behaviour_info, {_M,F,A}}) ->
io_lib:format("cannot define callback attibute for ~w/~w when "
"behaviour_info is defined",[F,A]);
+format_error({redefine_optional_callback, {F, A}}) ->
+ io_lib:format("optional callback ~w/~w duplicated", [F, A]);
+format_error({undefined_callback, {_M, F, A}}) ->
+ io_lib:format("callback ~w/~w is undefined", [F, A]);
%% --- types and specs ---
format_error({singleton_typevar, Name}) ->
io_lib:format("type variable ~w is only used once (is unbound)", [Name]);
@@ -334,10 +357,14 @@ format_error({type_syntax, Constr}) ->
io_lib:format("bad ~w type", [Constr]);
format_error({redefine_spec, {M, F, A}}) ->
io_lib:format("spec for ~w:~w/~w already defined", [M, F, A]);
-format_error({redefine_callback, {M, F, A}}) ->
- io_lib:format("callback ~w:~w/~w already defined", [M, F, A]);
-format_error({spec_fun_undefined, {M, F, A}}) ->
- io_lib:format("spec for undefined function ~w:~w/~w", [M, F, A]);
+format_error({redefine_spec, {F, A}}) ->
+ io_lib:format("spec for ~w/~w already defined", [F, A]);
+format_error({redefine_callback, {F, A}}) ->
+ io_lib:format("callback ~w/~w already defined", [F, A]);
+format_error({bad_callback, {M, F, A}}) ->
+ io_lib:format("explicit module not allowed for callback ~w:~w/~w ", [M, F, A]);
+format_error({spec_fun_undefined, {F, A}}) ->
+ io_lib:format("spec for undefined function ~w/~w", [F, A]);
format_error({missing_spec, {F,A}}) ->
io_lib:format("missing specification for function ~w/~w", [F, A]);
format_error(spec_wrong_arity) ->
@@ -709,6 +736,8 @@ attribute_state({attribute,L,spec,{Fun,Types}}, St) ->
spec_decl(L, Fun, Types, St);
attribute_state({attribute,L,callback,{Fun,Types}}, St) ->
callback_decl(L, Fun, Types, St);
+attribute_state({attribute,L,optional_callbacks,Es}, St) ->
+ optional_callbacks(L, Es, St);
attribute_state({attribute,L,on_load,Val}, St) ->
on_load(L, Val, St);
attribute_state({attribute,_L,_Other,_Val}, St) -> % Ignore others
@@ -816,57 +845,73 @@ check_behaviour(St0) ->
%% Check behaviours for existence and defined functions.
behaviour_check(Bs, St0) ->
- {AllBfs,St1} = all_behaviour_callbacks(Bs, [], St0),
- St = behaviour_missing_callbacks(AllBfs, St1),
+ {AllBfs0, St1} = all_behaviour_callbacks(Bs, [], St0),
+ St = behaviour_missing_callbacks(AllBfs0, St1),
+ Exports = exports(St0),
+ F = fun(Bfs, OBfs) ->
+ [B || B <- Bfs,
+ not lists:member(B, OBfs)
+ orelse gb_sets:is_member(B, Exports)]
+ end,
+ %% After fixing missing callbacks new warnings may be emitted.
+ AllBfs = [{Item,F(Bfs0, OBfs0)} || {Item,Bfs0,OBfs0} <- AllBfs0],
behaviour_conflicting(AllBfs, St).
all_behaviour_callbacks([{Line,B}|Bs], Acc, St0) ->
- {Bfs0,St} = behaviour_callbacks(Line, B, St0),
- all_behaviour_callbacks(Bs, [{{Line,B},Bfs0}|Acc], St);
+ {Bfs0,OBfs0,St} = behaviour_callbacks(Line, B, St0),
+ all_behaviour_callbacks(Bs, [{{Line,B},Bfs0,OBfs0}|Acc], St);
all_behaviour_callbacks([], Acc, St) -> {reverse(Acc),St}.
behaviour_callbacks(Line, B, St0) ->
try B:behaviour_info(callbacks) of
- Funcs when is_list(Funcs) ->
- All = all(fun({FuncName, Arity}) ->
- is_atom(FuncName) andalso is_integer(Arity);
- ({FuncName, Arity, Spec}) ->
- is_atom(FuncName) andalso is_integer(Arity)
- andalso is_list(Spec);
- (_Other) ->
- false
- end,
- Funcs),
- MaybeRemoveSpec = fun({_F,_A}=FA) -> FA;
- ({F,A,_S}) -> {F,A};
- (Other) -> Other
- end,
- if
- All =:= true ->
- {[MaybeRemoveSpec(F) || F <- Funcs], St0};
+ undefined ->
+ St1 = add_warning(Line, {undefined_behaviour_callbacks, B}, St0),
+ {[], [], St1};
+ Funcs ->
+ case is_fa_list(Funcs) of
true ->
+ try B:behaviour_info(optional_callbacks) of
+ undefined ->
+ {Funcs, [], St0};
+ OptFuncs ->
+ %% OptFuncs should always be OK thanks to
+ %% sys_pre_expand.
+ case is_fa_list(OptFuncs) of
+ true ->
+ {Funcs, OptFuncs, St0};
+ false ->
+ W = {ill_defined_optional_callbacks, B},
+ St1 = add_warning(Line, W, St0),
+ {Funcs, [], St1}
+ end
+ catch
+ _:_ ->
+ {Funcs, [], St0}
+ end;
+ false ->
St1 = add_warning(Line,
- {ill_defined_behaviour_callbacks,B},
+ {ill_defined_behaviour_callbacks, B},
St0),
- {[], St1}
- end;
- undefined ->
- St1 = add_warning(Line, {undefined_behaviour_callbacks,B}, St0),
- {[], St1};
- _Other ->
- St1 = add_warning(Line, {ill_defined_behaviour_callbacks,B}, St0),
- {[], St1}
+ {[], [], St1}
+ end
catch
_:_ ->
- St1 = add_warning(Line, {undefined_behaviour,B}, St0),
- {[], St1}
+ St1 = add_warning(Line, {undefined_behaviour, B}, St0),
+ {[], [], St1}
end.
-behaviour_missing_callbacks([{{Line,B},Bfs}|T], St0) ->
+behaviour_missing_callbacks([{{Line,B},Bfs0,OBfs}|T], St0) ->
+ Bfs = ordsets:subtract(ordsets:from_list(Bfs0), ordsets:from_list(OBfs)),
Exports = gb_sets:to_list(exports(St0)),
- Missing = ordsets:subtract(ordsets:from_list(Bfs), Exports),
+ Missing = ordsets:subtract(Bfs, Exports),
St = foldl(fun (F, S0) ->
- add_warning(Line, {undefined_behaviour_func,F,B}, S0)
+ case is_fa(F) of
+ true ->
+ M = {undefined_behaviour_func,F,B},
+ add_warning(Line, M, S0);
+ false ->
+ S0 % ill_defined_behaviour_callbacks
+ end
end, St0, Missing),
behaviour_missing_callbacks(T, St);
behaviour_missing_callbacks([], St) -> St.
@@ -1108,19 +1153,29 @@ check_unused_records(Forms, St0) ->
end.
check_callback_information(#lint{callbacks = Callbacks,
- defined = Defined} = State) ->
- case gb_sets:is_member({behaviour_info,1}, Defined) of
- false -> State;
+ optional_callbacks = OptionalCbs,
+ defined = Defined} = St0) ->
+ OptFun = fun({MFA, Line}, St) ->
+ case dict:is_key(MFA, Callbacks) of
+ true ->
+ St;
+ false ->
+ add_error(Line, {undefined_callback, MFA}, St)
+ end
+ end,
+ St1 = lists:foldl(OptFun, St0, dict:to_list(OptionalCbs)),
+ case gb_sets:is_member({behaviour_info, 1}, Defined) of
+ false -> St1;
true ->
case dict:size(Callbacks) of
- 0 -> State;
+ 0 -> St1;
_ ->
CallbacksList = dict:to_list(Callbacks),
FoldL =
- fun({Fa,Line},St) ->
+ fun({Fa, Line}, St) ->
add_error(Line, {behaviour_info, Fa}, St)
end,
- lists:foldl(FoldL, State, CallbacksList)
+ lists:foldl(FoldL, St1, CallbacksList)
end
end.
@@ -1168,7 +1223,7 @@ export_type(Line, ETs, #lint{usage = Usage, exp_types = ETs0} = St0) ->
add_error(Line, {bad_export_type, ETs}, St0)
end.
--spec exports(lint_state()) -> gb_sets:set().
+-spec exports(lint_state()) -> gb_sets:set(fa()).
exports(#lint{compile = Opts, defined = Defs, exports = Es}) ->
case lists:member(export_all, Opts) of
@@ -1385,19 +1440,20 @@ pattern({cons,_Line,H,T}, Vt, Old, Bvt, St0) ->
pattern({tuple,_Line,Ps}, Vt, Old, Bvt, St) ->
pattern_list(Ps, Vt, Old, Bvt, St);
pattern({map,_Line,Ps}, Vt, Old, Bvt, St) ->
- foldl(fun ({map_field_assoc,L,_,_}, {Psvt,Bvt0,St0}) ->
- {Psvt,Bvt0,add_error(L, illegal_pattern, St0)};
- ({map_field_exact,L,KP,VP}, {Psvt,Bvt0,St0}) ->
- case expr(KP, [], St0) of
- {[],_} ->
- {Pvt,Bvt1,St1} = pattern(VP, Vt, Old, Bvt, St0),
- {vtmerge_pat(Pvt, Psvt),vtmerge_pat(Bvt0, Bvt1),
- St1};
- {[Var|_],_} ->
- Error = {illegal_map_key_variable,element(1, Var)},
- {Psvt,Bvt0,add_error(L, Error, St0)}
- end
- end, {[],[],St}, Ps);
+ foldl(fun
+ ({map_field_assoc,L,_,_}, {Psvt,Bvt0,St0}) ->
+ {Psvt,Bvt0,add_error(L, illegal_pattern, St0)};
+ ({map_field_exact,L,KP,VP}, {Psvt,Bvt0,St0}) ->
+ case is_valid_map_key(KP, pattern, St0) of
+ true ->
+ {Pvt,Bvt1,St1} = pattern(VP, Vt, Old, Bvt, St0),
+ {vtmerge_pat(Pvt, Psvt),vtmerge_pat(Bvt0, Bvt1), St1};
+ false ->
+ {Psvt,Bvt0,add_error(L, illegal_map_key, St0)};
+ {false,variable,Var} ->
+ {Psvt,Bvt0,add_error(L, {illegal_map_key_variable,Var}, St0)}
+ end
+ end, {[],[],St}, Ps);
%%pattern({struct,_Line,_Tag,Ps}, Vt, Old, Bvt, St) ->
%% pattern_list(Ps, Vt, Old, Bvt, St);
pattern({record_index,Line,Name,Field}, _Vt, _Old, _Bvt, St) ->
@@ -2235,9 +2291,10 @@ check_assoc_fields([], St) ->
map_fields([{Tag,Line,K,V}|Fs], Vt, St, F) when Tag =:= map_field_assoc;
Tag =:= map_field_exact ->
St1 = case is_valid_map_key(K, St) of
- true -> St;
- {false,Var} -> add_error(Line, {illegal_map_key_variable,Var}, St)
- end,
+ true -> St;
+ false -> add_error(Line, illegal_map_key, St);
+ {false,variable,Var} -> add_error(Line, {illegal_map_key_variable,Var}, St)
+ end,
{Pvt,St2} = F([K,V], Vt, St1),
{Vts,St3} = map_fields(Fs, Vt, St2, F),
{vtupdate(Pvt, Vts),St3};
@@ -2296,11 +2353,68 @@ is_valid_call(Call) ->
_ -> true
end.
+%% is_valid_map_key(K,St) -> true | false | {false, Var::atom()}
+%% check for value expression without variables
+
is_valid_map_key(K,St) ->
+ is_valid_map_key(K,expr,St).
+is_valid_map_key(K,Ctx,St) ->
case expr(K,[],St) of
- {[],_} -> true;
+ {[],_} ->
+ is_valid_map_key_value(K,Ctx);
{[Var|_],_} ->
- {false,element(1,Var)}
+ {false,variable,element(1,Var)}
+ end.
+
+is_valid_map_key_value(K,Ctx) ->
+ case K of
+ {char,_,_} -> true;
+ {integer,_,_} -> true;
+ {float,_,_} -> true;
+ {string,_,_} -> true;
+ {nil,_} -> true;
+ {atom,_,_} -> true;
+ {cons,_,H,T} ->
+ is_valid_map_key_value(H,Ctx) andalso
+ is_valid_map_key_value(T,Ctx);
+ {tuple,_,Es} ->
+ foldl(fun(E,B) ->
+ B andalso is_valid_map_key_value(E,Ctx)
+ end,true,Es);
+ {map,_,Arg,Ps} ->
+ % only check for value expressions to be valid
+ % invalid map expressions are later checked in
+ % core and kernel
+ is_valid_map_key_value(Arg,Ctx) andalso foldl(fun
+ ({Tag,_,Ke,Ve},B) when Tag =:= map_field_assoc;
+ Tag =:= map_field_exact, Ctx =:= expr ->
+ B andalso is_valid_map_key_value(Ke,Ctx)
+ andalso is_valid_map_key_value(Ve,Ctx);
+ (_,_) -> false
+ end,true,Ps);
+ {map,_,Ps} ->
+ foldl(fun
+ ({Tag,_,Ke,Ve},B) when Tag =:= map_field_assoc;
+ Tag =:= map_field_exact, Ctx =:= expr ->
+ B andalso is_valid_map_key_value(Ke,Ctx)
+ andalso is_valid_map_key_value(Ve,Ctx);
+ (_,_) -> false
+ end, true, Ps);
+ {record,_,_,Fs} ->
+ foldl(fun
+ ({record_field,_,Ke,Ve},B) ->
+ B andalso is_valid_map_key_value(Ke,Ctx)
+ andalso is_valid_map_key_value(Ve,Ctx)
+ end,true,Fs);
+ {bin,_,Es} ->
+ % only check for value expressions to be valid
+ % invalid binary expressions are later checked in
+ % core and kernel
+ foldl(fun
+ ({bin_element,_,E,_,_},B) ->
+ B andalso is_valid_map_key_value(E,Ctx)
+ end,true,Es);
+ _ -> false
end.
%% record_def(Line, RecordName, [RecField], State) -> State.
@@ -2515,8 +2629,6 @@ find_field(_F, []) -> error.
%% Attr :: 'type' | 'opaque'
%% Checks that a type definition is valid.
--record(typeinfo, {attr, line}).
-
type_def(_Attr, _Line, {record, _RecName}, Fields, [], St0) ->
%% The record field names and such are checked in the record format.
%% We only need to check the types.
@@ -2538,22 +2650,20 @@ type_def(Attr, Line, TypeName, ProtoType, Args, St0) ->
case is_obsolete_builtin_type(TypePair) of
true -> StoreType(St0);
false ->
- case is_newly_introduced_builtin_type(TypePair) of
- %% allow some types just for bootstrapping
- true ->
- Warn = {new_builtin_type, TypePair},
- St1 = add_warning(Line, Warn, St0),
- StoreType(St1);
- false ->
- add_error(Line, {builtin_type, TypePair}, St0)
- end
+ case is_newly_introduced_builtin_type(TypePair) of
+ %% allow some types just for bootstrapping
+ true ->
+ Warn = {new_builtin_type, TypePair},
+ St1 = add_warning(Line, Warn, St0),
+ StoreType(St1);
+ false ->
+ add_error(Line, {builtin_type, TypePair}, St0)
+ end
end;
false ->
- case
- dict:is_key(TypePair, TypeDefs)
- orelse is_var_arity_type(TypeName)
- of
- true -> add_error(Line, {redefine_type, TypePair}, St0);
+ case dict:is_key(TypePair, TypeDefs) of
+ true ->
+ add_error(Line, {redefine_type, TypePair}, St0);
false ->
St1 = case
Attr =:= opaque andalso
@@ -2590,7 +2700,7 @@ check_type({paren_type, _L, [Type]}, SeenVars, St) ->
check_type({remote_type, L, [{atom, _, Mod}, {atom, _, Name}, Args]},
SeenVars, #lint{module=CurrentMod} = St) ->
case Mod =:= CurrentMod of
- true -> check_type({type, L, Name, Args}, SeenVars, St);
+ true -> check_type({user_type, L, Name, Args}, SeenVars, St);
false ->
lists:foldl(fun(T, {AccSeenVars, AccSt}) ->
check_type(T, AccSeenVars, AccSt)
@@ -2624,12 +2734,15 @@ check_type({type, L, range, [From, To]}, SeenVars, St) ->
_ -> add_error(L, {type_syntax, range}, St)
end,
{SeenVars, St1};
-check_type({type, _L, map, any}, SeenVars, St) -> {SeenVars, St};
+check_type({type, L, map, any}, SeenVars, St) ->
+ %% To get usage right while map/0 is a newly_introduced_builtin_type.
+ St1 = used_type({map, 0}, L, St),
+ {SeenVars, St1};
check_type({type, _L, map, Pairs}, SeenVars, St) ->
lists:foldl(fun(Pair, {AccSeenVars, AccSt}) ->
check_type(Pair, AccSeenVars, AccSt)
end, {SeenVars, St}, Pairs);
-check_type({type, _L, map_field_assoc, Dom, Range}, SeenVars, St) ->
+check_type({type, _L, map_field_assoc, [Dom, Range]}, SeenVars, St) ->
check_type({type, -1, product, [Dom, Range]}, SeenVars, St);
check_type({type, _L, tuple, any}, SeenVars, St) -> {SeenVars, St};
check_type({type, _L, any}, SeenVars, St) -> {SeenVars, St};
@@ -2648,41 +2761,39 @@ check_type({type, L, record, [Name|Fields]}, SeenVars, St) ->
check_record_types(L, Atom, Fields, SeenVars, St1);
_ -> {SeenVars, add_error(L, {type_syntax, record}, St)}
end;
-check_type({type, _L, product, Args}, SeenVars, St) ->
+check_type({type, _L, Tag, Args}, SeenVars, St) when Tag =:= product;
+ Tag =:= union;
+ Tag =:= tuple ->
lists:foldl(fun(T, {AccSeenVars, AccSt}) ->
check_type(T, AccSeenVars, AccSt)
end, {SeenVars, St}, Args);
check_type({type, La, TypeName, Args}, SeenVars, St) ->
- #lint{usage=Usage, module = Module, types=Types} = St,
+ #lint{module = Module, types=Types} = St,
Arity = length(Args),
TypePair = {TypeName, Arity},
- St1 = case is_var_arity_type(TypeName) of
- true -> St;
- false ->
- Obsolete = (is_warn_enabled(deprecated_type, St)
- andalso obsolete_builtin_type(TypePair)),
- IsObsolete =
- case Obsolete of
- {deprecated, Repl, _} when element(1, Repl) =/= Module ->
- case dict:find(TypePair, Types) of
- {ok, _} -> false;
- error -> true
- end;
- _ -> false
- end,
- case IsObsolete of
- true ->
+ Obsolete = (is_warn_enabled(deprecated_type, St)
+ andalso obsolete_builtin_type(TypePair)),
+ St1 = case Obsolete of
+ {deprecated, Repl, _} when element(1, Repl) =/= Module ->
+ case dict:find(TypePair, Types) of
+ {ok, _} ->
+ used_type(TypePair, La, St);
+ error ->
{deprecated, Replacement, Rel} = Obsolete,
Tag = deprecated_builtin_type,
W = {Tag, TypePair, Replacement, Rel},
- add_warning(La, W, St);
- false ->
- OldUsed = Usage#usage.used_types,
- UsedTypes = dict:store(TypePair, La, OldUsed),
- St#lint{usage=Usage#usage{used_types=UsedTypes}}
- end
- end,
+ add_warning(La, W, St)
+ end;
+ _ -> St
+ end,
check_type({type, -1, product, Args}, SeenVars, St1);
+check_type({user_type, L, TypeName, Args}, SeenVars, St) ->
+ Arity = length(Args),
+ TypePair = {TypeName, Arity},
+ St1 = used_type(TypePair, L, St),
+ lists:foldl(fun(T, {AccSeenVars, AccSt}) ->
+ check_type(T, AccSeenVars, AccSt)
+ end, {SeenVars, St1}, Args);
check_type(I, SeenVars, St) ->
case erl_eval:partial_eval(I) of
{integer,_ILn,_Integer} -> {SeenVars, St};
@@ -2724,92 +2835,24 @@ check_record_types([{type, _, field_type, [{atom, AL, FName}, Type]}|Left],
check_record_types([], _Name, _DefFields, SeenVars, St, _SeenFields) ->
{SeenVars, St}.
-is_var_arity_type(tuple) -> true;
-is_var_arity_type(product) -> true;
-is_var_arity_type(union) -> true;
-is_var_arity_type(record) -> true;
-is_var_arity_type(_) -> false.
-
-is_default_type({any, 0}) -> true;
-is_default_type({arity, 0}) -> true;
-is_default_type({array, 0}) -> true;
-is_default_type({atom, 0}) -> true;
-is_default_type({atom, 1}) -> true;
-is_default_type({binary, 0}) -> true;
-is_default_type({binary, 2}) -> true;
-is_default_type({bitstring, 0}) -> true;
-is_default_type({bool, 0}) -> true;
-is_default_type({boolean, 0}) -> true;
-is_default_type({byte, 0}) -> true;
-is_default_type({char, 0}) -> true;
-is_default_type({dict, 0}) -> true;
-is_default_type({digraph, 0}) -> true;
-is_default_type({float, 0}) -> true;
-is_default_type({'fun', 0}) -> true;
-is_default_type({'fun', 2}) -> true;
-is_default_type({function, 0}) -> true;
-is_default_type({gb_set, 0}) -> true;
-is_default_type({gb_tree, 0}) -> true;
-is_default_type({identifier, 0}) -> true;
-is_default_type({integer, 0}) -> true;
-is_default_type({integer, 1}) -> true;
-is_default_type({iodata, 0}) -> true;
-is_default_type({iolist, 0}) -> true;
-is_default_type({list, 0}) -> true;
-is_default_type({list, 1}) -> true;
-is_default_type({map, 0}) -> true;
-is_default_type({maybe_improper_list, 0}) -> true;
-is_default_type({maybe_improper_list, 2}) -> true;
-is_default_type({mfa, 0}) -> true;
-is_default_type({module, 0}) -> true;
-is_default_type({neg_integer, 0}) -> true;
-is_default_type({nil, 0}) -> true;
-is_default_type({no_return, 0}) -> true;
-is_default_type({node, 0}) -> true;
-is_default_type({non_neg_integer, 0}) -> true;
-is_default_type({none, 0}) -> true;
-is_default_type({nonempty_list, 0}) -> true;
-is_default_type({nonempty_list, 1}) -> true;
-is_default_type({nonempty_improper_list, 2}) -> true;
-is_default_type({nonempty_maybe_improper_list, 0}) -> true;
-is_default_type({nonempty_maybe_improper_list, 2}) -> true;
-is_default_type({nonempty_string, 0}) -> true;
-is_default_type({number, 0}) -> true;
-is_default_type({pid, 0}) -> true;
-is_default_type({port, 0}) -> true;
-is_default_type({pos_integer, 0}) -> true;
-is_default_type({queue, 0}) -> true;
-is_default_type({range, 2}) -> true;
-is_default_type({reference, 0}) -> true;
-is_default_type({set, 0}) -> true;
-is_default_type({string, 0}) -> true;
-is_default_type({term, 0}) -> true;
-is_default_type({timeout, 0}) -> true;
-is_default_type({var, 1}) -> true;
-is_default_type(_) -> false.
+used_type(TypePair, L, St) ->
+ Usage = St#lint.usage,
+ OldUsed = Usage#usage.used_types,
+ UsedTypes = dict:store(TypePair, L, OldUsed),
+ St#lint{usage=Usage#usage{used_types=UsedTypes}}.
+is_default_type({Name, NumberOfTypeVariables}) ->
+ erl_internal:is_type(Name, NumberOfTypeVariables).
+
+is_newly_introduced_builtin_type({map, 0}) -> true;
is_newly_introduced_builtin_type({Name, _}) when is_atom(Name) -> false.
is_obsolete_builtin_type(TypePair) ->
obsolete_builtin_type(TypePair) =/= no.
-%% Obsolete in OTP 17.0.
-obsolete_builtin_type({array, 0}) ->
- {deprecated, {array, array, 1}, "OTP 18.0"};
-obsolete_builtin_type({dict, 0}) ->
- {deprecated, {dict, dict, 2}, "OTP 18.0"};
-obsolete_builtin_type({digraph, 0}) ->
- {deprecated, {digraph, graph}, "OTP 18.0"};
-obsolete_builtin_type({gb_set, 0}) ->
- {deprecated, {gb_sets, set, 1}, "OTP 18.0"};
-obsolete_builtin_type({gb_tree, 0}) ->
- {deprecated, {gb_trees, tree, 2}, "OTP 18.0"};
-obsolete_builtin_type({queue, 0}) ->
- {deprecated, {queue, queue, 1}, "OTP 18.0"};
-obsolete_builtin_type({set, 0}) ->
- {deprecated, {sets, set, 1}, "OTP 18.0"};
-obsolete_builtin_type({tid, 0}) ->
- {deprecated, {ets, tid}, "OTP 18.0"};
+%% To keep Dialyzer silent...
+obsolete_builtin_type({1, 255}) ->
+ {deprecated, {2, 255}, ""};
obsolete_builtin_type({Name, A}) when is_atom(Name), is_integer(A) -> no.
%% spec_decl(Line, Fun, Types, State) -> State.
@@ -2821,7 +2864,7 @@ spec_decl(Line, MFA0, TypeSpecs, St0 = #lint{specs = Specs, module = Mod}) ->
end,
St1 = St0#lint{specs = dict:store(MFA, Line, Specs)},
case dict:is_key(MFA, Specs) of
- true -> add_error(Line, {redefine_spec, MFA}, St1);
+ true -> add_error(Line, {redefine_spec, MFA0}, St1);
false -> check_specs(TypeSpecs, Arity, St1)
end.
@@ -2829,16 +2872,50 @@ spec_decl(Line, MFA0, TypeSpecs, St0 = #lint{specs = Specs, module = Mod}) ->
callback_decl(Line, MFA0, TypeSpecs,
St0 = #lint{callbacks = Callbacks, module = Mod}) ->
- MFA = case MFA0 of
- {F, Arity} -> {Mod, F, Arity};
- {_M, _F, Arity} -> MFA0
- end,
- St1 = St0#lint{callbacks = dict:store(MFA, Line, Callbacks)},
- case dict:is_key(MFA, Callbacks) of
- true -> add_error(Line, {redefine_callback, MFA}, St1);
- false -> check_specs(TypeSpecs, Arity, St1)
+ case MFA0 of
+ {_M, _F, _A} -> add_error(Line, {bad_callback, MFA0}, St0);
+ {F, Arity} ->
+ MFA = {Mod, F, Arity},
+ St1 = St0#lint{callbacks = dict:store(MFA, Line, Callbacks)},
+ case dict:is_key(MFA, Callbacks) of
+ true -> add_error(Line, {redefine_callback, MFA0}, St1);
+ false -> check_specs(TypeSpecs, Arity, St1)
+ end
+ end.
+
+%% optional_callbacks(Line, FAs, State) -> State.
+
+optional_callbacks(Line, Term, St0) ->
+ try true = is_fa_list(Term), Term of
+ FAs ->
+ optional_cbs(Line, FAs, St0)
+ catch
+ _:_ ->
+ St0 % ignore others
end.
+optional_cbs(_Line, [], St) ->
+ St;
+optional_cbs(Line, [{F,A}|FAs], St0) ->
+ #lint{optional_callbacks = OptionalCbs, module = Mod} = St0,
+ MFA = {Mod, F, A},
+ St1 = St0#lint{optional_callbacks = dict:store(MFA, Line, OptionalCbs)},
+ St2 = case dict:is_key(MFA, OptionalCbs) of
+ true ->
+ add_error(Line, {redefine_optional_callback, {F,A}}, St1);
+ false ->
+ St1
+ end,
+ optional_cbs(Line, FAs, St2).
+
+is_fa_list([E|L]) -> is_fa(E) andalso is_fa_list(L);
+is_fa_list([]) -> true;
+is_fa_list(_) -> false.
+
+is_fa({FuncName, Arity})
+ when is_atom(FuncName), is_integer(Arity), Arity >= 0 -> true;
+is_fa(_) -> false.
+
check_specs([FunType|Left], Arity, St0) ->
{FunType1, CTypes} =
case FunType of
@@ -2862,10 +2939,11 @@ check_specs([], _Arity, St) ->
St.
check_specs_without_function(#lint{module=Mod,defined=Funcs,specs=Specs}=St) ->
- Fun = fun({M, F, A} = MFA, Line, AccSt) when M =:= Mod ->
- case gb_sets:is_element({F, A}, Funcs) of
+ Fun = fun({M, F, A}, Line, AccSt) when M =:= Mod ->
+ FA = {F, A},
+ case gb_sets:is_element(FA, Funcs) of
true -> AccSt;
- false -> add_error(Line, {spec_fun_undefined, MFA}, AccSt)
+ false -> add_error(Line, {spec_fun_undefined, FA}, AccSt)
end;
({_M, _F, _A}, _Line, AccSt) -> AccSt
end,