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-rw-r--r--lib/compiler/src/sys_core_fold.erl27
1 files changed, 21 insertions, 6 deletions
diff --git a/lib/compiler/src/sys_core_fold.erl b/lib/compiler/src/sys_core_fold.erl
index a9bd363ee1..bb3a9c7628 100644
--- a/lib/compiler/src/sys_core_fold.erl
+++ b/lib/compiler/src/sys_core_fold.erl
@@ -108,17 +108,29 @@
module(#c_module{defs=Ds0}=Mod, Opts) ->
put(no_inline_list_funcs, not member(inline_list_funcs, Opts)),
- case get(new_var_num) of
- undefined -> put(new_var_num, 0);
- _ -> ok
- end,
init_warnings(),
Ds1 = [function_1(D) || D <- Ds0],
+ erase(new_var_num),
erase(no_inline_list_funcs),
{ok,Mod#c_module{defs=Ds1},get_warnings()}.
function_1({#c_var{name={F,Arity}}=Name,B0}) ->
+ %% Find a suitable starting value for the variable counter. Note
+ %% that this pass assumes that new_var_name/1 returns a variable
+ %% name distinct from any variable used in the entire body of
+ %% the function. We use integers as variable names to avoid
+ %% filling up the atom table when compiling huge functions.
+ Count = cerl_trees:next_free_variable_name(B0),
+ put(new_var_num, Count),
try
+ %% Find a suitable starting value for the variable
+ %% counter. Note that this pass assumes that new_var_name/1
+ %% returns a variable name distinct from any variable used in
+ %% the entire body of the function. We use integers as
+ %% variable names to avoid filling up the atom table when
+ %% compiling huge functions.
+ Count = cerl_trees:next_free_variable_name(B0),
+ put(new_var_num, Count),
B = find_fixpoint(fun(Core) ->
%% This must be a fun!
expr(Core, value, sub_new())
@@ -392,7 +404,7 @@ expr(#c_receive{clauses=Cs0,timeout=T0,action=A0}=Recv, Ctxt, Sub) ->
expr(#c_apply{anno=Anno,op=Op0,args=As0}=App, _, Sub) ->
Op1 = expr(Op0, value, Sub),
As1 = expr_list(As0, value, Sub),
- case cerl:is_data(Op1) of
+ case cerl:is_data(Op1) andalso not is_literal_fun(Op1) of
false ->
App#c_apply{op=Op1,args=As1};
true ->
@@ -487,6 +499,9 @@ bitstr_list(Es, Sub) ->
bitstr(#c_bitstr{val=Val,size=Size}=BinSeg, Sub) ->
BinSeg#c_bitstr{val=expr(Val, Sub),size=expr(Size, value, Sub)}.
+is_literal_fun(#c_literal{val=F}) -> is_function(F);
+is_literal_fun(_) -> false.
+
%% is_safe_simple(Expr, Sub) -> true | false.
%% A safe simple cannot fail with badarg and is safe to use
%% in a guard.
@@ -2154,7 +2169,7 @@ make_var(A) ->
make_var_name() ->
N = get(new_var_num),
put(new_var_num, N+1),
- list_to_atom("@f"++integer_to_list(N)).
+ N.
letify(Bs, Body) ->
Ann = cerl:get_ann(Body),