[Ada] Crash on partial initialization of controlled component

This patch modifies the late expansion of record aggregates to ensure that the
generated code which handles a controlled component initialized by a function
call is inserted in line with the rest of the initialization code, rather than
before the record aggregate. This way the function call has proper access to
the discriminants of the object being created.

2018-05-22  Hristian Kirtchev  <kirtchev@adacore.com>

gcc/ada/

	* exp_aggr.adb (Initialize_Ctrl_Record_Component): Insert the generated
	code for a transient component in line with the rest of the
	initialization code, rather than before the aggregate. This ensures
	that the component has proper visibility of the discriminants.

gcc/testsuite/

	* gnat.dg/controlled8.adb: New testcase.

From-SVN: r260532
This commit is contained in:
Hristian Kirtchev 2018-05-22 13:26:55 +00:00 committed by Pierre-Marie de Rodat
parent 9820b38978
commit 02db816993
4 changed files with 81 additions and 3 deletions

View file

@ -1,3 +1,10 @@
2018-05-22 Hristian Kirtchev <kirtchev@adacore.com>
* exp_aggr.adb (Initialize_Ctrl_Record_Component): Insert the generated
code for a transient component in line with the rest of the
initialization code, rather than before the aggregate. This ensures
that the component has proper visibility of the discriminants.
2018-05-22 Jerome Lambourg <lambourg@adacore.com>
* adaint.c: Reorganize QNX-specific macros, use syspage to retreive the

View file

@ -2846,7 +2846,7 @@ package body Exp_Aggr is
In_Place_Expansion :=
Nkind (Init_Expr) = N_Function_Call
and then not Is_Build_In_Place_Result_Type (Comp_Typ);
and then not Is_Build_In_Place_Result_Type (Comp_Typ);
-- The initialization expression is a controlled function call.
-- Perform in-place removal of side effects to avoid creating a
@ -2865,7 +2865,11 @@ package body Exp_Aggr is
Set_No_Side_Effect_Removal (Init_Expr);
-- Install all hook-related declarations and prepare the clean up
-- statements.
-- statements. The generated code follows the initialization order
-- of individual components and discriminants, rather than being
-- inserted prior to the aggregate. This ensures that a transient
-- component which mentions a discriminant has proper visibility
-- of the discriminant.
Process_Transient_Component
(Loc => Loc,
@ -2873,7 +2877,7 @@ package body Exp_Aggr is
Init_Expr => Init_Expr,
Fin_Call => Fin_Call,
Hook_Clear => Hook_Clear,
Aggr => N);
Stmts => Stmts);
end if;
-- Use the noncontrolled component initialization circuitry to

View file

@ -1,3 +1,7 @@
2018-05-22 Hristian Kirtchev <kirtchev@adacore.com>
* gnat.dg/controlled8.adb: New testcase.
2018-05-22 Patrick Bernardi <bernardi@adacore.com>
* gnat.dg/discr50.adb: New testcase.

View file

@ -0,0 +1,63 @@
-- { dg-do compile }
with Ada.Finalization; use Ada.Finalization;
procedure Controlled8
(Int_Input : Integer;
Str_Input : String)
is
type Ctrl is new Controlled with null record;
type Integer_Ptr is access all Integer;
type String_Ptr is access all String;
function Func (Val : Integer) return Ctrl is
begin return Result : Ctrl; end Func;
function Func (Val : String) return Ctrl is
begin return Result : Ctrl; end Func;
type Rec_1 (Val : Integer) is record
Comp : Ctrl := Func (Val);
end record;
type Rec_2 (Val : access Integer) is record
Comp : Ctrl := Func (Val.all);
end record;
type Rec_3 (Val : Integer_Ptr) is record
Comp : Ctrl := Func (Val.all);
end record;
type Rec_4 (Val : access String) is record
Comp : Ctrl := Func (Val.all);
end record;
type Rec_5 (Val : String_Ptr) is record
Comp : Ctrl := Func (Val.all);
end record;
Int_Heap : constant Integer_Ptr := new Integer'(Int_Input);
Int_Stack : aliased Integer := Int_Input;
Str_Heap : constant String_Ptr := new String'(Str_Input);
Str_Stack : aliased String := Str_Input;
Obj_1 : constant Rec_1 := (Val => Int_Input, others => <>);
Obj_2 : constant Rec_2 := (Val => Int_Heap, others => <>);
Obj_3 : constant Rec_2 := (Val => Int_Stack'Access, others => <>);
Obj_4 : constant Rec_2 := (Val => new Integer'(Int_Input), others => <>);
Obj_5 : constant Rec_3 := (Val => Int_Heap, others => <>);
Obj_6 : constant Rec_3 := (Val => Int_Stack'Access, others => <>);
Obj_7 : constant Rec_3 := (Val => new Integer'(Int_Input), others => <>);
Obj_8 : constant Rec_4 := (Val => Str_Heap, others => <>);
Obj_9 : constant Rec_4 := (Val => Str_Stack'Access, others => <>);
Obj_10 : constant Rec_4 := (Val => new String'(Str_Input), others => <>);
Obj_11 : constant Rec_5 := (Val => Str_Heap, others => <>);
Obj_12 : constant Rec_5 := (Val => Str_Stack'Access, others => <>);
Obj_13 : constant Rec_5 := (Val => new String'(Str_Input), others => <>);
begin
null;
end Controlled8;