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|
------------------------------------------------------------------------------
-- --
-- GNAT COMPILER COMPONENTS --
-- --
-- R E S T R I C T --
-- --
-- B o d y --
-- --
-- Copyright (C) 1992-2019, Free Software Foundation, Inc. --
-- --
-- GNAT is free software; you can redistribute it and/or modify it under --
-- terms of the GNU General Public License as published by the Free Soft- --
-- ware Foundation; either version 3, or (at your option) any later ver- --
-- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
-- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
-- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
-- for more details. You should have received a copy of the GNU General --
-- Public License distributed with GNAT; see file COPYING3. If not, go to --
-- http://www.gnu.org/licenses for a complete copy of the license. --
-- --
-- GNAT was originally developed by the GNAT team at New York University. --
-- Extensive contributions were provided by Ada Core Technologies Inc. --
-- --
------------------------------------------------------------------------------
with Atree; use Atree;
with Casing; use Casing;
with Einfo; use Einfo;
with Errout; use Errout;
with Debug; use Debug;
with Fname; use Fname;
with Fname.UF; use Fname.UF;
with Lib; use Lib;
with Opt; use Opt;
with Sinfo; use Sinfo;
with Sinput; use Sinput;
with Stand; use Stand;
with Uname; use Uname;
package body Restrict is
-------------------------------
-- SPARK Restriction Control --
-------------------------------
-- SPARK HIDE directives allow the effect of the SPARK_05 restriction to be
-- turned off for a specified region of code, and the following tables are
-- the data structures used to keep track of these regions.
-- The table contains pairs of source locations, the first being the start
-- location for hidden region, and the second being the end location.
-- Note that the start location is included in the hidden region, while
-- the end location is excluded from it. (It typically corresponds to the
-- next token during scanning.)
type SPARK_Hide_Entry is record
Start : Source_Ptr;
Stop : Source_Ptr;
end record;
package SPARK_Hides is new Table.Table (
Table_Component_Type => SPARK_Hide_Entry,
Table_Index_Type => Natural,
Table_Low_Bound => 1,
Table_Initial => 100,
Table_Increment => 200,
Table_Name => "SPARK Hides");
--------------------------------
-- Package Local Declarations --
--------------------------------
Config_Cunit_Boolean_Restrictions : Save_Cunit_Boolean_Restrictions;
-- Save compilation unit restrictions set by config pragma files
Restricted_Profile_Result : Boolean := False;
-- This switch memoizes the result of Restricted_Profile function calls for
-- improved efficiency. Valid only if Restricted_Profile_Cached is True.
-- Note: if this switch is ever set True, it is never turned off again.
Restricted_Profile_Cached : Boolean := False;
-- This flag is set to True if the Restricted_Profile_Result contains the
-- correct cached result of Restricted_Profile calls.
No_Specification_Of_Aspects : array (Aspect_Id) of Source_Ptr :=
(others => No_Location);
-- Entries in this array are set to point to a previously occuring pragma
-- that activates a No_Specification_Of_Aspect check.
No_Specification_Of_Aspect_Warning : array (Aspect_Id) of Boolean :=
(others => True);
-- An entry in this array is set False in reponse to a previous call to
-- Set_No_Speficiation_Of_Aspect for pragmas in the main unit that
-- specify Warning as False. Once set False, an entry is never reset.
No_Specification_Of_Aspect_Set : Boolean := False;
-- Set True if any entry of No_Specifcation_Of_Aspects has been set True.
-- Once set True, this is never turned off again.
No_Use_Of_Attribute : array (Attribute_Id) of Source_Ptr :=
(others => No_Location);
No_Use_Of_Attribute_Warning : array (Attribute_Id) of Boolean :=
(others => False);
No_Use_Of_Attribute_Set : Boolean := False;
-- Indicates that No_Use_Of_Attribute was set at least once
No_Use_Of_Pragma : array (Pragma_Id) of Source_Ptr :=
(others => No_Location);
-- Source location of pragma No_Use_Of_Pragma for given pragma, a value
-- of System_Location indicates occurrence in system.ads.
No_Use_Of_Pragma_Warning : array (Pragma_Id) of Boolean :=
(others => False);
No_Use_Of_Pragma_Set : Boolean := False;
-- Indicates that No_Use_Of_Pragma was set at least once
-----------------------
-- Local Subprograms --
-----------------------
procedure Restriction_Msg (R : Restriction_Id; N : Node_Id);
-- Called if a violation of restriction R at node N is found. This routine
-- outputs the appropriate message or messages taking care of warning vs
-- real violation, serious vs non-serious, implicit vs explicit, the second
-- message giving the profile name if needed, and the location information.
function Same_Entity (E1, E2 : Node_Id) return Boolean;
-- Returns True iff E1 and E2 represent the same entity. Used for handling
-- of No_Use_Of_Entity => fully_qualified_ENTITY restriction case.
function Same_Unit (U1, U2 : Node_Id) return Boolean;
-- Returns True iff U1 and U2 represent the same library unit. Used for
-- handling of No_Dependence => Unit restriction case.
function Suppress_Restriction_Message (N : Node_Id) return Boolean;
-- N is the node for a possible restriction violation message, but the
-- message is to be suppressed if this is an internal file and this file is
-- not the main unit. Returns True if message is to be suppressed.
-------------------
-- Abort_Allowed --
-------------------
function Abort_Allowed return Boolean is
begin
if Restrictions.Set (No_Abort_Statements)
and then Restrictions.Set (Max_Asynchronous_Select_Nesting)
and then Restrictions.Value (Max_Asynchronous_Select_Nesting) = 0
then
return False;
else
return True;
end if;
end Abort_Allowed;
----------------------------------------
-- Add_To_Config_Boolean_Restrictions --
----------------------------------------
procedure Add_To_Config_Boolean_Restrictions (R : Restriction_Id) is
begin
Config_Cunit_Boolean_Restrictions (R) := True;
end Add_To_Config_Boolean_Restrictions;
-- Add specified restriction to stored configuration boolean restrictions.
-- This is used for handling the special case of No_Elaboration_Code.
-------------------------
-- Check_Compiler_Unit --
-------------------------
procedure Check_Compiler_Unit (Feature : String; N : Node_Id) is
begin
if Compiler_Unit then
Error_Msg_N (Feature & " not allowed in compiler unit!!??", N);
end if;
end Check_Compiler_Unit;
procedure Check_Compiler_Unit (Feature : String; Loc : Source_Ptr) is
begin
if Compiler_Unit then
Error_Msg (Feature & " not allowed in compiler unit!!??", Loc);
end if;
end Check_Compiler_Unit;
------------------------------------
-- Check_Elaboration_Code_Allowed --
------------------------------------
procedure Check_Elaboration_Code_Allowed (N : Node_Id) is
begin
Check_Restriction (No_Elaboration_Code, N);
end Check_Elaboration_Code_Allowed;
-----------------------------------------
-- Check_Implicit_Dynamic_Code_Allowed --
-----------------------------------------
procedure Check_Implicit_Dynamic_Code_Allowed (N : Node_Id) is
begin
Check_Restriction (No_Implicit_Dynamic_Code, N);
end Check_Implicit_Dynamic_Code_Allowed;
--------------------------------
-- Check_No_Implicit_Aliasing --
--------------------------------
procedure Check_No_Implicit_Aliasing (Obj : Node_Id) is
E : Entity_Id;
begin
-- If restriction not active, nothing to check
if not Restriction_Active (No_Implicit_Aliasing) then
return;
end if;
-- If we have an entity name, check entity
if Is_Entity_Name (Obj) then
E := Entity (Obj);
-- Restriction applies to entities that are objects
if Is_Object (E) then
if Is_Aliased (E) then
return;
elsif Present (Renamed_Object (E)) then
Check_No_Implicit_Aliasing (Renamed_Object (E));
return;
end if;
-- If we don't have an object, then it's OK
else
return;
end if;
-- For selected component, check selector
elsif Nkind (Obj) = N_Selected_Component then
Check_No_Implicit_Aliasing (Selector_Name (Obj));
return;
-- Indexed component is OK if aliased components
elsif Nkind (Obj) = N_Indexed_Component then
if Has_Aliased_Components (Etype (Prefix (Obj)))
or else
(Is_Access_Type (Etype (Prefix (Obj)))
and then Has_Aliased_Components
(Designated_Type (Etype (Prefix (Obj)))))
then
return;
end if;
-- For type conversion, check converted expression
elsif Nkind_In (Obj, N_Unchecked_Type_Conversion, N_Type_Conversion) then
Check_No_Implicit_Aliasing (Expression (Obj));
return;
-- Explicit dereference is always OK
elsif Nkind (Obj) = N_Explicit_Dereference then
return;
end if;
-- If we fall through, then we have an aliased view that does not meet
-- the rules for being explicitly aliased, so issue restriction msg.
Check_Restriction (No_Implicit_Aliasing, Obj);
end Check_No_Implicit_Aliasing;
----------------------------------
-- Check_No_Implicit_Heap_Alloc --
----------------------------------
procedure Check_No_Implicit_Heap_Alloc (N : Node_Id) is
begin
Check_Restriction (No_Implicit_Heap_Allocations, N);
end Check_No_Implicit_Heap_Alloc;
----------------------------------
-- Check_No_Implicit_Task_Alloc --
----------------------------------
procedure Check_No_Implicit_Task_Alloc (N : Node_Id) is
begin
Check_Restriction (No_Implicit_Task_Allocations, N);
end Check_No_Implicit_Task_Alloc;
---------------------------------------
-- Check_No_Implicit_Protected_Alloc --
---------------------------------------
procedure Check_No_Implicit_Protected_Alloc (N : Node_Id) is
begin
Check_Restriction (No_Implicit_Protected_Object_Allocations, N);
end Check_No_Implicit_Protected_Alloc;
-----------------------------------
-- Check_Obsolescent_2005_Entity --
-----------------------------------
procedure Check_Obsolescent_2005_Entity (E : Entity_Id; N : Node_Id) is
function Chars_Is (E : Entity_Id; S : String) return Boolean;
-- Return True iff Chars (E) matches S (given in lower case)
--------------
-- Chars_Is --
--------------
function Chars_Is (E : Entity_Id; S : String) return Boolean is
Nam : constant Name_Id := Chars (E);
begin
if Length_Of_Name (Nam) /= S'Length then
return False;
else
return Get_Name_String (Nam) = S;
end if;
end Chars_Is;
-- Start of processing for Check_Obsolescent_2005_Entity
begin
if Restriction_Check_Required (No_Obsolescent_Features)
and then Ada_Version >= Ada_2005
and then Chars_Is (Scope (E), "handling")
and then Chars_Is (Scope (Scope (E)), "characters")
and then Chars_Is (Scope (Scope (Scope (E))), "ada")
and then Scope (Scope (Scope (Scope (E)))) = Standard_Standard
then
if Chars_Is (E, "is_character") or else
Chars_Is (E, "is_string") or else
Chars_Is (E, "to_character") or else
Chars_Is (E, "to_string") or else
Chars_Is (E, "to_wide_character") or else
Chars_Is (E, "to_wide_string")
then
Check_Restriction (No_Obsolescent_Features, N);
end if;
end if;
end Check_Obsolescent_2005_Entity;
---------------------------
-- Check_Restricted_Unit --
---------------------------
procedure Check_Restricted_Unit (U : Unit_Name_Type; N : Node_Id) is
begin
if Suppress_Restriction_Message (N) then
return;
elsif Is_Spec_Name (U) then
declare
Fnam : constant File_Name_Type :=
Get_File_Name (U, Subunit => False);
begin
-- Get file name
Get_Name_String (Fnam);
-- Nothing to do if name not at least 5 characters long ending
-- in .ads or .adb extension, which we strip.
if Name_Len < 5
or else (Name_Buffer (Name_Len - 3 .. Name_Len) /= ".ads"
and then
Name_Buffer (Name_Len - 3 .. Name_Len) /= ".adb")
then
return;
end if;
-- Strip extension and pad to eight characters
Name_Len := Name_Len - 4;
Add_Str_To_Name_Buffer ((Name_Len + 1 .. 8 => ' '));
-- If predefined unit, check the list of restricted units
if Is_Predefined_File_Name (Fnam) then
for J in Unit_Array'Range loop
if Name_Len = 8
and then Name_Buffer (1 .. 8) = Unit_Array (J).Filenm
then
Check_Restriction (Unit_Array (J).Res_Id, N);
end if;
end loop;
-- If not predefined unit, then one special check still
-- remains. GNAT.Current_Exception is not allowed if we have
-- restriction No_Exception_Propagation active.
else
if Name_Buffer (1 .. 8) = "g-curexc" then
Check_Restriction (No_Exception_Propagation, N);
end if;
end if;
end;
end if;
end Check_Restricted_Unit;
-----------------------
-- Check_Restriction --
-----------------------
procedure Check_Restriction
(R : Restriction_Id;
N : Node_Id;
V : Uint := Uint_Minus_1)
is
Msg_Issued : Boolean;
pragma Unreferenced (Msg_Issued);
begin
Check_Restriction (Msg_Issued, R, N, V);
end Check_Restriction;
procedure Check_Restriction
(Msg_Issued : out Boolean;
R : Restriction_Id;
N : Node_Id;
V : Uint := Uint_Minus_1)
is
VV : Integer;
-- V converted to integer form. If V is greater than Integer'Last,
-- it is reset to minus 1 (unknown value).
procedure Update_Restrictions (Info : in out Restrictions_Info);
-- Update violation information in Info.Violated and Info.Count
-------------------------
-- Update_Restrictions --
-------------------------
procedure Update_Restrictions (Info : in out Restrictions_Info) is
begin
-- If not violated, set as violated now
if not Info.Violated (R) then
Info.Violated (R) := True;
if R in All_Parameter_Restrictions then
if VV < 0 then
Info.Unknown (R) := True;
Info.Count (R) := 1;
else
Info.Count (R) := VV;
end if;
end if;
-- Otherwise if violated already and a parameter restriction,
-- update count by maximizing or summing depending on restriction.
elsif R in All_Parameter_Restrictions then
-- If new value is unknown, result is unknown
if VV < 0 then
Info.Unknown (R) := True;
-- If checked by maximization, nothing to do because the
-- check is per-object.
elsif R in Checked_Max_Parameter_Restrictions then
null;
-- If checked by adding, do add, checking for overflow
elsif R in Checked_Add_Parameter_Restrictions then
declare
pragma Unsuppress (Overflow_Check);
begin
Info.Count (R) := Info.Count (R) + VV;
exception
when Constraint_Error =>
Info.Count (R) := Integer'Last;
Info.Unknown (R) := True;
end;
-- Should not be able to come here, known counts should only
-- occur for restrictions that are Checked_max or Checked_Sum.
else
raise Program_Error;
end if;
end if;
end Update_Restrictions;
-- Start of processing for Check_Restriction
begin
Msg_Issued := False;
-- In CodePeer mode, we do not want to check for any restriction, or set
-- additional restrictions other than those already set in gnat1drv.adb
-- so that we have consistency between each compilation.
-- In GNATprove mode restrictions are checked, except for
-- No_Initialize_Scalars, which is implicitly set in gnat1drv.adb.
if CodePeer_Mode
or else (GNATprove_Mode and then R = No_Initialize_Scalars)
then
return;
end if;
-- In SPARK 05 mode, issue an error for any use of class-wide, even if
-- the No_Dispatch restriction is not set.
if R = No_Dispatch then
Check_SPARK_05_Restriction ("class-wide is not allowed", N);
end if;
if UI_Is_In_Int_Range (V) then
VV := Integer (UI_To_Int (V));
else
VV := -1;
end if;
-- Count can only be specified in the checked val parameter case
pragma Assert (VV < 0 or else R in Checked_Val_Parameter_Restrictions);
-- Nothing to do if value of zero specified for parameter restriction
if VV = 0 then
return;
end if;
-- Update current restrictions
Update_Restrictions (Restrictions);
-- If in main extended unit, update main restrictions as well. Note
-- that as usual we check for Main_Unit explicitly to deal with the
-- case of configuration pragma files.
if Current_Sem_Unit = Main_Unit
or else In_Extended_Main_Source_Unit (N)
then
Update_Restrictions (Main_Restrictions);
end if;
-- Nothing to do if restriction message suppressed
if Suppress_Restriction_Message (N) then
null;
-- If restriction not set, nothing to do
elsif not Restrictions.Set (R) then
null;
-- Don't complain about No_Obsolescent_Features in an instance, since we
-- will complain on the template, which is much better. Are there other
-- cases like this ??? Do we need a more general mechanism ???
elsif R = No_Obsolescent_Features
and then Instantiation_Location (Sloc (N)) /= No_Location
then
null;
-- Here if restriction set, check for violation (this is a Boolean
-- restriction, or a parameter restriction with a value of zero and an
-- unknown count, or a parameter restriction with a known value that
-- exceeds the restriction count).
elsif R in All_Boolean_Restrictions
or else (Restrictions.Unknown (R)
and then Restrictions.Value (R) = 0)
or else Restrictions.Count (R) > Restrictions.Value (R)
then
Msg_Issued := True;
Restriction_Msg (R, N);
end if;
-- For Max_Entries and the like, do not carry forward the violation
-- count because it does not affect later declarations.
if R in Checked_Max_Parameter_Restrictions then
Restrictions.Count (R) := 0;
Restrictions.Violated (R) := False;
end if;
end Check_Restriction;
-------------------------------------
-- Check_Restriction_No_Dependence --
-------------------------------------
procedure Check_Restriction_No_Dependence (U : Node_Id; Err : Node_Id) is
DU : Node_Id;
begin
-- Ignore call if node U is not in the main source unit. This avoids
-- cascaded errors, e.g. when Ada.Containers units with other units.
-- However, allow Standard_Location here, since this catches some cases
-- of constructs that get converted to run-time calls.
if not In_Extended_Main_Source_Unit (U)
and then Sloc (U) /= Standard_Location
then
return;
end if;
-- Loop through entries in No_Dependence table to check each one in turn
for J in No_Dependences.First .. No_Dependences.Last loop
DU := No_Dependences.Table (J).Unit;
if Same_Unit (U, DU) then
Error_Msg_Sloc := Sloc (DU);
Error_Msg_Node_1 := DU;
if No_Dependences.Table (J).Warn then
Error_Msg
("?*?violation of restriction `No_Dependence '='> &`#",
Sloc (Err));
else
Error_Msg
("|violation of restriction `No_Dependence '='> &`#",
Sloc (Err));
end if;
return;
end if;
end loop;
end Check_Restriction_No_Dependence;
--------------------------------------------------
-- Check_Restriction_No_Specification_Of_Aspect --
--------------------------------------------------
procedure Check_Restriction_No_Specification_Of_Aspect (N : Node_Id) is
A_Id : Aspect_Id;
Id : Node_Id;
begin
-- Ignore call if no instances of this restriction set
if not No_Specification_Of_Aspect_Set then
return;
end if;
-- Ignore call if node N is not in the main source unit, since we only
-- give messages for the main unit. This avoids giving messages for
-- aspects that are specified in withed units.
if not In_Extended_Main_Source_Unit (N) then
return;
end if;
Id := Identifier (N);
A_Id := Get_Aspect_Id (Chars (Id));
pragma Assert (A_Id /= No_Aspect);
Error_Msg_Sloc := No_Specification_Of_Aspects (A_Id);
if Error_Msg_Sloc /= No_Location then
Error_Msg_Node_1 := Id;
Error_Msg_Warn := No_Specification_Of_Aspect_Warning (A_Id);
Error_Msg_N
("<*<violation of restriction `No_Specification_Of_Aspect '='> &`#",
Id);
end if;
end Check_Restriction_No_Specification_Of_Aspect;
-------------------------------------------
-- Check_Restriction_No_Use_Of_Attribute --
--------------------------------------------
procedure Check_Restriction_No_Use_Of_Attribute (N : Node_Id) is
Attr_Id : Attribute_Id;
Attr_Nam : Name_Id;
begin
-- Nothing to do if the attribute is not in the main source unit, since
-- we only give messages for the main unit. This avoids giving messages
-- for attributes that are specified in withed units.
if not In_Extended_Main_Source_Unit (N) then
return;
-- Nothing to do if not checking No_Use_Of_Attribute
elsif not No_Use_Of_Attribute_Set then
return;
-- Do not consider internally generated attributes because this leads to
-- bizarre errors.
elsif not Comes_From_Source (N) then
return;
end if;
if Nkind (N) = N_Attribute_Definition_Clause then
Attr_Nam := Chars (N);
else
pragma Assert (Nkind (N) = N_Attribute_Reference);
Attr_Nam := Attribute_Name (N);
end if;
Attr_Id := Get_Attribute_Id (Attr_Nam);
Error_Msg_Sloc := No_Use_Of_Attribute (Attr_Id);
if Error_Msg_Sloc /= No_Location then
Error_Msg_Name_1 := Attr_Nam;
Error_Msg_Warn := No_Use_Of_Attribute_Warning (Attr_Id);
Error_Msg_N
("<*<violation of restriction `No_Use_Of_Attribute '='> %` #", N);
end if;
end Check_Restriction_No_Use_Of_Attribute;
----------------------------------------
-- Check_Restriction_No_Use_Of_Entity --
----------------------------------------
procedure Check_Restriction_No_Use_Of_Entity (N : Node_Id) is
begin
-- Error defence (not clearly necessary, but better safe)
if No (Entity (N)) then
return;
end if;
-- If simple name of entity not flagged with Boolean2 flag, then there
-- cannot be a matching entry in the table, so skip the search.
if Get_Name_Table_Boolean2 (Chars (Entity (N))) = False then
return;
end if;
-- Restriction is only recognized within a configuration pragma file,
-- or within a unit of the main extended program. Note: the test for
-- Main_Unit is needed to properly include the case of configuration
-- pragma files.
if Current_Sem_Unit /= Main_Unit
and then not In_Extended_Main_Source_Unit (N)
then
return;
end if;
-- Here we must search the table
for J in No_Use_Of_Entity.First .. No_Use_Of_Entity.Last loop
declare
NE_Ent : NE_Entry renames No_Use_Of_Entity.Table (J);
Ent : Entity_Id;
Expr : Node_Id;
begin
Ent := Entity (N);
Expr := NE_Ent.Entity;
loop
-- Here if at outer level of entity name in reference (handle
-- also the direct use of Text_IO in the pragma). For example:
-- pragma Restrictions (No_Use_Of_Entity => Text_IO.Put);
if Scope (Ent) = Standard_Standard
or else (Nkind (Expr) = N_Identifier
and then Chars (Ent) = Name_Text_IO
and then Chars (Scope (Ent)) = Name_Ada
and then Scope (Scope (Ent)) = Standard_Standard)
then
if Nkind_In (Expr, N_Identifier, N_Operator_Symbol)
and then Chars (Ent) = Chars (Expr)
then
Error_Msg_Node_1 := N;
Error_Msg_Warn := NE_Ent.Warn;
Error_Msg_Sloc := Sloc (NE_Ent.Entity);
Error_Msg_N
("<*<reference to & violates restriction "
& "No_Use_Of_Entity #", N);
return;
else
exit;
end if;
-- Here if at outer level of entity name in table
elsif Nkind_In (Expr, N_Identifier, N_Operator_Symbol) then
exit;
-- Here if neither at the outer level
else
pragma Assert (Nkind (Expr) = N_Selected_Component);
exit when Chars (Selector_Name (Expr)) /= Chars (Ent);
end if;
-- Move up a level
loop
Ent := Scope (Ent);
exit when not Is_Internal_Name (Chars (Ent));
end loop;
Expr := Prefix (Expr);
end loop;
end;
end loop;
end Check_Restriction_No_Use_Of_Entity;
----------------------------------------
-- Check_Restriction_No_Use_Of_Pragma --
----------------------------------------
procedure Check_Restriction_No_Use_Of_Pragma (N : Node_Id) is
Id : constant Node_Id := Pragma_Identifier (N);
P_Id : constant Pragma_Id := Get_Pragma_Id (Chars (Id));
begin
-- Nothing to do if the pragma is not in the main source unit, since we
-- only give messages for the main unit. This avoids giving messages for
-- pragmas that are specified in withed units.
if not In_Extended_Main_Source_Unit (N) then
return;
-- Nothing to do if not checking No_Use_Of_Pragma
elsif not No_Use_Of_Pragma_Set then
return;
-- Do not consider internally generated pragmas because this leads to
-- bizarre errors.
elsif not Comes_From_Source (N) then
return;
end if;
Error_Msg_Sloc := No_Use_Of_Pragma (P_Id);
if Error_Msg_Sloc /= No_Location then
Error_Msg_Warn := No_Use_Of_Pragma_Warning (P_Id);
Error_Msg_N
("<*<violation of restriction `No_Use_Of_Pragma '='> &` #", Id);
end if;
end Check_Restriction_No_Use_Of_Pragma;
--------------------------------
-- Check_SPARK_05_Restriction --
--------------------------------
procedure Check_SPARK_05_Restriction
(Msg : String;
N : Node_Id;
Force : Boolean := False)
is
Msg_Issued : Boolean;
Save_Error_Msg_Sloc : Source_Ptr;
Onode : constant Node_Id := Original_Node (N);
begin
-- Output message if Force set
if Force
-- Or if this node comes from source
or else Comes_From_Source (N)
-- Or if this is a range node which rewrites a range attribute and
-- the range attribute comes from source.
or else (Nkind (N) = N_Range
and then Nkind (Onode) = N_Attribute_Reference
and then Attribute_Name (Onode) = Name_Range
and then Comes_From_Source (Onode))
-- Or this is an expression that does not come from source, which is
-- a rewriting of an expression that does come from source.
or else (Nkind (N) in N_Subexpr and then Comes_From_Source (Onode))
then
if Restriction_Check_Required (SPARK_05)
and then Is_In_Hidden_Part_In_SPARK (Sloc (N))
then
return;
end if;
-- Since the call to Restriction_Msg from Check_Restriction may set
-- Error_Msg_Sloc to the location of the pragma restriction, save and
-- restore the previous value of the global variable around the call.
Save_Error_Msg_Sloc := Error_Msg_Sloc;
Check_Restriction (Msg_Issued, SPARK_05, First_Node (N));
Error_Msg_Sloc := Save_Error_Msg_Sloc;
if Msg_Issued then
Error_Msg_F ("\\| " & Msg, N);
end if;
end if;
end Check_SPARK_05_Restriction;
procedure Check_SPARK_05_Restriction
(Msg1 : String;
Msg2 : String;
N : Node_Id)
is
Msg_Issued : Boolean;
Save_Error_Msg_Sloc : Source_Ptr;
begin
pragma Assert (Msg2'Length /= 0 and then Msg2 (Msg2'First) = '\');
if Comes_From_Source (Original_Node (N)) then
if Restriction_Check_Required (SPARK_05)
and then Is_In_Hidden_Part_In_SPARK (Sloc (N))
then
return;
end if;
-- Since the call to Restriction_Msg from Check_Restriction may set
-- Error_Msg_Sloc to the location of the pragma restriction, save and
-- restore the previous value of the global variable around the call.
Save_Error_Msg_Sloc := Error_Msg_Sloc;
Check_Restriction (Msg_Issued, SPARK_05, First_Node (N));
Error_Msg_Sloc := Save_Error_Msg_Sloc;
if Msg_Issued then
Error_Msg_F ("\\| " & Msg1, N);
Error_Msg_F (Msg2, N);
end if;
end if;
end Check_SPARK_05_Restriction;
--------------------------------------
-- Check_Wide_Character_Restriction --
--------------------------------------
procedure Check_Wide_Character_Restriction (E : Entity_Id; N : Node_Id) is
begin
if Restriction_Check_Required (No_Wide_Characters)
and then Comes_From_Source (N)
then
declare
T : constant Entity_Id := Root_Type (E);
begin
if T = Standard_Wide_Character or else
T = Standard_Wide_String or else
T = Standard_Wide_Wide_Character or else
T = Standard_Wide_Wide_String
then
Check_Restriction (No_Wide_Characters, N);
end if;
end;
end if;
end Check_Wide_Character_Restriction;
----------------------------------------
-- Cunit_Boolean_Restrictions_Restore --
----------------------------------------
procedure Cunit_Boolean_Restrictions_Restore
(R : Save_Cunit_Boolean_Restrictions)
is
begin
for J in Cunit_Boolean_Restrictions loop
Restrictions.Set (J) := R (J);
end loop;
-- If No_Elaboration_Code set in configuration restrictions, and we
-- in the main extended source, then set it here now. This is part of
-- the special processing for No_Elaboration_Code.
if In_Extended_Main_Source_Unit (Cunit_Entity (Current_Sem_Unit))
and then Config_Cunit_Boolean_Restrictions (No_Elaboration_Code)
then
Restrictions.Set (No_Elaboration_Code) := True;
end if;
end Cunit_Boolean_Restrictions_Restore;
-------------------------------------
-- Cunit_Boolean_Restrictions_Save --
-------------------------------------
function Cunit_Boolean_Restrictions_Save
return Save_Cunit_Boolean_Restrictions
is
R : Save_Cunit_Boolean_Restrictions;
begin
for J in Cunit_Boolean_Restrictions loop
R (J) := Restrictions.Set (J);
end loop;
return R;
end Cunit_Boolean_Restrictions_Save;
------------------------
-- Get_Restriction_Id --
------------------------
function Get_Restriction_Id
(N : Name_Id) return Restriction_Id
is
begin
Get_Name_String (N);
Set_Casing (All_Upper_Case);
for J in All_Restrictions loop
declare
S : constant String := Restriction_Id'Image (J);
begin
if S = Name_Buffer (1 .. Name_Len) then
return J;
end if;
end;
end loop;
return Not_A_Restriction_Id;
end Get_Restriction_Id;
--------------------------------
-- Is_In_Hidden_Part_In_SPARK --
--------------------------------
function Is_In_Hidden_Part_In_SPARK (Loc : Source_Ptr) return Boolean is
begin
-- Loop through table of hidden ranges
for J in SPARK_Hides.First .. SPARK_Hides.Last loop
if SPARK_Hides.Table (J).Start <= Loc
and then Loc < SPARK_Hides.Table (J).Stop
then
return True;
end if;
end loop;
return False;
end Is_In_Hidden_Part_In_SPARK;
-------------------------------
-- No_Exception_Handlers_Set --
-------------------------------
function No_Exception_Handlers_Set return Boolean is
begin
return (No_Run_Time_Mode or else Configurable_Run_Time_Mode)
and then (Restrictions.Set (No_Exception_Handlers)
or else
Restrictions.Set (No_Exception_Propagation));
end No_Exception_Handlers_Set;
-------------------------------------
-- No_Exception_Propagation_Active --
-------------------------------------
function No_Exception_Propagation_Active return Boolean is
begin
return (No_Run_Time_Mode
or else Configurable_Run_Time_Mode
or else Debug_Flag_Dot_G)
and then Restriction_Active (No_Exception_Propagation);
end No_Exception_Propagation_Active;
--------------------------------
-- OK_No_Dependence_Unit_Name --
--------------------------------
function OK_No_Dependence_Unit_Name (N : Node_Id) return Boolean is
begin
if Nkind (N) = N_Selected_Component then
return
OK_No_Dependence_Unit_Name (Prefix (N))
and then
OK_No_Dependence_Unit_Name (Selector_Name (N));
elsif Nkind (N) = N_Identifier then
return True;
else
Error_Msg_N ("wrong form for unit name for No_Dependence", N);
return False;
end if;
end OK_No_Dependence_Unit_Name;
------------------------------
-- OK_No_Use_Of_Entity_Name --
------------------------------
function OK_No_Use_Of_Entity_Name (N : Node_Id) return Boolean is
begin
if Nkind (N) = N_Selected_Component then
return
OK_No_Use_Of_Entity_Name (Prefix (N))
and then
OK_No_Use_Of_Entity_Name (Selector_Name (N));
elsif Nkind_In (N, N_Identifier, N_Operator_Symbol) then
return True;
else
Error_Msg_N ("wrong form for entity name for No_Use_Of_Entity", N);
return False;
end if;
end OK_No_Use_Of_Entity_Name;
----------------------------------
-- Process_Restriction_Synonyms --
----------------------------------
-- Note: body of this function must be coordinated with list of renaming
-- declarations in System.Rident.
function Process_Restriction_Synonyms (N : Node_Id) return Name_Id is
Old_Name : constant Name_Id := Chars (N);
New_Name : Name_Id;
begin
case Old_Name is
when Name_Boolean_Entry_Barriers =>
New_Name := Name_Simple_Barriers;
when Name_Max_Entry_Queue_Depth =>
New_Name := Name_Max_Entry_Queue_Length;
when Name_No_Dynamic_Interrupts =>
New_Name := Name_No_Dynamic_Attachment;
when Name_No_Requeue =>
New_Name := Name_No_Requeue_Statements;
when Name_No_Task_Attributes =>
New_Name := Name_No_Task_Attributes_Package;
-- SPARK is special in that we unconditionally warn
when Name_SPARK =>
Error_Msg_Name_1 := Name_SPARK;
Error_Msg_N ("restriction identifier % is obsolescent??", N);
Error_Msg_Name_1 := Name_SPARK_05;
Error_Msg_N ("|use restriction identifier % instead??", N);
return Name_SPARK_05;
when others =>
return Old_Name;
end case;
-- Output warning if we are warning on obsolescent features for all
-- cases other than SPARK.
if Warn_On_Obsolescent_Feature then
Error_Msg_Name_1 := Old_Name;
Error_Msg_N ("restriction identifier % is obsolescent?j?", N);
Error_Msg_Name_1 := New_Name;
Error_Msg_N ("|use restriction identifier % instead?j?", N);
end if;
return New_Name;
end Process_Restriction_Synonyms;
--------------------------------------
-- Reset_Cunit_Boolean_Restrictions --
--------------------------------------
procedure Reset_Cunit_Boolean_Restrictions is
begin
for J in Cunit_Boolean_Restrictions loop
Restrictions.Set (J) := False;
end loop;
end Reset_Cunit_Boolean_Restrictions;
-----------------------------------------------
-- Restore_Config_Cunit_Boolean_Restrictions --
-----------------------------------------------
procedure Restore_Config_Cunit_Boolean_Restrictions is
begin
Cunit_Boolean_Restrictions_Restore (Config_Cunit_Boolean_Restrictions);
end Restore_Config_Cunit_Boolean_Restrictions;
------------------------
-- Restricted_Profile --
------------------------
function Restricted_Profile return Boolean is
begin
if Restricted_Profile_Cached then
return Restricted_Profile_Result;
else
Restricted_Profile_Result := True;
Restricted_Profile_Cached := True;
declare
R : Restriction_Flags renames
Profile_Info (Restricted_Tasking).Set;
V : Restriction_Values renames
Profile_Info (Restricted_Tasking).Value;
begin
for J in R'Range loop
if R (J)
and then (Restrictions.Set (J) = False
or else Restriction_Warnings (J)
or else
(J in All_Parameter_Restrictions
and then Restrictions.Value (J) > V (J)))
then
Restricted_Profile_Result := False;
exit;
end if;
end loop;
return Restricted_Profile_Result;
end;
end if;
end Restricted_Profile;
------------------------
-- Restriction_Active --
------------------------
function Restriction_Active (R : All_Restrictions) return Boolean is
begin
return Restrictions.Set (R) and then not Restriction_Warnings (R);
end Restriction_Active;
--------------------------------
-- Restriction_Check_Required --
--------------------------------
function Restriction_Check_Required (R : All_Restrictions) return Boolean is
begin
return Restrictions.Set (R);
end Restriction_Check_Required;
---------------------
-- Restriction_Msg --
---------------------
procedure Restriction_Msg (R : Restriction_Id; N : Node_Id) is
Msg : String (1 .. 100);
Len : Natural := 0;
procedure Add_Char (C : Character);
-- Append given character to Msg, bumping Len
procedure Add_Str (S : String);
-- Append given string to Msg, bumping Len appropriately
procedure Id_Case (S : String; Quotes : Boolean := True);
-- Given a string S, case it according to current identifier casing,
-- except for SPARK_05 (an acronym) which is set all upper case, and
-- store in Error_Msg_String. Then append `~` to the message buffer
-- to output the string unchanged surrounded in quotes. The quotes
-- are suppressed if Quotes = False.
--------------
-- Add_Char --
--------------
procedure Add_Char (C : Character) is
begin
Len := Len + 1;
Msg (Len) := C;
end Add_Char;
-------------
-- Add_Str --
-------------
procedure Add_Str (S : String) is
begin
Msg (Len + 1 .. Len + S'Length) := S;
Len := Len + S'Length;
end Add_Str;
-------------
-- Id_Case --
-------------
procedure Id_Case (S : String; Quotes : Boolean := True) is
begin
Name_Buffer (1 .. S'Last) := S;
Name_Len := S'Length;
if R = SPARK_05 then
Set_All_Upper_Case;
else
Set_Casing (Identifier_Casing (Get_Source_File_Index (Sloc (N))));
end if;
Error_Msg_Strlen := Name_Len;
Error_Msg_String (1 .. Name_Len) := Name_Buffer (1 .. Name_Len);
if Quotes then
Add_Str ("`~`");
else
Add_Char ('~');
end if;
end Id_Case;
-- Start of processing for Restriction_Msg
begin
-- Set warning message if warning
if Restriction_Warnings (R) then
Add_Str ("?*?");
-- If real violation (not warning), then mark it as non-serious unless
-- it is a violation of No_Finalization in which case we leave it as a
-- serious message, since otherwise we get crashes during attempts to
-- expand stuff that is not properly formed due to assumptions made
-- about no finalization being present.
elsif R /= No_Finalization then
Add_Char ('|');
end if;
Error_Msg_Sloc := Restrictions_Loc (R);
-- Set main message, adding implicit if no source location
if Error_Msg_Sloc > No_Location
or else Error_Msg_Sloc = System_Location
then
Add_Str ("violation of restriction ");
else
Add_Str ("violation of implicit restriction ");
Error_Msg_Sloc := No_Location;
end if;
-- Case of parameterized restriction
if R in All_Parameter_Restrictions then
Add_Char ('`');
Id_Case (Restriction_Id'Image (R), Quotes => False);
Add_Str (" = ^`");
Error_Msg_Uint_1 := UI_From_Int (Int (Restrictions.Value (R)));
-- Case of boolean restriction
else
Id_Case (Restriction_Id'Image (R));
end if;
-- Case of no secondary profile continuation message
if Restriction_Profile_Name (R) = No_Profile then
if Error_Msg_Sloc /= No_Location then
Add_Char ('#');
end if;
Add_Char ('!');
Error_Msg_N (Msg (1 .. Len), N);
-- Case of secondary profile continuation message present
else
Add_Char ('!');
Error_Msg_N (Msg (1 .. Len), N);
Len := 0;
Add_Char ('\');
-- Set as warning if warning case
if Restriction_Warnings (R) then
Add_Str ("??");
end if;
-- Set main message
Add_Str ("from profile ");
Id_Case (Profile_Name'Image (Restriction_Profile_Name (R)));
-- Add location if we have one
if Error_Msg_Sloc /= No_Location then
Add_Char ('#');
end if;
-- Output unconditional message and we are done
Add_Char ('!');
Error_Msg_N (Msg (1 .. Len), N);
end if;
end Restriction_Msg;
-----------------
-- Same_Entity --
-----------------
function Same_Entity (E1, E2 : Node_Id) return Boolean is
begin
if Nkind_In (E1, N_Identifier, N_Operator_Symbol)
and then
Nkind_In (E2, N_Identifier, N_Operator_Symbol)
then
return Chars (E1) = Chars (E2);
elsif Nkind_In (E1, N_Selected_Component, N_Expanded_Name)
and then
Nkind_In (E2, N_Selected_Component, N_Expanded_Name)
then
return Same_Unit (Prefix (E1), Prefix (E2))
and then
Same_Unit (Selector_Name (E1), Selector_Name (E2));
else
return False;
end if;
end Same_Entity;
---------------
-- Same_Unit --
---------------
function Same_Unit (U1, U2 : Node_Id) return Boolean is
begin
if Nkind (U1) = N_Identifier and then Nkind (U2) = N_Identifier then
return Chars (U1) = Chars (U2);
elsif Nkind_In (U1, N_Selected_Component, N_Expanded_Name)
and then
Nkind_In (U2, N_Selected_Component, N_Expanded_Name)
then
return Same_Unit (Prefix (U1), Prefix (U2))
and then
Same_Unit (Selector_Name (U1), Selector_Name (U2));
else
return False;
end if;
end Same_Unit;
--------------------------------------------
-- Save_Config_Cunit_Boolean_Restrictions --
--------------------------------------------
procedure Save_Config_Cunit_Boolean_Restrictions is
begin
Config_Cunit_Boolean_Restrictions := Cunit_Boolean_Restrictions_Save;
end Save_Config_Cunit_Boolean_Restrictions;
------------------------------
-- Set_Hidden_Part_In_SPARK --
------------------------------
procedure Set_Hidden_Part_In_SPARK (Loc1, Loc2 : Source_Ptr) is
begin
SPARK_Hides.Increment_Last;
SPARK_Hides.Table (SPARK_Hides.Last).Start := Loc1;
SPARK_Hides.Table (SPARK_Hides.Last).Stop := Loc2;
end Set_Hidden_Part_In_SPARK;
------------------------------
-- Set_Profile_Restrictions --
------------------------------
procedure Set_Profile_Restrictions
(P : Profile_Name;
N : Node_Id;
Warn : Boolean)
is
R : Restriction_Flags renames Profile_Info (P).Set;
V : Restriction_Values renames Profile_Info (P).Value;
begin
for J in R'Range loop
if R (J) then
declare
Already_Restricted : constant Boolean := Restriction_Active (J);
begin
-- Set the restriction
if J in All_Boolean_Restrictions then
Set_Restriction (J, N);
else
Set_Restriction (J, N, V (J));
end if;
-- Record that this came from a Profile[_Warnings] restriction
Restriction_Profile_Name (J) := P;
-- Set warning flag, except that we do not set the warning
-- flag if the restriction was already active and this is
-- the warning case. That avoids a warning overriding a real
-- restriction, which should never happen.
if not (Warn and Already_Restricted) then
Restriction_Warnings (J) := Warn;
end if;
end;
end if;
end loop;
end Set_Profile_Restrictions;
---------------------
-- Set_Restriction --
---------------------
-- Case of Boolean restriction
procedure Set_Restriction
(R : All_Boolean_Restrictions;
N : Node_Id)
is
begin
Restrictions.Set (R) := True;
if Restricted_Profile_Cached and Restricted_Profile_Result then
null;
else
Restricted_Profile_Cached := False;
end if;
-- Set location, but preserve location of system restriction for nice
-- error msg with run time name.
if Restrictions_Loc (R) /= System_Location then
Restrictions_Loc (R) := Sloc (N);
end if;
-- Note restriction came from restriction pragma, not profile
Restriction_Profile_Name (R) := No_Profile;
-- Record the restriction if we are in the main unit, or in the extended
-- main unit. The reason that we test separately for Main_Unit is that
-- gnat.adc is processed with Current_Sem_Unit = Main_Unit, but nodes in
-- gnat.adc do not appear to be in the extended main source unit (they
-- probably should do ???)
if Current_Sem_Unit = Main_Unit
or else In_Extended_Main_Source_Unit (N)
then
if not Restriction_Warnings (R) then
Main_Restrictions.Set (R) := True;
end if;
end if;
end Set_Restriction;
-- Case of parameter restriction
procedure Set_Restriction
(R : All_Parameter_Restrictions;
N : Node_Id;
V : Integer)
is
begin
if Restricted_Profile_Cached and Restricted_Profile_Result then
null;
else
Restricted_Profile_Cached := False;
end if;
if Restrictions.Set (R) then
if V < Restrictions.Value (R) then
Restrictions.Value (R) := V;
Restrictions_Loc (R) := Sloc (N);
end if;
else
Restrictions.Set (R) := True;
Restrictions.Value (R) := V;
Restrictions_Loc (R) := Sloc (N);
end if;
-- Record the restriction if we are in the main unit, or in the extended
-- main unit. The reason that we test separately for Main_Unit is that
-- gnat.adc is processed with Current_Sem_Unit = Main_Unit, but nodes in
-- gnat.adc do not appear to be the extended main source unit (they
-- probably should do ???)
if Current_Sem_Unit = Main_Unit
or else In_Extended_Main_Source_Unit (N)
then
if Main_Restrictions.Set (R) then
if V < Main_Restrictions.Value (R) then
Main_Restrictions.Value (R) := V;
end if;
elsif not Restriction_Warnings (R) then
Main_Restrictions.Set (R) := True;
Main_Restrictions.Value (R) := V;
end if;
end if;
-- Note restriction came from restriction pragma, not profile
Restriction_Profile_Name (R) := No_Profile;
end Set_Restriction;
-----------------------------------
-- Set_Restriction_No_Dependence --
-----------------------------------
procedure Set_Restriction_No_Dependence
(Unit : Node_Id;
Warn : Boolean;
Profile : Profile_Name := No_Profile)
is
begin
-- Loop to check for duplicate entry
for J in No_Dependences.First .. No_Dependences.Last loop
-- Case of entry already in table
if Same_Unit (Unit, No_Dependences.Table (J).Unit) then
-- Error has precedence over warning
if not Warn then
No_Dependences.Table (J).Warn := False;
end if;
return;
end if;
end loop;
-- Entry is not currently in table
No_Dependences.Append ((Unit, Warn, Profile));
end Set_Restriction_No_Dependence;
--------------------------------------
-- Set_Restriction_No_Use_Of_Entity --
--------------------------------------
procedure Set_Restriction_No_Use_Of_Entity
(Entity : Node_Id;
Warning : Boolean;
Profile : Profile_Name := No_Profile)
is
Nam : Node_Id;
begin
-- Loop to check for duplicate entry
for J in No_Use_Of_Entity.First .. No_Use_Of_Entity.Last loop
-- Case of entry already in table
if Same_Entity (Entity, No_Use_Of_Entity.Table (J).Entity) then
-- Error has precedence over warning
if not Warning then
No_Use_Of_Entity.Table (J).Warn := False;
end if;
return;
end if;
end loop;
-- Entry is not currently in table
No_Use_Of_Entity.Append ((Entity, Warning, Profile));
-- Now we need to find the direct name and set Boolean2 flag
if Nkind_In (Entity, N_Identifier, N_Operator_Symbol) then
Nam := Entity;
else
pragma Assert (Nkind (Entity) = N_Selected_Component);
Nam := Selector_Name (Entity);
pragma Assert (Nkind_In (Nam, N_Identifier, N_Operator_Symbol));
end if;
Set_Name_Table_Boolean2 (Chars (Nam), True);
end Set_Restriction_No_Use_Of_Entity;
------------------------------------------------
-- Set_Restriction_No_Specification_Of_Aspect --
------------------------------------------------
procedure Set_Restriction_No_Specification_Of_Aspect
(N : Node_Id;
Warning : Boolean)
is
A_Id : constant Aspect_Id_Exclude_No_Aspect := Get_Aspect_Id (Chars (N));
begin
No_Specification_Of_Aspect_Set := True;
No_Specification_Of_Aspects (A_Id) := Sloc (N);
No_Specification_Of_Aspect_Warning (A_Id) := Warning;
end Set_Restriction_No_Specification_Of_Aspect;
procedure Set_Restriction_No_Specification_Of_Aspect (A_Id : Aspect_Id) is
begin
No_Specification_Of_Aspect_Set := True;
No_Specification_Of_Aspects (A_Id) := System_Location;
No_Specification_Of_Aspect_Warning (A_Id) := False;
end Set_Restriction_No_Specification_Of_Aspect;
-----------------------------------------
-- Set_Restriction_No_Use_Of_Attribute --
-----------------------------------------
procedure Set_Restriction_No_Use_Of_Attribute
(N : Node_Id;
Warning : Boolean)
is
A_Id : constant Attribute_Id := Get_Attribute_Id (Chars (N));
begin
No_Use_Of_Attribute_Set := True;
No_Use_Of_Attribute (A_Id) := Sloc (N);
No_Use_Of_Attribute_Warning (A_Id) := Warning;
end Set_Restriction_No_Use_Of_Attribute;
procedure Set_Restriction_No_Use_Of_Attribute (A_Id : Attribute_Id) is
begin
No_Use_Of_Attribute_Set := True;
No_Use_Of_Attribute (A_Id) := System_Location;
No_Use_Of_Attribute_Warning (A_Id) := False;
end Set_Restriction_No_Use_Of_Attribute;
--------------------------------------
-- Set_Restriction_No_Use_Of_Pragma --
--------------------------------------
procedure Set_Restriction_No_Use_Of_Pragma
(N : Node_Id;
Warning : Boolean)
is
A_Id : constant Pragma_Id := Get_Pragma_Id (Chars (N));
begin
No_Use_Of_Pragma_Set := True;
No_Use_Of_Pragma (A_Id) := Sloc (N);
No_Use_Of_Pragma_Warning (A_Id) := Warning;
end Set_Restriction_No_Use_Of_Pragma;
procedure Set_Restriction_No_Use_Of_Pragma (A_Id : Pragma_Id) is
begin
No_Use_Of_Pragma_Set := True;
No_Use_Of_Pragma (A_Id) := System_Location;
No_Use_Of_Pragma_Warning (A_Id) := False;
end Set_Restriction_No_Use_Of_Pragma;
----------------------------------
-- Suppress_Restriction_Message --
----------------------------------
function Suppress_Restriction_Message (N : Node_Id) return Boolean is
begin
-- We only output messages for the extended main source unit
if In_Extended_Main_Source_Unit (N) then
return False;
-- If loaded by rtsfind, then suppress message
elsif Sloc (N) <= No_Location then
return True;
-- Otherwise suppress message if internal file
else
return In_Internal_Unit (N);
end if;
end Suppress_Restriction_Message;
---------------------
-- Tasking_Allowed --
---------------------
function Tasking_Allowed return Boolean is
begin
return not Restrictions.Set (No_Tasking)
and then (not Restrictions.Set (Max_Tasks)
or else Restrictions.Value (Max_Tasks) > 0)
and then not No_Run_Time_Mode;
end Tasking_Allowed;
end Restrict;
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