From mboxrd@z Thu Jan 1 00:00:00 1970 Return-Path: Received: by sourceware.org (Postfix, from userid 48) id B7C49385B833; Tue, 5 Oct 2021 18:33:41 +0000 (GMT) DKIM-Filter: OpenDKIM Filter v2.11.0 sourceware.org B7C49385B833 From: "gscfq@t-online.de" To: gcc-bugs@gcc.gnu.org Subject: [Bug fortran/102619] [10/11/12 Regression] ICE in gfc_conv_descriptor_dtype, at fortran/trans-array.c:215 Date: Tue, 05 Oct 2021 18:33:41 +0000 X-Bugzilla-Reason: CC X-Bugzilla-Type: changed X-Bugzilla-Watch-Reason: None X-Bugzilla-Product: gcc X-Bugzilla-Component: fortran X-Bugzilla-Version: 12.0 X-Bugzilla-Keywords: ice-on-valid-code X-Bugzilla-Severity: normal X-Bugzilla-Who: gscfq@t-online.de X-Bugzilla-Status: UNCONFIRMED X-Bugzilla-Resolution: X-Bugzilla-Priority: P3 X-Bugzilla-Assigned-To: unassigned at gcc dot gnu.org X-Bugzilla-Target-Milestone: --- X-Bugzilla-Flags: X-Bugzilla-Changed-Fields: keywords Message-ID: In-Reply-To: References: Content-Type: text/plain; charset="UTF-8" Content-Transfer-Encoding: quoted-printable X-Bugzilla-URL: http://gcc.gnu.org/bugzilla/ Auto-Submitted: auto-generated MIME-Version: 1.0 X-BeenThere: gcc-bugs@gcc.gnu.org X-Mailman-Version: 2.1.29 Precedence: list List-Id: Gcc-bugs mailing list List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , X-List-Received-Date: Tue, 05 Oct 2021 18:33:41 -0000 https://gcc.gnu.org/bugzilla/show_bug.cgi?id=3D102619 G. Steinmetz changed: What |Removed |Added ---------------------------------------------------------------------------- Keywords| |ice-on-valid-code --- Comment #1 from G. Steinmetz --- While synonym z0.f90 compiles, the other variants don't : $ cat z0.f90 program p contains function f(x) result(z) real :: x(:) real, allocatable :: z(:) z =3D g(x) end function g(x) real :: x(..) real :: g(size(x)) end end $ cat z2.f90 program p contains function f(x) result(z) real :: x(:) real, allocatable :: z(:) z =3D g(x) end function g(x) real :: x(..) real :: g(product(ubound(x)-lbound(x)+1)) end end $ cat z3.f90 program p contains function f(x) result(z) real :: x(:) real, allocatable :: z(:) z =3D g(x) end function g(x) real :: x(..) real :: g(product(ubound(x))) end end=