re PR fortran/49112 ([OOP] Missing type-bound procedure, "duplicate save" warnings and internal compiler error)
2011-07-31 Janus Weil <janus@gcc.gnu.org> PR fortran/49112 * resolve.c (resolve_structure_cons): Don't do the full dt resolution, only call 'resolve_fl_derived0'. (resolve_typebound_procedures): Resolve typebound procedures of parent type. (resolve_fl_derived0): New function, which does a part of the work for 'resolve_fl_derived'. (resolve_fl_derived): Call 'resolve_fl_derived0' and do some additional things. 2011-07-31 Janus Weil <janus@gcc.gnu.org> PR fortran/49112 * gfortran.dg/abstract_type_6.f03: Modified. * gfortran.dg/typebound_proc_24.f03: New. From-SVN: r176971
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2011-07-31 Janus Weil <janus@gcc.gnu.org>
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PR fortran/49112
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* resolve.c (resolve_structure_cons): Don't do the full dt resolution,
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only call 'resolve_fl_derived0'.
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(resolve_typebound_procedures): Resolve typebound procedures of
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parent type.
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(resolve_fl_derived0): New function, which does a part of the work
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for 'resolve_fl_derived'.
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(resolve_fl_derived): Call 'resolve_fl_derived0' and do some additional
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things.
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2011-07-30 Thomas Koenig <tkoenig@gcc.gnu.org>
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PR fortran/48876
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@ -950,6 +950,9 @@ resolve_contained_functions (gfc_namespace *ns)
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}
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static gfc_try resolve_fl_derived0 (gfc_symbol *sym);
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/* Resolve all of the elements of a structure constructor and make sure that
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the types are correct. The 'init' flag indicates that the given
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constructor is an initializer. */
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@ -965,7 +968,7 @@ resolve_structure_cons (gfc_expr *expr, int init)
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t = SUCCESS;
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if (expr->ts.type == BT_DERIVED)
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resolve_symbol (expr->ts.u.derived);
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resolve_fl_derived0 (expr->ts.u.derived);
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cons = gfc_constructor_first (expr->value.constructor);
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/* A constructor may have references if it is the result of substituting a
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@ -11361,10 +11364,15 @@ static gfc_try
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resolve_typebound_procedures (gfc_symbol* derived)
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{
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int op;
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gfc_symbol* super_type;
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if (!derived->f2k_derived || !derived->f2k_derived->tb_sym_root)
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return SUCCESS;
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super_type = gfc_get_derived_super_type (derived);
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if (super_type)
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resolve_typebound_procedures (super_type);
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resolve_bindings_derived = derived;
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resolve_bindings_result = SUCCESS;
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@ -11475,29 +11483,18 @@ ensure_not_abstract (gfc_symbol* sub, gfc_symbol* ancestor)
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}
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/* Resolve the components of a derived type. */
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/* Resolve the components of a derived type. This does not have to wait until
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resolution stage, but can be done as soon as the dt declaration has been
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parsed. */
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static gfc_try
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resolve_fl_derived (gfc_symbol *sym)
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resolve_fl_derived0 (gfc_symbol *sym)
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{
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gfc_symbol* super_type;
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gfc_component *c;
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super_type = gfc_get_derived_super_type (sym);
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if (sym->attr.is_class && sym->ts.u.derived == NULL)
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{
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/* Fix up incomplete CLASS symbols. */
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gfc_component *data = gfc_find_component (sym, "_data", true, true);
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gfc_component *vptr = gfc_find_component (sym, "_vptr", true, true);
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if (vptr->ts.u.derived == NULL)
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{
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gfc_symbol *vtab = gfc_find_derived_vtab (data->ts.u.derived);
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gcc_assert (vtab);
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vptr->ts.u.derived = vtab->ts.u.derived;
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}
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}
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/* F2008, C432. */
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if (super_type && sym->attr.coarray_comp && !super_type->attr.coarray_comp)
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{
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@ -11508,7 +11505,7 @@ resolve_fl_derived (gfc_symbol *sym)
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}
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/* Ensure the extended type gets resolved before we do. */
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if (super_type && resolve_fl_derived (super_type) == FAILURE)
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if (super_type && resolve_fl_derived0 (super_type) == FAILURE)
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return FAILURE;
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/* An ABSTRACT type must be extensible. */
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@ -11861,14 +11858,6 @@ resolve_fl_derived (gfc_symbol *sym)
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return FAILURE;
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}
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/* Resolve the type-bound procedures. */
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if (resolve_typebound_procedures (sym) == FAILURE)
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return FAILURE;
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/* Resolve the finalizer procedures. */
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if (gfc_resolve_finalizers (sym) == FAILURE)
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return FAILURE;
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/* If this is a non-ABSTRACT type extending an ABSTRACT one, ensure that
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all DEFERRED bindings are overridden. */
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if (super_type && super_type->attr.abstract && !sym->attr.abstract
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@ -11883,6 +11872,42 @@ resolve_fl_derived (gfc_symbol *sym)
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}
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/* The following procedure does the full resolution of a derived type,
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including resolution of all type-bound procedures (if present). In contrast
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to 'resolve_fl_derived0' this can only be done after the module has been
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parsed completely. */
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static gfc_try
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resolve_fl_derived (gfc_symbol *sym)
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{
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if (sym->attr.is_class && sym->ts.u.derived == NULL)
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{
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/* Fix up incomplete CLASS symbols. */
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gfc_component *data = gfc_find_component (sym, "_data", true, true);
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gfc_component *vptr = gfc_find_component (sym, "_vptr", true, true);
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if (vptr->ts.u.derived == NULL)
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{
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gfc_symbol *vtab = gfc_find_derived_vtab (data->ts.u.derived);
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gcc_assert (vtab);
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vptr->ts.u.derived = vtab->ts.u.derived;
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}
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}
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if (resolve_fl_derived0 (sym) == FAILURE)
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return FAILURE;
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/* Resolve the type-bound procedures. */
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if (resolve_typebound_procedures (sym) == FAILURE)
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return FAILURE;
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/* Resolve the finalizer procedures. */
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if (gfc_resolve_finalizers (sym) == FAILURE)
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return FAILURE;
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return SUCCESS;
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}
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static gfc_try
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resolve_fl_namelist (gfc_symbol *sym)
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{
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@ -1,3 +1,9 @@
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2011-07-31 Janus Weil <janus@gcc.gnu.org>
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PR fortran/49112
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* gfortran.dg/abstract_type_6.f03: Modified.
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* gfortran.dg/typebound_proc_24.f03: New.
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2011-07-30 Paolo Carlini <paolo.carlini@oracle.com>
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PR testsuite/49917
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@ -31,7 +31,7 @@ TYPE, EXTENDS(middle) :: bottom
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CONTAINS
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! useful proc to satisfy deferred procedure in top. Because we've
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! extended middle we wouldn't get told off if we forgot this.
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PROCEDURE :: proc_a => bottom_a
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PROCEDURE :: proc_a => bottom_a ! { dg-error "must be a module procedure" }
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! calls middle%proc_b and then provides extra behaviour
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PROCEDURE :: proc_b => bottom_b
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! calls top_c and then provides extra behaviour
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@ -0,0 +1,32 @@
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! { dg-do compile }
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!
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! PR 49112: [4.6/4.7 Regression] [OOP] Missing type-bound procedure, "duplicate save" warnings and internal compiler error
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!
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! Contributed by John <jwmwalrus@gmail.com>
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module datetime_mod
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implicit none
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type :: DateTime
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integer :: year, month, day
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contains
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procedure :: getFormattedString
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end type
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type(DateTime) :: ISO_REFERENCE_DATE = DateTime(1875, 5, 20)
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contains
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character function getFormattedString(dt)
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class(DateTime) :: dt
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end function
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subroutine test
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type(DateTime) :: dt
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print *,dt%getFormattedString()
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end subroutine
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end module
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! { dg-final { cleanup-modules "datetime_mod" } }
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