expr.c (gfc_copy_expr): Don't copy 'op1' and 'op2' for EXPR_SUBSTRING.
fortran/ * expr.c (gfc_copy_expr): Don't copy 'op1' and 'op2' for EXPR_SUBSTRING. (gfc_is_constant_expr): Check 'ref' to determine if substring reference is constant. (gfc_simplify_expr): Simplify 'ref' instead of 'op1' and 'op2'. (check_init_expr, check_restricted): Check 'ref' instead of 'op1' and 'op2'. * module.c (mio_expr): Read / write 'ref' instead of 'op1' and 'op2'. testsuite/ * gfortran.dg/substr_1.f90: New test. From-SVN: r94735
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@ -1,3 +1,14 @@
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2005-02-08 Tobias Schl"uter <tobias.schlueter@physik.uni-muenchen.de>
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* expr.c (gfc_copy_expr): Don't copy 'op1' and 'op2' for
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EXPR_SUBSTRING.
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(gfc_is_constant_expr): Check 'ref' to determine if substring
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reference is constant.
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(gfc_simplify_expr): Simplify 'ref' instead of 'op1' and 'op2'.
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(check_init_expr, check_restricted): Check 'ref' instead of 'op1'
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and 'op2'.
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* module.c (mio_expr): Read / write 'ref' instead of 'op1' and 'op2'.
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2005-02-07 Tobias Schl"uter <tobias.schlueter@physik.uni-muenchen.de>
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* gfortran.h (gfc_add_dimension, gfc_add_result, gfc_add_save,
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@ -393,9 +393,6 @@ gfc_copy_expr (gfc_expr * p)
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q->value.character.string = s;
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memcpy (s, p->value.character.string, p->value.character.length + 1);
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q->op1 = gfc_copy_expr (p->op1);
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q->op2 = gfc_copy_expr (p->op2);
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break;
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case EXPR_CONSTANT:
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@ -699,7 +696,8 @@ gfc_is_constant_expr (gfc_expr * e)
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break;
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case EXPR_SUBSTRING:
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rv = gfc_is_constant_expr (e->op1) && gfc_is_constant_expr (e->op2);
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rv = (gfc_is_constant_expr (e->ref->u.ss.start)
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&& gfc_is_constant_expr (e->ref->u.ss.end));
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break;
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case EXPR_STRUCTURE:
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@ -1115,12 +1113,10 @@ gfc_simplify_expr (gfc_expr * p, int type)
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break;
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case EXPR_SUBSTRING:
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if (gfc_simplify_expr (p->op1, type) == FAILURE
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|| gfc_simplify_expr (p->op2, type) == FAILURE)
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if (simplify_ref_chain (p->ref, type) == FAILURE)
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return FAILURE;
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/* TODO: evaluate constant substrings. */
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break;
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case EXPR_OP:
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@ -1439,11 +1435,11 @@ check_init_expr (gfc_expr * e)
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break;
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case EXPR_SUBSTRING:
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t = check_init_expr (e->op1);
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t = check_init_expr (e->ref->u.ss.start);
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if (t == FAILURE)
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break;
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t = check_init_expr (e->op2);
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t = check_init_expr (e->ref->u.ss.end);
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if (t == SUCCESS)
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t = gfc_simplify_expr (e, 0);
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@ -1662,11 +1658,11 @@ check_restricted (gfc_expr * e)
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break;
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case EXPR_SUBSTRING:
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t = gfc_specification_expr (e->op1);
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t = gfc_specification_expr (e->ref->u.ss.start);
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if (t == FAILURE)
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break;
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t = gfc_specification_expr (e->op2);
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t = gfc_specification_expr (e->ref->u.ss.end);
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if (t == SUCCESS)
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t = gfc_simplify_expr (e, 0);
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@ -2483,8 +2483,7 @@ mio_expr (gfc_expr ** ep)
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case EXPR_SUBSTRING:
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e->value.character.string = (char *)
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mio_allocated_string (e->value.character.string);
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mio_expr (&e->op1);
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mio_expr (&e->op2);
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mio_ref_list (&e->ref);
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break;
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case EXPR_STRUCTURE:
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@ -1,3 +1,7 @@
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2005-02-08 Tobias Schl"uter <tobias.schlueter@physik.uni-muenchen.de>
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* gfortran.dg/substr_1.f90: New test.
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2005-02-07 Richard Guenther <rguenth@gcc.gnu.org>
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PR middle-end/19775
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@ -0,0 +1,13 @@
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! { dg-do compile }
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! we used to save the wrong components of a gfc_expr describing a
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! substring of a constant string. This yielded a segfault on
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! translating the expressions read from the module.
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module m
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character (*), parameter :: a = "AABBCC"(1:4)
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end module m
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use m
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character(4) :: b
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b = a
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end
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