8sa1-gcc/gcc/fortran/data.c
Jerry DeLisle b7e757713c [multiple changes]
2010-04-12  Jerry DeLisle  <jvdelisle@gcc.gnu.org>

	* array.c (extract_element): Restore function from trunk.
	(gfc_get_array_element): Restore function from trunk.
	(gfc_expand_constructor): Restore check against
	flag_max_array_constructor.
	* constructor.c (node_copy_and_append): Delete unused.
	* gfortran.h: Delete comment and extra include.
	* constructor.h: Bump copyright and clean up TODO comments.
	* resolve.c: Whitespace.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

	* simplify.c (compute_dot_product): Replaced usage of ADVANCE macro
	with direct access access to elements. Adjusted prototype, fixed all
	callers.
	(gfc_simplify_dot_product): Removed duplicate check for zero-sized
	array.
	(gfc_simplify_matmul): Removed usage of ADVANCE macro.
	(gfc_simplify_spread): Removed workaround, directly insert elements
	at a given array position.
	(gfc_simplify_transpose): Likewise.
	(gfc_simplify_pack): Replaced usage of ADVANCE macro with corresponding
	function calls.
	(gfc_simplify_unpack): Likewise.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

	* simplify.c (only_convert_cmplx_boz): Renamed to ...
	(convert_boz): ... this and moved to start of file.
	(gfc_simplify_abs): Whitespace fix.
	(gfc_simplify_acos): Whitespace fix.
	(gfc_simplify_acosh): Whitespace fix.
	(gfc_simplify_aint): Whitespace fix.
	(gfc_simplify_dint): Whitespace fix.
	(gfc_simplify_anint): Whitespace fix.
	(gfc_simplify_and): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_dnint): Whitespace fix.
	(gfc_simplify_asin): Whitespace fix.
	(gfc_simplify_asinh): Moved creation of result-expr out of switch.
	(gfc_simplify_atan): Likewise.
	(gfc_simplify_atanh): Whitespace fix.
	(gfc_simplify_atan2): Whitespace fix.
	(gfc_simplify_bessel_j0): Removed ATTRIBUTE_UNUSED.
	(gfc_simplify_bessel_j1): Likewise.
	(gfc_simplify_bessel_jn): Likewise.
	(gfc_simplify_bessel_y0): Likewise.
	(gfc_simplify_bessel_y1): Likewise.
	(gfc_simplify_bessel_yn): Likewise.
	(gfc_simplify_ceiling): Reorderd statements.
	(simplify_cmplx): Use convert_boz(), check for constant arguments.
	Whitespace fix.
	(gfc_simplify_cmplx): Use correct default kind. Removed check for
	constant arguments.
	(gfc_simplify_complex): Replaced if-gate. Removed check for
	constant arguments.
	(gfc_simplify_conjg): Whitespace fix.
	(gfc_simplify_cos): Whitespace fix.
	(gfc_simplify_cosh): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_dcmplx): Removed check for constant arguments.
	(gfc_simplify_dble): Use convert_boz() and gfc_convert_constant().
	(gfc_simplify_digits): Whitespace fix.
	(gfc_simplify_dim): Whitespace fix.
	(gfc_simplify_dprod): Reordered statements.
	(gfc_simplify_erf): Whitespace fix.
	(gfc_simplify_erfc): Whitespace fix.
	(gfc_simplify_epsilon): Whitespace fix.
	(gfc_simplify_exp): Whitespace fix.
	(gfc_simplify_exponent): Use convert_boz().
	(gfc_simplify_floor): Reorderd statements.
	(gfc_simplify_gamma): Whitespace fix.
	(gfc_simplify_huge): Whitespace fix.
	(gfc_simplify_iand): Whitespace fix.
	(gfc_simplify_ieor): Whitespace fix.
	(simplify_intconv): Use gfc_convert_constant().
	(gfc_simplify_int): Use simplify_intconv().
	(gfc_simplify_int2): Reorderd statements.
	(gfc_simplify_idint): Reorderd statements.
	(gfc_simplify_ior): Whitespace fix.
	(gfc_simplify_ishftc): Removed duplicate type check.
	(gfc_simplify_len): Use range_check() instead of manual range check.
	(gfc_simplify_lgamma): Removed ATTRIBUTE_UNUSED. Whitespace fix.
	(gfc_simplify_log): Whitespace fix.
	(gfc_simplify_log10): Whitespace fix.
	(gfc_simplify_minval): Whitespace fix.
	(gfc_simplify_maxval): Whitespace fix.
	(gfc_simplify_mod): Whitespace fix.
	(gfc_simplify_modulo): Whitespace fix.
	(simplify_nint): Reorderd statements.
	(gfc_simplify_not): Whitespace fix.
	(gfc_simplify_or): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_radix): Removed unused result-variable. Whitespace fix.
	(gfc_simplify_range): Removed unused result-variable. Whitespace fix.
	(gfc_simplify_real): Use convert_boz() and gfc_convert_constant().
	(gfc_simplify_realpart): Whitespace fix.
	(gfc_simplify_selected_char_kind): Removed unused result-variable.
	(gfc_simplify_selected_int_kind): Removed unused result-variable.
	(gfc_simplify_selected_real_kind): Removed unused result-variable.
	(gfc_simplify_sign): Whitespace fix.
	(gfc_simplify_sin): Whitespace fix.
	(gfc_simplify_sinh): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_sqrt): Avoided goto by inlining check. Whitespace fix.
	(gfc_simplify_tan): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_tanh): Replaced if-gate by more common switch-over-type.
	(gfc_simplify_xor): Replaced if-gate by more common switch-over-type.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

	* gfortran.h (gfc_start_constructor): Removed.
	(gfc_get_array_element): Removed.
	* array.c (gfc_start_constructor): Removed, use gfc_get_array_expr 
	instead. Fixed all callers.
	(extract_element): Removed.
	(gfc_expand_constructor): Temporarily removed check for
	max-array-constructor. Will be re-introduced later if still required.
	(gfc_get_array_element): Removed, use gfc_constructor_lookup_expr
	instead. Fixed all callers.
	* expr.c (find_array_section): Replaced manual lookup of elements
	by gfc_constructor_lookup.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

        * gfortran.h (gfc_get_null_expr): New prototype.
        (gfc_get_operator_expr): New prototype.
        (gfc_get_character_expr): New prototype.
        (gfc_get_iokind_expr): New prototype.
        * expr.c (gfc_get_null_expr): New.
        (gfc_get_character_expr): New.
        (gfc_get_iokind_expr): New.
        (gfc_get_operator_expr): Moved here from matchexp.c (build_node).
        * matchexp.c (build_node): Renamed and moved to
        expr.c (gfc_get_operator_expr). Reordered arguments to match 
        other functions. Fixed all callers.
        (gfc_get_parentheses): Use specific function to build expr.
        * array.c (gfc_match_array_constructor): Likewise.
        * arith.c (eval_intrinsic): Likewise.
        (gfc_hollerith2int): Likewise.
        (gfc_hollerith2real): Likewise.
        (gfc_hollerith2complex): Likewise.
        (gfc_hollerith2logical): Likewise.
        * data.c (create_character_intializer): Likewise.
        * decl.c (gfc_match_null): Likewise.
        (enum_initializer): Likewise.
        * io.c (gfc_match_format): Likewise.
        (match_io): Likewise.
        * match.c (gfc_match_nullify): Likewise.
        * primary.c (match_string_constant): Likewise.
        (match_logical_constant): Likewise.
        (build_actual_constructor): Likewise.
        * resolve.c (build_default_init_expr): Likewise.
        * symbol.c (generate_isocbinding_symbol): Likewise.
        (gfc_build_class_symbol): Likewise.
        (gfc_find_derived_vtab): Likewise.
        * simplify.c (simplify_achar_char): Likewise.
        (gfc_simplify_adjustl): Likewise.
        (gfc_simplify_adjustr): Likewise.
        (gfc_simplify_and): Likewise.
        (gfc_simplify_bit_size): Likewise.
        (gfc_simplify_is_iostat_end): Likewise.
        (gfc_simplify_is_iostat_eor): Likewise.
        (gfc_simplify_isnan): Likewise.
        (simplify_bound): Likewise.
        (gfc_simplify_leadz): Likewise.
        (gfc_simplify_len_trim): Likewise.
        (gfc_simplify_logical): Likewise.
        (gfc_simplify_maxexponent): Likewise.
        (gfc_simplify_minexponent): Likewise.
        (gfc_simplify_new_line): Likewise.
        (gfc_simplify_null): Likewise.
        (gfc_simplify_or): Likewise.
        (gfc_simplify_precision): Likewise.
        (gfc_simplify_repeat): Likewise.
        (gfc_simplify_scan): Likewise.
        (gfc_simplify_size): Likewise.
        (gfc_simplify_trailz): Likewise.
        (gfc_simplify_trim): Likewise.
        (gfc_simplify_verify): Likewise.
        (gfc_simplify_xor): Likewise.
        * trans-io.c (build_dt): Likewise.
        (gfc_new_nml_name_expr): Removed.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

	* arith.h (gfc_constant_result): Removed prototype.
	* constructor.h (gfc_build_array_expr): Removed prototype.
	(gfc_build_structure_constructor_expr): Removed prototype.
	* gfortran.h (gfc_int_expr): Removed prototype.
	(gfc_logical_expr): Removed prototype.
	(gfc_get_array_expr): New prototype.
	(gfc_get_structure_constructor_expr): New prototype.
	(gfc_get_constant_expr): New prototype.
	(gfc_get_int_expr): New prototype.
	(gfc_get_logical_expr): New prototype.
	* arith.c (gfc_constant_result): Moved and renamed to
	expr.c (gfc_get_constant_expr). Fixed all callers.
	* constructor.c (gfc_build_array_expr): Moved and renamed to
	expr.c (gfc_get_array_expr). Split gfc_typespec argument to type
	and kind. Fixed all callers.
	(gfc_build_structure_constructor_expr): Moved and renamed to
	expr.c (gfc_get_structure_constructor_expr). Split gfc_typespec argument
	to type and kind. Fixed all callers.
	* expr.c (gfc_logical_expr): Renamed to ...
	(gfc_get_logical_expr): ... this. Added kind argument. Fixed all callers.
	(gfc_int_expr): Renamed to ...
	(gfc_get_int_expr): ... this. Added kind and where arguments. Fixed all
	callers.
	(gfc_get_constant_expr): New.
	(gfc_get_array_expr): New.
	(gfc_get_structure_constructor_expr): New.
	* simplify.c (int_expr_with_kind): Removed, callers use gfc_get_int_expr
	instead.

2010-04-12  Daniel Franke  <franke.daniel@gmail.com>

	* constructor.h: New.
	* constructor.c: New.
	* Make-lang.in: Add new files to F95_PARSER_OBJS.
	* arith.c (reducy_unary): Use constructor API.
	(reduce_binary_ac): Likewise.
	(reduce_binary_ca): Likewise.
	(reduce_binary_aa): Likewise.
	* check.c (gfc_check_pack): Likewise.
	(gfc_check_reshape): Likewise.
	(gfc_check_unpack): Likewise.
	* decl.c (add_init_expr_to_sym): Likewise.
	(build_struct): Likewise.
	* dependency.c (gfc_check_dependency): Likewise.
	(contains_forall_index_p): Likewise.
	* dump-parse-tree.c (show_constructor): Likewise.
	* expr.c (free_expr0): Likewise.
	(gfc_copy_expr): Likewise.
	(gfc_is_constant_expr): Likewise.
	(simplify_constructor): Likewise.
	(find_array_element): Likewise.
	(find_component_ref): Likewise.
	(find_array_section): Likewise.
	(find_substring_ref): Likewise.
	(simplify_const_ref): Likewise.
	(scalarize_intrinsic_call): Likewise.
	(check_alloc_comp_init): Likewise.
	(gfc_default_initializer): Likewise.
	(gfc_traverse_expr): Likewise.
	* iresolve.c (check_charlen_present): Likewise.
	(gfc_resolve_reshape): Likewise.
	(gfc_resolve_transfer): Likewise.
	* module.c (mio_constructor): Likewise.
	* primary.c (build_actual_constructor): Likewise.
	(gfc_match_structure_constructor): Likewise.
	* resolve.c (resolve_structure_cons): Likewise.
	* simplify.c (is_constant_array_expr): Likewise.
	(init_result_expr): Likewise.
	(transformational_result): Likewise.
	(simplify_transformation_to_scalar): Likewise.
	(simplify_transformation_to_array): Likewise.
	(gfc_simplify_dot_product): Likewise.
	(simplify_bound): Likewise.
	(simplify_matmul): Likewise.
	(simplify_minval_maxval): Likewise.
	(gfc_simplify_pack): Likewise.
	(gfc_simplify_reshape): Likewise.
	(gfc_simplify_shape): Likewise.
	(gfc_simplify_spread): Likewise.
	(gfc_simplify_transpose): Likewise.
	(gfc_simplify_unpack): Likewise.q
	(gfc_convert_constant): Likewise.
	(gfc_convert_char_constant): Likewise.
	* target-memory.c (size_array): Likewise.
	(encode_array): Likewise.
	(encode_derived): Likewise.
	(interpret_array): Likewise.
	(gfc_interpret_derived): Likewise.
	(expr_to_char): Likewise.
	(gfc_merge_initializers): Likewise.
	* trans-array.c (gfc_get_array_constructor_size): Likewise.
	(gfc_trans_array_constructor_value): Likewise.
	(get_array_ctor_strlen): Likewise.
	(gfc_constant_array_constructor_p): Likewise.
	(gfc_build_constant_array_constructor): Likewise.
	(gfc_trans_array_constructor): Likewise.
	(gfc_conv_array_initializer): Likewise.
	* trans-decl.c (check_constant_initializer): Likewise.
	* trans-expr.c (flatten_array_ctors_without_strlen): Likewise.
	(gfc_apply_interface_mapping_to_cons): Likewise.
	(gfc_trans_structure_assign): Likewise.
	(gfc_conv_structure): Likewise.
	* array.c (check_duplicate_iterator): Likewise.
	(match_array_list): Likewise.
	(match_array_cons_element): Likewise.
	(gfc_match_array_constructor): Likewise.
	(check_constructor_type): Likewise.
	(check_constructor): Likewise.
	(expand): Likewise.
	(expand_constructor): Likewise.
	(extract_element): Likewise.
	(gfc_expanded_ac): Likewise.
	(resolve_array_list): Likewise.
	(gfc_resolve_character_array_constructor): Likewise.
	(copy_iterator): Renamed to ...
	(gfc_copy_iterator): ... this.
	(gfc_append_constructor): Removed.
	(gfc_insert_constructor): Removed unused function.
	(gfc_get_constructor): Removed.
	(gfc_free_constructor): Removed.
	(qgfc_copy_constructor): Removed.
	* gfortran.h (struct gfc_expr): Removed member 'con_by_offset'.
	Removed all references. Replaced constructor list by splay-tree.
	(struct gfc_constructor): Removed member 'next', moved 'offset' from
	the inner struct, added member 'base'.
	(gfc_append_constructor): Removed prototype.
	(gfc_insert_constructor): Removed prototype.
	(gfc_get_constructor): Removed prototype.
	(gfc_free_constructor): Removed prototype.
	(qgfc_copy_constructor): Removed prototype.
	(gfc_copy_iterator): New prototype.
	* trans-array.h (gfc_constant_array_constructor_p): Adjusted prototype.

From-SVN: r158253
2010-04-13 01:59:35 +00:00

708 lines
18 KiB
C

/* Supporting functions for resolving DATA statement.
Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
Free Software Foundation, Inc.
Contributed by Lifang Zeng <zlf605@hotmail.com>
This file is part of GCC.
GCC is free software; you can redistribute it and/or modify it under
the terms of the GNU General Public License as published by the Free
Software Foundation; either version 3, or (at your option) any later
version.
GCC is distributed in the hope that it will be useful, but WITHOUT 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
along with GCC; see the file COPYING3. If not see
<http://www.gnu.org/licenses/>. */
/* Notes for DATA statement implementation:
We first assign initial value to each symbol by gfc_assign_data_value
during resolving DATA statement. Refer to check_data_variable and
traverse_data_list in resolve.c.
The complexity exists in the handling of array section, implied do
and array of struct appeared in DATA statement.
We call gfc_conv_structure, gfc_con_array_array_initializer,
etc., to convert the initial value. Refer to trans-expr.c and
trans-array.c. */
#include "config.h"
#include "gfortran.h"
#include "data.h"
#include "constructor.h"
static void formalize_init_expr (gfc_expr *);
/* Calculate the array element offset. */
static void
get_array_index (gfc_array_ref *ar, mpz_t *offset)
{
gfc_expr *e;
int i;
mpz_t delta;
mpz_t tmp;
mpz_init (tmp);
mpz_set_si (*offset, 0);
mpz_init_set_si (delta, 1);
for (i = 0; i < ar->dimen; i++)
{
e = gfc_copy_expr (ar->start[i]);
gfc_simplify_expr (e, 1);
if ((gfc_is_constant_expr (ar->as->lower[i]) == 0)
|| (gfc_is_constant_expr (ar->as->upper[i]) == 0)
|| (gfc_is_constant_expr (e) == 0))
gfc_error ("non-constant array in DATA statement %L", &ar->where);
mpz_set (tmp, e->value.integer);
mpz_sub (tmp, tmp, ar->as->lower[i]->value.integer);
mpz_mul (tmp, tmp, delta);
mpz_add (*offset, tmp, *offset);
mpz_sub (tmp, ar->as->upper[i]->value.integer,
ar->as->lower[i]->value.integer);
mpz_add_ui (tmp, tmp, 1);
mpz_mul (delta, tmp, delta);
}
mpz_clear (delta);
mpz_clear (tmp);
}
/* Find if there is a constructor which component is equal to COM.
TODO: remove this, use symbol.c(gfc_find_component) instead. */
static gfc_constructor *
find_con_by_component (gfc_component *com, gfc_constructor_base base)
{
gfc_constructor *c;
for (c = gfc_constructor_first (base); c; c = gfc_constructor_next (c))
if (com == c->n.component)
return c;
return NULL;
}
/* Create a character type initialization expression from RVALUE.
TS [and REF] describe [the substring of] the variable being initialized.
INIT is the existing initializer, not NULL. Initialization is performed
according to normal assignment rules. */
static gfc_expr *
create_character_intializer (gfc_expr *init, gfc_typespec *ts,
gfc_ref *ref, gfc_expr *rvalue)
{
int len, start, end;
gfc_char_t *dest;
gfc_extract_int (ts->u.cl->length, &len);
if (init == NULL)
{
/* Create a new initializer. */
init = gfc_get_character_expr (ts->kind, NULL, NULL, len);
init->ts = *ts;
}
dest = init->value.character.string;
if (ref)
{
gfc_expr *start_expr, *end_expr;
gcc_assert (ref->type == REF_SUBSTRING);
/* Only set a substring of the destination. Fortran substring bounds
are one-based [start, end], we want zero based [start, end). */
start_expr = gfc_copy_expr (ref->u.ss.start);
end_expr = gfc_copy_expr (ref->u.ss.end);
if ((gfc_simplify_expr (start_expr, 1) == FAILURE)
|| (gfc_simplify_expr (end_expr, 1)) == FAILURE)
{
gfc_error ("failure to simplify substring reference in DATA "
"statement at %L", &ref->u.ss.start->where);
return NULL;
}
gfc_extract_int (start_expr, &start);
start--;
gfc_extract_int (end_expr, &end);
}
else
{
/* Set the whole string. */
start = 0;
end = len;
}
/* Copy the initial value. */
if (rvalue->ts.type == BT_HOLLERITH)
len = rvalue->representation.length;
else
len = rvalue->value.character.length;
if (len > end - start)
{
len = end - start;
gfc_warning_now ("initialization string truncated to match variable "
"at %L", &rvalue->where);
}
if (rvalue->ts.type == BT_HOLLERITH)
{
int i;
for (i = 0; i < len; i++)
dest[start+i] = rvalue->representation.string[i];
}
else
memcpy (&dest[start], rvalue->value.character.string,
len * sizeof (gfc_char_t));
/* Pad with spaces. Substrings will already be blanked. */
if (len < end - start && ref == NULL)
gfc_wide_memset (&dest[start + len], ' ', end - (start + len));
if (rvalue->ts.type == BT_HOLLERITH)
{
init->representation.length = init->value.character.length;
init->representation.string
= gfc_widechar_to_char (init->value.character.string,
init->value.character.length);
}
return init;
}
/* Assign the initial value RVALUE to LVALUE's symbol->value. If the
LVALUE already has an initialization, we extend this, otherwise we
create a new one. */
gfc_try
gfc_assign_data_value (gfc_expr *lvalue, gfc_expr *rvalue, mpz_t index)
{
gfc_ref *ref;
gfc_expr *init;
gfc_expr *expr;
gfc_constructor *con;
gfc_constructor *last_con;
gfc_symbol *symbol;
gfc_typespec *last_ts;
mpz_t offset;
symbol = lvalue->symtree->n.sym;
init = symbol->value;
last_ts = &symbol->ts;
last_con = NULL;
mpz_init_set_si (offset, 0);
/* Find/create the parent expressions for subobject references. */
for (ref = lvalue->ref; ref; ref = ref->next)
{
/* Break out of the loop if we find a substring. */
if (ref->type == REF_SUBSTRING)
{
/* A substring should always be the last subobject reference. */
gcc_assert (ref->next == NULL);
break;
}
/* Use the existing initializer expression if it exists. Otherwise
create a new one. */
if (init == NULL)
expr = gfc_get_expr ();
else
expr = init;
/* Find or create this element. */
switch (ref->type)
{
case REF_ARRAY:
if (ref->u.ar.as->rank == 0)
{
gcc_assert (ref->u.ar.as->corank > 0);
if (init == NULL)
gfc_free (expr);
continue;
}
if (init && expr->expr_type != EXPR_ARRAY)
{
gfc_error ("'%s' at %L already is initialized at %L",
lvalue->symtree->n.sym->name, &lvalue->where,
&init->where);
return FAILURE;
}
if (init == NULL)
{
/* The element typespec will be the same as the array
typespec. */
expr->ts = *last_ts;
/* Setup the expression to hold the constructor. */
expr->expr_type = EXPR_ARRAY;
expr->rank = ref->u.ar.as->rank;
}
if (ref->u.ar.type == AR_ELEMENT)
get_array_index (&ref->u.ar, &offset);
else
mpz_set (offset, index);
/* Check the bounds. */
if (mpz_cmp_si (offset, 0) < 0)
{
gfc_error ("Data element below array lower bound at %L",
&lvalue->where);
return FAILURE;
}
else
{
mpz_t size;
if (spec_size (ref->u.ar.as, &size) == SUCCESS)
{
if (mpz_cmp (offset, size) >= 0)
{
mpz_clear (size);
gfc_error ("Data element above array upper bound at %L",
&lvalue->where);
return FAILURE;
}
mpz_clear (size);
}
}
con = gfc_constructor_lookup (expr->value.constructor,
mpz_get_si (offset));
if (!con)
{
con = gfc_constructor_insert_expr (&expr->value.constructor,
NULL, NULL,
mpz_get_si (offset));
}
break;
case REF_COMPONENT:
if (init == NULL)
{
/* Setup the expression to hold the constructor. */
expr->expr_type = EXPR_STRUCTURE;
expr->ts.type = BT_DERIVED;
expr->ts.u.derived = ref->u.c.sym;
}
else
gcc_assert (expr->expr_type == EXPR_STRUCTURE);
last_ts = &ref->u.c.component->ts;
/* Find the same element in the existing constructor. */
con = find_con_by_component (ref->u.c.component,
expr->value.constructor);
if (con == NULL)
{
/* Create a new constructor. */
con = gfc_constructor_append_expr (&expr->value.constructor,
NULL, NULL);
con->n.component = ref->u.c.component;
}
break;
default:
gcc_unreachable ();
}
if (init == NULL)
{
/* Point the container at the new expression. */
if (last_con == NULL)
symbol->value = expr;
else
last_con->expr = expr;
}
init = con->expr;
last_con = con;
}
if (ref || last_ts->type == BT_CHARACTER)
{
if (lvalue->ts.u.cl->length == NULL && !(ref && ref->u.ss.length != NULL))
return FAILURE;
expr = create_character_intializer (init, last_ts, ref, rvalue);
}
else
{
/* Overwriting an existing initializer is non-standard but usually only
provokes a warning from other compilers. */
if (init != NULL)
{
/* Order in which the expressions arrive here depends on whether
they are from data statements or F95 style declarations.
Therefore, check which is the most recent. */
expr = (LOCATION_LINE (init->where.lb->location)
> LOCATION_LINE (rvalue->where.lb->location))
? init : rvalue;
gfc_notify_std (GFC_STD_GNU, "Extension: re-initialization "
"of '%s' at %L", symbol->name, &expr->where);
}
expr = gfc_copy_expr (rvalue);
if (!gfc_compare_types (&lvalue->ts, &expr->ts))
gfc_convert_type (expr, &lvalue->ts, 0);
}
if (last_con == NULL)
symbol->value = expr;
else
last_con->expr = expr;
return SUCCESS;
}
/* Similarly, but initialize REPEAT consecutive values in LVALUE the same
value in RVALUE. For the nonce, LVALUE must refer to a full array, not
an array section. */
void
gfc_assign_data_value_range (gfc_expr *lvalue, gfc_expr *rvalue,
mpz_t index, mpz_t repeat)
{
gfc_ref *ref;
gfc_expr *init, *expr;
gfc_constructor *con, *last_con;
gfc_symbol *symbol;
gfc_typespec *last_ts;
mpz_t offset;
symbol = lvalue->symtree->n.sym;
init = symbol->value;
last_ts = &symbol->ts;
last_con = NULL;
mpz_init_set_si (offset, 0);
/* Find/create the parent expressions for subobject references. */
for (ref = lvalue->ref; ref; ref = ref->next)
{
/* Use the existing initializer expression if it exists.
Otherwise create a new one. */
if (init == NULL)
expr = gfc_get_expr ();
else
expr = init;
/* Find or create this element. */
switch (ref->type)
{
case REF_ARRAY:
if (init == NULL)
{
/* The element typespec will be the same as the array
typespec. */
expr->ts = *last_ts;
/* Setup the expression to hold the constructor. */
expr->expr_type = EXPR_ARRAY;
expr->rank = ref->u.ar.as->rank;
}
else
gcc_assert (expr->expr_type == EXPR_ARRAY);
if (ref->u.ar.type == AR_ELEMENT)
{
get_array_index (&ref->u.ar, &offset);
/* This had better not be the bottom of the reference.
We can still get to a full array via a component. */
gcc_assert (ref->next != NULL);
}
else
{
mpz_set (offset, index);
/* We're at a full array or an array section. This means
that we've better have found a full array, and that we're
at the bottom of the reference. */
gcc_assert (ref->u.ar.type == AR_FULL);
gcc_assert (ref->next == NULL);
}
con = gfc_constructor_lookup (expr->value.constructor,
mpz_get_si (offset));
if (con == NULL)
{
con = gfc_constructor_insert_expr (&expr->value.constructor,
NULL, NULL,
mpz_get_si (offset));
if (ref->next == NULL)
mpz_set (con->repeat, repeat);
}
else
gcc_assert (ref->next != NULL);
break;
case REF_COMPONENT:
if (init == NULL)
{
/* Setup the expression to hold the constructor. */
expr->expr_type = EXPR_STRUCTURE;
expr->ts.type = BT_DERIVED;
expr->ts.u.derived = ref->u.c.sym;
}
else
gcc_assert (expr->expr_type == EXPR_STRUCTURE);
last_ts = &ref->u.c.component->ts;
/* Find the same element in the existing constructor. */
con = find_con_by_component (ref->u.c.component,
expr->value.constructor);
if (con == NULL)
{
/* Create a new constructor. */
con = gfc_constructor_append_expr (&expr->value.constructor,
NULL, NULL);
con->n.component = ref->u.c.component;
}
/* Since we're only intending to initialize arrays here,
there better be an inner reference. */
gcc_assert (ref->next != NULL);
break;
case REF_SUBSTRING:
default:
gcc_unreachable ();
}
if (init == NULL)
{
/* Point the container at the new expression. */
if (last_con == NULL)
symbol->value = expr;
else
last_con->expr = expr;
}
init = con->expr;
last_con = con;
}
if (last_ts->type == BT_CHARACTER)
expr = create_character_intializer (init, last_ts, NULL, rvalue);
else
{
/* We should never be overwriting an existing initializer. */
gcc_assert (!init);
expr = gfc_copy_expr (rvalue);
if (!gfc_compare_types (&lvalue->ts, &expr->ts))
gfc_convert_type (expr, &lvalue->ts, 0);
}
if (last_con == NULL)
symbol->value = expr;
else
last_con->expr = expr;
}
/* Modify the index of array section and re-calculate the array offset. */
void
gfc_advance_section (mpz_t *section_index, gfc_array_ref *ar,
mpz_t *offset_ret)
{
int i;
mpz_t delta;
mpz_t tmp;
bool forwards;
int cmp;
for (i = 0; i < ar->dimen; i++)
{
if (ar->dimen_type[i] != DIMEN_RANGE)
continue;
if (ar->stride[i])
{
mpz_add (section_index[i], section_index[i],
ar->stride[i]->value.integer);
if (mpz_cmp_si (ar->stride[i]->value.integer, 0) >= 0)
forwards = true;
else
forwards = false;
}
else
{
mpz_add_ui (section_index[i], section_index[i], 1);
forwards = true;
}
if (ar->end[i])
cmp = mpz_cmp (section_index[i], ar->end[i]->value.integer);
else
cmp = mpz_cmp (section_index[i], ar->as->upper[i]->value.integer);
if ((cmp > 0 && forwards) || (cmp < 0 && !forwards))
{
/* Reset index to start, then loop to advance the next index. */
if (ar->start[i])
mpz_set (section_index[i], ar->start[i]->value.integer);
else
mpz_set (section_index[i], ar->as->lower[i]->value.integer);
}
else
break;
}
mpz_set_si (*offset_ret, 0);
mpz_init_set_si (delta, 1);
mpz_init (tmp);
for (i = 0; i < ar->dimen; i++)
{
mpz_sub (tmp, section_index[i], ar->as->lower[i]->value.integer);
mpz_mul (tmp, tmp, delta);
mpz_add (*offset_ret, tmp, *offset_ret);
mpz_sub (tmp, ar->as->upper[i]->value.integer,
ar->as->lower[i]->value.integer);
mpz_add_ui (tmp, tmp, 1);
mpz_mul (delta, tmp, delta);
}
mpz_clear (tmp);
mpz_clear (delta);
}
/* Rearrange a structure constructor so the elements are in the specified
order. Also insert NULL entries if necessary. */
static void
formalize_structure_cons (gfc_expr *expr)
{
gfc_constructor_base base = NULL;
gfc_constructor *cur;
gfc_component *order;
/* Constructor is already formalized. */
cur = gfc_constructor_first (expr->value.constructor);
if (!cur || cur->n.component == NULL)
return;
for (order = expr->ts.u.derived->components; order; order = order->next)
{
cur = find_con_by_component (order, expr->value.constructor);
if (cur)
gfc_constructor_append_expr (&base, cur->expr, &cur->expr->where);
else
gfc_constructor_append_expr (&base, NULL, NULL);
}
/* For all what it's worth, one would expect
gfc_constructor_free (expr->value.constructor);
here. However, if the constructor is actually free'd,
hell breaks loose in the testsuite?! */
expr->value.constructor = base;
}
/* Make sure an initialization expression is in normalized form, i.e., all
elements of the constructors are in the correct order. */
static void
formalize_init_expr (gfc_expr *expr)
{
expr_t type;
gfc_constructor *c;
if (expr == NULL)
return;
type = expr->expr_type;
switch (type)
{
case EXPR_ARRAY:
for (c = gfc_constructor_first (expr->value.constructor);
c; c = gfc_constructor_next (c))
formalize_init_expr (c->expr);
break;
case EXPR_STRUCTURE:
formalize_structure_cons (expr);
break;
default:
break;
}
}
/* Resolve symbol's initial value after all data statement. */
void
gfc_formalize_init_value (gfc_symbol *sym)
{
formalize_init_expr (sym->value);
}
/* Get the integer value into RET_AS and SECTION from AS and AR, and return
offset. */
void
gfc_get_section_index (gfc_array_ref *ar, mpz_t *section_index, mpz_t *offset)
{
int i;
mpz_t delta;
mpz_t tmp;
mpz_set_si (*offset, 0);
mpz_init (tmp);
mpz_init_set_si (delta, 1);
for (i = 0; i < ar->dimen; i++)
{
mpz_init (section_index[i]);
switch (ar->dimen_type[i])
{
case DIMEN_ELEMENT:
case DIMEN_RANGE:
if (ar->start[i])
{
mpz_sub (tmp, ar->start[i]->value.integer,
ar->as->lower[i]->value.integer);
mpz_mul (tmp, tmp, delta);
mpz_add (*offset, tmp, *offset);
mpz_set (section_index[i], ar->start[i]->value.integer);
}
else
mpz_set (section_index[i], ar->as->lower[i]->value.integer);
break;
case DIMEN_VECTOR:
gfc_internal_error ("TODO: Vector sections in data statements");
default:
gcc_unreachable ();
}
mpz_sub (tmp, ar->as->upper[i]->value.integer,
ar->as->lower[i]->value.integer);
mpz_add_ui (tmp, tmp, 1);
mpz_mul (delta, tmp, delta);
}
mpz_clear (tmp);
mpz_clear (delta);
}