gcc/libgfortran/io/unit.c
Christopher D. Rickett a8b3b0b633 [multiple changes]
2007-07-01  Christopher D. Rickett  <crickett@lanl.gov>

	* interface.c (gfc_compare_derived_types): Special case for comparing
	derived types across namespaces.
	(gfc_compare_types): Deal with BT_VOID.
	(compare_parameter): Use BT_VOID to accept ISO C Binding pointers.
	* trans-expr.c (gfc_conv_function_call): Remove setting parm_kind
	to SCALAR
	(gfc_conv_initializer): Deal with ISO C Binding NULL_PTR and 
	NULL_FUNPTR.
	(gfc_conv_expr): Convert expressions for ISO C Binding derived types.
	* symbol.c (gfc_set_default_type): BIND(C) variables should not be
	implicitly declared.
	(check_conflict): Add BIND(C) and check for conflicts.
	(gfc_add_explicit_interface): Whitespace.	
	(gfc_add_is_bind_c): New function.  
	(gfc_copy_attr): Use it.
	(gfc_new_symbol): Initialize ISO C Binding objects.
	(get_iso_c_binding_dt):  New function.
	(verify_bind_c_derived_type): Ditto.
	(gen_special_c_interop_ptr): Ditto.
	(add_formal_arg): Ditto.
	(gen_cptr_param): Ditto.
	(gen_fptr_param): Ditto.
	(gen_shape_param): Ditto.
	(add_proc_interface): Ditto.
	(build_formal_args): Ditto.
	(generate_isocbinding_symbol):  Ditto.
	(get_iso_c_sym):  Ditto.
	* decl.c (num_idents_on_line, has_name_equals): New variables.
	(verify_c_interop_param): New function.
	(build_sym): Finish binding labels and deal with COMMON blocks.
	(add_init_expr_to_sym): Check if the initialized expression is
	an iso_c_binding named constants
	(variable_decl): Set ISO C Binding type_spec components.
	(gfc_match_kind_spec): Check match for C interoperable kind.
	(match_char_spec): Fix comment. Chnage gfc_match_small_int
	to gfc_match_small_int_expr.  Check for C interoperable kind.
	(match_type_spec): Clear the current binding label.
	(match_attr_spec): Add DECL_IS_BIND_C.  If BIND(C) is found, use it
	to set attributes.
	(set_binding_label): New function.
	(set_com_block_bind_c): Ditto.
	(verify_c_interop): Ditto.
	(verify_com_block_vars_c_interop): Ditto.
	(verify_bind_c_sym): Ditto.
	(set_verify_bind_c_sym): Ditto.
	(set_verify_bind_c_com_block): Ditto.
	(get_bind_c_idents): Ditto.
	(gfc_match_bind_c_stmt): Ditto.
	(gfc_match_data_decl): Use num_idents_on_line.
	(match_result): Deal with right paren in BIND(C).
	(gfc_match_suffix): New function.
	(gfc_match_function_decl): Use it.  Code is re-arranged to deal with
	ISO C Binding result clauses.
	(gfc_match_subroutine):  Deal with BIND(C).
 	(gfc_match_bind_c): New function.
	(gfc_get_type_attr_spec): New function.  Code is re-arranged in and
	taken from gfc_match_derived_decl.
	(gfc_match_derived_decl): Add check for BIND(C).
	* trans-common.c: Forward declare gfc_get_common.
	(gfc_sym_mangled_common_id): Change arg from 'const char *name' to
	'gfc_common_head *com'.  Check for ISO C Binding of the common block.
	(build_common_decl): 'com->name' to 'com in SET_DECL_ASSEMBLER_NAME.
	* gfortran.h: Add GFC_MAX_BINDING_LABEL_LEN
	(bt): Add BT_VOID
	(sym_flavor): Add FL_VOID.
 	(iso_fortran_env_symbol, iso_c_binding_symbol, intmod_id): New enum
	(CInteropKind_t): New struct.
	(c_interop_kinds_table): Use it.  Declare an array of structs.
	(symbol_attribute): Add is_bind_c, is_c_interop, and is_iso_c
	bitfields.
	(gfc_typespec): Add is_c_interop; is_iso_c, and f90_type members.
	(gfc_symbol): Add from_intmod, intmod_sym_id, binding_label, and
	common_block members.
	(gfc_common_head): Add binding_label and is_bind_c members.
	(gfc_gsymbol): Add sym_name, mod_name, and binding_label members.
	Add prototypes for get_c_kind, gfc_validate_c_kind, 
	gfc_check_any_c_kind, gfc_add_is_bind_c, gfc_add_value,
	verify_c_interop, verify_c_interop_param, verify_bind_c_sym,
	verify_bind_c_derived_type, verify_com_block_vars_c_interop,
	generate_isocbinding_symbol, get_iso_c_sym, gfc_iso_c_sub_interface
	* iso-c-binding.def: New file. This file contains the definitions
	of the types provided by the Fortran 2003 ISO_C_BINDING intrinsic
	module.
	* trans-const.c (gfc_conv_constant_to_tree): Deal with C_NULL_PTR
	 or C_NULL_FUNPTR expressions.
	* expr.c (gfc_copy_expr): Add BT_VOID case.  For BT_CHARACTER, the
	ISO C Binding requires a minimum string length of 1 for '\0'.  
	* module.c (intmod_sym): New struct.
	(pointer_info): Add binding_label member.
	(write_atom): Set len to 0 for NULL pointers. Check for NULL p and *p.
	(ab_attribute): Add AB_IS_BIND_C, AB_IS_C_INTEROP and AB_IS_ISO_C.
	(attr_bits): Add "IS_BIND_C", "IS_C_INTEROP", and "IS_ISO_C".
	(mio_symbol_attribute): Deal with ISO C Binding attributes.
	(bt_types): Add "VOID".
	(mio_typespec): Deal with ISO C Binding components.
	(mio_namespace_ref): Add intmod variable. 
	(mio_symbol): Check for symbols from an intrinsic module.
	(load_commons): Check for BIND(C) common block.
	(read_module): Read binding_label and use it.
	(write_common): Add label.  Write BIND(C) info.
	(write_blank_common): Blank commons are not BIND(C).  Explicitly
	set is_bind_c=0.
	(write_symbol): Deal with binding_label.
	(sort_iso_c_rename_list): New function.
	(import_iso_c_binding_module): Ditto.
	(create_int_parameter): Add to args.
	(use_iso_fortran_env_module): Adjust to deal with iso_c_binding
	intrinsic module.
	* trans-types.c (c_interop_kinds_table): new array of structs. 
	(gfc_validate_c_kind): New function.
	(gfc_check_any_c_kind): Ditto.
	(get_real_kind_from_node): Ditto.
	(get_int_kind_from_node): Ditto.
	(get_int_kind_from_width): Ditto.
	(get_int_kind_from_minimal_width): Ditto.
	(init_c_interop_kinds): Ditto.
	(gfc_init_kinds): call init_c_interop_kinds.
	(gfc_typenode_for_spec): Adjust for BT_VOID and ISO C Binding pointers.
	Adjust handling of BT_DERIVED.
	(gfc_sym_type): Whitespace.
	(gfc_get_derived_type):  Account for iso_c_binding derived types
	* resolve.c (is_scalar_expr_ptr): New function.
	(gfc_iso_c_func_interface): Ditto.
	(resolve_function): Use gfc_iso_c_func_interface. 
	(set_name_and_label): New function.
	(gfc_iso_c_sub_interface): Ditto.
	(resolve_specific_s0): Use gfc_iso_c_sub_interface.
	(resolve_bind_c_comms): New function.
	(resolve_bind_c_derived_types): Ditto.
	(gfc_verify_binding_labels): Ditto.
	(resolve_fl_procedure): Check for ISO C interoperability.
	(resolve_symbol): Check C interoperability.
	(resolve_types): Walk the namespace.  Check COMMON blocks.
	* trans-decl.c (gfc_sym_mangled_identifier):  Prevent the mangling
	of identifiers that have an assigned binding label.
	(gfc_sym_mangled_function_id): Use the binding label rather than
	the mangled name.
	(gfc_finish_var_decl): Put variables that are BIND(C) into a common
	segment of the object file, because this is what C would do.
	(gfc_create_module_variable): Conver to proper types
	(set_tree_decl_type_code): New function.
	(generate_local_decl): Check dummy variables and derived types for
	ISO C Binding attributes.
	* match.c (gfc_match_small_int_expr): New function.
	(gfc_match_name_C): Ditto.
	(match_common_name): Deal with ISO C Binding in COMMON blocks
	* trans-io.c (transfer_expr):  Deal with C_NULL_PTR or C_NULL_FUNPTR
	expressions
	* match.h: Add prototypes for gfc_match_small_int_expr,
	gfc_match_name_C, match_common_name, set_com_block_bind_c,
	set_binding_label, set_verify_bind_c_sym,
	set_verify_bind_c_com_block, get_bind_c_idents,
	gfc_match_bind_c_stmt, gfc_match_suffix, gfc_match_bind_c,
	gfc_get_type_attr_spec
	* parse.c (decode_statement): Use gfc_match_bind_c_stmt
	(parse_derived): Init *derived_sym = NULL, and gfc_current_block
	later for valiadation.
	* primary.c (got_delim): Set ISO C Binding components of ts.
	(match_logical_constant): Ditto.
	(match_complex_constant): Ditto.
	(match_complex_constant): Ditto.
	(gfc_match_rvalue): Check for existence of at least one arg for
	C_LOC, C_FUNLOC, and C_ASSOCIATED.
	* misc.c (gfc_clear_ts): Clear ISO C Bindoing components in ts.
	(get_c_kind): New function.

2007-07-01  Christopher D. Rickett  <crickett@lanl.gov>

	* Makefile.in: Add support for iso_c_generated_procs.c and
	iso_c_binding.c.
	* Makefile.am: Ditto.
	* intrinsics/iso_c_generated_procs.c: New file containing helper
	functions.
	* intrinsics/iso_c_binding.c: Ditto.
	* intrinsics/iso_c_binding.h: New file
	* gfortran.map: Include the __iso_c_binding_c_* functions.
	* libgfortran.h: define GFC_NUM_RANK_BITS.

2007-06-23  Christopher D. Rickett  <crickett@lanl.gov>

	* bind_c_array_params.f03: New files for Fortran 2003 ISO C Binding.
	* bind_c_coms.f90: Ditto.
	* bind_c_coms_driver.c: Ditto.
	* bind_c_dts.f90: Ditto.
	* bind_c_dts_2.f03: Ditto.
	* bind_c_dts_2_driver.c: Ditto.
	* bind_c_dts_3.f03: Ditto.
	* bind_c_dts_4.f03: Ditto.
	* bind_c_dts_driver.c: Ditto.
	* bind_c_implicit_vars.f03: Ditto.
	* bind_c_procs.f03: Ditto.
	* bind_c_usage_2.f03: Ditto.
	* bind_c_usage_3.f03: Ditto.
	* bind_c_usage_5.f03: Ditto.
	* bind_c_usage_6.f03: Ditto.
	* bind_c_usage_7.f03: Ditto.
	* bind_c_vars.f90: Ditto.
	* bind_c_vars_driver.c: Ditto.
	* binding_c_table_15_1.f03: Ditto.
	* binding_label_tests.f03: Ditto.
	* binding_label_tests_10.f03: Ditto.
	* binding_label_tests_10_main.f03: Ditto.
	* binding_label_tests_11.f03: Ditto.
	* binding_label_tests_11_main.f03: Ditto.
	* binding_label_tests_12.f03: Ditto.
	* binding_label_tests_13.f03: Ditto.
	* binding_label_tests_13_main.f03: Ditto.
	* binding_label_tests_14.f03: Ditto.
	* binding_label_tests_2.f03: Ditto.
	* binding_label_tests_3.f03: Ditto.
	* binding_label_tests_4.f03: Ditto.
	* binding_label_tests_5.f03: Ditto.
	* binding_label_tests_6.f03: Ditto.
	* binding_label_tests_7.f03: Ditto.
	* binding_label_tests_8.f03: Ditto.
	* binding_label_tests_9.f03: Ditto.
	* c_assoc.f90: Ditto.
	* c_assoc_2.f03: Ditto.
	* c_f_pointer_shape_test.f90: Ditto.
	* c_f_pointer_tests.f90: Ditto.
	* c_f_tests_driver.c: Ditto.
	* c_funloc_tests.f03: Ditto.
	* c_funloc_tests_2.f03: Ditto.
	* c_funloc_tests_3.f03: Ditto.
	* c_funloc_tests_3_funcs.c: Ditto.
	* c_kind_params.f90: Ditto.
	* c_kind_tests_2.f03: Ditto.
	* c_kinds.c: Ditto.
	* c_loc_driver.c: Ditto.
	* c_loc_test.f90: Ditto.
	* c_loc_tests_2.f03: Ditto.
	* c_loc_tests_2_funcs.c: Ditto.
	* c_loc_tests_3.f03: Ditto.
	* c_loc_tests_4.f03: Ditto.
	* c_loc_tests_5.f03: Ditto.
	* c_loc_tests_6.f03: Ditto.
	* c_loc_tests_7.f03: Ditto.
	* c_loc_tests_8.f03: Ditto.
	* c_ptr_tests.f03: Ditto.
	* c_ptr_tests_10.f03: Ditto.
	* c_ptr_tests_5.f03: Ditto.
	* c_ptr_tests_7.f03: Ditto.
	* c_ptr_tests_7_driver.c: Ditto.
	* c_ptr_tests_8.f03: Ditto.
	* c_ptr_tests_8_funcs.c: Ditto.
	* c_ptr_tests_9.f03: Ditto.
	* c_ptr_tests_driver.c: Ditto.
	* c_size_t_driver.c: Ditto.
	* c_size_t_test.f03: Ditto.
	* com_block_driver.f90: Ditto.
	* global_vars_c_init.f90: Ditto.
	* global_vars_c_init_driver.c: Ditto.
	* global_vars_f90_init.f90: Ditto.
	* global_vars_f90_init_driver.c: Ditto.
	* interop_params.f03: Ditto.
	* iso_c_binding_only.f03: Ditto.
	* iso_c_binding_rename_1.f03: Ditto.
	* iso_c_binding_rename_1_driver.c: Ditto.
	* iso_c_binding_rename_2.f03: Ditto.
	* iso_c_binding_rename_2_driver.c: Ditto.
	* kind_tests_2.f03: Ditto.
	* kind_tests_3.f03: Ditto.
	* module_md5_1.f90: Ditto.
	* only_clause_main.c: Ditto.
	* print_c_kinds.f90: Ditto.
	* test_bind_c_parens.f03: Ditto.
	* test_c_assoc.c: Ditto.
	* test_com_block.f90: Ditto.
	* test_common_binding_labels.f03: Ditto.
	* test_common_binding_labels_2.f03: Ditto.
	* test_common_binding_labels_2_main.f03: Ditto.
	* test_common_binding_labels_3.f03: Ditto.
	* test_common_binding_labels_3_main.f03: Ditto.
	* test_only_clause.f90: Ditto.
	* use_iso_c_binding.f90: Ditto.
	* value_5.f90: Ditto.
	* value_test.f90: Ditto.
	* value_tests_f03.f90: Ditto.

From-SVN: r126185
2007-07-02 02:47:21 +00:00

706 lines
No EOL
17 KiB
C

/* Copyright (C) 2002, 2003, 2005 Free Software Foundation, Inc.
Contributed by Andy Vaught
This file is part of the GNU Fortran 95 runtime library (libgfortran).
Libgfortran 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 2, or (at your option)
any later version.
In addition to the permissions in the GNU General Public License, the
Free Software Foundation gives you unlimited permission to link the
compiled version of this file into combinations with other programs,
and to distribute those combinations without any restriction coming
from the use of this file. (The General Public License restrictions
do apply in other respects; for example, they cover modification of
the file, and distribution when not linked into a combine
executable.)
Libgfortran 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 Libgfortran; see the file COPYING. If not, write to
the Free Software Foundation, 51 Franklin Street, Fifth Floor,
Boston, MA 02110-1301, USA. */
#include "config.h"
#include <stdlib.h>
#include <string.h>
#include "libgfortran.h"
#include "io.h"
/* IO locking rules:
UNIT_LOCK is a master lock, protecting UNIT_ROOT tree and UNIT_CACHE.
Concurrent use of different units should be supported, so
each unit has its own lock, LOCK.
Open should be atomic with its reopening of units and list_read.c
in several places needs find_unit another unit while holding stdin
unit's lock, so it must be possible to acquire UNIT_LOCK while holding
some unit's lock. Therefore to avoid deadlocks, it is forbidden
to acquire unit's private locks while holding UNIT_LOCK, except
for freshly created units (where no other thread can get at their
address yet) or when using just trylock rather than lock operation.
In addition to unit's private lock each unit has a WAITERS counter
and CLOSED flag. WAITERS counter must be either only
atomically incremented/decremented in all places (if atomic builtins
are supported), or protected by UNIT_LOCK in all places (otherwise).
CLOSED flag must be always protected by unit's LOCK.
After finding a unit in UNIT_CACHE or UNIT_ROOT with UNIT_LOCK held,
WAITERS must be incremented to avoid concurrent close from freeing
the unit between unlocking UNIT_LOCK and acquiring unit's LOCK.
Unit freeing is always done under UNIT_LOCK. If close_unit sees any
WAITERS, it doesn't free the unit but instead sets the CLOSED flag
and the thread that decrements WAITERS to zero while CLOSED flag is
set is responsible for freeing it (while holding UNIT_LOCK).
flush_all_units operation is iterating over the unit tree with
increasing UNIT_NUMBER while holding UNIT_LOCK and attempting to
flush each unit (and therefore needs the unit's LOCK held as well).
To avoid deadlocks, it just trylocks the LOCK and if unsuccessful,
remembers the current unit's UNIT_NUMBER, unlocks UNIT_LOCK, acquires
unit's LOCK and after flushing reacquires UNIT_LOCK and restarts with
the smallest UNIT_NUMBER above the last one flushed.
If find_unit/find_or_create_unit/find_file/get_unit routines return
non-NULL, the returned unit has its private lock locked and when the
caller is done with it, it must call either unlock_unit or close_unit
on it. unlock_unit or close_unit must be always called only with the
private lock held. */
/* Subroutines related to units */
#define CACHE_SIZE 3
static gfc_unit *unit_cache[CACHE_SIZE];
gfc_offset max_offset;
gfc_unit *unit_root;
#ifdef __GTHREAD_MUTEX_INIT
__gthread_mutex_t unit_lock = __GTHREAD_MUTEX_INIT;
#else
__gthread_mutex_t unit_lock;
#endif
/* We use these filenames for error reporting. */
static char stdin_name[] = "stdin";
static char stdout_name[] = "stdout";
static char stderr_name[] = "stderr";
/* This implementation is based on Stefan Nilsson's article in the
* July 1997 Doctor Dobb's Journal, "Treaps in Java". */
/* pseudo_random()-- Simple linear congruential pseudorandom number
* generator. The period of this generator is 44071, which is plenty
* for our purposes. */
static int
pseudo_random (void)
{
static int x0 = 5341;
x0 = (22611 * x0 + 10) % 44071;
return x0;
}
/* rotate_left()-- Rotate the treap left */
static gfc_unit *
rotate_left (gfc_unit * t)
{
gfc_unit *temp;
temp = t->right;
t->right = t->right->left;
temp->left = t;
return temp;
}
/* rotate_right()-- Rotate the treap right */
static gfc_unit *
rotate_right (gfc_unit * t)
{
gfc_unit *temp;
temp = t->left;
t->left = t->left->right;
temp->right = t;
return temp;
}
static int
compare (int a, int b)
{
if (a < b)
return -1;
if (a > b)
return 1;
return 0;
}
/* insert()-- Recursive insertion function. Returns the updated treap. */
static gfc_unit *
insert (gfc_unit *new, gfc_unit *t)
{
int c;
if (t == NULL)
return new;
c = compare (new->unit_number, t->unit_number);
if (c < 0)
{
t->left = insert (new, t->left);
if (t->priority < t->left->priority)
t = rotate_right (t);
}
if (c > 0)
{
t->right = insert (new, t->right);
if (t->priority < t->right->priority)
t = rotate_left (t);
}
if (c == 0)
internal_error (NULL, "insert(): Duplicate key found!");
return t;
}
/* insert_unit()-- Create a new node, insert it into the treap. */
static gfc_unit *
insert_unit (int n)
{
gfc_unit *u = get_mem (sizeof (gfc_unit));
memset (u, '\0', sizeof (gfc_unit));
u->unit_number = n;
#ifdef __GTHREAD_MUTEX_INIT
{
__gthread_mutex_t tmp = __GTHREAD_MUTEX_INIT;
u->lock = tmp;
}
#else
__GTHREAD_MUTEX_INIT_FUNCTION (&u->lock);
#endif
__gthread_mutex_lock (&u->lock);
u->priority = pseudo_random ();
unit_root = insert (u, unit_root);
return u;
}
static gfc_unit *
delete_root (gfc_unit * t)
{
gfc_unit *temp;
if (t->left == NULL)
return t->right;
if (t->right == NULL)
return t->left;
if (t->left->priority > t->right->priority)
{
temp = rotate_right (t);
temp->right = delete_root (t);
}
else
{
temp = rotate_left (t);
temp->left = delete_root (t);
}
return temp;
}
/* delete_treap()-- Delete an element from a tree. The 'old' value
* does not necessarily have to point to the element to be deleted, it
* must just point to a treap structure with the key to be deleted.
* Returns the new root node of the tree. */
static gfc_unit *
delete_treap (gfc_unit * old, gfc_unit * t)
{
int c;
if (t == NULL)
return NULL;
c = compare (old->unit_number, t->unit_number);
if (c < 0)
t->left = delete_treap (old, t->left);
if (c > 0)
t->right = delete_treap (old, t->right);
if (c == 0)
t = delete_root (t);
return t;
}
/* delete_unit()-- Delete a unit from a tree */
static void
delete_unit (gfc_unit * old)
{
unit_root = delete_treap (old, unit_root);
}
/* get_external_unit()-- Given an integer, return a pointer to the unit
* structure. Returns NULL if the unit does not exist,
* otherwise returns a locked unit. */
static gfc_unit *
get_external_unit (int n, int do_create)
{
gfc_unit *p;
int c, created = 0;
__gthread_mutex_lock (&unit_lock);
retry:
for (c = 0; c < CACHE_SIZE; c++)
if (unit_cache[c] != NULL && unit_cache[c]->unit_number == n)
{
p = unit_cache[c];
goto found;
}
p = unit_root;
while (p != NULL)
{
c = compare (n, p->unit_number);
if (c < 0)
p = p->left;
if (c > 0)
p = p->right;
if (c == 0)
break;
}
if (p == NULL && do_create)
{
p = insert_unit (n);
created = 1;
}
if (p != NULL)
{
for (c = 0; c < CACHE_SIZE - 1; c++)
unit_cache[c] = unit_cache[c + 1];
unit_cache[CACHE_SIZE - 1] = p;
}
if (created)
{
/* Newly created units have their lock held already
from insert_unit. Just unlock UNIT_LOCK and return. */
__gthread_mutex_unlock (&unit_lock);
return p;
}
found:
if (p != NULL)
{
/* Fast path. */
if (! __gthread_mutex_trylock (&p->lock))
{
/* assert (p->closed == 0); */
__gthread_mutex_unlock (&unit_lock);
return p;
}
inc_waiting_locked (p);
}
__gthread_mutex_unlock (&unit_lock);
if (p != NULL)
{
__gthread_mutex_lock (&p->lock);
if (p->closed)
{
__gthread_mutex_lock (&unit_lock);
__gthread_mutex_unlock (&p->lock);
if (predec_waiting_locked (p) == 0)
free_mem (p);
goto retry;
}
dec_waiting_unlocked (p);
}
return p;
}
gfc_unit *
find_unit (int n)
{
return get_external_unit (n, 0);
}
gfc_unit *
find_or_create_unit (int n)
{
return get_external_unit (n, 1);
}
gfc_unit *
get_internal_unit (st_parameter_dt *dtp)
{
gfc_unit * iunit;
/* Allocate memory for a unit structure. */
iunit = get_mem (sizeof (gfc_unit));
if (iunit == NULL)
{
generate_error (&dtp->common, ERROR_INTERNAL_UNIT, NULL);
return NULL;
}
memset (iunit, '\0', sizeof (gfc_unit));
#ifdef __GTHREAD_MUTEX_INIT
{
__gthread_mutex_t tmp = __GTHREAD_MUTEX_INIT;
iunit->lock = tmp;
}
#else
__GTHREAD_MUTEX_INIT_FUNCTION (&iunit->lock);
#endif
__gthread_mutex_lock (&iunit->lock);
iunit->recl = dtp->internal_unit_len;
/* For internal units we set the unit number to -1.
Otherwise internal units can be mistaken for a pre-connected unit or
some other file I/O unit. */
iunit->unit_number = -1;
/* Set up the looping specification from the array descriptor, if any. */
if (is_array_io (dtp))
{
iunit->rank = GFC_DESCRIPTOR_RANK (dtp->internal_unit_desc);
iunit->ls = (array_loop_spec *)
get_mem (iunit->rank * sizeof (array_loop_spec));
dtp->internal_unit_len *=
init_loop_spec (dtp->internal_unit_desc, iunit->ls);
}
/* Set initial values for unit parameters. */
iunit->s = open_internal (dtp->internal_unit, dtp->internal_unit_len);
iunit->bytes_left = iunit->recl;
iunit->last_record=0;
iunit->maxrec=0;
iunit->current_record=0;
iunit->read_bad = 0;
/* Set flags for the internal unit. */
iunit->flags.access = ACCESS_SEQUENTIAL;
iunit->flags.action = ACTION_READWRITE;
iunit->flags.form = FORM_FORMATTED;
iunit->flags.pad = PAD_YES;
iunit->flags.status = STATUS_UNSPECIFIED;
iunit->endfile = NO_ENDFILE;
/* Initialize the data transfer parameters. */
dtp->u.p.advance_status = ADVANCE_YES;
dtp->u.p.blank_status = BLANK_UNSPECIFIED;
dtp->u.p.seen_dollar = 0;
dtp->u.p.skips = 0;
dtp->u.p.pending_spaces = 0;
dtp->u.p.max_pos = 0;
dtp->u.p.at_eof = 0;
/* This flag tells us the unit is assigned to internal I/O. */
dtp->u.p.unit_is_internal = 1;
return iunit;
}
/* free_internal_unit()-- Free memory allocated for internal units if any. */
void
free_internal_unit (st_parameter_dt *dtp)
{
if (!is_internal_unit (dtp))
return;
if (dtp->u.p.current_unit->ls != NULL)
free_mem (dtp->u.p.current_unit->ls);
sclose (dtp->u.p.current_unit->s);
if (dtp->u.p.current_unit != NULL)
free_mem (dtp->u.p.current_unit);
}
/* get_unit()-- Returns the unit structure associated with the integer
* unit or the internal file. */
gfc_unit *
get_unit (st_parameter_dt *dtp, int do_create)
{
if ((dtp->common.flags & IOPARM_DT_HAS_INTERNAL_UNIT) != 0)
return get_internal_unit(dtp);
/* Has to be an external unit */
dtp->u.p.unit_is_internal = 0;
dtp->internal_unit_desc = NULL;
return get_external_unit (dtp->common.unit, do_create);
}
/*************************/
/* Initialize everything */
void
init_units (void)
{
gfc_unit *u;
unsigned int i;
#ifndef __GTHREAD_MUTEX_INIT
__GTHREAD_MUTEX_INIT_FUNCTION (&unit_lock);
#endif
if (options.stdin_unit >= 0)
{ /* STDIN */
u = insert_unit (options.stdin_unit);
u->s = input_stream ();
u->flags.action = ACTION_READ;
u->flags.access = ACCESS_SEQUENTIAL;
u->flags.form = FORM_FORMATTED;
u->flags.status = STATUS_OLD;
u->flags.blank = BLANK_NULL;
u->flags.pad = PAD_YES;
u->flags.position = POSITION_ASIS;
u->recl = options.default_recl;
u->endfile = NO_ENDFILE;
u->file_len = strlen (stdin_name);
u->file = get_mem (u->file_len);
memmove (u->file, stdin_name, u->file_len);
__gthread_mutex_unlock (&u->lock);
}
if (options.stdout_unit >= 0)
{ /* STDOUT */
u = insert_unit (options.stdout_unit);
u->s = output_stream ();
u->flags.action = ACTION_WRITE;
u->flags.access = ACCESS_SEQUENTIAL;
u->flags.form = FORM_FORMATTED;
u->flags.status = STATUS_OLD;
u->flags.blank = BLANK_NULL;
u->flags.position = POSITION_ASIS;
u->recl = options.default_recl;
u->endfile = AT_ENDFILE;
u->file_len = strlen (stdout_name);
u->file = get_mem (u->file_len);
memmove (u->file, stdout_name, u->file_len);
__gthread_mutex_unlock (&u->lock);
}
if (options.stderr_unit >= 0)
{ /* STDERR */
u = insert_unit (options.stderr_unit);
u->s = error_stream ();
u->flags.action = ACTION_WRITE;
u->flags.access = ACCESS_SEQUENTIAL;
u->flags.form = FORM_FORMATTED;
u->flags.status = STATUS_OLD;
u->flags.blank = BLANK_NULL;
u->flags.position = POSITION_ASIS;
u->recl = options.default_recl;
u->endfile = AT_ENDFILE;
u->file_len = strlen (stderr_name);
u->file = get_mem (u->file_len);
memmove (u->file, stderr_name, u->file_len);
__gthread_mutex_unlock (&u->lock);
}
/* Calculate the maximum file offset in a portable manner.
* max will be the largest signed number for the type gfc_offset.
*
* set a 1 in the LSB and keep a running sum, stopping at MSB-1 bit. */
max_offset = 0;
for (i = 0; i < sizeof (max_offset) * 8 - 1; i++)
max_offset = max_offset + ((gfc_offset) 1 << i);
}
static int
close_unit_1 (gfc_unit *u, int locked)
{
int i, rc;
/* If there are previously written bytes from a write with ADVANCE="no"
Reposition the buffer before closing. */
if (u->saved_pos > 0)
{
char *p;
p = salloc_w (u->s, &u->saved_pos);
if (!(u->unit_number == options.stdout_unit
|| u->unit_number == options.stderr_unit))
{
size_t len;
const char crlf[] = "\r\n";
#ifdef HAVE_CRLF
len = 2;
#else
len = 1;
#endif
if (swrite (u->s, &crlf[2-len], &len) != 0)
os_error ("Close after ADVANCE_NO failed");
}
}
rc = (u->s == NULL) ? 0 : sclose (u->s) == FAILURE;
u->closed = 1;
if (!locked)
__gthread_mutex_lock (&unit_lock);
for (i = 0; i < CACHE_SIZE; i++)
if (unit_cache[i] == u)
unit_cache[i] = NULL;
delete_unit (u);
if (u->file)
free_mem (u->file);
u->file = NULL;
u->file_len = 0;
if (!locked)
__gthread_mutex_unlock (&u->lock);
/* If there are any threads waiting in find_unit for this unit,
avoid freeing the memory, the last such thread will free it
instead. */
if (u->waiting == 0)
free_mem (u);
if (!locked)
__gthread_mutex_unlock (&unit_lock);
return rc;
}
void
unlock_unit (gfc_unit *u)
{
__gthread_mutex_unlock (&u->lock);
}
/* close_unit()-- Close a unit. The stream is closed, and any memory
* associated with the stream is freed. Returns nonzero on I/O error.
* Should be called with the u->lock locked. */
int
close_unit (gfc_unit *u)
{
return close_unit_1 (u, 0);
}
/* close_units()-- Delete units on completion. We just keep deleting
* the root of the treap until there is nothing left.
* Not sure what to do with locking here. Some other thread might be
* holding some unit's lock and perhaps hold it indefinitely
* (e.g. waiting for input from some pipe) and close_units shouldn't
* delay the program too much. */
void
close_units (void)
{
__gthread_mutex_lock (&unit_lock);
while (unit_root != NULL)
close_unit_1 (unit_root, 1);
__gthread_mutex_unlock (&unit_lock);
}
/* update_position()-- Update the flags position for later use by inquire. */
void
update_position (gfc_unit *u)
{
if (file_position (u->s) == 0)
u->flags.position = POSITION_REWIND;
else if (file_length (u->s) == file_position (u->s))
u->flags.position = POSITION_APPEND;
else
u->flags.position = POSITION_ASIS;
}
/* filename_from_unit()-- If the unit_number exists, return a pointer to the
name of the associated file, otherwise return the empty string. The caller
must free memory allocated for the filename string. */
char *
filename_from_unit (int unit_number)
{
char *filename;
gfc_unit *u = NULL;
u = find_unit (unit_number);
if (u != NULL)
{
filename = (char *) get_mem (u->file_len + 1);
unpack_filename (filename, u->file, u->file_len);
return filename;
}
else
return (char *) NULL;
}