Contributed by Richard Henderson <rth@redhat.com>.
This file is part of the GNU OpenMP Library (libgomp).
Libgomp 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.
Libgomp 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.
Under Section 7 of GPL version 3, you are granted additional
permissions described in the GCC Runtime Library Exception, version
3.1, as published by the Free Software Foundation.
You should have received a copy of the GNU General Public License and
a copy of the GCC Runtime Library Exception along with this program;
see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
<http://www.gnu.org/licenses/>. */
part of the official OpenMP user interface. There are declarations
in here that are part of the GNU OpenMP ABI, in that the compiler is
required to know about them and use them.
The convention is that the all caps prefix "GOMP" is used group items
that are part of the external ABI, and the lower case prefix "gomp"
is used group items that are completely private to the library. */
#ifndef LIBGOMP_H
#define LIBGOMP_H 1
#include "config.h"
#include "gstdint.h"
#include <pthread.h>
#include <stdbool.h>
#ifdef HAVE_ATTRIBUTE_VISIBILITY
# pragma GCC visibility push(hidden)
#endif
#include "sem.h"
#include "mutex.h"
#include "bar.h"
#include "ptrlock.h"
either a LOOP (FOR/DO) or a SECTIONS. */
enum gomp_schedule_type
{
GFS_RUNTIME,
GFS_STATIC,
GFS_DYNAMIC,
GFS_GUIDED,
GFS_AUTO
};
struct gomp_work_share
{
The user specification of "runtime" will already have been resolved.
If this is a SECTIONS construct, this value will always be DYNAMIC. */
enum gomp_schedule_type sched;
int mode;
union {
struct {
long chunk_size;
this is the number of contained sections. */
long end;
is always 1. */
long incr;
};
struct {
unsigned long long chunk_size_ull;
unsigned long long end_ull;
unsigned long long incr_ull;
};
};
into the ordered region and in which order. When a thread allocates
iterations on which it is going to work, it also registers itself at
the end of the array. When a thread reaches the ordered region, it
checks to see if it is the one at the head of the queue. If not, it
blocks on its RELEASE semaphore. */
unsigned *ordered_team_ids;
the circular queue ordered_team_ids. */
unsigned ordered_num_used;
section, or -1u if the ordered section has not been acknowledged by
any thread. This is distinguished from the thread that is *allowed*
to take the section next. */
unsigned ordered_owner;
current thread that's allowed into the ordered reason. */
unsigned ordered_cur;
in the first gomp_work_share struct in the block. */
struct gomp_work_share *next_alloc;
or related to ordered worksharing. Make sure the following fields
are in a different cache line. */
gomp_mutex_t lock __attribute__((aligned (64)));
share construct. If the construct was marked nowait, they have moved on
to other work; otherwise they're blocked on a barrier. The last member
of the team to exit the work share construct must deallocate it. */
unsigned threads_completed;
union {
GFS_STATIC loops, this the iteration start point and never changes. */
long next;
unsigned long long next_ull;
void *copyprivate;
};
union {
encountered after this one. */
gomp_ptrlock_t next_ws;
through this. */
struct gomp_work_share *next_free;
};
to this array which fills the padding at the end of this struct. */
unsigned inline_ordered_team_ids[0];
};
a thread team. This is the data that must be saved when a thread
encounters a nested PARALLEL construct. */
struct gomp_team_state
{
struct gomp_team *team;
processing. Recall that with NOWAIT, not all threads may be
processing the same construct. */
struct gomp_work_share *work_share;
When all threads are done with the current work sharing construct,
the previous one can be freed. The current one can't, as its
next_ws field is used. */
struct gomp_work_share *last_work_share;
guaranteed to be between 0 and N-1, where N is the number of
threads in the team. */
unsigned team_id;
unsigned level;
unsigned active_level;
#ifdef HAVE_SYNC_BUILTINS
unsigned long single_count;
#endif
trip number through the loop. So first time a particular loop
is encountered this number is 0, the second time through the loop
is 1, etc. This is unused when the compiler knows in advance that
the loop is statically scheduled. */
unsigned long static_trip;
};
section 2.3.1. Those described as having one copy per task are
stored within the structure; those described as having one copy
for the whole program are (naturally) global variables. */
struct gomp_task_icv
{
unsigned long nthreads_var;
enum gomp_schedule_type run_sched_var;
int run_sched_modifier;
bool dyn_var;
bool nest_var;
};
extern struct gomp_task_icv gomp_global_icv;
extern unsigned long gomp_thread_limit_var;
extern unsigned long gomp_remaining_threads_count;
#ifndef HAVE_SYNC_BUILTINS
extern gomp_mutex_t gomp_remaining_threads_lock;
#endif
extern unsigned long gomp_max_active_levels_var;
extern unsigned long long gomp_spin_count_var, gomp_throttled_spin_count_var;
extern unsigned long gomp_available_cpus, gomp_managed_threads;
enum gomp_task_kind
{
GOMP_TASK_IMPLICIT,
GOMP_TASK_IFFALSE,
GOMP_TASK_WAITING,
GOMP_TASK_TIED
};
struct gomp_task
{
struct gomp_task *parent;
struct gomp_task *children;
struct gomp_task *next_child;
struct gomp_task *prev_child;
struct gomp_task *next_queue;
struct gomp_task *prev_queue;
struct gomp_task_icv icv;
void (*fn) (void *);
void *fn_data;
enum gomp_task_kind kind;
bool in_taskwait;
bool in_tied_task;
gomp_sem_t taskwait_sem;
};
that are spawned by a PARALLEL constructs, as well as the work sharing
constructs that the team encounters. */
struct gomp_team
{
unsigned nthreads;
as a block last time. */
unsigned work_share_chunk;
the current thread was created. */
struct gomp_team_state prev_ts;
"native" semaphore in the thread structure. Required for nested
parallels, as the master is a member of two teams. */
gomp_sem_t master_release;
of the threads in the team. */
gomp_sem_t **ordered_release;
This is populated and taken off only by the first thread in the
team encountering a new work sharing construct, in a critical
section. */
struct gomp_work_share *work_share_list_alloc;
entries are atomically added to the start of the list, and
alloc_work_share can safely only move all but the first entry
to work_share_list alloc, as free_work_share can happen concurrently
with alloc_work_share. */
struct gomp_work_share *work_share_list_free;
#ifdef HAVE_SYNC_BUILTINS
team. */
unsigned long single_count;
#else
gomp_mutex_t work_share_list_free_lock;
#endif
gomp_barrier_t barrier;
structs in the common case. */
struct gomp_work_share work_shares[8];
gomp_mutex_t task_lock;
struct gomp_task *task_queue;
int task_count;
int task_running_count;
struct gomp_task implicit_task[];
};
allocated per thread. */
struct gomp_thread
{
void (*fn) (void *data);
void *data;
is NULL only if the thread is idle. */
struct gomp_team_state ts;
struct gomp_task *task;
gomp_sem_t release;
struct gomp_thread_pool *thread_pool;
};
struct gomp_thread_pool
{
return to the idle loop once the current PARALLEL construct ends. */
struct gomp_thread **threads;
unsigned threads_size;
unsigned threads_used;
struct gomp_team *last_team;
gomp_barrier_t threads_dock;
};
#ifdef HAVE_TLS
extern __thread struct gomp_thread gomp_tls_data;
static inline struct gomp_thread *gomp_thread (void)
{
return &gomp_tls_data;
}
#else
extern pthread_key_t gomp_tls_key;
static inline struct gomp_thread *gomp_thread (void)
{
return pthread_getspecific (gomp_tls_key);
}
#endif
extern struct gomp_task_icv *gomp_new_icv (void);
static inline struct gomp_task_icv *gomp_icv (bool write)
{
struct gomp_task *task = gomp_thread ()->task;
if (task)
return &task->icv;
else if (write)
return gomp_new_icv ();
else
return &gomp_global_icv;
}
extern pthread_attr_t gomp_thread_attr;
extern unsigned short *gomp_cpu_affinity;
extern size_t gomp_cpu_affinity_len;
extern void gomp_init_affinity (void);
extern void gomp_init_thread_affinity (pthread_attr_t *);
extern void *gomp_malloc (size_t) __attribute__((malloc));
extern void *gomp_malloc_cleared (size_t) __attribute__((malloc));
extern void *gomp_realloc (void *, size_t);
GCC's builtin alloca(). */
#define gomp_alloca(x) __builtin_alloca(x)
extern void gomp_error (const char *, ...)
__attribute__((format (printf, 1, 2)));
extern void gomp_fatal (const char *, ...)
__attribute__((noreturn, format (printf, 1, 2)));
extern int gomp_iter_static_next (long *, long *);
extern bool gomp_iter_dynamic_next_locked (long *, long *);
extern bool gomp_iter_guided_next_locked (long *, long *);
#ifdef HAVE_SYNC_BUILTINS
extern bool gomp_iter_dynamic_next (long *, long *);
extern bool gomp_iter_guided_next (long *, long *);
#endif
extern int gomp_iter_ull_static_next (unsigned long long *,
unsigned long long *);
extern bool gomp_iter_ull_dynamic_next_locked (unsigned long long *,
unsigned long long *);
extern bool gomp_iter_ull_guided_next_locked (unsigned long long *,
unsigned long long *);
#if defined HAVE_SYNC_BUILTINS && defined __LP64__
extern bool gomp_iter_ull_dynamic_next (unsigned long long *,
unsigned long long *);
extern bool gomp_iter_ull_guided_next (unsigned long long *,
unsigned long long *);
#endif
extern void gomp_ordered_first (void);
extern void gomp_ordered_last (void);
extern void gomp_ordered_next (void);
extern void gomp_ordered_static_init (void);
extern void gomp_ordered_static_next (void);
extern void gomp_ordered_sync (void);
extern unsigned gomp_resolve_num_threads (unsigned, unsigned);
extern void gomp_init_num_threads (void);
extern unsigned gomp_dynamic_max_threads (void);
extern void gomp_init_task (struct gomp_task *, struct gomp_task *,
struct gomp_task_icv *);
extern void gomp_end_task (void);
extern void gomp_barrier_handle_tasks (gomp_barrier_state_t);
static void inline
gomp_finish_task (struct gomp_task *task)
{
gomp_sem_destroy (&task->taskwait_sem);
}
extern struct gomp_team *gomp_new_team (unsigned);
extern void gomp_team_start (void (*) (void *), void *, unsigned,
struct gomp_team *);
extern void gomp_team_end (void);
extern void gomp_init_work_share (struct gomp_work_share *, bool, unsigned);
extern void gomp_fini_work_share (struct gomp_work_share *);
extern bool gomp_work_share_start (bool);
extern void gomp_work_share_end (void);
extern void gomp_work_share_end_nowait (void);
static inline void
gomp_work_share_init_done (void)
{
struct gomp_thread *thr = gomp_thread ();
if (__builtin_expect (thr->ts.last_work_share != NULL, 1))
gomp_ptrlock_set (&thr->ts.last_work_share->next_ws, thr->ts.work_share);
}
#ifdef HAVE_ATTRIBUTE_VISIBILITY
# pragma GCC visibility pop
#endif
#include "libgomp_g.h"
#include "omp-lock.h"
#define _LIBGOMP_OMP_LOCK_DEFINED 1
#include "omp.h.in"
#if !defined (HAVE_ATTRIBUTE_VISIBILITY) \
|| !defined (HAVE_ATTRIBUTE_ALIAS) \
|| !defined (HAVE_AS_SYMVER_DIRECTIVE) \
|| !defined (PIC) \
|| !defined (HAVE_SYMVER_SYMBOL_RENAMING_RUNTIME_SUPPORT)
# undef LIBGOMP_GNU_SYMBOL_VERSIONING
#endif
#ifdef LIBGOMP_GNU_SYMBOL_VERSIONING
extern void gomp_init_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
extern void gomp_destroy_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
extern void gomp_set_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
extern void gomp_unset_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
extern int gomp_test_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
extern void gomp_init_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
extern void gomp_destroy_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
extern void gomp_set_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
extern void gomp_unset_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
extern int gomp_test_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
extern void gomp_init_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_destroy_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_set_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_unset_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
extern int gomp_test_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_init_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_destroy_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_set_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
extern void gomp_unset_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
extern int gomp_test_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
# define strong_alias(fn, al) \
extern __typeof (fn) al __attribute__ ((alias (#fn)));
# define omp_lock_symver(fn) \
__asm (".symver g" #fn "_30, " #fn "@@OMP_3.0"); \
__asm (".symver g" #fn "_25, " #fn "@OMP_1.0");
#else
# define gomp_init_lock_30 omp_init_lock
# define gomp_destroy_lock_30 omp_destroy_lock
# define gomp_set_lock_30 omp_set_lock
# define gomp_unset_lock_30 omp_unset_lock
# define gomp_test_lock_30 omp_test_lock
# define gomp_init_nest_lock_30 omp_init_nest_lock
# define gomp_destroy_nest_lock_30 omp_destroy_nest_lock
# define gomp_set_nest_lock_30 omp_set_nest_lock
# define gomp_unset_nest_lock_30 omp_unset_nest_lock
# define gomp_test_nest_lock_30 omp_test_nest_lock
#endif
#ifdef HAVE_ATTRIBUTE_VISIBILITY
# define attribute_hidden __attribute__ ((visibility ("hidden")))
#else
# define attribute_hidden
#endif
#ifdef HAVE_ATTRIBUTE_ALIAS
# define ialias(fn) \
extern __typeof (fn) gomp_ialias_##fn \
__attribute__ ((alias (#fn))) attribute_hidden;
#else
# define ialias(fn)
#endif
#endif