libgomp.h revision 1.1.1.10 1 1.1.1.10 mrg /* Copyright (C) 2005-2020 Free Software Foundation, Inc.
2 1.1 mrg Contributed by Richard Henderson <rth (at) redhat.com>.
3 1.1 mrg
4 1.1.1.3 mrg This file is part of the GNU Offloading and Multi Processing Library
5 1.1.1.3 mrg (libgomp).
6 1.1 mrg
7 1.1 mrg Libgomp is free software; you can redistribute it and/or modify it
8 1.1 mrg under the terms of the GNU General Public License as published by
9 1.1 mrg the Free Software Foundation; either version 3, or (at your option)
10 1.1 mrg any later version.
11 1.1 mrg
12 1.1 mrg Libgomp is distributed in the hope that it will be useful, but WITHOUT ANY
13 1.1 mrg WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
14 1.1 mrg FOR A PARTICULAR PURPOSE. See the GNU General Public License for
15 1.1 mrg more details.
16 1.1 mrg
17 1.1 mrg Under Section 7 of GPL version 3, you are granted additional
18 1.1 mrg permissions described in the GCC Runtime Library Exception, version
19 1.1 mrg 3.1, as published by the Free Software Foundation.
20 1.1 mrg
21 1.1 mrg You should have received a copy of the GNU General Public License and
22 1.1 mrg a copy of the GCC Runtime Library Exception along with this program;
23 1.1 mrg see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
24 1.1 mrg <http://www.gnu.org/licenses/>. */
25 1.1 mrg
26 1.1 mrg /* This file contains data types and function declarations that are not
27 1.1.1.3 mrg part of the official OpenACC or OpenMP user interfaces. There are
28 1.1.1.3 mrg declarations in here that are part of the GNU Offloading and Multi
29 1.1.1.3 mrg Processing ABI, in that the compiler is required to know about them
30 1.1.1.3 mrg and use them.
31 1.1 mrg
32 1.1 mrg The convention is that the all caps prefix "GOMP" is used group items
33 1.1 mrg that are part of the external ABI, and the lower case prefix "gomp"
34 1.1 mrg is used group items that are completely private to the library. */
35 1.1 mrg
36 1.1 mrg #ifndef LIBGOMP_H
37 1.1 mrg #define LIBGOMP_H 1
38 1.1 mrg
39 1.1.1.4 mrg #ifndef _LIBGOMP_CHECKING_
40 1.1.1.4 mrg /* Define to 1 to perform internal sanity checks. */
41 1.1.1.4 mrg #define _LIBGOMP_CHECKING_ 0
42 1.1.1.4 mrg #endif
43 1.1.1.4 mrg
44 1.1 mrg #include "config.h"
45 1.1.1.10 mrg #include <stdint.h>
46 1.1.1.3 mrg #include "libgomp-plugin.h"
47 1.1.1.9 mrg #include "gomp-constants.h"
48 1.1 mrg
49 1.1.1.5 mrg #ifdef HAVE_PTHREAD_H
50 1.1 mrg #include <pthread.h>
51 1.1.1.5 mrg #endif
52 1.1 mrg #include <stdbool.h>
53 1.1.1.3 mrg #include <stdlib.h>
54 1.1.1.3 mrg #include <stdarg.h>
55 1.1 mrg
56 1.1.1.4 mrg /* Needed for memset in priority_queue.c. */
57 1.1.1.4 mrg #if _LIBGOMP_CHECKING_
58 1.1.1.4 mrg # ifdef STRING_WITH_STRINGS
59 1.1.1.4 mrg # include <string.h>
60 1.1.1.4 mrg # include <strings.h>
61 1.1.1.4 mrg # else
62 1.1.1.4 mrg # ifdef HAVE_STRING_H
63 1.1.1.4 mrg # include <string.h>
64 1.1.1.4 mrg # else
65 1.1.1.4 mrg # ifdef HAVE_STRINGS_H
66 1.1.1.4 mrg # include <strings.h>
67 1.1.1.4 mrg # endif
68 1.1.1.4 mrg # endif
69 1.1.1.4 mrg # endif
70 1.1.1.4 mrg #endif
71 1.1.1.4 mrg
72 1.1 mrg #ifdef HAVE_ATTRIBUTE_VISIBILITY
73 1.1 mrg # pragma GCC visibility push(hidden)
74 1.1 mrg #endif
75 1.1 mrg
76 1.1.1.2 mrg /* If we were a C++ library, we'd get this from <std/atomic>. */
77 1.1.1.2 mrg enum memmodel
78 1.1.1.2 mrg {
79 1.1.1.2 mrg MEMMODEL_RELAXED = 0,
80 1.1.1.2 mrg MEMMODEL_CONSUME = 1,
81 1.1.1.2 mrg MEMMODEL_ACQUIRE = 2,
82 1.1.1.2 mrg MEMMODEL_RELEASE = 3,
83 1.1.1.2 mrg MEMMODEL_ACQ_REL = 4,
84 1.1.1.2 mrg MEMMODEL_SEQ_CST = 5
85 1.1.1.2 mrg };
86 1.1.1.2 mrg
87 1.1.1.4 mrg /* alloc.c */
88 1.1.1.4 mrg
89 1.1.1.9 mrg #if defined(HAVE_ALIGNED_ALLOC) \
90 1.1.1.9 mrg || defined(HAVE__ALIGNED_MALLOC) \
91 1.1.1.9 mrg || defined(HAVE_POSIX_MEMALIGN) \
92 1.1.1.9 mrg || defined(HAVE_MEMALIGN)
93 1.1.1.9 mrg /* Defined if gomp_aligned_alloc doesn't use fallback version
94 1.1.1.9 mrg and free can be used instead of gomp_aligned_free. */
95 1.1.1.9 mrg #define GOMP_HAVE_EFFICIENT_ALIGNED_ALLOC 1
96 1.1.1.9 mrg #endif
97 1.1.1.9 mrg
98 1.1.1.4 mrg extern void *gomp_malloc (size_t) __attribute__((malloc));
99 1.1.1.4 mrg extern void *gomp_malloc_cleared (size_t) __attribute__((malloc));
100 1.1.1.4 mrg extern void *gomp_realloc (void *, size_t);
101 1.1.1.9 mrg extern void *gomp_aligned_alloc (size_t, size_t)
102 1.1.1.9 mrg __attribute__((malloc, alloc_size (2)));
103 1.1.1.9 mrg extern void gomp_aligned_free (void *);
104 1.1.1.4 mrg
105 1.1.1.4 mrg /* Avoid conflicting prototypes of alloca() in system headers by using
106 1.1.1.4 mrg GCC's builtin alloca(). */
107 1.1.1.4 mrg #define gomp_alloca(x) __builtin_alloca(x)
108 1.1.1.4 mrg
109 1.1.1.10 mrg /* Optimized allocators for team-specific data that will die with the team. */
110 1.1.1.10 mrg
111 1.1.1.10 mrg #ifdef __AMDGCN__
112 1.1.1.10 mrg /* The arena is initialized in config/gcn/team.c. */
113 1.1.1.10 mrg #define TEAM_ARENA_SIZE 64*1024 /* Must match the value in plugin-gcn.c. */
114 1.1.1.10 mrg #define TEAM_ARENA_START 16 /* LDS offset of free pointer. */
115 1.1.1.10 mrg #define TEAM_ARENA_FREE 24 /* LDS offset of free pointer. */
116 1.1.1.10 mrg #define TEAM_ARENA_END 32 /* LDS offset of end pointer. */
117 1.1.1.10 mrg
118 1.1.1.10 mrg static inline void * __attribute__((malloc))
119 1.1.1.10 mrg team_malloc (size_t size)
120 1.1.1.10 mrg {
121 1.1.1.10 mrg /* 4-byte align the size. */
122 1.1.1.10 mrg size = (size + 3) & ~3;
123 1.1.1.10 mrg
124 1.1.1.10 mrg /* Allocate directly from the arena.
125 1.1.1.10 mrg The compiler does not support DS atomics, yet. */
126 1.1.1.10 mrg void *result;
127 1.1.1.10 mrg asm ("ds_add_rtn_u64 %0, %1, %2\n\ts_waitcnt 0"
128 1.1.1.10 mrg : "=v"(result) : "v"(TEAM_ARENA_FREE), "v"(size), "e"(1L) : "memory");
129 1.1.1.10 mrg
130 1.1.1.10 mrg /* Handle OOM. */
131 1.1.1.10 mrg if (result + size > *(void * __lds *)TEAM_ARENA_END)
132 1.1.1.10 mrg {
133 1.1.1.10 mrg /* While this is experimental, let's make sure we know when OOM
134 1.1.1.10 mrg happens. */
135 1.1.1.10 mrg const char msg[] = "GCN team arena exhausted\n";
136 1.1.1.10 mrg write (2, msg, sizeof(msg)-1);
137 1.1.1.10 mrg
138 1.1.1.10 mrg /* Fall back to using the heap (slowly). */
139 1.1.1.10 mrg result = gomp_malloc (size);
140 1.1.1.10 mrg }
141 1.1.1.10 mrg return result;
142 1.1.1.10 mrg }
143 1.1.1.10 mrg
144 1.1.1.10 mrg static inline void * __attribute__((malloc))
145 1.1.1.10 mrg team_malloc_cleared (size_t size)
146 1.1.1.10 mrg {
147 1.1.1.10 mrg char *result = team_malloc (size);
148 1.1.1.10 mrg
149 1.1.1.10 mrg /* Clear the allocated memory. */
150 1.1.1.10 mrg __builtin_memset (result, 0, size);
151 1.1.1.10 mrg
152 1.1.1.10 mrg return result;
153 1.1.1.10 mrg }
154 1.1.1.10 mrg
155 1.1.1.10 mrg static inline void
156 1.1.1.10 mrg team_free (void *ptr)
157 1.1.1.10 mrg {
158 1.1.1.10 mrg /* The whole arena is freed when the kernel exits.
159 1.1.1.10 mrg However, if we fell back to using heap then we should free it.
160 1.1.1.10 mrg It would be better if this function could be a no-op, but at least
161 1.1.1.10 mrg LDS loads are cheap. */
162 1.1.1.10 mrg if (ptr < *(void * __lds *)TEAM_ARENA_START
163 1.1.1.10 mrg || ptr >= *(void * __lds *)TEAM_ARENA_END)
164 1.1.1.10 mrg free (ptr);
165 1.1.1.10 mrg }
166 1.1.1.10 mrg #else
167 1.1.1.10 mrg #define team_malloc(...) gomp_malloc (__VA_ARGS__)
168 1.1.1.10 mrg #define team_malloc_cleared(...) gomp_malloc_cleared (__VA_ARGS__)
169 1.1.1.10 mrg #define team_free(...) free (__VA_ARGS__)
170 1.1.1.10 mrg #endif
171 1.1.1.10 mrg
172 1.1.1.4 mrg /* error.c */
173 1.1.1.4 mrg
174 1.1.1.4 mrg extern void gomp_vdebug (int, const char *, va_list);
175 1.1.1.4 mrg extern void gomp_debug (int, const char *, ...)
176 1.1.1.4 mrg __attribute__ ((format (printf, 2, 3)));
177 1.1.1.4 mrg #define gomp_vdebug(KIND, FMT, VALIST) \
178 1.1.1.4 mrg do { \
179 1.1.1.4 mrg if (__builtin_expect (gomp_debug_var, 0)) \
180 1.1.1.4 mrg (gomp_vdebug) ((KIND), (FMT), (VALIST)); \
181 1.1.1.4 mrg } while (0)
182 1.1.1.4 mrg #define gomp_debug(KIND, ...) \
183 1.1.1.4 mrg do { \
184 1.1.1.4 mrg if (__builtin_expect (gomp_debug_var, 0)) \
185 1.1.1.4 mrg (gomp_debug) ((KIND), __VA_ARGS__); \
186 1.1.1.4 mrg } while (0)
187 1.1.1.4 mrg extern void gomp_verror (const char *, va_list);
188 1.1.1.4 mrg extern void gomp_error (const char *, ...)
189 1.1.1.4 mrg __attribute__ ((format (printf, 1, 2)));
190 1.1.1.4 mrg extern void gomp_vfatal (const char *, va_list)
191 1.1.1.4 mrg __attribute__ ((noreturn));
192 1.1.1.4 mrg extern void gomp_fatal (const char *, ...)
193 1.1.1.4 mrg __attribute__ ((noreturn, format (printf, 1, 2)));
194 1.1.1.4 mrg
195 1.1.1.4 mrg struct gomp_task;
196 1.1.1.4 mrg struct gomp_taskgroup;
197 1.1.1.4 mrg struct htab;
198 1.1.1.4 mrg
199 1.1.1.4 mrg #include "priority_queue.h"
200 1.1 mrg #include "sem.h"
201 1.1 mrg #include "mutex.h"
202 1.1 mrg #include "bar.h"
203 1.1.1.5 mrg #include "simple-bar.h"
204 1.1 mrg #include "ptrlock.h"
205 1.1 mrg
206 1.1 mrg
207 1.1 mrg /* This structure contains the data to control one work-sharing construct,
208 1.1 mrg either a LOOP (FOR/DO) or a SECTIONS. */
209 1.1 mrg
210 1.1 mrg enum gomp_schedule_type
211 1.1 mrg {
212 1.1 mrg GFS_RUNTIME,
213 1.1 mrg GFS_STATIC,
214 1.1 mrg GFS_DYNAMIC,
215 1.1 mrg GFS_GUIDED,
216 1.1.1.9 mrg GFS_AUTO,
217 1.1.1.9 mrg GFS_MONOTONIC = 0x80000000U
218 1.1 mrg };
219 1.1 mrg
220 1.1.1.4 mrg struct gomp_doacross_work_share
221 1.1.1.4 mrg {
222 1.1.1.4 mrg union {
223 1.1.1.4 mrg /* chunk_size copy, as ws->chunk_size is multiplied by incr for
224 1.1.1.4 mrg GFS_DYNAMIC. */
225 1.1.1.4 mrg long chunk_size;
226 1.1.1.4 mrg /* Likewise, but for ull implementation. */
227 1.1.1.4 mrg unsigned long long chunk_size_ull;
228 1.1.1.4 mrg /* For schedule(static,0) this is the number
229 1.1.1.4 mrg of iterations assigned to the last thread, i.e. number of
230 1.1.1.4 mrg iterations / number of threads. */
231 1.1.1.4 mrg long q;
232 1.1.1.4 mrg /* Likewise, but for ull implementation. */
233 1.1.1.4 mrg unsigned long long q_ull;
234 1.1.1.4 mrg };
235 1.1.1.4 mrg /* Size of each array entry (padded to cache line size). */
236 1.1.1.4 mrg unsigned long elt_sz;
237 1.1.1.4 mrg /* Number of dimensions in sink vectors. */
238 1.1.1.4 mrg unsigned int ncounts;
239 1.1.1.4 mrg /* True if the iterations can be flattened. */
240 1.1.1.4 mrg bool flattened;
241 1.1.1.4 mrg /* Actual array (of elt_sz sized units), aligned to cache line size.
242 1.1.1.4 mrg This is indexed by team_id for GFS_STATIC and outermost iteration
243 1.1.1.4 mrg / chunk_size for other schedules. */
244 1.1.1.4 mrg unsigned char *array;
245 1.1.1.4 mrg /* These two are only used for schedule(static,0). */
246 1.1.1.4 mrg /* This one is number of iterations % number of threads. */
247 1.1.1.4 mrg long t;
248 1.1.1.4 mrg union {
249 1.1.1.4 mrg /* And this one is cached t * (q + 1). */
250 1.1.1.4 mrg long boundary;
251 1.1.1.4 mrg /* Likewise, but for the ull implementation. */
252 1.1.1.4 mrg unsigned long long boundary_ull;
253 1.1.1.4 mrg };
254 1.1.1.9 mrg /* Pointer to extra memory if needed for lastprivate(conditional). */
255 1.1.1.9 mrg void *extra;
256 1.1.1.4 mrg /* Array of shift counts for each dimension if they can be flattened. */
257 1.1.1.4 mrg unsigned int shift_counts[];
258 1.1.1.4 mrg };
259 1.1.1.4 mrg
260 1.1 mrg struct gomp_work_share
261 1.1 mrg {
262 1.1 mrg /* This member records the SCHEDULE clause to be used for this construct.
263 1.1 mrg The user specification of "runtime" will already have been resolved.
264 1.1 mrg If this is a SECTIONS construct, this value will always be DYNAMIC. */
265 1.1 mrg enum gomp_schedule_type sched;
266 1.1 mrg
267 1.1 mrg int mode;
268 1.1 mrg
269 1.1 mrg union {
270 1.1 mrg struct {
271 1.1 mrg /* This is the chunk_size argument to the SCHEDULE clause. */
272 1.1 mrg long chunk_size;
273 1.1 mrg
274 1.1 mrg /* This is the iteration end point. If this is a SECTIONS construct,
275 1.1 mrg this is the number of contained sections. */
276 1.1 mrg long end;
277 1.1 mrg
278 1.1 mrg /* This is the iteration step. If this is a SECTIONS construct, this
279 1.1 mrg is always 1. */
280 1.1 mrg long incr;
281 1.1 mrg };
282 1.1 mrg
283 1.1 mrg struct {
284 1.1 mrg /* The same as above, but for the unsigned long long loop variants. */
285 1.1 mrg unsigned long long chunk_size_ull;
286 1.1 mrg unsigned long long end_ull;
287 1.1 mrg unsigned long long incr_ull;
288 1.1 mrg };
289 1.1 mrg };
290 1.1 mrg
291 1.1.1.4 mrg union {
292 1.1.1.4 mrg /* This is a circular queue that details which threads will be allowed
293 1.1.1.4 mrg into the ordered region and in which order. When a thread allocates
294 1.1.1.4 mrg iterations on which it is going to work, it also registers itself at
295 1.1.1.4 mrg the end of the array. When a thread reaches the ordered region, it
296 1.1.1.4 mrg checks to see if it is the one at the head of the queue. If not, it
297 1.1.1.4 mrg blocks on its RELEASE semaphore. */
298 1.1.1.4 mrg unsigned *ordered_team_ids;
299 1.1.1.4 mrg
300 1.1.1.4 mrg /* This is a pointer to DOACROSS work share data. */
301 1.1.1.4 mrg struct gomp_doacross_work_share *doacross;
302 1.1.1.4 mrg };
303 1.1 mrg
304 1.1 mrg /* This is the number of threads that have registered themselves in
305 1.1 mrg the circular queue ordered_team_ids. */
306 1.1 mrg unsigned ordered_num_used;
307 1.1 mrg
308 1.1 mrg /* This is the team_id of the currently acknowledged owner of the ordered
309 1.1 mrg section, or -1u if the ordered section has not been acknowledged by
310 1.1 mrg any thread. This is distinguished from the thread that is *allowed*
311 1.1 mrg to take the section next. */
312 1.1 mrg unsigned ordered_owner;
313 1.1 mrg
314 1.1 mrg /* This is the index into the circular queue ordered_team_ids of the
315 1.1 mrg current thread that's allowed into the ordered reason. */
316 1.1 mrg unsigned ordered_cur;
317 1.1 mrg
318 1.1 mrg /* This is a chain of allocated gomp_work_share blocks, valid only
319 1.1 mrg in the first gomp_work_share struct in the block. */
320 1.1 mrg struct gomp_work_share *next_alloc;
321 1.1 mrg
322 1.1 mrg /* The above fields are written once during workshare initialization,
323 1.1 mrg or related to ordered worksharing. Make sure the following fields
324 1.1 mrg are in a different cache line. */
325 1.1 mrg
326 1.1 mrg /* This lock protects the update of the following members. */
327 1.1 mrg gomp_mutex_t lock __attribute__((aligned (64)));
328 1.1 mrg
329 1.1 mrg /* This is the count of the number of threads that have exited the work
330 1.1 mrg share construct. If the construct was marked nowait, they have moved on
331 1.1 mrg to other work; otherwise they're blocked on a barrier. The last member
332 1.1 mrg of the team to exit the work share construct must deallocate it. */
333 1.1 mrg unsigned threads_completed;
334 1.1 mrg
335 1.1 mrg union {
336 1.1 mrg /* This is the next iteration value to be allocated. In the case of
337 1.1 mrg GFS_STATIC loops, this the iteration start point and never changes. */
338 1.1 mrg long next;
339 1.1 mrg
340 1.1 mrg /* The same, but with unsigned long long type. */
341 1.1 mrg unsigned long long next_ull;
342 1.1 mrg
343 1.1 mrg /* This is the returned data structure for SINGLE COPYPRIVATE. */
344 1.1 mrg void *copyprivate;
345 1.1 mrg };
346 1.1 mrg
347 1.1 mrg union {
348 1.1 mrg /* Link to gomp_work_share struct for next work sharing construct
349 1.1 mrg encountered after this one. */
350 1.1 mrg gomp_ptrlock_t next_ws;
351 1.1 mrg
352 1.1 mrg /* gomp_work_share structs are chained in the free work share cache
353 1.1 mrg through this. */
354 1.1 mrg struct gomp_work_share *next_free;
355 1.1 mrg };
356 1.1 mrg
357 1.1.1.9 mrg /* Task reductions for this work-sharing construct. */
358 1.1.1.9 mrg uintptr_t *task_reductions;
359 1.1.1.9 mrg
360 1.1 mrg /* If only few threads are in the team, ordered_team_ids can point
361 1.1 mrg to this array which fills the padding at the end of this struct. */
362 1.1 mrg unsigned inline_ordered_team_ids[0];
363 1.1 mrg };
364 1.1 mrg
365 1.1 mrg /* This structure contains all of the thread-local data associated with
366 1.1 mrg a thread team. This is the data that must be saved when a thread
367 1.1 mrg encounters a nested PARALLEL construct. */
368 1.1 mrg
369 1.1 mrg struct gomp_team_state
370 1.1 mrg {
371 1.1 mrg /* This is the team of which the thread is currently a member. */
372 1.1 mrg struct gomp_team *team;
373 1.1 mrg
374 1.1 mrg /* This is the work share construct which this thread is currently
375 1.1 mrg processing. Recall that with NOWAIT, not all threads may be
376 1.1 mrg processing the same construct. */
377 1.1 mrg struct gomp_work_share *work_share;
378 1.1 mrg
379 1.1 mrg /* This is the previous work share construct or NULL if there wasn't any.
380 1.1 mrg When all threads are done with the current work sharing construct,
381 1.1 mrg the previous one can be freed. The current one can't, as its
382 1.1 mrg next_ws field is used. */
383 1.1 mrg struct gomp_work_share *last_work_share;
384 1.1 mrg
385 1.1 mrg /* This is the ID of this thread within the team. This value is
386 1.1 mrg guaranteed to be between 0 and N-1, where N is the number of
387 1.1 mrg threads in the team. */
388 1.1 mrg unsigned team_id;
389 1.1 mrg
390 1.1 mrg /* Nesting level. */
391 1.1 mrg unsigned level;
392 1.1 mrg
393 1.1 mrg /* Active nesting level. Only active parallel regions are counted. */
394 1.1 mrg unsigned active_level;
395 1.1 mrg
396 1.1.1.3 mrg /* Place-partition-var, offset and length into gomp_places_list array. */
397 1.1.1.3 mrg unsigned place_partition_off;
398 1.1.1.3 mrg unsigned place_partition_len;
399 1.1.1.3 mrg
400 1.1 mrg #ifdef HAVE_SYNC_BUILTINS
401 1.1 mrg /* Number of single stmts encountered. */
402 1.1 mrg unsigned long single_count;
403 1.1 mrg #endif
404 1.1 mrg
405 1.1 mrg /* For GFS_RUNTIME loops that resolved to GFS_STATIC, this is the
406 1.1 mrg trip number through the loop. So first time a particular loop
407 1.1 mrg is encountered this number is 0, the second time through the loop
408 1.1 mrg is 1, etc. This is unused when the compiler knows in advance that
409 1.1 mrg the loop is statically scheduled. */
410 1.1 mrg unsigned long static_trip;
411 1.1 mrg };
412 1.1 mrg
413 1.1.1.3 mrg struct target_mem_desc;
414 1.1.1.3 mrg
415 1.1.1.3 mrg /* These are the OpenMP 4.0 Internal Control Variables described in
416 1.1 mrg section 2.3.1. Those described as having one copy per task are
417 1.1 mrg stored within the structure; those described as having one copy
418 1.1 mrg for the whole program are (naturally) global variables. */
419 1.1.1.3 mrg
420 1.1 mrg struct gomp_task_icv
421 1.1 mrg {
422 1.1 mrg unsigned long nthreads_var;
423 1.1 mrg enum gomp_schedule_type run_sched_var;
424 1.1.1.4 mrg int run_sched_chunk_size;
425 1.1.1.3 mrg int default_device_var;
426 1.1.1.3 mrg unsigned int thread_limit_var;
427 1.1 mrg bool dyn_var;
428 1.1 mrg bool nest_var;
429 1.1.1.3 mrg char bind_var;
430 1.1.1.3 mrg /* Internal ICV. */
431 1.1.1.3 mrg struct target_mem_desc *target_data;
432 1.1 mrg };
433 1.1 mrg
434 1.1 mrg extern struct gomp_task_icv gomp_global_icv;
435 1.1 mrg #ifndef HAVE_SYNC_BUILTINS
436 1.1.1.3 mrg extern gomp_mutex_t gomp_managed_threads_lock;
437 1.1 mrg #endif
438 1.1 mrg extern unsigned long gomp_max_active_levels_var;
439 1.1.1.3 mrg extern bool gomp_cancel_var;
440 1.1.1.4 mrg extern int gomp_max_task_priority_var;
441 1.1 mrg extern unsigned long long gomp_spin_count_var, gomp_throttled_spin_count_var;
442 1.1 mrg extern unsigned long gomp_available_cpus, gomp_managed_threads;
443 1.1.1.2 mrg extern unsigned long *gomp_nthreads_var_list, gomp_nthreads_var_list_len;
444 1.1.1.3 mrg extern char *gomp_bind_var_list;
445 1.1.1.3 mrg extern unsigned long gomp_bind_var_list_len;
446 1.1.1.3 mrg extern void **gomp_places_list;
447 1.1.1.3 mrg extern unsigned long gomp_places_list_len;
448 1.1.1.5 mrg extern unsigned int gomp_num_teams_var;
449 1.1.1.3 mrg extern int gomp_debug_var;
450 1.1.1.9 mrg extern bool gomp_display_affinity_var;
451 1.1.1.9 mrg extern char *gomp_affinity_format_var;
452 1.1.1.9 mrg extern size_t gomp_affinity_format_len;
453 1.1.1.3 mrg extern int goacc_device_num;
454 1.1.1.3 mrg extern char *goacc_device_type;
455 1.1.1.9 mrg extern int goacc_default_dims[GOMP_DIM_MAX];
456 1.1 mrg
457 1.1 mrg enum gomp_task_kind
458 1.1 mrg {
459 1.1.1.4 mrg /* Implicit task. */
460 1.1 mrg GOMP_TASK_IMPLICIT,
461 1.1.1.4 mrg /* Undeferred task. */
462 1.1.1.4 mrg GOMP_TASK_UNDEFERRED,
463 1.1.1.4 mrg /* Task created by GOMP_task and waiting to be run. */
464 1.1 mrg GOMP_TASK_WAITING,
465 1.1.1.4 mrg /* Task currently executing or scheduled and about to execute. */
466 1.1.1.4 mrg GOMP_TASK_TIED,
467 1.1.1.4 mrg /* Used for target tasks that have vars mapped and async run started,
468 1.1.1.4 mrg but not yet completed. Once that completes, they will be readded
469 1.1.1.4 mrg into the queues as GOMP_TASK_WAITING in order to perform the var
470 1.1.1.4 mrg unmapping. */
471 1.1.1.4 mrg GOMP_TASK_ASYNC_RUNNING
472 1.1 mrg };
473 1.1 mrg
474 1.1.1.3 mrg struct gomp_task_depend_entry
475 1.1.1.3 mrg {
476 1.1.1.4 mrg /* Address of dependency. */
477 1.1.1.3 mrg void *addr;
478 1.1.1.3 mrg struct gomp_task_depend_entry *next;
479 1.1.1.3 mrg struct gomp_task_depend_entry *prev;
480 1.1.1.4 mrg /* Task that provides the dependency in ADDR. */
481 1.1.1.3 mrg struct gomp_task *task;
482 1.1.1.4 mrg /* Depend entry is of type "IN". */
483 1.1.1.3 mrg bool is_in;
484 1.1.1.3 mrg bool redundant;
485 1.1.1.3 mrg bool redundant_out;
486 1.1.1.3 mrg };
487 1.1.1.3 mrg
488 1.1.1.3 mrg struct gomp_dependers_vec
489 1.1.1.3 mrg {
490 1.1.1.3 mrg size_t n_elem;
491 1.1.1.3 mrg size_t allocated;
492 1.1.1.3 mrg struct gomp_task *elem[];
493 1.1.1.3 mrg };
494 1.1.1.3 mrg
495 1.1.1.3 mrg /* Used when in GOMP_taskwait or in gomp_task_maybe_wait_for_dependencies. */
496 1.1.1.3 mrg
497 1.1.1.3 mrg struct gomp_taskwait
498 1.1.1.3 mrg {
499 1.1.1.3 mrg bool in_taskwait;
500 1.1.1.3 mrg bool in_depend_wait;
501 1.1.1.4 mrg /* Number of tasks we are waiting for. */
502 1.1.1.3 mrg size_t n_depend;
503 1.1.1.3 mrg gomp_sem_t taskwait_sem;
504 1.1.1.3 mrg };
505 1.1.1.3 mrg
506 1.1 mrg /* This structure describes a "task" to be run by a thread. */
507 1.1 mrg
508 1.1 mrg struct gomp_task
509 1.1 mrg {
510 1.1.1.4 mrg /* Parent of this task. */
511 1.1 mrg struct gomp_task *parent;
512 1.1.1.4 mrg /* Children of this task. */
513 1.1.1.4 mrg struct priority_queue children_queue;
514 1.1.1.4 mrg /* Taskgroup this task belongs in. */
515 1.1.1.3 mrg struct gomp_taskgroup *taskgroup;
516 1.1.1.4 mrg /* Tasks that depend on this task. */
517 1.1.1.3 mrg struct gomp_dependers_vec *dependers;
518 1.1.1.3 mrg struct htab *depend_hash;
519 1.1.1.3 mrg struct gomp_taskwait *taskwait;
520 1.1.1.4 mrg /* Number of items in DEPEND. */
521 1.1.1.3 mrg size_t depend_count;
522 1.1.1.4 mrg /* Number of tasks this task depends on. Once this counter reaches
523 1.1.1.4 mrg 0, we have no unsatisfied dependencies, and this task can be put
524 1.1.1.4 mrg into the various queues to be scheduled. */
525 1.1.1.3 mrg size_t num_dependees;
526 1.1.1.4 mrg
527 1.1.1.4 mrg /* Priority of this task. */
528 1.1.1.4 mrg int priority;
529 1.1.1.4 mrg /* The priority node for this task in each of the different queues.
530 1.1.1.4 mrg We put this here to avoid allocating space for each priority
531 1.1.1.4 mrg node. Then we play offsetof() games to convert between pnode[]
532 1.1.1.4 mrg entries and the gomp_task in which they reside. */
533 1.1.1.4 mrg struct priority_node pnode[3];
534 1.1.1.4 mrg
535 1.1 mrg struct gomp_task_icv icv;
536 1.1 mrg void (*fn) (void *);
537 1.1 mrg void *fn_data;
538 1.1 mrg enum gomp_task_kind kind;
539 1.1 mrg bool in_tied_task;
540 1.1.1.2 mrg bool final_task;
541 1.1.1.3 mrg bool copy_ctors_done;
542 1.1.1.4 mrg /* Set for undeferred tasks with unsatisfied dependencies which
543 1.1.1.4 mrg block further execution of their parent until the dependencies
544 1.1.1.4 mrg are satisfied. */
545 1.1.1.3 mrg bool parent_depends_on;
546 1.1.1.4 mrg /* Dependencies provided and/or needed for this task. DEPEND_COUNT
547 1.1.1.4 mrg is the number of items available. */
548 1.1.1.3 mrg struct gomp_task_depend_entry depend[];
549 1.1.1.3 mrg };
550 1.1.1.3 mrg
551 1.1.1.4 mrg /* This structure describes a single #pragma omp taskgroup. */
552 1.1.1.4 mrg
553 1.1.1.3 mrg struct gomp_taskgroup
554 1.1.1.3 mrg {
555 1.1.1.3 mrg struct gomp_taskgroup *prev;
556 1.1.1.4 mrg /* Queue of tasks that belong in this taskgroup. */
557 1.1.1.4 mrg struct priority_queue taskgroup_queue;
558 1.1.1.9 mrg uintptr_t *reductions;
559 1.1.1.3 mrg bool in_taskgroup_wait;
560 1.1.1.3 mrg bool cancelled;
561 1.1.1.9 mrg bool workshare;
562 1.1.1.3 mrg gomp_sem_t taskgroup_sem;
563 1.1.1.3 mrg size_t num_children;
564 1.1 mrg };
565 1.1 mrg
566 1.1.1.4 mrg /* Various state of OpenMP async offloading tasks. */
567 1.1.1.4 mrg enum gomp_target_task_state
568 1.1.1.4 mrg {
569 1.1.1.4 mrg GOMP_TARGET_TASK_DATA,
570 1.1.1.4 mrg GOMP_TARGET_TASK_BEFORE_MAP,
571 1.1.1.4 mrg GOMP_TARGET_TASK_FALLBACK,
572 1.1.1.4 mrg GOMP_TARGET_TASK_READY_TO_RUN,
573 1.1.1.4 mrg GOMP_TARGET_TASK_RUNNING,
574 1.1.1.4 mrg GOMP_TARGET_TASK_FINISHED
575 1.1.1.4 mrg };
576 1.1.1.4 mrg
577 1.1.1.4 mrg /* This structure describes a target task. */
578 1.1.1.4 mrg
579 1.1.1.4 mrg struct gomp_target_task
580 1.1.1.4 mrg {
581 1.1.1.4 mrg struct gomp_device_descr *devicep;
582 1.1.1.4 mrg void (*fn) (void *);
583 1.1.1.4 mrg size_t mapnum;
584 1.1.1.4 mrg size_t *sizes;
585 1.1.1.4 mrg unsigned short *kinds;
586 1.1.1.4 mrg unsigned int flags;
587 1.1.1.4 mrg enum gomp_target_task_state state;
588 1.1.1.4 mrg struct target_mem_desc *tgt;
589 1.1.1.4 mrg struct gomp_task *task;
590 1.1.1.4 mrg struct gomp_team *team;
591 1.1.1.4 mrg /* Device-specific target arguments. */
592 1.1.1.4 mrg void **args;
593 1.1.1.4 mrg void *hostaddrs[];
594 1.1.1.4 mrg };
595 1.1.1.4 mrg
596 1.1 mrg /* This structure describes a "team" of threads. These are the threads
597 1.1 mrg that are spawned by a PARALLEL constructs, as well as the work sharing
598 1.1 mrg constructs that the team encounters. */
599 1.1 mrg
600 1.1 mrg struct gomp_team
601 1.1 mrg {
602 1.1 mrg /* This is the number of threads in the current team. */
603 1.1 mrg unsigned nthreads;
604 1.1 mrg
605 1.1 mrg /* This is number of gomp_work_share structs that have been allocated
606 1.1 mrg as a block last time. */
607 1.1 mrg unsigned work_share_chunk;
608 1.1 mrg
609 1.1 mrg /* This is the saved team state that applied to a master thread before
610 1.1 mrg the current thread was created. */
611 1.1 mrg struct gomp_team_state prev_ts;
612 1.1 mrg
613 1.1 mrg /* This semaphore should be used by the master thread instead of its
614 1.1 mrg "native" semaphore in the thread structure. Required for nested
615 1.1 mrg parallels, as the master is a member of two teams. */
616 1.1 mrg gomp_sem_t master_release;
617 1.1 mrg
618 1.1 mrg /* This points to an array with pointers to the release semaphore
619 1.1 mrg of the threads in the team. */
620 1.1 mrg gomp_sem_t **ordered_release;
621 1.1 mrg
622 1.1.1.3 mrg /* List of work shares on which gomp_fini_work_share hasn't been
623 1.1.1.3 mrg called yet. If the team hasn't been cancelled, this should be
624 1.1.1.3 mrg equal to each thr->ts.work_share, but otherwise it can be a possibly
625 1.1.1.3 mrg long list of workshares. */
626 1.1.1.3 mrg struct gomp_work_share *work_shares_to_free;
627 1.1.1.3 mrg
628 1.1 mrg /* List of gomp_work_share structs chained through next_free fields.
629 1.1 mrg This is populated and taken off only by the first thread in the
630 1.1 mrg team encountering a new work sharing construct, in a critical
631 1.1 mrg section. */
632 1.1 mrg struct gomp_work_share *work_share_list_alloc;
633 1.1 mrg
634 1.1 mrg /* List of gomp_work_share structs freed by free_work_share. New
635 1.1 mrg entries are atomically added to the start of the list, and
636 1.1 mrg alloc_work_share can safely only move all but the first entry
637 1.1 mrg to work_share_list alloc, as free_work_share can happen concurrently
638 1.1 mrg with alloc_work_share. */
639 1.1 mrg struct gomp_work_share *work_share_list_free;
640 1.1 mrg
641 1.1 mrg #ifdef HAVE_SYNC_BUILTINS
642 1.1 mrg /* Number of simple single regions encountered by threads in this
643 1.1 mrg team. */
644 1.1 mrg unsigned long single_count;
645 1.1 mrg #else
646 1.1 mrg /* Mutex protecting addition of workshares to work_share_list_free. */
647 1.1 mrg gomp_mutex_t work_share_list_free_lock;
648 1.1 mrg #endif
649 1.1 mrg
650 1.1 mrg /* This barrier is used for most synchronization of the team. */
651 1.1 mrg gomp_barrier_t barrier;
652 1.1 mrg
653 1.1 mrg /* Initial work shares, to avoid allocating any gomp_work_share
654 1.1 mrg structs in the common case. */
655 1.1 mrg struct gomp_work_share work_shares[8];
656 1.1 mrg
657 1.1 mrg gomp_mutex_t task_lock;
658 1.1.1.4 mrg /* Scheduled tasks. */
659 1.1.1.4 mrg struct priority_queue task_queue;
660 1.1.1.3 mrg /* Number of all GOMP_TASK_{WAITING,TIED} tasks in the team. */
661 1.1.1.3 mrg unsigned int task_count;
662 1.1.1.3 mrg /* Number of GOMP_TASK_WAITING tasks currently waiting to be scheduled. */
663 1.1.1.3 mrg unsigned int task_queued_count;
664 1.1.1.3 mrg /* Number of GOMP_TASK_{WAITING,TIED} tasks currently running
665 1.1.1.3 mrg directly in gomp_barrier_handle_tasks; tasks spawned
666 1.1.1.3 mrg from e.g. GOMP_taskwait or GOMP_taskgroup_end don't count, even when
667 1.1.1.3 mrg that is called from a task run from gomp_barrier_handle_tasks.
668 1.1.1.3 mrg task_running_count should be always <= team->nthreads,
669 1.1.1.3 mrg and if current task isn't in_tied_task, then it will be
670 1.1.1.3 mrg even < team->nthreads. */
671 1.1.1.3 mrg unsigned int task_running_count;
672 1.1.1.3 mrg int work_share_cancelled;
673 1.1.1.3 mrg int team_cancelled;
674 1.1 mrg
675 1.1 mrg /* This array contains structures for implicit tasks. */
676 1.1 mrg struct gomp_task implicit_task[];
677 1.1 mrg };
678 1.1 mrg
679 1.1 mrg /* This structure contains all data that is private to libgomp and is
680 1.1 mrg allocated per thread. */
681 1.1 mrg
682 1.1 mrg struct gomp_thread
683 1.1 mrg {
684 1.1 mrg /* This is the function that the thread should run upon launch. */
685 1.1 mrg void (*fn) (void *data);
686 1.1 mrg void *data;
687 1.1 mrg
688 1.1 mrg /* This is the current team state for this thread. The ts.team member
689 1.1 mrg is NULL only if the thread is idle. */
690 1.1 mrg struct gomp_team_state ts;
691 1.1 mrg
692 1.1 mrg /* This is the task that the thread is currently executing. */
693 1.1 mrg struct gomp_task *task;
694 1.1 mrg
695 1.1 mrg /* This semaphore is used for ordered loops. */
696 1.1 mrg gomp_sem_t release;
697 1.1 mrg
698 1.1.1.3 mrg /* Place this thread is bound to plus one, or zero if not bound
699 1.1.1.3 mrg to any place. */
700 1.1.1.3 mrg unsigned int place;
701 1.1.1.3 mrg
702 1.1.1.3 mrg /* User pthread thread pool */
703 1.1 mrg struct gomp_thread_pool *thread_pool;
704 1.1.1.9 mrg
705 1.1.1.9 mrg #if defined(LIBGOMP_USE_PTHREADS) \
706 1.1.1.9 mrg && (!defined(HAVE_TLS) \
707 1.1.1.9 mrg || !defined(__GLIBC__) \
708 1.1.1.9 mrg || !defined(USING_INITIAL_EXEC_TLS))
709 1.1.1.9 mrg /* pthread_t of the thread containing this gomp_thread.
710 1.1.1.9 mrg On Linux when using initial-exec TLS,
711 1.1.1.9 mrg (typeof (pthread_t)) gomp_thread () - pthread_self ()
712 1.1.1.9 mrg is constant in all threads, so we can optimize and not
713 1.1.1.9 mrg store it. */
714 1.1.1.9 mrg #define GOMP_NEEDS_THREAD_HANDLE 1
715 1.1.1.9 mrg pthread_t handle;
716 1.1.1.9 mrg #endif
717 1.1 mrg };
718 1.1 mrg
719 1.1 mrg
720 1.1 mrg struct gomp_thread_pool
721 1.1 mrg {
722 1.1 mrg /* This array manages threads spawned from the top level, which will
723 1.1 mrg return to the idle loop once the current PARALLEL construct ends. */
724 1.1 mrg struct gomp_thread **threads;
725 1.1 mrg unsigned threads_size;
726 1.1 mrg unsigned threads_used;
727 1.1.1.4 mrg /* The last team is used for non-nested teams to delay their destruction to
728 1.1.1.4 mrg make sure all the threads in the team move on to the pool's barrier before
729 1.1.1.4 mrg the team's barrier is destroyed. */
730 1.1 mrg struct gomp_team *last_team;
731 1.1.1.3 mrg /* Number of threads running in this contention group. */
732 1.1.1.3 mrg unsigned long threads_busy;
733 1.1 mrg
734 1.1.1.5 mrg /* This barrier holds and releases threads waiting in thread pools. */
735 1.1.1.5 mrg gomp_simple_barrier_t threads_dock;
736 1.1 mrg };
737 1.1 mrg
738 1.1.1.3 mrg enum gomp_cancel_kind
739 1.1.1.3 mrg {
740 1.1.1.3 mrg GOMP_CANCEL_PARALLEL = 1,
741 1.1.1.3 mrg GOMP_CANCEL_LOOP = 2,
742 1.1.1.3 mrg GOMP_CANCEL_FOR = GOMP_CANCEL_LOOP,
743 1.1.1.3 mrg GOMP_CANCEL_DO = GOMP_CANCEL_LOOP,
744 1.1.1.3 mrg GOMP_CANCEL_SECTIONS = 4,
745 1.1.1.3 mrg GOMP_CANCEL_TASKGROUP = 8
746 1.1.1.3 mrg };
747 1.1.1.3 mrg
748 1.1 mrg /* ... and here is that TLS data. */
749 1.1 mrg
750 1.1.1.5 mrg #if defined __nvptx__
751 1.1.1.5 mrg extern struct gomp_thread *nvptx_thrs __attribute__((shared));
752 1.1.1.5 mrg static inline struct gomp_thread *gomp_thread (void)
753 1.1.1.5 mrg {
754 1.1.1.5 mrg int tid;
755 1.1.1.5 mrg asm ("mov.u32 %0, %%tid.y;" : "=r" (tid));
756 1.1.1.5 mrg return nvptx_thrs + tid;
757 1.1.1.5 mrg }
758 1.1.1.10 mrg #elif defined __AMDGCN__
759 1.1.1.10 mrg static inline struct gomp_thread *gcn_thrs (void)
760 1.1.1.10 mrg {
761 1.1.1.10 mrg /* The value is at the bottom of LDS. */
762 1.1.1.10 mrg struct gomp_thread * __lds *thrs = (struct gomp_thread * __lds *)4;
763 1.1.1.10 mrg return *thrs;
764 1.1.1.10 mrg }
765 1.1.1.10 mrg static inline void set_gcn_thrs (struct gomp_thread *val)
766 1.1.1.10 mrg {
767 1.1.1.10 mrg /* The value is at the bottom of LDS. */
768 1.1.1.10 mrg struct gomp_thread * __lds *thrs = (struct gomp_thread * __lds *)4;
769 1.1.1.10 mrg *thrs = val;
770 1.1.1.10 mrg }
771 1.1.1.10 mrg static inline struct gomp_thread *gomp_thread (void)
772 1.1.1.10 mrg {
773 1.1.1.10 mrg int tid = __builtin_gcn_dim_pos(1);
774 1.1.1.10 mrg return gcn_thrs () + tid;
775 1.1.1.10 mrg }
776 1.1.1.5 mrg #elif defined HAVE_TLS || defined USE_EMUTLS
777 1.1 mrg extern __thread struct gomp_thread gomp_tls_data;
778 1.1 mrg static inline struct gomp_thread *gomp_thread (void)
779 1.1 mrg {
780 1.1 mrg return &gomp_tls_data;
781 1.1 mrg }
782 1.1 mrg #else
783 1.1 mrg extern pthread_key_t gomp_tls_key;
784 1.1 mrg static inline struct gomp_thread *gomp_thread (void)
785 1.1 mrg {
786 1.1 mrg return pthread_getspecific (gomp_tls_key);
787 1.1 mrg }
788 1.1 mrg #endif
789 1.1 mrg
790 1.1 mrg extern struct gomp_task_icv *gomp_new_icv (void);
791 1.1 mrg
792 1.1 mrg /* Here's how to access the current copy of the ICVs. */
793 1.1 mrg
794 1.1 mrg static inline struct gomp_task_icv *gomp_icv (bool write)
795 1.1 mrg {
796 1.1 mrg struct gomp_task *task = gomp_thread ()->task;
797 1.1 mrg if (task)
798 1.1 mrg return &task->icv;
799 1.1 mrg else if (write)
800 1.1 mrg return gomp_new_icv ();
801 1.1 mrg else
802 1.1 mrg return &gomp_global_icv;
803 1.1 mrg }
804 1.1 mrg
805 1.1.1.5 mrg #ifdef LIBGOMP_USE_PTHREADS
806 1.1 mrg /* The attributes to be used during thread creation. */
807 1.1 mrg extern pthread_attr_t gomp_thread_attr;
808 1.1 mrg
809 1.1.1.4 mrg extern pthread_key_t gomp_thread_destructor;
810 1.1.1.5 mrg #endif
811 1.1.1.4 mrg
812 1.1 mrg /* Function prototypes. */
813 1.1 mrg
814 1.1 mrg /* affinity.c */
815 1.1 mrg
816 1.1 mrg extern void gomp_init_affinity (void);
817 1.1.1.5 mrg #ifdef LIBGOMP_USE_PTHREADS
818 1.1.1.3 mrg extern void gomp_init_thread_affinity (pthread_attr_t *, unsigned int);
819 1.1.1.5 mrg #endif
820 1.1.1.3 mrg extern void **gomp_affinity_alloc (unsigned long, bool);
821 1.1.1.3 mrg extern void gomp_affinity_init_place (void *);
822 1.1.1.3 mrg extern bool gomp_affinity_add_cpus (void *, unsigned long, unsigned long,
823 1.1.1.3 mrg long, bool);
824 1.1.1.3 mrg extern bool gomp_affinity_remove_cpu (void *, unsigned long);
825 1.1.1.3 mrg extern bool gomp_affinity_copy_place (void *, void *, long);
826 1.1.1.3 mrg extern bool gomp_affinity_same_place (void *, void *);
827 1.1.1.3 mrg extern bool gomp_affinity_finalize_place_list (bool);
828 1.1.1.3 mrg extern bool gomp_affinity_init_level (int, unsigned long, bool);
829 1.1.1.3 mrg extern void gomp_affinity_print_place (void *);
830 1.1.1.4 mrg extern void gomp_get_place_proc_ids_8 (int, int64_t *);
831 1.1.1.9 mrg extern void gomp_display_affinity_place (char *, size_t, size_t *, int);
832 1.1.1.9 mrg
833 1.1.1.9 mrg /* affinity-fmt.c */
834 1.1.1.9 mrg
835 1.1.1.9 mrg extern bool gomp_print_string (const char *str, size_t len);
836 1.1.1.9 mrg extern void gomp_set_affinity_format (const char *, size_t);
837 1.1.1.9 mrg extern void gomp_display_string (char *, size_t, size_t *, const char *,
838 1.1.1.9 mrg size_t);
839 1.1.1.9 mrg #ifdef LIBGOMP_USE_PTHREADS
840 1.1.1.9 mrg typedef pthread_t gomp_thread_handle;
841 1.1.1.9 mrg #else
842 1.1.1.9 mrg typedef struct {} gomp_thread_handle;
843 1.1.1.9 mrg #endif
844 1.1.1.9 mrg extern size_t gomp_display_affinity (char *, size_t, const char *,
845 1.1.1.9 mrg gomp_thread_handle,
846 1.1.1.9 mrg struct gomp_team_state *, unsigned int);
847 1.1.1.9 mrg extern void gomp_display_affinity_thread (gomp_thread_handle,
848 1.1.1.9 mrg struct gomp_team_state *,
849 1.1.1.9 mrg unsigned int) __attribute__((cold));
850 1.1 mrg
851 1.1 mrg /* iter.c */
852 1.1 mrg
853 1.1 mrg extern int gomp_iter_static_next (long *, long *);
854 1.1 mrg extern bool gomp_iter_dynamic_next_locked (long *, long *);
855 1.1 mrg extern bool gomp_iter_guided_next_locked (long *, long *);
856 1.1 mrg
857 1.1 mrg #ifdef HAVE_SYNC_BUILTINS
858 1.1 mrg extern bool gomp_iter_dynamic_next (long *, long *);
859 1.1 mrg extern bool gomp_iter_guided_next (long *, long *);
860 1.1 mrg #endif
861 1.1 mrg
862 1.1 mrg /* iter_ull.c */
863 1.1 mrg
864 1.1 mrg extern int gomp_iter_ull_static_next (unsigned long long *,
865 1.1 mrg unsigned long long *);
866 1.1 mrg extern bool gomp_iter_ull_dynamic_next_locked (unsigned long long *,
867 1.1 mrg unsigned long long *);
868 1.1 mrg extern bool gomp_iter_ull_guided_next_locked (unsigned long long *,
869 1.1 mrg unsigned long long *);
870 1.1 mrg
871 1.1 mrg #if defined HAVE_SYNC_BUILTINS && defined __LP64__
872 1.1 mrg extern bool gomp_iter_ull_dynamic_next (unsigned long long *,
873 1.1 mrg unsigned long long *);
874 1.1 mrg extern bool gomp_iter_ull_guided_next (unsigned long long *,
875 1.1 mrg unsigned long long *);
876 1.1 mrg #endif
877 1.1 mrg
878 1.1 mrg /* ordered.c */
879 1.1 mrg
880 1.1 mrg extern void gomp_ordered_first (void);
881 1.1 mrg extern void gomp_ordered_last (void);
882 1.1 mrg extern void gomp_ordered_next (void);
883 1.1 mrg extern void gomp_ordered_static_init (void);
884 1.1 mrg extern void gomp_ordered_static_next (void);
885 1.1 mrg extern void gomp_ordered_sync (void);
886 1.1.1.9 mrg extern void gomp_doacross_init (unsigned, long *, long, size_t);
887 1.1.1.4 mrg extern void gomp_doacross_ull_init (unsigned, unsigned long long *,
888 1.1.1.9 mrg unsigned long long, size_t);
889 1.1 mrg
890 1.1 mrg /* parallel.c */
891 1.1 mrg
892 1.1 mrg extern unsigned gomp_resolve_num_threads (unsigned, unsigned);
893 1.1 mrg
894 1.1 mrg /* proc.c (in config/) */
895 1.1 mrg
896 1.1 mrg extern void gomp_init_num_threads (void);
897 1.1 mrg extern unsigned gomp_dynamic_max_threads (void);
898 1.1 mrg
899 1.1 mrg /* task.c */
900 1.1 mrg
901 1.1 mrg extern void gomp_init_task (struct gomp_task *, struct gomp_task *,
902 1.1 mrg struct gomp_task_icv *);
903 1.1 mrg extern void gomp_end_task (void);
904 1.1 mrg extern void gomp_barrier_handle_tasks (gomp_barrier_state_t);
905 1.1.1.4 mrg extern void gomp_task_maybe_wait_for_dependencies (void **);
906 1.1.1.4 mrg extern bool gomp_create_target_task (struct gomp_device_descr *,
907 1.1.1.4 mrg void (*) (void *), size_t, void **,
908 1.1.1.4 mrg size_t *, unsigned short *, unsigned int,
909 1.1.1.4 mrg void **, void **,
910 1.1.1.4 mrg enum gomp_target_task_state);
911 1.1.1.9 mrg extern struct gomp_taskgroup *gomp_parallel_reduction_register (uintptr_t *,
912 1.1.1.9 mrg unsigned);
913 1.1.1.9 mrg extern void gomp_workshare_taskgroup_start (void);
914 1.1.1.9 mrg extern void gomp_workshare_task_reduction_register (uintptr_t *, uintptr_t *);
915 1.1 mrg
916 1.1 mrg static void inline
917 1.1 mrg gomp_finish_task (struct gomp_task *task)
918 1.1 mrg {
919 1.1.1.3 mrg if (__builtin_expect (task->depend_hash != NULL, 0))
920 1.1.1.3 mrg free (task->depend_hash);
921 1.1 mrg }
922 1.1 mrg
923 1.1 mrg /* team.c */
924 1.1 mrg
925 1.1 mrg extern struct gomp_team *gomp_new_team (unsigned);
926 1.1 mrg extern void gomp_team_start (void (*) (void *), void *, unsigned,
927 1.1.1.9 mrg unsigned, struct gomp_team *,
928 1.1.1.9 mrg struct gomp_taskgroup *);
929 1.1 mrg extern void gomp_team_end (void);
930 1.1.1.3 mrg extern void gomp_free_thread (void *);
931 1.1.1.9 mrg extern int gomp_pause_host (void);
932 1.1.1.3 mrg
933 1.1.1.3 mrg /* target.c */
934 1.1.1.3 mrg
935 1.1.1.3 mrg extern void gomp_init_targets_once (void);
936 1.1.1.3 mrg extern int gomp_get_num_devices (void);
937 1.1.1.4 mrg extern bool gomp_target_task_fn (void *);
938 1.1.1.3 mrg
939 1.1.1.4 mrg /* Splay tree definitions. */
940 1.1.1.3 mrg typedef struct splay_tree_node_s *splay_tree_node;
941 1.1.1.3 mrg typedef struct splay_tree_s *splay_tree;
942 1.1.1.3 mrg typedef struct splay_tree_key_s *splay_tree_key;
943 1.1.1.3 mrg
944 1.1.1.4 mrg struct target_var_desc {
945 1.1.1.4 mrg /* Splay key. */
946 1.1.1.4 mrg splay_tree_key key;
947 1.1.1.4 mrg /* True if data should be copied from device to host at the end. */
948 1.1.1.4 mrg bool copy_from;
949 1.1.1.4 mrg /* True if data always should be copied from device to host at the end. */
950 1.1.1.4 mrg bool always_copy_from;
951 1.1.1.10 mrg /* True if this is for OpenACC 'attach'. */
952 1.1.1.10 mrg bool is_attach;
953 1.1.1.4 mrg /* Relative offset against key host_start. */
954 1.1.1.4 mrg uintptr_t offset;
955 1.1.1.4 mrg /* Actual length. */
956 1.1.1.4 mrg uintptr_t length;
957 1.1.1.4 mrg };
958 1.1.1.4 mrg
959 1.1.1.3 mrg struct target_mem_desc {
960 1.1.1.3 mrg /* Reference count. */
961 1.1.1.3 mrg uintptr_t refcount;
962 1.1.1.3 mrg /* All the splay nodes allocated together. */
963 1.1.1.3 mrg splay_tree_node array;
964 1.1.1.3 mrg /* Start of the target region. */
965 1.1.1.3 mrg uintptr_t tgt_start;
966 1.1.1.3 mrg /* End of the targer region. */
967 1.1.1.3 mrg uintptr_t tgt_end;
968 1.1.1.3 mrg /* Handle to free. */
969 1.1.1.3 mrg void *to_free;
970 1.1.1.3 mrg /* Previous target_mem_desc. */
971 1.1.1.3 mrg struct target_mem_desc *prev;
972 1.1.1.3 mrg /* Number of items in following list. */
973 1.1.1.3 mrg size_t list_count;
974 1.1.1.3 mrg
975 1.1.1.3 mrg /* Corresponding target device descriptor. */
976 1.1.1.3 mrg struct gomp_device_descr *device_descr;
977 1.1.1.3 mrg
978 1.1.1.4 mrg /* List of target items to remove (or decrease refcount)
979 1.1.1.3 mrg at the end of region. */
980 1.1.1.4 mrg struct target_var_desc list[];
981 1.1.1.3 mrg };
982 1.1.1.3 mrg
983 1.1.1.4 mrg /* Special value for refcount - infinity. */
984 1.1.1.4 mrg #define REFCOUNT_INFINITY (~(uintptr_t) 0)
985 1.1.1.4 mrg /* Special value for refcount - tgt_offset contains target address of the
986 1.1.1.4 mrg artificial pointer to "omp declare target link" object. */
987 1.1.1.4 mrg #define REFCOUNT_LINK (~(uintptr_t) 1)
988 1.1.1.4 mrg
989 1.1.1.10 mrg /* Special offset values. */
990 1.1.1.10 mrg #define OFFSET_INLINED (~(uintptr_t) 0)
991 1.1.1.10 mrg #define OFFSET_POINTER (~(uintptr_t) 1)
992 1.1.1.10 mrg #define OFFSET_STRUCT (~(uintptr_t) 2)
993 1.1.1.10 mrg
994 1.1.1.10 mrg /* Auxiliary structure for infrequently-used or API-specific data. */
995 1.1.1.10 mrg
996 1.1.1.10 mrg struct splay_tree_aux {
997 1.1.1.10 mrg /* Pointer to the original mapping of "omp declare target link" object. */
998 1.1.1.10 mrg splay_tree_key link_key;
999 1.1.1.10 mrg /* For a block with attached pointers, the attachment counters for each.
1000 1.1.1.10 mrg Only used for OpenACC. */
1001 1.1.1.10 mrg uintptr_t *attach_count;
1002 1.1.1.10 mrg };
1003 1.1.1.10 mrg
1004 1.1.1.3 mrg struct splay_tree_key_s {
1005 1.1.1.3 mrg /* Address of the host object. */
1006 1.1.1.3 mrg uintptr_t host_start;
1007 1.1.1.3 mrg /* Address immediately after the host object. */
1008 1.1.1.3 mrg uintptr_t host_end;
1009 1.1.1.3 mrg /* Descriptor of the target memory. */
1010 1.1.1.3 mrg struct target_mem_desc *tgt;
1011 1.1.1.3 mrg /* Offset from tgt->tgt_start to the start of the target object. */
1012 1.1.1.3 mrg uintptr_t tgt_offset;
1013 1.1.1.3 mrg /* Reference count. */
1014 1.1.1.3 mrg uintptr_t refcount;
1015 1.1.1.9 mrg /* Dynamic reference count. */
1016 1.1.1.9 mrg uintptr_t dynamic_refcount;
1017 1.1.1.10 mrg struct splay_tree_aux *aux;
1018 1.1.1.3 mrg };
1019 1.1.1.3 mrg
1020 1.1.1.4 mrg /* The comparison function. */
1021 1.1.1.4 mrg
1022 1.1.1.4 mrg static inline int
1023 1.1.1.4 mrg splay_compare (splay_tree_key x, splay_tree_key y)
1024 1.1.1.4 mrg {
1025 1.1.1.4 mrg if (x->host_start == x->host_end
1026 1.1.1.4 mrg && y->host_start == y->host_end)
1027 1.1.1.4 mrg return 0;
1028 1.1.1.4 mrg if (x->host_end <= y->host_start)
1029 1.1.1.4 mrg return -1;
1030 1.1.1.4 mrg if (x->host_start >= y->host_end)
1031 1.1.1.4 mrg return 1;
1032 1.1.1.4 mrg return 0;
1033 1.1.1.4 mrg }
1034 1.1.1.4 mrg
1035 1.1.1.3 mrg #include "splay-tree.h"
1036 1.1.1.3 mrg
1037 1.1.1.3 mrg typedef struct acc_dispatch_t
1038 1.1.1.3 mrg {
1039 1.1.1.3 mrg /* Execute. */
1040 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_exec) *exec_func;
1041 1.1.1.3 mrg
1042 1.1.1.3 mrg /* Create/destroy TLS data. */
1043 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_create_thread_data) *create_thread_data_func;
1044 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_destroy_thread_data)
1045 1.1.1.5 mrg *destroy_thread_data_func;
1046 1.1.1.10 mrg
1047 1.1.1.10 mrg struct {
1048 1.1.1.10 mrg /* Once created and put into the "active" list, asyncqueues are then never
1049 1.1.1.10 mrg destructed and removed from the "active" list, other than if the TODO
1050 1.1.1.10 mrg device is shut down. */
1051 1.1.1.10 mrg gomp_mutex_t lock;
1052 1.1.1.10 mrg int nasyncqueue;
1053 1.1.1.10 mrg struct goacc_asyncqueue **asyncqueue;
1054 1.1.1.10 mrg struct goacc_asyncqueue_list *active;
1055 1.1.1.10 mrg
1056 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_construct) *construct_func;
1057 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_destruct) *destruct_func;
1058 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_test) *test_func;
1059 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_synchronize) *synchronize_func;
1060 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_serialize) *serialize_func;
1061 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_queue_callback) *queue_callback_func;
1062 1.1.1.10 mrg
1063 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_exec) *exec_func;
1064 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_dev2host) *dev2host_func;
1065 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_async_host2dev) *host2dev_func;
1066 1.1.1.10 mrg } async;
1067 1.1.1.10 mrg
1068 1.1.1.10 mrg __typeof (GOMP_OFFLOAD_openacc_get_property) *get_property_func;
1069 1.1.1.3 mrg
1070 1.1.1.3 mrg /* NVIDIA target specific routines. */
1071 1.1.1.3 mrg struct {
1072 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_cuda_get_current_device)
1073 1.1.1.5 mrg *get_current_device_func;
1074 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_cuda_get_current_context)
1075 1.1.1.5 mrg *get_current_context_func;
1076 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_cuda_get_stream) *get_stream_func;
1077 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_openacc_cuda_set_stream) *set_stream_func;
1078 1.1.1.3 mrg } cuda;
1079 1.1.1.3 mrg } acc_dispatch_t;
1080 1.1.1.3 mrg
1081 1.1.1.4 mrg /* Various state of the accelerator device. */
1082 1.1.1.4 mrg enum gomp_device_state
1083 1.1.1.4 mrg {
1084 1.1.1.4 mrg GOMP_DEVICE_UNINITIALIZED,
1085 1.1.1.4 mrg GOMP_DEVICE_INITIALIZED,
1086 1.1.1.4 mrg GOMP_DEVICE_FINALIZED
1087 1.1.1.4 mrg };
1088 1.1.1.4 mrg
1089 1.1.1.3 mrg /* This structure describes accelerator device.
1090 1.1.1.3 mrg It contains name of the corresponding libgomp plugin, function handlers for
1091 1.1.1.3 mrg interaction with the device, ID-number of the device, and information about
1092 1.1.1.3 mrg mapped memory. */
1093 1.1.1.3 mrg struct gomp_device_descr
1094 1.1.1.3 mrg {
1095 1.1.1.3 mrg /* Immutable data, which is only set during initialization, and which is not
1096 1.1.1.3 mrg guarded by the lock. */
1097 1.1.1.3 mrg
1098 1.1.1.3 mrg /* The name of the device. */
1099 1.1.1.3 mrg const char *name;
1100 1.1.1.3 mrg
1101 1.1.1.3 mrg /* Capabilities of device (supports OpenACC, OpenMP). */
1102 1.1.1.3 mrg unsigned int capabilities;
1103 1.1.1.3 mrg
1104 1.1.1.3 mrg /* This is the ID number of device among devices of the same type. */
1105 1.1.1.3 mrg int target_id;
1106 1.1.1.3 mrg
1107 1.1.1.3 mrg /* This is the TYPE of device. */
1108 1.1.1.3 mrg enum offload_target_type type;
1109 1.1.1.3 mrg
1110 1.1.1.3 mrg /* Function handlers. */
1111 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_get_name) *get_name_func;
1112 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_get_caps) *get_caps_func;
1113 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_get_type) *get_type_func;
1114 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_get_num_devices) *get_num_devices_func;
1115 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_init_device) *init_device_func;
1116 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_fini_device) *fini_device_func;
1117 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_version) *version_func;
1118 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_load_image) *load_image_func;
1119 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_unload_image) *unload_image_func;
1120 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_alloc) *alloc_func;
1121 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_free) *free_func;
1122 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_dev2host) *dev2host_func;
1123 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_host2dev) *host2dev_func;
1124 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_dev2dev) *dev2dev_func;
1125 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_can_run) *can_run_func;
1126 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_run) *run_func;
1127 1.1.1.5 mrg __typeof (GOMP_OFFLOAD_async_run) *async_run_func;
1128 1.1.1.3 mrg
1129 1.1.1.3 mrg /* Splay tree containing information about mapped memory regions. */
1130 1.1.1.3 mrg struct splay_tree_s mem_map;
1131 1.1.1.3 mrg
1132 1.1.1.3 mrg /* Mutex for the mutable data. */
1133 1.1.1.3 mrg gomp_mutex_t lock;
1134 1.1.1.3 mrg
1135 1.1.1.4 mrg /* Current state of the device. OpenACC allows to move from INITIALIZED state
1136 1.1.1.4 mrg back to UNINITIALIZED state. OpenMP allows only to move from INITIALIZED
1137 1.1.1.4 mrg to FINALIZED state (at program shutdown). */
1138 1.1.1.4 mrg enum gomp_device_state state;
1139 1.1.1.3 mrg
1140 1.1.1.3 mrg /* OpenACC-specific data and functions. */
1141 1.1.1.10 mrg /* This is mutable because of its mutable target_data member. */
1142 1.1.1.3 mrg acc_dispatch_t openacc;
1143 1.1.1.3 mrg };
1144 1.1.1.3 mrg
1145 1.1.1.4 mrg /* Kind of the pragma, for which gomp_map_vars () is called. */
1146 1.1.1.4 mrg enum gomp_map_vars_kind
1147 1.1.1.4 mrg {
1148 1.1.1.4 mrg GOMP_MAP_VARS_OPENACC,
1149 1.1.1.4 mrg GOMP_MAP_VARS_TARGET,
1150 1.1.1.4 mrg GOMP_MAP_VARS_DATA,
1151 1.1.1.4 mrg GOMP_MAP_VARS_ENTER_DATA
1152 1.1.1.4 mrg };
1153 1.1.1.4 mrg
1154 1.1.1.9 mrg extern void gomp_acc_declare_allocate (bool, size_t, void **, size_t *,
1155 1.1.1.9 mrg unsigned short *);
1156 1.1.1.10 mrg struct gomp_coalesce_buf;
1157 1.1.1.10 mrg extern void gomp_copy_host2dev (struct gomp_device_descr *,
1158 1.1.1.10 mrg struct goacc_asyncqueue *, void *, const void *,
1159 1.1.1.10 mrg size_t, struct gomp_coalesce_buf *);
1160 1.1.1.10 mrg extern void gomp_copy_dev2host (struct gomp_device_descr *,
1161 1.1.1.10 mrg struct goacc_asyncqueue *, void *, const void *,
1162 1.1.1.10 mrg size_t);
1163 1.1.1.10 mrg extern uintptr_t gomp_map_val (struct target_mem_desc *, void **, size_t);
1164 1.1.1.10 mrg extern void gomp_attach_pointer (struct gomp_device_descr *,
1165 1.1.1.10 mrg struct goacc_asyncqueue *, splay_tree,
1166 1.1.1.10 mrg splay_tree_key, uintptr_t, size_t,
1167 1.1.1.10 mrg struct gomp_coalesce_buf *);
1168 1.1.1.10 mrg extern void gomp_detach_pointer (struct gomp_device_descr *,
1169 1.1.1.10 mrg struct goacc_asyncqueue *, splay_tree_key,
1170 1.1.1.10 mrg uintptr_t, bool, struct gomp_coalesce_buf *);
1171 1.1.1.3 mrg
1172 1.1.1.3 mrg extern struct target_mem_desc *gomp_map_vars (struct gomp_device_descr *,
1173 1.1.1.3 mrg size_t, void **, void **,
1174 1.1.1.4 mrg size_t *, void *, bool,
1175 1.1.1.4 mrg enum gomp_map_vars_kind);
1176 1.1.1.10 mrg extern struct target_mem_desc *gomp_map_vars_async (struct gomp_device_descr *,
1177 1.1.1.10 mrg struct goacc_asyncqueue *,
1178 1.1.1.10 mrg size_t, void **, void **,
1179 1.1.1.10 mrg size_t *, void *, bool,
1180 1.1.1.10 mrg enum gomp_map_vars_kind);
1181 1.1.1.3 mrg extern void gomp_unmap_vars (struct target_mem_desc *, bool);
1182 1.1.1.10 mrg extern void gomp_unmap_vars_async (struct target_mem_desc *, bool,
1183 1.1.1.10 mrg struct goacc_asyncqueue *);
1184 1.1.1.3 mrg extern void gomp_init_device (struct gomp_device_descr *);
1185 1.1.1.10 mrg extern bool gomp_fini_device (struct gomp_device_descr *);
1186 1.1.1.4 mrg extern void gomp_unload_device (struct gomp_device_descr *);
1187 1.1.1.9 mrg extern bool gomp_remove_var (struct gomp_device_descr *, splay_tree_key);
1188 1.1.1.10 mrg extern void gomp_remove_var_async (struct gomp_device_descr *, splay_tree_key,
1189 1.1.1.10 mrg struct goacc_asyncqueue *);
1190 1.1 mrg
1191 1.1 mrg /* work.c */
1192 1.1 mrg
1193 1.1.1.9 mrg extern void gomp_init_work_share (struct gomp_work_share *, size_t, unsigned);
1194 1.1 mrg extern void gomp_fini_work_share (struct gomp_work_share *);
1195 1.1.1.9 mrg extern bool gomp_work_share_start (size_t);
1196 1.1 mrg extern void gomp_work_share_end (void);
1197 1.1.1.3 mrg extern bool gomp_work_share_end_cancel (void);
1198 1.1 mrg extern void gomp_work_share_end_nowait (void);
1199 1.1 mrg
1200 1.1 mrg static inline void
1201 1.1 mrg gomp_work_share_init_done (void)
1202 1.1 mrg {
1203 1.1 mrg struct gomp_thread *thr = gomp_thread ();
1204 1.1 mrg if (__builtin_expect (thr->ts.last_work_share != NULL, 1))
1205 1.1 mrg gomp_ptrlock_set (&thr->ts.last_work_share->next_ws, thr->ts.work_share);
1206 1.1 mrg }
1207 1.1 mrg
1208 1.1 mrg #ifdef HAVE_ATTRIBUTE_VISIBILITY
1209 1.1 mrg # pragma GCC visibility pop
1210 1.1 mrg #endif
1211 1.1 mrg
1212 1.1 mrg /* Now that we're back to default visibility, include the globals. */
1213 1.1 mrg #include "libgomp_g.h"
1214 1.1 mrg
1215 1.1 mrg /* Include omp.h by parts. */
1216 1.1 mrg #include "omp-lock.h"
1217 1.1 mrg #define _LIBGOMP_OMP_LOCK_DEFINED 1
1218 1.1 mrg #include "omp.h.in"
1219 1.1 mrg
1220 1.1 mrg #if !defined (HAVE_ATTRIBUTE_VISIBILITY) \
1221 1.1 mrg || !defined (HAVE_ATTRIBUTE_ALIAS) \
1222 1.1 mrg || !defined (HAVE_AS_SYMVER_DIRECTIVE) \
1223 1.1.1.2 mrg || !defined (PIC) \
1224 1.1.1.2 mrg || !defined (HAVE_SYMVER_SYMBOL_RENAMING_RUNTIME_SUPPORT)
1225 1.1 mrg # undef LIBGOMP_GNU_SYMBOL_VERSIONING
1226 1.1 mrg #endif
1227 1.1 mrg
1228 1.1 mrg #ifdef LIBGOMP_GNU_SYMBOL_VERSIONING
1229 1.1 mrg extern void gomp_init_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
1230 1.1 mrg extern void gomp_destroy_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
1231 1.1 mrg extern void gomp_set_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
1232 1.1 mrg extern void gomp_unset_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
1233 1.1 mrg extern int gomp_test_lock_30 (omp_lock_t *) __GOMP_NOTHROW;
1234 1.1 mrg extern void gomp_init_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
1235 1.1 mrg extern void gomp_destroy_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
1236 1.1 mrg extern void gomp_set_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
1237 1.1 mrg extern void gomp_unset_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
1238 1.1 mrg extern int gomp_test_nest_lock_30 (omp_nest_lock_t *) __GOMP_NOTHROW;
1239 1.1 mrg
1240 1.1 mrg extern void gomp_init_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
1241 1.1 mrg extern void gomp_destroy_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
1242 1.1 mrg extern void gomp_set_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
1243 1.1 mrg extern void gomp_unset_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
1244 1.1 mrg extern int gomp_test_lock_25 (omp_lock_25_t *) __GOMP_NOTHROW;
1245 1.1 mrg extern void gomp_init_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
1246 1.1 mrg extern void gomp_destroy_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
1247 1.1 mrg extern void gomp_set_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
1248 1.1 mrg extern void gomp_unset_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
1249 1.1 mrg extern int gomp_test_nest_lock_25 (omp_nest_lock_25_t *) __GOMP_NOTHROW;
1250 1.1 mrg
1251 1.1 mrg # define omp_lock_symver(fn) \
1252 1.1 mrg __asm (".symver g" #fn "_30, " #fn "@@OMP_3.0"); \
1253 1.1 mrg __asm (".symver g" #fn "_25, " #fn "@OMP_1.0");
1254 1.1 mrg #else
1255 1.1 mrg # define gomp_init_lock_30 omp_init_lock
1256 1.1 mrg # define gomp_destroy_lock_30 omp_destroy_lock
1257 1.1 mrg # define gomp_set_lock_30 omp_set_lock
1258 1.1 mrg # define gomp_unset_lock_30 omp_unset_lock
1259 1.1 mrg # define gomp_test_lock_30 omp_test_lock
1260 1.1 mrg # define gomp_init_nest_lock_30 omp_init_nest_lock
1261 1.1 mrg # define gomp_destroy_nest_lock_30 omp_destroy_nest_lock
1262 1.1 mrg # define gomp_set_nest_lock_30 omp_set_nest_lock
1263 1.1 mrg # define gomp_unset_nest_lock_30 omp_unset_nest_lock
1264 1.1 mrg # define gomp_test_nest_lock_30 omp_test_nest_lock
1265 1.1 mrg #endif
1266 1.1 mrg
1267 1.1 mrg #ifdef HAVE_ATTRIBUTE_VISIBILITY
1268 1.1 mrg # define attribute_hidden __attribute__ ((visibility ("hidden")))
1269 1.1 mrg #else
1270 1.1 mrg # define attribute_hidden
1271 1.1 mrg #endif
1272 1.1 mrg
1273 1.1.1.9 mrg #if __GNUC__ >= 9
1274 1.1.1.9 mrg # define HAVE_ATTRIBUTE_COPY
1275 1.1.1.9 mrg #endif
1276 1.1.1.9 mrg
1277 1.1.1.9 mrg #ifdef HAVE_ATTRIBUTE_COPY
1278 1.1.1.9 mrg # define attribute_copy(arg) __attribute__ ((copy (arg)))
1279 1.1.1.9 mrg #else
1280 1.1.1.9 mrg # define attribute_copy(arg)
1281 1.1.1.9 mrg #endif
1282 1.1.1.9 mrg
1283 1.1 mrg #ifdef HAVE_ATTRIBUTE_ALIAS
1284 1.1.1.8 mrg # define strong_alias(fn, al) \
1285 1.1.1.9 mrg extern __typeof (fn) al __attribute__ ((alias (#fn))) attribute_copy (fn);
1286 1.1.1.8 mrg
1287 1.1.1.3 mrg # define ialias_ulp ialias_str1(__USER_LABEL_PREFIX__)
1288 1.1.1.3 mrg # define ialias_str1(x) ialias_str2(x)
1289 1.1.1.3 mrg # define ialias_str2(x) #x
1290 1.1 mrg # define ialias(fn) \
1291 1.1 mrg extern __typeof (fn) gomp_ialias_##fn \
1292 1.1.1.9 mrg __attribute__ ((alias (#fn))) attribute_hidden attribute_copy (fn);
1293 1.1.1.3 mrg # define ialias_redirect(fn) \
1294 1.1.1.3 mrg extern __typeof (fn) fn __asm__ (ialias_ulp "gomp_ialias_" #fn) attribute_hidden;
1295 1.1.1.3 mrg # define ialias_call(fn) gomp_ialias_ ## fn
1296 1.1 mrg #else
1297 1.1 mrg # define ialias(fn)
1298 1.1.1.3 mrg # define ialias_redirect(fn)
1299 1.1.1.3 mrg # define ialias_call(fn) fn
1300 1.1 mrg #endif
1301 1.1 mrg
1302 1.1.1.4 mrg /* Helper function for priority_node_to_task() and
1303 1.1.1.4 mrg task_to_priority_node().
1304 1.1.1.4 mrg
1305 1.1.1.4 mrg Return the offset from a task to its priority_node entry. The
1306 1.1.1.4 mrg priority_node entry is has a type of TYPE. */
1307 1.1.1.4 mrg
1308 1.1.1.4 mrg static inline size_t
1309 1.1.1.4 mrg priority_queue_offset (enum priority_queue_type type)
1310 1.1.1.4 mrg {
1311 1.1.1.4 mrg return offsetof (struct gomp_task, pnode[(int) type]);
1312 1.1.1.4 mrg }
1313 1.1.1.4 mrg
1314 1.1.1.4 mrg /* Return the task associated with a priority NODE of type TYPE. */
1315 1.1.1.4 mrg
1316 1.1.1.4 mrg static inline struct gomp_task *
1317 1.1.1.4 mrg priority_node_to_task (enum priority_queue_type type,
1318 1.1.1.4 mrg struct priority_node *node)
1319 1.1.1.4 mrg {
1320 1.1.1.4 mrg return (struct gomp_task *) ((char *) node - priority_queue_offset (type));
1321 1.1.1.4 mrg }
1322 1.1.1.4 mrg
1323 1.1.1.4 mrg /* Return the priority node of type TYPE for a given TASK. */
1324 1.1.1.4 mrg
1325 1.1.1.4 mrg static inline struct priority_node *
1326 1.1.1.4 mrg task_to_priority_node (enum priority_queue_type type,
1327 1.1.1.4 mrg struct gomp_task *task)
1328 1.1.1.4 mrg {
1329 1.1.1.4 mrg return (struct priority_node *) ((char *) task
1330 1.1.1.4 mrg + priority_queue_offset (type));
1331 1.1.1.4 mrg }
1332 1.1.1.9 mrg
1333 1.1.1.9 mrg #ifdef LIBGOMP_USE_PTHREADS
1334 1.1.1.9 mrg static inline gomp_thread_handle
1335 1.1.1.9 mrg gomp_thread_self (void)
1336 1.1.1.9 mrg {
1337 1.1.1.9 mrg return pthread_self ();
1338 1.1.1.9 mrg }
1339 1.1.1.9 mrg
1340 1.1.1.9 mrg static inline gomp_thread_handle
1341 1.1.1.9 mrg gomp_thread_to_pthread_t (struct gomp_thread *thr)
1342 1.1.1.9 mrg {
1343 1.1.1.9 mrg struct gomp_thread *this_thr = gomp_thread ();
1344 1.1.1.9 mrg if (thr == this_thr)
1345 1.1.1.9 mrg return pthread_self ();
1346 1.1.1.9 mrg #ifdef GOMP_NEEDS_THREAD_HANDLE
1347 1.1.1.9 mrg return thr->handle;
1348 1.1.1.9 mrg #else
1349 1.1.1.9 mrg /* On Linux with initial-exec TLS, the pthread_t of the thread containing
1350 1.1.1.9 mrg thr can be computed from thr, this_thr and pthread_self (),
1351 1.1.1.9 mrg as the distance between this_thr and pthread_self () is constant. */
1352 1.1.1.9 mrg return pthread_self () + ((uintptr_t) thr - (uintptr_t) this_thr);
1353 1.1.1.9 mrg #endif
1354 1.1.1.9 mrg }
1355 1.1.1.9 mrg #else
1356 1.1.1.9 mrg static inline gomp_thread_handle
1357 1.1.1.9 mrg gomp_thread_self (void)
1358 1.1.1.9 mrg {
1359 1.1.1.9 mrg return (gomp_thread_handle) {};
1360 1.1.1.9 mrg }
1361 1.1.1.9 mrg
1362 1.1.1.9 mrg static inline gomp_thread_handle
1363 1.1.1.9 mrg gomp_thread_to_pthread_t (struct gomp_thread *thr)
1364 1.1.1.9 mrg {
1365 1.1.1.9 mrg (void) thr;
1366 1.1.1.9 mrg return gomp_thread_self ();
1367 1.1.1.9 mrg }
1368 1.1.1.9 mrg #endif
1369 1.1.1.9 mrg
1370 1.1 mrg #endif /* LIBGOMP_H */
1371