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Jim Cownie5e8470a2013-09-27 10:38:44 +00001/*
Jonathan Peytonde4749b2016-12-14 23:01:24 +00002 * z_Linux_util.cpp -- platform specific routines.
Jim Cownie5e8470a2013-09-27 10:38:44 +00003 */
4
5
6//===----------------------------------------------------------------------===//
7//
8// The LLVM Compiler Infrastructure
9//
10// This file is dual licensed under the MIT and the University of Illinois Open
11// Source Licenses. See LICENSE.txt for details.
12//
13//===----------------------------------------------------------------------===//
14
15
16#include "kmp.h"
Jonathan Peyton1cdd87a2016-11-14 21:08:35 +000017#include "kmp_affinity.h"
Jonathan Peyton30419822017-05-12 18:01:32 +000018#include "kmp_i18n.h"
19#include "kmp_io.h"
20#include "kmp_itt.h"
21#include "kmp_lock.h"
22#include "kmp_stats.h"
23#include "kmp_str.h"
24#include "kmp_wait_release.h"
25#include "kmp_wrapper_getpid.h"
Jim Cownie5e8470a2013-09-27 10:38:44 +000026
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +000027#if !KMP_OS_FREEBSD && !KMP_OS_NETBSD
Jonathan Peyton30419822017-05-12 18:01:32 +000028#include <alloca.h>
Alp Toker763b9392014-02-28 09:42:41 +000029#endif
Jonathan Peyton30419822017-05-12 18:01:32 +000030#include <math.h> // HUGE_VAL.
Jim Cownie5e8470a2013-09-27 10:38:44 +000031#include <sys/resource.h>
32#include <sys/syscall.h>
Jonathan Peyton30419822017-05-12 18:01:32 +000033#include <sys/time.h>
34#include <sys/times.h>
35#include <unistd.h>
Jim Cownie5e8470a2013-09-27 10:38:44 +000036
Jim Cownie3051f972014-08-07 10:12:54 +000037#if KMP_OS_LINUX && !KMP_OS_CNK
Jonathan Peyton30419822017-05-12 18:01:32 +000038#include <sys/sysinfo.h>
39#if KMP_USE_FUTEX
40// We should really include <futex.h>, but that causes compatibility problems on
41// different Linux* OS distributions that either require that you include (or
42// break when you try to include) <pci/types.h>. Since all we need is the two
43// macros below (which are part of the kernel ABI, so can't change) we just
44// define the constants here and don't include <futex.h>
45#ifndef FUTEX_WAIT
46#define FUTEX_WAIT 0
47#endif
48#ifndef FUTEX_WAKE
49#define FUTEX_WAKE 1
50#endif
51#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +000052#elif KMP_OS_DARWIN
Jonathan Peyton30419822017-05-12 18:01:32 +000053#include <mach/mach.h>
54#include <sys/sysctl.h>
Alp Toker763b9392014-02-28 09:42:41 +000055#elif KMP_OS_FREEBSD
Jonathan Peyton30419822017-05-12 18:01:32 +000056#include <pthread_np.h>
Jim Cownie5e8470a2013-09-27 10:38:44 +000057#endif
58
Jim Cownie5e8470a2013-09-27 10:38:44 +000059#include <ctype.h>
Jonathan Peyton30419822017-05-12 18:01:32 +000060#include <dirent.h>
Jim Cownie5e8470a2013-09-27 10:38:44 +000061#include <fcntl.h>
62
Jonas Hahnfeld50fed042016-11-07 15:58:36 +000063#include "tsan_annotations.h"
64
Jim Cownie5e8470a2013-09-27 10:38:44 +000065struct kmp_sys_timer {
Jonathan Peyton30419822017-05-12 18:01:32 +000066 struct timespec start;
Jim Cownie5e8470a2013-09-27 10:38:44 +000067};
68
69// Convert timespec to nanoseconds.
70#define TS2NS(timespec) (((timespec).tv_sec * 1e9) + (timespec).tv_nsec)
71
72static struct kmp_sys_timer __kmp_sys_timer_data;
73
74#if KMP_HANDLE_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +000075typedef void (*sig_func_t)(int);
76STATIC_EFI2_WORKAROUND struct sigaction __kmp_sighldrs[NSIG];
77static sigset_t __kmp_sigset;
Jim Cownie5e8470a2013-09-27 10:38:44 +000078#endif
79
Jonathan Peyton30419822017-05-12 18:01:32 +000080static int __kmp_init_runtime = FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +000081
82static int __kmp_fork_count = 0;
83
Jonathan Peyton30419822017-05-12 18:01:32 +000084static pthread_condattr_t __kmp_suspend_cond_attr;
Jim Cownie5e8470a2013-09-27 10:38:44 +000085static pthread_mutexattr_t __kmp_suspend_mutex_attr;
86
Jonathan Peyton30419822017-05-12 18:01:32 +000087static kmp_cond_align_t __kmp_wait_cv;
88static kmp_mutex_align_t __kmp_wait_mx;
Jim Cownie5e8470a2013-09-27 10:38:44 +000089
Jonathan Peyton35d75ae2017-03-20 22:11:31 +000090kmp_uint64 __kmp_ticks_per_msec = 1000000;
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +000091
Jim Cownie5e8470a2013-09-27 10:38:44 +000092#ifdef DEBUG_SUSPEND
Jonathan Peyton30419822017-05-12 18:01:32 +000093static void __kmp_print_cond(char *buffer, kmp_cond_align_t *cond) {
94 KMP_SNPRINTF(buffer, 128, "(cond (lock (%ld, %d)), (descr (%p)))",
95 cond->c_cond.__c_lock.__status, cond->c_cond.__c_lock.__spinlock,
96 cond->c_cond.__c_waiting);
Jim Cownie5e8470a2013-09-27 10:38:44 +000097}
98#endif
99
Jonathan Peyton30419822017-05-12 18:01:32 +0000100#if (KMP_OS_LINUX && KMP_AFFINITY_SUPPORTED)
Jim Cownie5e8470a2013-09-27 10:38:44 +0000101
Jonathan Peyton30419822017-05-12 18:01:32 +0000102/* Affinity support */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000103
Jonathan Peyton30419822017-05-12 18:01:32 +0000104void __kmp_affinity_bind_thread(int which) {
105 KMP_ASSERT2(KMP_AFFINITY_CAPABLE(),
106 "Illegal set affinity operation when not capable");
Jim Cownie5e8470a2013-09-27 10:38:44 +0000107
Jonathan Peyton30419822017-05-12 18:01:32 +0000108 kmp_affin_mask_t *mask;
109 KMP_CPU_ALLOC_ON_STACK(mask);
110 KMP_CPU_ZERO(mask);
111 KMP_CPU_SET(which, mask);
112 __kmp_set_system_affinity(mask, TRUE);
113 KMP_CPU_FREE_FROM_STACK(mask);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000114}
115
Jonathan Peyton30419822017-05-12 18:01:32 +0000116/* Determine if we can access affinity functionality on this version of
Jim Cownie5e8470a2013-09-27 10:38:44 +0000117 * Linux* OS by checking __NR_sched_{get,set}affinity system calls, and set
Jonathan Peyton30419822017-05-12 18:01:32 +0000118 * __kmp_affin_mask_size to the appropriate value (0 means not capable). */
119void __kmp_affinity_determine_capable(const char *env_var) {
120// Check and see if the OS supports thread affinity.
121
122#define KMP_CPU_SET_SIZE_LIMIT (1024 * 1024)
123
124 int gCode;
125 int sCode;
126 unsigned char *buf;
127 buf = (unsigned char *)KMP_INTERNAL_MALLOC(KMP_CPU_SET_SIZE_LIMIT);
128
129 // If Linux* OS:
130 // If the syscall fails or returns a suggestion for the size,
131 // then we don't have to search for an appropriate size.
132 gCode = syscall(__NR_sched_getaffinity, 0, KMP_CPU_SET_SIZE_LIMIT, buf);
133 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
134 "initial getaffinity call returned %d errno = %d\n",
135 gCode, errno));
136
137 // if ((gCode < 0) && (errno == ENOSYS))
138 if (gCode < 0) {
139 // System call not supported
140 if (__kmp_affinity_verbose ||
141 (__kmp_affinity_warnings && (__kmp_affinity_type != affinity_none) &&
142 (__kmp_affinity_type != affinity_default) &&
143 (__kmp_affinity_type != affinity_disabled))) {
144 int error = errno;
145 kmp_msg_t err_code = KMP_ERR(error);
146 __kmp_msg(kmp_ms_warning, KMP_MSG(GetAffSysCallNotSupported, env_var),
147 err_code, __kmp_msg_null);
148 if (__kmp_generate_warnings == kmp_warnings_off) {
149 __kmp_str_free(&err_code.str);
150 }
151 }
152 KMP_AFFINITY_DISABLE();
153 KMP_INTERNAL_FREE(buf);
154 return;
155 }
156 if (gCode > 0) { // Linux* OS only
157 // The optimal situation: the OS returns the size of the buffer it expects.
Jim Cownie5e8470a2013-09-27 10:38:44 +0000158 //
Jonathan Peyton30419822017-05-12 18:01:32 +0000159 // A verification of correct behavior is that Isetaffinity on a NULL
160 // buffer with the same size fails with errno set to EFAULT.
161 sCode = syscall(__NR_sched_setaffinity, 0, gCode, NULL);
162 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
163 "setaffinity for mask size %d returned %d errno = %d\n",
164 gCode, sCode, errno));
165 if (sCode < 0) {
166 if (errno == ENOSYS) {
167 if (__kmp_affinity_verbose ||
168 (__kmp_affinity_warnings &&
169 (__kmp_affinity_type != affinity_none) &&
170 (__kmp_affinity_type != affinity_default) &&
171 (__kmp_affinity_type != affinity_disabled))) {
172 int error = errno;
173 kmp_msg_t err_code = KMP_ERR(error);
174 __kmp_msg(kmp_ms_warning, KMP_MSG(SetAffSysCallNotSupported, env_var),
175 err_code, __kmp_msg_null);
176 if (__kmp_generate_warnings == kmp_warnings_off) {
177 __kmp_str_free(&err_code.str);
178 }
179 }
180 KMP_AFFINITY_DISABLE();
181 KMP_INTERNAL_FREE(buf);
182 }
183 if (errno == EFAULT) {
184 KMP_AFFINITY_ENABLE(gCode);
185 KA_TRACE(10, ("__kmp_affinity_determine_capable: "
186 "affinity supported (mask size %d)\n",
187 (int)__kmp_affin_mask_size));
188 KMP_INTERNAL_FREE(buf);
189 return;
190 }
191 }
192 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000193
Jonathan Peyton30419822017-05-12 18:01:32 +0000194 // Call the getaffinity system call repeatedly with increasing set sizes
195 // until we succeed, or reach an upper bound on the search.
196 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
197 "searching for proper set size\n"));
198 int size;
199 for (size = 1; size <= KMP_CPU_SET_SIZE_LIMIT; size *= 2) {
200 gCode = syscall(__NR_sched_getaffinity, 0, size, buf);
201 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
202 "getaffinity for mask size %d returned %d errno = %d\n",
203 size, gCode, errno));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000204
Jim Cownie5e8470a2013-09-27 10:38:44 +0000205 if (gCode < 0) {
Jonathan Peyton30419822017-05-12 18:01:32 +0000206 if (errno == ENOSYS) {
207 // We shouldn't get here
208 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
209 "inconsistent OS call behavior: errno == ENOSYS for mask "
210 "size %d\n",
211 size));
212 if (__kmp_affinity_verbose ||
213 (__kmp_affinity_warnings &&
214 (__kmp_affinity_type != affinity_none) &&
215 (__kmp_affinity_type != affinity_default) &&
216 (__kmp_affinity_type != affinity_disabled))) {
217 int error = errno;
218 kmp_msg_t err_code = KMP_ERR(error);
219 __kmp_msg(kmp_ms_warning, KMP_MSG(GetAffSysCallNotSupported, env_var),
220 err_code, __kmp_msg_null);
221 if (__kmp_generate_warnings == kmp_warnings_off) {
222 __kmp_str_free(&err_code.str);
223 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000224 }
Andrey Churbanov1f037e42015-03-10 09:15:26 +0000225 KMP_AFFINITY_DISABLE();
Jim Cownie5e8470a2013-09-27 10:38:44 +0000226 KMP_INTERNAL_FREE(buf);
227 return;
Jonathan Peyton30419822017-05-12 18:01:32 +0000228 }
229 continue;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000230 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000231
232 sCode = syscall(__NR_sched_setaffinity, 0, gCode, NULL);
233 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
234 "setaffinity for mask size %d returned %d errno = %d\n",
235 gCode, sCode, errno));
236 if (sCode < 0) {
237 if (errno == ENOSYS) { // Linux* OS only
238 // We shouldn't get here
239 KA_TRACE(30, ("__kmp_affinity_determine_capable: "
240 "inconsistent OS call behavior: errno == ENOSYS for mask "
241 "size %d\n",
242 size));
243 if (__kmp_affinity_verbose ||
244 (__kmp_affinity_warnings &&
245 (__kmp_affinity_type != affinity_none) &&
246 (__kmp_affinity_type != affinity_default) &&
247 (__kmp_affinity_type != affinity_disabled))) {
248 int error = errno;
249 kmp_msg_t err_code = KMP_ERR(error);
250 __kmp_msg(kmp_ms_warning, KMP_MSG(SetAffSysCallNotSupported, env_var),
251 err_code, __kmp_msg_null);
252 if (__kmp_generate_warnings == kmp_warnings_off) {
253 __kmp_str_free(&err_code.str);
254 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000255 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000256 KMP_AFFINITY_DISABLE();
257 KMP_INTERNAL_FREE(buf);
258 return;
259 }
260 if (errno == EFAULT) {
261 KMP_AFFINITY_ENABLE(gCode);
262 KA_TRACE(10, ("__kmp_affinity_determine_capable: "
263 "affinity supported (mask size %d)\n",
264 (int)__kmp_affin_mask_size));
265 KMP_INTERNAL_FREE(buf);
266 return;
267 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000268 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000269 }
270 // save uncaught error code
271 // int error = errno;
272 KMP_INTERNAL_FREE(buf);
273 // restore uncaught error code, will be printed at the next KMP_WARNING below
274 // errno = error;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000275
Jonathan Peyton30419822017-05-12 18:01:32 +0000276 // Affinity is not supported
277 KMP_AFFINITY_DISABLE();
278 KA_TRACE(10, ("__kmp_affinity_determine_capable: "
279 "cannot determine mask size - affinity not supported\n"));
280 if (__kmp_affinity_verbose ||
281 (__kmp_affinity_warnings && (__kmp_affinity_type != affinity_none) &&
282 (__kmp_affinity_type != affinity_default) &&
283 (__kmp_affinity_type != affinity_disabled))) {
284 KMP_WARNING(AffCantGetMaskSize, env_var);
285 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000286}
287
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000288#endif // KMP_OS_LINUX && KMP_AFFINITY_SUPPORTED
Jim Cownie5e8470a2013-09-27 10:38:44 +0000289
Jonathan Peyton9d2412c2016-06-22 16:35:12 +0000290#if KMP_USE_FUTEX
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000291
Jonathan Peyton30419822017-05-12 18:01:32 +0000292int __kmp_futex_determine_capable() {
293 int loc = 0;
294 int rc = syscall(__NR_futex, &loc, FUTEX_WAKE, 1, NULL, NULL, 0);
295 int retval = (rc == 0) || (errno != ENOSYS);
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000296
Jonathan Peyton30419822017-05-12 18:01:32 +0000297 KA_TRACE(10,
298 ("__kmp_futex_determine_capable: rc = %d errno = %d\n", rc, errno));
299 KA_TRACE(10, ("__kmp_futex_determine_capable: futex syscall%s supported\n",
300 retval ? "" : " not"));
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000301
Jonathan Peyton30419822017-05-12 18:01:32 +0000302 return retval;
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000303}
304
Jonathan Peyton9d2412c2016-06-22 16:35:12 +0000305#endif // KMP_USE_FUTEX
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000306
Jonathan Peyton30419822017-05-12 18:01:32 +0000307#if (KMP_ARCH_X86 || KMP_ARCH_X86_64) && (!KMP_ASM_INTRINS)
308/* Only 32-bit "add-exchange" instruction on IA-32 architecture causes us to
309 use compare_and_store for these routines */
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000310
Jonathan Peyton30419822017-05-12 18:01:32 +0000311kmp_int8 __kmp_test_then_or8(volatile kmp_int8 *p, kmp_int8 d) {
312 kmp_int8 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000313
Jonathan Peyton30419822017-05-12 18:01:32 +0000314 old_value = TCR_1(*p);
315 new_value = old_value | d;
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000316
Jonathan Peyton30419822017-05-12 18:01:32 +0000317 while (!KMP_COMPARE_AND_STORE_REL8(p, old_value, new_value)) {
318 KMP_CPU_PAUSE();
319 old_value = TCR_1(*p);
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000320 new_value = old_value | d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000321 }
322 return old_value;
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000323}
324
Jonathan Peyton30419822017-05-12 18:01:32 +0000325kmp_int8 __kmp_test_then_and8(volatile kmp_int8 *p, kmp_int8 d) {
326 kmp_int8 old_value, new_value;
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000327
Jonathan Peyton30419822017-05-12 18:01:32 +0000328 old_value = TCR_1(*p);
329 new_value = old_value & d;
330
331 while (!KMP_COMPARE_AND_STORE_REL8(p, old_value, new_value)) {
332 KMP_CPU_PAUSE();
333 old_value = TCR_1(*p);
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000334 new_value = old_value & d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000335 }
336 return old_value;
Andrey Churbanov7b2ab712015-03-10 09:03:42 +0000337}
338
Andrey Churbanov5ba90c72017-07-17 09:03:14 +0000339kmp_uint32 __kmp_test_then_or32(volatile kmp_uint32 *p, kmp_uint32 d) {
340 kmp_uint32 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000341
Jonathan Peyton30419822017-05-12 18:01:32 +0000342 old_value = TCR_4(*p);
343 new_value = old_value | d;
344
345 while (!KMP_COMPARE_AND_STORE_REL32(p, old_value, new_value)) {
346 KMP_CPU_PAUSE();
347 old_value = TCR_4(*p);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000348 new_value = old_value | d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000349 }
350 return old_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000351}
352
Andrey Churbanov5ba90c72017-07-17 09:03:14 +0000353kmp_uint32 __kmp_test_then_and32(volatile kmp_uint32 *p, kmp_uint32 d) {
354 kmp_uint32 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000355
Jonathan Peyton30419822017-05-12 18:01:32 +0000356 old_value = TCR_4(*p);
357 new_value = old_value & d;
358
359 while (!KMP_COMPARE_AND_STORE_REL32(p, old_value, new_value)) {
360 KMP_CPU_PAUSE();
361 old_value = TCR_4(*p);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000362 new_value = old_value & d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000363 }
364 return old_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000365}
366
Jonathan Peyton30419822017-05-12 18:01:32 +0000367#if KMP_ARCH_X86
368kmp_int8 __kmp_test_then_add8(volatile kmp_int8 *p, kmp_int8 d) {
369 kmp_int8 old_value, new_value;
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000370
Jonathan Peyton30419822017-05-12 18:01:32 +0000371 old_value = TCR_1(*p);
372 new_value = old_value + d;
373
374 while (!KMP_COMPARE_AND_STORE_REL8(p, old_value, new_value)) {
375 KMP_CPU_PAUSE();
376 old_value = TCR_1(*p);
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000377 new_value = old_value + d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000378 }
379 return old_value;
Andrey Churbanovd39f11c2015-03-10 10:14:57 +0000380}
381
Jonathan Peyton30419822017-05-12 18:01:32 +0000382kmp_int64 __kmp_test_then_add64(volatile kmp_int64 *p, kmp_int64 d) {
383 kmp_int64 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000384
Jonathan Peyton30419822017-05-12 18:01:32 +0000385 old_value = TCR_8(*p);
386 new_value = old_value + d;
387
388 while (!KMP_COMPARE_AND_STORE_REL64(p, old_value, new_value)) {
389 KMP_CPU_PAUSE();
390 old_value = TCR_8(*p);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000391 new_value = old_value + d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000392 }
393 return old_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000394}
Jonathan Peyton30419822017-05-12 18:01:32 +0000395#endif /* KMP_ARCH_X86 */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000396
Andrey Churbanov5ba90c72017-07-17 09:03:14 +0000397kmp_uint64 __kmp_test_then_or64(volatile kmp_uint64 *p, kmp_uint64 d) {
398 kmp_uint64 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000399
Jonathan Peyton30419822017-05-12 18:01:32 +0000400 old_value = TCR_8(*p);
401 new_value = old_value | d;
402 while (!KMP_COMPARE_AND_STORE_REL64(p, old_value, new_value)) {
403 KMP_CPU_PAUSE();
404 old_value = TCR_8(*p);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000405 new_value = old_value | d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000406 }
407 return old_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000408}
409
Andrey Churbanov5ba90c72017-07-17 09:03:14 +0000410kmp_uint64 __kmp_test_then_and64(volatile kmp_uint64 *p, kmp_uint64 d) {
411 kmp_uint64 old_value, new_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000412
Jonathan Peyton30419822017-05-12 18:01:32 +0000413 old_value = TCR_8(*p);
414 new_value = old_value & d;
415 while (!KMP_COMPARE_AND_STORE_REL64(p, old_value, new_value)) {
416 KMP_CPU_PAUSE();
417 old_value = TCR_8(*p);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000418 new_value = old_value & d;
Jonathan Peyton30419822017-05-12 18:01:32 +0000419 }
420 return old_value;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000421}
422
423#endif /* (KMP_ARCH_X86 || KMP_ARCH_X86_64) && (! KMP_ASM_INTRINS) */
424
Jonathan Peyton30419822017-05-12 18:01:32 +0000425void __kmp_terminate_thread(int gtid) {
426 int status;
427 kmp_info_t *th = __kmp_threads[gtid];
Jim Cownie5e8470a2013-09-27 10:38:44 +0000428
Jonathan Peyton30419822017-05-12 18:01:32 +0000429 if (!th)
430 return;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000431
Jonathan Peyton30419822017-05-12 18:01:32 +0000432#ifdef KMP_CANCEL_THREADS
433 KA_TRACE(10, ("__kmp_terminate_thread: kill (%d)\n", gtid));
434 status = pthread_cancel(th->th.th_info.ds.ds_thread);
435 if (status != 0 && status != ESRCH) {
436 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantTerminateWorkerThread), KMP_ERR(status),
437 __kmp_msg_null);
438 }; // if
439#endif
440 __kmp_yield(TRUE);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000441} //
442
Jonathan Peyton30419822017-05-12 18:01:32 +0000443/* Set thread stack info according to values returned by pthread_getattr_np().
444 If values are unreasonable, assume call failed and use incremental stack
445 refinement method instead. Returns TRUE if the stack parameters could be
446 determined exactly, FALSE if incremental refinement is necessary. */
447static kmp_int32 __kmp_set_stack_info(int gtid, kmp_info_t *th) {
448 int stack_data;
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +0000449#if KMP_OS_LINUX || KMP_OS_FREEBSD || KMP_OS_NETBSD
Jonathan Peyton30419822017-05-12 18:01:32 +0000450 /* Linux* OS only -- no pthread_getattr_np support on OS X* */
451 pthread_attr_t attr;
452 int status;
453 size_t size = 0;
454 void *addr = 0;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000455
Jonathan Peyton30419822017-05-12 18:01:32 +0000456 /* Always do incremental stack refinement for ubermaster threads since the
457 initial thread stack range can be reduced by sibling thread creation so
458 pthread_attr_getstack may cause thread gtid aliasing */
459 if (!KMP_UBER_GTID(gtid)) {
Jim Cownie5e8470a2013-09-27 10:38:44 +0000460
Jonathan Peyton30419822017-05-12 18:01:32 +0000461 /* Fetch the real thread attributes */
462 status = pthread_attr_init(&attr);
463 KMP_CHECK_SYSFAIL("pthread_attr_init", status);
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +0000464#if KMP_OS_FREEBSD || KMP_OS_NETBSD
Jonathan Peyton30419822017-05-12 18:01:32 +0000465 status = pthread_attr_get_np(pthread_self(), &attr);
466 KMP_CHECK_SYSFAIL("pthread_attr_get_np", status);
Alp Toker763b9392014-02-28 09:42:41 +0000467#else
Jonathan Peyton30419822017-05-12 18:01:32 +0000468 status = pthread_getattr_np(pthread_self(), &attr);
469 KMP_CHECK_SYSFAIL("pthread_getattr_np", status);
Alp Toker763b9392014-02-28 09:42:41 +0000470#endif
Jonathan Peyton30419822017-05-12 18:01:32 +0000471 status = pthread_attr_getstack(&attr, &addr, &size);
472 KMP_CHECK_SYSFAIL("pthread_attr_getstack", status);
473 KA_TRACE(60,
474 ("__kmp_set_stack_info: T#%d pthread_attr_getstack returned size:"
475 " %lu, low addr: %p\n",
476 gtid, size, addr));
477 status = pthread_attr_destroy(&attr);
478 KMP_CHECK_SYSFAIL("pthread_attr_destroy", status);
479 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000480
Jonathan Peyton30419822017-05-12 18:01:32 +0000481 if (size != 0 && addr != 0) { // was stack parameter determination successful?
482 /* Store the correct base and size */
483 TCW_PTR(th->th.th_info.ds.ds_stackbase, (((char *)addr) + size));
484 TCW_PTR(th->th.th_info.ds.ds_stacksize, size);
485 TCW_4(th->th.th_info.ds.ds_stackgrow, FALSE);
486 return TRUE;
487 }
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +0000488#endif /* KMP_OS_LINUX || KMP_OS_FREEBSD || KMP_OS_NETBSD */
Jonathan Peyton30419822017-05-12 18:01:32 +0000489 /* Use incremental refinement starting from initial conservative estimate */
490 TCW_PTR(th->th.th_info.ds.ds_stacksize, 0);
491 TCW_PTR(th->th.th_info.ds.ds_stackbase, &stack_data);
492 TCW_4(th->th.th_info.ds.ds_stackgrow, TRUE);
493 return FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000494}
495
Jonathan Peyton30419822017-05-12 18:01:32 +0000496static void *__kmp_launch_worker(void *thr) {
497 int status, old_type, old_state;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000498#ifdef KMP_BLOCK_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +0000499 sigset_t new_set, old_set;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000500#endif /* KMP_BLOCK_SIGNALS */
Jonathan Peyton30419822017-05-12 18:01:32 +0000501 void *exit_val;
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +0000502#if KMP_OS_LINUX || KMP_OS_FREEBSD || KMP_OS_NETBSD
Jonathan Peyton30419822017-05-12 18:01:32 +0000503 void *volatile padding = 0;
Jonathan Peyton2321d572015-06-08 19:25:25 +0000504#endif
Jonathan Peyton30419822017-05-12 18:01:32 +0000505 int gtid;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000506
Jonathan Peyton30419822017-05-12 18:01:32 +0000507 gtid = ((kmp_info_t *)thr)->th.th_info.ds.ds_gtid;
508 __kmp_gtid_set_specific(gtid);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000509#ifdef KMP_TDATA_GTID
Jonathan Peyton30419822017-05-12 18:01:32 +0000510 __kmp_gtid = gtid;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000511#endif
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000512#if KMP_STATS_ENABLED
Jonathan Peyton30419822017-05-12 18:01:32 +0000513 // set __thread local index to point to thread-specific stats
514 __kmp_stats_thread_ptr = ((kmp_info_t *)thr)->th.th_stats;
515 KMP_START_EXPLICIT_TIMER(OMP_worker_thread_life);
516 KMP_SET_THREAD_STATE(IDLE);
517 KMP_INIT_PARTITIONED_TIMERS(OMP_idle);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000518#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +0000519
520#if USE_ITT_BUILD
Jonathan Peyton30419822017-05-12 18:01:32 +0000521 __kmp_itt_thread_name(gtid);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000522#endif /* USE_ITT_BUILD */
523
Alp Toker763b9392014-02-28 09:42:41 +0000524#if KMP_AFFINITY_SUPPORTED
Jonathan Peyton30419822017-05-12 18:01:32 +0000525 __kmp_affinity_set_init_mask(gtid, FALSE);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000526#endif
527
528#ifdef KMP_CANCEL_THREADS
Jonathan Peyton30419822017-05-12 18:01:32 +0000529 status = pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, &old_type);
530 KMP_CHECK_SYSFAIL("pthread_setcanceltype", status);
531 // josh todo: isn't PTHREAD_CANCEL_ENABLE default for newly-created threads?
532 status = pthread_setcancelstate(PTHREAD_CANCEL_ENABLE, &old_state);
533 KMP_CHECK_SYSFAIL("pthread_setcancelstate", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000534#endif
535
536#if KMP_ARCH_X86 || KMP_ARCH_X86_64
Jonathan Peyton30419822017-05-12 18:01:32 +0000537 // Set FP control regs to be a copy of the parallel initialization thread's.
538 __kmp_clear_x87_fpu_status_word();
539 __kmp_load_x87_fpu_control_word(&__kmp_init_x87_fpu_control_word);
540 __kmp_load_mxcsr(&__kmp_init_mxcsr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000541#endif /* KMP_ARCH_X86 || KMP_ARCH_X86_64 */
542
543#ifdef KMP_BLOCK_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +0000544 status = sigfillset(&new_set);
545 KMP_CHECK_SYSFAIL_ERRNO("sigfillset", status);
546 status = pthread_sigmask(SIG_BLOCK, &new_set, &old_set);
547 KMP_CHECK_SYSFAIL("pthread_sigmask", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000548#endif /* KMP_BLOCK_SIGNALS */
549
Joerg Sonnenberger1564f3c2015-09-21 20:02:45 +0000550#if KMP_OS_LINUX || KMP_OS_FREEBSD || KMP_OS_NETBSD
Jonathan Peyton30419822017-05-12 18:01:32 +0000551 if (__kmp_stkoffset > 0 && gtid > 0) {
552 padding = KMP_ALLOCA(gtid * __kmp_stkoffset);
553 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000554#endif
555
Jonathan Peyton30419822017-05-12 18:01:32 +0000556 KMP_MB();
557 __kmp_set_stack_info(gtid, (kmp_info_t *)thr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000558
Jonathan Peyton30419822017-05-12 18:01:32 +0000559 __kmp_check_stack_overlap((kmp_info_t *)thr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000560
Jonathan Peyton30419822017-05-12 18:01:32 +0000561 exit_val = __kmp_launch_thread((kmp_info_t *)thr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000562
563#ifdef KMP_BLOCK_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +0000564 status = pthread_sigmask(SIG_SETMASK, &old_set, NULL);
565 KMP_CHECK_SYSFAIL("pthread_sigmask", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000566#endif /* KMP_BLOCK_SIGNALS */
567
Jonathan Peyton30419822017-05-12 18:01:32 +0000568 return exit_val;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000569}
570
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +0000571#if KMP_USE_MONITOR
Jim Cownie5e8470a2013-09-27 10:38:44 +0000572/* The monitor thread controls all of the threads in the complex */
573
Jonathan Peyton30419822017-05-12 18:01:32 +0000574static void *__kmp_launch_monitor(void *thr) {
575 int status, old_type, old_state;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000576#ifdef KMP_BLOCK_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +0000577 sigset_t new_set;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000578#endif /* KMP_BLOCK_SIGNALS */
Jonathan Peyton30419822017-05-12 18:01:32 +0000579 struct timespec interval;
580 int yield_count;
581 int yield_cycles = 0;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000582
Jonathan Peyton30419822017-05-12 18:01:32 +0000583 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000584
Jonathan Peyton30419822017-05-12 18:01:32 +0000585 KA_TRACE(10, ("__kmp_launch_monitor: #1 launched\n"));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000586
Jonathan Peyton30419822017-05-12 18:01:32 +0000587 /* register us as the monitor thread */
588 __kmp_gtid_set_specific(KMP_GTID_MONITOR);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000589#ifdef KMP_TDATA_GTID
Jonathan Peyton30419822017-05-12 18:01:32 +0000590 __kmp_gtid = KMP_GTID_MONITOR;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000591#endif
592
Jonathan Peyton30419822017-05-12 18:01:32 +0000593 KMP_MB();
Jim Cownie5e8470a2013-09-27 10:38:44 +0000594
595#if USE_ITT_BUILD
Jonathan Peyton30419822017-05-12 18:01:32 +0000596 // Instruct Intel(R) Threading Tools to ignore monitor thread.
597 __kmp_itt_thread_ignore();
Jim Cownie5e8470a2013-09-27 10:38:44 +0000598#endif /* USE_ITT_BUILD */
599
Jonathan Peyton30419822017-05-12 18:01:32 +0000600 __kmp_set_stack_info(((kmp_info_t *)thr)->th.th_info.ds.ds_gtid,
601 (kmp_info_t *)thr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000602
Jonathan Peyton30419822017-05-12 18:01:32 +0000603 __kmp_check_stack_overlap((kmp_info_t *)thr);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000604
605#ifdef KMP_CANCEL_THREADS
Jonathan Peyton30419822017-05-12 18:01:32 +0000606 status = pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, &old_type);
607 KMP_CHECK_SYSFAIL("pthread_setcanceltype", status);
608 // josh todo: isn't PTHREAD_CANCEL_ENABLE default for newly-created threads?
609 status = pthread_setcancelstate(PTHREAD_CANCEL_ENABLE, &old_state);
610 KMP_CHECK_SYSFAIL("pthread_setcancelstate", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000611#endif
612
Jonathan Peyton30419822017-05-12 18:01:32 +0000613#if KMP_REAL_TIME_FIX
614 // This is a potential fix which allows application with real-time scheduling
615 // policy work. However, decision about the fix is not made yet, so it is
616 // disabled by default.
617 { // Are program started with real-time scheduling policy?
618 int sched = sched_getscheduler(0);
619 if (sched == SCHED_FIFO || sched == SCHED_RR) {
620 // Yes, we are a part of real-time application. Try to increase the
621 // priority of the monitor.
622 struct sched_param param;
623 int max_priority = sched_get_priority_max(sched);
624 int rc;
625 KMP_WARNING(RealTimeSchedNotSupported);
626 sched_getparam(0, &param);
627 if (param.sched_priority < max_priority) {
628 param.sched_priority += 1;
629 rc = sched_setscheduler(0, sched, &param);
630 if (rc != 0) {
631 int error = errno;
632 kmp_msg_t err_code = KMP_ERR(error);
633 __kmp_msg(kmp_ms_warning, KMP_MSG(CantChangeMonitorPriority),
634 err_code, KMP_MSG(MonitorWillStarve), __kmp_msg_null);
635 if (__kmp_generate_warnings == kmp_warnings_off) {
636 __kmp_str_free(&err_code.str);
637 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000638 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +0000639 } else {
640 // We cannot abort here, because number of CPUs may be enough for all
641 // the threads, including the monitor thread, so application could
642 // potentially work...
643 __kmp_msg(kmp_ms_warning, KMP_MSG(RunningAtMaxPriority),
644 KMP_MSG(MonitorWillStarve), KMP_HNT(RunningAtMaxPriority),
645 __kmp_msg_null);
646 }; // if
647 }; // if
648 // AC: free thread that waits for monitor started
649 TCW_4(__kmp_global.g.g_time.dt.t_value, 0);
650 }
651#endif // KMP_REAL_TIME_FIX
Jim Cownie5e8470a2013-09-27 10:38:44 +0000652
Jonathan Peyton30419822017-05-12 18:01:32 +0000653 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000654
Jonathan Peyton30419822017-05-12 18:01:32 +0000655 if (__kmp_monitor_wakeups == 1) {
656 interval.tv_sec = 1;
657 interval.tv_nsec = 0;
658 } else {
659 interval.tv_sec = 0;
660 interval.tv_nsec = (KMP_NSEC_PER_SEC / __kmp_monitor_wakeups);
661 }
662
663 KA_TRACE(10, ("__kmp_launch_monitor: #2 monitor\n"));
664
665 if (__kmp_yield_cycle) {
666 __kmp_yielding_on = 0; /* Start out with yielding shut off */
667 yield_count = __kmp_yield_off_count;
668 } else {
669 __kmp_yielding_on = 1; /* Yielding is on permanently */
670 }
671
672 while (!TCR_4(__kmp_global.g.g_done)) {
673 struct timespec now;
674 struct timeval tval;
675
676 /* This thread monitors the state of the system */
677
678 KA_TRACE(15, ("__kmp_launch_monitor: update\n"));
679
680 status = gettimeofday(&tval, NULL);
681 KMP_CHECK_SYSFAIL_ERRNO("gettimeofday", status);
682 TIMEVAL_TO_TIMESPEC(&tval, &now);
683
684 now.tv_sec += interval.tv_sec;
685 now.tv_nsec += interval.tv_nsec;
686
687 if (now.tv_nsec >= KMP_NSEC_PER_SEC) {
688 now.tv_sec += 1;
689 now.tv_nsec -= KMP_NSEC_PER_SEC;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000690 }
691
Jonathan Peyton30419822017-05-12 18:01:32 +0000692 status = pthread_mutex_lock(&__kmp_wait_mx.m_mutex);
693 KMP_CHECK_SYSFAIL("pthread_mutex_lock", status);
694 // AC: the monitor should not fall asleep if g_done has been set
695 if (!TCR_4(__kmp_global.g.g_done)) { // check once more under mutex
696 status = pthread_cond_timedwait(&__kmp_wait_cv.c_cond,
697 &__kmp_wait_mx.m_mutex, &now);
698 if (status != 0) {
699 if (status != ETIMEDOUT && status != EINTR) {
700 KMP_SYSFAIL("pthread_cond_timedwait", status);
701 };
702 };
703 };
704 status = pthread_mutex_unlock(&__kmp_wait_mx.m_mutex);
705 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000706
707 if (__kmp_yield_cycle) {
Jonathan Peyton30419822017-05-12 18:01:32 +0000708 yield_cycles++;
709 if ((yield_cycles % yield_count) == 0) {
710 if (__kmp_yielding_on) {
711 __kmp_yielding_on = 0; /* Turn it off now */
712 yield_count = __kmp_yield_off_count;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000713 } else {
Jonathan Peyton30419822017-05-12 18:01:32 +0000714 __kmp_yielding_on = 1; /* Turn it on now */
715 yield_count = __kmp_yield_on_count;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000716 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000717 yield_cycles = 0;
718 }
719 } else {
720 __kmp_yielding_on = 1;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000721 }
722
Jonathan Peyton30419822017-05-12 18:01:32 +0000723 TCW_4(__kmp_global.g.g_time.dt.t_value,
724 TCR_4(__kmp_global.g.g_time.dt.t_value) + 1);
725
726 KMP_MB(); /* Flush all pending memory write invalidates. */
727 }
728
729 KA_TRACE(10, ("__kmp_launch_monitor: #3 cleanup\n"));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000730
731#ifdef KMP_BLOCK_SIGNALS
Jonathan Peyton30419822017-05-12 18:01:32 +0000732 status = sigfillset(&new_set);
733 KMP_CHECK_SYSFAIL_ERRNO("sigfillset", status);
734 status = pthread_sigmask(SIG_UNBLOCK, &new_set, NULL);
735 KMP_CHECK_SYSFAIL("pthread_sigmask", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000736#endif /* KMP_BLOCK_SIGNALS */
737
Jonathan Peyton30419822017-05-12 18:01:32 +0000738 KA_TRACE(10, ("__kmp_launch_monitor: #4 finished\n"));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000739
Jonathan Peyton30419822017-05-12 18:01:32 +0000740 if (__kmp_global.g.g_abort != 0) {
741 /* now we need to terminate the worker threads */
742 /* the value of t_abort is the signal we caught */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000743
Jonathan Peyton30419822017-05-12 18:01:32 +0000744 int gtid;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000745
Jonathan Peyton30419822017-05-12 18:01:32 +0000746 KA_TRACE(10, ("__kmp_launch_monitor: #5 terminate sig=%d\n",
747 __kmp_global.g.g_abort));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000748
Jonathan Peyton30419822017-05-12 18:01:32 +0000749 /* terminate the OpenMP worker threads */
750 /* TODO this is not valid for sibling threads!!
751 * the uber master might not be 0 anymore.. */
752 for (gtid = 1; gtid < __kmp_threads_capacity; ++gtid)
753 __kmp_terminate_thread(gtid);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000754
Jonathan Peyton30419822017-05-12 18:01:32 +0000755 __kmp_cleanup();
Jim Cownie5e8470a2013-09-27 10:38:44 +0000756
Jonathan Peyton30419822017-05-12 18:01:32 +0000757 KA_TRACE(10, ("__kmp_launch_monitor: #6 raise sig=%d\n",
758 __kmp_global.g.g_abort));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000759
Jonathan Peyton30419822017-05-12 18:01:32 +0000760 if (__kmp_global.g.g_abort > 0)
761 raise(__kmp_global.g.g_abort);
762 }
Jim Cownie5e8470a2013-09-27 10:38:44 +0000763
Jonathan Peyton30419822017-05-12 18:01:32 +0000764 KA_TRACE(10, ("__kmp_launch_monitor: #7 exit\n"));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000765
Jonathan Peyton30419822017-05-12 18:01:32 +0000766 return thr;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000767}
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +0000768#endif // KMP_USE_MONITOR
Jim Cownie5e8470a2013-09-27 10:38:44 +0000769
Jonathan Peyton30419822017-05-12 18:01:32 +0000770void __kmp_create_worker(int gtid, kmp_info_t *th, size_t stack_size) {
771 pthread_t handle;
772 pthread_attr_t thread_attr;
773 int status;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000774
Jonathan Peyton30419822017-05-12 18:01:32 +0000775 th->th.th_info.ds.ds_gtid = gtid;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000776
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000777#if KMP_STATS_ENABLED
Jonathan Peyton30419822017-05-12 18:01:32 +0000778 // sets up worker thread stats
779 __kmp_acquire_tas_lock(&__kmp_stats_lock, gtid);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000780
Jonathan Peyton30419822017-05-12 18:01:32 +0000781 // th->th.th_stats is used to transfer thread-specific stats-pointer to
782 // __kmp_launch_worker. So when thread is created (goes into
783 // __kmp_launch_worker) it will set its __thread local pointer to
784 // th->th.th_stats
785 if (!KMP_UBER_GTID(gtid)) {
786 th->th.th_stats = __kmp_stats_list->push_back(gtid);
787 } else {
788 // For root threads, __kmp_stats_thread_ptr is set in __kmp_register_root(),
789 // so set the th->th.th_stats field to it.
790 th->th.th_stats = __kmp_stats_thread_ptr;
791 }
792 __kmp_release_tas_lock(&__kmp_stats_lock, gtid);
Jim Cownie4cc4bb42014-10-07 16:25:50 +0000793
794#endif // KMP_STATS_ENABLED
795
Jonathan Peyton30419822017-05-12 18:01:32 +0000796 if (KMP_UBER_GTID(gtid)) {
797 KA_TRACE(10, ("__kmp_create_worker: uber thread (%d)\n", gtid));
798 th->th.th_info.ds.ds_thread = pthread_self();
799 __kmp_set_stack_info(gtid, th);
800 __kmp_check_stack_overlap(th);
801 return;
802 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +0000803
Jonathan Peyton30419822017-05-12 18:01:32 +0000804 KA_TRACE(10, ("__kmp_create_worker: try to create thread (%d)\n", gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000805
Jonathan Peyton30419822017-05-12 18:01:32 +0000806 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000807
808#ifdef KMP_THREAD_ATTR
Jonathan Peyton30419822017-05-12 18:01:32 +0000809 status = pthread_attr_init(&thread_attr);
810 if (status != 0) {
811 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantInitThreadAttrs), KMP_ERR(status),
812 __kmp_msg_null);
813 }; // if
814 status = pthread_attr_setdetachstate(&thread_attr, PTHREAD_CREATE_JOINABLE);
815 if (status != 0) {
816 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantSetWorkerState), KMP_ERR(status),
817 __kmp_msg_null);
818 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +0000819
Jonathan Peyton30419822017-05-12 18:01:32 +0000820 /* Set stack size for this thread now.
821 The multiple of 2 is there because on some machines, requesting an unusual
822 stacksize causes the thread to have an offset before the dummy alloca()
823 takes place to create the offset. Since we want the user to have a
824 sufficient stacksize AND support a stack offset, we alloca() twice the
825 offset so that the upcoming alloca() does not eliminate any premade offset,
826 and also gives the user the stack space they requested for all threads */
827 stack_size += gtid * __kmp_stkoffset * 2;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000828
Jonathan Peyton30419822017-05-12 18:01:32 +0000829 KA_TRACE(10, ("__kmp_create_worker: T#%d, default stacksize = %lu bytes, "
830 "__kmp_stksize = %lu bytes, final stacksize = %lu bytes\n",
831 gtid, KMP_DEFAULT_STKSIZE, __kmp_stksize, stack_size));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000832
Jim Cownie5e8470a2013-09-27 10:38:44 +0000833#ifdef _POSIX_THREAD_ATTR_STACKSIZE
Jonathan Peyton30419822017-05-12 18:01:32 +0000834 status = pthread_attr_setstacksize(&thread_attr, stack_size);
835#ifdef KMP_BACKUP_STKSIZE
836 if (status != 0) {
837 if (!__kmp_env_stksize) {
838 stack_size = KMP_BACKUP_STKSIZE + gtid * __kmp_stkoffset;
839 __kmp_stksize = KMP_BACKUP_STKSIZE;
840 KA_TRACE(10, ("__kmp_create_worker: T#%d, default stacksize = %lu bytes, "
841 "__kmp_stksize = %lu bytes, (backup) final stacksize = %lu "
842 "bytes\n",
843 gtid, KMP_DEFAULT_STKSIZE, __kmp_stksize, stack_size));
844 status = pthread_attr_setstacksize(&thread_attr, stack_size);
845 }; // if
846 }; // if
847#endif /* KMP_BACKUP_STKSIZE */
848 if (status != 0) {
849 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantSetWorkerStackSize, stack_size),
850 KMP_ERR(status), KMP_HNT(ChangeWorkerStackSize), __kmp_msg_null);
851 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +0000852#endif /* _POSIX_THREAD_ATTR_STACKSIZE */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000853
Jim Cownie5e8470a2013-09-27 10:38:44 +0000854#endif /* KMP_THREAD_ATTR */
855
Jonathan Peyton30419822017-05-12 18:01:32 +0000856 status =
857 pthread_create(&handle, &thread_attr, __kmp_launch_worker, (void *)th);
858 if (status != 0 || !handle) { // ??? Why do we check handle??
859#ifdef _POSIX_THREAD_ATTR_STACKSIZE
860 if (status == EINVAL) {
861 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantSetWorkerStackSize, stack_size),
862 KMP_ERR(status), KMP_HNT(IncreaseWorkerStackSize),
863 __kmp_msg_null);
864 };
865 if (status == ENOMEM) {
866 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantSetWorkerStackSize, stack_size),
867 KMP_ERR(status), KMP_HNT(DecreaseWorkerStackSize),
868 __kmp_msg_null);
869 };
870#endif /* _POSIX_THREAD_ATTR_STACKSIZE */
871 if (status == EAGAIN) {
872 __kmp_msg(kmp_ms_fatal, KMP_MSG(NoResourcesForWorkerThread),
873 KMP_ERR(status), KMP_HNT(Decrease_NUM_THREADS), __kmp_msg_null);
874 }; // if
875 KMP_SYSFAIL("pthread_create", status);
876 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +0000877
Jonathan Peyton30419822017-05-12 18:01:32 +0000878 th->th.th_info.ds.ds_thread = handle;
879
880#ifdef KMP_THREAD_ATTR
881 status = pthread_attr_destroy(&thread_attr);
882 if (status) {
883 kmp_msg_t err_code = KMP_ERR(status);
884 __kmp_msg(kmp_ms_warning, KMP_MSG(CantDestroyThreadAttrs), err_code,
885 __kmp_msg_null);
886 if (__kmp_generate_warnings == kmp_warnings_off) {
887 __kmp_str_free(&err_code.str);
888 }
889 }; // if
890#endif /* KMP_THREAD_ATTR */
891
892 KMP_MB(); /* Flush all pending memory write invalidates. */
893
894 KA_TRACE(10, ("__kmp_create_worker: done creating thread (%d)\n", gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +0000895
896} // __kmp_create_worker
897
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +0000898#if KMP_USE_MONITOR
Jonathan Peyton30419822017-05-12 18:01:32 +0000899void __kmp_create_monitor(kmp_info_t *th) {
900 pthread_t handle;
901 pthread_attr_t thread_attr;
902 size_t size;
903 int status;
904 int auto_adj_size = FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +0000905
Jonathan Peyton30419822017-05-12 18:01:32 +0000906 if (__kmp_dflt_blocktime == KMP_MAX_BLOCKTIME) {
907 // We don't need monitor thread in case of MAX_BLOCKTIME
908 KA_TRACE(10, ("__kmp_create_monitor: skipping monitor thread because of "
909 "MAX blocktime\n"));
910 th->th.th_info.ds.ds_tid = 0; // this makes reap_monitor no-op
911 th->th.th_info.ds.ds_gtid = 0;
912 return;
913 }
914 KA_TRACE(10, ("__kmp_create_monitor: try to create monitor\n"));
915
916 KMP_MB(); /* Flush all pending memory write invalidates. */
917
918 th->th.th_info.ds.ds_tid = KMP_GTID_MONITOR;
919 th->th.th_info.ds.ds_gtid = KMP_GTID_MONITOR;
920#if KMP_REAL_TIME_FIX
921 TCW_4(__kmp_global.g.g_time.dt.t_value,
922 -1); // Will use it for synchronization a bit later.
923#else
924 TCW_4(__kmp_global.g.g_time.dt.t_value, 0);
925#endif // KMP_REAL_TIME_FIX
926
927#ifdef KMP_THREAD_ATTR
928 if (__kmp_monitor_stksize == 0) {
929 __kmp_monitor_stksize = KMP_DEFAULT_MONITOR_STKSIZE;
930 auto_adj_size = TRUE;
931 }
932 status = pthread_attr_init(&thread_attr);
933 if (status != 0) {
934 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantInitThreadAttrs), KMP_ERR(status),
935 __kmp_msg_null);
936 }; // if
937 status = pthread_attr_setdetachstate(&thread_attr, PTHREAD_CREATE_JOINABLE);
938 if (status != 0) {
939 __kmp_msg(kmp_ms_fatal, KMP_MSG(CantSetMonitorState), KMP_ERR(status),
940 __kmp_msg_null);
941 }; // if
942
943#ifdef _POSIX_THREAD_ATTR_STACKSIZE
944 status = pthread_attr_getstacksize(&thread_attr, &size);
945 KMP_CHECK_SYSFAIL("pthread_attr_getstacksize", status);
946#else
947 size = __kmp_sys_min_stksize;
948#endif /* _POSIX_THREAD_ATTR_STACKSIZE */
949#endif /* KMP_THREAD_ATTR */
950
951 if (__kmp_monitor_stksize == 0) {
952 __kmp_monitor_stksize = KMP_DEFAULT_MONITOR_STKSIZE;
953 }
954 if (__kmp_monitor_stksize < __kmp_sys_min_stksize) {
955 __kmp_monitor_stksize = __kmp_sys_min_stksize;
956 }
957
958 KA_TRACE(10, ("__kmp_create_monitor: default stacksize = %lu bytes,"
959 "requested stacksize = %lu bytes\n",
960 size, __kmp_monitor_stksize));
961
962retry:
963
964/* Set stack size for this thread now. */
965#ifdef _POSIX_THREAD_ATTR_STACKSIZE
966 KA_TRACE(10, ("__kmp_create_monitor: setting stacksize = %lu bytes,",
967 __kmp_monitor_stksize));
968 status = pthread_attr_setstacksize(&thread_attr, __kmp_monitor_stksize);
969 if (status != 0) {
970 if (auto_adj_size) {
971 __kmp_monitor_stksize *= 2;
972 goto retry;
Jonathan Peyton4fee5f62015-12-18 23:20:36 +0000973 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000974 kmp_msg_t err_code = KMP_ERR(status);
975 __kmp_msg(kmp_ms_warning, // should this be fatal? BB
976 KMP_MSG(CantSetMonitorStackSize, (long int)__kmp_monitor_stksize),
977 err_code, KMP_HNT(ChangeMonitorStackSize), __kmp_msg_null);
978 if (__kmp_generate_warnings == kmp_warnings_off) {
979 __kmp_str_free(&err_code.str);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000980 }
Jonathan Peyton30419822017-05-12 18:01:32 +0000981 }; // if
982#endif /* _POSIX_THREAD_ATTR_STACKSIZE */
Jim Cownie5e8470a2013-09-27 10:38:44 +0000983
Jonathan Peyton30419822017-05-12 18:01:32 +0000984 status =
985 pthread_create(&handle, &thread_attr, __kmp_launch_monitor, (void *)th);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000986
Jonathan Peyton30419822017-05-12 18:01:32 +0000987 if (status != 0) {
988#ifdef _POSIX_THREAD_ATTR_STACKSIZE
989 if (status == EINVAL) {
990 if (auto_adj_size && (__kmp_monitor_stksize < (size_t)0x40000000)) {
991 __kmp_monitor_stksize *= 2;
992 goto retry;
993 }
994 __kmp_msg(
995 kmp_ms_fatal, KMP_MSG(CantSetMonitorStackSize, __kmp_monitor_stksize),
996 KMP_ERR(status), KMP_HNT(IncreaseMonitorStackSize), __kmp_msg_null);
Jim Cownie5e8470a2013-09-27 10:38:44 +0000997 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +0000998 if (status == ENOMEM) {
999 __kmp_msg(
1000 kmp_ms_fatal, KMP_MSG(CantSetMonitorStackSize, __kmp_monitor_stksize),
1001 KMP_ERR(status), KMP_HNT(DecreaseMonitorStackSize), __kmp_msg_null);
1002 }; // if
1003#endif /* _POSIX_THREAD_ATTR_STACKSIZE */
1004 if (status == EAGAIN) {
1005 __kmp_msg(kmp_ms_fatal, KMP_MSG(NoResourcesForMonitorThread),
1006 KMP_ERR(status), KMP_HNT(DecreaseNumberOfThreadsInUse),
1007 __kmp_msg_null);
1008 }; // if
1009 KMP_SYSFAIL("pthread_create", status);
1010 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001011
Jonathan Peyton30419822017-05-12 18:01:32 +00001012 th->th.th_info.ds.ds_thread = handle;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001013
Jonathan Peyton30419822017-05-12 18:01:32 +00001014#if KMP_REAL_TIME_FIX
1015 // Wait for the monitor thread is really started and set its *priority*.
1016 KMP_DEBUG_ASSERT(sizeof(kmp_uint32) ==
1017 sizeof(__kmp_global.g.g_time.dt.t_value));
1018 __kmp_wait_yield_4((kmp_uint32 volatile *)&__kmp_global.g.g_time.dt.t_value,
1019 -1, &__kmp_neq_4, NULL);
1020#endif // KMP_REAL_TIME_FIX
Jim Cownie5e8470a2013-09-27 10:38:44 +00001021
Jonathan Peyton30419822017-05-12 18:01:32 +00001022#ifdef KMP_THREAD_ATTR
1023 status = pthread_attr_destroy(&thread_attr);
1024 if (status != 0) {
1025 kmp_msg_t err_code = KMP_ERR(status);
1026 __kmp_msg(kmp_ms_warning, KMP_MSG(CantDestroyThreadAttrs), err_code,
1027 __kmp_msg_null);
1028 if (__kmp_generate_warnings == kmp_warnings_off) {
1029 __kmp_str_free(&err_code.str);
1030 }
1031 }; // if
1032#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001033
Jonathan Peyton30419822017-05-12 18:01:32 +00001034 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001035
Jonathan Peyton30419822017-05-12 18:01:32 +00001036 KA_TRACE(10, ("__kmp_create_monitor: monitor created %#.8lx\n",
1037 th->th.th_info.ds.ds_thread));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001038
1039} // __kmp_create_monitor
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001040#endif // KMP_USE_MONITOR
Jim Cownie5e8470a2013-09-27 10:38:44 +00001041
Jonathan Peyton30419822017-05-12 18:01:32 +00001042void __kmp_exit_thread(int exit_status) {
1043 pthread_exit((void *)(intptr_t)exit_status);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001044} // __kmp_exit_thread
1045
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001046#if KMP_USE_MONITOR
Jim Cownie07ea89f2014-09-03 11:10:54 +00001047void __kmp_resume_monitor();
1048
Jonathan Peyton30419822017-05-12 18:01:32 +00001049void __kmp_reap_monitor(kmp_info_t *th) {
1050 int status;
1051 void *exit_val;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001052
Jonathan Peyton30419822017-05-12 18:01:32 +00001053 KA_TRACE(10, ("__kmp_reap_monitor: try to reap monitor thread with handle"
1054 " %#.8lx\n",
1055 th->th.th_info.ds.ds_thread));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001056
Jonathan Peyton30419822017-05-12 18:01:32 +00001057 // If monitor has been created, its tid and gtid should be KMP_GTID_MONITOR.
1058 // If both tid and gtid are 0, it means the monitor did not ever start.
1059 // If both tid and gtid are KMP_GTID_DNE, the monitor has been shut down.
1060 KMP_DEBUG_ASSERT(th->th.th_info.ds.ds_tid == th->th.th_info.ds.ds_gtid);
1061 if (th->th.th_info.ds.ds_gtid != KMP_GTID_MONITOR) {
1062 KA_TRACE(10, ("__kmp_reap_monitor: monitor did not start, returning\n"));
1063 return;
1064 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001065
Jonathan Peyton30419822017-05-12 18:01:32 +00001066 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001067
Jonathan Peyton30419822017-05-12 18:01:32 +00001068 /* First, check to see whether the monitor thread exists to wake it up. This
1069 is to avoid performance problem when the monitor sleeps during
1070 blocktime-size interval */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001071
Jonathan Peyton30419822017-05-12 18:01:32 +00001072 status = pthread_kill(th->th.th_info.ds.ds_thread, 0);
1073 if (status != ESRCH) {
1074 __kmp_resume_monitor(); // Wake up the monitor thread
1075 }
1076 KA_TRACE(10, ("__kmp_reap_monitor: try to join with monitor\n"));
1077 status = pthread_join(th->th.th_info.ds.ds_thread, &exit_val);
1078 if (exit_val != th) {
1079 __kmp_msg(kmp_ms_fatal, KMP_MSG(ReapMonitorError), KMP_ERR(status),
1080 __kmp_msg_null);
1081 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001082
Jonathan Peyton30419822017-05-12 18:01:32 +00001083 th->th.th_info.ds.ds_tid = KMP_GTID_DNE;
1084 th->th.th_info.ds.ds_gtid = KMP_GTID_DNE;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001085
Jonathan Peyton30419822017-05-12 18:01:32 +00001086 KA_TRACE(10, ("__kmp_reap_monitor: done reaping monitor thread with handle"
1087 " %#.8lx\n",
1088 th->th.th_info.ds.ds_thread));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001089
Jonathan Peyton30419822017-05-12 18:01:32 +00001090 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001091}
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001092#endif // KMP_USE_MONITOR
Jim Cownie5e8470a2013-09-27 10:38:44 +00001093
Jonathan Peyton30419822017-05-12 18:01:32 +00001094void __kmp_reap_worker(kmp_info_t *th) {
1095 int status;
1096 void *exit_val;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001097
Jonathan Peyton30419822017-05-12 18:01:32 +00001098 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001099
Jonathan Peyton30419822017-05-12 18:01:32 +00001100 KA_TRACE(
1101 10, ("__kmp_reap_worker: try to reap T#%d\n", th->th.th_info.ds.ds_gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001102
Jonathan Peyton30419822017-05-12 18:01:32 +00001103 status = pthread_join(th->th.th_info.ds.ds_thread, &exit_val);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001104#ifdef KMP_DEBUG
Jonathan Peyton30419822017-05-12 18:01:32 +00001105 /* Don't expose these to the user until we understand when they trigger */
1106 if (status != 0) {
1107 __kmp_msg(kmp_ms_fatal, KMP_MSG(ReapWorkerError), KMP_ERR(status),
1108 __kmp_msg_null);
1109 }
1110 if (exit_val != th) {
1111 KA_TRACE(10, ("__kmp_reap_worker: worker T#%d did not reap properly, "
1112 "exit_val = %p\n",
1113 th->th.th_info.ds.ds_gtid, exit_val));
1114 }
Jonathan Peyton93495de2016-06-13 17:36:40 +00001115#endif /* KMP_DEBUG */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001116
Jonathan Peyton30419822017-05-12 18:01:32 +00001117 KA_TRACE(10, ("__kmp_reap_worker: done reaping T#%d\n",
1118 th->th.th_info.ds.ds_gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001119
Jonathan Peyton30419822017-05-12 18:01:32 +00001120 KMP_MB(); /* Flush all pending memory write invalidates. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001121}
1122
Jim Cownie5e8470a2013-09-27 10:38:44 +00001123#if KMP_HANDLE_SIGNALS
1124
Jonathan Peyton30419822017-05-12 18:01:32 +00001125static void __kmp_null_handler(int signo) {
1126 // Do nothing, for doing SIG_IGN-type actions.
Jim Cownie5e8470a2013-09-27 10:38:44 +00001127} // __kmp_null_handler
1128
Jonathan Peyton30419822017-05-12 18:01:32 +00001129static void __kmp_team_handler(int signo) {
1130 if (__kmp_global.g.g_abort == 0) {
1131/* Stage 1 signal handler, let's shut down all of the threads */
1132#ifdef KMP_DEBUG
1133 __kmp_debug_printf("__kmp_team_handler: caught signal = %d\n", signo);
1134#endif
1135 switch (signo) {
1136 case SIGHUP:
1137 case SIGINT:
1138 case SIGQUIT:
1139 case SIGILL:
1140 case SIGABRT:
1141 case SIGFPE:
1142 case SIGBUS:
1143 case SIGSEGV:
1144#ifdef SIGSYS
1145 case SIGSYS:
1146#endif
1147 case SIGTERM:
1148 if (__kmp_debug_buf) {
1149 __kmp_dump_debug_buffer();
1150 }; // if
1151 KMP_MB(); // Flush all pending memory write invalidates.
1152 TCW_4(__kmp_global.g.g_abort, signo);
1153 KMP_MB(); // Flush all pending memory write invalidates.
1154 TCW_4(__kmp_global.g.g_done, TRUE);
1155 KMP_MB(); // Flush all pending memory write invalidates.
1156 break;
1157 default:
1158#ifdef KMP_DEBUG
1159 __kmp_debug_printf("__kmp_team_handler: unknown signal type");
1160#endif
1161 break;
1162 }; // switch
1163 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001164} // __kmp_team_handler
1165
Jonathan Peyton30419822017-05-12 18:01:32 +00001166static void __kmp_sigaction(int signum, const struct sigaction *act,
1167 struct sigaction *oldact) {
1168 int rc = sigaction(signum, act, oldact);
1169 KMP_CHECK_SYSFAIL_ERRNO("sigaction", rc);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001170}
1171
Jonathan Peyton30419822017-05-12 18:01:32 +00001172static void __kmp_install_one_handler(int sig, sig_func_t handler_func,
1173 int parallel_init) {
1174 KMP_MB(); // Flush all pending memory write invalidates.
1175 KB_TRACE(60,
1176 ("__kmp_install_one_handler( %d, ..., %d )\n", sig, parallel_init));
1177 if (parallel_init) {
1178 struct sigaction new_action;
1179 struct sigaction old_action;
1180 new_action.sa_handler = handler_func;
1181 new_action.sa_flags = 0;
1182 sigfillset(&new_action.sa_mask);
1183 __kmp_sigaction(sig, &new_action, &old_action);
1184 if (old_action.sa_handler == __kmp_sighldrs[sig].sa_handler) {
1185 sigaddset(&__kmp_sigset, sig);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001186 } else {
Jonathan Peyton30419822017-05-12 18:01:32 +00001187 // Restore/keep user's handler if one previously installed.
1188 __kmp_sigaction(sig, &old_action, NULL);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001189 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +00001190 } else {
1191 // Save initial/system signal handlers to see if user handlers installed.
1192 __kmp_sigaction(sig, NULL, &__kmp_sighldrs[sig]);
1193 }; // if
1194 KMP_MB(); // Flush all pending memory write invalidates.
Jim Cownie5e8470a2013-09-27 10:38:44 +00001195} // __kmp_install_one_handler
1196
Jonathan Peyton30419822017-05-12 18:01:32 +00001197static void __kmp_remove_one_handler(int sig) {
1198 KB_TRACE(60, ("__kmp_remove_one_handler( %d )\n", sig));
1199 if (sigismember(&__kmp_sigset, sig)) {
1200 struct sigaction old;
1201 KMP_MB(); // Flush all pending memory write invalidates.
1202 __kmp_sigaction(sig, &__kmp_sighldrs[sig], &old);
1203 if ((old.sa_handler != __kmp_team_handler) &&
1204 (old.sa_handler != __kmp_null_handler)) {
1205 // Restore the users signal handler.
1206 KB_TRACE(10, ("__kmp_remove_one_handler: oops, not our handler, "
1207 "restoring: sig=%d\n",
1208 sig));
1209 __kmp_sigaction(sig, &old, NULL);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001210 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +00001211 sigdelset(&__kmp_sigset, sig);
1212 KMP_MB(); // Flush all pending memory write invalidates.
1213 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001214} // __kmp_remove_one_handler
1215
Jonathan Peyton30419822017-05-12 18:01:32 +00001216void __kmp_install_signals(int parallel_init) {
1217 KB_TRACE(10, ("__kmp_install_signals( %d )\n", parallel_init));
1218 if (__kmp_handle_signals || !parallel_init) {
1219 // If ! parallel_init, we do not install handlers, just save original
1220 // handlers. Let us do it even __handle_signals is 0.
1221 sigemptyset(&__kmp_sigset);
1222 __kmp_install_one_handler(SIGHUP, __kmp_team_handler, parallel_init);
1223 __kmp_install_one_handler(SIGINT, __kmp_team_handler, parallel_init);
1224 __kmp_install_one_handler(SIGQUIT, __kmp_team_handler, parallel_init);
1225 __kmp_install_one_handler(SIGILL, __kmp_team_handler, parallel_init);
1226 __kmp_install_one_handler(SIGABRT, __kmp_team_handler, parallel_init);
1227 __kmp_install_one_handler(SIGFPE, __kmp_team_handler, parallel_init);
1228 __kmp_install_one_handler(SIGBUS, __kmp_team_handler, parallel_init);
1229 __kmp_install_one_handler(SIGSEGV, __kmp_team_handler, parallel_init);
1230#ifdef SIGSYS
1231 __kmp_install_one_handler(SIGSYS, __kmp_team_handler, parallel_init);
1232#endif // SIGSYS
1233 __kmp_install_one_handler(SIGTERM, __kmp_team_handler, parallel_init);
1234#ifdef SIGPIPE
1235 __kmp_install_one_handler(SIGPIPE, __kmp_team_handler, parallel_init);
1236#endif // SIGPIPE
1237 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001238} // __kmp_install_signals
1239
Jonathan Peyton30419822017-05-12 18:01:32 +00001240void __kmp_remove_signals(void) {
1241 int sig;
1242 KB_TRACE(10, ("__kmp_remove_signals()\n"));
1243 for (sig = 1; sig < NSIG; ++sig) {
1244 __kmp_remove_one_handler(sig);
1245 }; // for sig
Jim Cownie5e8470a2013-09-27 10:38:44 +00001246} // __kmp_remove_signals
1247
Jim Cownie5e8470a2013-09-27 10:38:44 +00001248#endif // KMP_HANDLE_SIGNALS
1249
Jonathan Peyton30419822017-05-12 18:01:32 +00001250void __kmp_enable(int new_state) {
1251#ifdef KMP_CANCEL_THREADS
1252 int status, old_state;
1253 status = pthread_setcancelstate(new_state, &old_state);
1254 KMP_CHECK_SYSFAIL("pthread_setcancelstate", status);
1255 KMP_DEBUG_ASSERT(old_state == PTHREAD_CANCEL_DISABLE);
1256#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001257}
1258
Jonathan Peyton30419822017-05-12 18:01:32 +00001259void __kmp_disable(int *old_state) {
1260#ifdef KMP_CANCEL_THREADS
1261 int status;
1262 status = pthread_setcancelstate(PTHREAD_CANCEL_DISABLE, old_state);
1263 KMP_CHECK_SYSFAIL("pthread_setcancelstate", status);
1264#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001265}
1266
Jonathan Peyton30419822017-05-12 18:01:32 +00001267static void __kmp_atfork_prepare(void) { /* nothing to do */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001268}
1269
Jonathan Peyton30419822017-05-12 18:01:32 +00001270static void __kmp_atfork_parent(void) { /* nothing to do */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001271}
1272
Jonathan Peyton30419822017-05-12 18:01:32 +00001273/* Reset the library so execution in the child starts "all over again" with
1274 clean data structures in initial states. Don't worry about freeing memory
1275 allocated by parent, just abandon it to be safe. */
1276static void __kmp_atfork_child(void) {
1277 /* TODO make sure this is done right for nested/sibling */
1278 // ATT: Memory leaks are here? TODO: Check it and fix.
1279 /* KMP_ASSERT( 0 ); */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001280
Jonathan Peyton30419822017-05-12 18:01:32 +00001281 ++__kmp_fork_count;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001282
Jonathan Peyton072ccb72017-06-15 21:51:07 +00001283#if KMP_AFFINITY_SUPPORTED
1284#if KMP_OS_LINUX
Jonathan Peytond330e632017-06-13 17:16:12 +00001285 // reset the affinity in the child to the initial thread
1286 // affinity in the parent
1287 kmp_set_thread_affinity_mask_initial();
1288#endif
Jonathan Peyton072ccb72017-06-15 21:51:07 +00001289 // Set default not to bind threads tightly in the child (we’re expecting
1290 // over-subscription after the fork and this can improve things for
1291 // scripting languages that use OpenMP inside process-parallel code).
1292 __kmp_affinity_type = affinity_none;
1293#if OMP_40_ENABLED
1294 if (__kmp_nested_proc_bind.bind_types != NULL) {
1295 __kmp_nested_proc_bind.bind_types[0] = proc_bind_false;
1296 }
1297#endif // OMP_40_ENABLED
1298#endif // KMP_AFFINITY_SUPPORTED
Jonathan Peytond330e632017-06-13 17:16:12 +00001299
Jonathan Peyton30419822017-05-12 18:01:32 +00001300 __kmp_init_runtime = FALSE;
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001301#if KMP_USE_MONITOR
Jonathan Peyton30419822017-05-12 18:01:32 +00001302 __kmp_init_monitor = 0;
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001303#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001304 __kmp_init_parallel = FALSE;
1305 __kmp_init_middle = FALSE;
1306 __kmp_init_serial = FALSE;
1307 TCW_4(__kmp_init_gtid, FALSE);
1308 __kmp_init_common = FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001309
Jonathan Peyton30419822017-05-12 18:01:32 +00001310 TCW_4(__kmp_init_user_locks, FALSE);
1311#if !KMP_USE_DYNAMIC_LOCK
1312 __kmp_user_lock_table.used = 1;
1313 __kmp_user_lock_table.allocated = 0;
1314 __kmp_user_lock_table.table = NULL;
1315 __kmp_lock_blocks = NULL;
Andrey Churbanov5c56fb52015-02-20 18:05:17 +00001316#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001317
Jonathan Peyton30419822017-05-12 18:01:32 +00001318 __kmp_all_nth = 0;
1319 TCW_4(__kmp_nth, 0);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001320
Jonathan Peyton30419822017-05-12 18:01:32 +00001321 /* Must actually zero all the *cache arguments passed to __kmpc_threadprivate
1322 here so threadprivate doesn't use stale data */
1323 KA_TRACE(10, ("__kmp_atfork_child: checking cache address list %p\n",
1324 __kmp_threadpriv_cache_list));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001325
Jonathan Peyton30419822017-05-12 18:01:32 +00001326 while (__kmp_threadpriv_cache_list != NULL) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001327
Jonathan Peyton30419822017-05-12 18:01:32 +00001328 if (*__kmp_threadpriv_cache_list->addr != NULL) {
1329 KC_TRACE(50, ("__kmp_atfork_child: zeroing cache at address %p\n",
1330 &(*__kmp_threadpriv_cache_list->addr)));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001331
Jonathan Peyton30419822017-05-12 18:01:32 +00001332 *__kmp_threadpriv_cache_list->addr = NULL;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001333 }
Jonathan Peyton30419822017-05-12 18:01:32 +00001334 __kmp_threadpriv_cache_list = __kmp_threadpriv_cache_list->next;
1335 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001336
Jonathan Peyton30419822017-05-12 18:01:32 +00001337 __kmp_init_runtime = FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001338
Jonathan Peyton30419822017-05-12 18:01:32 +00001339 /* reset statically initialized locks */
1340 __kmp_init_bootstrap_lock(&__kmp_initz_lock);
1341 __kmp_init_bootstrap_lock(&__kmp_stdio_lock);
1342 __kmp_init_bootstrap_lock(&__kmp_console_lock);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001343
Jonathan Peyton30419822017-05-12 18:01:32 +00001344 /* This is necessary to make sure no stale data is left around */
1345 /* AC: customers complain that we use unsafe routines in the atfork
1346 handler. Mathworks: dlsym() is unsafe. We call dlsym and dlopen
1347 in dynamic_link when check the presence of shared tbbmalloc library.
1348 Suggestion is to make the library initialization lazier, similar
1349 to what done for __kmpc_begin(). */
1350 // TODO: synchronize all static initializations with regular library
1351 // startup; look at kmp_global.cpp and etc.
1352 //__kmp_internal_begin ();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001353}
1354
Jonathan Peyton30419822017-05-12 18:01:32 +00001355void __kmp_register_atfork(void) {
1356 if (__kmp_need_register_atfork) {
1357 int status = pthread_atfork(__kmp_atfork_prepare, __kmp_atfork_parent,
1358 __kmp_atfork_child);
1359 KMP_CHECK_SYSFAIL("pthread_atfork", status);
1360 __kmp_need_register_atfork = FALSE;
1361 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001362}
1363
Jonathan Peyton30419822017-05-12 18:01:32 +00001364void __kmp_suspend_initialize(void) {
1365 int status;
1366 status = pthread_mutexattr_init(&__kmp_suspend_mutex_attr);
1367 KMP_CHECK_SYSFAIL("pthread_mutexattr_init", status);
1368 status = pthread_condattr_init(&__kmp_suspend_cond_attr);
1369 KMP_CHECK_SYSFAIL("pthread_condattr_init", status);
1370}
1371
1372static void __kmp_suspend_initialize_thread(kmp_info_t *th) {
1373 ANNOTATE_HAPPENS_AFTER(&th->th.th_suspend_init_count);
1374 if (th->th.th_suspend_init_count <= __kmp_fork_count) {
1375 /* this means we haven't initialized the suspension pthread objects for this
1376 thread in this instance of the process */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001377 int status;
Jonathan Peyton30419822017-05-12 18:01:32 +00001378 status = pthread_cond_init(&th->th.th_suspend_cv.c_cond,
1379 &__kmp_suspend_cond_attr);
1380 KMP_CHECK_SYSFAIL("pthread_cond_init", status);
1381 status = pthread_mutex_init(&th->th.th_suspend_mx.m_mutex,
1382 &__kmp_suspend_mutex_attr);
1383 KMP_CHECK_SYSFAIL("pthread_mutex_init", status);
1384 *(volatile int *)&th->th.th_suspend_init_count = __kmp_fork_count + 1;
1385 ANNOTATE_HAPPENS_BEFORE(&th->th.th_suspend_init_count);
1386 };
Jim Cownie5e8470a2013-09-27 10:38:44 +00001387}
1388
Jonathan Peyton30419822017-05-12 18:01:32 +00001389void __kmp_suspend_uninitialize_thread(kmp_info_t *th) {
1390 if (th->th.th_suspend_init_count > __kmp_fork_count) {
1391 /* this means we have initialize the suspension pthread objects for this
1392 thread in this instance of the process */
1393 int status;
1394
1395 status = pthread_cond_destroy(&th->th.th_suspend_cv.c_cond);
1396 if (status != 0 && status != EBUSY) {
1397 KMP_SYSFAIL("pthread_cond_destroy", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001398 };
Jonathan Peyton30419822017-05-12 18:01:32 +00001399 status = pthread_mutex_destroy(&th->th.th_suspend_mx.m_mutex);
1400 if (status != 0 && status != EBUSY) {
1401 KMP_SYSFAIL("pthread_mutex_destroy", status);
1402 };
1403 --th->th.th_suspend_init_count;
1404 KMP_DEBUG_ASSERT(th->th.th_suspend_init_count == __kmp_fork_count);
1405 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001406}
1407
Jim Cownie5e8470a2013-09-27 10:38:44 +00001408
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001409/* This routine puts the calling thread to sleep after setting the
Jonathan Peyton30419822017-05-12 18:01:32 +00001410 sleep bit for the indicated flag variable to true. */
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001411template <class C>
Jonathan Peyton30419822017-05-12 18:01:32 +00001412static inline void __kmp_suspend_template(int th_gtid, C *flag) {
1413 KMP_TIME_DEVELOPER_PARTITIONED_BLOCK(USER_suspend);
1414 kmp_info_t *th = __kmp_threads[th_gtid];
1415 int status;
1416 typename C::flag_t old_spin;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001417
Jonathan Peyton30419822017-05-12 18:01:32 +00001418 KF_TRACE(30, ("__kmp_suspend_template: T#%d enter for flag = %p\n", th_gtid,
1419 flag->get()));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001420
Jonathan Peyton30419822017-05-12 18:01:32 +00001421 __kmp_suspend_initialize_thread(th);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001422
Jonathan Peyton30419822017-05-12 18:01:32 +00001423 status = pthread_mutex_lock(&th->th.th_suspend_mx.m_mutex);
1424 KMP_CHECK_SYSFAIL("pthread_mutex_lock", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001425
Jonathan Peyton30419822017-05-12 18:01:32 +00001426 KF_TRACE(10, ("__kmp_suspend_template: T#%d setting sleep bit for spin(%p)\n",
1427 th_gtid, flag->get()));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001428
Jonathan Peyton30419822017-05-12 18:01:32 +00001429 /* TODO: shouldn't this use release semantics to ensure that
1430 __kmp_suspend_initialize_thread gets called first? */
1431 old_spin = flag->set_sleeping();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001432
Jonathan Peyton30419822017-05-12 18:01:32 +00001433 KF_TRACE(5, ("__kmp_suspend_template: T#%d set sleep bit for spin(%p)==%x,"
1434 " was %x\n",
1435 th_gtid, flag->get(), *(flag->get()), old_spin));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001436
Jonathan Peyton30419822017-05-12 18:01:32 +00001437 if (flag->done_check_val(old_spin)) {
1438 old_spin = flag->unset_sleeping();
1439 KF_TRACE(5, ("__kmp_suspend_template: T#%d false alarm, reset sleep bit "
1440 "for spin(%p)\n",
1441 th_gtid, flag->get()));
1442 } else {
1443 /* Encapsulate in a loop as the documentation states that this may
1444 "with low probability" return when the condition variable has
1445 not been signaled or broadcast */
1446 int deactivated = FALSE;
1447 TCW_PTR(th->th.th_sleep_loc, (void *)flag);
1448
1449 while (flag->is_sleeping()) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001450#ifdef DEBUG_SUSPEND
Jonathan Peyton30419822017-05-12 18:01:32 +00001451 char buffer[128];
1452 __kmp_suspend_count++;
1453 __kmp_print_cond(buffer, &th->th.th_suspend_cv);
1454 __kmp_printf("__kmp_suspend_template: suspending T#%d: %s\n", th_gtid,
1455 buffer);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001456#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001457 // Mark the thread as no longer active (only in the first iteration of the
1458 // loop).
1459 if (!deactivated) {
1460 th->th.th_active = FALSE;
1461 if (th->th.th_active_in_pool) {
1462 th->th.th_active_in_pool = FALSE;
Andrey Churbanov5ba90c72017-07-17 09:03:14 +00001463 KMP_TEST_THEN_DEC32(&__kmp_thread_pool_active_nth);
Jonathan Peyton30419822017-05-12 18:01:32 +00001464 KMP_DEBUG_ASSERT(TCR_4(__kmp_thread_pool_active_nth) >= 0);
1465 }
1466 deactivated = TRUE;
1467 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001468
1469#if USE_SUSPEND_TIMEOUT
Jonathan Peyton30419822017-05-12 18:01:32 +00001470 struct timespec now;
1471 struct timeval tval;
1472 int msecs;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001473
Jonathan Peyton30419822017-05-12 18:01:32 +00001474 status = gettimeofday(&tval, NULL);
1475 KMP_CHECK_SYSFAIL_ERRNO("gettimeofday", status);
1476 TIMEVAL_TO_TIMESPEC(&tval, &now);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001477
Jonathan Peyton30419822017-05-12 18:01:32 +00001478 msecs = (4 * __kmp_dflt_blocktime) + 200;
1479 now.tv_sec += msecs / 1000;
1480 now.tv_nsec += (msecs % 1000) * 1000;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001481
Jonathan Peyton30419822017-05-12 18:01:32 +00001482 KF_TRACE(15, ("__kmp_suspend_template: T#%d about to perform "
1483 "pthread_cond_timedwait\n",
1484 th_gtid));
1485 status = pthread_cond_timedwait(&th->th.th_suspend_cv.c_cond,
1486 &th->th.th_suspend_mx.m_mutex, &now);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001487#else
Jonathan Peyton30419822017-05-12 18:01:32 +00001488 KF_TRACE(15, ("__kmp_suspend_template: T#%d about to perform"
1489 " pthread_cond_wait\n",
1490 th_gtid));
1491 status = pthread_cond_wait(&th->th.th_suspend_cv.c_cond,
1492 &th->th.th_suspend_mx.m_mutex);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001493#endif
1494
Jonathan Peyton30419822017-05-12 18:01:32 +00001495 if ((status != 0) && (status != EINTR) && (status != ETIMEDOUT)) {
1496 KMP_SYSFAIL("pthread_cond_wait", status);
1497 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001498#ifdef KMP_DEBUG
Jonathan Peyton30419822017-05-12 18:01:32 +00001499 if (status == ETIMEDOUT) {
1500 if (flag->is_sleeping()) {
1501 KF_TRACE(100,
1502 ("__kmp_suspend_template: T#%d timeout wakeup\n", th_gtid));
1503 } else {
1504 KF_TRACE(2, ("__kmp_suspend_template: T#%d timeout wakeup, sleep bit "
1505 "not set!\n",
1506 th_gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001507 }
Jonathan Peyton30419822017-05-12 18:01:32 +00001508 } else if (flag->is_sleeping()) {
1509 KF_TRACE(100,
1510 ("__kmp_suspend_template: T#%d spurious wakeup\n", th_gtid));
1511 }
1512#endif
1513 } // while
Jim Cownie5e8470a2013-09-27 10:38:44 +00001514
Jonathan Peyton30419822017-05-12 18:01:32 +00001515 // Mark the thread as active again (if it was previous marked as inactive)
1516 if (deactivated) {
1517 th->th.th_active = TRUE;
1518 if (TCR_4(th->th.th_in_pool)) {
Andrey Churbanov5ba90c72017-07-17 09:03:14 +00001519 KMP_TEST_THEN_INC32(&__kmp_thread_pool_active_nth);
Jonathan Peyton30419822017-05-12 18:01:32 +00001520 th->th.th_active_in_pool = TRUE;
1521 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001522 }
Jonathan Peyton30419822017-05-12 18:01:32 +00001523 }
1524#ifdef DEBUG_SUSPEND
1525 {
1526 char buffer[128];
1527 __kmp_print_cond(buffer, &th->th.th_suspend_cv);
1528 __kmp_printf("__kmp_suspend_template: T#%d has awakened: %s\n", th_gtid,
1529 buffer);
1530 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001531#endif
1532
Jonathan Peyton30419822017-05-12 18:01:32 +00001533 status = pthread_mutex_unlock(&th->th.th_suspend_mx.m_mutex);
1534 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
1535 KF_TRACE(30, ("__kmp_suspend_template: T#%d exit\n", th_gtid));
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001536}
1537
1538void __kmp_suspend_32(int th_gtid, kmp_flag_32 *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001539 __kmp_suspend_template(th_gtid, flag);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001540}
1541void __kmp_suspend_64(int th_gtid, kmp_flag_64 *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001542 __kmp_suspend_template(th_gtid, flag);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001543}
1544void __kmp_suspend_oncore(int th_gtid, kmp_flag_oncore *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001545 __kmp_suspend_template(th_gtid, flag);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001546}
1547
Jim Cownie5e8470a2013-09-27 10:38:44 +00001548/* This routine signals the thread specified by target_gtid to wake up
Jonathan Peyton30419822017-05-12 18:01:32 +00001549 after setting the sleep bit indicated by the flag argument to FALSE.
1550 The target thread must already have called __kmp_suspend_template() */
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001551template <class C>
Jonathan Peyton30419822017-05-12 18:01:32 +00001552static inline void __kmp_resume_template(int target_gtid, C *flag) {
1553 KMP_TIME_DEVELOPER_PARTITIONED_BLOCK(USER_resume);
1554 kmp_info_t *th = __kmp_threads[target_gtid];
1555 int status;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001556
1557#ifdef KMP_DEBUG
Jonathan Peyton30419822017-05-12 18:01:32 +00001558 int gtid = TCR_4(__kmp_init_gtid) ? __kmp_get_gtid() : -1;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001559#endif
1560
Jonathan Peyton30419822017-05-12 18:01:32 +00001561 KF_TRACE(30, ("__kmp_resume_template: T#%d wants to wakeup T#%d enter\n",
1562 gtid, target_gtid));
1563 KMP_DEBUG_ASSERT(gtid != target_gtid);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001564
Jonathan Peyton30419822017-05-12 18:01:32 +00001565 __kmp_suspend_initialize_thread(th);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001566
Jonathan Peyton30419822017-05-12 18:01:32 +00001567 status = pthread_mutex_lock(&th->th.th_suspend_mx.m_mutex);
1568 KMP_CHECK_SYSFAIL("pthread_mutex_lock", status);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001569
Jonathan Peyton30419822017-05-12 18:01:32 +00001570 if (!flag) { // coming from __kmp_null_resume_wrapper
Andrey Churbanovc47afcd2017-07-03 11:24:08 +00001571 flag = (C *)CCAST(void *, th->th.th_sleep_loc);
Jonathan Peyton30419822017-05-12 18:01:32 +00001572 }
1573
1574 // First, check if the flag is null or its type has changed. If so, someone
1575 // else woke it up.
1576 if (!flag || flag->get_type() != flag->get_ptr_type()) { // get_ptr_type
1577 // simply shows what
1578 // flag was cast to
1579 KF_TRACE(5, ("__kmp_resume_template: T#%d exiting, thread T#%d already "
1580 "awake: flag(%p)\n",
1581 gtid, target_gtid, NULL));
1582 status = pthread_mutex_unlock(&th->th.th_suspend_mx.m_mutex);
1583 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
1584 return;
1585 } else { // if multiple threads are sleeping, flag should be internally
1586 // referring to a specific thread here
1587 typename C::flag_t old_spin = flag->unset_sleeping();
1588 if (!flag->is_sleeping_val(old_spin)) {
1589 KF_TRACE(5, ("__kmp_resume_template: T#%d exiting, thread T#%d already "
1590 "awake: flag(%p): "
1591 "%u => %u\n",
1592 gtid, target_gtid, flag->get(), old_spin, *flag->get()));
1593 status = pthread_mutex_unlock(&th->th.th_suspend_mx.m_mutex);
1594 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
1595 return;
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001596 }
Jonathan Peyton30419822017-05-12 18:01:32 +00001597 KF_TRACE(5, ("__kmp_resume_template: T#%d about to wakeup T#%d, reset "
1598 "sleep bit for flag's loc(%p): "
1599 "%u => %u\n",
1600 gtid, target_gtid, flag->get(), old_spin, *flag->get()));
1601 }
1602 TCW_PTR(th->th.th_sleep_loc, NULL);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001603
1604#ifdef DEBUG_SUSPEND
Jonathan Peyton30419822017-05-12 18:01:32 +00001605 {
1606 char buffer[128];
1607 __kmp_print_cond(buffer, &th->th.th_suspend_cv);
1608 __kmp_printf("__kmp_resume_template: T#%d resuming T#%d: %s\n", gtid,
1609 target_gtid, buffer);
1610 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001611#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001612 status = pthread_cond_signal(&th->th.th_suspend_cv.c_cond);
1613 KMP_CHECK_SYSFAIL("pthread_cond_signal", status);
1614 status = pthread_mutex_unlock(&th->th.th_suspend_mx.m_mutex);
1615 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
1616 KF_TRACE(30, ("__kmp_resume_template: T#%d exiting after signaling wake up"
1617 " for T#%d\n",
1618 gtid, target_gtid));
Jim Cownie5e8470a2013-09-27 10:38:44 +00001619}
1620
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001621void __kmp_resume_32(int target_gtid, kmp_flag_32 *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001622 __kmp_resume_template(target_gtid, flag);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001623}
1624void __kmp_resume_64(int target_gtid, kmp_flag_64 *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001625 __kmp_resume_template(target_gtid, flag);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001626}
1627void __kmp_resume_oncore(int target_gtid, kmp_flag_oncore *flag) {
Jonathan Peyton30419822017-05-12 18:01:32 +00001628 __kmp_resume_template(target_gtid, flag);
Jim Cownie4cc4bb42014-10-07 16:25:50 +00001629}
1630
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001631#if KMP_USE_MONITOR
Jonathan Peyton30419822017-05-12 18:01:32 +00001632void __kmp_resume_monitor() {
1633 KMP_TIME_DEVELOPER_PARTITIONED_BLOCK(USER_resume);
1634 int status;
Jim Cownie07ea89f2014-09-03 11:10:54 +00001635#ifdef KMP_DEBUG
Jonathan Peyton30419822017-05-12 18:01:32 +00001636 int gtid = TCR_4(__kmp_init_gtid) ? __kmp_get_gtid() : -1;
1637 KF_TRACE(30, ("__kmp_resume_monitor: T#%d wants to wakeup T#%d enter\n", gtid,
1638 KMP_GTID_MONITOR));
1639 KMP_DEBUG_ASSERT(gtid != KMP_GTID_MONITOR);
Jim Cownie07ea89f2014-09-03 11:10:54 +00001640#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001641 status = pthread_mutex_lock(&__kmp_wait_mx.m_mutex);
1642 KMP_CHECK_SYSFAIL("pthread_mutex_lock", status);
Jim Cownie07ea89f2014-09-03 11:10:54 +00001643#ifdef DEBUG_SUSPEND
Jonathan Peyton30419822017-05-12 18:01:32 +00001644 {
1645 char buffer[128];
1646 __kmp_print_cond(buffer, &__kmp_wait_cv.c_cond);
1647 __kmp_printf("__kmp_resume_monitor: T#%d resuming T#%d: %s\n", gtid,
1648 KMP_GTID_MONITOR, buffer);
1649 }
Jim Cownie07ea89f2014-09-03 11:10:54 +00001650#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001651 status = pthread_cond_signal(&__kmp_wait_cv.c_cond);
1652 KMP_CHECK_SYSFAIL("pthread_cond_signal", status);
1653 status = pthread_mutex_unlock(&__kmp_wait_mx.m_mutex);
1654 KMP_CHECK_SYSFAIL("pthread_mutex_unlock", status);
1655 KF_TRACE(30, ("__kmp_resume_monitor: T#%d exiting after signaling wake up"
1656 " for T#%d\n",
1657 gtid, KMP_GTID_MONITOR));
Jim Cownie07ea89f2014-09-03 11:10:54 +00001658}
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001659#endif // KMP_USE_MONITOR
Jim Cownie5e8470a2013-09-27 10:38:44 +00001660
Jonathan Peyton30419822017-05-12 18:01:32 +00001661void __kmp_yield(int cond) {
1662 if (!cond)
1663 return;
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001664#if KMP_USE_MONITOR
Jonathan Peyton30419822017-05-12 18:01:32 +00001665 if (!__kmp_yielding_on)
1666 return;
Jonathan Peyton581fdba2017-02-15 17:19:21 +00001667#else
Jonathan Peyton30419822017-05-12 18:01:32 +00001668 if (__kmp_yield_cycle && !KMP_YIELD_NOW())
1669 return;
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001670#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00001671 sched_yield();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001672}
1673
Jonathan Peyton30419822017-05-12 18:01:32 +00001674void __kmp_gtid_set_specific(int gtid) {
1675 if (__kmp_init_gtid) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001676 int status;
Jonathan Peyton30419822017-05-12 18:01:32 +00001677 status = pthread_setspecific(__kmp_gtid_threadprivate_key,
1678 (void *)(intptr_t)(gtid + 1));
1679 KMP_CHECK_SYSFAIL("pthread_setspecific", status);
1680 } else {
1681 KA_TRACE(50, ("__kmp_gtid_set_specific: runtime shutdown, returning\n"));
1682 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001683}
1684
Jonathan Peyton30419822017-05-12 18:01:32 +00001685int __kmp_gtid_get_specific() {
1686 int gtid;
1687 if (!__kmp_init_gtid) {
1688 KA_TRACE(50, ("__kmp_gtid_get_specific: runtime shutdown, returning "
1689 "KMP_GTID_SHUTDOWN\n"));
1690 return KMP_GTID_SHUTDOWN;
1691 }
1692 gtid = (int)(size_t)pthread_getspecific(__kmp_gtid_threadprivate_key);
1693 if (gtid == 0) {
1694 gtid = KMP_GTID_DNE;
1695 } else {
1696 gtid--;
1697 }
1698 KA_TRACE(50, ("__kmp_gtid_get_specific: key:%d gtid:%d\n",
1699 __kmp_gtid_threadprivate_key, gtid));
1700 return gtid;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001701}
1702
Jonathan Peyton30419822017-05-12 18:01:32 +00001703double __kmp_read_cpu_time(void) {
1704 /*clock_t t;*/
1705 struct tms buffer;
1706
1707 /*t =*/times(&buffer);
1708
1709 return (buffer.tms_utime + buffer.tms_cutime) / (double)CLOCKS_PER_SEC;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001710}
1711
Jonathan Peyton30419822017-05-12 18:01:32 +00001712int __kmp_read_system_info(struct kmp_sys_info *info) {
1713 int status;
1714 struct rusage r_usage;
1715
1716 memset(info, 0, sizeof(*info));
1717
1718 status = getrusage(RUSAGE_SELF, &r_usage);
1719 KMP_CHECK_SYSFAIL_ERRNO("getrusage", status);
1720
1721 // The maximum resident set size utilized (in kilobytes)
1722 info->maxrss = r_usage.ru_maxrss;
1723 // The number of page faults serviced without any I/O
1724 info->minflt = r_usage.ru_minflt;
1725 // The number of page faults serviced that required I/O
1726 info->majflt = r_usage.ru_majflt;
1727 // The number of times a process was "swapped" out of memory
1728 info->nswap = r_usage.ru_nswap;
1729 // The number of times the file system had to perform input
1730 info->inblock = r_usage.ru_inblock;
1731 // The number of times the file system had to perform output
1732 info->oublock = r_usage.ru_oublock;
1733 // The number of times a context switch was voluntarily
1734 info->nvcsw = r_usage.ru_nvcsw;
1735 // The number of times a context switch was forced
1736 info->nivcsw = r_usage.ru_nivcsw;
1737
1738 return (status != 0);
1739}
1740
1741void __kmp_read_system_time(double *delta) {
1742 double t_ns;
1743 struct timeval tval;
1744 struct timespec stop;
1745 int status;
1746
1747 status = gettimeofday(&tval, NULL);
1748 KMP_CHECK_SYSFAIL_ERRNO("gettimeofday", status);
1749 TIMEVAL_TO_TIMESPEC(&tval, &stop);
1750 t_ns = TS2NS(stop) - TS2NS(__kmp_sys_timer_data.start);
1751 *delta = (t_ns * 1e-9);
1752}
1753
1754void __kmp_clear_system_time(void) {
1755 struct timeval tval;
1756 int status;
1757 status = gettimeofday(&tval, NULL);
1758 KMP_CHECK_SYSFAIL_ERRNO("gettimeofday", status);
1759 TIMEVAL_TO_TIMESPEC(&tval, &__kmp_sys_timer_data.start);
1760}
Jim Cownie5e8470a2013-09-27 10:38:44 +00001761
Jonathan Peyton30419822017-05-12 18:01:32 +00001762static int __kmp_get_xproc(void) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001763
Jonathan Peyton30419822017-05-12 18:01:32 +00001764 int r = 0;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001765
Jonathan Peyton30419822017-05-12 18:01:32 +00001766#if KMP_OS_LINUX || KMP_OS_FREEBSD || KMP_OS_NETBSD
Jim Cownie5e8470a2013-09-27 10:38:44 +00001767
Jonathan Peyton30419822017-05-12 18:01:32 +00001768 r = sysconf(_SC_NPROCESSORS_ONLN);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001769
Jonathan Peyton30419822017-05-12 18:01:32 +00001770#elif KMP_OS_DARWIN
Jim Cownie5e8470a2013-09-27 10:38:44 +00001771
Jonathan Peyton30419822017-05-12 18:01:32 +00001772 // Bug C77011 High "OpenMP Threads and number of active cores".
Jim Cownie5e8470a2013-09-27 10:38:44 +00001773
Jonathan Peyton30419822017-05-12 18:01:32 +00001774 // Find the number of available CPUs.
1775 kern_return_t rc;
1776 host_basic_info_data_t info;
1777 mach_msg_type_number_t num = HOST_BASIC_INFO_COUNT;
1778 rc = host_info(mach_host_self(), HOST_BASIC_INFO, (host_info_t)&info, &num);
1779 if (rc == 0 && num == HOST_BASIC_INFO_COUNT) {
Andrey Churbanovc47afcd2017-07-03 11:24:08 +00001780 // Cannot use KA_TRACE() here because this code works before trace support
1781 // is initialized.
Jonathan Peyton30419822017-05-12 18:01:32 +00001782 r = info.avail_cpus;
1783 } else {
1784 KMP_WARNING(CantGetNumAvailCPU);
1785 KMP_INFORM(AssumedNumCPU);
1786 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001787
Jonathan Peyton30419822017-05-12 18:01:32 +00001788#else
Jim Cownie5e8470a2013-09-27 10:38:44 +00001789
Jonathan Peyton30419822017-05-12 18:01:32 +00001790#error "Unknown or unsupported OS."
Jim Cownie5e8470a2013-09-27 10:38:44 +00001791
Jonathan Peyton30419822017-05-12 18:01:32 +00001792#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001793
Jonathan Peyton30419822017-05-12 18:01:32 +00001794 return r > 0 ? r : 2; /* guess value of 2 if OS told us 0 */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001795
1796} // __kmp_get_xproc
1797
Jonathan Peyton30419822017-05-12 18:01:32 +00001798int __kmp_read_from_file(char const *path, char const *format, ...) {
1799 int result;
1800 va_list args;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001801
Jonathan Peyton30419822017-05-12 18:01:32 +00001802 va_start(args, format);
1803 FILE *f = fopen(path, "rb");
1804 if (f == NULL)
1805 return 0;
1806 result = vfscanf(f, format, args);
1807 fclose(f);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001808
Jonathan Peyton30419822017-05-12 18:01:32 +00001809 return result;
Jim Cownie181b4bb2013-12-23 17:28:57 +00001810}
Jim Cownie5e8470a2013-09-27 10:38:44 +00001811
Jonathan Peyton30419822017-05-12 18:01:32 +00001812void __kmp_runtime_initialize(void) {
1813 int status;
1814 pthread_mutexattr_t mutex_attr;
1815 pthread_condattr_t cond_attr;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001816
Jonathan Peyton30419822017-05-12 18:01:32 +00001817 if (__kmp_init_runtime) {
1818 return;
1819 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00001820
Jonathan Peyton30419822017-05-12 18:01:32 +00001821#if (KMP_ARCH_X86 || KMP_ARCH_X86_64)
1822 if (!__kmp_cpuinfo.initialized) {
1823 __kmp_query_cpuid(&__kmp_cpuinfo);
1824 }; // if
1825#endif /* KMP_ARCH_X86 || KMP_ARCH_X86_64 */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001826
Jonathan Peyton30419822017-05-12 18:01:32 +00001827 __kmp_xproc = __kmp_get_xproc();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001828
Jonathan Peyton30419822017-05-12 18:01:32 +00001829 if (sysconf(_SC_THREADS)) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001830
Jonathan Peyton30419822017-05-12 18:01:32 +00001831 /* Query the maximum number of threads */
1832 __kmp_sys_max_nth = sysconf(_SC_THREAD_THREADS_MAX);
1833 if (__kmp_sys_max_nth == -1) {
1834 /* Unlimited threads for NPTL */
1835 __kmp_sys_max_nth = INT_MAX;
1836 } else if (__kmp_sys_max_nth <= 1) {
1837 /* Can't tell, just use PTHREAD_THREADS_MAX */
1838 __kmp_sys_max_nth = KMP_MAX_NTH;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001839 }
1840
Jonathan Peyton30419822017-05-12 18:01:32 +00001841 /* Query the minimum stack size */
1842 __kmp_sys_min_stksize = sysconf(_SC_THREAD_STACK_MIN);
1843 if (__kmp_sys_min_stksize <= 1) {
1844 __kmp_sys_min_stksize = KMP_MIN_STKSIZE;
1845 }
1846 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001847
Jonathan Peyton30419822017-05-12 18:01:32 +00001848 /* Set up minimum number of threads to switch to TLS gtid */
1849 __kmp_tls_gtid_min = KMP_TLS_GTID_MIN;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001850
Jonathan Peyton30419822017-05-12 18:01:32 +00001851 status = pthread_key_create(&__kmp_gtid_threadprivate_key,
1852 __kmp_internal_end_dest);
1853 KMP_CHECK_SYSFAIL("pthread_key_create", status);
1854 status = pthread_mutexattr_init(&mutex_attr);
1855 KMP_CHECK_SYSFAIL("pthread_mutexattr_init", status);
1856 status = pthread_mutex_init(&__kmp_wait_mx.m_mutex, &mutex_attr);
1857 KMP_CHECK_SYSFAIL("pthread_mutex_init", status);
1858 status = pthread_condattr_init(&cond_attr);
1859 KMP_CHECK_SYSFAIL("pthread_condattr_init", status);
1860 status = pthread_cond_init(&__kmp_wait_cv.c_cond, &cond_attr);
1861 KMP_CHECK_SYSFAIL("pthread_cond_init", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001862#if USE_ITT_BUILD
Jonathan Peyton30419822017-05-12 18:01:32 +00001863 __kmp_itt_initialize();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001864#endif /* USE_ITT_BUILD */
1865
Jonathan Peyton30419822017-05-12 18:01:32 +00001866 __kmp_init_runtime = TRUE;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001867}
1868
Jonathan Peyton30419822017-05-12 18:01:32 +00001869void __kmp_runtime_destroy(void) {
1870 int status;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001871
Jonathan Peyton30419822017-05-12 18:01:32 +00001872 if (!__kmp_init_runtime) {
1873 return; // Nothing to do.
1874 };
Jim Cownie5e8470a2013-09-27 10:38:44 +00001875
1876#if USE_ITT_BUILD
Jonathan Peyton30419822017-05-12 18:01:32 +00001877 __kmp_itt_destroy();
Jim Cownie5e8470a2013-09-27 10:38:44 +00001878#endif /* USE_ITT_BUILD */
1879
Jonathan Peyton30419822017-05-12 18:01:32 +00001880 status = pthread_key_delete(__kmp_gtid_threadprivate_key);
1881 KMP_CHECK_SYSFAIL("pthread_key_delete", status);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001882
Jonathan Peyton30419822017-05-12 18:01:32 +00001883 status = pthread_mutex_destroy(&__kmp_wait_mx.m_mutex);
1884 if (status != 0 && status != EBUSY) {
1885 KMP_SYSFAIL("pthread_mutex_destroy", status);
1886 }
1887 status = pthread_cond_destroy(&__kmp_wait_cv.c_cond);
1888 if (status != 0 && status != EBUSY) {
1889 KMP_SYSFAIL("pthread_cond_destroy", status);
1890 }
1891#if KMP_AFFINITY_SUPPORTED
1892 __kmp_affinity_uninitialize();
1893#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001894
Jonathan Peyton30419822017-05-12 18:01:32 +00001895 __kmp_init_runtime = FALSE;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001896}
1897
Jim Cownie5e8470a2013-09-27 10:38:44 +00001898/* Put the thread to sleep for a time period */
1899/* NOTE: not currently used anywhere */
Jonathan Peyton30419822017-05-12 18:01:32 +00001900void __kmp_thread_sleep(int millis) { sleep((millis + 500) / 1000); }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001901
1902/* Calculate the elapsed wall clock time for the user */
Jonathan Peyton30419822017-05-12 18:01:32 +00001903void __kmp_elapsed(double *t) {
1904 int status;
1905#ifdef FIX_SGI_CLOCK
1906 struct timespec ts;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001907
Jonathan Peyton30419822017-05-12 18:01:32 +00001908 status = clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &ts);
1909 KMP_CHECK_SYSFAIL_ERRNO("clock_gettime", status);
1910 *t =
1911 (double)ts.tv_nsec * (1.0 / (double)KMP_NSEC_PER_SEC) + (double)ts.tv_sec;
1912#else
1913 struct timeval tv;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001914
Jonathan Peyton30419822017-05-12 18:01:32 +00001915 status = gettimeofday(&tv, NULL);
1916 KMP_CHECK_SYSFAIL_ERRNO("gettimeofday", status);
1917 *t =
1918 (double)tv.tv_usec * (1.0 / (double)KMP_USEC_PER_SEC) + (double)tv.tv_sec;
1919#endif
Jim Cownie5e8470a2013-09-27 10:38:44 +00001920}
1921
1922/* Calculate the elapsed wall clock tick for the user */
Jonathan Peyton30419822017-05-12 18:01:32 +00001923void __kmp_elapsed_tick(double *t) { *t = 1 / (double)CLOCKS_PER_SEC; }
Jim Cownie5e8470a2013-09-27 10:38:44 +00001924
Jonathan Peyton377aa402016-04-14 16:00:37 +00001925/* Return the current time stamp in nsec */
Jonathan Peyton30419822017-05-12 18:01:32 +00001926kmp_uint64 __kmp_now_nsec() {
1927 struct timeval t;
1928 gettimeofday(&t, NULL);
1929 return KMP_NSEC_PER_SEC * t.tv_sec + 1000 * t.tv_usec;
Jonathan Peyton377aa402016-04-14 16:00:37 +00001930}
1931
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001932#if KMP_ARCH_X86 || KMP_ARCH_X86_64
Jonathan Peyton35d75ae2017-03-20 22:11:31 +00001933/* Measure clock ticks per millisecond */
Jonathan Peyton30419822017-05-12 18:01:32 +00001934void __kmp_initialize_system_tick() {
1935 kmp_uint64 delay = 100000; // 50~100 usec on most machines.
1936 kmp_uint64 nsec = __kmp_now_nsec();
1937 kmp_uint64 goal = __kmp_hardware_timestamp() + delay;
1938 kmp_uint64 now;
1939 while ((now = __kmp_hardware_timestamp()) < goal)
1940 ;
1941 __kmp_ticks_per_msec =
1942 (kmp_uint64)(1e6 * (delay + (now - goal)) / (__kmp_now_nsec() - nsec));
Jonathan Peytonb66d1aa2016-09-27 17:11:17 +00001943}
1944#endif
1945
Jonathan Peyton30419822017-05-12 18:01:32 +00001946/* Determine whether the given address is mapped into the current address
1947 space. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001948
Jonathan Peyton30419822017-05-12 18:01:32 +00001949int __kmp_is_address_mapped(void *addr) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001950
Jonathan Peyton30419822017-05-12 18:01:32 +00001951 int found = 0;
1952 int rc;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001953
Jonathan Peyton30419822017-05-12 18:01:32 +00001954#if KMP_OS_LINUX || KMP_OS_FREEBSD
Jim Cownie5e8470a2013-09-27 10:38:44 +00001955
Jonathan Peyton30419822017-05-12 18:01:32 +00001956 /* On Linux* OS, read the /proc/<pid>/maps pseudo-file to get all the address
1957 ranges mapped into the address space. */
Jim Cownie5e8470a2013-09-27 10:38:44 +00001958
Jonathan Peyton30419822017-05-12 18:01:32 +00001959 char *name = __kmp_str_format("/proc/%d/maps", getpid());
1960 FILE *file = NULL;
Jim Cownie5e8470a2013-09-27 10:38:44 +00001961
Jonathan Peyton30419822017-05-12 18:01:32 +00001962 file = fopen(name, "r");
1963 KMP_ASSERT(file != NULL);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001964
Jonathan Peyton30419822017-05-12 18:01:32 +00001965 for (;;) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00001966
Jonathan Peyton30419822017-05-12 18:01:32 +00001967 void *beginning = NULL;
1968 void *ending = NULL;
1969 char perms[5];
Jim Cownie5e8470a2013-09-27 10:38:44 +00001970
Jonathan Peyton30419822017-05-12 18:01:32 +00001971 rc = fscanf(file, "%p-%p %4s %*[^\n]\n", &beginning, &ending, perms);
1972 if (rc == EOF) {
1973 break;
1974 }; // if
1975 KMP_ASSERT(rc == 3 &&
1976 KMP_STRLEN(perms) == 4); // Make sure all fields are read.
Jim Cownie5e8470a2013-09-27 10:38:44 +00001977
Jonathan Peyton30419822017-05-12 18:01:32 +00001978 // Ending address is not included in the region, but beginning is.
1979 if ((addr >= beginning) && (addr < ending)) {
1980 perms[2] = 0; // 3th and 4th character does not matter.
1981 if (strcmp(perms, "rw") == 0) {
1982 // Memory we are looking for should be readable and writable.
Alp Toker763b9392014-02-28 09:42:41 +00001983 found = 1;
Jonathan Peyton30419822017-05-12 18:01:32 +00001984 }; // if
1985 break;
1986 }; // if
Alp Toker763b9392014-02-28 09:42:41 +00001987
Jonathan Peyton30419822017-05-12 18:01:32 +00001988 }; // forever
Jim Cownie5e8470a2013-09-27 10:38:44 +00001989
Jonathan Peyton30419822017-05-12 18:01:32 +00001990 // Free resources.
1991 fclose(file);
1992 KMP_INTERNAL_FREE(name);
Jim Cownie5e8470a2013-09-27 10:38:44 +00001993
Jonathan Peyton30419822017-05-12 18:01:32 +00001994#elif KMP_OS_DARWIN
Jim Cownie5e8470a2013-09-27 10:38:44 +00001995
Jonathan Peyton30419822017-05-12 18:01:32 +00001996 /* On OS X*, /proc pseudo filesystem is not available. Try to read memory
1997 using vm interface. */
1998
1999 int buffer;
2000 vm_size_t count;
2001 rc = vm_read_overwrite(
2002 mach_task_self(), // Task to read memory of.
2003 (vm_address_t)(addr), // Address to read from.
2004 1, // Number of bytes to be read.
2005 (vm_address_t)(&buffer), // Address of buffer to save read bytes in.
2006 &count // Address of var to save number of read bytes in.
2007 );
2008 if (rc == 0) {
2009 // Memory successfully read.
2010 found = 1;
2011 }; // if
2012
2013#elif KMP_OS_FREEBSD || KMP_OS_NETBSD
2014
2015 // FIXME(FreeBSD, NetBSD): Implement this
2016 found = 1;
2017
2018#else
2019
2020#error "Unknown or unsupported OS"
2021
2022#endif
2023
2024 return found;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002025
2026} // __kmp_is_address_mapped
2027
2028#ifdef USE_LOAD_BALANCE
2029
Jonathan Peyton30419822017-05-12 18:01:32 +00002030#if KMP_OS_DARWIN
Jim Cownie5e8470a2013-09-27 10:38:44 +00002031
2032// The function returns the rounded value of the system load average
2033// during given time interval which depends on the value of
2034// __kmp_load_balance_interval variable (default is 60 sec, other values
2035// may be 300 sec or 900 sec).
2036// It returns -1 in case of error.
Jonathan Peyton30419822017-05-12 18:01:32 +00002037int __kmp_get_load_balance(int max) {
2038 double averages[3];
2039 int ret_avg = 0;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002040
Jonathan Peyton30419822017-05-12 18:01:32 +00002041 int res = getloadavg(averages, 3);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002042
Jonathan Peyton30419822017-05-12 18:01:32 +00002043 // Check __kmp_load_balance_interval to determine which of averages to use.
2044 // getloadavg() may return the number of samples less than requested that is
2045 // less than 3.
2046 if (__kmp_load_balance_interval < 180 && (res >= 1)) {
2047 ret_avg = averages[0]; // 1 min
2048 } else if ((__kmp_load_balance_interval >= 180 &&
2049 __kmp_load_balance_interval < 600) &&
2050 (res >= 2)) {
2051 ret_avg = averages[1]; // 5 min
2052 } else if ((__kmp_load_balance_interval >= 600) && (res == 3)) {
2053 ret_avg = averages[2]; // 15 min
2054 } else { // Error occurred
2055 return -1;
2056 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00002057
Jonathan Peyton30419822017-05-12 18:01:32 +00002058 return ret_avg;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002059}
2060
Jonathan Peyton30419822017-05-12 18:01:32 +00002061#else // Linux* OS
Jim Cownie5e8470a2013-09-27 10:38:44 +00002062
Jonathan Peyton30419822017-05-12 18:01:32 +00002063// The fuction returns number of running (not sleeping) threads, or -1 in case
2064// of error. Error could be reported if Linux* OS kernel too old (without
2065// "/proc" support). Counting running threads stops if max running threads
2066// encountered.
2067int __kmp_get_load_balance(int max) {
2068 static int permanent_error = 0;
2069 static int glb_running_threads = 0; // Saved count of the running threads for
2070 // the thread balance algortihm
2071 static double glb_call_time = 0; /* Thread balance algorithm call time */
Jim Cownie5e8470a2013-09-27 10:38:44 +00002072
Jonathan Peyton30419822017-05-12 18:01:32 +00002073 int running_threads = 0; // Number of running threads in the system.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002074
Jonathan Peyton30419822017-05-12 18:01:32 +00002075 DIR *proc_dir = NULL; // Handle of "/proc/" directory.
2076 struct dirent *proc_entry = NULL;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002077
Jonathan Peyton30419822017-05-12 18:01:32 +00002078 kmp_str_buf_t task_path; // "/proc/<pid>/task/<tid>/" path.
2079 DIR *task_dir = NULL; // Handle of "/proc/<pid>/task/<tid>/" directory.
2080 struct dirent *task_entry = NULL;
2081 int task_path_fixed_len;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002082
Jonathan Peyton30419822017-05-12 18:01:32 +00002083 kmp_str_buf_t stat_path; // "/proc/<pid>/task/<tid>/stat" path.
2084 int stat_file = -1;
2085 int stat_path_fixed_len;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002086
Jonathan Peyton30419822017-05-12 18:01:32 +00002087 int total_processes = 0; // Total number of processes in system.
2088 int total_threads = 0; // Total number of threads in system.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002089
Jonathan Peyton30419822017-05-12 18:01:32 +00002090 double call_time = 0.0;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002091
Jonathan Peyton30419822017-05-12 18:01:32 +00002092 __kmp_str_buf_init(&task_path);
2093 __kmp_str_buf_init(&stat_path);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002094
Jonathan Peyton30419822017-05-12 18:01:32 +00002095 __kmp_elapsed(&call_time);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002096
Jonathan Peyton30419822017-05-12 18:01:32 +00002097 if (glb_call_time &&
2098 (call_time - glb_call_time < __kmp_load_balance_interval)) {
2099 running_threads = glb_running_threads;
2100 goto finish;
2101 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00002102
Jonathan Peyton30419822017-05-12 18:01:32 +00002103 glb_call_time = call_time;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002104
Jonathan Peyton30419822017-05-12 18:01:32 +00002105 // Do not spend time on scanning "/proc/" if we have a permanent error.
2106 if (permanent_error) {
2107 running_threads = -1;
2108 goto finish;
2109 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00002110
Jonathan Peyton30419822017-05-12 18:01:32 +00002111 if (max <= 0) {
2112 max = INT_MAX;
2113 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00002114
Jonathan Peyton30419822017-05-12 18:01:32 +00002115 // Open "/proc/" directory.
2116 proc_dir = opendir("/proc");
2117 if (proc_dir == NULL) {
2118 // Cannot open "/prroc/". Probably the kernel does not support it. Return an
2119 // error now and in subsequent calls.
2120 running_threads = -1;
2121 permanent_error = 1;
2122 goto finish;
2123 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00002124
Jonathan Peyton30419822017-05-12 18:01:32 +00002125 // Initialize fixed part of task_path. This part will not change.
2126 __kmp_str_buf_cat(&task_path, "/proc/", 6);
2127 task_path_fixed_len = task_path.used; // Remember number of used characters.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002128
Jonathan Peyton30419822017-05-12 18:01:32 +00002129 proc_entry = readdir(proc_dir);
2130 while (proc_entry != NULL) {
2131 // Proc entry is a directory and name starts with a digit. Assume it is a
2132 // process' directory.
2133 if (proc_entry->d_type == DT_DIR && isdigit(proc_entry->d_name[0])) {
Jim Cownie5e8470a2013-09-27 10:38:44 +00002134
Jonathan Peyton30419822017-05-12 18:01:32 +00002135 ++total_processes;
2136 // Make sure init process is the very first in "/proc", so we can replace
2137 // strcmp( proc_entry->d_name, "1" ) == 0 with simpler total_processes ==
2138 // 1. We are going to check that total_processes == 1 => d_name == "1" is
2139 // true (where "=>" is implication). Since C++ does not have => operator,
2140 // let us replace it with its equivalent: a => b == ! a || b.
2141 KMP_DEBUG_ASSERT(total_processes != 1 ||
2142 strcmp(proc_entry->d_name, "1") == 0);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002143
Jonathan Peyton30419822017-05-12 18:01:32 +00002144 // Construct task_path.
2145 task_path.used = task_path_fixed_len; // Reset task_path to "/proc/".
2146 __kmp_str_buf_cat(&task_path, proc_entry->d_name,
2147 KMP_STRLEN(proc_entry->d_name));
2148 __kmp_str_buf_cat(&task_path, "/task", 5);
Jim Cownie5e8470a2013-09-27 10:38:44 +00002149
Jonathan Peyton30419822017-05-12 18:01:32 +00002150 task_dir = opendir(task_path.str);
2151 if (task_dir == NULL) {
2152 // Process can finish between reading "/proc/" directory entry and
2153 // opening process' "task/" directory. So, in general case we should not
2154 // complain, but have to skip this process and read the next one. But on
2155 // systems with no "task/" support we will spend lot of time to scan
2156 // "/proc/" tree again and again without any benefit. "init" process
2157 // (its pid is 1) should exist always, so, if we cannot open
2158 // "/proc/1/task/" directory, it means "task/" is not supported by
2159 // kernel. Report an error now and in the future.
2160 if (strcmp(proc_entry->d_name, "1") == 0) {
2161 running_threads = -1;
2162 permanent_error = 1;
2163 goto finish;
2164 }; // if
2165 } else {
2166 // Construct fixed part of stat file path.
2167 __kmp_str_buf_clear(&stat_path);
2168 __kmp_str_buf_cat(&stat_path, task_path.str, task_path.used);
2169 __kmp_str_buf_cat(&stat_path, "/", 1);
2170 stat_path_fixed_len = stat_path.used;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002171
Jonathan Peyton30419822017-05-12 18:01:32 +00002172 task_entry = readdir(task_dir);
2173 while (task_entry != NULL) {
2174 // It is a directory and name starts with a digit.
2175 if (proc_entry->d_type == DT_DIR && isdigit(task_entry->d_name[0])) {
2176 ++total_threads;
2177
2178 // Consruct complete stat file path. Easiest way would be:
2179 // __kmp_str_buf_print( & stat_path, "%s/%s/stat", task_path.str,
2180 // task_entry->d_name );
2181 // but seriae of __kmp_str_buf_cat works a bit faster.
2182 stat_path.used =
2183 stat_path_fixed_len; // Reset stat path to its fixed part.
2184 __kmp_str_buf_cat(&stat_path, task_entry->d_name,
2185 KMP_STRLEN(task_entry->d_name));
2186 __kmp_str_buf_cat(&stat_path, "/stat", 5);
2187
2188 // Note: Low-level API (open/read/close) is used. High-level API
2189 // (fopen/fclose) works ~ 30 % slower.
2190 stat_file = open(stat_path.str, O_RDONLY);
2191 if (stat_file == -1) {
2192 // We cannot report an error because task (thread) can terminate
2193 // just before reading this file.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002194 } else {
Jonathan Peyton30419822017-05-12 18:01:32 +00002195 /* Content of "stat" file looks like:
2196 24285 (program) S ...
Jim Cownie5e8470a2013-09-27 10:38:44 +00002197
Jonathan Peyton30419822017-05-12 18:01:32 +00002198 It is a single line (if program name does not include funny
2199 symbols). First number is a thread id, then name of executable
2200 file name in paretheses, then state of the thread. We need just
2201 thread state.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002202
Jonathan Peyton30419822017-05-12 18:01:32 +00002203 Good news: Length of program name is 15 characters max. Longer
2204 names are truncated.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002205
Jonathan Peyton30419822017-05-12 18:01:32 +00002206 Thus, we need rather short buffer: 15 chars for program name +
2207 2 parenthesis, + 3 spaces + ~7 digits of pid = 37.
Jim Cownie5e8470a2013-09-27 10:38:44 +00002208
Jonathan Peyton30419822017-05-12 18:01:32 +00002209 Bad news: Program name may contain special symbols like space,
2210 closing parenthesis, or even new line. This makes parsing
2211 "stat" file not 100 % reliable. In case of fanny program names
2212 parsing may fail (report incorrect thread state).
Jim Cownie5e8470a2013-09-27 10:38:44 +00002213
Jonathan Peyton30419822017-05-12 18:01:32 +00002214 Parsing "status" file looks more promissing (due to different
2215 file structure and escaping special symbols) but reading and
2216 parsing of "status" file works slower.
2217 -- ln
2218 */
2219 char buffer[65];
2220 int len;
2221 len = read(stat_file, buffer, sizeof(buffer) - 1);
2222 if (len >= 0) {
2223 buffer[len] = 0;
2224 // Using scanf:
2225 // sscanf( buffer, "%*d (%*s) %c ", & state );
2226 // looks very nice, but searching for a closing parenthesis
2227 // works a bit faster.
2228 char *close_parent = strstr(buffer, ") ");
2229 if (close_parent != NULL) {
2230 char state = *(close_parent + 2);
2231 if (state == 'R') {
2232 ++running_threads;
2233 if (running_threads >= max) {
2234 goto finish;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002235 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +00002236 }; // if
2237 }; // if
2238 }; // if
2239 close(stat_file);
2240 stat_file = -1;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002241 }; // if
Jonathan Peyton30419822017-05-12 18:01:32 +00002242 }; // if
2243 task_entry = readdir(task_dir);
2244 }; // while
2245 closedir(task_dir);
2246 task_dir = NULL;
2247 }; // if
2248 }; // if
2249 proc_entry = readdir(proc_dir);
2250 }; // while
Jim Cownie5e8470a2013-09-27 10:38:44 +00002251
Jonathan Peyton30419822017-05-12 18:01:32 +00002252 // There _might_ be a timing hole where the thread executing this
2253 // code get skipped in the load balance, and running_threads is 0.
2254 // Assert in the debug builds only!!!
2255 KMP_DEBUG_ASSERT(running_threads > 0);
2256 if (running_threads <= 0) {
2257 running_threads = 1;
2258 }
Jim Cownie5e8470a2013-09-27 10:38:44 +00002259
Jonathan Peyton30419822017-05-12 18:01:32 +00002260finish: // Clean up and exit.
2261 if (proc_dir != NULL) {
2262 closedir(proc_dir);
2263 }; // if
2264 __kmp_str_buf_free(&task_path);
2265 if (task_dir != NULL) {
2266 closedir(task_dir);
2267 }; // if
2268 __kmp_str_buf_free(&stat_path);
2269 if (stat_file != -1) {
2270 close(stat_file);
2271 }; // if
Jim Cownie5e8470a2013-09-27 10:38:44 +00002272
Jonathan Peyton30419822017-05-12 18:01:32 +00002273 glb_running_threads = running_threads;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002274
Jonathan Peyton30419822017-05-12 18:01:32 +00002275 return running_threads;
Jim Cownie5e8470a2013-09-27 10:38:44 +00002276
2277} // __kmp_get_load_balance
2278
Jonathan Peyton30419822017-05-12 18:01:32 +00002279#endif // KMP_OS_DARWIN
Jim Cownie5e8470a2013-09-27 10:38:44 +00002280
2281#endif // USE_LOAD_BALANCE
2282
Andrey Churbanovc47afcd2017-07-03 11:24:08 +00002283#if !(KMP_ARCH_X86 || KMP_ARCH_X86_64 || KMP_MIC || \
2284 ((KMP_OS_LINUX || KMP_OS_DARWIN) && KMP_ARCH_AARCH64) || KMP_ARCH_PPC64)
Jim Cownie3051f972014-08-07 10:12:54 +00002285
2286// we really only need the case with 1 argument, because CLANG always build
2287// a struct of pointers to shared variables referenced in the outlined function
Jonathan Peyton30419822017-05-12 18:01:32 +00002288int __kmp_invoke_microtask(microtask_t pkfn, int gtid, int tid, int argc,
2289 void *p_argv[]
Jonathan Peyton122dd762015-07-13 18:55:45 +00002290#if OMPT_SUPPORT
Jonathan Peyton30419822017-05-12 18:01:32 +00002291 ,
2292 void **exit_frame_ptr
Jonathan Peyton122dd762015-07-13 18:55:45 +00002293#endif
Jonathan Peyton30419822017-05-12 18:01:32 +00002294 ) {
Jonathan Peyton122dd762015-07-13 18:55:45 +00002295#if OMPT_SUPPORT
2296 *exit_frame_ptr = __builtin_frame_address(0);
2297#endif
2298
Jim Cownie3051f972014-08-07 10:12:54 +00002299 switch (argc) {
2300 default:
2301 fprintf(stderr, "Too many args to microtask: %d!\n", argc);
2302 fflush(stderr);
2303 exit(-1);
2304 case 0:
2305 (*pkfn)(&gtid, &tid);
2306 break;
2307 case 1:
2308 (*pkfn)(&gtid, &tid, p_argv[0]);
2309 break;
2310 case 2:
2311 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1]);
2312 break;
2313 case 3:
2314 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2]);
2315 break;
2316 case 4:
2317 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3]);
2318 break;
2319 case 5:
2320 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4]);
2321 break;
2322 case 6:
2323 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2324 p_argv[5]);
2325 break;
2326 case 7:
2327 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2328 p_argv[5], p_argv[6]);
2329 break;
2330 case 8:
2331 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2332 p_argv[5], p_argv[6], p_argv[7]);
2333 break;
2334 case 9:
2335 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2336 p_argv[5], p_argv[6], p_argv[7], p_argv[8]);
2337 break;
2338 case 10:
2339 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2340 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9]);
2341 break;
2342 case 11:
2343 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2344 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9], p_argv[10]);
2345 break;
2346 case 12:
2347 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2348 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9], p_argv[10],
2349 p_argv[11]);
2350 break;
2351 case 13:
2352 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2353 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9], p_argv[10],
2354 p_argv[11], p_argv[12]);
2355 break;
2356 case 14:
2357 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2358 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9], p_argv[10],
2359 p_argv[11], p_argv[12], p_argv[13]);
2360 break;
2361 case 15:
2362 (*pkfn)(&gtid, &tid, p_argv[0], p_argv[1], p_argv[2], p_argv[3], p_argv[4],
2363 p_argv[5], p_argv[6], p_argv[7], p_argv[8], p_argv[9], p_argv[10],
2364 p_argv[11], p_argv[12], p_argv[13], p_argv[14]);
2365 break;
2366 }
2367
Jonathan Peyton122dd762015-07-13 18:55:45 +00002368#if OMPT_SUPPORT
2369 *exit_frame_ptr = 0;
2370#endif
2371
Jim Cownie3051f972014-08-07 10:12:54 +00002372 return 1;
2373}
2374
2375#endif
Jim Cownie181b4bb2013-12-23 17:28:57 +00002376
Jim Cownie5e8470a2013-09-27 10:38:44 +00002377// end of file //