1 /* 2 * kmp_global.cpp -- KPTS global variables for runtime support library 3 */ 4 5 //===----------------------------------------------------------------------===// 6 // 7 // The LLVM Compiler Infrastructure 8 // 9 // This file is dual licensed under the MIT and the University of Illinois Open 10 // Source Licenses. See LICENSE.txt for details. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "kmp.h" 15 #include "kmp_affinity.h" 16 17 kmp_key_t __kmp_gtid_threadprivate_key; 18 19 #if KMP_ARCH_X86 || KMP_ARCH_X86_64 20 kmp_cpuinfo_t __kmp_cpuinfo = {0}; // Not initialized 21 #endif 22 23 #if KMP_STATS_ENABLED 24 #include "kmp_stats.h" 25 // lock for modifying the global __kmp_stats_list 26 kmp_tas_lock_t __kmp_stats_lock; 27 28 // global list of per thread stats, the head is a sentinel node which 29 // accumulates all stats produced before __kmp_create_worker is called. 30 kmp_stats_list *__kmp_stats_list; 31 32 // thread local pointer to stats node within list 33 __thread kmp_stats_list *__kmp_stats_thread_ptr = NULL; 34 35 // gives reference tick for all events (considered the 0 tick) 36 tsc_tick_count __kmp_stats_start_time; 37 #endif 38 39 /* ----------------------------------------------------- */ 40 /* INITIALIZATION VARIABLES */ 41 /* they are syncronized to write during init, but read anytime */ 42 volatile int __kmp_init_serial = FALSE; 43 volatile int __kmp_init_gtid = FALSE; 44 volatile int __kmp_init_common = FALSE; 45 volatile int __kmp_init_middle = FALSE; 46 volatile int __kmp_init_parallel = FALSE; 47 #if KMP_USE_MONITOR 48 volatile int __kmp_init_monitor = 49 0; /* 1 - launched, 2 - actually started (Windows* OS only) */ 50 #endif 51 volatile int __kmp_init_user_locks = FALSE; 52 53 /* list of address of allocated caches for commons */ 54 kmp_cached_addr_t *__kmp_threadpriv_cache_list = NULL; 55 56 int __kmp_init_counter = 0; 57 int __kmp_root_counter = 0; 58 int __kmp_version = 0; 59 60 volatile kmp_uint32 __kmp_team_counter = 0; 61 volatile kmp_uint32 __kmp_task_counter = 0; 62 63 unsigned int __kmp_init_wait = 64 KMP_DEFAULT_INIT_WAIT; /* initial number of spin-tests */ 65 unsigned int __kmp_next_wait = 66 KMP_DEFAULT_NEXT_WAIT; /* susequent number of spin-tests */ 67 68 size_t __kmp_stksize = KMP_DEFAULT_STKSIZE; 69 #if KMP_USE_MONITOR 70 size_t __kmp_monitor_stksize = 0; // auto adjust 71 #endif 72 size_t __kmp_stkoffset = KMP_DEFAULT_STKOFFSET; 73 int __kmp_stkpadding = KMP_MIN_STKPADDING; 74 75 size_t __kmp_malloc_pool_incr = KMP_DEFAULT_MALLOC_POOL_INCR; 76 77 // Barrier method defaults, settings, and strings. 78 // branch factor = 2^branch_bits (only relevant for tree & hyper barrier types) 79 #if KMP_ARCH_X86_64 80 kmp_uint32 __kmp_barrier_gather_bb_dflt = 2; 81 /* branch_factor = 4 */ /* hyper2: C78980 */ 82 kmp_uint32 __kmp_barrier_release_bb_dflt = 2; 83 /* branch_factor = 4 */ /* hyper2: C78980 */ 84 #else 85 kmp_uint32 __kmp_barrier_gather_bb_dflt = 2; 86 /* branch_factor = 4 */ /* communication in core for MIC */ 87 kmp_uint32 __kmp_barrier_release_bb_dflt = 2; 88 /* branch_factor = 4 */ /* communication in core for MIC */ 89 #endif // KMP_ARCH_X86_64 90 #if KMP_ARCH_X86_64 91 kmp_bar_pat_e __kmp_barrier_gather_pat_dflt = bp_hyper_bar; /* hyper2: C78980 */ 92 kmp_bar_pat_e __kmp_barrier_release_pat_dflt = 93 bp_hyper_bar; /* hyper2: C78980 */ 94 #else 95 kmp_bar_pat_e __kmp_barrier_gather_pat_dflt = bp_linear_bar; 96 kmp_bar_pat_e __kmp_barrier_release_pat_dflt = bp_linear_bar; 97 #endif 98 kmp_uint32 __kmp_barrier_gather_branch_bits[bs_last_barrier] = {0}; 99 kmp_uint32 __kmp_barrier_release_branch_bits[bs_last_barrier] = {0}; 100 kmp_bar_pat_e __kmp_barrier_gather_pattern[bs_last_barrier] = {bp_linear_bar}; 101 kmp_bar_pat_e __kmp_barrier_release_pattern[bs_last_barrier] = {bp_linear_bar}; 102 char const *__kmp_barrier_branch_bit_env_name[bs_last_barrier] = { 103 "KMP_PLAIN_BARRIER", "KMP_FORKJOIN_BARRIER" 104 #if KMP_FAST_REDUCTION_BARRIER 105 , 106 "KMP_REDUCTION_BARRIER" 107 #endif // KMP_FAST_REDUCTION_BARRIER 108 }; 109 char const *__kmp_barrier_pattern_env_name[bs_last_barrier] = { 110 "KMP_PLAIN_BARRIER_PATTERN", "KMP_FORKJOIN_BARRIER_PATTERN" 111 #if KMP_FAST_REDUCTION_BARRIER 112 , 113 "KMP_REDUCTION_BARRIER_PATTERN" 114 #endif // KMP_FAST_REDUCTION_BARRIER 115 }; 116 char const *__kmp_barrier_type_name[bs_last_barrier] = {"plain", "forkjoin" 117 #if KMP_FAST_REDUCTION_BARRIER 118 , 119 "reduction" 120 #endif // KMP_FAST_REDUCTION_BARRIER 121 }; 122 char const *__kmp_barrier_pattern_name[bp_last_bar] = {"linear", "tree", 123 "hyper", "hierarchical"}; 124 125 int __kmp_allThreadsSpecified = 0; 126 size_t __kmp_align_alloc = CACHE_LINE; 127 128 int __kmp_generate_warnings = kmp_warnings_low; 129 int __kmp_reserve_warn = 0; 130 int __kmp_xproc = 0; 131 int __kmp_avail_proc = 0; 132 size_t __kmp_sys_min_stksize = KMP_MIN_STKSIZE; 133 int __kmp_sys_max_nth = KMP_MAX_NTH; 134 int __kmp_max_nth = 0; 135 int __kmp_cg_max_nth = 0; 136 int __kmp_teams_max_nth = 0; 137 int __kmp_threads_capacity = 0; 138 int __kmp_dflt_team_nth = 0; 139 int __kmp_dflt_team_nth_ub = 0; 140 int __kmp_tp_capacity = 0; 141 int __kmp_tp_cached = 0; 142 int __kmp_dflt_nested = FALSE; 143 int __kmp_dispatch_num_buffers = KMP_DFLT_DISP_NUM_BUFF; 144 int __kmp_dflt_max_active_levels = 145 KMP_MAX_ACTIVE_LEVELS_LIMIT; /* max_active_levels limit */ 146 #if KMP_NESTED_HOT_TEAMS 147 int __kmp_hot_teams_mode = 0; /* 0 - free extra threads when reduced */ 148 /* 1 - keep extra threads when reduced */ 149 int __kmp_hot_teams_max_level = 1; /* nesting level of hot teams */ 150 #endif 151 enum library_type __kmp_library = library_none; 152 enum sched_type __kmp_sched = 153 kmp_sch_default; /* scheduling method for runtime scheduling */ 154 enum sched_type __kmp_static = 155 kmp_sch_static_greedy; /* default static scheduling method */ 156 enum sched_type __kmp_guided = 157 kmp_sch_guided_iterative_chunked; /* default guided scheduling method */ 158 enum sched_type __kmp_auto = 159 kmp_sch_guided_analytical_chunked; /* default auto scheduling method */ 160 int __kmp_dflt_blocktime = KMP_DEFAULT_BLOCKTIME; 161 #if KMP_USE_MONITOR 162 int __kmp_monitor_wakeups = KMP_MIN_MONITOR_WAKEUPS; 163 int __kmp_bt_intervals = KMP_INTERVALS_FROM_BLOCKTIME(KMP_DEFAULT_BLOCKTIME, 164 KMP_MIN_MONITOR_WAKEUPS); 165 #endif 166 #ifdef KMP_ADJUST_BLOCKTIME 167 int __kmp_zero_bt = FALSE; 168 #endif /* KMP_ADJUST_BLOCKTIME */ 169 #ifdef KMP_DFLT_NTH_CORES 170 int __kmp_ncores = 0; 171 #endif 172 int __kmp_chunk = 0; 173 int __kmp_abort_delay = 0; 174 #if KMP_OS_LINUX && defined(KMP_TDATA_GTID) 175 int __kmp_gtid_mode = 3; /* use __declspec(thread) TLS to store gtid */ 176 int __kmp_adjust_gtid_mode = FALSE; 177 #elif KMP_OS_WINDOWS 178 int __kmp_gtid_mode = 2; /* use TLS functions to store gtid */ 179 int __kmp_adjust_gtid_mode = FALSE; 180 #else 181 int __kmp_gtid_mode = 0; /* select method to get gtid based on #threads */ 182 int __kmp_adjust_gtid_mode = TRUE; 183 #endif /* KMP_OS_LINUX && defined(KMP_TDATA_GTID) */ 184 #ifdef KMP_TDATA_GTID 185 #if KMP_OS_WINDOWS 186 __declspec(thread) int __kmp_gtid = KMP_GTID_DNE; 187 #else 188 __thread int __kmp_gtid = KMP_GTID_DNE; 189 #endif /* KMP_OS_WINDOWS - workaround because Intel(R) Many Integrated Core \ 190 compiler 20110316 doesn't accept __declspec */ 191 #endif /* KMP_TDATA_GTID */ 192 int __kmp_tls_gtid_min = INT_MAX; 193 int __kmp_foreign_tp = TRUE; 194 #if KMP_ARCH_X86 || KMP_ARCH_X86_64 195 int __kmp_inherit_fp_control = TRUE; 196 kmp_int16 __kmp_init_x87_fpu_control_word = 0; 197 kmp_uint32 __kmp_init_mxcsr = 0; 198 #endif /* KMP_ARCH_X86 || KMP_ARCH_X86_64 */ 199 200 #ifdef USE_LOAD_BALANCE 201 double __kmp_load_balance_interval = 1.0; 202 #endif /* USE_LOAD_BALANCE */ 203 204 kmp_nested_nthreads_t __kmp_nested_nth = {NULL, 0, 0}; 205 206 #if KMP_USE_ADAPTIVE_LOCKS 207 208 kmp_adaptive_backoff_params_t __kmp_adaptive_backoff_params = { 209 1, 1024}; // TODO: tune it! 210 211 #if KMP_DEBUG_ADAPTIVE_LOCKS 212 char *__kmp_speculative_statsfile = "-"; 213 #endif 214 215 #endif // KMP_USE_ADAPTIVE_LOCKS 216 217 #if OMP_40_ENABLED 218 int __kmp_display_env = FALSE; 219 int __kmp_display_env_verbose = FALSE; 220 int __kmp_omp_cancellation = FALSE; 221 #endif 222 223 /* map OMP 3.0 schedule types with our internal schedule types */ 224 enum sched_type __kmp_sch_map[kmp_sched_upper - kmp_sched_lower_ext + 225 kmp_sched_upper_std - kmp_sched_lower - 2] = { 226 kmp_sch_static_chunked, // ==> kmp_sched_static = 1 227 kmp_sch_dynamic_chunked, // ==> kmp_sched_dynamic = 2 228 kmp_sch_guided_chunked, // ==> kmp_sched_guided = 3 229 kmp_sch_auto, // ==> kmp_sched_auto = 4 230 kmp_sch_trapezoidal // ==> kmp_sched_trapezoidal = 101 231 // will likely not be used, introduced here just to debug the code 232 // of public intel extension schedules 233 }; 234 235 #if KMP_OS_LINUX 236 enum clock_function_type __kmp_clock_function; 237 int __kmp_clock_function_param; 238 #endif /* KMP_OS_LINUX */ 239 240 #if KMP_MIC_SUPPORTED 241 enum mic_type __kmp_mic_type = non_mic; 242 #endif 243 244 #if KMP_AFFINITY_SUPPORTED 245 246 KMPAffinity *__kmp_affinity_dispatch = NULL; 247 248 #if KMP_USE_HWLOC 249 int __kmp_hwloc_error = FALSE; 250 hwloc_topology_t __kmp_hwloc_topology = NULL; 251 #endif 252 253 #if KMP_OS_WINDOWS 254 #if KMP_GROUP_AFFINITY 255 int __kmp_num_proc_groups = 1; 256 #endif /* KMP_GROUP_AFFINITY */ 257 kmp_GetActiveProcessorCount_t __kmp_GetActiveProcessorCount = NULL; 258 kmp_GetActiveProcessorGroupCount_t __kmp_GetActiveProcessorGroupCount = NULL; 259 kmp_GetThreadGroupAffinity_t __kmp_GetThreadGroupAffinity = NULL; 260 kmp_SetThreadGroupAffinity_t __kmp_SetThreadGroupAffinity = NULL; 261 #endif /* KMP_OS_WINDOWS */ 262 263 size_t __kmp_affin_mask_size = 0; 264 enum affinity_type __kmp_affinity_type = affinity_default; 265 enum affinity_gran __kmp_affinity_gran = affinity_gran_default; 266 int __kmp_affinity_gran_levels = -1; 267 int __kmp_affinity_dups = TRUE; 268 enum affinity_top_method __kmp_affinity_top_method = 269 affinity_top_method_default; 270 int __kmp_affinity_compact = 0; 271 int __kmp_affinity_offset = 0; 272 int __kmp_affinity_verbose = FALSE; 273 int __kmp_affinity_warnings = TRUE; 274 int __kmp_affinity_respect_mask = affinity_respect_mask_default; 275 char *__kmp_affinity_proclist = NULL; 276 kmp_affin_mask_t *__kmp_affinity_masks = NULL; 277 unsigned __kmp_affinity_num_masks = 0; 278 279 char const *__kmp_cpuinfo_file = NULL; 280 281 #endif /* KMP_AFFINITY_SUPPORTED */ 282 283 #if OMP_40_ENABLED 284 kmp_nested_proc_bind_t __kmp_nested_proc_bind = {NULL, 0, 0}; 285 int __kmp_affinity_num_places = 0; 286 #endif 287 288 kmp_hws_item_t __kmp_hws_socket = {0, 0}; 289 kmp_hws_item_t __kmp_hws_node = {0, 0}; 290 kmp_hws_item_t __kmp_hws_tile = {0, 0}; 291 kmp_hws_item_t __kmp_hws_core = {0, 0}; 292 kmp_hws_item_t __kmp_hws_proc = {0, 0}; 293 int __kmp_hws_requested = 0; 294 int __kmp_hws_abs_flag = 0; // absolute or per-item number requested 295 296 #if OMP_40_ENABLED 297 kmp_int32 __kmp_default_device = 0; 298 #endif 299 300 kmp_tasking_mode_t __kmp_tasking_mode = tskm_task_teams; 301 #if OMP_45_ENABLED 302 kmp_int32 __kmp_max_task_priority = 0; 303 kmp_uint64 __kmp_taskloop_min_tasks = 0; 304 #endif 305 306 #if OMP_50_ENABLED && OMPT_SUPPORT 307 char const *__kmp_tool_libraries = NULL; 308 #endif 309 310 /* This check ensures that the compiler is passing the correct data type for the 311 flags formal parameter of the function kmpc_omp_task_alloc(). If the type is 312 not a 4-byte type, then give an error message about a non-positive length 313 array pointing here. If that happens, the kmp_tasking_flags_t structure must 314 be redefined to have exactly 32 bits. */ 315 KMP_BUILD_ASSERT(sizeof(kmp_tasking_flags_t) == 4); 316 317 kmp_int32 __kmp_task_stealing_constraint = 318 1; /* Constrain task stealing by default */ 319 320 #ifdef DEBUG_SUSPEND 321 int __kmp_suspend_count = 0; 322 #endif 323 324 int __kmp_settings = FALSE; 325 int __kmp_duplicate_library_ok = 0; 326 #if USE_ITT_BUILD 327 int __kmp_forkjoin_frames = 1; 328 int __kmp_forkjoin_frames_mode = 3; 329 #endif 330 PACKED_REDUCTION_METHOD_T __kmp_force_reduction_method = 331 reduction_method_not_defined; 332 int __kmp_determ_red = FALSE; 333 334 #ifdef KMP_DEBUG 335 int kmp_a_debug = 0; 336 int kmp_b_debug = 0; 337 int kmp_c_debug = 0; 338 int kmp_d_debug = 0; 339 int kmp_e_debug = 0; 340 int kmp_f_debug = 0; 341 int kmp_diag = 0; 342 #endif 343 344 /* For debug information logging using rotating buffer */ 345 int __kmp_debug_buf = 346 FALSE; /* TRUE means use buffer, FALSE means print to stderr */ 347 int __kmp_debug_buf_lines = 348 KMP_DEBUG_BUF_LINES_INIT; /* Lines of debug stored in buffer */ 349 int __kmp_debug_buf_chars = 350 KMP_DEBUG_BUF_CHARS_INIT; /* Characters allowed per line in buffer */ 351 int __kmp_debug_buf_atomic = 352 FALSE; /* TRUE means use atomic update of buffer entry pointer */ 353 354 char *__kmp_debug_buffer = NULL; /* Debug buffer itself */ 355 int __kmp_debug_count = 356 0; /* Counter for number of lines printed in buffer so far */ 357 int __kmp_debug_buf_warn_chars = 358 0; /* Keep track of char increase recommended in warnings */ 359 /* end rotating debug buffer */ 360 361 #ifdef KMP_DEBUG 362 int __kmp_par_range; /* +1 => only go par for constructs in range */ 363 /* -1 => only go par for constructs outside range */ 364 char __kmp_par_range_routine[KMP_PAR_RANGE_ROUTINE_LEN] = {'\0'}; 365 char __kmp_par_range_filename[KMP_PAR_RANGE_FILENAME_LEN] = {'\0'}; 366 int __kmp_par_range_lb = 0; 367 int __kmp_par_range_ub = INT_MAX; 368 #endif /* KMP_DEBUG */ 369 370 /* For printing out dynamic storage map for threads and teams */ 371 int __kmp_storage_map = 372 FALSE; /* True means print storage map for threads and teams */ 373 int __kmp_storage_map_verbose = 374 FALSE; /* True means storage map includes placement info */ 375 int __kmp_storage_map_verbose_specified = FALSE; 376 /* Initialize the library data structures when we fork a child process, defaults 377 * to TRUE */ 378 int __kmp_need_register_atfork = 379 TRUE; /* At initialization, call pthread_atfork to install fork handler */ 380 int __kmp_need_register_atfork_specified = TRUE; 381 382 int __kmp_env_stksize = FALSE; /* KMP_STACKSIZE specified? */ 383 int __kmp_env_blocktime = FALSE; /* KMP_BLOCKTIME specified? */ 384 int __kmp_env_checks = FALSE; /* KMP_CHECKS specified? */ 385 int __kmp_env_consistency_check = FALSE; /* KMP_CONSISTENCY_CHECK specified? */ 386 387 kmp_uint32 __kmp_yield_init = KMP_INIT_WAIT; 388 kmp_uint32 __kmp_yield_next = KMP_NEXT_WAIT; 389 390 #if KMP_USE_MONITOR 391 kmp_uint32 __kmp_yielding_on = 1; 392 #endif 393 #if KMP_OS_CNK 394 kmp_uint32 __kmp_yield_cycle = 0; 395 #else 396 kmp_uint32 __kmp_yield_cycle = 1; /* Yield-cycle is on by default */ 397 #endif 398 kmp_int32 __kmp_yield_on_count = 399 10; /* By default, yielding is on for 10 monitor periods. */ 400 kmp_int32 __kmp_yield_off_count = 401 1; /* By default, yielding is off for 1 monitor periods. */ 402 403 /* ------------------------------------------------------ */ 404 /* STATE mostly syncronized with global lock */ 405 /* data written to rarely by masters, read often by workers */ 406 /* TODO: None of this global padding stuff works consistently because the order 407 of declaration is not necessarily correlated to storage order. To fix this, 408 all the important globals must be put in a big structure instead. */ 409 KMP_ALIGN_CACHE 410 kmp_info_t **__kmp_threads = NULL; 411 kmp_root_t **__kmp_root = NULL; 412 413 /* data read/written to often by masters */ 414 KMP_ALIGN_CACHE 415 volatile int __kmp_nth = 0; 416 volatile int __kmp_all_nth = 0; 417 int __kmp_thread_pool_nth = 0; 418 volatile kmp_info_t *__kmp_thread_pool = NULL; 419 volatile kmp_team_t *__kmp_team_pool = NULL; 420 421 KMP_ALIGN_CACHE 422 volatile int __kmp_thread_pool_active_nth = 0; 423 424 /* ------------------------------------------------- 425 * GLOBAL/ROOT STATE */ 426 KMP_ALIGN_CACHE 427 kmp_global_t __kmp_global = {{0}}; 428 429 /* ----------------------------------------------- */ 430 /* GLOBAL SYNCHRONIZATION LOCKS */ 431 /* TODO verify the need for these locks and if they need to be global */ 432 433 #if KMP_USE_INTERNODE_ALIGNMENT 434 /* Multinode systems have larger cache line granularity which can cause 435 * false sharing if the alignment is not large enough for these locks */ 436 KMP_ALIGN_CACHE_INTERNODE 437 438 kmp_bootstrap_lock_t __kmp_initz_lock = KMP_BOOTSTRAP_LOCK_INITIALIZER( 439 __kmp_initz_lock); /* Control initializations */ 440 KMP_ALIGN_CACHE_INTERNODE 441 kmp_bootstrap_lock_t __kmp_forkjoin_lock; /* control fork/join access */ 442 KMP_ALIGN_CACHE_INTERNODE 443 kmp_bootstrap_lock_t __kmp_exit_lock; /* exit() is not always thread-safe */ 444 #if KMP_USE_MONITOR 445 KMP_ALIGN_CACHE_INTERNODE 446 kmp_bootstrap_lock_t __kmp_monitor_lock; /* control monitor thread creation */ 447 #endif 448 /* used for the hack to allow threadprivate cache and __kmp_threads expansion 449 to co-exist */ 450 KMP_ALIGN_CACHE_INTERNODE 451 kmp_bootstrap_lock_t __kmp_tp_cached_lock; 452 453 KMP_ALIGN_CACHE_INTERNODE 454 kmp_lock_t __kmp_global_lock; /* Control OS/global access */ 455 KMP_ALIGN_CACHE_INTERNODE 456 kmp_queuing_lock_t __kmp_dispatch_lock; /* Control dispatch access */ 457 KMP_ALIGN_CACHE_INTERNODE 458 kmp_lock_t __kmp_debug_lock; /* Control I/O access for KMP_DEBUG */ 459 #else 460 KMP_ALIGN_CACHE 461 462 kmp_bootstrap_lock_t __kmp_initz_lock = KMP_BOOTSTRAP_LOCK_INITIALIZER( 463 __kmp_initz_lock); /* Control initializations */ 464 kmp_bootstrap_lock_t __kmp_forkjoin_lock; /* control fork/join access */ 465 kmp_bootstrap_lock_t __kmp_exit_lock; /* exit() is not always thread-safe */ 466 #if KMP_USE_MONITOR 467 kmp_bootstrap_lock_t __kmp_monitor_lock; /* control monitor thread creation */ 468 #endif 469 /* used for the hack to allow threadprivate cache and __kmp_threads expansion 470 to co-exist */ 471 kmp_bootstrap_lock_t __kmp_tp_cached_lock; 472 473 KMP_ALIGN(128) 474 kmp_lock_t __kmp_global_lock; /* Control OS/global access */ 475 KMP_ALIGN(128) 476 kmp_queuing_lock_t __kmp_dispatch_lock; /* Control dispatch access */ 477 KMP_ALIGN(128) 478 kmp_lock_t __kmp_debug_lock; /* Control I/O access for KMP_DEBUG */ 479 #endif 480 481 /* ----------------------------------------------- */ 482 483 #if KMP_HANDLE_SIGNALS 484 /* Signal handling is disabled by default, because it confuses users: In case of 485 sigsegv (or other trouble) in user code signal handler catches the signal, 486 which then "appears" in the monitor thread (when the monitor executes raise() 487 function). Users see signal in the monitor thread and blame OpenMP RTL. 488 489 Grant said signal handling required on some older OSes (Irix?) supported by 490 KAI, because bad applications hung but not aborted. Currently it is not a 491 problem for Linux* OS, OS X* and Windows* OS. 492 493 Grant: Found new hangs for EL4, EL5, and a Fedora Core machine. So I'm 494 putting the default back for now to see if that fixes hangs on those 495 machines. 496 497 2010-04013 Lev: It was a bug in Fortran RTL. Fortran RTL prints a kind of 498 stack backtrace when program is aborting, but the code is not signal-safe. 499 When multiple signals raised at the same time (which occurs in dynamic 500 negative tests because all the worker threads detects the same error), 501 Fortran RTL may hang. The bug finally fixed in Fortran RTL library provided 502 by Steve R., and will be available soon. */ 503 int __kmp_handle_signals = FALSE; 504 #endif 505 506 #ifdef DEBUG_SUSPEND 507 int get_suspend_count_(void) { 508 int count = __kmp_suspend_count; 509 __kmp_suspend_count = 0; 510 return count; 511 } 512 void set_suspend_count_(int *value) { __kmp_suspend_count = *value; } 513 #endif 514 515 // Symbols for MS mutual detection. 516 int _You_must_link_with_exactly_one_OpenMP_library = 1; 517 int _You_must_link_with_Intel_OpenMP_library = 1; 518 #if KMP_OS_WINDOWS && (KMP_VERSION_MAJOR > 4) 519 int _You_must_link_with_Microsoft_OpenMP_library = 1; 520 #endif 521 522 // end of file // 523